| 1 | #ifndef MARS_MSimTrigger | 
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| 2 | #define MARS_MSimTrigger | 
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| 3 |  | 
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| 4 | #ifndef MARS_MTask | 
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| 5 | #include "MTask.h" | 
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| 6 | #endif | 
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| 7 |  | 
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| 8 | #ifndef MARS_MLut | 
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| 9 | #include "MLut.h" | 
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| 10 | #endif | 
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| 11 |  | 
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| 12 | class MParList; | 
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| 13 | class MParameterD; | 
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| 14 | class MAnalogChannels; | 
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| 15 | class MRawEvtHeader; | 
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| 16 | class MRawRunHeader; | 
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| 17 | class MPedestalCam; | 
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| 18 |  | 
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| 19 | class MSimTrigger : public MTask | 
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| 20 | { | 
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| 21 | private: | 
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| 22 | MAnalogChannels *fCamera;           //! The analog input channels | 
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| 23 | MParameterD     *fPulsePos;         //! The intended pulse positon | 
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| 24 | MParameterD     *fTrigger;          //! The trigger position w.r.t. the analog channels | 
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| 25 | MRawRunHeader   *fRunHeader;        //! The run header storing infos about the digitization | 
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| 26 | MRawEvtHeader   *fEvtHeader;        //! The event header storing the trigger information | 
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| 27 | MPedestalCam    *fElectronicNoise;  //! Electronic noise (for baseline correction) | 
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| 28 | MPedestalCam    *fGain;             //! Gain of the pulses | 
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| 29 |  | 
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| 30 | MLut fRouteAC;                      // Combinination map for the AC channels | 
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| 31 | MLut fCoincidenceMap;               // channels for which digital coincidence is checked | 
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| 32 |  | 
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| 33 | TString fNameRouteAC;               // Name for the AC routing | 
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| 34 | TString fNameCoincidenceMap;        // Name for the coincidence mape | 
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| 35 |  | 
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| 36 | Float_t fDiscriminatorThreshold;    // Discriminator threshold | 
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| 37 | Float_t fDigitalSignalLength;       // Length of the output of the discriminator | 
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| 38 | Float_t fCoincidenceTime;           // Minimum coincidence time (gate) | 
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| 39 |  | 
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| 40 | Bool_t  fShiftBaseline;             // Shift the baseline back to 0 for the threshold (needs ElectronicNoise [MPedestalCam]) | 
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| 41 | Bool_t  fUngainSignal;              // "Remove" the gain from the signal (needs Gain [MPedestalCam]) | 
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| 42 | Bool_t  fSimulateElectronics;       // If the electronics is not simulated the trigger is set artificially to the first photon arrived | 
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| 43 |  | 
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| 44 | Int_t   fMinMultiplicity;           // N out of M | 
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| 45 |  | 
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| 46 | // MSimTrigger | 
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| 47 | TObjArray *CalcCoincidence(const TObjArray &arr1, const TObjArray &arr2/*, Float_t gate=0*/) const; | 
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| 48 | TObjArray *CalcMinMultiplicity(const MArrayI &idx, const TObjArray &ttls, Int_t threshold) const; | 
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| 49 | TObjArray *CalcCoincidences(const MArrayI &idx, const TObjArray &ttls) const; | 
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| 50 | void SetTrigger(Double_t pos, Int_t idx); | 
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| 51 |  | 
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| 52 | // MTask | 
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| 53 | Int_t PreProcess(MParList *pList); | 
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| 54 | Int_t Process(); | 
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| 55 |  | 
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| 56 | // MParContainer | 
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| 57 | Int_t ReadEnv(const TEnv &env, TString prefix, Bool_t print); | 
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| 58 |  | 
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| 59 | public: | 
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| 60 | MSimTrigger(const char *name=NULL, const char *title=NULL); | 
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| 61 |  | 
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| 62 | void SetNameRouteAC(const char *name) { fNameRouteAC=name; } | 
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| 63 | void SetNameCoincidenceMap(const char *name) { fNameCoincidenceMap=name; } | 
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| 64 |  | 
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| 65 | void SetDiscriminatorThreshold(Float_t th) { fDiscriminatorThreshold=th; } | 
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| 66 | void SetDigitalSignalLength(Float_t ln) { fDigitalSignalLength=ln; } | 
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| 67 | void SetCoincidenceTime(Float_t tm) { fCoincidenceTime=tm; } | 
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| 68 |  | 
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| 69 | ClassDef(MSimTrigger, 0) // Task to simulate trigger electronics | 
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| 70 | }; | 
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| 71 |  | 
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| 72 | #endif | 
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