Files
3x-ui/internal/web/service/client_crud.go
T
n0ctal 5c7ca5b579 feat(clients): give each client its own traffic reset cycle (#6240)
* feat(clients): give each client its own traffic reset cycle

Traffic reset is configured on the inbound, so every client sharing an
inbound resets together. An operator running a monthly 1000GB plan and a
weekly 200GB plan side by side has to press Reset Traffic by hand.

Clients now carry the same trafficReset / trafficResetDay pair the
inbound already has, with the same vocabulary and the same monthly
due-day rule, and PeriodicTrafficResetJob makes a second pass over the
clients whose own cycle matches the period it is running for. A client
that leaves the field at never behaves exactly as before: only its
inbound's schedule can reset it.

The fields live on ClientRecord as well as in the inbound settings JSON,
so an ordinary edit does not write the cycle back as empty, and an
unknown period is rejected rather than coerced, since a coerced value
would read as configured while no job would ever select the client.

Cron expressions and a custom post-reset quota from the issue are left
out: both are separate decisions, and neither has an inbound-level
counterpart to stay consistent with.

* fix(clients): make the per-client reset cycle editable and safe to run

Review found three things wrong with the first cut, one of them mine and
worse than the bug it replaced.

The cycle could only be set at creation. ClientService.Update writes the
columns directly only for a client with no inbounds; the normal path goes
through SyncInbound and applyClientRecordMerge, which this change had not
extended, so an edit updated the settings JSON while the clients column
kept the old value and the job kept applying the old cycle. The earlier
test passed because it asserted the value survived an unrelated edit,
which it did precisely because nothing ever wrote it. Replaced with a
test that changes the cycle and switches it off again.

Avoiding the re-enable that ResetTrafficByEmail performs was wrong.
Depletion disables clients.enable and the settings JSON as well as
client_traffics.enable, so lifting only the quota gate left a depleted
client out of the generated config with zeroed counters, which no longer
match the depleted predicate: locked out permanently. The rule is now
about cause, not state — a client the quota switched off is restored, one
disabled below its quota was switched off by hand and is skipped.

The bulk path also bypassed node propagation and the MTProto sidecar
quota that ResetTrafficByEmail handles, so it silently did nothing on
node-backed inbounds. Dropped in favour of the integrated path, whose
needRestart is now collected and turned into a single SetToNeedRestart.

Also adds the AutoMigrate NULL backfill, guards the merge so a stale node
snapshot cannot erase a configured cycle, validates the bulk-create and
import paths, normalizes the day the way the inbound path does, marks the
fields omitempty so existing clients match the published contract, and
shares one TRAFFIC_RESETS tuple between the three forms.

* fix(clients): validate renew fields on the bulk and import paths too

BulkCreate and ImportClients insert client records without going through
Create, so the resetDay/resetMax checks added with the calendar renewal
(#6239) and the renew cap (#6238) never ran there. An API caller could
store resetDay 45 or a negative resetMax, values the renewal query then
mishandles silently. Mirror Create's validation on both batch paths, next
to the trafficReset check they already carry.

---------

Co-authored-by: Sanaei <ho3ein.sanaei@gmail.com>
2026-08-18 13:08:44 +02:00

914 lines
26 KiB
Go

package service
import (
"encoding/base64"
"encoding/json"
"errors"
"fmt"
"strings"
"time"
"unicode"
"github.com/google/uuid"
"github.com/mhsanaei/3x-ui/v3/internal/database"
"github.com/mhsanaei/3x-ui/v3/internal/database/model"
"github.com/mhsanaei/3x-ui/v3/internal/util/common"
"github.com/mhsanaei/3x-ui/v3/internal/util/random"
"github.com/mhsanaei/3x-ui/v3/internal/xray"
"gorm.io/gorm"
)
func hasForbiddenClientChar(s string) bool {
for _, r := range s {
if r == '/' || r == '\\' || r < 0x20 || r == 0x7f || unicode.IsSpace(r) {
return true
}
}
return false
}
func validateClientEmail(email string) error {
if hasForbiddenClientChar(email) {
return common.NewError("client email contains an invalid character:", email)
}
return nil
}
func validateClientSubID(subID string) error {
if hasForbiddenClientChar(subID) {
return common.NewError("client subId contains an invalid character:", subID)
}
return nil
}
// Rejected rather than coerced: an unknown cycle would leave the operator with
// a field that reads as configured while no job ever selects the client.
func validateClientTrafficReset(period string, day int) error {
switch period {
case "", "never", "hourly", "daily", "weekly", "monthly":
default:
return common.NewError("client trafficReset must be never, hourly, daily, weekly or monthly, got:", period)
}
if day < 0 || day > 31 {
return common.NewError("client trafficResetDay must be between 0 and 31, got:", day)
}
return nil
}
// Rejected rather than clamped: nextCalendarRenewal would silently move an
// out-of-range day, and a negative one drops out of the renewal query entirely.
func validateClientResetDay(day int) error {
if day < 0 || day > 31 {
return common.NewError("client resetDay must be between 0 and 31, got:", day)
}
return nil
}
// Rejected rather than coerced: a negative cap reads as "unlimited" to a caller
// but selects nothing, so the client would silently stop renewing.
func validateClientResetMax(resetMax int) error {
if resetMax < 0 {
return common.NewError("client resetMax must not be negative, got:", resetMax)
}
return nil
}
// normalizeClientTrafficReset stores what the inbound path would store, so the
// day never reaches the DB as a 0 that three layers downstream each clamp to 1.
func normalizeClientTrafficReset(c *model.Client) {
if c.TrafficReset == "" {
c.TrafficReset = "never"
}
c.TrafficResetDay = normalizeTrafficResetDay(c.TrafficResetDay)
}
// ClientResetCycle is the slice of a client the reset job needs: enough to know
// whether it is due, and whether its disable is the quota's doing or the operator's.
type ClientResetCycle struct {
Email string
TrafficResetDay int
Enable bool
Total int64
Used int64
}
// Depleted reports a client the quota switched off. A reset restores that one;
// a client disabled below its quota was switched off by hand and stays off.
func (c ClientResetCycle) Depleted() bool {
return c.Total > 0 && c.Used >= c.Total
}
// GetClientsByTrafficReset returns the clients whose own reset cycle matches the
// period, independent of the cycle configured on the inbounds they belong to.
func (s *ClientService) GetClientsByTrafficReset(period string) ([]ClientResetCycle, error) {
var cycles []ClientResetCycle
err := database.GetDB().Table("clients c").
Select("c.email, c.traffic_reset_day, c.enable, COALESCE(ct.total, 0) AS total, COALESCE(ct.up, 0) + COALESCE(ct.down, 0) AS used").
Joins("LEFT JOIN client_traffics ct ON ct.email = c.email").
Where("c.traffic_reset = ?", period).
Scan(&cycles).Error
if err != nil {
return nil, err
}
return cycles, nil
}
func (s *ClientService) Create(inboundSvc *InboundService, payload *ClientCreatePayload) (bool, error) {
if payload == nil {
return false, common.NewError("empty payload")
}
client := payload.Client
if strings.TrimSpace(client.Email) == "" {
return false, common.NewError("client email is required")
}
if err := validateClientEmail(client.Email); err != nil {
return false, err
}
if err := validateClientSubID(client.SubID); err != nil {
return false, err
}
if err := validateClientResetDay(client.ResetDay); err != nil {
return false, err
}
if err := validateClientResetMax(client.ResetMax); err != nil {
return false, err
}
if err := validateClientTrafficReset(client.TrafficReset, client.TrafficResetDay); err != nil {
return false, err
}
normalizeClientTrafficReset(&client)
if len(payload.InboundIds) == 0 {
return false, common.NewError("at least one inbound is required")
}
if client.SubID == "" {
client.SubID = uuid.NewString()
}
if !client.Enable {
client.Enable = true
}
now := time.Now().UnixMilli()
if client.CreatedAt == 0 {
client.CreatedAt = now
}
client.UpdatedAt = now
existing := &model.ClientRecord{}
err := database.GetDB().Where("email = ?", client.Email).First(existing).Error
if err != nil && !errors.Is(err, gorm.ErrRecordNotFound) {
return false, err
}
emailTaken := !errors.Is(err, gorm.ErrRecordNotFound)
if emailTaken {
if existing.SubID == "" || existing.SubID != client.SubID {
return false, common.NewError("email already in use:", client.Email)
}
// Reuse stored credentials when re-adding an existing identity, or
// fillProtocolDefaults mints a fresh UUID that desyncs other inbounds.
if client.ID == "" {
client.ID = existing.UUID
}
if client.Password == "" {
client.Password = existing.Password
}
if client.Auth == "" {
client.Auth = existing.Auth
}
if client.Secret == "" {
client.Secret = existing.Secret
}
}
if client.SubID != "" {
var subTaken int64
if err := database.GetDB().Model(&model.ClientRecord{}).
Where("sub_id = ? AND email <> ?", client.SubID, client.Email).
Count(&subTaken).Error; err != nil {
return false, err
}
if subTaken > 0 {
return false, common.NewError("subId already in use:", client.SubID)
}
}
emailSubIDs, sidErr := inboundSvc.getAllEmailSubIDs()
if sidErr != nil {
return false, sidErr
}
needRestart := false
for _, ibId := range payload.InboundIds {
inbound, getErr := inboundSvc.GetInbound(ibId)
if getErr != nil {
return needRestart, getErr
}
if err := s.fillProtocolDefaults(&client, inbound); err != nil {
return needRestart, err
}
settingsPayload, mErr := json.Marshal(map[string][]model.Client{"clients": {clientWithInboundFlow(client, inbound)}})
if mErr != nil {
return needRestart, mErr
}
nr, addErr := s.addInboundClient(inboundSvc, &model.Inbound{
Id: ibId,
Settings: string(settingsPayload),
}, emailSubIDs)
if addErr != nil {
return needRestart, addErr
}
if nr {
needRestart = true
}
}
if err := s.setClientLimitHwidByEmail(nil, client.Email, payload.LimitHwid); err != nil {
return needRestart, err
}
return needRestart, nil
}
func (s *ClientService) fillProtocolDefaults(c *model.Client, ib *model.Inbound) error {
switch ib.Protocol {
case model.VMESS, model.VLESS:
if c.ID == "" {
c.ID = uuid.NewString()
}
case model.Trojan:
if c.Password == "" {
c.Password = strings.ReplaceAll(uuid.NewString(), "-", "")
}
case model.Shadowsocks:
method := shadowsocksMethodFromSettings(ib.Settings)
if c.Password == "" || !validShadowsocksClientKey(method, c.Password) {
c.Password = randomShadowsocksClientKey(method)
}
case model.Hysteria:
if c.Auth == "" {
c.Auth = strings.ReplaceAll(uuid.NewString(), "-", "")
}
case model.MTProto:
if c.Secret == "" {
c.Secret = model.GenerateFakeTLSSecret(mtprotoDomainFromSettings(ib.Settings))
}
}
return nil
}
// defaultMtprotoDomain is the FakeTLS fronting domain used when an mtproto
// inbound carries no fakeTlsDomain of its own; it mirrors the frontend default.
const defaultMtprotoDomain = "www.cloudflare.com"
// mtprotoDomainFromSettings returns the inbound-level FakeTLS domain, falling
// back to the default when unset, so a generated client secret always fronts a
// real hostname.
func mtprotoDomainFromSettings(settings string) string {
domain := ""
if settings != "" {
var m map[string]any
if err := json.Unmarshal([]byte(settings), &m); err == nil {
domain, _ = m["fakeTlsDomain"].(string)
}
}
domain = strings.TrimSpace(domain)
if domain == "" {
return defaultMtprotoDomain
}
return domain
}
func clientWithInboundFlow(c model.Client, ib *model.Inbound) model.Client {
if ib.DisableFlow || !inboundCanEnableTlsFlow(string(ib.Protocol), ib.StreamSettings, ib.Settings) {
c.Flow = ""
}
return c
}
func shadowsocksMethodFromSettings(settings string) string {
if settings == "" {
return ""
}
var m map[string]any
if err := json.Unmarshal([]byte(settings), &m); err != nil {
return ""
}
method, _ := m["method"].(string)
return method
}
func randomShadowsocksClientKey(method string) string {
if n := shadowsocksKeyBytes(method); n > 0 {
return random.Base64Bytes(n)
}
return strings.ReplaceAll(uuid.NewString(), "-", "")
}
func validShadowsocksClientKey(method, key string) bool {
n := shadowsocksKeyBytes(method)
if n == 0 {
return key != ""
}
decoded, err := base64.StdEncoding.DecodeString(key)
if err != nil {
return false
}
return len(decoded) == n
}
func shadowsocksKeyBytes(method string) int {
switch method {
case "2022-blake3-aes-128-gcm":
return 16
case "2022-blake3-aes-256-gcm", "2022-blake3-chacha20-poly1305":
return 32
}
return 0
}
// normalizeShadowsocksClientKeys rewrites any Shadowsocks-2022 client password
// whose decoded length no longer matches settings.method, which happens after the
// inbound method is switched between ciphers of different key sizes (e.g.
// aes-256↔aes-128). A wrong-length uPSK makes xray reject the user, so the link
// fails to connect; regenerating restores a valid key (clients must re-fetch).
// Non-Shadowsocks / legacy-SS settings pass through unchanged.
func normalizeShadowsocksClientKeys(settings string) (string, bool) {
method := shadowsocksMethodFromSettings(settings)
if shadowsocksKeyBytes(method) == 0 {
return settings, false
}
var m map[string]any
if err := json.Unmarshal([]byte(settings), &m); err != nil {
return settings, false
}
clients, ok := m["clients"].([]any)
if !ok {
return settings, false
}
changed := false
for i := range clients {
c, ok := clients[i].(map[string]any)
if !ok {
continue
}
if pw, _ := c["password"].(string); validShadowsocksClientKey(method, pw) {
continue
}
c["password"] = randomShadowsocksClientKey(method)
clients[i] = c
changed = true
}
if !changed {
return settings, false
}
m["clients"] = clients
bs, err := json.MarshalIndent(m, "", " ")
if err != nil {
return settings, false
}
return string(bs), true
}
func applyShadowsocksClientMethod(clients []any, settings map[string]any) {
method, _ := settings["method"].(string)
is2022 := strings.HasPrefix(method, "2022-blake3-")
for i := range clients {
cm, ok := clients[i].(map[string]any)
if !ok {
continue
}
if is2022 {
if _, hasKey := cm["method"]; hasKey {
delete(cm, "method")
clients[i] = cm
}
continue
}
if method == "" {
continue
}
if existing, _ := cm["method"].(string); existing != "" {
continue
}
cm["method"] = method
clients[i] = cm
}
}
func (s *ClientService) Update(inboundSvc *InboundService, id int, updated model.Client, limitHwid int, inboundFilter ...int) (bool, error) {
existing, err := s.GetByID(id)
if err != nil {
return false, err
}
inboundIds, err := s.GetInboundIdsForRecord(id)
if err != nil {
return false, err
}
if len(inboundFilter) > 0 {
allow := make(map[int]struct{}, len(inboundFilter))
for _, fid := range inboundFilter {
allow[fid] = struct{}{}
}
filtered := inboundIds[:0:0]
for _, ibId := range inboundIds {
if _, ok := allow[ibId]; ok {
filtered = append(filtered, ibId)
}
}
inboundIds = filtered
}
if strings.TrimSpace(updated.Email) == "" {
return false, common.NewError("client email is required")
}
if err := validateClientEmail(updated.Email); err != nil {
return false, err
}
if err := validateClientSubID(updated.SubID); err != nil {
return false, err
}
if err := validateClientResetDay(updated.ResetDay); err != nil {
return false, err
}
if err := validateClientResetMax(updated.ResetMax); err != nil {
return false, err
}
if err := validateClientTrafficReset(updated.TrafficReset, updated.TrafficResetDay); err != nil {
return false, err
}
normalizeClientTrafficReset(&updated)
if updated.SubID == "" {
updated.SubID = existing.SubID
}
if updated.SubID == "" {
updated.SubID = uuid.NewString()
}
updated.UpdatedAt = time.Now().UnixMilli()
if updated.CreatedAt == 0 {
updated.CreatedAt = existing.CreatedAt
}
// Preserve existing credentials when the caller omits them, so a partial
// update (e.g. only changing traffic/expiry) doesn't silently rotate the
// client's UUID/password/auth via fillProtocolDefaults. Supplying a new
// value still rotates it intentionally.
if updated.ID == "" {
updated.ID = existing.UUID
}
if updated.Password == "" {
updated.Password = existing.Password
}
if updated.Auth == "" {
updated.Auth = existing.Auth
}
if updated.Secret == "" {
updated.Secret = existing.Secret
}
if updated.Email != existing.Email {
var collisionCount int64
if err := database.GetDB().Model(&model.ClientRecord{}).
Where("email = ? AND id <> ?", updated.Email, id).
Count(&collisionCount).Error; err != nil {
return false, err
}
if collisionCount > 0 {
return false, common.NewError("Duplicate email:", updated.Email)
}
}
if updated.SubID != existing.SubID {
var subCollision int64
if err := database.GetDB().Model(&model.ClientRecord{}).
Where("sub_id = ? AND id <> ?", updated.SubID, id).
Count(&subCollision).Error; err != nil {
return false, err
}
if subCollision > 0 {
return false, common.NewError("Duplicate subId:", updated.SubID)
}
}
needRestart := false
for _, ibId := range inboundIds {
inbound, getErr := inboundSvc.GetInbound(ibId)
if getErr != nil {
if errors.Is(getErr, gorm.ErrRecordNotFound) {
if err := database.GetDB().
Where("client_id = ? AND inbound_id = ?", id, ibId).
Delete(&model.ClientInbound{}).Error; err != nil {
return needRestart, err
}
continue
}
return needRestart, getErr
}
if existing.Email == "" {
continue
}
if err := s.fillProtocolDefaults(&updated, inbound); err != nil {
return needRestart, err
}
settingsPayload, mErr := json.Marshal(map[string][]model.Client{"clients": {clientWithInboundFlow(updated, inbound)}})
if mErr != nil {
return needRestart, mErr
}
nr, upErr := s.UpdateInboundClient(inboundSvc, &model.Inbound{
Id: ibId,
Settings: string(settingsPayload),
}, existing.Email)
if upErr != nil {
return needRestart, upErr
}
if nr {
needRestart = true
}
}
// UpdateInboundClient renames the record atomically with each inbound's
// settings JSON; this direct write only covers records with no inbound left.
if updated.Email != existing.Email {
if err := database.GetDB().Model(&model.ClientRecord{}).
Where("id = ? AND email = ?", id, existing.Email).
Update("email", updated.Email).Error; err != nil {
return needRestart, err
}
}
if len(inboundIds) == 0 {
merged := *existing
applyClientRecordMerge(&merged, updated.ToRecord())
if err := database.GetDB().Model(&model.ClientRecord{}).
Where("id = ?", id).
Updates(map[string]any{
"sub_id": merged.SubID,
"uuid": merged.UUID,
"password": merged.Password,
"auth": merged.Auth,
"secret": merged.Secret,
"flow": merged.Flow,
"security": merged.Security,
"wg_private_key": merged.PrivateKey,
"wg_public_key": merged.PublicKey,
"wg_allowed_ips": merged.AllowedIPs,
"wg_pre_shared_key": merged.PreSharedKey,
"wg_keep_alive": merged.KeepAlive,
"limit_ip": merged.LimitIP,
"total_gb": merged.TotalGB,
"expiry_time": merged.ExpiryTime,
"tg_id": merged.TgID,
"comment": merged.Comment,
"reset": merged.Reset,
"reset_day": merged.ResetDay,
"reset_max": merged.ResetMax,
"traffic_reset": merged.TrafficReset,
"traffic_reset_day": merged.TrafficResetDay,
}).Error; err != nil {
return needRestart, err
}
}
reverseStr := ""
if updated.Reverse != nil && strings.TrimSpace(updated.Reverse.Tag) != "" {
if b, mErr := json.Marshal(updated.Reverse); mErr == nil {
reverseStr = string(b)
}
}
if err := database.GetDB().Model(&model.ClientRecord{}).
Where("id = ?", id).
Update("reverse", reverseStr).Error; err != nil {
return needRestart, err
}
// Persist the group explicitly. SyncInbound deliberately preserves the
// stored group when the inbound settings carry none — so a node snapshot or a
// group-less settings rebuild can't wipe it (see SyncInbound + its tests).
// That guard also meant clearing the group in the client editor never took
// effect. The editor always round-trips the field, so apply it here,
// including the empty string that removes the client from its group.
if err := database.GetDB().Model(&model.ClientRecord{}).
Where("id = ?", id).
UpdateColumn("group_name", updated.Group).Error; err != nil {
return needRestart, err
}
// Same shape as the group write above: SyncInbound keeps a stored ad-tag
// when the incoming settings carry none, so clearing the override must be
// applied here, where the editor always round-trips the field.
if err := database.GetDB().Model(&model.ClientRecord{}).
Where("id = ?", id).
UpdateColumn("ad_tag", updated.AdTag).Error; err != nil {
return needRestart, err
}
if err := database.GetDB().Model(&model.ClientRecord{}).
Where("id = ?", id).
UpdateColumn("enable", updated.Enable).Error; err != nil {
return needRestart, err
}
if err := s.setClientLimitHwidByEmail(nil, updated.Email, limitHwid); err != nil {
return needRestart, err
}
if err := database.GetDB().Model(&model.ClientRecord{}).
Where("id = ?", id).
UpdateColumn("updated_at", time.Now().UnixMilli()).Error; err != nil {
return needRestart, err
}
return needRestart, nil
}
func (s *ClientService) Delete(inboundSvc *InboundService, id int, keepTraffic bool) (bool, error) {
existing, err := s.GetByID(id)
if err != nil {
return false, err
}
tombstoneClientEmail(existing.Email)
inboundIds, err := s.GetInboundIdsForRecord(id)
if err != nil {
withdrawClientTombstones(existing.Email)
return false, err
}
needRestart := false
var delErrs []error
for _, ibId := range inboundIds {
if _, getErr := inboundSvc.GetInbound(ibId); getErr != nil {
if errors.Is(getErr, gorm.ErrRecordNotFound) {
continue
}
delErrs = append(delErrs, fmt.Errorf("inbound %d: %w", ibId, getErr))
continue
}
// Always delete by email — the client's stable identity. This removes
// every matching entry from the inbound's settings even when the stored
// credential (UUID/password/auth) drifted from the inbound JSON, or a
// duplicate entry with the same email exists.
if existing.Email == "" {
continue
}
nr, delErr := s.DelInboundClientByEmail(inboundSvc, ibId, existing.Email, keepTraffic, true)
if delErr != nil {
// The client is already absent from this inbound (data drift or a
// retried delete). Skip it — deletion stays idempotent.
if errors.Is(delErr, ErrClientNotInInbound) {
continue
}
delErrs = append(delErrs, fmt.Errorf("inbound %d: %w", ibId, delErr))
continue
}
if nr {
needRestart = true
}
}
// A failed inbound still holds the client in its settings JSON: keep the
// record so the next delete retries exactly the leftovers, and report it.
// The tombstone lifts with it, or the next node merge finishes the deletion.
if len(delErrs) > 0 {
withdrawClientTombstones(existing.Email)
return needRestart, errors.Join(delErrs...)
}
db := database.GetDB()
if err := db.Transaction(func(tx *gorm.DB) error {
if existing.Email != "" {
if err := adjustGroupBaselinesForRemovedTraffic(tx, []string{existing.Email}); err != nil {
return err
}
}
if err := tx.Where("client_id = ?", id).Delete(&model.ClientInbound{}).Error; err != nil {
return err
}
if err := tx.Where("client_id = ?", id).Delete(&model.ClientExternalLink{}).Error; err != nil {
return err
}
if err := clearClientHwidsBySubIDTx(tx, existing.SubID); err != nil {
return err
}
if !keepTraffic && existing.Email != "" {
if err := tx.Where("email = ?", existing.Email).Delete(&xray.ClientTraffic{}).Error; err != nil {
return err
}
if err := clearGlobalTraffic(tx, existing.Email); err != nil {
return err
}
if err := tx.Where("client_email = ?", existing.Email).Delete(&model.InboundClientIps{}).Error; err != nil {
return err
}
if err := tx.Where("email = ?", existing.Email).Delete(&model.NodeClientTraffic{}).Error; err != nil {
return err
}
}
return tx.Delete(&model.ClientRecord{}, id).Error
}); err != nil {
withdrawClientTombstones(existing.Email)
return needRestart, err
}
return needRestart, nil
}
func (s *ClientService) Attach(inboundSvc *InboundService, id int, inboundIds []int) (bool, error) {
existing, err := s.GetByID(id)
if err != nil {
return false, err
}
currentIds, err := s.GetInboundIdsForRecord(id)
if err != nil {
return false, err
}
have := make(map[int]struct{}, len(currentIds))
for _, x := range currentIds {
have[x] = struct{}{}
}
clientWire := existing.ToClient()
flow, ffErr := s.EffectiveFlow(nil, id)
if ffErr != nil {
return false, ffErr
}
clientWire.Flow = flow
clientWire.UpdatedAt = time.Now().UnixMilli()
emailSubIDs, sidErr := inboundSvc.getAllEmailSubIDs()
if sidErr != nil {
return false, sidErr
}
needRestart := false
for _, ibId := range inboundIds {
if _, attached := have[ibId]; attached {
continue
}
inbound, getErr := inboundSvc.GetInbound(ibId)
if getErr != nil {
return needRestart, getErr
}
copyClient := *clientWire
if err := s.fillProtocolDefaults(&copyClient, inbound); err != nil {
return needRestart, err
}
settingsPayload, mErr := json.Marshal(map[string][]model.Client{"clients": {clientWithInboundFlow(copyClient, inbound)}})
if mErr != nil {
return needRestart, mErr
}
nr, addErr := s.addInboundClient(inboundSvc, &model.Inbound{
Id: ibId,
Settings: string(settingsPayload),
}, emailSubIDs)
if addErr != nil {
return needRestart, addErr
}
if nr {
needRestart = true
}
}
return needRestart, nil
}
func (s *ClientService) CreateOne(inboundSvc *InboundService, inboundId int, client model.Client) (bool, error) {
return s.Create(inboundSvc, &ClientCreatePayload{
Client: client,
InboundIds: []int{inboundId},
})
}
func (s *ClientService) DetachByEmail(inboundSvc *InboundService, inboundId int, email string) (bool, error) {
if email == "" {
return false, common.NewError("client email is required")
}
rec, err := s.GetRecordByEmail(nil, email)
if err != nil {
return false, err
}
return s.Detach(inboundSvc, rec.Id, []int{inboundId})
}
func (s *ClientService) AttachByEmail(inboundSvc *InboundService, email string, inboundIds []int) (bool, error) {
if email == "" {
return false, common.NewError("client email is required")
}
rec, err := s.GetRecordByEmail(nil, email)
if err != nil {
return false, err
}
return s.Attach(inboundSvc, rec.Id, inboundIds)
}
func (s *ClientService) DetachByEmailMany(inboundSvc *InboundService, email string, inboundIds []int) (bool, error) {
if email == "" {
return false, common.NewError("client email is required")
}
rec, err := s.GetRecordByEmail(nil, email)
if err != nil {
return false, err
}
return s.Detach(inboundSvc, rec.Id, inboundIds)
}
func (s *ClientService) DeleteByEmail(inboundSvc *InboundService, email string, keepTraffic bool) (bool, error) {
if email == "" {
return false, common.NewError("client email is required")
}
rec, err := s.GetRecordByEmail(nil, email)
if err == nil {
return s.Delete(inboundSvc, rec.Id, keepTraffic)
}
if !errors.Is(err, gorm.ErrRecordNotFound) {
return false, err
}
inboundIds, idsErr := s.findInboundIdsByClientEmail(email)
if idsErr != nil {
return false, idsErr
}
if len(inboundIds) == 0 {
return false, common.NewError(fmt.Sprintf("client %q not found in any inbound or client record", email))
}
needRestart := false
var delErrs []error
for _, ibId := range inboundIds {
nr, delErr := s.DelInboundClientByEmail(inboundSvc, ibId, email, keepTraffic, true)
if delErr != nil {
if errors.Is(delErr, ErrClientNotInInbound) {
continue
}
delErrs = append(delErrs, fmt.Errorf("inbound %d: %w", ibId, delErr))
continue
}
if nr {
needRestart = true
}
}
if len(delErrs) > 0 {
return needRestart, errors.Join(delErrs...)
}
if !keepTraffic {
db := database.GetDB()
if err := db.Where("email = ?", email).Delete(&xray.ClientTraffic{}).Error; err != nil {
return needRestart, err
}
if err := clearGlobalTraffic(db, email); err != nil {
return needRestart, err
}
if err := db.Where("client_email = ?", email).Delete(&model.InboundClientIps{}).Error; err != nil {
return needRestart, err
}
if err := db.Where("email = ?", email).Delete(&model.NodeClientTraffic{}).Error; err != nil {
return needRestart, err
}
}
return needRestart, nil
}
func (s *ClientService) UpdateByEmail(inboundSvc *InboundService, email string, updated model.Client, limitHwid int, inboundFilter ...int) (bool, error) {
if email == "" {
return false, common.NewError("client email is required")
}
rec, err := s.GetRecordByEmail(nil, email)
if err != nil {
return false, err
}
return s.Update(inboundSvc, rec.Id, updated, limitHwid, inboundFilter...)
}
func (s *ClientService) Detach(inboundSvc *InboundService, id int, inboundIds []int) (bool, error) {
existing, err := s.GetByID(id)
if err != nil {
return false, err
}
currentIds, err := s.GetInboundIdsForRecord(id)
if err != nil {
return false, err
}
have := make(map[int]struct{}, len(currentIds))
for _, x := range currentIds {
have[x] = struct{}{}
}
needRestart := false
for _, ibId := range inboundIds {
if _, attached := have[ibId]; !attached {
continue
}
if _, getErr := inboundSvc.GetInbound(ibId); getErr != nil {
return needRestart, getErr
}
// Detach by email — the client's stable identity (see Delete).
if existing.Email == "" {
continue
}
nr, delErr := s.DelInboundClientByEmail(inboundSvc, ibId, existing.Email, true, false)
if delErr != nil {
if errors.Is(delErr, ErrClientNotInInbound) {
continue
}
return needRestart, delErr
}
if nr {
needRestart = true
}
}
return needRestart, nil
}