//+------------------------------------------------------------------+ //| StochRSI_Fast_HeikenAshi.mq5 | //| Copyright 2025, xxxxxxxx | //| | //+------------------------------------------------------------------+ #property copyright "Copyright 2025, xxxxxxxx" #property link "" #property version "1.00" #property description "Fast Stochastic on a Heiken Ashi based RSI" //--- Indicator Window and Level Properties --- #property indicator_separate_window #property indicator_buffers 2 // %K and %D #property indicator_plots 2 #property indicator_level1 20.0 #property indicator_level2 80.0 #property indicator_minimum -10.0 // Allow for overshoots #property indicator_maximum 110.0 // Allow for overshoots //--- Plot 1: %K line #property indicator_label1 "HA_%K" #property indicator_type1 DRAW_LINE #property indicator_color1 clrBlue #property indicator_style1 STYLE_SOLID #property indicator_width1 1 //--- Plot 2: %D line #property indicator_label2 "HA_%D" #property indicator_type2 DRAW_LINE #property indicator_color2 clrOrange #property indicator_style2 STYLE_SOLID #property indicator_width2 1 //--- Input Parameters --- input int InpLengthRSI = 14; // RSI Length input int InpLengthStoch = 14; // Stochastic Length (%K Period) input int InpSmoothD = 3; // %D Smoothing (Signal Line) //--- Indicator Buffers --- double BufferK[]; double BufferD[]; double BufferHA_RSI[]; // Buffer to store the Heiken Ashi RSI values //--- Global Variables --- int ExtLengthRSI, ExtLengthStoch, ExtSmoothD; int handle_ha_rsi; // Handle for our custom RSI_HeikenAshi indicator //--- Forward declarations for helper functions --- double Highest(const double &array[], int period, int current_pos); double Lowest(const double &array[], int period, int current_pos); //+------------------------------------------------------------------+ //| Custom indicator initialization function. | //+------------------------------------------------------------------+ void OnInit() { ExtLengthRSI = (InpLengthRSI < 1) ? 1 : InpLengthRSI; ExtLengthStoch = (InpLengthStoch < 1) ? 1 : InpLengthStoch; ExtSmoothD = (InpSmoothD < 1) ? 1 : InpSmoothD; SetIndexBuffer(0, BufferK, INDICATOR_DATA); SetIndexBuffer(1, BufferD, INDICATOR_DATA); SetIndexBuffer(2, BufferHA_RSI, INDICATOR_CALCULATIONS); ArraySetAsSeries(BufferK, false); ArraySetAsSeries(BufferD, false); ArraySetAsSeries(BufferHA_RSI, false); //--- Create a handle to our custom RSI_HeikenAshi indicator --- // The path must be relative to the MQL5/Indicators/ folder // We assume it's in the MyIndicators subfolder string indicator_path = "MyIndicators\\RSI_HeikenAshi"; handle_ha_rsi = iCustom(_Symbol, _Period, indicator_path, InpLengthRSI, // Pass RSI Period 14, // Pass default MA Period (not used by the RSI line itself) MODE_SMA // Pass default MA Method (not used) ); if(handle_ha_rsi == INVALID_HANDLE) Print("Error creating iCustom handle for RSI_HeikenAshi."); IndicatorSetInteger(INDICATOR_DIGITS, 2); PlotIndexSetInteger(0, PLOT_DRAW_BEGIN, ExtLengthRSI + ExtLengthStoch - 2); PlotIndexSetInteger(1, PLOT_DRAW_BEGIN, ExtLengthRSI + ExtLengthStoch + ExtSmoothD - 3); IndicatorSetString(INDICATOR_SHORTNAME, StringFormat("HA_StochRSI_Fast(%d,%d,%d)", ExtLengthRSI, ExtLengthStoch, ExtSmoothD)); } //+------------------------------------------------------------------+ //| Fast StochRSI on Heiken Ashi calculation 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[]) { if(rates_total < ExtLengthRSI + ExtLengthStoch) return(0); //--- STEP 1: Get Heiken Ashi RSI values from our custom indicator if(BarsCalculated(handle_ha_rsi) < rates_total) return(0); // We need the raw HA_RSI line, which is in buffer #1 of the RSI_HeikenAshi indicator if(CopyBuffer(handle_ha_rsi, 1, 0, rates_total, BufferHA_RSI) <= 0) return(0); //--- Main calculation loop for(int i = 0; i < rates_total; i++) { //--- STEP 2: Calculate Fast %K on the HA_RSI buffer --- if(i >= ExtLengthRSI + ExtLengthStoch - 2) { double highest_ha_rsi = Highest(BufferHA_RSI, ExtLengthStoch, i); double lowest_ha_rsi = Lowest(BufferHA_RSI, ExtLengthStoch, i); double range = highest_ha_rsi - lowest_ha_rsi; if(range > 0.00001) BufferK[i] = (BufferHA_RSI[i] - lowest_ha_rsi) / range * 100.0; else BufferK[i] = (i > 0) ? BufferK[i-1] : 50.0; } else { BufferK[i] = 0; } //--- STEP 3: Calculate %D (Signal Line) as an SMA of %K --- if(i >= ExtLengthRSI + ExtLengthStoch + ExtSmoothD - 3) { double sum = 0; for(int j = 0; j < ExtSmoothD; j++) { sum += BufferK[i-j]; } BufferD[i] = sum / ExtSmoothD; } else { BufferD[i] = 0; } } return(rates_total); } //+------------------------------------------------------------------+ //| Finds the highest value in a given period of an array. | //+------------------------------------------------------------------+ double Highest(const double &array[], int period, int current_pos) { double res = array[current_pos]; for(int i = 1; i < period; i++) { int index = current_pos - i; if(index < 0) break; if(res < array[index]) res = array[index]; } return(res); } //+------------------------------------------------------------------+ //| Finds the lowest value in a given period of an array. | //+------------------------------------------------------------------+ double Lowest(const double &array[], int period, int current_pos) { double res = array[current_pos]; for(int i = 1; i < period; i++) { int index = current_pos - i; if(index < 0) break; if(res > array[index]) res = array[index]; } return(res); } //+------------------------------------------------------------------+ //+------------------------------------------------------------------+