Files
3x-ui/internal/web/service/port_conflict.go
T
Egor 0054e671f8 feat(tuic): implement native in-process Go TUIC v5 server (#6577)
* feat(tuic): implement native in-process Go TUIC v5 server

- Implement native TUIC v5 protocol server on pure Go using quic-go
- Bridge decrypted TCP/UDP traffic into Xray-core via loopback SOCKS5 inbound
- Support full Xray routing rules (geosite/geoip) and cascading outbounds
- Implement atomic per-client traffic accounting with TotalGB and ExpiryTime
- Add automatic legacy cleanup for older Rust tuic-server binaries, configs, and orphaned processes
- Eliminate external Rust tuic-server downloads from install/CI scripts

* fix(tuic): address traffic accounting, client reload, and socket lifecycle issues

* fix(service): update checkTuicSocksReverseConflict to use bindAddr for listenOverlaps

* fix(tuic): resolve traffic double-accounting, UDP fragmentation, and socket lifecycle issues

* feat(tuic): complete native Go integration and address audit findings

- Integrate an isolated QUIC fork pinned to a specific commit
- Preserve original QUIC dependencies for Xray, Hysteria and Gin
- Apply BBR, CUBIC and Reno to server connections and exported client profiles
- Bridge Xray BBR with correct monotonic time and congestion type conversions
- Handle congestion sender recreation after PMTU changes
- Update congestion control for new connections without restarting the listener
- Preserve existing connections and their selected congestion controller
- Apply per-inbound log levels through the shared panel logger
- Add lifecycle, authentication and TCP/UDP relay events without exposing secrets
- Rate-limit repeated authentication and relay warnings
- Support native and QUIC UDP relay modes on the same listener
- Recover UDP associations after relay worker failures
- Fix TCP relay cancellation, idle shutdown and half-close handling
- Close active sessions when client credentials are revoked or disabled
- Track traffic by immutable client statistics IDs across email and UUID changes
- Prevent ambiguous accounting and duplicate UUIDs within TUIC inbounds
- Persist pending traffic in a durable shutdown journal
- Replay journal batches transactionally without duplicate accounting
- Report server shutdown failures through the shared logger
- Preserve legacy flat and nested TUIC settings compatibility
- Normalize congestion controller values consistently across backend and frontend
- Preserve controller, UDP mode and SNI in client links and subscriptions
- Separate client profile options from server settings in the TUIC form
- Keep certificate path autofill explicit when changing client SNI
- Align UDP packet size validation with protocol limits
- Simplify and localize TUIC field hints and certificate autofill messages
- Add controller, TCP/UDP, logging and live settings update tests
- Add accounting identity, journal replay and shutdown regression tests
- Add relay recovery, session revocation and legacy frontend form tests

* fix(service): alias the TUIC duplicate-UUID subquery for PostgreSQL < 16

syncInboundClients runs a COUNT(*) FROM (subquery) for every client sync,
whatever the protocol. PostgreSQL before 16 rejects a FROM subquery with
no alias, so on the distro PostgreSQL install.sh provisions (14 on Ubuntu
22.04, 15 on Debian 12) every client add or edit failed with SQLSTATE
42601. Reproduced against postgres:15 with the new env-gated test.

* fix(database): create tuic_traffic_receipts through the model migration

AddTuicTrafficBatch issued CREATE TABLE IF NOT EXISTS at runtime, a schema
change outside db.go. The table was invisible to allModels and
migrationModels, so x-ui migrate-db dropped the receipts and a retained
journal could be counted twice after a SQLite to PostgreSQL move. It is
now a GORM model in both lists, and the insert uses OnConflict DoNothing.

* chore(tuic): skip the ICMP-dependent relay test on Windows, drop dead collectors

Go disables SIO_UDP_CONNRESET on Windows, so a dead UDP bridge never fails
a read there and TestAudit3UDPAssociationMustRecoverAfterBridgeReadFailure
was red on every Windows run. Server.CollectTotalTraffic and
Manager.CollectTraffic had no caller.

* refactor(tuic): serve TUIC on apernet/quic-go instead of a personal fork

The native server depended on github.com/poise52/quic-go, a personal fork
of apernet/quic-go patched only to pick the congestion controller before
the handshake. That put a second QUIC/TLS stack in the binary that no
upstream security fix reaches. apernet/quic-go is already in the graph
through xray-core and exposes SetCongestionControl, so BBR is now installed
on each accepted connection with Xray's own congestion.UseBBR; the
cross-module BBR adapter is gone.

apernet ships New Reno as its only built-in sender, so a cubic setting is
served as new_reno server-side (clients still get cubic in their profile).
The test inspectors now read the sender under congestionMutex, which the
post-handshake install writes under.

Linux loopback, single stream through Xray: 2428 -> 3383 Mbit/s (bbr).

---------

Co-authored-by: Sanaei <ho3ein.sanaei@gmail.com>
2026-10-03 02:56:02 +02:00

714 lines
20 KiB
Go

package service
import (
"encoding/json"
"fmt"
"net"
"strings"
"github.com/mhsanaei/3x-ui/v3/internal/amneziawg"
"github.com/mhsanaei/3x-ui/v3/internal/amneziawgnet"
"github.com/mhsanaei/3x-ui/v3/internal/database"
"github.com/mhsanaei/3x-ui/v3/internal/database/model"
"github.com/mhsanaei/3x-ui/v3/internal/tuic"
"github.com/mhsanaei/3x-ui/v3/internal/util/common"
"gorm.io/gorm"
)
type transportBits uint8
const (
transportTCP transportBits = 1 << iota
transportUDP
)
func inboundTransports(protocol model.Protocol, streamSettings, settings string) transportBits {
// protocols that ignore streamSettings entirely.
switch protocol {
case model.Hysteria, model.WireGuard, model.AmneziaWG, model.TUIC:
return transportUDP
case model.MTProto:
return transportTCP
}
var bits transportBits
// peek at streamSettings.network to spot udp-based transports.
// parse errors are non-fatal: missing or weird streamSettings just
// keeps the default tcp bit below.
network := ""
if streamSettings != "" {
var ss map[string]any
if json.Unmarshal([]byte(streamSettings), &ss) == nil {
if n, _ := ss["network"].(string); n != "" {
network = n
}
}
}
switch network {
case "kcp", "quic":
bits |= transportUDP
default:
bits |= transportTCP
}
// a few protocols carry their L4 choice in settings instead of (or in
// addition to) streamSettings: SS / Tunnel via a CSV field that wins
// outright, Mixed via an additive udp boolean.
if settings != "" {
var st map[string]any
if json.Unmarshal([]byte(settings), &st) == nil {
switch protocol {
case model.Shadowsocks, model.Tunnel:
key := "network"
if protocol == model.Tunnel {
key = "allowedNetwork"
}
if n, ok := st[key].(string); ok && n != "" {
bits = 0
for part := range strings.SplitSeq(n, ",") {
switch strings.TrimSpace(part) {
case "tcp":
bits |= transportTCP
case "udp":
bits |= transportUDP
}
}
}
case model.Mixed:
// socks/http "mixed" inbound: settings.udp=true means it
// also relays udp on the same port (socks5 udp associate).
if udpOn, _ := st["udp"].(bool); udpOn {
bits |= transportUDP
}
}
}
}
// safety net: never return zero, even if every parse failed.
if bits == 0 {
bits = transportTCP
}
return bits
}
// bindAddr is a listen address plus sockopt.v6only. xray listens on "tcp"/"udp",
// so Go opens every wildcard, 0.0.0.0 included, dual-stack unless v6only is set.
type bindAddr struct {
listen string
v6only bool
}
var loopbackBind = bindAddr{listen: "127.0.0.1"}
func inboundBindAddr(ib *model.Inbound) bindAddr {
return bindAddr{listen: ib.Listen, v6only: streamV6Only(ib.StreamSettings)}
}
func streamV6Only(streamSettings string) bool {
if !strings.Contains(streamSettings, "v6only") {
return false
}
var stream struct {
Sockopt struct {
V6Only bool `json:"v6only"`
} `json:"sockopt"`
}
_ = json.Unmarshal([]byte(streamSettings), &stream)
return stream.Sockopt.V6Only
}
func listenOverlaps(a, b bindAddr) bool {
if a.listen == b.listen {
return true
}
familiesA, wildcardA, okA := bindFamilies(a)
familiesB, wildcardB, okB := bindFamilies(b)
if !okA || !okB {
return wildcardA || wildcardB
}
return (wildcardA || wildcardB) && familiesA&familiesB != 0
}
type addrFamily uint8
const (
familyIPv4 addrFamily = 1 << iota
familyIPv6
)
// bindFamilies reports the address families a listen claims; ok is false for a
// listen that is not an IP, such as a unix socket path.
func bindFamilies(a bindAddr) (families addrFamily, wildcard, ok bool) {
if isAnyListen(a.listen) {
if a.v6only {
return familyIPv6, true, true
}
return familyIPv4 | familyIPv6, true, true
}
ip := net.ParseIP(a.listen)
if ip == nil {
return 0, false, false
}
if ip.To4() != nil {
return familyIPv4, false, true
}
return familyIPv6, false, true
}
func isAnyListen(s string) bool {
return s == "" || s == "0.0.0.0" || s == "::" || s == "::0"
}
type portConflictDetail struct {
InboundID int
Remark string
Tag string
Listen string
Port int
// Relay marks Port as an automatic loopback relay port, not a configured one.
Relay bool
// ForwardedBy is the peer whose port forward holds Port, when that is the
// reason for the conflict.
ForwardedBy string
Transports transportBits
}
// String renders the detail as a single-line, user-facing summary.
func (d *portConflictDetail) String() string {
name := d.Remark
if name == "" {
name = d.Tag
}
if name == "" {
name = fmt.Sprintf("#%d", d.InboundID)
} else if d.InboundID > 0 {
name = fmt.Sprintf("'%s' (#%d)", name, d.InboundID)
} else {
// reserved/system inbounds (e.g. the Xray API) have no DB id.
name = fmt.Sprintf("'%s'", name)
}
listen := d.Listen
if isAnyListen(listen) {
listen = "*"
}
port := fmt.Sprintf("port %d", d.Port)
if d.Relay {
port = fmt.Sprintf("relay port %d", d.Port)
}
if d.ForwardedBy != "" {
return fmt.Sprintf("%s (%s) already forwarded on inbound %s on %s by its client %s",
port, transportTagSuffix(d.Transports), name, listen, d.ForwardedBy)
}
return fmt.Sprintf("%s (%s) already used by inbound %s on %s",
port, transportTagSuffix(d.Transports), name, listen)
}
// defaultXrayAPIPort is the loopback port of the internal Xray API inbound
// (tag "api") seeded into the config template. Used as a fallback when the
// template can't be parsed.
const defaultXrayAPIPort = 62789
// reservedAPIPort returns the port of the internal Xray API inbound declared
// in the config template, falling back to defaultXrayAPIPort.
func reservedAPIPort() int {
tmpl, err := (&SettingService{}).GetXrayConfigTemplate()
if err != nil || tmpl == "" {
return defaultXrayAPIPort
}
var parsed struct {
Inbounds []struct {
Port int `json:"port"`
Tag string `json:"tag"`
} `json:"inbounds"`
}
if json.Unmarshal([]byte(tmpl), &parsed) != nil {
return defaultXrayAPIPort
}
for _, in := range parsed.Inbounds {
if in.Tag == "api" && in.Port > 0 {
return in.Port
}
}
return defaultXrayAPIPort
}
// checkPortConflict reads outside any transaction; callers that must not race a
// concurrent create use checkPortConflictTx inside their own transaction.
func (s *InboundService) checkPortConflict(inbound *model.Inbound, ignoreId int) (*portConflictDetail, error) {
return checkPortConflictTx(database.GetDB(), inbound, ignoreId)
}
func checkPortConflictTx(db *gorm.DB, inbound *model.Inbound, ignoreId int) (*portConflictDetail, error) {
newBits := inboundTransports(inbound.Protocol, inbound.StreamSettings, inbound.Settings)
// The internal Xray API inbound (tag "api", loopback TCP) isn't a DB row,
// so a local user inbound reusing its port would leave Xray binding the
// port twice (#5304). Nodes run their own Xray, so this only applies to
// the local panel.
if inbound.NodeID == nil && inbound.Port == reservedAPIPort() &&
newBits&transportTCP != 0 && listenOverlaps(loopbackBind, inboundBindAddr(inbound)) {
return &portConflictDetail{
Tag: "api",
Listen: "127.0.0.1",
Port: inbound.Port,
Transports: transportTCP,
}, nil
}
// Egress SOCKS server holds loopback EgressPort when AWG outbounds are
// active; conflict check prevents inbounds from colliding with it.
if inbound.NodeID == nil && inbound.Port == amneziawgnet.EgressPort() &&
newBits&transportTCP != 0 && listenOverlaps(loopbackBind, inboundBindAddr(inbound)) {
return &portConflictDetail{
Tag: "amneziawg-egress",
Listen: "127.0.0.1",
Port: inbound.Port,
Transports: transportTCP,
}, nil
}
// Every enabled local AmneziaWG inbound gets its own automatic Xray
// SOCKS5 relay inbound (see injectAmneziawgnetSocks) on 127.0.0.1 at a
// port derived purely from its id (amneziawgnet.SOCKSPortForInbound) --
// like the internal Xray API inbound above, that relay inbound is not
// itself a database row, so the ordinary DB-backed query below can never
// see it. Without this check, an unrelated inbound saved onto that exact
// port silently fails at the next Xray start, taking every other
// protocol down with it, not just AmneziaWG.
if inbound.NodeID == nil && listenOverlaps(loopbackBind, inboundBindAddr(inbound)) {
conflict, err := checkAmneziawgnetSocksConflict(db, inbound, ignoreId, newBits)
if err != nil {
return nil, err
}
if conflict != nil {
return conflict, nil
}
conflict, err = checkTuicSocksConflict(db, inbound, ignoreId, newBits)
if err != nil {
return nil, err
}
if conflict != nil {
return conflict, nil
}
}
// The reverse direction, only meaningful once the id is known -- AddInbound
// runs it after Save. Only a local row owns a relay slot (#6537 review).
if inbound.NodeID == nil && inbound.Protocol == model.AmneziaWG && ignoreId > 0 {
if self := amneziawgnetSocksSelfConflict(inbound, ignoreId); self != "" {
return nil, common.NewError(self)
}
conflict, err := checkAmneziawgnetSocksRelayCollision(db, ignoreId)
if err != nil {
return nil, err
}
if conflict != nil {
return conflict, nil
}
conflict, err = checkAmneziawgnetSocksReverseConflict(db, ignoreId)
if err != nil {
return nil, err
}
if conflict != nil {
return conflict, nil
}
}
// A forwarded port is not a column and not a relay slot, so the query below
// cannot see it either: the port is bound by the peer's forward listener.
forwardedBy, err := amneziawgForwardedPortOwner(db, inbound, ignoreId)
if err != nil {
return nil, err
}
if forwardedBy != nil {
forwardedBy.Transports = newBits
return forwardedBy, nil
}
if inbound.NodeID == nil && inbound.Protocol == model.TUIC && ignoreId > 0 {
if self := tuicSocksSelfConflict(inbound, ignoreId); self != "" {
return nil, common.NewError(self)
}
conflict, err := checkTuicSocksRelayCollision(db, ignoreId)
if err != nil {
return nil, err
}
if conflict != nil {
return conflict, nil
}
conflict, err = checkTuicSocksReverseConflict(db, ignoreId)
if err != nil {
return nil, err
}
if conflict != nil {
return conflict, nil
}
}
var candidates []*model.Inbound
q := db.Model(model.Inbound{}).Where("port = ?", inbound.Port)
if ignoreId > 0 {
q = q.Where("id != ?", ignoreId)
}
if err := q.Find(&candidates).Error; err != nil {
return nil, err
}
for _, c := range candidates {
if !sameNode(c.NodeID, inbound.NodeID) {
continue
}
if !listenOverlaps(inboundBindAddr(c), inboundBindAddr(inbound)) {
continue
}
existingBits := inboundTransports(c.Protocol, c.StreamSettings, c.Settings)
shared := existingBits & newBits
if shared == 0 {
continue
}
return &portConflictDetail{
InboundID: c.Id,
Remark: c.Remark,
Tag: c.Tag,
Listen: c.Listen,
Port: c.Port,
Transports: shared,
}, nil
}
return nil, nil
}
// amneziawgForwardedPortOwner names the AmneziaWG row on the same host whose peer
// forwards inbound's port -- a bind on every interface that only the AWG side checked.
func amneziawgForwardedPortOwner(db *gorm.DB, inbound *model.Inbound, ignoreId int) (*portConflictDetail, error) {
var rows []*model.Inbound
q := db.Model(model.Inbound{}).Where("protocol = ?", model.AmneziaWG)
if ignoreId > 0 {
q = q.Where("id != ?", ignoreId)
}
if err := q.Find(&rows).Error; err != nil {
return nil, err
}
for _, row := range rows {
if !sameNode(row.NodeID, inbound.NodeID) {
continue
}
instance, ok := amneziawg.InstanceFromInbound(row)
if !ok {
continue
}
email, forwards := amneziawgnet.ForwardedPortOwner(instance, inbound.Port)
if !forwards {
continue
}
return &portConflictDetail{
InboundID: row.Id,
Remark: row.Remark,
Tag: row.Tag,
// the forward binds :port on every interface, wherever the
// candidate asked to listen.
Listen: "",
Port: inbound.Port,
ForwardedBy: email,
}, nil
}
return nil, nil
}
// checkAmneziawgnetSocksConflict: inbound's port vs the relay port every matching
// local row reserves, emitted or not; db keeps it in the caller's transaction (#6225).
func checkAmneziawgnetSocksConflict(db *gorm.DB, inbound *model.Inbound, ignoreId int, newBits transportBits) (*portConflictDetail, error) {
// A disabled row still owns the slot its id derives: SetInboundEnable flips
// the column with no port check, so enabling it later must not collide.
var candidates []*model.Inbound
q := db.Model(model.Inbound{}).Where("protocol = ? AND node_id IS NULL", model.AmneziaWG)
if ignoreId > 0 {
q = q.Where("id != ?", ignoreId)
}
if err := q.Find(&candidates).Error; err != nil {
return nil, err
}
// Ownership does not depend on the peers: the relay appears when the first
// client is added, and the client paths run no port check at all.
for _, c := range candidates {
if amneziawgnet.SOCKSPortForInbound(c.Id) != inbound.Port {
continue
}
return &portConflictDetail{
InboundID: c.Id,
Remark: c.Remark,
Tag: c.Tag,
Listen: "127.0.0.1",
Port: inbound.Port,
Transports: newBits,
}, nil
}
return nil, nil
}
// checkAmneziawgnetSocksRelayCollision reports whether id's derived relay port
// is already claimed by another local AmneziaWG inbound, disabled rows included.
func checkAmneziawgnetSocksRelayCollision(db *gorm.DB, id int) (*portConflictDetail, error) {
relayPort := amneziawgnet.SOCKSPortForInbound(id)
var candidates []*model.Inbound
if err := db.Model(model.Inbound{}).
Where("protocol = ? AND node_id IS NULL AND id != ?", model.AmneziaWG, id).
Find(&candidates).Error; err != nil {
return nil, err
}
for _, c := range candidates {
if amneziawgnet.SOCKSPortForInbound(c.Id) != relayPort {
continue
}
return &portConflictDetail{
InboundID: c.Id,
Remark: c.Remark,
Tag: c.Tag,
Listen: "127.0.0.1",
Port: relayPort,
Relay: true,
Transports: transportTCP,
}, nil
}
return nil, nil
}
// amneziawgnetSocksSelfConflict: a row's own WireGuard port vs the relay port its
// own id derives -- all three checks below exclude that id, so nothing else does.
func amneziawgnetSocksSelfConflict(inbound *model.Inbound, id int) string {
if id <= 0 || inbound.NodeID != nil || !listenOverlaps(loopbackBind, inboundBindAddr(inbound)) {
return ""
}
relayPort := amneziawgnet.SOCKSPortForInbound(id)
if inbound.Port != relayPort {
return ""
}
return fmt.Sprintf("WireGuard port %d is inbound #%d's own SOCKS5 relay port on 127.0.0.1; choose a different WireGuard port",
relayPort, id)
}
// checkAmneziawgnetSocksReverseConflict mirrors checkAmneziawgnetSocksConflict:
// does id's own derived relay port collide with some other inbound's port.
func checkAmneziawgnetSocksReverseConflict(db *gorm.DB, id int) (*portConflictDetail, error) {
relayPort := amneziawgnet.SOCKSPortForInbound(id)
var candidates []*model.Inbound
if err := db.Model(model.Inbound{}).
Where("port = ? AND node_id IS NULL AND id != ?", relayPort, id).
Find(&candidates).Error; err != nil {
return nil, err
}
for _, c := range candidates {
if !listenOverlaps(loopbackBind, inboundBindAddr(c)) {
continue
}
return &portConflictDetail{
InboundID: c.Id,
Remark: c.Remark,
Tag: c.Tag,
Listen: c.Listen,
Port: relayPort,
Relay: true,
Transports: transportTCP,
}, nil
}
return nil, nil
}
func checkTuicSocksConflict(db *gorm.DB, inbound *model.Inbound, ignoreId int, newBits transportBits) (*portConflictDetail, error) {
var candidates []*model.Inbound
q := db.Model(model.Inbound{}).Where("protocol = ? AND node_id IS NULL", model.TUIC)
if ignoreId > 0 {
q = q.Where("id != ?", ignoreId)
}
if err := q.Find(&candidates).Error; err != nil {
return nil, err
}
for _, c := range candidates {
if _, ok := tuic.InstanceFromInbound(c); !ok {
continue
}
if tuic.SOCKSPortForInbound(c.Id) != inbound.Port {
continue
}
return &portConflictDetail{
InboundID: c.Id,
Remark: c.Remark,
Tag: c.Tag,
Listen: "127.0.0.1",
Port: inbound.Port,
Transports: newBits,
}, nil
}
return nil, nil
}
func checkTuicSocksRelayCollision(db *gorm.DB, id int) (*portConflictDetail, error) {
relayPort := tuic.SOCKSPortForInbound(id)
var candidates []*model.Inbound
if err := db.Model(model.Inbound{}).
Where("protocol = ? AND node_id IS NULL AND id != ?", model.TUIC, id).
Find(&candidates).Error; err != nil {
return nil, err
}
for _, c := range candidates {
if tuic.SOCKSPortForInbound(c.Id) != relayPort {
continue
}
return &portConflictDetail{
InboundID: c.Id,
Remark: c.Remark,
Tag: c.Tag,
Listen: "127.0.0.1",
Port: relayPort,
Relay: true,
Transports: transportTCP,
}, nil
}
return nil, nil
}
func tuicSocksSelfConflict(inbound *model.Inbound, id int) string {
if id <= 0 || inbound.NodeID != nil || !listenOverlaps(loopbackBind, inboundBindAddr(inbound)) {
return ""
}
relayPort := tuic.SOCKSPortForInbound(id)
if inbound.Port != relayPort {
return ""
}
return fmt.Sprintf("TUIC port %d is inbound #%d's own SOCKS5 relay port on 127.0.0.1; choose a different TUIC port",
relayPort, id)
}
func checkTuicSocksReverseConflict(db *gorm.DB, id int) (*portConflictDetail, error) {
relayPort := tuic.SOCKSPortForInbound(id)
var candidates []*model.Inbound
if err := db.Model(model.Inbound{}).
Where("port = ? AND node_id IS NULL AND id != ?", relayPort, id).
Find(&candidates).Error; err != nil {
return nil, err
}
for _, c := range candidates {
if !listenOverlaps(loopbackBind, inboundBindAddr(c)) {
continue
}
return &portConflictDetail{
InboundID: c.Id,
Remark: c.Remark,
Tag: c.Tag,
Listen: c.Listen,
Port: relayPort,
Relay: true,
Transports: transportTCP,
}, nil
}
return nil, nil
}
func sameNode(a, b *int) bool {
if a == nil && b == nil {
return true
}
if a == nil || b == nil {
return false
}
return *a == *b
}
func baseInboundTag(port int) string {
return fmt.Sprintf("in-%v", port)
}
func transportTagSuffix(b transportBits) string {
switch b {
case transportTCP:
return "tcp"
case transportUDP:
return "udp"
case transportTCP | transportUDP:
return "tcpudp"
}
return "any"
}
// nodeTagPrefix scopes a tag to one remote node so the same listen+port
// can live on the central panel and on a node without bumping the global
// UNIQUE(inbounds.tag) constraint. nil → "" (local panel).
func nodeTagPrefix(nodeID *int) string {
if nodeID == nil {
return ""
}
return fmt.Sprintf("n%d-", *nodeID)
}
func composeInboundTag(port int, nodeID *int, bits transportBits) string {
return nodeTagPrefix(nodeID) + baseInboundTag(port) + "-" + transportTagSuffix(bits)
}
func isAutoGeneratedTag(tag string, port int, nodeID *int, bits transportBits) bool {
base := composeInboundTag(port, nodeID, bits)
if tag == base {
return true
}
suffix, ok := strings.CutPrefix(tag, base+"-")
if !ok || suffix == "" {
return false
}
for _, r := range suffix {
if r < '0' || r > '9' {
return false
}
}
return true
}
func (s *InboundService) generateInboundTag(inbound *model.Inbound, ignoreId int) (string, error) {
bits := inboundTransports(inbound.Protocol, inbound.StreamSettings, inbound.Settings)
candidate := composeInboundTag(inbound.Port, inbound.NodeID, bits)
exists, err := s.tagExists(candidate, ignoreId)
if err != nil {
return "", err
}
if !exists {
return candidate, nil
}
for i := 2; i < 100; i++ {
c := fmt.Sprintf("%s-%d", candidate, i)
exists, err = s.tagExists(c, ignoreId)
if err != nil {
return "", err
}
if !exists {
return c, nil
}
}
return "", common.NewError("could not pick a unique inbound tag for port:", inbound.Port)
}
func (s *InboundService) resolveInboundTag(inbound *model.Inbound, ignoreId int) (string, error) {
if inbound.Tag != "" {
taken, err := s.tagExists(inbound.Tag, ignoreId)
if err != nil {
return "", err
}
if !taken {
return inbound.Tag, nil
}
}
return s.generateInboundTag(inbound, ignoreId)
}
func (s *InboundService) tagExists(tag string, ignoreId int) (bool, error) {
db := database.GetDB()
q := db.Model(model.Inbound{}).Where("tag = ?", tag)
if ignoreId > 0 {
q = q.Where("id != ?", ignoreId)
}
var count int64
if err := q.Count(&count).Error; err != nil {
return false, err
}
return count > 0, nil
}