Files
OwnCord/Server/main.go
T
J3vbandClaude Opus 5 ea0430c5b0 fix: batch of correctness fixes across server and client (#1375)
* fix(client): 1 defect(s) (OC-0201)

* fix(service): 1 defect(s) (OC-0202)

HandleTyping built the per-user-per-channel rate-limit key before resolving the channel or checking read permission, so forged channel ids could pin unbounded dead entries in the shared process-wide RateLimiter.

* fix(client): 2 defect(s) (OC-0203, OC-0224)

* fix(server): 1 defect(s) (OC-0204)

* fix(ws): 2 defect(s) (OC-0205, OC-0211)

* fix(admin): 2 defect(s) (OC-0209, OC-0212)

* fix(client): 1 defect(s) (OC-0210)

* fix(db): 1 defect(s) (OC-0213)

* fix(ws): 1 defect(s) (OC-0214)

Route handler-driven PresenceEvent through BroadcastToAll instead of BroadcastToAllLow so every source of a user's presence shares one ordered per-client FIFO.

* fix(admin): 1 defect(s) (OC-0215)

PATCH /users/{id} combining banned + role_id committed and broadcast the ban before authorizing the role change, so a refused role change returned an error while leaving the target banned. Authorize the role change up front via the new ModerationService.AuthorizeRoleChange.

* fix(db): 1 defect(s) (OC-0216)

LinkAttachmentsToMessage no longer claims an attachment that is a user's live avatar (users.avatar points at it). Once message_id is set, handleServeFile's avatar branch (gated on ChannelID == nil) is unreachable and the file falls under the message's channel ACL / soft-delete state, permanently disagreeing with users.avatar about who may read it.

* fix(emoji): 1 defect(s) (OC-0217)

* fix(client): 1 defect(s) (OC-0218)

The data-copy phase of an HTTP proxy tunnel was unbounded. Steps 1-2 of
handle_connection (header read, TCP connect, TLS handshake) each run under
a 10s guard, but step 3 called io::copy_bidirectional with no deadline. A
remote that completes the TLS handshake and then neither responds nor
closes parks the spawned connection task, the loopback socket and the
remote TLS session indefinitely: copy_bidirectional only resolves once
BOTH directions finish, so closing the local side alone does not free it.

Wrap the copy in copy_with_deadline, a generic helper bounded by
DATA_PHASE_TIMEOUT (600s). The bound is deliberately far looser than the
10s setup guards because this phase carries the REST body, including
attachment and avatar uploads, so it must reclaim only genuinely stuck
connections rather than merely slow ones. The helper is generic over the
stream types so it can be exercised without a live TLS connection.

Regression test drives two in-memory duplex pairs whose far ends stay
alive, so neither half ever observes EOF and raw copy_bidirectional would
block forever; the test asserts the call resolves on its own deadline with
ErrorKind::TimedOut.

Claude-Session: https://claude.ai/code/session_01ENMDTh8gDLiHCaRFdMYRiL

* fix(ws): 1 defect(s) (OC-0219)

* fix(client): 1 defect(s) (OC-0221)

UpdateNotifier scheduled its deferred update check with a setTimeout whose
handle was never retained, so destroy() could not cancel it. A component torn
down inside the 3s window (page swap / logout) still fired performCheck() and
issued a network update check against the old server URL. Retain the timer
handle and clear it in destroy().

* fix(dm): 1 defect(s) (OC-0222)

* fix(client): 1 defect(s) (OC-0223)

* fix(voice): 1 defect(s) (OC-0225)

The Grant-Microphone retry's .finally hardcoded grantMicBtn.disabled = false, undoing updateFrozen()'s socket-down freeze when the WS socket dropped while the mic permission request was in flight. Delegate the state back to render().

* fix(admin): 1 defect(s) (OC-0226)

handleApplyUpdate broadcasts a 'restarting in 5s' notice before the on-disk
swap. Every failure path in the swap returned silently, leaving clients
counting down to a restart that never happened. Extract the swap into
applyStagedUpdate and send a corrective 'update_aborted' broadcast from a
deferred guard on every path that does not reach the respawn.

* fix(admin): 1 defect(s) (OC-0227)

PATCH /channels/{id} accepted a blank or whitespace-only name, leaving the
channel unidentifiable in clients. updateChannelRequest.validate() now
rejects it the way handleCreateChannel already did.

* fix(identity): 1 defect(s) (OC-0228)

* fix(admin): run deferred cleanup before the update restart exits

The fix batch left three golangci-lint findings and two prettier findings
that CI gates on.

applyStagedUpdate called os.Exit(0) in the same function that defers both
staged.Close() and the corrective "update_aborted" broadcast, so neither
ran (gocritic exitAfterDefer). Return a bool instead and let the caller
exit once those defers have run — on Windows, releasing the staged binary's
file handle is the reason the restart exists at all, so this is a real fix
rather than a lint appeasement. The exported test hook calls the function as
a statement, so the added result does not affect it.

Also modernize a bulk-insert loop to range-over-int, compare backup bytes
with bytes.Equal, and reflow two test files to prettier's output.

Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_01ENMDTh8gDLiHCaRFdMYRiL

* test(ws): pin the live presence path against the invisible custom-status leak

OC-0207 and OC-0211 are the same defect at two emitters: hub_broadcast.go's
BroadcastPresence (connect/reconnect) and event.go's presenceEvents (live
presence_update). The fix for OC-0211 closed both sites in one change, but
only the hub_broadcast side got a regression test.

This pins the event.go sibling: an invisible user's real custom status must
be blanked on the PresenceOthersEvent frame while the owner's own
PresenceSelfEvent still carries it. Without it, a later change could reopen
the live path while the committed test kept passing.

Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_01ENMDTh8gDLiHCaRFdMYRiL

* fix(ws): 1 defect(s) (OC-0206)

* test(ws): silence a contextcheck false positive in the reconnect race test

RefreshChannelVisibility takes no context by design — it is reached through
the admin HubBroadcaster interface, which carries none, so it builds its own
internally. contextcheck flags the call only because the test closure around
it holds a ctx for its override write, so there is nothing to propagate.
Suppress at the call site rather than widen a production interface (and its
mocks) to satisfy a lint in a test.

golangci-lint v2.11.3 (the version ci.yml pins) now reports 0 issues.

Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_01ENMDTh8gDLiHCaRFdMYRiL

---------

Co-authored-by: Claude <noreply@anthropic.com>
2026-08-15 16:30:05 +02:00

522 lines
20 KiB
Go

// OwnCord chat server — self-hosted, Windows-native.
// Build: go build -o chatserver.exe -ldflags "-s -w -X main.version=1.0.0" .
package main
import (
"context"
"errors"
"fmt"
"io"
stdlog "log"
"log/slog"
"net"
"net/http"
"os"
"os/signal"
"runtime"
"strings"
"syscall"
"time"
"github.com/owncord/server/admin"
"github.com/owncord/server/api"
"github.com/owncord/server/auth"
"github.com/owncord/server/config"
"github.com/owncord/server/db"
"github.com/owncord/server/logctx"
"github.com/owncord/server/plugin"
"github.com/owncord/server/storage"
"github.com/owncord/server/telemetry"
"github.com/owncord/server/ws"
)
// version is overridden at build time via -ldflags "-X main.version=1.0.0".
var version = "dev"
func main() {
// `server token ...` is a direct-to-DB CLI (mint/list/revoke API tokens) —
// handled before any server/logging setup so it stays quiet and standalone.
if len(os.Args) > 1 && os.Args[1] == "token" {
os.Exit(runTokenCLI(os.Args[2:]))
}
// Create ring buffer for admin log viewer, then build a multi-handler
// that tees log records to both stdout and the ring buffer.
logBuf := admin.NewRingBuffer(2000)
// levelVar controls both handlers' thresholds. It starts at INFO (the
// zero value) so early-startup logs are captured, then run() raises/lowers
// it once config.yaml / OWNCORD_LOGGING_LEVEL is loaded. The ring buffer
// shares it rather than hard-wiring DEBUG: with both sinks gated, Enabled
// returns false for suppressed levels and every gated Debug call across
// the server becomes a no-op instead of formatting a ring entry.
levelVar := new(slog.LevelVar)
stdoutHandler := slog.NewTextHandler(os.Stdout, &slog.HandlerOptions{Level: levelVar})
multiHandler := admin.NewMultiHandler(stdoutHandler, logBuf, levelVar)
// logctx enriches records logged with a request/trace context (the
// ...Context slog variants) with req_id and, under -tags otel, trace_id.
log := slog.New(logctx.New(multiHandler))
slog.SetDefault(log)
if err := run(log, logBuf, levelVar); err != nil {
_, _ = fmt.Fprintf(os.Stderr, "\n [ERROR] %v\n\n", err)
log.Error("server exited with error", "error", err)
os.Exit(1)
}
}
// run is the real entrypoint — separated for testability.
func run(log *slog.Logger, logBuf *admin.RingBuffer, levelVar *slog.LevelVar) error {
// bgCtx is a cancellable context shared by all background goroutines
// (event persister, event pruner, plugin loader, maintenance loop).
// It is cancelled early in the shutdown sequence so in-flight DB
// operations do not block after the database is being torn down.
bgCtx, bgCancel := context.WithCancel(context.Background())
defer bgCancel()
// Clean up old binary from a previous update.
exePath, exeErr := os.Executable()
if exeErr != nil {
log.Warn("failed to determine executable path", "error", exeErr)
} else {
oldPath := exePath + ".old"
if _, statErr := os.Stat(oldPath); statErr == nil {
if rmErr := os.Remove(oldPath); rmErr != nil {
log.Warn("failed to remove old binary", "path", oldPath, "error", rmErr)
} else {
log.Info("removed old binary from previous update", "path", oldPath)
}
}
}
// ── 1. Load configuration ──────────────────────────────────────────────
cfg, err := config.Load(config.DefaultPath)
if err != nil {
return fmt.Errorf("loading config: %w", err)
}
// Apply the configured log level. The admin panel's live log view (ring
// buffer) follows the same threshold — set logging.level to "debug" to
// capture debug records there.
if lvl, ok := config.ParseLevel(cfg.Logging.Level); ok {
levelVar.Set(lvl)
} else {
log.Warn("unknown logging.level, keeping info", "value", cfg.Logging.Level)
}
// ── 2. Ensure data directory exists ────────────────────────────────────
if mkdirErr := os.MkdirAll(cfg.Server.DataDir, 0o750); mkdirErr != nil {
return fmt.Errorf("creating data dir %s: %w", cfg.Server.DataDir, mkdirErr)
}
// ── 3. TLS ────────────────────────────────────────────────────────────
tlsResult, err := auth.LoadOrGenerate(cfg.TLS)
if err != nil {
return fmt.Errorf("configuring TLS: %w", err)
}
tlsCfg := tlsResult.TLSConfig
// Print startup banner first so it appears above all init logs.
printBanner(cfg, version, tlsCfg != nil)
// ── 4. Open database + run migrations ─────────────────────────────────
// SQLite is the only supported backend; the unfinished Postgres
// scaffolding (stubbed query layer, never wired into the runtime) was
// removed rather than completed.
if t := cfg.Database.Type; t != "" && t != "sqlite" {
return fmt.Errorf("database.type=%q is not supported; set \"sqlite\" or omit it", t)
}
database, err := db.Open(cfg.Database.Path)
if err != nil {
return fmt.Errorf("opening database: %w", err)
}
defer database.Close() //nolint:errcheck
// The admin "Restore backup" handler needs the real database file path:
// without this, it falls back to a hardcoded "data/chatserver.db" and
// silently no-ops on any server with a configured database.path.
admin.SetDatabasePath(cfg.Database.Path)
if err := db.Migrate(database); err != nil {
return fmt.Errorf("running migrations: %w", err)
}
// Clear stale state from a previous run or crash. Startup work — nothing
// to inherit a context from yet.
if err := database.ResetAllUserStatuses(context.Background()); err != nil {
log.Warn("failed to reset stale user statuses", "error", err)
} else {
log.Info("reset all user statuses to offline")
}
if err := database.ClearAllVoiceStates(context.Background()); err != nil {
log.Warn("failed to clear stale voice states", "error", err)
} else {
log.Info("cleared stale voice states")
}
// ── 4b. Telemetry (Phase B Step 8) ─────────────────────────────────────
// Init can return (nil, err) when the otel build-tag skeleton hasn't been
// finished wiring to the upstream SDK. Normalise to a no-op shutdown so
// the deferred closure never calls a nil function.
telemetryShutdown, telErr := telemetry.Init(context.Background(), cfg.Telemetry)
if telErr != nil {
log.Warn("telemetry init failed; continuing without OpenTelemetry", "error", telErr)
}
if telemetryShutdown == nil {
telemetryShutdown = func(context.Context) error { return nil }
}
defer func() {
shutdownCtx, cancel := context.WithTimeout(context.Background(), 5*time.Second)
defer cancel()
if err := telemetryShutdown(shutdownCtx); err != nil {
log.Warn("telemetry shutdown returned error", "error", err)
}
}()
// ── 5a. Construct plugin runtime BEFORE the router so the router can
// wire the live registry into the plugin admin handler. ────────────────
var pluginRegistry *plugin.Registry
if cfg.Plugins.Enabled {
registry, plugErr := plugin.NewRegistry(plugin.Config{
Directory: cfg.Plugins.Directory,
MaxMemoryMB: cfg.Plugins.MaxMemoryMB,
CPUBudgetMs: cfg.Plugins.CPUBudgetMs,
HTTPAllowlist: cfg.Plugins.HTTPAllowlist,
Store: database,
})
if plugErr != nil {
log.Warn("plugin runtime init failed; continuing without plugins", "error", plugErr)
} else {
pluginRegistry = registry
if err := registry.LoadAll(bgCtx); err != nil {
log.Warn("plugin loader: failed to scan directory", "error", err)
}
defer func() {
closeCtx, cancel := context.WithTimeout(context.Background(), 5*time.Second)
defer cancel()
_ = registry.Close(closeCtx)
}()
}
}
// ── 5b. Build HTTP router ──────────────────────────────────────────────
router, hub, routerCleanup := api.NewRouter(cfg, database, version, logBuf, pluginRegistry)
defer routerCleanup()
// Backstop for every early return below (serve error, ACME shutdown
// failure, etc.): hub.GracefulStop is the only caller of
// LiveKitProcess.Stop(), so skipping it orphans the companion
// livekit-server process and leaves the hub's dispatch goroutine
// running. gracefulOnce makes it idempotent alongside the explicit call
// on the normal shutdown path below.
defer hub.GracefulStop()
// ── 5c. Wire event persistence (Phase B Step 7) ────────────────────────
if cfg.EventPersistence.Enabled && hub != nil {
seedHubReplayState(bgCtx, hub, database, log)
persister := ws.NewEventPersister(
database,
4096,
cfg.EventPersistence.BatchSize,
time.Duration(cfg.EventPersistence.BatchFlushMs)*time.Millisecond,
)
persister.Start(bgCtx)
hub.SetEventPersister(persister)
hub.SetEventStore(database)
retention := time.Duration(cfg.EventPersistence.RetentionHours) * time.Hour
prunerInterval := time.Duration(cfg.EventPersistence.PrunerIntervalMinutes) * time.Minute
ws.StartEventPruner(bgCtx, database, retention, prunerInterval)
defer func() {
stopCtx, stopCancel := context.WithTimeout(context.Background(), 5*time.Second)
defer stopCancel()
persister.Stop(stopCtx)
}()
}
// ── 5d. Async audit writer ─────────────────────────────────────────────
// Moves audit-log INSERTs off the request path: once the writer is
// installed, WriteAudit enqueues here and a background goroutine batches
// the writes (same shape as the event persister above). Paths that never
// install a writer — the token CLI, tests — keep the synchronous
// behavior. This defer is registered after `defer database.Close()` so
// LIFO ordering drains the queue before the database is torn down.
auditWriter := db.NewAuditWriter(database, 1024, 50, 100*time.Millisecond)
auditWriter.Start(bgCtx)
database.SetAuditWriter(auditWriter)
defer func() {
stopCtx, stopCancel := context.WithTimeout(context.Background(), 5*time.Second)
defer stopCancel()
auditWriter.Stop(stopCtx)
}()
// ── 6. Start server ────────────────────────────────────────────────────
addr := fmt.Sprintf(":%d", cfg.Server.Port)
srv := &http.Server{
Addr: addr,
Handler: router,
TLSConfig: tlsCfg,
ReadTimeout: 30 * time.Second,
WriteTimeout: 30 * time.Second,
IdleTimeout: 120 * time.Second,
ErrorLog: stdlog.New(io.Discard, "", 0), // suppress TLS handshake noise
}
// ── 6b. ACME HTTP challenge server on :80 ─────────────────────────────
// When using Let's Encrypt (tls.mode: acme), an HTTP server on port 80
// is needed for HTTP-01 challenge validation and HTTP→HTTPS redirect.
var acmeSrv *http.Server
if tlsResult.HTTPHandler != nil {
acmeSrv = &http.Server{
Addr: ":80",
Handler: tlsResult.HTTPHandler,
ReadTimeout: 10 * time.Second,
WriteTimeout: 10 * time.Second,
}
go func() {
log.Info("ACME HTTP challenge server starting on :80")
if err := acmeSrv.ListenAndServe(); err != nil && !errors.Is(err, http.ErrServerClosed) {
log.Error("ACME HTTP server error", "error", err)
}
}()
}
// ── 7. Background maintenance ────────────────────────────────────────
// Periodically purge expired sessions and orphaned attachments.
fileStorage, fileStorageErr := storage.New(cfg.Upload.StorageDir, cfg.Upload.MaxSizeMB)
if fileStorageErr != nil {
log.Warn("failed to create file storage for maintenance; orphan file cleanup disabled", "error", fileStorageErr)
}
stopMaintenance := make(chan struct{})
defer close(stopMaintenance) // backstop for early returns below; see hub.GracefulStop defer above
go func() {
ticker := time.NewTicker(15 * time.Minute)
defer ticker.Stop()
consecutiveFailures := 0
const maxConsecutiveFailures = 5
for {
select {
case <-ticker.C:
if consecutiveFailures >= maxConsecutiveFailures {
log.Error("maintenance loop: circuit breaker open, skipping tick",
"consecutive_failures", consecutiveFailures)
// Reset after one skip to allow retry next tick.
consecutiveFailures = maxConsecutiveFailures - 1
continue
}
tickFailed := false
if err := database.DeleteExpiredSessions(bgCtx); err != nil {
log.Warn("failed to delete expired sessions", "error", err)
tickFailed = true
}
// Clean up orphaned attachments (uploaded but never linked to a message).
//
// Skipped entirely with no file storage configured: the delete is
// atomic (row goes the instant it's selected, by design — see
// db/attachment_queries.go), so with fileStorage nil the returned
// stored_as names — the only remaining handle on those blobs —
// would just be discarded and the files stranded on disk with no
// query left able to name them. Leaving the rows in place keeps
// them reclaimable once storage is available again.
if fileStorage != nil {
cutoff := time.Now().Add(-1 * time.Hour)
orphanFiles, orphanErr := database.DeleteOrphanedAttachments(bgCtx, cutoff)
if orphanErr != nil {
log.Warn("failed to delete orphaned attachments", "error", orphanErr)
tickFailed = true
} else if len(orphanFiles) > 0 {
// Best-effort file cleanup.
for _, filename := range orphanFiles {
if delErr := fileStorage.Delete(filename); delErr != nil {
log.Warn("failed to delete orphan file", "file", filename, "error", delErr)
}
}
log.Info("cleaned up orphaned attachments", "count", len(orphanFiles))
}
}
if tickFailed {
consecutiveFailures++
} else {
consecutiveFailures = 0
}
case <-stopMaintenance:
return
}
}
}()
// Listen for OS signals for graceful shutdown.
ctx, stop := signal.NotifyContext(context.Background(), os.Interrupt, syscall.SIGTERM)
defer stop()
// Start serving in a goroutine.
serveErr := make(chan error, 1)
go func() {
log.Info("server starting", "addr", addr, "tls", tlsCfg != nil, "version", version)
for attempt := range 20 {
var listenErr error
if tlsCfg != nil {
listenErr = srv.ListenAndServeTLS("", "")
} else {
listenErr = srv.ListenAndServe()
}
if listenErr != nil && !errors.Is(listenErr, http.ErrServerClosed) {
// Check if it's an "address already in use" error (port not released yet from old process)
if attempt < 19 && isAddrInUse(listenErr) {
log.Warn("port in use, retrying...", "attempt", attempt+1, "error", listenErr)
time.Sleep(500 * time.Millisecond)
continue
}
serveErr <- listenErr
}
break
}
close(serveErr)
}()
// Wait for shutdown signal or server error.
select {
case err := <-serveErr:
if err != nil {
return fmt.Errorf("server error: %w", err)
}
case <-ctx.Done():
log.Info("shutdown signal received, draining connections (30s timeout)")
}
// Graceful shutdown.
shutdownCtx, cancel := context.WithTimeout(context.Background(), 30*time.Second)
defer cancel()
if acmeSrv != nil {
if err := acmeSrv.Shutdown(shutdownCtx); err != nil {
log.Warn("ACME HTTP server shutdown error", "error", err)
}
}
// Stop the WebSocket hub: close all PeerConnections, voice rooms, and
// notify connected clients before draining HTTP connections.
hub.GracefulStop()
if err := srv.Shutdown(shutdownCtx); err != nil {
return fmt.Errorf("graceful shutdown: %w", err)
}
log.Info("server stopped cleanly")
return nil
}
// seedHubReplayState restores the hub's monotonic seq counter from the
// persisted MAX(events.seq) so wrapped-payload seqs stay monotonic across
// restarts. Without this, the events table accumulates rows whose payload
// seqs reset to 1 after every restart, breaking the reconnect "events since
// last_seq" contract.
//
// It also forces every client resuming from at or before that restored seq
// onto the full-ready path for this boot. h.seq is persisted and restored
// here, but the paired watermark that tells a resuming client whether a
// channel-visibility change happened since its last_seq
// (visibilityChangeSeq) is in-memory only and always starts at 0 on a fresh
// process — see ws/hub_events.go's mustFullResync. Channel-visibility
// changes made to an offline client (RefreshChannelVisibility,
// revokeUnreadableChannels) are sent as targeted, unsequenced messages that
// are never written to the events table, so replay can never recover them.
// Without the MarkVisibilityChanged call below, a client resuming with
// last_seq at or before the pre-restart max sails straight through
// mustFullResync's zeroed watermark and can silently miss a visibility
// change it should have converged on.
func seedHubReplayState(ctx context.Context, hub *ws.Hub, database *db.DB, log *slog.Logger) {
maxSeq, seedErr := database.GetMaxEventSeq(ctx)
if seedErr != nil {
log.Warn("event persistence: failed to read MAX(events.seq); starting hub seq from 0", "error", seedErr)
return
}
if maxSeq <= 0 {
return
}
hub.SeedSeq(uint64(maxSeq))
log.Info("event persistence: seeded hub seq from persisted events", "seq", maxSeq)
hub.MarkVisibilityChanged()
}
// isAddrInUse checks if an error is an "address already in use" error.
func isAddrInUse(err error) bool {
return err != nil && (strings.Contains(err.Error(), "address already in use") || strings.Contains(err.Error(), "Only one usage of each socket address"))
}
// printBanner writes the startup banner to stderr (so it doesn't mix with
// the structured log output on stdout).
func printBanner(cfg *config.Config, ver string, tls bool) {
scheme := "http"
if tls {
scheme = "https"
}
localIP := getOutboundIP()
port := cfg.Server.Port
baseURL := fmt.Sprintf("%s://%s:%d", scheme, localIP, port)
adminURL := baseURL + "/admin"
tlsStatus := "disabled"
if tls {
tlsStatus = "enabled"
}
banner := fmt.Sprintf(`
___ ____ _
/ _ \__ ___ __ / ___|___ _ __ __| |
| | | \ \ /\ / / '_ \| | / _ \| '__/ _`+"`"+` |
| |_| |\ V V /| | | | |__| (_) | | | (_| |
\___/ \_/\_/ |_| |_|\____\___/|_| \__,_|
─────────────────────────────────────────────
Server %s
Version %s
TLS %s
Platform %s/%s
─────────────────────────────────────────────
API %s/api/v1/info
WebSocket %s/api/v1/ws
Admin %s
Health %s/health
─────────────────────────────────────────────
Press Ctrl+C to stop the server.
`, cfg.Server.Name, ver, tlsStatus, runtime.GOOS, runtime.GOARCH,
baseURL, wsURL(scheme, localIP, port), adminURL, baseURL)
_, _ = fmt.Fprint(os.Stderr, banner)
}
// wsURL builds the WebSocket URL with the correct scheme.
func wsURL(httpScheme, ip string, port int) string {
ws := "ws"
if httpScheme == "https" {
ws = "wss"
}
return fmt.Sprintf("%s://%s:%d", ws, ip, port)
}
// getOutboundIP returns the preferred outbound IP of this machine by dialing
// a known external address (no actual connection is made with UDP).
func getOutboundIP() string {
conn, err := net.Dial("udp", "8.8.8.8:80")
if err != nil {
return "localhost"
}
defer conn.Close() //nolint:errcheck
addr, ok := conn.LocalAddr().(*net.UDPAddr)
if !ok {
slog.Warn("getOutboundIP: unexpected LocalAddr type, falling back to localhost",
"type", fmt.Sprintf("%T", conn.LocalAddr()))
return "localhost"
}
return addr.IP.String()
}