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7de7497b 1#ifndef ALIAODRECODECAY_H
2#define ALIAODRECODECAY_H
3/* Copyright(c) 1998-2006, ALICE Experiment at CERN, All rights reserved. *
4 * See cxx source for full Copyright notice */
5
6//***********************************************************
7// Class AliAODRecoDecay
8// base class for AOD reconstructed decays
9// Author: A.Dainese, andrea.dainese@lnl.infn.it
10//***********************************************************
11
12#include <TMath.h>
5cc73331 13#include <TRef.h>
bfd68286 14#include <TClonesArray.h>
7de7497b 15#include "AliAODVertex.h"
58b0186f 16#include "AliAODTrack.h"
e045ffda 17#include "AliVTrack.h"
7de7497b 18
6dc40b1c 19class AliVVertex;
20
e045ffda 21class AliAODRecoDecay : public AliVTrack {
7de7497b 22
23 public:
24
25 AliAODRecoDecay();
26 AliAODRecoDecay(AliAODVertex *vtx2,Int_t nprongs,Short_t charge,
27 Double_t *px,Double_t *py,Double_t *pz,
28 Double_t *d0);
29 AliAODRecoDecay(AliAODVertex *vtx2,Int_t nprongs,Short_t charge,
30 Double_t *d0);
31 virtual ~AliAODRecoDecay();
32
33 AliAODRecoDecay(const AliAODRecoDecay& source);
34 AliAODRecoDecay& operator=(const AliAODRecoDecay& source);
35
36
37 // decay vertex
5cc73331 38 Double_t GetSecVtxX() const {return GetSecondaryVtx()->GetX();}
39 Double_t GetSecVtxY() const {return GetSecondaryVtx()->GetY();}
40 Double_t GetSecVtxZ() const {return GetSecondaryVtx()->GetZ();}
7de7497b 41 Double_t RadiusSecVtx() const;
42 void SetSecondaryVtx(AliAODVertex *vtx2) {fSecondaryVtx=vtx2;}
a11de4a0 43 AliAODVertex* GetSecondaryVtx() const { return (((AliAODVertex*)fSecondaryVtx.GetObject()) ? (AliAODVertex*)fSecondaryVtx.GetObject() : GetOwnSecondaryVtx()); }
44 void SetOwnSecondaryVtx(AliAODVertex *vtx2) {fOwnSecondaryVtx=vtx2;}
45 AliAODVertex* GetOwnSecondaryVtx() const {return fOwnSecondaryVtx;}
7de7497b 46 void GetSecondaryVtx(Double_t vtx[3]) const;
5cc73331 47 Double_t GetReducedChi2() const {return GetSecondaryVtx()->GetChi2perNDF();}
7de7497b 48 Short_t Charge() const {return fCharge;}
49 Short_t GetCharge() const {return fCharge;}
50 void SetCharge(Short_t charge=0) {fCharge=charge;}
51
bfd68286 52 // Match to MC signal:
53 // check if this candidate is matched to a MC signal
54 // If no, return -1
55 // If yes, return label (>=0) of the AliAODMCParticle
9c4d0454 56 // if ndgCk>0, checks also daughters PDGs
57 Int_t MatchToMC(Int_t pdgabs,TClonesArray *mcArray,Int_t ndgCk=0,Int_t *pdgDg=0) const;
bfd68286 58
7de7497b 59 // PID
60 void SetPID(Int_t nprongs,Double_t *pid);
61 Double_t *GetPID() const { return fPID; }
62 void GetPIDProng(Int_t ip,Double_t *pid) const;
63 virtual const Double_t *PID() const { return fPID; }
64
65 // prong-to-prong DCAs
5cc73331 66 void SetDCAs(Int_t nDCA,Double_t *dca);
67 void SetDCA(Double_t dca); // 2 prong
68 Double_t GetDCA(Int_t i=0) const {return fDCA[i];}
7de7497b 69
70 //event and run number
71 void SetEventRunNumbers(Int_t en,Int_t rn)
72 { fEventNumber=en; fRunNumber=rn; return; }
73 Int_t GetEventNumber() const { return fEventNumber; }
74 Int_t GetRunNumber() const { return fRunNumber; }
75
e045ffda 76 // methods of AliVTrack
77 virtual Int_t GetID() const { return -1; }
78 virtual UChar_t GetITSClusterMap() const;
79 virtual ULong_t GetStatus() const;
80 virtual Bool_t GetXYZ(Double_t *p) const { return XvYvZv(p); }
81 virtual Bool_t GetCovarianceXYZPxPyPz(Double_t cv[21]) const;
6dc40b1c 82 virtual Bool_t PropagateToDCA(const AliVVertex* vtx,Double_t b,Double_t maxd,Double_t dz[2],Double_t covar[3]);
e045ffda 83
7de7497b 84 // kinematics & topology
85 Double_t Px() const;
86 Double_t Py() const;
87 Double_t Pz() const;
88 Double_t P() const {return TMath::Sqrt(Px()*Px()+Py()*Py()+Pz()*Pz());}
89 Double_t Pt() const {return TMath::Sqrt(Px()*Px()+Py()*Py());}
90 Double_t OneOverPt() const {return (Pt() ? 1./Pt() : 0.);}
c683ddc2 91 Bool_t PxPyPz(Double_t p[3]) const { p[0] = Px(); p[1] = Py(); p[2] = Pz(); return kTRUE; }
1eab4b5c 92 Double_t Phi() const {return TMath::Pi()+TMath::ATan2(-Py(),-Px());}
7de7497b 93 Double_t Theta() const {return 0.5*TMath::Pi()-TMath::ATan(Pz()/(Pt()+1.e-13));}
94 Double_t Eta() const {return 0.5*TMath::Log((P()+Pz())/(P()-Pz()+1.e-13));}
c683ddc2 95 Double_t Xv() const { return GetSecVtxX(); }
96 Double_t Yv() const { return GetSecVtxY(); }
97 Double_t Zv() const { return GetSecVtxZ(); }
98 virtual Bool_t XvYvZv(Double_t x[3]) const { x[0] = Xv(); x[1] = Yv(); x[2] = Zv(); return kTRUE; }
7de7497b 99 Double_t E(UInt_t pdg) const;
100 Double_t Y(UInt_t pdg) const {return 0.5*TMath::Log((E(pdg)+Pz())/(E(pdg)-Pz()+1.e-13));}
101 Double_t DecayLength(Double_t point[3]) const;
102 Double_t DecayLength(AliAODVertex *vtx1) const
5cc73331 103 {return GetSecondaryVtx()->DistanceToVertex(vtx1);}
7de7497b 104 Double_t DecayLengthError(AliAODVertex *vtx1) const
5cc73331 105 {return GetSecondaryVtx()->ErrorDistanceToVertex(vtx1);}
7de7497b 106 Double_t NormalizedDecayLength(AliAODVertex *vtx1) const
107 {return DecayLength(vtx1)/DecayLengthError(vtx1);}
108 Double_t DecayLengthXY(Double_t point[3]) const;
109 Double_t DecayLengthXY(AliAODVertex *vtx1) const
5cc73331 110 {return GetSecondaryVtx()->DistanceXYToVertex(vtx1);}
7de7497b 111 Double_t DecayLengthXYError(AliAODVertex *vtx1) const
5cc73331 112 {return GetSecondaryVtx()->ErrorDistanceXYToVertex(vtx1);}
7de7497b 113 Double_t NormalizedDecayLengthXY(AliAODVertex *vtx1) const
114 {return DecayLengthXY(vtx1)/DecayLengthXYError(vtx1);}
115 Double_t Ct(UInt_t pdg,Double_t point[3]) const;
116 Double_t Ct(UInt_t pdg,AliAODVertex *vtx1) const;
117 Double_t CosPointingAngle(Double_t point[3]) const;
118 Double_t CosPointingAngle(AliAODVertex *vtx1) const;
119 Double_t CosPointingAngleXY(Double_t point[3]) const;
120 Double_t CosPointingAngleXY(AliAODVertex *vtx1) const;
121 Double_t CosThetaStar(Int_t ip,UInt_t pdgvtx,UInt_t pdgprong0,UInt_t pdgprong1) const;
122 Double_t InvMass(Int_t npdg,UInt_t *pdg) const;
123 Double_t ImpParXY(Double_t point[3]) const;
124 Double_t ImpParXY(AliAODVertex *vtx1) const;
125
126 // prongs
e045ffda 127 Int_t GetNProngs() const {return fNProngs;}
128 Int_t GetNDaughters() const {return GetSecondaryVtx()->GetNDaughters();}
129 TObject *GetDaughter(Int_t i) const {return (GetNDaughters()>i ? GetSecondaryVtx()->GetDaughter(i) : 0x0);}
7de7497b 130
e045ffda 131 Short_t ChargeProng(Int_t ip) const;
7de7497b 132 Double_t Getd0Prong(Int_t ip) const {return fd0[ip];}
133 Double_t Prodd0d0(Int_t ip1=0,Int_t ip2=0) const {return fd0[ip1]*fd0[ip2];}
88891753 134 void SetPxPyPzProngs(Int_t nprongs,Double_t *px,Double_t *py,Double_t *pz);
7de7497b 135 Double_t PxProng(Int_t ip) const {return fPx[ip];}
136 Double_t PyProng(Int_t ip) const {return fPy[ip];}
137 Double_t PzProng(Int_t ip) const {return fPz[ip];}
138 Double_t PtProng(Int_t ip) const;
139 Double_t PProng(Int_t ip) const;
140 Double_t PhiProng(Int_t ip) const
141 {return TMath::ATan2(PyProng(ip),PxProng(ip));}
142 Double_t ThetaProng(Int_t ip) const
143 {return 0.5*TMath::Pi()-TMath::ATan(PzProng(ip)/(PtProng(ip)+1.e-13));}
144 Double_t EtaProng(Int_t ip) const
145 {return -TMath::Log(TMath::Tan(0.5*ThetaProng(ip)));}
146 Double_t EProng(Int_t ip,UInt_t pdg) const;
147 Double_t YProng(Int_t ip,UInt_t pdg) const
148 {return 0.5*TMath::Log((EProng(ip,pdg)+PzProng(ip))/(EProng(ip,pdg)-PzProng(ip)+1.e-13));}
149 Double_t Alpha() const; // for Armenteros-Podolanski plot (V0's)
150 Double_t QlProng(Int_t ip) const;
151 Double_t QtProng(Int_t ip=0) const; // for Armenteros-Podolanski plot (V0's)
152 Double_t QlProngFlightLine(Int_t ip,Double_t point[3]) const;
153 Double_t QlProngFlightLine(Int_t ip,AliAODVertex *vtx1) const;
154 Double_t QtProngFlightLine(Int_t ip,Double_t point[3]) const;
155 Double_t QtProngFlightLine(Int_t ip,AliAODVertex *vtx1) const;
156 Double_t InvMass2Prongs(Int_t ip1,Int_t ip2,UInt_t pdg1,UInt_t pdg2) const;
157 Double_t ProngsRelAngle(Int_t ip1=0,Int_t ip2=1) const;
158
159 // relate to other objects
160 //Double_t DistanceToVertex(AliAODVertex *vtx) // distance to a AliAODVertex
161 //Double_t DistanceToTrack(AliAODTrack *trk) // distance to a AliAODTrack
162
163
164 // print
165 void Print(Option_t* option = "") const;
5cc73331 166 //void PrintIndices() const {GetSecondaryVtx()->PrintIndices();}
7de7497b 167
ff7c57dd 168 // dummy functions for inheritance from AliVParticle
7de7497b 169 Double_t E() const
170 {printf("Dummy function; use AliAODRecoDecay::E(UInt_t pdg) instead"); return (Double_t)-999.;}
171 Double_t Y() const
172 {printf("Dummy function; use AliAODRecoDecay::Y(UInt_t pdg) instead"); return (Double_t)-999.;}
173 Double_t M() const
174 {printf("Dummy function"); return (Double_t)-999.;}
3c43fb2b 175 Int_t GetLabel() const {return -1;}
6a8e543a 176 Int_t PdgCode() const {return 0;}
c8fe2783 177
7de7497b 178 protected:
179
9c4d0454 180 Int_t MatchToMC(Int_t pdgabs,TClonesArray *mcArray,Int_t dgLabels[10],Int_t ndg,Int_t ndgCk=0,Int_t *pdgDg=0) const;
8862e6bf 181 Int_t MatchToMC(Int_t pdgabs,TClonesArray *mcArray,Int_t dgLabels[10]) const { return MatchToMC(pdgabs,mcArray,dgLabels,GetNDaughters()); }
182
5cc73331 183 TRef fSecondaryVtx; // decay vertex
a11de4a0 184 AliAODVertex *fOwnSecondaryVtx; // temporary solution (to work outside AliAODEvent)
5cc73331 185 Short_t fCharge; // charge, use this convention for prongs charges:
186 // if(charge== 0) even-index prongs are +
187 // odd-index prongs are -
188 // if(charge==+1) even-index prongs are +
189 // odd-index prongs are -
190 // if(charge==-1) even-index prongs are -
191 // odd-index prongs are +
7de7497b 192
193 // TEMPORARY, to be removed when we do analysis on AliAODEvent
5cc73331 194 Int_t fNProngs; // number of prongs
195 Int_t fNDCA; // number of dca's
196 Int_t fNPID; // number of PID probabilities
197 Double32_t *fPx; //[fNProngs] px of tracks at the vertex [GeV/c]
198 Double32_t *fPy; //[fNProngs] py of tracks at the vertex [GeV/c]
199 Double32_t *fPz; //[fNProngs] pz of tracks at the vertex [GeV/c]
200 Double32_t *fd0; //[fNProngs] rphi impact params w.r.t. Primary Vtx [cm]
201 Double32_t *fDCA; //[fNDCA] prong-to-prong DCA [cm]
202 // convention:fDCA[0]=p0p1,fDCA[1]=p0p2,fDCA[2]=p1p2,...
203 Double32_t *fPID; //[fNPID] combined pid
204 // (combined detector response probabilities)
7de7497b 205
206 // TEMPORARY, to be removed when we do analysis on AliAODEvent
207 Int_t fEventNumber;
208 Int_t fRunNumber;
209 // TO BE PUT IN SPECIAL MC CLASS
210 //Bool_t fSignal; // TRUE if signal, FALSE if background (for simulation)
7de7497b 211 //Int_t fTrkNum[2]; // numbers of the two decay tracks
212 //Int_t fPdg[2]; // PDG codes of the two tracks (for sim.)
213 //Int_t fMum[2]; // PDG codes of the mothers (for sim.)
214
215 //
216
e045ffda 217 ClassDef(AliAODRecoDecay,4) // base class for AOD reconstructed decays
7de7497b 218};
219
220
221inline Short_t AliAODRecoDecay::ChargeProng(Int_t ip) const
222{
223 if(fCharge==0 || fCharge==+1) {
224 if(ip%2==0) {
225 return (Short_t)1;
226 } else {
227 return (Short_t)-1;
228 }
229 } else { // fCharge==-1
230 if(ip%2==0) {
231 return (Short_t)-1;
232 } else {
233 return (Short_t)1;
234 }
235 }
236}
237
238inline Double_t AliAODRecoDecay::RadiusSecVtx() const
239{
240 return TMath::Sqrt(GetSecVtxX()*GetSecVtxX()+GetSecVtxY()*GetSecVtxY());
241}
242
243inline void AliAODRecoDecay::GetSecondaryVtx(Double_t vtx[3]) const
244{
5cc73331 245 GetSecondaryVtx()->GetPosition(vtx);
7de7497b 246 return;
247}
248
249inline Double_t AliAODRecoDecay::Px() const
250{
251 Double_t px=0.;
252 for(Int_t i=0;i<GetNProngs();i++) px+=PxProng(i);
253 return px;
254}
255
256inline Double_t AliAODRecoDecay::Py() const
257{
258 Double_t py=0.;
259 for(Int_t i=0;i<GetNProngs();i++) py+=PyProng(i);
260 return py;
261}
262
263inline Double_t AliAODRecoDecay::Pz() const
264{
265 Double_t pz=0.;
266 for(Int_t i=0;i<GetNProngs();i++) pz+=PzProng(i);
267 return pz;
268}
269
270inline Double_t AliAODRecoDecay::Ct(UInt_t pdg,AliAODVertex *vtx1) const
271{
272 Double_t v[3];
273 vtx1->GetPosition(v);
274 return Ct(pdg,v);
275}
276
277inline Double_t AliAODRecoDecay::CosPointingAngle(AliAODVertex *vtx1) const
278{
279 Double_t v[3];
280 vtx1->GetPosition(v);
281 return CosPointingAngle(v);
282}
283
284inline Double_t AliAODRecoDecay::CosPointingAngleXY(AliAODVertex *vtx1) const
285{
286 Double_t v[3];
287 vtx1->GetPosition(v);
288 return CosPointingAngleXY(v);
289}
290
291inline Double_t AliAODRecoDecay::ImpParXY(AliAODVertex *vtx1) const
292{
293 Double_t v[3];
294 vtx1->GetPosition(v);
295 return ImpParXY(v);
296}
297
298inline Double_t AliAODRecoDecay::PtProng(Int_t ip) const
299{
300 return TMath::Sqrt(PxProng(ip)*PxProng(ip)+PyProng(ip)*PyProng(ip));
301}
302
303inline Double_t AliAODRecoDecay::PProng(Int_t ip) const
304{
305 return TMath::Sqrt(PtProng(ip)*PtProng(ip)+PzProng(ip)*PzProng(ip));
306}
307
308inline Double_t AliAODRecoDecay::QlProngFlightLine(Int_t ip,AliAODVertex *vtx1) const
309{
310 Double_t v[3];
311 vtx1->GetPosition(v);
312 return QlProngFlightLine(ip,v);
313}
314
315inline Double_t AliAODRecoDecay::QtProngFlightLine(Int_t ip,AliAODVertex *vtx1) const
316{
317 Double_t v[3];
318 vtx1->GetPosition(v);
319 return QtProngFlightLine(ip,v);
320}
321
88891753 322inline void AliAODRecoDecay::SetPxPyPzProngs(Int_t nprongs,Double_t *px,Double_t *py,Double_t *pz)
323{
324 if(nprongs!=GetNProngs()) {
325 printf("Wrong number of momenta, must be nProngs");
326 return;
327 }
328 if(!fPx) {
329 fPx = new Double32_t[nprongs];
330 fPy = new Double32_t[nprongs];
331 fPz = new Double32_t[nprongs];
332 }
333 for(Int_t i=0;i<nprongs;i++) {
334 fPx[i] = px[i];
335 fPy[i] = py[i];
336 fPz[i] = pz[i];
337 }
338
339 return;
340}
341
5cc73331 342inline void AliAODRecoDecay::SetDCAs(Int_t nDCA,Double_t *dca)
7de7497b 343{
344 if(nDCA!=(GetNProngs()*(GetNProngs()-1)/2)) {
345 printf("Wrong number of DCAs, must be nProngs*(nProngs-1)/2");
346 return;
347 }
348 if(fDCA) delete [] fDCA;
94de4057 349 fNDCA = nDCA;
5cc73331 350 fDCA = new Double32_t[nDCA];
7de7497b 351 for(Int_t i=0;i<nDCA;i++)
352 fDCA[i] = dca[i];
353 return;
354}
355
5cc73331 356inline void AliAODRecoDecay::SetDCA(Double_t dca)
7de7497b 357{
5cc73331 358 Double_t ddca[1]; ddca[0]=dca;
7de7497b 359 SetDCAs(1,ddca);
360 return;
361}
362
363inline void AliAODRecoDecay::SetPID(Int_t nprongs,Double_t *pid)
364{
365 if(nprongs!=GetNProngs()) {
366 printf("Wrong number of prongs");
367 return;
368 }
369 if(fPID) delete [] fPID;
58b0186f 370 fNPID = nprongs*5;
5cc73331 371 fPID = new Double32_t[nprongs*5];
7de7497b 372 for(Int_t i=0;i<nprongs;i++)
373 for(Int_t j=0;j<5;j++)
374 fPID[i*5+j] = pid[i*5+j];
375 return;
376}
377
378inline void AliAODRecoDecay::GetPIDProng(Int_t ip,Double_t *pid) const
379{
380 for(Int_t j=0;j<5;j++)
381 pid[j] = fPID[ip*5+j];
382 return;
383}
384
385
386
387#endif
bfd68286 388