Initial commit: Oil Trading Bot (MT5, WTI)

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>
This commit is contained in:
Axel Hocks
2026-07-24 08:29:23 +02:00
co-authored by Claude Opus 4.8
commit 75d28827e8
104 changed files with 21059 additions and 0 deletions
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#!/usr/bin/env python3
"""User-Regel messen: „P(Level-Durchbruch) > 60 % → laufen lassen, sonst close."
Dazu 2 Fragen (Track B, Echtkosten, 2 Hälften):
(1) Wie hoch ist die Basisrate P(Durchbruch) beim ERSTEN Touch des Ziel-Levels —
und können Merkmale am Touch (Trend, Momentum, Touch-Zahl, Tick-Volumen) sie
robust über/unter 60 % schieben? Break = nach Touch +0,5×ATR JENSEITS des
Levels binnen 12 Bars, bevor 0,5×ATR zurückfällt.
(2) Entscheidungs-relevant: Ø(R_run R_close) je Merkmal-Segment — gibt es ein
Segment, in dem CLOSE am Level das Weiterlaufen (Trailing) robust schlägt?
Wenn kein Merkmal P(break) verlässlich trennt bzw. kein Segment robust pro-Close
ist, kollabiert die Regel zu „immer laufen lassen" (= Trailing, schon gemessen).
"""
import sys
import MetaTrader5 as mt5
from core.analysis import calc_trend_angle
from core.wave_rec import (_EMA_FAST, _EMA_SLOW, _N_BARS, _ANGLE_LR, _ANGLE_DEAD,
_REVERSAL_STRETCH, _STRETCH_MAX)
_MAXH=200; _ATRMIN=0.12; _SL_ATR=2.0; _TRAILON=0.3; _MULT=1.5; _BE=1.3
_LOCK_START=3.5; _LOCK_SCALE=0.6; _LOCK_MIN=1.2; _TP_INIT=3.5
_PIV_K=3; _LOOKBACK=300; _BRK_W=12; _BRK_ATR=0.5
def _ema_series(v,p):
k=2.0/(p+1); o=[]; e=v[0]
for i,x in enumerate(v): e=x if i==0 else x*k+e*(1-k); o.append(e)
return o
def _atr_series(H,L,C,p=14):
t=[0.0]
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])))
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))]
def sim_run(entry,d,atr,H,L,C,j0,level):
"""Baseline-Trailing bis Ende; liefert (R_final, j_touch|None) — Touch = erstes
Erreichen des Levels, solange der Trade offen ist."""
sl=entry-d*_SL_ATR*atr; tp=entry+d*_TP_INIT*atr
hw=entry; rank=0; jt=None
end=min(j0+_MAXH,len(C)-1)
for j in range(j0,end+1):
hi,lo=H[j],L[j]
if (lo<=sl) if d>0 else (hi>=sl): return (sl-entry)*d/atr, jt
if jt is None and level is not None and ((hi>=level) if d>0 else (lo<=level)):
jt=j
if (hi>=tp) if d>0 else (lo<=tp): return (tp-entry)*d/atr, jt
hw=max(hw,hi) if d>0 else min(hw,lo)
profit=(hw-entry)*d
ph=0 if profit<_TRAILON*atr else (1 if profit<_LOCK_START*atr else 2)
if ph<rank: ph=rank
rank=ph
if ph==1:
cand=hw-d*_MULT*atr
if profit>=_BE*atr:
cand=max(cand,entry) if d>0 else min(cand,entry)
sl=max(sl,cand) if d>0 else min(sl,cand)
elif ph==2:
tm=max(_LOCK_MIN,_MULT*_LOCK_SCALE)
cand=hw-d*tm*atr
cand=max(cand,entry) if d>0 else min(cand,entry)
sl=max(sl,cand) if d>0 else min(sl,cand)
return (C[end]-entry)*d/atr, jt
def is_break(level,d,atr,H,L,jt):
up=level+d*_BRK_ATR*atr; dn=level-d*_BRK_ATR*atr
for j in range(jt, min(jt+_BRK_W, len(H))):
if (H[j]>=up) if d>0 else (L[j]<=up): return True
if (L[j]<=dn) if d>0 else (H[j]>=dn): return False
return False
def main():
n=int(sys.argv[1]) if len(sys.argv)>1 else 80000
mt5.initialize(); sym=None
for c in ("SpotCrude","USOIL","WTI","XTIUSD"):
if mt5.symbol_info(c): sym=c; break
si=mt5.symbol_info(sym); point=si.point
bars=None
for req in (n,80000,60000,40000):
bars=mt5.copy_rates_from_pos(sym,mt5.TIMEFRAME_M5,0,req)
if bars is not None and len(bars)>2000: break
mt5.shutdown()
H=[float(b["high"]) for b in bars]; L=[float(b["low"]) for b in bars]
C=[float(b["close"]) for b in bars]; V=[float(b["tick_volume"]) for b in bars]
SP=[float(b["spread"])*point for b in bars]
EF=_ema_series(C,_EMA_FAST); ES=_ema_series(C,_EMA_SLOW); AT=_atr_series(H,L,C)
mid=len(C)//2; TH=_REVERSAL_STRETCH
print("="*96)
print(f" P(Level-Durchbruch) & Close-vs-Run am Touch — {sym} M5 ({len(C)} Bars, Echtkosten)")
print("="*96)
for lbl,a,b in (("H1 (alt)",_N_BARS,mid),("H2 (neu)",mid,len(C))):
ev=[] # (break?, dR = R_run R_close, feature-dict)
for i in range(max(a,_N_BARS,_LOOKBACK), min(b,len(C)-_MAXH-1)):
atr=AT[i]
if not atr or atr<=0: continue
atr=max(atr,_ATRMIN); es=ES[i]; ef=EF[i]
stretch=(C[i]-es)/atr
ang=calc_trend_angle(C[i-_ANGLE_LR-2:i],_ANGLE_LR); ad=ang-90.0
d=0
if stretch<=-TH and ad>=_ANGLE_DEAD: d=1
elif stretch>=TH and ad<=-_ANGLE_DEAD: d=-1
elif abs(stretch)<_STRETCH_MAX: d=1 if ef>es else -1 if ef<es else 0
if not d: continue
entry=C[i]
# nächstes gegenüberliegendes Pivot-Level
phis,plos=[],[]
for j in range(i-_LOOKBACK+_PIV_K, i-_PIV_K):
if H[j]==max(H[j-_PIV_K:j+_PIV_K+1]): phis.append(H[j])
if L[j]==min(L[j-_PIV_K:j+_PIV_K+1]): plos.append(L[j])
if d>0:
cands=[p for p in phis if p>entry+0.3*atr]
level=min(cands) if cands else None
near=phis
else:
cands=[p for p in plos if p<entry-0.3*atr]
level=max(cands) if cands else None
near=plos
if level is None: continue
R_run,jt=sim_run(entry,d,atr,H,L,C,i+1,level)
if jt is None: continue # Level nie erreicht
R_close=(level-entry)*d/atr
brk=is_break(level,d,atr,H,L,jt)
mom=(C[jt]-C[max(0,jt-6)])*d/atr
touches=sum(1 for p in near if abs(p-level)<=0.15*atr)
volr=V[jt]/max(1.0,(sum(V[max(0,jt-20):jt])/max(1,len(V[max(0,jt-20):jt]))))
withtrend=1 if (EF[jt]-ES[jt])*d>0 else 0
ev.append((brk, R_run-R_close,
{"mom":mom,"touch":touches,"vol":volr,"wt":withtrend}))
n_ev=len(ev); pb=100*sum(1 for e in ev if e[0])/max(1,n_ev)
dall=sum(e[1] for e in ev)/max(1,n_ev)
print(f"\n{lbl}: {n_ev} Level-Touches · Basisrate P(break)={pb:.0f}% · Ø(R_runR_close)={dall:+.3f}")
segs=[("mit Trend",lambda f:f["wt"]==1),("gegen Trend",lambda f:f["wt"]==0),
("Momentum ≥0,3",lambda f:f["mom"]>=0.3),("Momentum <0,3",lambda f:f["mom"]<0.3),
("Level ≥2 Touches",lambda f:f["touch"]>=2),("Level 1 Touch",lambda f:f["touch"]<2),
("Volumen-Spike ≥1,5×",lambda f:f["vol"]>=1.5),("Volumen normal",lambda f:f["vol"]<1.5)]
print(f" {'Segment':<20}{'n':>7}{'P(break)':>10}{'Ø(runclose)':>14}")
for name,fn in segs:
sub=[e for e in ev if fn(e[2])]
if not sub: continue
p=100*sum(1 for e in sub if e[0])/len(sub)
dd=sum(e[1] for e in sub)/len(sub)
mark=" ← CLOSE besser" if dd<0 else ""
print(f" {name:<20}{len(sub):>7}{p:>9.0f}%{dd:>+14.3f}{mark}")
print("\n Die Regel trägt nur, wenn ein Segment in BEIDEN Hälften Ø(runclose)<0 zeigt")
print(" (= dort wäre Close besser) UND P(break) dort klar unter der Basisrate liegt.")
if __name__=="__main__":
main()