test(e2e): full virtualized build+boot+unlock QEMU harness
Opt-in via LIM_E2E_QEMU=1. Models the whole process on a virtio VM (the Pi's USB-gadget net can't be emulated, so it models the software stack, not the board): builds a LUKS image carrying the real lim initcpio Tor artifacts, boots it in QEMU rootless, lets the real netconf/tor/dropbear/ encryptssh chain publish the onion, delivers the passphrase over Tor, and asserts the boot-ok marker on the serial console. Supports a private offline Tor network via chutney. The pure command builders (config.qemu_argv/kernel_cmdline/ssh_argv, qemu_binary), the env parser, and drift guards that keep build_image.sh aligned with the harness run in the normal suite — no QEMU/root/network. The build stage needs root; harness.py primes sudo up front, keeps the credential warm, and reclaims work-dir ownership on every exit path so the pytest tmp cleanup never trips on root-owned files. QEMU stderr is captured so an early exit is debuggable, and each teardown step is fault-isolated so none masks the real error. Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
This commit is contained in:
85
tests/e2e/qemu/README.md
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85
tests/e2e/qemu/README.md
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# Virtualized end-to-end Tor unlock harness
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This harness models the **entire** encrypted-image process in a virtual
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machine: it builds a LUKS image carrying the real `lim` Tor-in-initramfs
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artifacts, boots it in QEMU, lets the real `netconf → tor → dropbear →
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encryptssh` chain run in early userspace, then unlocks the root over Tor and
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proves the real system booted.
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It complements the lightweight, always-rootless
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[`test_tor_unlock_e2e.py`](../test_tor_unlock_e2e.py): that one round-trips a
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passphrase through Tor against a dropbear *stand-in*; this one runs the real
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dropbear, real cryptsetup, real mkinitcpio initramfs, and a real tor daemon in
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a booted machine.
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## Why a virtio machine and not an emulated Raspberry Pi
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QEMU's `raspi3b`/`raspi4b` machines do not emulate the Pi's USB-gadget
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Ethernet — exactly the network path the Pi images use in the initramfs
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(`g_ether`/`smsc95xx`/`lan78xx`). Without early networking there is no Tor and
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no unlock, so emulating the literal board is pointless here. Instead we
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reproduce the same *software stack* (same HOOKS chain, same tor hook, same
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torrc and onion keys) on a QEMU-friendly `virt`/`q35` machine with
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`virtio-net`. The only deltas from a real Pi image are the NIC driver and the
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CPU architecture.
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## Stages
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| Stage | File | Privilege |
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|---|---|---|
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| Build encrypted image | `build_image.sh` | **root** (loop, cryptsetup, chroot) |
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| Tor network | `tor_net.py` | rootless |
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| Boot + unlock | `boot_unlock.py` | rootless (QEMU user-mode net) |
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| Orchestration | `harness.py` | mixed (uses `sudo` for the build only) |
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| Pure command builders | `config.py` | none — unit-tested offline |
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## Keeping the host rootless
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Only `build_image.sh` needs root (there is no rootless dm-crypt). To keep your
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host unprivileged, run the whole harness **inside a throwaway VM** that has
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`/dev/kvm`, and drive it from there. QEMU itself, the tor client and the unlock
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are rootless: user-mode networking (`-netdev user`) needs no tap device, and a
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Tor onion service needs no inbound port forward (its rendezvous is outbound
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from both ends).
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When run directly on the host, `harness.py` invokes the build via `sudo -E`
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and then `chown`s the artifacts back so rootless QEMU can read them.
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## Requirements
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- `qemu-system-x86_64` (or `-aarch64` for `LIM_E2E_ARCH=aarch64`)
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- `arch-install-scripts` (`pacstrap`, `arch-chroot`)
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- `cryptsetup`, `mkinitcpio`, `tor`, `openssh`, `ncat` (SOCKS5 ProxyCommand)
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- Network access to the public Tor network, **or** `chutney` for a private one
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- `/dev/kvm` recommended (TCG works but is slow; aarch64-on-x86 is always TCG)
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## Running
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```bash
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# Public Tor network (simplest; non-deterministic, needs internet):
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LIM_E2E_QEMU=1 pytest tests/e2e/test_qemu_unlock_e2e.py -v -s
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# Private, offline, deterministic Tor network via chutney:
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git clone https://gitlab.torproject.org/tpo/core/chutney
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CHUTNEY_PATH=$PWD/chutney LIM_E2E_QEMU=1 \
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pytest tests/e2e/test_qemu_unlock_e2e.py -v -s
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```
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Environment knobs: `LIM_E2E_ARCH` (`x86_64` default, or `aarch64`),
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`CHUTNEY_PATH` (enables the private network), `CHUTNEY_PATH` unset → public.
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## Determinism note (chutney)
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For a fully private loop the **guest image** must trust the same authorities as
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the host client. `ChutneyNetwork.test_network_conf()` distils the
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`TestingTorNetwork`/`DirAuthority` lines (rewriting `127.0.0.1` to the QEMU
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user-net host alias `10.0.2.2`) into a file, which `build_image.sh` appends to
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the baked-in torrc via `TOR_TEST_NETWORK_CONF`. The offline onion key
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generation is unaffected — it never touches the network either way.
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## What runs in CI without any of this
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The pure logic (`config.py`, the env parser, the chutney torrc parsing) and the
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drift guards that keep `build_image.sh` aligned with what the harness expects
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are covered by [`test_qemu_harness_unit.py`](../test_qemu_harness_unit.py),
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which runs in the normal `pytest` suite — no QEMU, root, or network.
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0
tests/e2e/qemu/__init__.py
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0
tests/e2e/qemu/__init__.py
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164
tests/e2e/qemu/boot_unlock.py
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tests/e2e/qemu/boot_unlock.py
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"""Boot a built image in QEMU and unlock its LUKS root over Tor.
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This is the live half of the harness. QEMU runs rootless (user-mode net);
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the passphrase is delivered exactly as an operator would: SSH through Tor to
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the initramfs dropbear, piping the passphrase into the encryptssh prompt.
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Success is observed on the serial console, not inferred.
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"""
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import contextlib
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import subprocess
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import threading
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import time
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from pathlib import Path
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from tests.e2e.qemu import config
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from tests.e2e.qemu.config import QemuSpec
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# One generous budget covers guest boot + tor bootstrap + onion publish +
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# unlock. TCG (no KVM) is slow, so keep it roomy.
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UNLOCK_TIMEOUT = 420
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DELIVERY_INTERVAL = 8
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_SSH_ATTEMPT_TIMEOUT = 45
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_POLL_INTERVAL = 2
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_PROMPT_WAIT = 4 # let the encryptssh prompt appear before sending
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def _serial_contains(spec: QemuSpec, needle: str) -> bool:
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log = spec.serial_log
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return log.is_file() and needle in log.read_text(errors="replace")
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def _stream_new_serial(spec: QemuSpec, offset: int) -> int:
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"""Print serial output written since ``offset``; return the new offset.
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Streams the guest's boot messages (netconf, the tor hook, dropbear,
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encryptssh) live so the operator sees the VM working, not a black box.
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"""
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log = spec.serial_log
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if not log.is_file():
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return offset
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data = log.read_bytes()
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if len(data) > offset:
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print(data[offset:].decode(errors="replace"), end="", flush=True)
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return len(data)
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def _serial_tail(spec: QemuSpec, lines: int = 15) -> str:
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if not spec.serial_log.is_file():
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return "(no serial output captured)"
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tail = spec.serial_log.read_text(errors="replace").splitlines()[-lines:]
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return "serial tail:\n " + "\n ".join(tail)
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def _qemu_stderr_path(spec: QemuSpec) -> Path:
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return spec.work_dir / "qemu.stderr.log"
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def _qemu_stderr_tail(spec: QemuSpec, lines: int = 10) -> str:
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path = _qemu_stderr_path(spec)
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if not path.is_file() or not path.read_text(errors="replace").strip():
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return ""
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tail = path.read_text(errors="replace").splitlines()[-lines:]
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return "\nqemu stderr:\n " + "\n ".join(tail)
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def _deliver_worker(spec: QemuSpec) -> None:
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"""Feed the passphrase over an SSH-through-Tor session, held open.
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Runs in a background thread so the main loop keeps streaming serial. The
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channel is deliberately kept OPEN after sending: closing stdin immediately
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(as a plain pipe does) tears the session down before cryptsetup finishes
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its argon2 KDF, killing the unlock mid-flight. We wait for the remote to
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close it once the boot proceeds and dropbear is torn down.
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"""
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proc = subprocess.Popen(
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config.ssh_argv(spec),
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stdin=subprocess.PIPE, stdout=subprocess.DEVNULL, stderr=subprocess.DEVNULL,
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text=True,
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)
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try:
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time.sleep(_PROMPT_WAIT)
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if proc.poll() is None and proc.stdin is not None:
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try:
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proc.stdin.write(spec.passphrase + "\n")
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proc.stdin.flush()
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except OSError:
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pass
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proc.wait(timeout=_SSH_ATTEMPT_TIMEOUT)
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except subprocess.TimeoutExpired:
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proc.kill()
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finally:
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if proc.stdin is not None:
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with contextlib.suppress(OSError):
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proc.stdin.close()
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def boot_and_unlock(spec: QemuSpec) -> None:
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"""Boot the image, unlock it over Tor, and confirm the real system booted.
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Returns normally only when the boot-ok marker appears on the serial
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console; the passphrase is (re)delivered on each poll until then. Raises
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with the serial tail on QEMU death or timeout.
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"""
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if spec.serial_log.exists():
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spec.serial_log.unlink()
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print(f"\n========== booting in QEMU ({spec.arch}, accel={spec.accel}) ==========")
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print(f"Target onion: {spec.onion_address}:22 (unlock budget {UNLOCK_TIMEOUT}s)")
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print("---- guest serial console ----", flush=True)
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# QEMU's own diagnostics (bad -machine/-cpu, /dev/kvm denied, image busy)
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# go to stderr; capture them so an early exit is debuggable, not opaque.
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qemu_stderr = _qemu_stderr_path(spec).open("wb")
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qemu = subprocess.Popen(
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config.qemu_argv(spec),
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stdout=subprocess.DEVNULL, stderr=qemu_stderr,
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)
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try:
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deadline = time.monotonic() + UNLOCK_TIMEOUT
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offset = 0
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next_delivery = 0.0
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delivery: threading.Thread | None = None
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while time.monotonic() < deadline:
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offset = _stream_new_serial(spec, offset)
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if _serial_contains(spec, config.BOOT_OK_MARKER):
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print("\n[harness] boot-ok marker seen — LUKS root unlocked and booted.")
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return
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if qemu.poll() is not None:
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raise RuntimeError(
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f"QEMU exited early (code {qemu.returncode}).\n"
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f"{_serial_tail(spec)}{_qemu_stderr_tail(spec)}"
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)
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# One delivery at a time; each holds its SSH session open in the
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# background while we keep streaming serial and watching the marker.
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idle = delivery is None or not delivery.is_alive()
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if idle and time.monotonic() >= next_delivery:
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print(f"\n[harness] delivering passphrase over Tor to "
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f"{spec.onion_address}:22 (holding session open) ...", flush=True)
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delivery = threading.Thread(
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target=_deliver_worker, args=(spec,), daemon=True
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)
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delivery.start()
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next_delivery = time.monotonic() + DELIVERY_INTERVAL
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time.sleep(_POLL_INTERVAL)
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raise RuntimeError(
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f"Boot-ok marker never appeared within {UNLOCK_TIMEOUT}s.\n"
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f"{_serial_tail(spec)}{_qemu_stderr_tail(spec)}"
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)
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finally:
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qemu.terminate()
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try:
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qemu.wait(timeout=15)
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except subprocess.TimeoutExpired:
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qemu.kill()
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qemu.wait(timeout=10)
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qemu_stderr.close()
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def parse_env_file(path: Path) -> dict[str, str]:
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"""Read the KEY=VALUE image.env written by build_image.sh into a dict."""
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result: dict[str, str] = {}
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for line in path.read_text().splitlines():
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if "=" in line and not line.startswith("#"):
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key, value = line.split("=", 1)
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result[key.strip()] = value.strip()
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return result
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182
tests/e2e/qemu/build_image.sh
Executable file
182
tests/e2e/qemu/build_image.sh
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#!/bin/bash
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# Build a QEMU-bootable, LUKS-encrypted image that reproduces lim's Tor
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# unlock stack: the REAL initcpio files from lim/configuration/initcpio/,
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# the tor hook wired between netconf and dropbear, offline onion keys, and
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# a boot-ok marker service. Boots on a virtio machine (we model the stack,
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# not the Raspberry Pi board, whose USB-gadget net QEMU cannot emulate).
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#
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# Needs root (loop device, cryptsetup, chroot). To keep a host rootless,
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# run this inside a throwaway VM — see tests/e2e/qemu/README.md.
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#
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# Required environment:
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# WORK_DIR writable scratch directory (outputs land here)
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# REPO_ROOT linux-image-manager checkout (for the real initcpio files)
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# ARCH x86_64 (default) or aarch64
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# PASSPHRASE LUKS passphrase the harness will send over Tor
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# SSH_PUBKEY path to the public key authorized for dropbear
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#
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# Writes $WORK_DIR/image.env with LUKS_UUID / MAPPER_NAME / KERNEL / INITRAMFS
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# / IMAGE for the Python harness to consume.
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set -euo pipefail
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: "${WORK_DIR:?set WORK_DIR}"
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: "${REPO_ROOT:?set REPO_ROOT}"
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: "${PASSPHRASE:?set PASSPHRASE}"
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: "${SSH_PUBKEY:?set SSH_PUBKEY}"
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ARCH="${ARCH:-x86_64}"
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MAPPER_NAME="cryptroot"
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ROOTFS="$WORK_DIR/rootfs"
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IMAGE="$WORK_DIR/image.raw"
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INITCPIO_SRC="$REPO_ROOT/lim/configuration/initcpio"
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case "$ARCH" in
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x86_64) KERNEL_PKG=linux; CONSOLE=ttyS0 ;;
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aarch64) KERNEL_PKG=linux; CONSOLE=ttyAMA0 ;;
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*) echo "Unsupported ARCH: $ARCH" >&2; exit 2 ;;
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esac
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banner() { printf "\n========== %s ==========\n" "$1"; }
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cleanup() {
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set +e
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mountpoint -q "$WORK_DIR/mnt" && umount -R "$WORK_DIR/mnt"
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[ -e "/dev/mapper/$MAPPER_NAME" ] && cryptsetup close "$MAPPER_NAME"
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[ -n "${LOOP:-}" ] && losetup -d "$LOOP"
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}
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trap cleanup EXIT
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banner "bootstrapping rootfs with pacstrap"
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mkdir -p "$ROOTFS"
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# -c reuses the host package cache (fast). If a cached package is corrupt,
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# clear it first: sudo rm -f /var/cache/pacman/pkg/<pkg>-*.pkg.tar.zst*
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# A file of blank lines on stdin takes the default answer for every provider
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# and confirmation prompt (e.g. the `linux` virtual package), keeping the
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# bootstrap non-interactive without the SIGPIPE/pipefail pitfalls of `yes`.
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printf '\n%.0s' $(seq 100) > "$WORK_DIR/pacman-answers"
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pacstrap -c "$ROOTFS" \
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base "$KERNEL_PKG" mkinitcpio cryptsetup \
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busybox tor openssh \
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mkinitcpio-utils mkinitcpio-netconf mkinitcpio-dropbear \
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< "$WORK_DIR/pacman-answers"
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banner "configuring mkinitcpio (virtio modules, tor between netconf/dropbear)"
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||||||
|
# No `autodetect`: it narrows the initramfs to the *build host's* modules and
|
||||||
|
# would strip the virtio drivers the guest VM needs for early networking.
|
||||||
|
cat > "$ROOTFS/etc/mkinitcpio.conf" <<EOF
|
||||||
|
MODULES=(virtio_pci virtio_blk virtio_net)
|
||||||
|
BINARIES=(/usr/lib/libgcc_s.so.1)
|
||||||
|
FILES=()
|
||||||
|
HOOKS=(base udev modconf keyboard block ptsmount netconf tor dropbear encryptssh filesystems fsck)
|
||||||
|
EOF
|
||||||
|
|
||||||
|
banner "adding a devpts-mount hook (dropbear needs a PTY for encryptssh)"
|
||||||
|
# Without a mounted devpts, dropbear cannot allocate /dev/pts/0, so the
|
||||||
|
# interactive encryptssh passphrase prompt never runs and the SSH session
|
||||||
|
# just exits ("TIOCSCTTY: Input/output error", "/dev/pts/0: No such file").
|
||||||
|
cat > "$ROOTFS/etc/initcpio/install/ptsmount" <<'EOF'
|
||||||
|
#!/bin/bash
|
||||||
|
build() { add_runscript; }
|
||||||
|
help() { echo "Mount devpts so dropbear can allocate PTYs for encryptssh."; }
|
||||||
|
EOF
|
||||||
|
cat > "$ROOTFS/etc/initcpio/hooks/ptsmount" <<'EOF'
|
||||||
|
#!/usr/bin/ash
|
||||||
|
run_hook() {
|
||||||
|
mkdir -p /dev/pts
|
||||||
|
mount -t devpts devpts /dev/pts -o mode=620,gid=5,ptmxmode=666 2>/dev/null
|
||||||
|
[ -e /dev/ptmx ] || ln -s /dev/pts/ptmx /dev/ptmx
|
||||||
|
}
|
||||||
|
EOF
|
||||||
|
|
||||||
|
banner "installing the real lim initcpio files"
|
||||||
|
install -D -m0644 "$INITCPIO_SRC/tor_install" "$ROOTFS/etc/initcpio/install/tor"
|
||||||
|
install -D -m0644 "$INITCPIO_SRC/tor_hook" "$ROOTFS/etc/initcpio/hooks/tor"
|
||||||
|
install -D -m0644 "$INITCPIO_SRC/torrc" "$ROOTFS/etc/tor/initramfs-torrc"
|
||||||
|
|
||||||
|
if [ -n "${TOR_TEST_NETWORK_CONF:-}" ]; then
|
||||||
|
banner "wiring the image to a private (chutney) Tor network"
|
||||||
|
cat "$TOR_TEST_NETWORK_CONF" >> "$ROOTFS/etc/tor/initramfs-torrc"
|
||||||
|
fi
|
||||||
|
|
||||||
|
banner "generating onion keys offline"
|
||||||
|
install -d -m0700 "$ROOTFS/etc/tor/initramfs-onion"
|
||||||
|
: > "$WORK_DIR/keygen-torrc"
|
||||||
|
tor -f "$WORK_DIR/keygen-torrc" --DisableNetwork 1 \
|
||||||
|
--DataDirectory "$WORK_DIR/keygen-data" \
|
||||||
|
--HiddenServiceDir "$ROOTFS/etc/tor/initramfs-onion" \
|
||||||
|
--HiddenServicePort "22 127.0.0.1:22" \
|
||||||
|
--SocksPort 0 --RunAsDaemon 0 --Log "notice stderr" &
|
||||||
|
keygen_pid=$!
|
||||||
|
for _ in $(seq 1 30); do
|
||||||
|
[ -s "$ROOTFS/etc/tor/initramfs-onion/hostname" ] && break
|
||||||
|
sleep 1
|
||||||
|
done
|
||||||
|
kill "$keygen_pid" 2>/dev/null || true
|
||||||
|
ONION_ADDRESS="$(cat "$ROOTFS/etc/tor/initramfs-onion/hostname")"
|
||||||
|
|
||||||
|
banner "authorizing the ssh key for dropbear"
|
||||||
|
install -D -m0600 "$SSH_PUBKEY" "$ROOTFS/etc/dropbear/root_key"
|
||||||
|
|
||||||
|
banner "baking the boot-ok marker service"
|
||||||
|
cat > "$ROOTFS/etc/systemd/system/lim-boot-ok.service" <<'EOF'
|
||||||
|
[Unit]
|
||||||
|
Description=Signal a successful LUKS-unlock boot to the serial console
|
||||||
|
After=multi-user.target
|
||||||
|
[Service]
|
||||||
|
Type=oneshot
|
||||||
|
ExecStart=/bin/sh -c 'echo LIM_UNLOCK_BOOT_OK > /dev/console'
|
||||||
|
[Install]
|
||||||
|
WantedBy=multi-user.target
|
||||||
|
EOF
|
||||||
|
ln -sf /etc/systemd/system/lim-boot-ok.service \
|
||||||
|
"$ROOTFS/etc/systemd/system/multi-user.target.wants/lim-boot-ok.service"
|
||||||
|
ln -sf "/usr/lib/systemd/system/getty@.service" \
|
||||||
|
"$ROOTFS/etc/systemd/system/getty.target.wants/getty@$CONSOLE.service"
|
||||||
|
|
||||||
|
banner "generating the initramfs"
|
||||||
|
# arch-chroot binds /proc, /sys, /dev itself; no pre-mount needed.
|
||||||
|
arch-chroot "$ROOTFS" mkinitcpio -P
|
||||||
|
|
||||||
|
banner "creating the LUKS image"
|
||||||
|
truncate -s 4G "$IMAGE"
|
||||||
|
LOOP="$(losetup -f --show "$IMAGE")"
|
||||||
|
# Cap the argon2 memory so the unlock fits in the guest's RAM (see QemuSpec).
|
||||||
|
printf '%s' "$PASSPHRASE" | cryptsetup luksFormat --type luks2 --batch-mode \
|
||||||
|
--pbkdf-memory 262144 "$LOOP" -
|
||||||
|
LUKS_UUID="$(cryptsetup luksUUID "$LOOP")"
|
||||||
|
printf '%s' "$PASSPHRASE" | cryptsetup open "$LOOP" "$MAPPER_NAME" -
|
||||||
|
mkfs.ext4 -q "/dev/mapper/$MAPPER_NAME"
|
||||||
|
|
||||||
|
banner "copying the rootfs into the encrypted volume"
|
||||||
|
mkdir -p "$WORK_DIR/mnt"
|
||||||
|
mount "/dev/mapper/$MAPPER_NAME" "$WORK_DIR/mnt"
|
||||||
|
cp -a "$ROOTFS/." "$WORK_DIR/mnt/"
|
||||||
|
echo "/dev/mapper/$MAPPER_NAME / ext4 defaults,noatime 0 1" > "$WORK_DIR/mnt/etc/fstab"
|
||||||
|
# Kernel/initramfs filenames differ per distro (Arch: vmlinuz-linux /
|
||||||
|
# initramfs-linux.img; Manjaro: vmlinuz-6.1-x86_64 / initramfs-6.1-x86_64.img).
|
||||||
|
# Discover them instead of hard-coding, and skip the larger fallback image.
|
||||||
|
KERNEL_IMG="$(find "$ROOTFS/boot" -maxdepth 1 -name 'vmlinuz-*' | sort | head -1)"
|
||||||
|
INITRAMFS_IMG="$(find "$ROOTFS/boot" -maxdepth 1 -name 'initramfs-*.img' \
|
||||||
|
! -name '*fallback*' | sort | head -1)"
|
||||||
|
[ -n "$KERNEL_IMG" ] || { echo "No kernel image in $ROOTFS/boot" >&2; exit 1; }
|
||||||
|
[ -n "$INITRAMFS_IMG" ] || { echo "No initramfs in $ROOTFS/boot" >&2; exit 1; }
|
||||||
|
echo "Using kernel $KERNEL_IMG and initramfs $INITRAMFS_IMG"
|
||||||
|
cp "$KERNEL_IMG" "$WORK_DIR/kernel"
|
||||||
|
cp "$INITRAMFS_IMG" "$WORK_DIR/initramfs"
|
||||||
|
sync
|
||||||
|
umount -R "$WORK_DIR/mnt"
|
||||||
|
cryptsetup close "$MAPPER_NAME"
|
||||||
|
losetup -d "$LOOP"
|
||||||
|
LOOP=""
|
||||||
|
|
||||||
|
banner "writing image.env"
|
||||||
|
cat > "$WORK_DIR/image.env" <<EOF
|
||||||
|
LUKS_UUID=$LUKS_UUID
|
||||||
|
MAPPER_NAME=$MAPPER_NAME
|
||||||
|
ONION_ADDRESS=$ONION_ADDRESS
|
||||||
|
IMAGE=$IMAGE
|
||||||
|
KERNEL=$WORK_DIR/kernel
|
||||||
|
INITRAMFS=$WORK_DIR/initramfs
|
||||||
|
EOF
|
||||||
|
echo "Build complete. Onion address: $ONION_ADDRESS"
|
||||||
132
tests/e2e/qemu/config.py
Normal file
132
tests/e2e/qemu/config.py
Normal file
@@ -0,0 +1,132 @@
|
|||||||
|
"""Pure, side-effect-free builders for the QEMU unlock harness.
|
||||||
|
|
||||||
|
Everything here is deterministic string/list construction so it can be
|
||||||
|
unit-tested without QEMU, root, or a network (see test_qemu_harness_unit.py).
|
||||||
|
The stages that actually touch the system live in build_image.sh,
|
||||||
|
chutney.py and boot_unlock.py.
|
||||||
|
"""
|
||||||
|
|
||||||
|
from dataclasses import dataclass
|
||||||
|
from pathlib import Path
|
||||||
|
|
||||||
|
# Printed to /dev/console by a oneshot service baked into the image; its
|
||||||
|
# appearance on the serial log is the proof that the LUKS root actually
|
||||||
|
# unlocked and the real system finished booting.
|
||||||
|
BOOT_OK_MARKER = "LIM_UNLOCK_BOOT_OK"
|
||||||
|
|
||||||
|
# The HOOKS the built image must carry — the tor hook sits between netconf
|
||||||
|
# and dropbear, exactly as lim.image.encryption wires it for real images.
|
||||||
|
EXPECTED_HOOKS_ORDER = ("netconf", "tor", "dropbear", "encryptssh")
|
||||||
|
|
||||||
|
# Serial console device per architecture (kernel console= and getty).
|
||||||
|
_SERIAL_CONSOLE = {"x86_64": "ttyS0", "aarch64": "ttyAMA0"}
|
||||||
|
_QEMU_BINARY = {"x86_64": "qemu-system-x86_64", "aarch64": "qemu-system-aarch64"}
|
||||||
|
|
||||||
|
|
||||||
|
@dataclass
|
||||||
|
class QemuSpec:
|
||||||
|
"""Everything needed to boot one built image and unlock it."""
|
||||||
|
|
||||||
|
arch: str
|
||||||
|
work_dir: Path
|
||||||
|
image_path: Path
|
||||||
|
kernel_path: Path
|
||||||
|
initramfs_path: Path
|
||||||
|
luks_uuid: str
|
||||||
|
mapper_name: str
|
||||||
|
passphrase: str
|
||||||
|
ssh_key_path: Path
|
||||||
|
onion_address: str = ""
|
||||||
|
socks_port: int = 9050
|
||||||
|
# 2 GiB so the LUKS argon2 KDF has enough memory to unlock in the guest
|
||||||
|
# (build_image.sh also caps --pbkdf-memory to keep this headroom).
|
||||||
|
memory_mb: int = 2048
|
||||||
|
accel: str = "tcg" # "kvm" when the host arch matches and /dev/kvm exists
|
||||||
|
|
||||||
|
@property
|
||||||
|
def serial_log(self) -> Path:
|
||||||
|
return self.work_dir / "serial.log"
|
||||||
|
|
||||||
|
|
||||||
|
def qemu_binary(arch: str) -> str:
|
||||||
|
"""Return the qemu-system-* binary for an arch (raises on unsupported)."""
|
||||||
|
if arch not in _QEMU_BINARY:
|
||||||
|
raise ValueError(f"Unsupported arch: {arch}")
|
||||||
|
return _QEMU_BINARY[arch]
|
||||||
|
|
||||||
|
|
||||||
|
def kernel_cmdline(spec: QemuSpec) -> str:
|
||||||
|
"""Kernel command line unlocking the LUKS root over the mkinitcpio hooks.
|
||||||
|
|
||||||
|
``ip=dhcp`` is what the netconf hook consumes to bring up virtio-net in
|
||||||
|
early userspace; the Pi images use USB-gadget networking instead, which
|
||||||
|
QEMU cannot emulate — hence virtio here (we model the stack, not the board).
|
||||||
|
"""
|
||||||
|
console = _SERIAL_CONSOLE[spec.arch]
|
||||||
|
# The netconf hook needs the explicit ip= form
|
||||||
|
# <client>:<server>:<gw>:<netmask>:<host>:<device>:<proto> — the device
|
||||||
|
# name is mandatory (as lim's own boot config uses it); a bare "ip=dhcp"
|
||||||
|
# leaves netconf looping on "SIOCGIFFLAGS: No such device". net.ifnames=0
|
||||||
|
# keeps the virtio NIC named eth0.
|
||||||
|
# The LAST console= owns /dev/console, which the boot-ok marker echoes to
|
||||||
|
# and QEMU captures via -serial file, so the serial console must come last.
|
||||||
|
return (
|
||||||
|
f"cryptdevice=UUID={spec.luks_uuid}:{spec.mapper_name} "
|
||||||
|
f"root=/dev/mapper/{spec.mapper_name} rw "
|
||||||
|
f"ip=::::lim-e2e:eth0:dhcp net.ifnames=0 console=tty0 console={console}"
|
||||||
|
)
|
||||||
|
|
||||||
|
|
||||||
|
def qemu_argv(spec: QemuSpec) -> list[str]:
|
||||||
|
"""Full QEMU command: direct kernel boot, virtio disk/net, serial to log.
|
||||||
|
|
||||||
|
User-mode networking (``-netdev user``) needs no root and no tap device;
|
||||||
|
it is enough for a Tor onion service, whose rendezvous is outbound from
|
||||||
|
both ends, so no inbound host port forward is required.
|
||||||
|
"""
|
||||||
|
argv = [qemu_binary(spec.arch)] # validates the arch
|
||||||
|
net_device = "virtio-net-pci" if spec.arch == "x86_64" else "virtio-net-device"
|
||||||
|
if spec.arch == "x86_64":
|
||||||
|
argv += ["-machine", "q35"]
|
||||||
|
else:
|
||||||
|
argv += ["-machine", "virt", "-cpu", "cortex-a72"]
|
||||||
|
if spec.accel == "kvm":
|
||||||
|
argv += ["-cpu", "host", "-accel", "kvm"]
|
||||||
|
elif spec.arch == "x86_64":
|
||||||
|
argv += ["-cpu", "max", "-accel", "tcg"]
|
||||||
|
argv += [
|
||||||
|
"-m", str(spec.memory_mb),
|
||||||
|
"-kernel", str(spec.kernel_path),
|
||||||
|
"-initrd", str(spec.initramfs_path),
|
||||||
|
"-append", kernel_cmdline(spec),
|
||||||
|
"-drive", f"file={spec.image_path},if=virtio,format=raw",
|
||||||
|
"-netdev", "user,id=net0",
|
||||||
|
"-device", f"{net_device},netdev=net0",
|
||||||
|
"-nographic",
|
||||||
|
"-serial", f"file:{spec.serial_log}",
|
||||||
|
"-no-reboot",
|
||||||
|
]
|
||||||
|
return argv
|
||||||
|
|
||||||
|
|
||||||
|
def ssh_proxy_command(socks_port: int) -> str:
|
||||||
|
"""ncat-based SOCKS5 ProxyCommand routing the SSH stream through Tor."""
|
||||||
|
return f"ncat --proxy 127.0.0.1:{socks_port} --proxy-type socks5 %h %p"
|
||||||
|
|
||||||
|
|
||||||
|
def ssh_argv(spec: QemuSpec) -> list[str]:
|
||||||
|
"""Non-interactive SSH into the initramfs dropbear via the onion address.
|
||||||
|
|
||||||
|
``-tt`` forces a pty so the cryptsetup askpass inside the encryptssh
|
||||||
|
session reads the passphrase we pipe on stdin. Host-key checking is off
|
||||||
|
because a throwaway onion has no known_hosts entry.
|
||||||
|
"""
|
||||||
|
return [
|
||||||
|
"ssh", "-tt",
|
||||||
|
"-o", "StrictHostKeyChecking=no",
|
||||||
|
"-o", "UserKnownHostsFile=/dev/null",
|
||||||
|
"-o", "BatchMode=yes",
|
||||||
|
"-o", f"ProxyCommand={ssh_proxy_command(spec.socks_port)}",
|
||||||
|
"-i", str(spec.ssh_key_path),
|
||||||
|
f"root@{spec.onion_address}",
|
||||||
|
]
|
||||||
180
tests/e2e/qemu/harness.py
Normal file
180
tests/e2e/qemu/harness.py
Normal file
@@ -0,0 +1,180 @@
|
|||||||
|
"""Orchestrate the full virtualized unlock: build -> tor net -> boot -> unlock.
|
||||||
|
|
||||||
|
Wires the stages together and owns their teardown. Kept thin so each stage
|
||||||
|
stays independently testable; the pure command construction lives in
|
||||||
|
config.py and is unit-tested without any of this running.
|
||||||
|
"""
|
||||||
|
|
||||||
|
import os
|
||||||
|
import platform
|
||||||
|
import subprocess
|
||||||
|
import threading
|
||||||
|
from dataclasses import dataclass
|
||||||
|
from pathlib import Path
|
||||||
|
|
||||||
|
from tests.e2e.qemu import boot_unlock, tor_net
|
||||||
|
from tests.e2e.qemu.config import QemuSpec
|
||||||
|
|
||||||
|
IMAGE_ENV_NAME = "image.env"
|
||||||
|
_SUDO_REFRESH_INTERVAL = 60
|
||||||
|
|
||||||
|
DEFAULT_PASSPHRASE = "lim-e2e-luks-passphrase" # noqa: S105 (throwaway test secret)
|
||||||
|
DEFAULT_ARCH = "x86_64"
|
||||||
|
DEFAULT_SOCKS_PORT = 9052
|
||||||
|
|
||||||
|
|
||||||
|
@dataclass
|
||||||
|
class HarnessConfig:
|
||||||
|
repo_root: Path
|
||||||
|
work_dir: Path
|
||||||
|
arch: str = DEFAULT_ARCH
|
||||||
|
passphrase: str = DEFAULT_PASSPHRASE
|
||||||
|
chutney_path: Path | None = None
|
||||||
|
chutney_network: str = "networks/basic"
|
||||||
|
|
||||||
|
|
||||||
|
def choose_accel(arch: str) -> str:
|
||||||
|
"""Use KVM only when the guest arch matches the host and /dev/kvm exists."""
|
||||||
|
host = "x86_64" if platform.machine() in ("x86_64", "AMD64") else platform.machine()
|
||||||
|
if arch == host and Path("/dev/kvm").exists():
|
||||||
|
return "kvm"
|
||||||
|
return "tcg"
|
||||||
|
|
||||||
|
|
||||||
|
def _generate_ssh_key(work_dir: Path) -> Path:
|
||||||
|
key_path = work_dir / "unlock_key"
|
||||||
|
subprocess.run(
|
||||||
|
["ssh-keygen", "-t", "ed25519", "-N", "", "-f", str(key_path), "-q"],
|
||||||
|
check=True,
|
||||||
|
)
|
||||||
|
return key_path
|
||||||
|
|
||||||
|
|
||||||
|
class _SudoKeepalive:
|
||||||
|
"""Refresh the cached sudo credential so the long build never re-prompts.
|
||||||
|
|
||||||
|
The password is entered once, up front (before the slow tor bootstrap),
|
||||||
|
then a background thread keeps the timestamp warm until stop().
|
||||||
|
"""
|
||||||
|
|
||||||
|
def __init__(self) -> None:
|
||||||
|
self._stop = threading.Event()
|
||||||
|
self._thread = threading.Thread(target=self._loop, daemon=True)
|
||||||
|
|
||||||
|
def _loop(self) -> None:
|
||||||
|
while not self._stop.wait(_SUDO_REFRESH_INTERVAL):
|
||||||
|
subprocess.run(["sudo", "-n", "-v"], check=False)
|
||||||
|
|
||||||
|
def start(self) -> None:
|
||||||
|
self._thread.start()
|
||||||
|
|
||||||
|
def stop(self) -> None:
|
||||||
|
self._stop.set()
|
||||||
|
self._thread.join(timeout=5)
|
||||||
|
|
||||||
|
|
||||||
|
def _acquire_sudo() -> _SudoKeepalive | None:
|
||||||
|
"""Prompt for sudo once now; return a keepalive (None when already root)."""
|
||||||
|
if os.geteuid() == 0:
|
||||||
|
return None
|
||||||
|
print("\n[harness] The build stage needs root — enter your sudo password now.")
|
||||||
|
subprocess.run(["sudo", "-v"], check=True)
|
||||||
|
keepalive = _SudoKeepalive()
|
||||||
|
keepalive.start()
|
||||||
|
return keepalive
|
||||||
|
|
||||||
|
|
||||||
|
def _build_image(cfg: HarnessConfig, ssh_key: Path, test_network_conf: Path | None) -> None:
|
||||||
|
script = cfg.repo_root / "tests/e2e/qemu/build_image.sh"
|
||||||
|
env = {
|
||||||
|
**os.environ,
|
||||||
|
"WORK_DIR": str(cfg.work_dir),
|
||||||
|
"REPO_ROOT": str(cfg.repo_root),
|
||||||
|
"ARCH": cfg.arch,
|
||||||
|
"PASSPHRASE": cfg.passphrase,
|
||||||
|
"SSH_PUBKEY": f"{ssh_key}.pub",
|
||||||
|
}
|
||||||
|
if test_network_conf is not None:
|
||||||
|
env["TOR_TEST_NETWORK_CONF"] = str(test_network_conf)
|
||||||
|
# -n: never prompt here; the credential was primed by _acquire_sudo().
|
||||||
|
prefix = [] if os.geteuid() == 0 else ["sudo", "-n", "-E"]
|
||||||
|
subprocess.run([*prefix, "bash", str(script)], env=env, check=True)
|
||||||
|
# Hand the root-built artifacts back so rootless QEMU can read them.
|
||||||
|
_reclaim_work_dir(cfg, required=True)
|
||||||
|
|
||||||
|
|
||||||
|
def _reclaim_work_dir(cfg: HarnessConfig, *, required: bool = False) -> None:
|
||||||
|
"""Reclaim the root-built work dir for the invoking user via chown.
|
||||||
|
|
||||||
|
Needed before boot so rootless QEMU can read the image, and again in the
|
||||||
|
finally so a failed build never leaves root-owned files that the pytest
|
||||||
|
tmp cleanup then cannot remove.
|
||||||
|
"""
|
||||||
|
if os.geteuid() == 0 or not cfg.work_dir.exists():
|
||||||
|
return
|
||||||
|
subprocess.run(
|
||||||
|
["sudo", "-n", "chown", "-R", str(os.getuid()), str(cfg.work_dir)],
|
||||||
|
check=required,
|
||||||
|
)
|
||||||
|
|
||||||
|
|
||||||
|
def _make_tor_net(cfg: HarnessConfig):
|
||||||
|
if cfg.chutney_path is not None:
|
||||||
|
return tor_net.ChutneyNetwork(cfg.chutney_path, cfg.work_dir, cfg.chutney_network)
|
||||||
|
return tor_net.PublicTorClient(cfg.work_dir, DEFAULT_SOCKS_PORT)
|
||||||
|
|
||||||
|
|
||||||
|
def _load_spec(cfg: HarnessConfig, ssh_key: Path, socks_port: int) -> QemuSpec:
|
||||||
|
env = boot_unlock.parse_env_file(cfg.work_dir / IMAGE_ENV_NAME)
|
||||||
|
return QemuSpec(
|
||||||
|
arch=cfg.arch,
|
||||||
|
work_dir=cfg.work_dir,
|
||||||
|
image_path=Path(env["IMAGE"]),
|
||||||
|
kernel_path=Path(env["KERNEL"]),
|
||||||
|
initramfs_path=Path(env["INITRAMFS"]),
|
||||||
|
luks_uuid=env["LUKS_UUID"],
|
||||||
|
mapper_name=env["MAPPER_NAME"],
|
||||||
|
onion_address=env["ONION_ADDRESS"],
|
||||||
|
passphrase=cfg.passphrase,
|
||||||
|
ssh_key_path=ssh_key,
|
||||||
|
socks_port=socks_port,
|
||||||
|
accel=choose_accel(cfg.arch),
|
||||||
|
)
|
||||||
|
|
||||||
|
|
||||||
|
def run(cfg: HarnessConfig) -> QemuSpec:
|
||||||
|
"""Execute every stage; return the QemuSpec on a fully verified unlock.
|
||||||
|
|
||||||
|
A chutney network must exist before the build so the image can be wired
|
||||||
|
to its authorities; a public client only needs to be up before boot.
|
||||||
|
"""
|
||||||
|
cfg.work_dir.mkdir(parents=True, exist_ok=True)
|
||||||
|
ssh_key = _generate_ssh_key(cfg.work_dir)
|
||||||
|
# Prime sudo before the slow tor bootstrap so the prompt is the first thing
|
||||||
|
# the operator sees, not a surprise five minutes in.
|
||||||
|
sudo = _acquire_sudo()
|
||||||
|
net = _make_tor_net(cfg)
|
||||||
|
try:
|
||||||
|
print("\n[harness] bootstrapping Tor client (~30-60s)...", flush=True)
|
||||||
|
net.start()
|
||||||
|
print(f"[harness] Tor client ready on socks port {net.socks_port}.", flush=True)
|
||||||
|
print("[harness] building encrypted image "
|
||||||
|
"(pacstrap + mkinitcpio, several minutes)...", flush=True)
|
||||||
|
_build_image(cfg, ssh_key, net.test_network_conf)
|
||||||
|
spec = _load_spec(cfg, ssh_key, net.socks_port)
|
||||||
|
boot_unlock.boot_and_unlock(spec)
|
||||||
|
return spec
|
||||||
|
finally:
|
||||||
|
# Reclaim ownership FIRST so a slow/failing teardown can never leave
|
||||||
|
# root-owned files behind, and isolate each step so none masks the
|
||||||
|
# real error propagating out of the try or skips the others.
|
||||||
|
_reclaim_work_dir(cfg)
|
||||||
|
try:
|
||||||
|
net.stop()
|
||||||
|
except Exception as exc: # noqa: BLE001 - teardown must not mask the real failure
|
||||||
|
print(f"[harness] tor network teardown failed: {exc}", flush=True)
|
||||||
|
if sudo is not None:
|
||||||
|
try:
|
||||||
|
sudo.stop()
|
||||||
|
except Exception as exc: # noqa: BLE001 - teardown must not mask the real failure
|
||||||
|
print(f"[harness] sudo keepalive teardown failed: {exc}", flush=True)
|
||||||
146
tests/e2e/qemu/tor_net.py
Normal file
146
tests/e2e/qemu/tor_net.py
Normal file
@@ -0,0 +1,146 @@
|
|||||||
|
"""Tor network providers for the QEMU unlock harness.
|
||||||
|
|
||||||
|
Two interchangeable ways to give the harness a working SOCKS port that can
|
||||||
|
reach the guest's onion service:
|
||||||
|
|
||||||
|
* PublicTorClient - a local tor client on the public network (default, both
|
||||||
|
the guest's baked-in torrc and this client use the real Tor authorities).
|
||||||
|
* ChutneyNetwork - a private, deterministic, offline Tor network via the
|
||||||
|
official `chutney` tool. Fully private operation also needs the image
|
||||||
|
built against the same authorities; test_network_conf() emits the file
|
||||||
|
build_image.sh consumes for that (see README.md).
|
||||||
|
|
||||||
|
Both expose ``socks_port``, ``start()`` and ``stop()``.
|
||||||
|
"""
|
||||||
|
|
||||||
|
import subprocess
|
||||||
|
import time
|
||||||
|
from pathlib import Path
|
||||||
|
|
||||||
|
BOOTSTRAP_TIMEOUT = 180
|
||||||
|
_GUEST_HOST_ALIAS = "10.0.2.2" # QEMU user-net alias for the host's 127.0.0.1
|
||||||
|
|
||||||
|
|
||||||
|
class PublicTorClient:
|
||||||
|
"""A throwaway tor client bootstrapped against the public network."""
|
||||||
|
|
||||||
|
def __init__(self, work_dir: Path, socks_port: int) -> None:
|
||||||
|
self.socks_port = socks_port
|
||||||
|
self.test_network_conf: Path | None = None
|
||||||
|
self._work_dir = work_dir
|
||||||
|
self._log = work_dir / "tor-client.log"
|
||||||
|
self._data = work_dir / "tor-client-data"
|
||||||
|
self._process: subprocess.Popen | None = None
|
||||||
|
|
||||||
|
def start(self) -> None:
|
||||||
|
self._data.mkdir(parents=True, exist_ok=True)
|
||||||
|
self._data.chmod(0o700)
|
||||||
|
# An empty -f keeps the system /etc/tor/torrc (User tor, ...) out of
|
||||||
|
# this rootless client, which would otherwise refuse to start.
|
||||||
|
empty_torrc = self._work_dir / "tor-client-torrc"
|
||||||
|
empty_torrc.write_text("")
|
||||||
|
self._process = subprocess.Popen(
|
||||||
|
[
|
||||||
|
"tor", "-f", str(empty_torrc),
|
||||||
|
"--SocksPort", str(self.socks_port),
|
||||||
|
"--DataDirectory", str(self._data),
|
||||||
|
"--Log", f"notice file {self._log}",
|
||||||
|
],
|
||||||
|
stdout=subprocess.DEVNULL, stderr=subprocess.DEVNULL,
|
||||||
|
)
|
||||||
|
_wait_for_bootstrap(self._log, self._process)
|
||||||
|
|
||||||
|
def stop(self) -> None:
|
||||||
|
if self._process is None:
|
||||||
|
return
|
||||||
|
self._process.terminate()
|
||||||
|
try:
|
||||||
|
self._process.wait(timeout=15)
|
||||||
|
except subprocess.TimeoutExpired:
|
||||||
|
# Never leak a tor holding the fixed SOCKS port into the next run.
|
||||||
|
self._process.kill()
|
||||||
|
self._process.wait(timeout=5)
|
||||||
|
|
||||||
|
|
||||||
|
class ChutneyNetwork:
|
||||||
|
"""A private Tor network managed by the chutney tool."""
|
||||||
|
|
||||||
|
def __init__(self, chutney_path: Path, work_dir: Path, network: str) -> None:
|
||||||
|
self._chutney = chutney_path
|
||||||
|
self._network = network
|
||||||
|
self._work_dir = work_dir
|
||||||
|
self.socks_port = 0
|
||||||
|
self.test_network_conf: Path | None = None
|
||||||
|
|
||||||
|
def _run(self, *args: str) -> None:
|
||||||
|
subprocess.run(
|
||||||
|
[str(self._chutney / "chutney"), *args, self._network],
|
||||||
|
cwd=self._chutney, check=True,
|
||||||
|
)
|
||||||
|
|
||||||
|
def start(self) -> None:
|
||||||
|
self._run("configure")
|
||||||
|
self._run("start")
|
||||||
|
self._run("wait_for_bootstrap")
|
||||||
|
client_torrc = _find_client_torrc(self._chutney / "net" / "nodes")
|
||||||
|
self.socks_port = _parse_socks_port(client_torrc)
|
||||||
|
self.test_network_conf = self._emit_network_conf(client_torrc)
|
||||||
|
|
||||||
|
def _emit_network_conf(self, client_torrc: Path) -> Path:
|
||||||
|
"""Distil the authority/test-network lines the guest image needs.
|
||||||
|
|
||||||
|
127.0.0.1 authority addresses are rewritten to the QEMU user-net host
|
||||||
|
alias so the guest's initramfs tor can reach them through user-mode
|
||||||
|
networking.
|
||||||
|
"""
|
||||||
|
wanted = ("TestingTorNetwork", "DirAuthority", "DirServer", "AlternateDirAuthority")
|
||||||
|
lines = [
|
||||||
|
line.replace("127.0.0.1", _GUEST_HOST_ALIAS)
|
||||||
|
for line in client_torrc.read_text().splitlines()
|
||||||
|
if line.strip().startswith(wanted)
|
||||||
|
]
|
||||||
|
conf = self._work_dir / "tor-test-network.conf"
|
||||||
|
conf.write_text("\n".join(lines) + "\n")
|
||||||
|
return conf
|
||||||
|
|
||||||
|
def stop(self) -> None:
|
||||||
|
self._run("stop")
|
||||||
|
|
||||||
|
|
||||||
|
def _wait_for_bootstrap(log_path: Path, process: subprocess.Popen) -> None:
|
||||||
|
deadline = time.monotonic() + BOOTSTRAP_TIMEOUT
|
||||||
|
while time.monotonic() < deadline:
|
||||||
|
if process.poll() is not None:
|
||||||
|
raise RuntimeError(
|
||||||
|
f"tor exited early (code {process.returncode}).\n{_log_tail(log_path)}"
|
||||||
|
)
|
||||||
|
if log_path.is_file() and "Bootstrapped 100%" in log_path.read_text():
|
||||||
|
return
|
||||||
|
time.sleep(1)
|
||||||
|
raise RuntimeError(f"tor client did not bootstrap in time.\n{_log_tail(log_path)}")
|
||||||
|
|
||||||
|
|
||||||
|
def _log_tail(log_path: Path, lines: int = 8) -> str:
|
||||||
|
if not log_path.is_file():
|
||||||
|
return "(no tor log written)"
|
||||||
|
tail = log_path.read_text().splitlines()[-lines:]
|
||||||
|
return "tor log:\n " + "\n ".join(tail)
|
||||||
|
|
||||||
|
|
||||||
|
def _find_client_torrc(nodes_dir: Path) -> Path:
|
||||||
|
for torrc in sorted(nodes_dir.glob("*/torrc")):
|
||||||
|
if _parse_socks_port(torrc):
|
||||||
|
return torrc
|
||||||
|
raise RuntimeError(f"No chutney client with a SocksPort under {nodes_dir}.")
|
||||||
|
|
||||||
|
|
||||||
|
def _parse_socks_port(torrc: Path) -> int:
|
||||||
|
if not torrc.is_file():
|
||||||
|
return 0
|
||||||
|
for line in torrc.read_text().splitlines():
|
||||||
|
parts = line.split()
|
||||||
|
if len(parts) >= 2 and parts[0] == "SocksPort" and parts[1].isdigit():
|
||||||
|
port = int(parts[1])
|
||||||
|
if port:
|
||||||
|
return port
|
||||||
|
return 0
|
||||||
181
tests/e2e/test_qemu_harness_unit.py
Normal file
181
tests/e2e/test_qemu_harness_unit.py
Normal file
@@ -0,0 +1,181 @@
|
|||||||
|
"""Always-on unit tests for the QEMU harness logic.
|
||||||
|
|
||||||
|
No QEMU, root, or network: they exercise the pure command builders and guard
|
||||||
|
the root build script against drifting away from what the harness expects.
|
||||||
|
Run as part of the normal suite.
|
||||||
|
"""
|
||||||
|
|
||||||
|
from pathlib import Path
|
||||||
|
|
||||||
|
import pytest
|
||||||
|
|
||||||
|
from lim import config as lim_config
|
||||||
|
from tests.e2e.qemu import boot_unlock, config, harness, tor_net
|
||||||
|
from tests.e2e.qemu.config import EXPECTED_HOOKS_ORDER, QemuSpec
|
||||||
|
|
||||||
|
BUILD_SCRIPT = Path(__file__).resolve().parents[2] / "tests/e2e/qemu/build_image.sh"
|
||||||
|
|
||||||
|
|
||||||
|
def _spec(**overrides) -> QemuSpec:
|
||||||
|
base = {
|
||||||
|
"arch": "x86_64",
|
||||||
|
"work_dir": Path("/work"),
|
||||||
|
"image_path": Path("/work/image.raw"),
|
||||||
|
"kernel_path": Path("/work/kernel"),
|
||||||
|
"initramfs_path": Path("/work/initramfs"),
|
||||||
|
"luks_uuid": "1111-UUID",
|
||||||
|
"mapper_name": "cryptroot",
|
||||||
|
"passphrase": "secret",
|
||||||
|
"ssh_key_path": Path("/work/unlock_key"),
|
||||||
|
"onion_address": "abcd.onion",
|
||||||
|
"socks_port": 9052,
|
||||||
|
}
|
||||||
|
base.update(overrides)
|
||||||
|
return QemuSpec(**base)
|
||||||
|
|
||||||
|
|
||||||
|
class TestKernelCmdline:
|
||||||
|
def test_unlocks_the_luks_root_over_dhcp(self):
|
||||||
|
line = config.kernel_cmdline(_spec())
|
||||||
|
assert "cryptdevice=UUID=1111-UUID:cryptroot" in line
|
||||||
|
assert "root=/dev/mapper/cryptroot" in line
|
||||||
|
# Explicit device in the ip= form, else netconf loops on "No such device".
|
||||||
|
assert ":eth0:dhcp" in line
|
||||||
|
assert "console=ttyS0" in line
|
||||||
|
|
||||||
|
def test_serial_console_is_last_so_marker_reaches_serial_log(self):
|
||||||
|
line = config.kernel_cmdline(_spec())
|
||||||
|
assert line.index("console=tty0") < line.index("console=ttyS0")
|
||||||
|
|
||||||
|
def test_aarch64_uses_amba_serial(self):
|
||||||
|
assert "console=ttyAMA0" in config.kernel_cmdline(_spec(arch="aarch64"))
|
||||||
|
|
||||||
|
|
||||||
|
class TestQemuArgv:
|
||||||
|
def test_x86_uses_virtio_net_and_direct_kernel_boot(self):
|
||||||
|
argv = config.qemu_argv(_spec())
|
||||||
|
assert argv[0] == "qemu-system-x86_64"
|
||||||
|
assert "virtio-net-pci,netdev=net0" in argv
|
||||||
|
assert "-kernel" in argv
|
||||||
|
assert "/work/kernel" in argv
|
||||||
|
assert "-initrd" in argv
|
||||||
|
assert "/work/initramfs" in argv
|
||||||
|
assert "file=/work/image.raw,if=virtio,format=raw" in argv
|
||||||
|
assert f"file:{_spec().serial_log}" in argv
|
||||||
|
assert "user,id=net0" in argv
|
||||||
|
|
||||||
|
def test_aarch64_uses_virt_machine_and_net_device(self):
|
||||||
|
argv = config.qemu_argv(_spec(arch="aarch64"))
|
||||||
|
assert argv[0] == "qemu-system-aarch64"
|
||||||
|
assert "virt" in argv
|
||||||
|
assert "virtio-net-device,netdev=net0" in argv
|
||||||
|
|
||||||
|
def test_kvm_accel_is_emitted_when_requested(self):
|
||||||
|
assert "kvm" in config.qemu_argv(_spec(accel="kvm"))
|
||||||
|
assert "kvm" not in config.qemu_argv(_spec(accel="tcg"))
|
||||||
|
|
||||||
|
def test_unknown_arch_raises(self):
|
||||||
|
with pytest.raises(ValueError, match="Unsupported arch"):
|
||||||
|
config.qemu_argv(_spec(arch="riscv64"))
|
||||||
|
|
||||||
|
|
||||||
|
class TestQemuBinary:
|
||||||
|
def test_derives_binary_per_arch(self):
|
||||||
|
assert config.qemu_binary("x86_64") == "qemu-system-x86_64"
|
||||||
|
assert config.qemu_binary("aarch64") == "qemu-system-aarch64"
|
||||||
|
|
||||||
|
def test_unknown_arch_raises(self):
|
||||||
|
with pytest.raises(ValueError, match="Unsupported arch"):
|
||||||
|
config.qemu_binary("riscv64")
|
||||||
|
|
||||||
|
|
||||||
|
class TestSshInvocation:
|
||||||
|
def test_proxy_command_routes_through_socks5(self):
|
||||||
|
proxy = config.ssh_proxy_command(9052)
|
||||||
|
assert "--proxy 127.0.0.1:9052" in proxy
|
||||||
|
assert "--proxy-type socks5" in proxy
|
||||||
|
|
||||||
|
def test_ssh_argv_targets_onion_via_key_and_proxy(self):
|
||||||
|
argv = config.ssh_argv(_spec())
|
||||||
|
assert "root@abcd.onion" in argv
|
||||||
|
assert "-i" in argv
|
||||||
|
assert "/work/unlock_key" in argv
|
||||||
|
assert any("ProxyCommand=" in part for part in argv)
|
||||||
|
assert "StrictHostKeyChecking=no" in argv
|
||||||
|
|
||||||
|
|
||||||
|
class TestBuildScriptStaysAligned:
|
||||||
|
"""Guards: the root build script must match what the harness assumes."""
|
||||||
|
|
||||||
|
def _script(self) -> str:
|
||||||
|
return BUILD_SCRIPT.read_text()
|
||||||
|
|
||||||
|
def test_hooks_place_tor_between_netconf_and_dropbear(self):
|
||||||
|
hooks_line = next(
|
||||||
|
line for line in self._script().splitlines() if line.startswith("HOOKS=")
|
||||||
|
)
|
||||||
|
positions = [hooks_line.index(hook) for hook in EXPECTED_HOOKS_ORDER]
|
||||||
|
assert positions == sorted(positions), hooks_line
|
||||||
|
|
||||||
|
def test_installs_the_real_lim_initcpio_files(self):
|
||||||
|
script = self._script()
|
||||||
|
for name in ("tor_install", "tor_hook", "torrc"):
|
||||||
|
assert f"$INITCPIO_SRC/{name}" in script
|
||||||
|
assert "etc/dropbear/root_key" in script
|
||||||
|
|
||||||
|
def test_uses_virtio_net_and_emits_boot_marker(self):
|
||||||
|
script = self._script()
|
||||||
|
assert "virtio_net" in script
|
||||||
|
assert config.BOOT_OK_MARKER in script
|
||||||
|
|
||||||
|
def test_mounts_devpts_before_dropbear_for_pty(self):
|
||||||
|
hooks_line = next(
|
||||||
|
line for line in self._script().splitlines() if line.startswith("HOOKS=")
|
||||||
|
)
|
||||||
|
assert "ptsmount" in hooks_line
|
||||||
|
assert hooks_line.index("ptsmount") < hooks_line.index("dropbear")
|
||||||
|
assert "mount -t devpts" in self._script()
|
||||||
|
|
||||||
|
def test_real_initcpio_source_directory_exists(self):
|
||||||
|
assert (lim_config.CONFIGURATION_PATH / "initcpio" / "tor_hook").is_file()
|
||||||
|
|
||||||
|
|
||||||
|
class TestOrchestratorGlue:
|
||||||
|
def test_load_spec_reads_image_env(self, tmp_path):
|
||||||
|
(tmp_path / "image.env").write_text(
|
||||||
|
"LUKS_UUID=abc-123\n"
|
||||||
|
"MAPPER_NAME=cryptroot\n"
|
||||||
|
"ONION_ADDRESS=xyz.onion\n"
|
||||||
|
"IMAGE=/w/image.raw\n"
|
||||||
|
"KERNEL=/w/kernel\n"
|
||||||
|
"INITRAMFS=/w/initramfs\n"
|
||||||
|
)
|
||||||
|
cfg = harness.HarnessConfig(repo_root=Path("/repo"), work_dir=tmp_path)
|
||||||
|
spec = harness._load_spec(cfg, ssh_key=tmp_path / "k", socks_port=9052)
|
||||||
|
assert spec.luks_uuid == "abc-123"
|
||||||
|
assert spec.onion_address == "xyz.onion"
|
||||||
|
assert spec.image_path == Path("/w/image.raw")
|
||||||
|
assert spec.socks_port == 9052
|
||||||
|
|
||||||
|
def test_env_parser_ignores_comments_and_blanks(self, tmp_path):
|
||||||
|
env = tmp_path / "image.env"
|
||||||
|
env.write_text("# a comment\n\nKEY=value\n")
|
||||||
|
assert boot_unlock.parse_env_file(env) == {"KEY": "value"}
|
||||||
|
|
||||||
|
def test_choose_accel_falls_back_to_tcg_for_foreign_arch(self):
|
||||||
|
assert harness.choose_accel("riscv64") == "tcg"
|
||||||
|
|
||||||
|
|
||||||
|
class TestChutneyParsing:
|
||||||
|
def test_parse_socks_port_picks_first_nonzero(self, tmp_path):
|
||||||
|
torrc = tmp_path / "torrc"
|
||||||
|
torrc.write_text("SocksPort 0\nSocksPort 9008\n")
|
||||||
|
assert tor_net._parse_socks_port(torrc) == 9008
|
||||||
|
|
||||||
|
def test_find_client_torrc_skips_relays(self, tmp_path):
|
||||||
|
(tmp_path / "000a").mkdir()
|
||||||
|
(tmp_path / "000a" / "torrc").write_text("SocksPort 0\n")
|
||||||
|
(tmp_path / "001c").mkdir()
|
||||||
|
(tmp_path / "001c" / "torrc").write_text("SocksPort 9010\n")
|
||||||
|
found = tor_net._find_client_torrc(tmp_path)
|
||||||
|
assert found == tmp_path / "001c" / "torrc"
|
||||||
72
tests/e2e/test_qemu_unlock_e2e.py
Normal file
72
tests/e2e/test_qemu_unlock_e2e.py
Normal file
@@ -0,0 +1,72 @@
|
|||||||
|
"""Full virtualized end-to-end test: build -> boot in QEMU -> unlock over Tor.
|
||||||
|
|
||||||
|
Models the whole process the way lim runs it, on a QEMU-bootable virtio
|
||||||
|
machine (the Raspberry Pi's USB-gadget net can't be emulated, so we model
|
||||||
|
the software stack, not the board):
|
||||||
|
|
||||||
|
1. build a LUKS image carrying the REAL lim initcpio tor artifacts,
|
||||||
|
2. boot it in QEMU (rootless, user-mode net),
|
||||||
|
3. its initramfs runs the real netconf/tor/dropbear/encryptssh chain and
|
||||||
|
publishes the onion service,
|
||||||
|
4. deliver the LUKS passphrase by SSHing to that onion through Tor,
|
||||||
|
5. assert the boot-ok marker appears on the serial console — i.e. the real
|
||||||
|
root actually unlocked and booted.
|
||||||
|
|
||||||
|
Heavy and privileged (QEMU + a tor network; the build needs root, ideally in
|
||||||
|
a throwaway VM). Opt-in and skipped unless LIM_E2E_QEMU=1:
|
||||||
|
|
||||||
|
LIM_E2E_QEMU=1 pytest tests/e2e/test_qemu_unlock_e2e.py -v -s
|
||||||
|
|
||||||
|
Environment knobs: LIM_E2E_ARCH (x86_64|aarch64), CHUTNEY_PATH (use a private
|
||||||
|
chutney network instead of the public one). See tests/e2e/qemu/README.md.
|
||||||
|
"""
|
||||||
|
|
||||||
|
import os
|
||||||
|
import shutil
|
||||||
|
from pathlib import Path
|
||||||
|
|
||||||
|
import pytest
|
||||||
|
|
||||||
|
from tests.e2e.qemu import config as qemu_config
|
||||||
|
from tests.e2e.qemu.harness import HarnessConfig, run
|
||||||
|
|
||||||
|
REPO_ROOT = Path(__file__).resolve().parents[2]
|
||||||
|
|
||||||
|
# The QEMU binary is arch-specific, so derive it from LIM_E2E_ARCH instead of
|
||||||
|
# hardcoding x86_64 — otherwise the documented aarch64 run is never reachable.
|
||||||
|
_ARCH = os.environ.get("LIM_E2E_ARCH", "x86_64")
|
||||||
|
_REQUIRED = (
|
||||||
|
qemu_config.qemu_binary(_ARCH),
|
||||||
|
"cryptsetup", "pacstrap", "tor", "ssh", "ncat",
|
||||||
|
)
|
||||||
|
|
||||||
|
|
||||||
|
def _missing_tools() -> list[str]:
|
||||||
|
return [tool for tool in _REQUIRED if shutil.which(tool) is None]
|
||||||
|
|
||||||
|
|
||||||
|
pytestmark = pytest.mark.skipif(
|
||||||
|
os.environ.get("LIM_E2E_QEMU") != "1" or bool(_missing_tools()),
|
||||||
|
reason=(
|
||||||
|
"needs LIM_E2E_QEMU=1 and "
|
||||||
|
+ ", ".join(_REQUIRED)
|
||||||
|
+ " (build stage needs root; slow)."
|
||||||
|
),
|
||||||
|
)
|
||||||
|
|
||||||
|
|
||||||
|
def test_full_build_boot_and_tor_unlock(tmp_path):
|
||||||
|
chutney_path = os.environ.get("CHUTNEY_PATH")
|
||||||
|
cfg = HarnessConfig(
|
||||||
|
repo_root=REPO_ROOT,
|
||||||
|
work_dir=tmp_path / "qemu-e2e",
|
||||||
|
arch=_ARCH,
|
||||||
|
chutney_path=Path(chutney_path) if chutney_path else None,
|
||||||
|
)
|
||||||
|
|
||||||
|
spec = run(cfg)
|
||||||
|
|
||||||
|
# run() only returns after the marker was observed; re-assert for clarity.
|
||||||
|
assert spec.onion_address.endswith(".onion")
|
||||||
|
serial = spec.serial_log.read_text(errors="replace")
|
||||||
|
assert qemu_config.BOOT_OK_MARKER in serial
|
||||||
Reference in New Issue
Block a user