_venv_launcher_ancestors() ran after
_wait_for_windows_update_gateway_exit(), but the drain stops tracking a
PID exactly when it dies - for the common graceful-drain case the worker
is gone by the time the wait returns, and a dead pid's parent cannot be
recovered, so the launcher stop never fired on that path. Resolve
launcher ancestors before draining and stop the snapshot afterwards
alongside the survivors; a launcher that already exited with its worker
raises ProcessLookupError at the kill and is skipped.
The set-cover invariant test now marks drained workers uninspectable
(construction raises, like psutil.NoSuchProcess), so a post-drain
launcher lookup can never reappear unnoticed.
The pause stops every gateway its discovery maps, but the venv-holder
guard sees the process table as it is now: a gateway respawned by its
supervisor (Scheduled Task, login watchdog) inside the pause-to-guard
window, or one started through a spawn path discovery does not map,
still holds venv .pyds - and the guard dead-ended the update on exactly
the kind of process the pause machinery exists to stop.
When every remaining holder classifies as a pausable gateway - using the
same _is_pausable_gateway matcher the Desktop preflight uses, so the two
views cannot drift - stop them and re-scan once. Any non-gateway holder
(REPL, stray script, Desktop backend) keeps the hard refusal exactly as
before, and a survivor after the stop still aborts.
On Windows a gateway started through the venv shim is a two-process chain:
venv\Scripts\python.exe (launcher — keeps venv .pyd files mapped)
└─ uv\python\...\python.exe (worker — writes the gateway PID file)
`_pause_windows_gateways_for_update()` builds its pause set from
`find_gateway_pids()`, which reads the PID file and therefore only ever
sees the *worker*. The venv-holder guard immediately downstream
(`_detect_venv_python_processes()`) matches on the venv path prefix, so it
only ever sees the *launcher*.
The two sets are disjoint. A gateway the updater had just gracefully
drained still left its launcher alive, the guard reported that launcher as
a venv holder, and the update aborted — every time. On the Desktop path
this surfaces as the dead-end dialog:
[updates] venv-blocked: 2 process(es) hold the install
PID ... python.exe ...\venv\Scripts\python.exe -m hermes_cli.main gateway run --replace
Note the reported holder is a gateway the updater believes it stopped.
The Desktop path is affected because `hermes-setup.exe` runs
`hermes update --yes --gateway --force`, and `--force` deliberately does
NOT bypass the venv guard (that needs `--force-venv`), so the abort is
correct behaviour reacting to an incomplete pause.
Fix: after the graceful drain, walk one hop up from each mapped gateway
PID and force-kill parents that live under the project venv.
Deliberately additive, not a substitution:
- The planned-stop marker and the graceful drain still target the worker
(the PID that wrote the PID file), so clean shutdown is unchanged and
updates don't get pushed onto the hard-kill path.
- `terminate_pid(force=True)` is `taskkill /T` (tree kill), so killing a
launcher that outlived its worker also reaps stragglers.
- `_resume_windows_gateways_after_update()` needs no change: the mapped
respawn argv is rebuilt from the profile name
(`_gateway_run_args_for_profile`), never from the killed PID, and the
restart watcher's `_pid_exists()` wait still terminates because the
tree kill takes the whole chain down.
- Only the venv-side parent is returned. Unrelated ancestors (a Scheduled
Task's `cmd.exe`, an operator's shell) are ignored, and the caller's own
process chain is excluded so a CLI `hermes update` never nominates
itself.
Tests assert the invariant the two PID-resolution paths must satisfy —
the pause's kill set must cover the guard's abort set — rather than
snapshotting PIDs. Verified to fail without the fix:
AssertionError: pause stopped [] but the venv guard aborts on [400]
— disjoint sets abort the update
Guard the .lazy-refresh-incomplete marker writer (update_cmd), launch-time
recovery (main.py), and _early_recovery repair paths behind a two-condition
check: running under pytest AND the target is this live checkout. Sandboxed
tmp_path tests still exercise the real code paths.
Salvaged from PR #72002 by @fcavalcantirj. Fixes#72000.
Co-authored-by: fcavalcantirj <felipe.cavalcanti.rj@gmail.com>
Follow-up to the salvaged success-path removal: installs that already
repaired (or predate the cleanup) still carry leaked ~1 GB parked venvs.
When the runtime probes safe, reclaim aged (>1h) stale markers next to
the live venv — age-gated to avoid racing an in-flight sibling repair,
boundary-checked via _remove_tree so symlinked names can't escape the
checkout. Also drop the now-stale 'before removing the parked venv'
user guidance in update_cmd.
Tests: success-path removal, safe-path sweep (aged removed, fresh kept).
Git for Windows ships core.autocrlf=true in its system config, which
renormalizes this repo's LF text files to CRLF in the working tree.
install.ps1 pins core.autocrlf=false on the managed clone for that reason
(#67730), but a checkout created before that landed never got the pin --
and cannot get it, because hermes-setup.exe resolves install.ps1 by an
immutable build-time commit pin and reuses the cached script forever. A
Windows install from May 2026 still runs the May install.ps1 no matter how
many times it updates. `hermes update` ships with the checkout itself, so
it is the only path left that reaches those installs.
The pin and the cleanup have to be one operation. Under autocrlf=true git
compares normalized content, so a CRLF working tree reads clean; pinning
alone would expose every tracked text file as modified and hand the very
next update an autostash and pop of the whole tree -- strictly worse than
the state it set out to fix. So the tree is evaluated as it would look
pinned (git -c, nothing persisted), the files whose only difference is the
line ending are restored, and the pin is written only once that is
verified clean. A checkout we cannot fully normalize is left exactly as it
was found.
Files still dirty under --ignore-cr-at-eol are never touched, so a real
edit survives even when it also got renormalized. The restore takes its
pathspec over stdin because a fully renormalized checkout is thousands of
paths, well past the Windows command-line limit.
The rebase onto main (which landed 3a69e34702 touching the two functions
this branch moves to update_cmd.py) resolved main.py to the moved-out
state; this commit re-applies the perf commit's function bodies at their
new home so no behavior from main is lost. Bodies extracted verbatim
from origin/main via AST.