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1 | /************************************************************************** |
2 | * Copyright(c) 1998-1999, ALICE Experiment at CERN, All rights reserved. * |
3 | * * |
4 | * Author: The ALICE Off-line Project. * |
5 | * Contributors are mentioned in the code where appropriate. * |
6 | * * |
7 | * Permission to use, copy, modify and distribute this software and its * |
8 | * documentation strictly for non-commercial purposes is hereby granted * |
9 | * without fee, provided that the above copyright notice appears in all * |
10 | * copies and that both the copyright notice and this permission notice * |
11 | * appear in the supporting documentation. The authors make no claims * |
12 | * about the suitability of this software for any purpose. It is * |
13 | * provided "as is" without express or implied warranty. * |
14 | **************************************************************************/ |
15 | |
16 | /* $Id$ */ |
17 | |
18 | //_________________________________________________________________________ |
19 | // Implementation version v1 of EMCAL Manager class |
20 | // An object of this class does not produce digits |
21 | // It is the one to use if you do want to produce outputs in TREEH |
22 | // |
23 | //*-- Author: Sahal Yacoob (LBL /UCT) |
24 | //*-- : Jennifer Klay (LBL) |
25 | |
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26 | // This Class not stores information on all particles prior to EMCAL entry - in order to facilitate analysis. |
27 | // This is done by setting fIShunt =2, and flagging all parents of particles entering the EMCAL. |
28 | |
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29 | // 15/02/2002 .... Yves Schutz |
30 | // 1. fSamplingFraction and fLayerToPreshowerRatio have been removed |
31 | // 2. Timing signal is collected and added to hit |
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32 | |
33 | // --- ROOT system --- |
34 | #include "TPGON.h" |
35 | #include "TTUBS.h" |
36 | #include "TNode.h" |
37 | #include "TRandom.h" |
38 | #include "TTree.h" |
39 | #include "TGeometry.h" |
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40 | #include "TParticle.h" |
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41 | |
42 | // --- Standard library --- |
43 | |
44 | #include <stdio.h> |
45 | #include <string.h> |
46 | #include <stdlib.h> |
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47 | #include <Rstrstream.h> |
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48 | #include <Riostream.h> |
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49 | #include <math.h> |
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50 | |
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51 | // --- AliRoot header files --- |
52 | |
53 | #include "AliEMCALv1.h" |
54 | #include "AliEMCALHit.h" |
55 | #include "AliEMCALGeometry.h" |
56 | #include "AliConst.h" |
57 | #include "AliRun.h" |
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58 | |
59 | ClassImp(AliEMCALv1) |
60 | |
61 | |
62 | //______________________________________________________________________ |
63 | AliEMCALv1::AliEMCALv1():AliEMCALv0(){ |
64 | // ctor |
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65 | |
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66 | } |
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67 | |
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68 | //______________________________________________________________________ |
69 | AliEMCALv1::AliEMCALv1(const char *name, const char *title): |
70 | AliEMCALv0(name,title){ |
71 | // Standard Creator. |
72 | |
73 | fHits= new TClonesArray("AliEMCALHit",1000); |
74 | gAlice->AddHitList(fHits); |
75 | |
76 | fNhits = 0; |
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77 | fIshunt = 2; // All hits are associated with particles entering the calorimeter |
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78 | } |
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79 | |
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80 | //______________________________________________________________________ |
81 | AliEMCALv1::~AliEMCALv1(){ |
82 | // dtor |
83 | |
84 | if ( fHits) { |
85 | fHits->Delete(); |
86 | delete fHits; |
87 | fHits = 0; |
88 | } |
89 | } |
90 | //______________________________________________________________________ |
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91 | void AliEMCALv1::AddHit(Int_t shunt, Int_t primary, Int_t tracknumber, Int_t iparent, Float_t ienergy, |
92 | Int_t id, Float_t * hits,Float_t * p){ |
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93 | // Add a hit to the hit list. |
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94 | // An EMCAL hit is the sum of all hits in a tower section (PRE, ECAL, HCAL) |
95 | // originating from the same entering particle |
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96 | Int_t hitCounter; |
97 | |
98 | AliEMCALHit *newHit; |
99 | AliEMCALHit *curHit; |
100 | Bool_t deja = kFALSE; |
101 | |
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102 | newHit = new AliEMCALHit(shunt, primary, tracknumber, iparent, ienergy, id, hits, p); |
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103 | for ( hitCounter = fNhits-1; hitCounter >= 0 && !deja; hitCounter-- ) { |
104 | curHit = (AliEMCALHit*) (*fHits)[hitCounter]; |
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105 | // We add hits with the same tracknumber, while GEANT treats |
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106 | // primaries succesively |
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107 | if(curHit->GetPrimary() != primary) |
108 | break; |
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109 | if( *curHit == *newHit ) { |
110 | *curHit = *curHit + *newHit; |
111 | deja = kTRUE; |
112 | } // end if |
113 | } // end for hitCounter |
114 | |
115 | if ( !deja ) { |
116 | new((*fHits)[fNhits]) AliEMCALHit(*newHit); |
117 | fNhits++; |
118 | } // end if |
119 | |
120 | delete newHit; |
121 | } |
122 | //______________________________________________________________________ |
123 | void AliEMCALv1::StepManager(void){ |
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124 | // Accumulates hits as long as the track stays in a single |
125 | // crystal or PPSD gas Cell |
126 | |
127 | Int_t id[2]; // (layer, phi, Eta) indices |
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128 | // position wrt MRS and energy deposited |
129 | Float_t xyzte[5]={0.,0.,0.,0.,0.};// position wrt MRS, time and energy deposited |
130 | Float_t pmom[4]={0.,0.,0.,0.}; |
131 | TLorentzVector pos; // Lorentz vector of the track current position. |
132 | TLorentzVector mom; // Lorentz vector of the track current momentum. |
133 | Int_t tracknumber = gAlice->CurrentTrack(); |
134 | Int_t primary = 0; |
135 | static Int_t iparent = 0; |
136 | static Float_t ienergy = 0; |
137 | Int_t copy = 0; |
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138 | |
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139 | AliEMCALGeometry * geom = GetGeometry() ; |
140 | |
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141 | if(gMC->IsTrackEntering() && (strcmp(gMC->CurrentVolName(),"XALU") == 0)){ // This Particle in enterring the Calorimeter |
142 | gMC->TrackPosition(pos) ; |
143 | xyzte[0] = pos[0] ; |
144 | xyzte[1] = pos[1] ; |
145 | xyzte[2] = pos[2] ; |
146 | if ( (xyzte[0]*xyzte[0] + xyzte[1]*xyzte[1]) |
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147 | < (geom->GetEnvelop(0)+geom->GetGap2Active()+1.5 )*(geom->GetEnvelop(0)+geom->GetGap2Active()+1.5 ) ) { |
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148 | iparent = tracknumber; |
149 | gMC->TrackMomentum(mom); |
150 | ienergy = mom[3]; |
151 | TParticle * part = 0 ; |
152 | Int_t parent = iparent ; |
153 | while ( parent != -1 ) { // <------------- flags this particle to be kept and |
154 | //all the ancestors of this particle |
155 | part = gAlice->Particle(parent) ; |
156 | part->SetBit(kKeepBit); |
157 | parent = part->GetFirstMother() ; |
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158 | } |
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159 | } |
160 | } |
161 | if(gMC->CurrentVolID(copy) == gMC->VolId("XPHI") ) { // We are in a Scintillator Layer |
162 | |
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163 | Float_t depositedEnergy ; |
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164 | |
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165 | if( (depositedEnergy = gMC->Edep()) > 0.){// Track is inside a scintillator and deposits some energy |
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166 | |
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167 | gMC->TrackPosition(pos); |
168 | xyzte[0] = pos[0]; |
169 | xyzte[1] = pos[1]; |
170 | xyzte[2] = pos[2]; |
171 | xyzte[3] = gMC->TrackTime() ; |
172 | |
173 | gMC->TrackMomentum(mom); |
174 | pmom[0] = mom[0]; |
175 | pmom[1] = mom[1]; |
176 | pmom[2] = mom[2]; |
177 | pmom[3] = mom[3]; |
178 | |
179 | gMC->CurrentVolOffID(1, id[0]); // get the POLY copy number; |
180 | gMC->CurrentVolID(id[1]); // get the phi number inside the layer |
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181 | |
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182 | Int_t tower = (id[0]-1) % geom->GetNZ() + 1 + (id[1] - 1) * geom->GetNZ() ; |
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183 | Int_t layer = static_cast<Int_t>((id[0]-1)/(geom->GetNZ())) + 1 ; |
184 | Int_t absid = tower ; |
185 | if (layer <= geom->GetNPRLayers() ) |
186 | absid += geom->GetNZ() * geom->GetNPhi() ; |
187 | else if (layer > geom->GetNECLayers() ) |
188 | absid += 2 * geom->GetNZ() * geom->GetNPhi() ; |
189 | else { |
190 | Int_t nlayers = geom->GetNPRLayers()+ geom->GetNECLayers()+ geom->GetNHCLayers() ; |
191 | if (layer > nlayers) |
192 | Fatal("StepManager", "Wrong calculation of layer number: layer = %d > %d\n", layer, nlayers) ; |
193 | } |
194 | |
195 | Float_t lightYield = depositedEnergy ; |
196 | ; |
197 | xyzte[4] = lightYield ; |
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198 | |
199 | primary = gAlice->GetPrimary(tracknumber); |
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200 | |
201 | if (gDebug == 2) |
202 | Info("StepManager", "id0 = %d, id1 = %d, absid = %d tower = %d layer = %d energy = %f\n", id[0], id[1], absid, tower, layer, xyzte[4]) ; |
203 | |
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204 | AddHit(fIshunt, primary,tracknumber, iparent, ienergy, absid, xyzte, pmom); |
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205 | } // there is deposited energy |
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206 | } |
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207 | } |