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Corrected the FMD3 mother volume. I had defined it with decreasing
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37c4363a 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//
20// Forward Multiplicity Detector based on Silicon wafers. This class
21// contains the base procedures for the Forward Multiplicity detector
22// Detector consists of 5 Si volumes covered pseudorapidity interval
23// from 1.7 to 5.1.
24//
25// This class contains the detailed version of the FMD - that is, hits
26// are produced during simulation.
27//
28// The actual code is done by various separate classes. Below is
29// diagram showing the relationship between the various FMD classes
30// that handles the geometry
31//
32//
33// +----------+ +----------+
34// | AliFMDv1 | | AliFMDv1 |
35// +----------+ +----------+
36// | |
37// +----+--------------+
38// |
39// | +------------+ 1 +---------------+
40// | +- | AliFMDRing |<>--| AliFMDPolygon |
41// V 2 | +------------+ +---------------+
42// +--------+<>--+ |
43// | AliFMD | ^
44// +--------+<>--+ V 1..2
45// 3 | +-------------------+
46// +-| AliFMDSubDetector |
47// +-------------------+
48// ^
49// |
50// +-------------+-------------+
51// | | |
52// +---------+ +---------+ +---------+
53// | AliFMD1 | | AliFMD2 | | AliFMD3 |
54// +---------+ +---------+ +---------+
55//
56//
57// See also the class AliFMD for a more detailed explanation of the
58// various componets.
56b1929b 59#include <TVirtualMC.h> // ROOT_TVirtualMC
60#include <AliRun.h> // ALIRUN_H
61#include <AliMC.h> // ALIMC_H
62#include <AliLog.h> // ALILOG_H
e802be3e 63#include "AliFMDv1.h" // ALIFMDV1_H
37c4363a 64
65//____________________________________________________________________
66ClassImp(AliFMDv1);
67
68
69//____________________________________________________________________
70void
71AliFMDv1::StepManager()
72{
73 //
74 // Called for every step in the Forward Multiplicity Detector
75 //
76 // The procedure is as follows:
77 //
78 // - IF NOT track is alive THEN RETURN ENDIF
79 // - IF NOT particle is charged THEN RETURN ENDIF
80 // - IF NOT volume name is "STRI" or "STRO" THEN RETURN ENDIF
81 // - Get strip number (volume copy # minus 1)
82 // - Get phi division number (mother volume copy #)
83 // - Get module number (grand-mother volume copy #)
84 // - section # = 2 * module # + phi division # - 1
85 // - Get ring Id from volume name
86 // - Get detector # from grand-grand-grand-mother volume name
87 // - Get pointer to sub-detector object.
88 // - Get track position
89 // - IF track is entering volume AND track is inside real shape THEN
90 // - Reset energy deposited
91 // - Get track momentum
92 // - Get particle ID #
93 /// - ENDIF
94 // - IF track is inside volume AND inside real shape THEN
95 /// - Update energy deposited
96 // - ENDIF
97 // - IF track is inside real shape AND (track is leaving volume,
98 // or it died, or it is stopped THEN
99 // - Create a hit
100 // - ENDIF
101 //
102 //
103 // DebugGuard guard("AliFMDv1::StepManager");
104 AliDebug(10, "AliFMDv1::StepManager");
105 // return;
0115c4ea 106 AliDebug(10, Form("Is inside %s", gMC->CurrentVolName()));
37c4363a 107
108 // If the track is gone, return
109 if (!gMC->IsTrackAlive()) return;
110
111 // Only process charged particles
112 if(TMath::Abs(gMC->TrackCharge()) <= 0) return;
113
42403906 114 // Only do stuff is the track is in one of the strips.
115 // TString vol(gMC->CurrentVolName());
116 // if (!vol.Contains("STR")) return;
117 Int_t copy;
118 Int_t volumeId = gMC->CurrentVolID(copy);
afddaa11 119 // The ring ID is encoded in the volume name
120 Char_t ring = '\0';
121 if (volumeId == fInner->GetStripId()) ring = 'I';
122 else if (volumeId == fOuter->GetStripId()) ring = 'O';
123 else return;
124
37c4363a 125 // Get the strip number. Note, that GEANT numbers divisions from 1,
126 // so we subtract one
42403906 127 Int_t strip = copy - 1;
37c4363a 128
129 // Get the phi division of the module
130 Int_t phiDiv; // * The phi division number (1 or 2)
131 gMC->CurrentVolOffID(1, phiDiv); // in the module
132
133 // Active volume number - not used.
134 // Int_t active;
135 // gMC->CurrentVolOffID(2, active);
136
137 // Get the module number in the ring.
138 Int_t module;
139 gMC->CurrentVolOffID(3, module);
140
141 // Ring copy number - the same as the detector number - not used
142 // Int_t ringCopy; // * Ring copy number
143 // gMC->CurrentVolOffID(4, ringCopy); // Same as detector number
144
145 // Get the detector number from the path name
146 Int_t detector = Int_t((gMC->CurrentVolOffName(5)[3]) - 48);
147
148 // The sector number, calculated from module and phi division #
149 Int_t sector = 2 * module + phiDiv - 1;
150
afddaa11 151
37c4363a 152 // Get a pointer to the sub detector structure
153 AliFMDSubDetector* det = 0;
154 switch (detector) {
155 case 1: det = fFMD1; break;
156 case 2: det = fFMD2; break;
157 case 3: det = fFMD3; break;
158 }
159 if (!det) return;
160
161 // Get the current track position
162 TLorentzVector v;
163 gMC->TrackPosition(v);
164 // Check that the track is actually within the active area
165 Bool_t isWithin = det->CheckHit(ring, module, v.X(), v.Y());
166 Bool_t entering = gMC->IsTrackEntering() && isWithin;
167 Bool_t inside = gMC->IsTrackInside() && isWithin;
168 Bool_t out = (gMC->IsTrackExiting()
169 || gMC->IsTrackDisappeared()
170 || gMC->IsTrackStop()
171 || !isWithin);
172// Reset the energy deposition for this track, and update some of
173 // our parameters.
174 if (entering) {
175 fCurrentDeltaE = 0;
176
177 // Get production vertex and momentum of the track
178 fCurrentV = v;
179 gMC->TrackMomentum(fCurrentP);
180 fCurrentPdg = gMC->IdFromPDG(gMC->TrackPid());
181
182 // if (fAnalyser)
183 // fAnalyser->Update(detector, ring, isWithin, v.X(), v.Y());
184 }
185
186 // If the track is inside, then update the energy deposition
187 if (inside && fCurrentDeltaE >= 0)
188 fCurrentDeltaE += 1000 * gMC->Edep();
189
190 // The track exits the volume, or it disappeared in the volume, or
191 // the track is stopped because it no longer fulfills the cuts
192 // defined, then we create a hit.
193 if (out && fCurrentDeltaE >= 0) {
194 fCurrentDeltaE += 1000 * gMC->Edep();
195
196 AddHit(gAlice->GetMCApp()->GetCurrentTrackNumber(),
197 detector, ring, sector, strip,
198 fCurrentV.X(), fCurrentV.Y(), fCurrentV.Z(),
199 fCurrentP.X(), fCurrentP.Y(), fCurrentP.Z(),
200 fCurrentDeltaE, fCurrentPdg, fCurrentV.T());
201 fCurrentDeltaE = -1;
202 }
203}
204//___________________________________________________________________
205//
206// EOF
207//