FairRoot/PandaRoot
Functions | Variables
reco_apd.C File Reference

Go to the source code of this file.

Functions

gROOT LoadMacro ("$VMCWORKDIR/gconfig/basiclibs.C")
 
 rootlogon ()
 
 basiclibs ()
 
t SetBranchAddress ("EmcApdHit",&hit_array)
 
tsim SetBranchAddress ("MCTrack",&mctrack_array)
 
hEnergy GetXaxis () -> SetTitle("Energy Loss [MeV]")
 
tsim GetEntry (j)
 
hEnergy Fill (hit_energy *1000.)
 
hMult Fill (ntrack)
 

Variables

TFile * f = new TFile("hit_emc_apd.root")
 
TTree * t =(TTree *) f->Get("pndsim")
 
TClonesArray * hit_array =new TClonesArray("PndEmcApdHit")
 
TFile * fsim = new TFile("sim_emc_apd.root")
 
TTree * tsim =(TTree *) fsim->Get("pndsim")
 
TClonesArray * mctrack_array =new TClonesArray("PndMCTrack")
 
Float_t energy = 0
 
Int_t ntrack = 0
 
TH1F * hEnergy = new TH1F("hEnergy","Energy Loss",200,0,1)
 
TH1F * hMult = new TH1F("hMult","Particle Multiplicity",15,-0.5,14.5)
 
TH1F * hMom = new TH1F("hMom","Particle Momentum",150,0,1.5)
 
 hit_energy =apd->GetEnergy()
 

Function Documentation

basiclibs ( )
hEnergy Fill ( hit_energy 1000.)
hMult Fill ( ntrack  )
tsim GetEntry ( )
hEnergy GetXaxis ( ) -> SetTitle("Energy Loss [MeV]")

Definition at line 653 of file anal_hit_digi_cluster_fwendcap.C.

653 {Reconstructed}-#theta_{MC} (#circ)");
gROOT LoadMacro ( "$VMCWORKDIR/gconfig/basiclibs.C )
rootlogon ( )

Definition at line 1 of file outdated/mpiTools/macros/emc/rootlogon.C.

2 {
3  gSystem->AddIncludePath("-I$VMCWORKDIR/emc");
4  gSystem->AddIncludePath("-I$VMCWORKDIR/emc/EmcDigi");
5  gSystem->AddIncludePath("-I$VMCWORKDIR/emc/EmcMC");
6  gSystem->AddIncludePath("-I$VMCWORKDIR/emc/EmcTools");
7  gSystem->AddIncludePath("-I$VMCWORKDIR/emc/EmcReco");
8  gSystem->AddIncludePath("-I$VMCWORKDIR/emc/EmcData");
9  gSystem->AddIncludePath("-I$VMCWORKDIR/pnddata");
10  gSystem->AddIncludePath("-I$VMCWORKDIR/base");
11  gROOT->LoadMacro("$VMCWORKDIR/gconfig/basiclibs.C");
12  basiclibs();
13 
14  gSystem->Load("libDpmEvtGen.so");
15  gSystem->Load("libGeoBase");
16  gSystem->Load("libParBase");
17  gSystem->Load("libBase");
18  gSystem->Load("libTrkBase");
19  gSystem->Load("libPndData");
20  gSystem->Load("libField");
21  gSystem->Load("libPassive");
22  gSystem->Load("libGen");
23  gSystem->Load("libPGen");
24  gSystem->Load("libEmc");
25 
26  delete gRandom;
27  gRandom=new TRandom3(0);
28 }
basiclibs()
t SetBranchAddress ( "EmcApdHit"  ,
hit_array 
)
tsim SetBranchAddress ( "MCTrack"  ,
mctrack_array 
)

Variable Documentation

Float_t energy = 0

Definition at line 20 of file reco_apd.C.

TFile* f = new TFile("hit_emc_apd.root")

Definition at line 9 of file reco_apd.C.

TFile* fsim = new TFile("sim_emc_apd.root")

Definition at line 15 of file reco_apd.C.

TH1F* hEnergy = new TH1F("hEnergy","Energy Loss",200,0,1)

Definition at line 24 of file reco_apd.C.

TClonesArray* hit_array =new TClonesArray("PndEmcApdHit")

Definition at line 12 of file reco_apd.C.

hit_energy =apd->GetEnergy()

Definition at line 37 of file reco_apd.C.

TH1F* hMom = new TH1F("hMom","Particle Momentum",150,0,1.5)

Definition at line 26 of file reco_apd.C.

TH1F* hMult = new TH1F("hMult","Particle Multiplicity",15,-0.5,14.5)

Definition at line 25 of file reco_apd.C.

TClonesArray* mctrack_array =new TClonesArray("PndMCTrack")

Definition at line 17 of file reco_apd.C.

ntrack = 0

Definition at line 21 of file reco_apd.C.

Referenced by PndSciTAnaIdeal::Exec().

TTree* t =(TTree *) f->Get("pndsim")

Definition at line 10 of file reco_apd.C.

TTree* tsim =(TTree *) fsim->Get("pndsim")

Definition at line 16 of file reco_apd.C.