//+------------------------------------------------------------------+ //| Market_Scanner_Pro.mq5 | //| QuantScan 3.2 - Dynamic Headers | //| Copyright 2026, xxxxxxxx | //+------------------------------------------------------------------+ #property copyright "Copyright 2026, xxxxxxxx" #property version "3.40" // Dynamic CSV Header (Timeframes) #property description "Exports 'QuantScan 3.0' dataset for LLM Analysis." #property description "Includes Relative Strength and Institutional Metrics." #property script_show_inputs //--- Include ALL Custom Calculators #include #include #include #include #include #include #include #include // NEW Integrations: #include #include #include //--- Input Parameters --- input group "Scanner Config" input bool InpUseMarketWatch = false; input string InpSymbolList = "EURUSD,USDJPY,GBPUSD,USDCHF,AUDUSD,XAUUSD,US500,DE40,XTIUSD,ETHUSD"; input string InpBenchmark = "US500"; input string InpBrokerTimeZone = "EET (UTC+2)"; input int InpScanHistory = 500; input group "Timeframes" input ENUM_TIMEFRAMES InpTFFast = PERIOD_M15; input ENUM_TIMEFRAMES InpTFSlow = PERIOD_H1; input group "Metric Settings" input int InpDSMAPeriod = 40; input double InpLaguerreGamma = 0.50; input int InpMurreyPeriod = 64; input int InpATRPeriod = 14; input int InpRSBars = 24; input int InpRVOLPeriod = 20; input int InpERPeriod = 10; input int InpZScorePeriod = 20; input group "TSI Settings" input int InpTSI_Slow = 25; input int InpTSI_Fast = 13; input int InpTSI_Signal = 13; input group "Squeeze Settings" input int InpSqueezeLength = 20; input double InpBBMult = 2.0; input double InpKCMult = 1.5; //--- Struct for QuantScan Data struct QuantData { string timestamp; string symbol; double price; // --- H1 --- double trend_score; double trend_qual; string zone; double rel_strength; // --- M15 --- double momentum; double vol_qual; string squeeze; double z_score; double vola_regime; string tsi_dir; // --- Composites --- double rev_prob; string absorption; }; //+------------------------------------------------------------------+ //| Script Start | //+------------------------------------------------------------------+ void OnStart() { string symbols[]; int total_symbols = 0; if(InpUseMarketWatch) { total_symbols = SymbolsTotal(true); ArrayResize(symbols, total_symbols); for(int i=0; i 0 && CopyOpen(InpBenchmark, InpTFSlow, InpRSBars, 1, b_open) > 0) if(b_open[0] != 0) bench_change_pct = ((b_close[0] - b_open[0]) / b_open[0]) * 100.0; } // 3. Prepare CSV string filename = "QuantScan_" + TimeToString(TimeCurrent(), TIME_DATE|TIME_MINUTES) + ".csv"; StringReplace(filename, ":", ""); StringReplace(filename, " ", "_"); int file_handle = FileOpen(filename, FILE_CSV|FILE_WRITE|FILE_ANSI, ";"); if(file_handle == INVALID_HANDLE) { Print("Error: Cannot write CSV."); return; } // --- 4. Dynamic Header Generation (NEW) --- // A. Get String representation of Timeframes (e.g., "PERIOD_H1") string str_slow = EnumToString(InpTFSlow); string str_fast = EnumToString(InpTFFast); // B. Clean up (Remove "PERIOD_" prefix for shorter column names) StringReplace(str_slow, "PERIOD_", ""); StringReplace(str_fast, "PERIOD_", ""); // C. Construct Header String string header = ""; // Base Info header += "TIME (" + InpBrokerTimeZone + ");"; header += "SYMBOL;"; header += "PRICE;"; // Context (Slow TF) Metrics header += StringFormat("TREND_SCORE_%s;", str_slow); header += StringFormat("TREND_QUAL_%s;", str_slow); header += StringFormat("ZONE_%s;", str_slow); header += StringFormat("REL_STRENGTH_%s;", str_slow); // Trigger (Fast TF) Metrics header += StringFormat("MOMENTUM_%s;", str_fast); header += StringFormat("VOL_QUAL_%s;", str_fast); header += StringFormat("SQUEEZE_%s;", str_fast); header += StringFormat("Z_SCORE_%s;", str_fast); header += StringFormat("VOL_REGIME_%s;", str_fast); header += StringFormat("TSI_DIR_%s;", str_fast); // Composite Metrics (Calculated using both) header += "REVERSION_PROB;"; header += "ABSORPTION"; // D. Write Header FileWrite(file_handle, header); PrintFormat("Scanning %d symbols...", total_symbols); for(int i=0; i InpRSBars + 1) { double c_now = h1_c[total_h1-2]; double o_old = h1_o[total_h1-2-(InpRSBars-1)]; if(o_old != 0) sym_change = ((c_now - o_old) / o_old) * 100.0; } data.rel_strength = sym_change - bench_change; // ================================================================= // PHASE 2: M15 TRIGGER // ================================================================= double m15_o[], m15_h[], m15_l[], m15_c[]; long m15_v[]; datetime m15_t[]; if(!FetchData(sym, InpTFFast, InpScanHistory, m15_t, m15_o, m15_h, m15_l, m15_c, m15_v)) return false; double m15_atr = Calc_ATR(m15_o, m15_h, m15_l, m15_c, InpATRPeriod); data.momentum = Calc_LaguerreRSI(m15_o, m15_h, m15_l, m15_c); // REFACTORED: Use RVOL Calculator data.vol_qual = Calc_RVOL(m15_v, InpRVOLPeriod); data.squeeze = Calc_Squeeze(sym, InpTFFast, m15_o, m15_h, m15_l, m15_c); // REFACTORED: Use Z-Score Calculator data.z_score = Calc_ZScore(m15_o, m15_h, m15_l, m15_c, InpZScorePeriod); // Volatility Regime double atr_fast = Calc_ATR(m15_o, m15_h, m15_l, m15_c, 5); double atr_slow = Calc_ATR(m15_o, m15_h, m15_l, m15_c, 50); if(atr_slow != 0) data.vola_regime = atr_fast / atr_slow; else data.vola_regime = 1.0; // TSI Calc_TSI_Dir(m15_o, m15_h, m15_l, m15_c, data.tsi_dir); // ================================================================= // PHASE 3: COMPOSITE METRICS // ================================================================= double score = 0; if(MathAbs(data.z_score) > 3.0) score += 40; else if(MathAbs(data.z_score) > 2.0) score += 20; if(StringFind(data.zone, "Extreme") >= 0) score += 30; if(data.momentum > 0.90 || data.momentum < 0.10) score += 30; data.rev_prob = score; // Absorption (Uses already calculated VolQual) // Logic: Last completed bar (Index 2 in reverse-like logic, or Total-2) // Note: Our FetchData returns non-series (0=oldest). Total-1 is partial? // Usually index=0 in iOpen is current. // FetchData via CopyOpen... defaults to 0=oldest. // Size is 'count'. Last valid closed is size-2. int idx_cl = ArraySize(m15_c) - 2; if(idx_cl >= 0 && m15_atr > 0) { double body = MathAbs(m15_c[idx_cl] - m15_o[idx_cl]); // Recalc Rvol for SPECIFIC bar using helper CRelativeVolumeCalculator rv_calc; rv_calc.Init(InpRVOLPeriod); double bar_rvol = rv_calc.CalculateSingle(ArraySize(m15_v), m15_v, idx_cl); if(bar_rvol > 2.0 && body < (0.4 * m15_atr)) data.absorption = "YES"; else data.absorption = "NO"; } else data.absorption = "-"; return true; } //+------------------------------------------------------------------+ //| HELPERS / WRAPPERS | //+------------------------------------------------------------------+ bool FetchData(string sym, ENUM_TIMEFRAMES tf, int count, datetime &t[], double &o[], double &h[], double &l[], double &c[], long &v[]) { ArraySetAsSeries(t, false); ArraySetAsSeries(o, false); ArraySetAsSeries(h, false); ArraySetAsSeries(l, false); ArraySetAsSeries(c, false); ArraySetAsSeries(v, false); if(CopyTime(sym, tf, 0, count, t)!=count || CopyOpen(sym, tf, 0, count, o)!=count || CopyHigh(sym, tf, 0, count, h)!=count || CopyLow(sym, tf, 0, count, l)!=count || CopyClose(sym, tf, 0, count, c)!=count || CopyTickVolume(sym, tf, 0, count, v)!=count) return false; return true; } // 1. REFACTORED: Efficiency Ratio Wrapper double Calc_ER(const double &o[], const double &h[], const double &l[], const double &c[], int p) { CEfficiencyRatioCalculator calc; if(!calc.Init(p)) return 0; double buf[]; int total = ArraySize(c); ArrayResize(buf, total); calc.Calculate(total, 0, PRICE_CLOSE, o, h, l, c, buf); return buf[total-1]; } // 2. REFACTORED: Z-Score Wrapper double Calc_ZScore(const double &o[], const double &h[], const double &l[], const double &c[], int p) { CZScoreCalculator calc; if(!calc.Init(p)) return 0; double buf[]; int total = ArraySize(c); ArrayResize(buf, total); calc.Calculate(total, 0, PRICE_CLOSE, o, h, l, c, buf); return buf[total-1]; } // 3. REFACTORED: RVOL Wrapper double Calc_RVOL(const long &vol[], int p) { CRelativeVolumeCalculator calc; calc.Init(p); // Used CalculateSingle for last closed bar (Total-2) or current (Total-1)? // Standard practice: RVOL of current forming bar is misleading. // Let's use Last Closed Bar (Total-2) for analysis stability. return calc.CalculateSingle(ArraySize(vol), vol, ArraySize(vol)-2); } //+------------------------------------------------------------------+ //| | //+------------------------------------------------------------------+ double Calc_ATR(const double &o[], const double &h[], const double &l[], const double &c[], int p) { CATRCalculator calc; if(!calc.Init(p, ATR_POINTS)) return 0; double buf[]; int total=ArraySize(c); calc.Calculate(total, 0, o, h, l, c, buf); return buf[total-2]; // Using Closed Bar } //+------------------------------------------------------------------+ //| | //+------------------------------------------------------------------+ double Calc_DSMA_Score(const double &o[], const double &h[], const double &l[], const double &c[], double atr) { CDSMACalculator calc; if(!calc.Init(InpDSMAPeriod)) return 0; double buf[]; int total=ArraySize(c); ArrayResize(buf, total); calc.Calculate(total, 0, PRICE_CLOSE, o, h, l, c, buf); if(atr==0) return 0; return (c[total-2] - buf[total-2]) / atr; // Using Closed Bar } //+------------------------------------------------------------------+ //| | //+------------------------------------------------------------------+ string Calc_Squeeze(string sym, ENUM_TIMEFRAMES tf, const double &o[], const double &h[], const double &l[], const double &c[]) { int total = ArraySize(c); CBollingerBandsCalculator bb; bb.Init(InpSqueezeLength, InpBBMult, SMA); CKeltnerChannelCalculator kc; kc.Init(InpSqueezeLength, SMA, InpSqueezeLength, InpKCMult, ATR_SOURCE_STANDARD); double b_ma[], b_up[], b_lo[]; ArrayResize(b_ma, total); ArrayResize(b_up, total); ArrayResize(b_lo, total); double k_ma[], k_up[], k_lo[]; ArrayResize(k_ma, total); ArrayResize(k_up, total); ArrayResize(k_lo, total); bb.Calculate(total, 0, PRICE_CLOSE, o, h, l, c, b_ma, b_up, b_lo); kc.Calculate(total, 0, o, h, l, c, PRICE_CLOSE, k_ma, k_up, k_lo); int idx = total - 2; // Last Closed Bar return ((b_up[idx] < k_up[idx]) && (b_lo[idx] > k_lo[idx])) ? "ON" : "OFF"; } //+------------------------------------------------------------------+ //| | //+------------------------------------------------------------------+ double Calc_LaguerreRSI(const double &o[], const double &h[], const double &l[], const double &c[]) { CLaguerreRSICalculator calc; calc.Init(InpLaguerreGamma, 3, SMA); double lrsi[], sig[]; int total=ArraySize(c); ArrayResize(lrsi, total); ArrayResize(sig, total); calc.Calculate(total, 0, PRICE_CLOSE, o, h, l, c, lrsi, sig); return lrsi[total-2] / 100.0; } //+------------------------------------------------------------------+ //| | //+------------------------------------------------------------------+ void Calc_TSI_Dir(const double &o[], const double &h[], const double &l[], const double &c[], string &dir) { CTSICalculator calc; calc.Init(InpTSI_Slow, EMA, InpTSI_Fast, EMA, InpTSI_Signal, EMA); double tsi[], sig[], osc[]; int total=ArraySize(c); ArrayResize(tsi, total); ArrayResize(sig, total); ArrayResize(osc, total); calc.Calculate(total, 0, PRICE_CLOSE, o, h, l, c, tsi, sig, osc); if(tsi[total-2] > sig[total-2]) dir = "BULL"; else dir = "BEAR"; } //+------------------------------------------------------------------+ //| | //+------------------------------------------------------------------+ string Calc_MurreyZone(string symbol, ENUM_TIMEFRAMES tf) { CMurreyMathCalculator calc; calc.Init(symbol, tf, InpMurreyPeriod, 0); double levels[]; if(!calc.Calculate(levels)) return "N/A"; double price = iClose(symbol, tf, 1); // Last Closed if(price < levels[2]) return "Extreme Low"; if(price > levels[10]) return "Extreme High"; if(price >= levels[2] && price < levels[3]) return "0/8-1/8 (Bottom)"; if(price >= levels[3] && price < levels[4]) return "1/8-2/8 (Weak)"; if(price >= levels[4] && price < levels[6]) return "2/8-4/8 (Lower)"; if(price >= levels[6] && price < levels[8]) return "4/8-6/8 (Upper)"; if(price >= levels[8] && price < levels[9]) return "6/8-7/8 (Weak)"; return "7/8-8/8 (Top)"; } //+------------------------------------------------------------------+ //+------------------------------------------------------------------+