Files
bambuddy/backend/tests/unit/test_printer_offline_notification.py
maziggy 9500c046c0 Ask which nozzle to feed when a Filament Track Switch is fitted
Load and Unload in the AMS slot menu did nothing on an H2C with the switch
fitted. The ams_change_filament command carries an optional extruder_id and
Bambuddy never sent it. That is correct on every printer without the switch,
and is what BambuStudio does there too -- each AMS is wired to one hotend, so
the firmware works the target out for itself and an explicit value would only
be a guess at something it already knows. Fit the switch and every AMS is
bound to one of its two inlets instead, either hotend is reachable from any
slot, and a command naming neither leaves the firmware nothing to act on. It
was discarded in silence.

Load now asks which hotend to feed, on the same terms as Bambu Studio: no
preselection, so a stray Enter cannot feed the wrong one, and the hotend
already fed from that very slot greyed out. Printers without a switch send a
byte-identical command and still load in one click. A switch fitted but not
yet set up -- any AMS still unassigned to an inlet -- refuses the load up
front rather than publishing one the firmware will drop, mirroring
DevFilaSwitch::IsReady, which likewise demands a switcher position on every
AMS.

Unload was addressed at the same time. It was aimed with tray_now, a single
value for the whole printer, so on any dual-nozzle machine with both hotends
loaded it unloaded whichever that field happened to name regardless of which
slot's menu was used. It now names the slot and resolves the holding hotend
from device.extruder.info, previously read for temperatures only. That
resolution is gated on the printer having reported two extruders:
single-nozzle machines do send the block, but nobody has read a single-nozzle
snow value off the wire, and staking every X1C, P1S and A1 unload on an
unverified encoding buys nothing where tray_now is already unambiguous.

Both new state fields ride the WebSocket and are in the broadcast key, and
both are computed in the REST status route as well -- that response is what
the page has before any push arrives, and leaving them at their defaults
would have told a correctly set-up machine that its switch was not set up.

Verified on H2C-1, AMS-A slot 3: loaded and unloaded from each hotend in
turn, all four correct. Covered by 18 MQTT unit tests, 4 status-dict tests,
7 integration tests and 6 component tests.

Two known stragglers, both deliberately left alone. Load on an AMS-HT slot
has never worked -- an HT unit is addressed by its unit id rather than
ams*4+slot, which these endpoints do not accept -- so unload there keeps the
printer-wide form it always used instead of gaining a slot it cannot name.
And a slot's K-profile still follows the AMS's plumbing rather than the
nozzle just loaded, so loading to the far hotend leaves the other one's
calibration bound; that is the same per-nozzle problem the filament and
K-profile redesign is scoped to fix.
2026-08-26 12:04:42 +02:00

362 lines
15 KiB
Python

"""Tests for the connected → disconnected edge that fires the
`on_printer_offline` notification (#1752).
The provider toggle, schema, and dispatcher already existed; what was missing
was a caller that fires `notification_service.on_printer_offline` when a
printer goes offline. These tests pin both layers:
* `_maybe_notify_printer_offline` — the debounced background task. Must
fire when the printer is still offline at the end of the window, and
must NOT fire if the printer reconnected during the window.
* Edge detection inside `on_printer_status_change` — schedules the task
only on the True → False transition, cancels any pending task on
reconnect, and stays silent on startup (no prior connected state).
"""
import asyncio
from types import SimpleNamespace
from unittest.mock import AsyncMock, MagicMock, patch
import pytest
from backend.app import main as main_module
from backend.tests._fixtures.background_tasks import MAIN_TARGET, discarding_spawn_patch
def _spawn_patch():
"""Patch `spawn_background_task` so the coroutine handed to it is closed.
`on_printer_status_change` builds `reconcile_stale_active_prints(...)` as
a call argument, so the coroutine object is constructed whether or not the
replacement schedules it — see
`backend/tests/_fixtures/background_tasks.py` for what parking it in a
mock instead does to an unrelated test.
"""
return discarding_spawn_patch(MAIN_TARGET)
def _state(connected: bool, state: str = "IDLE") -> SimpleNamespace:
"""Minimal PrinterState stub.
`state="IDLE"` is a *known* state, so on `connected=True` this does trip
the reconcile-edge branch in `on_printer_status_change` — that is why
every handler test patches the spawn helper via `_spawn_patch()`. These
tests assert on the offline-notification edge only; reconciliation
behaviour is pinned separately in
`test_reconcile_stale_active_prints.py`. The remaining fields just let
the handler thread through without extra DB / WS work.
"""
return SimpleNamespace(
connected=connected,
state=state,
progress=0,
layer_num=0,
temperatures={},
nozzles=[],
raw_data={},
stg_cur=0,
# Real PrinterState always carries these; the status-broadcast dedup
# key reads them so a Filament Track Switch rebind reaches the card.
fila_switch=None,
ams_switch_inlet={},
extruder_slots={},
cooling_fan_speed=0,
big_fan1_speed=0,
big_fan2_speed=0,
chamber_light="",
active_extruder=0,
tray_now=0,
door_open=False,
subtask_name="",
ams_filament_backup=None,
)
@pytest.fixture(autouse=True)
def _reset_edge_state():
"""Clear the module-level edge dicts between tests so one test's
True-edge doesn't leak into the next."""
main_module._printer_last_connected.clear()
for task in list(main_module._printer_offline_notify_tasks.values()):
if not task.done():
task.cancel()
main_module._printer_offline_notify_tasks.clear()
main_module._printer_reconciled_since_connect.clear()
main_module._last_status_broadcast.clear()
yield
main_module._printer_last_connected.clear()
for task in list(main_module._printer_offline_notify_tasks.values()):
if not task.done():
task.cancel()
main_module._printer_offline_notify_tasks.clear()
class TestMaybeNotifyPrinterOffline:
"""The debounced background task — fires notification at the end of the
window only if the printer is still offline."""
@pytest.mark.asyncio
async def test_fires_notification_when_still_offline_after_debounce(self):
printer = SimpleNamespace(id=1, name="Workshop")
scalar = MagicMock()
scalar.scalar_one_or_none.return_value = printer
db = AsyncMock()
db.execute = AsyncMock(return_value=scalar)
session_cm = MagicMock()
session_cm.__aenter__ = AsyncMock(return_value=db)
session_cm.__aexit__ = AsyncMock(return_value=False)
with (
patch("backend.app.main.asyncio.sleep", new=AsyncMock()),
patch("backend.app.main.printer_manager") as mock_pm,
patch("backend.app.main.async_session", return_value=session_cm),
patch("backend.app.main.notification_service") as mock_notif,
):
mock_pm.is_connected.return_value = False
mock_notif.on_printer_offline = AsyncMock()
await main_module._maybe_notify_printer_offline(printer_id=1)
mock_notif.on_printer_offline.assert_awaited_once_with(1, "Workshop", db)
@pytest.mark.asyncio
async def test_does_not_fire_when_printer_reconnected_during_debounce(self):
with (
patch("backend.app.main.asyncio.sleep", new=AsyncMock()),
patch("backend.app.main.printer_manager") as mock_pm,
patch("backend.app.main.notification_service") as mock_notif,
):
mock_pm.is_connected.return_value = True
mock_notif.on_printer_offline = AsyncMock()
await main_module._maybe_notify_printer_offline(printer_id=1)
mock_notif.on_printer_offline.assert_not_awaited()
@pytest.mark.asyncio
async def test_does_not_fire_when_printer_missing_from_db(self):
scalar = MagicMock()
scalar.scalar_one_or_none.return_value = None
db = AsyncMock()
db.execute = AsyncMock(return_value=scalar)
session_cm = MagicMock()
session_cm.__aenter__ = AsyncMock(return_value=db)
session_cm.__aexit__ = AsyncMock(return_value=False)
with (
patch("backend.app.main.asyncio.sleep", new=AsyncMock()),
patch("backend.app.main.printer_manager") as mock_pm,
patch("backend.app.main.async_session", return_value=session_cm),
patch("backend.app.main.notification_service") as mock_notif,
):
mock_pm.is_connected.return_value = False
mock_notif.on_printer_offline = AsyncMock()
await main_module._maybe_notify_printer_offline(printer_id=1)
mock_notif.on_printer_offline.assert_not_awaited()
@pytest.mark.asyncio
async def test_clears_task_entry_after_run(self):
with (
patch("backend.app.main.asyncio.sleep", new=AsyncMock()),
patch("backend.app.main.printer_manager") as mock_pm,
):
mock_pm.is_connected.return_value = True # No notification path
main_module._printer_offline_notify_tasks[1] = MagicMock()
await main_module._maybe_notify_printer_offline(printer_id=1)
assert 1 not in main_module._printer_offline_notify_tasks
class TestOfflineEdgeDetection:
"""Edge detection inside `on_printer_status_change` — only the
True → False transition schedules a task. Reconnects cancel pending
tasks. Startup-with-disconnected does not fire."""
@staticmethod
def _patch_handler_deps():
"""Patch out the heavy side-effects of `on_printer_status_change`
(MQTT relay, WebSocket broadcast, state serializer) so we can focus
on edge state."""
ws_mgr = MagicMock()
ws_mgr.send_printer_status = AsyncMock()
relay = MagicMock()
relay.on_printer_status = AsyncMock()
pm = MagicMock()
pm.get_printer.return_value = None # Skip the relay payload branch.
pm.get_model.return_value = ""
return ws_mgr, relay, pm
@pytest.mark.asyncio
async def test_first_call_connected_does_not_schedule(self):
ws_mgr, relay, pm = self._patch_handler_deps()
with (
patch("backend.app.main.ws_manager", ws_mgr),
patch("backend.app.main.mqtt_relay", relay),
patch("backend.app.main.printer_manager", pm),
_spawn_patch(),
patch("backend.app.main.printer_state_to_dict", return_value={}),
):
await main_module.on_printer_status_change(1, _state(connected=True))
assert 1 not in main_module._printer_offline_notify_tasks
assert main_module._printer_last_connected[1] is True
@pytest.mark.asyncio
async def test_first_call_disconnected_does_not_schedule(self):
"""Startup with an already-offline printer must not fire — there's
no prior True observation, so we have no edge to trigger on."""
ws_mgr, relay, pm = self._patch_handler_deps()
with (
patch("backend.app.main.ws_manager", ws_mgr),
patch("backend.app.main.mqtt_relay", relay),
patch("backend.app.main.printer_manager", pm),
_spawn_patch(),
patch("backend.app.main.printer_state_to_dict", return_value={}),
):
await main_module.on_printer_status_change(1, _state(connected=False))
assert 1 not in main_module._printer_offline_notify_tasks
assert main_module._printer_last_connected[1] is False
@pytest.mark.asyncio
async def test_connected_to_disconnected_schedules_task(self):
ws_mgr, relay, pm = self._patch_handler_deps()
with (
patch("backend.app.main.ws_manager", ws_mgr),
patch("backend.app.main.mqtt_relay", relay),
patch("backend.app.main.printer_manager", pm),
_spawn_patch(),
patch("backend.app.main._maybe_notify_printer_offline", new=AsyncMock()),
patch("backend.app.main.printer_state_to_dict", return_value={}),
):
await main_module.on_printer_status_change(1, _state(connected=True))
await main_module.on_printer_status_change(1, _state(connected=False))
task = main_module._printer_offline_notify_tasks.get(1)
assert task is not None
task.cancel()
@pytest.mark.asyncio
async def test_reconnect_cancels_pending_task(self):
ws_mgr, relay, pm = self._patch_handler_deps()
with (
patch("backend.app.main.ws_manager", ws_mgr),
patch("backend.app.main.mqtt_relay", relay),
patch("backend.app.main.printer_manager", pm),
_spawn_patch(),
patch("backend.app.main._maybe_notify_printer_offline", new=AsyncMock()),
patch("backend.app.main.printer_state_to_dict", return_value={}),
):
await main_module.on_printer_status_change(1, _state(connected=True))
await main_module.on_printer_status_change(1, _state(connected=False))
scheduled = main_module._printer_offline_notify_tasks.get(1)
assert scheduled is not None
await main_module.on_printer_status_change(1, _state(connected=True))
# Yield so the cancellation propagates through the event loop.
await asyncio.sleep(0)
assert 1 not in main_module._printer_offline_notify_tasks
assert scheduled.cancelled() or scheduled.done()
@pytest.mark.asyncio
async def test_repeated_disconnected_does_not_reschedule(self):
"""A second False observation while a task is already pending must
not replace the in-flight task — otherwise the debounce clock
resets on every status callback and the notification never fires."""
ws_mgr, relay, pm = self._patch_handler_deps()
with (
patch("backend.app.main.ws_manager", ws_mgr),
patch("backend.app.main.mqtt_relay", relay),
patch("backend.app.main.printer_manager", pm),
_spawn_patch(),
patch("backend.app.main._maybe_notify_printer_offline", new=AsyncMock()),
patch("backend.app.main.printer_state_to_dict", return_value={}),
):
await main_module.on_printer_status_change(1, _state(connected=True))
await main_module.on_printer_status_change(1, _state(connected=False))
first_task = main_module._printer_offline_notify_tasks.get(1)
await main_module.on_printer_status_change(1, _state(connected=False))
second_task = main_module._printer_offline_notify_tasks.get(1)
assert first_task is second_task
if first_task is not None:
first_task.cancel()
class TestProgressMilestoneSessionHygiene:
"""The progress-milestone notification path must capture the camera
snapshot WITHOUT holding a DB session (issue #2572): a ~15s RTSP grab
across an open session pinned a pooled connection per milestone, per
printer. The read (printer name) and the send (provider lookups) each get
their own short session; the snapshot happens in between with none held."""
@staticmethod
def _printing_state(progress: int):
st = _state(connected=True, state="RUNNING")
st.progress = progress
st.remaining_time = 30
st.gcode_file = "benchy.gcode"
return st
@pytest.mark.asyncio
async def test_milestone_captures_snapshot_outside_session_and_notifies(self):
main_module._last_progress_milestone.clear()
printer = SimpleNamespace(id=1, name="Workshop")
db = AsyncMock()
db.execute = AsyncMock(return_value=MagicMock(scalar_one_or_none=MagicMock(return_value=printer)))
# Stateful session that tracks how many sessions are currently open.
open_sessions = {"count": 0}
class _SessionCM:
async def __aenter__(self):
open_sessions["count"] += 1
return db
async def __aexit__(self, *exc):
open_sessions["count"] -= 1
return False
snap_calls = []
async def _snap(printer_id, prn, _logger):
# The whole point of the fix (#2572): the ~15s camera grab must NOT
# run while a DB session is held. On the old code the snapshot sat
# inside the milestone session, so this would be 1.
assert open_sessions["count"] == 0, "camera snapshot ran while a DB session was held"
snap_calls.append((printer_id, prn))
return b"jpeg-bytes"
ws_mgr = MagicMock()
ws_mgr.send_printer_status = AsyncMock()
relay = MagicMock()
relay.on_printer_status = AsyncMock()
pm = MagicMock()
pm.get_printer.return_value = None
pm.get_model.return_value = ""
with (
patch("backend.app.main.ws_manager", ws_mgr),
patch("backend.app.main.mqtt_relay", relay),
patch("backend.app.main.printer_manager", pm),
_spawn_patch(),
patch("backend.app.main.printer_state_to_dict", return_value={}),
patch("backend.app.main.async_session", side_effect=lambda: _SessionCM()),
patch("backend.app.main._capture_snapshot_for_notification", new=_snap),
patch("backend.app.main.notification_service") as mock_notif,
):
mock_notif.on_print_progress = AsyncMock()
await main_module.on_printer_status_change(1, self._printing_state(25))
# Snapshot ran (with the detached printer) and outside any session.
assert snap_calls == [(1, printer)]
# The notification fired carrying that image (send legitimately holds a session).
mock_notif.on_print_progress.assert_awaited_once()
assert mock_notif.on_print_progress.await_args.kwargs["image_data"] == b"jpeg-bytes"
# Every session opened was also closed — none leaked past the handler.
assert open_sessions["count"] == 0
main_module._last_progress_milestone.clear()