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Toh4iem9
2025-08-24 17:14:12 +02:00
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//+------------------------------------------------------------------+
//| MACD_Pro.mq5 |
//| Copyright 2025, xxxxxxxx |
//| |
//+------------------------------------------------------------------+
#property copyright "Copyright 2025, xxxxxxxx"
#property link ""
#property version "8.00" // Final robust version with explicit loops
#property description "MACD with selectable MA types for all components"
//--- Indicator Window and Plot Properties ---
#property indicator_separate_window
#property indicator_buffers 5 // Histogram, MACD Line, Signal Line, FastMA, SlowMA
#property indicator_plots 3 // Histogram, MACD Line, Signal Line
//--- Plot 1: MACD Histogram
#property indicator_label1 "Histogram"
#property indicator_type1 DRAW_HISTOGRAM
#property indicator_color1 clrSilver
#property indicator_width1 1
//--- Plot 2: MACD Line
#property indicator_label2 "MACD"
#property indicator_type2 DRAW_LINE
#property indicator_color2 clrDodgerBlue
#property indicator_style2 STYLE_SOLID
#property indicator_width2 1
//--- Plot 3: Signal Line
#property indicator_label3 "Signal"
#property indicator_type3 DRAW_LINE
#property indicator_color3 clrOrangeRed
#property indicator_style3 STYLE_SOLID
#property indicator_width3 1
//--- Input Parameters ---
input int InpFastPeriod = 12;
input int InpSlowPeriod = 26;
input int InpSignalPeriod = 9;
input ENUM_APPLIED_PRICE InpAppliedPrice = PRICE_CLOSE;
input ENUM_MA_METHOD InpSourceMAType = MODE_EMA; // MA Type for Fast and Slow lines
input ENUM_MA_METHOD InpSignalMAType = MODE_EMA; // MA Type for Signal line
//--- Indicator Buffers ---
double BufferMACD_Histogram[];
double BufferMACDLine[];
double BufferSignalLine[];
double BufferFastMA[];
double BufferSlowMA[];
//--- Global Variables ---
int g_ExtFastPeriod, g_ExtSlowPeriod, g_ExtSignalPeriod;
//+------------------------------------------------------------------+
//| Custom indicator initialization function. |
//+------------------------------------------------------------------+
int OnInit()
{
g_ExtFastPeriod = (InpFastPeriod < 1) ? 1 : InpFastPeriod;
g_ExtSlowPeriod = (InpSlowPeriod < 1) ? 1 : InpSlowPeriod;
g_ExtSignalPeriod = (InpSignalPeriod < 1) ? 1 : InpSignalPeriod;
if(g_ExtFastPeriod > g_ExtSlowPeriod)
{
int temp = g_ExtFastPeriod;
g_ExtFastPeriod = g_ExtSlowPeriod;
g_ExtSlowPeriod = temp;
}
SetIndexBuffer(0, BufferMACD_Histogram, INDICATOR_DATA);
SetIndexBuffer(1, BufferMACDLine, INDICATOR_DATA);
SetIndexBuffer(2, BufferSignalLine, INDICATOR_DATA);
SetIndexBuffer(3, BufferFastMA, INDICATOR_CALCULATIONS);
SetIndexBuffer(4, BufferSlowMA, INDICATOR_CALCULATIONS);
ArraySetAsSeries(BufferMACD_Histogram, false);
ArraySetAsSeries(BufferMACDLine, false);
ArraySetAsSeries(BufferSignalLine, false);
ArraySetAsSeries(BufferFastMA, false);
ArraySetAsSeries(BufferSlowMA, false);
int macd_line_draw_begin = g_ExtSlowPeriod - 1;
int signal_draw_begin = g_ExtSlowPeriod + g_ExtSignalPeriod - 2;
PlotIndexSetInteger(0, PLOT_DRAW_BEGIN, signal_draw_begin);
PlotIndexSetInteger(1, PLOT_DRAW_BEGIN, macd_line_draw_begin);
PlotIndexSetInteger(2, PLOT_DRAW_BEGIN, signal_draw_begin);
IndicatorSetString(INDICATOR_SHORTNAME, StringFormat("MACD Pro(%d,%d,%d)", g_ExtFastPeriod, g_ExtSlowPeriod, g_ExtSignalPeriod));
IndicatorSetInteger(INDICATOR_DIGITS, _Digits);
return(INIT_SUCCEEDED);
}
//+------------------------------------------------------------------+
//| Moving Average Convergence/Divergence calculation function. |
//+------------------------------------------------------------------+
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[])
{
int start_pos = g_ExtSlowPeriod + g_ExtSignalPeriod - 2;
if(rates_total <= start_pos)
return(0);
//--- STEP 1: Prepare the source price array
double price_source[];
ArrayResize(price_source, rates_total);
for(int i=0; i<rates_total; i++)
{
switch(InpAppliedPrice)
{
case PRICE_OPEN:
price_source[i] = open[i];
break;
case PRICE_HIGH:
price_source[i] = high[i];
break;
case PRICE_LOW:
price_source[i] = low[i];
break;
default:
price_source[i] = close[i];
break;
}
}
//--- STEP 2: Calculate Fast MA
for(int i = g_ExtFastPeriod - 1; i < rates_total; i++)
{
// This switch block calculates the Fast MA
switch(InpSourceMAType)
{
case MODE_EMA:
case MODE_SMMA:
if(i == g_ExtFastPeriod - 1)
{
double sum=0;
for(int j=0; j<g_ExtFastPeriod; j++)
sum+=price_source[i-j];
BufferFastMA[i] = sum/g_ExtFastPeriod;
}
else
{
if(InpSourceMAType == MODE_EMA)
{
double pr=2.0/(g_ExtFastPeriod+1.0);
BufferFastMA[i] = price_source[i]*pr + BufferFastMA[i-1]*(1.0-pr);
}
else
BufferFastMA[i] = (BufferFastMA[i-1]*(g_ExtFastPeriod-1)+price_source[i])/g_ExtFastPeriod;
}
break;
case MODE_LWMA:
{
double lwma_sum=0, weight_sum=0;
for(int j=0; j<g_ExtFastPeriod; j++)
{
int weight=g_ExtFastPeriod-j;
lwma_sum+=price_source[i-j]*weight;
weight_sum+=weight;
}
if(weight_sum>0)
BufferFastMA[i]=lwma_sum/weight_sum;
}
break;
default: // MODE_SMA
{
double sum=0;
for(int j=0; j<g_ExtFastPeriod; j++)
sum+=price_source[i-j];
BufferFastMA[i] = sum/g_ExtFastPeriod;
}
break;
}
}
//--- STEP 3: Calculate Slow MA
for(int i = g_ExtSlowPeriod - 1; i < rates_total; i++)
{
// This switch block calculates the Slow MA
switch(InpSourceMAType)
{
case MODE_EMA:
case MODE_SMMA:
if(i == g_ExtSlowPeriod - 1)
{
double sum=0;
for(int j=0; j<g_ExtSlowPeriod; j++)
sum+=price_source[i-j];
BufferSlowMA[i] = sum/g_ExtSlowPeriod;
}
else
{
if(InpSourceMAType == MODE_EMA)
{
double pr=2.0/(g_ExtSlowPeriod+1.0);
BufferSlowMA[i] = price_source[i]*pr + BufferSlowMA[i-1]*(1.0-pr);
}
else
BufferSlowMA[i] = (BufferSlowMA[i-1]*(g_ExtSlowPeriod-1)+price_source[i])/g_ExtSlowPeriod;
}
break;
case MODE_LWMA:
{
double lwma_sum=0, weight_sum=0;
for(int j=0; j<g_ExtSlowPeriod; j++)
{
int weight=g_ExtSlowPeriod-j;
lwma_sum+=price_source[i-j]*weight;
weight_sum+=weight;
}
if(weight_sum>0)
BufferSlowMA[i]=lwma_sum/weight_sum;
}
break;
default: // MODE_SMA
{
double sum=0;
for(int j=0; j<g_ExtSlowPeriod; j++)
sum+=price_source[i-j];
BufferSlowMA[i] = sum/g_ExtSlowPeriod;
}
break;
}
}
//--- STEP 4: Calculate MACD Line
for(int i = g_ExtSlowPeriod - 1; i < rates_total; i++)
{
BufferMACDLine[i] = BufferFastMA[i] - BufferSlowMA[i];
}
//--- STEP 5: Calculate Signal Line and Histogram
for(int i = start_pos; i < rates_total; i++)
{
// This switch block calculates the Signal Line on the MACD Line
switch(InpSignalMAType)
{
case MODE_EMA:
case MODE_SMMA:
if(i == start_pos)
{
double sum=0;
for(int j=0; j<g_ExtSignalPeriod; j++)
sum+=BufferMACDLine[i-j];
BufferSignalLine[i] = sum/g_ExtSignalPeriod;
}
else
{
if(InpSignalMAType == MODE_EMA)
{
double pr=2.0/(g_ExtSignalPeriod+1.0);
BufferSignalLine[i] = BufferMACDLine[i]*pr + BufferSignalLine[i-1]*(1.0-pr);
}
else
BufferSignalLine[i] = (BufferSignalLine[i-1]*(g_ExtSignalPeriod-1)+BufferMACDLine[i])/g_ExtSignalPeriod;
}
break;
case MODE_LWMA:
{
double lwma_sum=0, weight_sum=0;
for(int j=0; j<g_ExtSignalPeriod; j++)
{
int weight=g_ExtSignalPeriod-j;
lwma_sum+=BufferMACDLine[i-j]*weight;
weight_sum+=weight;
}
if(weight_sum>0)
BufferSignalLine[i]=lwma_sum/weight_sum;
}
break;
default: // MODE_SMA
{
double sum=0;
for(int j=0; j<g_ExtSignalPeriod; j++)
sum+=BufferMACDLine[i-j];
BufferSignalLine[i] = sum/g_ExtSignalPeriod;
}
break;
}
BufferMACD_Histogram[i] = BufferMACDLine[i] - BufferSignalLine[i];
}
return(rates_total);
}
//+------------------------------------------------------------------+
//+------------------------------------------------------------------+