90 行
3.6 KiB
Python
90 行
3.6 KiB
Python
"""
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Rebuild the ACCOUNT equity curve from per-chart tester runs.
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The EA now trades one symbol per chart, so each tester run sees only its own
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symbol and its report's drawdown is a per-symbol drawdown. The account's
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drawdown is what the prop limit is measured on. Each run writes a per-bar log
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(realised P&L so far, floating P&L at the bar close, worst floating inside the
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bar); this sums them on a common clock (forward-filled) into:
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close curve : realised + floating-at-close, summed -> realistic
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worst curve : realised + worst-in-bar floating, summed -> pessimistic bound
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(per-symbol worsts need not coincide, so this overstates DD)
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python combine_charts.py claude_pc_SP500 claude_pc_NAS100 ...
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"""
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from __future__ import annotations
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import sys
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import numpy as np
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COMMON = r"C:\Users\admin\AppData\Roaming\MetaQuotes\Terminal\Common\Files"
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DEPOSIT = 100000.0
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def load_eq(name):
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raw = np.genfromtxt(rf"{COMMON}\dipz_eq_{name}.csv", delimiter=",", skip_header=1,
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dtype=str, encoding="ansi")
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t = np.array([np.datetime64(r[0][:10].replace(".", "-") + "T" + r[0][11:] + ":00") for r in raw])
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return t, raw[:, 1].astype(float), raw[:, 2].astype(float), raw[:, 3].astype(float)
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def load_trades(name):
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raw = np.genfromtxt(rf"{COMMON}\dipz_trades_{name}.csv", delimiter=",", skip_header=1,
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dtype=str, encoding="ansi")
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if raw.ndim == 1:
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raw = raw[None, :]
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ts = lambda s: np.datetime64(s[:10].replace(".", "-") + "T" + s[11:] + ":00") # noqa: E731
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return [dict(sym=r[1], t=ts(r[2]), x=ts(r[5]), net=float(r[7]), swap=float(r[10]),
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gross=float(r[9])) for r in raw]
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def dd_of(curve):
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peak = np.maximum.accumulate(curve)
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return ((peak - curve) / peak).max()
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def combine(names):
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series = [load_eq(n) for n in names]
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clock = np.unique(np.concatenate([s[0] for s in series]))
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close = np.full(len(clock), DEPOSIT)
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worst = np.full(len(clock), DEPOSIT)
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for t, rl, fc, fm in series:
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idx = np.searchsorted(t, clock, side="right") - 1 # forward-fill
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ok = idx >= 0
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close[ok] += rl[idx[ok]] + fc[idx[ok]]
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worst[ok] += rl[idx[ok]] + fm[idx[ok]]
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return clock, close, worst
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def summary(names, label=""):
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clock, close, worst = combine(names)
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trades = sum((load_trades(n) for n in names), [])
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yrs = (clock[-1] - clock[0]) / np.timedelta64(365, "D")
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net = close[-1] / DEPOSIT - 1
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d_c, d_w = dd_of(close), dd_of(worst)
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swap = sum(t["swap"] for t in trades)
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gross = sum(t["gross"] for t in trades)
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permo = len(trades) / (yrs * 12)
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fails = [k for k, bad in (("cadence", permo < 2), ("DD", d_c > 0.05), ("ret/DD", net / d_c < 2)) if bad]
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print(f"{label:<22}{len(trades):>5}{permo:>6.1f}{net:>+8.1%}{((1 + net) ** (1 / yrs) - 1):>+7.1%}"
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f"{d_c:>8.2%}{d_w:>8.2%}{net / d_c:>8.2f}{swap / gross if gross else 0:>7.0%} "
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f"{'PASS' if not fails else 'fail:' + ','.join(fails)}")
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return clock, close, trades
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HDR = (f"{'portfolio':<22}{'n':>5}{'/mo':>6}{'net':>8}{'CAGR':>7}{'DD':>8}{'DDworst':>8}"
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f"{'ret/DD':>8}{'swap%':>7} screen")
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if __name__ == "__main__":
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names = sys.argv[1:]
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print(HDR)
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clock, close, trades = summary(names, "combined")
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for n in names:
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summary([n], " " + n.replace("claude_", ""))
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yr = {}
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for t in trades:
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yr[str(t["x"])[:4]] = yr.get(str(t["x"])[:4], 0) + t["net"]
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print("\nnet by year:", {k: round(v) for k, v in sorted(yr.items())})
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print("DD = summed close-of-bar equity (realistic); DDworst = summed worst-in-bar (pessimistic bound)")
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