//+------------------------------------------------------------------+ //| VIDYA_Adaptive_RSI_Pro.mq5 | //| Copyright 2026, xxxxxxxx| //+------------------------------------------------------------------+ #property copyright "Copyright 2026, xxxxxxxx" #property version "1.00" #property description "VIDYA using Adaptive RSI for volatility measurement." #property description "A double-adaptive moving average." #property indicator_chart_window #property indicator_buffers 1 #property indicator_plots 1 #property indicator_type1 DRAW_LINE #property indicator_color1 clrMagenta #property indicator_style1 STYLE_SOLID #property indicator_width1 2 #property indicator_label1 "VIDYA (Adaptive RSI)" #include //--- Input Parameters input group "Adaptive RSI Settings" input int InpPivotalPeriod = 14; // Pivotal RSI Period input int InpVolaShort = 5; // Volatility Short Period input int InpVolaLong = 10; // Volatility Long Period input ENUM_ADAPTIVE_SOURCE_RSI InpAdaptiveSource= ADAPTIVE_SOURCE_RSI_STANDARD; input group "VIDYA Settings" input int InpPeriodEMA = 20; // Base EMA Period input ENUM_APPLIED_PRICE_HA_ALL InpSourcePrice = PRICE_CLOSE_STD; //--- Buffers double BufferVIDYA[]; //--- Global Object CVIDYAAdaptiveRSICalculator *g_calculator; //+------------------------------------------------------------------+ //| OnInit | //+------------------------------------------------------------------+ int OnInit() { SetIndexBuffer(0, BufferVIDYA, INDICATOR_DATA); ArraySetAsSeries(BufferVIDYA, false); if(InpSourcePrice <= PRICE_HA_CLOSE) g_calculator = new CVIDYAAdaptiveRSICalculator_HA(); else g_calculator = new CVIDYAAdaptiveRSICalculator(); if(CheckPointer(g_calculator) == POINTER_INVALID || !g_calculator.Init(InpPivotalPeriod, InpVolaShort, InpVolaLong, InpAdaptiveSource, InpPeriodEMA)) { Print("Failed to initialize VIDYA Adaptive RSI Calculator."); return(INIT_FAILED); } string type = (InpSourcePrice <= PRICE_HA_CLOSE) ? " HA" : ""; IndicatorSetString(INDICATOR_SHORTNAME, StringFormat("VIDYA ARSI%s(%d, %d)", type, InpPivotalPeriod, InpPeriodEMA)); int draw_begin = InpVolaLong + InpPivotalPeriod + InpPeriodEMA; PlotIndexSetInteger(0, PLOT_DRAW_BEGIN, draw_begin); IndicatorSetInteger(INDICATOR_DIGITS, _Digits); return(INIT_SUCCEEDED); } //+------------------------------------------------------------------+ //| OnDeinit | //+------------------------------------------------------------------+ void OnDeinit(const int reason) { if(CheckPointer(g_calculator) != POINTER_INVALID) delete g_calculator; } //+------------------------------------------------------------------+ //| OnCalculate | //+------------------------------------------------------------------+ 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 < InpPeriodEMA) return(0); ENUM_APPLIED_PRICE price_type = (InpSourcePrice <= PRICE_HA_CLOSE) ? (ENUM_APPLIED_PRICE)(-(int)InpSourcePrice) : (ENUM_APPLIED_PRICE)InpSourcePrice; g_calculator.Calculate(rates_total, prev_calculated, price_type, open, high, low, close, BufferVIDYA); return(rates_total); } //+------------------------------------------------------------------+