Files
hermes-agent/hermes_cli/update_lock.py

242 lines
9.1 KiB
Python

"""Cross-process mutual exclusion for in-flight Hermes updates.
Until now only the Tauri updater published an "update in progress" marker (``UpdateMarkerGuard`` in
``apps/bootstrap-installer/src-tauri/src/update.rs``), and only the Electron desktop consumed it
(``electron/update-marker.ts``, to gate local backend startup).
This module makes that same marker the single lock for **all** update entrypoints instead of adding
a fourth mechanism. Format and location are unchanged and remain byte-compatible with the Rust and
Electron readers:
"""
from __future__ import annotations
import logging
import os
import time
from dataclasses import dataclass
from pathlib import Path
logger = logging.getLogger(__name__)
# Keep in sync with UPDATE_MARKER_MAX_AGE_MS in
# apps/desktop/electron/update-marker.ts — the same marker is read by both, and
# a shorter ceiling here would let Python steal a lock Electron still considers
# live. A full update (git pull + uv sync + desktop rebuild) is minutes.
UPDATE_MARKER_MAX_AGE_SECONDS = 20 * 60
MARKER_NAME = ".hermes-update-in-progress"
# Set by an orchestrating updater (the Tauri `hermes-setup --update` flow) to
# its own pid before spawning `hermes update` as a child stage. The parent
# holds the marker for its whole run, so without this the child refuses its
# own parent's lock and the GUI update can never complete. See update_child_env
# in apps/bootstrap-installer/src-tauri/src/update.rs — keep the name in sync.
HANDOFF_PID_ENV = "HERMES_UPDATE_HANDOFF_PID"
# Exit code meaning "another updater/instance owns this install right now".
# Already the de-facto contract: the Windows shim + venv-holder guards in
# _cmd_update_impl exit 2, and the Tauri updater matches on it
# (UPDATE_EXIT_CONCURRENT in apps/bootstrap-installer/src-tauri/src/update.rs)
# to show "Hermes is still running" instead of a generic failure. Naming it
# here keeps the concurrent-update refusal on that same understood contract.
UPDATE_EXIT_CONCURRENT = 2
def update_marker_path() -> Path:
"""Path of the shared update marker.
Uses the *process* Hermes home (never the context-local profile override): the Rust updater
resolves ``$HERMES_HOME`` or the platform default, and the desktop pins that same value into the
updater's env. A profile-scoped path here would put the lock somewhere the other two owners
never look.
"""
from hermes_constants import get_process_hermes_home
return get_process_hermes_home() / MARKER_NAME
def _pid_alive(pid: int) -> bool:
"""True when a process with ``pid`` currently exists.
Delegates to :func:`gateway.status._pid_exists`, the project's existing no-kill probe. Do NOT
hand-roll this with ``os.kill(pid, 0)``: on Windows that is not a no-op — CPython routes
``sig=0`` to ``GenerateConsoleCtrlEvent``, which Ctrl+C's the target's whole console process
group (bpo-14484).
Any pid we cannot evaluate counts as dead: a corrupt marker must not wedge the lock forever.
"""
if pid <= 0:
return False
try:
from gateway.status import _pid_exists
return bool(_pid_exists(pid))
except Exception as exc:
# Import failure or an unusable pid (e.g. larger than the platform's
# pid_t). Treat the marker as stale rather than blocking updates.
logger.debug("Could not probe pid %s: %s", pid, exc)
return False
def _handoff_pid() -> int | None:
"""Pid of the orchestrating updater that spawned us, if any.
Read from :data:`HANDOFF_PID_ENV`. Malformed values count as absent — a broken handoff must fall
back to the normal refusal, never crash.
"""
raw = os.environ.get(HANDOFF_PID_ENV, "").strip()
if not raw:
return None
try:
pid = int(raw)
except ValueError:
return None
return pid if pid > 0 else None
def _is_ancestor_pid(pid: int) -> bool:
"""True when ``pid`` is a live ancestor (parent chain) of this process.
The orchestrating updater spawns ``hermes update`` as a (grand)child, so a live marker owned by
one of our ancestors can only be the claim we are already running under — an unrelated
concurrent updater is never in our parent chain.
Never includes our own pid, and any failure counts as "not an ancestor": an unprovable ancestry
must fall back to the normal refusal.
"""
if pid <= 0:
return False
try:
import psutil
return any(parent.pid == pid for parent in psutil.Process().parents())
except Exception as exc:
logger.debug("Could not walk process ancestry for pid %s: %s", pid, exc)
return False
@dataclass(frozen=True)
class UpdateHolder:
"""A confirmed-live update currently holding the lock."""
pid: int
age_seconds: float
def read_live_update(*, path: Path | None = None) -> UpdateHolder | None:
"""Return the live update holding the lock, or ``None``.
Mirrors ``readLiveUpdateMarker`` in ``electron/update-marker.ts``: absent, unreadable,
malformed, dead-pid, and past-the-ceiling all mean "no live update", and a stale marker file is
deleted so it can't strand future runs. Never raises.
"""
marker = path or update_marker_path()
try:
raw = marker.read_text(encoding="utf-8")
except OSError:
return None # absent or unreadable => no live update
lines = raw.splitlines()
try:
pid = int(lines[0].strip())
except (IndexError, ValueError):
pid = -1
try:
started_at = float(lines[1].strip())
except (IndexError, ValueError):
started_at = float("-inf")
age = time.time() - started_at
if not _pid_alive(pid) or age > UPDATE_MARKER_MAX_AGE_SECONDS:
try:
marker.unlink()
except OSError:
pass
return None
return UpdateHolder(pid=pid, age_seconds=age)
def describe_holder(holder: UpdateHolder) -> str:
"""One-line, user-facing explanation of who holds the update lock."""
minutes, seconds = divmod(int(max(holder.age_seconds, 0)), 60)
elapsed = f"{minutes}m {seconds}s" if minutes else f"{seconds}s"
return (
f"✗ Another Hermes update is already running (PID {holder.pid}, "
f"started {elapsed} ago).\n"
"\n"
" Two updates mutating the same checkout corrupt it: one rewrites\n"
" source while the other is mid-install. Wait for it to finish, or\n"
" close the window/dashboard tab that started it, then retry."
)
class UpdateLock:
"""Context manager owning the shared update marker for this process.
``acquired`` is False when another live update holds it; callers decide between hard refusal
(CLI/dashboard) and waiting. Release only removes the marker when *we* still own it, so a marker
rewritten by a handoff partner (the Tauri updater writes its own pid) is never deleted from
under its new owner.
"""
def __init__(self, *, path: Path | None = None) -> None:
self.path = path or update_marker_path()
self.acquired = False
self.holder: UpdateHolder | None = None
def acquire(self) -> bool:
"""Claim the lock. Returns False (and sets ``holder``) if it's taken.
A live holder whose pid matches :data:`HANDOFF_PID_ENV` — or is an ancestor of ours — is our
own orchestrating parent (e.g. the Tauri updater staging ``hermes update``): run under ITS
claim and leave its marker untouched on release. The ancestry path covers staged updaters
older than the env-var export.
"""
existing = read_live_update(path=self.path)
if existing is not None:
if existing.pid == _handoff_pid() or _is_ancestor_pid(existing.pid):
return True
self.holder = existing
return False
try:
self.path.parent.mkdir(parents=True, exist_ok=True)
self.path.write_text(
f"{os.getpid()}\n{int(time.time())}\n", encoding="utf-8"
)
except OSError as exc:
# Best-effort, exactly like the Rust guard: an unwritable marker
# must not block the update itself (that would be a worse failure
# than the race it prevents). Degrade to the pre-lock behavior.
logger.debug("Could not write update marker %s: %s", self.path, exc)
return True
self.acquired = True
return True
def release(self) -> None:
"""Drop the marker if this process still owns it. Never raises."""
if not self.acquired:
return
self.acquired = False
try:
raw = self.path.read_text(encoding="utf-8")
owner = int(raw.splitlines()[0].strip())
except (OSError, IndexError, ValueError):
return
if owner != os.getpid():
# A handoff partner took ownership (e.g. the Tauri updater wrote
# its own pid). Leave it alone — it's still a live update.
return
try:
self.path.unlink()
except OSError:
pass
def __enter__(self) -> "UpdateLock":
self.acquire()
return self
def __exit__(self, *_exc) -> None:
self.release()