US02-03: Execute Jobs with Leases, Locks, and Recovery

This commit is contained in:
2026-07-15 23:12:51 +02:00
parent 0ebacfa544
commit f0f163158d
10 changed files with 543 additions and 2 deletions

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@@ -14,6 +14,8 @@ def main(argv: Sequence[str] | None = None) -> int:
commands = parser.add_subparsers(dest="command", required=True)
commands.add_parser("serve", help="Run the API server")
commands.add_parser("migrate", help="Upgrade the database to the latest revision")
worker_cmd = commands.add_parser("worker", help="Run a durable-job worker")
worker_cmd.add_argument("--id", default="worker-1", help="Worker id (lease owner)")
args = parser.parse_args(argv)
config = Config.from_env()
@@ -23,6 +25,15 @@ def main(argv: Sequence[str] | None = None) -> int:
run_migrations(config.database_url)
return 0
if args.command == "worker":
from photo_pipeline.db import create_db_engine, create_session_factory
from photo_pipeline.jobs.worker import Worker
run_migrations(config.database_url)
engine = create_db_engine(config.database_url)
Worker(create_session_factory(engine), worker_id=args.id).run_forever()
return 0
import uvicorn
from photo_pipeline.api.app import create_app

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@@ -0,0 +1 @@
"""Durable job execution: worker loop, handler dispatch, and lock ordering."""

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@@ -0,0 +1,54 @@
"""Job-type handler dispatch.
A handler processes one item of a job: ``handler(item_key, ctx)`` and either
returns (success), raises ``Cancelled`` (cooperative stop, resumable), or raises
any other exception (item failure). Handlers must be idempotent — at-least-once
delivery means the same item can run again after an interrupted attempt.
Domain handlers (safety scoring, analysis, …) register here in later stories; the
registry ships empty so the worker engine can be built and tested independently.
"""
from __future__ import annotations
from dataclasses import dataclass
from typing import TYPE_CHECKING, Callable
if TYPE_CHECKING:
from photo_pipeline.services.jobs import JobService
Handler = Callable[[str, "JobContext"], None]
class Cancelled(Exception):
"""Raised by a handler that observed cancellation and stopped cleanly."""
@dataclass
class JobContext:
"""What a handler needs from the coordinator: cancellation checks and heartbeats."""
job_id: str
worker_id: str
fencing_token: int
service: "JobService"
def cancelled(self) -> bool:
from photo_pipeline.services.jobs import JobState
snapshot = self.service.get(self.job_id)
return snapshot is None or snapshot["state"] in (
JobState.CANCELLING,
JobState.CANCELLED,
)
def heartbeat(self, *, lease_seconds: int = 60) -> bool:
return self.service.heartbeat(self.job_id, self.worker_id, lease_seconds=lease_seconds)
# Populated by domain stories via register(); empty for now.
REGISTRY: dict[str, Handler] = {}
def register(job_type: str, handler: Handler) -> None:
REGISTRY[job_type] = handler

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@@ -0,0 +1,44 @@
"""Lock hierarchy and acquisition ordering.
Locks are acquired broad → narrow to prevent deadlocks: never take a broader lock
while holding a narrower one (concept §16). The coordinator already enforces
one active job per lock key; this guards multi-lock operations.
library lease → stage/job lease → album/folder lease → asset lease
"""
from __future__ import annotations
from collections.abc import Iterable
# Lower rank = broader scope. Mutating lanes map onto these tiers.
LOCK_RANK = {
"library": 0,
"library_write": 0,
"rename": 1,
"upload": 1,
"archive": 1,
"album": 2,
"asset": 3,
"exif": 3,
}
class LockOrderError(RuntimeError):
pass
def rank(lock: str) -> int:
if lock not in LOCK_RANK:
raise LockOrderError(f"unknown lock {lock!r}")
return LOCK_RANK[lock]
def validate_acquisition(held: Iterable[str], acquiring: str) -> None:
"""Reject acquiring a broader lock than one already held (deadlock risk)."""
new_rank = rank(acquiring)
for lock in held:
if rank(lock) > new_rank:
raise LockOrderError(
f"cannot acquire broader lock {acquiring!r} while holding narrower {lock!r}"
)

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@@ -0,0 +1,138 @@
"""Durable worker: claims jobs and runs their items safely.
Each worker serves a set of job types (its lanes), claims one job at a time (a
bounded single lane), and processes items sequentially with heartbeats. It holds
the fencing token from its claim and stamps every state write with it, so a worker
that was superseded after a lease expiry cannot commit stale results. Cancellation
is cooperative (checked between items and offered to handlers), leaving items
resumable. On resume, items left ``running`` by a dead worker are reset to
``queued`` and re-run (handlers are idempotent).
"""
from __future__ import annotations
from collections.abc import Mapping, Sequence
from sqlalchemy import select
from sqlalchemy.orm import sessionmaker
from photo_pipeline.jobs.handlers import REGISTRY, Cancelled, Handler, JobContext
from photo_pipeline.models import JobItem
from photo_pipeline.services.jobs import ItemState, JobConflict, JobService, JobState
class Worker:
def __init__(
self,
session_factory: sessionmaker,
handlers: Mapping[str, Handler] | None = None,
worker_id: str = "worker",
*,
job_types: Sequence[str] | None = None,
lease_seconds: int = 60,
) -> None:
self._session_factory = session_factory
self.service = JobService(session_factory)
self.handlers: Mapping[str, Handler] = handlers if handlers is not None else REGISTRY
self.worker_id = worker_id
self.job_types = list(job_types if job_types is not None else self.handlers.keys())
self.lease_seconds = lease_seconds
def run_once(self) -> str | None:
"""Recover stragglers, then claim and fully process one job. Returns its id."""
self.service.recover_stale()
claimed = self.service.claim(
self.job_types, self.worker_id, lease_seconds=self.lease_seconds
)
if claimed is None:
return None
self._process(claimed["id"], claimed["job_type"], claimed["fencing_token"])
return claimed["id"]
def _process(self, job_id: str, job_type: str, token: int) -> None:
handler = self.handlers[job_type]
ctx = JobContext(job_id, self.worker_id, token, self.service)
self._reset_interrupted_items(job_id, token)
cancelled = False
any_failed = False
for item_key in self._queued_items(job_id):
if ctx.cancelled():
cancelled = True
break
try:
self.service.set_item(job_id, item_key, ItemState.RUNNING, fencing_token=token)
handler(item_key, ctx)
except Cancelled:
# Cooperative stop: leave the item resumable.
self.service.set_item(job_id, item_key, ItemState.QUEUED, fencing_token=token)
cancelled = True
break
except JobConflict:
# Superseded mid-item; stop and let the new owner finish.
return
except Exception as error: # handler failure for this item
any_failed = True
self.service.set_item(
job_id,
item_key,
ItemState.FAILED,
error=("handler_error", str(error)[:200]),
fencing_token=token,
)
else:
self.service.set_item(job_id, item_key, ItemState.SUCCEEDED, fencing_token=token)
self.service.heartbeat(job_id, self.worker_id, lease_seconds=self.lease_seconds)
self._finalize(job_id, token, cancelled=cancelled, any_failed=any_failed)
def _finalize(self, job_id: str, token: int, *, cancelled: bool, any_failed: bool) -> None:
snapshot = self.service.get(job_id)
if snapshot is None:
return
try:
if cancelled or snapshot["state"] == JobState.CANCELLING:
self.service.transition(
job_id, JobState.CANCELLED, worker_id=self.worker_id, fencing_token=token
)
elif any_failed:
self.service.transition(
job_id,
JobState.FAILED,
worker_id=self.worker_id,
fencing_token=token,
error=("items_failed", "one or more items failed"),
)
else:
self.service.transition(
job_id, JobState.SUCCEEDED, worker_id=self.worker_id, fencing_token=token
)
except JobConflict:
# A newer worker owns the job now; do not overwrite its outcome.
return
def _reset_interrupted_items(self, job_id: str, token: int) -> None:
for item_key in self._items_in_state(job_id, ItemState.RUNNING):
self.service.set_item(job_id, item_key, ItemState.QUEUED, fencing_token=token)
def _queued_items(self, job_id: str) -> list[str]:
return self._items_in_state(job_id, ItemState.QUEUED)
def _items_in_state(self, job_id: str, state: str) -> list[str]:
with self._session_factory() as session:
return list(
session.execute(
select(JobItem.item_key)
.where(JobItem.job_id == job_id, JobItem.state == state)
.order_by(JobItem.item_key)
).scalars()
)
def run_forever(self, *, idle_sleep: float = 1.0, iterations: int | None = None) -> None:
import time
count = 0
while iterations is None or count < iterations:
if self.run_once() is None:
time.sleep(idle_sleep)
count += 1

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@@ -66,8 +66,9 @@ ALLOWED_TRANSITIONS = {
}
ITEM_TRANSITIONS = {
# running -> queued is an interrupted item being made resumable again.
ItemState.QUEUED: {ItemState.RUNNING, ItemState.CANCELLED},
ItemState.RUNNING: {ItemState.SUCCEEDED, ItemState.FAILED, ItemState.CANCELLED},
ItemState.RUNNING: {ItemState.SUCCEEDED, ItemState.FAILED, ItemState.CANCELLED, ItemState.QUEUED},
ItemState.FAILED: {ItemState.QUEUED, ItemState.RUNNING},
ItemState.SUCCEEDED: set(),
ItemState.CANCELLED: set(),
@@ -219,6 +220,7 @@ class JobService:
to_state: str,
*,
worker_id: str | None = None,
fencing_token: int | None = None,
error: tuple[str, str] | None = None,
) -> dict:
now = _now()
@@ -226,6 +228,10 @@ class JobService:
job = session.get(Job, job_id)
if job is None:
raise JobError(f"unknown job {job_id}")
if fencing_token is not None and job.fencing_token != fencing_token:
raise JobConflict(
f"stale fencing token {fencing_token} (current {job.fencing_token})"
)
if not can_transition(job.state, to_state):
raise InvalidTransition(f"{job.state} -> {to_state}")
if worker_id is not None and job.lease_owner not in (None, worker_id):
@@ -258,10 +264,24 @@ class JobService:
# ── items / progress ───────────────────────────────────────────────────────
def set_item(
self, job_id: str, item_key: str, state: str, *, error: tuple[str, str] | None = None
self,
job_id: str,
item_key: str,
state: str,
*,
error: tuple[str, str] | None = None,
fencing_token: int | None = None,
) -> None:
now = _now()
with self._session_factory() as session:
if fencing_token is not None:
job = session.get(Job, job_id)
if job is None:
raise JobError(f"unknown job {job_id}")
if job.fencing_token != fencing_token:
raise JobConflict(
f"stale fencing token {fencing_token} (current {job.fencing_token})"
)
item = session.get(JobItem, {"job_id": job_id, "item_key": item_key})
if item is None:
raise JobError(f"unknown item {job_id}/{item_key}")

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@@ -0,0 +1,84 @@
"""Process test: kill a worker mid-item, then prove the job recovers and a fresh
worker finishes it. The killed worker's lease expires and its ownership is fenced."""
import subprocess
import sys
import time
from pathlib import Path
import pytest
from photo_pipeline.db import create_db_engine, create_session_factory, run_migrations
from photo_pipeline.jobs.worker import Worker
from photo_pipeline.services.jobs import ItemState, JobService, JobState
REPO = Path(__file__).resolve().parents[2]
# A worker that claims the job, marks its item running, signals it started, then
# blocks — so the test can kill it mid-item.
WORKER_SCRIPT = """
import sys, time
from pathlib import Path
sys.path.insert(0, {repo!r})
from photo_pipeline.db import create_db_engine, create_session_factory
from photo_pipeline.jobs.worker import Worker
db_url, started = sys.argv[1], Path(sys.argv[2])
def blocking_handler(item_key, ctx):
started.write_text("started")
time.sleep(30)
sf = create_session_factory(create_db_engine(db_url))
Worker(sf, {{"slow": blocking_handler}}, "killable", lease_seconds=1).run_once()
"""
@pytest.fixture
def db_url(tmp_path):
url = f"sqlite:///{tmp_path / 'kill.db'}"
run_migrations(url)
return url
def test_killed_worker_job_recovers_and_completes(tmp_path, db_url):
engine = create_db_engine(db_url)
service = JobService(create_session_factory(engine))
job = service.enqueue("slow", items=["only"])
script = tmp_path / "worker_script.py"
script.write_text(WORKER_SCRIPT.format(repo=str(REPO)))
started = tmp_path / "started.flag"
proc = subprocess.Popen(
[sys.executable, str(script), db_url, str(started)],
stdout=subprocess.PIPE,
stderr=subprocess.PIPE,
)
try:
deadline = time.monotonic() + 20
while time.monotonic() < deadline and not started.exists():
if proc.poll() is not None:
_, err = proc.communicate()
pytest.fail(f"worker exited early: {err.decode(errors='replace')}")
time.sleep(0.1)
assert started.exists(), "worker never began the item"
assert service.get(job["id"])["state"] == JobState.RUNNING
finally:
proc.kill()
proc.wait(timeout=10)
# Let the 1s lease expire, then a fresh worker recovers and finishes the job.
time.sleep(1.3)
completed = []
fresh = Worker(
create_session_factory(engine),
{"slow": lambda item, ctx: completed.append(item)},
"recovery-worker",
)
fresh.run_once()
assert service.get(job["id"])["state"] == JobState.SUCCEEDED
assert completed == ["only"] # the interrupted item was reprocessed
assert service.progress(job["id"])["by_state"] == {ItemState.SUCCEEDED: 1}
engine.dispose()

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@@ -0,0 +1,156 @@
"""Worker execution: success, failure, cooperative cancel, resume, fencing, and a
randomized concurrency stress with no duplicate completion or lost events."""
import threading
from collections import Counter
from concurrent.futures import ThreadPoolExecutor
from datetime import timedelta
import pytest
from photo_pipeline.db import create_db_engine, create_session_factory, run_migrations
from photo_pipeline.jobs.worker import Worker
from photo_pipeline.services.jobs import (
ItemState,
JobConflict,
JobService,
JobState,
_now,
)
@pytest.fixture
def db_url(tmp_path):
url = f"sqlite:///{tmp_path / 'worker.db'}"
run_migrations(url)
return url
@pytest.fixture
def make_factory():
engines = []
def _make(url):
engine = create_db_engine(url)
engines.append(engine)
return create_session_factory(engine)
yield _make
for engine in engines:
engine.dispose()
@pytest.fixture
def sf(db_url, make_factory):
return make_factory(db_url)
@pytest.fixture
def jobs(sf):
return JobService(sf)
def test_worker_processes_all_items(sf, jobs):
handled = []
worker = Worker(sf, {"scan": lambda item, ctx: handled.append(item)}, "w1")
job = jobs.enqueue("scan", items=["a", "b", "c"])
assert worker.run_once() == job["id"]
assert jobs.get(job["id"])["state"] == JobState.SUCCEEDED
assert sorted(handled) == ["a", "b", "c"]
assert jobs.progress(job["id"])["done"] == 3
def test_handler_failure_fails_the_job(sf, jobs):
def handler(item, ctx):
if item == "bad":
raise ValueError("nope")
worker = Worker(sf, {"scan": handler}, "w1")
job = jobs.enqueue("scan", items=["ok", "bad"])
worker.run_once()
assert jobs.get(job["id"])["state"] == JobState.FAILED
assert jobs.progress(job["id"])["by_state"] == {
ItemState.SUCCEEDED: 1,
ItemState.FAILED: 1,
}
def test_cooperative_cancellation_leaves_items_resumable(sf, jobs):
# Cancel arrives while the first item runs; the worker stops before the next.
def handler(item, ctx):
if item == "a":
ctx.service.cancel(ctx.job_id)
worker = Worker(sf, {"scan": handler}, "w1")
job = jobs.enqueue("scan", items=["a", "b"])
worker.run_once()
assert jobs.get(job["id"])["state"] == JobState.CANCELLED
by_state = jobs.progress(job["id"])["by_state"]
assert by_state.get(ItemState.SUCCEEDED) == 1 # "a" finished
assert by_state.get(ItemState.QUEUED) == 1 # "b" left resumable
def test_fencing_rejects_superseded_worker(sf, jobs):
job = jobs.enqueue("scan", items=["a"])
stale = jobs.claim(["scan"], "old")
jobs.recover_stale(now=_now() + timedelta(hours=1))
fresh = jobs.claim(["scan"], "new")
assert fresh["fencing_token"] > stale["fencing_token"]
with pytest.raises(JobConflict):
jobs.set_item(job["id"], "a", ItemState.SUCCEEDED, fencing_token=stale["fencing_token"])
with pytest.raises(JobConflict):
jobs.transition(
job["id"], JobState.SUCCEEDED, fencing_token=stale["fencing_token"]
)
def test_recovered_job_resumes_remaining_items(sf, jobs):
job = jobs.enqueue("scan", items=["a", "b"])
# Simulate a crashed attempt: "a" done, "b" left running, no finalize.
crashed = jobs.claim(["scan"], "dead")
token = crashed["fencing_token"]
jobs.set_item(job["id"], "a", ItemState.RUNNING, fencing_token=token)
jobs.set_item(job["id"], "a", ItemState.SUCCEEDED, fencing_token=token)
jobs.set_item(job["id"], "b", ItemState.RUNNING, fencing_token=token)
jobs.recover_stale(now=_now() + timedelta(hours=1))
handled = []
fresh_worker = Worker(sf, {"scan": lambda item, ctx: handled.append(item)}, "alive")
fresh_worker.run_once()
assert jobs.get(job["id"])["state"] == JobState.SUCCEEDED
assert handled == ["b"] # "a" already succeeded, only "b" reprocessed
assert jobs.progress(job["id"])["by_state"][ItemState.SUCCEEDED] == 2
def test_concurrent_workers_no_duplicate_completion_or_lost_events(db_url, make_factory):
service = JobService(make_factory(db_url))
job_ids = [service.enqueue("scan", items=["x", "y"])["id"] for _ in range(12)]
calls = Counter()
lock = threading.Lock()
def handler(item, ctx):
with lock:
calls[(ctx.job_id, item)] += 1
def drain(worker_index):
worker = Worker(make_factory(db_url), {"scan": handler}, f"w{worker_index}")
empties = 0
for _ in range(200):
if worker.run_once() is None:
empties += 1
if empties >= 2:
break
else:
empties = 0
with ThreadPoolExecutor(max_workers=4) as pool:
list(pool.map(drain, range(4)))
# Every job completed exactly once; every item handled exactly once.
for job_id in job_ids:
assert service.get(job_id)["state"] == JobState.SUCCEEDED
types = [e["type"] for e in service.events(job_id)]
assert "claimed" in types and "state:succeeded" in types # no lost events
assert all(count == 1 for count in calls.values())
assert len(calls) == len(job_ids) * 2

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@@ -48,6 +48,11 @@
"US02-02": [
"tests/unit/test_job_state_machine.py",
"tests/integration/test_jobs.py"
],
"US02-03": [
"tests/unit/test_lock_order.py",
"tests/integration/test_worker.py",
"tests/e2e/test_worker_kill.py"
]
}
}

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@@ -0,0 +1,28 @@
"""Lock acquisition ordering (deadlock prevention)."""
import pytest
from photo_pipeline.jobs import locks
def test_broad_to_narrow_ranks():
assert locks.rank("library") < locks.rank("rename")
assert locks.rank("rename") < locks.rank("album")
assert locks.rank("album") < locks.rank("asset")
def test_acquiring_narrower_while_holding_broader_is_allowed():
locks.validate_acquisition(["library"], "asset") # no raise
locks.validate_acquisition(["library", "album"], "asset")
def test_acquiring_broader_while_holding_narrower_is_rejected():
with pytest.raises(locks.LockOrderError):
locks.validate_acquisition(["asset"], "library")
with pytest.raises(locks.LockOrderError):
locks.validate_acquisition(["album"], "rename")
def test_unknown_lock_is_rejected():
with pytest.raises(locks.LockOrderError):
locks.rank("nonsense")