Headless FastAPI-Backend (server.py + core/engine.py) mit Mobile-PWA (web/), Strategie-/Backtest-Suite und Doku. Secrets, DB, Logs und Laufzeit-State sind via .gitignore ausgeschlossen; Config-Vorlage: oil_widget_config.ini.example. Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
99 lines
4.4 KiB
Python
99 lines
4.4 KiB
Python
#!/usr/bin/env python3
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"""Misst einen Höher-TF-WINKEL-Filter: Signal verwerfen (→WARTEN), wenn der
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M30- UND/ODER H1-Regressionswinkel klar GEGEN die Signalrichtung steht (führender
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Winkel statt nachlaufender EMA). Genau der Fall, der die −37/−10-Shorts erzeugte:
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Welle short, aber M30/H1-Winkel stark aufwärts.
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Frage: Haben die so entfernten Signale negativen Edge (gut weg) und trägt der
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Gesamtertrag der behaltenen Signale? (Pauschal-Filter kann auch Gewinner killen.)
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"""
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import sys, bisect
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import MetaTrader5 as mt5
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from core.analysis import calc_trend_angle
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from core.wave_rec import (WaveRecommender, _atr, _ema_last, _EMA_FAST, _EMA_SLOW,
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_N_BARS, _HTF_DEADBAND, _ANGLE_LR)
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class _TU:
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def snapshot(self): return {"intervals": {}}
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def _ema_series(v,p):
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k=2.0/(p+1); o=[]; e=v[0]
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for i,x in enumerate(v): e=x if i==0 else x*k+e*(1-k); o.append(e)
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return o
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def _atr_series(H,L,C,p=14):
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t=[0.0]
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for i in range(1,len(C)): t.append(max(H[i]-L[i],abs(H[i]-C[i-1]),abs(L[i]-C[i-1])))
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return [(sum(t[max(1,i-p+1):i+1])/max(1,len(t[max(1,i-p+1):i+1]))) if i else None for i in range(len(C))]
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def _rep(name, r):
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if not r: print(f" {name:<30} -"); return
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n=len(r); w=sum(1 for x in r if x>0)
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print(f" {name:<30} n={n:>4} Treffer={100*w/n:>3.0f}% Ø-Edge={sum(r)/n:+.4f} Summe={sum(r):+.1f}")
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def main():
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n=int(sys.argv[1]) if len(sys.argv)>1 else 12000
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K=10
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mt5.initialize()
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sym=None
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for c in ("SpotCrude","USOIL","WTI","XTIUSD"):
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if mt5.symbol_info(c): sym=c; break
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bars=mt5.copy_rates_from_pos(sym,mt5.TIMEFRAME_M5,0,n+_N_BARS+K+5)
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m30=mt5.copy_rates_from_pos(sym,mt5.TIMEFRAME_M30,0,n//6+400)
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h1 =mt5.copy_rates_from_pos(sym,mt5.TIMEFRAME_H1,0,n//12+400)
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mt5.shutdown()
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T=[int(b["time"]) for b in bars]; H=[float(b["high"]) for b in bars]
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L=[float(b["low"]) for b in bars]; C=[float(b["close"]) for b in bars]
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mT=[int(b["time"]) for b in m30]; mc=[float(b["close"]) for b in m30]
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mh=[float(b["high"]) for b in m30]; ml=[float(b["low"]) for b in m30]
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mEf=_ema_series(mc,_EMA_FAST); mEs=_ema_series(mc,_EMA_SLOW); mA=_atr_series(mh,ml,mc)
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hT=[int(b["time"]) for b in h1]; hc=[float(b["close"]) for b in h1]
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def m30sign(ts):
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idx=bisect.bisect_right(mT,ts)-1
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if idx<_EMA_SLOW or mA[idx] is None or mA[idx]<=0: return 0
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d=mEf[idx]-mEs[idx]
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return 0 if abs(d)<_HTF_DEADBAND*mA[idx] else (1 if d>0 else -1)
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def ang_at(ts, TT, CC):
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idx=bisect.bisect_right(TT,ts)-1
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if idx<_ANGLE_LR+2: return 90.0
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return calc_trend_angle(CC[idx-_ANGLE_LR-1:idx+1], _ANGLE_LR)
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w=WaveRecommender(_TU(), mt5.TIMEFRAME_M5)
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sigs=[] # (d, fwd, m30dev, h1dev) dev = Winkel-90 (>0 auf, <0 ab)
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for i in range(_N_BARS, len(C)-K):
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wc=C[i-_N_BARS:i]; wh=H[i-_N_BARS:i]; wl=L[i-_N_BARS:i]
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atr=_atr(wh,wl,wc)
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if not atr or atr<=0: continue
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ef=_ema_last(wc,_EMA_FAST); es=_ema_last(wc,_EMA_SLOW)
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a5=calc_trend_angle(C[i-_ANGLE_LR-2:i],_ANGLE_LR)
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rec,_=w._build(ef,es,C[i-1],atr,"M5",0,htf_trend=m30sign(T[i]),angle=a5)
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if rec["signal"]=="WARTEN": continue
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d=1 if rec["signal"]=="LONG" else -1
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fwd=(C[i+K]-C[i])*d
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sigs.append((d, fwd, ang_at(T[i],mT,mc)-90.0, ang_at(T[i],hT,hc)-90.0))
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base=[f for (_,f,_,_) in sigs]
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print("="*78)
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print(f" Höher-TF-Winkel-Filter — {sym} M5 Signale={len(sigs)} Vorlauf={K}")
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print("="*78)
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_rep("BASELINE (alle Signale)", base)
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print(" dev = Regressionswinkel − 90 (>0 aufwärts, <0 abwärts)\n")
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for T_ in (2, 10, 20, 40):
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# "gegen die Richtung": Short & Winkel auf (dev>+T) bzw. Long & Winkel ab (dev<−T)
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def against(d, dev): return (d<0 and dev> T_) or (d>0 and dev< -T_)
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for mode in ("BEIDE", "EINER"):
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removed=[]; kept=[]
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for (d,f,m,h) in sigs:
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am=against(d,m); ah=against(d,h)
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cut = (am and ah) if mode=="BEIDE" else (am or ah)
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(removed if cut else kept).append(f)
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print(f"Schwelle T={T_}° · '{mode} TF gegen Signal':")
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_rep(" entfernt (würde →WARTEN)", removed)
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_rep(" behalten (gehandelt)", kept)
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db=(sum(kept)-sum(base))
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print(f" Δ Gesamtertrag vs Baseline: {db:+.1f} "
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f"({'BESSER' if db>0 else 'schlechter'}) · behalten {len(kept)}/{len(sigs)}")
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print()
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if __name__=="__main__":
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main()
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