Files
mesh-controller/internal/licences/refresh_test.go
T
jschoubben 2e33c5e80e model access B: refreshable-grant machinery — manager, at-rest refresh token, refresh flow
The ADR 0050 carve-out, built generic and vendor-neutral. A refreshable-grant
licence records one manager node; that node holds the refresh token encrypted at
rest, access tokens are still sealed per holder, and the refresh token is never in
a holder's delivery. Bounded on the three stated axes: refreshable-grant vendors
only, the refresh token only, the manager node only. Anthropic's actual OAuth
refresh stays a Phase-C plug-in behind a clean seam.

- New at-rest crypto (secrets.SealAtRest/OpenAtRest): envelope encryption distinct
  from the per-holder anonymous-box seal. The refresh token is under a symmetric
  data key (secretbox); the data key is wrapped to the manager node's public
  sealing key. The database alone holds ciphertext and a wrapped key with no
  private half to open either — only the manager node reads it back.

- Refreshable-grant adapter dispatch: anthropic is now refreshable-grant,
  anthropic-api-key the static-key second case. The adapter implements the
  Refresher seam by delegating to an injected VendorRefresher (the Phase-C plug,
  none shipped). static-key is untouched. The type assertion to Refresher is what
  gates the carve-out to refreshable-grant vendors.

- Refresh lease/rotate/publish flow (Licences.Refresh): a transaction-scoped
  advisory lock is the single-refresher lease; the new access token comes from the
  vendor refresh, is sealed per holder (secrets.Seal, as Accept does) and delivered
  on the next push — doc 13's reseal-and-publish half, all-or-nothing. The refresh
  token stays put, re-encrypted at rest only if the vendor rotated it.

- Manager and refresh_grant schema: consolidated into migrations/0001 and carried
  by a new incremental 0003 (the dual-write rule).

- 17 new tests, including the four security checks: KeyFor never carries the
  refresh token, a static key has no manager and cannot be refreshed, the at-rest
  token needs the manager's key, and a refresh delivers a new sealed access token.

Claude-Session: https://claude.ai/code/session_01LrgweAeERJYBg88c5cKDzF
2026-09-07 00:23:35 +02:00

332 lines
11 KiB
Go

package licences
import (
"context"
"crypto/ecdh"
"crypto/rand"
"encoding/base64"
"strings"
"testing"
"golang.org/x/crypto/nacl/box"
"github.com/novox/mesh-control/internal/licences/adapters"
"github.com/novox/mesh-control/internal/secrets"
)
// nodeKeyPair is a node's key as the node would hold it: the public half the mesh seals to, and an
// open closure holding the private half the mesh never sees.
func nodeKeyPair(t *testing.T) (public string, open func(string) ([]byte, error)) {
t.Helper()
priv, err := ecdh.X25519().GenerateKey(rand.Reader)
if err != nil {
t.Fatal(err)
}
var pub, sk [32]byte
copy(pub[:], priv.PublicKey().Bytes())
copy(sk[:], priv.Bytes())
return base64.StdEncoding.EncodeToString(priv.PublicKey().Bytes()),
func(sealed string) ([]byte, error) {
blob, err := base64.StdEncoding.DecodeString(sealed)
if err != nil {
return nil, err
}
out, ok := box.OpenAnonymous(nil, blob, &pub, &sk)
if !ok {
return nil, context.Canceled // any error; the test only checks success/failure
}
return out, nil
}
}
// managerPair is like nodeKeyPair but also returns the private key string, because the manager needs
// to OpenAtRest its own refresh token — the one node that reads it back.
func managerPair(t *testing.T) (public, private string) {
t.Helper()
priv, err := ecdh.X25519().GenerateKey(rand.Reader)
if err != nil {
t.Fatal(err)
}
return base64.StdEncoding.EncodeToString(priv.PublicKey().Bytes()),
base64.StdEncoding.EncodeToString(priv.Bytes())
}
type fakeRefresher struct {
access string
newAtRest *secrets.AtRest
got adapters.RefreshInput
}
func (f *fakeRefresher) Refresh(_ context.Context, in adapters.RefreshInput) (adapters.RefreshResult, error) {
f.got = in
return adapters.RefreshResult{AccessToken: f.access, NewAtRest: f.newAtRest}, nil
}
// A refreshable-grant licence set up end to end: a manager, a refresh token sealed at rest to it, two
// holders each with a sealing key, and a fake vendor refresher plugged in.
func aRefreshableLicence(t *testing.T, held *Licences, ctx context.Context, fake *fakeRefresher) (
managerPub, managerPriv string, holders map[string]func(string) ([]byte, error), keys SealingKeys,
) {
t.Helper()
adapters.RegisterRefresher("anthropic", fake)
t.Cleanup(func() { adapters.RegisterRefresher("anthropic", nil) })
if err := held.Add(ctx, "personal", "anthropic", map[string]any{"model": "a-model"}); err != nil {
t.Fatal(err)
}
if err := held.SetManager(ctx, "personal", "workstation"); err != nil {
t.Fatal(err)
}
managerPub, managerPriv = managerPair(t)
at, err := secrets.SealAtRest("rt-the-refresh-token", managerPub)
if err != nil {
t.Fatal(err)
}
if err := held.SetRefreshGrant(ctx, "personal", at); err != nil {
t.Fatal(err)
}
holders = map[string]func(string) ([]byte, error){}
pub := map[string]string{}
for _, node := range []string{"workstation", "laptop"} {
p, open := nodeKeyPair(t)
pub[node], holders[node] = p, open
if err := held.Use(ctx, "personal", node, "assistant"); err != nil {
t.Fatal(err)
}
}
keys = func(node string) (string, error) { return pub[node], nil }
return managerPub, managerPriv, holders, keys
}
// The point of the phase, in one test: a refresh seals the ACCESS token to every holder, and the
// refresh token is nowhere a holder can reach it.
func TestARefreshDeliversTheAccessTokenAndNeverTheRefreshToken(t *testing.T) {
held, ctx := fresh(t)
fake := &fakeRefresher{access: "at-brand-new-access-token"}
_, _, holders, keys := aRefreshableLicence(t, held, ctx, fake)
sealed, err := held.Refresh(ctx, "personal", keys)
if err != nil {
t.Fatal(err)
}
if sealed != 2 {
t.Fatalf("%d holder(s) were resealed, expected 2", sealed)
}
for node, open := range holders {
blob, err := held.KeyFor(ctx, "personal", node, "assistant")
if err != nil {
t.Fatal(err)
}
if blob == "" {
t.Fatalf("%s got no access token", node)
}
got, err := open(blob)
if err != nil {
t.Fatalf("%s cannot open what it was delivered", node)
}
if string(got) != "at-brand-new-access-token" {
t.Fatalf("%s was delivered %q, not the access token", node, got)
}
// The refresh token is not in the holder's delivery, opened or sealed.
if string(got) == "rt-the-refresh-token" || strings.Contains(blob, "rt-the-refresh-token") {
t.Fatalf("%s was delivered the refresh token", node)
}
}
}
// KeyFor delivers the access token and cannot deliver the refresh token, because the refresh token
// is not in licence_holder at all — the stripping is structural.
func TestKeyForNeverCarriesTheRefreshToken(t *testing.T) {
held, ctx := fresh(t)
fake := &fakeRefresher{access: "at-access"}
_, _, _, keys := aRefreshableLicence(t, held, ctx, fake)
if _, err := held.Refresh(ctx, "personal", keys); err != nil {
t.Fatal(err)
}
// Every holder row, straight from the store: none of them holds the refresh token in any form.
rows, err := held.store.Pool().Query(ctx,
`select coalesce(sealed, '') from licence_holder where licence = 'personal'`)
if err != nil {
t.Fatal(err)
}
defer rows.Close()
for rows.Next() {
var sealed string
if err := rows.Scan(&sealed); err != nil {
t.Fatal(err)
}
if strings.Contains(sealed, "rt-the-refresh-token") {
t.Fatal("a holder row carries the refresh token")
}
}
}
// The refresh token at rest is not readable from the database alone: the row holds ciphertext and a
// wrapped key, and only the manager node's private half opens it.
func TestTheRefreshTokenAtRestNeedsTheManagersKey(t *testing.T) {
held, ctx := fresh(t)
fake := &fakeRefresher{access: "at-access"}
managerPub, managerPriv, _, _ := aRefreshableLicence(t, held, ctx, fake)
// What the database holds, read straight from the row.
var token, wrapped, managerKey string
if err := held.store.Pool().QueryRow(ctx,
`select token, wrapped_key, manager_key from refresh_grant where licence = 'personal'`).
Scan(&token, &wrapped, &managerKey); err != nil {
t.Fatal(err)
}
if strings.Contains(token, "rt-the-refresh-token") || strings.Contains(wrapped, "rt-the-refresh-token") {
t.Fatal("the refresh token is in the row in the clear")
}
// The manager, holding its private key, reads it back.
got, err := secrets.OpenAtRest(
secrets.AtRest{Token: token, WrappedKey: wrapped, ManagerKey: managerKey},
managerPub, managerPriv)
if err != nil {
t.Fatal(err)
}
if got != "rt-the-refresh-token" {
t.Fatalf("the manager read back %q", got)
}
// Another node cannot, which is the whole of "the manager node only".
otherPub, otherPriv := managerPair(t)
if _, err := secrets.OpenAtRest(
secrets.AtRest{Token: token, WrappedKey: wrapped, ManagerKey: managerKey},
otherPub, otherPriv); err == nil {
t.Fatal("a node that is not the manager opened the refresh token")
}
}
// After a refresh, holders hold a NEW access token, and the refresh token that was not rotated is
// unchanged — never delivered either way.
func TestAfterRefreshHoldersHoldANewAccessTokenAndTheGrantIsUnchanged(t *testing.T) {
held, ctx := fresh(t)
fake := &fakeRefresher{access: "at-first"}
_, _, holders, keys := aRefreshableLicence(t, held, ctx, fake)
// A prior access token, so we can see it change.
if _, err := held.Refresh(ctx, "personal", keys); err != nil {
t.Fatal(err)
}
before := map[string]string{}
for node := range holders {
blob, err := held.KeyFor(ctx, "personal", node, "assistant")
if err != nil {
t.Fatal(err)
}
before[node] = blob
}
grantBefore := grantRow(t, held, ctx)
// A second refresh with a different access token and no rotation of the refresh token.
fake.access = "at-second"
if _, err := held.Refresh(ctx, "personal", keys); err != nil {
t.Fatal(err)
}
for node, open := range holders {
blob, err := held.KeyFor(ctx, "personal", node, "assistant")
if err != nil {
t.Fatal(err)
}
if blob == before[node] {
t.Fatalf("%s was not given a new sealed access token", node)
}
got, err := open(blob)
if err != nil {
t.Fatal(err)
}
if string(got) != "at-second" {
t.Fatalf("%s holds %q, not the new access token", node, got)
}
}
if grantRow(t, held, ctx) != grantBefore {
t.Fatal("the refresh token changed although the vendor did not rotate it")
}
}
// When the vendor rotates the refresh token too, the stored envelope is replaced with the
// re-encrypted one — and it is still not deliverable to a holder.
func TestARotatedRefreshTokenReplacesTheStoredEnvelope(t *testing.T) {
held, ctx := fresh(t)
fake := &fakeRefresher{access: "at-access"}
managerPub, managerPriv, _, keys := aRefreshableLicence(t, held, ctx, fake)
grantBefore := grantRow(t, held, ctx)
rotated, err := secrets.SealAtRest("rt-a-rotated-refresh-token", managerPub)
if err != nil {
t.Fatal(err)
}
fake.newAtRest = &rotated
if _, err := held.Refresh(ctx, "personal", keys); err != nil {
t.Fatal(err)
}
if grantRow(t, held, ctx) == grantBefore {
t.Fatal("the rotated refresh token did not replace the stored envelope")
}
at, ok, err := held.RefreshGrant(ctx, "personal")
if err != nil || !ok {
t.Fatalf("the rotated grant is not stored: ok=%v err=%v", ok, err)
}
got, err := secrets.OpenAtRest(at, managerPub, managerPriv)
if err != nil {
t.Fatal(err)
}
if got != "rt-a-rotated-refresh-token" {
t.Fatalf("the stored grant opened to %q, not the rotated token", got)
}
}
// A static-key licence has no refresh token and the carve-out never fires: it has no manager, and it
// cannot be refreshed.
func TestAStaticKeyLicenceHasNoManagerAndNoRefresh(t *testing.T) {
held, ctx := fresh(t)
if err := held.Add(ctx, "plain", "anthropic-api-key", nil); err != nil {
t.Fatal(err)
}
if err := held.SetManager(ctx, "plain", "workstation"); err == nil {
t.Fatal("a static-key licence was given a manager")
}
if _, ok, err := held.RefreshGrant(ctx, "plain"); err != nil || ok {
t.Fatalf("a static-key licence has a refresh token stored: ok=%v err=%v", ok, err)
}
if _, err := held.Refresh(ctx, "plain", func(string) (string, error) { return "", nil }); err == nil {
t.Fatal("a static-key licence was refreshed")
}
}
// A refreshable licence with no manager named cannot be refreshed, and says how to name one.
func TestARefreshableLicenceWithoutAManagerIsRefused(t *testing.T) {
held, ctx := fresh(t)
if err := held.Add(ctx, "personal", "anthropic", nil); err != nil {
t.Fatal(err)
}
_, err := held.Refresh(ctx, "personal", func(string) (string, error) { return "", nil })
if err == nil {
t.Fatal("a licence with no manager was refreshed")
}
if !strings.Contains(err.Error(), "manager") {
t.Fatalf("the refusal does not point at the missing manager: %v", err)
}
}
// grantRow is the whole at-rest envelope as one string, for asserting it changed or did not.
func grantRow(t *testing.T, held *Licences, ctx context.Context) string {
t.Helper()
at, ok, err := held.RefreshGrant(ctx, "personal")
if err != nil {
t.Fatal(err)
}
if !ok {
return ""
}
return at.Token + "|" + at.WrappedKey + "|" + at.ManagerKey
}