Shutdown cleanup must not depend on active record.session capability,
which is cleared on cancellation. Guard cleanup by socket directory
presence so all owned daemons are terminated.
Extract the generic process lifecycle layer (src/process_lifecycle.py)
shared by runtime-owned subprocesses: process identity (pid + boot-bound
start token), identity-bound observation, group and pidfd probes, the
TERM -> verify -> KILL -> verify escalation with re-gating before
escalation, identity-scoped sweeps, and the termination receipt.
Containment, the PTY shell, the Cookbook survivor sweep, the browser
lifecycle, web_tools browser cleanup, kill_process_tree and the startup
reaper consume it while keeping their own ownership semantics.
Safety corrections:
- browser membership and identity are bound in one snapshot; no identity
is recaptured after membership is decided
- web_tools legacy pid-file and profile-match kills signal only verified
identities; browser CLI groups only while their spawn identity verifies
- Cookbook and legacy-tmux descendant capture bind membership to identity
- PTY teardown never signals the server's own process group
- unverifiable processes are reported, never signalled
Own each agent-browser session as a browser tree: the daemon's POSIX
session, its runtime files and its Chrome profile. Timeouts, launch
failures, bootstrap recovery, cancellation and shutdown clean that tree
and verify nothing survives, instead of killing only the daemon and
orphaning Chrome. Per-call cleanup no longer sweeps every Chrome under
the runtime TMPDIR.
Sessionless calls get an ephemeral browser closed before returning.
Actions on one session are serialized. Recovery is bounded by one
deadline with at most one retry for local HTML open, and the retry flag
is no longer model-visible. Observations after a failed navigation are
marked stale. read URL navigates and extracts in one batch because
agent-browser has no read command. Results carry a browser_lifecycle
receipt with stages, timings, ownership and cleanup evidence.
Playwright MCP tool calls are bounded by
ODYSSEUS_BROWSER_MCP_CALL_TIMEOUT_S and are not retried. research_navigator
now passes timeout_ms.
Snapshot current maintainer-preview application changes and regression fixtures for integration into lab. Excludes local runtime data, evaluation outputs and source backups. Focused Python regression selection: 140 passed; full suite not certified.
_process_is_alive used os.kill(pid, 0). That probe is POSIX-only:
CPython's Windows os.kill calls TerminateProcess(handle, sig) for any
signal other than CTRL_C/CTRL_BREAK, so it terminates the process it is
asked about. This function is only reached when there is no procfs to
read a command line from, which is exactly the macOS and Windows case
the rest of this change exists to handle.
core/platform_compat.py already owns that probe and documents the
hazard; its module docstring asks callers to import from there rather
than spell a POSIX-only call out locally. Delegate to it.
pid_alive answers False where os.kill raises PermissionError — a live
process owned by another user. Both call sites want that reading: the
sweep only unlinks a pid file it wrote itself, and a pid it cannot
confirm is not the daemon it is looking for.
_terminate_owned_daemon() read /proc/<pid>/cmdline and, on FileNotFoundError,
unlinked the pid file on the stated assumption that "the daemon may have
exited". Off Linux that file is always missing, so the branch always fired:
the pid file of a live daemon was deleted and the daemon itself never killed.
_owned_daemon_exists() swallowed the same error and therefore always returned
False, which is precisely the state its own docstring warns about, since a
close against an unrecognised session can bootstrap a fresh daemon and wait on
its browser indefinitely.
Demonstrated on macOS before the change: a pid file holding a live pid is
removed by _terminate_owned_daemon() and _owned_daemon_exists() reports False.
After it, the file survives and the daemon is reported present.
_process_command_line() now returns None for "this host cannot tell" and
_process_is_alive() answers the separate question of whether the pid exists.
Without procfs we decline to kill a process we cannot confirm is ours, and we
only forget a pid file once the pid is genuinely gone. Linux behaviour is
unchanged: the command-line identity check still gates both paths.
_terminate_owned_chrome() walked Path("/proc") unconditionally, so on macOS
and Windows iterdir() raised FileNotFoundError out of private-browser session
shutdown. src/tools/cookbook.py already guards the same kind of scan with
os.path.isdir("/proc").
The sweep only reclaims Chrome trees that agent-browser reparented, so it is
an optimisation rather than a correctness requirement: degrade to a no-op
rather than failing the whole shutdown path.
_PROC_ROOT is a module attribute so both branches are testable on either kind
of host. The procfs-present path had no coverage at all before this.