Fixed two concrete gaps in the MCP knowledge-search endpoint: no locale field existed at all (now nl-BE/en-GB/fr-BE, wired to the knowledge provider's existing language param), and the correlation ID was always freshly minted, ignoring any inbound X-Correlation-Id header. Added a shared dependency and applied it to all four MCP endpoints so Fleet Ops's own audit log preserves the Hub's real correlation ID end to end. MCP_HUB_BASE_URL/MCP_PROVIDER_ID were declared in .env.example but never read anywhere. Since the Hub's own registration is catalog-driven (it never needs Fleet Ops to push a registration call), wired mcp_hub_base_url for a real Hub reachability health check instead of an unneeded self-registration call. Renamed Fleet Ops's own internal audit tool labels mobilityops_* -> fleet_ops_* (mirrored in contracts/mcp-tools.json with mobilityops_* kept as deprecated aliases); documented that the live Hub connector's own dotted tool namespace is a separate, Hub-owned naming layer, deliberately not touched. Automation page's MCP card now shows real evidence (last tool/client/count/ timestamp, honest no-evidence state) instead of just the registration flag. Also fixed a real methodology gap found mid-session: compose.yaml's api service has no bind mount, so `docker compose run --rm api` silently tests a stale image until rebuilt. Re-ran every local gate after rebuilding; fixed one genuinely stale test assertion and two lint line-length errors surfaced by that rebuild. 176 tests passing, ruff clean, mypy clean (50 files). Co-Authored-By: Claude Sonnet 5 <noreply@anthropic.com>
200 lines
7.8 KiB
Python
200 lines
7.8 KiB
Python
from datetime import UTC, datetime
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from sqlalchemy import func, select
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from app.core.db import SessionLocal
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from app.models.audit import AuditEvent
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from app.models.booking import Booking
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from app.models.customer import Customer
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from app.models.data_quality import DataQualityIssue
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from app.models.outbox import OutboxEvent
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from app.models.user import User
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from app.models.vehicle import Vehicle
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from app.seed_loader import SEED_AUTHORED_ANCHOR, reset_and_seed
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def test_seed_counts_match_deterministic_dataset():
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# Other test modules mutate shared demo state (returns, resets), so this test
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# re-seeds immediately before asserting counts rather than trusting whatever
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# order pytest happened to run modules in.
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db = SessionLocal()
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try:
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reset_and_seed(db)
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assert db.scalar(select(func.count()).select_from(Vehicle)) == 50
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assert db.scalar(select(func.count()).select_from(Customer)) == 180
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assert db.scalar(select(func.count()).select_from(Booking)) == 246
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# 15 from the CSV plus a deterministic set discovered by the post-seed scan. The
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# shared vehicle-status evaluator (app.services.vehicle_status) now also catches
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# MO-024: an active/return-pending booking (BK-DEMO-RETURN) on a vehicle that has
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# already crossed its service-due odometer threshold -- a genuine conflict the
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# previous hand-rolled scanner never checked for.
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assert db.scalar(select(func.count()).select_from(DataQualityIssue)) == 27
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assert db.scalar(select(func.count()).select_from(OutboxEvent)) == 20
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assert db.scalar(select(func.count()).select_from(User)) == 2
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finally:
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db.close()
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def test_seed_demo_scenarios_present():
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db = SessionLocal()
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try:
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reset_and_seed(db)
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booking = db.scalar(select(Booking).where(Booking.public_ref == "BK-DEMO-RETURN"))
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assert booking is not None
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assert booking.status == "active"
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duplicate_customer = db.scalar(select(Customer).where(Customer.public_ref == "CUS-0178"))
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assert duplicate_customer is not None
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duplicate_issue = db.scalar(
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select(DataQualityIssue).where(DataQualityIssue.public_ref == "DQ-DEMO-DUPLICATE")
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)
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assert duplicate_issue is not None
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assert duplicate_issue.rule_type == "possible_duplicate_customer"
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failed_run = db.scalar(
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select(OutboxEvent).where(OutboxEvent.delivery_status == "failed")
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)
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assert failed_run is not None
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finally:
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db.close()
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def _by_ref(db, model, ref):
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return db.scalar(select(model).where(model.public_ref == ref))
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def test_seed_scenario_s1_odometer_regression_return():
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"""S1: BK-DEMO-RETURN on MO-024 is an active booking ready for a return with a
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below-canonical odometer reading, using the vehicle's own current odometer."""
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db = SessionLocal()
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try:
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reset_and_seed(db)
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booking = _by_ref(db, Booking, "BK-DEMO-RETURN")
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vehicle = _by_ref(db, Vehicle, "MO-024")
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assert booking is not None and vehicle is not None
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assert booking.vehicle_id == vehicle.id
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assert booking.status == "active"
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assert booking.end_odometer_km is None
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# A demo return reading must sit below the vehicle's canonical odometer to
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# reproduce the odometer-regression anomaly deterministically.
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assert vehicle.odometer_km > 0
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finally:
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db.close()
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def test_seed_scenario_s2_duplicate_customer_pair():
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"""S2: CUS-0012/CUS-0178 form a possible-duplicate pair with a matching open issue."""
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db = SessionLocal()
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try:
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reset_and_seed(db)
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primary = _by_ref(db, Customer, "CUS-0012")
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duplicate = _by_ref(db, Customer, "CUS-0178")
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assert primary is not None and duplicate is not None
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assert primary.email == duplicate.email
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assert duplicate.merged_into_customer_id is None
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issue = _by_ref(db, DataQualityIssue, "DQ-DEMO-DUPLICATE")
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assert issue is not None
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assert issue.rule_type == "possible_duplicate_customer"
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assert issue.status == "open"
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related = issue.evidence_json.get("related_refs", [])
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assert "CUS-0012" in related or "CUS-0178" in related
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finally:
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db.close()
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def test_seed_scenario_s4_booking_overlap():
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"""S4: MO-016 carries two overlapping reservations plus a matching open issue."""
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db = SessionLocal()
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try:
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reset_and_seed(db)
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vehicle = _by_ref(db, Vehicle, "MO-016")
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booking_a = _by_ref(db, Booking, "BK-DEMO-OVERLAP-A")
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booking_b = _by_ref(db, Booking, "BK-DEMO-OVERLAP-B")
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assert vehicle is not None and booking_a is not None and booking_b is not None
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assert booking_a.vehicle_id == vehicle.id
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assert booking_b.vehicle_id == vehicle.id
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assert booking_a.starts_at < booking_b.ends_at
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assert booking_b.starts_at < booking_a.ends_at
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issue = _by_ref(db, DataQualityIssue, "DQ-DEMO-OVERLAP")
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assert issue is not None
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assert issue.rule_type == "booking_overlap"
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assert issue.status == "open"
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finally:
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db.close()
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def test_seed_scenario_s5_failed_workflow_run():
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"""S5: one seeded outbox event is durably 'failed' (terminal, retryable), not merely
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pending, so the background dispatcher never silently auto-heals it away."""
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db = SessionLocal()
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try:
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reset_and_seed(db)
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failed = db.scalar(
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select(OutboxEvent).where(
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OutboxEvent.event_id == "00000000-0000-4000-8000-000000000020"
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)
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)
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assert failed is not None
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assert failed.delivery_status == "failed"
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assert failed.attempts >= 1
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assert failed.last_error
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assert failed.last_error_code == "connectionError"
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finally:
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db.close()
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def test_seed_dates_are_anchored_to_reset_moment():
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"""Every reset shifts seeded dates by (real today - authored anchor), so scenario
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bookings stay 'today'/'near-future' relative to whenever the reset actually ran,
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instead of decaying back to the fixed 2026-08-01 authoring date."""
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db = SessionLocal()
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try:
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result = reset_and_seed(db)
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today = datetime.now(UTC).date()
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assert result.anchor_date == today
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shift = today - SEED_AUTHORED_ANCHOR
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booking = _by_ref(db, Booking, "BK-DEMO-RETURN")
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assert booking is not None
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# Authored ends_at was 2026-08-01T09:00Z; after shifting it must land on the
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# real reset date, not the frozen authoring date (unless shift is exactly zero).
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assert booking.ends_at.date() == today or shift.days == 0
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marker = db.scalar(
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select(AuditEvent)
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.where(AuditEvent.action == "demo_data_seeded")
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.order_by(AuditEvent.occurred_at.desc())
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)
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assert marker is not None
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assert marker.metadata_json["anchor_date"] == today.isoformat()
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assert marker.metadata_json["seed_authored_anchor"] == SEED_AUTHORED_ANCHOR.isoformat()
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finally:
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db.close()
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def test_seed_today_movements_are_a_credible_mix():
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"""A fresh reset must not land on a dead 'Today's movements' dashboard section:
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at least two departures and two returns should fall on the reset day, mirroring
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the same status/date rule the dashboard router uses to build the today list."""
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db = SessionLocal()
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try:
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reset_and_seed(db)
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today = datetime.now(UTC).date()
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bookings = db.scalars(select(Booking)).all()
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departures = [
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b
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for b in bookings
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if b.starts_at.date() == today and b.status in ("reserved", "active")
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]
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returns = [
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b for b in bookings if b.ends_at.date() == today and b.status in ("active", "returned")
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]
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assert len(departures) >= 2
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assert len(returns) >= 2
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finally:
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db.close()
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