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b2a297fa 1#ifndef ALIDIELECTRONVARMANAGER_H
2#define ALIDIELECTRONVARMANAGER_H
3/* Copyright(c) 1998-2009, ALICE Experiment at CERN, All rights reserved. *
4 * See cxx source for full Copyright notice */
5
6//#############################################################
7//# #
8//# Class AliDielectronVarManager #
9//# Class for management of available variables #
10//# #
11//# Authors: #
12//# Anton Andronic, GSI / A.Andronic@gsi.de #
13//# Ionut C. Arsene, GSI / I.C.Arsene@gsi.de #
14//# Julian Book, Uni Ffm / Julian.Book@cern.ch #
572b0139 15//# Markus Köhler, GSI / M.Koehler@gsi.de #
6551594b 16//# Frederick Kramer, Uni Ffm / Frederick.Kramer@cern.ch #
b2a297fa 17//# Magnus Mager, CERN / Magnus.Mager@cern.ch #
18//# WooJin J. Park, GSI / W.J.Park@gsi.de #
19//# Jens Wiechula, Uni HD / Jens.Wiechula@cern.ch #
20//# #
21//#############################################################
22
b2a297fa 23#include <TNamed.h>
5720c765 24#include <TProfile.h>
a823f01b 25#include <TProfile2D.h>
5720c765 26#include <TH3D.h>
27#include <TFile.h>
28#include <TDatabasePDG.h>
29#include <TKey.h>
29091f0d 30#include <TBits.h>
b2a297fa 31
32#include <AliVEvent.h>
33#include <AliESDEvent.h>
6551594b 34#include <AliAODEvent.h>
35#include <AliMCEvent.h>
36#include <AliVVertex.h>
37#include <AliESDVertex.h>
5720c765 38#include <AliEventplane.h>
39
40#include <AliESDVZERO.h>
41#include <AliAODVZERO.h>
b2a297fa 42
43#include <AliVParticle.h>
b2a297fa 44#include <AliESDtrack.h>
45#include <AliAODTrack.h>
572b0139 46#include <AliAODPid.h>
b2a297fa 47#include <AliKFParticle.h>
572b0139 48#include <AliKFVertex.h>
b2a297fa 49#include <AliMCParticle.h>
50#include <AliAODMCParticle.h>
51#include <AliVTrack.h> // ?
52
6551594b 53#include <AliExternalTrackParam.h>
54#include <AliESDpid.h>
4649c75b 55#include <AliCentrality.h>
2a14a7b1 56#include <AliAODpidUtil.h>
8df8e382 57#include <AliPID.h>
ba15fdfb 58#include <AliPIDResponse.h>
6551594b 59
b2a297fa 60#include "AliDielectronPair.h"
8df8e382 61#include "AliDielectronMC.h"
48609e3d 62#include "AliDielectronPID.h"
ba15fdfb 63#include "AliDielectronHelper.h"
b2a297fa 64
65class AliVEvent;
66
67//________________________________________________________________
68class AliDielectronVarManager : public TNamed {
69
70public:
8df8e382 71
b2a297fa 72 // Particle specific variables
73 enum ValueTypes {
74 kPx = 0, // px
75 kPy, // py
76 kPz, // pz
77 kPt, // transverse momentum
78 kP, // momentum
79 kXv, // vertex position in x
80 kYv, // vertex position in y
81 kZv, // vertex position in z
82 kOneOverPt, // 1/pt
83 kPhi, // phi angle
84 kTheta, // theta angle
85 kEta, // pseudo-rapidity
86 kY, // rapidity
87 kE, // energy
88 kM, // mass
89 kCharge, // charge
90 kNclsITS, // number of clusters assigned in the ITS
5720c765 91 kITSchi2Cl, // chi2/cl in the ITS
b2a297fa 92 kNclsTPC, // number of clusters assigned in the TPC
5720c765 93 kNclsSTPC, // number of shared clusters assigned in the TPC
94 kNclsSFracTPC, // fraction of shared clusters assigned in the TPC
554e40f8 95 kNclsTPCiter1, // number of clusters assigned in the TPC after first iteration
b2a297fa 96 kNFclsTPC, // number of findable clusters in the TPC
09835c8f 97 kNFclsTPCr, // number of findable clusters(crossed rows) in the TPC with more robust definition
fb7d2d99 98 kNFclsTPCrFrac, // number of found/findable clusters in the TPC with more robust definition
fdda39b6 99 kNFclsTPCfCross, // fraction crossed rows/findable clusters in the TPC, as done in AliESDtrackCuts
b2a297fa 100 kTPCsignalN, // number of points used for dEdx
ba15fdfb 101 kTPCsignalNfrac, // fraction of points used for dEdx / cluster used for tracking
61d106d3 102 kTPCchi2Cl, // chi2/cl in TPC
5720c765 103 kTPCclsDiff, // TPC cluster difference
29091f0d 104 kTPCclsSegments, // TPC cluster segments
61d106d3 105 kTrackStatus, // track status bits
07480df6 106 kFilterBit, // AOD filter bits
107
b2a297fa 108 kNclsTRD, // number of clusters assigned in the TRD
109 kTRDntracklets, // number of TRD tracklets used for tracking/PID TODO: correct getter
110 kTRDpidQuality, // number of TRD tracklets used for PID
67fd1119 111 kTRDchi2, // chi2 in TRD
8df8e382 112 kTRDprobEle, // TRD electron pid probability
113 kTRDprobPio, // TRD electron pid probability
07480df6 114 kTRDprob2DEle, // TRD electron pid probability 2D LQ
115 kTRDprob2DPio, // TRD electron pid probability 2D LQ
5720c765 116 kTRDphi, // Phi angle of the track at the entrance of the TRD
117 kTRDpidEffLeg, // TRD pid efficiency from conversion electrons
8df8e382 118
b2a297fa 119 kImpactParXY, // Impact parameter in XY plane
120 kImpactParZ, // Impact parameter in Z
121 kTrackLength, // Track length
8df8e382 122
5720c765 123 kPdgCode, // PDG code
fdda39b6 124 kPdgCodeMother,
5720c765 125 kPdgCodeGrandMother, // PDG code of the grandmother
1bb1fef1 126 kHasCocktailMother, // true if particle is added via MC generator cocktail (AliDielectronSignal::kDirect)
127 kHasCocktailGrandMother, // true if particle is added via MC generator cocktail (AliDielectronSignal::kDirect)
8df8e382 128 kNumberOfDaughters, // number of daughters
129 kHaveSameMother, // check that particles have the same mother (MC)
fb7d2d99 130 kIsJpsiPrimary, // check if the particle is primary (MC)
5720c765 131 kNumberOfJPsis, // number of generated inclusive jpsis per event (MC)
132 kNumberOfJPsisPrompt, // number of generated prompt jpsis per event (MC)
133 kNumberOfJPsisNPrompt, // number of generated non-prompt jpsis per event (MC)
134
135 kITSsignal, // ITS dE/dx signal
136 kITSsignalSSD1, // SSD1 dE/dx signal
137 kITSsignalSSD2, // SSD2 dE/dx signal
138 kITSsignalSDD1, // SDD1 dE/dx signal
139 kITSsignalSDD2, // SDD2 dE/dx signal
140 kITSclusterMap, // ITS cluster map
141 kITSLayerFirstCls, // No of innermost ITS layer with a cluster of a track
9143d69f 142 kITSnSigmaEle, // number of sigmas to the dE/dx electron line in the ITS
143 kITSnSigmaPio, // number of sigmas to the dE/dx pion line in the ITS
144 kITSnSigmaMuo, // number of sigmas to the dE/dx muon line in the ITS
145 kITSnSigmaKao, // number of sigmas to the dE/dx kaon line in the ITS
146 kITSnSigmaPro, // number of sigmas to the dE/dx proton line in the ITS
8df8e382 147
b2a297fa 148 kPIn, // momentum at inner wall of TPC (if available), used for PID
5720c765 149 kPOut, // momentum at outer wall of TPC, used for TRD studies
150 kYsignedIn, // signed local y at inner wall of TPC
b2a297fa 151 kTPCsignal, // TPC dE/dx signal
ba15fdfb 152
5720c765 153 kTOFsignal, // TOF signal
154 kTOFbeta, // TOF beta
155 kTOFPIDBit, // TOF PID bit (1:set, 0:TOF not available)
ba15fdfb 156
6551594b 157 kTPCnSigmaEle, // number of sigmas to the dE/dx electron line in the TPC
572b0139 158 kTPCnSigmaPio, // number of sigmas to the dE/dx pion line in the TPC
159 kTPCnSigmaMuo, // number of sigmas to the dE/dx muon line in the TPC
160 kTPCnSigmaKao, // number of sigmas to the dE/dx kaon line in the TPC
161 kTPCnSigmaPro, // number of sigmas to the dE/dx proton line in the TPC
162
5720c765 163 kTOFnSigmaEle, // number of sigmas to the electron line in the TOF
572b0139 164 kTOFnSigmaPio, // number of sigmas to the pion line in the TOF
165 kTOFnSigmaMuo, // number of sigmas to the muon line in the TOF
166 kTOFnSigmaKao, // number of sigmas to the kaon line in the TOF
167 kTOFnSigmaPro, // number of sigmas to the proton line in the TOF
8df8e382 168
5720c765 169 kEMCALnSigmaEle, // number of sigmas to the proton line in the TOF
a823f01b 170 kEMCALEoverP, // E over P from EMCAL
88204efa 171 kEMCALE, // E from EMCAL
a823f01b 172 kEMCALNCells, // NCells from EMCAL
173 kEMCALM02, // M02 showershape parameter
174 kEMCALM20, // M20 showershape parameter
175 kEMCALDispersion, // Dispersion paramter
5720c765 176
88e9bae6 177 kV0Index0, // v0 index 0
ffbede40 178 kKinkIndex0, // kink index 0
179
b2a297fa 180 kParticleMax, //
181 // TODO: kRNClusters ??
5720c765 182 // AliDielectronPair specific variables
b2a297fa 183 kChi2NDF = kParticleMax, // Chi^2/NDF
184 kDecayLength, // decay length
185 kR, // distance to the origin
186 kOpeningAngle, // opening angle
2e02dba4 187 kCosPointingAngle, // cosine of the pointing angle
8df8e382 188 // helicity picture: Z-axis is considered the direction of the mother's 3-momentum vector
189 kThetaHE, // theta in mother's rest frame in the helicity picture
190 kPhiHE, // phi in mother's rest frame in the helicity picture
1762f182 191 kThetaSqHE, // squared value of kThetaHE
5720c765 192 kCos2PhiHE, // Cosine of 2*phi in mother's rest frame in the helicity picture
8d7a07b9 193 kCosTilPhiHE, // Shifted phi depending on kThetaHE
8df8e382 194 // Collins-Soper picture: Z-axis is considered the direction of the vectorial difference between
195 // the 3-mom vectors of target and projectile beams
196 kThetaCS, // theta in mother's rest frame in Collins-Soper picture
197 kPhiCS, // phi in mother's rest frame in Collins-Soper picture
1762f182 198 kThetaSqCS, // squared value of kThetaCS
236e1bda 199 kPsiPair, // phi in mother's rest frame in Collins-Soper picture
8d7a07b9 200 kPhivPair, // angle between ee plane and the magnetic field (can be useful for conversion rejection)
5720c765 201 kCos2PhiCS, // Cosine of 2*phi in mother's rest frame in the Collins-Soper picture
8d7a07b9 202 kCosTilPhiCS, // Shifted phi depending on kThetaCS
5720c765 203 kDeltaPhiV0ArpH2, // Delta phi of the pair with respect to the 2nd order harmonic reaction plane from V0-A
204 kDeltaPhiV0CrpH2, // Delta phi of the pair with respect to the 2nd order harmonic reaction plane from V0-C
205 kDeltaPhiV0ACrpH2, // Delta phi of the pair with respect to the 2nd order harmonic reaction plane from V0-A + V0-C
206 kV0ArpH2FlowV2, // v2 coefficient with respect to the 2nd order reaction plane from V0-A
207 kV0CrpH2FlowV2, // v2 coefficient with respect to the 2nd order reaction plane from V0-C
208 kV0ACrpH2FlowV2, // v2 coefficient with respect to the 2nd order reaction plane from V0-A + V0-C
572b0139 209 kLegDist, // distance of the legs
210 kLegDistXY, // distance of the legs in XY
61d106d3 211 kDeltaEta, // Absolute value of Delta Eta for the legs
212 kDeltaPhi, // Absolute value of Delta Phi for the legs
b2a297fa 213 kMerr, // error of mass calculation
214 kDCA, // distance of closest approach TODO: not implemented yet
215 kPairType, // type of the pair, like like sign ++ unlikesign ...
ba15fdfb 216 kPseudoProperTime, // pseudo proper time
e4339752 217 kPseudoProperTimeErr, // pseudo proper time error
5720c765 218 kPseudoProperTimeResolution, // resolution for pseudo proper decay time (reconstructed - MC truth)
219 kPseudoProperTimePull, // normalizd resolution for pseudo proper time = (reco - MC truth)/dReco
220 kTRDpidEffPair, // TRD pid efficieny from conversion electrons
b2a297fa 221 kPairMax, //
222 // Event specific variables
6551594b 223 kXvPrim=kPairMax, // prim vertex
224 kYvPrim, // prim vertex
225 kZvPrim, // prim vertex
226 kXRes, // primary vertex x-resolution
227 kYRes, // primary vertex y-resolution
228 kZRes, // primary vertex z-resolution
20b6b7d4 229 kPhiMaxPt, // phi angle of the track with maximum pt
230 kMaxPt, // track with maximum pt
5720c765 231
e4339752 232 //// v0 reaction plane quantities from AliEPSelectionTaks
fd6ebd85 233 kv0ArpH2, // VZERO-A reaction plane of the Q vector for 2nd harmonic
234 kv0CrpH2, // reaction plane
235 kv0ACrpH2, // VZERO-AC reaction plane of the Q vector for 2nd harmonic
236 kv0AxH2, // VZERO-A x-component of the Q vector for 2nd harmonic
237 kv0AyH2, // VZERO-A y-component of the Q vector for 2nd harmonic
238 kv0CxH2, // VZERO-C x-component of the Q vector for 2nd harmonic
239 kv0CyH2, // VZERO-C y-component of the Q vector for 2nd harmonic
240 kv0ACxH2, // VZERO-AC x-component of the Q vector for 2nd harmonic
241 kv0ACyH2, // VZERO-AC y-component of the Q vector for 2nd harmonic
20b6b7d4 242 kv0AmagH2, // VZERO-A the Q vectors magnitude for 2nd harmonic
243 kv0CmagH2, // VZERO-A the Q vectors magnitude for 2nd harmonic
244 kv0ACmagH2, // VZERO-A the Q vectors magnitude for 2nd harmonic
fd6ebd85 245 kv0A0rpH2, // VZERO-A 1st ring reaction plane of the Q vector for 2nd harmonic
246 kv0A3rpH2, // VZERO-A last ring reaction plane of the Q vector for 2nd harmonic
247 kv0C0rpH2, // VZERO-C 1st ring reaction plane of the Q vector for 2nd harmonic
248 kv0C3rpH2, // VZERO-C last ring reaction plane of the Q vector for 2nd harmonic
a3cde8ca 249 kDeltaPhiv0ArpH2, // Delta phi of the pair with respect to the 2nd order harmonic reaction plane from V0-A
250 kDeltaPhiv0CrpH2, // Delta phi of the pair with respect to the 2nd order harmonic reaction plane from V0-C
251 kDeltaPhiv0ACrpH2, // Delta phi of the pair with respect to the 2nd order harmonic reaction plane from V0-AC
5720c765 252 kv0ATPCDiffH2, // V0A-TPC reaction plane difference for 2nd harmonic
253 kv0CTPCDiffH2, // V0C-TPC reaction plane difference for 2nd harmonic
254 kv0Av0CDiffH2, // V0A-V0C reaction plane difference for 2nd harmonic
1d2d723c 255 kv0Av0C0DiffH2, // V0A-ring 0 ofV0C reaction plane difference for 2nd harmonic
256 kv0Av0C3DiffH2, // V0A-ring 3 ofV0C reaction plane difference for 2nd harmonic
257 kv0Cv0A0DiffH2, // V0C-ring 0 ofV0A reaction plane difference for 2nd harmonic
258 kv0Cv0A3DiffH2, // V0C-ring 3 ofV0A reaction plane difference for 2nd harmonic
259 kv0A0v0A3DiffH2, // V0C-ring 0 ofV0A reaction plane difference for 2nd harmonic
260 kv0C0v0C3DiffH2, // V0C-ring 0 ofV0A reaction plane difference for 2nd harmonic
e4339752 261 kv0ArpH2FlowV2, // v2 coefficient with respect to the 2nd order reaction plane from V0-A
262 kv0CrpH2FlowV2, // v2 coefficient with respect to the 2nd order reaction plane from V0-C
263 kv0ACrpH2FlowV2, // v2 coefficient with respect to the 2nd order reaction plane from V0-A + V0-C
5720c765 264
265 kMultV0A, // VZERO multiplicity and ADC amplitudes
266 kMultV0C,
267 kMultV0,
268 kAdcV0A,
269 kAdcV0C,
270 kAdcV0,
271 kVZEROchMult,
272 // VZERO reaction plane quantities
273 kV0AxH2=kVZEROchMult+64, // VZERO-A x-component of the Q vector for 2nd harmonic
274 kV0AyH2, // VZERO-A y-component of the Q vector for 2nd harmonic
275 kV0ArpH2, // VZERO-A reaction plane of the Q vector for 2nd harmonic
276 kV0CxH2, // VZERO-C x-component of the Q vector for 2nd harmonic
277 kV0CyH2, // y-component
278 kV0CrpH2, // reaction plane
279 kV0ACxH2, // VZERO-AC x-component of the Q vector for 2nd harmonic
280 kV0ACyH2, // VZERO-AC y-component of the Q vector for 2nd harmonic
281 kV0ACrpH2, // VZERO-AC reaction plane of the Q vector for 2nd harmonic
282 kV0ArpResH2, // 2nd harmonic reaction plane resolution for V0A
283 kV0CrpResH2, // V0C
284 kV0ACrpResH2, // V0A+V0C
285 kV0XaXcH2, // Correlation quantities to check V0 reaction plane quality
286 kV0XaYaH2,
287 kV0XaYcH2,
288 kV0YaXcH2,
289 kV0YaYcH2,
290 kV0XcYcH2,
291 kV0ATPCDiffH2, // V0A-TPC reaction plane difference for 2nd harmonic
292 kV0CTPCDiffH2, // V0C-TPC reaction plane difference for 2nd harmonic
293 kV0AV0CDiffH2, // V0A-V0C reaction plane difference for 2nd harmonic
294 // TPC reaction plane quantities
295 kTPCxH2, // TPC x-component of the Q vector for 2nd harmonic (corrected)
296 kTPCyH2, // TPC y-component of the Q vector for 2nd harmonic (corrected)
20b6b7d4 297 kTPCmagH2, // TPC reaction plane the Q vectors magnitude for 2nd harmonic (corrected)
298 kTPCrpH2, // TPC reaction plane angle of the Q vector for 2nd harmonic (corrected)
5720c765 299 kTPCsub1xH2, // TPC x-component of the Q vector for 2nd harmonic (corrected, sub event 1)
300 kTPCsub1yH2, // TPC y-component of the Q vector for 2nd harmonic (corrected, sub event 1)
301 kTPCsub1rpH2, // TPC reaction plane of the Q vector for 2nd harmonic (corrected, sub event 1)
302 kTPCsub2xH2, // TPC x-component of the Q vector for 2nd harmonic (corrected, sub event 2)
303 kTPCsub2yH2, // TPC y-component of the Q vector for 2nd harmonic (corrected, sub event 2)
304 kTPCsub2rpH2, // TPC reaction plane of the Q vector for 2nd harmonic (corrected, sub event 2)
305 kTPCsub12DiffH2, // TPC reaction plane difference of sub event 1,2 for 2nd harmonic
306 kTPCsub12DiffH2Sin, // TPC reaction plane difference of sub event 1,2 for 2nd harmonic, sinus term
307
308 kTPCxH2uc, // TPC x-component of the Q vector for 2nd harmonic (uncorrected)
309 kTPCyH2uc, // TPC y-component of the Q vector for 2nd harmonic (uncorrected)
20b6b7d4 310 kTPCmagH2uc, // TPC reaction plane the Q vectors magnitude for 2nd harmonic (uncorrected)
311 kTPCrpH2uc, // TPC reaction plane angle of the Q vector for 2nd harmonic (uncorrected)
5720c765 312 kTPCsub1xH2uc, // TPC x-component of the Q vector for 2nd harmonic (uncorrected, sub event 1)
313 kTPCsub1yH2uc, // TPC y-component of the Q vector for 2nd harmonic (uncorrected, sub event 1)
314 kTPCsub1rpH2uc, // TPC reaction plane of the Q vector for 2nd harmonic (uncorrected, sub event 1)
315 kTPCsub2xH2uc, // TPC x-component of the Q vector for 2nd harmonic (uncorrected, sub event 2)
316 kTPCsub2yH2uc, // TPC y-component of the Q vector for 2nd harmonic (uncorrected, sub event 2)
317 kTPCsub2rpH2uc, // TPC reaction plane of the Q vector for 2nd harmonic (uncorrected, sub event 2)
318 kTPCsub12DiffH2uc, // TPC reaction plane difference of sub event 1,2 for 2nd harmonic (uncorrected)
319
ba15fdfb 320 kNTrk, // number of tracks (or tracklets) TODO: ambiguous
321 kTracks, // ESD tracks TODO: ambiguous
a823f01b 322 kNVtxContrib, // number of primary vertex contibutors
ba15fdfb 323 kNacc, // Number of accepted tracks
5720c765 324 kNaccTrcklts, // number of accepted SPD tracklets in |eta|<1.6
325 kNaccTrcklts0916, // number of accepted SPD tracklets in 0.9<|eta|<1.6
326
327 kNaccTrckltsEsd05, // number of accepted SPD tracklets in |eta|<0.5 (AliESDEvent::EstimateMultiplicity())
328 kNaccTrckltsEsd10, // number of accepted SPD tracklets in |eta|<1.0 (AliESDEvent::EstimateMultiplicity())
329 kNaccTrckltsEsd16, // number of accepted SPD tracklets in |eta|<1.6 (AliESDEvent::EstimateMultiplicity())
330 kNaccTrckltsEsd05Corr, //
331 kNaccTrckltsEsd10Corr, //
332 kNaccTrckltsEsd16Corr, //
333 kNaccItsTpcEsd05, // ITS-TPC tracks + ITS SA complementary tracks + tracklets from unassigned tracklets in |eta|<0.5 (AliESDEvent::EstimateMultiplicity())
334 kNaccItsTpcEsd10, // ITS-TPC tracks + ITS SA complementary tracks + tracklets from unassigned tracklets in |eta|<1.0 (AliESDEvent::EstimateMultiplicity())
335 kNaccItsTpcEsd16, // ITS-TPC tracks + ITS SA complementary tracks + tracklets from unassigned tracklets in |eta|<1.6 (AliESDEvent::EstimateMultiplicity())
336 kNaccItsTpcEsd05Corr, //
337 kNaccItsTpcEsd10Corr, //
338 kNaccItsTpcEsd16Corr, //
339
340 kNaccItsPureEsd05, // ITS SA tracks + tracklets from unassigned tracklets in |eta|<0.5 (AliESDEvent::EstimateMultiplicity())
341 kNaccItsPureEsd10, // ITS SA tracks + tracklets from unassigned tracklets in |eta|<1.0 (AliESDEvent::EstimateMultiplicity())
342 kNaccItsPureEsd16, // ITS SA tracks + tracklets from unassigned tracklets in |eta|<1.6 (AliESDEvent::EstimateMultiplicity())
343 kNaccItsPureEsd05Corr, //
344 kNaccItsPureEsd10Corr, //
345 kNaccItsPureEsd16Corr, //
346
347 kNch, // MC true number of charged particles in |eta|<1.6
348 kNch05, // MC true number of charged particles in |eta|<0.5
349 kNch10, // MC true number of charged particles in |eta|<1.0
350
ffbede40 351 kCentrality, // event centrality fraction
a823f01b 352 kCentralitySPD, // centrality using SPD
6551594b 353 kNevents, // event counter
5720c765 354 kRunNumber, // run number
d327d9cd 355 kMixingBin,
b2a297fa 356 kNMaxValues //
357 // TODO: (for A+A) ZDCEnergy, impact parameter, Iflag??
358 };
359
360
361 AliDielectronVarManager();
362 AliDielectronVarManager(const char* name, const char* title);
363 virtual ~AliDielectronVarManager();
364 static void Fill(const TObject* particle, Double_t * const values);
ba15fdfb 365 static void FillVarMCParticle2(const AliVParticle *p1, const AliVParticle *p2, Double_t * const values);
b2a297fa 366
6551594b 367 static void InitESDpid(Int_t type=0);
2a14a7b1 368 static void InitAODpidUtil(Int_t type=0);
5720c765 369 static void InitEstimatorAvg(const Char_t* filename);
370 static void InitTRDpidEffHistograms(const Char_t* filename);
a823f01b 371 static void SetVZEROCalibrationFile(const Char_t* filename) {fgVZEROCalibrationFile = filename;}
372
373 static void SetVZERORecenteringFile(const Char_t* filename) {fgVZERORecenteringFile = filename;}
ba15fdfb 374 static void SetPIDResponse(AliPIDResponse *pidResponse) {fgPIDResponse=pidResponse;}
5720c765 375 static AliPIDResponse* GetPIDResponse() { return fgPIDResponse; }
572b0139 376 static void SetEvent(AliVEvent * const ev);
5720c765 377 static void SetEventData(const Double_t data[AliDielectronVarManager::kNMaxValues]);
2a14a7b1 378 static Bool_t GetDCA(const AliAODTrack *track, Double_t d0z0[2]);
5720c765 379 static void SetTPCEventPlane(AliEventplane *const evplane);
a823f01b 380 static void GetVzeroRP(const AliVEvent* event, Double_t* qvec, Int_t sideOption); // 0- V0A; 1- V0C; 2- V0A+V0C
5720c765 381
382 static TProfile* GetEstimatorHistogram(Int_t period, Int_t type) {return fgMultEstimatorAvg[period][type];}
383 static Double_t GetTRDpidEfficiency(Int_t runNo, Double_t centrality, Double_t eta, Double_t trdPhi, Double_t pout, Double_t& effErr);
ba15fdfb 384
385 static const AliKFVertex* GetKFVertex() {return fgKFVertex;}
386
90c1ae2d 387 static const char* GetValueName(Int_t i) { return (i>=0&&i<kNMaxValues)?fgkParticleNames[i][0]:""; }
388 static const char* GetValueLabel(Int_t i) { return (i>=0&&i<kNMaxValues)?fgkParticleNames[i][1]:""; }
389 static const char* GetValueUnit(Int_t i) { return (i>=0&&i<kNMaxValues)?fgkParticleNames[i][2]:""; }
07480df6 390 static UInt_t GetValueType(const char* valname);
ba15fdfb 391 static const Double_t* GetData() {return fgData;}
392
d327d9cd 393 static Double_t GetValue(ValueTypes var) {return fgData[var];}
394 static void SetValue(ValueTypes var, Double_t val) { fgData[var]=val; }
395
b2a297fa 396private:
397
90c1ae2d 398 static const char* fgkParticleNames[kNMaxValues][3]; //variable names
b2a297fa 399
400 static void FillVarVParticle(const AliVParticle *particle, Double_t * const values);
401 static void FillVarESDtrack(const AliESDtrack *particle, Double_t * const values);
402 static void FillVarAODTrack(const AliAODTrack *particle, Double_t * const values);
8df8e382 403 static void FillVarMCParticle(const AliMCParticle *particle, Double_t * const values);
b2a297fa 404 static void FillVarAODMCParticle(const AliAODMCParticle *particle, Double_t * const values);
405 static void FillVarDielectronPair(const AliDielectronPair *pair, Double_t * const values);
1201a1a9 406 static void FillVarKFParticle(const AliKFParticle *pair, Double_t * const values);
407
6551594b 408 static void FillVarVEvent(const AliVEvent *event, Double_t * const values);
409 static void FillVarESDEvent(const AliESDEvent *event, Double_t * const values);
410 static void FillVarAODEvent(const AliAODEvent *event, Double_t * const values);
411 static void FillVarMCEvent(const AliMCEvent *event, Double_t * const values);
5720c765 412 static void FillVarTPCEventPlane(const AliEventplane *evplane, Double_t * const values);
413
a823f01b 414 static void InitVZEROCalibrationHistograms(Int_t runNo);
415 static void InitVZERORecenteringHistograms(Int_t runNo);
416
ba15fdfb 417 static AliPIDResponse *fgPIDResponse; // PID response object
418 static AliVEvent *fgEvent; // current event pointer
5720c765 419 static AliEventplane *fgTPCEventPlane; // current event plane pointer
ba15fdfb 420 static AliKFVertex *fgKFVertex; // kf vertex
5720c765 421 static TProfile *fgMultEstimatorAvg[4][9]; // multiplicity estimator averages (4 periods x 9 estimators)
422 static Double_t fgTRDpidEffCentRanges[10][4]; // centrality ranges for the TRD pid efficiency histograms
423 static TH3D *fgTRDpidEff[10][4]; // TRD pid efficiencies from conversion electrons
a823f01b 424 static TString fgVZEROCalibrationFile; // file with VZERO channel-by-channel calibrations
425 static TString fgVZERORecenteringFile; // file with VZERO Q-vector averages needed for event plane recentering
426 static TProfile2D *fgVZEROCalib[64]; // 1 histogram per VZERO channel
427 static TProfile2D *fgVZERORecentering[2][2]; // 2 VZERO sides x 2 Q-vector components
2e02dba4 428 static Int_t fgCurrentRun; // current run number
a823f01b 429
ba15fdfb 430 static Double_t fgData[kNMaxValues]; //! data
572b0139 431
b2a297fa 432 AliDielectronVarManager(const AliDielectronVarManager &c);
433 AliDielectronVarManager &operator=(const AliDielectronVarManager &c);
434
435 ClassDef(AliDielectronVarManager,1);
436};
437
438
439//Inline functions
6551594b 440inline void AliDielectronVarManager::Fill(const TObject* object, Double_t * const values)
b2a297fa 441{
442 //
443 // Main function to fill all available variables according to the type of particle
444 //
40875e45 445 if (!object) return;
6551594b 446 if (object->IsA() == AliESDtrack::Class()) FillVarESDtrack(static_cast<const AliESDtrack*>(object), values);
447 else if (object->IsA() == AliAODTrack::Class()) FillVarAODTrack(static_cast<const AliAODTrack*>(object), values);
448 else if (object->IsA() == AliMCParticle::Class()) FillVarMCParticle(static_cast<const AliMCParticle*>(object), values);
449 else if (object->IsA() == AliAODMCParticle::Class()) FillVarAODMCParticle(static_cast<const AliAODMCParticle*>(object), values);
450 else if (object->IsA() == AliDielectronPair::Class()) FillVarDielectronPair(static_cast<const AliDielectronPair*>(object), values);
1201a1a9 451 else if (object->IsA() == AliKFParticle::Class()) FillVarKFParticle(static_cast<const AliKFParticle*>(object),values);
6551594b 452 // Main function to fill all available variables according to the type of event
453
454 else if (object->IsA() == AliVEvent::Class()) FillVarVEvent(static_cast<const AliVEvent*>(object), values);
455 else if (object->IsA() == AliESDEvent::Class()) FillVarESDEvent(static_cast<const AliESDEvent*>(object), values);
456 else if (object->IsA() == AliAODEvent::Class()) FillVarAODEvent(static_cast<const AliAODEvent*>(object), values);
457 else if (object->IsA() == AliMCEvent::Class()) FillVarMCEvent(static_cast<const AliMCEvent*>(object), values);
5720c765 458 else if (object->IsA() == AliEventplane::Class()) FillVarTPCEventPlane(static_cast<const AliEventplane*>(object), values);
1201a1a9 459// else printf(Form("AliDielectronVarManager::Fill: Type %s is not supported by AliDielectronVarManager!", object->ClassName())); //TODO: implement without object needed
b2a297fa 460}
461
462inline void AliDielectronVarManager::FillVarVParticle(const AliVParticle *particle, Double_t * const values)
463{
464 //
465 // Fill track information available in AliVParticle into an array
466 //
467 values[AliDielectronVarManager::kPx] = particle->Px();
468 values[AliDielectronVarManager::kPy] = particle->Py();
469 values[AliDielectronVarManager::kPz] = particle->Pz();
470 values[AliDielectronVarManager::kPt] = particle->Pt();
471 values[AliDielectronVarManager::kP] = particle->P();
472
473 values[AliDielectronVarManager::kXv] = particle->Xv();
474 values[AliDielectronVarManager::kYv] = particle->Yv();
475 values[AliDielectronVarManager::kZv] = particle->Zv();
476
ba15fdfb 477 values[AliDielectronVarManager::kOneOverPt] = (particle->Pt()>1.0e-3 ? particle->OneOverPt() : 0.0);
b2a297fa 478 values[AliDielectronVarManager::kPhi] = particle->Phi();
479 values[AliDielectronVarManager::kTheta] = particle->Theta();
480 values[AliDielectronVarManager::kEta] = particle->Eta();
481 values[AliDielectronVarManager::kY] = particle->Y();
8df8e382 482
b2a297fa 483 values[AliDielectronVarManager::kE] = particle->E();
484 values[AliDielectronVarManager::kM] = particle->M();
485 values[AliDielectronVarManager::kCharge] = particle->Charge();
2a14a7b1 486
487 values[AliDielectronVarManager::kPdgCode] = particle->PdgCode();
488
ba15fdfb 489// if ( fgEvent ) AliDielectronVarManager::Fill(fgEvent, values);
490 for (Int_t i=AliDielectronVarManager::kPairMax; i<AliDielectronVarManager::kNMaxValues; ++i)
491 values[i]=fgData[i];
b2a297fa 492}
493
494inline void AliDielectronVarManager::FillVarESDtrack(const AliESDtrack *particle, Double_t * const values)
495{
496 //
497 // Fill track information available for histogramming into an array
498 //
499
500 // Fill common AliVParticle interface information
501 FillVarVParticle(particle, values);
502
5720c765 503 AliESDtrack *esdTrack=0x0;
504 Double_t origdEdx=particle->GetTPCsignal();
505
506 // apply ETa correction, remove once this is in the tender
d327d9cd 507 esdTrack=const_cast<AliESDtrack*>(particle);
9395992d 508 if (!esdTrack) return;
d327d9cd 509 esdTrack->SetTPCsignal(origdEdx/AliDielectronPID::GetEtaCorr(esdTrack)/AliDielectronPID::GetCorrValdEdx(),esdTrack->GetTPCsignalSigma(),esdTrack->GetTPCsignalN());
5720c765 510
8df8e382 511 Double_t pidProbs[AliPID::kSPECIES];
b2a297fa 512 // Fill AliESDtrack interface specific information
164bfb53 513 Double_t tpcNcls=particle->GetTPCNcls();
5720c765 514 Double_t tpcNclsS = particle->GetTPCnclsS();
515 Double_t itsNcls=particle->GetNcls(0);
ba15fdfb 516 Double_t tpcSignalN=particle->GetTPCsignalN();
9afa0f7e 517 Double_t tpcClusFindable=particle->GetTPCNclsF();
5720c765 518 values[AliDielectronVarManager::kNclsITS] = itsNcls; // TODO: get rid of the plain numbers
61d106d3 519 values[AliDielectronVarManager::kNclsTPC] = tpcNcls; // TODO: get rid of the plain numbers
5720c765 520 values[AliDielectronVarManager::kNclsSTPC] = tpcNclsS;
521 values[AliDielectronVarManager::kNclsSFracTPC] = tpcNcls>0?tpcNclsS/tpcNcls:0;
ffbede40 522 values[AliDielectronVarManager::kNclsTPCiter1] = particle->GetTPCNclsIter1(); // TODO: get rid of the plain numbers
9afa0f7e 523 values[AliDielectronVarManager::kNFclsTPC] = tpcClusFindable;
524 values[AliDielectronVarManager::kNFclsTPCr] = particle->GetTPCClusterInfo(2,1);
525 values[AliDielectronVarManager::kNFclsTPCrFrac] = particle->GetTPCClusterInfo(2);
526 values[AliDielectronVarManager::kNFclsTPCfCross]= (tpcClusFindable>0)?(particle->GetTPCClusterInfo(2,1)/tpcClusFindable):0;
ba15fdfb 527 values[AliDielectronVarManager::kTPCsignalN] = tpcSignalN;
528 values[AliDielectronVarManager::kTPCsignalNfrac]= tpcNcls>0?tpcSignalN/tpcNcls:0;
b2a297fa 529 values[AliDielectronVarManager::kNclsTRD] = particle->GetNcls(2); // TODO: get rid of the plain numbers
530 values[AliDielectronVarManager::kTRDntracklets] = particle->GetTRDntracklets(); // TODO: GetTRDtracklets/GetTRDntracklets?
e4339752 531 values[AliDielectronVarManager::kTRDpidQuality] = particle->GetTRDntrackletsPID();
67fd1119 532 values[AliDielectronVarManager::kTRDchi2] = particle->GetTRDchi2();
5720c765 533 values[AliDielectronVarManager::kTPCclsDiff] = tpcSignalN-tpcNcls;
29091f0d 534 values[AliDielectronVarManager::kTPCclsSegments] = 0.0;
535 const UChar_t threshold = 5;
536 TBits tpcClusterMap = particle->GetTPCClusterMap();
537 UChar_t n=0; UChar_t j=0;
538 for(UChar_t i=0; i<8; ++i) {
539 n=0;
540 for(j=i*20; j<(i+1)*20 && j<159; ++j) n+=tpcClusterMap.TestBitNumber(j);
541 if(n>=threshold) values[AliDielectronVarManager::kTPCclsSegments] += 1.0;
542 }
61d106d3 543 values[AliDielectronVarManager::kTrackStatus] = (Double_t)particle->GetStatus();
07480df6 544 values[AliDielectronVarManager::kFilterBit] = 0;
61d106d3 545
546 values[AliDielectronVarManager::kTPCchi2Cl] = -1;
547 if (tpcNcls>0) values[AliDielectronVarManager::kTPCchi2Cl] = particle->GetTPCchi2() / tpcNcls;
5720c765 548 values[AliDielectronVarManager::kITSchi2Cl] = -1;
549 if (itsNcls>0) values[AliDielectronVarManager::kITSchi2Cl] = particle->GetITSchi2() / itsNcls;
8df8e382 550 //TRD pidProbs
551 particle->GetTRDpid(pidProbs);
552 values[AliDielectronVarManager::kTRDprobEle] = pidProbs[AliPID::kElectron];
553 values[AliDielectronVarManager::kTRDprobPio] = pidProbs[AliPID::kPion];
ffbede40 554
88e9bae6 555 values[AliDielectronVarManager::kV0Index0] = particle->GetV0Index(0);
ffbede40 556 values[AliDielectronVarManager::kKinkIndex0] = particle->GetKinkIndex(0);
8df8e382 557
b2a297fa 558 Float_t impactParXY, impactParZ;
559 particle->GetImpactParameters(impactParXY, impactParZ);
560 values[AliDielectronVarManager::kImpactParXY] = impactParXY;
561 values[AliDielectronVarManager::kImpactParZ] = impactParZ;
562
8df8e382 563
ba15fdfb 564 values[AliDielectronVarManager::kPdgCode]=-1;
565 values[AliDielectronVarManager::kPdgCodeMother]=-1;
566 values[AliDielectronVarManager::kPdgCodeGrandMother]=-1;
1bb1fef1 567 values[AliDielectronVarManager::kHasCocktailMother]=0;
568 values[AliDielectronVarManager::kHasCocktailGrandMother]=0;
ba15fdfb 569
8df8e382 570 values[AliDielectronVarManager::kNumberOfDaughters]=-999;
571
572 AliDielectronMC *mc=AliDielectronMC::Instance();
573
574 if (mc->HasMC()){
1bb1fef1 575 if (mc->GetMCTrack(particle)) {
ba15fdfb 576 values[AliDielectronVarManager::kPdgCode]=mc->GetMCTrack(particle)->PdgCode();
1bb1fef1 577 Int_t trkLbl = mc->GetMCTrack(particle)->GetLabel();
578 values[AliDielectronVarManager::kHasCocktailMother]=mc->CheckParticleSource(trkLbl, AliDielectronSignalMC::kDirect);
579 }
ba15fdfb 580 AliMCParticle *motherMC=mc->GetMCTrackMother(particle); //mother
581 if (motherMC){
582 values[AliDielectronVarManager::kPdgCodeMother]=motherMC->PdgCode();
1bb1fef1 583 Int_t motherLbl = motherMC->GetLabel();
584 values[AliDielectronVarManager::kHasCocktailGrandMother]=mc->CheckParticleSource(motherLbl, AliDielectronSignalMC::kDirect);
ba15fdfb 585
586 motherMC=mc->GetMCTrackMother(motherMC); //grand motherMC
587 if (motherMC) values[AliDielectronVarManager::kPdgCodeGrandMother]=motherMC->PdgCode();;
588 }
589
8df8e382 590 values[AliDielectronVarManager::kNumberOfDaughters]=mc->NumberOfDaughters(particle);
591 } //if(mc->HasMC())
592
593
594
595 values[AliDielectronVarManager::kITSsignal] = particle->GetITSsignal();
596
597 Double_t itsdEdx[4];
598 particle->GetITSdEdxSamples(itsdEdx);
599
600 values[AliDielectronVarManager::kITSsignalSSD1] = itsdEdx[0];
601 values[AliDielectronVarManager::kITSsignalSSD2] = itsdEdx[1];
602 values[AliDielectronVarManager::kITSsignalSDD1] = itsdEdx[2];
603 values[AliDielectronVarManager::kITSsignalSDD2] = itsdEdx[3];
3505bfad 604 values[AliDielectronVarManager::kITSclusterMap] = particle->GetITSClusterMap();
5720c765 605 values[AliDielectronVarManager::kITSLayerFirstCls] = -1.;
606
607 for (Int_t iC=0; iC<6; iC++) {
608 if (((particle->GetITSClusterMap()) & (1<<(iC))) > 0) {
609 values[AliDielectronVarManager::kITSLayerFirstCls] = iC;
610 break;
611 }
612 }
613
3505bfad 614
b2a297fa 615 values[AliDielectronVarManager::kTrackLength] = particle->GetIntegratedLength();
b2a297fa 616 //dEdx information
617 Double_t mom = particle->GetP();
618 const AliExternalTrackParam *in=particle->GetInnerParam();
5720c765 619 Double_t ysignedIn=-100;
620 if (in) {
621 mom = in->GetP();
622 ysignedIn=particle->Charge()*in->GetY();
623 }
b2a297fa 624 values[AliDielectronVarManager::kPIn]=mom;
5720c765 625 values[AliDielectronVarManager::kYsignedIn]=ysignedIn;
626 const AliExternalTrackParam *out=particle->GetOuterParam();
627 if(out) values[AliDielectronVarManager::kPOut] = out->GetP();
628 else values[AliDielectronVarManager::kPOut] = mom;
629 if(out && fgEvent) {
630 Double_t localCoord[3]={0.0};
631 Bool_t localCoordGood = out->GetXYZAt(298.0, ((AliESDEvent*)fgEvent)->GetMagneticField(), localCoord);
632 values[AliDielectronVarManager::kTRDphi] = (localCoordGood && TMath::Abs(localCoord[0])>1.0e-6 && TMath::Abs(localCoord[1])>1.0e-6 ? TMath::ATan2(localCoord[1], localCoord[0]) : -999.);
633 }
634 if(mc->HasMC() && fgTRDpidEff[0][0]) {
635 Int_t runNo = (fgEvent ? fgEvent->GetRunNumber() : -1);
636 Float_t centrality=-1.0;
637 AliCentrality *esdCentrality = (fgEvent ? fgEvent->GetCentrality() : 0x0);
638 if(esdCentrality) centrality = esdCentrality->GetCentralityPercentile("V0M");
639 Double_t effErr=0.0;
640 values[kTRDpidEffLeg] = GetTRDpidEfficiency(runNo, centrality, values[AliDielectronVarManager::kEta],
641 values[AliDielectronVarManager::kTRDphi],
642 values[AliDielectronVarManager::kPOut], effErr);
643 }
b2a297fa 644 values[AliDielectronVarManager::kTPCsignal]=particle->GetTPCsignal();
ba15fdfb 645
646 values[AliDielectronVarManager::kTOFsignal]=particle->GetTOFsignal();
647
648 Double_t l = particle->GetIntegratedLength(); // cm
649 Double_t t = particle->GetTOFsignal();
650 Double_t t0 = fgPIDResponse->GetTOFResponse().GetTimeZero(); // ps
651
652 if( (l < 360. || l > 800.) || (t <= 0.) || (t0 >999990.0) ) {
653 values[AliDielectronVarManager::kTOFbeta]=0.0;
654 }
655 else {
656 t -= t0; // subtract the T0
657 l *= 0.01; // cm ->m
658 t *= 1e-12; //ps -> s
659
660 Double_t v = l / t;
661 Float_t beta = v / TMath::C();
662 values[AliDielectronVarManager::kTOFbeta]=beta;
663 }
5720c765 664 values[AliDielectronVarManager::kTOFPIDBit]=(particle->GetStatus()&AliESDtrack::kTOFpid? 1: 0);
ba15fdfb 665
6551594b 666 // nsigma to Electron band
667 // TODO: for the moment we set the bethe bloch parameters manually
668 // this should be changed in future!
48609e3d 669
ba15fdfb 670 values[AliDielectronVarManager::kTPCnSigmaEle]=fgPIDResponse->NumberOfSigmasTPC(particle,AliPID::kElectron)-AliDielectronPID::GetCorrVal();
671 values[AliDielectronVarManager::kTPCnSigmaPio]=fgPIDResponse->NumberOfSigmasTPC(particle,AliPID::kPion);
672 values[AliDielectronVarManager::kTPCnSigmaMuo]=fgPIDResponse->NumberOfSigmasTPC(particle,AliPID::kMuon);
673 values[AliDielectronVarManager::kTPCnSigmaKao]=fgPIDResponse->NumberOfSigmasTPC(particle,AliPID::kKaon);
674 values[AliDielectronVarManager::kTPCnSigmaPro]=fgPIDResponse->NumberOfSigmasTPC(particle,AliPID::kProton);
675
676 values[AliDielectronVarManager::kITSnSigmaEle]=fgPIDResponse->NumberOfSigmasITS(particle,AliPID::kElectron);
677 values[AliDielectronVarManager::kITSnSigmaPio]=fgPIDResponse->NumberOfSigmasITS(particle,AliPID::kPion);
678 values[AliDielectronVarManager::kITSnSigmaMuo]=fgPIDResponse->NumberOfSigmasITS(particle,AliPID::kMuon);
679 values[AliDielectronVarManager::kITSnSigmaKao]=fgPIDResponse->NumberOfSigmasITS(particle,AliPID::kKaon);
680 values[AliDielectronVarManager::kITSnSigmaPro]=fgPIDResponse->NumberOfSigmasITS(particle,AliPID::kProton);
681
682 values[AliDielectronVarManager::kTOFnSigmaEle]=fgPIDResponse->NumberOfSigmasTOF(particle,AliPID::kElectron);
683 values[AliDielectronVarManager::kTOFnSigmaPio]=fgPIDResponse->NumberOfSigmasTOF(particle,AliPID::kPion);
684 values[AliDielectronVarManager::kTOFnSigmaMuo]=fgPIDResponse->NumberOfSigmasTOF(particle,AliPID::kMuon);
685 values[AliDielectronVarManager::kTOFnSigmaKao]=fgPIDResponse->NumberOfSigmasTOF(particle,AliPID::kKaon);
686 values[AliDielectronVarManager::kTOFnSigmaPro]=fgPIDResponse->NumberOfSigmasTOF(particle,AliPID::kProton);
5720c765 687
a823f01b 688 //EMCAL PID information
689 Double_t eop=0;
690 Double_t showershape[4]={0.,0.,0.,0.};
691// values[AliDielectronVarManager::kEMCALnSigmaEle] = fgPIDResponse->NumberOfSigmasEMCAL(particle,AliPID::kElectron);
692 values[AliDielectronVarManager::kEMCALnSigmaEle] = fgPIDResponse->NumberOfSigmasEMCAL(particle,AliPID::kElectron,eop,showershape);
693 values[AliDielectronVarManager::kEMCALEoverP] = eop;
88204efa 694 values[AliDielectronVarManager::kEMCALE] = eop*values[AliDielectronVarManager::kP];
a823f01b 695 values[AliDielectronVarManager::kEMCALNCells] = showershape[0];
696 values[AliDielectronVarManager::kEMCALM02] = showershape[1];
697 values[AliDielectronVarManager::kEMCALM20] = showershape[2];
698 values[AliDielectronVarManager::kEMCALDispersion] = showershape[3];
699
700
5720c765 701 //restore TPC signal if it was changed
702 if (esdTrack) esdTrack->SetTPCsignal(origdEdx,esdTrack->GetTPCsignalSigma(),esdTrack->GetTPCsignalN());
b2a297fa 703}
704
705inline void AliDielectronVarManager::FillVarAODTrack(const AliAODTrack *particle, Double_t * const values)
706{
707 //
708 // Fill track information available for histogramming into an array
709 //
710
711 // Fill common AliVParticle interface information
712 FillVarVParticle(particle, values);
ba15fdfb 713 Double_t tpcNcls=particle->GetTPCNcls();
5720c765 714
715 //GetNclsS not present in AODtrack
716 //Replace with method as soon as available
717 TBits tpcSharedMap = particle->GetTPCSharedMap();
718 Double_t tpcNclsS= tpcSharedMap.CountBits(0)-tpcSharedMap.CountBits(159);
9afa0f7e 719 Double_t tpcClusFindable=particle->GetTPCNclsF();
720
572b0139 721 // Reset AliESDtrack interface specific information
1762f182 722 values[AliDielectronVarManager::kNclsITS] = particle->GetITSNcls();
5720c765 723 values[AliDielectronVarManager::kITSchi2Cl] = -1;
ba15fdfb 724 values[AliDielectronVarManager::kNclsTPC] = tpcNcls;
e4339752 725 values[AliDielectronVarManager::kNclsSTPC] = tpcNclsS;
726 values[AliDielectronVarManager::kNclsSFracTPC] = tpcNcls>0?tpcNclsS/tpcNcls:0;
ba15fdfb 727 values[AliDielectronVarManager::kNclsTPCiter1] = tpcNcls; // not really available in AOD
9afa0f7e 728 values[AliDielectronVarManager::kNFclsTPC] = tpcClusFindable;
729 values[AliDielectronVarManager::kNFclsTPCr] = particle->GetTPCClusterInfo(2,1);
730 values[AliDielectronVarManager::kNFclsTPCrFrac] = particle->GetTPCClusterInfo(2);
731 values[AliDielectronVarManager::kNFclsTPCfCross]= (tpcClusFindable>0)?(particle->GetTPCClusterInfo(2,1)/tpcClusFindable):0;
572b0139 732 values[AliDielectronVarManager::kNclsTRD] = 0;
733 values[AliDielectronVarManager::kTRDntracklets] = 0;
b863bc83 734 values[AliDielectronVarManager::kTRDpidQuality] = particle->GetTRDntrackletsPID();
735 values[AliDielectronVarManager::kTRDchi2] = (particle->GetTRDntrackletsPID()!=0.?particle->GetTRDchi2():-1);
1ca9f651 736 values[AliDielectronVarManager::kTPCclsSegments] = 0.0;
737 const UChar_t threshold = 5;
738 TBits tpcClusterMap = particle->GetTPCClusterMap();
739 UChar_t n=0; UChar_t j=0;
740 for(UChar_t i=0; i<8; ++i) {
741 n=0;
742 for(j=i*20; j<(i+1)*20 && j<159; ++j) n+=tpcClusterMap.TestBitNumber(j);
743 if(n>=threshold) values[AliDielectronVarManager::kTPCclsSegments] += 1.0;
744 }
745
07480df6 746 values[AliDielectronVarManager::kTPCchi2Cl] = (tpcNcls>0)?particle->Chi2perNDF()*(tpcNcls-5)/tpcNcls:-1.; // it is stored as normalized to tpcNcls-5 (see AliAnalysisTaskESDfilter)
61d106d3 747 values[AliDielectronVarManager::kTrackStatus] = (Double_t)particle->GetStatus();
07480df6 748 values[AliDielectronVarManager::kFilterBit] = (Double_t)particle->GetFilterMap();
749
8df8e382 750 //TRD pidProbs
751 //TODO: set correctly
752 values[AliDielectronVarManager::kTRDprobEle] = 0;
753 values[AliDielectronVarManager::kTRDprobPio] = 0;
67fd1119 754
2a14a7b1 755 values[AliDielectronVarManager::kTPCsignalN] = 0;
ba15fdfb 756 values[AliDielectronVarManager::kTPCsignalNfrac]= 0;
b863bc83 757
2a14a7b1 758 // Fill AliAODTrack interface information
759 //
0c09cae4 760 Int_t v0Index=-1;
761 Int_t kinkIndex=-1;
0c09cae4 762 if (particle->GetProdVertex()) {
0c09cae4 763 v0Index = particle->GetProdVertex()->GetType()==AliAODVertex::kV0 ? 1 : 0;
764 kinkIndex = particle->GetProdVertex()->GetType()==AliAODVertex::kKink ? 1 : 0;
765 }
766 values[AliDielectronVarManager::kV0Index0] = v0Index;
767 values[AliDielectronVarManager::kKinkIndex0] = kinkIndex;
a823f01b 768
2a14a7b1 769 Double_t d0z0[2];
770 GetDCA(particle, d0z0);
771 values[AliDielectronVarManager::kImpactParXY] = d0z0[0];
772 values[AliDielectronVarManager::kImpactParZ] = d0z0[1];
572b0139 773
0c09cae4 774 values[AliDielectronVarManager::kPIn] = 0.;
775 values[AliDielectronVarManager::kTPCsignal] = 0.;
776 values[AliDielectronVarManager::kTPCsignalN] = -1.;
777 values[AliDielectronVarManager::kTPCsignalNfrac] = -1.;
778 values[AliDielectronVarManager::kTPCclsDiff] = -999.;
ba15fdfb 779
780 values[AliDielectronVarManager::kTOFsignal]=0;
29091f0d 781 //values[AliDielectronVarManager::kTOFbeta]=0;
572b0139 782
783 values[AliDielectronVarManager::kTPCnSigmaEle]=0;
784 values[AliDielectronVarManager::kTPCnSigmaPio]=0;
785 values[AliDielectronVarManager::kTPCnSigmaMuo]=0;
786 values[AliDielectronVarManager::kTPCnSigmaKao]=0;
787 values[AliDielectronVarManager::kTPCnSigmaPro]=0;
b2a297fa 788
0c09cae4 789 values[AliDielectronVarManager::kTOFnSigmaEle]=0;
790 values[AliDielectronVarManager::kTOFnSigmaPio]=0;
791 values[AliDielectronVarManager::kTOFnSigmaMuo]=0;
792 values[AliDielectronVarManager::kTOFnSigmaKao]=0;
793 values[AliDielectronVarManager::kTOFnSigmaPro]=0;
794
3505bfad 795 values[AliDielectronVarManager::kITSclusterMap] = particle->GetITSClusterMap();
e4339752 796 values[AliDielectronVarManager::kITSLayerFirstCls] = -1.;
797 for (Int_t iC=0; iC<6; iC++) {
798 if (((particle->GetITSClusterMap()) & (1<<(iC))) > 0) {
799 values[AliDielectronVarManager::kITSLayerFirstCls] = iC;
800 break;
801 }
802 }
803
0c09cae4 804 AliAODPid *pid=const_cast<AliAODPid*>(particle->GetDetPid());
b863bc83 805 if (pid) {
0c09cae4 806 Double_t origdEdx=pid->GetTPCsignal();
807 //overwrite signal
808 pid->SetTPCsignal(origdEdx/AliDielectronPID::GetEtaCorr(particle)/AliDielectronPID::GetCorrValdEdx());
809
572b0139 810 Double_t mom =pid->GetTPCmomentum();
ba15fdfb 811 Double_t tpcSignalN=pid->GetTPCsignalN();
0c09cae4 812 values[AliDielectronVarManager::kTPCsignalN] = tpcSignalN;
813 values[AliDielectronVarManager::kTPCsignalNfrac] = tpcNcls>0?tpcSignalN/tpcNcls:0;
814 values[AliDielectronVarManager::kTPCclsDiff] = tpcSignalN-tpcNcls;
ba15fdfb 815 Double_t tpcNsigmaEle=fgPIDResponse->NumberOfSigmasTPC(particle,AliPID::kElectron);
816 Double_t tpcNsigmaPio=fgPIDResponse->NumberOfSigmasTPC(particle,AliPID::kPion);
817 Double_t tpcNsigmaMuo=fgPIDResponse->NumberOfSigmasTPC(particle,AliPID::kMuon);
818 Double_t tpcNsigmaKao=fgPIDResponse->NumberOfSigmasTPC(particle,AliPID::kKaon);
819 Double_t tpcNsigmaPro=fgPIDResponse->NumberOfSigmasTPC(particle,AliPID::kProton);
572b0139 820
164bfb53 821 values[AliDielectronVarManager::kPIn]=mom;
572b0139 822 values[AliDielectronVarManager::kTPCsignal]=pid->GetTPCsignal();
823
824 values[AliDielectronVarManager::kTPCnSigmaEle]=tpcNsigmaEle;
825 values[AliDielectronVarManager::kTPCnSigmaPio]=tpcNsigmaPio;
826 values[AliDielectronVarManager::kTPCnSigmaMuo]=tpcNsigmaMuo;
827 values[AliDielectronVarManager::kTPCnSigmaKao]=tpcNsigmaKao;
828 values[AliDielectronVarManager::kTPCnSigmaPro]=tpcNsigmaPro;
829
e4339752 830 Double_t prob[AliPID::kSPECIES];
831 fgPIDResponse->ComputeTRDProbability(particle,AliPID::kSPECIES,prob);
832 values[AliDielectronVarManager::kTRDprobEle] = prob[AliPID::kElectron];
833 values[AliDielectronVarManager::kTRDprobPio] = prob[AliPID::kPion];
23ca3de6 834 // fgPIDResponse->ComputeTRDProbability(particle,AliPID::kSPECIES,prob, AliTRDPIDResponse::kLQ2D);
835 values[AliDielectronVarManager::kTRDprob2DEle] = 0.0;//prob[AliPID::kElectron];
836 values[AliDielectronVarManager::kTRDprob2DPio] = 0.0;//prob[AliPID::kPion];
e4339752 837
838 values[AliDielectronVarManager::kTOFsignal]=pid->GetTOFsignal();
29091f0d 839 Double32_t expt[5];
840 particle->GetIntegratedTimes(expt); // ps
841 Double_t l = TMath::C()* expt[0]*1e-12; // m
842 Double_t t = pid->GetTOFsignal(); // ps start time subtracted (until v5-02-Rev09)
843 AliTOFHeader* tofH=0x0; // from v5-02-Rev10 on subtract the start time
844 if(fgEvent) tofH = (AliTOFHeader*)fgEvent->GetTOFHeader();
845 if(tofH) t -= fgPIDResponse->GetTOFResponse().GetStartTime(particle->P()); // ps
846
847 if( (l < 360.e-2 || l > 800.e-2) || (t <= 0.) ) {
848 values[AliDielectronVarManager::kTOFbeta] =0;
849 }
850 else {
851 t *= 1e-12; //ps -> s
852
853 Double_t v = l / t;
854 Float_t beta = v / TMath::C();
855 values[AliDielectronVarManager::kTOFbeta]=beta;
856 }
5720c765 857
858 Double_t tofNsigmaEle=fgPIDResponse->NumberOfSigmasTOF(particle,AliPID::kElectron);
859 Double_t tofNsigmaPio=fgPIDResponse->NumberOfSigmasTOF(particle,AliPID::kPion);
860 Double_t tofNsigmaMuo=fgPIDResponse->NumberOfSigmasTOF(particle,AliPID::kMuon);
861 Double_t tofNsigmaKao=fgPIDResponse->NumberOfSigmasTOF(particle,AliPID::kKaon);
862 Double_t tofNsigmaPro=fgPIDResponse->NumberOfSigmasTOF(particle,AliPID::kProton);
863
864 values[AliDielectronVarManager::kTOFnSigmaEle]=tofNsigmaEle;
865 values[AliDielectronVarManager::kTOFnSigmaPio]=tofNsigmaPio;
866 values[AliDielectronVarManager::kTOFnSigmaMuo]=tofNsigmaMuo;
867 values[AliDielectronVarManager::kTOFnSigmaKao]=tofNsigmaKao;
868 values[AliDielectronVarManager::kTOFnSigmaPro]=tofNsigmaPro;
572b0139 869
0c09cae4 870 pid->SetTPCsignal(origdEdx);
572b0139 871 }
ba15fdfb 872
a823f01b 873 //EMCAL PID information
874 Double_t eop=0;
875 Double_t showershape[4]={0.,0.,0.,0.};
876// values[AliDielectronVarManager::kEMCALnSigmaEle] = fgPIDResponse->NumberOfSigmasEMCAL(particle,AliPID::kElectron);
877 values[AliDielectronVarManager::kEMCALnSigmaEle] = fgPIDResponse->NumberOfSigmasEMCAL(particle,AliPID::kElectron,eop,showershape);
878 values[AliDielectronVarManager::kEMCALEoverP] = eop;
88204efa 879 values[AliDielectronVarManager::kEMCALE] = eop*values[AliDielectronVarManager::kP];
a823f01b 880 values[AliDielectronVarManager::kEMCALNCells] = showershape[0];
881 values[AliDielectronVarManager::kEMCALM02] = showershape[1];
882 values[AliDielectronVarManager::kEMCALM20] = showershape[2];
883 values[AliDielectronVarManager::kEMCALDispersion] = showershape[3];
884
ba15fdfb 885 values[AliDielectronVarManager::kPdgCode]=-1;
886 values[AliDielectronVarManager::kPdgCodeMother]=-1;
887 values[AliDielectronVarManager::kPdgCodeGrandMother]=-1;
1bb1fef1 888 values[AliDielectronVarManager::kHasCocktailMother]=0;
889 values[AliDielectronVarManager::kHasCocktailGrandMother]=0;
890
07480df6 891 values[AliDielectronVarManager::kNumberOfDaughters]=-1;
ba15fdfb 892
893 AliDielectronMC *mc=AliDielectronMC::Instance();
894
895 if (mc->HasMC()){
1bb1fef1 896 if (mc->GetMCTrack(particle)) {
ba15fdfb 897 values[AliDielectronVarManager::kPdgCode]=mc->GetMCTrack(particle)->PdgCode();
1bb1fef1 898 Int_t trkLbl = mc->GetMCTrack(particle)->GetLabel();
899 // printf("trklbl %d for %p->%p \n",trkLbl,particle,mc->GetMCTrack(particle));
900 values[AliDielectronVarManager::kHasCocktailMother]=mc->CheckParticleSource(trkLbl, AliDielectronSignalMC::kDirect);
901 }
ba15fdfb 902 AliAODMCParticle *motherMC=mc->GetMCTrackMother(particle); //mother
903 if (motherMC){
904 values[AliDielectronVarManager::kPdgCodeMother]=motherMC->PdgCode();
1bb1fef1 905 Int_t motherLbl = motherMC->GetLabel();
906 values[AliDielectronVarManager::kHasCocktailGrandMother]=mc->CheckParticleSource(motherLbl, AliDielectronSignalMC::kDirect);
907
ba15fdfb 908 motherMC=mc->GetMCTrackMother(motherMC); //grand motherMC
909 if (motherMC) values[AliDielectronVarManager::kPdgCodeGrandMother]=motherMC->PdgCode();;
910 }
911
912 values[AliDielectronVarManager::kNumberOfDaughters]=mc->NumberOfDaughters(particle);
913 } //if(mc->HasMC())
914
5720c765 915 values[AliDielectronVarManager::kTOFPIDBit]=(particle->GetStatus()&AliESDtrack::kTOFpid? 1: 0);
b2a297fa 916}
917
918inline void AliDielectronVarManager::FillVarMCParticle(const AliMCParticle *particle, Double_t * const values)
919{
920 //
921 // Fill track information available for histogramming into an array
922 //
923
554e40f8 924 values[AliDielectronVarManager::kNclsITS] = 0;
5720c765 925 values[AliDielectronVarManager::kITSchi2Cl] = 0;
554e40f8 926 values[AliDielectronVarManager::kNclsTPC] = 0;
07480df6 927 values[AliDielectronVarManager::kNclsSTPC] = 0;
928 values[AliDielectronVarManager::kNclsSFracTPC] = 0;
554e40f8 929 values[AliDielectronVarManager::kNclsTPCiter1] = 0;
930 values[AliDielectronVarManager::kNFclsTPC] = 0;
fb7d2d99 931 values[AliDielectronVarManager::kNFclsTPCr] = 0;
932 values[AliDielectronVarManager::kNFclsTPCrFrac] = 0;
554e40f8 933 values[AliDielectronVarManager::kNclsTRD] = 0;
934 values[AliDielectronVarManager::kTRDntracklets] = 0;
935 values[AliDielectronVarManager::kTRDpidQuality] = 0;
936 values[AliDielectronVarManager::kTPCchi2Cl] = 0;
937 values[AliDielectronVarManager::kTrackStatus] = 0;
07480df6 938 values[AliDielectronVarManager::kFilterBit] = 0;
554e40f8 939 values[AliDielectronVarManager::kTRDprobEle] = 0;
940 values[AliDielectronVarManager::kTRDprobPio] = 0;
941 values[AliDielectronVarManager::kTPCsignalN] = 0;
5720c765 942 values[AliDielectronVarManager::kTPCclsDiff] = 0;
ba15fdfb 943 values[AliDielectronVarManager::kTPCsignalNfrac] = 0;
554e40f8 944 values[AliDielectronVarManager::kImpactParXY] = 0;
945 values[AliDielectronVarManager::kImpactParZ] = 0;
946 values[AliDielectronVarManager::kPIn] = 0;
5720c765 947 values[AliDielectronVarManager::kYsignedIn] = 0;
554e40f8 948 values[AliDielectronVarManager::kTPCsignal] = 0;
ba15fdfb 949 values[AliDielectronVarManager::kTOFsignal] = 0;
950 values[AliDielectronVarManager::kTOFbeta] = 0;
554e40f8 951 values[AliDielectronVarManager::kTPCnSigmaEle] = 0;
952 values[AliDielectronVarManager::kTPCnSigmaPio] = 0;
953 values[AliDielectronVarManager::kTPCnSigmaMuo] = 0;
954 values[AliDielectronVarManager::kTPCnSigmaKao] = 0;
955 values[AliDielectronVarManager::kTPCnSigmaPro] = 0;
956 values[AliDielectronVarManager::kITSclusterMap] = 0;
957
ba15fdfb 958 values[AliDielectronVarManager::kPdgCode] = -1;
959 values[AliDielectronVarManager::kPdgCodeMother] = -1;
960 values[AliDielectronVarManager::kPdgCodeGrandMother] = -1;
1bb1fef1 961 values[AliDielectronVarManager::kHasCocktailMother]=0;
962 values[AliDielectronVarManager::kHasCocktailGrandMother]=0;
963
b2a297fa 964 // Fill common AliVParticle interface information
965 FillVarVParticle(particle, values);
8df8e382 966
967 AliDielectronMC *mc=AliDielectronMC::Instance();
968
b2a297fa 969 // Fill AliMCParticle interface specific information
970 values[AliDielectronVarManager::kPdgCode] = particle->PdgCode();
1bb1fef1 971 Int_t trkLbl = particle->GetLabel();
972 values[AliDielectronVarManager::kHasCocktailMother]=mc->CheckParticleSource(trkLbl, AliDielectronSignalMC::kDirect);
8df8e382 973
ba15fdfb 974 AliMCParticle *motherMC = mc->GetMCTrackMother(particle);
975 if (motherMC){
976 values[AliDielectronVarManager::kPdgCodeMother]=motherMC->PdgCode();
1bb1fef1 977 Int_t motherLbl = motherMC->GetLabel();
978 values[AliDielectronVarManager::kHasCocktailGrandMother]=mc->CheckParticleSource(motherLbl, AliDielectronSignalMC::kDirect);
979
ba15fdfb 980 motherMC=mc->GetMCTrackMother(motherMC); //grand mother
981 if (motherMC) values[AliDielectronVarManager::kPdgCodeGrandMother]=motherMC->PdgCode();;
982 }
983
fb7d2d99 984 values[AliDielectronVarManager::kIsJpsiPrimary] = mc->IsJpsiPrimary(particle);
8df8e382 985 values[AliDielectronVarManager::kNumberOfDaughters]=mc->NumberOfDaughters(particle);
b2a297fa 986}
987
ba15fdfb 988
989inline void AliDielectronVarManager::FillVarMCParticle2(const AliVParticle *p1, const AliVParticle *p2, Double_t * const values) {
990 //
991 // fill 2 track information starting from MC legs
992 //
993
994 values[AliDielectronVarManager::kNclsITS] = 0;
5720c765 995 values[AliDielectronVarManager::kITSchi2Cl] = -1;
ba15fdfb 996 values[AliDielectronVarManager::kNclsTPC] = 0;
5720c765 997 values[AliDielectronVarManager::kNclsSTPC] = 0;
998 values[AliDielectronVarManager::kNclsSFracTPC] = 0;
ba15fdfb 999 values[AliDielectronVarManager::kNclsTPCiter1] = 0;
1000 values[AliDielectronVarManager::kNFclsTPC] = 0;
1001 values[AliDielectronVarManager::kNFclsTPCr] = 0;
1002 values[AliDielectronVarManager::kNFclsTPCrFrac] = 0;
1003 values[AliDielectronVarManager::kNclsTRD] = 0;
1004 values[AliDielectronVarManager::kTRDntracklets] = 0;
1005 values[AliDielectronVarManager::kTRDpidQuality] = 0;
1006 values[AliDielectronVarManager::kTPCchi2Cl] = 0;
1007 values[AliDielectronVarManager::kTrackStatus] = 0;
07480df6 1008 values[AliDielectronVarManager::kFilterBit] = 0;
ba15fdfb 1009 values[AliDielectronVarManager::kTRDprobEle] = 0;
1010 values[AliDielectronVarManager::kTRDprobPio] = 0;
1011 values[AliDielectronVarManager::kTPCsignalN] = 0;
5720c765 1012 values[AliDielectronVarManager::kTPCclsDiff] = 0;
ba15fdfb 1013 values[AliDielectronVarManager::kTPCsignalNfrac] = 0;
1014 values[AliDielectronVarManager::kImpactParXY] = 0;
1015 values[AliDielectronVarManager::kImpactParZ] = 0;
1016 values[AliDielectronVarManager::kPIn] = 0;
5720c765 1017 values[AliDielectronVarManager::kYsignedIn] = 0;
ba15fdfb 1018 values[AliDielectronVarManager::kTPCsignal] = 0;
1019 values[AliDielectronVarManager::kTPCnSigmaEle] = 0;
1020 values[AliDielectronVarManager::kTPCnSigmaPio] = 0;
1021 values[AliDielectronVarManager::kTPCnSigmaMuo] = 0;
1022 values[AliDielectronVarManager::kTPCnSigmaKao] = 0;
1023 values[AliDielectronVarManager::kTPCnSigmaPro] = 0;
1024 values[AliDielectronVarManager::kITSclusterMap] = 0;
1025
1026 values[AliDielectronVarManager::kPdgCode] = 0;
1027 values[AliDielectronVarManager::kPdgCodeMother] = 0;
1bb1fef1 1028 values[AliDielectronVarManager::kHasCocktailMother]=0;
ba15fdfb 1029
1030 AliDielectronMC *mc=AliDielectronMC::Instance();
1031 AliVParticle* mother=0x0;
1032 Int_t mLabel1 = mc->GetMothersLabel(p1->GetLabel());
1033 Int_t mLabel2 = mc->GetMothersLabel(p2->GetLabel());
1034 if(mLabel1==mLabel2)
1035 mother = mc->GetMCTrackFromMCEvent(mLabel1);
5720c765 1036
1037 values[AliDielectronVarManager::kPseudoProperTime] = -2e10;
1038 if(mother) { // same mother
ba15fdfb 1039 FillVarVParticle(mother, values);
5720c765 1040 Double_t lxy = ((mother->Xv()- values[AliDielectronVarManager::kXvPrim]) * mother->Px() +
1041 (mother->Yv()- values[AliDielectronVarManager::kYvPrim]) * mother->Py() )/mother->Pt();
1042 values[AliDielectronVarManager::kPseudoProperTime] = lxy*(TDatabasePDG::Instance()->GetParticle(443)->Mass())/mother->Pt();
1043 }
213ceb97 1044 // AliVParticle part
1045 values[AliDielectronVarManager::kPx] = p1->Px()+p2->Px();
1046 values[AliDielectronVarManager::kPy] = p1->Py()+p2->Py();
1047 values[AliDielectronVarManager::kPz] = p1->Pz()+p2->Pz();
1048 values[AliDielectronVarManager::kPt] = TMath::Sqrt(values[AliDielectronVarManager::kPx]*
1049 values[AliDielectronVarManager::kPx]+
1050 values[AliDielectronVarManager::kPy]*
1051 values[AliDielectronVarManager::kPy]);
1052 values[AliDielectronVarManager::kP] = TMath::Sqrt(values[AliDielectronVarManager::kPt]*
1053 values[AliDielectronVarManager::kPt]+
1054 values[AliDielectronVarManager::kPz]*
1055 values[AliDielectronVarManager::kPz]);
ba15fdfb 1056
213ceb97 1057 values[AliDielectronVarManager::kXv] = 0;
1058 values[AliDielectronVarManager::kYv] = 0;
1059 values[AliDielectronVarManager::kZv] = 0;
ba15fdfb 1060
213ceb97 1061 values[AliDielectronVarManager::kOneOverPt] = (values[AliDielectronVarManager::kPt]>1.0e-6 ? 1.0/values[AliDielectronVarManager::kPt] : 0.0);
1062 values[AliDielectronVarManager::kPhi] = TMath::ATan2(values[AliDielectronVarManager::kPy],values[AliDielectronVarManager::kPx]);
1063 values[AliDielectronVarManager::kTheta] = TMath::ATan2(values[AliDielectronVarManager::kPt],values[AliDielectronVarManager::kPz]);
1064 values[AliDielectronVarManager::kEta] = ((values[AliDielectronVarManager::kP]-values[AliDielectronVarManager::kPz])>1.0e-6 && (values[AliDielectronVarManager::kP]+values[AliDielectronVarManager::kPz])>1.0e-6 ? 0.5*TMath::Log((values[AliDielectronVarManager::kP]+values[AliDielectronVarManager::kPz])/(values[AliDielectronVarManager::kP]-values[AliDielectronVarManager::kPz])) : -9999.);
1065 values[AliDielectronVarManager::kE] = p1->E()+p2->E();
1066 values[AliDielectronVarManager::kY] = ((values[AliDielectronVarManager::kE]-values[AliDielectronVarManager::kPz])>1.0e-6 && (values[AliDielectronVarManager::kE]+values[AliDielectronVarManager::kPz])>1.0e-6 ? 0.5*TMath::Log((values[AliDielectronVarManager::kE]+values[AliDielectronVarManager::kPz])/(values[AliDielectronVarManager::kE]-values[AliDielectronVarManager::kPz])) : -9999.);
1067 values[AliDielectronVarManager::kCharge] = p1->Charge()+p2->Charge();
1068
88e9bae6 1069 values[AliDielectronVarManager::kM] = p1->M()*p1->M()+p2->M()*p2->M()+
1070 2.0*(p1->E()*p2->E()-p1->Px()*p2->Px()-p1->Py()*p2->Py()-p1->Pz()*p2->Pz());
1071 values[AliDielectronVarManager::kM] = (values[AliDielectronVarManager::kM]>1.0e-8 ? TMath::Sqrt(values[AliDielectronVarManager::kM]) : -1.0);
ba15fdfb 1072
213ceb97 1073 if ( fgEvent ) AliDielectronVarManager::Fill(fgEvent, values);
a823f01b 1074
5720c765 1075 values[AliDielectronVarManager::kThetaHE] = AliDielectronPair::ThetaPhiCM(p1,p2,kTRUE, kTRUE);
1076 values[AliDielectronVarManager::kPhiHE] = AliDielectronPair::ThetaPhiCM(p1,p2,kTRUE, kFALSE);
1762f182 1077 values[AliDielectronVarManager::kThetaSqHE] = values[AliDielectronVarManager::kThetaHE] * values[AliDielectronVarManager::kThetaHE];
5720c765 1078 values[AliDielectronVarManager::kCos2PhiHE] = TMath::Cos(2*values[AliDielectronVarManager::kPhiHE]);
1079 values[AliDielectronVarManager::kThetaCS] = AliDielectronPair::ThetaPhiCM(p1,p2,kFALSE, kTRUE);
1080 values[AliDielectronVarManager::kPhiCS] = AliDielectronPair::ThetaPhiCM(p1,p2,kFALSE, kFALSE);
1762f182 1081 values[AliDielectronVarManager::kThetaSqCS] = values[AliDielectronVarManager::kThetaCS] * values[AliDielectronVarManager::kThetaCS];
5720c765 1082 values[AliDielectronVarManager::kCos2PhiCS] = TMath::Cos(2*values[AliDielectronVarManager::kPhiCS]);
8d7a07b9 1083 values[AliDielectronVarManager::kCosTilPhiHE] = (values[AliDielectronVarManager::kThetaHE]>0)?(TMath::Cos(values[AliDielectronVarManager::kPhiHE]-TMath::Pi()/4.)):(TMath::Cos(values[AliDielectronVarManager::kPhiHE]-3*TMath::Pi()/4.));
1084 values[AliDielectronVarManager::kCosTilPhiCS] = (values[AliDielectronVarManager::kThetaCS]>0)?(TMath::Cos(values[AliDielectronVarManager::kPhiCS]-TMath::Pi()/4.)):(TMath::Cos(values[AliDielectronVarManager::kPhiCS]-3*TMath::Pi()/4.));
ba15fdfb 1085}
1086
1087
b2a297fa 1088inline void AliDielectronVarManager::FillVarAODMCParticle(const AliAODMCParticle *particle, Double_t * const values)
1089{
1090 //
1091 // Fill track information available for histogramming into an array
1092 //
1093
554e40f8 1094 values[AliDielectronVarManager::kNclsITS] = 0;
5720c765 1095 values[AliDielectronVarManager::kITSchi2Cl] = -1;
554e40f8 1096 values[AliDielectronVarManager::kNclsTPC] = 0;
5720c765 1097 values[AliDielectronVarManager::kNclsSTPC] = 0;
1098 values[AliDielectronVarManager::kNclsSFracTPC] = 0;
554e40f8 1099 values[AliDielectronVarManager::kNclsTPCiter1] = 0;
1100 values[AliDielectronVarManager::kNFclsTPC] = 0;
1101 values[AliDielectronVarManager::kNclsTRD] = 0;
1102 values[AliDielectronVarManager::kTRDntracklets] = 0;
1103 values[AliDielectronVarManager::kTRDpidQuality] = 0;
1104 values[AliDielectronVarManager::kTPCchi2Cl] = 0;
1105 values[AliDielectronVarManager::kTrackStatus] = 0;
07480df6 1106 values[AliDielectronVarManager::kFilterBit] = 0;
554e40f8 1107 values[AliDielectronVarManager::kTRDprobEle] = 0;
1108 values[AliDielectronVarManager::kTRDprobPio] = 0;
1109 values[AliDielectronVarManager::kTPCsignalN] = 0;
5720c765 1110 values[AliDielectronVarManager::kTPCclsDiff] = 0;
ba15fdfb 1111 values[AliDielectronVarManager::kTPCsignalNfrac]= 0;
554e40f8 1112 values[AliDielectronVarManager::kImpactParXY] = 0;
1113 values[AliDielectronVarManager::kImpactParZ] = 0;
1114 values[AliDielectronVarManager::kPIn] = 0;
5720c765 1115 values[AliDielectronVarManager::kYsignedIn] = 0;
554e40f8 1116 values[AliDielectronVarManager::kTPCsignal] = 0;
1117 values[AliDielectronVarManager::kTPCnSigmaEle] = 0;
1118 values[AliDielectronVarManager::kTPCnSigmaPio] = 0;
1119 values[AliDielectronVarManager::kTPCnSigmaMuo] = 0;
1120 values[AliDielectronVarManager::kTPCnSigmaKao] = 0;
1121 values[AliDielectronVarManager::kTPCnSigmaPro] = 0;
1122 values[AliDielectronVarManager::kITSclusterMap] = 0;
1123
ba15fdfb 1124 values[AliDielectronVarManager::kPdgCode] = -1;
1125 values[AliDielectronVarManager::kPdgCodeMother] = -1;
1126 values[AliDielectronVarManager::kPdgCodeGrandMother] = -1;
1bb1fef1 1127 values[AliDielectronVarManager::kHasCocktailMother]=0;
1128 values[AliDielectronVarManager::kHasCocktailGrandMother]=0;
1129
b2a297fa 1130 // Fill common AliVParticle interface information
1131 FillVarVParticle(particle, values);
554e40f8 1132
8df8e382 1133 AliDielectronMC *mc=AliDielectronMC::Instance();
1134
1135
b2a297fa 1136 // Fill AliAODMCParticle interface specific information
8df8e382 1137 values[AliDielectronVarManager::kPdgCode] = particle->PdgCode();
1bb1fef1 1138 Int_t trkLbl = particle->GetLabel();
1139 values[AliDielectronVarManager::kHasCocktailMother]=mc->CheckParticleSource(trkLbl, AliDielectronSignalMC::kDirect);
8df8e382 1140
ba15fdfb 1141 AliAODMCParticle *motherMC = mc->GetMCTrackMother(particle);
1142 if (motherMC){
1143 values[AliDielectronVarManager::kPdgCodeMother]=motherMC->PdgCode();
1bb1fef1 1144 Int_t motherLbl = motherMC->GetLabel();
1145 values[AliDielectronVarManager::kHasCocktailGrandMother]=mc->CheckParticleSource(motherLbl, AliDielectronSignalMC::kDirect);
1146
ba15fdfb 1147 motherMC=mc->GetMCTrackMother(motherMC); //grand mother
1148 if (motherMC) values[AliDielectronVarManager::kPdgCodeGrandMother]=motherMC->PdgCode();;
1149 }
1150
1151
fb7d2d99 1152 values[AliDielectronVarManager::kIsJpsiPrimary] = mc->IsJpsiPrimary(particle);
8df8e382 1153
1154 values[AliDielectronVarManager::kNumberOfDaughters]=mc->NumberOfDaughters(particle);
b2a297fa 1155}
1156
1157inline void AliDielectronVarManager::FillVarDielectronPair(const AliDielectronPair *pair, Double_t * const values)
1158{
1159 //
1160 // Fill pair information available for histogramming into an array
1161 //
2a14a7b1 1162
ba15fdfb 1163 values[AliDielectronVarManager::kPdgCode]=-1;
1164 values[AliDielectronVarManager::kPdgCodeMother]=-1;
1165 values[AliDielectronVarManager::kPdgCodeGrandMother]=-1;
1bb1fef1 1166 values[AliDielectronVarManager::kHasCocktailMother]=0;
1167 values[AliDielectronVarManager::kHasCocktailGrandMother]=0;
08b801a6 1168
1169 Double_t errPseudoProperTime2 = -1;
b2a297fa 1170 // Fill common AliVParticle interface information
1171 FillVarVParticle(pair, values);
1172
1173 // Fill AliDielectronPair specific information
1174 const AliKFParticle &kfPair = pair->GetKFParticle();
61d106d3 1175
1176 Double_t thetaHE=0;
1177 Double_t phiHE=0;
1178 Double_t thetaCS=0;
1179 Double_t phiCS=0;
1180
1181 pair->GetThetaPhiCM(thetaHE,phiHE,thetaCS,phiCS);
5720c765 1182
b2a297fa 1183 values[AliDielectronVarManager::kChi2NDF] = kfPair.GetChi2()/kfPair.GetNDF();
1184 values[AliDielectronVarManager::kDecayLength] = kfPair.GetDecayLength();
1185 values[AliDielectronVarManager::kR] = kfPair.GetR();
1186 values[AliDielectronVarManager::kOpeningAngle] = pair->OpeningAngle();
2e02dba4 1187 values[AliDielectronVarManager::kCosPointingAngle] = fgEvent ? pair->GetCosPointingAngle(fgEvent->GetPrimaryVertex()) : -1;
61d106d3 1188 values[AliDielectronVarManager::kThetaHE] = thetaHE;
1189 values[AliDielectronVarManager::kPhiHE] = phiHE;
1762f182 1190 values[AliDielectronVarManager::kThetaSqHE] = thetaHE * thetaHE;
5720c765 1191 values[AliDielectronVarManager::kCos2PhiHE] = TMath::Cos(2.0*phiHE);
8d7a07b9 1192 values[AliDielectronVarManager::kCosTilPhiHE] = (thetaHE>0)?(TMath::Cos(phiHE-TMath::Pi()/4.)):(TMath::Cos(phiHE-3*TMath::Pi()/4.));
61d106d3 1193 values[AliDielectronVarManager::kThetaCS] = thetaCS;
1194 values[AliDielectronVarManager::kPhiCS] = phiCS;
1762f182 1195 values[AliDielectronVarManager::kThetaSqCS] = thetaCS * thetaCS;
5720c765 1196 values[AliDielectronVarManager::kCos2PhiCS] = TMath::Cos(2.0*phiCS);
8d7a07b9 1197 values[AliDielectronVarManager::kCosTilPhiCS] = (thetaCS>0)?(TMath::Cos(phiCS-TMath::Pi()/4.)):(TMath::Cos(phiCS-3*TMath::Pi()/4.));
572b0139 1198 values[AliDielectronVarManager::kLegDist] = pair->DistanceDaughters();
1199 values[AliDielectronVarManager::kLegDistXY] = pair->DistanceDaughtersXY();
61d106d3 1200 values[AliDielectronVarManager::kDeltaEta] = pair->DeltaEta();
1201 values[AliDielectronVarManager::kDeltaPhi] = pair->DeltaPhi();
8df8e382 1202 values[AliDielectronVarManager::kMerr] = kfPair.GetErrMass()>1e-30&&kfPair.GetMass()>1e-30?kfPair.GetErrMass()/kfPair.GetMass():1000000;
b2a297fa 1203 values[AliDielectronVarManager::kPairType] = pair->GetType();
8df8e382 1204
91487037 1205 values[AliDielectronVarManager::kPsiPair] = fgEvent ? pair->PsiPair(fgEvent->GetMagneticField()) : -5;
805bd069 1206 values[AliDielectronVarManager::kPhivPair] = fgEvent ? pair->PhivPair(fgEvent->GetMagneticField()) : -5;
e4339752 1207 values[AliDielectronVarManager::kPseudoProperTime] = fgEvent ? kfPair.GetPseudoProperDecayTime(*(fgEvent->GetPrimaryVertex()), TDatabasePDG::Instance()->GetParticle(443)->Mass(), &errPseudoProperTime2 ) : -1e10;
5720c765 1208 // values[AliDielectronVarManager::kPseudoProperTime] = fgEvent ? pair->GetPseudoProperTime(fgEvent->GetPrimaryVertex()): -1e10;
e4339752 1209 values[AliDielectronVarManager::kPseudoProperTimeErr] = (errPseudoProperTime2 > 0) ? TMath::Sqrt(errPseudoProperTime2) : -1e10;
5720c765 1210
08b801a6 1211
1212 if (!(pair->GetKFUsage())) {
1213 //if KF Pairing is not enabled, overwrite values that can be easily derived from legs
1214 //use the INDIVIDUAL KF particles as source, which should be a copy of the corresponding properties
1215 //the ESDtrack, the reference to the ESDtrack is not (always) accessible in Mixing, while KF
1216 //particles are copied in the Pair-Object
1217 static const Double_t mElectron = AliPID::ParticleMass(AliPID::kElectron); // MeV
1218
1219 const AliKFParticle& fD1 = pair->GetKFFirstDaughter();
1220 const AliKFParticle& fD2 = pair->GetKFSecondDaughter();
1221
1222 //Define local buffer variables for leg properties
1223 Double_t px1=-9999.,py1=-9999.,pz1=-9999.;
1224 Double_t px2=-9999.,py2=-9999.,pz2=-9999.;
1225 Double_t e1 =-9999.,e2 =-9999.;
20b6b7d4 1226 Double_t feta1=-9999.;//,fphi1=-9999.;
1227 Double_t feta2=-9999.;//,fphi2=-9999.;
08b801a6 1228
1229 px1 = fD1.GetPx();
1230 py1 = fD1.GetPy();
1231 pz1 = fD1.GetPz();
1232 feta1 = fD1.GetEta();
20b6b7d4 1233 // fphi1 = fD1.GetPhi();
08b801a6 1234
1235 px2 = fD2.GetPx();
1236 py2 = fD2.GetPy();
1237 pz2 = fD2.GetPz();
1238 feta2 = fD2.GetEta();
20b6b7d4 1239 // fphi2 = fD2.GetPhi();
08b801a6 1240
1241 //Calculate Energy per particle by hand
1242 e1 = TMath::Sqrt(mElectron*mElectron+px1*px1+py1*py1+pz1*pz1);
1243 e2 = TMath::Sqrt(mElectron*mElectron+px2*px2+py2*py2+pz2*pz2);
1244
1245 //Now Create TLorentzVector:
1246 TLorentzVector lv1,lv2;
1247 lv1.SetPxPyPzE(px1,py1,pz1,e1);
1248 lv2.SetPxPyPzE(px2,py2,pz2,e2);
1249
1250 values[AliDielectronVarManager::kPx] = (lv1+lv2).Px();
1251 values[AliDielectronVarManager::kPy] = (lv1+lv2).Py();
1252 values[AliDielectronVarManager::kPz] = (lv1+lv2).Pz();
1253
1254 values[AliDielectronVarManager::kPt] = (lv1+lv2).Pt();
1255
1256 values[AliDielectronVarManager::kP] = (lv1+lv2).P();
1257
1258 //Not overwritten, could take event vertex in next iteration
1259 values[AliDielectronVarManager::kXv] = (lv1+lv2).X();
1260 values[AliDielectronVarManager::kYv] = (lv1+lv2).Y();
1261 values[AliDielectronVarManager::kZv] = (lv1+lv2).Z();
1262
1263 values[AliDielectronVarManager::kE] = (lv1+lv2).E();
1264
1265
1266 values[AliDielectronVarManager::kM] = (lv1+lv2).M();
1267
1268 values[AliDielectronVarManager::kOpeningAngle] = lv1.Angle(lv2.Vect());
1269
1270 values[AliDielectronVarManager::kOneOverPt] = (values[AliDielectronVarManager::kPt]>0. ? 1./values[AliDielectronVarManager::kPt] : -9999.);
1271 values[AliDielectronVarManager::kPhi] = (lv1+lv2).Phi();
1272 values[AliDielectronVarManager::kEta] = (lv1+lv2).Eta();
1273
1274 values[AliDielectronVarManager::kY] = (lv1+lv2).Rapidity();
1275
1276 for (Int_t i=AliDielectronVarManager::kPairMax; i<AliDielectronVarManager::kNMaxValues; ++i)
1277 values[i]=fgData[i];
1278
1279 // Fill AliDielectronPair specific information
1280 values[AliDielectronVarManager::kDeltaEta] = TMath::Abs(feta1 -feta2 );
1281 values[AliDielectronVarManager::kDeltaPhi] = lv1.DeltaPhi(lv2);
1282 values[AliDielectronVarManager::kPairType] = pair->GetType();
1283
1284 /*
1285 //Also not overwritten, still coming from KF particle
1286 //where needed to be replaced by independent determination
1287 values[AliDielectronVarManager::kCharge] = 0.;
1288 values[AliDielectronVarManager::kPdgCode] = 0.;
1289 values[AliDielectronVarManager::kChi2NDF] = 0.;
1290 values[AliDielectronVarManager::kDecayLength] = 0.;
1291 values[AliDielectronVarManager::kR] = 0.;
1292 values[AliDielectronVarManager::kCosPointingAngle] = 0.;
1293 values[AliDielectronVarManager::kThetaHE] = 0.;
1294 values[AliDielectronVarManager::kPhiHE] = 0.;
1295 values[AliDielectronVarManager::kThetaSqHE] = 0.;
1296 values[AliDielectronVarManager::kCos2PhiHE] = 0.;
1297 values[AliDielectronVarManager::kCosTilPhiHE] = 0.;
1298 values[AliDielectronVarManager::kThetaCS] = 0.;
1299 values[AliDielectronVarManager::kPhiCS] = 0.;
1300 values[AliDielectronVarManager::kThetaSqCS] = 0.;
1301 values[AliDielectronVarManager::kCos2PhiCS] = 0.;
1302 values[AliDielectronVarManager::kCosTilPhiCS] = 0.;
1303 values[AliDielectronVarManager::kLegDist] = 0.;
1304 values[AliDielectronVarManager::kLegDistXY] = 0.;
1305 values[AliDielectronVarManager::kMerr] = 0.;
1306 values[AliDielectronVarManager::kPseudoProperTime] = 0.;
1307 values[AliDielectronVarManager::kPseudoProperTimeErr] = 0.;
1308 //Fill in Taku's PhiV?
1309 values[AliDielectronVarManager::kPsiPair] = 0.;
1310
1311 */
1312
1313
1314 }
1315 //common, regardless of calculation method
1316 // Flow quantities
5720c765 1317 Double_t delta=0.0;
1318 // v2 with respect to VZERO-A event plane
1319 delta = values[AliDielectronVarManager::kPhi] - fgData[AliDielectronVarManager::kV0ArpH2];
1320 if(delta>TMath::Pi()) delta -= 2.0*TMath::Pi(); // keep the [-pi,+pi] interval
1321 if(delta<-1.0*TMath::Pi()) delta += 2.0*TMath::Pi();
1322 values[AliDielectronVarManager::kV0ArpH2FlowV2] = TMath::Cos(2.0*delta); // 2nd harmonic flow coefficient
1323 values[AliDielectronVarManager::kDeltaPhiV0ArpH2] = delta;
1324 // v2 with respect to VZERO-C event plane
1325 delta = values[AliDielectronVarManager::kPhi] - fgData[AliDielectronVarManager::kV0CrpH2];
1326 if(delta>TMath::Pi()) delta -= 2.0*TMath::Pi(); // keep the [-pi,+pi] interval
1327 if(delta<-1.0*TMath::Pi()) delta += 2.0*TMath::Pi();
1328 values[AliDielectronVarManager::kV0CrpH2FlowV2] = TMath::Cos(2.0*delta); // 2nd harmonic flow coefficient
1329 values[AliDielectronVarManager::kDeltaPhiV0CrpH2] = delta;
1330 // v2 with respect to the combined VZERO-A and VZERO-C event plane
1331 delta = values[AliDielectronVarManager::kPhi] - fgData[AliDielectronVarManager::kV0ACrpH2];
1332 if(delta>TMath::Pi()) delta -= 2.0*TMath::Pi(); // keep the [-pi,+pi] interval
1333 if(delta<-1.0*TMath::Pi()) delta += 2.0*TMath::Pi();
1334 values[AliDielectronVarManager::kV0ACrpH2FlowV2] = TMath::Cos(2.0*delta); // 2nd harmonic flow coefficient
1335 values[AliDielectronVarManager::kDeltaPhiV0ACrpH2] = delta;
1336
a3cde8ca 1337
1338 // quantities using the values of AliEPSelectionTask
1339 values[AliDielectronVarManager::kDeltaPhiv0ArpH2] = values[AliDielectronVarManager::kPhi] - values[AliDielectronVarManager::kv0ArpH2];
1340 values[AliDielectronVarManager::kDeltaPhiv0CrpH2] = values[AliDielectronVarManager::kPhi] - values[AliDielectronVarManager::kv0CrpH2];
1341 values[AliDielectronVarManager::kDeltaPhiv0ACrpH2] = values[AliDielectronVarManager::kPhi] - values[AliDielectronVarManager::kv0ACrpH2];
1342 // keep the interval [-pi,+pi]
1343 if ( values[AliDielectronVarManager::kDeltaPhiv0ArpH2] > TMath::Pi() )
1344 values[AliDielectronVarManager::kDeltaPhiv0ArpH2] -= TMath::TwoPi();
1345 if ( values[AliDielectronVarManager::kDeltaPhiv0CrpH2] > TMath::Pi() )
1346 values[AliDielectronVarManager::kDeltaPhiv0CrpH2] -= TMath::TwoPi();
1347 if ( values[AliDielectronVarManager::kDeltaPhiv0ACrpH2] > TMath::Pi() )
1348 values[AliDielectronVarManager::kDeltaPhiv0ACrpH2] -= TMath::TwoPi();
1349
1350 if ( values[AliDielectronVarManager::kDeltaPhiv0ArpH2] < -1.*TMath::Pi() )
1351 values[AliDielectronVarManager::kDeltaPhiv0ArpH2] += TMath::TwoPi();
1352 if ( values[AliDielectronVarManager::kDeltaPhiv0CrpH2] < -1.*TMath::Pi() )
1353 values[AliDielectronVarManager::kDeltaPhiv0CrpH2] += TMath::TwoPi();
1354 if ( values[AliDielectronVarManager::kDeltaPhiv0ACrpH2] < -1.*TMath::Pi() )
1355 values[AliDielectronVarManager::kDeltaPhiv0ACrpH2] += TMath::TwoPi();
1356
5720c765 1357
8df8e382 1358 AliDielectronMC *mc=AliDielectronMC::Instance();
1359
1360 if (mc->HasMC()){
5720c765 1361 values[AliDielectronVarManager::kPseudoProperTimeResolution] = -10.0e+10;
ba15fdfb 1362 Bool_t samemother = mc->HaveSameMother(pair);
1363 values[AliDielectronVarManager::kIsJpsiPrimary] = mc->IsJpsiPrimary(pair);
1364 values[AliDielectronVarManager::kHaveSameMother] = samemother ;
5720c765 1365
1bb1fef1 1366 // fill kPseudoProperTimeResolution
5720c765 1367 values[AliDielectronVarManager::kPseudoProperTimeResolution] = -1e10;
1368 // values[AliDielectronVarManager::kPseudoProperTimePull] = -1e10;
1369 if(samemother && fgEvent) {
1370 if(pair->GetFirstDaughter()->GetLabel() > 0) {
1371 const AliVParticle* d1 = mc->GetMCTrackFromMCEvent(pair->GetFirstDaughter()->GetLabel());
1372 const AliVParticle* motherMC = mc->GetMCTrackFromMCEvent(((AliMCParticle*)d1)->GetMother());
40875e45 1373 const AliMCEvent *mcevent = mc->GetMCEvent();
1374 const AliVVertex* mcVtx = mcevent ? mcevent->GetPrimaryVertex() : 0x0;
5720c765 1375 if(motherMC && mcVtx) {
1bb1fef1 1376 Int_t motherLbl = motherMC->GetLabel();
1377 values[AliDielectronVarManager::kHasCocktailMother]=mc->CheckParticleSource(motherLbl, AliDielectronSignalMC::kDirect);
1378 const Double_t lxyMC = ( (motherMC->Xv() - mcVtx->GetX()) * motherMC->Px() +
5720c765 1379 (motherMC->Yv() - mcVtx->GetY()) * motherMC->Py() ) / motherMC->Pt();
1380 const Double_t pseudoMC = lxyMC * (TDatabasePDG::Instance()->GetParticle(443)->Mass())/motherMC->Pt();
1381 values[AliDielectronVarManager::kPseudoProperTimeResolution] = values[AliDielectronVarManager::kPseudoProperTime] - pseudoMC;
1382 if (errPseudoProperTime2 > 0)
1383 values[AliDielectronVarManager::kPseudoProperTimePull] = values[AliDielectronVarManager::kPseudoProperTimeResolution]/sqrt(errPseudoProperTime2);
1bb1fef1 1384 }
5720c765 1385 }
1386 }
2e02dba4 1387
1388 values[AliDielectronVarManager::kTRDpidEffPair] = 0.;
1389 if (fgTRDpidEff[0][0]){
1390 Double_t valuesLeg1[AliDielectronVarManager::kNMaxValues];
1391 Double_t valuesLeg2[AliDielectronVarManager::kNMaxValues];
1392 AliVParticle* leg1 = pair->GetFirstDaughter();
1393 AliVParticle* leg2 = pair->GetSecondDaughter();
1394 if (leg1 && leg2){
1395 Fill(leg1, valuesLeg1);
1396 Fill(leg2, valuesLeg2);
1397 values[AliDielectronVarManager::kTRDpidEffPair] = valuesLeg1[AliDielectronVarManager::kTRDpidEffLeg]*valuesLeg2[AliDielectronVarManager::kTRDpidEffLeg];
1398 }
1399 }
8df8e382 1400 }//if (mc->HasMC())
1401
1402
b2a297fa 1403}
1404
1201a1a9 1405inline void AliDielectronVarManager::FillVarKFParticle(const AliKFParticle *particle, Double_t * const values)
1406{
1407 //
1408 // Fill track information available in AliVParticle into an array
1409 //
1410 values[AliDielectronVarManager::kPx] = particle->GetPx();
1411 values[AliDielectronVarManager::kPy] = particle->GetPy();
1412 values[AliDielectronVarManager::kPz] = particle->GetPz();
1413 values[AliDielectronVarManager::kPt] = particle->GetPt();
1414 values[AliDielectronVarManager::kP] = particle->GetP();
1415
1416 values[AliDielectronVarManager::kXv] = particle->GetX();
1417 values[AliDielectronVarManager::kYv] = particle->GetY();
1418 values[AliDielectronVarManager::kZv] = particle->GetZ();
1419
1420 values[AliDielectronVarManager::kOneOverPt] = 0;
1421 values[AliDielectronVarManager::kPhi] = particle->GetPhi();
1422 values[AliDielectronVarManager::kTheta] = 0.;
1423 values[AliDielectronVarManager::kEta] = particle->GetEta();
1424 values[AliDielectronVarManager::kY] = ((particle->GetE()*particle->GetE()-particle->GetPx()*particle->GetPx()-particle->GetPy()*particle->GetPy()-particle->GetPz()*particle->GetPz())>0.) ? TLorentzVector(particle->GetPx(),particle->GetPy(),particle->GetPz(),particle->GetE()).Rapidity() : -1111.;
1425
1426 values[AliDielectronVarManager::kE] = particle->GetE();
1427 values[AliDielectronVarManager::kM] = particle->GetMass();
1428 values[AliDielectronVarManager::kCharge] = particle->GetQ();
1429
1430 values[AliDielectronVarManager::kNclsITS] = 0;
5720c765 1431 values[AliDielectronVarManager::kITSchi2Cl] = -1;
1201a1a9 1432 values[AliDielectronVarManager::kNclsTPC] = 0;
5720c765 1433 values[AliDielectronVarManager::kNclsSTPC] = 0;
1434 values[AliDielectronVarManager::kNclsSFracTPC] = 0;
1201a1a9 1435 values[AliDielectronVarManager::kNclsTPCiter1] = 0;
1436 values[AliDielectronVarManager::kNFclsTPC] = 0;
1437 values[AliDielectronVarManager::kNclsTRD] = 0;
1438 values[AliDielectronVarManager::kTRDntracklets] = 0;
1439 values[AliDielectronVarManager::kTRDpidQuality] = 0;
1440 values[AliDielectronVarManager::kTPCchi2Cl] = 0;
1441 values[AliDielectronVarManager::kTrackStatus] = 0;
07480df6 1442 values[AliDielectronVarManager::kFilterBit] = 0;
1201a1a9 1443 values[AliDielectronVarManager::kTRDprobEle] = 0;
1444 values[AliDielectronVarManager::kTRDprobPio] = 0;
1445 values[AliDielectronVarManager::kTPCsignalN] = 0;
5720c765 1446 values[AliDielectronVarManager::kTPCclsDiff] = 0;
ba15fdfb 1447 values[AliDielectronVarManager::kTPCsignalNfrac]= 0;
1201a1a9 1448 values[AliDielectronVarManager::kImpactParXY] = 0;
1449 values[AliDielectronVarManager::kImpactParZ] = 0;
1450 values[AliDielectronVarManager::kPIn] = 0;
5720c765 1451 values[AliDielectronVarManager::kYsignedIn] = 0;
1201a1a9 1452 values[AliDielectronVarManager::kTPCsignal] = 0;
ba15fdfb 1453 values[AliDielectronVarManager::kTOFsignal] = 0;
1454 values[AliDielectronVarManager::kTOFbeta] = 0;
1201a1a9 1455 values[AliDielectronVarManager::kTPCnSigmaEle] = 0;
1456 values[AliDielectronVarManager::kTPCnSigmaPio] = 0;
1457 values[AliDielectronVarManager::kTPCnSigmaMuo] = 0;
1458 values[AliDielectronVarManager::kTPCnSigmaKao] = 0;
1459 values[AliDielectronVarManager::kTPCnSigmaPro] = 0;
1460 values[AliDielectronVarManager::kITSclusterMap] = 0;
1461
ba15fdfb 1462 values[AliDielectronVarManager::kPdgCode] = -1;
1463 values[AliDielectronVarManager::kPdgCodeMother] = -1;
1464 values[AliDielectronVarManager::kPdgCodeGrandMother] = -1;
1bb1fef1 1465 values[AliDielectronVarManager::kHasCocktailMother]=0;
1466 values[AliDielectronVarManager::kHasCocktailGrandMother]=0;
1201a1a9 1467
5720c765 1468// if ( fgEvent ) AliDielectronVarManager::Fill(fgEvent, values);
1469 for (Int_t i=AliDielectronVarManager::kPairMax; i<AliDielectronVarManager::kNMaxValues; ++i)
1470 values[i]=fgData[i];
1471
1201a1a9 1472}
6551594b 1473
1474inline void AliDielectronVarManager::FillVarVEvent(const AliVEvent *event, Double_t * const values)
1475{
1476 //
1477 // Fill event information available for histogramming into an array
1478 //
5720c765 1479 values[AliDielectronVarManager::kRunNumber] = event->GetRunNumber();
a823f01b 1480 if(fgCurrentRun!=event->GetRunNumber()) {
1481 if(fgVZEROCalibrationFile.Contains(".root")) InitVZEROCalibrationHistograms(event->GetRunNumber());
1482 if(fgVZERORecenteringFile.Contains(".root")) InitVZERORecenteringHistograms(event->GetRunNumber());
1483 fgCurrentRun=event->GetRunNumber();
1484 }
0c09cae4 1485 values[AliDielectronVarManager::kMixingBin]=0;
1486
6551594b 1487 const AliVVertex *primVtx = event->GetPrimaryVertex();
8df8e382 1488
1489 values[AliDielectronVarManager::kXvPrim] = 0;
1490 values[AliDielectronVarManager::kYvPrim] = 0;
1491 values[AliDielectronVarManager::kZvPrim] = 0;
0c09cae4 1492 values[AliDielectronVarManager::kNVtxContrib] = 0;
ba15fdfb 1493// values[AliDielectronVarManager::kChi2NDF] = 0; //This is the pair value!!!
5720c765 1494
0c09cae4 1495 values[AliDielectronVarManager::kNTrk] = 0;
1496 values[AliDielectronVarManager::kNVtxContrib] = 0;
1497 values[AliDielectronVarManager::kNacc] = 0;
1498 values[AliDielectronVarManager::kNaccTrcklts] = 0;
5720c765 1499 values[AliDielectronVarManager::kNaccTrcklts0916] = 0;
0c09cae4 1500 values[AliDielectronVarManager::kNevents] = 0; //always fill bin 0;
8df8e382 1501
0c09cae4 1502 if (primVtx){
1503 values[AliDielectronVarManager::kXvPrim] = primVtx->GetX();
1504 values[AliDielectronVarManager::kYvPrim] = primVtx->GetY();
1505 values[AliDielectronVarManager::kZvPrim] = primVtx->GetZ();
1506 values[AliDielectronVarManager::kNVtxContrib] = primVtx->GetNContributors();
1507 }
1508 // values[AliDielectronVarManager::kChi2NDF] = primVtx->GetChi2perNDF(); //this is the pair value
6551594b 1509
5720c765 1510 values[AliDielectronVarManager::kNTrk] = event->GetNumberOfTracks();
1511 values[AliDielectronVarManager::kNacc] = AliDielectronHelper::GetNacc(event);
1512 values[AliDielectronVarManager::kNaccTrcklts] = AliDielectronHelper::GetNaccTrcklts(event); // etaRange = 1.6 (default)
1513 values[AliDielectronVarManager::kNaccTrcklts0916] = AliDielectronHelper::GetNaccTrcklts(event,1.6)-AliDielectronHelper::GetNaccTrcklts(event,.9);
1514 // values[AliDielectronVarManager::kNaccTrcklts05] = AliDielectronHelper::GetNaccTrcklts(event, 0.5);
1515 // values[AliDielectronVarManager::kNaccTrcklts10] = AliDielectronHelper::GetNaccTrcklts(event, 1.0);
1516 // values[AliDielectronVarManager::kNaccTrckltsCorr] = AliDielectronHelper::GetNaccTrckltsCorrected(event, values[AliDielectronVarManager::kNaccTrcklts], values[AliDielectronVarManager::kZvPrim]);
1517
20b6b7d4 1518 values[AliDielectronVarManager::kPhiMaxPt] = 0;
1519 values[AliDielectronVarManager::kMaxPt] = 0;
1520 Double_t ptMaxEv = -1., phiptMaxEv= -1.;
1521 for(Int_t itrk=0; itrk<event->GetNumberOfTracks(); itrk++) {
1522 AliVParticle *part= event->GetTrack(itrk);
1523 if(part->Pt() > ptMaxEv) {
1524 ptMaxEv = part->Pt();
1525 phiptMaxEv = part->Phi();
1526 }
1527 }
1528 values[AliDielectronVarManager::kPhiMaxPt] = phiptMaxEv;
1529 values[AliDielectronVarManager::kMaxPt] = ptMaxEv;
1530
5720c765 1531
07480df6 1532 // event plane quantities from the AliEPSelectionTask
1533 for(Int_t ivar=AliDielectronVarManager::kv0ArpH2; ivar<=kv0ACrpH2FlowV2; ivar++) values[ivar] = 0.0; // v0 variables
1534 for(Int_t ivar=AliDielectronVarManager::kTPCxH2; ivar<=kTPCsub12DiffH2uc; ivar++) values[ivar] = 0.0; // tpc variables
1535 AliEventplane *ep = new AliEventplane();
1536 // VZERO
fd6ebd85 1537 Double_t qx = 0, qy = 0;
fd6ebd85 1538 values[AliDielectronVarManager::kv0ACrpH2] = TVector2::Phi_mpi_pi(ep->CalculateVZEROEventPlane(event,10, 2, qx, qy));
1539 values[AliDielectronVarManager::kv0ACxH2] = qx;
1540 values[AliDielectronVarManager::kv0ACyH2] = qy;
20b6b7d4 1541 values[AliDielectronVarManager::kv0ACmagH2] = TMath::Sqrt(qx*qx+qy*qy);
fd6ebd85 1542 qx = 0, qy = 0;
1543 values[AliDielectronVarManager::kv0ArpH2] = TVector2::Phi_mpi_pi(ep->CalculateVZEROEventPlane(event, 8, 2, qx, qy));
1544 values[AliDielectronVarManager::kv0AxH2] = qx;
1545 values[AliDielectronVarManager::kv0AyH2] = qy;
20b6b7d4 1546 values[AliDielectronVarManager::kv0AmagH2] = TMath::Sqrt(qx*qx+qy*qy);
fd6ebd85 1547 qx = 0, qy = 0;
1548 values[AliDielectronVarManager::kv0CrpH2] = TVector2::Phi_mpi_pi(ep->CalculateVZEROEventPlane(event, 9, 2, qx, qy));
1549 values[AliDielectronVarManager::kv0CxH2] = qx;
1550 values[AliDielectronVarManager::kv0CyH2] = qy;
20b6b7d4 1551 values[AliDielectronVarManager::kv0CmagH2] = TMath::Sqrt(qx*qx+qy*qy);
fd6ebd85 1552 qx = 0, qy = 0;
1553 values[AliDielectronVarManager::kv0C0rpH2] = TVector2::Phi_mpi_pi(ep->CalculateVZEROEventPlane(event, 0, 0, 2, qx, qy)); qx = 0, qy = 0;
1554 values[AliDielectronVarManager::kv0C3rpH2] = TVector2::Phi_mpi_pi(ep->CalculateVZEROEventPlane(event, 3, 3, 2, qx, qy)); qx = 0, qy = 0;
1555 values[AliDielectronVarManager::kv0A0rpH2] = TVector2::Phi_mpi_pi(ep->CalculateVZEROEventPlane(event, 4, 4, 2, qx, qy)); qx = 0, qy = 0;
1556 values[AliDielectronVarManager::kv0A3rpH2] = TVector2::Phi_mpi_pi(ep->CalculateVZEROEventPlane(event, 7, 7, 2, qx, qy)); qx = 0, qy = 0;
e4339752 1557 values[AliDielectronVarManager::kv0ACrpH2FlowV2] = TMath::Cos( 2*(values[AliDielectronVarManager::kPhi] - values[AliDielectronVarManager::kv0ACrpH2]) );
1558 values[AliDielectronVarManager::kv0ArpH2FlowV2] = TMath::Cos( 2*(values[AliDielectronVarManager::kPhi] - values[AliDielectronVarManager::kv0ArpH2]) );
1559 values[AliDielectronVarManager::kv0CrpH2FlowV2] = TMath::Cos( 2*(values[AliDielectronVarManager::kPhi] - values[AliDielectronVarManager::kv0CrpH2]) );
5720c765 1560
07480df6 1561 // TPC event plane quantities (uncorrected)
1562 ep = const_cast<AliVEvent*>(event)->GetEventplane();
1563 if(ep) {
1564 TVector2 *qstd = ep->GetQVector(); // This is the "standard" Q-Vector for TPC
1565 TVector2 *qsub1 = ep->GetQsub1(); // random subevent plane
1566 TVector2 *qsub2 = ep->GetQsub2();
1567 if(qstd && qsub1 && qsub2) {
1568 values[AliDielectronVarManager::kTPCxH2uc] = qstd->X();
1569 values[AliDielectronVarManager::kTPCyH2uc] = qstd->Y();
20b6b7d4 1570 values[AliDielectronVarManager::kTPCmagH2uc] = TMath::Sqrt(qstd->X()*qstd->X()+qstd->Y()*qstd->Y());
07480df6 1571 values[AliDielectronVarManager::kTPCrpH2uc] = ((TMath::Abs(qstd->X())>1.0e-10) ? TMath::ATan2(qstd->Y(),qstd->X())/2.0 : 0.0);
1572 values[AliDielectronVarManager::kTPCsub1xH2uc] = qsub1->X();
1573 values[AliDielectronVarManager::kTPCsub1yH2uc] = qsub1->Y();
1574 values[AliDielectronVarManager::kTPCsub1rpH2uc] = ((TMath::Abs(qsub1->X())>1.0e-10) ? TMath::ATan2(qsub1->Y(),qsub1->X())/2.0 : 0.0);
1575 values[AliDielectronVarManager::kTPCsub2xH2uc] = qsub2->X();
1576 values[AliDielectronVarManager::kTPCsub2yH2uc] = qsub2->Y();
1577 values[AliDielectronVarManager::kTPCsub2rpH2uc] = ((TMath::Abs(qsub2->X())>1.0e-10) ? TMath::ATan2(qsub2->Y(),qsub2->X())/2.0 : 0.0);
1578
1579 values[AliDielectronVarManager::kTPCsub12DiffH2uc] = TMath::Cos( 2.*(values[AliDielectronVarManager::kTPCsub1rpH2uc] -
1580 values[AliDielectronVarManager::kTPCsub2rpH2uc]) );
1581 }
20b6b7d4 1582
07480df6 1583 // TPC event plane quantities (corrected)
1584 if(fgTPCEventPlane)
1585 FillVarTPCEventPlane(fgTPCEventPlane, values);
1586 } //if: eventplane
1587
5720c765 1588 // ESD VZERO information
1589 AliVVZERO* vzeroData = event->GetVZEROData();
1590 values[AliDielectronVarManager::kMultV0A] = 0.0;
1591 values[AliDielectronVarManager::kMultV0C] = 0.0;
1592 values[AliDielectronVarManager::kAdcV0A] = 0.0;
1593 values[AliDielectronVarManager::kAdcV0C] = 0.0;
1594 for(Int_t i=0; i<32; ++i) {
a823f01b 1595 values[AliDielectronVarManager::kVZEROchMult+i] = vzeroData->GetMultiplicity(i);
1596 values[AliDielectronVarManager::kVZEROchMult+32+i] = vzeroData->GetMultiplicity(i+32);
1597 //values[AliDielectronVarManager::kVZEROchMult+i] = event->GetVZEROEqMultiplicity(i);
1598 //values[AliDielectronVarManager::kVZEROchMult+32+i] = event->GetVZEROEqMultiplicity(i+32);
5720c765 1599 values[AliDielectronVarManager::kMultV0A] += vzeroData->GetMultiplicityV0A(i);
1600 values[AliDielectronVarManager::kMultV0C] += vzeroData->GetMultiplicityV0C(i);
1601 //values[AliDielectronVarManager::kAdcV0A] += vzeroData->GetAdcV0A(i);
1602 //values[AliDielectronVarManager::kAdcV0C] += vzeroData->GetAdcV0C(i);
1603 }
1604 values[AliDielectronVarManager::kMultV0] = values[AliDielectronVarManager::kMultV0A] + values[AliDielectronVarManager::kMultV0C];
1605 values[AliDielectronVarManager::kAdcV0] = values[AliDielectronVarManager::kAdcV0A] + values[AliDielectronVarManager::kAdcV0C];
1606 // VZERO event plane quantities
1607 Double_t qvec[3]={0.0};
1608 GetVzeroRP(event, qvec,0); // V0-A
1609 values[AliDielectronVarManager::kV0AxH2] = qvec[0]; values[AliDielectronVarManager::kV0AyH2] = qvec[1];
1610 values[AliDielectronVarManager::kV0ArpH2] = qvec[2];
1611 qvec[0]=0.0; qvec[1]=0.0; qvec[2]=0.0;
1612 GetVzeroRP(event, qvec,1); // V0-C
1613 values[AliDielectronVarManager::kV0CxH2] = qvec[0]; values[AliDielectronVarManager::kV0CyH2] = qvec[1];
1614 values[AliDielectronVarManager::kV0CrpH2] = qvec[2];
1615 qvec[0]=0.0; qvec[1]=0.0; qvec[2]=0.0;
1616 GetVzeroRP(event, qvec,2); // V0-A and V0-C combined
1617 values[AliDielectronVarManager::kV0ACxH2] = qvec[0]; values[AliDielectronVarManager::kV0ACyH2] = qvec[1];
1618 values[AliDielectronVarManager::kV0ACrpH2] = qvec[2];
1619 // VZERO event plane resolution
1620 values[AliDielectronVarManager::kV0ArpResH2] = 1.0;
1621 values[AliDielectronVarManager::kV0CrpResH2] = 1.0;
1622 values[AliDielectronVarManager::kV0ACrpResH2] = 1.0;
1623 // Q vector components correlations
1624 values[AliDielectronVarManager::kV0XaXcH2] = values[AliDielectronVarManager::kV0AxH2]*values[AliDielectronVarManager::kV0CxH2];
1625 values[AliDielectronVarManager::kV0XaYaH2] = values[AliDielectronVarManager::kV0AxH2]*values[AliDielectronVarManager::kV0AyH2];
1626 values[AliDielectronVarManager::kV0XaYcH2] = values[AliDielectronVarManager::kV0AxH2]*values[AliDielectronVarManager::kV0CyH2];
1627 values[AliDielectronVarManager::kV0YaXcH2] = values[AliDielectronVarManager::kV0AyH2]*values[AliDielectronVarManager::kV0CxH2];
1628 values[AliDielectronVarManager::kV0YaYcH2] = values[AliDielectronVarManager::kV0AyH2]*values[AliDielectronVarManager::kV0CyH2];
1629 values[AliDielectronVarManager::kV0XcYcH2] = values[AliDielectronVarManager::kV0CxH2]*values[AliDielectronVarManager::kV0CyH2];
1630
07480df6 1631
1632 // event plane differences used for EP resolution calculation
5720c765 1633 values[AliDielectronVarManager::kV0ATPCDiffH2] = TMath::Cos( 2.*(values[AliDielectronVarManager::kV0ArpH2] -
1634 values[AliDielectronVarManager::kTPCrpH2]) );
1635
1636 values[AliDielectronVarManager::kV0CTPCDiffH2] = TMath::Cos( 2.*(values[AliDielectronVarManager::kV0CrpH2] -
1637 values[AliDielectronVarManager::kTPCrpH2]) );
1638
1639 values[AliDielectronVarManager::kV0AV0CDiffH2] = TMath::Cos( 2.*(values[AliDielectronVarManager::kV0ArpH2] -
1640 values[AliDielectronVarManager::kV0CrpH2]) );
1641
1642 values[AliDielectronVarManager::kv0ATPCDiffH2] = TMath::Cos( 2.*(values[AliDielectronVarManager::kv0ArpH2] -
1643 values[AliDielectronVarManager::kTPCrpH2]) );
1644
1645 values[AliDielectronVarManager::kv0CTPCDiffH2] = TMath::Cos( 2.*(values[AliDielectronVarManager::kv0CrpH2] -
1646 values[AliDielectronVarManager::kTPCrpH2]) );
1647
1648 values[AliDielectronVarManager::kv0Av0CDiffH2] = TMath::Cos( 2.*(values[AliDielectronVarManager::kv0ArpH2] -
1649 values[AliDielectronVarManager::kv0CrpH2]) );
d327d9cd 1650
1d2d723c 1651 values[AliDielectronVarManager::kv0Av0C0DiffH2] = TMath::Cos( 2.*(values[AliDielectronVarManager::kv0ArpH2] -
1652 values[AliDielectronVarManager::kv0C0rpH2]) );
1653
1654 values[AliDielectronVarManager::kv0Av0C3DiffH2] = TMath::Cos( 2.*(values[AliDielectronVarManager::kv0ArpH2] -
1655 values[AliDielectronVarManager::kv0C3rpH2]) );
1656
1657 values[AliDielectronVarManager::kv0Cv0A0DiffH2] = TMath::Cos( 2.*(values[AliDielectronVarManager::kv0CrpH2] -
1658 values[AliDielectronVarManager::kv0A0rpH2]) );
1659
1660 values[AliDielectronVarManager::kv0Cv0A3DiffH2] = TMath::Cos( 2.*(values[AliDielectronVarManager::kv0CrpH2] -
1661 values[AliDielectronVarManager::kv0A3rpH2]) );
1662
1663 values[AliDielectronVarManager::kv0A0v0A3DiffH2] = TMath::Cos( 2.*(values[AliDielectronVarManager::kv0A0rpH2] -
1664 values[AliDielectronVarManager::kv0A3rpH2]) );
1665
1666 values[AliDielectronVarManager::kv0C0v0C3DiffH2] = TMath::Cos( 2.*(values[AliDielectronVarManager::kv0C0rpH2] -
1667 values[AliDielectronVarManager::kv0C3rpH2]) );
1668
1669
6551594b 1670}
1671
1672inline void AliDielectronVarManager::FillVarESDEvent(const AliESDEvent *event, Double_t * const values)
1673{
1674 //
1675 // Fill event information available for histogramming into an array
1676 //
1677
1678 // Fill common AliVEvent interface information
1679 FillVarVEvent(event, values);
ffbede40 1680
a823f01b 1681 Double_t centralityF=-1; Double_t centralitySPD=-1;
4649c75b 1682 AliCentrality *esdCentrality = const_cast<AliESDEvent*>(event)->GetCentrality();
ffbede40 1683 if (esdCentrality) centralityF = esdCentrality->GetCentralityPercentile("V0M");
a823f01b 1684 if (esdCentrality) centralitySPD = esdCentrality->GetCentralityPercentile("CL1");
ffbede40 1685
6551594b 1686 // Fill AliESDEvent interface specific information
1687 const AliESDVertex *primVtx = event->GetPrimaryVertex();
1688 values[AliDielectronVarManager::kXRes] = primVtx->GetXRes();
1689 values[AliDielectronVarManager::kYRes] = primVtx->GetYRes();
1690 values[AliDielectronVarManager::kZRes] = primVtx->GetZRes();
ffbede40 1691 values[AliDielectronVarManager::kCentrality] = centralityF;
a823f01b 1692 values[AliDielectronVarManager::kCentralitySPD] = centralitySPD;
5720c765 1693
1694 // Event multiplicity estimators
1695 Int_t nTrSPD05=0; Int_t nTrITSTPC05=0; Int_t nTrITSSA05=0;
1696 event->EstimateMultiplicity(nTrSPD05, nTrITSTPC05, nTrITSSA05, 0.5);
1697 values[AliDielectronVarManager::kNaccTrckltsEsd05] = nTrSPD05;
1698 values[AliDielectronVarManager::kNaccItsTpcEsd05] = nTrITSTPC05;
1699 values[AliDielectronVarManager::kNaccItsPureEsd05] = nTrITSSA05;
1700 values[AliDielectronVarManager::kNaccTrckltsEsd05Corr] =
1701 AliDielectronHelper::GetNaccTrckltsCorrected(event,Double_t(nTrSPD05),values[AliDielectronVarManager::kZvPrim],0);
1702 values[AliDielectronVarManager::kNaccItsTpcEsd05Corr] =
1703 AliDielectronHelper::GetNaccTrckltsCorrected(event,Double_t(nTrITSTPC05),values[AliDielectronVarManager::kZvPrim],3);
1704 values[AliDielectronVarManager::kNaccItsPureEsd05Corr] =
1705 AliDielectronHelper::GetNaccTrckltsCorrected(event,Double_t(nTrITSSA05),values[AliDielectronVarManager::kZvPrim],6);
1706
1707 Int_t nTrSPD10=0; Int_t nTrITSTPC10=0; Int_t nTrITSSA10=0;
1708 event->EstimateMultiplicity(nTrSPD10, nTrITSTPC10, nTrITSSA10, 1.0);
1709 values[AliDielectronVarManager::kNaccTrckltsEsd10] = nTrSPD10;
1710 values[AliDielectronVarManager::kNaccItsTpcEsd10] = nTrITSTPC10;
1711 values[AliDielectronVarManager::kNaccItsPureEsd10] = nTrITSSA10;
1712 values[AliDielectronVarManager::kNaccTrckltsEsd10Corr] =
1713 AliDielectronHelper::GetNaccTrckltsCorrected(event,Double_t(nTrSPD10),values[AliDielectronVarManager::kZvPrim],1);
1714 values[AliDielectronVarManager::kNaccItsTpcEsd10Corr] =
1715 AliDielectronHelper::GetNaccTrckltsCorrected(event,Double_t(nTrITSTPC10),values[AliDielectronVarManager::kZvPrim],4);
1716 values[AliDielectronVarManager::kNaccItsPureEsd10Corr] =
1717 AliDielectronHelper::GetNaccTrckltsCorrected(event,Double_t(nTrITSSA10),values[AliDielectronVarManager::kZvPrim],7);
1718
1719 Int_t nTrSPD16=0; Int_t nTrITSTPC16=0; Int_t nTrITSSA16=0;
1720 event->EstimateMultiplicity(nTrSPD16, nTrITSTPC16, nTrITSSA16, 1.6);
1721 values[AliDielectronVarManager::kNaccTrckltsEsd16] = nTrSPD16;
1722 values[AliDielectronVarManager::kNaccItsTpcEsd16] = nTrITSTPC16;
1723 values[AliDielectronVarManager::kNaccItsPureEsd16] = nTrITSSA16;
1724 values[AliDielectronVarManager::kNaccTrckltsEsd16Corr] =
1725 AliDielectronHelper::GetNaccTrckltsCorrected(event,Double_t(nTrSPD16),values[AliDielectronVarManager::kZvPrim],2);
1726 values[AliDielectronVarManager::kNaccItsTpcEsd16Corr] =
1727 AliDielectronHelper::GetNaccTrckltsCorrected(event,Double_t(nTrITSTPC16),values[AliDielectronVarManager::kZvPrim],5);
1728 values[AliDielectronVarManager::kNaccItsPureEsd16Corr] =
1729 AliDielectronHelper::GetNaccTrckltsCorrected(event,Double_t(nTrITSSA16),values[AliDielectronVarManager::kZvPrim],8);
1730
6551594b 1731}
1732
1733inline void AliDielectronVarManager::FillVarAODEvent(const AliAODEvent *event, Double_t * const values)
1734{
1735 //
1736 // Fill event information available for histogramming into an array
20b6b7d4 1737 //
6551594b 1738
1739 // Fill common AliVEvent interface information
1740 FillVarVEvent(event, values);
1741
1742 // Fill AliAODEvent interface specific information
d327d9cd 1743 AliAODHeader *header = event->GetHeader();
20b6b7d4 1744
a823f01b 1745 Double_t centralityF=-1; Double_t centralitySPD=-1;
d327d9cd 1746 AliCentrality *aodCentrality = header->GetCentralityP();
1747 if (aodCentrality) centralityF = aodCentrality->GetCentralityPercentile("V0M");
a823f01b 1748 if (aodCentrality) centralitySPD = aodCentrality->GetCentralityPercentile("CL1");
d327d9cd 1749 values[AliDielectronVarManager::kCentrality] = centralityF;
a823f01b 1750 values[AliDielectronVarManager::kCentralitySPD] = centralitySPD;
20b6b7d4 1751
1752 // nanoAODs (w/o AliCentrality branch) should have the VOM centrality stored in the header
1753 if(!header->GetCentralityP())
1754 values[AliDielectronVarManager::kCentrality] = header->GetCentrality();
1755 // nanoAODs (w/o AliEventPlane branch) should have the tpc event plane angle stored in the header
1756 if(!header->GetEventplaneP())
1757 values[AliDielectronVarManager::kTPCrpH2uc] = header->GetEventplane();
1758
d327d9cd 1759 //const AliAODVertex *primVtx = event->GetPrimaryVertex();
6551594b 1760}
1761
1762inline void AliDielectronVarManager::FillVarMCEvent(const AliMCEvent *event, Double_t * const values)
1763{
1764 //
1765 // Fill event information available for histogramming into an array
1766 //
1767
1768 // Fill common AliVEvent interface information
5720c765 1769 // FillVarVEvent(event, values);
1770 const AliVVertex* vtx = event->GetPrimaryVertex();
1771 values[AliDielectronVarManager::kXvPrim] = (vtx ? vtx->GetX() : 0.0);
1772 values[AliDielectronVarManager::kYvPrim] = (vtx ? vtx->GetY() : 0.0);
1773 values[AliDielectronVarManager::kZvPrim] = (vtx ? vtx->GetZ() : 0.0);
6551594b 1774 // Fill AliMCEvent interface specific information
5720c765 1775 values[AliDielectronVarManager::kNch] = AliDielectronHelper::GetNch(event, 1.6);
1776 values[AliDielectronVarManager::kNch05] = AliDielectronHelper::GetNch(event, 0.5);
1777 values[AliDielectronVarManager::kNch10] = AliDielectronHelper::GetNch(event, 1.0);
1778
1779 values[AliDielectronVarManager::kNumberOfJPsis] = AliDielectronHelper::GetNMothers(event, 0.9, 443, 11);
1780 values[AliDielectronVarManager::kNumberOfJPsisPrompt] = AliDielectronHelper::GetNMothers(event, 0.9, 443, 11, 1);
1781 values[AliDielectronVarManager::kNumberOfJPsisNPrompt] = AliDielectronHelper::GetNMothers(event, 0.9, 443, 11, 0);
1782}
1783
1784inline void AliDielectronVarManager::FillVarTPCEventPlane(const AliEventplane *evplane, Double_t * const values)
1785{
1786 //
1787 // Fill TPC event plane information after correction
1788 //
07480df6 1789 if(evplane) {
1790 TVector2 *qcorr = const_cast<AliEventplane *>(evplane)->GetQVector(); // This is the "corrected" Q-Vector
1791 TVector2 *qcsub1 = const_cast<AliEventplane *>(evplane)->GetQsub1();
1792 TVector2 *qcsub2 = const_cast<AliEventplane *>(evplane)->GetQsub2();
1ae2dca4 1793 if(qcorr && qcsub1 && qcsub2) {
07480df6 1794
1795 values[AliDielectronVarManager::kTPCxH2] = qcorr->X();
1796 values[AliDielectronVarManager::kTPCyH2] = qcorr->Y();
20b6b7d4 1797 values[AliDielectronVarManager::kTPCmagH2] = TMath::Sqrt(qcorr->X()*qcorr->X()+qcorr->Y()*qcorr->Y());
07480df6 1798 values[AliDielectronVarManager::kTPCrpH2] = ((TMath::Abs(qcorr->X())>1.0e-10) ? TMath::ATan2(qcorr->Y(),qcorr->X())/2.0 : 0.0);
1799
1800 values[AliDielectronVarManager::kTPCsub1xH2] = qcsub1->X();
1801 values[AliDielectronVarManager::kTPCsub1yH2] = qcsub1->Y();
1802 values[AliDielectronVarManager::kTPCsub1rpH2] = ((TMath::Abs(qcsub1->X())>1.0e-10) ? TMath::ATan2(qcsub1->Y(),qcsub1->X())/2.0 : 0.0);
1803
1804 values[AliDielectronVarManager::kTPCsub2xH2] = qcsub2->X();
1805 values[AliDielectronVarManager::kTPCsub2yH2] = qcsub2->Y();
1806 values[AliDielectronVarManager::kTPCsub2rpH2] = ((TMath::Abs(qcsub2->X())>1.0e-10) ? TMath::ATan2(qcsub2->Y(),qcsub2->X())/2.0 : 0.0);
1807
1808 values[AliDielectronVarManager::kTPCsub12DiffH2] = TMath::Cos( 2.*(values[AliDielectronVarManager::kTPCsub1rpH2] -
1809 values[AliDielectronVarManager::kTPCsub2rpH2]) );
1810 values[AliDielectronVarManager::kTPCsub12DiffH2Sin] = TMath::Sin( 2.*(values[AliDielectronVarManager::kTPCsub1rpH2] -
1811 values[AliDielectronVarManager::kTPCsub2rpH2]) );
1812 }
1813 }
5720c765 1814}
a823f01b 1815
6551594b 1816inline void AliDielectronVarManager::InitESDpid(Int_t type)
1817{
1818 //
1819 // initialize PID parameters
1820 // type=0 is simulation
1821 // type=1 is data
1822
ba15fdfb 1823 if (!fgPIDResponse) fgPIDResponse=new AliESDpid((Bool_t)(type==0));
6551594b 1824 Double_t alephParameters[5];
1825 // simulation
1826 alephParameters[0] = 2.15898e+00/50.;
1827 alephParameters[1] = 1.75295e+01;
1828 alephParameters[2] = 3.40030e-09;
1829 alephParameters[3] = 1.96178e+00;
1830 alephParameters[4] = 3.91720e+00;
ba15fdfb 1831 fgPIDResponse->GetTOFResponse().SetTimeResolution(80.);
6551594b 1832
1833 // data
83e37742 1834 if (type==1){
1835 alephParameters[0] = 0.0283086/0.97;
6551594b 1836 alephParameters[1] = 2.63394e+01;
1837 alephParameters[2] = 5.04114e-11;
1838 alephParameters[3] = 2.12543e+00;
1839 alephParameters[4] = 4.88663e+00;
ba15fdfb 1840 fgPIDResponse->GetTOFResponse().SetTimeResolution(130.);
1841 fgPIDResponse->GetTPCResponse().SetMip(50.);
6551594b 1842 }
1843
ba15fdfb 1844 fgPIDResponse->GetTPCResponse().SetBetheBlochParameters(
6551594b 1845 alephParameters[0],alephParameters[1],alephParameters[2],
1846 alephParameters[3],alephParameters[4]);
1847
ba15fdfb 1848 fgPIDResponse->GetTPCResponse().SetSigma(3.79301e-03, 2.21280e+04);
6551594b 1849}
1850
2a14a7b1 1851inline void AliDielectronVarManager::InitAODpidUtil(Int_t type)
1852{
ba15fdfb 1853 if (!fgPIDResponse) fgPIDResponse=new AliAODpidUtil;
2a14a7b1 1854 Double_t alephParameters[5];
1855 // simulation
1856 alephParameters[0] = 2.15898e+00/50.;
1857 alephParameters[1] = 1.75295e+01;
1858 alephParameters[2] = 3.40030e-09;
1859 alephParameters[3] = 1.96178e+00;
1860 alephParameters[4] = 3.91720e+00;
ba15fdfb 1861 fgPIDResponse->GetTOFResponse().SetTimeResolution(80.);
2a14a7b1 1862
1863 // data
1864 if (type==1){
1865 alephParameters[0] = 0.0283086/0.97;
1866 alephParameters[1] = 2.63394e+01;
1867 alephParameters[2] = 5.04114e-11;
1868 alephParameters[3] = 2.12543e+00;
1869 alephParameters[4] = 4.88663e+00;
ba15fdfb 1870 fgPIDResponse->GetTOFResponse().SetTimeResolution(130.);
1871 fgPIDResponse->GetTPCResponse().SetMip(50.);
2a14a7b1 1872 }
1873
ba15fdfb 1874 fgPIDResponse->GetTPCResponse().SetBetheBlochParameters(
2a14a7b1 1875 alephParameters[0],alephParameters[1],alephParameters[2],
1876 alephParameters[3],alephParameters[4]);
1877
ba15fdfb 1878 fgPIDResponse->GetTPCResponse().SetSigma(3.79301e-03, 2.21280e+04);
2a14a7b1 1879}
1880
572b0139 1881
5720c765 1882inline void AliDielectronVarManager::InitEstimatorAvg(const Char_t* filename)
1883{
1884 //
1885 // initialize the profile histograms neccessary for the correction of the multiplicity estimators in pp collisions
1886 //
1887
1888 const Char_t* estimatorNames[9] = {"SPDmult05","SPDmult10","SPDmult16",
1889 "ITSTPC05", "ITSTPC10", "ITSTPC16",
1890 "ITSSA05", "ITSSA10", "ITSSA16"};
1891 const Char_t* periodNames[4] = {"LHC10b", "LHC10c", "LHC10d", "LHC10e"};
1892 TFile* file=TFile::Open(filename);
1893 if(!file) return;
1894
1895 for(Int_t ip=0; ip<4; ++ip) {
1896 for(Int_t ie=0; ie<9; ++ie) {
1897 fgMultEstimatorAvg[ip][ie] = (TProfile*)(file->Get(Form("%s_%s",estimatorNames[ie],periodNames[ip]))->Clone(Form("%s_%s_clone",estimatorNames[ie],periodNames[ip])));
1898 }
1899 }
1900}
1901
1902
1903inline void AliDielectronVarManager::InitTRDpidEffHistograms(const Char_t* filename)
1904{
1905 //
1906 // initialize the 3D histograms with the TRD pid efficiency histograms
1907 //
1908
1909 // reset the centrality ranges and the efficiency histograms
1910 for(Int_t i=0; i<10; ++i) { // centrality ranges
1911 for(Int_t j=0; j<4; ++j) fgTRDpidEffCentRanges[i][j] = -1.;
1912 if(fgTRDpidEff[i][0]) {
1913 delete fgTRDpidEff[i][0];
1914 fgTRDpidEff[i][0] = 0x0;
1915 }
1916 if(fgTRDpidEff[i][1]) {
1917 delete fgTRDpidEff[i][1];
1918 fgTRDpidEff[i][1] = 0x0;
1919 }
1920 }
1921
1922 TFile* file=TFile::Open(filename);
1923 TList* keys=file->GetListOfKeys();
1924 Int_t idxp=0; Int_t idxn=0;
1925 for(Int_t i=0; i<keys->GetEntries(); ++i) {
1926 if(idxp>=10) continue;
1927 if(idxn>=10) continue;
1928 TString name=((TKey*)keys->At(i))->ReadObj()->GetName();
1929 // Name of histograms should be in the format:
1930 // TRDeff<field>_cent_<centLow>_<centHigh>
1931 // <field> is either "BPLUS" or "BMINUS"
1932 if(!(name.Contains("BPLUS") || name.Contains("BMINUS"))) continue;
1933 TObjArray* arr = name.Tokenize("_");
1934 Bool_t isBplus = kTRUE;
1935 if(name.Contains("BMINUS")) isBplus = kFALSE;
1936 TString centMinStr = arr->At(2)->GetName(); TString centMaxStr = arr->At(3)->GetName();
1937 if(isBplus) {
1938 fgTRDpidEffCentRanges[idxp][2] = centMinStr.Atof();
1939 fgTRDpidEffCentRanges[idxp][3] = centMaxStr.Atof();
1940 fgTRDpidEff[idxp][1] = (TH3D*)(file->Get(name.Data())->Clone(Form("%s_clone",name.Data())));
1941 ++idxp;
1942 }
1943 else {
1944 fgTRDpidEffCentRanges[idxn][0] = centMinStr.Atof();
1945 fgTRDpidEffCentRanges[idxn][1] = centMaxStr.Atof();
1946 fgTRDpidEff[idxn][0] = (TH3D*)(file->Get(name.Data())->Clone(Form("%s_clone",name.Data())));
1947 ++idxn;
1948 }
1949 }
1950}
1951
1952
a823f01b 1953inline void AliDielectronVarManager::InitVZEROCalibrationHistograms(Int_t runNo) {
1954 //
1955 // Initialize the VZERO channel-by-channel calibration histograms
1956 //
1957
1958 //initialize only once
1959 if(fgVZEROCalib[0]) return;
1960
1961 for(Int_t i=0; i<64; ++i)
1962 if(fgVZEROCalib[i]) {
1963 delete fgVZEROCalib[i];
1964 fgVZEROCalib[i] = 0x0;
1965 }
1966
1967 TFile file(fgVZEROCalibrationFile.Data());
1968
1969 for(Int_t i=0; i<64; ++i){
1970 fgVZEROCalib[i] = (TProfile2D*)(file.Get(Form("RUN%d_ch%d_VtxCent", runNo, i)));
1971 if (fgVZEROCalib[i]) fgVZEROCalib[i]->SetDirectory(0x0);
1972 }
1973}
1974
1975
1976inline void AliDielectronVarManager::InitVZERORecenteringHistograms(Int_t runNo) {
1977 //
1978 // Initialize the VZERO event plane recentering histograms
1979 //
1980
1981 //initialize only once
1982 if(fgVZERORecentering[0][0]) return;
1983
1984 for(Int_t i=0; i<2; ++i)
1985 for(Int_t j=0; j<2; ++j)
1986 if(fgVZERORecentering[i][j]) {
1987 delete fgVZERORecentering[i][j];
1988 fgVZERORecentering[i][j] = 0x0;
1989 }
1990
1991 TFile file(fgVZERORecenteringFile.Data());
1992 if (!file.IsOpen()) return;
1993
1994 fgVZERORecentering[0][0] = (TProfile2D*)(file.Get(Form("RUN%d_QxA_CentVtx", runNo)));
1995 fgVZERORecentering[0][1] = (TProfile2D*)(file.Get(Form("RUN%d_QyA_CentVtx", runNo)));
1996 fgVZERORecentering[1][0] = (TProfile2D*)(file.Get(Form("RUN%d_QxC_CentVtx", runNo)));
1997 fgVZERORecentering[1][1] = (TProfile2D*)(file.Get(Form("RUN%d_QyC_CentVtx", runNo)));
1998
1999 if (fgVZERORecentering[0][0]) fgVZERORecentering[0][0]->SetDirectory(0x0);
2000 if (fgVZERORecentering[0][1]) fgVZERORecentering[0][1]->SetDirectory(0x0);
2001 if (fgVZERORecentering[1][0]) fgVZERORecentering[1][0]->SetDirectory(0x0);
2002 if (fgVZERORecentering[1][1]) fgVZERORecentering[1][1]->SetDirectory(0x0);
2003
2004}
2005
2006
5720c765 2007inline Double_t AliDielectronVarManager::GetTRDpidEfficiency(Int_t runNo, Double_t centrality,
2008 Double_t eta, Double_t trdPhi, Double_t pout,
2009 Double_t& effErr) {
2010 //
2011 // return the efficiency in the given phase space cell
2012 //
2013 // LHC10h data----------------------------------------------
2014 Bool_t isBplus = kTRUE;
2015 if(runNo<=138275) isBplus = kFALSE;
2016 // TODO: check magnetic polarity for runs in 2011 data
2017 // ---------------------------------------------------------
2018 Int_t centIdx = -1;
2019 for(Int_t icent=0; icent<10; ++icent) {
2020 if(isBplus) {
2021 if(centrality>=fgTRDpidEffCentRanges[icent][2] && centrality<fgTRDpidEffCentRanges[icent][3]) {
2022 centIdx = icent;
2023 break;
2024 }
2025 }
2026 else {
2027 if(centrality>=fgTRDpidEffCentRanges[icent][0] && centrality<fgTRDpidEffCentRanges[icent][1]) {
2028 centIdx = icent;
2029 break;
2030 }
2031 }
2032 }
ac390e40 2033 //TODO: chek logick
2034 if (centIdx<0) return 1;
2035
5720c765 2036 TH3D* effH = fgTRDpidEff[centIdx][(isBplus ? 1 : 0)];
2037 if(!effH) {effErr=0x0; return 1.0;}
2038 Int_t etaBin = effH->GetXaxis()->FindBin(eta);
2039 if(eta<effH->GetXaxis()->GetXmin()) etaBin=1;
2040 if(eta>effH->GetXaxis()->GetXmax()) etaBin=effH->GetXaxis()->GetNbins();
2041 Int_t phiBin = effH->GetYaxis()->FindBin(trdPhi);
2042 if(trdPhi<effH->GetYaxis()->GetXmin()) phiBin=1;
2043 if(trdPhi>effH->GetYaxis()->GetXmax()) phiBin=effH->GetYaxis()->GetNbins();
2044 Int_t poutBin = effH->GetZaxis()->FindBin(pout);
2045 if(pout<effH->GetZaxis()->GetXmin()) poutBin=1;
2046 if(pout>effH->GetZaxis()->GetXmax()) poutBin=effH->GetZaxis()->GetNbins();
2047 Double_t eff = effH->GetBinContent(etaBin, phiBin, poutBin);
2048 effErr = effH->GetBinError(etaBin, phiBin, poutBin);
2049 if(eff<-0.0001) {
2050 effErr = 0.0;
2051 eff = 1.0;
2052 }
2053 return eff;
2054}
2055
2056
572b0139 2057inline void AliDielectronVarManager::SetEvent(AliVEvent * const ev)
2058{
2059
2060 fgEvent = ev;
2061 if (fgKFVertex) delete fgKFVertex;
2062 fgKFVertex=0x0;
2e02dba4 2063 if (!ev) return;
2064 if (ev->GetPrimaryVertex()) fgKFVertex=new AliKFVertex(*ev->GetPrimaryVertex());
ba15fdfb 2065
2066 for (Int_t i=0; i<AliDielectronVarManager::kNMaxValues;++i) fgData[i]=0.;
2067 AliDielectronVarManager::Fill(fgEvent, fgData);
572b0139 2068}
2a14a7b1 2069
5720c765 2070inline void AliDielectronVarManager::SetEventData(const Double_t data[AliDielectronVarManager::kNMaxValues])
2071{
2072 for (Int_t i=0; i<kNMaxValues;++i) fgData[i]=0.;
2073 for (Int_t i=kPairMax; i<kNMaxValues;++i) fgData[i]=data[i];
2074}
2075
2a14a7b1 2076
2077inline Bool_t AliDielectronVarManager::GetDCA(const AliAODTrack *track, Double_t d0z0[2])
2078{
2079 if(track->TestBit(AliAODTrack::kIsDCA)){
2080 d0z0[0]=track->DCA();
2081 d0z0[1]=track->ZAtDCA();
2082 return kTRUE;
2083 }
2084
67fd1119 2085 Bool_t ok=kFALSE;
2086 if(fgEvent) {
2087 Double_t covd0z0[3];
31b0e8c5 2088 //AliAODTrack copy(*track);
2089 AliExternalTrackParam etp; etp.CopyFromVTrack(track);
2090
2091 Float_t xstart = etp.GetX();
2092 if(xstart>3.) {
2093 d0z0[0]=-999.;
2094 d0z0[1]=-999.;
2095 //printf("This method can be used only for propagation inside the beam pipe \n");
2096 return kFALSE;
2097 }
2098
2099
67fd1119 2100 AliAODVertex *vtx =(AliAODVertex*)(fgEvent->GetPrimaryVertex());
2101 Double_t fBzkG = fgEvent->GetMagneticField(); // z componenent of field in kG
31b0e8c5 2102 ok = etp.PropagateToDCA(vtx,fBzkG,kVeryBig,d0z0,covd0z0);
2103 //ok = copy.PropagateToDCA(vtx,fBzkG,kVeryBig,d0z0,covd0z0);
67fd1119 2104 }
2a14a7b1 2105 if(!ok){
2106 d0z0[0]=-999.;
2107 d0z0[1]=-999.;
2108 }
2109 return ok;
2110}
2111
5720c765 2112inline void AliDielectronVarManager::SetTPCEventPlane(AliEventplane *const evplane)
2113{
2114
2115 fgTPCEventPlane = evplane;
2116 // for (Int_t i=0; i<AliDielectronVarManager::kNMaxValues;++i) fgData[i]=0.;
2117 // AliDielectronVarManager::Fill(fgEvent, fgData);
2118}
2119
2120
2121//_________________________________________________________________
2122inline void AliDielectronVarManager::GetVzeroRP(const AliVEvent* event, Double_t* qvec, Int_t sideOption) {
2123 //
2124 // Get the reaction plane from the VZERO detector for a given harmonic
2125 //
2126 // sideOption = 0- V0A, 1- V0C, 2-both
2127 // Q{x,y} = SUM_i mult(i) * {cos(n*phi_i), sin(n*phi_i)}
2128 // phi_i - phi angle of the VZERO sector i
2129 // Each sector covers 45 degrees(8 sectors per ring). Middle of sector 0 is at 45/2
2130 // channel 0: 22.5
2131 // 1: 22.5+45
2132 // 2: 22.5+45*2
2133 // ...
2134 // at the next ring continues the same
2135 // channel 8: 22.5
2136 // channel 9: 22.5 + 45
2137 // ...
2138 const Double_t kX[8] = {0.92388, 0.38268, -0.38268, -0.92388, -0.92388, -0.38268, 0.38268, 0.92388}; // cosines of the angles of the VZERO sectors (8 per ring)
2139 const Double_t kY[8] = {0.38268, 0.92388, 0.92388, 0.38268, -0.38268, -0.92388, -0.92388, -0.38268}; // sines -- " --
2140 Int_t phi;
2141 Float_t mult;
5720c765 2142
a823f01b 2143 // get centrality and vertex for this event
2144 Double_t centralitySPD = -1; Double_t vtxZ = -999.;
2145 if(event->IsA() == AliESDEvent::Class()) {
2146 const AliESDEvent* esdEv = static_cast<const AliESDEvent*>(event);
2147 AliCentrality *esdCentrality = const_cast<AliESDEvent*>(esdEv)->GetCentrality();
2148 if(esdCentrality) centralitySPD = esdCentrality->GetCentralityPercentile("CL1");
2149 }
2150 if(event->IsA() == AliAODEvent::Class()) {
2151 const AliAODEvent* aodEv = static_cast<const AliAODEvent*>(event);
2152 AliAODHeader *header = aodEv->GetHeader();
2153 AliCentrality *aodCentrality = header->GetCentralityP();
2154 if(aodCentrality) centralitySPD = aodCentrality->GetCentralityPercentile("CL1");
2155 }
2156 const AliVVertex *primVtx = event->GetPrimaryVertex();
2157 if(!primVtx) return;
2158 vtxZ = primVtx->GetZ();
2159 if(TMath::Abs(vtxZ)>10.) return;
2160 if(centralitySPD<0. || centralitySPD>80.) return;
2161
2162 Int_t binCent = -1; Int_t binVtx = -1;
2163 if(fgVZEROCalib[0]) {
2164 binVtx = fgVZEROCalib[0]->GetXaxis()->FindBin(vtxZ);
2165 binCent = fgVZEROCalib[0]->GetYaxis()->FindBin(centralitySPD);
2166 }
2167
2168 AliVVZERO* vzero = event->GetVZEROData();
2169 Double_t average = 0.0;
5720c765 2170 for(Int_t iChannel=0; iChannel<64; ++iChannel) {
2171 if(iChannel<32 && sideOption==0) continue;
2172 if(iChannel>=32 && sideOption==1) continue;
2173 phi=iChannel%8;
a823f01b 2174 mult = vzero->GetMultiplicity(iChannel);
2175 if(fgVZEROCalib[iChannel])
2176 average = fgVZEROCalib[iChannel]->GetBinContent(binVtx, binCent);
2177 if(average>1.0e-10 && mult>0.5)
2178 mult /= average;
2179 else
2180 mult = 0.0;
5720c765 2181 // 2nd harmonic
2182 qvec[0] += mult*(2.0*TMath::Power(kX[phi],2.0)-1);
2183 qvec[1] += mult*(2.0*kX[phi]*kY[phi]);
2184 } // end loop over channels
a823f01b 2185
2186 // do recentering
2187 if(fgVZERORecentering[0][0]) {
2188// printf("vzero: %p\n",fgVZERORecentering[0][0]);
2189 Int_t binCentRecenter = -1; Int_t binVtxRecenter = -1;
2190 binCentRecenter = fgVZERORecentering[0][0]->GetXaxis()->FindBin(centralitySPD);
2191 binVtxRecenter = fgVZERORecentering[0][0]->GetYaxis()->FindBin(vtxZ);
2192 if(sideOption==0) { // side A
2193 qvec[0] -= fgVZERORecentering[0][0]->GetBinContent(binCentRecenter, binVtxRecenter);
2194 qvec[1] -= fgVZERORecentering[0][1]->GetBinContent(binCentRecenter, binVtxRecenter);
2195 }
2196 if(sideOption==1) { // side C
2197 qvec[0] -= fgVZERORecentering[1][0]->GetBinContent(binCentRecenter, binVtxRecenter);
2198 qvec[1] -= fgVZERORecentering[1][1]->GetBinContent(binCentRecenter, binVtxRecenter);
2199 }
2200 if(sideOption==2) { // side A and C together
2201 qvec[0] -= fgVZERORecentering[0][0]->GetBinContent(binCentRecenter, binVtxRecenter);
2202 qvec[0] -= fgVZERORecentering[1][0]->GetBinContent(binCentRecenter, binVtxRecenter);
2203 qvec[1] -= fgVZERORecentering[0][1]->GetBinContent(binCentRecenter, binVtxRecenter);
2204 qvec[1] -= fgVZERORecentering[1][1]->GetBinContent(binCentRecenter, binVtxRecenter);
2205 }
2206 }
2207
2208 // calculate the reaction plane
5720c765 2209 if(TMath::Abs(qvec[0])>1.0e-10)
2210 qvec[2] = TMath::ATan2(qvec[1],qvec[0])/2.0;
2211}
2212
2213
2214
b2a297fa 2215/*
2216inline void AliDielectronVarManager::FillValues(const TParticle *particle, Double_t *values)
2217{
2218 //
2219 // Fill track information available for histogramming into an array
2220 //
2221
2222 // Fill TParticle interface information
2223 values[AliDielectronVarManager::kPx] = particle->Px();
2224 values[AliDielectronVarManager::kPy] = particle->Py();
2225 values[AliDielectronVarManager::kPz] = particle->Pz();
2226 values[AliDielectronVarManager::kPt] = particle->Pt();
2227 values[AliDielectronVarManager::kP] = particle->P();
2228
2229 values[AliDielectronVarManager::kXv] = particle->Vx();
2230 values[AliDielectronVarManager::kYv] = particle->Vy();
2231 values[AliDielectronVarManager::kZv] = particle->Vz();
2232
2233 values[AliDielectronVarManager::kOneOverPt] = 1./particle->Pt();
2234 values[AliDielectronVarManager::kPhi] = particle->Phi();
2235 values[AliDielectronVarManager::kTheta] =
2236 values[AliDielectronVarManager::kEta] = particle->Eta();
2237 values[AliDielectronVarManager::kY] =
2238
2239 values[AliDielectronVarManager::kE] = particle->Energy();
2240 values[AliDielectronVarManager::kM] = particle->GetMass();
2241
2242 values[AliDielectronVarManager::kCharge] = particle->GetPDG()->Charge()/3; // uggly
2243
2244}*/
2245
2246#endif
fb7d2d99 2247