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///////////////////////////////////////////////////////
//
// SaherElm IT Center MQL5 Indicator
// -------------------------------------------------
// Name: XPVPM
// Description: 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 XPVPM Indicator"
#property strict
//
// Definitions ...
//
#define ShortName "XPVPM"
//
// Includes Common Library ...
#include "../Classes/x-saherelm.x-poi.class.mq5"
#include "../Classes/x-saherelm.x-poi.drawer.class.mq5"
#include "../Libraries/x-saherelm.common.lib.mq5"
//
// Inputs ...
//
input group "Makret Cycles";
//
input group "Short";
input ENUM_X_PERIOD_METHOD scMethod = X_PERIOD_AUTO; // How to Find Period
input ENUM_TIMEFRAMES scPeriod = NULL; // Time Period
//
input group "Medium";
input ENUM_X_PERIOD_METHOD mcMethod = X_PERIOD_AUTO; // How to Find Period
input ENUM_TIMEFRAMES mcPeriod = NULL; // Time Period
//
input group "Long";
input ENUM_X_PERIOD_METHOD lcMethod = X_PERIOD_AUTO; // How to Find Period
input ENUM_TIMEFRAMES lcPeriod = NULL; // Time Period
//
input group "Hind";
input ENUM_X_PERIOD_METHOD hcMethod = X_PERIOD_AUTO; // How to Find Period
input ENUM_TIMEFRAMES hcPeriod = NULL; // Time Period
//
input group "Boundary Detection Modes";
input ENUM_SERIESMODE hhMode = MODE_HIGH; // Highest High Calculation Method
input ENUM_SERIESMODE llMode = MODE_LOW; // Lowest Low Calculation Method
//
input group "Paraboli Sar Detection";
input double sarStep = 0.02; // Step
input double sarMax = 0.2; // Maximum
//
input group "VWap Detection";
input int vwapFastLength = 20; // Fast Length
input int vwapMidLength = 50; // Mid Length
input int vwapSlowLength = 100; // Slow Length
input ENUM_APPLIED_PRICE vwapAppliedTo = PRICE_CLOSE; // Applied To
//
input group "POI Detector";
input int poiRequiredItems = 20; // Required POI Detects On Start
input int poiMaxItems = 20; // Max POI Detects Holding
input ENUM_X_MARKET_CYCLES poiCycle = X_MARKET_CYCLE_UNKNOWN; // POI Detector Cycle
//
input group "Presentation";
//
input int startCalculationForLastBars = 1000; // Calculate Last n Bars
//
input int sarArrowCode = 159; // Parabolic Sar Arrow Code
input int peaksArrowCode = 159; // Peaks Arrow Code
input int valesArrowCode = 159; // Vales Arrow Code
//
input bool showSar = true; // Show Parabolic Sar
input bool showPeaks = true; // Show Peaks
input bool showVales = true; // Show Vales
input bool showVWapFast = true; // Show VWap Fast
input bool showVWapMedium = true; // Show VWap Medium
input bool showVWapSlow = true; // Show VWap Slow
input bool showPOIs = false; // Show POIs
//
// Define Variables to Draw POI(s) ...
input group "POI Presentation";
input bool drawSwingHighs = false; // Draw Swing Highs
input bool drawSwingLows = false; // Draw Swing Lows
input bool drawSupportZones = false; // Draw Support Zones
input bool drawResistanceZones = false; // Draw Resistance Zones
input bool drawSupplyZones = false; // Draw Supply Zones
input bool drawDemandZones = false; // Draw Demand Zones
input bool drawBullishOrderBlocks = false; // Draw Bullish Order Blocks
input bool drawBearishOrderBlocks = false; // Draw Bearish Order Blocks
input bool drawBullishFairValueGaps = false; // Draw Bullish FairValue Gaps
input bool drawBearishFairValueGaps = false; // Draw Bearish FairValue Gaps
input bool drawBullishRejectionBars = false; // Draw Bullish Rejection Bars
input bool drawBearishRejectionBars = false; // Draw Bearish Rejection Bars
input bool drawBullishMomentumBars = false; // Draw Bullish Momentum Bars
input bool drawBearishMomentumBars = false; // Draw Bearish Momentum Bars
//
// Buffers ...
//
#define hideColorIDX 0
#define bullishColorIDX 1
#define bearishColorIDX 2
#define neuturalColorIDX 3
//
#property indicator_chart_window
//
#property indicator_buffers 26
#property indicator_plots 6
// #property indicator_plots 8
//
// PEAKS ...
//
#define peaksBufferIndex 0
double peaksBuffer[];
//
#property indicator_label1 "XPVPM PEAKS"
#property indicator_type1 DRAW_ARROW
#property indicator_color1 clrAqua
#property indicator_width1 1
//
// VALES ...
//
#define valesBufferIndex 1
double valesBuffer[];
//
#property indicator_label2 "XPVPM VALES"
#property indicator_type2 DRAW_ARROW
#property indicator_color2 clrMagenta
#property indicator_width2 1
//
#define sarBufferIndex 2
double sarBuffer[];
//
#property indicator_label3 "XPVPM SAR"
#property indicator_type3 DRAW_ARROW
#property indicator_color3 clrYellow
#property indicator_width3 1
//
// FAST ...
#define vwapFastBufferIndex 3
double vwapFastBuffer[];
#define vwapFastColorBufferIndex 4
double vwapFastColorBuffer[];
//
#define vwapFastPlotBufferIndex 3
#property indicator_label4 "XPVPM VWF"
#property indicator_type4 DRAW_COLOR_LINE
#property indicator_color4 CLR_NONE, clrAqua, clrMagenta, clrGray
#property indicator_style4 STYLE_SOLID
#property indicator_width4 2
//
// MID ...
#define vwapMidBufferIndex 5
double vwapMidBuffer[];
#define vwapMidColorBufferIndex 6
double vwapMidColorBuffer[];
//
#define vwapMidPlotBufferIndex 4
#property indicator_label5 "XPVPM VWM"
#property indicator_type5 DRAW_COLOR_LINE
#property indicator_color5 CLR_NONE, clrGreen, clrRed, clrGray
#property indicator_style5 STYLE_SOLID
#property indicator_width5 2
//
// SLOW ...
#define vwapSlowBufferIndex 7
double vwapSlowBuffer[];
#define vwapSlowColorBufferIndex 8
double vwapSlowColorBuffer[];
//
#define vwapSlowPlotBufferIndex 5
#property indicator_label6 "XPVPM VWS"
#property indicator_type6 DRAW_COLOR_LINE
#property indicator_color6 CLR_NONE, clrSteelBlue, clrDarkRed, clrGray
#property indicator_style6 STYLE_SOLID
#property indicator_width6 2
// //
// // VALID PEAKS ...
// #define validPeaksBufferIndex 9
// double validPeaksBuffer[];
// //
// #define validPeaksBufferPlotIndex 6
// #property indicator_label7 "XPVPM VALID PEAKS"
// #property indicator_type7 DRAW_ARROW
// #property indicator_color7 clrLime
// #property indicator_width7 1
// //
// // VALES ...
// //
// #define validValesBufferIndex 10
// double validValesBuffer[];
// //
// #define validValesBufferPlotIndex 7
// #property indicator_label8 "XPVPM VALID VALES"
// #property indicator_type8 DRAW_ARROW
// #property indicator_color8 clrRed
// #property indicator_width8 1
//
// Data Buffers ...
//
int mLastBufferIndex = 8;
// int mLastBufferIndex = 10;
//
// CURRENT ...
//
#define cHHBufferIndex mLastBufferIndex + 1
double cHHBuffer[];
//
#define cLLBufferIndex mLastBufferIndex + 2
double cLLBuffer[];
//
// SHORT ...
//
#define sHHBufferIndex mLastBufferIndex + 3
double sHHBuffer[];
//
#define sLLBufferIndex mLastBufferIndex + 4
double sLLBuffer[];
//
// MEDIUM ...
//
#define mHHBufferIndex mLastBufferIndex + 5
double mHHBuffer[];
//
#define mLLBufferIndex mLastBufferIndex + 6
double mLLBuffer[];
//
// LONG ...
//
#define lHHBufferIndex mLastBufferIndex + 7
double lHHBuffer[];
//
#define lLLBufferIndex mLastBufferIndex + 8
double lLLBuffer[];
//
// HIND ...
//
#define hHHBufferIndex mLastBufferIndex + 9
double hHHBuffer[];
//
#define hLLBufferIndex mLastBufferIndex + 10
double hLLBuffer[];
//
// VOLUME ...
#define vwapVolumeBufferIndex mLastBufferIndex + 11
double vwapVolumeBuffer[];
//
// Price ...
#define vwapPriceBufferIndex mLastBufferIndex + 12
double vwapPriceBuffer[];
//
// Fast State ...
#define vwapFastStateBufferIndex mLastBufferIndex + 13
double vwapFastStateBuffer[];
//
// Mid State ...
#define vwapMidStateBufferIndex mLastBufferIndex + 14
double vwapMidStateBuffer[];
//
// Slow State ...
#define vwapSlowStateBufferIndex mLastBufferIndex + 15
double vwapSlowStateBuffer[];
//
// Valid Peaks and Vales ...
#define validPeaksBufferIndex mLastBufferIndex + 16
double validPeaksBuffer[];
#define validValesBufferIndex mLastBufferIndex + 17
double validValesBuffer[];
//
// Variables, Properties and etc ...
//
// this counts Available Bars ...
int limit;
//
int maxLength;
//
// SAR Handler ...
int sarHandler = INVALID_HANDLE;
//
double mHideColorIDX = 0;
//
// XMarketCycle sc;
int mSCLength = 0;
ENUM_TIMEFRAMES mSCPeriod = NULL;
//
// XMarketCycle mc;
int mMCLength = 0;
ENUM_TIMEFRAMES mMCPeriod = NULL;
//
// XMarketCycle lc;
int mLCLength = 0;
ENUM_TIMEFRAMES mLCPeriod = NULL;
//
// XMarketCycle hc;
int mHCLength = 0;
ENUM_TIMEFRAMES mHCPeriod = NULL;
//
// XPOI ...
XCPOIDrawer *mPOIDrawer;
CArrayObj mDrawnObjects;
XCPOIDetector *mPOIDetector;
//
// Event Handlers ...
/**
* Initialize Indicator ...
*
* @return ( int )
*/
int OnInit()
{
//
// Validate Inputs ...
if (!ValidateInputs())
{
return INIT_PARAMETERS_INCORRECT;
}
//
// Initialize Indicator Handlers ...
//
// SAR ...
sarHandler = iSAR(
_Symbol,
_Period,
sarStep,
sarMax //
);
bool isInited = sarHandler != INVALID_HANDLE;
if (!isInited)
{
return INIT_FAILED;
}
//
// XPOI Drawer ...
mPOIDrawer = new XCPOIDrawer();
//
// Initialize POI Detector ...
int mPoiMaxItems = poiMaxItems > 0
? poiMaxItems
: 5;
int mPoiRequiredItems = poiRequiredItems > 0
? poiRequiredItems
: 5;
//
ENUM_TIMEFRAMES mPOIPeriod = NULL;
switch (poiCycle)
{
//
case X_MARKET_CYCLE_UNKNOWN:
mPOIPeriod = _Period;
break;
//
case X_MARKET_CYCLE_SHORT:
mPOIPeriod = mSCPeriod;
break;
//
case X_MARKET_CYCLE_MEDIUM:
mPOIPeriod = mMCPeriod;
break;
//
case X_MARKET_CYCLE_LONG:
mPOIPeriod = mLCPeriod;
break;
//
case X_MARKET_CYCLE_HIND:
mPOIPeriod = mHCPeriod;
break;
}
mPOIPeriod = NormalizePeriod(mPOIPeriod);
mPOIDetector = new XCPOIDetector(
_Symbol,
mPOIPeriod //
);
mPOIDetector.MaxNumberOfPOIs(mPoiMaxItems);
mPOIDetector.MaxNumberOfRequiredPOIs(mPoiRequiredItems);
mPOIDetector.Init();
//
if (!InitMarketCycles())
{
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();
//
// Init Succeed ...
return INIT_SUCCEEDED;
}
/**
* De Initialize Indicator ...
*
* @param reason: Integer, De Initialization Reason ...
*/
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
//
delete mPOIDrawer;
delete mPOIDetector;
//
mDrawnObjects.Clear();
//
IndicatorRelease(sarHandler);
}
/**
* Calculate Bars ...
*
* @param rates_total: Integer, Total Bars on Chart ...
* @param prev_calculated: Integer, Total Calculated Bars on Charts ...
* @param time: DateTime Array, History of Open Time ...
* @param open: Double Array, History of Open Prices ...
* @param high: Double Array, History of High Prices ...
* @param low: Double Array, History of Low Prices ...
* @param close: Double Array, History of Close Prices ...
* @param tick_volume: Long, History of Tick Volumes on Bar ...
* @param volume: Long, History of Trade Volumes ...
* @param spread: Double, History of Spread Price ...
*
* @return ( int )
*/
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[] //
)
{
//
// 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);
//
// Fill All Buffers by Zero ...
if (prev_calculated == 0)
{
//
ArrayInitialize(peaksBuffer, 0);
ArrayInitialize(valesBuffer, 0);
ArrayInitialize(sarBuffer, 0);
}
//
// Validate Calculated Bars ...
//
// SAR ...
int sarCalculatedBars = BarsCalculated(sarHandler);
//
bool isPassedRequiredCalculatedBars =
//
// SAR ...
sarCalculatedBars >= maxLength
//
;
if (!isPassedRequiredCalculatedBars)
{
return prev_calculated;
}
//
limit = (prev_calculated > rates_total || prev_calculated <= 0) ? rates_total : (rates_total - prev_calculated) + 1;
//
// Buffers Copy ...
//
// SAR ...
int copiedSars = CopyBuffer(sarHandler, 0, 0, limit, sarBuffer);
//
// Validate Copied Items ...
bool isPassedRequiredCopiedItems =
//
//
// SAR ...
copiedSars > 0
//
;
if (!isPassedRequiredCopiedItems)
{
return prev_calculated;
}
//
// Main Loop ...
for (int i = limit - 1; i >= 0 && !IsStopped(); i--)
{
//
CalculateBuffers(
i,
prev_calculated,
rates_total,
//
open,
high,
close,
low,
tick_volume //
);
}
//
return rates_total;
}
//
// Functions ...
/**
* Validate Input Args for Initialization ...
*
* @return ( bool )
*/
bool ValidateInputs()
{
//
bool result =
//
// PSAR ...
sarMax > 0 &&
sarStep > 0 &&
sarMax > sarStep &&
//
// VWAP ...
vwapFastLength > 2 &&
vwapMidLength > vwapFastLength &&
vwapSlowLength > vwapMidLength &&
//
// XPV ...
(IsValid(scMethod, scPeriod) &&
IsValid(mcMethod, mcPeriod) &&
IsValid(lcMethod, lcPeriod) &&
IsValid(hcMethod, hcPeriod))
//
;
//
return result;
}
/**
* Extract Max Length of Inputs ...
*
* @return ( int )
*/
int ExtractMaxLengthOfInputs()
{
//
int result = 0;
//
// XPV ...
result = MathMax(mSCLength, mMCLength);
result = MathMax(result, mLCLength);
result = MathMax(result, mHCLength);
//
// XVWAP ...
result = MathMax(result, vwapFastLength);
result = MathMax(result, vwapMidLength);
result = MathMax(result, vwapSlowLength);
//
return result;
}
/**
* Define Required Buffers ...
*/
void DefineBuffers()
{
//
// PEAKS ...
//
ENUM_DRAW_TYPE peaksDrawType = showPeaks ? DRAW_ARROW : DRAW_NONE;
//
ArraySetAsSeries(peaksBuffer, true);
SetIndexBuffer(peaksBufferIndex, peaksBuffer, INDICATOR_DATA);
//
PlotIndexSetInteger(peaksBufferIndex, PLOT_SHOW_DATA, showPeaks);
PlotIndexSetInteger(peaksBufferIndex, PLOT_DRAW_TYPE, peaksDrawType);
//
PlotIndexSetDouble(peaksBufferIndex, PLOT_EMPTY_VALUE, 0);
PlotIndexSetInteger(peaksBufferIndex, PLOT_ARROW, peaksArrowCode);
//
// VALES ...
//
ENUM_DRAW_TYPE valesDrawType = showVales ? DRAW_ARROW : DRAW_NONE;
//
ArraySetAsSeries(valesBuffer, true);
SetIndexBuffer(valesBufferIndex, valesBuffer, INDICATOR_DATA);
//
PlotIndexSetInteger(valesBufferIndex, PLOT_SHOW_DATA, showVales);
PlotIndexSetInteger(valesBufferIndex, PLOT_DRAW_TYPE, valesDrawType);
//
PlotIndexSetDouble(valesBufferIndex, PLOT_EMPTY_VALUE, 0);
PlotIndexSetInteger(valesBufferIndex, PLOT_ARROW, valesArrowCode);
//
// SAR ...
//
ENUM_DRAW_TYPE sarDrawType = showSar ? DRAW_ARROW : DRAW_NONE;
//
ArraySetAsSeries(sarBuffer, true);
SetIndexBuffer(sarBufferIndex, sarBuffer, INDICATOR_DATA);
//
PlotIndexSetInteger(sarBufferIndex, PLOT_SHOW_DATA, showSar);
PlotIndexSetInteger(sarBufferIndex, PLOT_DRAW_TYPE, sarDrawType);
//
PlotIndexSetDouble(sarBufferIndex, PLOT_EMPTY_VALUE, 0);
PlotIndexSetInteger(sarBufferIndex, PLOT_ARROW, sarArrowCode);
//
// XVWAP ...
//
// Fast ...
ArraySetAsSeries(vwapFastBuffer, true);
ArraySetAsSeries(vwapFastColorBuffer, true);
SetIndexBuffer(vwapFastBufferIndex, vwapFastBuffer, INDICATOR_DATA);
SetIndexBuffer(vwapFastColorBufferIndex, vwapFastColorBuffer, INDICATOR_COLOR_INDEX);
//
// Mid ...
ArraySetAsSeries(vwapMidBuffer, true);
ArraySetAsSeries(vwapMidColorBuffer, true);
SetIndexBuffer(vwapMidBufferIndex, vwapMidBuffer, INDICATOR_DATA);
SetIndexBuffer(vwapMidColorBufferIndex, vwapMidColorBuffer, INDICATOR_COLOR_INDEX);
//
// Slow ...
ArraySetAsSeries(vwapSlowBuffer, true);
ArraySetAsSeries(vwapSlowColorBuffer, true);
SetIndexBuffer(vwapSlowBufferIndex, vwapSlowBuffer, INDICATOR_DATA);
SetIndexBuffer(vwapSlowColorBufferIndex, vwapSlowColorBuffer, INDICATOR_COLOR_INDEX);
//
// Data Buffers ...
//
// CURRENT ...
//
ArraySetAsSeries(cHHBuffer, true);
SetIndexBuffer(cHHBufferIndex, cHHBuffer, INDICATOR_CALCULATIONS);
//
ArraySetAsSeries(cLLBuffer, true);
SetIndexBuffer(cLLBufferIndex, cLLBuffer, INDICATOR_CALCULATIONS);
//
// SHORT ...
//
ArraySetAsSeries(sHHBuffer, true);
SetIndexBuffer(sHHBufferIndex, sHHBuffer, INDICATOR_CALCULATIONS);
//
ArraySetAsSeries(sLLBuffer, true);
SetIndexBuffer(sLLBufferIndex, sLLBuffer, INDICATOR_CALCULATIONS);
//
// MEDIUM ...
//
ArraySetAsSeries(mHHBuffer, true);
SetIndexBuffer(mHHBufferIndex, mHHBuffer, INDICATOR_CALCULATIONS);
//
ArraySetAsSeries(mLLBuffer, true);
SetIndexBuffer(mLLBufferIndex, mLLBuffer, INDICATOR_CALCULATIONS);
//
// LONG ...
//
ArraySetAsSeries(lHHBuffer, true);
SetIndexBuffer(lHHBufferIndex, lHHBuffer, INDICATOR_CALCULATIONS);
//
ArraySetAsSeries(lLLBuffer, true);
SetIndexBuffer(lLLBufferIndex, lLLBuffer, INDICATOR_CALCULATIONS);
//
// HIND ...
//
ArraySetAsSeries(hHHBuffer, true);
SetIndexBuffer(hHHBufferIndex, hHHBuffer, INDICATOR_CALCULATIONS);
//
ArraySetAsSeries(hLLBuffer, true);
SetIndexBuffer(hLLBufferIndex, hLLBuffer, INDICATOR_CALCULATIONS);
//
// XVWAP ...
//
// Volumes ...
ArraySetAsSeries(vwapVolumeBuffer, true);
SetIndexBuffer(vwapVolumeBufferIndex, vwapVolumeBuffer, INDICATOR_CALCULATIONS);
//
// Price ...
ArraySetAsSeries(vwapPriceBuffer, true);
SetIndexBuffer(vwapPriceBufferIndex, vwapPriceBuffer, INDICATOR_CALCULATIONS);
//
// Fast State ...
ArraySetAsSeries(vwapFastStateBuffer, true);
SetIndexBuffer(vwapFastStateBufferIndex, vwapFastStateBuffer, INDICATOR_CALCULATIONS);
//
// Mid State ...
ArraySetAsSeries(vwapMidStateBuffer, true);
SetIndexBuffer(vwapMidStateBufferIndex, vwapMidStateBuffer, INDICATOR_CALCULATIONS);
//
// Slow State ...
ArraySetAsSeries(vwapSlowStateBuffer, true);
SetIndexBuffer(vwapSlowStateBufferIndex, vwapSlowStateBuffer, INDICATOR_CALCULATIONS);
//
// VALID Peaks and Vales ...
//
// PEAKS ...
// //
// ArraySetAsSeries(validPeaksBuffer, true);
// SetIndexBuffer(validPeaksBufferIndex, validPeaksBuffer, INDICATOR_DATA);
// //
// PlotIndexSetDouble(validPeaksBufferPlotIndex, PLOT_EMPTY_VALUE, 0);
// PlotIndexSetInteger(validPeaksBufferPlotIndex, PLOT_ARROW, peaksArrowCode);
// //
// // VALES ...
// ArraySetAsSeries(validValesBuffer, true);
// SetIndexBuffer(validValesBufferIndex, validValesBuffer, INDICATOR_DATA);
// //
// PlotIndexSetDouble(validValesBufferPlotIndex, PLOT_EMPTY_VALUE, 0);
// PlotIndexSetInteger(validValesBufferPlotIndex, PLOT_ARROW, valesArrowCode);
//
ArraySetAsSeries(validPeaksBuffer, true);
SetIndexBuffer(validPeaksBufferIndex, validPeaksBuffer, INDICATOR_CALCULATIONS);
//
ArraySetAsSeries(validValesBuffer, true);
SetIndexBuffer(validValesBufferIndex, validValesBuffer, INDICATOR_CALCULATIONS);
}
/**
* Set Indicator Short Name and also we can define Buffers Labels ...
*/
void SetIndicatorName()
{
IndicatorSetString(INDICATOR_SHORTNAME, ShortName);
}
/**
* Calculate Custom Buffers ...
*
* @param bar_index: Integer, Represent Current Bar ...
* @param prevCalculated: Integer, Represent Previous Calculated Bars ...
* @param ratesTotal: Integer, Represents All Available Bars ...
* @param open: Double Array, History of Open Prices ...
* @param high: Double Array, History of High Prices ...
* @param close: Double Array, History of Close Prices ...
* @param low: Double Array, History of Low Prices ...
* @param tickVolume: Long, History of Tick Volumes on Bar ...
*/
void CalculateBuffers(
int bar_index, // Selected Bar Index
const int prevCalculated,
const int ratesTotal,
const double &open[],
const double &high[],
const double &close[],
const double &low[],
const long &tickVolume[] //
)
{
//
int barsLimit = startCalculationForLastBars > 0
? startCalculationForLastBars
: 0;
//
// bool canCalculate = true;
bool canCalculate =
barsLimit == 0 ||
bar_index <= barsLimit;
if (canCalculate)
{
//
// Calculate Cycles ...
CalculateCycles(bar_index);
//
// Calculate Peaks and Vales ...
CalculatePeaksAndVales(bar_index);
//
// Calculate Required VWAP Data Buffers ...
if (ratesTotal - bar_index <= maxLength)
{
//
CalculateVWAPDataBuffers(
bar_index,
prevCalculated,
ratesTotal,
open,
high,
close,
low,
tickVolume //
);
//
// Prevent Moving Forward ...
return;
}
//
CalculateVWAPDataBuffers(
bar_index,
prevCalculated,
ratesTotal,
open,
high,
close,
low,
tickVolume //
);
//
CalculateVWAPS(
bar_index,
prevCalculated,
ratesTotal,
open,
high,
close,
low,
tickVolume //
);
//
CalculatePOIS(bar_index);
//
CalculateValidPeaksAndVales(
bar_index,
prevCalculated //
);
}
else
{
FillBuffersZero(bar_index);
}
}
//
// Custom ...
/**
* Initial Market Cycles ...
*
* @return ( bool )
*/
bool InitMarketCycles()
{
//
bool result = false;
//
int cPeriodSeconds = PeriodSeconds(_Period);
//
// Find Cycle Period ...
if (scMethod == X_PERIOD_AUTO)
{
//
// Select Period ...
mSCPeriod = GetCyclePeriod(
X_MARKET_CYCLE_SHORT,
_Period //
);
}
else
{
mSCPeriod = scPeriod;
}
//
if (IsValid(mSCPeriod))
{
mSCLength = PeriodSeconds(mSCPeriod) / cPeriodSeconds;
}
//
// Find Cycle Period ...
if (mcMethod == X_PERIOD_AUTO)
{
//
// Select Period ...
mMCPeriod = GetCyclePeriod(
X_MARKET_CYCLE_MEDIUM,
_Period //
);
}
else
{
mMCPeriod = mcPeriod;
}
//
if (IsValid(mMCPeriod))
{
mMCLength = PeriodSeconds(mMCPeriod) / cPeriodSeconds;
}
//
// Find Cycle Period ...
if (lcMethod == X_PERIOD_AUTO)
{
//
// Select Period ...
mLCPeriod = GetCyclePeriod(
X_MARKET_CYCLE_LONG,
_Period //
);
}
else
{
mLCPeriod = lcPeriod;
}
//
if (IsValid(mLCPeriod))
{
mLCLength = PeriodSeconds(mLCPeriod) / cPeriodSeconds;
}
//
// Find Cycle Period ...
if (hcMethod == X_PERIOD_AUTO)
{
//
// Select Period ...
mHCPeriod = GetCyclePeriod(
X_MARKET_CYCLE_HIND,
_Period //
);
}
else
{
mHCPeriod = hcPeriod;
}
//
if (IsValid(mHCPeriod))
{
mHCLength = PeriodSeconds(mHCPeriod) / cPeriodSeconds;
}
//
result = mSCLength > 0 &&
mMCLength > mSCLength &&
mLCLength > mMCLength &&
mHCLength > mLCLength;
//
return result;
}
/**
* Fill All Bufers to Zero Vlue for Specified Bar Index ...
*
* @param barIndex: Integer ...
*/
void FillBuffersZero(int barIndex)
{
//
// CURRENT ...
cHHBuffer[barIndex] = 0;
cLLBuffer[barIndex] = 0;
//
// SHORT ...
sHHBuffer[barIndex] = 0;
sLLBuffer[barIndex] = 0;
//
// MEDIUM ...
mHHBuffer[barIndex] = 0;
mLLBuffer[barIndex] = 0;
//
// LONG ...
lHHBuffer[barIndex] = 0;
lLLBuffer[barIndex] = 0;
//
// HIND ...
hHHBuffer[barIndex] = 0;
hLLBuffer[barIndex] = 0;
//
// PEAKS ...
peaksBuffer[barIndex] = 0;
//
// VALES ...
valesBuffer[barIndex] = 0;
//
// SARS ...
sarBuffer[barIndex] = 0;
//
// VWAP ...
//
vwapFastBuffer[barIndex] = 0;
vwapMidBuffer[barIndex] = 0;
vwapSlowBuffer[barIndex] = 0;
vwapVolumeBuffer[barIndex] = 0;
vwapPriceBuffer[barIndex] = 0;
//
vwapFastColorBuffer[barIndex] = hideColorIDX;
vwapMidColorBuffer[barIndex] = hideColorIDX;
vwapSlowColorBuffer[barIndex] = hideColorIDX;
vwapFastStateBuffer[barIndex] = hideColorIDX;
vwapMidStateBuffer[barIndex] = hideColorIDX;
vwapSlowStateBuffer[barIndex] = hideColorIDX;
//
validPeaksBuffer[barIndex] = 0;
validValesBuffer[barIndex] = 0;
}
/**
* Calculate Specified Market Cycle Info ...
*
* @param barIndex: Integer, Bar Index ...
* @param cycle: ENUM_X_MARKET_CYCLES member, Specified Cycle ...
* @param hhBuffer: Highest High Buffer Reference ...
* @param llBuffer: Lowest Low Buffer Reference ...
*/
void CalculateCycle(
int barIndex,
ENUM_X_MARKET_CYCLES cycle,
double &hhBuffer[],
double &llBuffer[] //
)
{
//
XOHCL bar;
bool isBarInited = bar.Init(
_Symbol,
_Period,
barIndex
//
);
if (!isBarInited)
{
return;
}
//
int mLength = 0;
switch (cycle)
{
//
case X_MARKET_CYCLE_SHORT:
mLength = mSCLength;
break;
//
case X_MARKET_CYCLE_MEDIUM:
mLength = mMCLength;
break;
//
case X_MARKET_CYCLE_LONG:
mLength = mLCLength;
break;
//
case X_MARKET_CYCLE_HIND:
mLength = mHCLength;
break;
}
//
if (mLength == 0)
{
return;
}
//
// Find Highest High ...
double hhValue = bar.FindHighest(
mLength,
hhMode
//
);
hhBuffer[barIndex] = hhValue;
//
// Find Lowest Low ...
double llValue = bar.FindLowest(
mLength,
llMode
//
);
llBuffer[barIndex] = llValue;
}
/**
* Claculate Cycles ...
*
* @param barIndex: Integer, Bar Index ...
*/
void CalculateCycles(int barIndex)
{
//
// SHORT ...
CalculateCycle(
barIndex,
X_MARKET_CYCLE_SHORT,
sHHBuffer,
sLLBuffer //
);
//
// MEDIUM ...
CalculateCycle(
barIndex,
X_MARKET_CYCLE_MEDIUM,
mHHBuffer,
mLLBuffer //
);
//
// LONG ...
CalculateCycle(
barIndex,
X_MARKET_CYCLE_LONG,
lHHBuffer,
lLLBuffer //
);
//
// HIND ...
CalculateCycle(
barIndex,
X_MARKET_CYCLE_HIND,
hHHBuffer,
hLLBuffer //
);
}
/**
* Calculate Peaks and Vales ...
*
* @param barIndex: Integer, Bar Index ...
*/
void CalculatePeaksAndVales(int barIndex)
{
//
int lastIndex = barIndex + 1;
int barsCount = iBars(_Symbol, _Period);
//
// PEAKS ...
double lastPeak =
lastIndex < barsCount
? peaksBuffer[lastIndex]
: 0;
//
double isHH = sHHBuffer[barIndex];
double imHH = mHHBuffer[barIndex];
double ilHH = lHHBuffer[barIndex];
double ihHH = hHHBuffer[barIndex];
//
double iHHs[4] = {
isHH,
imHH,
ilHH,
ihHH //
};
double rValue = GetAverage(iHHs);
bool isPeak = rValue == isHH &&
isHH == imHH &&
imHH == ilHH &&
ilHH == ihHH;
double iPeak =
isPeak
? rValue
: lastPeak;
peaksBuffer[barIndex] = iPeak;
//
// VALES ...
double lastVale =
lastIndex < barsCount
? valesBuffer[lastIndex]
: 0;
//
double isLL = sLLBuffer[barIndex];
double imLL = mLLBuffer[barIndex];
double ilLL = lLLBuffer[barIndex];
double ihLL = hLLBuffer[barIndex];
//
double iLLs[4] = {
isLL,
imLL,
ilLL,
ihLL //
};
double sValue = GetAverage(iLLs);
bool isVale = sValue == isLL &&
isLL == imLL &&
imLL == ilLL &&
ilLL == ihLL;
double iVale =
isVale
? sValue
: lastVale;
valesBuffer[barIndex] = iVale;
}
/**
* Calculate VWAP Value for Specified Bar ...
*
* @param bar_index: Integer, Represent Current Bar ...
* @param prevCalculated: Integer, Represent Previous Calculated Bars ...
* @param ratesTotal: Integer, Represents All Available Bars ...
* @param open: Double Array, History of Open Prices ...
* @param high: Double Array, History of High Prices ...
* @param close: Double Array, History of Close Prices ...
* @param low: Double Array, History of Low Prices ...
* @param tickVolume: Long, History of Tick Volumes on Bar ...
* @param _length: Integer, Specified VWAP Length ...
* @param _show: Boolean, Specified Show Buffer or not ...
* @param _buffer: Double Array Reference, Points to Buffer ...
* @param _colorBuffer: Double Array Reference, Points to Color Buffer ...
* @param _stateBuffer: Double Array Reference, Points to State Buffer ...
*/
void CalculateVWAP(
int bar_index, // Selected Bar Index
const int prevCalculated,
const int ratesTotal,
const double &open[],
const double &high[],
const double &close[],
const double &low[],
const long &tickVolume[],
//
int _length, // Calculation Length
bool _show,
double &_buffer[],
double &_colorBuffer[],
double &_stateBuffer[] //
)
{
//
double vSum = 0;
double pSum = 0;
double mSum = 0;
for (int x = 0; x < _length; x++)
{
//
pSum += vwapPriceBuffer[x + bar_index];
vSum += vwapVolumeBuffer[x + bar_index];
mSum += vwapPriceBuffer[x + bar_index] * vwapVolumeBuffer[x + bar_index];
}
//
double iValue = mSum / vSum;
iValue = NormalizeDouble(iValue, _Digits);
//
_buffer[bar_index] = iValue;
//
bool isBullish = low[bar_index] > iValue;
bool isBearish = high[bar_index] < iValue;
//
double iColor =
isBullish
? bullishColorIDX
: isBearish
? bearishColorIDX
: neuturalColorIDX;
//
_colorBuffer[bar_index] = hideColorIDX;
_stateBuffer[bar_index] = iColor;
if (_show)
{
_colorBuffer[bar_index] = iColor;
}
}
/**
* Calculate VWAP Required Data Buffers ...
*
* @param bar_index: Integer, Represent Current Bar ...
* @param prevCalculated: Integer, Represent Previous Calculated Bars ...
* @param ratesTotal: Integer, Represents All Available Bars ...
* @param open: Double Array, History of Open Prices ...
* @param high: Double Array, History of High Prices ...
* @param close: Double Array, History of Close Prices ...
* @param low: Double Array, History of Low Prices ...
* @param tickVolume: Long, History of Tick Volumes on Bar ...
*/
void CalculateVWAPDataBuffers(
int bar_index, // Selected Bar Index
const int prevCalculated,
const int ratesTotal,
const double &open[],
const double &high[],
const double &close[],
const double &low[],
const long &tickVolume[] //
)
{
//
double price = GetAppliedPrice(
vwapAppliedTo,
open,
high,
low,
close,
bar_index //
);
vwapPriceBuffer[bar_index] = price;
vwapVolumeBuffer[bar_index] = (double)tickVolume[bar_index];
}
/**
* Calculate Different VWaps ...
*
* @param bar_index: Integer, Represent Current Bar ...
* @param prevCalculated: Integer, Represent Previous Calculated Bars ...
* @param ratesTotal: Integer, Represents All Available Bars ...
* @param open: Double Array, History of Open Prices ...
* @param high: Double Array, History of High Prices ...
* @param close: Double Array, History of Close Prices ...
* @param low: Double Array, History of Low Prices ...
* @param tickVolume: Long, History of Tick Volumes on Bar ...
*/
void CalculateVWAPS(
int bar_index, // Selected Bar Index
const int prevCalculated,
const int ratesTotal,
const double &open[],
const double &high[],
const double &close[],
const double &low[],
const long &tickVolume[] //
)
{
//
// Fast ...
CalculateVWAP(
bar_index,
prevCalculated,
ratesTotal,
open,
high,
close,
low,
tickVolume,
//
vwapFastLength,
showVWapFast,
vwapFastBuffer,
vwapFastColorBuffer,
vwapFastStateBuffer //
);
//
// Mid ...
CalculateVWAP(
bar_index,
prevCalculated,
ratesTotal,
open,
high,
close,
low,
tickVolume,
//
vwapMidLength,
showVWapMedium,
vwapMidBuffer,
vwapMidColorBuffer,
vwapMidStateBuffer //
);
//
// Fast ...
CalculateVWAP(
bar_index,
prevCalculated,
ratesTotal,
open,
high,
close,
low,
tickVolume,
//
vwapSlowLength,
showVWapSlow,
vwapSlowBuffer,
vwapSlowColorBuffer,
vwapSlowStateBuffer //
);
}
/**
* Calculate POIs ...
*
* @param bar_index: Integer, Current Bar ...
*/
void CalculatePOIS(int bar_index)
{
//
ENUM_XPOI_EVENTS events[];
int eventsCount = mPOIDetector.Update(events);
//
XPOIState poiState;
mPOIDetector.GetState(poiState);
//
bool redrawState = true;
if (redrawState)
{
ReDrawPOIState(poiState);
}
//
if (!IsValidSize(eventsCount))
{
return;
}
//
string msg = ToString(eventsCount) + " POI Events: " + "\n";
for (int i = 0; i < eventsCount; i++)
{
//
ENUM_XPOI_EVENTS iEvent = events[i];
//
string iMSG = ToString(i) + "_ " + ToString(iEvent);
msg += iMSG + "\n";
//
// Drawn Objects ...
//
// Swing High ...
if (iEvent == X_SWING_HIGH_DETECTED)
{
//
XCSwing *iSwing;
bool hasSwing = GetLastItem(
iSwing,
poiState.swingHighs //
);
// if (hasSwing &&
// drawSwingHighs)
// {
// //
// XCSwingHighObject *iObj;
// bool isCreated = mPOIDrawer.CreateSwingHigh(
// iSwing,
// iObj //
// );
// //
// if (isCreated)
// {
// AddDrawnObject(iObj);
// }
// }
}
//
// Swing Low ...
if (iEvent == X_SWING_HIGH_DETECTED)
{
//
XCSwing *iSwing;
bool hasSwing = GetLastItem(
iSwing,
poiState.swingLows //
);
// if (hasSwing &&
// drawSwingLows)
// {
// //
// XCSwingLowObject *iObj;
// bool isCreated = mPOIDrawer.CreateSwingLow(
// iSwing,
// iObj //
// );
// //
// if (isCreated)
// {
// AddDrawnObject(iObj);
// }
// }
}
//
// Bullish Rejection Bar ...
if (iEvent == X_BULLISH_REJECTION_BAR_DETECTED)
{
//
XCRejectionBar *iRejectionBar;
bool hasBar = GetLastItem(
iRejectionBar,
poiState.bullishRejectionBars //
);
// if (hasBar &&
// drawBullishRejectionBars)
// {
// //
// XCBullishRejectionBarObject *iObj;
// bool isCreated = mPOIDrawer.CreateBullishRejectionBar(
// iRejectionBar,
// iObj //
// );
// //
// if (isCreated)
// {
// AddDrawnObject(iObj);
// }
// }
}
//
// Bearish Rejection Bar ...
if (iEvent == X_BEARISH_REJECTION_BAR_DETECTED)
{
//
XCRejectionBar *iRejectionBar;
bool hasBar = GetLastItem(
iRejectionBar,
poiState.bearishRejectionBars //
);
// if (hasBar &&
// drawBearishRejectionBars)
// {
// //
// XCBearishRejectionBarObject *iObj;
// bool isCreated = mPOIDrawer.CreateBearishRejectionBar(
// iRejectionBar,
// iObj //
// );
// //
// if (isCreated)
// {
// AddDrawnObject(iObj);
// }
// }
}
//
// Bullish Momentum Bar ...
if (iEvent == X_BULLISH_MOMENTUM_BAR_DETECTED)
{
//
XCMomentumBar *iMomentumBar;
bool hasBar = GetLastItem(
iMomentumBar,
poiState.bullishMomentumBars //
);
// if (hasBar &&
// drawBullishMomentumBars)
// {
// //
// XCBullishMomentumBarObject *iObj;
// bool isCreated = mPOIDrawer.CreateBullishMomentumBar(
// iMomentumBar,
// iObj //
// );
// //
// if (isCreated)
// {
// AddDrawnObject(iObj);
// }
// }
}
//
// Bearish Momentum Bar ...
if (iEvent == X_BEARISH_MOMENTUM_BAR_DETECTED)
{
//
XCMomentumBar *iMomentumBar;
bool hasBar = GetLastItem(
iMomentumBar,
poiState.bearishMomentumBars //
);
// if (hasBar &&
// drawBearishMomentumBars)
// {
// //
// XCBearishMomentumBarObject *iObj;
// bool isCreated = mPOIDrawer.CreateBearishMomentumBar(
// iMomentumBar,
// iObj //
// );
// //
// if (isCreated)
// {
// AddDrawnObject(iObj);
// }
// }
}
//
// Support Zone ...
if (iEvent == X_SUPPORT_ZONE_DETECTED)
{
//
XCSupportZone *iZone;
bool hasZone = GetLastItem(
iZone,
poiState.supportZones //
);
// if (hasZone &&
// drawSupportZones)
// {
// //
// XCSupportZoneObject *iObj;
// bool isCreated = mPOIDrawer.CreateSupportZone(
// iZone,
// iObj //
// );
// //
// if (isCreated)
// {
// AddDrawnObject(iObj);
// }
// }
}
//
// Demand Zone ...
if (iEvent == X_DEMAND_ZONE_DETECTED)
{
//
XCDemandZone *iZone;
bool hasZone = GetLastItem(
iZone,
poiState.demandZones //
);
// if (hasZone &&
// drawDemandZones)
// {
// //
// XCDemandZoneObject *iObj;
// bool isCreated = mPOIDrawer.CreateDemandZone(
// iZone,
// iObj //
// );
// //
// if (isCreated)
// {
// AddDrawnObject(iObj);
// }
// }
}
//
// Bullish Order Block ...
if (iEvent == X_BULLISH_ORDERBLOCK_DETECTED)
{
//
XCOrderBlock *iZone;
bool hasZone = GetLastItem(
iZone,
poiState.bullishOrderBlocks //
);
// if (hasZone &&
// drawBullishOrderBlocks)
// {
// //
// XCBullishOrderBlockObject *iObj;
// bool isCreated = mPOIDrawer.CreateBullishOrderBlock(
// iZone,
// iObj //
// );
// //
// if (isCreated)
// {
// AddDrawnObject(iObj);
// }
// }
}
//
// Bullish Fair Value Gap ...
if (iEvent == X_BULLISH_FVG_DETECTED)
{
//
XCFVG *iZone;
bool hasZone = GetLastItem(
iZone,
poiState.bullishFairValueGaps //
);
// if (hasZone &&
// drawBullishFairValueGaps)
// {
// //
// XCBullishFairValueGapObject *iObj;
// bool isCreated = mPOIDrawer.CreateBullishFairValueGap(
// iZone,
// iObj //
// );
// //
// if (isCreated)
// {
// AddDrawnObject(iObj);
// }
// }
}
//
// Resistance Zone ...
if (iEvent == X_RESISTANCE_ZONE_DETECTED)
{
//
XCResistanceZone *iZone;
bool hasZone = GetLastItem(
iZone,
poiState.resistanceZones //
);
// if (hasZone &&
// drawResistanceZones)
// {
// //
// XCResistanceZoneObject *iObj;
// bool isCreated = mPOIDrawer.CreateResistanceZone(
// iZone,
// iObj //
// );
// //
// if (isCreated)
// {
// AddDrawnObject(iObj);
// }
// }
}
//
// Supply Zone ...
if (iEvent == X_SUPPLY_ZONE_DETECTED)
{
//
XCSupplyZone *iZone;
bool hasZone = GetLastItem(
iZone,
poiState.supplyZones //
);
// if (hasZone &&
// drawSupplyZones)
// {
// //
// XCSupplyZoneObject *iObj;
// bool isCreated = mPOIDrawer.CreateSupplyZone(
// iZone,
// iObj //
// );
// //
// if (isCreated)
// {
// AddDrawnObject(iObj);
// }
// }
}
//
// Bearish Order Block ...
if (iEvent == X_BEARISH_ORDERBLOCK_DETECTED)
{
//
XCOrderBlock *iZone;
bool hasZone = GetLastItem(
iZone,
poiState.bearishOrderBlocks //
);
// if (hasZone &&
// drawBearishOrderBlocks)
// {
// //
// XCBearishOrderBlockObject *iObj;
// bool isCreated = mPOIDrawer.CreateBearishOrderBlock(
// iZone,
// iObj //
// );
// //
// if (isCreated)
// {
// AddDrawnObject(iObj);
// }
// }
}
//
// Bearish Fair Value Gap ...
if (iEvent == X_BEARISH_FVG_DETECTED)
{
//
XCFVG *iZone;
bool hasZone = GetLastItem(
iZone,
poiState.bearishFairValueGaps //
);
// if (hasZone &&
// drawBearishFairValueGaps)
// {
// //
// XCBearishFairValueGapObject *iObj;
// bool isCreated = mPOIDrawer.CreateBearishFairValueGap(
// iZone,
// iObj //
// );
// //
// if (isCreated)
// {
// AddDrawnObject(iObj);
// }
// }
}
}
//
// Update Drawn Objects ...
ReDrawPOIState(
poiState //
);
//
// Print(msg);
}
/**
* Calculate Valid Vales and Peaks ...
*
* @param bar_index: Integer, current Bar Index ...
*/
void CalculateValidPeaksAndVales(
int bar_index,
int prevCalculated //
)
{
//
int minRepetition = 40;
int maxAllowedLoopbackBars = 576;
//
int barIndex = bar_index;
int start = barIndex;
int end = start + maxAllowedLoopbackBars;
//
double peak = 0;
int peakRepeate = 0;
int peakToBarIndex = 0;
int peakFromBarIndex = 0;
//
double vale = 0;
int valeRepeate = 0;
int valeToBarIndex = 0;
int valeFromBarIndex = 0;
//
bool canLookupPeak = true;
bool canLookupVale = true;
bool canLookup = true;
//
while (canLookup)
{
//
// Check Peak ...
if (canLookupPeak)
{
//
double iPeak = peaksBuffer[barIndex];
if (iPeak != peak)
{
//
if (peak != 0 &&
peakRepeate >= minRepetition)
{
//
canLookupPeak = false;
}
else
{
//
peak = iPeak;
peakRepeate = 0;
peakFromBarIndex = 0;
peakToBarIndex = barIndex;
}
}
else if (iPeak == peak)
{
//
peakRepeate++;
peakFromBarIndex = barIndex;
}
}
//
// Check Vale ...
if (canLookupVale)
{
//
double iVale = valesBuffer[barIndex];
if (iVale != vale)
{
//
if (vale != 0 &&
valeRepeate >= minRepetition)
{
canLookupVale = false;
}
else
{
//
vale = iVale;
valeRepeate = 0;
valeFromBarIndex = 0;
valeToBarIndex = barIndex;
}
}
else if (iVale == vale)
{
//
valeRepeate++;
valeFromBarIndex = barIndex;
}
}
//
canLookup = barIndex < end &&
(canLookupPeak ||
canLookupVale);
if (canLookup)
{
barIndex++;
}
}
//
if (!canLookupPeak)
{
validPeaksBuffer[bar_index] = peak;
}
else
{
//
double lastValidPeak = prevCalculated == 0
? 0
: validPeaksBuffer[bar_index + 1];
//
validPeaksBuffer[bar_index] = lastValidPeak;
}
//
if (!canLookupVale)
{
validValesBuffer[bar_index] = vale;
}
else
{
//
double lastValidVale = prevCalculated == 0
? 0
: validValesBuffer[bar_index + 1];
//
validValesBuffer[bar_index] = lastValidVale;
}
}
//
// Draw Functions ...
/**
* Add Drawn Specified Object to Collection ...
*/
void AddDrawnObject(XCBaseObject *object)
{
//
string name = object.ObjName();
//
bool canAdd = true;
int count = mDrawnObjects.Total();
if (IsValidSize(count))
{
//
for (int i = 0; i < count; i++)
{
//
string iName = ((XCBaseObject *)mDrawnObjects.At(i)).ObjName();
//
if (name == iName)
{
//
canAdd = false;
break;
}
}
}
//
if (canAdd)
{
mDrawnObjects.Add(object);
}
}
/**
* Update Drawn Objects ...
*/
void UpdateDrawnObjects()
{
//
int count = mDrawnObjects.Total();
if (!IsValidSize(count))
{
return;
}
//
// Loop Through Drawn Objects ...
// TODO: Implement this ...
}
/**
* ReDraw State POI ...
*
* @param state: XPOIState instance
*/
void ReDrawPOIState(
XPOIState &state,
bool forceUpdateZones = true,
bool clearDraws = false //
)
{
//
if (!showPOIs ||
!state.IsValid() ||
!state.HasChild())
{
return;
}
//
// Clear Draws ...
if (clearDraws)
{
mDrawnObjects.Clear();
}
//
datetime cTime = TimeCurrent();
//
int swingHighsCount = state.CountSwingHighs();
if (drawSwingHighs && IsValidSize(swingHighsCount))
{
//
for (int i = 0; i < swingHighsCount; i++)
{
//
XCSwing *iSwing = state.swingHighs[i];
XCSwingHighObject *iObj;
bool isCreated = mPOIDrawer.CreateSwingHigh(
iSwing,
iObj //
);
//
if (isCreated)
{
AddDrawnObject(iObj);
}
}
}
//
int swingLowsCount = state.CountSwingLows();
if (drawSwingLows && IsValidSize(swingLowsCount))
{
//
for (int i = 0; i < swingLowsCount; i++)
{
//
XCSwing *iSwing = state.swingLows[i];
XCSwingLowObject *iObj;
bool isCreated = mPOIDrawer.CreateSwingLow(
iSwing,
iObj //
);
//
if (isCreated)
{
AddDrawnObject(iObj);
}
}
}
//
int supportZonesCount = state.CountSupportZones();
if (drawSupportZones &&
IsValidSize(supportZonesCount))
{
//
for (int i = 0; i < supportZonesCount; i++)
{
//
XCSupportZone *iZone = state.supportZones[i];
if (forceUpdateZones)
{
iZone.To(cTime);
}
XCSupportZoneObject *iObj;
bool isCreated = mPOIDrawer.CreateSupportZone(
iZone,
iObj //
);
//
if (isCreated)
{
AddDrawnObject(iObj);
}
}
}
//
int resistanceZonesCount = state.CountResistanceZones();
if (drawResistanceZones &&
IsValidSize(resistanceZonesCount))
{
//
for (int i = 0; i < resistanceZonesCount; i++)
{
//
XCResistanceZone *iZone = state.resistanceZones[i];
if (forceUpdateZones)
{
iZone.To(cTime);
}
XCResistanceZoneObject *iObj;
bool isCreated = mPOIDrawer.CreateResistanceZone(
iZone,
iObj //
);
//
if (isCreated)
{
AddDrawnObject(iObj);
}
}
}
//
int supplyZonesCount = state.CountSupplyZones();
if (drawSupplyZones &&
IsValidSize(supplyZonesCount))
{
//
for (int i = 0; i < supplyZonesCount; i++)
{
//
XCSupplyZone *iZone = state.supplyZones[i];
if (forceUpdateZones)
{
iZone.To(cTime);
}
XCSupplyZoneObject *iObj;
bool isCreated = mPOIDrawer.CreateSupplyZone(
iZone,
iObj //
);
//
if (isCreated)
{
AddDrawnObject(iObj);
}
}
}
//
int demandZonesCount = state.CountDemandZones();
if (drawDemandZones &&
IsValidSize(demandZonesCount))
{
//
for (int i = 0; i < demandZonesCount; i++)
{
//
XCDemandZone *iZone = state.demandZones[i];
if (forceUpdateZones)
{
iZone.To(cTime);
}
XCDemandZoneObject *iObj;
bool isCreated = mPOIDrawer.CreateDemandZone(
iZone,
iObj //
);
//
if (isCreated)
{
AddDrawnObject(iObj);
}
}
}
//
int bullishOrderBlocksCount = state.CountBullishOrderBlocks();
if (drawBullishOrderBlocks &&
IsValidSize(bullishOrderBlocksCount))
{
//
for (int i = 0; i < bullishOrderBlocksCount; i++)
{
//
XCOrderBlock *iZone = state.bullishOrderBlocks[i];
if (forceUpdateZones)
{
iZone.To(cTime);
}
XCBullishOrderBlockObject *iObj;
bool isCreated = mPOIDrawer.CreateBullishOrderBlock(
iZone,
iObj //
);
//
if (isCreated)
{
AddDrawnObject(iObj);
}
}
}
//
int bearishOrderBlocksCount = state.CountBearishOrderBlocks();
if (drawBearishOrderBlocks &&
IsValidSize(bearishOrderBlocksCount))
{
//
for (int i = 0; i < bearishOrderBlocksCount; i++)
{
//
XCOrderBlock *iZone = state.bearishOrderBlocks[i];
if (forceUpdateZones)
{
iZone.To(cTime);
}
XCBearishOrderBlockObject *iObj;
bool isCreated = mPOIDrawer.CreateBearishOrderBlock(
iZone,
iObj //
);
//
if (isCreated)
{
AddDrawnObject(iObj);
}
}
}
//
int bullishFairValueGapsCount = state.CountBullishFairValueGaps();
if (drawBullishFairValueGaps &&
IsValidSize(bullishFairValueGapsCount))
{
//
for (int i = 0; i < bullishFairValueGapsCount; i++)
{
//
XCFVG *iZone = state.bullishFairValueGaps[i];
if (forceUpdateZones)
{
iZone.To(cTime);
}
XCBullishFairValueGapObject *iObj;
bool isCreated = mPOIDrawer.CreateBullishFairValueGap(
iZone,
iObj //
);
//
if (isCreated)
{
AddDrawnObject(iObj);
}
}
}
//
int bearishFairValueGapsCount = state.CountBearishFairValueGaps();
if (drawBearishFairValueGaps &&
IsValidSize(bearishFairValueGapsCount))
{
//
for (int i = 0; i < bearishFairValueGapsCount; i++)
{
//
XCFVG *iZone = state.bearishFairValueGaps[i];
if (forceUpdateZones)
{
iZone.To(cTime);
}
XCBearishFairValueGapObject *iObj;
bool isCreated = mPOIDrawer.CreateBearishFairValueGap(
iZone,
iObj //
);
//
if (isCreated)
{
AddDrawnObject(iObj);
}
}
}
//
int bullishRejectionBarsCount = state.CountBullishRejectionBars();
if (drawBullishRejectionBars &&
IsValidSize(bullishRejectionBarsCount))
{
//
for (int i = 0; i < bullishRejectionBarsCount; i++)
{
//
XCRejectionBar *iRejectionBar = state.bullishRejectionBars[i];
XCBullishRejectionBarObject *iObj;
bool isCreated = mPOIDrawer.CreateBullishRejectionBar(
iRejectionBar,
iObj //
);
//
if (isCreated)
{
AddDrawnObject(iObj);
}
}
}
//
int bearishRejectionBarsCount = state.CountBearishRejectionBars();
if (drawBearishRejectionBars &&
IsValidSize(bearishRejectionBarsCount))
{
//
for (int i = 0; i < bearishRejectionBarsCount; i++)
{
//
XCRejectionBar *iRejectionBar = state.bearishRejectionBars[i];
XCBearishRejectionBarObject *iObj;
bool isCreated = mPOIDrawer.CreateBearishRejectionBar(
iRejectionBar,
iObj //
);
//
if (isCreated)
{
AddDrawnObject(iObj);
}
}
}
//
int bullishMomentumBarsCount = state.CountBullishMomentumBars();
if (drawBullishMomentumBars &&
IsValidSize(bullishMomentumBarsCount))
{
//
for (int i = 0; i < bullishMomentumBarsCount; i++)
{
//
XCMomentumBar *iMomentumBar = state.bullishMomentumBars[i];
XCBullishMomentumBarObject *iObj;
bool isCreated = mPOIDrawer.CreateBullishMomentumBar(
iMomentumBar,
iObj //
);
//
if (isCreated)
{
AddDrawnObject(iObj);
}
}
}
//
int bearishMomentumBarsCount = state.CountBearishMomentumBars();
if (drawBearishMomentumBars &&
IsValidSize(bearishMomentumBarsCount))
{
//
for (int i = 0; i < bearishMomentumBarsCount; i++)
{
//
XCMomentumBar *iMomentumBar = state.bearishMomentumBars[i];
XCBearishMomentumBarObject *iObj;
bool isCreated = mPOIDrawer.CreateBearishMomentumBar(
iMomentumBar,
iObj //
);
//
if (isCreated)
{
AddDrawnObject(iObj);
}
}
}
}
//