/////////////////////////////////////////////////////// // // SaherElm IT Center MQL5 Class Library // -------------------------------------- // Name: XCX121SMCTestStrategy // Description: provides all based classes for use ... // // // Maintainer: // ------------ // Hadi Khazaee Asl (hadi_khazaee_asl@yahoo.com) // ////////////////////////////////////////////////////// // // Global Properties ... #property library #property copyright "Copyright 2023, SaherElm IT Center" #property link "https://www.saherelm.ir" #property version "1.00" #property strict // // Imports ... // #include "../Classes/x-121.smc.base.strategy.class.mq5" #include "../Classes/x-121.smc.market.cycle.helper.class.mq5" // // Definitions ... // // XStrategy Class Implementation(s) ... class XCX121SMCTestStrategy : public XCX121SMCBaseStrategy { // // Public ... public: // // // Constructor(s) ... void XCX121SMCTestStrategy( // // Base ... string _symbol, // Trading Symbol ENUM_TIMEFRAMES _period // Trading TimeFrame ) : XCX121SMCBaseStrategy(_symbol, _period) { InitialHelpers(); } // // Deconstructur ... void ~XCX121SMCTestStrategy() { } // // Overrides Actions ... /** * Destroy All Class Implementations ... */ void Destroy() override { // delete mTriggerCycleHelper; delete mDecisionCycleHelper; delete mAnalyseCycleHelper; delete mVerificationCycleHelper; delete mConsolidationCycleHelper; delete mVisionCycleHelper; } /** * Check Conditions For Signal ... */ bool HasSignal( XSignal &signal, X121SMCStrategyConditions &conditions // ) override { // bool result = false; // signal.Clean(); conditions.Clean(); // int pushers = 0; // double sl = 0; double tp = 0; double risk = 0; double entry = 0; double reward = 0; double r2r = R2R(); string provider = ""; double volume = Volume(); ENUM_POSITION_TYPE type = POSITION_TYPE_BUY; ENUM_X_ORDER_MODES mode = X_ORDER_MODE_MARKET; // bool hasLong = false; bool hasShort = false; // double selectedSL = 0; // // Start Calculations ... // // Retrieve Common Data ... string symbol = GetSymbol(); ENUM_TIMEFRAMES period = GetPeriod(); // // Required Value For SL/TP Calculations ... double points = GetPoints(symbol); double pip = GetPipPrice(symbol); double pip2 = 2 * pip; // // Retrieve and Fill Cycle Conditions ... result = GetCyclesConditions(conditions); if (!result) { // conditions.Clean(); return result; } // // Check Spread for Signalling Conditions ... bool isSpreadPassed = IsSpreadPass(); result = isSpreadPassed; if (!result) { // conditions.Clean(); return result; } // // Detect Signal Conditions ... bool hasSignal = false; // bool hasSMPVSignal = false; bool hasRJBPVSignal = false; bool hasVWAPCSignal = false; bool hasTestSignal = false; // // X_121_SMC_PROVIDER_SMPV ... if (!hasSignal) { // // hasSMPVSignal = DetectSamePeaksAndValesSignal(conditions); // hasSignal = hasSMPVSignal; } // // X_121_SMC_PROVIDER_RJBPV ... if (!hasSignal) { // // // hasRJBPVSignal = DetectRJBPVSignal(conditions); // hasSignal = hasRJBPVSignal; } // // X_121_SMC_PROVIDER_VWAPC ... if (!hasSignal) { // // // hasVWAPCSignal = DetectVWAPCSignal(conditions); // hasSignal = hasVWAPCSignal; } // if (!hasSignal) { // hasTestSignal = DetectTestSignal(conditions); hasSignal = hasTestSignal; } // result = hasSignal; if (!result) { // conditions.Clean(); return result; } // // Combine all Signals Conditions ... selectedSL = conditions.sl; provider = conditions.provider; // hasLong = // IsBullish(conditions.signalDir) // ; // hasShort = // IsBearish(conditions.signalDir) // ; // result = hasLong || hasShort; // // Rmove Signal Condition ... if (result) { // // TYPE ... type = hasLong ? POSITION_TYPE_BUY : POSITION_TYPE_SELL; ENUM_X_POSITION_TYPES xType = hasLong ? X_POSITION_TYPE_LONG : X_POSITION_TYPE_SHORT; // entry = GetEntry( conditions.symbol, type // ); // double slAddition = 0; sl = hasLong ? selectedSL - slAddition : selectedSL + slAddition; // // RISK Reward ... risk = hasLong ? entry - sl : sl - entry; reward = risk * r2r; tp = hasLong ? entry + reward : entry - reward; // signal.sl = sl; signal.tp = tp; signal.type = type; signal.mode = mode; signal.entry = entry; signal.volume = volume; signal.symbol = symbol; signal.period = period; signal.pushers = pushers; signal.provider = provider; signal.time = TimeCurrent(); // result = PrepareSignal(signal); if (result) { DrawSignal(signal); } // hasLong = false; hasShort = false; } // return result; } /** * Customize Strategy Identifier ... */ string GetTag() override { return X121SMCStrategyToken; } // // Protected ... protected: // // // Props ... // // Trigger Order Flow ... XPVPivot mOrderFlow[]; ENUM_X_DIRECTION mOrderFlowDir; // ENUM_X_CYCLE_EVENTS mTriggerCycleEvents[]; XC121SMCCycleHelper *mTriggerCycleHelper; // ENUM_X_CYCLE_EVENTS mDecisionCycleEvents[]; XC121SMCCycleHelper *mDecisionCycleHelper; // ENUM_X_CYCLE_EVENTS mAnalyseCycleEvents[]; XC121SMCCycleHelper *mAnalyseCycleHelper; // ENUM_X_CYCLE_EVENTS mVerificationCycleEvents[]; XC121SMCCycleHelper *mVerificationCycleHelper; // ENUM_X_CYCLE_EVENTS mConsolidationCycleEvents[]; XC121SMCCycleHelper *mConsolidationCycleHelper; // ENUM_X_CYCLE_EVENTS mVisionCycleEvents[]; XC121SMCCycleHelper *mVisionCycleHelper; // // Actions ... /** * Retrieve Cycles Conditions ... * * @param conditions: X121SMCStrategyConditions instance Reference ... * * @return ( bool ) */ bool GetCyclesConditions( X121SMCStrategyConditions &conditions // ) { // bool result = false; // string symbol = GetSymbol(); ENUM_TIMEFRAMES period = GetPeriod(); // int zIndex = 0; int cIndex = zIndex + 1; int pIndex = cIndex + 1; int ppIndex = pIndex + 1; // datetime cTime = TimeCurrent(); // conditions.time = cTime; conditions.symbol = symbol; conditions.period = period; // int conditionsLoopback = 7; // // Fill Cycles Conditions ... // // Trigger ... result = mTriggerCycleHelper.GetConditions( mTriggerCycleEvents, conditions.triggerConditions, zIndex, conditionsLoopback // ); if (!result) { // conditions.Clean(); return result; } conditions.triggerConditions.state = mTriggerState; // // Decision ... result = mDecisionCycleHelper.GetConditions( mDecisionCycleEvents, conditions.decisionConditions, zIndex, conditionsLoopback // ); if (!result) { // conditions.Clean(); return result; } conditions.decisionConditions.state = mDecisionState; // // Analyse ... result = mAnalyseCycleHelper.GetConditions( mAnalyseCycleEvents, conditions.analyseConditions, zIndex, conditionsLoopback // ); if (!result) { // conditions.Clean(); return result; } conditions.analyseConditions.state = mAnalyseState; // // Verification ... result = mVerificationCycleHelper.GetConditions( mVerificationCycleEvents, conditions.verificationConditions, zIndex, conditionsLoopback // ); if (!result) { // conditions.Clean(); return result; } conditions.verificationConditions.state = mVerificationState; // // Consolidation ... result = mConsolidationCycleHelper.GetConditions( mConsolidationCycleEvents, conditions.consolidationConditions, zIndex, conditionsLoopback // ); if (!result) { // conditions.Clean(); return result; } conditions.consolidationConditions.state = mConsolidationState; // // Vision ... result = mVisionCycleHelper.GetConditions( mVisionCycleEvents, conditions.visionConditions, zIndex, conditionsLoopback // ); if (!result) { // conditions.Clean(); return result; } conditions.visionConditions.state = mVisionState; // return result; } // // Signalling Functions ... // // TODO: Remove this ... XSMCStrategySetupConditions mTestConditions; bool DetectTestSignal( X121SMCStrategyConditions &conditions // ) { // bool result = false; // string symbol = GetSymbol(); ENUM_TIMEFRAMES period = GetPeriod(); // ENUM_X_121_SMC_PROVIDERS provider = X_121_SMC_PROVIDER_SMPV; string providerStr = ToString(provider); // int zIndex = 0; int cIndex = zIndex + 1; int pIndex = cIndex + 1; int ppIndex = pIndex + 1; // XOHCL zBar; result = zBar.Init( symbol, period, zIndex // ); if (!result) { return result; } // XOHCL cBar; result = cBar.Init( symbol, period, cIndex // ); if (!result) { return result; } // bool isBullish = false; bool isBearish = false; // double ask = GetAsk(symbol); double bid = GetBid(symbol); datetime cTime = TimeCurrent(); // double ll = cBar.FindLowest(9, MODE_LOW); double hh = cBar.FindHighest(9, MODE_HIGH); // double selectedSL = 0; // X121SMCCycleConditions triggerConditions = conditions.triggerConditions; X121SMCCycleConditions decisionConditions = conditions.decisionConditions; X121SMCCycleConditions analyseConditions = conditions.analyseConditions; X121SMCCycleConditions verificationConditions = conditions.verificationConditions; X121SMCCycleConditions consolidationConditions = conditions.consolidationConditions; X121SMCCycleConditions visionConditions = conditions.visionConditions; // XPOIState triggerState = triggerConditions.state; XPOIState decisionState = decisionConditions.state; XPOIState analyseState = analyseConditions.state; XPOIState verificationState = verificationConditions.state; XPOIState consolidationState = consolidationConditions.state; XPOIState visionState = visionConditions.state; // // Retrieve Peak and Vale ... double triggerPeak = triggerConditions.x121Conditions.peaksBuffer[0]; double triggerVale = triggerConditions.x121Conditions.valesBuffer[0]; // int zoneValidationDivider = 10; int validPivotRepetition = mTriggerCycleHelper.mX121Helper .GetDonChainLength(); // datetime setupTime = NULL; bool isSetuped = mTestConditions.IsSetuped(); ENUM_X_DIRECTION setupDir = mTestConditions.dir; if (!isSetuped) { // // Detect Valid Peaks and Vales ... // // Peaks ... XPVPivotPoint validPeak = mTestConditions.validPeak; bool hasValidPeak = validPeak.IsValid(); if (!hasValidPeak) { // // Detecte Valid Peaks ... // XPVPivotPoint triggerValidPeaks[]; int triggerValidPeaksCount = mTriggerCycleHelper .FillPeakPivotPoints(triggerValidPeaks); // bool isValid = IsValidSize(triggerValidPeaksCount); if (isValid) { // // Try to Find ... for (int i = triggerValidPeaksCount - 1; i >= 0; i--) { // XPVPivotPoint iPivot = triggerValidPeaks[i]; double iValue = iPivot.value; // bool isValid = iValue == triggerConditions.x121Conditions.peaksBuffer[0] && iValue == decisionConditions.x121Conditions.peaksBuffer[0] && iValue == analyseConditions.x121Conditions.peaksBuffer[0] && iValue == verificationConditions.x121Conditions.peaksBuffer[0]; if (isValid) { // validPeak = iPivot; break; } } // hasValidPeak = validPeak.IsValid(); if (hasValidPeak) { // mTestConditions.validPeak = validPeak; // if (!mTestConditions.validVale.IsValid()) { // XValueChange valesChanges[]; int valeChangesCount = mTriggerCycleHelper.FillValesChanges(valesChanges); if (IsValidSize(valeChangesCount)) { // XValueChange lastChange = valesChanges[valeChangesCount - 1]; if (lastChange.IsValid()) { // XPVPivotPoint iPivot; iPivot.repetition = 1; iPivot.type = XPV_VALE; iPivot.time = lastChange.time; iPivot.value = lastChange.after; if (iPivot.IsValid()) { mTestConditions.validVale = iPivot; } } } } } } } // // Vales ... XPVPivotPoint validVale = mTestConditions.validVale; bool hasValidVale = validVale.IsValid(); if (!hasValidVale) { // // Detecte Valid Vale ... // XPVPivotPoint triggerValidVales[]; int triggerValidValesCount = mTriggerCycleHelper .FillValePivotPoints(triggerValidVales); // bool isValid = IsValidSize(triggerValidValesCount); if (isValid) { // // Try to Find ... for (int i = triggerValidValesCount - 1; i >= 0; i--) { // XPVPivotPoint iPivot = triggerValidVales[i]; double iValue = iPivot.value; // bool isValid = iValue == triggerConditions.x121Conditions.valesBuffer[0] && iValue == decisionConditions.x121Conditions.valesBuffer[0] && iValue == analyseConditions.x121Conditions.valesBuffer[0] && iValue == verificationConditions.x121Conditions.valesBuffer[0]; if (isValid) { // validVale = iPivot; break; } } // hasValidVale = validVale.IsValid(); if (hasValidVale) { // mTestConditions.validVale = validVale; // if (!mTestConditions.validPeak.IsValid()) { // XValueChange valesChanges[]; int valeChangesCount = mTriggerCycleHelper.FillPeaksChanges(valesChanges); if (IsValidSize(valeChangesCount)) { // XValueChange lastChange = valesChanges[valeChangesCount - 1]; if (lastChange.IsValid()) { // XPVPivotPoint iPivot; iPivot.repetition = 1; iPivot.type = XPV_PEAK; iPivot.time = lastChange.time; iPivot.value = lastChange.after; if (iPivot.IsValid()) { mTestConditions.validPeak = iPivot; } } } } } } } bool hasValidPivot = hasValidPeak && hasValidVale; result = hasValidPivot; if (!result) { return result; } // mTestConditions.peak = triggerPeak; mTestConditions.vale = triggerVale; // // We Sure we Have Valid Peak and Valid Vale ... // Create a Zone ... bool hasZone = mTestConditions.zone.IsValid(); if (!hasZone) { // double pvZoneUpper = validPeak.value; double pvZoneLower = validVale.value; datetime pvZoneFrom = validPeak.time < validVale.time ? validPeak.time : validVale.time; int pvZoneLoopback = iBarShift( symbol, period, pvZoneFrom // ); // XConsolidationZone pvZone; result = pvZone.Init( symbol, period, pvZoneUpper, pvZoneLower, pvZoneLoopback // ); if (!result) { return result; } // mTestConditions.zone = pvZone; hasZone = mTestConditions.zone.IsValid(); } if (hasZone) { // // Update Zone ... mTestConditions.UpdateZone(); // XCConsolidationZoneObject *iPVZoneObj; iPVZoneObj = new XCConsolidationZoneObject(); bool isCreated = iPVZoneObj.Create( mPOIDrawer.ChartIdentification(), mPOIDrawer.SubWindowIdentification(), mTestConditions.zone // ); if (isCreated) { // iPVZoneObj.ZoneWidth(4); iPVZoneObj.ZoneColor(clrGold); // AddObjectIfNotExists(iPVZoneObj); } } // // Here we Have to Check Price Go into Zone ... bool isZoneBreaked = mTestConditions.zone.IsBreaked(); result = isZoneBreaked; if (!result) { return result; } // isSetuped = true; setupTime = cTime; mTestConditions.setupTime = setupTime; setupDir = mTestConditions.zone.breakDirection; mTestConditions.dir = setupDir; } // // Setup Forms ... bool canTrigger = mTestConditions.CanTrigger(); if (!canTrigger) { // // Check Trigger Consitions ... if (cTime - setupTime > 2400) { // ClearDraws(); // mTestConditions.Clean(); return false; } // // // canTrigger = true; // mTestConditions.triggerTime = cTime; } // // Issues Signal on Conditions ... // conditions.signalDir = mTestConditions.dir; // conditions.provider = providerStr; // conditions.sl = mTestConditions.sl; // // mTestConditions.Clean(); // return result; } // // Private ... private: // // Props ... /** * Initial Required Indicators Helper ... */ void InitialHelpers() { // string symbol = GetSymbol(); ENUM_TIMEFRAMES period = GetPeriod(); // // Short ... ENUM_X_PERIOD_METHOD scMethod = X_PERIOD_AUTO; // How to Find Period ENUM_TIMEFRAMES scPeriod = NULL; // Time Period // // Medium ... ENUM_X_PERIOD_METHOD mcMethod = X_PERIOD_AUTO; // How to Find Period ENUM_TIMEFRAMES mcPeriod = NULL; // Time Period // // Long ... ENUM_X_PERIOD_METHOD lcMethod = X_PERIOD_AUTO; // How to Find Period ENUM_TIMEFRAMES lcPeriod = NULL; // Time Period // // Hind ... ENUM_X_PERIOD_METHOD hcMethod = X_PERIOD_AUTO; // How to Find Period ENUM_TIMEFRAMES hcPeriod = NULL; // Time Period // // XPV ... X121Inputs x121Inputs; // x121Inputs.Default(); // x121Inputs.scMethod = scMethod; x121Inputs.scPeriod = scPeriod; x121Inputs.mcMethod = mcMethod; x121Inputs.mcPeriod = mcPeriod; x121Inputs.lcMethod = lcMethod; x121Inputs.lcPeriod = lcPeriod; x121Inputs.hcMethod = hcMethod; x121Inputs.hcPeriod = hcPeriod; // // Initialize Cycle Helpers ... // mTriggerCycleHelper = new XC121SMCCycleHelper(); mTriggerCycleHelper.Init( symbol, PERIOD_M1, x121Inputs // ); // mDecisionCycleHelper = new XC121SMCCycleHelper(); mDecisionCycleHelper.Init( symbol, PERIOD_M5, x121Inputs // ); // mAnalyseCycleHelper = new XC121SMCCycleHelper(); mAnalyseCycleHelper.Init( symbol, PERIOD_M15, x121Inputs // ); // mVerificationCycleHelper = new XC121SMCCycleHelper(); mVerificationCycleHelper.Init( symbol, PERIOD_M30, x121Inputs // ); // mConsolidationCycleHelper = new XC121SMCCycleHelper(); mConsolidationCycleHelper.Init( symbol, PERIOD_H1, x121Inputs // ); // mVisionCycleHelper = new XC121SMCCycleHelper(); mVisionCycleHelper.Init( symbol, PERIOD_H4, x121Inputs // ); } // // SL Selector Methods ... /** * Select Specified Type of Stop Loss ... * * @param conditions: X121SMCStrategyConditions instance Reference ... * @param forDir: ENUM_X_DIRECTION member, Signal Direction ... * @param type: ENUM_X_121_SMC_SL_TYPES member, Specified Required SL Type ... * * @return ( double ) */ double SelectSL( X121SMCStrategyConditions &conditions, ENUM_X_DIRECTION forDir, ENUM_X_121_SMC_SL_TYPES type // ) { // double result = 0; // string symbol = GetSymbol(); ENUM_TIMEFRAMES period = GetPeriod(); // bool isValid = // HasDirection(forDir) && conditions.IsValid() && type != X_121_SMC_SL_TYPE_NONE // ; if (!isValid) { return result; } // XOHCL zBar; bool isInited = zBar.Init( symbol, period, 0 // ); if (!isInited) { return result; } // bool isBullish = IsBullish(forDir); // if (type == X_121_SMC_SL_TYPE_FIBO_LEVEL_3) { result = conditions.triggerConditions.x121Conditions.fl3Buffer[0]; } else if (type == X_121_SMC_SL_TYPE_FIBO_LEVEL_1_5) { // result = isBullish ? conditions.triggerConditions.x121Conditions.fl1Buffer[0] : conditions.triggerConditions.x121Conditions.fl5Buffer[0]; } else if (type == X_121_SMC_SL_TYPE_DON_CLOSE_BOX) { // result = isBullish ? conditions.triggerConditions.x121Conditions.donCloseLowerBuffer[0] : conditions.triggerConditions.x121Conditions.donCloseUpperBuffer[0]; } else if (type == X_121_SMC_SL_TYPE_SWING) { // int swingLowsCount = conditions.triggerConditions.state.CountSwingLows(); int swingHighsCount = conditions.triggerConditions.state.CountSwingHighs(); result = isBullish ? conditions.triggerConditions.state.swingLows[swingLowsCount - 1].GetValue() : conditions.triggerConditions.state.swingHighs[swingHighsCount - 1].GetValue(); } else if (type == X_121_SMC_SL_TYPE_REJECTION) { // result = isBullish ? conditions.triggerConditions.state.bullishRejectionBars[conditions.triggerConditions.state.CountBullishRejectionBars() - 1].Lower() : conditions.triggerConditions.state.bearishRejectionBars[conditions.triggerConditions.state.CountBearishRejectionBars() - 1].Upper(); } else if (type == X_121_SMC_SL_TYPE_MOMENTUM) { // result = isBullish ? conditions.triggerConditions.state.bullishMomentumBars[conditions.triggerConditions.state.CountBullishMomentumBars() - 1].Lower() : conditions.triggerConditions.state.bearishMomentumBars[conditions.triggerConditions.state.CountBearishMomentumBars() - 1].Upper(); } else if (type == X_121_SMC_SL_TYPE_VWAP_FAST) { result = conditions.triggerConditions.x121Conditions.vwapFastBuffer[0]; } else if (type == X_121_SMC_SL_TYPE_VWAP_MID) { result = conditions.triggerConditions.x121Conditions.vwapMidBuffer[0]; } else if (type == X_121_SMC_SL_TYPE_VWAP_SLOW) { result = conditions.triggerConditions.x121Conditions.vwapSlowBuffer[0]; } else if (type == X_121_SMC_SL_TYPE_CURRENT_SAR) { result = conditions.triggerConditions.x121Conditions.sarBuffer[0]; } else if (type == X_121_SMC_SL_TYPE_TENKAN_SEN) { // double hh = zBar.FindHighest( 9, MODE_HIGH // ); double ll = zBar.FindLowest( 9, MODE_LOW // ); double mid = (hh - ll) / 2; result = isBullish ? ll - mid : hh + mid; } else if (type == X_121_SMC_SL_TYPE_CURRENT_SAR_BOX || type == X_121_SMC_SL_TYPE_LAST_SAR_CHANGED_BAR || type == X_121_SMC_SL_TYPE_LAST_DIRECTIONAL_SAR) { // XOHCL cSarChangeBar; XOHCL pSarChangeBar; XValueChange cSarChange; // Current Sar Change (IsDirect) ... XValueChange pSarChange; // Prev Sar Change (Direct) ... XValueChange sarChanges[]; int sarChangesCount = mTriggerCycleHelper .FillSarChanges(sarChanges); if (!IsValidSize(sarChangesCount) || sarChangesCount < 2) { return result; } // // cSarChange = sarChanges[sarChangesCount - 1]; pSarChange = sarChanges[sarChangesCount - 2]; // bool isFilled = cSarChange.FillBar( cSarChangeBar, symbol, period // ); if (!isFilled) { return result; } // isFilled = pSarChange.FillBar( pSarChangeBar, symbol, period // ); if (!isFilled) { return result; } // if (type == X_121_SMC_SL_TYPE_LAST_SAR_CHANGED_BAR) { // result = isBullish ? pSarChangeBar.low : pSarChangeBar.high; } else if (type == X_121_SMC_SL_TYPE_CURRENT_SAR_BOX) { // result = isBullish ? zBar.FindLowest( MathAbs(cSarChangeBar.Index() - 1), MODE_LOW // ) : zBar.FindHighest( MathAbs(cSarChangeBar.Index() - 1), MODE_HIGH // ); } else if (type == X_121_SMC_SL_TYPE_LAST_DIRECTIONAL_SAR) { // XOHCL prevBar; bool isInited = cSarChangeBar.GetPreviousBar(prevBar); if (!isInited) { return result; } // result = isBullish ? prevBar.low : prevBar.high; } } // return result; } // // Drawing Functions ... /** * Draw Pivot ... * * @param pivot: XPVPivot instance Reference ... */ void DrawPivot(XPVPivot &pivot) { // if (!pivot.IsValid()) { return; } // XCXPVPivotObject *iObj; iObj = new XCXPVPivotObject(); bool isCreated = iObj.Create( mPOIDrawer.ChartIdentification(), mPOIDrawer.SubWindowIdentification(), pivot // ); if (isCreated) { // if (pivot.IsPeak()) { // iObj.PivotWidth(1); iObj.PivotFill(false); iObj.PivotColor(clrAqua); iObj.PivotStyle(STYLE_SOLID); } // if (pivot.IsVale()) { // iObj.PivotWidth(1); iObj.PivotFill(false); iObj.PivotStyle(STYLE_SOLID); iObj.PivotColor(clrMagenta); } // AddObjectIfNotExists(iObj); } } /** * Custom Drawing State ... * * @param state: XPOIState instance reference, Specified Which state to Draw ... * @param forceDrawSamePeriod: Boolean ... */ void CustomStateDrawing( XPOIState &state, bool forceDrawSamePeriod = false, ENUM_X_DIRECTION forDir = X_DIRECTION_NONE, // // Ignores List ... bool ignoreSwingHighs = false, bool ignoreSwingLows = false, bool ignoreSupportZones = false, bool ignoreResistanceZones = false, bool ignoreSupplyZones = false, bool ignoreDemandZones = false, bool ignoreBullishOrderBlocks = false, bool ignoreBearishOrderBlocks = false, bool ignoreBullishFairValueGaps = false, bool ignoreBearishFairValueGaps = false, bool ignoreBullishRejectionBars = false, bool ignoreBearishRejectionBars = false, bool ignoreBullishMomentumBars = false, bool ignoreBearishMomentumBars = false // ) { // XPOIState tmpState = state; if (forceDrawSamePeriod) { // int count = 0; ENUM_TIMEFRAMES period = GetPeriod(); // count = state.CountSwingHighs(); if (IsValidSize(count)) { // for (int i = 0; i < count; i++) { // XCSwing iSwing = state.swingHighs[i]; // XOHCL iBar; bool isFilled = iSwing.FillBar(iBar); if (!isFilled) { continue; } // bool isSamePeriod = iBar.period == period; if (!isSamePeriod) { // ArrayRemove( tmpState.swingHighs, i, 1 // ); } } } // count = state.CountSwingLows(); if (IsValidSize(count)) { // for (int i = 0; i < count; i++) { // XCSwing iSwing = state.swingLows[i]; // XOHCL iBar; bool isFilled = iSwing.FillBar(iBar); if (!isFilled) { continue; } // bool isSamePeriod = iBar.period == period; if (!isSamePeriod) { // ArrayRemove( tmpState.swingLows, i, 1 // ); } } } // count = state.CountBullishMomentumBars(); if (IsValidSize(count)) { // for (int i = 0; i < count; i++) { // XCMomentumBar iMomentum = state.bullishMomentumBars[i]; // XOHCL iBar; bool isFilled = iMomentum.FillBar(iBar); if (!isFilled) { continue; } // bool isSamePeriod = iBar.period == period; if (!isSamePeriod) { // ArrayRemove( tmpState.bullishMomentumBars, i, 1 // ); } } } // count = state.CountBearishMomentumBars(); if (IsValidSize(count)) { // for (int i = 0; i < count; i++) { // XCMomentumBar iMomentum = state.bearishMomentumBars[i]; // XOHCL iBar; bool isFilled = iMomentum.FillBar(iBar); if (!isFilled) { continue; } // bool isSamePeriod = iBar.period == period; if (!isSamePeriod) { // ArrayRemove( tmpState.bearishMomentumBars, i, 1 // ); } } } // count = state.CountBullishRejectionBars(); if (IsValidSize(count)) { // for (int i = 0; i < count; i++) { // XCRejectionBar iRejection = state.bullishRejectionBars[i]; // XOHCL iBar; bool isFilled = iRejection.FillBar(iBar); if (!isFilled) { continue; } // bool isSamePeriod = iBar.period == period; if (!isSamePeriod) { // ArrayRemove( tmpState.bullishRejectionBars, i, 1 // ); } } } // count = state.CountBearishRejectionBars(); if (IsValidSize(count)) { // for (int i = 0; i < count; i++) { // XCRejectionBar iRejection = state.bearishRejectionBars[i]; // XOHCL iBar; bool isFilled = iRejection.FillBar(iBar); if (!isFilled) { continue; } // bool isSamePeriod = iBar.period == period; if (!isSamePeriod) { // ArrayRemove( tmpState.bearishRejectionBars, i, 1 // ); } } } // count = state.CountSupportZones(); if (IsValidSize(count)) { // for (int i = 0; i < count; i++) { // XCSupportZone iZone = state.supportZones[i]; // XOHCL iBar; bool isFilled = iZone.FillBar(iBar); if (!isFilled) { continue; } // bool isSamePeriod = iBar.period == period; if (!isSamePeriod) { // ArrayRemove( tmpState.supportZones, i, 1 // ); } } } // count = state.CountResistanceZones(); if (IsValidSize(count)) { // for (int i = 0; i < count; i++) { // XCResistanceZone iZone = state.resistanceZones[i]; // XOHCL iBar; bool isFilled = iZone.FillBar(iBar); if (!isFilled) { continue; } // bool isSamePeriod = iBar.period == period; if (!isSamePeriod) { // ArrayRemove( tmpState.resistanceZones, i, 1 // ); } } } // count = state.CountSupplyZones(); if (IsValidSize(count)) { // for (int i = 0; i < count; i++) { // XCSupplyZone iZone = state.supplyZones[i]; // XOHCL iBar; bool isFilled = iZone.FillBar(iBar); if (!isFilled) { continue; } // bool isSamePeriod = iBar.period == period; if (!isSamePeriod) { // ArrayRemove( tmpState.supplyZones, i, 1 // ); } } } // count = state.CountDemandZones(); if (IsValidSize(count)) { // for (int i = 0; i < count; i++) { // XCDemandZone iZone = state.demandZones[i]; // XOHCL iBar; bool isFilled = iZone.FillBar(iBar); if (!isFilled) { continue; } // bool isSamePeriod = iBar.period == period; if (!isSamePeriod) { // ArrayRemove( tmpState.demandZones, i, 1 // ); } } } // count = state.CountBullishOrderBlocks(); if (IsValidSize(count)) { // for (int i = 0; i < count; i++) { // XCOrderBlock iZone = state.bullishOrderBlocks[i]; // XOHCL iBar; bool isFilled = iZone.FillBar(iBar); if (!isFilled) { continue; } // bool isSamePeriod = iBar.period == period; if (!isSamePeriod) { // ArrayRemove( tmpState.bullishOrderBlocks, i, 1 // ); } } } // count = state.CountBearishOrderBlocks(); if (IsValidSize(count)) { // for (int i = 0; i < count; i++) { // XCOrderBlock iZone = state.bearishOrderBlocks[i]; // XOHCL iBar; bool isFilled = iZone.FillBar(iBar); if (!isFilled) { continue; } // bool isSamePeriod = iBar.period == period; if (!isSamePeriod) { // ArrayRemove( tmpState.bearishOrderBlocks, i, 1 // ); } } } // count = state.CountBullishFairValueGaps(); if (IsValidSize(count)) { // for (int i = 0; i < count; i++) { // XCFVG iZone = state.bullishFairValueGaps[i]; // XOHCL iBar; bool isFilled = iZone.FillStartBar(iBar); if (!isFilled) { continue; } // bool isSamePeriod = iBar.period == period; if (!isSamePeriod) { // ArrayRemove( tmpState.bullishFairValueGaps, i, 1 // ); } } } // count = state.CountBearishFairValueGaps(); if (IsValidSize(count)) { // for (int i = 0; i < count; i++) { // XCFVG iZone = state.bearishFairValueGaps[i]; // XOHCL iBar; bool isFilled = iZone.FillStartBar(iBar); if (!isFilled) { continue; } // bool isSamePeriod = iBar.period == period; if (!isSamePeriod) { // ArrayRemove( tmpState.bearishFairValueGaps, i, 1 // ); } } } // } // bool drawSwingHighs = true; bool drawSwingLows = true; bool drawSupportZones = true; bool drawResistanceZones = true; bool drawSupplyZones = true; bool drawDemandZones = true; bool drawBullishOrderBlocks = true; bool drawBearishOrderBlocks = true; bool drawBullishFairValueGaps = true; bool drawBearishFairValueGaps = true; bool drawBullishRejectionBars = true; bool drawBearishRejectionBars = true; bool drawBullishMomentumBars = true; bool drawBearishMomentumBars = true; // // Change Drawing Specs Conditions based on // Provided Direction ... if (forDir == X_DIRECTION_BULLISH) { // drawSwingLows = true; drawDemandZones = true; drawSupportZones = true; drawBullishOrderBlocks = true; drawBullishFairValueGaps = true; drawBullishRejectionBars = true; drawBullishMomentumBars = true; // drawSwingHighs = false; drawSupplyZones = false; drawResistanceZones = false; drawBearishOrderBlocks = false; drawBearishFairValueGaps = false; drawBearishRejectionBars = false; drawBearishMomentumBars = false; } else if (forDir == X_DIRECTION_BEARISH) { // drawSwingLows = false; drawDemandZones = false; drawSupportZones = false; drawBullishOrderBlocks = false; drawBullishFairValueGaps = false; drawBullishRejectionBars = false; drawBullishMomentumBars = false; // drawSwingHighs = true; drawSupplyZones = true; drawResistanceZones = true; drawBearishOrderBlocks = true; drawBearishFairValueGaps = true; drawBearishRejectionBars = true; drawBearishMomentumBars = true; } // // Apply Ignore List ... // if (ignoreSwingHighs) { drawSwingHighs = false; } // if (ignoreSwingLows) { drawSwingLows = false; } // if (ignoreSupportZones) { drawSupportZones = false; } // if (ignoreResistanceZones) { drawResistanceZones = false; } // if (ignoreSupplyZones) { drawSupplyZones = false; } // if (ignoreDemandZones) { drawDemandZones = false; } // if (ignoreBullishOrderBlocks) { drawBullishOrderBlocks = false; } // if (ignoreBearishOrderBlocks) { drawBearishOrderBlocks = false; } // if (ignoreBullishFairValueGaps) { drawBullishFairValueGaps = false; } // if (ignoreBearishFairValueGaps) { drawBearishFairValueGaps = false; } // if (ignoreBullishRejectionBars) { drawBullishRejectionBars = false; } // if (ignoreBearishRejectionBars) { drawBearishRejectionBars = false; } // if (ignoreBullishMomentumBars) { drawBullishMomentumBars = false; } // if (ignoreBearishMomentumBars) { drawBearishMomentumBars = false; } // DrawState( tmpState, // State ... true, // Update To of all Drawings Till now ... drawSwingHighs, // Draw SwingHighs .. drawSwingLows, // Draw SwingLows .. drawSupportZones, // Draw SupportZones .. drawResistanceZones, // Draw ResistanceZones .. drawSupplyZones, // Draw SupplyZones .. drawDemandZones, // Draw DemandZones .. drawBullishOrderBlocks, // Draw BullishOrderBlocks .. drawBearishOrderBlocks, // Draw BearishOrderBlocks .. drawBullishFairValueGaps, // Draw BullishFairValueGaps .. drawBearishFairValueGaps, // Draw BearishFairValueGaps .. drawBullishRejectionBars, // Draw BullishRejectionBars .. drawBearishRejectionBars, // Draw BearishRejectionBars .. drawBullishMomentumBars, // Draw BullishMomentumBars .. drawBearishMomentumBars, // Draw BearishMomentumBars .. true // Draw Ticks Zone ... ); } // }; //