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awaiting_plate_clear is a Bambuddy-side flag, not a printer-side one,
so toggling it does not produce an MQTT push from the printer. Commit
4e86e8c added the flag to the printer_status payload so MQTT-driven
broadcasts (e.g. when a print finishes and on_print_complete sets the
flag to True alongside a state transition to FINISH) carry it. The
reverse transition didn't: POST /printers/{id}/clear-plate mutated
PrinterManager._awaiting_plate_clear and persisted to the DB, but
emitted no printer_status WebSocket update — and the in-main.py
status-change broadcaster's status_key dedup intentionally excludes
Bambuddy-side flags, so even a coincidentally-arriving MQTT push
wouldn't reflect the change.
The "Mark plate as cleared" button on the printer card disappeared
"immediately" after a click only because the React Query cache was
being optimistically updated client-side; clearing the flag through
any other route (an admin script, a second tab, an automation hitting
the endpoint directly, the scheduler at print_scheduler.py:1844 when
dispatching the next queued print) silently left every UI subscriber
but the originating tab stale until a coincidental status refresh.
Centralised the broadcast in PrinterManager.set_awaiting_plate_clear
itself rather than at each call site, so every current AND future
caller is covered without remembering to wire it up: a new
_broadcast_status_change(printer_id) private coroutine is scheduled
alongside the existing _persist_awaiting_plate_clear whenever the flag
flips under a running event loop. Lazy-imports ws_manager to keep
printer_manager.py clean of application-layer infra at module-import
time, short-circuits when get_status returns None (printer
disconnected — the next reconnect produces a fresh push anyway), and
swallows ws_manager.send_printer_status failures so the persistence
path can complete even if the WS layer is temporarily unavailable.
The same hook is now in place for any other Bambuddy-side flag that
gets added to printer_state_to_dict later — they'll all need to
broadcast their own changes for the same reason.
8 new regression tests in test_printer_manager_status_broadcast.py:
schedules-on-True/False/loop-running/no-loop/loop-stopped contracts,
_broadcast_status_change happy path with payload assertion,
skip-when-no-state, swallow-WS-errors, and an end-to-end live-loop
test that fires set_awaiting_plate_clear(False) and asserts a
broadcast lands with awaiting_plate_clear: false in the payload.
Existing 24 tests in test_scheduler_clear_plate.py continue to pass
unchanged because they instantiate PrinterManager() without
attaching a loop (sync unit-test path) — the new _schedule_async
call short-circuits on the same loop check the existing persistence
call already used.
224 lines
9.4 KiB
Python
224 lines
9.4 KiB
Python
"""Regression tests for ``PrinterManager._broadcast_status_change`` and
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its wiring from ``set_awaiting_plate_clear`` (#1128).
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The bug: ``awaiting_plate_clear`` is a Bambuddy-side flag, so toggling it
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doesn't produce an MQTT push from the printer. Before the fix,
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``set_awaiting_plate_clear()`` mutated state and persisted to DB but never
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notified WebSocket subscribers. The plate-clear button on the printer card
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disappeared "immediately" only because of an optimistic React Query cache
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update on the click path; any other caller (admin script, second tab, an
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automation that hits ``POST /printers/{id}/clear-plate``) silently left
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the UI stale until the next coincidental status refresh.
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These tests pin the contract: every flip of the flag must schedule a
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``printer_status`` broadcast, and the broadcast must carry the new flag
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value so subscribers see the right state without polling.
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"""
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from __future__ import annotations
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import asyncio
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from types import SimpleNamespace
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from unittest.mock import AsyncMock, MagicMock, patch
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import pytest
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from backend.app.services.printer_manager import PrinterManager
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@pytest.fixture
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def manager():
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"""Fresh manager per test; the awaiting-plate-clear set is per-instance."""
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return PrinterManager()
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def _fake_state(**overrides):
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"""Minimal stand-in for a ``PrinterState`` — only the attributes
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``printer_state_to_dict`` reads. We use a SimpleNamespace rather than
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constructing a real PrinterState so this test stays fast and doesn't
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couple to the (large, evolving) PrinterState dataclass shape."""
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base = {
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"connected": True,
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"state": "FINISH",
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"raw_data": {},
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"progress": 100.0,
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}
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base.update(overrides)
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return SimpleNamespace(**base)
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class TestSchedulingFromSetAwaitingPlateClear:
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"""The hook from the public flag-mutation method into the broadcast."""
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def test_schedules_broadcast_when_loop_running(self, manager):
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"""When a real event loop is attached, every call to
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``set_awaiting_plate_clear`` must enqueue both the persistence
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coroutine and the broadcast coroutine. Both are needed: persist
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survives restarts, broadcast notifies live subscribers."""
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manager._loop = MagicMock()
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manager._loop.is_running.return_value = True
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with patch.object(manager, "_schedule_async") as scheduled:
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manager.set_awaiting_plate_clear(7, True)
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# Two coroutines: persist + broadcast. Order doesn't matter.
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assert scheduled.call_count == 2
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def test_does_not_schedule_when_no_loop_attached(self, manager):
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"""Sync unit-test path (no loop attached): nothing must be
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scheduled, otherwise Python emits 'coroutine was never awaited'
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runtime warnings and the test suite goes red on harmless flag
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twiddling."""
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manager._loop = None
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with patch.object(manager, "_schedule_async") as scheduled:
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manager.set_awaiting_plate_clear(7, True)
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scheduled.assert_not_called()
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def test_does_not_schedule_when_loop_not_running(self, manager):
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"""A loop attached-but-stopped is the same situation as no loop —
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scheduling onto a dead loop would never fire."""
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manager._loop = MagicMock()
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manager._loop.is_running.return_value = False
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with patch.object(manager, "_schedule_async") as scheduled:
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manager.set_awaiting_plate_clear(7, True)
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scheduled.assert_not_called()
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def test_both_true_and_false_flips_schedule_broadcast(self, manager):
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"""The bug only became visible on ``False`` flips (clear), but a
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regression that broadcasts only on ``True`` would re-introduce
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the original symptom for any future flag mutation that goes
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``False → True`` outside the printer-card optimistic-update
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path. Make both directions a contract."""
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manager._loop = MagicMock()
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manager._loop.is_running.return_value = True
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with patch.object(manager, "_schedule_async") as scheduled:
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manager.set_awaiting_plate_clear(7, True)
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scheduled.reset_mock()
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manager.set_awaiting_plate_clear(7, False)
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# Each flip = persist + broadcast = 2 calls.
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assert scheduled.call_count == 2
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class TestBroadcastStatusChange:
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"""The broadcast coroutine itself."""
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@pytest.mark.asyncio
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async def test_emits_ws_update_when_state_present(self, manager):
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"""Happy path: printer has a known status, broadcast goes out
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with the dict produced by ``printer_state_to_dict``."""
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state = _fake_state()
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with (
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patch.object(manager, "get_status", return_value=state),
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patch.object(manager, "get_model", return_value="P1S"),
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patch(
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"backend.app.core.websocket.ws_manager.send_printer_status",
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new_callable=AsyncMock,
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) as send_status,
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patch(
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"backend.app.services.printer_manager.printer_state_to_dict",
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return_value={"id": 7, "awaiting_plate_clear": False},
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) as to_dict,
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):
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await manager._broadcast_status_change(7)
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send_status.assert_awaited_once()
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# First positional arg is the printer ID, second is the status dict.
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printer_id_arg, payload_arg = send_status.await_args.args
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assert printer_id_arg == 7
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assert payload_arg == {"id": 7, "awaiting_plate_clear": False}
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# Verify the dict was built from the right inputs (state + id + model).
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to_dict.assert_called_once_with(state, 7, "P1S")
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@pytest.mark.asyncio
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async def test_skips_when_status_unknown(self, manager):
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"""Printer not connected / unknown ID → no point broadcasting a
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snapshot we don't have. A future reconnect will produce a fresh
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status push anyway, so we'd only be forcing a stale or bogus
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payload onto subscribers right now."""
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with (
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patch.object(manager, "get_status", return_value=None),
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patch(
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"backend.app.core.websocket.ws_manager.send_printer_status",
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new_callable=AsyncMock,
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) as send_status,
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):
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await manager._broadcast_status_change(999)
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send_status.assert_not_awaited()
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@pytest.mark.asyncio
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async def test_swallows_websocket_errors(self, manager):
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"""The broadcast is a courtesy, not a correctness path — if the
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WS layer is down, the flag is already mutated in-memory and
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persisted. Letting an exception bubble out of
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``_broadcast_status_change`` would surface as an
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``Exception in scheduled callback`` traceback in the log AND
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prevent the persistence coroutine from completing if both were
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gathered together. Swallow + warn instead."""
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with (
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patch.object(manager, "get_status", return_value=_fake_state()),
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patch.object(manager, "get_model", return_value="P1S"),
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patch(
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"backend.app.services.printer_manager.printer_state_to_dict",
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return_value={"id": 7},
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),
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patch(
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"backend.app.core.websocket.ws_manager.send_printer_status",
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new_callable=AsyncMock,
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side_effect=RuntimeError("websocket layer unavailable"),
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),
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):
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# Must not raise.
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await manager._broadcast_status_change(7)
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class TestEndToEndUnderRunningLoop:
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"""Verify the full flow under a real running event loop — schedule
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→ broadcast → ws_manager.send_printer_status — without mocking
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``_schedule_async``. Catches regressions where individual pieces
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pass but the wiring breaks (e.g. ``_schedule_async`` swallowing the
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broadcast coroutine)."""
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@pytest.mark.asyncio
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async def test_set_false_eventually_emits_broadcast(self, manager):
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"""Reproduces the #1128 fix path end-to-end: set the flag to
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False under a live loop, give the scheduler a tick, the
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ws broadcast must have fired with the new payload."""
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loop = asyncio.get_running_loop()
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manager._loop = loop
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# Pretend the printer has been seen — without a state present
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# the broadcast short-circuits before reaching ws_manager.
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manager._awaiting_plate_clear.add(7)
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with (
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patch.object(manager, "get_status", return_value=_fake_state()),
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patch.object(manager, "get_model", return_value="P1S"),
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patch(
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"backend.app.services.printer_manager.printer_state_to_dict",
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return_value={"id": 7, "awaiting_plate_clear": False},
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),
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patch(
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"backend.app.core.websocket.ws_manager.send_printer_status",
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new_callable=AsyncMock,
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) as send_status,
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# Persistence path opens a DB session; stub it out so this
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# stays a pure unit test.
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patch.object(manager, "_persist_awaiting_plate_clear", new_callable=AsyncMock),
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):
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manager.set_awaiting_plate_clear(7, False)
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# Yield repeatedly so run_coroutine_threadsafe has a chance
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# to land its scheduled coroutine on this loop.
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for _ in range(10):
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await asyncio.sleep(0)
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send_status.assert_awaited()
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printer_id_arg, payload_arg = send_status.await_args.args
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assert printer_id_arg == 7
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assert payload_arg["awaiting_plate_clear"] is False
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