//+------------------------------------------------------------------+
//|                              Inverse fisher transform of RSI.mq4 |
//|                                                           mladen |
//+------------------------------------------------------------------+
#property  copyright "mladen"
#property  link      "mladenfx@gmail.com"

#property  indicator_separate_window
#property  indicator_buffers    5
#property  indicator_color1     Goldenrod
#property  indicator_color2     Red
#property  indicator_color3     Red
#property  indicator_color4     DeepSkyBlue
#property  indicator_color5     DeepSkyBlue
#property  indicator_width1     2
#property  indicator_width2     2
#property  indicator_width3     2
#property  indicator_width4     2
#property  indicator_width5     2
#property  indicator_maximum    1.05
#property  indicator_minimum   -1.05
#property  indicator_levelcolor MediumOrchid

//
//
//
//
//

extern string TimeFrame              = "Current time frame";
extern int    ShortLimit             = 5;
extern int    LongLimit              = 20;
extern int    CfbNormLength          = 50;
extern int    CfbDepth               = 6;
extern int    CfbPrice               = PRICE_WEIGHTED;
extern int    CfbSmooth              = 5;
extern int    CfbSmoothLength        = 5;
extern double CfbSmoothPhase         = 0.0;
extern bool   CfbSmoothDouble        = true;
extern string _rsimethods            = "0=rsi,1=wilder rsi,2=rsx,3=cuttler rsi ";
extern int    RsiMethod              = 2;
extern double levelOs                = -0.90;
extern double levelOb                = 0.90; 
extern bool   Interpolate            = true;

extern string _                      = "alerts settings";
extern bool   alertsOn               = true;
extern bool   alertsOnCurrent        = true;
extern bool   alertsMessage          = true;
extern bool   alertsSound            = false;
extern bool   alertsEmail            = false;

extern string  __                    = "arrows settings";
extern bool   ShowArrows             = true;
extern string arrowsIdentifier       = "ift arrows";
extern color  arrowsUpColor          = Lime;
extern color  arrowsDnColor          = Orange;


//
//
//
//
//

double ifishua[];
double ifishub[];
double ifishda[];
double ifishdb[];
double ifisher[];
double cfb[]; 
double trend[];

//
//
//
//
//

string indicatorFileName;
bool   returnBars;
bool   calculateValue;
int    timeFrame;

//+------------------------------------------------------------------+
//|                                                                  |
//+------------------------------------------------------------------+
//
//
//
//
//

int init()
{
   IndicatorBuffers(7);
   SetIndexBuffer(0,ifisher);
   SetIndexBuffer(1,ifishda);
   SetIndexBuffer(2,ifishdb);
   SetIndexBuffer(3,ifishua);
   SetIndexBuffer(4,ifishub);
   SetIndexBuffer(5,cfb);
   SetIndexBuffer(6,trend);
   SetLevelValue(0,levelOs);
   SetLevelValue(1,0);
   SetLevelValue(2,levelOb);

      //
      //
      //
      //
      //
      
      indicatorFileName   = WindowExpertName();
      returnBars          = TimeFrame=="returnBars";          if (returnBars)          return(0);
      calculateValue      = TimeFrame=="calculateValue";      if (calculateValue)      return(0);

   //
   //
   //
   //
   //
            
   timeFrame = stringToTimeFrame(TimeFrame);
   IndicatorShortName(timeFrameToString(timeFrame)+" inverse fisher of "+getRsiName(RsiMethod)+"");
   return(0);
}

//
//
//
//
//

int deinit() {   if (!calculateValue && ShowArrows) deleteArrows(); return(0); }

//+------------------------------------------------------------------+
//|                                                                  |
//+------------------------------------------------------------------+
//
//
//
//
//

int start()
{
   int limit,i,counted_bars=IndicatorCounted();
   
   if(counted_bars<0) return(-1);
   if(counted_bars>0) counted_bars--;
           limit=MathMin(Bars-counted_bars,Bars-1);
           if (returnBars) { ifisher[0] = limit+1; return(0); }

   //
   //
   //
   //
   //
   
   if (calculateValue || timeFrame==Period())
   {
      if (trend[limit] ==  1) CleanPoint(limit,ifishua,ifishub);
      if (trend[limit] == -1) CleanPoint(limit,ifishda,ifishdb);

      for(i=limit; i>=0; i--)
      {
         cfb[i] = iDSmooth(iCfb(getPrice(CfbPrice,i),CfbDepth,CfbSmooth,i),CfbSmoothLength,CfbSmoothPhase,CfbSmoothDouble,i);
    
         //
         //
         //
         //
         //
         
         double cfbMax = cfb[ArrayMaximum(cfb,CfbNormLength,i)];
         double cfbMin = cfb[ArrayMinimum(cfb,CfbNormLength,i)];
         double denominator = cfbMax-cfbMin;
         if (denominator> 0)
               double ratio = (cfb[i]-cfbMin)/denominator;
         else         ratio = 0.5;     
                       
         //
         //
         //
         //
         //

         double RsiPeriod  = MathCeil(ShortLimit+ratio*(LongLimit-ShortLimit));
         double avgRsi     = 0.1*(iRsi(getPrice(CfbPrice,i),RsiPeriod,i,0,RsiMethod)-50);
                ifisher[i] = (MathExp(2*avgRsi)-1)/(MathExp(2*avgRsi)+1);
            
                trend[i]   = trend[i+1];
               if (ifisher[i] < levelOb && ifisher[i] > levelOs) trend[i] =  0;
               if (ifisher[i] > levelOb)                         trend[i] = -1;
               if (ifisher[i] < levelOs)                         trend[i] =  1; 
               if (calculateValue) continue;
               
               //
               //
               //
               //
               //
               
               ifishda[i] = EMPTY_VALUE; ifishdb[i] = EMPTY_VALUE;         
               ifishua[i] = EMPTY_VALUE; ifishub[i] = EMPTY_VALUE;         
               if (trend[i]== 1) PlotPoint(i,ifishua,ifishub,ifisher);
               if (trend[i]==-1) PlotPoint(i,ifishda,ifishdb,ifisher);
               if (!calculateValue) manageArrow(i);
          
      }
      manageAlerts(); 
      return(0);
   }      

   //
   //
   //
   //
   //

   limit = MathMax(limit,MathMin(Bars-1,iCustom(NULL,timeFrame,indicatorFileName,"returnBars",0,0)*timeFrame/Period()));
   if (trend[limit]== 1) CleanPoint(limit,ifishua,ifishub);
   if (trend[limit]==-1) CleanPoint(limit,ifishda,ifishdb);
   for(i=limit; i>=0; i--)
   {
      int y = iBarShift(NULL,timeFrame,Time[i]);               
         trend[i]   = iCustom(NULL,timeFrame,indicatorFileName,"calculateValue",ShortLimit,LongLimit,CfbNormLength,CfbDepth,CfbPrice,CfbSmooth,CfbSmoothLength,CfbSmoothPhase,CfbSmoothDouble,"",RsiMethod,levelOs,levelOb,6,y);
         ifisher[i] = iCustom(NULL,timeFrame,indicatorFileName,"calculateValue",ShortLimit,LongLimit,CfbNormLength,CfbDepth,CfbPrice,CfbSmooth,CfbSmoothLength,CfbSmoothPhase,CfbSmoothDouble,"",RsiMethod,levelOs,levelOb,0,y);
         ifishda[i] = EMPTY_VALUE; 
         ifishdb[i] = EMPTY_VALUE;         
         ifishua[i] = EMPTY_VALUE; 
         ifishub[i] = EMPTY_VALUE;   
         
         manageArrow(i);

         //
         //
         //
         //
         //
      
         if (!Interpolate || y==iBarShift(NULL,timeFrame,Time[i-1])) continue;

         //
         //
         //
         //
         //

         datetime time = iTime(NULL,timeFrame,y);
            for(int n = 1; i+n < Bars && Time[i+n] >= time; n++) continue;	
            for(int k = 1; k < n; k++) 
            {
               ifisher[i+k] = ifisher[i] + (ifisher[i+n] - ifisher[i]) * k/n;
            }
   }
   
   for(i=limit; i>=0; i--)
   {
      if (trend[i]== 1) PlotPoint(i,ifishua,ifishub,ifisher);
      if (trend[i]==-1) PlotPoint(i,ifishda,ifishdb,ifisher);
   }
   
   manageAlerts();
   return(0);
}

//+------------------------------------------------------------------+
//|                                                                  |
//+------------------------------------------------------------------+
//
//
//
//
//

void CleanPoint(int i,double& first[],double& second[])
{
   if ((second[i]  != EMPTY_VALUE) && (second[i+1] != EMPTY_VALUE))
        second[i+1] = EMPTY_VALUE;
   else
      if ((first[i] != EMPTY_VALUE) && (first[i+1] != EMPTY_VALUE) && (first[i+2] == EMPTY_VALUE))
          first[i+1] = EMPTY_VALUE;
}

//
//
//
//
//

void PlotPoint(int i,double& first[],double& second[],double& from[])
{
   if (first[i+1] == EMPTY_VALUE)
      {
         if (first[i+2] == EMPTY_VALUE) {
                first[i]   = from[i];
                first[i+1] = from[i+1];
                second[i]  = EMPTY_VALUE;
            }
         else {
                second[i]   =  from[i];
                second[i+1] =  from[i+1];
                first[i]    = EMPTY_VALUE;
            }
      }
   else
      {
         first[i]  = from[i];
         second[i] = EMPTY_VALUE;
      }
}

//+------------------------------------------------------------------
//|                                                                  
//+------------------------------------------------------------------
//
//
//
//
//

double getPrice(int type, int i)
{
   switch (type)
   {
      case 7:     return((Open[i]+Close[i])/2.0);
      case 8:     return((Open[i]+High[i]+Low[i]+Close[i])/4.0);
      default :   return(iMA(NULL,0,1,0,MODE_SMA,type,i));
   }      
}

//+------------------------------------------------------------------
//|                                                                  
//+------------------------------------------------------------------
//
//
//
//
//
//

string rsiMethodNames[] = {"rsi","wilders rsi","rsx","cuttler rsi"};
string getRsiName(int& method)
{
   int max = ArraySize(rsiMethodNames)-1;
      method=MathMax(MathMin(method,max),0); return(rsiMethodNames[method]);
}

//
//
//
//
//

double workRsi[][13];
#define _price  0
#define _change 1
#define _changa 2

double iRsi(double price, double period, int i, int instanceNo=0, int rsiMode=0)
{
   if (ArrayRange(workRsi,0)!=Bars) ArrayResize(workRsi,Bars);
      int z = instanceNo*13; 
      int r = Bars-i-1;
   
   //
   //
   //
   //
   //
   
   workRsi[r][z+_price] = price;
   switch (rsiMode)
   {
      case 0:
         double alpha = 1.0/period; 
         if (r<period)
            {
               int k; double sum = 0; for (k=0; k<period && (r-k-1)>=0; k++) sum += MathAbs(workRsi[r-k][z+_price]-workRsi[r-k-1][z+_price]);
                  workRsi[r][z+_change] = (workRsi[r][z+_price]-workRsi[0][z+_price])/MathMax(k,1);
                  workRsi[r][z+_changa] =                                         sum/MathMax(k,1);
            }
         else
            {
               double change = workRsi[r][z+_price]-workRsi[r-1][z+_price];
                               workRsi[r][z+_change] = workRsi[r-1][z+_change] + alpha*(        change  - workRsi[r-1][z+_change]);
                               workRsi[r][z+_changa] = workRsi[r-1][z+_changa] + alpha*(MathAbs(change) - workRsi[r-1][z+_changa]);
            }
         if (workRsi[r][z+_changa] != 0)
               return(50.0*(workRsi[r][z+_change]/workRsi[r][z+_changa]+1));
         else  return(50.0);
         
      //
      //
      //
      //
      //
      
      case 1 :
         workRsi[r][z+1] = iSmma(0.5*(MathAbs(workRsi[r][z+_price]-workRsi[r-1][z+_price])+(workRsi[r][z+_price]-workRsi[r-1][z+_price])),0.5*(period-1),Bars-i-1,0);
         workRsi[r][z+2] = iSmma(0.5*(MathAbs(workRsi[r][z+_price]-workRsi[r-1][z+_price])-(workRsi[r][z+_price]-workRsi[r-1][z+_price])),0.5*(period-1),Bars-i-1,1);
         if((workRsi[r][z+1] + workRsi[r][z+2]) != 0) 
               return(100.0 * workRsi[r][z+1]/(workRsi[r][z+1] + workRsi[r][z+2]));
         else  return(50);

      //
      //
      //
      //
      //

      case 2 :     
         double Kg = (3.0)/(2.0+period), Hg = 1.0-Kg;
         if (r<period) { for (k=1; k<13; k++) workRsi[r][k+z] = 0; return(50); }  

         //
         //
         //
         //
         //
      
         double mom = workRsi[r][_price+z]-workRsi[r-1][_price+z];
         double moa = MathAbs(mom);
         for (k=0; k<3; k++)
         {
            int kk = k*2;
            workRsi[r][z+kk+1] = Kg*mom                + Hg*workRsi[r-1][z+kk+1];
            workRsi[r][z+kk+2] = Kg*workRsi[r][z+kk+1] + Hg*workRsi[r-1][z+kk+2]; mom = 1.5*workRsi[r][z+kk+1] - 0.5 * workRsi[r][z+kk+2];
            workRsi[r][z+kk+7] = Kg*moa                + Hg*workRsi[r-1][z+kk+7];
            workRsi[r][z+kk+8] = Kg*workRsi[r][z+kk+7] + Hg*workRsi[r-1][z+kk+8]; moa = 1.5*workRsi[r][z+kk+7] - 0.5 * workRsi[r][z+kk+8];
         }
         if (moa != 0)
              return(MathMax(MathMin((mom/moa+1.0)*50.0,100.00),0.00)); 
         else return(50);
            
      //
      //
      //
      //
      //
      
      case 3 :
         double sump = 0;
         double sumn = 0;
         for (k=0; k<period; k++)
         {
            double diff = workRsi[r-k][z+_price]-workRsi[r-k-1][z+_price];
               if (diff > 0) sump += diff;
               if (diff < 0) sumn -= diff;
         }
         if (sumn > 0)
               return(100.0-100.0/(1.0+sump/sumn));
         else  return(50);
   } 
   return(50);
}

//
//
//
//
//
//

double workSmma[][2];
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 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, int i, int s=0)
{
   if (CfbSmoothDouble)
         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]);
}

//+------------------------------------------------------------------+
//|                                                                  |
//+------------------------------------------------------------------+
//
//
//
//
//

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);            
}

//+------------------------------------------------------------------+
//|                                                                  |
//+------------------------------------------------------------------+
//
//
//
//
//

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);
}

//
//
//
//
//

void manageAlerts()
{
   if (!calculateValue && alertsOn)
   {
      if (alertsOnCurrent)
           int whichBar = 0;
      else     whichBar = 1; whichBar = iBarShift(NULL,0,iTime(NULL,timeFrame,whichBar));
      if (trend[whichBar] != trend[whichBar+1])
      {
         if (trend[whichBar] == 1) doAlert(whichBar,"buy");
         if (trend[whichBar] ==-1) doAlert(whichBar,"sell");
      }         
   }
}   

//
//
//
//
//

void doAlert(int forBar, string doWhat)
{
   static string   previousAlert="nothing";
   static datetime previousTime;
   string message;
   
   if (previousAlert != doWhat || previousTime != Time[forBar]) {
       previousAlert  = doWhat;
       previousTime   = Time[forBar];

       //
       //
       //
       //
       //

       message =  StringConcatenate(Symbol()," at ",TimeToStr(TimeLocal(),TIME_SECONDS)," - ",timeFrameToString(timeFrame)+" inverse fisher of "+getRsiName(RsiMethod)+" ",doWhat);
          if (alertsMessage) Alert(message);
          if (alertsEmail)   SendMail(StringConcatenate(Symbol()," inverse fisher of "+getRsiName(RsiMethod)+" "),message);
          if (alertsSound)   PlaySound("alert2.wav");
   }
}

//
//
//
//
//

void manageArrow(int i)
{
   if (ShowArrows)
   {
      deleteArrow(Time[i]);
      if (trend[i]!=trend[i+1])
      {
         if (trend[i] == 1) drawArrow(i,arrowsUpColor,241,false);
         if (trend[i] ==-1) drawArrow(i,arrowsDnColor,242,true);
      }
   }
}               

//
//
//
//
//

void drawArrow(int i,color theColor,int theCode,bool up)
{
   string name = arrowsIdentifier+":"+Time[i];
   double gap  = 3.0*iATR(NULL,0,20,i)/4.0;   
   
      //
      //
      //
      //
      //
      
      ObjectCreate(name,OBJ_ARROW,0,Time[i],0);
         ObjectSet(name,OBJPROP_ARROWCODE,theCode);
         ObjectSet(name,OBJPROP_COLOR,theColor);
  
         if (up)
               ObjectSet(name,OBJPROP_PRICE1,High[i]+gap);
         else  ObjectSet(name,OBJPROP_PRICE1,Low[i] -gap);
}

//
//
//
//
//

void deleteArrows()
{
   string lookFor       = arrowsIdentifier+":";
   int    lookForLength = StringLen(lookFor);
   for (int i=ObjectsTotal()-1; i>=0; i--)
   {
      string objectName = ObjectName(i);
         if (StringSubstr(objectName,0,lookForLength) == lookFor) ObjectDelete(objectName);
   }
}

//
//
//
//
//

void deleteArrow(datetime time)
{
   string lookFor = arrowsIdentifier+":"+time; ObjectDelete(lookFor);
}

//
//
//
//
//


