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MC-dependent part of AliRun extracted in AliMC (F.Carminati)
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c5ca52b2 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
acd84897 16/* $Id$ */
c5ca52b2 17
116cbefd 18//------------------------------------------------------------------------
116cbefd 19// Lego generator in Eta bins
5d8718b8 20// Uses geantino rays to check the material distributions and detector's
21// geometry
22// Author: A.Morsch
116cbefd 23//------------------------------------------------------------------------
24
c5ca52b2 25#include "AliLegoGeneratorEta.h"
26#include "AliRun.h"
5d12ce38 27#include "AliMC.h"
c5ca52b2 28
29ClassImp(AliLegoGeneratorEta)
30
31
32//___________________________________________
33void AliLegoGeneratorEta::Generate()
34{
35// Create a geantino with kinematics corresponding to the current bins
36// Here: Coor1 = eta
37// Coor2 = phi.
38
39 //
40 // Rootinos are 0
41 const Int_t kMpart = 0;
42 Float_t orig[3], pmom[3];
43 Float_t t, cost, sint, cosp, sinp;
44 if (fCoor1Bin==-1) fCoor1Bin=fNCoor1;
45 // Prepare for next step
46 if(fCoor1Bin>=fNCoor1-1)
47 if(fCoor2Bin>=fNCoor2-1) {
48 Warning("Generate","End of Lego Generation");
49 return;
50 } else {
51 fCoor2Bin++;
10bd7535 52 printf("Generating rays in eta bin:%d\n",fCoor2Bin);
c5ca52b2 53 fCoor1Bin=0;
54 } else fCoor1Bin++;
55
56 fCurCoor1 = (fCoor1Min+(fCoor1Bin+0.5)*(fCoor1Max-fCoor1Min)/fNCoor1);
57 fCurCoor2 = (fCoor2Min+(fCoor2Bin+0.5)*(fCoor2Max-fCoor2Min)/fNCoor2);
58
10bd7535 59 Float_t phi = fCurCoor1*TMath::Pi()/180.;
60 Float_t theta = 2.*TMath::ATan(TMath::Exp(-fCurCoor2));
61
c5ca52b2 62
63 cost = TMath::Cos(theta);
64 sint = TMath::Sin(theta);
65 cosp = TMath::Cos(phi);
66 sinp = TMath::Sin(phi);
67
68 pmom[0] = cosp*sint;
69 pmom[1] = sinp*sint;
70 pmom[2] = cost;
71
72 // --- Where to start
73 orig[0] = orig[1] = orig[2] = 0;
74 Float_t dalicz = 3000;
75 if (fRadMin > 0) {
76 t = PropagateCylinder(orig,pmom,fRadMin,dalicz);
77 orig[0] = pmom[0]*t;
78 orig[1] = pmom[1]*t;
79 orig[2] = pmom[2]*t;
80 if (TMath::Abs(orig[2]) > fZMax) return;
81 }
82
83 Float_t polar[3]={0.,0.,0.};
84 Int_t ntr;
5d12ce38 85 gAlice->GetMCApp()->PushTrack(1, -1, kMpart, pmom, orig, polar, 0, kPPrimary, ntr);
c5ca52b2 86
87}