Files
OwnCord/Server/ws/event_pruner_test.go
T
J3vbandClaude Opus 4.8 58005c9c6f feat(auth): revocable API tokens, introspect MCP server, and a Go 1.26 idiom pass (#1266)
* feat(auth): add revocable API tokens (bot/service auth)

Add long-lived, revocable API tokens so headless clients (the introspection
MCP tool, bots, CI) can authenticate without a password. Presented as
"Authorization: Bearer <token>", a token authenticates as a specific user,
inheriting that user's role and permissions.

- migration 018 + dedicated api_tokens table (kept separate from sessions so
  bulk logout and the per-user session cap never touch these); only the
  SHA-256 hash is stored, raw token shown once at creation
- auth.ResolveTokenHash: one shared bearer resolver that both AuthMiddleware
  and adminAuthMiddleware now call. Sessions are matched first so existing
  login behavior is unchanged; API tokens are a fallback only on session miss.
  A DB outage is returned wrapped, never mistaken for a bad token.
- `server token create|list|revoke` CLI: mints directly against the DB with no
  HTTP and no login — the password-free bootstrap path
- tests: resolver (8 cases incl. outage-not-fallthrough), db queries (6),
  api middleware integration (valid + revoked token)

Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>

* feat(tools): add owncord-introspect MCP server

A local MCP dev tool that lets Claude Code introspect a running OwnCord
instance: read its logs, query any REST endpoint, and tail the desktop
client's log file. It is a thin wrapper over the existing API plus the
client log — no new product surface.

- tools/mcp-introspect/index.mjs (Node/ESM, one dep: @modelcontextprotocol/sdk)
  exposes api_request (full read-write passthrough), server_logs (admin SSE
  ring-buffer stream), client_logs (reads the desktop log file)
- authenticates with an API token (OWNCORD_API_TOKEN); pins the self-signed
  cert and skips hostname checks (the cert has no SAN)
- registered in .mcp.json (secret-free ${OWNCORD_API_TOKEN})
- un-ignore tools/mcp-introspect/ so this shared dev tool is committed, while
  tools/livekit-server.exe and node_modules stay ignored
- docs/mcp-introspect.md: how it works, tool reference, setup, troubleshooting

Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>

* feat(dependencies): update and add various crate versions in Cargo.lock

* feat(admin): manage API tokens from the admin panel

Add Owner-gated HTTP endpoints and a UI card to create, list, and revoke
API tokens from the web admin panel. Previously only the `server token`
CLI could manage them, which requires shell access to the host.

- POST|GET|DELETE /admin/api/tokens in admin/handlers_tokens.go, wired in
  admin/api.go. All three are Owner-only (ownerOnlyMiddleware, like
  backups/updates): an HTTP token-mint endpoint is a network-reachable
  credential-minting surface, and API tokens deliberately survive password
  change + bulk logout, so a hijacked admin session must not mint one.
- Reuses the same db.*APIToken calls as the CLI; create sources the actor
  from request context (audits who clicked, not the bound user); the raw
  token is returned once in the 201 body, never stored.
- Add json tags to db.APITokenListItem for snake_case wire consistency.
- Admin panel: "API Tokens" nav item + create modal, show-once reveal,
  revoke confirm in admin/static/index.html.
- Tests: 7 in admin/api_test.go (+api_tokens table in the in-memory schema).

Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>

* refactor: modernize to Go 1.26 idioms + enable modernize linter

Apply `golangci-lint modernize` autofixes across the server and enable the
linter in .golangci.yml so these stop re-accumulating (they built up only
because modernize was never in the config).

Production code: slices.Contains for hand-rolled membership loops (api
router, ws origin, db/account, plugin manifest); strings.SplitSeq for
allocation-free line/segment iteration (db/migrate, updater, livekit_proxy);
strings.Cut (config); fmt.Appendf (dm_handler); min() (event_pruner);
any (ws client). Tests: range-over-int, t.Context(), WaitGroup.Go,
slices.Sort, maps.Copy, new(expr), interface{}->any.

- plugin/manifest.go parent-traversal check applied by hand: modernize
  skipped it (two conflicting rewrites); used the slices.Contains form.
- Removed the now-dead ptr() test helper after newexpr inlined its callers.
- Dropped dangling sort imports left by the sort.Slice->slices.Sort rewrite.

No behavior change. All four tag variants build, full test suite is green,
and golangci-lint (with modernize enabled) reports 0 issues.

Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>

---------

Co-authored-by: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
2026-07-29 13:25:46 +02:00

162 lines
4.9 KiB
Go

// Pass 4 follow-up — event pruner unit tests.
//
// Covers runPrune correctness (cutoff calculation + error path) and the
// StartEventPruner goroutine lifecycle (nil store short-circuit, ctx
// cancellation, startup-delay-bounded-by-interval behaviour introduced
// in the Copilot review fix).
package ws
import (
"context"
"errors"
"sync"
"sync/atomic"
"testing"
"time"
"github.com/owncord/server/db"
)
// fakeEventStore is a minimal EventStore stub that records every prune
// call and optionally returns a canned error. Only the methods actually
// exercised by the pruner are implemented; the rest panic so an accidental
// code path change is noisy.
type fakeEventStore struct {
mu sync.Mutex
pruneCalls int
lastCutoff time.Time
pruneReturn int64
pruneErr error
pruneSignal chan struct{} // closed (via atomic swap) once a prune happens
pruneDone atomic.Bool
}
func (f *fakeEventStore) PruneEventsOlderThan(_ context.Context, cutoff time.Time) (int64, error) {
f.mu.Lock()
f.pruneCalls++
f.lastCutoff = cutoff
ret := f.pruneReturn
err := f.pruneErr
f.mu.Unlock()
if !f.pruneDone.Swap(true) && f.pruneSignal != nil {
close(f.pruneSignal)
}
return ret, err
}
func (f *fakeEventStore) Calls() int {
f.mu.Lock()
defer f.mu.Unlock()
return f.pruneCalls
}
func (f *fakeEventStore) LastCutoff() time.Time {
f.mu.Lock()
defer f.mu.Unlock()
return f.lastCutoff
}
// Stubs for the rest of the EventStore interface — not exercised here.
func (*fakeEventStore) PersistEvent(context.Context, int64, string, int64, []byte) error {
panic("unused")
}
func (*fakeEventStore) GetEventsSince(context.Context, int64, int) ([]db.PersistedEvent, error) {
panic("unused")
}
func (*fakeEventStore) GetEventsSinceForChannels(context.Context, int64, []int64, int) ([]db.PersistedEvent, error) {
panic("unused")
}
func (*fakeEventStore) GetMaxEventSeq(context.Context) (int64, error) {
panic("unused")
}
func TestRunPruneCutoffCalculation(t *testing.T) {
s := &fakeEventStore{pruneReturn: 3}
retention := 24 * time.Hour
before := time.Now()
runPrune(context.Background(), s, retention)
after := time.Now()
if s.Calls() != 1 {
t.Fatalf("expected 1 prune call, got %d", s.Calls())
}
cutoff := s.LastCutoff()
// cutoff must be in the window [before - retention, after - retention].
minCutoff := before.Add(-retention)
maxCutoff := after.Add(-retention)
if cutoff.Before(minCutoff) || cutoff.After(maxCutoff) {
t.Errorf("cutoff %v not in expected window [%v, %v]", cutoff, minCutoff, maxCutoff)
}
}
func TestRunPruneErrorDoesNotPanic(t *testing.T) {
s := &fakeEventStore{pruneErr: errors.New("boom")}
// Must not panic, must not propagate — error is logged and swallowed
// so the background goroutine keeps ticking.
runPrune(context.Background(), s, time.Hour)
if s.Calls() != 1 {
t.Fatalf("expected 1 prune call even on error, got %d", s.Calls())
}
}
func TestStartEventPrunerNilStoreIsNoop(t *testing.T) {
// Should not spawn a goroutine, should not panic.
ctx := t.Context()
StartEventPruner(ctx, nil, time.Hour, time.Hour)
// If the nil check were missing, calling PruneEventsOlderThan on nil
// would panic inside the goroutine — but since we don't spawn one,
// there's nothing to assert beyond "we got here".
}
func TestStartEventPrunerContextCancellation(t *testing.T) {
s := &fakeEventStore{pruneSignal: make(chan struct{})}
ctx, cancel := context.WithCancel(context.Background())
// Short interval so startup delay is bounded to the interval (50ms).
StartEventPruner(ctx, s, time.Hour, 50*time.Millisecond)
// Wait for the first prune to happen so we know the goroutine started.
select {
case <-s.pruneSignal:
case <-time.After(2 * time.Second):
t.Fatal("pruner did not run within 2s")
}
// Cancel and give the goroutine a moment to exit. There's no direct
// handle to join on, but we can verify no further prunes happen after
// a grace period.
cancel()
time.Sleep(150 * time.Millisecond)
callsAfterCancel := s.Calls()
time.Sleep(200 * time.Millisecond)
if s.Calls() != callsAfterCancel {
t.Errorf("pruner kept running after ctx cancel: %d -> %d calls", callsAfterCancel, s.Calls())
}
}
func TestStartEventPrunerStartupDelayBoundedByInterval(t *testing.T) {
// With interval=20ms and the uncapped startup delay of 1 minute, the
// test would have to wait a full minute for the first prune. The
// Copilot-review fix caps the startup delay at min(interval, 1min),
// so with interval=20ms the first prune happens within ~20ms.
s := &fakeEventStore{pruneSignal: make(chan struct{})}
ctx := t.Context()
start := time.Now()
StartEventPruner(ctx, s, time.Hour, 20*time.Millisecond)
select {
case <-s.pruneSignal:
elapsed := time.Since(start)
if elapsed > 500*time.Millisecond {
t.Errorf("startup delay not bounded by interval: first prune took %v", elapsed)
}
case <-time.After(2 * time.Second):
t.Fatal("pruner did not run within 2s — startup delay likely not bounded")
}
}