Files
admin 588fed2aa9 slice 10B: operator-signed destructive completion (offline key + signing CLI) (v0.16.0)
A destructive op runs ONLY on a pinned-key-verified, nonce-fresh, in-window,
host-bound, durable-id-bound operator signature. New cmd/felhom-opsign signs
canonical OpBlobs offline via ssh-keygen -Y sign (hardware-ready); the signing
key is never in the hub or agent. New internal/signedjobs runner verifies each
queued blob through the gate and only on all-pass runs the WipeExecutor, which
re-resolves the DURABLE device id + re-inspects (8C) before mkfs — closing the
8C data-bearing-wipe pending_signature gap. New storage durable-device
resolution; authz.CanonicalBlob promoted to production. Real-crypto tests assert
valid executes and forged/replay/expired/retarget/non-pinned are rejected
(executor never called).

Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
2026-06-10 20:14:16 +02:00

241 lines
7.9 KiB
Go

package signedjobs
import (
"context"
"encoding/base64"
"encoding/json"
"io"
"log/slog"
"sync"
"testing"
"time"
"gitea.dooplex.hu/admin/felhom-agent/internal/authz"
"gitea.dooplex.hu/admin/felhom-agent/internal/hub"
"gitea.dooplex.hu/admin/felhom-agent/internal/reconcile"
)
func quiet() *slog.Logger { return slog.New(slog.NewTextHandler(io.Discard, nil)) }
const testHost = "demo-felhom-01"
// jobsQueue is an in-memory JobSource for the runner tests.
type jobsQueue struct {
mu sync.Mutex
jobs []hub.JobWire
completed []string
}
func (q *jobsQueue) add(j hub.JobWire) { q.mu.Lock(); q.jobs = append(q.jobs, j); q.mu.Unlock() }
func (q *jobsQueue) Jobs(context.Context) ([]hub.JobWire, error) {
q.mu.Lock()
defer q.mu.Unlock()
out := append([]hub.JobWire(nil), q.jobs...)
return out, nil
}
func (q *jobsQueue) CompleteJob(_ context.Context, jobID string) error {
q.mu.Lock()
defer q.mu.Unlock()
q.completed = append(q.completed, jobID)
// also remove from the pending list so a re-run doesn't re-process it
kept := q.jobs[:0]
for _, j := range q.jobs {
if j.JobID != jobID {
kept = append(kept, j)
}
}
q.jobs = kept
return nil
}
func (q *jobsQueue) wasCompleted(jobID string) bool {
q.mu.Lock()
defer q.mu.Unlock()
for _, id := range q.completed {
if id == jobID {
return true
}
}
return false
}
// corruptSig flips bytes in the envelope's armored signature (a hub forging/altering a blob).
func corruptSig(t *testing.T, j hub.JobWire) hub.JobWire {
t.Helper()
raw, _ := base64.StdEncoding.DecodeString(j.BlobB64)
var env Envelope
json.Unmarshal(raw, &env)
// Replace the armored signature with a structurally-valid-but-wrong one: re-arm random bytes.
env.SigArmored = env.SigArmored[:len(env.SigArmored)/2] + "AAAA" + env.SigArmored[len(env.SigArmored)/2:]
out, _ := json.Marshal(env)
j.BlobB64 = base64.StdEncoding.EncodeToString(out)
return j
}
// fakeExecutor records Execute calls and returns a configurable error.
type fakeExecutor struct {
mu sync.Mutex
calls []string // ops executed
err error
}
func (f *fakeExecutor) Execute(_ context.Context, op string, _ json.RawMessage) error {
f.mu.Lock()
f.calls = append(f.calls, op)
f.mu.Unlock()
return f.err
}
func (f *fakeExecutor) count() int { f.mu.Lock(); defer f.mu.Unlock(); return len(f.calls) }
// newRealGateRunner builds a runner with the REAL gate+verifier pinned to `signer`, an in-memory
// nonce store, plus a fake jobs source + fake executor. wipeParams is the params to sign.
func newRealGateRunner(t *testing.T, signer testSigner) (*Runner, *jobsQueue, *fakeExecutor) {
t.Helper()
store := authz.NewMemoryNonceStore()
verifier := authz.New([]authz.AllowedSigner{signer.allowed(t, "ops-1", authz.RoleOperational)}, store, testHost)
gate := reconcile.NewGate(verifier, testHost, nil, quiet())
src := &jobsQueue{}
exec := &fakeExecutor{}
return NewRunner(src, gate, exec, testHost, quiet()), src, exec
}
const wipeParamsJSON = `{"durable_id":"byid:wwn-0xtest","fstype":"ext4"}`
// VALID: a correctly-signed wipe → executor runs once + the job is cleared.
func TestRunner_ValidSignedWipeExecutes(t *testing.T) {
s := newTestSigner(t)
r, src, exec := newRealGateRunner(t, s)
now := time.Now().UTC()
src.add(mintJob(t, s, "j1", testHost, "", "ops-1", wipeParamsJSON, now, now.Add(time.Hour)))
n, err := r.RunOnce(context.Background())
if err != nil {
t.Fatalf("RunOnce: %v", err)
}
if n != 1 || exec.count() != 1 || exec.calls[0] != "storage_wipe" {
t.Fatalf("executor calls = %v (n=%d), want one storage_wipe", exec.calls, n)
}
if !src.wasCompleted("j1") {
t.Error("valid job was not cleared after execution")
}
}
// REPLAY: the same blob resubmitted (a second job) → rejected, executor NOT called again.
func TestRunner_ReplayRejected(t *testing.T) {
s := newTestSigner(t)
r, src, exec := newRealGateRunner(t, s)
now := time.Now().UTC()
job := mintJob(t, s, "j1", testHost, "", "ops-1", wipeParamsJSON, now, now.Add(time.Hour))
src.add(job)
if _, err := r.RunOnce(context.Background()); err != nil {
t.Fatal(err)
}
if exec.count() != 1 {
t.Fatalf("first run executed %d times, want 1", exec.count())
}
// Resubmit the IDENTICAL signed blob (same nonce) as a new job.
replay := job
replay.JobID = "j1-replay"
src.add(replay)
if _, err := r.RunOnce(context.Background()); err != nil {
t.Fatal(err)
}
if exec.count() != 1 {
t.Errorf("replay caused a second execution (count=%d) — nonce-burn failed", exec.count())
}
if !src.wasCompleted("j1-replay") {
t.Error("replayed job should be cleared (rejected)")
}
}
// NON-PINNED signer → rejected, executor NOT called.
func TestRunner_NonPinnedSignerRejected(t *testing.T) {
pinned := newTestSigner(t)
attacker := newTestSigner(t) // a DIFFERENT key, not pinned
r, src, exec := newRealGateRunner(t, pinned)
now := time.Now().UTC()
src.add(mintJob(t, attacker, "j1", testHost, "", "ops-1", wipeParamsJSON, now, now.Add(time.Hour)))
r.RunOnce(context.Background())
if exec.count() != 0 {
t.Errorf("a non-pinned signature was EXECUTED (count=%d) — must be rejected", exec.count())
}
if !src.wasCompleted("j1") {
t.Error("rejected job should be cleared")
}
}
// EXPIRED → rejected, executor NOT called.
func TestRunner_ExpiredRejected(t *testing.T) {
s := newTestSigner(t)
r, src, exec := newRealGateRunner(t, s)
past := time.Now().UTC().Add(-2 * time.Hour)
src.add(mintJob(t, s, "j1", testHost, "", "ops-1", wipeParamsJSON, past, past.Add(time.Hour))) // expired an hour ago
r.RunOnce(context.Background())
if exec.count() != 0 {
t.Errorf("an EXPIRED op was executed (count=%d)", exec.count())
}
}
// RETARGETED (Target.HostID = another host) → rejected, executor NOT called.
func TestRunner_RetargetRejected(t *testing.T) {
s := newTestSigner(t)
r, src, exec := newRealGateRunner(t, s)
now := time.Now().UTC()
src.add(mintJob(t, s, "j1", "some-other-host", "", "ops-1", wipeParamsJSON, now, now.Add(time.Hour)))
r.RunOnce(context.Background())
if exec.count() != 0 {
t.Errorf("an op targeting another host was executed on this host (count=%d) — anti-retarget failed", exec.count())
}
}
// FORGED (a compromised hub queues a blob with a garbage signature) → rejected, executor NOT called.
func TestRunner_ForgedSignatureRejected(t *testing.T) {
s := newTestSigner(t)
r, src, exec := newRealGateRunner(t, s)
now := time.Now().UTC()
job := mintJob(t, s, "j1", testHost, "", "ops-1", wipeParamsJSON, now, now.Add(time.Hour))
// Corrupt the envelope's signature (simulate a hub forging/altering the blob).
job = corruptSig(t, job)
src.add(job)
r.RunOnce(context.Background())
if exec.count() != 0 {
t.Errorf("a forged/altered signature was executed (count=%d) — the compromised-hub case must be rejected", exec.count())
}
if !src.wasCompleted("j1") {
t.Error("forged job should be cleared")
}
}
// No verifier pinned (no signers) → every signed op is refused pending_signature, executor not called.
func TestRunner_NoSignersAllRejected(t *testing.T) {
s := newTestSigner(t)
gate := reconcile.NewGate(nil, testHost, nil, quiet()) // nil verifier
src := &jobsQueue{}
exec := &fakeExecutor{}
r := NewRunner(src, gate, exec, testHost, quiet())
now := time.Now().UTC()
src.add(mintJob(t, s, "j1", testHost, "", "ops-1", wipeParamsJSON, now, now.Add(time.Hour)))
r.RunOnce(context.Background())
if exec.count() != 0 {
t.Errorf("with no pinned signer a signed op executed (count=%d) — must be pending_signature", exec.count())
}
}
// A malformed envelope → cleared without ever calling the executor.
func TestRunner_MalformedEnvelopeCleared(t *testing.T) {
s := newTestSigner(t)
r, src, exec := newRealGateRunner(t, s)
src.add(hub.JobWire{JobID: "bad", BlobB64: "!!!not base64!!!"})
r.RunOnce(context.Background())
if exec.count() != 0 {
t.Errorf("a malformed envelope reached the executor (count=%d)", exec.count())
}
if !src.wasCompleted("bad") {
t.Error("malformed job should be cleared")
}
}