"""Tests for ``SessionDB`` compression-lock primitives. These cover the atomic per-session lock that prevents two compression paths from racing on the same ``session_id`` and producing orphan child sessions (Damien's "parent → two orphan children" repro shape, see ``tests/agent/test_compression_concurrent_fork.py`` for the behavioural regression test). Focus here: the lock primitives themselves (acquire, release, TTL, diagnostic accessor) — not the wiring into compression. """ from __future__ import annotations import os import threading import time from pathlib import Path from types import SimpleNamespace import pytest import hermes_state from hermes_state import SessionDB @pytest.fixture def db(tmp_path: Path) -> SessionDB: return SessionDB(tmp_path / "state.db") # ---------------------------------------------------------------------- # Single-holder semantics # ---------------------------------------------------------------------- def test_acquire_succeeds_when_unlocked(db: SessionDB) -> None: assert db.try_acquire_compression_lock("sess1", "holder1") is True assert db.get_compression_lock_holder("sess1") == "holder1" def test_acquire_blocks_second_holder(db: SessionDB) -> None: assert db.try_acquire_compression_lock("sess1", "holder1") is True assert db.try_acquire_compression_lock("sess1", "holder2") is False # First holder still owns it assert db.get_compression_lock_holder("sess1") == "holder1" # ---------------------------------------------------------------------- # Per-session isolation # ---------------------------------------------------------------------- def test_locks_are_per_session(db: SessionDB) -> None: assert db.try_acquire_compression_lock("sess1", "holder1") is True # Different session: independent lock assert db.try_acquire_compression_lock("sess2", "holder2") is True assert db.get_compression_lock_holder("sess1") == "holder1" assert db.get_compression_lock_holder("sess2") == "holder2" # ---------------------------------------------------------------------- # TTL / expiry recovery # ---------------------------------------------------------------------- def test_expired_lock_is_reclaimable(db: SessionDB) -> None: """A crashed compressor must not permanently block the session.""" # Acquire with a very short TTL db.try_acquire_compression_lock("sess1", "crashed_holder", ttl_seconds=0.05) time.sleep(0.1) # Holder check honours expiry assert db.get_compression_lock_holder("sess1") is None # New holder can claim it assert db.try_acquire_compression_lock("sess1", "fresh_holder") is True assert db.get_compression_lock_holder("sess1") == "fresh_holder" def test_non_expired_lock_is_held(db: SessionDB) -> None: db.try_acquire_compression_lock("sess1", "holder1", ttl_seconds=60) # Immediately after, still held assert db.try_acquire_compression_lock("sess1", "holder2") is False def test_non_expired_lock_from_dead_pid_is_reclaimed( db: SessionDB, monkeypatch: pytest.MonkeyPatch ) -> None: # PID probing is POSIX-only by design (see # test_windows_uses_ttl_only_without_pid_probe). Pin the platform so this # exercises the probe branch on Windows dev machines too, instead of # silently asserting the nt early-return. monkeypatch.setattr(hermes_state.os, "name", "posix") dead_holder = "pid=424242:tid=1:agent=abc:nonce=deadbeef" assert db.try_acquire_compression_lock( "sess1", dead_holder, ttl_seconds=300 ) is True probed: list[int] = [] def process_is_gone(pid: int) -> bool: probed.append(pid) return False monkeypatch.setattr( hermes_state, "psutil", SimpleNamespace(pid_exists=process_is_gone) ) assert db.try_acquire_compression_lock( "sess1", "pid=525252:tid=2:agent=def:nonce=fresh", ttl_seconds=300 ) is True assert probed == [424242] def test_probe_doubt_keeps_lease_until_ttl( db: SessionDB, monkeypatch: pytest.MonkeyPatch ) -> None: """A probe that errors out is doubt, not proof of death → TTL protects.""" holder = "pid=424242:tid=1:agent=abc:nonce=doubt" assert db.try_acquire_compression_lock( "sess1", holder, ttl_seconds=300 ) is True def probe_blows_up(pid: int) -> bool: raise RuntimeError("transient probe failure") monkeypatch.setattr( hermes_state, "psutil", SimpleNamespace(pid_exists=probe_blows_up) ) assert db.try_acquire_compression_lock( "sess1", "pid=525252:tid=2:agent=def:nonce=other", ttl_seconds=300 ) is False assert db.get_compression_lock_holder("sess1") == holder def test_non_expired_lock_from_live_pid_is_not_reclaimed(db: SessionDB) -> None: live_holder = f"pid={os.getpid()}:tid=1:agent=abc:nonce=live" assert db.try_acquire_compression_lock( "sess1", live_holder, ttl_seconds=300 ) is True assert db.try_acquire_compression_lock( "sess1", "pid=525252:tid=2:agent=def:nonce=other", ttl_seconds=300 ) is False def test_unstructured_holder_waits_for_ttl( db: SessionDB, monkeypatch: pytest.MonkeyPatch ) -> None: assert db.try_acquire_compression_lock( "sess1", "legacy_holder", ttl_seconds=300 ) is True monkeypatch.setattr( hermes_state, "psutil", SimpleNamespace( pid_exists=lambda _pid: pytest.fail( "unstructured holder must not probe a PID" ) ), ) monkeypatch.setattr( hermes_state.os, "kill", lambda *_args: pytest.fail("unstructured holder must not probe a PID"), ) assert db.try_acquire_compression_lock( "sess1", "pid=525252:tid=2:agent=def:nonce=other", ttl_seconds=300 ) is False # ---------------------------------------------------------------------- # Empty / invalid input # ---------------------------------------------------------------------- # ---------------------------------------------------------------------- # Concurrency: real threads racing on the same session_id # ---------------------------------------------------------------------- def test_concurrent_acquire_only_one_winner(db: SessionDB) -> None: """Damien's race shape: N threads call acquire on the same session_id; exactly one must win, the rest must be cleanly rejected.""" results: list[bool] = [] barrier = threading.Barrier(8) lock = threading.Lock() def try_acquire(idx: int) -> None: holder = f"thread_{idx}" barrier.wait() # synchronize start got = db.try_acquire_compression_lock("contended_session", holder) with lock: results.append(got) threads = [threading.Thread(target=try_acquire, args=(i,)) for i in range(8)] for t in threads: t.start() for t in threads: t.join() # Exactly one thread acquired assert sum(1 for r in results if r is True) == 1 assert sum(1 for r in results if r is False) == 7 # The single winner still owns it assert db.get_compression_lock_holder("contended_session") is not None