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251 lines
9.2 KiB
Plaintext
251 lines
9.2 KiB
Plaintext
//+------------------------------------------------------------------+
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//| WeisWave_Calculator.mqh |
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//| Engine for Non-Repainting Weis Wave Volume with SOT. |
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//| Strictly O(1) Incremental Optimized. |
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//| Copyright 2026, xxxxxxxx |
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//+------------------------------------------------------------------+
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#property copyright "Copyright 2026, xxxxxxxx"
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#property version "1.10" // Integrated retroactive SOT wave coloring
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#ifndef WEISWAVE_CALCULATOR_MQH
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#define WEISWAVE_CALCULATOR_MQH
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//+==================================================================+
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//| CLASS: CWeisWaveCalculator |
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//+==================================================================+
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class CWeisWaveCalculator
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{
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private:
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int m_atr_period;
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double m_multiplier;
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//--- Stateful arrays to prevent repainting (O(1) state preservation)
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int m_direction[];
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double m_wave_vol[];
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double m_peak_high[];
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double m_peak_low[];
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double m_wave_len[]; // Tracks vertical height of each bar's wave
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double GetATR(int i, const double &high[], const double &low[], const double &close[]);
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bool GetLastCompletedLengths(int current_idx, int target_dir, double &out_lens[]);
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public:
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CWeisWaveCalculator();
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~CWeisWaveCalculator() {};
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bool Init(int atr_period, double multiplier);
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void Calculate(int rates_total, int prev_calculated,
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const double &high[], const double &low[], const double &close[], const long &volume[],
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double &out_wave_vol[], double &out_colors[], bool show_sot=true);
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};
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//+------------------------------------------------------------------+
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//| Constructor |
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//+------------------------------------------------------------------+
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CWeisWaveCalculator::CWeisWaveCalculator() : m_atr_period(14), m_multiplier(2.5) {}
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//+------------------------------------------------------------------+
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//| Init |
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//+------------------------------------------------------------------+
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bool CWeisWaveCalculator::Init(int atr_period, double multiplier)
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{
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m_atr_period = (atr_period < 3) ? 3 : atr_period;
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m_multiplier = (multiplier <= 0.0) ? 1.0 : multiplier;
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return true;
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}
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//+------------------------------------------------------------------+
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//| Calculate (Strictly O(1) Non-Repainting Stateful Loop) |
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//+------------------------------------------------------------------+
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void CWeisWaveCalculator::Calculate(int rates_total, int prev_calculated,
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const double &high[], const double &low[], const double &close[], const long &volume[],
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double &out_wave_vol[], double &out_colors[], bool show_sot)
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{
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if(rates_total < m_atr_period + 10)
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return;
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//--- Sync state arrays with rates_total
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if(ArraySize(m_direction) != rates_total)
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{
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ArrayResize(m_direction, rates_total);
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ArrayResize(m_wave_vol, rates_total);
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ArrayResize(m_peak_high, rates_total);
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ArrayResize(m_peak_low, rates_total);
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ArrayResize(m_wave_len, rates_total);
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}
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int start = (prev_calculated == 0) ? 0 : prev_calculated - 1;
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//--- Initialization for the very first bar
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if(start == 0)
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{
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m_direction[0] = 1; // Default to Up wave
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m_wave_vol[0] = (double)volume[0];
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m_peak_high[0] = high[0];
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m_peak_low[0] = low[0];
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m_wave_len[0] = high[0] - low[0];
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out_wave_vol[0] = m_wave_vol[0];
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out_colors[0] = 0.0;
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start = 1;
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}
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//--- Stateful main loop
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for(int i = start; i < rates_total; i++)
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{
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int prev_dir = m_direction[i-1];
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double prev_vol = m_wave_vol[i-1];
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double prev_hi = m_peak_high[i-1];
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double prev_lo = m_peak_low[i-1];
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double atr = GetATR(i, high, low, close);
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double threshold = m_multiplier * atr;
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// Carry forward previous peak states as defaults
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m_direction[i] = prev_dir;
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m_peak_high[i] = prev_hi;
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m_peak_low[i] = prev_lo;
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if(prev_dir == 1) // Active UP Swing
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{
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m_wave_vol[i] = prev_vol + (double)volume[i];
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m_peak_high[i] = MathMax(prev_hi, high[i]);
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m_wave_len[i] = m_peak_high[i] - prev_lo; // Running wave height in points
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// Default visual outputs
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out_wave_vol[i] = m_wave_vol[i];
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out_colors[i] = 0.0; // Index 0: DodgerBlue (Normal Up)
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// Check if price fell below the peak minus ATR threshold (REVERSAL to Down Swing)
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if(close[i] < m_peak_high[i] - threshold)
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{
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m_direction[i] = -1;
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m_wave_vol[i] = (double)volume[i]; // Reset volume for the new wave
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m_peak_low[i] = low[i];
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m_wave_len[i] = m_peak_high[i] - m_peak_low[i];
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out_wave_vol[i] = -m_wave_vol[i];
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out_colors[i] = 1.0; // Index 1: Crimson (Normal Down)
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//--- SOT Check: If show_sot is enabled, verify the completed Up wave (at index i-1)
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if(show_sot)
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{
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double h_lens[3];
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if(GetLastCompletedLengths(i - 1, 1, h_lens))
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{
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if(h_lens[0] < h_lens[1] && h_lens[1] < h_lens[2])
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{
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// Retroactively color the entire completed Up wave to Index 2 (Orange)
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for(int k = i - 1; k >= 0; k--)
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{
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if(m_direction[k] == 1)
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out_colors[k] = 2.0; // SOT Up Wave Color
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else
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break;
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}
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}
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}
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}
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}
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}
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else // Active DOWN Swing
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{
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m_wave_vol[i] = prev_vol + (double)volume[i];
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m_peak_low[i] = MathMin(prev_lo, low[i]);
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m_wave_len[i] = prev_hi - m_peak_low[i]; // Running wave height in points
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// Default visual outputs
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out_wave_vol[i] = -m_wave_vol[i];
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out_colors[i] = 1.0; // Index 1: Crimson (Normal Down)
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// Check if price rose above the trough plus ATR threshold (REVERSAL to Up Swing)
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if(close[i] > m_peak_low[i] + threshold)
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{
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m_direction[i] = 1;
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m_wave_vol[i] = (double)volume[i]; // Reset volume for the new wave
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m_peak_high[i] = high[i];
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m_wave_len[i] = m_peak_high[i] - m_peak_low[i];
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out_wave_vol[i] = m_wave_vol[i];
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out_colors[i] = 0.0; // Index 0: DodgerBlue (Normal Up)
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//--- SOT Check: If show_sot is enabled, verify the completed Down wave (at index i-1)
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if(show_sot)
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{
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double l_lens[3];
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if(GetLastCompletedLengths(i - 1, -1, l_lens))
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{
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if(l_lens[0] < l_lens[1] && l_lens[1] < l_lens[2])
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{
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// Retroactively color the entire completed Down wave to Index 3 (Fuchsia)
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for(int k = i - 1; k >= 0; k--)
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{
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if(m_direction[k] == -1)
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out_colors[k] = 3.0; // SOT Down Wave Color
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else
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break;
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}
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}
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}
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}
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}
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}
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}
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}
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//+------------------------------------------------------------------+
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//| GetLastCompletedLengths (Historical state backward-search) |
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//+------------------------------------------------------------------+
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bool CWeisWaveCalculator::GetLastCompletedLengths(int current_idx, int target_dir, double &out_lens[])
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{
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int found = 0;
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bool in_target_wave = false;
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ArrayInitialize(out_lens, 0.0);
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for(int j = current_idx; j >= 0; j--)
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{
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int dir = m_direction[j];
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if(dir == target_dir)
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{
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if(!in_target_wave)
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{
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in_target_wave = true;
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out_lens[found] = m_wave_len[j]; // Capture locked final wave height
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found++;
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if(found >= 3)
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return true;
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}
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}
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else
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{
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in_target_wave = false;
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}
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}
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return (found >= 3);
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}
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//+------------------------------------------------------------------+
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//| GetATR (Self-contained rolling ATR calculation) |
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//+------------------------------------------------------------------+
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double CWeisWaveCalculator::GetATR(int i, const double &high[], const double &low[], const double &close[])
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{
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if(i < m_atr_period)
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return _Point * 10;
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double sum = 0.0;
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for(int k = 0; k < m_atr_period; k++)
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{
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double h = high[i - k];
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double l = low[i - k];
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double c_prev = close[i - k - 1];
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// True Range formula
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double tr = MathMax(h - l, MathMax(MathAbs(h - c_prev), MathAbs(l - c_prev)));
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sum += tr;
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}
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return sum / m_atr_period;
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}
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#endif // WEISWAVE_CALCULATOR_MQH
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//+------------------------------------------------------------------+
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