feat: Insider Copytrade POC + PLAN.md #2
13
README.md
13
README.md
@ -1,4 +1,4 @@
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# Cleopatra — Insider Copytrade POC
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# Smaug — Insider Copytrade Monitor
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Monitors SEC EDGAR Form 4 filings in near real-time, detects insider buy clusters, sends Slack alerts, and optionally executes trades via Alpaca.
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@ -22,6 +22,7 @@ signals/cluster_detector.py ← counts unique insiders per ticker in rolling 30-
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│
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├──► alerts/slack_alert.py ← POST to Slack webhook when score ≥ threshold
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└──► broker/alpaca_client.py ← paper/live order: 2% position size, 10% per-ticker cap
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positions auto-closed after holding period expires
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```
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## Setup
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@ -64,7 +65,7 @@ python main.py backtest
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| `MIN_TRANSACTION_VALUE` | $50,000 | Ignore buys below this |
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| `MIN_CLUSTER_SIZE` | 1 | Minimum unique insiders before a signal fires |
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| `CLUSTER_WINDOW_DAYS` | 30 | Rolling window for cluster counting |
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| `HOLDING_PERIOD_DAYS` | 90 | Days held per position (backtest + close trigger) |
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| `HOLDING_PERIOD_DAYS` | 90 | Days held per position (backtest + auto-close trigger) |
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| `POSITION_SIZE_PCT` | 2% | Fraction of portfolio per trade |
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| `MAX_POSITIONS` | 20 | Hard position limit |
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| `SCORE_ALERT_THRESHOLD` | 5.0 | Minimum score to trigger Slack alert |
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@ -79,10 +80,14 @@ Role weights: CEO 3.0 · CFO/President 2.5 · COO 2.0 · Director 1.5 · VP 1.2
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## Backtesting
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The backtest loads signals from the SQLite DB and fetches OHLC data via `yfinance` on demand (no local price cache). Raw XML filings are cached in `DATA_DIR` (`data/filings/`) by accession number to avoid re-downloading.
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The backtest loads signals from the SQLite DB and fetches OHLC data via `yfinance` on demand (no local price cache). Entry price is the closing price on the first trading day on or after the signal date; exit price is the closing price on the last trading day before or on the exit date. Raw XML filings are cached in `DATA_DIR` (`data/filings/`) by accession number.
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Metrics reported: win rate, average return, average alpha vs SPY, Sharpe ratio.
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## Position lifecycle
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Positions are tracked in the `signals` table. When a trade is executed, `executed_at` is recorded. On each poll cycle the poller checks for positions where `executed_at` is older than `HOLDING_PERIOD_DAYS` and calls Alpaca to close them, marking `closed=1` in the DB.
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## Modules
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| Path | Purpose |
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@ -95,7 +100,7 @@ Metrics reported: win rate, average return, average alpha vs SPY, Sharpe ratio.
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| `signals/filter_engine.py` | Filing → signal pipeline |
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| `signals/cluster_detector.py` | Cluster detection from DB |
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| `alerts/slack_alert.py` | Slack webhook alert |
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| `broker/alpaca_client.py` | Alpaca order execution |
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| `broker/alpaca_client.py` | Alpaca order execution + position exit |
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| `backtest/backtest.py` | Historical backtest runner |
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| `main.py` | CLI entry point |
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@ -1,25 +1,49 @@
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import logging
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import math
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from datetime import datetime, timedelta
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from typing import Optional
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import sqlite3
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import config
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logger = logging.getLogger(__name__)
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def _load_signals_from_db(db_path: str) -> list[dict]:
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def _load_signals_from_db(db_path: str, min_score: float, min_cluster_size: int) -> list[dict]:
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import sqlite3
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conn = sqlite3.connect(db_path)
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conn.row_factory = sqlite3.Row
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rows = conn.execute(
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"SELECT s.*, f.role FROM signals s "
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"LEFT JOIN filings f ON f.ticker = s.ticker AND f.transaction_date = s.trigger_date "
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"WHERE s.cluster_size >= 1"
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"""
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SELECT s.*, f.role FROM signals s
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LEFT JOIN filings f ON f.ticker = s.ticker AND f.transaction_date = s.trigger_date
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WHERE s.score >= ? AND s.cluster_size >= ?
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""",
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(min_score, min_cluster_size),
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).fetchall()
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conn.close()
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return [dict(r) for r in rows]
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def _first_close_on_or_after(price_data, target_date: datetime) -> float:
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"""Return the closing price on the first trading day on or after target_date."""
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for ts, row in price_data["Close"].items():
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ts_date = ts.to_pydatetime().replace(tzinfo=None)
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if ts_date.date() >= target_date.date():
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return float(row)
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raise ValueError(f"No price data on or after {target_date.date()}")
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def _first_close_before(price_data, target_date: datetime) -> float:
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"""Return the closing price on the last trading day before or on target_date."""
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result = None
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for ts, row in price_data["Close"].items():
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ts_date = ts.to_pydatetime().replace(tzinfo=None)
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if ts_date.date() <= target_date.date():
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result = float(row)
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if result is None:
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raise ValueError(f"No price data on or before {target_date.date()}")
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return result
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def run_backtest(
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db_path: str = None,
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holding_days: int = None,
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@ -34,15 +58,14 @@ def run_backtest(
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db_path = db_path or config.DB_PATH
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holding_days = holding_days or config.HOLDING_PERIOD_DAYS
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signals = _load_signals_from_db(db_path)
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signals = [s for s in signals if s["score"] >= min_score and s["cluster_size"] >= min_cluster_size]
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signals = _load_signals_from_db(db_path, min_score, min_cluster_size)
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if not signals:
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logger.warning("No signals found matching criteria")
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return {}
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results = []
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spy_returns = {}
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spy_cache: dict[tuple, float] = {}
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for signal in signals:
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ticker = signal["ticker"]
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@ -58,16 +81,17 @@ def run_backtest(
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try:
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stock_data = yf.download(
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ticker,
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start=(entry_date - timedelta(days=5)).strftime("%Y-%m-%d"),
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start=entry_date.strftime("%Y-%m-%d"),
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end=(exit_date + timedelta(days=5)).strftime("%Y-%m-%d"),
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progress=False,
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auto_adjust=True,
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)
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if stock_data.empty:
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logger.debug(f"No price data for {ticker}")
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continue
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entry_price = float(stock_data["Close"].iloc[0])
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exit_price = float(stock_data["Close"].iloc[-1])
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entry_price = _first_close_on_or_after(stock_data, entry_date)
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exit_price = _first_close_before(stock_data, exit_date)
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stock_return = (exit_price - entry_price) / entry_price
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except Exception as e:
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@ -75,25 +99,25 @@ def run_backtest(
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continue
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period_key = (entry_date_str, holding_days)
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if period_key not in spy_returns:
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if period_key not in spy_cache:
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try:
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spy_data = yf.download(
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"SPY",
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start=(entry_date - timedelta(days=5)).strftime("%Y-%m-%d"),
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start=entry_date.strftime("%Y-%m-%d"),
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end=(exit_date + timedelta(days=5)).strftime("%Y-%m-%d"),
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progress=False,
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auto_adjust=True,
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)
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if not spy_data.empty:
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spy_entry = float(spy_data["Close"].iloc[0])
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spy_exit = float(spy_data["Close"].iloc[-1])
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spy_returns[period_key] = (spy_exit - spy_entry) / spy_entry
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spy_entry = _first_close_on_or_after(spy_data, entry_date)
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spy_exit = _first_close_before(spy_data, exit_date)
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spy_cache[period_key] = (spy_exit - spy_entry) / spy_entry
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else:
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spy_returns[period_key] = 0.0
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spy_cache[period_key] = 0.0
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except Exception:
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spy_returns[period_key] = 0.0
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spy_cache[period_key] = 0.0
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spy_return = spy_returns.get(period_key, 0.0)
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spy_return = spy_cache[period_key]
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alpha = stock_return - spy_return
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results.append({
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@ -114,12 +138,10 @@ def run_backtest(
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win_rate = sum(1 for r in returns if r > 0) / len(returns)
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avg_return = sum(returns) / len(returns)
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avg_alpha = sum(alphas) / len(alphas)
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import math
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std_dev = math.sqrt(sum((r - avg_return) ** 2 for r in returns) / len(returns))
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sharpe = (avg_return / std_dev * math.sqrt(252 / holding_days)) if std_dev > 0 else 0.0
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summary = {
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return {
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"total_signals": len(results),
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"win_rate": round(win_rate, 4),
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"avg_return": round(avg_return, 4),
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@ -129,19 +151,18 @@ def run_backtest(
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"results": results,
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}
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return summary
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def print_summary(summary: dict):
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if "error" in summary:
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print(f"Error: {summary['error']}")
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return
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print(f"\n{'='*40}")
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width = 40
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print(f"\n{'=' * width}")
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print(f"Backtest Results ({summary['holding_days']}-day hold)")
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print(f"{'='*40}")
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print(f"{'=' * width}")
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print(f"Total signals: {summary['total_signals']}")
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print(f"Win rate: {summary['win_rate']:.1%}")
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print(f"Avg return: {summary['avg_return']:.2%}")
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print(f"Avg alpha vs SPY: {summary['avg_alpha_vs_spy']:.2%}")
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print(f"Sharpe ratio: {summary['sharpe_ratio']:.2f}")
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print(f"{'='*40}\n")
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print(f"{'=' * width}\n")
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@ -1,8 +1,8 @@
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import logging
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from typing import Optional
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from datetime import datetime, timedelta
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import config
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from db.db import mark_signal_executed
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from db.db import mark_signal_executed, mark_signal_closed, get_executed_unclosed_signals
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logger = logging.getLogger(__name__)
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@ -21,14 +21,11 @@ def _get_api():
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def get_portfolio_value() -> float:
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api = _get_api()
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account = api.get_account()
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return float(account.portfolio_value)
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return float(_get_api().get_account().portfolio_value)
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def get_open_positions_count() -> int:
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api = _get_api()
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return len(api.list_positions())
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return len(_get_api().list_positions())
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def execute_signal(signal: dict) -> bool:
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@ -40,16 +37,15 @@ def execute_signal(signal: dict) -> bool:
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try:
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api = _get_api()
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positions_count = get_open_positions_count()
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if positions_count >= config.MAX_POSITIONS:
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if get_open_positions_count() >= config.MAX_POSITIONS:
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logger.warning(f"Max positions ({config.MAX_POSITIONS}) reached, skipping {ticker}")
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return False
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portfolio_value = get_portfolio_value()
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allocation = portfolio_value * config.POSITION_SIZE_PCT
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latest_trade = api.get_latest_trade(ticker)
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price = float(latest_trade.price)
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price = float(api.get_latest_trade(ticker).price)
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if price <= 0:
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logger.error(f"Invalid price for {ticker}: {price}")
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return False
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@ -61,8 +57,8 @@ def execute_signal(signal: dict) -> bool:
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existing_positions = {p.symbol: p for p in api.list_positions()}
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if ticker in existing_positions:
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existing_value = float(existing_positions[ticker].market_value)
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if existing_value / portfolio_value >= 0.10:
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existing_pct = float(existing_positions[ticker].market_value) / portfolio_value
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if existing_pct >= 0.10:
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logger.warning(f"Already at 10% cap for {ticker}, skipping")
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return False
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@ -82,13 +78,32 @@ def execute_signal(signal: dict) -> bool:
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return False
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def close_position_after_days(ticker: str, holding_days: Optional[int] = None):
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days = holding_days or config.HOLDING_PERIOD_DAYS
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api = _get_api()
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def close_position(ticker: str, signal_id: int) -> bool:
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try:
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api.close_position(ticker)
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logger.info(f"Closed position: {ticker} after {days} days")
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_get_api().close_position(ticker)
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mark_signal_closed(signal_id)
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logger.info(f"Closed position: {ticker} (signal {signal_id})")
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return True
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except Exception as e:
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logger.error(f"Failed to close position {ticker}: {e}")
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return False
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def close_expired_positions():
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if not config.ALPACA_KEY or not config.ALPACA_SECRET:
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return
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cutoff = datetime.utcnow() - timedelta(days=config.HOLDING_PERIOD_DAYS)
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signals = get_executed_unclosed_signals()
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for signal in signals:
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executed_at_str = signal.get("executed_at")
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if not executed_at_str:
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continue
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try:
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executed_at = datetime.strptime(executed_at_str, "%Y-%m-%dT%H:%M:%SZ")
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except ValueError:
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continue
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if executed_at <= cutoff:
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close_position(signal["ticker"], signal["id"])
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27
db/db.py
27
db/db.py
@ -76,13 +76,25 @@ def mark_signal_alerted(signal_id: int):
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def mark_signal_executed(signal_id: int):
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conn = get_connection()
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try:
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conn.execute("UPDATE signals SET executed=1 WHERE id=?", (signal_id,))
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conn.execute(
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"UPDATE signals SET executed=1, executed_at=? WHERE id=?",
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(datetime.utcnow().strftime("%Y-%m-%dT%H:%M:%SZ"), signal_id),
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)
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conn.commit()
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finally:
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conn.close()
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def get_unalerted_signals():
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def mark_signal_closed(signal_id: int):
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conn = get_connection()
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try:
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conn.execute("UPDATE signals SET closed=1 WHERE id=?", (signal_id,))
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conn.commit()
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finally:
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conn.close()
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def get_unalerted_signals() -> list[dict]:
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conn = get_connection()
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try:
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rows = conn.execute(
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@ -93,6 +105,17 @@ def get_unalerted_signals():
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conn.close()
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def get_executed_unclosed_signals() -> list[dict]:
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conn = get_connection()
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try:
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rows = conn.execute(
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"SELECT * FROM signals WHERE executed=1 AND closed=0 AND executed_at IS NOT NULL"
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).fetchall()
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return [dict(r) for r in rows]
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finally:
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conn.close()
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def get_recent_buys_for_ticker(ticker: str, window_days: int) -> list:
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conn = get_connection()
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try:
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@ -25,6 +25,8 @@ CREATE TABLE IF NOT EXISTS signals (
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score REAL,
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alerted INTEGER DEFAULT 0,
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executed INTEGER DEFAULT 0,
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executed_at TEXT,
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closed INTEGER DEFAULT 0,
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created_at TEXT DEFAULT (datetime('now'))
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);
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@ -32,3 +34,4 @@ CREATE INDEX IF NOT EXISTS idx_filings_ticker ON filings(ticker);
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CREATE INDEX IF NOT EXISTS idx_filings_transaction_date ON filings(transaction_date);
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CREATE INDEX IF NOT EXISTS idx_signals_ticker ON signals(ticker);
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CREATE INDEX IF NOT EXISTS idx_signals_alerted ON signals(alerted);
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CREATE INDEX IF NOT EXISTS idx_signals_executed ON signals(executed);
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@ -1,10 +1,9 @@
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import time
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import os
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import logging
|
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from datetime import datetime
|
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from typing import Optional
|
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import requests
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from lxml import etree
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from lxml import etree, html
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|
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import config
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from ingestion.form4_parser import parse_form4
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@ -13,11 +12,14 @@ from db.db import insert_filing, accession_exists
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logger = logging.getLogger(__name__)
|
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|
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HEADERS = {
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"User-Agent": "insider-copytrade-poc contact@example.com",
|
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"User-Agent": "smaug-insider-monitor contact@example.com",
|
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"Accept-Encoding": "gzip, deflate",
|
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}
|
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|
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EDGAR_FULL_INDEX = "https://www.sec.gov/cgi-bin/browse-edgar?action=getcurrent&type=4&dateb=&owner=include&count=40&output=atom"
|
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EDGAR_ATOM_URL = (
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"https://www.sec.gov/cgi-bin/browse-edgar"
|
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"?action=getcurrent&type=4&dateb=&owner=include&count=40&output=atom"
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)
|
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|
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|
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def _fetch(url: str, timeout: int = 30) -> requests.Response:
|
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@ -27,39 +29,40 @@ def _fetch(url: str, timeout: int = 30) -> requests.Response:
|
||||
|
||||
|
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def _get_filing_urls() -> list[tuple[str, str, str]]:
|
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resp = _fetch(EDGAR_FULL_INDEX)
|
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resp = _fetch(EDGAR_ATOM_URL)
|
||||
root = etree.fromstring(resp.content)
|
||||
ns = {"atom": "http://www.w3.org/2005/Atom"}
|
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entries = root.findall("atom:entry", ns)
|
||||
results = []
|
||||
for entry in entries:
|
||||
filing_href = entry.find("atom:link", ns)
|
||||
if filing_href is None:
|
||||
for entry in root.findall("atom:entry", ns):
|
||||
link = entry.find("atom:link", ns)
|
||||
if link is None:
|
||||
continue
|
||||
url = filing_href.get("href", "")
|
||||
url = link.get("href", "")
|
||||
updated = (entry.findtext("atom:updated", namespaces=ns) or "")[:10]
|
||||
accession = url.rstrip("/").split("/")[-1].replace("-index.htm", "")
|
||||
accession = accession.replace("-", "")
|
||||
if len(accession) == 18:
|
||||
accession = f"{accession[:10]}-{accession[10:12]}-{accession[12:]}"
|
||||
raw = url.rstrip("/").split("/")[-1].replace("-index.htm", "")
|
||||
raw = raw.replace("-", "")
|
||||
if len(raw) == 18:
|
||||
accession = f"{raw[:10]}-{raw[10:12]}-{raw[12:]}"
|
||||
else:
|
||||
accession = raw
|
||||
results.append((url, accession, updated))
|
||||
return results
|
||||
|
||||
|
||||
def _get_xml_url_from_index(index_url: str) -> Optional[str]:
|
||||
def _resolve_xml_url(accession: str) -> Optional[str]:
|
||||
accession_path = accession.replace("-", "")
|
||||
cik = accession_path[:10].lstrip("0")
|
||||
base = f"{config.EDGAR_BASE_URL}/Archives/edgar/data/{cik}/{accession_path}/"
|
||||
index_url = f"{base}{accession}-index.htm"
|
||||
try:
|
||||
resp = _fetch(index_url)
|
||||
except Exception:
|
||||
return None
|
||||
root = etree.fromstring(resp.content)
|
||||
ns = {"atom": "http://www.w3.org/2005/Atom"}
|
||||
for link in root.findall("atom:link", ns):
|
||||
href = link.get("href", "")
|
||||
if href.endswith(".xml") and "form4" in href.lower():
|
||||
return href
|
||||
for link in root.findall(".//filing-href"):
|
||||
if link.text and link.text.endswith(".xml"):
|
||||
return link.text.strip()
|
||||
doc = html.fromstring(resp.content)
|
||||
for link in doc.cssselect("table.tableFile a[href]"):
|
||||
href = link.get("href", "")
|
||||
if href.lower().endswith(".xml") and not href.lower().endswith("-index.htm"):
|
||||
return config.EDGAR_BASE_URL + href if href.startswith("/") else base + href
|
||||
except Exception as e:
|
||||
logger.debug(f"Could not resolve XML URL for {accession}: {e}")
|
||||
return None
|
||||
|
||||
|
||||
@ -79,11 +82,11 @@ def fetch_and_store_new_filings() -> list[dict]:
|
||||
logger.error(f"Failed to fetch EDGAR index: {e}")
|
||||
return new_filings
|
||||
|
||||
for index_url, accession, filed_date in entries:
|
||||
for _index_url, accession, filed_date in entries:
|
||||
if accession_exists(accession):
|
||||
continue
|
||||
|
||||
xml_url = _resolve_xml_url(index_url, accession)
|
||||
xml_url = _resolve_xml_url(accession)
|
||||
if not xml_url:
|
||||
logger.warning(f"No XML found for {accession}")
|
||||
continue
|
||||
@ -99,30 +102,12 @@ def fetch_and_store_new_filings() -> list[dict]:
|
||||
parsed = parse_form4(xml_bytes, accession, filed_date)
|
||||
|
||||
for filing in parsed:
|
||||
inserted = insert_filing(filing)
|
||||
if inserted:
|
||||
if insert_filing(filing):
|
||||
new_filings.append(filing)
|
||||
|
||||
return new_filings
|
||||
|
||||
|
||||
def _resolve_xml_url(index_url: str, accession: str) -> Optional[str]:
|
||||
accession_path = accession.replace("-", "")
|
||||
cik = accession_path[:10].lstrip("0")
|
||||
base = f"{config.EDGAR_BASE_URL}/Archives/edgar/data/{cik}/{accession_path}/"
|
||||
candidate = f"{base}{accession}-index.htm"
|
||||
try:
|
||||
resp = _fetch(candidate)
|
||||
root = etree.fromstring(resp.content)
|
||||
for node in root.iter():
|
||||
text = (node.text or "").strip()
|
||||
if text.endswith(".xml") and ("4" in text or "form" in text.lower()):
|
||||
return base + text
|
||||
except Exception:
|
||||
pass
|
||||
return None
|
||||
|
||||
|
||||
def run_poller(on_new_filing=None):
|
||||
logger.info("EDGAR poller started")
|
||||
while True:
|
||||
@ -134,5 +119,5 @@ def run_poller(on_new_filing=None):
|
||||
try:
|
||||
on_new_filing(filing)
|
||||
except Exception as e:
|
||||
logger.error(f"Error in on_new_filing callback: {e}")
|
||||
logger.error(f"Error processing filing {filing.get('accession_number')}: {e}")
|
||||
time.sleep(config.EDGAR_POLL_INTERVAL)
|
||||
|
||||
18
main.py
18
main.py
@ -8,7 +8,7 @@ logging.basicConfig(
|
||||
logger = logging.getLogger(__name__)
|
||||
|
||||
|
||||
def _on_new_filing(filing: dict):
|
||||
def _process_filing(filing: dict):
|
||||
from signals.filter_engine import process_filing
|
||||
from alerts.slack_alert import send_slack_alert
|
||||
import config
|
||||
@ -29,13 +29,25 @@ def _on_new_filing(filing: dict):
|
||||
execute_signal(signal)
|
||||
|
||||
|
||||
def _close_expired_positions():
|
||||
import config
|
||||
if config.ALPACA_KEY and config.ALPACA_SECRET:
|
||||
from broker.alpaca_client import close_expired_positions
|
||||
close_expired_positions()
|
||||
|
||||
|
||||
def cmd_run():
|
||||
from db.db import init_db
|
||||
from ingestion.edgar_poller import run_poller
|
||||
|
||||
init_db()
|
||||
logger.info("Database initialized")
|
||||
run_poller(on_new_filing=_on_new_filing)
|
||||
|
||||
def on_new_filing(filing: dict):
|
||||
_process_filing(filing)
|
||||
_close_expired_positions()
|
||||
|
||||
run_poller(on_new_filing=on_new_filing)
|
||||
|
||||
|
||||
def cmd_backtest():
|
||||
@ -61,7 +73,7 @@ def cmd_fetch_once():
|
||||
logger.info(f"Fetched and stored {len(filings)} new filings")
|
||||
|
||||
for filing in filings:
|
||||
signal = _on_new_filing(filing)
|
||||
_process_filing(filing)
|
||||
|
||||
|
||||
COMMANDS = {
|
||||
|
||||
Loading…
Reference in New Issue
Block a user