Files
fxhnt/tests/integration/test_execution.py
jgrusewski bcf58e703d fix(exec): entry-floor threshold on the sizing envelope, not the raw NLV
The IGLN gold-sleeve 'priced but no order' bug. scaled_weights sizes orders to
the paper envelope (envelope*within_weight), but _plan's entry-floor/hysteresis
threshold used entry_floor*nlv (the full $1M account NLV) — so the effective
floor was ~entry_floor*(nlv/envelope) of the envelope (~5%), silently dropping
every sleeve below it. A 3% gold sleeve at a $100k envelope on a $1M account
skipped. FIX: rebalance_weights takes sizing_capital (the envelope); the floor
is entry_floor*min(sizing_capital,nlv). Sizing + recording unchanged. Regression
test: a 3% sleeve survives WITH the envelope basis, drops without it. 2005 green.

Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
2026-07-15 16:14:06 +02:00

169 lines
8.3 KiB
Python

"""Execution engine end-to-end with a FAKE data provider + FAKE broker (no network, no IBKR).
Proves the multi-strategy rebalance: netting → reconcile vs broker → whole-share orders → gates."""
from __future__ import annotations
import numpy as np
from fxhnt.application import ExecutionService
from fxhnt.config import ExecutionSettings, Settings
from fxhnt.domain.models import AssetClass, Market, PriceSeries, StrategySpec
from fxhnt.domain.portfolio import Book, StrategyAllocation
from fxhnt.ports.broker import AccountState, Order
SPY = Market(symbol="SPY", asset_class=AssetClass.ETF)
class FakeData:
name = "fake"
def fetch(self, market: Market, start=None, end=None) -> PriceSeries:
close = 100.0 * np.cumprod(1.0 + np.full(400, 0.001)) # uptrend -> trend long
return PriceSeries(market=market, dates=tuple(str(i) for i in range(400)), close=close)
class FakeBroker:
name = "fake"
def __init__(self, state: AccountState) -> None:
self.state = state
self.placed: list[Order] = []
def account_state(self) -> AccountState:
return self.state
def place_order(self, order: Order) -> str:
self.placed.append(order)
return "Filled"
def _book() -> Book:
return Book(name="b", max_gross_leverage=1.0, allocations=[
StrategyAllocation(spec=StrategySpec(kind="trend", params={"window": 50}), market=SPY, weight=1.0),
])
def _settings() -> Settings:
return Settings(execution=ExecutionSettings(allow_live=False))
def test_rebalance_from_flat_places_buy() -> None:
broker = FakeBroker(AccountState(nlv=100_000, cash=100_000, positions={}, is_paper=True))
svc = ExecutionService(FakeData(), broker, _settings())
plan = svc.rebalance(_book(), execute=True)
assert not plan.blocked
assert plan.executed and len(broker.placed) == 1
o = broker.placed[0]
assert o.symbol == "SPY" and o.side == "BUY"
# ~100% of 100k at price ~149 (100*1.001^399) -> ~670 shares
assert 600 < o.quantity < 750
def test_in_band_when_already_on_target_no_orders() -> None:
# already holding ~full target -> hysteresis says do nothing
broker = FakeBroker(AccountState(nlv=100_000, cash=0, positions={"SPY": 670}, is_paper=True))
svc = ExecutionService(FakeData(), broker, _settings())
plan = svc.rebalance(_book(), execute=True)
assert not plan.executed and not broker.placed
assert any("in band" in n for n in plan.notes)
def test_live_account_blocked_without_allow_live() -> None:
broker = FakeBroker(AccountState(nlv=100_000, cash=100_000, positions={}, is_paper=False))
svc = ExecutionService(FakeData(), broker, _settings())
plan = svc.rebalance(_book(), execute=True)
assert plan.blocked and not broker.placed
def test_inconsistent_account_data_blocks() -> None:
# NLV says 100k but cash+positions says 60k -> 40% gap > data_tol -> refuse
broker = FakeBroker(AccountState(nlv=100_000, cash=10_000, positions={}, is_paper=True, gross_position_value=50_000))
svc = ExecutionService(FakeData(), broker, _settings())
plan = svc.rebalance(_book(), execute=True)
assert plan.blocked and not broker.placed
class FractionalFakeBroker(FakeBroker):
supports_fractional = True # Alpaca-style: the execution layer must size fractional shares
def test_fractional_broker_places_precise_fractional_quantity() -> None:
# A broker that supports fractional shares gets the EXACT target quantity (not whole-share rounded),
# so the book implements its weights precisely — the whole point of the Alpaca leg.
broker = FractionalFakeBroker(AccountState(nlv=100_000, cash=100_000, positions={}, is_paper=True))
svc = ExecutionService(FakeData(), broker, _settings())
plan = svc.rebalance(_book(), execute=True)
assert plan.executed and len(broker.placed) == 1
q = broker.placed[0].quantity
assert 600.0 < q < 750.0
assert q != int(q) # FRACTIONAL — has a decimal part, not the whole-share integer
assert q == round(q, 6) # sized to the fractional precision, not arbitrary float noise
def test_rebalance_weights_places_from_precomputed_targets() -> None:
# The multistrat bridge: rebalance to PRE-COMPUTED weights + caller-supplied prices (no book/data fetch),
# reusing the same gates + fractional sizing. 60/40 of 100k at $100 → 600 / 400 shares.
broker = FractionalFakeBroker(AccountState(nlv=100_000, cash=100_000, positions={}, is_paper=True))
svc = ExecutionService(FakeData(), broker, _settings())
plan = svc.rebalance_weights("multistrat", {"SPY": 0.6, "IEF": 0.4},
{"SPY": 100.0, "IEF": 100.0}, max_gross=1.5, execute=True)
assert not plan.blocked and plan.executed
placed = {o.symbol: o.quantity for o in broker.placed}
assert placed == {"SPY": 600.0, "IEF": 400.0}
def test_entry_floor_uses_sizing_capital_not_full_nlv() -> None:
# Regression (the IGLN gold-sleeve drop): the book is sized to a $100k envelope on a $1M paper account, so
# weights come pre-scaled by envelope/nlv (=0.1). A 3% sleeve = $3k of the envelope. entry_floor is 0.5%:
# on the envelope that's $500 (place), but on the raw $1M NLV it's $5k (would silently drop the sleeve).
scaled = {"SPY": 0.097 * 0.1, "GLD": 0.030 * 0.1} # envelope-scaled (scale = 100k/1M)
prices = {"SPY": 800.0, "GLD": 80.0} # GLD order ≈ $3,000 (between $500 and $5,000)
# WITH sizing_capital (the fix): the 3% sleeve survives the envelope-based floor.
b1 = FractionalFakeBroker(AccountState(nlv=1_000_000, cash=1_000_000, positions={}, is_paper=True))
ExecutionService(FakeData(), b1, _settings()).rebalance_weights(
"multistrat", scaled, prices, max_gross=1.5, execute=True, sizing_capital=100_000)
assert "GLD" in {o.symbol for o in b1.placed}
# WITHOUT it: the same sleeve is dropped by the NLV-based floor — the bug the fix addresses.
b2 = FractionalFakeBroker(AccountState(nlv=1_000_000, cash=1_000_000, positions={}, is_paper=True))
ExecutionService(FakeData(), b2, _settings()).rebalance_weights(
"multistrat", scaled, prices, max_gross=1.5, execute=True)
assert "GLD" not in {o.symbol for o in b2.placed}
def test_rebalance_weights_blocks_when_gross_exceeds_max() -> None:
broker = FractionalFakeBroker(AccountState(nlv=100_000, cash=100_000, positions={}, is_paper=True))
svc = ExecutionService(FakeData(), broker, _settings())
plan = svc.rebalance_weights("x", {"SPY": 1.2, "IEF": 0.5},
{"SPY": 100.0, "IEF": 100.0}, max_gross=1.5, execute=True)
assert plan.blocked and not broker.placed # gross 1.7 > 1.5 → refuse
def test_rebalance_weights_us_path_order_uses_default_contract_fields() -> None:
"""--venue us (no contract_specs): the placed Order carries the SMART/USD defaults and NO secId —
the US path is byte-unchanged."""
broker = FractionalFakeBroker(AccountState(nlv=100_000, cash=100_000, positions={}, is_paper=True))
svc = ExecutionService(FakeData(), broker, _settings())
plan = svc.rebalance_weights("multistrat", {"SPY": 0.6}, {"SPY": 100.0},
max_gross=1.5, execute=True)
assert plan.executed
o = broker.placed[0]
assert o.exchange == "SMART" and o.currency == "USD"
assert o.sec_id_type is None and o.sec_id is None
def test_rebalance_weights_ucits_path_enriches_order_with_contract_spec() -> None:
"""--venue ucits: contract_specs enrich the placed Order with the resolving ISIN/exchange/currency,
and sizing uses the caller-supplied (REAL UCITS) price."""
broker = FractionalFakeBroker(AccountState(nlv=100_000, cash=100_000, positions={}, is_paper=True))
svc = ExecutionService(FakeData(), broker, _settings())
specs = {"CSPX": {"exchange": "SMART", "currency": "USD",
"sec_id_type": "ISIN", "sec_id": "IE00B5BMR087"}}
plan = svc.rebalance_weights("multistrat", {"CSPX": 0.6}, {"CSPX": 620.0},
max_gross=1.5, execute=True, contract_specs=specs)
assert plan.executed
o = broker.placed[0]
assert o.symbol == "CSPX"
assert o.sec_id_type == "ISIN" and o.sec_id == "IE00B5BMR087"
assert o.currency == "USD"
# sized from the REAL UCITS price 620 (60% of 100k / 620 ≈ 96.77), NOT a US price
assert abs(o.quantity - (0.6 * 100_000 / 620.0)) < 1e-6