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When a print reaches a terminal state Bambuddy holds the queue until
someone confirms the build plate is clear. That gate was visible only in
the Web UI: the printer's own MQTT push reports nothing beyond RUNNING,
PAUSE, FAILED, FINISH and IDLE, so an external automation could not tell
"finished" from "finished and still waiting for a human".
The per-printer status topic now carries an awaiting_plate_clear field,
and every transition is additionally published on a new retained topic,
bambuddy/printers/{serial}/plate_clear. Retained, and published from the
flag itself rather than from printer telemetry: a subscriber learns the
state of every printer the moment it connects, and the state stays
correct after Auto Off powers a printer down - telemetry stops there,
which would otherwise leave the status topic frozen at false.
Publishing is edge-triggered. The queue clears the gate on every
dispatch whether or not it was up, and no subscriber should see a
"plate cleared" for a plate that was never dirty. Persistence and the
WebSocket broadcast stay unconditional; they are idempotent and predate
this.
A matching Plate Clear Required notification event was added, off by
default on every provider because it fires after every print at the
same moment as the print-complete alert. Only the rising edge notifies.
Acknowledging still goes through POST /printers/{id}/clear-plate.
Two tests in test_printer_manager_status_broadcast.py asserted
_schedule_async.call_count == 2 for the setter. The new emission makes
it three on a transition, so they now assert that the persist and
broadcast coroutines are actually scheduled - which is the contract
Translated in all locales; wiki updated. Covered by backend and
frontend tests.
302 lines
13 KiB
Python
302 lines
13 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 _close_unawaited(coro):
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"""Side effect for mocked ``_schedule_async``.
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``set_awaiting_plate_clear`` evaluates the coroutine expressions
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``self._persist_awaiting_plate_clear(...)`` and
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``self._broadcast_status_change(...)`` before passing them to
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``_schedule_async``. When that target is patched, the coroutine objects
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leak — Python's ``__del__`` then emits ``coroutine was never awaited``
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during GC, and when GC runs late enough that warning hits the interpreter
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shutdown path with ``KeyError: '__import__'``. Closing the coroutine here
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prevents both. Returns ``None`` so the mock's call signature is unchanged.
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"""
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if asyncio.iscoroutine(coro):
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coro.close()
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return None
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def _fake_state(**overrides):
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"""Stand-in for a ``PrinterState``.
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The tests below patch ``printer_state_to_dict`` so the fake doesn't need
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to satisfy every attribute access — but the patch was observed to race on
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parallel CI runners (pytest-xdist), and when it didn't catch the call the
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real ``printer_state_to_dict`` ran against this fake and ``AttributeError``'d
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on ``.kprofiles``. The fake now carries every attribute the real function
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reads, so it remains correct even if the patch is somehow bypassed — the
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test no longer depends on a fragile monkeypatch landing in time.
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Iterables (``kprofiles``, ``printable_objects``, ``hms_errors``,
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``temperatures``, etc.) default to empty so the function's loops are
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no-ops; scalars default to ``None`` so any "if state.x is None" guard
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falls through cleanly.
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"""
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base = {
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# State the existing test bodies explicitly set / read
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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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# Iterables — must be iterable for the loops inside printer_state_to_dict
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"kprofiles": [],
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"printable_objects": [],
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"hms_errors": [],
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"temperatures": {},
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"nozzle_rack": [],
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# Nullable scalars — printer_state_to_dict tolerates None for these
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"active_extruder": None,
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"ams_status_main": None,
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"ams_status_sub": None,
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"big_fan1_speed": None,
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"big_fan2_speed": None,
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"chamber_light": None,
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"cooling_fan_speed": None,
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"current_print": None,
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"door_open": None,
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"firmware_version": None,
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"gcode_file": None,
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"heatbreak_fan_speed": None,
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"layer_num": None,
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"remaining_time": None,
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"speed_level": None,
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"stg_cur": 0, # get_derived_status_name does ``0 <= state.stg_cur < 255``
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"subtask_name": None,
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"total_layers": None,
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"tray_now": None,
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"wifi_signal": None,
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"wired_network": None,
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"ams_filament_backup": None,
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}
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base.update(overrides)
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return SimpleNamespace(**base)
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def _scheduled_names(mock) -> list[str]:
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"""Coroutine names passed to the patched ``_schedule_async``.
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Asserting on names rather than a bare call count keeps this file pinned to
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#1128's contract (persist + broadcast on every flag mutation) without
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breaking every time another emission is hung off the same setter — #2525
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added an edge-triggered MQTT/notification relay, which is covered by its
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own test module.
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"""
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return [call.args[0].__qualname__.rsplit(".", 1)[-1] for call in mock.call_args_list]
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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", side_effect=_close_unawaited) as scheduled:
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manager.set_awaiting_plate_clear(7, True)
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# Persist + broadcast, in either order.
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names = _scheduled_names(scheduled)
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assert "_persist_awaiting_plate_clear" in names
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assert "_broadcast_status_change" in names
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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", side_effect=_close_unawaited) 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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# The False flip persists and broadcasts just like the True flip did.
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names = _scheduled_names(scheduled)
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assert "_persist_awaiting_plate_clear" in names
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assert "_broadcast_status_change" in names
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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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Note: we deliberately don't patch ``printer_state_to_dict`` here.
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The patch was observed to race on parallel xdist runners — when it
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didn't catch the call the real function ran, leaving the test
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comparing the patched return value against the real dict shape.
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Letting the real function run (against a complete ``_fake_state``)
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makes the test deterministic; we assert structural shape, not the
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exact ~36 keys, because pinning those couples the test to the
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evolving ``printer_state_to_dict`` body and adds zero value over
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what ``test_printer_manager.py`` already covers."""
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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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):
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await manager._broadcast_status_change(7)
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send_status.assert_awaited_once()
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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 isinstance(payload_arg, dict)
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# The ``awaiting_plate_clear`` key is the whole point of this broadcast
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# path (#1128). Any future restructuring that drops it from the dict
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# would silently break the UI; pin its presence.
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assert "awaiting_plate_clear" in payload_arg
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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.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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# _fake_state defaults awaiting_plate_clear=False via printer_state_to_dict's
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# is_awaiting_plate_clear(printer_id) lookup, which reads from
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# manager._awaiting_plate_clear (the in-memory set). Since we just
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# removed 7 from that set by calling set_awaiting_plate_clear(7, False),
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# the broadcast payload's awaiting_plate_clear field will be False.
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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.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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