//+------------------------------------------------------------------+ //| Laguerre_RSI_Adaptive_Calculator.mqh | //| VERSION 1.10: Added signal line and fixed state management. | //| Copyright 2025, xxxxxxxx | //+------------------------------------------------------------------+ #property copyright "Copyright 2025, xxxxxxxx" #include #include //+==================================================================+ class CLaguerreRSIAdaptiveCalculator { protected: double m_price[]; int m_signal_period; ENUM_MA_TYPE m_signal_ma_type; //--- State variables for the recursive filters --- double m_Filt_prev, m_Filt_prev2; double m_I1_prev, m_Q1_prev; double m_I2_prev, m_Q2_prev; double m_Period_prev, m_DC_Period_prev; double m_L0_prev, m_L1_prev, m_L2_prev, m_L3_prev; virtual bool PreparePriceSeries(int rates_total, ENUM_APPLIED_PRICE price_type, const double &open[], const double &high[], const double &low[], const double &close[]); void CalculateMA(const double &source_array[], double &dest_array[], int period, ENUM_MA_TYPE method, int start_pos); public: CLaguerreRSIAdaptiveCalculator(void) {}; virtual ~CLaguerreRSIAdaptiveCalculator(void) {}; bool Init(int signal_p, ENUM_MA_TYPE signal_ma); void Calculate(int rates_total, ENUM_APPLIED_PRICE price_type, const double &open[], const double &high[], const double &low[], const double &close[], double &lrsi_buffer[], double &signal_buffer[]); }; //+------------------------------------------------------------------+ //| | //+------------------------------------------------------------------+ class CLaguerreRSIAdaptiveCalculator_HA : public CLaguerreRSIAdaptiveCalculator { private: CHeikinAshi_Calculator m_ha_calculator; protected: virtual bool PreparePriceSeries(int rates_total, ENUM_APPLIED_PRICE price_type, const double &open[], const double &high[], const double &low[], const double &close[]) override; }; //+==================================================================+ //| METHOD IMPLEMENTATIONS | //+==================================================================+ //+------------------------------------------------------------------+ //| | //+------------------------------------------------------------------+ bool CLaguerreRSIAdaptiveCalculator::Init(int signal_p, ENUM_MA_TYPE signal_ma) { m_signal_period = (signal_p < 1) ? 1 : signal_p; m_signal_ma_type = signal_ma; m_Filt_prev=0; m_Filt_prev2=0; m_I1_prev=0; m_Q1_prev=0; m_I2_prev=0; m_Q2_prev=0; m_Period_prev=0; m_DC_Period_prev=0; m_L0_prev=0; m_L1_prev=0; m_L2_prev=0; m_L3_prev=0; return true; } //+------------------------------------------------------------------+ //| | //+------------------------------------------------------------------+ void CLaguerreRSIAdaptiveCalculator::Calculate(int rates_total, ENUM_APPLIED_PRICE price_type, const double &open[], const double &high[], const double &low[], const double &close[], double &lrsi_buffer[], double &signal_buffer[]) { if(rates_total < 10) return; if(!PreparePriceSeries(rates_total, price_type, open, high, low, close)) return; double filt_buffer[]; ArrayResize(filt_buffer, rates_total); double I1=0, Q1=0, I2=0, Q2=0, Re=0, Im=0, Period=0, DC_Period=0; double L0=0, L1=0, L2=0, L3=0; double alpha1 = (cos(0.707 * 2 * M_PI / 48.0) + sin(0.707 * 2 * M_PI / 48.0) - 1.0) / cos(0.707 * 2 * M_PI / 48.0); double beta1 = 1.0 - alpha1 / 2.0; beta1 *= beta1; for(int i = 0; i < rates_total; i++) { double Filt = (i > 1) ? beta1 * (m_price[i] - 2 * m_price[i-1] + m_price[i-2]) + (2 * (1 - alpha1 / 2.0)) * m_Filt_prev - ((1 - alpha1 / 2.0) * (1 - alpha1 / 2.0)) * m_Filt_prev2 : 0; filt_buffer[i] = Filt; if(i > 6) { Q1 = (0.0962 * filt_buffer[i] + 0.5769 * filt_buffer[i-2] - 0.5769 * filt_buffer[i-4] - 0.0962 * filt_buffer[i-6]) * (0.5 + 0.08 * (m_I1_prev + 50)); I1 = filt_buffer[i-3]; } if(i > 0) { I2 = I1 - m_Q1_prev; Q2 = Q1 + m_I1_prev; Re = I2 * m_I2_prev + Q2 * m_Q2_prev; Im = I2 * m_Q2_prev - Q2 * m_I2_prev; } if(Im != 0.0 && Re != 0.0) Period = 2 * M_PI / atan(Im / Re); else Period = 0.0; if(Period > 1.5 * m_Period_prev && i > 0) Period = 1.5 * m_Period_prev; if(Period < 0.67 * m_Period_prev) Period = 0.67 * m_Period_prev; if(Period < 6) Period = 6; if(Period > 50) Period = 50; DC_Period = 0.2 * Period + 0.8 * m_DC_Period_prev; double gamma = (DC_Period > 0) ? 4.0 / DC_Period : 0; if(i > 0) { L0 = (1.0 - gamma) * m_price[i] + gamma * m_L0_prev; L1 = -gamma * L0 + m_L0_prev + gamma * m_L1_prev; L2 = -gamma * L1 + m_L1_prev + gamma * m_L2_prev; L3 = -gamma * L2 + m_L2_prev + gamma * m_L3_prev; } else { L0=m_price[i]; L1=m_price[i]; L2=m_price[i]; L3=m_price[i]; } double cu = 0.0, cd = 0.0; if(L0 >= L1) cu = L0 - L1; else cd = L1 - L0; if(L1 >= L2) cu += L1 - L2; else cd += L2 - L1; if(L2 >= L3) cu += L2 - L3; else cd += L3 - L2; double lrsi_value; if(cu + cd > 0.0) lrsi_value = 100.0 * cu / (cu + cd); else lrsi_value = (i > 0) ? lrsi_buffer[i-1] : 50.0; if(lrsi_value > 100.0) lrsi_value = 100.0; if(lrsi_value < 0.0) lrsi_value = 0.0; lrsi_buffer[i] = lrsi_value; m_Filt_prev2 = m_Filt_prev; m_Filt_prev = Filt; m_I1_prev = I1; m_Q1_prev = Q1; m_I2_prev = I2; m_Q2_prev = Q2; m_Period_prev = Period; m_DC_Period_prev = DC_Period; m_L0_prev = L0; m_L1_prev = L1; m_L2_prev = L2; m_L3_prev = L3; } int signal_start = 10 + m_signal_period - 1; CalculateMA(lrsi_buffer, signal_buffer, m_signal_period, m_signal_ma_type, signal_start); } //+------------------------------------------------------------------+ //| | //+------------------------------------------------------------------+ void CLaguerreRSIAdaptiveCalculator::CalculateMA(const double &source_array[], double &dest_array[], int period, ENUM_MA_TYPE method, int start_pos) { for(int i = start_pos; i < ArraySize(source_array); i++) { switch(method) { case EMA: case SMMA: if(i == start_pos) { double sum=0; int count=0; for(int j=0; j 0) dest_array[i]=sum/count; } else { if(method==EMA) { double pr=2.0/(period+1.0); dest_array[i]=source_array[i]*pr+dest_array[i-1]*(1.0-pr); } else dest_array[i]=(dest_array[i-1]*(period-1)+source_array[i])/period; } break; case LWMA: { double sum=0, w_sum=0; for(int j=0; j0) dest_array[i]=sum/w_sum; } break; default: // SMA { double sum=0; int count=0; for(int j=0; j 0) dest_array[i]=sum/count; } break; } } } //+------------------------------------------------------------------+ //| | //+------------------------------------------------------------------+ bool CLaguerreRSIAdaptiveCalculator::PreparePriceSeries(int rates_total, ENUM_APPLIED_PRICE price_type, const double &open[], const double &high[], const double &low[], const double &close[]) { ArrayResize(m_price, rates_total); switch(price_type) { case PRICE_CLOSE: ArrayCopy(m_price, close, 0, 0, rates_total); break; case PRICE_OPEN: ArrayCopy(m_price, open, 0, 0, rates_total); break; case PRICE_HIGH: ArrayCopy(m_price, high, 0, 0, rates_total); break; case PRICE_LOW: ArrayCopy(m_price, low, 0, 0, rates_total); break; case PRICE_MEDIAN: for(int i=0; i