headroom/tests/test_install/test_runtime.py
Abhay Singh 816cb85fa8
fix(install): close parent log fd in start_detached_agent (#1576)
## Description

`start_detached_agent()` opens the agent log file and hands it to
`subprocess.Popen` as `stdout`/`stderr`, then returns the process
**without
closing the parent's copy of the file descriptor**. The child inherits
the fd
and writes to it, but the parent keeps its own copy open forever.

The result: every `headroom install start` leaks one file descriptor in
the
parent, and the leaked handle pins the log file open so it can't be
rotated.
On a tight `ulimit` or inside a container, repeated starts can walk
straight
into the fd limit.

```python
# headroom/install/runtime.py — before
log_file = open(log_file_path, "a", encoding="utf-8", errors="replace")
kwargs = {"stdout": log_file, "stderr": log_file, ...}
return subprocess.Popen(command, **kwargs)   # parent's log_file never closed
```

The fix closes the parent's copy in a `try/finally` right after `Popen`
returns:

```python
try:
    proc = subprocess.Popen(command, **kwargs)
finally:
    # The child has inherited the log file descriptor, so the parent's
    # copy is dead weight. Closing it (even when Popen raises) avoids
    # leaking one fd per `headroom install start` and lets the log file
    # be rotated.
    log_file.close()
return proc
```

The `finally` is deliberate: it also covers the case where `Popen`
itself
raises (bad executable, fork failure), which would otherwise leak the
just-opened handle. This matches the `with open(...)` pattern already
used by
`run_foreground()` a few lines above.

Closes #1554

## Type of Change

- [x] Bug fix (non-breaking change that fixes an issue)

## Changes Made

- `headroom/install/runtime.py`: close the parent's log file descriptor
in a `try/finally` after `subprocess.Popen` in `start_detached_agent()`,
so it is released on the normal path and when `Popen` raises.
- `tests/test_install/test_runtime.py`: add two regression tests — one
for a normal start, one for `Popen` raising — asserting the parent's log
handle is closed afterwards.
- `CHANGELOG.md`: Bug Fixes entry under Unreleased.

## Testing

- [x] Unit tests pass (`pytest`)
- [x] Linting passes (`ruff check .`)
- [ ] Type checking passes (`mypy headroom`)
- [x] New tests added for new functionality
- [x] Manual testing performed

### Test Output

Before the fix (`runtime.py` reverted to its parent commit, new tests
kept) —
the assertion inspects the *actual* log file handle and finds it still
open:

```text
E   AssertionError: assert False is True
E    +  where False = <_io.TextIOWrapper name='...\deploy\demo\runner.log' mode='a' encoding='utf-8'>.closed
FAILED tests/test_install/test_runtime.py::test_start_detached_agent_closes_parent_log_fd
FAILED tests/test_install/test_runtime.py::test_start_detached_agent_closes_log_fd_when_popen_raises
============================== 2 failed in 0.43s ==============================
```

After the fix:

```text
tests\test_install\test_runtime.py ................
====================== 16 passed, 1 deselected in 0.35s =======================
```

(The one deselected test,
`test_runtime_start_lock_blocks_another_process`, is a
pre-existing failure on my Windows box — it fails identically on a clean
checkout of `main` and is unrelated to this change.)

## Real Behavior Proof

- Environment: Windows 11, Python 3.12.11, headroom built from this
branch (`uv sync --extra dev`).
- Exact command / steps: ran the two regression tests, which drive the
real `start_detached_agent` code path — real `open()`, real
`Popen(stdout=...)`, real (or missing) `close()`. Only
`subprocess.Popen` is stubbed so the test never launches an actual
detached agent; the fd-lifecycle bug lives entirely in how the parent
handles its own handle, and that runs for real.
- Observed result: the log file handle the parent passed to `Popen` is
`.closed == False` before the fix and `.closed == True` after — for both
the normal path and the `Popen`-raises path (output above).
- Not tested: I intentionally did not spin up many real detached agents
to watch the OS fd table grow — on Windows that means flashing console
windows and isn't a clean signal anyway. The handle-state assertion on
the real file object is the deterministic equivalent. Did not run the
full `mypy headroom` pass (one-line lifecycle change, no new types).

## Review Readiness

- [x] I have performed a self-review
- [x] This PR is ready for human review

## Checklist

- [x] My code follows the project's style guidelines
- [x] I have performed a self-review of my code
- [x] I have commented my code, particularly in hard-to-understand areas
- [ ] I have made corresponding changes to the documentation
- [x] My changes generate no new warnings
- [x] I have added tests that prove my fix is effective or that my
feature works
- [x] New and existing unit tests pass locally with my changes
- [x] I have updated the CHANGELOG.md if applicable

## Additional Notes

- Single logical change, no new dependencies, default behavior otherwise
unchanged.
- Rebased/merged latest `main` to clear a `CHANGELOG.md` conflict.
- @chopratejas this is a sibling of #1555 (the `wrap.py` readiness-loop
handle leak you've got filed). I scoped this PR to #1554 only; happy to
follow up on #1555 separately if you'd like.

Co-authored-by: JerrettDavis <mxjerrett@gmail.com>
2026-07-01 23:07:01 -05:00

650 lines
22 KiB
Python

from __future__ import annotations
import os
import signal
import subprocess
import sys
import types
from pathlib import Path
import pytest
from headroom.install.models import DeploymentManifest, InstallPreset
from headroom.install.runtime import (
_clear_pid,
_deployment_env,
_mount_source,
_read_pid,
_runtime_env,
_write_pid,
acquire_runtime_start_lock,
build_runtime_command,
resolve_headroom_command,
run_foreground,
runtime_status,
start_detached_agent,
start_persistent_docker,
stop_runtime,
wait_ready,
)
def test_build_runtime_command_for_docker_includes_deployment_env(
monkeypatch, tmp_path: Path
) -> None:
monkeypatch.setattr(Path, "home", lambda: tmp_path)
manifest = DeploymentManifest(
profile="default",
preset="persistent-docker",
runtime_kind="docker",
supervisor_kind="none",
scope="user",
provider_mode="manual",
targets=["claude"],
port=8787,
host="127.0.0.1",
backend="anthropic",
image="ghcr.io/chopratejas/headroom:latest",
base_env={"HEADROOM_PORT": "8787"},
proxy_args=["--host", "127.0.0.1", "--port", "8787"],
)
command = build_runtime_command(manifest)
joined = " ".join(command)
assert command[:3] == ["docker", "run", "--rm"]
assert "HEADROOM_DEPLOYMENT_PROFILE=default" in joined
assert "HEADROOM_DEPLOYMENT_PRESET=persistent-docker" in joined
assert "127.0.0.1:8787:8787" in joined
assert "ghcr.io/chopratejas/headroom:latest" in command
# Canonical Headroom filesystem contract (issue #175) forwarded into
# the container.
assert "HEADROOM_WORKSPACE_DIR=/tmp/headroom-home/.headroom" in command
assert "HEADROOM_CONFIG_DIR=/tmp/headroom-home/.headroom/config" in command
def test_build_runtime_command_for_docker_matches_wrapper_parity(
monkeypatch, tmp_path: Path
) -> None:
monkeypatch.setattr(Path, "home", lambda: tmp_path)
monkeypatch.setenv("ANTHROPIC_API_KEY", "test-key")
monkeypatch.setenv("OPENAI_API_KEY", "test-openai")
manifest = DeploymentManifest(
profile="default",
preset="persistent-docker",
runtime_kind="docker",
supervisor_kind="none",
scope="user",
provider_mode="manual",
targets=["claude"],
port=8787,
host="127.0.0.1",
backend="anthropic",
image="ghcr.io/chopratejas/headroom:latest",
base_env={"HEADROOM_PORT": "8787"},
proxy_args=["--host", "127.0.0.1", "--port", "8787"],
)
command = build_runtime_command(manifest)
assert (tmp_path / ".headroom").is_dir()
assert (tmp_path / ".claude").is_dir()
assert (tmp_path / ".codex").is_dir()
assert (tmp_path / ".gemini").is_dir()
assert "--env" in command
joined = " ".join(command)
assert "ANTHROPIC_API_KEY" in joined
assert "OPENAI_API_KEY" in joined
def test_build_runtime_command_for_docker_does_not_duplicate_entrypoint(
monkeypatch, tmp_path: Path
) -> None:
"""The image ENTRYPOINT is already ``["headroom", "proxy"]`` (Dockerfile),
so the args appended after the image name must NOT re-add ``headroom proxy``
or Docker runs ``headroom proxy headroom proxy ...`` and Click aborts with
"Got unexpected extra arguments (headroom proxy)" (issue #833)."""
monkeypatch.setattr(Path, "home", lambda: tmp_path)
manifest = DeploymentManifest(
profile="default",
preset="persistent-docker",
runtime_kind="docker",
supervisor_kind="none",
scope="user",
provider_mode="manual",
targets=["claude"],
port=8787,
host="127.0.0.1",
backend="anthropic",
image="ghcr.io/chopratejas/headroom:latest",
base_env={"HEADROOM_PORT": "8787"},
proxy_args=["--host", "127.0.0.1", "--port", "8787", "--backend", "anthropic"],
)
command = build_runtime_command(manifest)
# Everything after the image name is what Docker appends to the ENTRYPOINT.
image_idx = command.index(manifest.image)
container_args = command[image_idx + 1 :]
assert "headroom" not in container_args, (
f"container args re-add the ENTRYPOINT — got {container_args}"
)
assert "proxy" not in container_args, (
f"container args re-add the ENTRYPOINT — got {container_args}"
)
# The container must still bind on all interfaces and keep the real flags.
assert container_args[:2] == ["--host", "0.0.0.0"]
assert container_args[2:] == ["--port", "8787", "--backend", "anthropic"]
def test_resolve_headroom_command_prefers_headroom_binary(monkeypatch) -> None:
monkeypatch.setattr(
"shutil.which", lambda name: "/usr/bin/headroom" if name == "headroom" else None
)
assert resolve_headroom_command() == ["/usr/bin/headroom"]
def test_resolve_headroom_command_falls_back_to_python_module(monkeypatch) -> None:
monkeypatch.setattr("shutil.which", lambda name: None)
monkeypatch.setattr("headroom.install.runtime.sys.executable", "/usr/bin/python")
assert resolve_headroom_command() == ["/usr/bin/python", "-m", "headroom.cli"]
def test_runtime_env_and_mount_source(monkeypatch) -> None:
manifest = DeploymentManifest(
profile="default",
preset="persistent-service",
runtime_kind="python",
supervisor_kind="service",
scope="user",
provider_mode="manual",
targets=[],
port=8787,
host="127.0.0.1",
backend="anthropic",
base_env={"EXTRA": "1"},
)
monkeypatch.setattr("headroom.install.runtime.os.environ", {"BASE": "x"})
assert _deployment_env(manifest) == {
"HEADROOM_DEPLOYMENT_PROFILE": "default",
"HEADROOM_DEPLOYMENT_PRESET": "persistent-service",
"HEADROOM_DEPLOYMENT_RUNTIME": "python",
"HEADROOM_DEPLOYMENT_SUPERVISOR": "service",
"HEADROOM_DEPLOYMENT_SCOPE": "user",
}
assert _runtime_env(manifest)["BASE"] == "x"
assert _runtime_env(manifest)["EXTRA"] == "1"
assert _runtime_env(manifest)["HEADROOM_DEPLOYMENT_PROFILE"] == "default"
monkeypatch.setattr("headroom.install.runtime.sys.platform", "win32")
assert _mount_source("C:\\Users\\me", ".headroom") == "C:\\Users\\me\\.headroom"
monkeypatch.setattr("headroom.install.runtime.sys.platform", "linux")
assert _mount_source("/home/me", ".headroom") == "/home/me/.headroom"
def test_build_runtime_command_python_and_docker_user(monkeypatch, tmp_path: Path) -> None:
monkeypatch.setattr("headroom.install.runtime.sys.executable", "/usr/bin/python")
manifest = DeploymentManifest(
profile="default",
preset="persistent-service",
runtime_kind="python",
supervisor_kind="service",
scope="user",
provider_mode="manual",
targets=[],
port=8787,
host="127.0.0.1",
backend="anthropic",
proxy_args=["--host", "127.0.0.1", "--port", "8787"],
)
assert build_runtime_command(manifest) == [
"/usr/bin/python",
"-m",
"headroom.cli",
"proxy",
"--host",
"127.0.0.1",
"--port",
"8787",
]
monkeypatch.setattr(Path, "home", lambda: tmp_path)
monkeypatch.setattr("headroom.install.runtime.sys.platform", "linux")
monkeypatch.setattr("headroom.install.runtime.os.getuid", lambda: 1000, raising=False)
monkeypatch.setattr("headroom.install.runtime.os.getgid", lambda: 1001, raising=False)
docker_manifest = DeploymentManifest(
profile="default",
preset="persistent-docker",
runtime_kind="docker",
supervisor_kind="none",
scope="user",
provider_mode="manual",
targets=[],
port=8787,
host="127.0.0.1",
backend="anthropic",
image="ghcr.io/chopratejas/headroom:latest",
base_env={"HEADROOM_PORT": "8787"},
proxy_args=["--host", "127.0.0.1", "--port", "8787"],
)
command = build_runtime_command(docker_manifest)
assert "--user" in command
assert "1000:1001" in command
def test_read_pid_handles_invalid_content(monkeypatch, tmp_path: Path) -> None:
monkeypatch.setattr(Path, "home", lambda: tmp_path)
pid_file = tmp_path / ".headroom" / "deploy" / "default" / "runner.pid"
pid_file.parent.mkdir(parents=True)
pid_file.write_text("not-a-pid", encoding="utf-8")
assert _read_pid("default") is None
_clear_pid("default")
assert not pid_file.exists()
def test_write_read_and_clear_pid(monkeypatch, tmp_path: Path) -> None:
monkeypatch.setattr(Path, "home", lambda: tmp_path)
_write_pid("default", 456)
assert _read_pid("default") == 456
_clear_pid("default")
assert _read_pid("default") is None
def test_runtime_start_lock_is_nonblocking(monkeypatch, tmp_path: Path) -> None:
monkeypatch.setattr(Path, "home", lambda: tmp_path)
with acquire_runtime_start_lock("default") as first_acquired:
assert first_acquired is True
with acquire_runtime_start_lock("default") as second_acquired:
assert second_acquired is False
with acquire_runtime_start_lock("default") as acquired_after_release:
assert acquired_after_release is True
def test_runtime_start_lock_blocks_another_process(monkeypatch, tmp_path: Path) -> None:
monkeypatch.setattr(Path, "home", lambda: tmp_path)
script = (
"from headroom.install.runtime import acquire_runtime_start_lock\n"
"with acquire_runtime_start_lock('default') as acquired:\n"
" print(acquired)\n"
)
env = {**os.environ, "HOME": str(tmp_path), "PYTHONPATH": str(Path.cwd())}
with acquire_runtime_start_lock("default") as acquired:
assert acquired is True
result = subprocess.run(
[sys.executable, "-c", script],
capture_output=True,
check=True,
env=env,
text=True,
)
assert result.stdout.strip() == "False"
def test_run_foreground_and_detached_helpers(monkeypatch, tmp_path: Path) -> None:
monkeypatch.setattr(Path, "home", lambda: tmp_path)
monkeypatch.setattr(
"headroom.install.runtime.build_runtime_command", lambda manifest: ["headroom", "proxy"]
)
monkeypatch.setattr("headroom.install.runtime._runtime_env", lambda manifest: {"ENV": "1"})
signal_calls: list[int] = []
monkeypatch.setattr(
"headroom.install.runtime.signal.signal", lambda sig, fn: signal_calls.append(sig)
)
class FakeProc:
def __init__(self, returncode: int = 0, pid: int = 321) -> None:
self.returncode = returncode
self.pid = pid
self.terminated = False
self.killed = False
def wait(self, timeout: int | None = None) -> int:
return self.returncode
def poll(self):
return None if not self.terminated else self.returncode
def terminate(self) -> None:
self.terminated = True
def kill(self) -> None:
self.killed = True
fake_proc = FakeProc(returncode=7)
popen_calls: list[tuple[list[str], dict]] = []
def fake_popen(command: list[str], **kwargs):
popen_calls.append((command, kwargs))
return fake_proc
monkeypatch.setattr("headroom.install.runtime.subprocess.Popen", fake_popen)
manifest = DeploymentManifest(
profile="default",
preset="persistent-service",
runtime_kind="python",
supervisor_kind="service",
scope="user",
provider_mode="manual",
targets=[],
port=8787,
host="127.0.0.1",
backend="anthropic",
)
assert run_foreground(manifest) == 7
assert popen_calls[0][0] == ["headroom", "proxy"]
assert signal.SIGINT in signal_calls
assert signal.SIGTERM in signal_calls
assert _read_pid("default") is None
monkeypatch.setattr("headroom.install.runtime.resolve_headroom_command", lambda: ["headroom"])
monkeypatch.setattr("headroom.install.runtime.sys.platform", "win32")
monkeypatch.setattr("headroom.install.runtime.subprocess.DETACHED_PROCESS", 1, raising=False)
monkeypatch.setattr(
"headroom.install.runtime.subprocess.CREATE_NEW_PROCESS_GROUP", 2, raising=False
)
fake_proc_nt = FakeProc()
monkeypatch.setattr(
"headroom.install.runtime.subprocess.Popen", lambda command, **kwargs: fake_proc_nt
)
assert start_detached_agent("demo") is fake_proc_nt
monkeypatch.setattr("headroom.install.runtime.sys.platform", "linux")
fake_proc_posix = FakeProc()
monkeypatch.setattr(
"headroom.install.runtime.subprocess.Popen", lambda command, **kwargs: fake_proc_posix
)
assert start_detached_agent("demo") is fake_proc_posix
def test_start_detached_agent_closes_parent_log_fd(monkeypatch, tmp_path: Path) -> None:
"""The parent must close its copy of the log file after Popen.
The child inherits the descriptor, so leaving the parent's copy open
leaks one fd per call and pins the log file open against rotation.
"""
monkeypatch.setattr(Path, "home", lambda: tmp_path)
monkeypatch.setattr("headroom.install.runtime.resolve_headroom_command", lambda: ["headroom"])
monkeypatch.setattr("headroom.install.runtime.sys.platform", "linux")
captured: dict[str, object] = {}
class FakeProc:
pid = 999
def fake_popen(command: list[str], **kwargs):
captured["stdout"] = kwargs["stdout"]
captured["stderr"] = kwargs["stderr"]
return FakeProc()
monkeypatch.setattr("headroom.install.runtime.subprocess.Popen", fake_popen)
start_detached_agent("demo")
log_handle = captured["stdout"]
# Same handle is passed to both streams, and the parent closed it.
assert captured["stderr"] is log_handle
assert log_handle.closed is True
def test_start_detached_agent_closes_log_fd_when_popen_raises(monkeypatch, tmp_path: Path) -> None:
"""A Popen failure must not leak the just-opened log file handle."""
monkeypatch.setattr(Path, "home", lambda: tmp_path)
monkeypatch.setattr("headroom.install.runtime.resolve_headroom_command", lambda: ["headroom"])
monkeypatch.setattr("headroom.install.runtime.sys.platform", "linux")
captured: dict[str, object] = {}
def boom(command: list[str], **kwargs):
captured["stdout"] = kwargs["stdout"]
raise OSError("spawn failed")
monkeypatch.setattr("headroom.install.runtime.subprocess.Popen", boom)
with pytest.raises(OSError, match="spawn failed"):
start_detached_agent("demo")
assert captured["stdout"].closed is True
def test_start_stop_wait_and_runtime_status_branches(monkeypatch, tmp_path: Path) -> None:
calls: list[list[str]] = []
monkeypatch.setattr(
"headroom.install.runtime.subprocess.run",
lambda command, **kwargs: calls.append(command) or type("Result", (), {"stdout": ""})(),
)
monkeypatch.setattr(
"headroom.install.runtime.build_runtime_command",
lambda manifest: [
"docker",
"run",
"--rm",
"--name",
"demo",
"-p",
"127.0.0.1:8787:8787",
"image",
],
)
manifest = DeploymentManifest(
profile="default",
preset=InstallPreset.PERSISTENT_DOCKER.value,
runtime_kind="docker",
supervisor_kind="none",
scope="user",
provider_mode="manual",
targets=[],
port=8787,
host="127.0.0.1",
backend="anthropic",
container_name="headroom-default",
)
start_persistent_docker(manifest)
assert calls == [
["docker", "rm", "-f", "headroom-default"],
[
"docker",
"run",
"-d",
"--restart",
"unless-stopped",
"--name",
"headroom-default",
"-p",
"127.0.0.1:8787:8787",
"image",
],
]
monkeypatch.setattr(Path, "home", lambda: tmp_path)
python_manifest = DeploymentManifest(
profile="default",
preset="persistent-service",
runtime_kind="python",
supervisor_kind="service",
scope="user",
provider_mode="manual",
targets=[],
port=8787,
host="127.0.0.1",
backend="anthropic",
health_url="http://127.0.0.1:8787/health",
)
_write_pid("default", 123)
killed: list[tuple[int, int]] = []
monkeypatch.setattr(
"headroom.install.runtime.os.kill", lambda pid, sig: killed.append((pid, sig))
)
stop_runtime(python_manifest)
assert killed == [(123, signal.SIGTERM)]
assert _read_pid("default") is None
_write_pid("default", 124)
monkeypatch.setattr(
"headroom.install.runtime.os.kill",
lambda pid, sig: (_ for _ in ()).throw(OSError("gone")),
)
stop_runtime(python_manifest)
assert _read_pid("default") is None
probe_results = iter([False, False, True])
sleeps: list[int] = []
monkeypatch.setattr("headroom.install.runtime.probe_ready", lambda url: next(probe_results))
monkeypatch.setattr(
"headroom.install.runtime.time.sleep", lambda seconds: sleeps.append(seconds)
)
assert wait_ready(python_manifest, timeout_seconds=3) is True
assert sleeps == [1, 1]
monkeypatch.setattr("headroom.install.runtime.probe_ready", lambda url: False)
sleeps.clear()
assert wait_ready(python_manifest, timeout_seconds=2) is False
assert sleeps == [1, 1]
class Result:
def __init__(self, stdout: str = "") -> None:
self.stdout = stdout
monkeypatch.setattr(
"headroom.install.runtime.subprocess.run",
lambda command, **kwargs: Result(stdout=""),
)
assert runtime_status(manifest) == "stopped"
assert runtime_status(python_manifest) == "stopped"
_write_pid("default", 125)
monkeypatch.setattr("headroom.install.runtime.pid_alive", lambda pid: False)
assert runtime_status(python_manifest) == "stopped"
def test_stop_runtime_for_docker_stops_and_removes_container(monkeypatch) -> None:
calls: list[list[str]] = []
manifest = DeploymentManifest(
profile="default",
preset="persistent-docker",
runtime_kind="docker",
supervisor_kind="none",
scope="user",
provider_mode="manual",
targets=[],
port=8787,
host="127.0.0.1",
backend="anthropic",
container_name="headroom-default",
)
monkeypatch.setattr(
"headroom.install.runtime.subprocess.run",
lambda command, **kwargs: calls.append(command),
)
stop_runtime(manifest)
assert calls == [
["docker", "stop", "headroom-default"],
["docker", "rm", "-f", "headroom-default"],
]
def test_runtime_status_reads_container_and_pid_state(monkeypatch, tmp_path: Path) -> None:
docker_manifest = DeploymentManifest(
profile="default",
preset="persistent-docker",
runtime_kind="docker",
supervisor_kind="none",
scope="user",
provider_mode="manual",
targets=[],
port=8787,
host="127.0.0.1",
backend="anthropic",
container_name="headroom-default",
)
class Result:
def __init__(self, stdout: str = "") -> None:
self.stdout = stdout
monkeypatch.setattr(
"headroom.install.runtime.subprocess.run",
lambda command, **kwargs: Result(stdout="headroom-default\n"),
)
assert runtime_status(docker_manifest) == "running"
monkeypatch.setattr(Path, "home", lambda: tmp_path)
pid_file = tmp_path / ".headroom" / "deploy" / "default" / "runner.pid"
pid_file.parent.mkdir(parents=True)
pid_file.write_text("123", encoding="utf-8")
monkeypatch.setattr("headroom.install.runtime.pid_alive", lambda pid: True)
python_manifest = DeploymentManifest(
profile="default",
preset="persistent-service",
runtime_kind="python",
supervisor_kind="service",
scope="user",
provider_mode="manual",
targets=[],
port=8787,
host="127.0.0.1",
backend="anthropic",
)
assert runtime_status(python_manifest) == "running"
def _python_service_manifest() -> DeploymentManifest:
return DeploymentManifest(
profile="default",
preset="persistent-service",
runtime_kind="python",
supervisor_kind="service",
scope="user",
provider_mode="manual",
targets=[],
port=8787,
host="127.0.0.1",
backend="anthropic",
)
def test_runtime_status_reports_live_pid_without_terminating(monkeypatch, tmp_path: Path) -> None:
"""#1544: status on a live detached PID stays 'running' and never signals it."""
monkeypatch.setattr(Path, "home", lambda: tmp_path)
pid_file = tmp_path / ".headroom" / "deploy" / "default" / "runner.pid"
pid_file.parent.mkdir(parents=True)
pid_file.write_text("25212", encoding="utf-8")
def fail_kill(pid: int, sig: int) -> None:
raise AssertionError(f"status must not signal the live proxy (pid={pid}, sig={sig})")
monkeypatch.setattr("headroom.install.runtime.os.kill", fail_kill)
monkeypatch.setattr("headroom.install.runtime.pid_alive", lambda pid: True)
assert runtime_status(_python_service_manifest()) == "running"
assert pid_file.exists() # status left the deployment untouched
def test_runtime_status_survives_winerror87_systemerror(monkeypatch, tmp_path: Path) -> None:
"""#1544: a WinError 87 SystemError from the liveness probe yields 'stopped', not a crash."""
monkeypatch.setattr(Path, "home", lambda: tmp_path)
pid_file = tmp_path / ".headroom" / "deploy" / "default" / "runner.pid"
pid_file.parent.mkdir(parents=True)
pid_file.write_text("25212", encoding="utf-8")
# Force the psutil fast-path to bail so the os.kill fallback runs...
fake_psutil = types.SimpleNamespace(
pid_exists=lambda pid: (_ for _ in ()).throw(RuntimeError("no psutil"))
)
monkeypatch.setitem(sys.modules, "psutil", fake_psutil)
# ...where Windows surfaces WinError 87 as a SystemError, not an OSError.
monkeypatch.setattr(
"headroom._subprocess.os.kill",
lambda pid, sig: (_ for _ in ()).throw(SystemError("WinError 87")),
)
assert runtime_status(_python_service_manifest()) == "stopped"