//+------------------------------------------------------------------+
//|                                                         CCI .mq4 |
//+------------------------------------------------------------------+
#property copyright "www,forex-station.com"
#property link      "www,forex-station.com"

#property indicator_separate_window
#property indicator_buffers 1
#property indicator_color1  Goldenrod
#property indicator_width1  2

//
//
//
//
//

extern int    CCIPrice      = PRICE_TYPICAL;
extern double SmoothLength  = 10;
extern double SmoothPhase   = 0;
extern bool   SmoothDouble  = false;
extern double ShortLimit    = 10;
extern double LongLimit     = 30;
extern int    CfbDepth      = 3;
extern int    CfbSmooth     = 8;
extern int    CfbNormLength = 50;

//
//
//
//
//

double cci[];
double prices[];
double cfb[];

//+------------------------------------------------------------------+
//|                                                                  |
//+------------------------------------------------------------------+
//
//
//
//
//

int init()
{
   IndicatorBuffers(3);
      SetIndexBuffer(0,cci);
      SetIndexBuffer(1,prices);
      SetIndexBuffer(2,cfb);  
         CfbDepth += 7;
         CfbDepth  = MathMin(MathMax(CfbDepth,8),14);
   IndicatorShortName(" cfb adaptive smoothed CCI ("+DoubleToStr(ShortLimit,2)+","+DoubleToStr(LongLimit,2)+")");
   return(0);
}
int deinit()
{
   return(0);
}

//+------------------------------------------------------------------+
//|                                                                  |
//+------------------------------------------------------------------+
//
//
//
//

int start()
{
   int counted_bars=IndicatorCounted();
   int i,k,limit;

   if(counted_bars<0) return(-1);
   if(counted_bars>0) counted_bars--;
         limit = MathMin(Bars-counted_bars,Bars-1);

   //
   //
   //
   //
   //

      for(i=limit; i>=0; i--)
      {
         prices[i]  = iMA(NULL,0,1,0,MODE_SMA,CCIPrice,i);
         cfb[i]     = iCfb(prices[i],CfbDepth,CfbSmooth,i);
    
         //
         //
         //
         //
         //
         
         double max = cfb[ArrayMaximum(cfb,CfbNormLength,i)];
         double min = cfb[ArrayMinimum(cfb,CfbNormLength,i)];
         double denominator = max-min;
            if (denominator> 0)
                  double ratio = (cfb[i]-min)/denominator;
            else         ratio = 0.5;  
            double CCIPeriod = (int)MathMax(ShortLimit+ratio*(LongLimit-ShortLimit),3); 
            
            //
            //
            //
            //
            //
            
            double avg = 0; for(k=0; k<CCIPeriod; k++) avg +=         prices[i+k];      avg /= CCIPeriod;
            double dev = 0; for(k=0; k<CCIPeriod; k++) dev += MathAbs(prices[i+k]-avg); dev /= CCIPeriod;
               if (dev!=0)
                     cci[i] = iDSmooth((prices[i]-avg)/(0.015*dev),SmoothLength,SmoothPhase,SmoothDouble,i);
               else  cci[i] = iDSmooth(0                          ,SmoothLength,SmoothPhase,SmoothDouble,i);
              
      }
return(0);
}  

//------------------------------------------------------------------
//
//------------------------------------------------------------------
//
//
//
//
//

int    Depths[] = {2,3,4,6,8,12,16,24,32,48,64,96,128,192};
double workCfb[][28];

//
//
//
//
//

double iCfb(double price, int depth, int smooth, int r)
{
   if (ArrayRange(workCfb,0) != Bars) ArrayResize(workCfb,Bars);
   int i = Bars-r-1;
         
   //
   //
   //
   //
   //

   double suma     = 0;
   double sumb     = 0;
   double tcfb     = 0;
   double evenCoef = 1;
   double oddCoef  = 1;
   double avg      = 0;
         
      if (i>=smooth)
         for (int k=depth-1; k>=0; k--)
         {
            workCfb[i][k]    = iCfbFunc(price,i,Depths[k],k);
            workCfb[i][k+14] = workCfb[i-1][k+14] + (workCfb[i][k]-workCfb[i-smooth][k])/smooth;

                  if ((k%2)==0)
                        { avg = oddCoef  * workCfb[i][k+14]; oddCoef  = oddCoef  * (1 - avg); }
                  else  { avg = evenCoef * workCfb[i][k+14]; evenCoef = evenCoef * (1 - avg); }
               
               suma += avg*avg*Depths[k];
               sumb += avg;
         }
      else for (k=depth-1; k>=0; k--) { workCfb[i][k] = 0; workCfb[i][k+14] = 0; }            

   //
   //
   //
   //
   //

   if (sumb != 0) tcfb = suma/sumb;
   return(tcfb);
}

//------------------------------------------------------------------
//
//------------------------------------------------------------------
//
//
//
//
//

double  workCfbFunc[][70];
#define _prices 0
#define _roc    1
#define _value1 2
#define _value2 3
#define _value3 4

//
//
//
//

double iCfbFunc(double price, int r, int depth, int k)
{
   k *= 5;
      if (ArrayRange(workCfbFunc,0) != Bars) ArrayResize(workCfbFunc,Bars);
      if (r<=(depth+1))
      {
         workCfbFunc[r][k+_prices] = 0;
         workCfbFunc[r][k+_roc]    = 0;
         workCfbFunc[r][k+_value1] = 0;
         workCfbFunc[r][k+_value2] = 0;
         workCfbFunc[r][k+_value3] = 0;
         return(0);
      }         
      workCfbFunc[r][k+_prices] = price; 

   //
   //
   //
   //
   //

      workCfbFunc[r][k+_roc]    = MathAbs(workCfbFunc[r][k+_prices] - workCfbFunc[r-1][k+_prices]);
      workCfbFunc[r][k+_value1] = workCfbFunc[r-1][k+_value1] - workCfbFunc[r-depth][k+_roc] + workCfbFunc[r][k+_roc];
      workCfbFunc[r][k+_value2] = workCfbFunc[r-1][k+_value2] - workCfbFunc[r-1][k+_value1] + workCfbFunc[r][k+_roc]*depth;
      workCfbFunc[r][k+_value3] = workCfbFunc[r-1][k+_value3] - workCfbFunc[r-1-depth][k+_prices] + workCfbFunc[r-1][k+_prices];
   
      double dividend = MathAbs(depth*workCfbFunc[r][k+_prices]-workCfbFunc[r][k+_value3]);

      //
      //
      //
      //
      //
         
   if (workCfbFunc[r][k+_value2] != 0)
         return( dividend / workCfbFunc[r][k+_value2]);
   else  return(0.00);            
}
    
//+------------------------------------------------------------------+
//|                                                                  |
//+------------------------------------------------------------------+
//
//
//
//
//

double wrk[][20];

#define bsmax  5
#define bsmin  6
#define volty  7
#define vsum   8
#define avolty 9

//
//
//
//
//

double iDSmooth(double price, double length, double phase, bool isDouble, int i, int s=0)
{
   if (isDouble)
         return (iSmooth(iSmooth(price,MathSqrt(length),phase,i,s),MathSqrt(length),phase,i,s+10));
   else  return (iSmooth(price,length,phase,i,s));
}

//
//
//
//
//

double iSmooth(double price, double length, double phase, int i, int s=0)
{
   if (length <=1) return(price);
   if (ArrayRange(wrk,0) != Bars) ArrayResize(wrk,Bars);
   
   int r = Bars-i-1; 
      if (r==0) { for(int k=0; k<7; k++) wrk[r][k+s]=price; for(; k<10; k++) wrk[r][k+s]=0; return(price); }

   //
   //
   //
   //
   //
   
      double len1   = MathMax(MathLog(MathSqrt(0.5*(length-1)))/MathLog(2.0)+2.0,0);
      double pow1   = MathMax(len1-2.0,0.5);
      double del1   = price - wrk[r-1][bsmax+s];
      double del2   = price - wrk[r-1][bsmin+s];
      double div    = 1.0/(10.0+10.0*(MathMin(MathMax(length-10,0),100))/100);
      int    forBar = MathMin(r,10);
	
         wrk[r][volty+s] = 0;
               if(MathAbs(del1) > MathAbs(del2)) wrk[r][volty+s] = MathAbs(del1); 
               if(MathAbs(del1) < MathAbs(del2)) wrk[r][volty+s] = MathAbs(del2); 
         wrk[r][vsum+s] =	wrk[r-1][vsum+s] + (wrk[r][volty+s]-wrk[r-forBar][volty+s])*div;
         
         //
         //
         //
         //
         //
   
         wrk[r][avolty+s] = wrk[r-1][avolty+s]+(2.0/(MathMax(4.0*length,30)+1.0))*(wrk[r][vsum+s]-wrk[r-1][avolty+s]);
            if (wrk[r][avolty+s] > 0)
               double dVolty = wrk[r][volty+s]/wrk[r][avolty+s]; else dVolty = 0;   
	               if (dVolty > MathPow(len1,1.0/pow1)) dVolty = MathPow(len1,1.0/pow1);
                  if (dVolty < 1)                      dVolty = 1.0;

      //
      //
      //
      //
      //
	        
   	double pow2 = MathPow(dVolty, pow1);
      double len2 = MathSqrt(0.5*(length-1))*len1;
      double Kv   = MathPow(len2/(len2+1), MathSqrt(pow2));

         if (del1 > 0) wrk[r][bsmax+s] = price; else wrk[r][bsmax+s] = price - Kv*del1;
         if (del2 < 0) wrk[r][bsmin+s] = price; else wrk[r][bsmin+s] = price - Kv*del2;
	
   //
   //
   //
   //
   //
      
      double R     = MathMax(MathMin(phase,100),-100)/100.0 + 1.5;
      double beta  = 0.45*(length-1)/(0.45*(length-1)+2);
      double alpha = MathPow(beta,pow2);

         wrk[r][0+s] = price + alpha*(wrk[r-1][0+s]-price);
         wrk[r][1+s] = (price - wrk[r][0+s])*(1-beta) + beta*wrk[r-1][1+s];
         wrk[r][2+s] = (wrk[r][0+s] + R*wrk[r][1+s]);
         wrk[r][3+s] = (wrk[r][2+s] - wrk[r-1][4+s])*MathPow((1-alpha),2) + MathPow(alpha,2)*wrk[r-1][3+s];
         wrk[r][4+s] = (wrk[r-1][4+s] + wrk[r][3+s]); 

   //
   //
   //
   //
   //

   return(wrk[r][4+s]);
}            
   
   