Files
OwnCord/Server/api/profile_handler.go
T
J3vbandClaude Opus 5 39551de4a6 refactor(server): work off the complexity backlog — 62 findings to 0 (#1389)
* refactor(ws): split handleVoiceJoin into cohesive join-stage helpers

handleVoiceJoin was 130 statements / cyclomatic 59 / nestif 11, breaking all
three complexity budgets at once. Split along the stage boundaries the doc
comment already described: precheck, leave-current, persist, restore
moderator flags, grant token, complete. The publish-permission derivation
becomes its own helper because it is the one branch-heavy block inside the
token grant.

Pure move: every statement is preserved verbatim. The only edits are bare
`return`s becoming the typed returns of their new helper, `c.userID` becoming
the `userID` parameter inside voiceJoinPublishPerms, and voiceJoinComplete
re-reading `ch.VoiceMaxUsers` instead of receiving it — `ch` is never mutated,
so the value is identical.

Verified by normalising both revisions of the region to sorted, comment- and
whitespace-stripped statements and diffing: the only deltas are the ones
listed above.

Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>

* refactor: collapse the three duplicated sibling pairs

dupl flagged three pairs of adjacent near-identical functions. Each pair is
now one parameterised implementation plus two thin, still-greppable wrappers.

- ws/voice_controls.go: handleVoiceMuteV2 / handleVoiceDeafenV2 share
  voiceSelfToggleV2; handleVoiceCameraV2 / handleVoiceScreenshareV2 share
  voiceStreamToggleV2. Camera and screenshare drawing from one
  voice_max_video budget (OC-0023) was a bug caused by exactly this
  duplication drifting, so one body is the point, not a side effect.
- db/mention_queries.go: ListMentionTargetsByRoles / ListMentionTargetsByUserIDs
  share listMentionTargets. The matched column is a closed named type
  (mentionTargetColumn) rather than a bare string, so the value interpolated
  into the SELECT cannot become caller-supplied.

Behaviour is unchanged: every rate-limit key, error code, error string, slog
message and slog key is preserved verbatim, including the two "failed to
update <kind> state" messages, which are now assembled the same way
enableVideoSlot already assembled them.

Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>

* refactor(api): extract readEmojiUpload from handleCreateEmoji

handleCreateEmoji was 101 lines against a 100-line budget. The upload-bytes
stage — pull the file out of the parsed form, cap its size, sniff its MIME
type and sniff its dimensions — is the one self-contained block in it, and it
already wrote its own refusals, so it moves out whole as readEmojiUpload.

The permission-before-parse ordering the doc comment calls out is unchanged;
so is every error string. file.Close() now runs when the helper returns
rather than when the handler does, which is strictly earlier and unobservable:
the bytes are already copied into raw and nothing else touches the handle.

Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>

* refactor: extract one cohesive block from three single-budget offenders

Each of these was over exactly one budget, so each gets exactly one extraction
rather than a restructure:

- api/totp_handler.go handleVerifyTOTP (102 lines / 100): the block that
  resolves the user behind the partial-auth challenge and decrypts their TOTP
  secret becomes totpChallengeSecret. The ban-inside-the-partial-window check
  moves with it.
- service/message_reactions.go handleReaction (cyclop 21 / 20): the whole
  authorisation chain — channel lookup, archived gate, DM participant and
  block checks, non-DM permission check — becomes reactionAudience, which
  also returns the DM fan-out audience it already resolved. Check order is
  unchanged and load-bearing.
- db/admin_queries.go BackupToSafe (cyclop 21 / 20): the character allowlist
  loop and the SQL-comment rejection become validateBackupPathChars. That
  loop alone was most of the branch count.

No error string, no check and no ordering changed.

Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>

* refactor(plugin): split InstallFromZip into staged install helpers

104 statements / cyclomatic 44 / nestif 12. Split along the stages the code
already had: installZipExtract (the per-entry write loop, with
installZipEntryDest holding the mode/symlink/zip-slip guard chain and
installZipWriteEntry the size-capped copy), installZipStagedManifest,
installZipPromote, and installZipReactivate for the :399 nested block.

Every zip-slip, symlink, entry-mode and uncompressed-size check is preserved
in the same order relative to the writes it guards. The 19 inline
`cleanup(); return` sites collapse to 4 in the orchestrator, one per stage,
because each helper now returns an error instead of unwinding itself — the
staging directory is still removed on exactly the same set of failures.

Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>

* refactor(api): split newWAFMiddleware into engine build and per-phase helpers

184 lines / cyclomatic 38, and the request-body block at :382 was the worst
nested site in the tree at nestif 17.

Engine construction moves out of the closure (wafInlineEngine, wafCRSEngine —
the Coraza directive string is lifted verbatim), and each request phase
becomes its own helper: wafInlineRequestHeaders, wafCRSRequestHeaders
(including the Host/Transfer-Encoding re-add for CRS 920280), wafFeedCRSBody
and wafInspectRequestBody, which is the old :382 block.

The three `handleWAFInterruption(w, it); return` sites inside the body block
become one: the helper now returns the interruption and the orchestrator
handles it. No statement runs between the two points on either side, so the
verdict is honoured identically — in particular a CRS body interruption still
returns without replacing r.Body.

Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>

* refactor(service): split SendMessage and lift EditMessage's access check

SendMessage was 79 statements / cyclomatic 35 with an 11-deep nested
attachment block at :101; EditMessage was one point over cyclop.

SendMessage becomes sendMessagePrecheck (permission and DM-block gates,
content sanitisation), sendMessageLinkAttachments (the :101 block: attachment
ownership, claim and link) and sendMessageDMSideEffects. EditMessage gets
editMessageCheckAccess and nothing else — one budget over earns one
extraction.

The sanitizeContent fixpoint and the attachment ownership check are unchanged,
as is the order of every gate. The DM side effects run behind
`isDM && !s.sendMessageDMSideEffects(...)`, so a non-DM never enters them;
inside, only the GetDMParticipantIDs failure returns false, matching the one
error the original early-returned on.

Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>

* refactor(admin): split handlePatchUser into per-field apply helpers

106 lines / cyclomatic 29, with the ban block at :154 nested 9 deep.

Each optional field of the partial edit becomes its own helper —
patchUserPrecheck, patchUserAuthorizeRole, patchUserApplyBan (the :154 block,
including the session disconnect and the broadcast) and patchUserApplyRole.
Each returns a bool meaning "keep going"; none of them writes a success
response, so the single response site in the orchestrator is unchanged.

Field application order, the permission-cache invalidation on a role change
and the disconnect-and-broadcast on a ban are all preserved, as are the three
fail-closed `mod == nil` guards, which now sit at the top of their own helper
and still fire on exactly the same conditions.

Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>

* refactor(admin): split handleSetup into first-run setup stages

143 lines / cyclomatic 30, with the optional-wizard block at :219 sitting
exactly on the nestif threshold.

Split into the stages the endpoint already had: request gating (rate limit and
origin check, which run before any auth exists on a fresh server), owner
account creation, and the wizard application that was the :219 block.

Every gate in front of the handler is a security control on an unauthenticated
endpoint; none moved relative to the work it protects. setup_wizard.go is
untouched.

Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>

* refactor: split run() into named bootstrap and shutdown steps

131 statements / cyclomatic 57, with the executable-path fallback at :126
nested 9 deep.

The five anonymous `defer func(){...}()` blocks become named functions —
telemetryStop, runClosePlugins, runStopEventPersistence, runStopAuditWriter,
maintenanceStop — and the bootstrap stages move out likewise.

Every defer is still registered in run() itself, at the same point in the
sequence, so the LIFO teardown order is unchanged; that order is documented
in the surrounding comments and is load-bearing (the audit-writer stop must
follow database.Close's registration, the event-persistence stop must precede
it). runStopEventPersistence is now registered unconditionally with a nil
persister meaning "disabled", where the old code registered its defer inside
the enabled branch — a no-op occupying that slot cannot change the relative
order of the others.

Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>

* refactor(ws): split handleReconnect into resume stages

77 statements / cyclomatic 41, plus the replay block at :199 and, in
handleFreshConnect, the voice-state restore at :622.

handleReconnect becomes reconnectPrecheck, reconnectSelectReplay (with
reconnectVetColdTail for the cold-tier gap check), reconnectRegister and
reconnectWriteReplay. handleFreshConnect's stale-voice cleanup moves to its
own helper, where the `if h.livekit != nil` wrapper becomes a guard clause —
that block was the tail of its scope, so returning early and falling off the
end are the same.

The parts that carry the invariants are moved verbatim: reconnectRegister
still takes h.seqMu, still calls registerNow inside that same critical
section (BUG-123 / OC-0206), still unlocks on every exit, and still emits the
"full" tier counter and telemetry on each of its three re-check failures.
handleReconnect's two-boolean contract is unchanged — the collapsed
`return false, false` sites are all fall-through-to-full-ready, and the
single `return true, false` is still the handshake-write-failure path whose
teardown already ran (OC-0051).

Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>

* docs(server): fold in the adversarial review of the complexity refactors

Eleven skeptic passes over the refactor commits on this branch found no
blocker and no major — behaviour is preserved throughout. They did find
comment and accuracy defects worth correcting:

- db/mention_queries.go: the mentionTargetColumn rationale claimed the named
  type made the interpolated column "only ever one of the two constants". A
  Go named type is not closed, so that is a convention the type makes visible,
  not one it enforces. Reworded, gosec justification included.
- ws/voice_controls.go: the dupl collapse generalised away three specifics —
  that a server deafen is the moderator's to lift (now on the serverDeafen
  field), the concrete voice_states.camera / voice_states.screenshare column
  names, and the half of the OC-0023 rationale about neither stream kind
  hiding from the other's count. All three restored.
- ws/voice_join.go: `maxUsers := ch.VoiceMaxUsers` had been hoisted to the top
  of voiceJoinComplete, moving a read across the tail supersession guard. The
  read is inert, but it was the one statement in that commit whose position
  relative to a security guard changed; it now sits at its use, as before.
- ws/*_test.go: three test comments cited voice_join.go line numbers that the
  split invalidated. They now cite the helper by name instead.
- service/message_reactions.go: reactionAudience's doc claimed to enforce
  "every gate on reacting"; it enforces the channel-scoped ones, and the doc
  now says which gates stay with the caller.
- api/emoji_handler.go: the readEmojiUpload call reused the outer `ok` from
  the auth check by assignment; it gets its own readOK.
- admin/setup_handler.go: a moved comment kept a "the response above" deictic
  that no longer had a response above it.

No behaviour change. Build, vet, full tests and -race on five packages green.

Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>

* refactor(ws): clear the remaining complexity budgets across the hub

Eight files, thirteen findings. Each function is split at the stages it
already had; no branch is reordered, merged or inverted.

- handlers.go handleMessage (cyclop 28, 88 stmts): session re-check, frame
  decode and result application become handleMessageSessionRecheck,
  handleMessageDecode and handleMessageApply. The V2 constructor lookup ->
  DispatchV2 -> Result resolution order is untouched.
- serve_ready.go buildReady (cyclop 26, 61 stmts): the per-section fetches
  split out, readyChannelPayloads among them. Every visibility predicate is
  preserved verbatim — this is the payload that decides what a client may see.
- serve_pumps.go writePump (cyclop 31): writePumpWrite, writePumpDeliver,
  writePumpDrainChannel and writePumpDrainAndClose. Every channel receive
  stays in the same select statement, so scheduling is unchanged.
- hub_sweep.go sweepStaleVoiceStates (cyclop 22, 56 stmts): the staleness
  predicate, the hub-lock ordering and the position of the race hook are all
  as they were — handleVoiceJoin's BUG-088 ordering depends on them.
- hub_broadcast.go channelReadAudienceImpl and RefreshChannelVisibility
  (cyclop 22 each, 57 stmts): channelReadAudienceDM and
  refreshChannelVisibilityCanSend. The audience predicate is the OC-0090
  group-DM leak surface, so it is extracted, never simplified.
- livekit_webhook.go (nestif 13 and 14): webhookJoinedEnforceVoiceState,
  webhookLeftCleanupClient and webhookLeftFinishLeave. DB delete still
  precedes broadcast on every path.
- livekit_download.go EnsureLiveKitBinary (52 stmts): one extraction,
  ensureLiveKitStageBinary, keeping every archive path check intact.
- voice_moderation.go (nestif 8): voiceModDeafenRollback. The persisted
  server_muted flag remains the authority.

Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>

* refactor(api): clear the remaining complexity budgets across the HTTP layer

- router.go NewRouter (cyclop 28, 84 stmts): split by wiring concern into
  routerTOTPKey, routerHealthDeps, routerMiddleware, routerUploadRoutes,
  routerPluginWiring, routerVoiceRoutes and routerMetricsRoutes. Middleware
  ORDER is a security property (auth before handler, WAF before body parse,
  rate limit before work) and is unchanged; the returned cleanup func still
  closes over and releases everything it did before.
- auth_handler.go handleRegister (133 lines) and handleLogin (cyclop 21,
  152 lines): registerPolicyGate, registerReadRequest, loginReadRequest and
  loginAuthenticate. The always-compare posture, every rate-limit key, every
  counter reset and the ban-check-versus-password-compare order are all
  preserved — including loginUserFailureThreshold staying unscaled by
  scaledAuthLimit, which is deliberate and commented.
- upload_handler.go handleServeFile (cyclop 31, 128 lines): serveFileResolve
  and serveFileAuthorize. Every header this sets — Content-Disposition
  included, which is what stops a stored file being served as active content —
  is still set with the same value in the same circumstances.
- profile_handler.go handleUploadAvatar (120 lines): avatarUploadReadImage,
  mirroring readEmojiUpload in shape but with the avatar caps and MIME set.
  The two deliberately do not share a helper.

Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>

* refactor: clear the last complexity budgets in db and admin

- db/account.go DeleteAccount (cyclop 28, 55 stmts): grouped by subsystem into
  deleteAccountAdminGuard, deleteAccountDMChannels and
  deleteAccountCloseDMChannels, each taking the same transaction. The
  transaction boundary, the delete ORDER (which foreign keys depend on) and
  the rollback path are unchanged.
- admin/logstream.go handleLogStream (cyclop 24): logStreamAuthorize. Flush
  cadence, heartbeat and disconnect detection untouched.
- admin/setup_wizard.go validateWizard (cyclop 23): grouped by section into
  wizardValidateIdentity, wizardValidateNetwork and wizardValidateMedia. Every
  message and bound is unchanged — this is the first input-validation boundary
  on a fresh server, before any auth exists.

With this the tree is at zero: golangci-lint run reports 0 issues against the
budgets set in #1384 (funlen 100/50, cyclop 20, nestif 8, dupl 150), with no
//nolint and no exclusion added anywhere.

Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>

---------

Co-authored-by: Claude Opus 5 (1M context) <noreply@anthropic.com>
2026-08-18 20:39:45 +02:00

629 lines
22 KiB
Go

package api
import (
"bytes"
"encoding/base64"
"encoding/json"
"fmt"
"io"
"log/slog"
"net/http"
"net/url"
"strings"
"time"
"unicode"
"github.com/go-chi/chi/v5"
"github.com/google/uuid"
"github.com/owncord/server/auth"
"github.com/owncord/server/db"
"github.com/owncord/server/service"
"github.com/owncord/server/ws"
)
// ─── Request / Response types ────────────────────────────────────────────────
// updateProfileRequest is the JSON body for PATCH /api/v1/users/me.
// identity_public_key, when present, publishes the client's long-term E2EE
// identity public key (F3 voice E2EE TOFU); omitted = leave unchanged.
type updateProfileRequest struct {
Username string `json:"username"`
Avatar *string `json:"avatar"`
IdentityPublicKey *string `json:"identity_public_key"`
// DisplayName and About are omitted = unchanged, "" = cleared. Both are
// sanitized and length-checked in UserService, which is also the path a
// non-REST caller would take.
DisplayName *string `json:"display_name"`
About *string `json:"about"`
}
// changePasswordRequest is the JSON body for PUT /api/v1/users/me/password.
type changePasswordRequest struct {
OldPassword string `json:"old_password"`
NewPassword string `json:"new_password"`
}
// sessionResponse is the JSON shape for a single session in list responses.
type sessionResponse struct {
ID int64 `json:"id"`
Device string `json:"device"`
IP string `json:"ip"`
CreatedAt string `json:"created_at"`
LastUsed string `json:"last_used"`
IsCurrent bool `json:"is_current"`
}
// sessionsListResponse is the JSON envelope for GET /api/v1/users/me/sessions.
type sessionsListResponse struct {
Sessions []sessionResponse `json:"sessions"`
}
// ─── Route mounting ──────────────────────────────────────────────────────────
// ProfileBroadcaster is the interface the profile handler uses to notify
// connected WebSocket clients about profile changes.
type ProfileBroadcaster interface {
BroadcastUserUpdate(u ws.UserUpdate)
}
// MountProfileRoutes registers user profile management endpoints.
// All routes require authentication. trustedProxies is used for rate limiting.
//
// store may be nil, in which case the avatar-upload route is not registered —
// a server with no storage backend has nowhere to put the bytes, and a route
// that 500s on every call is worse than one that 404s.
func MountProfileRoutes(r chi.Router, database *db.DB, svc *service.Services, store FileStore, limiter *auth.RateLimiter, trustedProxies []string, broadcaster ProfileBroadcaster) {
r.Route("/api/v1/users/me", func(r chi.Router) {
r.Use(AuthMiddleware(database))
r.With(RateLimitMiddleware(limiter, "profile:", profileUpdateRateLimitPerMinute, time.Minute, trustedProxies)).
Patch("/", handleUpdateProfile(svc, broadcaster))
r.With(RateLimitMiddleware(limiter, "pw:", profilePasswordRateLimitPerMinute, time.Minute, trustedProxies)).
Put("/password", handleChangePassword(svc, limiter))
if store != nil {
r.With(MaxBodySize(avatarMaxBodySize)).
Post("/avatar", handleUploadAvatar(database, svc, store, limiter, broadcaster))
}
r.Get("/sessions", handleListSessions(svc))
r.Delete("/sessions/{id}", handleRevokeSession(svc))
})
}
// ─── Helpers ─────────────────────────────────────────────────────────────────
// validateIdentityKey checks that key is non-empty, at most 128 characters and
// valid standard-alphabet base64 (padded or unpadded) — the same posture as
// the WS voice_e2ee_announce public_key validation.
func validateIdentityKey(key string) error {
if key == "" {
return fmt.Errorf("identity_public_key must not be empty")
}
if len(key) > 128 {
return fmt.Errorf("identity_public_key too large (max 128 characters)")
}
if _, err := base64.StdEncoding.DecodeString(key); err == nil {
return nil
}
if _, err := base64.RawStdEncoding.DecodeString(key); err != nil {
return fmt.Errorf("identity_public_key is not valid base64")
}
return nil
}
// validateAvatarURL checks that avatar is either empty or a valid https:// URL
// no longer than maxAvatarURLLen characters.
func validateAvatarURL(avatar string) error {
if avatar == "" {
return nil
}
if len(avatar) > maxAvatarURLLen {
return fmt.Errorf("avatar URL too long (max %d characters)", maxAvatarURLLen)
}
parsed, err := url.Parse(avatar)
if err != nil || parsed.Scheme != "https" || parsed.Host == "" {
return fmt.Errorf("avatar URL must use https://")
}
return nil
}
// validateDisplayName rejects a nickname that would render as something other
// than what it says. Length and emptiness are the service's job (empty clears
// the field); this is the character-class check auth.ValidateUsername applies
// for the same reason — a display name stands in for a username on every
// message row, so a bidi override or a control character in one is a spoof.
func validateDisplayName(name string) error {
for _, r := range name {
if unicode.IsControl(r) || unicode.In(r, unicode.Cf) {
return fmt.Errorf("display_name must not contain control or invisible characters")
}
}
return nil
}
// allowedAvatarMIME is the set of image types an avatar may be, matched against
// the type sniffed from the file's own bytes. GIF is absent (an animated
// avatar in every message row is a distraction the renderer cannot opt out of)
// and so is SVG, for the same reason emoji refuse it: it is markup with script
// and external-fetch capability, and an avatar is rendered inline by
// definition.
var allowedAvatarMIME = map[string]bool{
"image/png": true,
"image/jpeg": true,
"image/webp": true,
}
// ─── Handlers ────────────────────────────────────────────────────────────────
// handleUpdateProfile processes PATCH /api/v1/users/me.
func handleUpdateProfile(svc *service.Services, broadcaster ProfileBroadcaster) http.HandlerFunc {
return func(w http.ResponseWriter, r *http.Request) {
user, ok := r.Context().Value(UserKey).(*db.User)
if !ok || user == nil {
writeJSON(w, http.StatusUnauthorized, errorResponse{
Error: "UNAUTHORIZED", Message: "not authenticated",
})
return
}
var req updateProfileRequest
if err := json.NewDecoder(r.Body).Decode(&req); err != nil {
writeJSON(w, http.StatusBadRequest, errorResponse{
Error: "INVALID_INPUT", Message: "malformed request body",
})
return
}
// Use the fixpoint sanitizer (service.SanitizeText), not the bare
// sanitizer.Sanitize below — Sanitize's output is always
// HTML-escaped, so a plain apostrophe would be persisted as &#39;
// and login (which never re-escapes) would look the account up
// under a name that no longer matches. See service.SanitizeText's
// doc comment and the register path (auth_handler.go), which
// already canonicalizes the same way.
req.Username = strings.TrimSpace(service.SanitizeText(req.Username))
if req.Username == "" {
writeJSON(w, http.StatusBadRequest, errorResponse{
Error: "INVALID_INPUT", Message: "username is required",
})
return
}
if err := auth.ValidateUsername(req.Username); err != nil {
writeJSON(w, http.StatusBadRequest, errorResponse{
Error: "INVALID_INPUT", Message: err.Error(),
})
return
}
// Sanitize and validate avatar if provided.
if req.Avatar != nil {
trimmed := strings.TrimSpace(sanitizer.Sanitize(*req.Avatar))
if err := validateAvatarURL(trimmed); err != nil {
writeJSON(w, http.StatusBadRequest, errorResponse{
Error: "INVALID_INPUT", Message: err.Error(),
})
return
}
req.Avatar = &trimmed
}
// display_name gets the same username-shaped scrutiny beyond length:
// it is rendered wherever a username is, so control characters and
// bidi overrides are exactly as unwelcome here. Length, sanitization
// and the empty-clears-it rule live in UserService.
if req.DisplayName != nil {
if err := validateDisplayName(*req.DisplayName); err != nil {
writeJSON(w, http.StatusBadRequest, errorResponse{
Error: "INVALID_INPUT", Message: err.Error(),
})
return
}
}
// Validate the identity key before any write so the request is
// all-or-nothing.
if req.IdentityPublicKey != nil {
trimmed := strings.TrimSpace(*req.IdentityPublicKey)
if err := validateIdentityKey(trimmed); err != nil {
writeJSON(w, http.StatusBadRequest, errorResponse{
Error: "INVALID_INPUT", Message: err.Error(),
})
return
}
req.IdentityPublicKey = &trimmed
}
updated, err := svc.Users.UpdateProfile(r.Context(), user.ID, service.ProfilePatch{
Username: req.Username,
Avatar: req.Avatar,
DisplayName: req.DisplayName,
About: req.About,
})
if err != nil {
writeServiceError(r.Context(), w, err)
return
}
if req.IdentityPublicKey != nil {
// Captured into a separate variable rather than reassigned into
// updated: on failure below, updated still holds the profile
// snapshot that DID commit, so it can still be broadcast instead
// of discarded.
withKey, keyErr := svc.Users.UpdateIdentityKey(r.Context(), user.ID, *req.IdentityPublicKey)
if keyErr != nil {
// The username/avatar/display_name/about write above already
// committed — only the identity key failed. Broadcasting the
// committed half keeps every other connected client in sync
// even though this request reports failure; leaving it
// unbroadcast would strand them on the old profile until
// their next ready.
broadcastUserUpdate(broadcaster, updated)
writeServiceError(r.Context(), w, keyErr)
return
}
updated = withKey
}
broadcastUserUpdate(broadcaster, updated)
writeJSON(w, http.StatusOK, toUserResponse(updated))
}
}
// broadcastUserUpdate pushes a profile snapshot to every connected client.
// Every profile mutation goes through it so a new one cannot ship half the
// fields — user_update replaces the client's copy wholesale.
func broadcastUserUpdate(broadcaster ProfileBroadcaster, u *db.User) {
if broadcaster == nil || u == nil {
return
}
broadcaster.BroadcastUserUpdate(ws.UserUpdate{
UserID: u.ID,
Username: u.Username,
Avatar: u.Avatar,
DisplayName: u.DisplayName,
About: u.About,
IdentityPublicKey: u.IdentityPublicKey,
})
}
// handleChangePassword processes PUT /api/v1/users/me/password.
func handleChangePassword(svc *service.Services, limiter *auth.RateLimiter) http.HandlerFunc {
return func(w http.ResponseWriter, r *http.Request) {
user, ok := r.Context().Value(UserKey).(*db.User)
if !ok || user == nil {
writeJSON(w, http.StatusUnauthorized, errorResponse{
Error: "UNAUTHORIZED", Message: "not authenticated",
})
return
}
// BUG-111: Per-user lockout to prevent password brute-force via stolen session.
lockKey := auth.Key("pw_confirm_lock", user.ID)
if limiter.IsLockedOut(lockKey) {
writeJSON(w, http.StatusTooManyRequests, errorResponse{
Error: "RATE_LIMITED", Message: "too many failed attempts, try again later",
})
return
}
var req changePasswordRequest
if err := json.NewDecoder(r.Body).Decode(&req); err != nil {
writeJSON(w, http.StatusBadRequest, errorResponse{
Error: "INVALID_INPUT", Message: "malformed request body",
})
return
}
if req.OldPassword == "" || req.NewPassword == "" {
writeJSON(w, http.StatusBadRequest, errorResponse{
Error: "INVALID_INPUT", Message: "old_password and new_password are required",
})
return
}
// Verify old password using constant-time bcrypt comparison.
failKey := auth.Key("pw_confirm_fail", user.ID)
if !auth.CheckPassword(user.PasswordHash, req.OldPassword) {
if !limiter.Allow(failKey, pwConfirmFailureThreshold, pwConfirmFailureWindow) {
limiter.Lockout(r.Context(), lockKey, pwConfirmLockoutDuration)
}
writeJSON(w, http.StatusForbidden, errorResponse{
Error: "FORBIDDEN", Message: "incorrect password",
})
return
}
limiter.Reset(r.Context(), failKey)
// Reject same old/new password.
if req.OldPassword == req.NewPassword {
writeJSON(w, http.StatusBadRequest, errorResponse{
Error: "INVALID_INPUT", Message: "new password must be different from old password",
})
return
}
// Validate new password strength.
if err := auth.ValidatePasswordStrength(req.NewPassword); err != nil {
writeJSON(w, http.StatusBadRequest, errorResponse{
Error: "INVALID_INPUT", Message: err.Error(),
})
return
}
// Hash new password.
hash, err := auth.HashPassword(req.NewPassword)
if err != nil {
writeJSON(w, http.StatusInternalServerError, errorResponse{
Error: "INTERNAL_ERROR", Message: "failed to process password change",
})
return
}
// Delegate to service for password update + session revocation.
sess, _ := r.Context().Value(SessionKey).(*db.Session)
keepSessionID := int64(0)
if sess != nil {
keepSessionID = sess.ID
}
res, err := svc.Users.ChangePassword(r.Context(), user.ID, hash, keepSessionID)
if err != nil {
// Only reachable when the password itself failed to commit.
writeServiceError(r.Context(), w, err)
return
}
if res.RevokeFailed {
// Partial success: the password IS changed; only revoking the
// other sessions failed. A 5xx here would tell the user to retry
// with a password that no longer works.
writeJSON(w, http.StatusOK, map[string]any{
"warning": "password changed, but other sessions could not be revoked; revoke them from the sessions list",
"sessions_revoked": res.SessionsRevoked,
})
return
}
w.WriteHeader(http.StatusNoContent)
}
}
// handleListSessions processes GET /api/v1/users/me/sessions.
func handleListSessions(svc *service.Services) http.HandlerFunc {
return func(w http.ResponseWriter, r *http.Request) {
user, ok := r.Context().Value(UserKey).(*db.User)
if !ok || user == nil {
writeJSON(w, http.StatusUnauthorized, errorResponse{
Error: "UNAUTHORIZED", Message: "not authenticated",
})
return
}
// An API-token principal has a nil session (middleware.go); the list
// still works — no row is marked current. Only IsCurrent needs it.
sess, _ := r.Context().Value(SessionKey).(*db.Session)
sessions, err := svc.Users.ListSessions(r.Context(), user.ID)
if err != nil {
writeServiceError(r.Context(), w, err)
return
}
resp := sessionsListResponse{
Sessions: make([]sessionResponse, 0, len(sessions)),
}
for _, s := range sessions {
resp.Sessions = append(resp.Sessions, sessionResponse{
ID: s.ID,
Device: s.Device,
IP: s.IP,
CreatedAt: s.CreatedAt,
LastUsed: s.LastUsed,
IsCurrent: sess != nil && s.ID == sess.ID,
})
}
writeJSON(w, http.StatusOK, resp)
}
}
// handleRevokeSession processes DELETE /api/v1/users/me/sessions/{id}.
func handleRevokeSession(svc *service.Services) http.HandlerFunc {
return func(w http.ResponseWriter, r *http.Request) {
user, ok := r.Context().Value(UserKey).(*db.User)
if !ok || user == nil {
writeJSON(w, http.StatusUnauthorized, errorResponse{
Error: "UNAUTHORIZED", Message: "not authenticated",
})
return
}
sessionID, ok := parseIDParam(w, r, "id")
if !ok {
return
}
if err := svc.Users.RevokeSession(r.Context(), user.ID, sessionID); err != nil {
writeServiceError(r.Context(), w, err)
return
}
w.WriteHeader(http.StatusNoContent)
}
}
// handleUploadAvatar processes POST /api/v1/users/me/avatar (multipart: `file`).
//
// The bytes land in the ordinary attachments table with no channel, and the
// user's avatar column is pointed at /api/v1/files/{id}. That is what makes
// the picture readable: an unlinked attachment is private to its uploader, and
// handleServeFile additionally admits one that some user's avatar currently
// points at — so an avatar is public exactly while it is in use and stops
// being readable the moment it is replaced.
//
// PATCH /users/me still takes an https:// URL; this route is the other way to
// set the same field, and both end at the same column.
func handleUploadAvatar(
database *db.DB,
svc *service.Services,
store FileStore,
limiter *auth.RateLimiter,
broadcaster ProfileBroadcaster,
) http.HandlerFunc {
return func(w http.ResponseWriter, r *http.Request) {
user, ok := r.Context().Value(UserKey).(*db.User)
if !ok || user == nil {
writeJSON(w, http.StatusUnauthorized, errorResponse{
Error: "UNAUTHORIZED", Message: "not authenticated",
})
return
}
if limiter != nil && !limiter.Allow(auth.Key("avatar_upload", user.ID), avatarUploadRateLimitPerMinute, time.Minute) {
writeJSON(w, http.StatusTooManyRequests, errorResponse{
Error: "RATE_LIMITED", Message: "avatar upload rate limit exceeded, try again later",
})
return
}
// Bound the body before the multipart parser touches it: the route
// carries MaxBodySize too, but the parser is what turns an unbounded
// body into heap, so the handler states its own limit.
r.Body = http.MaxBytesReader(w, r.Body, avatarMaxBodySize)
if err := r.ParseMultipartForm(avatarMultipartMemoryLimit); err != nil {
writeJSON(w, http.StatusBadRequest, errorResponse{
Error: "BAD_REQUEST", Message: "invalid multipart form",
})
return
}
file, header, err := r.FormFile("file")
if err != nil {
writeJSON(w, http.StatusBadRequest, errorResponse{
Error: "BAD_REQUEST", Message: "missing file field",
})
return
}
defer file.Close() //nolint:errcheck
raw, mimeType, width, height, ok := avatarUploadReadImage(w, file)
if !ok {
return
}
fileID := uuid.New().String()
written, saveErr := store.Save(fileID, bytes.NewReader(raw))
if saveErr != nil {
writeStorageSaveError(w, saveErr, "avatar upload")
return
}
filename := sanitizeUploadFilename(header.Filename)
if err := database.CreateAttachment(r.Context(), fileID, user.ID, filename, fileID, mimeType, written, &width, &height); err != nil {
if delErr := store.Delete(fileID); delErr != nil {
slog.Error("failed to clean up orphaned avatar file", "stored_as", fileID, "error", delErr)
}
slog.Error("failed to create avatar attachment record", "error", err)
writeJSON(w, http.StatusInternalServerError, errorResponse{
Error: "INTERNAL_ERROR", Message: "failed to save avatar",
})
return
}
avatarURL := service.AvatarFileURL(fileID)
// Username is deliberately omitted (left at its zero value): user
// here is a snapshot AuthMiddleware read at the start of the
// request, before the multipart parse / image decode / disk write
// above — all of which take long enough for a concurrent
// PATCH /users/me rename to land first. Sending that stale value
// would revert the rename; UpdateProfile treats an empty Username
// as "leave it alone", the same contract DisplayName/About already
// have via nil.
updated, err := svc.Users.UpdateProfile(r.Context(), user.ID, service.ProfilePatch{
Avatar: &avatarURL,
})
if err != nil {
// The column never moved, so the file and its row are orphans.
if delErr := store.Delete(fileID); delErr != nil {
slog.Error("failed to clean up orphaned avatar file", "stored_as", fileID, "error", delErr)
}
writeServiceError(r.Context(), w, err)
return
}
// The previous avatar's bytes are deliberately left on disk: a message
// that was rendered with it may still be cached client-side, and a
// blind delete here would race any request already in flight for it.
// Reclaiming them is an operator-side sweep, not a request-path action.
broadcastUserUpdate(broadcaster, updated)
slog.Info("avatar uploaded", "user_id", user.ID, "id", fileID, "size", written, "mime", mimeType)
writeJSON(w, http.StatusCreated, uploadResponse{
ID: fileID,
Filename: filename,
Size: written,
Mime: mimeType,
URL: avatarURL,
Width: &width,
Height: &height,
})
}
}
// avatarUploadReadImage is the bytes stage of handleUploadAvatar: read the
// uploaded file under its cap, sniff its type and measure it. It writes its own
// 400 and reports ok=false when the upload is not an acceptable avatar, so the
// caller only has to return. Deliberately not shared with the emoji route: the
// two carry different caps and a different allowed MIME set.
func avatarUploadReadImage(w http.ResponseWriter, file io.Reader) (raw []byte, mimeType string, width, height int, ok bool) {
// Read one byte past the cap so "exactly at the limit" passes and "one
// byte over" is caught, without buffering an unbounded body.
raw, err := io.ReadAll(io.LimitReader(file, maxAvatarFileBytes+1))
if err != nil {
writeJSON(w, http.StatusBadRequest, errorResponse{
Error: "BAD_REQUEST", Message: "failed to read uploaded file",
})
return nil, "", 0, 0, false
}
if int64(len(raw)) > maxAvatarFileBytes {
writeJSON(w, http.StatusBadRequest, errorResponse{
Error: "BAD_REQUEST",
Message: fmt.Sprintf("avatar must be at most %d KB", maxAvatarFileBytes>>10),
})
return nil, "", 0, 0, false
}
// Never trust the client's Content-Type — sniff the bytes.
mimeType = http.DetectContentType(raw)
if !allowedAvatarMIME[mimeType] {
writeJSON(w, http.StatusBadRequest, errorResponse{
Error: "BAD_REQUEST", Message: "avatar must be a PNG, JPEG or WebP image",
})
return nil, "", 0, 0, false
}
width, height, err = imageDimensions(raw, mimeType)
if err != nil {
writeJSON(w, http.StatusBadRequest, errorResponse{
Error: "BAD_REQUEST", Message: "could not read image dimensions",
})
return nil, "", 0, 0, false
}
// Measured from the sniffed image, not from anything the client said.
// The client crops to a square before uploading; the server does not
// re-encode (that would mean decoding and re-compressing every upload
// to change nothing a CSS circle mask does not already do), it just
// refuses a picture too big to be an avatar.
if width <= 0 || height <= 0 || width > maxAvatarDimension || height > maxAvatarDimension {
writeJSON(w, http.StatusBadRequest, errorResponse{
Error: "BAD_REQUEST",
Message: fmt.Sprintf("avatar must be at most %dx%d pixels (got %dx%d)", maxAvatarDimension, maxAvatarDimension, width, height),
})
return nil, "", 0, 0, false
}
return raw, mimeType, width, height, true
}