new files added

This commit is contained in:
Toh4iem9
2026-06-24 16:53:39 +02:00
parent a8ce9a0902
commit 0951261917
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//+------------------------------------------------------------------+
//| WeisWave_Duration_MTF_Pro.mq5|
//| Copyright 2026, xxxxxxxx|
//+------------------------------------------------------------------+
#property copyright "Copyright 2026, xxxxxxxx"
#property version "1.00" // Dynamic Multi-Timeframe Weis Wave Duration with retro-active SOT highlights
#property description "Professional Weis Wave Duration (Multi-Timeframe)."
#property description "Displays HTF Cumulative Wave Duration cleanly on current chart without live-bar warping."
#property indicator_separate_window
#property indicator_buffers 2
#property indicator_plots 1
//--- Plot: Color Histogram (Swapped with SOT colors)
#property indicator_label1 "Wave Duration MTF"
#property indicator_type1 DRAW_COLOR_HISTOGRAM
// Palette:
// 0: DodgerBlue (Normal Up Duration)
// 1: Crimson (Normal Down Duration)
// 2: Orange (Exhausted Up Duration / Bearish SOT)
// 3: Magenta (Exhausted Down Duration / Bullish SOT)
#property indicator_color1 clrDodgerBlue, clrCrimson, clrOrange, clrFuchsia
#property indicator_style1 STYLE_SOLID
#property indicator_width1 3
#include <MyIncludes\WeisWave_Duration_Calculator.mqh>
//--- Input Parameters
input ENUM_TIMEFRAMES InpTimeframe = PERIOD_H1; // Target Higher Timeframe
input int InpATRPeriod = 14; // ATR Sensitivity Period
input double InpMultiplier = 2.5; // Wave Reversal Multiplier (ATR)
input bool InpShowSOT = true; // Highlight SOT (Momentum Exhaustion) waves?
//--- Buffers
double BufWaveDur[];
double BufColors[];
//--- Internal HTF Data Caches
double h_high[], h_low[], h_close[];
datetime h_time[];
double h_res_dur[], h_res_col[]; // HTF Results cached
//--- Global HTF State Tracking
CWeisWaveDurationCalculator *g_calc;
datetime g_last_htf_time = 0;
int g_htf_count = 0;
bool g_data_ready = false;
bool g_data_synced = false;
//+------------------------------------------------------------------+
//| EnsureHTFDataReady |
//+------------------------------------------------------------------+
bool EnsureHTFDataReady(const string symbol, const ENUM_TIMEFRAMES timeframe, const int required_bars)
{
ResetLastError();
if(!SymbolInfoInteger(symbol, SYMBOL_SELECT))
{
SymbolSelect(symbol, true);
}
datetime times[];
int copied = CopyTime(symbol, timeframe, 0, required_bars, times);
return (copied >= required_bars);
}
//+------------------------------------------------------------------+
//| OnInit |
//+------------------------------------------------------------------+
int OnInit()
{
g_data_ready = false;
g_data_synced = false;
g_last_htf_time = 0;
g_htf_count = 0;
SetIndexBuffer(0, BufWaveDur, INDICATOR_DATA);
SetIndexBuffer(1, BufColors, INDICATOR_COLOR_INDEX);
ArraySetAsSeries(BufWaveDur, false);
ArraySetAsSeries(BufColors, false);
string tf_name = StringSubstr(EnumToString(InpTimeframe), 7);
string short_name = StringFormat("Weis Wave Duration MTF %s(%d, %.1f, SOT:%s)",
tf_name, InpATRPeriod, InpMultiplier, (InpShowSOT ? "ON" : "OFF"));
IndicatorSetString(INDICATOR_SHORTNAME, short_name);
IndicatorSetInteger(INDICATOR_DIGITS, 0);
g_calc = new CWeisWaveDurationCalculator();
if(CheckPointer(g_calc) == POINTER_INVALID || !g_calc.Init(InpATRPeriod, InpMultiplier))
{
Print("Error: Failed to initialize WeisWave Duration Calculator.");
return INIT_FAILED;
}
//--- Initialize 1-second timer for weekend/async chart refreshes
EventSetTimer(1);
return(INIT_SUCCEEDED);
}
//+------------------------------------------------------------------+
//| OnDeinit |
//+------------------------------------------------------------------+
void OnDeinit(const int reason)
{
EventKillTimer();
if(CheckPointer(g_calc) != POINTER_INVALID)
delete g_calc;
}
//+------------------------------------------------------------------+
//| 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[])
{
//--- Ensure target timeframe history is ready
int required_bars = InpATRPeriod + 20;
if(!EnsureHTFDataReady(_Symbol, InpTimeframe, required_bars))
{
g_data_synced = false;
return 0; // Wait for next tick to let history load
}
g_data_synced = true;
//--- 1. Check if a new HTF bar has formed
datetime htf_time_current = iTime(_Symbol, InpTimeframe, 0);
bool htf_updated = (htf_time_current != g_last_htf_time);
if(htf_updated || prev_calculated == 0)
{
g_last_htf_time = htf_time_current;
int htf_bars = iBars(_Symbol, InpTimeframe);
if(htf_bars < required_bars)
{
g_data_ready = false;
return 0;
}
g_htf_count = MathMin(htf_bars, 3000);
ArrayResize(h_time, g_htf_count);
ArrayResize(h_high, g_htf_count);
ArrayResize(h_low, g_htf_count);
ArrayResize(h_close, g_htf_count);
ArrayResize(h_res_dur, g_htf_count);
ArrayResize(h_res_col, g_htf_count);
if(CopyTime(_Symbol, InpTimeframe, 0, g_htf_count, h_time) != g_htf_count ||
CopyHigh(_Symbol, InpTimeframe, 0, g_htf_count, h_high) != g_htf_count ||
CopyLow(_Symbol, InpTimeframe, 0, g_htf_count, h_low) != g_htf_count ||
CopyClose(_Symbol, InpTimeframe, 0, g_htf_count, h_close) != g_htf_count)
{
g_data_ready = false;
return 0;
}
//--- Calculate Weis Wave Duration on HTF (Closed bars and forming bar initialized)
g_calc.Calculate(g_htf_count, 0, h_high, h_low, h_close, h_res_dur, h_res_col, InpShowSOT);
g_data_ready = true;
}
if(!g_data_ready)
return 0;
//--- 2. Live Update for the Current Forming HTF Bar (Index: g_htf_count - 1) on every tick!
int live_idx = g_htf_count - 1;
if(live_idx >= InpATRPeriod)
{
double h[1], l[1], c[1];
int shift = iBarShift(_Symbol, InpTimeframe, htf_time_current, false);
if(shift >= 0 &&
CopyHigh(_Symbol, InpTimeframe, shift, 1, h) == 1 &&
CopyLow(_Symbol, InpTimeframe, shift, 1, l) == 1 &&
CopyClose(_Symbol, InpTimeframe, shift, 1, c) == 1)
{
h_high[live_idx] = h[0];
h_low[live_idx] = l[0];
h_close[live_idx] = c[0];
// Incremental recalculation on the live HTF index (O(1) tick performance)
// Passed g_htf_count as prev_calculated to preserve state safety
g_calc.Calculate(g_htf_count, g_htf_count, h_high, h_low, h_close, h_res_dur, h_res_col, InpShowSOT);
}
}
//--- 3. FIXED: Dynamically adjust 'start' to the beginning of the current forming HTF bar
//--- This forces the entire forming LTF step block to remain perfectly flat, updating on every tick!
int start = (prev_calculated > 0) ? prev_calculated - 1 : 0;
int first_bar_of_forming_htf = rates_total - 1;
while(first_bar_of_forming_htf > 0 &&
iBarShift(_Symbol, InpTimeframe, time[first_bar_of_forming_htf], false) == 0)
{
first_bar_of_forming_htf--;
}
first_bar_of_forming_htf++; // This is the start of the forming step on lower TF chart
if(start > first_bar_of_forming_htf)
start = first_bar_of_forming_htf;
//--- 4. Incremental Mapping of HTF results to Current Chart Timeframe (O(1) per tick)
for(int i = start; i < rates_total; i++)
{
datetime t = time[i];
int shift_htf = iBarShift(_Symbol, InpTimeframe, t, false);
if(shift_htf >= 0)
{
int idx_htf = g_htf_count - 1 - shift_htf;
if(idx_htf >= 0 && idx_htf < g_htf_count)
{
BufWaveDur[i] = h_res_dur[idx_htf];
BufColors[i] = h_res_col[idx_htf];
}
else
{
BufWaveDur[i] = EMPTY_VALUE;
BufColors[i] = 0.0;
}
}
else
{
BufWaveDur[i] = EMPTY_VALUE;
BufColors[i] = 0.0;
}
}
return(rates_total);
}
//+------------------------------------------------------------------+
//| OnTimer |
//| Handles loading checks and force-redraws |
//+------------------------------------------------------------------+
void OnTimer()
{
if(!g_data_synced)
{
int required_bars = InpATRPeriod + 5;
if(EnsureHTFDataReady(_Symbol, InpTimeframe, required_bars))
{
g_data_synced = true;
ChartRedraw(); // Force MT5 to invoke OnCalculate
}
}
}
//+------------------------------------------------------------------+
//+------------------------------------------------------------------+