Files
mql5/Include/MyIncludes/RSI_Adaptive_Calculator.mqh
T
2025-11-14 12:21:19 +01:00

203 lines
7.8 KiB
Plaintext

//+------------------------------------------------------------------+
//| RSI_Adaptive_Calculator.mqh |
//| Engine for a variable-length RSI (Dynamic Momentum Index). |
//| Copyright 2025, xxxxxxxx |
//+------------------------------------------------------------------+
#property copyright "Copyright 2025, xxxxxxxx"
#include <MyIncludes\HeikinAshi_Tools.mqh>
//+==================================================================+
class CAdaptiveRSICalculator
{
protected:
int m_pivotal_period, m_vola_short, m_vola_long;
double m_price[];
virtual bool PreparePriceSeries(int rates_total, ENUM_APPLIED_PRICE price_type, const double &open[], const double &high[], const double &low[], const double &close[]);
public:
CAdaptiveRSICalculator(void) {};
virtual ~CAdaptiveRSICalculator(void) {};
bool Init(int pivotal_p, int vola_s, int vola_l);
void Calculate(int rates_total, const double &open[], const double &high[], const double &low[], const double &close[], ENUM_APPLIED_PRICE price_type,
double &rsi_buffer[]);
};
//+------------------------------------------------------------------+
//| |
//+------------------------------------------------------------------+
class CAdaptiveRSICalculator_HA : public CAdaptiveRSICalculator
{
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 CAdaptiveRSICalculator::Init(int pivotal_p, int vola_s, int vola_l)
{
m_pivotal_period = (pivotal_p < 2) ? 2 : pivotal_p;
m_vola_short = (vola_s < 1) ? 1 : vola_s;
m_vola_long = (vola_l <= m_vola_short) ? m_vola_short + 1 : vola_l;
return true;
}
//+------------------------------------------------------------------+
//| |
//+------------------------------------------------------------------+
void CAdaptiveRSICalculator::Calculate(int rates_total, const double &open[], const double &high[], const double &low[], const double &close[], ENUM_APPLIED_PRICE price_type,
double &rsi_buffer[])
{
if(rates_total <= m_vola_long + m_pivotal_period)
return;
if(!PreparePriceSeries(rates_total, price_type, open, high, low, close))
return;
double vola_sum[], vola_avg[], nsp_buffer[];
ArrayResize(vola_sum, rates_total);
ArrayResize(vola_avg, rates_total);
ArrayResize(nsp_buffer, rates_total);
//--- Step 1: Calculate Volatility Ratio and Adaptive Period (NSP)
for(int i = m_vola_short; i < rates_total; i++)
{
for(int j = 0; j < m_vola_short; j++)
vola_sum[i] += MathAbs(m_price[i-j] - m_price[i-j-1]);
}
for(int i = m_vola_short + m_vola_long - 1; i < rates_total; i++)
{
double sum_of_sums = 0;
for(int j = 0; j < m_vola_long; j++)
sum_of_sums += vola_sum[i-j];
vola_avg[i] = sum_of_sums / m_vola_long;
double vola_ratio = (vola_avg[i] > 0.000001) ? vola_sum[i] / vola_avg[i] : 1.0;
int period = (int)round(m_pivotal_period / vola_ratio);
nsp_buffer[i] = fmax(2, fmin(m_pivotal_period * 2, period)); // Clamp period to a reasonable range
}
//--- Step 2: Calculate Simple RSI using the adaptive period
for(int i = m_vola_long + m_pivotal_period; i < rates_total; i++)
{
int current_nsp = (int)nsp_buffer[i];
if(i < current_nsp)
continue;
double sum_pos = 0, sum_neg = 0;
for(int j = 0; j < current_nsp; j++)
{
double diff = m_price[i-j] - m_price[i-j-1];
if(diff > 0)
sum_pos += diff;
else
sum_neg -= diff;
}
if(sum_pos + sum_neg > 0.000001)
rsi_buffer[i] = 100.0 * sum_pos / (sum_pos + sum_neg);
else
rsi_buffer[i] = 50.0;
}
}
//+------------------------------------------------------------------+
//| |
//+------------------------------------------------------------------+
bool CAdaptiveRSICalculator::PreparePriceSeries(int rates_total, ENUM_APPLIED_PRICE price_type, const double &open[], const double &high[], const double &low[], const double &close[])
{
if(ArraySize(m_price) != rates_total)
if(ArrayResize(m_price, rates_total) != rates_total)
return false;
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<rates_total; i++)
m_price[i] = (high[i]+low[i])/2.0;
break;
case PRICE_TYPICAL:
for(int i=0; i<rates_total; i++)
m_price[i] = (high[i]+low[i]+close[i])/3.0;
break;
case PRICE_WEIGHTED:
for(int i=0; i<rates_total; i++)
m_price[i] = (high[i]+low[i]+close[i]+close[i])/4.0;
break;
default:
return false;
}
return true;
}
//+------------------------------------------------------------------+
//| |
//+------------------------------------------------------------------+
bool CAdaptiveRSICalculator_HA::PreparePriceSeries(int rates_total, ENUM_APPLIED_PRICE price_type, const double &open[], const double &high[], const double &low[], const double &close[])
{
double ha_open[], ha_high[], ha_low[], ha_close[];
ArrayResize(ha_open, rates_total);
ArrayResize(ha_high, rates_total);
ArrayResize(ha_low, rates_total);
ArrayResize(ha_close, rates_total);
m_ha_calculator.Calculate(rates_total, open, high, low, close, ha_open, ha_high, ha_low, ha_close);
if(ArraySize(m_price) != rates_total)
if(ArrayResize(m_price, rates_total) != rates_total)
return false;
switch(price_type)
{
case PRICE_CLOSE:
ArrayCopy(m_price, ha_close, 0, 0, rates_total);
break;
case PRICE_OPEN:
ArrayCopy(m_price, ha_open, 0, 0, rates_total);
break;
case PRICE_HIGH:
ArrayCopy(m_price, ha_high, 0, 0, rates_total);
break;
case PRICE_LOW:
ArrayCopy(m_price, ha_low, 0, 0, rates_total);
break;
case PRICE_MEDIAN:
for(int i=0; i<rates_total; i++)
m_price[i] = (ha_high[i]+ha_low[i])/2.0;
break;
case PRICE_TYPICAL:
for(int i=0; i<rates_total; i++)
m_price[i] = (ha_high[i]+ha_low[i]+ha_close[i])/3.0;
break;
case PRICE_WEIGHTED:
for(int i=0; i<rates_total; i++)
m_price[i] = (ha_high[i]+ha_low[i]+ha_close[i]+ha_close[i])/4.0;
break;
default:
return false;
}
return true;
}
//+------------------------------------------------------------------+
//+------------------------------------------------------------------+