Files
PolyWeather/tests/test_scan_terminal_modules.py

162 lines
5.1 KiB
Python

from web.scan_terminal_filters import normalize_scan_terminal_filters
from web.scan_terminal_metar_gate import _apply_metar_gate_to_row
from web.scan_terminal_payloads import (
build_failed_scan_terminal_payload,
build_scan_terminal_snapshot_id,
build_stale_scan_terminal_payload,
)
from web.scan_terminal_ranker import build_ranked_scan_terminal_result
from web.routers.scan import router as scan_router
def test_scan_router_does_not_expose_terminal_ai_endpoint():
routes = {
getattr(route, "path", None): getattr(route, "methods", set())
for route in scan_router.routes
}
assert "/api/scan/terminal/ai" not in routes
def test_normalize_scan_terminal_filters_clamps_and_swaps_bounds():
filters = normalize_scan_terminal_filters(
{
"min_price": 1.2,
"max_price": -0.2,
"limit": 999,
"high_liquidity_only": True,
"min_liquidity": 100,
"timezone_offset_seconds": "28800",
}
)
assert filters["min_price"] == 0.0
assert filters["max_price"] == 1.0
assert filters["limit"] == 200
assert filters["min_liquidity"] == 5000.0
assert filters["timezone_offset_seconds"] == 28800
def test_ranked_scan_terminal_result_sorts_and_summarizes_unique_markets():
result = build_ranked_scan_terminal_result(
city_results=[
{
"candidate_total": 2,
"primary_scores": [80.0],
"rows": [
{
"id": "low",
"market_key": "m1",
"final_score": 70.0,
"edge_percent": 4.0,
"volume": 100,
},
{
"id": "high",
"market_key": "m1",
"final_score": 90.0,
"edge_percent": 2.0,
"volume": 250,
},
],
},
{
"candidate_total": 1,
"primary_scores": [60.0],
"rows": [
{
"id": "tie-break",
"market_key": "m2",
"final_score": 90.0,
"edge_percent": 5.0,
"volume": 300,
}
],
},
],
filters={"limit": 2},
total_city_count=3,
failed_city_count=1,
)
assert [row["id"] for row in result["ranked_rows"]] == ["tie-break", "high"]
assert [row["rank"] for row in result["ranked_rows"]] == [1, 2]
assert result["top_signal"]["id"] == "tie-break"
assert result["summary"]["candidate_total"] == 3
assert result["summary"]["visible_count"] == 2
assert result["summary"]["tradable_market_count"] == 2
assert result["summary"]["total_volume"] == 550
assert result["summary"]["failed_city_count"] == 1
def test_scan_terminal_payload_helpers_preserve_stale_and_failed_shape():
success_payload = {
"generated_at": "2026-04-28T00:00:00Z",
"snapshot_id": "scan-old",
"filters": {"scan_mode": "tradable"},
"rows": [{"id": "row-1"}],
}
stale = build_stale_scan_terminal_payload(
filters={"scan_mode": "trend"},
success_payload=success_payload,
error_message="refresh failed",
failed_at="2026-04-28T00:01:00Z",
)
failed = build_failed_scan_terminal_payload(
filters={"scan_mode": "trend"},
error_message="network down",
failed_at="2026-04-28T00:02:00Z",
)
assert stale["status"] == "stale"
assert stale["stale"] is True
assert stale["rows"] == [{"id": "row-1"}]
assert stale["filters"] == {"scan_mode": "trend"}
assert stale["last_success_at"] == "2026-04-28T00:00:00Z"
assert failed["status"] == "failed"
assert failed["summary"]["candidate_total"] == 0
assert failed["rows"] == []
def test_scan_terminal_snapshot_id_is_stable_for_same_ranked_inputs():
summary = {
"candidate_total": 2,
"tradable_market_count": 2,
"avg_edge_percent": 3.5,
}
rows = [
{"id": "a", "edge_percent": 4.0, "final_score": 90.0},
{"id": "b", "edge_percent": 3.0, "final_score": 80.0},
]
first = build_scan_terminal_snapshot_id({"limit": 2}, rows, summary, rows[0])
second = build_scan_terminal_snapshot_id({"limit": 2}, rows, summary, rows[0])
assert first == second
assert first.startswith("scan-")
def test_metar_gate_vetoes_yes_when_observed_breaks_above_bucket():
row = {
"id": "yes-row",
"side": "yes",
"target_lower": 32.0,
"target_upper": 34.0,
"target_unit": "°C",
"metar_context": {
"obs_count": 6,
"max_temp": 35.0,
"last_temp": 35.0,
"trend_delta": 1.0,
"stale_for_today": False,
},
}
_apply_metar_gate_to_row(row)
assert row["v4_metar_decision"] == "veto"
assert row["ai_decision"] == "veto"
assert "越过目标桶上沿" in row["ai_reason_zh"]