Normalized_Volume

Author: Copyright 2018, MetaQuotes Software Corp.
Price Data Components
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Normalized_Volume
ÿþ//+------------------------------------------------------------------+

//|                                            Normalized_Volume.mq5 |

//|                        Copyright 2018, MetaQuotes Software Corp. |

//|                                                 https://mql5.com |

//+------------------------------------------------------------------+

#property copyright "Copyright 2018, MetaQuotes Software Corp."

#property link      "https://mql5.com"

#property version   "1.00"

#property description "Normalized Volume indicator"

#property indicator_separate_window

#property indicator_buffers 5

#property indicator_plots   2

//--- plot Hist

#property indicator_label1  "Volume Norm"

#property indicator_type1   DRAW_COLOR_HISTOGRAM

#property indicator_color1  clrGreen,clrRed,clrDarkGray

#property indicator_style1  STYLE_SOLID

#property indicator_width1  2

//--- plot Edge

#property indicator_label2  "Edge"

#property indicator_type2   DRAW_LINE

#property indicator_color2  clrDarkGray

#property indicator_style2  STYLE_SOLID

#property indicator_width2  1

//--- input parameters

input uint     InpPeriod   =  14;      // Period

input double   InpLevel    =  100.0;   // Threshold

//--- indicator buffers

double         BufferHist[];

double         BufferColors[];

double         BufferEdge[];

double         BufferVolume[];

double         BufferMA[];

//--- global variables

double         threshold;

int            period_ma;

//+------------------------------------------------------------------+

//| Custom indicator initialization function                         |

//+------------------------------------------------------------------+

int OnInit()

  {

//--- set global variables

   period_ma=int(InpPeriod<1 ? 1 : InpPeriod);

   threshold=(InpLevel<0 ? 0 : InpLevel);

//--- indicator buffers mapping

   SetIndexBuffer(0,BufferHist,INDICATOR_DATA);

   SetIndexBuffer(1,BufferColors,INDICATOR_COLOR_INDEX);

   SetIndexBuffer(2,BufferEdge,INDICATOR_DATA);

   SetIndexBuffer(3,BufferMA,INDICATOR_CALCULATIONS);

   SetIndexBuffer(4,BufferVolume,INDICATOR_CALCULATIONS);

//--- setting indicator parameters

   IndicatorSetString(INDICATOR_SHORTNAME,"Normalized Volume ("+(string)period_ma+")");

   IndicatorSetInteger(INDICATOR_DIGITS,Digits());

   IndicatorSetInteger(INDICATOR_LEVELS,1);

   IndicatorSetDouble(INDICATOR_LEVELVALUE,0,threshold);

   IndicatorSetString(INDICATOR_LEVELTEXT,0,"Threshold");

   IndicatorSetDouble(INDICATOR_MINIMUM,0);

//--- setting plot buffer parameters

   PlotIndexSetInteger(1,PLOT_SHOW_DATA,false);

//--- setting buffer arrays as timeseries

   ArraySetAsSeries(BufferHist,true);

   ArraySetAsSeries(BufferColors,true);

   ArraySetAsSeries(BufferEdge,true);

   ArraySetAsSeries(BufferMA,true);

   ArraySetAsSeries(BufferVolume,true);

//---

   return(INIT_SUCCEEDED);

  }

//+------------------------------------------------------------------+

//| Custom indicator iteration function                              |

//+------------------------------------------------------------------+

int OnCalculate(const int rates_total,

                const int prev_calculated,

                const datetime &time[],

                const double &open[],

                const double &high[],

                const double &low[],

                const double &close[],

                const long &tick_volume[],

                const long &volume[],

                const int &spread[])

  {

//--- #AB0=>2:0 <0AA82>2 1CD5@>2 :0: B09<A5@89

   ArraySetAsSeries(tick_volume,true);

//--- @>25@:0 :>;8G5AB20 4>ABC?=KE 10@>2

   if(rates_total<fmax(period_ma,4)) return 0;

//--- @>25@:0 8 @0AGQB :>;8G5AB20 ?@>AG8BK205<KE 10@>2

   int limit=rates_total-prev_calculated;

   if(limit>1)

     {

      limit=rates_total-period_ma-1;

      ArrayInitialize(BufferHist,EMPTY_VALUE);

      ArrayInitialize(BufferColors,2);

      ArrayInitialize(BufferEdge,EMPTY_VALUE);

      ArrayInitialize(BufferMA,0);

      ArrayInitialize(BufferVolume,0);

     }



//---  0AGQB 8=48:0B>@0

   for(int i=limit; i>=0 && !IsStopped(); i--)

     {

      BufferVolume[i]=(double)tick_volume[i];

      BufferMA[i]=GetSMA(rates_total,i,period_ma,BufferVolume);

      if(BufferMA[i]!=0)

        {

         BufferEdge[i]=BufferHist[i]=BufferVolume[i]/BufferMA[i]*100.0;

         BufferColors[i]=(BufferHist[i]>threshold ? 0 : 1);

        }

      else

        {

         BufferEdge[i]=BufferHist[i]=0;

         BufferColors[i]=2;

        }

     }



//--- return value of prev_calculated for next call

   return(rates_total);

  }

//+------------------------------------------------------------------+

//| Simple Moving Average                                            |

//+------------------------------------------------------------------+

double GetSMA(const int rates_total,const int index,const int period,const double &price[],const bool as_series=true)

  {

//---

   double result=0.0;

//--- check position

   bool check_index=(as_series ? index<=rates_total-period-1 : index>=period-1);

   if(period<1 || !check_index)

      return 0;

//--- calculate value

   for(int i=0; i<period; i++)

      result=result+(as_series ? price[index+i]: price[index-i]);

//---

   return(result/period);

  }

//+------------------------------------------------------------------+

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