Ran live cutover POCs in the sandbox VM against the real target software and promoted both drivers from MOCK-ONLY to LIVE-VM in the proof table (data, not driver behaviour): - k8s: proven against real k3s v1.35 kube-apiserver + token controller (lab-provision-k8s.sh). The real apiserver serves a self-signed cert, so the driver gained CA-pinned TLS — blob params ca= (base64 PEM, pinned as the only trusted root) and insecure=1 (lab-only escape hatch), routed through a new clientFor(cr). Neither is test-awareness; a real deployment configures the same CA. Added TestK8sTLSTrust covering CA-pinned / insecure / untrusted-rejection and the blob round-trip. - mongo: proven against real mongod 8.0 (lab-provision-mongo.sh). npm stays MOCK-ONLY by decision (registry.npmjs.org not self-hostable; real create-token requires the account password in the body) — documented as a contract gap rather than faking a LIVE-VM. gcp/twilio/flyio remain MOCK-ONLY. Live POCs surfaced real-target-only behaviour now recorded in the docs: the apiserver's ~10s successful-auth cache (old token kept working ~7s after Secret deletion) and real mongosh's stdout prompt. Full suite 104 green, -race clean. Co-Authored-By: Claude Opus 4.6 <noreply@anthropic.com>
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Rotation cutover proofs
This file is the human-facing mirror of internal/rotate/proofs.go. That Go table is
the single source of truth (incredigo rotate surfaces it as the PROOF column); this
document explains what each level means and records the basis for every driver's level.
Keep the two in sync — if you change one, change the other.
Why this exists
Every Rotator in internal/rotate contains only real rotation code: it talks to a
real service (HTTP API, DB client, SSH, local files). None of them contain simulation
branches or test awareness — the only thing a test injects is an endpoint / HTTPClient /
binary path, which a real deployment also configures.
What differs between drivers is how their real-cutover path has been validated. That is
data, not behaviour, so it lives in one table (here + proofs.go) instead of as prose
scattered through — and easily confused with — the driver code. This is the guardrail that
stops a mock-only driver from ever being mistaken for a live one.
Levels
| Level | Meaning |
|---|---|
| LIVE-VM | Cutover proven against the real target software running in the sandbox VM (real PostgreSQL / MariaDB / Redis / wg / Gitea / local files). |
| MOCK-ONLY | Cutover proven only against an emulator — our own httptest / in-process SSH server, or a third-party mock (e.g. moto for AWS). NOT proven against the real target service. |
| UNPROVEN | No cutover proof recorded (e.g. the dry-run noop helper). |
Honesty note: running in the VM does not automatically make a driver LIVE-VM. AWS ran in the VM but only against moto (a mock AWS), so it is MOCK-ONLY. LIVE-VM means the real target software validated the cutover.
Current status
LIVE-VM — proven against real target software in the sandbox VM
| Driver | Real target | Provisioner |
|---|---|---|
postgres |
real PostgreSQL | lab-provision-pg.sh |
mysql |
real MariaDB | lab-provision-dbclones.sh |
redis |
real redis-server |
lab-provision-dbclones.sh |
wireguard |
real wg |
lab-provision-wg.sh |
gitea |
real Gitea | lab-provision-gitea.sh |
appsecret |
real local files | lab-provision-appsec.sh |
mongo |
real mongod 8.0 |
lab-provision-mongo.sh |
k8s |
real k3s v1.35 kube-apiserver |
lab-provision-k8s.sh |
k8s live-POC note (auth-cache timing): the real kube-apiserver caches successful token authentications for ~10s (
cachedTokenAuthenticator). AfterRevokeOlddeletes the legacy token Secret, the old token keeps authenticating until that cache entry expires — so the POC polls the old token for up to 30s and asserts it flips to401(it does, ~7s). Thehttptestemulator invalidates instantly, so this delay only surfaced against real k3s — exactly what a live POC is for. The driver needed real-CA TLS to talk to the apiserver, so the blob gainedca=(base64 PEM, pinned as the only trusted root) and aninsecure=1lab-only escape hatch; neither is test-awareness — a real deployment configures the same CA.
MOCK-ONLY — proven only against an emulator / mock
| Driver | Emulator | Why not (yet) LIVE-VM |
|---|---|---|
aws |
moto mock AWS in VM |
real AWS never hit |
sshkey |
in-process SSH server | live VM POC not run |
openwrt |
in-process SSH server | live QEMU deferred |
mullvad |
httptest emulator |
needs a paid account |
cloudflare |
httptest emulator |
no self-host |
ghactions |
httptest emulator (holds the libsodium box keypair, decrypts the sealed PUT) |
no self-host |
gitlab |
httptest emulator |
GitLab CE too heavy for the VM |
npm |
httptest registry emulator |
real registry never hit (see caveat below) |
gcp |
httptest IAM emulator (verifies the driver's RS256 JWT against the key's public key) |
no self-host |
twilio |
httptest emulator (Basic-auth Keys resource) |
no self-host |
flyio |
httptest GraphQL emulator |
no self-host |
What the MOCK-ONLY emulators actually prove
The emulators are not stubs that rubber-stamp success — each enforces the real protocol so the test exercises the driver's true cutover logic:
- gitlab —
self/rotatemints a new PAT and revokes the caller's old one; the test assertsVerify(old)fails afterRotate, proving the revoke really happened. - cloudflare —
PUT .../valuerolls the value for the same token id and invalidates the previous value; the test asserts the id is unchanged andVerify(old)fails. - ghactions — the emulator owns a real NaCl
boxkeypair, serves the public key, and onPUTdecrypts the sealed value and stores the plaintext; the test asserts the decrypted value equals the new value the driver put in the rebuilt blob — proving the sealed-box encryption is correct, not simulated. - npm / twilio — each emulator enforces credential validity (a token/key
authenticates only while it exists) and the test asserts
Verify(old)fails afterRevokeOld— proving the create→verify→revoke cutover really happened, old credential dead, new one alive. - gcp — the emulator verifies the RS256 JWT signature the driver mints against the
public key recorded for the key's
kid; it only issues an access token for a JWT that actually verifies, andDELETEremoves the key — so the test proves real service-account self-auth (genuinecrypto/rsasigning) and the cutover (revoked key can no longer mint a token). - flyio — a managing token mints/deletes the deploy token over GraphQL; the deploy token authenticates the app query only while it exists, so the test proves the managing-token → deploy-token rotation and that the revoked deploy token stops working.
npm caveat (why it is not just "pending a VM run"): the public
registry.npmjs.orgis not self-hostable, and the classicPOST /-/npm/v1/tokenscreate-token call on real npm requires the account password in the request body (it is the non-interactive form ofnpm token create, which prompts for your password). The driver authenticates the create with the old token as Bearer only, which the emulator accepts but real npmjs does not. Sonpmstays MOCK-ONLY pending either (a) a self-hosted registry that implements the token API faithfully, or (b) adding password-in-body support to the create call. This is exactly the kind of contract gap a live-POC attempt is meant to surface.
Promoting the rest to LIVE-VM only requires standing up the real service (a self-hosted
GitLab CE / a real Cloudflare token / a throwaway GitHub repo) and re-running the same
driver against it — no driver code changes. (k8s and mongo have already made this jump;
see the LIVE-VM table above.)