source: trunk/MagicSoft/include-Classes/MMcFormat/MMcTrigHeader.hxx@ 1890

Last change on this file since 1890 was 1890, checked in by moralejo, 21 years ago
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1#ifndef __MMcTrigHeader__
2#define __MMcTrigHeader__
3
4#ifndef MARS_MParContainer
5#include "MParContainer.h"
6#endif
7
8#include "MTriggerDefine.h"
9#include "Mdefine.h"
10
11class MMcTrigHeader : public MParContainer{
12 private:
13
14 Short_t fTopology ; // Topology of the trigger
15 // 0 = N-1 neighbours of one pixel
16 // 1 = N neighbours
17 // 2 = N closed pack
18 Short_t fMultiplicity ; // Pixel multiplicity of trigger configuration
19 Float_t fThreshold[CAMERA_PIXELS] ; // Threshold for trigger
20 UInt_t fTrigPattern[2]; // Used to inddentify with
21 // RawEvt::Trigger Pattern identification
22 Float_t fTrigShape ; // a number that indicate the shape type of
23 // the signal
24 // = 0 --> a gaussian
25 Float_t fAmplTrig ; // the amplitude of the trigger in mV
26 Float_t fFwhmTrig ; // the width of the signal in nsec
27 Float_t fOverlapingTime;// Minimum coincidence time
28 Float_t fGateLeng; // the length of the digital signal if analog
29 // signal is above threshold
30 Float_t fElecNoiseTrig; // The width of the gaussian noise is that times
31 // the amplitude of the single phe response
32 // for the trigger
33
34 public:
35 MMcTrigHeader() ;
36
37 ~MMcTrigHeader();
38
39 void Print(Option_t *opt=NULL) const;
40
41 void SetTopology(Short_t nTop) {
42 fTopology=nTop;
43 }
44
45 void SetMultiplicity(Short_t nMul) {
46 fMultiplicity=nMul;
47 }
48
49 void SetThreshold(Float_t fthr[]){
50 int i;
51 for(i=0;i<CAMERA_PIXELS;i++){
52 fThreshold[i]=fthr[i];
53 }
54 }
55
56 void SetTrigPattern (UInt_t upi, UInt_t loi){
57
58 if (upi==loi==0) {
59 fTrigPattern[0]= (UInt_t) fThreshold[0];
60 fTrigPattern[1]= (UInt_t) (100*fMultiplicity+fTopology);
61 }
62 else {
63 fTrigPattern[0]=upi;
64 fTrigPattern[1]=loi;
65 }
66 }
67
68 void SetShape(Float_t shape){
69 fTrigShape=shape;
70 }
71
72 void SetAmplitud(Float_t amp){
73 fAmplTrig=amp;
74 }
75
76 void SetFwhm(Float_t fwhm){
77 fFwhmTrig=fwhm;
78 }
79
80 void SetOverlap(Float_t overlap){
81 fOverlapingTime=overlap;
82 }
83
84 void SetGate(Float_t gate){
85 fGateLeng=gate;
86 }
87
88 void SetElecNoise( Float_t elecnoise){
89 fElecNoiseTrig = elecnoise;
90 }
91
92
93
94 Short_t GetMultiplicity() { return fMultiplicity; }
95
96 Float_t GetMeanThreshold()
97 {
98 int i;
99 Float_t sum = 0., trigpix = 0.;
100 for(i=0;i<CAMERA_PIXELS;i++)
101 {
102 if (fThreshold[i] < 1.e6 && fThreshold[i] > 0.)
103 {
104 sum += fThreshold[i];
105 trigpix += 1.;
106 }
107 }
108
109 return (sum / trigpix);
110 }
111
112
113 ClassDef(MMcTrigHeader, 2) //Stores Montecarlo Information which describes the used trigger
114
115};
116
117#endif
118
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