226 lines
8.2 KiB
Python
226 lines
8.2 KiB
Python
from data.model import Trade
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from collections import defaultdict
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import math
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def _apply_break_even_if_triggered(position, candle, strategy):
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if not position:
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return
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if not getattr(strategy, "use_break_even", False):
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return
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if position.get("break_even_armed"):
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return
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trigger_rr = float(getattr(strategy, "be_trigger_rr", 1.0) or 0.0)
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if trigger_rr <= 0:
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return
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is_long = position["direction"] == "long"
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entry = position["entry_price"]
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risk_distance = max(position.get("risk_distance", 0.0), 0.0)
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if risk_distance <= 0:
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return
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trigger_price = entry + (risk_distance * trigger_rr) if is_long else entry - (risk_distance * trigger_rr)
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reached_trigger = candle.high >= trigger_price if is_long else candle.low <= trigger_price
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if reached_trigger:
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position["stop_loss"] = entry
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position["break_even_armed"] = True
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def run_backtest(candles, strategy, starting_balance, risk_reward=1.0,
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max_daily_loss=0.0, max_consecutive_losses=0, risk_pct=1.0):
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trades = []
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position = None
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consecutive_losses = 0
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daily_pnl = defaultdict(float)
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if hasattr(strategy, "prepare"):
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strategy.prepare(candles)
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for i, candle in enumerate(candles):
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if position:
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_apply_break_even_if_triggered(position, candle, strategy)
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is_long = position["direction"] == "long"
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sl, tp = position["stop_loss"], position["take_profit"]
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hit_sl = candle.low <= sl if is_long else candle.high >= sl
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hit_tp = candle.high >= tp if is_long else candle.low <= tp
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if hit_sl or hit_tp:
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exit_price = sl if hit_sl else tp
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price_move = (exit_price - position["entry_price"]) if is_long else (position["entry_price"] - exit_price)
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lot_size = max(position.get("lot_size", 0.0), 0.0)
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pnl = price_move * lot_size
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risk_distance = max(position.get("risk_distance", 0.0), 1e-12)
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r_multiple = price_move / risk_distance
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trades.append(Trade(
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enter_time=position["enter_time"],
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enter_price=position["entry_price"],
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direction=position["direction"],
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exit_time=candle.time_open,
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exit_price=exit_price,
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pnl=pnl,
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r_multiple=r_multiple,
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))
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position = None
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if pnl <= 0:
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consecutive_losses += 1
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else:
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consecutive_losses = 0
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daily_pnl[candle.time_open.date()] += pnl
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if position is None:
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if max_consecutive_losses > 0 and consecutive_losses >= max_consecutive_losses:
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continue
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if max_daily_loss > 0:
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loss_limit = starting_balance * (max_daily_loss / 100)
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if daily_pnl[candle.time_open.date()] <= -loss_limit:
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continue
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signal = strategy.check_signal(candles, i)
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if signal is not None:
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is_long = signal.direction == "BUY"
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entry = signal.entry_price
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sl = signal.stop_loss
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sl_distance = abs(entry - sl)
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if (
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sl_distance <= 0
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or not math.isfinite(sl_distance)
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or not math.isfinite(entry)
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or not math.isfinite(sl)
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or risk_pct <= 0
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):
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continue
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risk_amount = starting_balance * (risk_pct / 100)
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if risk_amount <= 0 or not math.isfinite(risk_amount):
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continue
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lot_size = risk_amount / sl_distance
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if lot_size <= 0 or not math.isfinite(lot_size):
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continue
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tp = entry + (sl_distance * risk_reward) if is_long else entry - (sl_distance * risk_reward)
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position = {
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"direction": "long" if is_long else "short",
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"entry_price": entry,
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"enter_time": candle.time_open,
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"stop_loss": sl,
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"take_profit": tp,
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"risk_distance": sl_distance,
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"lot_size": lot_size,
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"break_even_armed": False,
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}
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return trades
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def run_backtest_stream(candles, strategy, starting_balance, risk_reward=1.0,
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max_daily_loss=0.0, max_consecutive_losses=0, risk_pct=1.0):
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position = None
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consecutive_losses = 0
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daily_pnl = defaultdict(float)
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total = len(candles)
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if hasattr(strategy, "prepare"):
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strategy.prepare(candles)
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yield {"type": "start", "total_candles": total}
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progress_interval = max(1, total // 50)
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for i, candle in enumerate(candles):
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if i % progress_interval == 0:
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yield {"type": "progress", "processed_candles": i, "total_candles": total}
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if position:
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_apply_break_even_if_triggered(position, candle, strategy)
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is_long = position["direction"] == "long"
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sl, tp = position["stop_loss"], position["take_profit"]
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hit_sl = candle.low <= sl if is_long else candle.high >= sl
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hit_tp = candle.high >= tp if is_long else candle.low <= tp
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if hit_sl or hit_tp:
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exit_price = sl if hit_sl else tp
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price_move = (exit_price - position["entry_price"]) if is_long else (position["entry_price"] - exit_price)
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lot_size = max(position.get("lot_size", 0.0), 0.0)
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pnl = price_move * lot_size
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risk_distance = max(position.get("risk_distance", 0.0), 1e-12)
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r_multiple = price_move / risk_distance
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trade = Trade(
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enter_time=position["enter_time"],
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enter_price=position["entry_price"],
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direction=position["direction"],
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exit_time=candle.time_open,
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exit_price=exit_price,
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pnl=pnl,
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r_multiple=r_multiple,
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)
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position = None
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if pnl <= 0:
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consecutive_losses += 1
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else:
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consecutive_losses = 0
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daily_pnl[candle.time_open.date()] += pnl
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yield {"type": "trade", "trade": trade, "processed_candles": i, "total_candles": total}
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if position is None:
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if max_consecutive_losses > 0 and consecutive_losses >= max_consecutive_losses:
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continue
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if max_daily_loss > 0:
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loss_limit = starting_balance * (max_daily_loss / 100)
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if daily_pnl[candle.time_open.date()] <= -loss_limit:
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continue
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signal = strategy.check_signal(candles, i)
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if signal is not None:
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is_long = signal.direction == "BUY"
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entry = signal.entry_price
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sl = signal.stop_loss
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sl_distance = abs(entry - sl)
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if (
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sl_distance <= 0
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or not math.isfinite(sl_distance)
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or not math.isfinite(entry)
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or not math.isfinite(sl)
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or risk_pct <= 0
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):
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continue
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risk_amount = starting_balance * (risk_pct / 100)
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if risk_amount <= 0 or not math.isfinite(risk_amount):
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continue
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lot_size = risk_amount / sl_distance
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if lot_size <= 0 or not math.isfinite(lot_size):
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continue
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tp = entry + (sl_distance * risk_reward) if is_long else entry - (sl_distance * risk_reward)
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position = {
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"direction": "long" if is_long else "short",
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"entry_price": entry,
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"enter_time": candle.time_open,
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"stop_loss": sl,
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"take_profit": tp,
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"risk_distance": sl_distance,
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"lot_size": lot_size,
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"break_even_armed": False,
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}
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yield {"type": "done", "total_candles": total} |