"""Process lifecycle and provider artifact edge coverage for CLI workers.""" from __future__ import annotations import json import os import signal import subprocess import sys from pathlib import Path from testing.tests.test_hermes_cli_support import _completed_result, lanes def test_stream_process_enforces_runtime_and_lease_boundaries( tmp_path: Path, ): timed_out = lanes.stream_process( [sys.executable, "-c", "import time; time.sleep(30)"], provider="codex", cwd=tmp_path, env=dict(os.environ), log_path=tmp_path / "timeout.log", state={}, state_file=tmp_path / "timeout-state.json", heartbeat=lambda _note: True, max_runtime=-1, ) assert "maximum runtime" in timed_out.output assert timed_out.returncode != 0 lease_lost = lanes.stream_process( [sys.executable, "-c", "import time; time.sleep(30)"], provider="claude", cwd=tmp_path, env=dict(os.environ), log_path=tmp_path / "lease.log", state={}, state_file=tmp_path / "lease-state.json", heartbeat=lambda _note: False, max_runtime=60, ) assert "lease was lost" in lease_lost.output assert lease_lost.returncode != 0 def test_process_identity_and_signal_failures_are_bounded(monkeypatch): assert lanes._process_record(999999999) is None monkeypatch.setattr( lanes, "_process_identity_matches", lambda _pid, _start: True, ) monkeypatch.setattr( lanes.os, "killpg", lambda *_args: (_ for _ in ()).throw(ProcessLookupError()), ) monkeypatch.setattr( lanes.os, "kill", lambda *_args: (_ for _ in ()).throw(ProcessLookupError()), ) lanes._signal_worker_tree(10, {11: (12, 13)}, signal.SIGTERM) def test_descendant_snapshot_follows_multiple_generations(monkeypatch): entries = [Path("/proc/self"), Path("/proc/10"), Path("/proc/11"), Path("/proc/12")] monkeypatch.setattr(lanes.Path, "iterdir", lambda _path: iter(entries)) records = { 10: (1, 10, 100), 11: (10, 11, 101), 12: (11, 12, 102), } monkeypatch.setattr(lanes, "_process_record", lambda pid: records.get(pid)) assert lanes._descendant_processes(10) == {11: (11, 101), 12: (12, 102)} def test_terminate_escalates_after_term_timeout(monkeypatch): class Process: pid = 321 waits = 0 @classmethod def poll(cls): return None @classmethod def wait(cls, timeout): cls.waits += 1 if cls.waits == 1: raise subprocess.TimeoutExpired("worker", timeout) return 0 signals = [] monkeypatch.setattr(lanes, "_descendant_processes", lambda _pid: {}) monkeypatch.setattr( lanes, "_signal_worker_tree", lambda _pid, _descendants, sig: signals.append(sig), ) lanes._terminate_worker_process(Process()) assert signals == [signal.SIGTERM, signal.SIGKILL] assert Process.waits == 2 def test_codex_result_collision_and_chmod_failure_preserve_result( tmp_path: Path, monkeypatch, ): state = {"run_id": 7, "result_sequence": 0} state_file = tmp_path / "task.json" first = lanes._result_path(state_file, 7, 1) first.write_text("prior", encoding="utf-8") result_paths = [] def stream(command, **_kwargs): result_path = Path(command[command.index("-o") + 1]) result_path.write_text(json.dumps(_completed_result("new result")), encoding="utf-8") result_paths.append(result_path) return lanes.ProcessResult(0, "", None, False) monkeypatch.setattr(lanes, "stream_process", stream) monkeypatch.setattr( lanes.Path, "chmod", lambda *_args, **_kwargs: (_ for _ in ()).throw(OSError("readonly")), ) route = lanes.Route("codex", "gpt", "high", "p", "c", "r", 1, ()) result = lanes.run_provider( route, "work", tmp_path, state, state_file, tmp_path / "log", lambda _note: True, 60, ) assert result.structured["summary"] == "new result" assert result_paths[0].name.endswith("provider-2.result.json") def test_codex_missing_thread_skips_colliding_restart_result( tmp_path: Path, monkeypatch, ): state = {"run_id": 8, "codex_thread_id": "missing"} state_file = tmp_path / "task.json" second = lanes._result_path(state_file, 8, 2) second.write_text("collision", encoding="utf-8") calls = [] def stream(command, **_kwargs): calls.append(command) if len(calls) == 1: return lanes.ProcessResult(1, lanes.NO_CODEX_THREAD, None, False) return lanes.ProcessResult(0, "", None, False) monkeypatch.setattr(lanes, "stream_process", stream) route = lanes.Route("codex", "gpt", "high", "p", "c", "r", 1, ()) lanes.run_provider( route, "work", tmp_path, state, state_file, tmp_path / "log", lambda _note: True, 60, ) restart = Path(calls[1][calls[1].index("-o") + 1]) assert restart.name.endswith("provider-3.result.json")