#ifndef ROOT_TGSpeedo
#define ROOT_TGSpeedo
#ifndef ROOT_TGFrame
#include "TGFrame.h"
#endif
#ifndef ROOT_TGWidget
#include "TGWidget.h"
#endif
#ifndef ROOT_TGPicture
#include "TGPicture.h"
#endif
#ifndef ROOT_TImage
#include "TImage.h"
#endif
class TGSpeedo : public TGFrame, public TGWidget {
public:
   enum EGlowColor { kNoglow, kGreen, kOrange, kRed };
protected:
   TImage          *fImage;               
   TImage          *fImage2;              
   const TGPicture *fBase;                
   FontStruct_t     fTextFS, fCounterFS;  
   Int_t            fCounter;             
   TString          fPicName;             
   TString          fLabel1;              
   TString          fLabel2;              
   TString          fDisplay1;            
   TString          fDisplay2;            
   Float_t          fAngle, fValue;       
   Float_t          fPeakVal;             
   Float_t          fMeanVal;             
   Float_t          fAngleMin, fAngleMax; 
   Float_t          fScaleMin, fScaleMax; 
   Float_t          fThreshold[3];        
   EGlowColor       fThresholdColor[3];   
   Bool_t           fThresholdActive;     
   Bool_t           fPeakMark;            
   Bool_t           fMeanMark;            
   virtual void     DoRedraw();
           void     DrawNeedle();
           void     DrawText();
           void     Translate(Float_t val, Float_t angle, Int_t *x, Int_t *y);
public:
   TGSpeedo(const TGWindow *p = 0, int id = -1);
   TGSpeedo(const TGWindow *p, Float_t smin, Float_t smax,
            const char *lbl1 = "", const char *lbl2 = "",
            const char *dsp1 = "", const char *dsp2 = "", int id = -1);
   virtual ~TGSpeedo();
   virtual TGDimension  GetDefaultSize() const;
   virtual Bool_t       HandleButton(Event_t *event);
   const TGPicture     *GetPicture() const { return fBase; }
   TImage              *GetImage() const { return fImage; }
   Float_t              GetPeakVal() const { return fPeakVal; }
   Bool_t               IsThresholdActive() { return fThresholdActive; }
   void Build();
   void Glow(EGlowColor col = kGreen);
   void StepScale(Float_t step);
   void SetScaleValue(Float_t val);
   void SetScaleValue(Float_t val, Int_t damping);
   void SetOdoValue(Int_t val);
   void SetDisplayText(const char *text1, const char *text2 = "");
   void SetLabelText(const char *text1, const char *text2 = "");
   void SetMinMaxScale(Float_t min, Float_t max);
   void SetThresholds(Float_t th1 = 0.0, Float_t th2 = 0.0, Float_t th3 = 0.0)
             { fThreshold[0] = th1; fThreshold[1] = th2; fThreshold[2] = th3; }
   void SetThresholdColors(EGlowColor col1, EGlowColor col2, EGlowColor col3)
             { fThresholdColor[0] = col1; fThresholdColor[1] = col2; fThresholdColor[2] = col3; }
   void EnableThreshold() { fThresholdActive = kTRUE; }
   void DisableThreshold() { fThresholdActive = kFALSE; Glow(kNoglow); fClient->NeedRedraw(this);}
   void EnablePeakMark() { fPeakMark = kTRUE; }
   void DisablePeakMark() { fPeakMark = kFALSE; }
   void EnableMeanMark() { fMeanMark = kTRUE; }
   void DisableMeanMark() { fMeanMark = kFALSE; }
   void ResetPeakVal() { fPeakVal = fValue; fClient->NeedRedraw(this); }
   void SetMeanValue(Float_t mean) { fMeanVal = mean; fClient->NeedRedraw(this); }
   void OdoClicked() { Emit("OdoClicked()"); }   
   void LedClicked() { Emit("LedClicked()"); }   
   ClassDef(TGSpeedo,0)  
};
#endif
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