archipelago 95f9a805b1 feat(fips): connect to public mesh anchor over TCP + wire daemon updates
The whole fleet was silently never reaching the FIPS mesh: the default
public anchor was configured as fips.v0l.io:8668/udp, but the anchor only
answers on TCP/8443. Fix the default to 185.18.221.160:8443/tcp (IPv4
literal — the hostname resolves IPv6-first and the daemon binds v4-only,
which fails the handshake with EAFNOSUPPORT), and auto-seed it in
anchors::load() so every node dials it without operator action (removal
still persists). Proven live on .116: cold start → anchor_connected in
~400ms, anchor became mesh parent.

Wire fips::update::apply() against upstream GitHub releases (stable
channel only): resolve /releases/latest → SHA256-verify the .deb against
checksums-linux.txt → install → restart. dpkg runs via `systemd-run` to
escape archipelago's ProtectSystem=strict sandbox (else /var/lib/dpkg is
read-only), with --force-confold (archipelago manages /etc/fips conffiles)
and --force-downgrade (dev builds sort newer than the stable tag).
Validated live: .116 upgraded 0.3.0-dev -> stable v0.3.0.

Also: standalone fips-ui dashboard app (apps/fips-ui + docker/fips-ui,
static nginx proxying /rpc/v1 same-origin, copiable own-anchor address);
reserve UI port 8336; register fips/fips-ui as platform-managed. Includes
the Lightning wallet cross-origin (CORS) + LND proxy auth + nginx
self-healer fix so the wallet screen connects instead of "failed to fetch".

Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
2026-06-15 06:41:48 -04:00

402 lines
15 KiB
Rust

//! User-triggered FIPS upgrade from upstream GitHub releases.
//!
//! Flow (no auto-update, no background polling — user clicks a button):
//! 1. Query GitHub for the latest *stable* release of `jmcorgan/fips`
//! (`/releases/latest` returns the newest non-prerelease, non-draft
//! tag, so release candidates like `v0.4.0-rc1` are skipped).
//! 2. Compare its tag (e.g. `v0.3.0`) with the installed daemon version
//! reported by `fipsctl --version`. A dev/pre-release build of the
//! same number (`0.3.0-dev`) counts as older than the released tag.
//! 3. Pick the Debian package asset matching the host architecture
//! (`fips_<ver>_amd64.deb` / `_arm64.deb`) plus `checksums-linux.txt`.
//! 4. Download both, SHA256-verify the .deb against the checksums file.
//! 5. `sudo dpkg -i` the verified .deb, then restart the active fips unit.
//!
//! Upstream began publishing tagged releases with `.deb` artefacts and
//! `checksums-linux.txt` (verified present as of v0.1.0 → v0.4.0-rc1), so
//! the apply path is fully wired against those assets.
use anyhow::{Context, Result};
use serde::{Deserialize, Serialize};
use sha2::{Digest, Sha256};
use super::{service, UPSTREAM_REPO};
const GITHUB_API: &str = "https://api.github.com";
const USER_AGENT: &str = "archipelago-fips-updater";
/// Result of `check()` — what the dashboard renders.
#[derive(Debug, Clone, Serialize, Deserialize)]
pub struct UpdateCheck {
/// Currently installed daemon version (from `fipsctl --version`).
pub current: Option<String>,
/// Tag of the latest stable upstream release, e.g. `v0.3.0`.
pub latest_version: String,
/// True when the installed version is older than `latest_version`.
pub update_available: bool,
/// Release channel this check tracked. Currently always "stable".
pub channel: String,
/// Browser download URL of the architecture-matched .deb for the
/// latest release, when one exists (informational; apply() re-resolves).
pub asset_url: Option<String>,
/// Human-readable note for the UI.
pub notes: String,
}
/// One GitHub release as we consume it.
#[derive(Debug, Clone, Deserialize)]
struct Release {
tag_name: String,
#[serde(default)]
prerelease: bool,
#[serde(default)]
draft: bool,
#[serde(default)]
assets: Vec<Asset>,
}
#[derive(Debug, Clone, Deserialize)]
struct Asset {
name: String,
browser_download_url: String,
}
fn http_client() -> Result<reqwest::Client> {
reqwest::Client::builder()
.user_agent(USER_AGENT)
.timeout(std::time::Duration::from_secs(30))
.build()
.context("Build HTTP client")
}
/// Debian architecture string for the host (`amd64` / `arm64`). Returns
/// the raw `std::env::consts::ARCH` for anything we don't map, so the
/// asset lookup simply finds nothing and surfaces a clear error.
fn deb_arch() -> &'static str {
match std::env::consts::ARCH {
"x86_64" => "amd64",
"aarch64" => "arm64",
other => other,
}
}
/// Query GitHub for the latest stable release and compare to the installed
/// version. Never errors on "no package installed" — that is itself a valid
/// state where an update is available.
pub async fn check() -> Result<UpdateCheck> {
let current = service::daemon_version().await.ok();
let client = http_client()?;
let release = fetch_latest_stable(&client).await?;
let update_available = match &current {
Some(v) => version_is_older(v, &release.tag_name),
None => true,
};
let asset_url = release
.assets
.iter()
.find(|a| is_deb_for_arch(&a.name))
.map(|a| a.browser_download_url.clone());
let notes = if update_available {
format!(
"Update available: {} (installed: {})",
release.tag_name,
current.as_deref().unwrap_or("not installed")
)
} else {
format!("Up to date ({})", release.tag_name)
};
Ok(UpdateCheck {
current,
latest_version: release.tag_name,
update_available,
channel: "stable".to_string(),
asset_url,
notes,
})
}
/// Download, verify, and install the latest stable FIPS release, then
/// restart the daemon. Steps: resolve release → match .deb for this arch
/// → download .deb + checksums → SHA256-verify → `sudo dpkg -i` → restart.
pub async fn apply() -> Result<()> {
let client = http_client()?;
let release = fetch_latest_stable(&client).await?;
let deb = release
.assets
.iter()
.find(|a| is_deb_for_arch(&a.name))
.ok_or_else(|| {
anyhow::anyhow!(
"release {} has no .deb for architecture {}",
release.tag_name,
deb_arch()
)
})?;
let checksums = release
.assets
.iter()
.find(|a| a.name == "checksums-linux.txt")
.ok_or_else(|| {
anyhow::anyhow!("release {} has no checksums-linux.txt", release.tag_name)
})?;
// Download the .deb (bytes) and the checksums (text).
let deb_bytes = client
.get(&deb.browser_download_url)
.send()
.await
.context("download .deb")?
.error_for_status()
.context(".deb download HTTP error")?
.bytes()
.await
.context("read .deb body")?;
let checksums_text = client
.get(&checksums.browser_download_url)
.send()
.await
.context("download checksums")?
.error_for_status()
.context("checksums download HTTP error")?
.text()
.await
.context("read checksums body")?;
// Verify SHA256 against the checksums manifest (sha256sum format:
// "<hex>␠␠<filename>"). The filename column may include a leading
// "*" (binary mode) or a path prefix, so match on the basename.
let expected = checksums_text
.lines()
.filter_map(|line| {
let mut parts = line.split_whitespace();
let hash = parts.next()?;
let name = parts.next()?.trim_start_matches('*');
let base = name.rsplit('/').next().unwrap_or(name);
(base == deb.name).then(|| hash.to_lowercase())
})
.next()
.ok_or_else(|| anyhow::anyhow!("checksums-linux.txt has no entry for {}", deb.name))?;
let actual = {
let mut hasher = Sha256::new();
hasher.update(&deb_bytes);
hex::encode(hasher.finalize())
};
if actual != expected {
anyhow::bail!(
"SHA256 mismatch for {}: expected {}, got {}",
deb.name,
expected,
actual
);
}
// Stage the verified .deb in /tmp (shared with the host — the
// service runs with PrivateTmp=no) and install it.
let dest = std::env::temp_dir().join(&deb.name);
tokio::fs::write(&dest, &deb_bytes)
.await
.with_context(|| format!("write {}", dest.display()))?;
// Run dpkg via `systemd-run` rather than `sudo dpkg` directly. The
// archipelago service runs under `ProtectSystem=strict`, so `/usr`
// and `/var/lib/dpkg` are read-only *inside the service's mount
// namespace* — and a `sudo` child inherits that namespace, so a
// bare `sudo dpkg -i` fails with "Read-only file system" on the
// dpkg database. `systemd-run` asks PID 1 to launch the command in
// a fresh transient scope outside our sandbox, where the real
// (writable) host filesystem is visible. `--wait` blocks until it
// finishes and propagates the exit status; `--pipe` forwards
// dpkg's output; `--collect` reaps the unit even on failure.
//
// dpkg flags, both load-bearing for this package specifically:
// --force-confold: the fips package ships conffiles under
// /etc/fips that archipelago rewrites at install time, so dpkg
// hits an interactive "keep/replace?" conffile prompt. With our
// closed stdin that aborts the configure step ("EOF on stdin at
// conffile prompt") and leaves the package half-unpacked
// (status `iU`), which `fips.status` then reports as
// `installed:false`. confold = keep our managed config, no prompt.
// --force-downgrade: ISO/dev nodes carry `0.3.0-dev-1`, which dpkg
// orders as NEWER than the stable tag `0.3.0` (a trailing
// `-dev` sorts above the bare release). Moving a dev build onto
// the stable line is therefore a dpkg "downgrade"; without this
// flag dpkg warns and exits non-zero. Our own version_is_older()
// gate already decided this is the wanted direction.
// DEBIAN_FRONTEND=noninteractive belt-and-suspenders against any
// other maintainer-script prompt.
let dpkg = tokio::process::Command::new("sudo")
.args([
"-n",
"systemd-run",
"--collect",
"--wait",
"--quiet",
"--pipe",
"--",
"env",
"DEBIAN_FRONTEND=noninteractive",
"dpkg",
"--force-confold",
"--force-downgrade",
"-i",
])
.arg(&dest)
.output()
.await
.context("sudo systemd-run dpkg -i failed to launch")?;
// Best-effort cleanup regardless of dpkg result.
let _ = tokio::fs::remove_file(&dest).await;
if !dpkg.status.success() {
anyhow::bail!(
"dpkg -i {} exited {}: {}",
deb.name,
dpkg.status,
String::from_utf8_lossy(&dpkg.stderr).trim()
);
}
// Restart whichever fips unit is supervising the daemon so the new
// binary takes over.
let unit = service::active_unit().await;
service::restart(unit)
.await
.with_context(|| format!("restart {} after install", unit))?;
Ok(())
}
/// `/releases/latest` returns the most recent non-prerelease, non-draft
/// release. We still re-check the flags defensively in case the endpoint
/// or repo settings change.
async fn fetch_latest_stable(client: &reqwest::Client) -> Result<Release> {
let url = format!("{}/repos/{}/releases/latest", GITHUB_API, UPSTREAM_REPO);
let resp = client
.get(&url)
.header("Accept", "application/vnd.github+json")
.send()
.await
.context("GitHub releases/latest API")?;
if !resp.status().is_success() {
anyhow::bail!("GitHub releases/latest API returned {}", resp.status());
}
let release: Release = resp.json().await.context("Parse release JSON")?;
if release.draft || release.prerelease {
anyhow::bail!(
"releases/latest returned a {} release ({})",
if release.draft { "draft" } else { "prerelease" },
release.tag_name
);
}
Ok(release)
}
fn is_deb_for_arch(name: &str) -> bool {
name.starts_with("fips_") && name.ends_with(&format!("_{}.deb", deb_arch()))
}
/// Parse the leading `MAJOR.MINOR.PATCH` triple from a version string,
/// plus whether a pre-release suffix (`-dev`, `-rc1`, …) follows it.
fn parse_version(s: &str) -> Option<((u64, u64, u64), bool)> {
// Take the first whitespace token, drop a leading 'v'.
let tok = s.split_whitespace().next().unwrap_or(s);
let tok = tok.strip_prefix('v').unwrap_or(tok);
// Split off any pre-release / build suffix.
let (core, rest) = match tok.find(|c: char| c == '-' || c == '+') {
Some(i) => (&tok[..i], &tok[i..]),
None => (tok, ""),
};
let mut it = core.split('.');
let major = it.next()?.parse::<u64>().ok()?;
let minor = it.next().unwrap_or("0").parse::<u64>().ok()?;
let patch = it.next().unwrap_or("0").parse::<u64>().ok()?;
let has_prerelease = rest.starts_with('-');
Some(((major, minor, patch), has_prerelease))
}
/// True when `installed` is strictly older than release tag `latest`.
/// Same numeric triple but `installed` carries a pre-release suffix while
/// `latest` doesn't ⇒ installed is older (e.g. `0.3.0-dev` < `v0.3.0`).
/// If either side can't be parsed, fall back to "differs ⇒ update".
fn version_is_older(installed: &str, latest: &str) -> bool {
match (parse_version(installed), parse_version(latest)) {
(Some((ic, ipre)), Some((lc, lpre))) => {
if ic != lc {
ic < lc
} else {
// Equal cores: a pre-release is older than the final release.
ipre && !lpre
}
}
_ => {
// Unparseable: be conservative — offer the update unless the
// installed string already mentions the latest tag.
!installed.contains(latest.trim_start_matches('v'))
}
}
}
#[cfg(test)]
mod tests {
use super::*;
#[test]
fn test_deb_arch_maps_known() {
// On the host running tests this is whatever the test arch is;
// just assert it returns a non-empty, lowercase token.
let a = deb_arch();
assert!(!a.is_empty());
assert_eq!(a, a.to_lowercase());
}
#[test]
fn test_version_older() {
assert!(version_is_older("0.3.0-dev (rev abc123)", "v0.3.0"));
assert!(version_is_older("0.2.1", "v0.3.0"));
assert!(version_is_older("0.3.0-rc1", "v0.3.0"));
assert!(!version_is_older("0.3.0", "v0.3.0"));
assert!(!version_is_older("0.4.0", "v0.3.0"));
assert!(!version_is_older("0.3.1", "v0.3.0"));
}
#[test]
fn test_parse_version() {
assert_eq!(parse_version("v0.3.0"), Some(((0, 3, 0), false)));
assert_eq!(parse_version("0.3.0-dev (rev x)"), Some(((0, 3, 0), true)));
assert_eq!(parse_version("0.4.0-rc1"), Some(((0, 4, 0), true)));
assert_eq!(parse_version("1.2"), Some(((1, 2, 0), false)));
}
#[test]
fn test_is_deb_for_arch() {
let arch = deb_arch();
assert!(is_deb_for_arch(&format!("fips_0.3.0_{}.deb", arch)));
assert!(!is_deb_for_arch("fips_0.3.0_someotherarch.deb"));
assert!(!is_deb_for_arch("checksums-linux.txt"));
assert!(!is_deb_for_arch(&format!(
"fips-0.3.0-linux-{}.tar.gz",
arch
)));
}
#[test]
fn test_update_check_serialises() {
let uc = UpdateCheck {
current: Some("0.3.0-dev".to_string()),
latest_version: "v0.3.0".to_string(),
update_available: true,
channel: "stable".to_string(),
asset_url: Some("https://example/fips_0.3.0_amd64.deb".to_string()),
notes: "test".to_string(),
};
let json = serde_json::to_string(&uc).unwrap();
assert!(json.contains("latest_version"));
assert!(json.contains("update_available"));
assert!(json.contains("stable"));
}
}