397 lines
14 KiB
Python
397 lines
14 KiB
Python
"""Durable dispatch transition: executing is persisted BEFORE the executor (R4/F1).
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Pending means provably undispatched and safe to dispatch. The scheduler
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persists the undispatched→executing transition before invoking the
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executor; a crash afterwards abandons the run (failed, no replay) instead
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of retrying. ``finally`` cannot be trusted across process termination, so
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marker clearing is explicit on the stopped path only.
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"""
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from __future__ import annotations
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import multiprocessing as mp
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from datetime import UTC, datetime, timedelta
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from pathlib import Path
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from typing import Any, cast
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import pytest
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from tests.scheduling.controlled import (
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DictDeployments,
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ScriptedDispatcher,
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fixture_environment,
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stopped_state,
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)
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from tests.scheduling.controlled import ScriptedDispatcher as SD
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from wf_artifacts.runs.store import FileRunStore
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from wf_scheduling import recovery as sched_recovery
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from wf_scheduling.calendar import OneShotSource
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from wf_scheduling.dispatch import StillRunning, Stopped
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from wf_scheduling.models import Schedule
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from wf_scheduling.ownership import SchedulerOwnership
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from wf_scheduling.poll import Scheduler
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from wf_scheduling.prepare import SchedulePreparer
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from wf_scheduling.store import FileScheduleStore
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def ts(y: int, mo: int, d: int, h: int = 0, mi: int = 0) -> datetime:
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return datetime(y, mo, d, h, mi, tzinfo=UTC)
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def _sched_model(sid: str, **kw: Any) -> Schedule:
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now = ts(2026, 9, 8, 12, 0)
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base: dict[str, Any] = {
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"id": sid,
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"deployment_id": "dep-1",
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"trigger": {"kind": "cron", "expression": "0 * * * *", "timezone": "UTC"},
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"input_bindings": [],
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"created_at": now.isoformat(),
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"updated_at": now.isoformat(),
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}
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base.update(kw)
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return Schedule.model_validate(base)
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def _harness(
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root: Path,
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ownership: SchedulerOwnership,
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*,
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capacity: int = 4,
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script: dict | None = None,
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) -> tuple[Scheduler, FileScheduleStore, FileRunStore]:
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sched_store = FileScheduleStore(root / "sched")
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run_store = FileRunStore(root / "runs")
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sched = Scheduler(
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schedule_store=sched_store,
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run_store=run_store,
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sources={},
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capacity=capacity,
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preparer=SchedulePreparer(
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DictDeployments({"dep-1": {"rev": 1, "required": []}}),
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fixture_environment,
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),
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dispatcher=ScriptedDispatcher(script),
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ownership=ownership,
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)
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return sched, sched_store, run_store
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def _due(sched: Scheduler, store: FileScheduleStore, intended: datetime) -> None:
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store.create_schedule(_sched_model("a"))
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store.save_consumed("a", intended - timedelta(hours=1))
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sched.sources["a"] = OneShotSource(intended)
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def test_executing_is_set_before_executor_runs(tmp_path: Path) -> None:
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ownership = SchedulerOwnership(tmp_path, owner="test").acquire()
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try:
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observed: dict[str, bool] = {}
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def probe(admission: Any, now: datetime) -> Any:
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observed["executing_at_entry"] = FileRunStore(
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tmp_path / "runs"
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).is_executing(admission.id)
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observed["pending_at_entry"] = FileRunStore(
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tmp_path / "runs"
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).is_pending_dispatch(admission.id)
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return StillRunning()
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sched, store, runs = _harness(tmp_path, ownership, script={"*": probe})
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intended = ts(2026, 9, 8, 12, 0)
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_due(sched, store, intended)
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sched.poll(intended)
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assert observed == {"executing_at_entry": True, "pending_at_entry": False}
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run_id = runs.list_runs()[0].id
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assert runs.is_executing(run_id)
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assert not runs.is_pending_dispatch(run_id)
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finally:
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ownership.release()
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def test_failure_before_transition_never_dispatches(tmp_path: Path) -> None:
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calls: list[str] = []
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class FailMarkOnce(FileRunStore):
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def __init__(self, root: Path) -> None:
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super().__init__(root)
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self.armed = True
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def mark_executing(self, run_id: str) -> None:
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if self.armed:
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self.armed = False
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raise OSError("injected mark_executing failure")
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super().mark_executing(run_id)
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def spy(admission: Any, now: datetime) -> Any:
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calls.append(admission.id)
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return StillRunning()
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sched_store = FileScheduleStore(tmp_path / "sched")
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run_store = FailMarkOnce(tmp_path / "runs")
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ownership = SchedulerOwnership(tmp_path, owner="test").acquire()
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try:
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sched = Scheduler(
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schedule_store=sched_store,
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run_store=run_store,
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sources={},
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capacity=4,
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preparer=SchedulePreparer(
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DictDeployments({"dep-1": {"rev": 1, "required": []}}),
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fixture_environment,
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),
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dispatcher=ScriptedDispatcher({"*": spy}),
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ownership=ownership,
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)
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intended = ts(2026, 9, 8, 12, 0)
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_due(sched, sched_store, intended)
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with pytest.raises(OSError, match="injected mark_executing"):
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sched.poll(intended)
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# The executor never ran; the run stays provably undispatched.
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assert calls == []
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run_id = run_store.list_runs()[0].id
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assert run_store.is_pending_dispatch(run_id)
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assert not run_store.is_executing(run_id)
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# Next poll dispatches exactly once.
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sched.poll(intended + timedelta(minutes=1))
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assert calls == [run_id]
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finally:
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ownership.release()
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def test_capacity_shortage_keeps_pending_undispatched(tmp_path: Path) -> None:
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calls: list[str] = []
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ownership = SchedulerOwnership(tmp_path, owner="test").acquire()
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try:
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sched, store, runs = _harness(tmp_path, ownership, capacity=0)
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intended = ts(2026, 9, 8, 12, 0)
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_due(sched, store, intended)
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def spy(admission: Any, now: datetime) -> Any:
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calls.append(admission.id)
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return StillRunning()
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cast(SD, sched.dispatcher).script = {"*": spy}
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assert sched.poll(intended) == {"a": "admit:held-undecided"}
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assert calls == []
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# A held candidate is pending-but-unadmitted, not an admitted run.
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assert runs.list_runs() == []
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sched.capacity = 4
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result = sched.poll(intended + timedelta(minutes=1))
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assert result["a"].startswith("admit:run-")
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assert len(calls) == 1
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finally:
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ownership.release()
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def test_pending_on_terminal_run_clears_without_redispatch(tmp_path: Path) -> None:
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calls: list[str] = []
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ownership = SchedulerOwnership(tmp_path, owner="test").acquire()
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try:
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sched, store, runs = _harness(tmp_path, ownership)
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def spy(admission: Any, now: datetime) -> Any:
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calls.append(admission.id)
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return Stopped(result=stopped_state(admission, "complete"))
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cast(SD, sched.dispatcher).script = {"*": spy}
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intended = ts(2026, 9, 8, 12, 0)
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_due(sched, store, intended)
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sched.poll(intended)
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assert calls != []
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run_id = runs.list_runs()[0].id
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assert runs.get_run(run_id).status.value == "completed"
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# A stale pending marker on a terminal run must not redispatch.
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runs.mark_pending_dispatch(run_id)
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before = len(calls)
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sched.poll(intended + timedelta(minutes=5))
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assert len(calls) == before
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assert not runs.is_pending_dispatch(run_id)
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assert runs.get_run(run_id).status.value == "completed"
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page = store.list_occurrences("a", limit=100)
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completed = [
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r
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for r in cast(list[dict[str, Any]], page["occurrences"])
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if r["kind"] == "completed"
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]
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assert len(completed) == 1
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finally:
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ownership.release()
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def test_pending_without_admission_fails_closed(tmp_path: Path) -> None:
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from datetime import datetime as _dt
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from tests.artifacts.test_run_store import artifact as _artifact
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from tests.artifacts.test_run_store import deployment as _deployment
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from wf_artifacts import PinnedRunEnvironment
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from wf_artifacts.runs.models import (
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ResumeReadiness,
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StoredRunStatus,
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WorkflowRunRecord,
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)
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ownership = SchedulerOwnership(tmp_path, owner="test").acquire()
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try:
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sched, store, runs = _harness(tmp_path, ownership, script={"*": "hang"})
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intended = ts(2026, 9, 8, 12, 0)
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_due(sched, store, intended)
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now = _dt.now(UTC)
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runs.save_run(
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WorkflowRunRecord(
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id="run-999009",
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status=StoredRunStatus.ADMITTED,
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resume_readiness=ResumeReadiness.NOT_APPLICABLE,
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environment=PinnedRunEnvironment(
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deployment=_deployment(),
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root_artifact=_artifact(),
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child_artifacts=[],
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),
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latest_checkpoint_id=None,
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created_at=now,
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updated_at=now,
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)
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)
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runs.mark_pending_dispatch("run-999009")
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sched.poll(intended)
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assert runs.get_run("run-999009").status.value == "failed"
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assert not runs.is_pending_dispatch("run-999009")
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finally:
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ownership.release()
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def test_executing_admitted_is_abandoned_by_recovery(tmp_path: Path) -> None:
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ownership = SchedulerOwnership(tmp_path, owner="test").acquire()
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try:
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sched, store, runs = _harness(tmp_path, ownership, script={"*": "hang"})
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intended = ts(2026, 9, 8, 12, 0)
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_due(sched, store, intended)
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sched.poll(intended)
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run_id = runs.list_runs()[0].id
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assert runs.is_executing(run_id)
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# Fresh objects simulate a restart: executing work is abandoned, never
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# redispatched.
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fresh_runs = FileRunStore(tmp_path / "runs")
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fresh_sched_store = FileScheduleStore(tmp_path / "sched")
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diags = sched_recovery.recover(
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schedule_store=fresh_sched_store,
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run_store=fresh_runs,
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now=intended + timedelta(minutes=1),
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ownership=ownership,
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)
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assert any("failed-closed" in d for d in diags)
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assert fresh_runs.get_run(run_id).status.value == "failed"
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# A second poll after recovery never re-executes the abandoned run.
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sched2, _, runs2 = _harness(tmp_path, ownership, script={"*": "hang"})
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sched2.poll(intended + timedelta(minutes=2))
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assert runs2.get_run(run_id).status.value == "failed"
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finally:
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ownership.release()
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def test_settle_hanging_run_persists_and_clears(tmp_path: Path) -> None:
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ownership = SchedulerOwnership(tmp_path, owner="test").acquire()
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try:
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sched, store, runs = _harness(tmp_path, ownership, script={"*": "hang"})
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intended = ts(2026, 9, 8, 12, 0)
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_due(sched, store, intended)
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sched.poll(intended)
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run_id = runs.list_runs()[0].id
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assert runs.is_executing(run_id)
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# The late stopped result settles without re-invoking the dispatcher.
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dispatcher = cast(SD, sched.dispatcher)
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admission = runs.get_admission(run_id)
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sched.record_stopped_execution(
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run_id, dispatcher.finish(admission, "complete"), intended
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)
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assert runs.get_run(run_id).status.value == "completed"
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assert not runs.is_executing(run_id)
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assert not runs.is_pending_dispatch(run_id)
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checkpoint = runs.get_latest_checkpoint(run_id)
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assert checkpoint.reason.value == "completed"
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finally:
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ownership.release()
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def _child_poll_and_die(
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root: str, side_effect: str, intended_iso: str, sched_id: str = "a"
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) -> None:
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"""Child entry: poll once; the dispatcher records a side effect then dies."""
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import os as _os
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from datetime import datetime as _dt
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from tests.scheduling.controlled import (
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DictDeployments as _Dict,
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)
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from tests.scheduling.controlled import (
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ScriptedDispatcher as _SD,
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)
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from tests.scheduling.controlled import (
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fixture_environment as _env,
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)
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from wf_artifacts.runs.store import FileRunStore as _Runs
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from wf_scheduling.calendar import OneShotSource as _OneShot
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from wf_scheduling.ownership import SchedulerOwnership as _Own
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from wf_scheduling.poll import Scheduler as _Sched
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from wf_scheduling.prepare import SchedulePreparer as _Prep
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from wf_scheduling.store import FileScheduleStore as _SchedStore
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base = Path(root)
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intended = _dt.fromisoformat(intended_iso)
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def killer(admission: Any, now: _dt) -> Any:
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with open(side_effect, "a", encoding="utf-8") as fh:
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fh.write(admission.id + "\n")
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_os._exit(1)
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sched = _Sched(
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schedule_store=_SchedStore(base / "sched"),
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run_store=_Runs(base / "runs"),
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sources={sched_id: _OneShot(intended)},
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capacity=4,
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preparer=_Prep(_Dict({"dep-1": {"rev": 1, "required": []}}), _env),
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dispatcher=_SD({"*": killer}),
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ownership=_Own(base, owner="child").acquire(),
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)
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sched.poll(intended)
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def test_subprocess_death_after_side_effect_dispatches_once(tmp_path: Path) -> None:
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ctx = mp.get_context("spawn")
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root = tmp_path / "death"
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root.mkdir()
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sched_store = FileScheduleStore(root / "sched")
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intended = ts(2026, 9, 8, 12, 0)
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sched_store.create_schedule(_sched_model("a"))
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sched_store.save_consumed("a", intended - timedelta(hours=1))
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side_effect = root / "effects.log"
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proc = ctx.Process(
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target=_child_poll_and_die,
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args=(str(root), str(side_effect), intended.isoformat()),
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)
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proc.start()
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proc.join(120)
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assert proc.exitcode not in (None, 0), f"child must die, got {proc.exitcode}"
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assert side_effect.read_text(encoding="utf-8").strip() != ""
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first_effects = side_effect.read_text(encoding="utf-8").strip().splitlines()
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# Restart with fresh objects: the side effect count stays one and the run
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# is abandoned, never redispatched.
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ownership = SchedulerOwnership(root, owner="parent").acquire()
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try:
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sched, store, runs = _harness(root, ownership, script={"*": "hang"})
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sched.sources["a"] = OneShotSource(intended)
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diags = sched_recovery.recover(
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schedule_store=store,
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run_store=runs,
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now=intended + timedelta(minutes=1),
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ownership=ownership,
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)
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assert any("failed-closed" in d for d in diags)
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sched.poll(intended + timedelta(minutes=1))
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effects = side_effect.read_text(encoding="utf-8").strip().splitlines()
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assert effects == first_effects
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assert len(effects) == 1
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assert runs.get_run(first_effects[0]).status.value == "failed"
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finally:
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ownership.release()
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