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xMQL5/MQLTestWorkspace/BKPS/INDICATORS/x-saherelm.x121.xcpv.mq5
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2024-04-30 05:15:12 +03:30

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///////////////////////////////////////////////////////
// SaherElm IT Center MQL5 Indicator
// -------------------------------------------
// Name: X121_XPV
// Description: Market Peaks and Vales
//
//
// Maintainer:
// ------------
// Hadi Khazaee Asl (hadi_khazaee_asl@yahoo.com)
//
//////////////////////////////////////////////////////
//
// Global Properties ...
#property copyright "Copyright 2023, SaherElm IT Center"
#property link "https://saherelm.ir"
#property version "1.00"
#property description "SaherElm X121_XPV Indicator"
#property strict
//
// START Constants ...
//
//
// Indicator Short Name ...
#define ShortName "X121_XPV"
//
// XPERIOD Calculation Method ...
// USED For Multiple Time Frames ...
enum ENUM_X_PERIOD_METHOD
{
//
X_PERIOD_NOTHING,
//
X_PERIOD_AUTO,
//
X_PERIOD_MANUALLY
};
//
// END Constants ...
//
//
// START Inputs ...
//
//
input group "Makret Cycles";
//
input group "Level 1";
input ENUM_X_PERIOD_METHOD l1Method = X_PERIOD_AUTO; // How to Find Period
input ENUM_TIMEFRAMES l1Period = NULL; // Time Period
//
input group "Level 2";
input ENUM_X_PERIOD_METHOD l2Method = X_PERIOD_AUTO; // How to Find Period
input ENUM_TIMEFRAMES l2Period = NULL; // Time Period
//
input group "Level 3";
input ENUM_X_PERIOD_METHOD l3Method = X_PERIOD_AUTO; // How to Find Period
input ENUM_TIMEFRAMES l3Period = NULL; // Time Period
//
input group "Level 4";
input ENUM_X_PERIOD_METHOD l4Method = X_PERIOD_AUTO; // How to Find Period
input ENUM_TIMEFRAMES l4Period = NULL; // Time Period
//
input double fiboLevel1 = 0.382; // Fibio 1st Level
input double fiboLevel2 = 0.5; // Fibio 2st Level
input double fiboLevel3 = 0.618; // Fibio 3rd Level
//
input group "Detection Modes";
input ENUM_SERIESMODE hhMode = MODE_HIGH; // Highest High Calculation Method
input ENUM_SERIESMODE llMode = MODE_LOW; // Lowest Low Calculation Method
//
input group "Presentation";
input bool showPeaksAndVales = true; // Show Peaks and Vales
input bool showLevels = false; // Show Levels
input bool showFibo1Levels = true; // Show Fibo 1st Level
input bool showFibo2Levels = true; // Show Fibo 2nd Level
input bool showFibo3Levels = true; // Show Fibo 3rd Level
//
// END Inputs ...
//
//
// START Includes and Imports ...
//
//
// Includes Common Library ...
#include "../Libraries/x-saherelm.common.lib.mq5"
//
// END Includes and Imports ...
//
//
// START Buffers ...
//
#property indicator_chart_window
//
#property indicator_buffers 28
#property indicator_plots 28
//
// PEKSANDVALES ...
//
// PEAKS ...
//
#define peaksBufferIndex 0
double peaksBuffer[];
//
#property indicator_label1 "X121_XPV PEAKS"
#property indicator_type1 DRAW_ARROW
#property indicator_color1 clrAqua
#property indicator_width1 1
//
// VALES ...
//
#define valesBufferIndex 1
double valesBuffer[];
//
#property indicator_label2 "X121_XPV VALES"
#property indicator_type2 DRAW_ARROW
#property indicator_color2 clrMagenta
#property indicator_width2 1
//
#define rBufferIndex 2
double rBuffer[];
//
#define rColorBufferIndex 3
double rColorBuffer[];
//
#property indicator_label3 "X121_XPV R"
#property indicator_type3 DRAW_COLOR_LINE
#property indicator_color3 CLR_NONE, clrAqua
#property indicator_style3 STYLE_DOT
#property indicator_width3 1
//
#define sBufferIndex 4
#define sBufferPlotIndex 3
double sBuffer[];
//
#define sColorBufferIndex 5
double sColorBuffer[];
//
#property indicator_label4 "X121_XPV S"
#property indicator_type4 DRAW_COLOR_LINE
#property indicator_color4 CLR_NONE, clrMagenta
#property indicator_style4 STYLE_DOT
#property indicator_width4 1
//
// FIBBO Level 1 ...
//
#define fl1BufferIndex 6
#define fl1BufferPlotIndex 4
double fl1Buffer[];
//
#define fl1ColorBufferIndex 7
double fl1ColorBuffer[];
//
#property indicator_label5 "X121_XPV FL1"
#property indicator_type5 DRAW_COLOR_LINE
#property indicator_color5 CLR_NONE, clrGold
#property indicator_style5 STYLE_DASHDOTDOT
#property indicator_width5 1
//
// FIBBO Level 2 ...
//
#define fl2BufferIndex 8
#define fl2BufferPlotIndex 5
double fl2Buffer[];
//
#define fl2ColorBufferIndex 9
double fl2ColorBuffer[];
//
#property indicator_label6 "X121_XPV FL2"
#property indicator_type6 DRAW_COLOR_LINE
#property indicator_color6 CLR_NONE, clrGold
#property indicator_style6 STYLE_DASHDOTDOT
#property indicator_width6 1
//
// FIBBO Level 3 ...
//
#define fl3BufferIndex 10
#define fl3BufferPlotIndex 6
double fl3Buffer[];
//
#define fl3ColorBufferIndex 11
double fl3ColorBuffer[];
//
#property indicator_label7 "X121_XPV FL3"
#property indicator_type7 DRAW_COLOR_LINE
#property indicator_color7 CLR_NONE, clrGold
#property indicator_style7 STYLE_DASHDOTDOT
#property indicator_width7 1
//
// LEVELS ...
//
#define sHHBufferIndex 12
#define sHHBufferPlotIndex 7
double sHHBuffer[];
//
#define sHHColorBufferIndex 13
double sHHColorBuffer[];
//
#property indicator_label8 "X121_XPV SHH"
#property indicator_type8 DRAW_COLOR_LINE
#property indicator_color8 CLR_NONE, clrLightGray, clrAqua, clrMagenta
#property indicator_style8 STYLE_DOT
#property indicator_width8 1
#define sLLBufferIndex 14
#define sLLBufferPlotIndex 8
double sLLBuffer[];
//
#define sLLColorBufferIndex 15
double sLLColorBuffer[];
//
#property indicator_label9 "X121_XPV SLL"
#property indicator_type9 DRAW_COLOR_LINE
#property indicator_color9 CLR_NONE, clrLightGray, clrAqua, clrMagenta
#property indicator_style9 STYLE_DOT
#property indicator_width9 1
//
#define mHHBufferIndex 16
#define mHHBufferPlotIndex 9
double mHHBuffer[];
//
#define mHHColorBufferIndex 17
double mHHColorBuffer[];
//
#property indicator_label10 "X121_XPV MHH"
#property indicator_type10 DRAW_COLOR_LINE
#property indicator_color10 CLR_NONE, clrLightGray, clrAqua, clrMagenta
#property indicator_style10 STYLE_DOT
#property indicator_width10 1
//
#define mLLBufferIndex 18
#define mLLBufferPlotIndex 10
double mLLBuffer[];
//
#define mLLColorBufferIndex 19
double mLLColorBuffer[];
//
#property indicator_label11 "X121_XPV MLL"
#property indicator_type11 DRAW_COLOR_LINE
#property indicator_color11 CLR_NONE, clrLightGray, clrAqua, clrMagenta
#property indicator_style11 STYLE_DOT
#property indicator_width11 1
//
#define lHHBufferIndex 20
#define lHHBufferPlotIndex 11
double lHHBuffer[];
//
#define lHHColorBufferIndex 21
double lHHColorBuffer[];
//
#property indicator_label12 "X121_XPV LHH"
#property indicator_type12 DRAW_COLOR_LINE
#property indicator_color12 CLR_NONE, clrLightGray, clrAqua, clrMagenta
#property indicator_style12 STYLE_DOT
#property indicator_width12 1
//
#define lLLBufferIndex 22
#define lLLBufferPlotIndex 12
double lLLBuffer[];
//
#define lLLColorBufferIndex 23
double lLLColorBuffer[];
//
#property indicator_label13 "X121_XPV LLL"
#property indicator_type13 DRAW_COLOR_LINE
#property indicator_color13 CLR_NONE, clrLightGray, clrAqua, clrMagenta
#property indicator_style13 STYLE_DOT
#property indicator_width13 1
//
#define hHHBufferIndex 24
#define hHHBufferPlotIndex 13
double hHHBuffer[];
//
#define hHHColorBufferIndex 25
double hHHColorBuffer[];
//
#property indicator_label14 "X121_XPV HHH"
#property indicator_type14 DRAW_COLOR_LINE
#property indicator_color14 CLR_NONE, clrLightGray, clrAqua, clrMagenta
#property indicator_style14 STYLE_DOT
#property indicator_width14 1
//
#define hLLBufferIndex 26
#define hLLBufferPlotIndex 14
double hLLBuffer[];
//
#define hLLColorBufferIndex 27
double hLLColorBuffer[];
//
#property indicator_label15 "X121_XPV HLL"
#property indicator_type15 DRAW_COLOR_LINE
#property indicator_color15 CLR_NONE, clrLightGray, clrAqua, clrMagenta
#property indicator_style15 STYLE_DOT
#property indicator_width15 1
//
// END Buffers ...
//
//
// START Global Definitions: Variables, Properties and etc ...
//
//
int maxLength;
//
double lastPeak;
double lastVale;
//
double mLastSHH = 0;
double mLastSLL = 0;
//
double mLastMHH = 0;
double mLastMLL = 0;
//
double mLastLHH = 0;
double mLastLLL = 0;
//
double mLastHHH = 0;
double mLastHLL = 0;
//
double mHideColorIDX = 0;
//
int currentPeriodSecconds = 0;
//
// CYCLE 1 ...
int mL1Candles;
int mL1PeriodSecconds = 0;
int mLastL1StartBarIndex = 0;
datetime mLastL1StartTime = NULL;
ENUM_TIMEFRAMES mL1Period = NULL;
//
// CYCLE 2 ...
int mL2Candles;
int mL2PeriodSecconds = 0;
int mLastL2StartBarIndex = 0;
datetime mLastL2StartTime = NULL;
ENUM_TIMEFRAMES mL2Period = NULL;
//
// CYCLE 3 ...
int mL3Candles;
int mL3PeriodSecconds = 0;
int mLastL3StartBarIndex = 0;
datetime mLastL3StartTime = NULL;
ENUM_TIMEFRAMES mL3Period = NULL;
//
// CYCLE 4 ...
int mL4Candles;
int mL4PeriodSecconds = 0;
int mLastL4StartBarIndex = 0;
datetime mLastL4StartTime = NULL;
ENUM_TIMEFRAMES mL4Period = NULL;
//
// END Global Definitions: Variables, Properties and etc ...
//
//
// START Event Handlers ...
//
//
// Initialization ...
int OnInit()
{
//
// Validate Inputs ...
if (!ValidateInputs())
{
return INIT_PARAMETERS_INCORRECT;
}
//
// because in some cases we may have more than one input for
// calculation and we must prevent any calculation
// untill we pass the biggest input length, here we get max Input length
// and then wait until pass it ...
maxLength = ExtractMaxLengthOfInputs();
//
// Define Index Buffers ...
DefineBuffers();
//
// Set Indicator ShortName ...
SetIndicatorName();
//
// Initial Periods ...
InitialCycles();
//
// Init Succeed ...
return INIT_SUCCEEDED;
}
//
// DeInitialization ...
void OnDeinit(const int reason)
{
//
// REASON_PROGRAM 0 The EA has stopped working calling the ExpertRemove() function
// REASON_REMOVE 1 Program removed from a chart
// REASON_RECOMPILE 2 Program recompiled
// REASON_CHARTCHANGE 3 A symbol or a chart period is changed
// REASON_CHARTCLOSE 4 Chart closed
// REASON_PARAMETERS 5 Inputs changed by a user
// REASON_ACCOUNT 6 Another account has been activated or reconnection to the trade server has occurred due to changes in the account settings
// REASON_TEMPLATE 7 Another chart template applied
// REASON_INITFAILED 8 The OnInit() handler returned a non-zero value
// REASON_CLOSE 9 Terminal closed
//
Comment("");
}
//
// Calculating what we want ...
int OnCalculate(
//
// total Candles on chart ...
const int rates_total,
//
// total calculated Candles on charts ...
const int prev_calculated,
//
// history of Candles Open Time ...
const datetime &time[],
//
// history of Candles Open Price ...
const double &open[],
//
// history of Candles High Price ...
const double &high[],
//
// history of Candles Low Price ...
const double &low[],
//
// history of Candles Close Price ...
const double &close[],
//
// history of Tick Volumes on Candle ...
const long &tick_volume[],
//
// history of Trade Volumes ...
const long &volume[],
//
// history of Candles Spread Price ...
const int &spread[])
{
//
// Prepare Buffers ...
ArraySetAsSeries(time, true);
ArraySetAsSeries(open, true);
ArraySetAsSeries(high, true);
ArraySetAsSeries(low, true);
ArraySetAsSeries(close, true);
ArraySetAsSeries(tick_volume, true);
ArraySetAsSeries(volume, true);
ArraySetAsSeries(spread, true);
//
// this counts Available Bars ...
int limit;
//
limit = (prev_calculated > rates_total || prev_calculated <= 0) ? rates_total : (rates_total - prev_calculated) + 1;
//
// Main Loop ...
for (int i = limit - 1; i >= 0 && !IsStopped(); i--)
{
CalculateBuffers(i);
}
//
return rates_total;
}
//
// END Event Handlers ...
//
//
// START Functions ...
//
//
// Validate Input Args for Initialization ...
bool ValidateInputs()
{
//
bool result = true;
//
return result;
}
//
// Retrieve all Exists Input Max Length ...
// use for Start Of Drawing ...
int ExtractMaxLengthOfInputs()
{
//
int result = 1;
//
return result;
}
//
// Initial Multi Time Frame Cycles Periods ...
void InitialCycles()
{
//
// Calculate Current Period Secconds ...
currentPeriodSecconds = PeriodSeconds(_Period);
//
// Nearest ...
// Calculate Cycle 1 Requirements ...
if (mL1Period == NULL)
{
//
if (l1Method == X_PERIOD_AUTO)
{
mL1Period = GetNearestTimeFrame(_Period);
}
else
{
mL1Period = l1Period;
}
//
mL1PeriodSecconds = PeriodSeconds(mL1Period);
//
mL1Candles = mL1PeriodSecconds / currentPeriodSecconds;
}
//
// Mediest ...
// Calculate Cycle 2 Requirements ...
if (mL2Period == NULL)
{
//
if (l2Method == X_PERIOD_AUTO)
{
mL2Period = GetMediestTimeFrame(_Period);
}
else
{
mL2Period = l2Period;
}
//
mL2PeriodSecconds = PeriodSeconds(mL2Period);
//
mL2Candles = mL2PeriodSecconds / currentPeriodSecconds;
}
//
// Farest ...
// Calculate Cycle 3 Requirements ...
if (mL3Period == NULL)
{
//
if (l3Method == X_PERIOD_AUTO)
{
mL3Period = GetFarestTimeFrame(_Period);
}
else
{
mL3Period = l3Period;
}
//
mL3PeriodSecconds = PeriodSeconds(mL3Period);
//
mL3Candles = mL3PeriodSecconds / currentPeriodSecconds;
}
//
// HindMost ...
// Calculate Cycle 4 Requirements ...
if (mL4Period == NULL)
{
//
if (l4Method == X_PERIOD_AUTO)
{
mL4Period = GetHindmostTimeFrame(_Period);
}
else
{
mL4Period = l4Period;
}
//
mL4PeriodSecconds = PeriodSeconds(mL4Period);
//
mL4Candles = mL4PeriodSecconds / currentPeriodSecconds;
}
//
string comment = GenerateCyclesRepresentation();
Comment(comment);
}
//
// Define Indexes and Styles ...
void DefineBuffers()
{
//
// RANGE ...
//
// PEAKS and VALES ...
ENUM_DRAW_TYPE pvDrawType = showPeaksAndVales ? DRAW_ARROW : DRAW_NONE;
//
// PEAKS ...
ArraySetAsSeries(peaksBuffer, true);
SetIndexBuffer(peaksBufferIndex, peaksBuffer, INDICATOR_DATA);
PlotIndexSetInteger(peaksBufferIndex, PLOT_ARROW, 225);
PlotIndexSetDouble(peaksBufferIndex, PLOT_EMPTY_VALUE, 0);
//
PlotIndexSetInteger(peaksBufferIndex, PLOT_SHOW_DATA, showPeaksAndVales);
PlotIndexSetInteger(peaksBufferIndex, PLOT_DRAW_TYPE, pvDrawType);
//
// VALES ...
ArraySetAsSeries(valesBuffer, true);
SetIndexBuffer(valesBufferIndex, valesBuffer, INDICATOR_DATA);
PlotIndexSetInteger(valesBufferIndex, PLOT_ARROW, 225);
PlotIndexSetDouble(valesBufferIndex, PLOT_EMPTY_VALUE, 0);
//
PlotIndexSetInteger(valesBufferIndex, PLOT_SHOW_DATA, showPeaksAndVales);
PlotIndexSetInteger(valesBufferIndex, PLOT_DRAW_TYPE, pvDrawType);
//
// SUPPORT and RESISTANCE ...
//
//
// RESISTANCE ...
ArraySetAsSeries(rBuffer, true);
SetIndexBuffer(rBufferIndex, rBuffer, INDICATOR_DATA);
PlotIndexSetInteger(rBufferIndex, PLOT_SHOW_DATA, false);
PlotIndexSetInteger(rBufferIndex, PLOT_DRAW_BEGIN, maxLength);
//
// RESISTANCE Color ...
ArraySetAsSeries(rColorBuffer, true);
SetIndexBuffer(rColorBufferIndex, rColorBuffer, INDICATOR_COLOR_INDEX);
//
// SUPPORT ...
ArraySetAsSeries(sBuffer, true);
SetIndexBuffer(sBufferIndex, sBuffer, INDICATOR_DATA);
PlotIndexSetInteger(sBufferPlotIndex, PLOT_DRAW_BEGIN, maxLength);
PlotIndexSetInteger(sBufferPlotIndex, PLOT_SHOW_DATA, false);
//
// SUPPORT Color ...
ArraySetAsSeries(sColorBuffer, true);
SetIndexBuffer(sColorBufferIndex, sColorBuffer, INDICATOR_COLOR_INDEX);
//
// FIBBO Levels ...
//
// LEVEL 1 ...
//
// Buffer ...
ArraySetAsSeries(fl1Buffer, true);
SetIndexBuffer(fl1BufferIndex, fl1Buffer, INDICATOR_DATA);
PlotIndexSetInteger(fl1BufferPlotIndex, PLOT_DRAW_BEGIN, maxLength);
PlotIndexSetInteger(fl1BufferPlotIndex, PLOT_SHOW_DATA, showFibo1Levels);
//
// Color ...
ArraySetAsSeries(fl1ColorBuffer, true);
SetIndexBuffer(fl1ColorBufferIndex, fl1ColorBuffer, INDICATOR_COLOR_INDEX);
//
// LEVEL 2 ...
//
// BULLISH ...
ArraySetAsSeries(fl2Buffer, true);
SetIndexBuffer(fl2BufferIndex, fl2Buffer, INDICATOR_DATA);
PlotIndexSetInteger(fl2BufferPlotIndex, PLOT_DRAW_BEGIN, maxLength);
PlotIndexSetInteger(fl2BufferPlotIndex, PLOT_SHOW_DATA, showFibo2Levels);
//
// BULLISH Color ...
ArraySetAsSeries(fl2ColorBuffer, true);
SetIndexBuffer(fl2ColorBufferIndex, fl2ColorBuffer, INDICATOR_COLOR_INDEX);
//
// LEVEL 3 ...
//
// BULLISH ...
ArraySetAsSeries(fl3Buffer, true);
SetIndexBuffer(fl3BufferIndex, fl3Buffer, INDICATOR_DATA);
PlotIndexSetInteger(fl3BufferPlotIndex, PLOT_DRAW_BEGIN, maxLength);
PlotIndexSetInteger(fl3BufferPlotIndex, PLOT_SHOW_DATA, showFibo3Levels);
//
// BULLISH Color ...
ArraySetAsSeries(fl3ColorBuffer, true);
SetIndexBuffer(fl3ColorBufferIndex, fl3ColorBuffer, INDICATOR_COLOR_INDEX);
//
// SHORT Buffers ...
//
// HIGH ...
ArraySetAsSeries(sHHBuffer, true);
SetIndexBuffer(sHHBufferIndex, sHHBuffer, INDICATOR_DATA);
//
PlotIndexSetInteger(sHHBufferPlotIndex, PLOT_DRAW_BEGIN, maxLength);
PlotIndexSetInteger(sHHBufferPlotIndex, PLOT_SHOW_DATA, showLevels);
//
ArraySetAsSeries(sHHColorBuffer, true);
SetIndexBuffer(sHHColorBufferIndex, sHHColorBuffer, INDICATOR_COLOR_INDEX);
//
// LOW ...
ArraySetAsSeries(sLLBuffer, true);
SetIndexBuffer(sLLBufferIndex, sLLBuffer, INDICATOR_DATA);
//
PlotIndexSetInteger(sLLBufferPlotIndex, PLOT_DRAW_BEGIN, maxLength);
PlotIndexSetInteger(sLLBufferPlotIndex, PLOT_SHOW_DATA, showLevels);
//
ArraySetAsSeries(sLLColorBuffer, true);
SetIndexBuffer(sLLColorBufferIndex, sLLColorBuffer, INDICATOR_COLOR_INDEX);
//
// MEDIUM Buffer ...
//
// HIGH ...
ArraySetAsSeries(mHHBuffer, true);
SetIndexBuffer(mHHBufferIndex, mHHBuffer, INDICATOR_DATA);
//
PlotIndexSetInteger(mHHBufferPlotIndex, PLOT_DRAW_BEGIN, maxLength);
PlotIndexSetInteger(mHHBufferPlotIndex, PLOT_SHOW_DATA, showLevels);
//
ArraySetAsSeries(mHHColorBuffer, true);
SetIndexBuffer(mHHColorBufferIndex, mHHColorBuffer, INDICATOR_COLOR_INDEX);
//
// LOW ...
ArraySetAsSeries(mLLBuffer, true);
SetIndexBuffer(mLLBufferIndex, mLLBuffer, INDICATOR_DATA);
//
PlotIndexSetInteger(mLLBufferPlotIndex, PLOT_DRAW_BEGIN, maxLength);
PlotIndexSetInteger(mLLBufferPlotIndex, PLOT_SHOW_DATA, showLevels);
//
ArraySetAsSeries(mLLColorBuffer, true);
SetIndexBuffer(mLLColorBufferIndex, mLLColorBuffer, INDICATOR_COLOR_INDEX);
//
// LONG Buffer ...
//
// HIGH ...
ArraySetAsSeries(lHHBuffer, true);
SetIndexBuffer(lHHBufferIndex, lHHBuffer, INDICATOR_DATA);
//
PlotIndexSetInteger(lHHBufferPlotIndex, PLOT_DRAW_BEGIN, maxLength);
PlotIndexSetInteger(lHHBufferPlotIndex, PLOT_SHOW_DATA, showLevels);
//
ArraySetAsSeries(lHHColorBuffer, true);
SetIndexBuffer(lHHColorBufferIndex, lHHColorBuffer, INDICATOR_COLOR_INDEX);
//
// LOW ...
ArraySetAsSeries(lLLBuffer, true);
SetIndexBuffer(lLLBufferIndex, lLLBuffer, INDICATOR_DATA);
//
PlotIndexSetInteger(lLLBufferPlotIndex, PLOT_DRAW_BEGIN, maxLength);
PlotIndexSetInteger(lLLBufferPlotIndex, PLOT_SHOW_DATA, showLevels);
//
ArraySetAsSeries(lLLColorBuffer, true);
SetIndexBuffer(lLLColorBufferIndex, lLLColorBuffer, INDICATOR_COLOR_INDEX);
//
// HIND Buffer ...
//
// HIGH ...
ArraySetAsSeries(hHHBuffer, true);
SetIndexBuffer(hHHBufferIndex, hHHBuffer, INDICATOR_DATA);
//
PlotIndexSetInteger(hHHBufferPlotIndex, PLOT_DRAW_BEGIN, maxLength);
PlotIndexSetInteger(hHHBufferPlotIndex, PLOT_SHOW_DATA, showLevels);
//
ArraySetAsSeries(hHHColorBuffer, true);
SetIndexBuffer(hHHColorBufferIndex, hHHColorBuffer, INDICATOR_COLOR_INDEX);
//
// LOW ...
ArraySetAsSeries(hLLBuffer, true);
SetIndexBuffer(hLLBufferIndex, hLLBuffer, INDICATOR_DATA);
//
PlotIndexSetInteger(hLLBufferPlotIndex, PLOT_DRAW_BEGIN, maxLength);
PlotIndexSetInteger(hLLBufferPlotIndex, PLOT_SHOW_DATA, showLevels);
//
ArraySetAsSeries(hLLColorBuffer, true);
SetIndexBuffer(hLLColorBufferIndex, hLLColorBuffer, INDICATOR_COLOR_INDEX);
}
//
// Set Indicator Short Name and also we can define Buffers Labels ...
void SetIndicatorName()
{
IndicatorSetString(INDICATOR_SHORTNAME, ShortName);
}
//
// Calculate Buffers ...
void CalculateBuffers(
int bar_index // Selected Bar Index
)
{
//
// Calculate ...
//
// Calculate Short Cycle ...
CalculateShortCycle(bar_index);
//
// Calculate Medium Cycle ...
CalculateMediumCycle(bar_index);
//
// Calculate Long Cycle ...
CalculateLongCycle(bar_index);
//
// Calculate Hind Cycle ...
CalculateHindCycle(bar_index);
//
// Calculate Peaks and Vales ...
CalculatePeaksAndVales(bar_index);
//
// Calculate Fibonnaci ...
CalculateFibonacci(bar_index);
}
string GenerateCyclesRepresentation()
{
//
string result = "";
//
result += "C1: " + ToString(mL1Period) + "\n";
result += "C2: " + ToString(mL2Period) + "\n";
result += "C3: " + ToString(mL3Period) + "\n";
result += "C4: " + ToString(mL4Period);
//
return result;
}
//
// START Calculation Parts ...
//
//
// Retrieve Cycles Highest High ...
double GetCycleHH(
int bar_index, // Bar Index
ENUM_TIMEFRAMES period // Period
)
{
//
datetime mCycleStartAt = GetPeriodStartTime(
_Symbol,
period);
//
int mStartCycleBarIndex = iBarShift(
_Symbol,
_Period,
mCycleStartAt,
false);
//
int mCycleCount = MathAbs(mStartCycleBarIndex - bar_index);
if (mCycleCount < 1)
{
mCycleCount = 1;
}
//
// HIGH ...
int hhIndex = iHighest(
_Symbol,
_Period,
hhMode,
mCycleCount,
bar_index);
double result = GetAppliedPrice(
hhIndex,
hhMode);
//
return result;
}
//
// Retrieve Cycles Lowest Low ...
double GetCycleLL(
int bar_index, // Bar Index
ENUM_TIMEFRAMES period // Period
)
{
//
datetime mCycleStartAt = GetPeriodStartTime(
_Symbol,
period);
//
int mStartCycleBarIndex = iBarShift(
_Symbol,
_Period,
mCycleStartAt,
false);
//
int mCycleCount = MathAbs(mStartCycleBarIndex - bar_index);
if (mCycleCount < 1)
{
mCycleCount = 1;
}
//
// LOW ...
int llIndex = iLowest(
_Symbol,
_Period,
llMode,
mCycleCount,
bar_index);
double result = GetAppliedPrice(
llIndex,
llMode);
//
return result;
}
//
// Retrieve Cycles Highest High ...
double GetCycleHHC(
int bar_index, // Bar Index
ENUM_TIMEFRAMES period // Period
)
{
//
int mCycleCount = 0;
if (period == mL1Period)
{
mCycleCount = mL1Candles;
}
else if (period == mL2Period)
{
mCycleCount = mL2Candles;
}
else if (period == mL3Period)
{
mCycleCount = mL3Candles;
}
else if (period == mL4Period)
{
mCycleCount = mL4Candles;
}
//
// HIGH ...
int hhIndex = iHighest(
_Symbol,
_Period,
hhMode,
mCycleCount,
bar_index);
double result = GetAppliedPrice(
hhIndex,
hhMode);
//
return result;
}
//
// Retrieve Cycles Lowest Low ...
double GetCycleLLC(
int bar_index, // Bar Index
ENUM_TIMEFRAMES period // Period
)
{
//
int mCycleCount = 0;
if (period == mL1Period)
{
mCycleCount = mL1Candles;
}
else if (period == mL2Period)
{
mCycleCount = mL2Candles;
}
else if (period == mL3Period)
{
mCycleCount = mL3Candles;
}
else if (period == mL4Period)
{
mCycleCount = mL4Candles;
}
//
// LOW ...
int llIndex = iLowest(
_Symbol,
_Period,
llMode,
mCycleCount,
bar_index);
double result = GetAppliedPrice(
llIndex,
llMode);
//
return result;
}
//
// SHORT Cycle ...
void CalculateShortCycle(
int bar_index // Selected Bar Index
)
{
//
ENUM_TIMEFRAMES mPeriod = mL1Period;
//
double hhValue = GetCycleHHC(
bar_index,
mPeriod);
//
double llValue = GetCycleLLC(
bar_index,
mPeriod);
//
double lastHH = mLastSHH;
double lastLL = mLastSLL;
//
double mhhColorIDX = mHideColorIDX;
if (showLevels)
{
//
if (hhValue == lastHH)
{
mhhColorIDX = 1;
}
else if (hhValue > lastHH)
{
mhhColorIDX = 2;
}
else if (hhValue < lastHH)
{
mhhColorIDX = 3;
}
}
else
{
mhhColorIDX = mHideColorIDX;
}
//
double mllColorIDX = mHideColorIDX;
if (showLevels)
{
//
if (llValue == lastLL)
{
mllColorIDX = 1;
}
else if (llValue > lastLL)
{
mllColorIDX = 2;
}
else if (llValue < lastLL)
{
mllColorIDX = 3;
}
}
else
{
mllColorIDX = mHideColorIDX;
}
//
mLastSHH = hhValue;
mLastSLL = llValue;
//
sHHBuffer[bar_index] = hhValue;
sLLBuffer[bar_index] = llValue;
sHHColorBuffer[bar_index] = mhhColorIDX;
sLLColorBuffer[bar_index] = mllColorIDX;
}
//
// MEDIUM Cycle ...
void CalculateMediumCycle(
int bar_index // Selected Bar Index
)
{
//
ENUM_TIMEFRAMES mPeriod = mL2Period;
//
double hhValue = GetCycleHHC(
bar_index,
mPeriod);
//
double llValue = GetCycleLLC(
bar_index,
mPeriod);
//
double lastHH = mLastMHH;
double lastLL = mLastMLL;
//
double mhhColorIDX = mHideColorIDX;
if (showLevels)
{
//
if (hhValue == lastHH)
{
mhhColorIDX = 1;
}
else if (hhValue > lastHH)
{
mhhColorIDX = 2;
}
else if (hhValue < lastHH)
{
mhhColorIDX = 3;
}
}
else
{
mhhColorIDX = mHideColorIDX;
}
//
double mllColorIDX = mHideColorIDX;
if (showLevels)
{
//
if (llValue == lastLL)
{
mllColorIDX = 1;
}
else if (llValue > lastLL)
{
mllColorIDX = 2;
}
else if (llValue < lastLL)
{
mllColorIDX = 3;
}
}
else
{
mllColorIDX = mHideColorIDX;
}
//
mLastMHH = hhValue;
mLastMLL = llValue;
//
mHHBuffer[bar_index] = hhValue;
mLLBuffer[bar_index] = llValue;
mHHColorBuffer[bar_index] = mhhColorIDX;
mLLColorBuffer[bar_index] = mllColorIDX;
}
//
// LONG Cycle ...
void CalculateLongCycle(
int bar_index // Selected Bar Index
)
{
//
ENUM_TIMEFRAMES mPeriod = mL3Period;
//
double hhValue = GetCycleHHC(
bar_index,
mPeriod);
//
double llValue = GetCycleLLC(
bar_index,
mPeriod);
//
double lastHH = mLastLHH;
double lastLL = mLastLLL;
//
double mhhColorIDX = mHideColorIDX;
if (showLevels)
{
//
if (hhValue == lastHH)
{
mhhColorIDX = 1;
}
else if (hhValue > lastHH)
{
mhhColorIDX = 2;
}
else if (hhValue < lastHH)
{
mhhColorIDX = 3;
}
}
else
{
mhhColorIDX = mHideColorIDX;
}
//
double mllColorIDX = mHideColorIDX;
if (showLevels)
{
//
if (llValue == lastLL)
{
mllColorIDX = 1;
}
else if (llValue > lastLL)
{
mllColorIDX = 2;
}
else if (llValue < lastLL)
{
mllColorIDX = 3;
}
}
else
{
mllColorIDX = mHideColorIDX;
}
//
mLastLHH = hhValue;
mLastLLL = llValue;
//
lHHBuffer[bar_index] = hhValue;
lLLBuffer[bar_index] = llValue;
lHHColorBuffer[bar_index] = mhhColorIDX;
lLLColorBuffer[bar_index] = mllColorIDX;
}
//
// HIND Cycle ...
void CalculateHindCycle(
int bar_index // Selected Bar Index
)
{
//
ENUM_TIMEFRAMES mPeriod = mL4Period;
//
double hhValue = GetCycleHHC(
bar_index,
mPeriod);
//
double llValue = GetCycleLLC(
bar_index,
mPeriod);
//
double lastHH = mLastHHH;
double lastLL = mLastHLL;
//
double mhhColorIDX = mHideColorIDX;
if (showLevels)
{
//
if (hhValue == lastHH)
{
mhhColorIDX = 1;
}
else if (hhValue > lastHH)
{
mhhColorIDX = 2;
}
else if (hhValue < lastHH)
{
mhhColorIDX = 3;
}
}
else
{
mhhColorIDX = mHideColorIDX;
}
//
double mllColorIDX = mHideColorIDX;
if (showLevels)
{
//
if (llValue == lastLL)
{
mllColorIDX = 1;
}
else if (llValue > lastLL)
{
mllColorIDX = 2;
}
else if (llValue < lastLL)
{
mllColorIDX = 3;
}
}
else
{
mllColorIDX = mHideColorIDX;
}
//
mLastHHH = hhValue;
mLastHLL = llValue;
//
hHHBuffer[bar_index] = hhValue;
hLLBuffer[bar_index] = llValue;
hHHColorBuffer[bar_index] = mhhColorIDX;
hLLColorBuffer[bar_index] = mllColorIDX;
}
//
// Calculate Peaks and Values ...
void CalculatePeaksAndVales(
int bar_index // Bar Index
)
{
//
// Retrieve Requirements ...
//
// Short ...
double sHHValue = sHHBuffer[bar_index];
double sLLValue = sLLBuffer[bar_index];
//
// Medium ...
double mHHValue = mHHBuffer[bar_index];
double mLLValue = mLLBuffer[bar_index];
//
// Long ...
double lHHValue = lHHBuffer[bar_index];
double lLLValue = lLLBuffer[bar_index];
//
// Hind ...
double hHHValue = hHHBuffer[bar_index];
double hLLValue = hLLBuffer[bar_index];
//
double rColorIDX = mHideColorIDX;
double sColorIDX = mHideColorIDX;
//
// RESISTANCE ...
double rValue = (sHHValue + mHHValue + lHHValue + hHHValue) / 4;
//
// PEAKS ...
bool isPeak = rValue == hHHValue &&
hHHValue == lHHValue &&
lHHValue == mHHValue &&
mHHValue == sHHValue;
//
if (isPeak && lastPeak != rValue)
{
//
rColorIDX = 1;
lastPeak = rValue;
}
//
// SUPPORT ...
double sValue = (sLLValue + mLLValue + lLLValue + hLLValue) / 4;
//
// VALES ...
bool isVale = sValue == hLLValue &&
hLLValue == lLLValue &&
lLLValue == mLLValue &&
mLLValue == sLLValue;
//
if (isVale && lastVale != sValue)
{
//
sColorIDX = 1;
lastVale = sValue;
}
//
rBuffer[bar_index] = rValue;
sBuffer[bar_index] = sValue;
peaksBuffer[bar_index] = lastPeak;
valesBuffer[bar_index] = lastVale;
//
if (showPeaksAndVales)
{
//
rColorBuffer[bar_index] = rColorIDX;
sColorBuffer[bar_index] = sColorIDX;
}
else
{
//
rColorBuffer[bar_index] = mHideColorIDX;
sColorBuffer[bar_index] = mHideColorIDX;
}
}
//
// Calculate Fibonacci Level 1 ...
void CalculateFibonacci(
int bar_index // Bar Index
)
{
//
// Select Requirements ...
double upPrice = peaksBuffer[bar_index];
double downPrice = valesBuffer[bar_index];
//
// Level 1 ...
double fibLevel1Value = GetFibonacciLevel(
upPrice,
downPrice,
fiboLevel1,
1);
//
// Level 2 ...
double fibLevel2Value = GetFibonacciLevel(
upPrice,
downPrice,
fiboLevel2,
1);
//
// Level 3 ...
double fibLevel3Value = GetFibonacciLevel(
upPrice,
downPrice,
fiboLevel3,
1);
//
fl1Buffer[bar_index] = fibLevel1Value;
fl2Buffer[bar_index] = fibLevel2Value;
fl3Buffer[bar_index] = fibLevel3Value;
//
double fl1ColorIdx = showFibo1Levels ? 1 : mHideColorIDX;
double fl2ColorIdx = showFibo2Levels ? 1 : mHideColorIDX;
double fl3ColorIdx = showFibo3Levels ? 1 : mHideColorIDX;
//
fl1ColorBuffer[bar_index] = fl1ColorIdx;
fl2ColorBuffer[bar_index] = fl2ColorIdx;
fl3ColorBuffer[bar_index] = fl3ColorIdx;
}
//
// END Calculation Parts ...
//
//
// END Functions ...
//