Files
sing-box/protocol/hysteria2/realm_server.go
T
2026-07-09 11:19:33 +08:00

537 lines
15 KiB
Go

package hysteria2
import (
"context"
"crypto/rand"
"encoding/hex"
"encoding/json"
"errors"
"fmt"
"io"
"net/http"
"net/netip"
"regexp"
"strings"
"sync"
"time"
"github.com/sagernet/sing-box/log"
E "github.com/sagernet/sing/common/exceptions"
"github.com/go-chi/chi/v5"
"github.com/go-chi/render"
)
const (
sessionTTL = time.Minute
realmNamePattern = `^[A-Za-z0-9][A-Za-z0-9_-]{0,63}$`
maxRequestBodyBytes = 4 << 10
maxAddresses = 8
nonceHexLength = 32
obfsHexLength = 64
eventChannelSize = 16
maxPendingAttempts = 16
connectResponseTimeout = 10 * time.Second
)
var realmPattern = regexp.MustCompile(realmNamePattern)
type contextKey int
const (
contextKeyUser contextKey = iota
contextKeySession
)
type realmUser struct {
name string
maxRealms int
}
type realmSession struct {
id string
realmID string
username string
addresses []string
expires time.Time
events chan realmEvent
timer *time.Timer
done chan struct{}
closed bool
pending map[string]chan punchResponsePayload
}
type realmEvent struct {
kind string
data any
}
type punchEvent struct {
Addresses []string `json:"addresses"`
Nonce string `json:"nonce"`
Obfs string `json:"obfs"`
}
type punchResponsePayload struct {
addresses []string
}
type server struct {
access sync.Mutex
realms map[string]*realmSession
sessions map[string]*realmSession
userCounts map[string]int
logger log.ContextLogger
tokenMap map[string]*realmUser
}
func newServer(logger log.ContextLogger, tokenMap map[string]*realmUser) *server {
return &server{
realms: make(map[string]*realmSession),
sessions: make(map[string]*realmSession),
userCounts: make(map[string]int),
logger: logger,
tokenMap: tokenMap,
}
}
func validateRealmID(next http.Handler) http.Handler {
return http.HandlerFunc(func(w http.ResponseWriter, r *http.Request) {
id := chi.URLParam(r, "id")
if !realmPattern.MatchString(id) {
render.Status(r, http.StatusBadRequest)
render.JSON(w, r, render.M{"error": "bad_request", "message": "invalid realm name"})
return
}
next.ServeHTTP(w, r)
})
}
func (s *server) authBearer(name string, key contextKey, lookup func(r *http.Request, token string) (any, bool)) func(http.Handler) http.Handler {
return func(next http.Handler) http.Handler {
return http.HandlerFunc(func(w http.ResponseWriter, r *http.Request) {
header := r.Header.Get("Authorization")
bearer, token, found := strings.Cut(header, " ")
if bearer != "Bearer" || !found {
render.Status(r, http.StatusUnauthorized)
render.JSON(w, r, render.M{"error": "invalid_token", "message": "invalid " + name + " token"})
return
}
value, authenticated := lookup(r, token)
if !authenticated {
render.Status(r, http.StatusUnauthorized)
render.JSON(w, r, render.M{"error": "invalid_token", "message": "invalid " + name + " token"})
return
}
next.ServeHTTP(w, r.WithContext(context.WithValue(r.Context(), key, value)))
})
}
}
func (s *server) authUser(next http.Handler) http.Handler {
return s.authBearer("realm", contextKeyUser, func(_ *http.Request, token string) (any, bool) {
user, authenticated := s.tokenMap[token]
return user, authenticated
})(next)
}
func (s *server) authSession(next http.Handler) http.Handler {
return s.authBearer("session", contextKeySession, func(r *http.Request, token string) (any, bool) {
sess := s.getSessionByToken(token)
if sess == nil || sess.realmID != chi.URLParam(r, "id") {
return nil, false
}
return sess, true
})(next)
}
func (s *server) getSessionByToken(token string) *realmSession {
s.access.Lock()
defer s.access.Unlock()
sess := s.sessions[token]
if sess == nil || sess.closed || time.Now().After(sess.expires) {
return nil
}
return sess
}
func (s *server) removeSessionLocked(sess *realmSession) {
if sess.closed {
return
}
sess.closed = true
close(sess.done)
if s.realms[sess.realmID] == sess {
delete(s.realms, sess.realmID)
}
if _, found := s.sessions[sess.id]; found {
s.userCounts[sess.username]--
if s.userCounts[sess.username] <= 0 {
delete(s.userCounts, sess.username)
}
}
delete(s.sessions, sess.id)
sess.timer.Stop()
close(sess.events)
for nonce, ch := range sess.pending {
close(ch)
delete(sess.pending, nonce)
}
}
func (s *server) removeSession(sess *realmSession) {
s.access.Lock()
defer s.access.Unlock()
s.removeSessionLocked(sess)
}
func (s *server) removeExpiredSession(sess *realmSession) bool {
s.access.Lock()
defer s.access.Unlock()
if sess.closed || !time.Now().After(sess.expires) {
return false
}
s.removeSessionLocked(sess)
return true
}
func (s *server) closeAll() {
s.access.Lock()
defer s.access.Unlock()
for _, sess := range s.sessions {
s.removeSessionLocked(sess)
}
}
func (s *server) registerPending(sess *realmSession, nonce string) (chan punchResponsePayload, bool) {
s.access.Lock()
defer s.access.Unlock()
if sess.closed || len(sess.pending) >= maxPendingAttempts {
return nil, false
}
if _, exists := sess.pending[nonce]; exists {
return nil, false
}
ch := make(chan punchResponsePayload, 1)
sess.pending[nonce] = ch
return ch, true
}
func (s *server) deliverPending(sess *realmSession, nonce string, payload punchResponsePayload) bool {
s.access.Lock()
defer s.access.Unlock()
if sess.closed {
return false
}
ch, found := sess.pending[nonce]
if !found {
return false
}
delete(sess.pending, nonce)
select {
case ch <- payload:
default:
}
return true
}
func (s *server) cancelPending(sess *realmSession, nonce string) {
s.access.Lock()
defer s.access.Unlock()
delete(sess.pending, nonce)
}
func (s *server) sendEvent(sess *realmSession, ev realmEvent) bool {
s.access.Lock()
defer s.access.Unlock()
if sess.closed {
return false
}
select {
case sess.events <- ev:
return true
default:
return false
}
}
func (s *server) handleRegister(w http.ResponseWriter, r *http.Request) {
user := r.Context().Value(contextKeyUser).(*realmUser)
id := chi.URLParam(r, "id")
var req struct {
Addresses []string `json:"addresses"`
}
err := render.DecodeJSON(r.Body, &req)
if err != nil {
render.Status(r, http.StatusBadRequest)
render.JSON(w, r, render.M{"error": "bad_request", "message": "invalid json"})
return
}
err = validateAddresses(req.Addresses)
if err != nil {
render.Status(r, http.StatusBadRequest)
render.JSON(w, r, render.M{"error": "bad_request", "message": err.Error()})
return
}
s.access.Lock()
if _, exists := s.realms[id]; exists {
s.access.Unlock()
render.Status(r, http.StatusConflict)
render.JSON(w, r, render.M{"error": "realm_taken", "message": "realm already registered"})
return
}
if user.maxRealms > 0 && s.userCounts[user.name] >= user.maxRealms {
s.access.Unlock()
render.Status(r, http.StatusTooManyRequests)
render.JSON(w, r, render.M{"error": "realm_limit_reached", "message": "per-user realm limit reached"})
return
}
var b [16]byte
_, err = rand.Read(b[:])
if err != nil {
s.access.Unlock()
render.Status(r, http.StatusInternalServerError)
render.JSON(w, r, render.M{"error": "internal", "message": "entropy failure"})
return
}
sess := &realmSession{
id: hex.EncodeToString(b[:]),
realmID: id,
username: user.name,
addresses: append([]string(nil), req.Addresses...),
expires: time.Now().Add(sessionTTL),
events: make(chan realmEvent, eventChannelSize),
done: make(chan struct{}),
pending: make(map[string]chan punchResponsePayload),
}
s.realms[id] = sess
s.sessions[sess.id] = sess
s.userCounts[user.name]++
sess.timer = time.AfterFunc(sessionTTL, func() {
if s.removeExpiredSession(sess) {
s.logger.Debug("[", sess.username, "] session expired realm=", sess.realmID)
}
})
s.access.Unlock()
s.logger.InfoContext(r.Context(), "[", user.name, "] registered realm=", id)
render.JSON(w, r, render.M{
"session_id": sess.id,
"ttl": int(sessionTTL.Seconds()),
})
}
func (s *server) handleDeregister(w http.ResponseWriter, r *http.Request) {
sess := r.Context().Value(contextKeySession).(*realmSession)
s.logger.InfoContext(r.Context(), "[", sess.username, "] deregistered realm=", sess.realmID)
s.removeSession(sess)
render.NoContent(w, r)
}
func (s *server) handleHeartbeat(w http.ResponseWriter, r *http.Request) {
sess := r.Context().Value(contextKeySession).(*realmSession)
var req struct {
Addresses []string `json:"addresses"`
}
err := render.DecodeJSON(r.Body, &req)
if err != nil && !errors.Is(err, io.EOF) {
render.Status(r, http.StatusBadRequest)
render.JSON(w, r, render.M{"error": "bad_request", "message": "invalid json"})
return
}
if req.Addresses != nil {
err = validateAddresses(req.Addresses)
if err != nil {
render.Status(r, http.StatusBadRequest)
render.JSON(w, r, render.M{"error": "bad_request", "message": err.Error()})
return
}
}
s.access.Lock()
sess.expires = time.Now().Add(sessionTTL)
if req.Addresses != nil {
sess.addresses = append([]string(nil), req.Addresses...)
}
sess.timer.Reset(sessionTTL)
s.access.Unlock()
s.logger.DebugContext(r.Context(), "[", sess.username, "] heartbeat realm=", sess.realmID)
s.sendEvent(sess, realmEvent{kind: "heartbeat_ack", data: render.M{"ttl": int(sessionTTL.Seconds())}})
render.JSON(w, r, render.M{"ttl": int(sessionTTL.Seconds())})
}
func (s *server) handleEvents(w http.ResponseWriter, r *http.Request) {
sess := r.Context().Value(contextKeySession).(*realmSession)
flusher, supportsFlusher := w.(http.Flusher)
if !supportsFlusher {
render.Status(r, http.StatusInternalServerError)
render.JSON(w, r, render.M{"error": "internal", "message": "streaming unsupported"})
return
}
w.Header().Set("Content-Type", "text/event-stream")
w.Header().Set("Cache-Control", "no-cache")
w.Header().Set("Connection", "keep-alive")
w.WriteHeader(http.StatusOK)
flusher.Flush()
ctx := r.Context()
for {
select {
case <-ctx.Done():
return
case ev, open := <-sess.events:
if !open {
return
}
data, _ := json.Marshal(ev.data)
fmt.Fprintf(w, "event: %s\ndata: %s\n\n", ev.kind, data)
flusher.Flush()
}
}
}
func (s *server) handleConnect(w http.ResponseWriter, r *http.Request) {
user := r.Context().Value(contextKeyUser).(*realmUser)
id := chi.URLParam(r, "id")
var req struct {
Addresses []string `json:"addresses"`
Nonce string `json:"nonce"`
Obfs string `json:"obfs"`
}
err := render.DecodeJSON(r.Body, &req)
if err != nil {
render.Status(r, http.StatusBadRequest)
render.JSON(w, r, render.M{"error": "bad_request", "message": "invalid json"})
return
}
err = validateAddresses(req.Addresses)
if err != nil {
render.Status(r, http.StatusBadRequest)
render.JSON(w, r, render.M{"error": "bad_request", "message": err.Error()})
return
}
err = validateHexField("nonce", req.Nonce, nonceHexLength)
if err != nil {
render.Status(r, http.StatusBadRequest)
render.JSON(w, r, render.M{"error": "bad_request", "message": err.Error()})
return
}
err = validateHexField("obfs", req.Obfs, obfsHexLength)
if err != nil {
render.Status(r, http.StatusBadRequest)
render.JSON(w, r, render.M{"error": "bad_request", "message": err.Error()})
return
}
s.access.Lock()
// Any authenticated realm user may connect to a registered realm. The user name
// is for logging and per-user registration quota, not an ownership boundary here.
sess := s.realms[id]
if sess == nil || sess.closed || time.Now().After(sess.expires) {
s.access.Unlock()
render.Status(r, http.StatusNotFound)
render.JSON(w, r, render.M{"error": "realm_not_found", "message": "realm not registered"})
return
}
serverAddresses := append([]string(nil), sess.addresses...)
s.access.Unlock()
respCh, ready := s.registerPending(sess, req.Nonce)
if !ready {
render.Status(r, http.StatusServiceUnavailable)
render.JSON(w, r, render.M{"error": "rate_limited", "message": "too many in-flight connect attempts"})
return
}
defer s.cancelPending(sess, req.Nonce)
if !s.sendEvent(sess, realmEvent{kind: "punch", data: punchEvent{Addresses: req.Addresses, Nonce: req.Nonce, Obfs: req.Obfs}}) {
render.Status(r, http.StatusServiceUnavailable)
render.JSON(w, r, render.M{"error": "rate_limited", "message": "server event buffer full"})
return
}
s.logger.DebugContext(r.Context(), "[", user.name, "] connect realm=", id)
timer := time.NewTimer(connectResponseTimeout)
defer timer.Stop()
select {
case payload, open := <-respCh:
if !open {
render.Status(r, http.StatusNotFound)
render.JSON(w, r, render.M{"error": "realm_not_found", "message": "realm not registered"})
return
}
if len(payload.addresses) > 0 {
serverAddresses = payload.addresses
}
case <-timer.C:
case <-sess.done:
render.Status(r, http.StatusNotFound)
render.JSON(w, r, render.M{"error": "realm_not_found", "message": "realm not registered"})
return
case <-r.Context().Done():
return
}
render.JSON(w, r, render.M{
"addresses": serverAddresses,
"nonce": req.Nonce,
"obfs": req.Obfs,
})
}
func (s *server) handleConnectResponse(w http.ResponseWriter, r *http.Request) {
sess := r.Context().Value(contextKeySession).(*realmSession)
nonce := chi.URLParam(r, "nonce")
err := validateHexField("nonce", nonce, nonceHexLength)
if err != nil {
render.Status(r, http.StatusBadRequest)
render.JSON(w, r, render.M{"error": "bad_request", "message": err.Error()})
return
}
var req struct {
Addresses []string `json:"addresses"`
}
err = render.DecodeJSON(r.Body, &req)
if err != nil {
render.Status(r, http.StatusBadRequest)
render.JSON(w, r, render.M{"error": "bad_request", "message": "invalid json"})
return
}
err = validateAddresses(req.Addresses)
if err != nil {
render.Status(r, http.StatusBadRequest)
render.JSON(w, r, render.M{"error": "bad_request", "message": err.Error()})
return
}
delivered := s.deliverPending(sess, nonce, punchResponsePayload{addresses: append([]string(nil), req.Addresses...)})
if !delivered {
render.Status(r, http.StatusNotFound)
render.JSON(w, r, render.M{"error": "attempt_not_found", "message": "no pending attempt for nonce"})
return
}
s.logger.DebugContext(r.Context(), "[", sess.username, "] connect-response realm=", sess.realmID)
render.NoContent(w, r)
}
func validateAddresses(addresses []string) error {
if len(addresses) == 0 {
return E.New("at least one address required")
}
if len(addresses) > maxAddresses {
return E.New("too many addresses (max ", maxAddresses, ")")
}
for _, address := range addresses {
_, err := netip.ParseAddrPort(address)
if err != nil {
return E.New("invalid address: ", address)
}
}
return nil
}
func validateHexField(name, value string, length int) error {
if len(value) != length {
return E.New(name, " must be ", length, " hex characters")
}
_, err := hex.DecodeString(value)
if err != nil {
return E.New(name, " must be valid hex")
}
return nil
}