Files
flvx/go-backend/internal/http/handler/flow_policy.go
T
sagitchu ad9b336fb9 refactor(quota): migrate traffic quota from tunnel to user level
- Replace tunnel_quota table with user_quota table
- Add user-level daily/monthly quota tracking and enforcement
- Update user CRUD to include quota configuration
- Migrate backup/restore to use user quota fields
- Update frontend API and UI for user quota management
2026-03-12 14:17:57 +08:00

621 lines
16 KiB
Go

package handler
import (
"encoding/json"
"errors"
"log"
"strconv"
"strings"
"time"
"go-backend/internal/store/model"
)
const bytesPerGB int64 = 1024 * 1024 * 1024
type userTunnelPolicy struct {
ID int64
UserID int64
TunnelID int64
Flow int64
InFlow int64
OutFlow int64
ExpTime int64
Status int
}
type gostConfigSnapshot struct {
Services []namedConfigItem `json:"services"`
Chains []namedConfigItem `json:"chains"`
Limiters []namedConfigItem `json:"limiters"`
}
type namedConfigItem struct {
Name string `json:"name"`
}
func (h *Handler) processFlowItem(nodeID int64, item flowItem) {
serviceName := strings.TrimSpace(item.N)
if serviceName == "" || serviceName == "web_api" {
return
}
forwardID, userID, userTunnelID, ok := parseFlowServiceIDs(serviceName)
if ok {
inFlow, outFlow := h.scaleFlowByTunnel(forwardID, item.D, item.U)
_ = h.repo.AddFlow(forwardID, userID, userTunnelID, inFlow, outFlow)
if quota, quotaErr := h.repo.AddUserQuotaUsage(userID, inFlow+outFlow, time.Now()); quotaErr == nil {
h.enforceUserQuotaIfNeeded(userID, quota)
}
h.processPeerShareFlowFromForward(forwardID, nodeID, serviceName, item)
if userTunnelID > 0 {
h.enforceFlowPolicies(userID, userTunnelID)
}
return
}
runtimeID, ok := parsePeerShareRuntimeServiceID(serviceName)
if !ok {
return
}
h.processPeerShareFlow(runtimeID, item)
}
func parseFlowServiceIDs(serviceName string) (int64, int64, int64, bool) {
parts := strings.Split(serviceName, "_")
if len(parts) < 3 {
return 0, 0, 0, false
}
forwardID, err1 := strconv.ParseInt(parts[0], 10, 64)
userID, err2 := strconv.ParseInt(parts[1], 10, 64)
userTunnelID, err3 := strconv.ParseInt(parts[2], 10, 64)
if err1 != nil || err2 != nil || err3 != nil || forwardID <= 0 || userID <= 0 {
return 0, 0, 0, false
}
return forwardID, userID, userTunnelID, true
}
func parsePeerShareRuntimeServiceID(serviceName string) (int64, bool) {
const prefix = "fed_svc_"
if !strings.HasPrefix(serviceName, prefix) {
return 0, false
}
raw := strings.TrimPrefix(serviceName, prefix)
if raw == "" {
return 0, false
}
parts := strings.SplitN(raw, "_", 2)
runtimeID, err := strconv.ParseInt(parts[0], 10, 64)
if err != nil || runtimeID <= 0 {
return 0, false
}
return runtimeID, true
}
func parsePeerShareInfoFromFederationTunnelName(tunnelName string) (int64, int, bool) {
tunnelName = strings.TrimSpace(tunnelName)
if !strings.HasPrefix(tunnelName, "Share-") {
return 0, 0, false
}
raw := strings.TrimPrefix(tunnelName, "Share-")
idx := strings.Index(raw, "-Port-")
if idx <= 0 {
return 0, 0, false
}
shareID, err := strconv.ParseInt(raw[:idx], 10, 64)
if err != nil || shareID <= 0 {
return 0, 0, false
}
portValue := strings.TrimSpace(raw[idx+len("-Port-"):])
port, err := strconv.Atoi(portValue)
if err != nil || port <= 0 {
return 0, 0, false
}
return shareID, port, true
}
func parsePeerShareIDFromFederationTunnelName(tunnelName string) (int64, bool) {
tunnelName = strings.TrimSpace(tunnelName)
if !strings.HasPrefix(tunnelName, "Share-") {
return 0, false
}
raw := strings.TrimPrefix(tunnelName, "Share-")
idx := strings.Index(raw, "-Port-")
if idx <= 0 {
return 0, false
}
shareID, err := strconv.ParseInt(raw[:idx], 10, 64)
if err != nil || shareID <= 0 {
return 0, false
}
return shareID, true
}
func (h *Handler) processPeerShareFlow(runtimeID int64, item flowItem) {
if h == nil || h.repo == nil || runtimeID <= 0 {
return
}
runtime, err := h.repo.GetPeerShareRuntimeByID(runtimeID)
if err != nil || runtime == nil || runtime.ShareID <= 0 || runtime.Status != 1 {
return
}
delta := item.D + item.U
if delta <= 0 {
return
}
_ = h.repo.AddPeerShareCurrentFlow(runtime.ShareID, delta)
share, err := h.repo.GetPeerShare(runtime.ShareID)
if err != nil || share == nil {
return
}
if !isPeerShareFlowExceeded(share) {
return
}
h.enforcePeerShareFlowLimit(share.ID)
}
func (h *Handler) processPeerShareFlowFromForward(forwardID int64, nodeID int64, serviceName string, item flowItem) {
if h == nil || h.repo == nil || forwardID <= 0 {
return
}
delta := item.D + item.U
if delta <= 0 {
return
}
forward, err := h.getForwardRecord(forwardID)
if err != nil || forward == nil {
// Forward not found in local database - might be a federation port-forward
// Try to find by service name in peer_share_runtime
h.processPeerShareFlowByServiceName(nodeID, serviceName, item)
return
}
tunnelName, err := h.repo.GetTunnelName(forward.TunnelID)
if err != nil {
h.processPeerShareFlowByServiceName(nodeID, serviceName, item)
return
}
shareID, ok := parsePeerShareIDFromFederationTunnelName(tunnelName)
if !ok {
h.processPeerShareFlowByServiceName(nodeID, serviceName, item)
return
}
if err := h.repo.AddPeerShareCurrentFlow(shareID, delta); err != nil {
h.processPeerShareFlowByServiceName(nodeID, serviceName, item)
return
}
share, err := h.repo.GetPeerShare(shareID)
if err != nil || share == nil {
return
}
if !isPeerShareFlowExceeded(share) {
return
}
h.enforcePeerShareFlowLimit(share.ID)
}
func normalizeForwardRuntimeServiceName(serviceName string) string {
name := strings.TrimSpace(serviceName)
if strings.HasSuffix(name, "_tcp") {
return strings.TrimSuffix(name, "_tcp")
}
if strings.HasSuffix(name, "_udp") {
return strings.TrimSuffix(name, "_udp")
}
return name
}
func (h *Handler) processPeerShareFlowByServiceName(nodeID int64, serviceName string, item flowItem) {
if h == nil || h.repo == nil || strings.TrimSpace(serviceName) == "" {
return
}
delta := item.D + item.U
if delta <= 0 {
return
}
normalized := normalizeForwardRuntimeServiceName(serviceName)
var runtimes []model.PeerShareRuntime
var err error
// Try node-scoped query first if nodeID is valid
if nodeID > 0 {
runtimes, err = h.repo.ListActiveForwardPeerShareRuntimesByNodeAndServiceName(nodeID, normalized)
if err != nil {
return
}
if len(runtimes) == 0 && normalized != serviceName {
runtimes, err = h.repo.ListActiveForwardPeerShareRuntimesByNodeAndServiceName(nodeID, serviceName)
if err != nil {
return
}
}
}
// Fallback to global query if node-scoped query returned nothing or nodeID is invalid
if len(runtimes) == 0 {
runtimes, err = h.repo.ListActiveForwardPeerShareRuntimesByServiceName(normalized)
if err != nil {
return
}
if len(runtimes) == 0 && normalized != serviceName {
runtimes, err = h.repo.ListActiveForwardPeerShareRuntimesByServiceName(serviceName)
if err != nil {
return
}
}
}
if len(runtimes) != 1 {
if len(runtimes) > 1 {
log.Printf("WARN: ambiguous peer share runtime match for service=%s nodeID=%d count=%d", serviceName, nodeID, len(runtimes))
}
return
}
runtime := runtimes[0]
_ = h.repo.AddPeerShareCurrentFlow(runtime.ShareID, delta)
matchedShare, err := h.repo.GetPeerShare(runtime.ShareID)
if err != nil || matchedShare == nil {
return
}
if isPeerShareFlowExceeded(matchedShare) {
h.enforcePeerShareFlowLimit(matchedShare.ID)
}
}
func (h *Handler) enforcePeerShareFlowLimit(shareID int64) {
if h == nil || h.repo == nil || shareID <= 0 {
return
}
runtimes, err := h.repo.ListActivePeerShareRuntimesByShareID(shareID)
if err != nil || len(runtimes) == 0 {
return
}
now := time.Now().UnixMilli()
for _, runtime := range runtimes {
if h.wsServer != nil && runtime.Applied == 1 {
if strings.TrimSpace(runtime.ServiceName) != "" {
_, _ = h.sendNodeCommand(runtime.NodeID, "DeleteService", map[string]interface{}{"services": []string{runtime.ServiceName}}, false, true)
}
if strings.TrimSpace(runtime.Role) == "middle" && strings.TrimSpace(runtime.ChainName) != "" {
_, _ = h.sendNodeCommand(runtime.NodeID, "DeleteChains", map[string]interface{}{"chain": runtime.ChainName}, false, true)
}
}
_ = h.repo.MarkPeerShareRuntimeReleased(runtime.ID, now)
}
}
func (h *Handler) scaleFlowByTunnel(forwardID int64, inFlow int64, outFlow int64) (int64, int64) {
forward, err := h.getForwardRecord(forwardID)
if err != nil || forward == nil {
return inFlow, outFlow
}
tunnel, err := h.getTunnelRecord(forward.TunnelID)
if err != nil || tunnel == nil {
return inFlow, outFlow
}
scaledIn := int64(float64(inFlow)*tunnel.TrafficRatio) * tunnel.Flow
scaledOut := int64(float64(outFlow)*tunnel.TrafficRatio) * tunnel.Flow
return scaledIn, scaledOut
}
func (h *Handler) enforceFlowPolicies(userID int64, userTunnelID int64) {
now := time.Now().UnixMilli()
if h.shouldPauseUser(userID, now) {
h.pauseUserForwards(userID, now)
}
policy, err := h.getUserTunnelPolicy(userTunnelID)
if err != nil || policy == nil {
return
}
if shouldPauseUserTunnel(policy, now) {
h.pauseUserTunnelForwards(policy.UserID, policy.TunnelID, now)
}
}
func (h *Handler) ensureUserTunnelForwardAllowed(userID int64, tunnelID int64, now int64) error {
if h == nil || h.repo == nil {
return errors.New("invalid flow policy context")
}
if userID <= 0 || tunnelID <= 0 {
return nil
}
user, err := h.repo.GetUserByID(userID)
if err != nil {
return err
}
if user == nil {
return errors.New("用户不存在")
}
if user.Status != 1 {
return errors.New("账号已禁用")
}
if user.ExpTime > 0 && user.ExpTime <= now {
return errors.New("账号已过期")
}
flowLimit := user.Flow * bytesPerGB
current := user.InFlow + user.OutFlow
if flowLimit < current {
return errors.New("流量已超额,禁止开启转发")
}
if err := h.ensureUserForwardAllowedByQuota(userID, now); err != nil {
return err
}
userTunnelID, _, _, err := h.resolveUserTunnelAndLimiter(userID, tunnelID)
if err != nil {
return err
}
if userTunnelID <= 0 {
return nil
}
policy, err := h.getUserTunnelPolicy(userTunnelID)
if err != nil {
return err
}
if policy == nil {
return nil
}
if policy.Status != 1 {
return errors.New("该隧道已禁用")
}
if policy.ExpTime > 0 && policy.ExpTime <= now {
return errors.New("该隧道已过期")
}
utFlowLimit := policy.Flow * bytesPerGB
utCurrent := policy.InFlow + policy.OutFlow
if utCurrent >= utFlowLimit {
return errors.New("该隧道流量已超额,禁止开启转发")
}
return nil
}
func (h *Handler) shouldPauseUser(userID int64, now int64) bool {
user, err := h.repo.GetUserByID(userID)
if err != nil || user == nil {
return false
}
flowLimit := user.Flow * bytesPerGB
current := user.InFlow + user.OutFlow
if flowLimit < current {
return true
}
if user.ExpTime > 0 && user.ExpTime <= now {
return true
}
return user.Status != 1
}
func shouldPauseUserTunnel(policy *userTunnelPolicy, now int64) bool {
if policy == nil {
return false
}
flowLimit := policy.Flow * bytesPerGB
current := policy.InFlow + policy.OutFlow
if current >= flowLimit {
return true
}
if policy.ExpTime > 0 && policy.ExpTime <= now {
return true
}
return policy.Status != 1
}
func (h *Handler) getUserTunnelPolicy(userTunnelID int64) (*userTunnelPolicy, error) {
if userTunnelID <= 0 {
return nil, nil
}
ut, err := h.repo.GetUserTunnelByID(userTunnelID)
if err != nil {
return nil, err
}
if ut == nil {
return nil, nil
}
return &userTunnelPolicy{
ID: ut.ID, UserID: ut.UserID, TunnelID: ut.TunnelID,
Flow: ut.Flow, InFlow: ut.InFlow, OutFlow: ut.OutFlow,
ExpTime: ut.ExpTime, Status: ut.Status,
}, nil
}
func (h *Handler) pauseUserForwards(userID int64, now int64) {
forwards, err := h.listActiveForwardsByUser(userID)
if err != nil {
return
}
h.pauseForwardRecords(forwards, now)
}
func (h *Handler) pauseUserTunnelForwards(userID int64, tunnelID int64, now int64) {
forwards, err := h.listActiveForwardsByUserTunnel(userID, tunnelID)
if err != nil {
return
}
h.pauseForwardRecords(forwards, now)
}
func (h *Handler) pauseForwardRecords(forwards []forwardRecord, now int64) {
for i := range forwards {
forward := forwards[i]
_ = h.controlForwardServices(&forward, "PauseService", false)
_ = h.repo.UpdateForwardStatus(forward.ID, 0, now)
}
}
func (h *Handler) listActiveForwardsByUser(userID int64) ([]forwardRecord, error) {
return h.repo.ListActiveForwardsByUser(userID)
}
func (h *Handler) listActiveForwardsByUserTunnel(userID int64, tunnelID int64) ([]forwardRecord, error) {
return h.repo.ListActiveForwardsByUserTunnel(userID, tunnelID)
}
func (h *Handler) cleanNodeConfigs(nodeID int64, rawConfig string) {
if h == nil || h.repo == nil || nodeID <= 0 {
return
}
if strings.TrimSpace(rawConfig) == "" {
return
}
var snapshot gostConfigSnapshot
if err := json.Unmarshal([]byte(rawConfig), &snapshot); err != nil {
return
}
h.cleanOrphanedServices(nodeID, snapshot.Services)
h.cleanOrphanedChains(nodeID, snapshot.Chains)
h.cleanOrphanedLimiters(nodeID, snapshot.Limiters)
}
func (h *Handler) cleanOrphanedServices(nodeID int64, services []namedConfigItem) {
runtimeServiceNames, err := h.repo.ListActiveForwardPeerShareRuntimeServiceNamesByNode(nodeID)
if err != nil {
return
}
minUpdatedTime := time.Now().Add(-10 * time.Minute).UnixMilli()
hasUnboundForwardPeerRuntime, err := h.repo.HasRecentUnboundForwardPeerShareRuntimeOnNode(nodeID, minUpdatedTime)
if err != nil {
hasUnboundForwardPeerRuntime = false
}
runtimeServiceSet := make(map[string]struct{}, len(runtimeServiceNames))
for _, serviceName := range runtimeServiceNames {
serviceName = strings.TrimSpace(serviceName)
if serviceName == "" {
continue
}
runtimeServiceSet[serviceName] = struct{}{}
}
for _, item := range services {
name := strings.TrimSpace(item.Name)
if name == "" || name == "web_api" {
continue
}
if strings.HasPrefix(name, "fed_svc_") {
continue
}
normalizedName := normalizeForwardRuntimeServiceName(name)
if _, ok := runtimeServiceSet[normalizedName]; ok {
continue
}
if _, ok := runtimeServiceSet[name]; ok {
continue
}
parts := strings.Split(name, "_")
if len(parts) >= 3 {
forwardID, err := strconv.ParseInt(parts[0], 10, 64)
if err == nil && forwardID > 0 && hasUnboundForwardPeerRuntime {
continue
}
if err == nil && forwardID > 0 && !h.forwardExists(forwardID) {
_, _ = h.sendNodeCommand(nodeID, "DeleteService", map[string]interface{}{"services": []string{name, parts[0] + "_" + parts[1] + "_" + parts[2], parts[0] + "_" + parts[1] + "_" + parts[2] + "_tcp", parts[0] + "_" + parts[1] + "_" + parts[2] + "_udp"}}, false, true)
continue
}
}
suffix := parts[len(parts)-1]
switch suffix {
case "tls":
tunnelID, err := strconv.ParseInt(parts[0], 10, 64)
if err != nil || tunnelID <= 0 || h.tunnelExists(tunnelID) {
continue
}
_, _ = h.sendNodeCommand(nodeID, "DeleteService", map[string]interface{}{"services": []string{name}}, false, true)
case "tcp":
if len(parts) < 4 {
continue
}
forwardID, err := strconv.ParseInt(parts[0], 10, 64)
if err == nil && forwardID > 0 && hasUnboundForwardPeerRuntime {
continue
}
if err != nil || forwardID <= 0 || h.forwardExists(forwardID) {
continue
}
base := strings.TrimSuffix(name, "_tcp")
_, _ = h.sendNodeCommand(nodeID, "DeleteService", map[string]interface{}{"services": []string{base + "_tcp", base + "_udp"}}, false, true)
}
}
}
func (h *Handler) cleanOrphanedChains(nodeID int64, chains []namedConfigItem) {
for _, item := range chains {
name := strings.TrimSpace(item.Name)
if name == "" {
continue
}
idx := strings.LastIndex(name, "_")
if idx <= 0 || idx >= len(name)-1 {
continue
}
tunnelID, err := strconv.ParseInt(name[idx+1:], 10, 64)
if err != nil || tunnelID <= 0 || h.tunnelExists(tunnelID) {
continue
}
_, _ = h.sendNodeCommand(nodeID, "DeleteChains", map[string]interface{}{"chain": name}, false, true)
}
}
func (h *Handler) cleanOrphanedLimiters(nodeID int64, limiters []namedConfigItem) {
for _, item := range limiters {
name := strings.TrimSpace(item.Name)
if name == "" || h.speedLimiterExists(name) {
continue
}
_, _ = h.sendNodeCommand(nodeID, "DeleteLimiters", map[string]interface{}{"limiter": name}, false, true)
}
}
func (h *Handler) tunnelExists(tunnelID int64) bool {
ok, _ := h.repo.TunnelExists(tunnelID)
return ok
}
func (h *Handler) forwardExists(forwardID int64) bool {
ok, _ := h.repo.ForwardExists(forwardID)
return ok
}
func (h *Handler) speedLimiterExists(name string) bool {
if name == "" {
return false
}
id, err := strconv.ParseInt(name, 10, 64)
if err != nil || id <= 0 {
return false
}
ok, _ := h.repo.SpeedLimitExists(id)
return ok
}