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feature/is
...
feature/is
| Author | SHA1 | Date | |
|---|---|---|---|
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d19e5b0de6 |
22
src/db.py
22
src/db.py
@@ -237,6 +237,28 @@ def get_open_position(
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return {"decision_id": row[1], "price": row[2], "quantity": row[3]}
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return {"decision_id": row[1], "price": row[2], "quantity": row[3]}
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def get_open_positions_by_market(
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conn: sqlite3.Connection, market: str
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) -> list[str]:
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"""Return stock codes with a net positive position in the given market.
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Uses net BUY - SELL quantity aggregation to avoid false positives from
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the simpler "latest record is BUY" heuristic. A stock is considered
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open only when the bot's own recorded trades leave a positive net quantity.
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"""
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cursor = conn.execute(
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"""
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SELECT stock_code
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FROM trades
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WHERE market = ?
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GROUP BY stock_code
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HAVING SUM(CASE WHEN action = 'BUY' THEN quantity ELSE -quantity END) > 0
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""",
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(market,),
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)
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return [row[0] for row in cursor.fetchall()]
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def get_recent_symbols(
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def get_recent_symbols(
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conn: sqlite3.Connection, market: str, limit: int = 30
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conn: sqlite3.Connection, market: str, limit: int = 30
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) -> list[str]:
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) -> list[str]:
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35
src/main.py
35
src/main.py
@@ -32,6 +32,7 @@ from src.core.risk_manager import CircuitBreakerTripped, FatFingerRejected, Risk
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from src.db import (
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from src.db import (
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get_latest_buy_trade,
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get_latest_buy_trade,
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get_open_position,
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get_open_position,
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get_open_positions_by_market,
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get_recent_symbols,
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get_recent_symbols,
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init_db,
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init_db,
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log_trade,
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log_trade,
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@@ -387,10 +388,8 @@ async def trading_cycle(
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if entry_price > 0:
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if entry_price > 0:
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loss_pct = (current_price - entry_price) / entry_price * 100
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loss_pct = (current_price - entry_price) / entry_price * 100
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stop_loss_threshold = -2.0
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stop_loss_threshold = -2.0
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take_profit_threshold = 3.0
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if stock_playbook and stock_playbook.scenarios:
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if stock_playbook and stock_playbook.scenarios:
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stop_loss_threshold = stock_playbook.scenarios[0].stop_loss_pct
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stop_loss_threshold = stock_playbook.scenarios[0].stop_loss_pct
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take_profit_threshold = stock_playbook.scenarios[0].take_profit_pct
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if loss_pct <= stop_loss_threshold:
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if loss_pct <= stop_loss_threshold:
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decision = TradeDecision(
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decision = TradeDecision(
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@@ -408,22 +407,6 @@ async def trading_cycle(
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loss_pct,
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loss_pct,
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stop_loss_threshold,
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stop_loss_threshold,
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)
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)
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elif loss_pct >= take_profit_threshold:
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decision = TradeDecision(
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action="SELL",
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confidence=90,
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rationale=(
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f"Take-profit triggered ({loss_pct:.2f}% >= "
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f"{take_profit_threshold:.2f}%)"
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),
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)
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logger.info(
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"Take-profit override for %s (%s): %.2f%% >= %.2f%%",
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stock_code,
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market.name,
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loss_pct,
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take_profit_threshold,
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)
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logger.info(
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logger.info(
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"Decision for %s (%s): %s (confidence=%d)",
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"Decision for %s (%s): %s (confidence=%d)",
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stock_code,
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stock_code,
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@@ -1882,7 +1865,21 @@ async def run(settings: Settings) -> None:
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logger.error("Smart Scanner failed for %s: %s", market.name, exc)
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logger.error("Smart Scanner failed for %s: %s", market.name, exc)
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# Get active stocks from scanner (dynamic, no static fallback)
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# Get active stocks from scanner (dynamic, no static fallback)
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stock_codes = active_stocks.get(market.code, [])
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# Also include current holdings so stop-loss / take-profit
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# can trigger even when a position drops off the scanner.
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scanner_codes = active_stocks.get(market.code, [])
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held_codes = get_open_positions_by_market(db_conn, market.code)
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# Union: scanner candidates first, then holdings not already present.
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# dict.fromkeys preserves insertion order and removes duplicates.
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stock_codes = list(dict.fromkeys(scanner_codes + held_codes))
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if held_codes:
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new_held = [c for c in held_codes if c not in set(scanner_codes)]
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if new_held:
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logger.info(
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"Holdings added to loop for %s (not in scanner): %s",
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market.name,
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new_held,
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)
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if not stock_codes:
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if not stock_codes:
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logger.debug("No active stocks for market %s", market.code)
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logger.debug("No active stocks for market %s", market.code)
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continue
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continue
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@@ -1,6 +1,6 @@
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"""Tests for database helper functions."""
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"""Tests for database helper functions."""
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from src.db import get_open_position, init_db, log_trade
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from src.db import get_open_position, get_open_positions_by_market, init_db, log_trade
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def test_get_open_position_returns_latest_buy() -> None:
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def test_get_open_position_returns_latest_buy() -> None:
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@@ -58,3 +58,87 @@ def test_get_open_position_returns_none_when_latest_is_sell() -> None:
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def test_get_open_position_returns_none_when_no_trades() -> None:
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def test_get_open_position_returns_none_when_no_trades() -> None:
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conn = init_db(":memory:")
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conn = init_db(":memory:")
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assert get_open_position(conn, "AAPL", "US_NASDAQ") is None
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assert get_open_position(conn, "AAPL", "US_NASDAQ") is None
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# --- get_open_positions_by_market tests ---
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def test_get_open_positions_by_market_returns_net_positive_stocks() -> None:
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"""Stocks with net BUY quantity > 0 are included."""
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conn = init_db(":memory:")
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log_trade(
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conn=conn, stock_code="005930", action="BUY", confidence=90,
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rationale="entry", quantity=5, price=70000.0, market="KR",
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exchange_code="KRX", decision_id="d1",
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)
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log_trade(
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conn=conn, stock_code="000660", action="BUY", confidence=85,
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rationale="entry", quantity=3, price=100000.0, market="KR",
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exchange_code="KRX", decision_id="d2",
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)
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result = get_open_positions_by_market(conn, "KR")
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assert set(result) == {"005930", "000660"}
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def test_get_open_positions_by_market_excludes_fully_sold_stocks() -> None:
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"""Stocks where BUY qty == SELL qty are excluded (net qty = 0)."""
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conn = init_db(":memory:")
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log_trade(
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conn=conn, stock_code="005930", action="BUY", confidence=90,
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rationale="entry", quantity=3, price=70000.0, market="KR",
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exchange_code="KRX", decision_id="d1",
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)
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log_trade(
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conn=conn, stock_code="005930", action="SELL", confidence=95,
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rationale="exit", quantity=3, price=71000.0, market="KR",
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exchange_code="KRX", decision_id="d2",
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)
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result = get_open_positions_by_market(conn, "KR")
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assert "005930" not in result
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def test_get_open_positions_by_market_includes_partially_sold_stocks() -> None:
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"""Stocks with partial SELL (net qty > 0) are still included."""
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conn = init_db(":memory:")
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log_trade(
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conn=conn, stock_code="005930", action="BUY", confidence=90,
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rationale="entry", quantity=5, price=70000.0, market="KR",
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exchange_code="KRX", decision_id="d1",
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)
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log_trade(
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conn=conn, stock_code="005930", action="SELL", confidence=95,
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rationale="partial exit", quantity=2, price=71000.0, market="KR",
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exchange_code="KRX", decision_id="d2",
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)
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result = get_open_positions_by_market(conn, "KR")
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assert "005930" in result
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def test_get_open_positions_by_market_is_market_scoped() -> None:
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"""Only stocks from the specified market are returned."""
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conn = init_db(":memory:")
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log_trade(
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conn=conn, stock_code="005930", action="BUY", confidence=90,
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rationale="entry", quantity=3, price=70000.0, market="KR",
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exchange_code="KRX", decision_id="d1",
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)
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log_trade(
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conn=conn, stock_code="AAPL", action="BUY", confidence=85,
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rationale="entry", quantity=2, price=200.0, market="NASD",
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exchange_code="NAS", decision_id="d2",
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)
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kr_result = get_open_positions_by_market(conn, "KR")
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nasd_result = get_open_positions_by_market(conn, "NASD")
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assert kr_result == ["005930"]
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assert nasd_result == ["AAPL"]
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def test_get_open_positions_by_market_returns_empty_when_no_trades() -> None:
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"""Empty list returned when no trades exist for the market."""
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conn = init_db(":memory:")
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assert get_open_positions_by_market(conn, "KR") == []
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@@ -1396,207 +1396,6 @@ async def test_hold_overridden_to_sell_when_stop_loss_triggered() -> None:
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assert broker.send_order.call_args.kwargs["order_type"] == "SELL"
|
assert broker.send_order.call_args.kwargs["order_type"] == "SELL"
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|
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|
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@pytest.mark.asyncio
|
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async def test_hold_overridden_to_sell_when_take_profit_triggered() -> None:
|
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"""HOLD decision should be overridden to SELL when take-profit threshold is reached."""
|
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db_conn = init_db(":memory:")
|
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decision_logger = DecisionLogger(db_conn)
|
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|
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buy_decision_id = decision_logger.log_decision(
|
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stock_code="005930",
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market="KR",
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exchange_code="KRX",
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action="BUY",
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confidence=90,
|
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rationale="entry",
|
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context_snapshot={},
|
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input_data={},
|
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)
|
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log_trade(
|
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conn=db_conn,
|
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stock_code="005930",
|
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action="BUY",
|
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confidence=90,
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rationale="entry",
|
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quantity=1,
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price=100.0,
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market="KR",
|
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exchange_code="KRX",
|
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decision_id=buy_decision_id,
|
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)
|
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|
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broker = MagicMock()
|
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# Current price 106.0 → +6% gain, above take_profit_pct=3.0
|
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broker.get_current_price = AsyncMock(return_value=(106.0, 6.0, 0.0))
|
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broker.get_balance = AsyncMock(
|
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return_value={
|
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"output2": [
|
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{
|
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"tot_evlu_amt": "100000",
|
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"dnca_tot_amt": "10000",
|
|
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"pchs_amt_smtl_amt": "90000",
|
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}
|
|
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]
|
|
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}
|
|
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)
|
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broker.send_order = AsyncMock(return_value={"msg1": "OK"})
|
|
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|
|
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scenario = StockScenario(
|
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condition=StockCondition(rsi_below=30),
|
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action=ScenarioAction.BUY,
|
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confidence=88,
|
|
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stop_loss_pct=-2.0,
|
|
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take_profit_pct=3.0,
|
|
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rationale="take profit policy",
|
|
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)
|
|
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playbook = DayPlaybook(
|
|
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date=date(2026, 2, 8),
|
|
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market="KR",
|
|
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stock_playbooks=[
|
|
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{"stock_code": "005930", "stock_name": "Samsung", "scenarios": [scenario]}
|
|
||||||
],
|
|
||||||
)
|
|
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engine = MagicMock(spec=ScenarioEngine)
|
|
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engine.evaluate = MagicMock(return_value=_make_hold_match())
|
|
||||||
|
|
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market = MagicMock()
|
|
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market.name = "Korea"
|
|
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market.code = "KR"
|
|
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market.exchange_code = "KRX"
|
|
||||||
market.is_domestic = True
|
|
||||||
|
|
||||||
telegram = MagicMock()
|
|
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telegram.notify_trade_execution = AsyncMock()
|
|
||||||
telegram.notify_fat_finger = AsyncMock()
|
|
||||||
telegram.notify_circuit_breaker = AsyncMock()
|
|
||||||
telegram.notify_scenario_matched = AsyncMock()
|
|
||||||
|
|
||||||
await trading_cycle(
|
|
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broker=broker,
|
|
||||||
overseas_broker=MagicMock(),
|
|
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scenario_engine=engine,
|
|
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playbook=playbook,
|
|
||||||
risk=MagicMock(),
|
|
||||||
db_conn=db_conn,
|
|
||||||
decision_logger=decision_logger,
|
|
||||||
context_store=MagicMock(
|
|
||||||
get_latest_timeframe=MagicMock(return_value=None),
|
|
||||||
set_context=MagicMock(),
|
|
||||||
),
|
|
||||||
criticality_assessor=MagicMock(
|
|
||||||
assess_market_conditions=MagicMock(return_value=MagicMock(value="NORMAL")),
|
|
||||||
get_timeout=MagicMock(return_value=5.0),
|
|
||||||
),
|
|
||||||
telegram=telegram,
|
|
||||||
market=market,
|
|
||||||
stock_code="005930",
|
|
||||||
scan_candidates={},
|
|
||||||
)
|
|
||||||
|
|
||||||
broker.send_order.assert_called_once()
|
|
||||||
assert broker.send_order.call_args.kwargs["order_type"] == "SELL"
|
|
||||||
|
|
||||||
|
|
||||||
@pytest.mark.asyncio
|
|
||||||
async def test_hold_not_overridden_when_between_stop_loss_and_take_profit() -> None:
|
|
||||||
"""HOLD should remain HOLD when P&L is within stop-loss and take-profit bounds."""
|
|
||||||
db_conn = init_db(":memory:")
|
|
||||||
decision_logger = DecisionLogger(db_conn)
|
|
||||||
|
|
||||||
buy_decision_id = decision_logger.log_decision(
|
|
||||||
stock_code="005930",
|
|
||||||
market="KR",
|
|
||||||
exchange_code="KRX",
|
|
||||||
action="BUY",
|
|
||||||
confidence=90,
|
|
||||||
rationale="entry",
|
|
||||||
context_snapshot={},
|
|
||||||
input_data={},
|
|
||||||
)
|
|
||||||
log_trade(
|
|
||||||
conn=db_conn,
|
|
||||||
stock_code="005930",
|
|
||||||
action="BUY",
|
|
||||||
confidence=90,
|
|
||||||
rationale="entry",
|
|
||||||
quantity=1,
|
|
||||||
price=100.0,
|
|
||||||
market="KR",
|
|
||||||
exchange_code="KRX",
|
|
||||||
decision_id=buy_decision_id,
|
|
||||||
)
|
|
||||||
|
|
||||||
broker = MagicMock()
|
|
||||||
# Current price 101.0 → +1% gain, within [-2%, +3%] range
|
|
||||||
broker.get_current_price = AsyncMock(return_value=(101.0, 1.0, 0.0))
|
|
||||||
broker.get_balance = AsyncMock(
|
|
||||||
return_value={
|
|
||||||
"output2": [
|
|
||||||
{
|
|
||||||
"tot_evlu_amt": "100000",
|
|
||||||
"dnca_tot_amt": "10000",
|
|
||||||
"pchs_amt_smtl_amt": "90000",
|
|
||||||
}
|
|
||||||
]
|
|
||||||
}
|
|
||||||
)
|
|
||||||
broker.send_order = AsyncMock(return_value={"msg1": "OK"})
|
|
||||||
|
|
||||||
scenario = StockScenario(
|
|
||||||
condition=StockCondition(rsi_below=30),
|
|
||||||
action=ScenarioAction.BUY,
|
|
||||||
confidence=88,
|
|
||||||
stop_loss_pct=-2.0,
|
|
||||||
take_profit_pct=3.0,
|
|
||||||
rationale="within range policy",
|
|
||||||
)
|
|
||||||
playbook = DayPlaybook(
|
|
||||||
date=date(2026, 2, 8),
|
|
||||||
market="KR",
|
|
||||||
stock_playbooks=[
|
|
||||||
{"stock_code": "005930", "stock_name": "Samsung", "scenarios": [scenario]}
|
|
||||||
],
|
|
||||||
)
|
|
||||||
engine = MagicMock(spec=ScenarioEngine)
|
|
||||||
engine.evaluate = MagicMock(return_value=_make_hold_match())
|
|
||||||
|
|
||||||
market = MagicMock()
|
|
||||||
market.name = "Korea"
|
|
||||||
market.code = "KR"
|
|
||||||
market.exchange_code = "KRX"
|
|
||||||
market.is_domestic = True
|
|
||||||
|
|
||||||
telegram = MagicMock()
|
|
||||||
telegram.notify_trade_execution = AsyncMock()
|
|
||||||
telegram.notify_fat_finger = AsyncMock()
|
|
||||||
telegram.notify_circuit_breaker = AsyncMock()
|
|
||||||
telegram.notify_scenario_matched = AsyncMock()
|
|
||||||
|
|
||||||
await trading_cycle(
|
|
||||||
broker=broker,
|
|
||||||
overseas_broker=MagicMock(),
|
|
||||||
scenario_engine=engine,
|
|
||||||
playbook=playbook,
|
|
||||||
risk=MagicMock(),
|
|
||||||
db_conn=db_conn,
|
|
||||||
decision_logger=decision_logger,
|
|
||||||
context_store=MagicMock(
|
|
||||||
get_latest_timeframe=MagicMock(return_value=None),
|
|
||||||
set_context=MagicMock(),
|
|
||||||
),
|
|
||||||
criticality_assessor=MagicMock(
|
|
||||||
assess_market_conditions=MagicMock(return_value=MagicMock(value="NORMAL")),
|
|
||||||
get_timeout=MagicMock(return_value=5.0),
|
|
||||||
),
|
|
||||||
telegram=telegram,
|
|
||||||
market=market,
|
|
||||||
stock_code="005930",
|
|
||||||
scan_candidates={},
|
|
||||||
)
|
|
||||||
|
|
||||||
broker.send_order.assert_not_called()
|
|
||||||
|
|
||||||
|
|
||||||
@pytest.mark.asyncio
|
@pytest.mark.asyncio
|
||||||
async def test_handle_market_close_runs_daily_review_flow() -> None:
|
async def test_handle_market_close_runs_daily_review_flow() -> None:
|
||||||
"""Market close should aggregate, create scorecard, lessons, and notify."""
|
"""Market close should aggregate, create scorecard, lessons, and notify."""
|
||||||
|
|||||||
Reference in New Issue
Block a user