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e087fe7f 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
30178c30 16/* $Id$ */
e087fe7f 17
d1525c79 18// ------------------
19// Class AliMUONTriggerResponseV1
20// ------------------
21// Trigger chamber response
22// with cluster size activated
23
e087fe7f 24#include "AliMUONResponseTriggerV1.h"
337c9041 25#include "AliMUONGeometrySegmentation.h"
4e702a25 26#include "AliMUON.h"
27#include "AliMUONDigit.h"
28#include "AliMUONGeometryTransformer.h"
4e702a25 29#include "AliMUONSegmentation.h"
d344444e 30#include "AliMUONConstants.h"
e087fe7f 31
9265505b 32#include "AliMpPad.h"
33#include "AliMpSegmentation.h"
34#include "AliMpVSegmentation.h"
866c3232 35#include "AliMpCathodType.h"
9265505b 36
37#include "AliRun.h"
38
39#include <TMath.h>
40#include <TRandom.h>
41
42/// \cond CLASSIMP
e087fe7f 43ClassImp(AliMUONResponseTriggerV1)
9265505b 44/// \endcond
e087fe7f 45
4e702a25 46namespace
47{
48 AliMUON* muon()
49 {
50 return static_cast<AliMUON*>(gAlice->GetModule("MUON"));
51 }
52
53 void Global2Local(Int_t detElemId, Double_t xg, Double_t yg, Double_t zg,
54 Double_t& xl, Double_t& yl, Double_t& zl)
55 {
56 // ideally should be :
57 // Double_t x,y,z;
58 // AliMUONGeometry::Global2Local(detElemId,xg,yg,zg,x,y,z);
59 // but while waiting for this geometry singleton, let's go through
60 // AliMUON still.
61
62 const AliMUONGeometryTransformer* transformer = muon()->GetGeometryTransformer();
63 transformer->Global2Local(detElemId,xg,yg,zg,xl,yl,zl);
64 }
65
66 AliMUONSegmentation* Segmentation()
67 {
68 static AliMUONSegmentation* segmentation = muon()->GetSegmentation();
69 return segmentation;
70 }
71}
72
e087fe7f 73//------------------------------------------------------------------
30178c30 74AliMUONResponseTriggerV1::AliMUONResponseTriggerV1()
1657f946 75 : AliMUONResponseTrigger(),
76 fGenerCluster(0),
77 fA(0),
78 fB(0),
79 fC(0)
30178c30 80{
9265505b 81/// default constructor
e087fe7f 82 Float_t hv=9.2;
83 SetParameters(hv);
84}
85
86//------------------------------------------------------------------
30178c30 87AliMUONResponseTriggerV1::AliMUONResponseTriggerV1(Float_t hv)
1657f946 88 : AliMUONResponseTrigger(),
89 fGenerCluster(0),
90 fA(0),
91 fB(0),
92 fC(0)
30178c30 93{
9265505b 94/// Constructor
e087fe7f 95 SetParameters(hv);
96}
97
98//------------------------------------------------------------------
9265505b 99AliMUONResponseTriggerV1::~AliMUONResponseTriggerV1()
100{
101/// destructor
102}
103
104//------------------------------------------------------------------
105void AliMUONResponseTriggerV1::SetParameters(Float_t hv)
106{
107/// initialize parameters accoring to HV
108/// (see V.Barret B.Espagnon and P.Rosnet Alice/note xxx)
e087fe7f 109 fA = 6.089 * hv - 52.70;
110 fB = 2.966;
111 fC = 4.3e-4 * hv - 3.5e-3;
112}
113
114//------------------------------------------------------------------
9265505b 115Int_t AliMUONResponseTriggerV1::SetGenerCluster()
116{
117/// Set the GenerCluster parameter and return 1
e087fe7f 118 fGenerCluster = gRandom->Rndm();
119 return 1;
337c9041 120}
e087fe7f 121
122//------------------------------------------------------------------
85fec35d 123Float_t AliMUONResponseTriggerV1::FireStripProb(Float_t x4, Float_t theta)
124const
125{
e087fe7f 126// parametrisation of the probability that a strip neighbour of the main
4e702a25 127// strip is fired (V.Barret B.Espagnon and P.Rosnet INT/DIM/01-04 (2001)
e087fe7f 128// WARNING : need to convert x4 from cm to mm
129
4e702a25 130 return
131 (TMath::Cos(theta)*fA/(fA+TMath::Cos(theta)*TMath::Power(x4*10.,fB))+fC)/
132 (TMath::Cos(theta)+fC);
133}
134
135//------------------------------------------------------------------
136void AliMUONResponseTriggerV1::DisIntegrate(const AliMUONHit& hit, TList& digits)
137{
9265505b 138 /// Generate digits (on each cathode) from 1 hit, with cluster-size
139 /// generation.
4e702a25 140
141 digits.Clear();
142
143 Float_t xhit = hit.X();
144 Float_t yhit = hit.Y();
145 Float_t zhit = 0; // FIXME : should it be hit.Z() ?
146 Int_t detElemId = hit.DetElemId();
147
148 Double_t x,y,z;
149 Global2Local(detElemId,xhit,yhit,zhit,x,y,z);
150
151 Float_t tof = hit.Age();
152 Int_t twentyNano(100);
d344444e 153 if (tof<AliMUONConstants::TriggerTofLimit())
4e702a25 154 {
155 twentyNano=1;
156 }
157
866c3232 158 for ( Int_t cath = AliMp::kCath0; cath <= AliMp::kCath1; ++cath )
4e702a25 159 {
9265505b 160 const AliMpVSegmentation* seg
866c3232 161 = AliMpSegmentation::Instance()
162 ->GetMpSegmentation(detElemId,AliMp::GetCathodType(cath));
4e702a25 163
164 AliMpPad pad = seg->PadByPosition(TVector2(x,y),kFALSE);
165 Int_t ix = pad.GetIndices().GetFirst();
166 Int_t iy = pad.GetIndices().GetSecond();
167
168 AliMUONDigit* d = new AliMUONDigit;
169 d->SetDetElemId(detElemId);
170
171 d->SetPadX(ix);
172 d->SetPadY(iy);
173
174 d->SetSignal(twentyNano);
175 d->AddPhysicsSignal(d->Signal());
176 d->SetCathode(cath);
177 digits.Add(d);
178
179 SetGenerCluster(); // 1 randum number per cathode (to be checked)
180
181 Int_t xList[10], yList[10];
182 Neighbours(cath,ix,iy,xList,yList);
183
184// cout << " detElemId cath ix iy = " << detElemId << " " << cath
185// << " " << ix << " " << iy << "\n";
186// for (Int_t i=0; i<10; i++) cout << " " << xList[i] << " " << yList[i];
187// cout << "\n";
188
189 Int_t qp = 0; // fired/no-fired strip = 1/0
190 for (Int_t i=0; i<10; i++) { // loop on neighbors
191 if (i==0||i==5||qp!=0) { // built-up cluster
192
193 // need to iterate in iy/ix for bending/non-bending plane
194 Int_t ixNeigh = ( cath == 0 ) ? ix : xList[i];
195 Int_t iyNeigh = ( cath == 0 ) ? yList[i] : iy;
196
197 AliMpIntPair pairNeigh = AliMpIntPair(ixNeigh,iyNeigh);
198 AliMpPad padNeigh = seg->PadByIndices(pairNeigh,kFALSE);
199 if(padNeigh.IsValid()){ // existing neighbourg
200
201 Int_t dix=-(ixNeigh-ix);
202 Int_t diy=-(iyNeigh-iy);
203 Float_t xlocalNeigh = padNeigh.Position().X();
204 Float_t ylocalNeigh = padNeigh.Position().Y();
205 Float_t dpx = padNeigh.Dimensions().X();
206 Float_t dpy = padNeigh.Dimensions().Y();
207 Float_t distX = TMath::Abs((Float_t)dix) * ((Float_t)dix * dpx + xlocalNeigh - x);
208 Float_t distY = TMath::Abs((Float_t)diy) * ((Float_t)diy * dpy + ylocalNeigh - y);
209 Float_t dist = TMath::Sqrt(distX*distX+distY*distY);
210
211// cout << " here " << dist << " " << fGenerCluster << " " << FireStripProb(dist,0) << "\n";
212
213 if (fGenerCluster<FireStripProb(dist,0)) qp = 1;
214 else qp = 0;
215
216 if (qp == 1) { // this digit is fired
217 AliMUONDigit* dNeigh = new AliMUONDigit;
218 dNeigh->SetDetElemId(detElemId);
219
220 dNeigh->SetPadX(ixNeigh);
221 dNeigh->SetPadY(iyNeigh);
222
223 dNeigh->SetSignal(twentyNano);
224 dNeigh->AddPhysicsSignal(dNeigh->Signal());
225 dNeigh->SetCathode(cath);
226 digits.Add(dNeigh);
227 } // digit fired
228 } // pad is valid
229 } // built-up cluster
230 } // loop on neighbors
231 } // loop on cathode
232}
233
234//------------------------------------------------------------------
235void AliMUONResponseTriggerV1::Neighbours(const Int_t cath,
236 const Int_t ix, const Int_t iy,
237 Int_t Xlist[10], Int_t Ylist[10])
238{
9265505b 239 ///-----------------BENDING----------------------------------------- /n
240 /// Returns list of 10 next neighbours for given X strip (ix, iy) /n
241 /// neighbour number 4 in the list - /n
242 /// neighbour number 3 in the list | /n
243 /// neighbour number 2 in the list |_ Upper part /n
244 /// neighbour number 1 in the list | /n
245 /// neighbour number 0 in the list - /n
246 /// X strip (ix, iy) /n
247 /// neighbour number 5 in the list - /n
248 /// neighbour number 6 in the list | _ Lower part /n
249 /// neighbour number 7 in the list | /n
250 /// neighbour number 8 in the list | /n
251 /// neighbour number 9 in the list - /n
252 /// /n
253 ///-----------------NON-BENDING------------------------------------- /n
254 /// Returns list of 10 next neighbours for given Y strip (ix, iy) /n
255 /// neighbour number 9 8 7 6 5 (Y strip (ix, iy)) 0 1 2 3 4 in the list /n
256 /// \_______/ \_______/ /n
257 /// left right /n
4e702a25 258
259 for (Int_t i=0; i<10; i++) {
260 Xlist[i]=-1;
261 Ylist[i]=-1;
262 }
263
264 Int_t iList[10]={9,8,7,6,5, 0,1,2,3,4};
265
266 // need to iterate in iy/ix for bending/non-bending plane
267 Int_t iNeigh = ( cath == 0 ) ? iy : ix;
268
269 Int_t i=0;
270 for (Int_t j=iNeigh-5; j<=iNeigh+5; j++){
271 if (j == iNeigh) continue;
272 // need to iterate in iy/ix for bending/non-bending plane
273 Int_t ixNeigh = ( cath == 0 ) ? ix : j;
274 Int_t iyNeigh = ( cath == 0 ) ? j : iy;
275
276// cout << " " << cath << " " << ix << " " << iy
277// << " " << ixNeigh << " " << iyNeigh << "\n";
278
279 Xlist[iList[i]]=ixNeigh;
280 Ylist[iList[i]]=iyNeigh;
281 i++;
282 }
e087fe7f 283}
284