Files
turnstone/docs/tls.md
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Patrick Buckley 1f61350545 feat(compose): let bare-metal turnstone-servers join the cluster (incl. mTLS)
A turnstone-server running outside the compose network ("bare-metal", e.g. a
local-GPU box) couldn't fully join: it can't resolve the in-cluster console
(console:8090) to enroll its mTLS cert, and SearxNG was unreachable for
web_search. Only Postgres was published.

Publish the console's plain-HTTP ACME endpoint (:8090) and SearxNG (:8081)
alongside Postgres, all bound via one knob TURNSTONE_HOST_IP (default 127.0.0.1
-- nothing new on the LAN; set it to the host's LAN IP for a node on another
machine). Postgres keeps honoring the legacy POSTGRES_BIND as a fallback, so
existing .env files don't break.

The node's TLS client now honors TURNSTONE_CONSOLE_URL so a bare-metal node can
point at the published ACME endpoint instead of the unreachable in-cluster name
(empty = in-cluster service discovery, unchanged).

Docs (docker.md, tls.md), the run.sh-generated .env, and the bootstrap wizard
updated to match. The advertised host is the cert's primary SAN and the console
collector dials it back, so mTLS hostname verification holds both ways.
2026-06-15 03:41:24 -07:00

11 KiB

TLS / mTLS

Turnstone supports end-to-end transport encryption with mutual TLS (mTLS) for inter-service communication, powered by lacme.


Quick Start (Docker Compose)

docker compose -f turnstone/deploy/compose.yaml -f deploy/docker-compose.tls.yml up

This:

  1. Bootstraps an internal CA and issues certs for PostgreSQL
  2. Starts the console with TLS enabled (internal CA + ACME server)
  3. Server nodes auto-provision certs via the console's ACME endpoint
  4. All inter-service communication uses mTLS

Browser access (dashboard HTTPS)

The mTLS above secures service-to-service traffic (node↔node, collector and routing proxy → nodes). The console dashboard itself serves plain HTTP — and must, because it is the cluster's ACME bootstrap endpoint: new nodes fetch /acme/ca.pem and provision their first cert over HTTP, before they have the CA to verify TLS. So the console cannot be HTTPS-only on its port.

To put the browser → console hop on HTTPS, terminate TLS at a reverse proxy in front of the console. The dev stack (root compose.yaml) ships a caddy service that does exactly this — and it's the only published entry point, so the dashboard is HTTPS by default:

docker compose up
# dashboard: https://localhost:${CONSOLE_HTTPS_PORT:-8443}

The production stack (turnstone/deploy/compose.yaml) bundles the same caddy service, so the dashboard is HTTPS there too. For a real domain and a publicly trusted cert, point Caddy at Let's Encrypt by editing turnstone/deploy/Caddyfile.

browser  --h2 / HTTPS-->  caddy:443  --h1.1 / HTTP-->  console:8090

Caddy uses its own local CA (tls internal, see turnstone/deploy/Caddyfile), so the setup is self-contained with no dependency on the console's ACME path. Trust the local root once to silence the browser warning:

docker compose exec caddy \
  cat /data/caddy/pki/authorities/local/root.crt   # import into your OS/browser

Can Caddy get its cert from the console's internal CA instead? Technically yes — the console exposes a real ACME directory (/acme/directory) with auto-approval, so Caddy's tls { ca http://console:8090/acme/directory } would mint a cert for any name. It's not recommended as the default: lacme's ACME responder is built for turnstone's own client (interop with Caddy's client is unverified), it couples Caddy startup to the console, and the browser must trust a private CA either way — so it buys nothing over tls internal. For a publicly trusted cert (no warning), point Caddy at Let's Encrypt with a real domain instead.


Architecture

Console (CA + ACME Server)
  +-- CertificateAuthority (owns root key, signs certs)
  +-- ACMEResponder (mounted at /acme, RFC 8555)
  +-- GET /acme/ca.pem (root cert for node bootstrapping)
                  |
                  | ACME protocol (auto-approve, no challenge validation)
      +-----------+-----------+
      |           |           |
  Server(s)       Channel GW
  (auto-cert       (mTLS
   + renewal)       client)

Two cert paths on the console:

  • Internal cert (mTLS): Always from the internal CA. Used for cluster service mesh communication.
  • Frontend cert (HTTPS): From an external ACME CA (e.g. Let's Encrypt) if tls.acme_directory is set, otherwise self-issued from the internal CA.

Boot, retry, and fallback

With tls.enabled, a node fetches the CA cert and requests its own cert during startup, retrying with exponential backoff (6 attempts, ~31 s total) — enough to absorb a whole-stack restart where every node races the console for its listener. If all attempts fail, the node falls back to plain HTTP (availability over confidentiality) and reports "tls": "fallback" in GET /health; a node serving HTTPS reports "tls": "active", and the key is absent when TLS is disabled. Fallback persists until the next restart — it is not upgraded in place.

Container healthcheck under mTLS

An mTLS listener rejects plain-HTTP probes at the socket, so docker/healthcheck.py falls back to HTTPS when the plain probe fails: it presents the node's own cert as the client cert and pins the cluster CA, using the PEM files the server writes at boot under $TURNSTONE_TLS_PEM_DIR (default <tmpdir>/turnstone-tls). The probe dials localhost for the TLS attempt — the internal CA issues DNS SANs only, so a literal-IP URL would fail verification. Cert renewal rewrites the PEM dir alongside the live listener swap, so the probe's client cert never outlives the served cert. With TLS disabled the plain probe succeeds and the PEM directory is never consulted. On bare metal with multiple nodes per host, set TURNSTONE_TLS_PEM_DIR per node (each boot clears stale lacme-pem-* dirs under its root).


Configuration

Settings (ConfigStore / Admin Settings tab)

Setting Default Description
tls.enabled false Master switch for internal mTLS
tls.acme_directory "" External ACME CA URL for console frontend cert

Bootstrap Config (config.toml)

These are needed before storage is available:

[database]
sslmode = "prefer"   # disable, allow, prefer, require, verify-full
sslrootcert = ""     # path to CA cert
sslcert = ""         # path to client cert
sslkey = ""          # path to client key

Hardcoded Defaults

Parameter Value Notes
CA common name "Turnstone CA"
CA validity 10 years
Cert validity 48 hours Short-lived, auto-renewed
Renewal interval 24 hours Half of validity
ACME auto-approve true Internal network, no challenge validation

CLI

Offline Bootstrap

Create a CA and infrastructure certs without a running console:

# Bootstrap CA + PostgreSQL certs
turnstone-admin tls-bootstrap --out /certs --issue postgres

# Output:
#   /certs/ca.pem              (CA root certificate)
#   /certs/certs/postgres/     (PostgreSQL cert + key)

The output directory is chmod 0700 (contains the CA private key).

Online Cert Issuance

Request certs from a running console's ACME endpoint:

# Download CA root cert (TOFU — verify fingerprint)
turnstone-admin tls-ca-cert --out ca.pem --console-url http://console:8080

# Request a cert for a domain
turnstone-admin tls-issue worker-1.internal --out /certs --console-url http://console:8080

# List issued certs
turnstone-admin tls-list --console-url http://console:8080

Console URL Discovery

If --console-url is not provided, the CLI discovers it from the services table in the shared database. The console registers itself on startup.


Admin UI

The TLS tab in the console admin panel (System group) shows:

  • CA status (common name, certificate count)
  • Certificate table (domain, SANs, issued, expires)
  • Force-renew and delete actions per certificate

SDK

Python

from turnstone.sdk import TurnstoneServer

client = TurnstoneServer(
    base_url="https://server:8080",
    token="tok_xxx",
    ca_cert="/path/to/ca.pem",
    client_cert="/path/to/cert.pem",
    client_key="/path/to/key.pem",
)

TypeScript

import { TurnstoneServer } from "@turnstone/sdk";
import { Agent } from "undici";
import * as fs from "fs";

const agent = new Agent({
  connect: {
    ca: fs.readFileSync("/path/to/ca.pem"),
    cert: fs.readFileSync("/path/to/cert.pem"),
    key: fs.readFileSync("/path/to/key.pem"),
  },
});

const client = new TurnstoneServer({
  baseUrl: "https://server:8080",
  token: "tok_xxx",
  // Node.js 18+ uses undici under the hood
  fetch: (url, init) =>
    fetch(url, { ...init, dispatcher: agent } as RequestInit),
});

How It Works

Node Bootstrap Flow

  1. Node starts, connects to shared database (plain connection)
  2. Discovers the console URL from the services table — or honors an explicit TURNSTONE_CONSOLE_URL (a bare-metal node outside the compose network can't resolve the in-cluster console name, so it points this at the console's published ACME endpoint)
  3. Fetches CA root cert from http://console/acme/ca.pem (plain HTTP, TOFU)
  4. Requests a service cert via ACME (plain HTTP, JWS-signed). The cert's primary domain / SAN is the node's advertised host (the host of TURNSTONE_ADVERTISE_URL, e.g. node-1) — the name peers actually dial, not the container hostname. This makes mTLS hostname verification succeed and keys the cert by a stable name that survives container recreation.
  5. Starts auto-renewal (24h interval, re-issues before expiry) scoped to its own certificate. Each node renews only its own cert; the shared store is never swept wholesale. Renewed certs are hot-swapped into the live HTTPS listener with no restart.
  6. All subsequent inter-service communication uses mTLS

Console Startup Flow

  1. Read tls.enabled from ConfigStore
  2. Initialize CA (load from DB or generate new root key)
  3. Mount ACME responder at /acme (serves /ca.pem natively)
  4. Issue console certs (internal + optional frontend)
  5. Start CA-direct auto-renewal (no network, signs directly), scoped to the console's own cert, plus a periodic GC that reclaims cert rows for long-departed nodes
  6. Register console URL in services table with heartbeat

Troubleshooting

Cert expired / mTLS connection refused

Certs are valid for 48 hours. If auto-renewal stopped (e.g. console was down), restart the service to re-request a cert.

Collector/proxy can't reach a node (TLS hostname mismatch)

mTLS verifies a node's advertised host against the cert's SANs. Each node's cert is issued for the host in its TURNSTONE_ADVERTISE_URL, so that name is always a SAN automatically — you do not need to set TURNSTONE_TLS_SANS per node. Only set TURNSTONE_TLS_SANS to add extra names (e.g. a node fronted under a second hostname). Symptom if this is wrong: the console dashboard shows nodes as unreachable and openssl s_client reports the served cert's SANs don't include the dialed name.

"No console service found"

The console registers itself in the services table on startup. If the console hasn't started or the registration expired (1 hour TTL), nodes can't discover it. Set TURNSTONE_CONSOLE_URL to a reachable console address (this is also how a bare-metal node that can't resolve the in-cluster console name enrolls).

Browser HTTPS to the console

The console serves plain HTTP (it's the ACME bootstrap endpoint — see Browser access). Put browser traffic on HTTPS by terminating TLS at a reverse proxy; the cluster profile's caddy service does this with Caddy's local CA. For a publicly trusted cert, front the console with a proxy pointed at Let's Encrypt using a real domain. The tls.acme_directory setting only governs the console's internal/frontend cert material — it does not make the console listen on HTTPS itself.

Verifying the cert chain

openssl s_client -connect server:8080 -CAfile ca.pem