//+------------------------------------------------------------------+ //| FisherTransform_Pro.mq5| //| Copyright 2025, xxxxxxxx| //+------------------------------------------------------------------+ #property copyright "Copyright 2025, xxxxxxxx" #property version "3.10" // Optimized for incremental calculation #property description "Professional Fisher Transform Oscillator with selectable" #property description "candle source (Standard or Heikin Ashi)." //--- Indicator Window and Level Properties --- #property indicator_separate_window #property indicator_level1 1.5 #property indicator_level2 0.75 #property indicator_level3 0.0 #property indicator_level4 -0.75 #property indicator_level5 -1.5 #property indicator_levelstyle STYLE_DOT //--- Buffers and Plots --- #property indicator_buffers 2 // Fisher and Trigger #property indicator_plots 2 //--- Plot 1: Fisher line #property indicator_label1 "Fisher" #property indicator_type1 DRAW_LINE #property indicator_color1 clrRoyalBlue #property indicator_style1 STYLE_SOLID #property indicator_width1 1 //--- Plot 2: Trigger line #property indicator_label2 "Trigger" #property indicator_type2 DRAW_LINE #property indicator_color2 clrDarkOrange #property indicator_style2 STYLE_SOLID #property indicator_width2 1 //--- Include the calculator engine --- #include //--- Enum for selecting the candle source for calculation --- enum ENUM_CANDLE_SOURCE { CANDLE_STANDARD, // Use standard OHLC data CANDLE_HEIKIN_ASHI // Use Heikin Ashi smoothed data }; //--- Input Parameters --- input int InpLength = 9; // Length input ENUM_CANDLE_SOURCE InpCandleSource = CANDLE_STANDARD; // Candle source //--- Indicator Buffers --- double BufferFisher[]; double BufferTrigger[]; //--- Global calculator object (as a base class pointer) --- CFisherTransformCalculator *g_calculator; //+------------------------------------------------------------------+ //| Custom indicator initialization function. | //+------------------------------------------------------------------+ int OnInit() { //--- Map the buffers and set as non-timeseries SetIndexBuffer(0, BufferFisher, INDICATOR_DATA); SetIndexBuffer(1, BufferTrigger, INDICATOR_DATA); ArraySetAsSeries(BufferFisher, false); ArraySetAsSeries(BufferTrigger, false); //--- Dynamically create the appropriate calculator instance switch(InpCandleSource) { case CANDLE_HEIKIN_ASHI: g_calculator = new CFisherTransformCalculator_HA(); IndicatorSetString(INDICATOR_SHORTNAME, StringFormat("Fisher HA(%d)", InpLength)); break; default: // CANDLE_STANDARD g_calculator = new CFisherTransformCalculator(); IndicatorSetString(INDICATOR_SHORTNAME, StringFormat("Fisher(%d)", InpLength)); break; } //--- Check if creation was successful and initialize if(CheckPointer(g_calculator) == POINTER_INVALID || !g_calculator.Init(InpLength)) { Print("Failed to create or initialize Fisher Transform Calculator object."); return(INIT_FAILED); } //--- Set indicator display properties IndicatorSetInteger(INDICATOR_DIGITS, 4); PlotIndexSetInteger(0, PLOT_DRAW_BEGIN, InpLength); PlotIndexSetInteger(1, PLOT_DRAW_BEGIN, InpLength + 1); return(INIT_SUCCEEDED); } //+------------------------------------------------------------------+ //| Custom indicator deinitialization function. | //+------------------------------------------------------------------+ void OnDeinit(const int reason) { //--- Free the calculator object to prevent memory leaks if(CheckPointer(g_calculator) != POINTER_INVALID) delete g_calculator; } //+------------------------------------------------------------------+ //| Custom indicator calculation function | //+------------------------------------------------------------------+ int OnCalculate(const int rates_total, const int prev_calculated, // <--- Now used! 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(CheckPointer(g_calculator) == POINTER_INVALID) return 0; //--- Delegate calculation with prev_calculated optimization // Note: price_type is not used by Fisher (it always uses HL2), but we pass OHLC arrays. g_calculator.Calculate(rates_total, prev_calculated, open, high, low, close, BufferFisher, BufferTrigger); return(rates_total); } //+------------------------------------------------------------------+ //+------------------------------------------------------------------+