700 lines
27 KiB
Python
700 lines
27 KiB
Python
from __future__ import annotations
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import json
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import sqlite3
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import time
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from contextlib import contextmanager
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from datetime import timedelta
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from pathlib import Path
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from typing import Any, Iterator
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from crypto_spot_bot.models import Position, Signal, Trade, utc_now
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MAX_SIGNAL_DIAGNOSTICS_BYTES = 16 * 1024
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PRUNE_BATCH_SIZE = 1000
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_STORED_FORECAST_KEYS = {
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"enabled",
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"usable",
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"model",
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"volatility_model",
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"expected_return_percent",
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"expected_price",
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"volatility_percent",
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"probability_up",
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"confidence_adjustment",
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"block_entry",
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"validation_mae_percent",
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"baseline_mae_percent",
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"skill",
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"horizon",
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"reason",
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"expected_gross_return_percent",
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"quantile_10_percent",
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"quantile_50_percent",
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"quantile_90_percent",
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"conservative_return_percent",
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"target_transform",
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"horizon_forecasts",
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"candidates",
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"quality_gate_passed",
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"model_created_at",
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"model_age_hours",
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"model_fresh",
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}
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class Storage:
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def __init__(self, path: str | Path):
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self.path = Path(path)
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self.path.parent.mkdir(parents=True, exist_ok=True)
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self._last_hold_signal: dict[tuple[str, str], float] = {}
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self.init_schema()
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@contextmanager
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def connect(self) -> Iterator[sqlite3.Connection]:
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conn = sqlite3.connect(self.path)
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conn.row_factory = sqlite3.Row
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conn.execute("PRAGMA busy_timeout=5000")
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conn.execute("PRAGMA foreign_keys=ON")
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try:
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yield conn
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conn.commit()
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finally:
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conn.close()
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def init_schema(self) -> None:
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with self.connect() as conn:
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conn.execute("PRAGMA journal_mode=WAL")
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conn.executescript(
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"""
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CREATE TABLE IF NOT EXISTS positions (
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id INTEGER PRIMARY KEY AUTOINCREMENT,
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symbol TEXT NOT NULL,
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qty REAL NOT NULL,
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entry_price REAL NOT NULL,
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notional_usdt REAL NOT NULL,
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entry_fee_usdt REAL NOT NULL DEFAULT 0,
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stop_loss REAL NOT NULL,
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take_profit REAL NOT NULL,
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highest_price REAL NOT NULL,
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opened_at TEXT NOT NULL,
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entry_reason TEXT NOT NULL DEFAULT '',
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entry_confidence REAL NOT NULL DEFAULT 0,
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entry_pattern TEXT NOT NULL DEFAULT '',
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entry_diagnostics_json TEXT NOT NULL DEFAULT '{}',
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protective_order_id TEXT NOT NULL DEFAULT '',
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protective_order_link_id TEXT NOT NULL DEFAULT '',
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mode TEXT NOT NULL DEFAULT 'paper',
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status TEXT NOT NULL DEFAULT 'OPEN'
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);
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CREATE TABLE IF NOT EXISTS trades (
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id INTEGER PRIMARY KEY AUTOINCREMENT,
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symbol TEXT NOT NULL,
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side TEXT NOT NULL,
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qty REAL NOT NULL,
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entry_price REAL,
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exit_price REAL,
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gross_pnl REAL NOT NULL DEFAULT 0,
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fee_usdt REAL NOT NULL DEFAULT 0,
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net_pnl REAL NOT NULL DEFAULT 0,
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reason TEXT NOT NULL DEFAULT '',
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entry_pattern TEXT NOT NULL DEFAULT '',
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entry_confidence REAL NOT NULL DEFAULT 0,
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entry_diagnostics_json TEXT NOT NULL DEFAULT '{}',
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opened_at TEXT,
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closed_at TEXT,
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mode TEXT NOT NULL DEFAULT 'paper'
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);
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CREATE TABLE IF NOT EXISTS signals (
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id INTEGER PRIMARY KEY AUTOINCREMENT,
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symbol TEXT NOT NULL,
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action TEXT NOT NULL,
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confidence REAL NOT NULL,
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reason TEXT NOT NULL,
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diagnostics_json TEXT NOT NULL DEFAULT '{}',
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created_at TEXT NOT NULL
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);
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CREATE TABLE IF NOT EXISTS equity (
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id INTEGER PRIMARY KEY AUTOINCREMENT,
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equity REAL NOT NULL,
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cash REAL NOT NULL,
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exposure REAL NOT NULL,
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drawdown REAL NOT NULL,
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created_at TEXT NOT NULL,
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mode TEXT NOT NULL DEFAULT 'paper'
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);
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CREATE TABLE IF NOT EXISTS events (
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id INTEGER PRIMARY KEY AUTOINCREMENT,
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level TEXT NOT NULL,
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message TEXT NOT NULL,
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created_at TEXT NOT NULL
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);
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CREATE TABLE IF NOT EXISTS runtime (
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key TEXT PRIMARY KEY,
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value TEXT NOT NULL,
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updated_at TEXT NOT NULL
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);
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CREATE TABLE IF NOT EXISTS llm_advice (
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id INTEGER PRIMARY KEY AUTOINCREMENT,
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symbol TEXT NOT NULL,
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model TEXT NOT NULL,
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prompt_json TEXT NOT NULL DEFAULT '{}',
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response_text TEXT NOT NULL DEFAULT '',
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advice_json TEXT NOT NULL DEFAULT '{}',
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error TEXT NOT NULL DEFAULT '',
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created_at TEXT NOT NULL
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);
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CREATE TABLE IF NOT EXISTS orders (
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id INTEGER PRIMARY KEY AUTOINCREMENT,
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client_order_id TEXT NOT NULL UNIQUE,
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exchange_order_id TEXT NOT NULL DEFAULT '',
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symbol TEXT NOT NULL,
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side TEXT NOT NULL,
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order_kind TEXT NOT NULL DEFAULT 'MARKET',
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status TEXT NOT NULL,
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requested_qty REAL NOT NULL DEFAULT 0,
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requested_notional REAL NOT NULL DEFAULT 0,
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executed_qty REAL NOT NULL DEFAULT 0,
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executed_value REAL NOT NULL DEFAULT 0,
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fee_usdt REAL NOT NULL DEFAULT 0,
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raw_json TEXT NOT NULL DEFAULT '{}',
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created_at TEXT NOT NULL,
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updated_at TEXT NOT NULL
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);
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CREATE INDEX IF NOT EXISTS idx_positions_status_opened
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ON positions(status, opened_at);
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CREATE INDEX IF NOT EXISTS idx_trades_closed
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ON trades(side, closed_at, id DESC);
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CREATE INDEX IF NOT EXISTS idx_signals_symbol_created
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ON signals(symbol, created_at DESC);
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CREATE INDEX IF NOT EXISTS idx_equity_created
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ON equity(created_at DESC);
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CREATE INDEX IF NOT EXISTS idx_events_created
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ON events(created_at DESC);
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CREATE INDEX IF NOT EXISTS idx_orders_status_updated
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ON orders(status, updated_at DESC);
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"""
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)
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columns = {
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row["name"]
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for row in conn.execute("PRAGMA table_info(positions)").fetchall()
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}
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if "entry_fee_usdt" not in columns:
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conn.execute(
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"ALTER TABLE positions ADD COLUMN entry_fee_usdt REAL NOT NULL DEFAULT 0"
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)
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for column, definition in {
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"entry_reason": "TEXT NOT NULL DEFAULT ''",
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"entry_confidence": "REAL NOT NULL DEFAULT 0",
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"entry_pattern": "TEXT NOT NULL DEFAULT ''",
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"entry_diagnostics_json": "TEXT NOT NULL DEFAULT '{}'",
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"protective_order_id": "TEXT NOT NULL DEFAULT ''",
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"protective_order_link_id": "TEXT NOT NULL DEFAULT ''",
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"mode": "TEXT NOT NULL DEFAULT 'paper'",
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}.items():
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if column not in columns:
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conn.execute(f"ALTER TABLE positions ADD COLUMN {column} {definition}")
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trade_columns = {
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row["name"]
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for row in conn.execute("PRAGMA table_info(trades)").fetchall()
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}
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for column, definition in {
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"entry_pattern": "TEXT NOT NULL DEFAULT ''",
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"entry_confidence": "REAL NOT NULL DEFAULT 0",
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"entry_diagnostics_json": "TEXT NOT NULL DEFAULT '{}'",
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"mode": "TEXT NOT NULL DEFAULT 'paper'",
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}.items():
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if column not in trade_columns:
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conn.execute(f"ALTER TABLE trades ADD COLUMN {column} {definition}")
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equity_columns = {
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row["name"]
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for row in conn.execute("PRAGMA table_info(equity)").fetchall()
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}
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if "mode" not in equity_columns:
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conn.execute("ALTER TABLE equity ADD COLUMN mode TEXT NOT NULL DEFAULT 'paper'")
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conn.execute(
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"CREATE INDEX IF NOT EXISTS idx_equity_mode_created ON equity(mode, created_at DESC)"
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)
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def insert_position(self, position: Position) -> int:
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with self.connect() as conn:
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cur = conn.execute(
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"""
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INSERT INTO positions (
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symbol, qty, entry_price, notional_usdt, entry_fee_usdt, stop_loss,
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take_profit, highest_price, opened_at, entry_reason,
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entry_confidence, entry_pattern, entry_diagnostics_json,
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protective_order_id, protective_order_link_id, mode, status
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) VALUES (?, ?, ?, ?, ?, ?, ?, ?, ?, ?, ?, ?, ?, ?, ?, ?, 'OPEN')
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""",
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(
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position.symbol,
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position.qty,
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position.entry_price,
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position.notional_usdt,
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position.entry_fee_usdt,
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position.stop_loss,
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position.take_profit,
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position.highest_price,
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position.opened_at.isoformat(),
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position.entry_reason,
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position.entry_confidence,
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position.entry_pattern,
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json.dumps(position.entry_diagnostics, ensure_ascii=False),
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position.protective_order_id,
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position.protective_order_link_id,
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position.mode,
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),
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)
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return int(cur.lastrowid)
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def close_position(self, position_id: int) -> None:
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with self.connect() as conn:
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conn.execute("UPDATE positions SET status='CLOSED' WHERE id=?", (position_id,))
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def update_position_highest(self, position_id: int, highest_price: float) -> None:
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with self.connect() as conn:
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conn.execute(
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"UPDATE positions SET highest_price=? WHERE id=? AND status='OPEN'",
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(highest_price, position_id),
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)
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def update_position_protective_order(
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self,
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position_id: int,
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order_id: str,
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order_link_id: str,
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) -> None:
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with self.connect() as conn:
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conn.execute(
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"""
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UPDATE positions
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SET protective_order_id=?, protective_order_link_id=?
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WHERE id=? AND status='OPEN'
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""",
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(order_id, order_link_id, position_id),
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)
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def update_position_after_partial_sell(
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self,
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position_id: int,
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*,
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qty: float,
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notional_usdt: float,
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entry_fee_usdt: float,
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) -> None:
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with self.connect() as conn:
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conn.execute(
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"""
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UPDATE positions
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SET qty=?, notional_usdt=?, entry_fee_usdt=?,
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protective_order_id='', protective_order_link_id=''
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WHERE id=? AND status='OPEN'
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""",
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(qty, notional_usdt, entry_fee_usdt, position_id),
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)
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def open_positions(self, mode: str | None = None) -> list[Position]:
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with self.connect() as conn:
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if mode:
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rows = conn.execute(
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"SELECT * FROM positions WHERE status='OPEN' AND mode=? ORDER BY opened_at",
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(mode,),
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).fetchall()
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else:
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rows = conn.execute(
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"SELECT * FROM positions WHERE status='OPEN' ORDER BY opened_at"
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).fetchall()
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return [
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Position(
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id=int(row["id"]),
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symbol=row["symbol"],
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qty=float(row["qty"]),
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entry_price=float(row["entry_price"]),
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notional_usdt=float(row["notional_usdt"]),
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entry_fee_usdt=float(row["entry_fee_usdt"]),
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stop_loss=float(row["stop_loss"]),
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take_profit=float(row["take_profit"]),
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highest_price=float(row["highest_price"]),
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opened_at=_parse_datetime(row["opened_at"]),
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entry_reason=row["entry_reason"],
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entry_confidence=float(row["entry_confidence"]),
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entry_pattern=row["entry_pattern"],
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entry_diagnostics=_json_or_default(row["entry_diagnostics_json"], {}),
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protective_order_id=row["protective_order_id"],
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protective_order_link_id=row["protective_order_link_id"],
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mode=row["mode"],
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)
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for row in rows
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]
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def insert_trade(self, trade: Trade) -> int:
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with self.connect() as conn:
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cur = conn.execute(
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"""
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INSERT INTO trades (
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symbol, side, qty, entry_price, exit_price, gross_pnl,
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fee_usdt, net_pnl, reason, entry_pattern, entry_confidence,
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entry_diagnostics_json, opened_at, closed_at
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, mode
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) VALUES (?, ?, ?, ?, ?, ?, ?, ?, ?, ?, ?, ?, ?, ?, ?)
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""",
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(
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trade.symbol,
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trade.side,
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trade.qty,
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trade.entry_price,
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trade.exit_price,
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trade.gross_pnl,
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trade.fee_usdt,
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trade.net_pnl,
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trade.reason,
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trade.entry_pattern,
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trade.entry_confidence,
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json.dumps(trade.entry_diagnostics, ensure_ascii=False),
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trade.opened_at.isoformat() if trade.opened_at else None,
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trade.closed_at.isoformat() if trade.closed_at else None,
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trade.mode,
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),
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)
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return int(cur.lastrowid)
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def recent_trades(self, limit: int = 50, mode: str | None = None) -> list[dict[str, Any]]:
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with self.connect() as conn:
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if mode:
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rows = conn.execute(
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"SELECT * FROM trades WHERE mode=? ORDER BY id DESC LIMIT ?",
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(mode, limit),
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).fetchall()
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else:
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rows = conn.execute("SELECT * FROM trades ORDER BY id DESC LIMIT ?", (limit,)).fetchall()
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return [dict(row) for row in rows]
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def closed_trades(self, limit: int = 200, mode: str | None = None) -> list[dict[str, Any]]:
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with self.connect() as conn:
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query = """
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SELECT * FROM trades
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WHERE side='SELL' AND closed_at IS NOT NULL
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"""
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params: tuple[Any, ...]
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if mode:
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query += " AND mode=?"
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params = (mode, limit)
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else:
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params = (limit,)
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query += " ORDER BY id DESC LIMIT ?"
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rows = conn.execute(query, params).fetchall()
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return [dict(row) for row in rows]
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def closed_trade_summary(self, mode: str | None = None) -> dict[str, Any]:
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with self.connect() as conn:
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query = """
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SELECT
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COUNT(*) AS trades,
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COALESCE(SUM(net_pnl), 0) AS net_pnl,
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COALESCE(SUM(gross_pnl), 0) AS gross_pnl,
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COALESCE(SUM(fee_usdt), 0) AS fee_usdt,
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COALESCE(SUM(CASE WHEN net_pnl > 0 THEN 1 ELSE 0 END), 0) AS wins,
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COALESCE(SUM(CASE WHEN net_pnl < 0 THEN 1 ELSE 0 END), 0) AS losses
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FROM trades
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WHERE side='SELL' AND closed_at IS NOT NULL
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"""
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params: tuple[Any, ...] = ()
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if mode:
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query += " AND mode=?"
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params = (mode,)
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row = conn.execute(query, params).fetchone()
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trades = int(row["trades"] if row else 0)
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wins = int(row["wins"] if row else 0)
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losses = int(row["losses"] if row else 0)
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return {
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"trades": trades,
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"net_pnl": round(float(row["net_pnl"] if row else 0.0), 6),
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"gross_pnl": round(float(row["gross_pnl"] if row else 0.0), 6),
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"fee_usdt": round(float(row["fee_usdt"] if row else 0.0), 6),
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"wins": wins,
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"losses": losses,
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"win_rate": round(wins / trades, 4) if trades else 0.0,
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}
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def insert_signal(self, signal: Signal, hold_sample_seconds: int = 0) -> bool:
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if signal.action == "HOLD" and hold_sample_seconds > 0:
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fingerprint = f"{signal.action}\0{signal.reason}"
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now = time.monotonic()
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sample_key = (signal.symbol, fingerprint)
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previous = self._last_hold_signal.get(sample_key)
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if previous is not None and now - previous < hold_sample_seconds:
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return False
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self._last_hold_signal[sample_key] = now
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with self.connect() as conn:
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conn.execute(
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"""
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INSERT INTO signals (symbol, action, confidence, reason, diagnostics_json, created_at)
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VALUES (?, ?, ?, ?, ?, ?)
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""",
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(
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signal.symbol,
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signal.action,
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signal.confidence,
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signal.reason,
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_signal_diagnostics_json(signal.diagnostics),
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signal.created_at.isoformat(),
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),
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)
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return True
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def recent_signals(self, limit: int = 80) -> list[dict[str, Any]]:
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with self.connect() as conn:
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rows = conn.execute("SELECT * FROM signals ORDER BY id DESC LIMIT ?", (limit,)).fetchall()
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return [dict(row) for row in rows]
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def insert_equity(
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self,
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equity: float,
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cash: float,
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exposure: float,
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drawdown: float,
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mode: str = "paper",
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) -> None:
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with self.connect() as conn:
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conn.execute(
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"INSERT INTO equity (equity, cash, exposure, drawdown, created_at, mode) VALUES (?, ?, ?, ?, ?, ?)",
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(equity, cash, exposure, drawdown, utc_now().isoformat(), mode),
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)
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def latest_equity(self, mode: str | None = None) -> dict[str, Any] | None:
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with self.connect() as conn:
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if mode:
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row = conn.execute(
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"SELECT * FROM equity WHERE mode=? ORDER BY id DESC LIMIT 1",
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(mode,),
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).fetchone()
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else:
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row = conn.execute("SELECT * FROM equity ORDER BY id DESC LIMIT 1").fetchone()
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return dict(row) if row else None
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def event(self, message: str, level: str = "INFO") -> None:
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with self.connect() as conn:
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conn.execute(
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"INSERT INTO events (level, message, created_at) VALUES (?, ?, ?)",
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(level, message, utc_now().isoformat()),
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)
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def recent_events(self, limit: int = 80) -> list[dict[str, Any]]:
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with self.connect() as conn:
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rows = conn.execute("SELECT * FROM events ORDER BY id DESC LIMIT ?", (limit,)).fetchall()
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return [dict(row) for row in rows]
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def insert_llm_advice(
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self,
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*,
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symbol: str,
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model: str,
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prompt_json: dict[str, Any],
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response_text: str,
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advice_json: dict[str, Any],
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error: str = "",
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) -> None:
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with self.connect() as conn:
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conn.execute(
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"""
|
|
INSERT INTO llm_advice (
|
|
symbol, model, prompt_json, response_text, advice_json, error, created_at
|
|
) VALUES (?, ?, ?, ?, ?, ?, ?)
|
|
""",
|
|
(
|
|
symbol,
|
|
model,
|
|
json.dumps(prompt_json, ensure_ascii=False),
|
|
response_text,
|
|
json.dumps(advice_json, ensure_ascii=False),
|
|
error,
|
|
utc_now().isoformat(),
|
|
),
|
|
)
|
|
|
|
def recent_llm_advice(self, limit: int = 80) -> list[dict[str, Any]]:
|
|
with self.connect() as conn:
|
|
rows = conn.execute("SELECT * FROM llm_advice ORDER BY id DESC LIMIT ?", (limit,)).fetchall()
|
|
items: list[dict[str, Any]] = []
|
|
for row in rows:
|
|
item = dict(row)
|
|
item["prompt"] = _json_or_default(item.pop("prompt_json", "{}"), {})
|
|
item["advice"] = _json_or_default(item.pop("advice_json", "{}"), {})
|
|
items.append(item)
|
|
return items
|
|
|
|
def set_runtime(self, key: str, value: Any) -> None:
|
|
with self.connect() as conn:
|
|
conn.execute(
|
|
"""
|
|
INSERT INTO runtime (key, value, updated_at)
|
|
VALUES (?, ?, ?)
|
|
ON CONFLICT(key) DO UPDATE SET value=excluded.value, updated_at=excluded.updated_at
|
|
""",
|
|
(key, json.dumps(value, ensure_ascii=False), utc_now().isoformat()),
|
|
)
|
|
|
|
def get_runtime(self, key: str, default: Any = None) -> Any:
|
|
with self.connect() as conn:
|
|
row = conn.execute("SELECT value FROM runtime WHERE key=?", (key,)).fetchone()
|
|
if not row:
|
|
return default
|
|
try:
|
|
return json.loads(row["value"])
|
|
except json.JSONDecodeError:
|
|
return default
|
|
|
|
def upsert_order(
|
|
self,
|
|
*,
|
|
client_order_id: str,
|
|
exchange_order_id: str = "",
|
|
symbol: str,
|
|
side: str,
|
|
order_kind: str,
|
|
status: str,
|
|
requested_qty: float = 0.0,
|
|
requested_notional: float = 0.0,
|
|
executed_qty: float = 0.0,
|
|
executed_value: float = 0.0,
|
|
fee_usdt: float = 0.0,
|
|
raw: dict[str, Any] | None = None,
|
|
) -> None:
|
|
now = utc_now().isoformat()
|
|
with self.connect() as conn:
|
|
conn.execute(
|
|
"""
|
|
INSERT INTO orders (
|
|
client_order_id, exchange_order_id, symbol, side, order_kind,
|
|
status, requested_qty, requested_notional, executed_qty,
|
|
executed_value, fee_usdt, raw_json, created_at, updated_at
|
|
) VALUES (?, ?, ?, ?, ?, ?, ?, ?, ?, ?, ?, ?, ?, ?)
|
|
ON CONFLICT(client_order_id) DO UPDATE SET
|
|
exchange_order_id=excluded.exchange_order_id,
|
|
status=excluded.status,
|
|
executed_qty=excluded.executed_qty,
|
|
executed_value=excluded.executed_value,
|
|
fee_usdt=excluded.fee_usdt,
|
|
raw_json=excluded.raw_json,
|
|
updated_at=excluded.updated_at
|
|
""",
|
|
(
|
|
client_order_id,
|
|
exchange_order_id,
|
|
symbol,
|
|
side,
|
|
order_kind,
|
|
status,
|
|
requested_qty,
|
|
requested_notional,
|
|
executed_qty,
|
|
executed_value,
|
|
fee_usdt,
|
|
json.dumps(raw or {}, ensure_ascii=False),
|
|
now,
|
|
now,
|
|
),
|
|
)
|
|
|
|
def recent_orders(self, limit: int = 100) -> list[dict[str, Any]]:
|
|
with self.connect() as conn:
|
|
rows = conn.execute(
|
|
"SELECT * FROM orders ORDER BY id DESC LIMIT ?",
|
|
(max(1, min(limit, 500)),),
|
|
).fetchall()
|
|
items = []
|
|
for row in rows:
|
|
item = dict(row)
|
|
item["raw"] = _json_or_default(item.pop("raw_json", "{}"), {})
|
|
items.append(item)
|
|
return items
|
|
|
|
def pending_orders(self) -> list[dict[str, Any]]:
|
|
terminal = ("Filled", "Cancelled", "Rejected", "PartiallyFilledCanceled", "Deactivated")
|
|
placeholders = ",".join("?" for _ in terminal)
|
|
with self.connect() as conn:
|
|
rows = conn.execute(
|
|
f"SELECT * FROM orders WHERE status NOT IN ({placeholders}) ORDER BY id",
|
|
terminal,
|
|
).fetchall()
|
|
return [dict(row) for row in rows]
|
|
|
|
def prune(self, retention_days: int) -> dict[str, int]:
|
|
if retention_days <= 0:
|
|
return {}
|
|
cutoff = (utc_now() - timedelta(days=retention_days)).isoformat()
|
|
deleted: dict[str, int] = {}
|
|
for table in ("signals", "equity", "events", "llm_advice"):
|
|
with self.connect() as conn:
|
|
# Keep write locks short on large runtime databases. Each maintenance
|
|
# cycle removes at most one bounded batch per table.
|
|
cursor = conn.execute(
|
|
f"""
|
|
DELETE FROM {table}
|
|
WHERE id IN (
|
|
SELECT id FROM {table}
|
|
WHERE created_at < ?
|
|
ORDER BY id
|
|
LIMIT ?
|
|
)
|
|
""",
|
|
(cutoff, PRUNE_BATCH_SIZE),
|
|
)
|
|
deleted[table] = max(0, int(cursor.rowcount))
|
|
return deleted
|
|
|
|
def clear_all(self) -> None:
|
|
with self.connect() as conn:
|
|
for table in ("positions", "trades", "signals", "equity", "events", "runtime", "llm_advice", "orders"):
|
|
conn.execute(f"DELETE FROM {table}")
|
|
|
|
|
|
def _signal_diagnostics_json(diagnostics: dict[str, Any]) -> str:
|
|
compact = dict(diagnostics)
|
|
forecast = compact.get("forecast")
|
|
if isinstance(forecast, dict):
|
|
compact["forecast"] = {
|
|
key: value for key, value in forecast.items() if key in _STORED_FORECAST_KEYS
|
|
}
|
|
encoded = json.dumps(compact, ensure_ascii=False, separators=(",", ":"))
|
|
size = len(encoded.encode("utf-8"))
|
|
if size <= MAX_SIGNAL_DIAGNOSTICS_BYTES:
|
|
return encoded
|
|
|
|
fallback = {
|
|
"truncated": True,
|
|
"original_size_bytes": size,
|
|
"strategy_mode": compact.get("strategy_mode"),
|
|
"trade_mode": compact.get("trade_mode"),
|
|
"checks": compact.get("checks", {}),
|
|
"forecast": compact.get("forecast", {}),
|
|
}
|
|
encoded = json.dumps(fallback, ensure_ascii=False, separators=(",", ":"))
|
|
if len(encoded.encode("utf-8")) <= MAX_SIGNAL_DIAGNOSTICS_BYTES:
|
|
return encoded
|
|
return json.dumps(
|
|
{
|
|
"truncated": True,
|
|
"original_size_bytes": size,
|
|
"strategy_mode": compact.get("strategy_mode"),
|
|
"trade_mode": compact.get("trade_mode"),
|
|
},
|
|
ensure_ascii=False,
|
|
separators=(",", ":"),
|
|
)
|
|
|
|
|
|
def _json_or_default(value: str, default: Any) -> Any:
|
|
try:
|
|
return json.loads(value)
|
|
except json.JSONDecodeError:
|
|
return default
|
|
|
|
|
|
def _parse_datetime(value: str):
|
|
from datetime import datetime
|
|
|
|
return datetime.fromisoformat(value)
|