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1 /**************************************************************************
2  * Copyright(c) 1998-2009, ALICE Experiment at CERN, All rights reserved. *
3  *                                                                        *
4  * Author: The ALICE Off-line Project.                                    *
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8  * documentation strictly for non-commercial purposes is hereby granted   *
9  * without fee, provided that the above copyright notice appears in all   *
10  * copies and that both the copyright notice and this permission notice   *
11  * appear in the supporting documentation. The authors make no claims     *
12  * about the suitability of this software for any purpose. It is          *
13  * provided "as is" without express or implied warranty.                  *
14  **************************************************************************/
15
16 //-----------------------------------------------------------------------
17 // Class for HF corrections as a function of many variables and step 
18 // Author : C. Zampolli, CERN
19 // D. Caffarri, Univ & INFN Padova caffarri@pd.infn.it
20 // Base class for HF Unfolding - agrelli@uu.nl
21 //-----------------------------------------------------------------------
22
23 #include "AliAODRecoDecayHF2Prong.h"
24 #include "AliAODMCParticle.h"
25 #include "AliAODEvent.h"
26 #include "TClonesArray.h"
27 #include "AliCFVertexingHF.h"
28 #include "AliESDtrack.h"
29 #include "TDatabasePDG.h"
30
31 #include "AliCFVertexingHF2Prong.h"
32 #include "AliCFContainer.h"
33 #include "AliCFTaskVertexingHF.h"
34
35 ClassImp(AliCFVertexingHF2Prong)
36
37
38 //_________________________________________
39   AliCFVertexingHF2Prong::AliCFVertexingHF2Prong(TClonesArray *mcArray, UShort_t originDselection):
40           AliCFVertexingHF(mcArray, originDselection)
41 {       
42         //
43         // constructor
44         //
45
46         SetNProngs(2);
47         fPtAccCut=new Float_t[fProngs];
48         fEtaAccCut=new Float_t[fProngs];
49         for(Int_t iP=0; iP<fProngs; iP++){
50                 fPtAccCut[iP]=0.1;
51                 fEtaAccCut[iP]=0.9;
52         }
53
54 }
55
56
57 //_____________________________________
58 AliCFVertexingHF2Prong& AliCFVertexingHF2Prong::operator=(const AliCFVertexingHF2Prong& c)
59 {
60         //
61         // copy constructor     
62         //
63
64         if  (this != &c) {              
65                 AliCFVertexingHF::operator=(c);         
66         }
67         return *this;
68 }
69
70 //__________________________________________
71 Bool_t AliCFVertexingHF2Prong::SetRecoCandidateParam(AliAODRecoDecayHF *recoCand)
72 {  
73         //
74         // setting the recontructed candidate
75         //
76         
77         Bool_t bSignAssoc = kFALSE;     
78         fRecoCandidate = recoCand;
79         if (!fRecoCandidate) {
80                 AliError("fRecoCandidate not found, problem in assignement\n");
81                 return bSignAssoc;
82         }
83         
84         if (fRecoCandidate->GetPrimaryVtx()) AliDebug(3,"fReco Candidate has a pointer to PrimVtx\n");
85         if (recoCand->GetPrimaryVtx()) AliDebug(3,"Reco Cand has a pointer to PrimVtx\n");
86         
87         Int_t pdgCand = 421;
88         Int_t pdgDgD0toKpi[2]={321,211};
89         Int_t nentries = fmcArray->GetEntriesFast();    
90
91         AliDebug(3,Form("nentries = %d\n", nentries));
92  
93         Int_t mcLabel = fRecoCandidate->MatchToMC(pdgCand,fmcArray,2,pdgDgD0toKpi);
94         if (mcLabel == -1) return bSignAssoc;
95
96         if (fRecoCandidate->NumberOfFakeDaughters()>0){
97                 fFake = 0;    // fake candidate
98                 if (fFakeSelection==1) return bSignAssoc;
99         }
100         if (fRecoCandidate->NumberOfFakeDaughters()==0){
101                 fFake = 2;    // non-fake candidate
102                 if (fFakeSelection==2) return bSignAssoc;
103         }
104
105         SetMCLabel(mcLabel);
106         fmcPartCandidate = dynamic_cast<AliAODMCParticle*>(fmcArray->At(fmcLabel));
107         if (!fmcPartCandidate){
108                 AliDebug(3,"No part candidate");
109                 return bSignAssoc;
110         }       
111         bSignAssoc = kTRUE;
112         return bSignAssoc;
113 }
114
115 //______________________________________________
116 Bool_t AliCFVertexingHF2Prong::GetGeneratedValuesFromMCParticle(Double_t* vectorMC) 
117 {
118         // 
119         // collecting all the necessary info (pt, y, cosThetaStar, ptPi, ptKa, cT) from MC particle
120         //
121         
122         Bool_t bGenValues = kFALSE;
123         Double_t vtx1[3] = {0,0,0};   // primary vertex         
124         Double_t vtx2daughter0[3] = {0,0,0};   // secondary vertex from daughter 0
125         Double_t vtx2daughter1[3] = {0,0,0};   // secondary vertex from daughter 1
126         fmcPartCandidate->XvYvZv(vtx1);  // cm
127
128         Int_t daughter0 = fmcPartCandidate->GetDaughter(0);
129         Int_t daughter1 = fmcPartCandidate->GetDaughter(1);
130         AliAODMCParticle* mcPartDaughter0 = dynamic_cast<AliAODMCParticle*>(fmcArray->At(daughter0));
131         AliAODMCParticle* mcPartDaughter1 = dynamic_cast<AliAODMCParticle*>(fmcArray->At(daughter1));
132         if(!mcPartDaughter0 || !mcPartDaughter1) return bGenValues;
133
134         // getting vertex from daughters
135         mcPartDaughter0->XvYvZv(vtx2daughter0);  // cm
136         mcPartDaughter1->XvYvZv(vtx2daughter1);  //cm
137         if (TMath::Abs(vtx2daughter0[0] - vtx2daughter1[0]) > 1E-5 || TMath::Abs(vtx2daughter0[1] - vtx2daughter1[1]) > 1E-5 || TMath::Abs(vtx2daughter0[2] - vtx2daughter1[2])>1E-5) {
138                 AliError("Daughters have different secondary vertex, skipping the track");
139                 return bGenValues;
140         }
141         
142         Int_t nprongs = 2;
143         Short_t charge = 0;
144         // always instantiate the AliAODRecoDecay with the positive daughter first, the negative second
145         AliAODMCParticle* positiveDaugh = mcPartDaughter0;
146         AliAODMCParticle* negativeDaugh = mcPartDaughter1;
147         if (mcPartDaughter0->GetPdgCode()<0 && mcPartDaughter1->GetPdgCode()>0){
148                 // inverting in case the positive daughter is the second one
149                 positiveDaugh = mcPartDaughter1;
150                 negativeDaugh = mcPartDaughter0;
151         }
152         // getting the momentum from the daughters
153         Double_t px[2] = {positiveDaugh->Px(), negativeDaugh->Px()};            
154         Double_t py[2] = {positiveDaugh->Py(), negativeDaugh->Py()};            
155         Double_t pz[2] = {positiveDaugh->Pz(), negativeDaugh->Pz()};
156         
157         Double_t d0[2] = {0.,0.};               
158         
159         AliAODRecoDecayHF* decay = new AliAODRecoDecayHF(vtx1,vtx2daughter0,nprongs,charge,px,py,pz,d0);
160         
161         Double_t cosThetaStar = 0.;
162         Double_t cosThetaStarD0 = 0.;
163         Double_t cosThetaStarD0bar = 0.;
164         cosThetaStarD0 = decay->CosThetaStar(1,421,211,321);
165         cosThetaStarD0bar = decay->CosThetaStar(0,421,321,211);
166         if (fmcPartCandidate->GetPdgCode() == 421){  // D0
167                 AliDebug(3, Form("D0, with pdgprong0 = %d, pdgprong1 = %d",mcPartDaughter0->GetPdgCode(),mcPartDaughter1->GetPdgCode()));
168                 cosThetaStar = cosThetaStarD0;
169         }
170         else if (fmcPartCandidate->GetPdgCode() == -421){  // D0bar{
171                 AliDebug(3, Form("D0bar, with pdgprong0 = %d, pdgprong1 = %d",mcPartDaughter0->GetPdgCode(),mcPartDaughter1->GetPdgCode()));
172                 cosThetaStar = cosThetaStarD0bar;
173         }
174         else{
175                 AliWarning("There are problems!! particle was expected to be either a D0 or a D0bar, check...");
176                 return vectorMC;
177         }
178         if (cosThetaStar < -1 || cosThetaStar > 1) {
179                 AliWarning("Invalid value for cosine Theta star, returning");
180                 return bGenValues;
181         }
182                 
183         //ct
184         Double_t cT = decay->Ct(421);
185         // get the pT of the daughters
186         Double_t pTpi = 0.;
187         Double_t pTK = 0.;
188         
189         if (TMath::Abs(mcPartDaughter0->GetPdgCode()) == 211) {
190                 pTpi = mcPartDaughter0->Pt();
191                 pTK = mcPartDaughter1->Pt();
192         }
193         else {
194                 pTpi = mcPartDaughter1->Pt();
195                 pTK = mcPartDaughter0->Pt();
196         }
197         
198         switch (fConfiguration){
199         case AliCFTaskVertexingHF::kSnail:
200                 vectorMC[0] = fmcPartCandidate->Pt();
201                 vectorMC[1] = fmcPartCandidate->Y() ;
202                 vectorMC[2] = cosThetaStar ;
203                 vectorMC[3] = pTpi ;
204                 vectorMC[4] = pTK ;
205                 vectorMC[5] = cT*1.E4 ;  // in micron
206                 vectorMC[6] = 0.;   // dummy value for dca, meaningless in MC
207                 vectorMC[7] = -80000.; // dummy value for d0pixd0K, meaningless in MC, in micron^2
208                 vectorMC[8] = 1.01;    // dummy value for cosPointing, meaningless in MC
209                 vectorMC[9] = fmcPartCandidate->Phi(); 
210                 vectorMC[10] = fzMCVertex;    // z of reconstructed of primary vertex
211                 vectorMC[11] = fCentValue;   //reconstructed centrality 
212                 vectorMC[12] = 1.;           // fake: always filling with 1 at MC level 
213                 vectorMC[13] = 1.01; // dummy value for cosPointingXY  multiplicity
214                 vectorMC[14] = 0.; // dummy value for NormalizedDecayLengthXY multiplicity
215                 vectorMC[15] = fMultiplicity; // reconstructed multiplicity
216                 break;
217         case AliCFTaskVertexingHF::kCheetah:
218                 vectorMC[0] = fmcPartCandidate->Pt();
219                 vectorMC[1] = fmcPartCandidate->Y() ;
220                 vectorMC[2] = cT*1.E4; // in micron
221                 vectorMC[3] = fmcPartCandidate->Phi();
222                 vectorMC[4] = fzMCVertex;
223                 vectorMC[5] = fCentValue;   // dummy value for dca, meaningless in MC
224                 vectorMC[6] = 1. ;  // fake: always filling with 1 at MC level 
225                 vectorMC[7] = fMultiplicity;   // dummy value for d0pi, meaningless in MC, in micron
226                 break;
227         }
228         delete decay;
229         bGenValues = kTRUE;
230         return bGenValues;
231 }
232 //____________________________________________
233 Bool_t AliCFVertexingHF2Prong::GetRecoValuesFromCandidate(Double_t *vectorReco) const
234 {
235         //
236         // Getting the reconstructed values from the candidate
237         // 
238         
239         Bool_t bFillRecoValues=kFALSE;
240         
241         AliAODRecoDecayHF2Prong *d0toKpi = (AliAODRecoDecayHF2Prong*)fRecoCandidate;
242         
243         if (d0toKpi->GetPrimaryVtx())AliDebug(3,"d0toKpi has primary vtx\n");
244         if (fRecoCandidate->GetPrimaryVtx())AliDebug(3,"fRecoCandidate has primary vtx\n");
245         
246         Double_t pt = d0toKpi->Pt();
247         Double_t rapidity = d0toKpi->YD0();
248         Double_t invMass=0.;
249         Double_t cosThetaStar = 9999.;
250         Double_t pTpi = 0.;
251         Double_t pTK = 0.;
252         Double_t dca = d0toKpi->GetDCA();
253         Double_t d0pi = 0.;
254         Double_t d0K = 0.;
255         Double_t d0xd0 = d0toKpi->Prodd0d0();
256         Double_t cosPointingAngle = d0toKpi->CosPointingAngle();
257         Double_t phi = d0toKpi->Phi();
258         Int_t pdgCode = fmcPartCandidate->GetPdgCode();
259         Double_t cosPointingAngleXY = d0toKpi->CosPointingAngleXY();
260         Double_t normDecayLengthXY = d0toKpi->NormalizedDecayLengthXY();
261        
262         if (pdgCode > 0){
263                 cosThetaStar = d0toKpi->CosThetaStarD0();
264                 pTpi = d0toKpi->PtProng(0);
265                 pTK = d0toKpi->PtProng(1);
266                 d0pi = d0toKpi->Getd0Prong(0);
267                 d0K = d0toKpi->Getd0Prong(1);
268                 invMass=d0toKpi->InvMassD0();
269         }
270         else {
271                 cosThetaStar = d0toKpi->CosThetaStarD0bar();
272                 pTpi = d0toKpi->PtProng(1);
273                 pTK = d0toKpi->PtProng(0);
274                 d0pi = d0toKpi->Getd0Prong(1);
275                 d0K = d0toKpi->Getd0Prong(0);
276                 invMass= d0toKpi->InvMassD0bar();
277         }
278         
279         Double_t cT = d0toKpi->CtD0();  
280         
281         switch (fConfiguration){
282         case AliCFTaskVertexingHF::kSnail:
283                 vectorReco[0] = pt;
284                 vectorReco[1] = rapidity;
285                 vectorReco[2] = cosThetaStar;
286                 vectorReco[3] = pTpi;
287                 vectorReco[4] = pTK;
288                 vectorReco[5] = cT*1.E4;  // in micron
289                 vectorReco[6] = dca*1.E4;  // in micron
290                 vectorReco[7] = d0xd0*1.E8;  // in micron^2
291                 vectorReco[8] = cosPointingAngle; 
292                 vectorReco[9] = phi;  
293                 vectorReco[10] = fzPrimVertex;    // z of reconstructed of primary vertex
294                 vectorReco[11] = fCentValue; //reconstructed centrality 
295                 vectorReco[12] = fFake;      // whether the reconstructed candidate was a fake (fFake = 0) or not (fFake = 2) 
296                 vectorReco[13] = cosPointingAngleXY; 
297                 vectorReco[14] = normDecayLengthXY; // in cm
298                 vectorReco[15] = fMultiplicity; // reconstructed multiplicity
299                 break;
300         case AliCFTaskVertexingHF::kCheetah:
301                 vectorReco[0] = pt;
302                 vectorReco[1] = rapidity ;
303                 vectorReco[2] = cT*1.E4; // in micron
304                 vectorReco[3] = phi; 
305                 vectorReco[4] = fzPrimVertex;
306                 vectorReco[5] = fCentValue;   
307                 vectorReco[6] = fFake ; 
308                 vectorReco[7] = fMultiplicity;  
309                 break;
310         }
311
312         bFillRecoValues = kTRUE;
313
314         return bFillRecoValues;
315 }
316
317 //_____________________________________________________________
318 Bool_t AliCFVertexingHF2Prong::CheckMCChannelDecay() const
319
320         //
321         // checking the MC decay channel
322         //
323         Bool_t checkCD = kFALSE;
324         Int_t daughter0 = fmcPartCandidate->GetDaughter(0);
325         Int_t daughter1 = fmcPartCandidate->GetDaughter(1);
326         AliAODMCParticle* mcPartDaughter0 = dynamic_cast<AliAODMCParticle*>(fmcArray->At(daughter0));
327         AliAODMCParticle* mcPartDaughter1 = dynamic_cast<AliAODMCParticle*>(fmcArray->At(daughter1));
328         
329         if (!mcPartDaughter0 || !mcPartDaughter1) {
330                 AliDebug (2,"Problems in the MC Daughters\n");
331                 return checkCD;
332         }
333         
334         if (!(TMath::Abs(mcPartDaughter0->GetPdgCode())==321 &&
335               TMath::Abs(mcPartDaughter1->GetPdgCode())==211) && 
336             !(TMath::Abs(mcPartDaughter0->GetPdgCode())==211 &&
337               TMath::Abs(mcPartDaughter1->GetPdgCode())==321)) {
338                 AliDebug(2, "The D0 MC doesn't come from a Kpi decay, skipping!!");
339                 return checkCD;  
340         }
341         
342         checkCD = kTRUE;
343         return checkCD;
344         
345 }
346