//------------------------------------------------------------------
#property copyright "www.forex-station.com"
#property link      "www.forex-station.com"
//------------------------------------------------------------------
#property indicator_chart_window
#property indicator_buffers 6
#property indicator_color1  LimeGreen
#property indicator_color2  LimeGreen
#property indicator_color3  DarkGray
#property indicator_color4  Orange
#property indicator_color5  Orange
#property indicator_color6  LimeGreen
#property indicator_width6  2
#property indicator_style2  STYLE_DOT
#property indicator_style3  STYLE_DOT
#property indicator_style4  STYLE_DOT
#import "dynamicZone.dll"
   double dzBuyP(double& sourceArray[],double probabiltyValue, int lookBack, int bars, int i, double precision);
   double dzSellP(double& sourceArray[],double probabiltyValue, int lookBack, int bars, int i, double precision);
#import

//
//
//
//
//

extern string TimeFrame       = "Current time frame";
extern int    Periods         = 14;
extern int    Price           = PRICE_CLOSE;
extern int    Method          = 14;
extern int    Depth           = 3;
extern int    DzLookBackBars         = 35;
extern double DzStartBuyProbability1  = 0.1;
extern double DzStartSellProbability1 = 0.1;
extern double DzStartBuyProbability2  = 0.25;
extern double DzStartSellProbability2 = 0.25;
extern int    Interpolate     = 1;
extern int    Shift           = 0;
extern string __0       = "SMA";
extern string __1       = "EMA";
extern string __2       = "Double smoothed EMA";
extern string __3       = "Double EMA (DEMA)";
extern string __4       = "Triple EMA (TEMA)";
extern string __5       = "Smoothed MA";
extern string __6       = "Linear weighted MA";
extern string __7       = "Parabolic weighted MA";
extern string __8       = "Alexander MA";
extern string __9       = "Volume weghted MA";
extern string __10      = "Hull MA";
extern string __11      = "Triangular MA";
extern string __12      = "Sine weighted MA";
extern string __13      = "Linear regression";
extern string __14      = "IE/2";
extern string __15      = "NonLag MA";
extern string __16      = "Zero lag EMA";
extern string __17      = "Leader EMA";

//
//
//
//
//

double buffer1[];
double up1[];
double up2[];
double dn1[];
double dn2[];
double mi[];
double trend[];

//
//
//
//
//

string indicatorFileName;
bool   returnBars;
bool   calculateValue;
int    timeFrame;

//------------------------------------------------------------------
//
//------------------------------------------------------------------
//
//
//
//
//

int init()
{
   SetIndexBuffer(0,up1);
   SetIndexBuffer(1,up2);
   SetIndexBuffer(2,mi);
   SetIndexBuffer(3,dn2);
   SetIndexBuffer(4,dn1);
   SetIndexBuffer(5,buffer1);
      Periods = MathMax(Periods,1);
   
      //
      //
      //
      //
      //

         Depth = MathMax(MathMin(Depth,25),1);      
         indicatorFileName = WindowExpertName();
         calculateValue    = TimeFrame=="calculateValue"; if (calculateValue) { return(0); }
         returnBars        = TimeFrame=="returnBars";     if (returnBars)     { return(0); }
         timeFrame         = stringToTimeFrame(TimeFrame);
            for (int i=0; i<6; i++) SetIndexShift(i,Shift*timeFrame/Period());
      
      //
      //
      //
      //
      //
               
   IndicatorShortName(timeFrameToString(timeFrame)+" "+getAverageName(Method)+" ("+Periods+")");
   return(0);
}
int deinit() { return(0); }

//------------------------------------------------------------------
//
//------------------------------------------------------------------
//
//
//
//
//

int start()
{
   int counted_bars=IndicatorCounted();
   int i,limit;

   if(counted_bars<0) return(-1);
   if(counted_bars>0) counted_bars--;
           limit=MathMin(Bars-counted_bars,Bars-1);
           if (returnBars) { up1[0] = MathMin(limit+1,Bars-1); return(0); }

   //
   //
   //
   //
   //

   if (calculateValue || timeFrame == Period())
   {
      for(i=limit; i>=0; i--)
      {
         double price = iMA(NULL,0,1,0,MODE_SMA,Price,i);
         for (int k=0; k<Depth; k++)
            price = iCustomMa(Method,price,Periods,i,k);
            buffer1[i] = price;
            up1[i]     = dzSellP(buffer1, DzStartSellProbability1,DzLookBackBars,Bars,i,0.00001);
            up2[i]     = dzSellP(buffer1, DzStartSellProbability2,DzLookBackBars,Bars,i,0.00001);
            dn1[i]     = dzBuyP (buffer1, DzStartBuyProbability1 ,DzLookBackBars,Bars,i,0.00001);
            dn2[i]     = dzBuyP (buffer1, DzStartBuyProbability2 ,DzLookBackBars,Bars,i,0.00001);
            mi[i]      = dzSellP(buffer1, 0.5                    ,DzLookBackBars,Bars,i,0.00001);
      }            
      return(0);
   }      

   //
   //
   //
   //
   //

   limit = MathMax(limit,MathMin(Bars-1,iCustom(NULL,timeFrame,indicatorFileName,"returnBars",0,0)*timeFrame/Period()));
   for (i=limit; i>=0; i--)
   {
      int y = iBarShift(NULL,timeFrame,Time[i]);
         up1[i]     = iCustom(NULL,timeFrame,indicatorFileName,"calculateValue",Periods,Price,Method,Depth,DzLookBackBars,DzStartBuyProbability1,DzStartSellProbability1,DzStartBuyProbability2,DzStartSellProbability2,0,y);
         up2[i]     = iCustom(NULL,timeFrame,indicatorFileName,"calculateValue",Periods,Price,Method,Depth,DzLookBackBars,DzStartBuyProbability1,DzStartSellProbability1,DzStartBuyProbability2,DzStartSellProbability2,1,y);
         mi[i]      = iCustom(NULL,timeFrame,indicatorFileName,"calculateValue",Periods,Price,Method,Depth,DzLookBackBars,DzStartBuyProbability1,DzStartSellProbability1,DzStartBuyProbability2,DzStartSellProbability2,2,y);
         dn2[i]     = iCustom(NULL,timeFrame,indicatorFileName,"calculateValue",Periods,Price,Method,Depth,DzLookBackBars,DzStartBuyProbability1,DzStartSellProbability1,DzStartBuyProbability2,DzStartSellProbability2,3,y);
         dn1[i]     = iCustom(NULL,timeFrame,indicatorFileName,"calculateValue",Periods,Price,Method,Depth,DzLookBackBars,DzStartBuyProbability1,DzStartSellProbability1,DzStartBuyProbability2,DzStartSellProbability2,4,y);
         buffer1[i] = iCustom(NULL,timeFrame,indicatorFileName,"calculateValue",Periods,Price,Method,Depth,DzLookBackBars,DzStartBuyProbability1,DzStartSellProbability1,DzStartBuyProbability2,DzStartSellProbability2,5,y);

         //
         //
         //
         //
         //
      
         if (Interpolate<1 || y==iBarShift(NULL,timeFrame,Time[i-1])) continue;
             interpolate(buffer1,timeFrame,i,Interpolate);
             interpolate(up1    ,timeFrame,i,Interpolate);
             interpolate(up2    ,timeFrame,i,Interpolate);
             interpolate(mi     ,timeFrame,i,Interpolate);
             interpolate(dn1    ,timeFrame,i,Interpolate);
             interpolate(dn2    ,timeFrame,i,Interpolate);
   }
   return(0);
}


//-------------------------------------------------------------------
//
//-------------------------------------------------------------------
//
//
//
//
//

void interpolate(double& target[], int ttimeFrame, int i, int interpolateType)
{
   int t = iBarShift(NULL,timeFrame,Time[i]); 
      double y0 = target[i];
      double y1 = target[iBarShift(NULL,0,iTime(NULL,ttimeFrame,t+0))+1];
      double y2 = target[iBarShift(NULL,0,iTime(NULL,ttimeFrame,t+1))+1];

      //
      //
      //
      //
      //
      
      datetime time = iTime(NULL,ttimeFrame,t);
         for(int n = 1; i+n < Bars && Time[i+n] >= time; n++) continue;
         for(int k = 1; k < n; k++)
         if (interpolateType==2)
         {
            double x3 = 1.0*k/n;
               target[i+k]  = y0*(x3-1.0)*(x3-2.0)/(-1.0*(-2.0))+
                              y1*(x3-0.0)*(x3-2.0)/( 1.0*(-1.0))+
		                        y2*(x3-0.0)*(x3-1.0)/( 2.0*( 1.0));         
         }
         else target[i+k] = target[i] + (target[i+n] - target[i])*k/n;
}




//------------------------------------------------------------------
//                                                                  
//------------------------------------------------------------------
//
//
//
//
//

string methodNames[] = {"SMA","EMA","Double smoothed EMA","Double EMA","Tripple EMA","Smoothed MA","Linear weighted MA","Parabolic weighted MA","Alexander MA","Volume weghted MA","Hull MA","Triangular MA","Sine weighted MA","Linear regression","IE/2","NonLag MA","Zero lag EMA","Leader EMA"};
string getAverageName(int& method)
{
   int max = ArraySize(methodNames)-1;
      method=MathMax(MathMin(method,max),0); return(methodNames[method]);
}

//
//
//
//
//

#define Pi 3.14159265358979323846264338327950288
#define _maWorkBufferx1 25
#define _maWorkBufferx2 50
#define _maWorkBufferx3 75

double iCustomMa(int mode, double price, double length, int i, int instanceNo=0)
{
   int r = Bars-i-1;
   switch (mode)
   {
      case 0  : return(iSma(price,(int)length,r,instanceNo));
      case 1  : return(iEma(price,length,r,instanceNo));
      case 2  : return(iDsema(price,length,r,instanceNo));
      case 3  : return(iDema(price,length,r,instanceNo));
      case 4  : return(iTema(price,length,r,instanceNo));
      case 5  : return(iSmma(price,length,r,instanceNo));
      case 6  : return(iLwma(price,length,r,instanceNo));
      case 7  : return(iLwmp(price,length,r,instanceNo));
      case 8  : return(iAlex(price,length,r,instanceNo));
      case 9  : return(iWwma(price,length,r,instanceNo));
      case 10 : return(iHull(price,length,r,instanceNo));
      case 11 : return(iTma(price,length,r,instanceNo));
      case 12 : return(iSineWMA(price,(int)length,r,instanceNo));
      case 13 : return(iLinr(price,length,r,instanceNo));
      case 14 : return(iIe2(price,length,r,instanceNo));
      case 15 : return(iNonLagMa(price,length,r,instanceNo));
      case 16 : return(iZeroLag(price,length,r,instanceNo));
      case 17 : return(iLeader(price,length,r,instanceNo));
      default : return(0);
   }
}

//------------------------------------------------------------------
//                                                                  
//------------------------------------------------------------------
//
//
//
//
//

double workSma[][_maWorkBufferx2];
double iSma(double price, int period, int r, int instanceNo=0)
{
   if (ArrayRange(workSma,0)!= Bars) ArrayResize(workSma,Bars); instanceNo *= 2;

   //
   //
   //
   //
   //
      
   workSma[r][instanceNo] = price;
   if (r>=period)
          workSma[r][instanceNo+1] = workSma[r-1][instanceNo+1]+(workSma[r][instanceNo]-workSma[r-period][instanceNo])/period;
   else { workSma[r][instanceNo+1] = 0; for(int k=0; k<period && (r-k)>=0; k++) workSma[r][instanceNo+1] += workSma[r-k][instanceNo];  
          workSma[r][instanceNo+1] /= k; }
   return(workSma[r][instanceNo+1]);
}

//
//
//
//
//

double workEma[][_maWorkBufferx1];
double iEma(double price, double period, int r, int instanceNo=0)
{
   if (ArrayRange(workEma,0)!= Bars) ArrayResize(workEma,Bars);

   //
   //
   //
   //
   //
      
   double alpha = 2.0 / (1.0+period);
          workEma[r][instanceNo] = workEma[r-1][instanceNo]+alpha*(price-workEma[r-1][instanceNo]);
   return(workEma[r][instanceNo]);
}

//
//
//
//
//

double workDsema[][_maWorkBufferx2];
#define _sema1 0
#define _sema2 1

double iDsema(double price, double period, int r, int instanceNo=0)
{
   if (ArrayRange(workDsema,0)!= Bars) ArrayResize(workDsema,Bars); instanceNo*=2;

   //
   //
   //
   //
   //
      
   double alpha = 2.0 /(1.0+MathSqrt(period));
          workDsema[r][_sema1+instanceNo] = workDsema[r-1][_sema1+instanceNo]+alpha*(price                          -workDsema[r-1][_sema1+instanceNo]);
          workDsema[r][_sema2+instanceNo] = workDsema[r-1][_sema2+instanceNo]+alpha*(workDsema[r][_sema1+instanceNo]-workDsema[r-1][_sema2+instanceNo]);
   return(workDsema[r][_sema2+instanceNo]);
}

//
//
//
//
//

double workDema[][_maWorkBufferx2];
#define _dema1 0
#define _dema2 1

double iDema(double price, double period, int r, int instanceNo=0)
{
   if (ArrayRange(workDema,0)!= Bars) ArrayResize(workDema,Bars); instanceNo*=2;

   //
   //
   //
   //
   //
      
   double alpha = 2.0 / (1.0+period);
          workDema[r][_dema1+instanceNo] = workDema[r-1][_dema1+instanceNo]+alpha*(price                         -workDema[r-1][_dema1+instanceNo]);
          workDema[r][_dema2+instanceNo] = workDema[r-1][_dema2+instanceNo]+alpha*(workDema[r][_dema1+instanceNo]-workDema[r-1][_dema2+instanceNo]);
   return(workDema[r][_dema1+instanceNo]*2.0-workDema[r][_dema2+instanceNo]);
}

//
//
//
//
//

double workTema[][_maWorkBufferx3];
#define _tema1 0
#define _tema2 1
#define _tema3 2

double iTema(double price, double period, int r, int instanceNo=0)
{
   if (ArrayRange(workTema,0)!= Bars) ArrayResize(workTema,Bars); instanceNo*=3;

   //
   //
   //
   //
   //
      
   double alpha = 2.0 / (1.0+period);
          workTema[r][_tema1+instanceNo] = workTema[r-1][_tema1+instanceNo]+alpha*(price                         -workTema[r-1][_tema1+instanceNo]);
          workTema[r][_tema2+instanceNo] = workTema[r-1][_tema2+instanceNo]+alpha*(workTema[r][_tema1+instanceNo]-workTema[r-1][_tema2+instanceNo]);
          workTema[r][_tema3+instanceNo] = workTema[r-1][_tema3+instanceNo]+alpha*(workTema[r][_tema2+instanceNo]-workTema[r-1][_tema3+instanceNo]);
   return(workTema[r][_tema3+instanceNo]+3.0*(workTema[r][_tema1+instanceNo]-workTema[r][_tema2+instanceNo]));
}

//
//
//
//
//

double workSmma[][_maWorkBufferx1];
double iSmma(double price, double period, int r, int instanceNo=0)
{
   if (ArrayRange(workSmma,0)!= Bars) ArrayResize(workSmma,Bars);

   //
   //
   //
   //
   //

   if (r<period)
         workSmma[r][instanceNo] = price;
   else  workSmma[r][instanceNo] = workSmma[r-1][instanceNo]+(price-workSmma[r-1][instanceNo])/period;
   return(workSmma[r][instanceNo]);
}

//
//
//
//
//

double workLwma[][_maWorkBufferx1];
double iLwma(double price, double period, int r, int instanceNo=0)
{
   if (ArrayRange(workLwma,0)!= Bars) ArrayResize(workLwma,Bars);
   
   //
   //
   //
   //
   //
   
   workLwma[r][instanceNo] = price;
      double sumw = period;
      double sum  = period*price;

      for(int k=1; k<period && (r-k)>=0; k++)
      {
         double weight = period-k;
                sumw  += weight;
                sum   += weight*workLwma[r-k][instanceNo];  
      }             
      return(sum/sumw);
}

//
//
//
//
//

double workLwmp[][_maWorkBufferx1];
double iLwmp(double price, double period, int r, int instanceNo=0)
{
   if (ArrayRange(workLwmp,0)!= Bars) ArrayResize(workLwmp,Bars);
   
   //
   //
   //
   //
   //
   
   workLwmp[r][instanceNo] = price;
      double sumw = period*period;
      double sum  = sumw*price;

      for(int k=1; k<period && (r-k)>=0; k++)
      {
         double weight = (period-k)*(period-k);
                sumw  += weight;
                sum   += weight*workLwmp[r-k][instanceNo];  
      }             
      return(sum/sumw);
}

//
//
//
//
//

double workAlex[][_maWorkBufferx1];
double iAlex(double price, double period, int r, int instanceNo=0)
{
   if (ArrayRange(workAlex,0)!= Bars) ArrayResize(workAlex,Bars);
   if (period<4) return(price);
   
   //
   //
   //
   //
   //

   workAlex[r][instanceNo] = price;
      double sumw = period-2;
      double sum  = sumw*price;

      for(int k=1; k<period && (r-k)>=0; k++)
      {
         double weight = period-k-2;
                sumw  += weight;
                sum   += weight*workAlex[r-k][instanceNo];  
      }             
      return(sum/sumw);
}

//
//
//
//
//

double workTma[][_maWorkBufferx1];
double iTma(double price, double period, int r, int instanceNo=0)
{
   if (ArrayRange(workTma,0)!= Bars) ArrayResize(workTma,Bars);
   
   //
   //
   //
   //
   //
   
   workTma[r][instanceNo] = price;

      double half = (period+1.0)/2.0;
      double sum  = price;
      double sumw = 1;

      for(int k=1; k<period && (r-k)>=0; k++)
      {
         double weight = k+1; if (weight > half) weight = period-k;
                sumw  += weight;
                sum   += weight*workTma[r-k][instanceNo];  
      }             
      return(sum/sumw);
}

//
//
//
//
//

double workSineWMA[][_maWorkBufferx1];

double iSineWMA(double price, int period, int r, int instanceNo=0)
{
   if (period<1) return(price);
   if (ArrayRange(workSineWMA,0)!= Bars) ArrayResize(workSineWMA,Bars);
   
   //
   //
   //
   //
   //
   
   workSineWMA[r][instanceNo] = price;
      double sum  = 0;
      double sumw = 0;
  
      for(int k=0; k<period && (r-k)>=0; k++)
      { 
         double weight = MathSin(Pi*(k+1.0)/(period+1.0));
                sumw  += weight;
                sum   += weight*workSineWMA[r-k][instanceNo]; 
      }
      return(sum/sumw);
}

//
//
//
//
//

double workWwma[][_maWorkBufferx1];
double iWwma(double price, double period, int r, int instanceNo=0)
{
   if (ArrayRange(workWwma,0)!= Bars) ArrayResize(workWwma,Bars);
   
   //
   //
   //
   //
   //
   
   workWwma[r][instanceNo] = price;
      int    i    = Bars-r-1;
      double sumw = (double)Volume[i];
      double sum  = sumw*price;

      for(int k=1; k<period && (r-k)>=0; k++)
      {
         double weight = (double)Volume[i+k];
                sumw  += weight;
                sum   += weight*workWwma[r-k][instanceNo];  
      }             
      return(sum/sumw);
}

//
//
//
//
//

double workHull[][_maWorkBufferx2];
double iHull(double price, double period, int r, int instanceNo=0)
{
   if (ArrayRange(workHull,0)!= Bars) ArrayResize(workHull,Bars);

   //
   //
   //
   //
   //

      int HmaPeriod  = (int)MathMax(period,2);
      int HalfPeriod = (int)MathFloor(HmaPeriod/2);
      int HullPeriod = (int)MathFloor(MathSqrt(HmaPeriod));
      double hma,hmw,weight; instanceNo *= 2;

         workHull[r][instanceNo] = price;

         //
         //
         //
         //
         //
               
         hmw = HalfPeriod; hma = hmw*price; 
            for(int k=1; k<HalfPeriod && (r-k)>=0; k++)
            {
               weight = HalfPeriod-k;
               hmw   += weight;
               hma   += weight*workHull[r-k][instanceNo];  
            }             
            workHull[r][instanceNo+1] = 2.0*hma/hmw;

         hmw = HmaPeriod; hma = hmw*price; 
            for(k=1; k<period && (r-k)>=0; k++)
            {
               weight = HmaPeriod-k;
               hmw   += weight;
               hma   += weight*workHull[r-k][instanceNo];
            }             
            workHull[r][instanceNo+1] -= hma/hmw;

         //
         //
         //
         //
         //
         
         hmw = HullPeriod; hma = hmw*workHull[r][instanceNo+1];
            for(k=1; k<HullPeriod && (r-k)>=0; k++)
            {
               weight = HullPeriod-k;
               hmw   += weight;
               hma   += weight*workHull[r-k][1+instanceNo];  
            }
   return(hma/hmw);
}

//
//
//
//
//

double workLinr[][_maWorkBufferx1];
double iLinr(double price, double period, int r, int instanceNo=0)
{
   if (ArrayRange(workLinr,0)!= Bars) ArrayResize(workLinr,Bars);

   //
   //
   //
   //
   //
   
      period = MathMax(period,1);
      workLinr[r][instanceNo] = price;
         double lwmw = period; double lwma = lwmw*price;
         double sma  = price;
         for(int k=1; k<period && (r-k)>=0; k++)
         {
            double weight = period-k;
                   lwmw  += weight;
                   lwma  += weight*workLinr[r-k][instanceNo];  
                   sma   +=        workLinr[r-k][instanceNo];
         }             
   
   return(3.0*lwma/lwmw-2.0*sma/period);
}

//
//
//
//
//

double workIe2[][_maWorkBufferx1];
double iIe2(double price, double period, int r, int instanceNo=0)
{
   if (ArrayRange(workIe2,0)!= Bars) ArrayResize(workIe2,Bars);

   //
   //
   //
   //
   //
   
      period = MathMax(period,1);
      workIe2[r][instanceNo] = price;
         double sumx=0, sumxx=0, sumxy=0, sumy=0;
         for (int k=0; k<period; k++)
         {
            price = workIe2[r-k][instanceNo];
                   sumx  += k;
                   sumxx += k*k;
                   sumxy += k*price;
                   sumy  +=   price;
         }
         double slope   = (period*sumxy - sumx*sumy)/(sumx*sumx-period*sumxx);
         double average = sumy/period;
   return(((average+slope)+(sumy+slope*sumx)/period)/2.0);
}

//
//
//
//
//

double workLeader[][_maWorkBufferx2];
double iLeader(double price, double period, int r, int instanceNo=0)
{
   if (ArrayRange(workLeader,0)!= Bars) ArrayResize(workLeader,Bars); instanceNo*=2;

   //
   //
   //
   //
   //
   
      period = MathMax(period,1);
      double alpha = 2.0/(period+1.0);
         workLeader[r][instanceNo  ] = workLeader[r-1][instanceNo  ]+alpha*(price                          -workLeader[r-1][instanceNo  ]);
         workLeader[r][instanceNo+1] = workLeader[r-1][instanceNo+1]+alpha*(price-workLeader[r][instanceNo]-workLeader[r-1][instanceNo+1]);

   return(workLeader[r][instanceNo]+workLeader[r][instanceNo+1]);
}

//
//
//
//
//

double workZl[][_maWorkBufferx2];
#define _zprice 0
#define _zlema 1

double iZeroLag(double price, double length, int r, int instanceNo=0)
{
   if (ArrayRange(workZl,0)!=Bars) ArrayResize(workZl,Bars); instanceNo *= 2;

   //
   //
   //
   //
   //

   double alpha = 2.0/(1.0+length); 
   int    per   = (int)((length-1.0)/2.0); 

   workZl[r][_zprice+instanceNo] = price;
   if (r<per)
          workZl[r][_zlema+instanceNo] = price;
   else   workZl[r][_zlema+instanceNo] = workZl[r-1][_zlema+instanceNo]+alpha*(2.0*price-workZl[r-per][_zprice+instanceNo]-workZl[r-1][_zlema+instanceNo]);
   return(workZl[r][_zlema+instanceNo]);
}

//
//
//
//
//
//-------------------------------------------------------------------
//
//-------------------------------------------------------------------
//
//
//
//
//

#define _length  0
#define _len     1
#define _weight  2

double  nlmvalues[][              3];
double  nlmprices[][_maWorkBufferx1];
double  nlmalphas[][_maWorkBufferx1];

//
//
//
//
//

double iNonLagMa(double price, double length, int r, int instanceNo=0)
{
   if (ArrayRange(nlmprices,0) != Bars)         ArrayResize(nlmprices,Bars);
   if (ArrayRange(nlmvalues,0) <  instanceNo+1) ArrayResize(nlmvalues,instanceNo+1);
                               nlmprices[r][instanceNo]=price;
   if (length<3 || r<3) return(nlmprices[r][instanceNo]);
   
   //
   //
   //
   //
   //
   
   if (nlmvalues[instanceNo][_length] != length)
   {
      double Cycle = 4.0;
      double Coeff = 3.0*Pi;
      int    Phase = (int)(length-1);
      
         nlmvalues[instanceNo][_length] = length;
         nlmvalues[instanceNo][_len   ] = length*4 + Phase;  
         nlmvalues[instanceNo][_weight] = 0;

         if (ArrayRange(nlmalphas,0) < nlmvalues[instanceNo][_len]) ArrayResize(nlmalphas,(int)nlmvalues[instanceNo][_len]);
         for (int k=0; k<nlmvalues[instanceNo][_len]; k++)
         {
            double t = 0;
            if (k<=Phase-1) 
                 t = 1.0 * k/(Phase-1);
            else t = 1.0 + (k-Phase+1)*(2.0*Cycle-1.0)/(Cycle*length-1.0); 
            double beta = MathCos(Pi*t);
            double g = 1.0/(Coeff*t+1); if (t <= 0.5 ) g = 1;
      
            nlmalphas[k][instanceNo]        = g * beta;
            nlmvalues[instanceNo][_weight] += nlmalphas[k][instanceNo];
         }
   }
   
   //
   //
   //
   //
   //
   
   if (nlmvalues[instanceNo][_weight]>0)
   {
      double sum = 0;
           for (k=0; k < nlmvalues[instanceNo][_len] && (r-k)>=0; k++) sum += nlmalphas[k][instanceNo]*nlmprices[r-k][instanceNo];
           return( sum / nlmvalues[instanceNo][_weight]);
   }
   else return(0);           
}


//-------------------------------------------------------------------
//
//-------------------------------------------------------------------
//
//
//
//
//

string sTfTable[] = {"M1","M5","M15","M30","H1","H4","D1","W1","MN"};
int    iTfTable[] = {1,5,15,30,60,240,1440,10080,43200};

//
//
//
//
//

int stringToTimeFrame(string tfs)
{
   tfs = stringUpperCase(tfs);
   for (int i=ArraySize(iTfTable)-1; i>=0; i--)
         if (tfs==sTfTable[i] || tfs==""+iTfTable[i]) return(MathMax(iTfTable[i],Period()));
                                                      return(Period());
}
string timeFrameToString(int tf)
{
   for (int i=ArraySize(iTfTable)-1; i>=0; i--) 
         if (tf==iTfTable[i]) return(sTfTable[i]);
                              return("");
}

//
//
//
//
//

string stringUpperCase(string str)
{
   string   s = str;

   for (int length=StringLen(str)-1; length>=0; length--)
   {
      int tchar = StringGetChar(s, length);
         if((tchar > 96 && tchar < 123) || (tchar > 223 && tchar < 256))
                     s = StringSetChar(s, length, tchar - 32);
         else if(tchar > -33 && tchar < 0)
                     s = StringSetChar(s, length, tchar + 224);
   }
   return(s);
}