Files
flvx/go-backend/internal/http/handler/control_plane.go
T
sagit 3420dc5460 fix(backend): sync limiter on association instead of connection
Reverted the full sync on connection hook. Instead, ensureLimiterOnNode is called within syncForwardServices to push limiter configuration immediately before pushing the service configuration that references it.
2026-02-09 09:06:59 +00:00

1163 lines
32 KiB
Go

package handler
import (
"database/sql"
"errors"
"fmt"
"net"
"net/http"
"sort"
"strconv"
"strings"
"time"
"go-backend/internal/ws"
)
var errForwardNotFound = errors.New("forward not found")
type forwardRecord struct {
ID int64
UserID int64
UserName string
Name string
TunnelID int64
RemoteAddr string
Strategy string
Status int
}
type tunnelRecord struct {
ID int64
Type int
Status int
Flow int64
TrafficRatio float64
}
type forwardPortRecord struct {
NodeID int64
Port int
}
type nodeRecord struct {
ID int64
Name string
ServerIP string
ServerIPv4 string
ServerIPv6 string
Status int
PortRange string
TCPListenAddr string
UDPListenAddr string
InterfaceName string
}
type chainNodeRecord struct {
ChainType int
Inx int64
NodeID int64
Port int
NodeName string
Protocol string
Strategy string
}
type diagnosisTarget struct {
Address string
IP string
Port int
}
func (h *Handler) resolveForwardAccess(r *http.Request, forwardID int64) (*forwardRecord, int64, int, error) {
userID, roleID, err := userRoleFromRequest(r)
if err != nil {
return nil, 0, 0, err
}
forward, err := h.ensureForwardAccessByActor(userID, roleID, forwardID)
if err != nil {
return nil, userID, roleID, err
}
return forward, userID, roleID, nil
}
func (h *Handler) ensureForwardAccessByActor(actorUserID int64, actorRole int, forwardID int64) (*forwardRecord, error) {
forward, err := h.getForwardRecord(forwardID)
if err != nil {
return nil, err
}
if actorRole != 0 && forward.UserID != actorUserID {
return nil, errForwardNotFound
}
return forward, nil
}
func (h *Handler) ensureTunnelPermission(userID int64, roleID int, tunnelID int64) error {
if roleID == 0 {
return nil
}
var count int
err := h.repo.DB().QueryRow(`SELECT COUNT(1) FROM user_tunnel WHERE user_id = ? AND tunnel_id = ? AND status = 1`, userID, tunnelID).Scan(&count)
if err != nil {
return err
}
if count <= 0 {
return errors.New("你没有该隧道的权限")
}
return nil
}
func (h *Handler) getForwardRecord(forwardID int64) (*forwardRecord, error) {
row := h.repo.DB().QueryRow(`
SELECT id, user_id, user_name, name, tunnel_id, remote_addr, strategy, status
FROM forward WHERE id = ? LIMIT 1
`, forwardID)
var fr forwardRecord
err := row.Scan(&fr.ID, &fr.UserID, &fr.UserName, &fr.Name, &fr.TunnelID, &fr.RemoteAddr, &fr.Strategy, &fr.Status)
if err != nil {
if errors.Is(err, sql.ErrNoRows) {
return nil, errForwardNotFound
}
return nil, err
}
if strings.TrimSpace(fr.Strategy) == "" {
fr.Strategy = "fifo"
}
return &fr, nil
}
func (h *Handler) getTunnelRecord(tunnelID int64) (*tunnelRecord, error) {
row := h.repo.DB().QueryRow(`SELECT id, type, status, flow, traffic_ratio FROM tunnel WHERE id = ? LIMIT 1`, tunnelID)
var tr tunnelRecord
err := row.Scan(&tr.ID, &tr.Type, &tr.Status, &tr.Flow, &tr.TrafficRatio)
if err != nil {
if errors.Is(err, sql.ErrNoRows) {
return nil, errors.New("隧道不存在")
}
return nil, err
}
if tr.Flow <= 0 {
tr.Flow = 1
}
if tr.TrafficRatio <= 0 {
tr.TrafficRatio = 1
}
return &tr, nil
}
func (h *Handler) listForwardsByTunnel(tunnelID int64) ([]forwardRecord, error) {
rows, err := h.repo.DB().Query(`
SELECT id, user_id, user_name, name, tunnel_id, remote_addr, strategy, status
FROM forward
WHERE tunnel_id = ?
ORDER BY id ASC
`, tunnelID)
if err != nil {
return nil, err
}
defer rows.Close()
result := make([]forwardRecord, 0)
for rows.Next() {
var fr forwardRecord
if err := rows.Scan(&fr.ID, &fr.UserID, &fr.UserName, &fr.Name, &fr.TunnelID, &fr.RemoteAddr, &fr.Strategy, &fr.Status); err != nil {
return nil, err
}
if strings.TrimSpace(fr.Strategy) == "" {
fr.Strategy = "fifo"
}
result = append(result, fr)
}
if err := rows.Err(); err != nil {
return nil, err
}
return result, nil
}
func (h *Handler) listForwardPorts(forwardID int64) ([]forwardPortRecord, error) {
rows, err := h.repo.DB().Query(`SELECT node_id, port FROM forward_port WHERE forward_id = ? ORDER BY id ASC`, forwardID)
if err != nil {
return nil, err
}
defer rows.Close()
result := make([]forwardPortRecord, 0)
for rows.Next() {
var item forwardPortRecord
if err := rows.Scan(&item.NodeID, &item.Port); err != nil {
return nil, err
}
result = append(result, item)
}
if err := rows.Err(); err != nil {
return nil, err
}
return result, nil
}
func (h *Handler) getNodeRecord(nodeID int64) (*nodeRecord, error) {
row := h.repo.DB().QueryRow(`
SELECT id, name, server_ip, server_ip_v4, server_ip_v6, status, port, tcp_listen_addr, udp_listen_addr, interface_name
FROM node
WHERE id = ?
LIMIT 1
`, nodeID)
var n nodeRecord
var serverIPv4 sql.NullString
var serverIPv6 sql.NullString
var portRange sql.NullString
var tcpListen sql.NullString
var udpListen sql.NullString
var iface sql.NullString
err := row.Scan(&n.ID, &n.Name, &n.ServerIP, &serverIPv4, &serverIPv6, &n.Status, &portRange, &tcpListen, &udpListen, &iface)
if err != nil {
if errors.Is(err, sql.ErrNoRows) {
return nil, errors.New("节点不存在")
}
return nil, err
}
n.ServerIPv4 = strings.TrimSpace(serverIPv4.String)
n.ServerIPv6 = strings.TrimSpace(serverIPv6.String)
n.PortRange = strings.TrimSpace(portRange.String)
n.TCPListenAddr = strings.TrimSpace(tcpListen.String)
n.UDPListenAddr = strings.TrimSpace(udpListen.String)
n.InterfaceName = strings.TrimSpace(iface.String)
if n.TCPListenAddr == "" {
n.TCPListenAddr = "[::]"
}
if n.UDPListenAddr == "" {
n.UDPListenAddr = "[::]"
}
if strings.TrimSpace(n.Name) == "" {
n.Name = fmt.Sprintf("node_%d", n.ID)
}
return &n, nil
}
func (h *Handler) resolveUserTunnelAndLimiter(userID, tunnelID int64) (int64, *int64, *int, error) {
row := h.repo.DB().QueryRow(`
SELECT ut.id, sl.id, sl.speed
FROM user_tunnel ut
LEFT JOIN speed_limit sl ON sl.id = ut.speed_id
WHERE ut.user_id = ? AND ut.tunnel_id = ?
ORDER BY ut.id ASC
LIMIT 1
`, userID, tunnelID)
var userTunnelID int64
var limiterID sql.NullInt64
var speed sql.NullInt64
err := row.Scan(&userTunnelID, &limiterID, &speed)
if err != nil {
if errors.Is(err, sql.ErrNoRows) {
return 0, nil, nil, nil
}
return 0, nil, nil, err
}
if !limiterID.Valid || limiterID.Int64 <= 0 {
return userTunnelID, nil, nil, nil
}
v := limiterID.Int64
s := int(speed.Int64)
return userTunnelID, &v, &s, nil
}
func (h *Handler) listUserTunnelIDs(userID, tunnelID int64) ([]int64, error) {
rows, err := h.repo.DB().Query(`
SELECT id
FROM user_tunnel
WHERE user_id = ? AND tunnel_id = ?
ORDER BY id ASC
`, userID, tunnelID)
if err != nil {
return nil, err
}
defer rows.Close()
out := make([]int64, 0)
for rows.Next() {
var id int64
if err := rows.Scan(&id); err != nil {
return nil, err
}
out = append(out, id)
}
if err := rows.Err(); err != nil {
return nil, err
}
return out, nil
}
func (h *Handler) listUserTunnelIDsByUser(userID int64) ([]int64, error) {
rows, err := h.repo.DB().Query(`
SELECT id
FROM user_tunnel
WHERE user_id = ?
ORDER BY id ASC
`, userID)
if err != nil {
return nil, err
}
defer rows.Close()
out := make([]int64, 0)
for rows.Next() {
var id int64
if err := rows.Scan(&id); err != nil {
return nil, err
}
out = append(out, id)
}
if err := rows.Err(); err != nil {
return nil, err
}
return out, nil
}
func (h *Handler) syncForwardServices(forward *forwardRecord, method string, allowFallbackAdd bool) error {
if h == nil || forward == nil {
return errors.New("invalid forward sync context")
}
tunnel, err := h.getTunnelRecord(forward.TunnelID)
if err != nil {
return err
}
ports, err := h.listForwardPorts(forward.ID)
if err != nil {
return err
}
if len(ports) == 0 {
return errors.New("转发入口端口不存在")
}
userTunnelID, limiterID, speed, err := h.resolveUserTunnelAndLimiter(forward.UserID, forward.TunnelID)
if err != nil {
return err
}
serviceBase := buildForwardServiceBase(forward.ID, forward.UserID, userTunnelID)
for _, fp := range ports {
if limiterID != nil && speed != nil {
h.ensureLimiterOnNode(fp.NodeID, *limiterID, *speed)
}
node, err := h.getNodeRecord(fp.NodeID)
if err != nil {
return err
}
services := buildForwardServiceConfigs(serviceBase, forward, tunnel, node, fp.Port, limiterID)
_, err = h.sendNodeCommand(node.ID, method, services, true, false)
if err != nil && allowFallbackAdd && method == "UpdateService" {
_, err = h.sendNodeCommand(node.ID, "AddService", services, true, false)
}
if err != nil {
return fmt.Errorf("节点 %s 下发失败: %w", node.Name, err)
}
}
return nil
}
func (h *Handler) controlForwardServices(forward *forwardRecord, commandType string, tolerateNotFound bool) error {
if h == nil || forward == nil {
return errors.New("invalid forward control context")
}
ports, err := h.listForwardPorts(forward.ID)
if err != nil {
return err
}
if len(ports) == 0 {
return nil
}
userTunnelID, _, _, err := h.resolveUserTunnelAndLimiter(forward.UserID, forward.TunnelID)
if err != nil {
return err
}
userTunnelIDs, err := h.listUserTunnelIDs(forward.UserID, forward.TunnelID)
if err != nil {
return err
}
allUserTunnelIDs, err := h.listUserTunnelIDsByUser(forward.UserID)
if err != nil {
return err
}
candidateTunnelIDs := make([]int64, 0, len(userTunnelIDs)+len(allUserTunnelIDs))
candidateTunnelIDs = append(candidateTunnelIDs, userTunnelIDs...)
candidateTunnelIDs = append(candidateTunnelIDs, allUserTunnelIDs...)
bases := buildForwardServiceBaseCandidates(forward.ID, forward.UserID, userTunnelID, candidateTunnelIDs)
seen := map[int64]struct{}{}
for _, fp := range ports {
if _, ok := seen[fp.NodeID]; ok {
continue
}
seen[fp.NodeID] = struct{}{}
var lastNotFoundErr error
nodeHandled := false
for _, base := range bases {
variants := []string{base + "_tcp", base + "_udp"}
if shouldTryLegacySingleService(commandType) || strings.EqualFold(strings.TrimSpace(commandType), "DeleteService") {
variants = append(variants, base)
}
candidateHandled := false
for _, name := range variants {
payload := map[string]interface{}{
"services": []string{name},
}
_, err := h.sendNodeCommand(fp.NodeID, commandType, payload, false, false)
if err == nil {
candidateHandled = true
continue
}
if !isNotFoundError(err) {
return err
}
lastNotFoundErr = err
}
if candidateHandled {
nodeHandled = true
break
}
}
if nodeHandled {
continue
}
if tolerateNotFound {
continue
}
if lastNotFoundErr != nil {
return lastNotFoundErr
}
return errors.New("service control failed")
}
return nil
}
func (h *Handler) applyNodeProtocolChange(nodeID int64, httpVal, tlsVal, socksVal int) error {
_, err := h.sendNodeCommand(nodeID, "SetProtocol", map[string]interface{}{
"http": httpVal,
"tls": tlsVal,
"socks": socksVal,
}, false, false)
return err
}
func (h *Handler) sendNodeCommand(nodeID int64, commandType string, data interface{}, tolerateExists bool, tolerateNotFound bool) (ws.CommandResult, error) {
result, err := h.wsServer.SendCommand(nodeID, commandType, data, 12*time.Second)
if err == nil {
return result, nil
}
msg := strings.ToLower(strings.TrimSpace(err.Error()))
if tolerateExists {
if strings.Contains(msg, "exists") || strings.Contains(msg, "already") || strings.Contains(msg, "已存在") {
return result, nil
}
}
if tolerateNotFound {
if strings.Contains(msg, "not found") || strings.Contains(msg, "不存在") {
return result, nil
}
}
return result, err
}
func (h *Handler) diagnoseForwardRuntime(forward *forwardRecord) (map[string]interface{}, error) {
if forward == nil {
return nil, errForwardNotFound
}
targets, err := resolveDiagnosisTargets(forward.RemoteAddr)
if err != nil {
return nil, err
}
tunnel, err := h.getTunnelRecord(forward.TunnelID)
if err != nil {
return nil, err
}
chainRows, err := h.listChainNodesForTunnel(forward.TunnelID)
if err != nil {
return nil, err
}
if len(chainRows) == 0 {
return nil, errors.New("隧道配置不完整")
}
inNodes, chainHops, outNodes := splitChainNodeGroups(chainRows)
results := make([]map[string]interface{}, 0, len(chainRows)*2+len(targets))
nodeCache := map[int64]*nodeRecord{}
switch tunnel.Type {
case 1:
for _, inNode := range inNodes {
for _, target := range targets {
description := fmt.Sprintf("入口(%s)->目标(%s)", inNode.NodeName, target.Address)
h.appendPathDiagnosis(&results, nodeCache, inNode.NodeID, target.IP, target.Port, description, map[string]interface{}{
"fromChainType": 1,
})
}
}
case 2:
for _, inNode := range inNodes {
if len(chainHops) > 0 {
for _, firstNode := range chainHops[0] {
description := fmt.Sprintf("入口(%s)->第1跳(%s)", inNode.NodeName, firstNode.NodeName)
h.appendChainHopDiagnosis(&results, nodeCache, inNode.NodeID, firstNode, description, map[string]interface{}{
"fromChainType": 1,
"toChainType": 2,
"toInx": firstNode.Inx,
})
}
} else {
for _, outNode := range outNodes {
description := fmt.Sprintf("入口(%s)->出口(%s)", inNode.NodeName, outNode.NodeName)
h.appendChainHopDiagnosis(&results, nodeCache, inNode.NodeID, outNode, description, map[string]interface{}{
"fromChainType": 1,
"toChainType": 3,
})
}
}
}
for i, hop := range chainHops {
for _, currentNode := range hop {
if i+1 < len(chainHops) {
for _, nextNode := range chainHops[i+1] {
description := fmt.Sprintf("第%d跳(%s)->第%d跳(%s)", i+1, currentNode.NodeName, i+2, nextNode.NodeName)
h.appendChainHopDiagnosis(&results, nodeCache, currentNode.NodeID, nextNode, description, map[string]interface{}{
"fromChainType": 2,
"fromInx": currentNode.Inx,
"toChainType": 2,
"toInx": nextNode.Inx,
})
}
} else {
for _, outNode := range outNodes {
description := fmt.Sprintf("第%d跳(%s)->出口(%s)", i+1, currentNode.NodeName, outNode.NodeName)
h.appendChainHopDiagnosis(&results, nodeCache, currentNode.NodeID, outNode, description, map[string]interface{}{
"fromChainType": 2,
"fromInx": currentNode.Inx,
"toChainType": 3,
})
}
}
}
}
for _, outNode := range outNodes {
for _, target := range targets {
description := fmt.Sprintf("出口(%s)->目标(%s)", outNode.NodeName, target.Address)
h.appendPathDiagnosis(&results, nodeCache, outNode.NodeID, target.IP, target.Port, description, map[string]interface{}{
"fromChainType": 3,
})
}
}
default:
for _, inNode := range inNodes {
for _, target := range targets {
description := fmt.Sprintf("入口(%s)->目标(%s)", inNode.NodeName, target.Address)
h.appendPathDiagnosis(&results, nodeCache, inNode.NodeID, target.IP, target.Port, description, map[string]interface{}{
"fromChainType": 1,
})
}
}
}
payload := map[string]interface{}{
"forwardName": forward.Name,
"timestamp": time.Now().UnixMilli(),
"results": results,
}
return payload, nil
}
func (h *Handler) diagnoseTunnelRuntime(tunnelID int64) (map[string]interface{}, error) {
tunnel, err := h.getTunnelRecord(tunnelID)
if err != nil {
return nil, err
}
var tunnelName string
if err := h.repo.DB().QueryRow(`SELECT name FROM tunnel WHERE id = ?`, tunnelID).Scan(&tunnelName); err != nil {
if errors.Is(err, sql.ErrNoRows) {
return nil, errors.New("隧道不存在")
}
return nil, err
}
chainRows, err := h.listChainNodesForTunnel(tunnelID)
if err != nil {
return nil, err
}
if len(chainRows) == 0 {
return nil, errors.New("隧道配置不完整")
}
inNodes, chainHops, outNodes := splitChainNodeGroups(chainRows)
results := make([]map[string]interface{}, 0, len(chainRows)*2)
nodeCache := map[int64]*nodeRecord{}
switch tunnel.Type {
case 1:
for _, inNode := range inNodes {
description := fmt.Sprintf("入口(%s)->外网", inNode.NodeName)
h.appendPathDiagnosis(&results, nodeCache, inNode.NodeID, "www.google.com", 443, description, map[string]interface{}{
"fromChainType": 1,
})
}
case 2:
for _, inNode := range inNodes {
if len(chainHops) > 0 {
for _, firstNode := range chainHops[0] {
description := fmt.Sprintf("入口(%s)->第1跳(%s)", inNode.NodeName, firstNode.NodeName)
h.appendChainHopDiagnosis(&results, nodeCache, inNode.NodeID, firstNode, description, map[string]interface{}{
"fromChainType": 1,
"toChainType": 2,
"toInx": firstNode.Inx,
})
}
} else {
for _, outNode := range outNodes {
description := fmt.Sprintf("入口(%s)->出口(%s)", inNode.NodeName, outNode.NodeName)
h.appendChainHopDiagnosis(&results, nodeCache, inNode.NodeID, outNode, description, map[string]interface{}{
"fromChainType": 1,
"toChainType": 3,
})
}
}
}
for i, hop := range chainHops {
for _, currentNode := range hop {
if i+1 < len(chainHops) {
for _, nextNode := range chainHops[i+1] {
description := fmt.Sprintf("第%d跳(%s)->第%d跳(%s)", i+1, currentNode.NodeName, i+2, nextNode.NodeName)
h.appendChainHopDiagnosis(&results, nodeCache, currentNode.NodeID, nextNode, description, map[string]interface{}{
"fromChainType": 2,
"fromInx": currentNode.Inx,
"toChainType": 2,
"toInx": nextNode.Inx,
})
}
} else {
for _, outNode := range outNodes {
description := fmt.Sprintf("第%d跳(%s)->出口(%s)", i+1, currentNode.NodeName, outNode.NodeName)
h.appendChainHopDiagnosis(&results, nodeCache, currentNode.NodeID, outNode, description, map[string]interface{}{
"fromChainType": 2,
"fromInx": currentNode.Inx,
"toChainType": 3,
})
}
}
}
}
for _, outNode := range outNodes {
description := fmt.Sprintf("出口(%s)->外网", outNode.NodeName)
h.appendPathDiagnosis(&results, nodeCache, outNode.NodeID, "www.google.com", 443, description, map[string]interface{}{
"fromChainType": 3,
})
}
default:
for _, inNode := range inNodes {
description := fmt.Sprintf("入口(%s)->外网", inNode.NodeName)
h.appendPathDiagnosis(&results, nodeCache, inNode.NodeID, "www.google.com", 443, description, map[string]interface{}{
"fromChainType": 1,
})
}
}
payload := map[string]interface{}{
"tunnelName": tunnelName,
"tunnelType": map[bool]string{true: "端口转发", false: "隧道转发"}[tunnel.Type == 1],
"timestamp": time.Now().UnixMilli(),
"results": results,
}
return payload, nil
}
func splitChainNodeGroups(rows []chainNodeRecord) ([]chainNodeRecord, [][]chainNodeRecord, []chainNodeRecord) {
inNodes := make([]chainNodeRecord, 0)
outNodes := make([]chainNodeRecord, 0)
chainByInx := map[int64][]chainNodeRecord{}
hopOrder := make([]int64, 0)
for _, row := range rows {
switch row.ChainType {
case 1:
inNodes = append(inNodes, row)
case 2:
if _, ok := chainByInx[row.Inx]; !ok {
hopOrder = append(hopOrder, row.Inx)
}
chainByInx[row.Inx] = append(chainByInx[row.Inx], row)
case 3:
outNodes = append(outNodes, row)
}
}
sort.Slice(hopOrder, func(i, j int) bool { return hopOrder[i] < hopOrder[j] })
chainHops := make([][]chainNodeRecord, 0, len(hopOrder))
for _, inx := range hopOrder {
chainHops = append(chainHops, chainByInx[inx])
}
return inNodes, chainHops, outNodes
}
func resolveDiagnosisTargets(remoteAddr string) ([]diagnosisTarget, error) {
rawTargets := splitRemoteTargets(remoteAddr)
if len(rawTargets) == 0 {
return nil, errors.New("目标地址不能为空")
}
targets := make([]diagnosisTarget, 0, len(rawTargets))
for _, raw := range rawTargets {
ip, port, err := parseTargetAddress(raw)
if err != nil {
continue
}
targets = append(targets, diagnosisTarget{Address: raw, IP: ip, Port: port})
}
if len(targets) == 0 {
return nil, errors.New("目标地址格式错误")
}
return targets, nil
}
func (h *Handler) cachedNode(nodeCache map[int64]*nodeRecord, nodeID int64) (*nodeRecord, error) {
if node, ok := nodeCache[nodeID]; ok {
return node, nil
}
node, err := h.getNodeRecord(nodeID)
if err != nil {
return nil, err
}
nodeCache[nodeID] = node
return node, nil
}
func newDiagnosisResultItem(fromNodeID int64, targetIP string, targetPort int, description string, metadata map[string]interface{}) map[string]interface{} {
item := map[string]interface{}{
"nodeName": fmt.Sprintf("node_%d", fromNodeID),
"nodeId": strconv.FormatInt(fromNodeID, 10),
"targetIp": targetIP,
"targetPort": targetPort,
"description": description,
"averageTime": 0,
"packetLoss": 100,
}
for k, v := range metadata {
item[k] = v
}
return item
}
func (h *Handler) appendFailedDiagnosis(results *[]map[string]interface{}, nodeCache map[int64]*nodeRecord, fromNodeID int64, targetIP string, targetPort int, description string, metadata map[string]interface{}, message string) {
item := newDiagnosisResultItem(fromNodeID, targetIP, targetPort, description, metadata)
if node, err := h.cachedNode(nodeCache, fromNodeID); err == nil {
item["nodeName"] = node.Name
}
if strings.TrimSpace(message) == "" {
message = "TCP连接失败"
}
item["success"] = false
item["message"] = message
*results = append(*results, item)
}
func (h *Handler) appendPathDiagnosis(results *[]map[string]interface{}, nodeCache map[int64]*nodeRecord, fromNodeID int64, targetIP string, targetPort int, description string, metadata map[string]interface{}) {
item := newDiagnosisResultItem(fromNodeID, targetIP, targetPort, description, metadata)
fromNode, err := h.cachedNode(nodeCache, fromNodeID)
if err != nil {
item["success"] = false
item["message"] = err.Error()
*results = append(*results, item)
return
}
item["nodeName"] = fromNode.Name
pingData, pingErr := h.tcpPingViaNode(fromNodeID, targetIP, targetPort)
if pingErr != nil {
item["success"] = false
item["message"] = pingErr.Error()
*results = append(*results, item)
return
}
success := asBool(pingData["success"], false)
item["success"] = success
item["averageTime"] = asFloat(pingData["averageTime"], 0)
item["packetLoss"] = asFloat(pingData["packetLoss"], 100)
message := strings.TrimSpace(asString(pingData["message"]))
if success {
if message == "" {
message = "TCP连接成功"
}
} else {
if message == "" {
message = strings.TrimSpace(asString(pingData["errorMessage"]))
}
if message == "" {
message = "TCP连接失败"
}
}
item["message"] = message
*results = append(*results, item)
}
func (h *Handler) appendChainHopDiagnosis(results *[]map[string]interface{}, nodeCache map[int64]*nodeRecord, fromNodeID int64, toNode chainNodeRecord, description string, metadata map[string]interface{}) {
targetNode, err := h.cachedNode(nodeCache, toNode.NodeID)
if err != nil {
h.appendFailedDiagnosis(results, nodeCache, fromNodeID, "", 0, description, metadata, err.Error())
return
}
targetIP, targetPort, err := resolveChainProbeTarget(targetNode, toNode.Port)
if err != nil {
h.appendFailedDiagnosis(results, nodeCache, fromNodeID, strings.Trim(strings.TrimSpace(targetNode.ServerIP), "[]"), toNode.Port, description, metadata, err.Error())
return
}
h.appendPathDiagnosis(results, nodeCache, fromNodeID, targetIP, targetPort, description, metadata)
}
func resolveChainProbeTarget(targetNode *nodeRecord, preferredPort int) (string, int, error) {
if targetNode == nil {
return "", 0, errors.New("目标节点不存在")
}
host := strings.Trim(strings.TrimSpace(targetNode.ServerIP), "[]")
if host == "" {
return "", 0, errors.New("目标节点地址为空")
}
port := preferredPort
if port <= 0 {
port = firstPortFromRange(targetNode.PortRange)
}
if port <= 0 {
port = 443
}
return host, port, nil
}
func firstPortFromRange(portRange string) int {
portRange = strings.TrimSpace(portRange)
if portRange == "" {
return 0
}
first := strings.Split(portRange, ",")[0]
first = strings.TrimSpace(first)
if strings.Contains(first, "-") {
parts := strings.SplitN(first, "-", 2)
if len(parts) != 2 {
return 0
}
p, err := strconv.Atoi(strings.TrimSpace(parts[0]))
if err != nil || p <= 0 {
return 0
}
return p
}
p, err := strconv.Atoi(first)
if err != nil || p <= 0 {
return 0
}
return p
}
func (h *Handler) listChainNodesForTunnel(tunnelID int64) ([]chainNodeRecord, error) {
rows, err := h.repo.DB().Query(`
SELECT ct.chain_type, COALESCE(ct.inx, 0), ct.node_id, COALESCE(ct.port, 0), n.name, ct.protocol, ct.strategy
FROM chain_tunnel ct
LEFT JOIN node n ON n.id = ct.node_id
WHERE ct.tunnel_id = ?
ORDER BY ct.chain_type ASC, COALESCE(ct.inx, 0) ASC, ct.id ASC
`, tunnelID)
if err != nil {
return nil, err
}
defer rows.Close()
result := make([]chainNodeRecord, 0)
for rows.Next() {
var item chainNodeRecord
var name sql.NullString
var protocol sql.NullString
var strategy sql.NullString
if err := rows.Scan(&item.ChainType, &item.Inx, &item.NodeID, &item.Port, &name, &protocol, &strategy); err != nil {
return nil, err
}
if strings.TrimSpace(name.String) == "" {
item.NodeName = fmt.Sprintf("node_%d", item.NodeID)
} else {
item.NodeName = name.String
}
item.Protocol = defaultString(protocol.String, "tls")
item.Strategy = defaultString(strategy.String, "round")
result = append(result, item)
}
if err := rows.Err(); err != nil {
return nil, err
}
return result, nil
}
func (h *Handler) tcpPingViaNode(nodeID int64, ip string, port int) (map[string]interface{}, error) {
res, err := h.sendNodeCommand(nodeID, "TcpPing", map[string]interface{}{
"ip": ip,
"port": port,
"count": 4,
"timeout": 5000,
}, false, false)
if err != nil {
return nil, err
}
if res.Data == nil {
return nil, errors.New("节点未返回诊断数据")
}
return res.Data, nil
}
func splitRemoteTargets(remoteAddr string) []string {
parts := strings.Split(remoteAddr, ",")
out := make([]string, 0, len(parts))
for _, part := range parts {
part = strings.TrimSpace(part)
if part == "" {
continue
}
out = append(out, processServerAddress(part))
}
return out
}
func parseTargetAddress(addr string) (string, int, error) {
addr = strings.TrimSpace(addr)
if addr == "" {
return "", 0, errors.New("empty address")
}
host, portStr, err := net.SplitHostPort(addr)
if err != nil {
idx := strings.LastIndex(addr, ":")
if idx <= 0 || idx >= len(addr)-1 {
return "", 0, err
}
host = strings.TrimSpace(addr[:idx])
portStr = strings.TrimSpace(addr[idx+1:])
}
port, err := strconv.Atoi(strings.TrimSpace(portStr))
if err != nil || port <= 0 || port > 65535 {
return "", 0, errors.New("invalid port")
}
host = strings.Trim(strings.TrimSpace(host), "[]")
if host == "" {
return "", 0, errors.New("invalid host")
}
return host, port, nil
}
func buildForwardServiceBase(forwardID, userID, userTunnelID int64) string {
return fmt.Sprintf("%d_%d_%d", forwardID, userID, userTunnelID)
}
func buildForwardServiceBaseCandidates(forwardID, userID, preferredUserTunnelID int64, userTunnelIDs []int64) []string {
orderedIDs := make([]int64, 0, len(userTunnelIDs)+2)
seen := make(map[int64]struct{}, len(userTunnelIDs)+2)
appendID := func(id int64) {
if _, ok := seen[id]; ok {
return
}
seen[id] = struct{}{}
orderedIDs = append(orderedIDs, id)
}
appendID(preferredUserTunnelID)
for _, id := range userTunnelIDs {
appendID(id)
}
appendID(0)
bases := make([]string, 0, len(orderedIDs))
for _, id := range orderedIDs {
bases = append(bases, buildForwardServiceBase(forwardID, userID, id))
}
return bases
}
func buildForwardControlServiceNames(base, commandType string) []string {
names := []string{base + "_tcp", base + "_udp"}
if strings.EqualFold(strings.TrimSpace(commandType), "DeleteService") {
return append([]string{base}, names...)
}
return names
}
func shouldTryLegacySingleService(commandType string) bool {
cmd := strings.ToLower(strings.TrimSpace(commandType))
return cmd == "pauseservice" || cmd == "resumeservice"
}
func isNotFoundError(err error) bool {
if err == nil {
return false
}
msg := strings.ToLower(strings.TrimSpace(err.Error()))
return strings.Contains(msg, "not found") || strings.Contains(msg, "不存在")
}
func buildForwardServiceConfigs(baseName string, forward *forwardRecord, tunnel *tunnelRecord, node *nodeRecord, port int, limiterID *int64) []map[string]interface{} {
protocols := []string{"tcp", "udp"}
services := make([]map[string]interface{}, 0, 2)
targets := splitRemoteTargets(forward.RemoteAddr)
strategy := strings.TrimSpace(forward.Strategy)
if strategy == "" {
strategy = "fifo"
}
for _, protocol := range protocols {
listenerAddr := node.TCPListenAddr
if protocol == "udp" {
listenerAddr = node.UDPListenAddr
}
service := map[string]interface{}{
"name": fmt.Sprintf("%s_%s", baseName, protocol),
"addr": fmt.Sprintf("%s:%d", listenerAddr, port),
"handler": map[string]interface{}{
"type": protocol,
},
"listener": map[string]interface{}{
"type": protocol,
},
"forwarder": map[string]interface{}{
"nodes": buildForwarderNodes(targets),
"selector": map[string]interface{}{
"strategy": strategy,
"maxFails": 1,
"failTimeout": "600s",
},
},
}
if protocol == "udp" {
service["listener"].(map[string]interface{})["metadata"] = map[string]interface{}{"keepAlive": true}
}
if tunnel != nil && tunnel.Type == 2 {
service["handler"].(map[string]interface{})["chain"] = fmt.Sprintf("chains_%d", forward.TunnelID)
}
if tunnel != nil && tunnel.Type == 1 && strings.TrimSpace(node.InterfaceName) != "" {
service["metadata"] = map[string]interface{}{"interface": node.InterfaceName}
}
if limiterID != nil && *limiterID > 0 {
service["limiter"] = strconv.FormatInt(*limiterID, 10)
}
services = append(services, service)
}
return services
}
func buildForwarderNodes(targets []string) []map[string]interface{} {
nodes := make([]map[string]interface{}, 0, len(targets))
for i, addr := range targets {
nodes = append(nodes, map[string]interface{}{
"name": fmt.Sprintf("node_%d", i+1),
"addr": addr,
})
}
return nodes
}
func processServerAddress(serverAddr string) string {
serverAddr = strings.TrimSpace(serverAddr)
if serverAddr == "" {
return serverAddr
}
if strings.HasPrefix(serverAddr, "[") {
return serverAddr
}
idx := strings.LastIndex(serverAddr, ":")
if idx < 0 {
if looksLikeIPv6(serverAddr) {
return "[" + serverAddr + "]"
}
return serverAddr
}
host := strings.TrimSpace(serverAddr[:idx])
port := strings.TrimSpace(serverAddr[idx+1:])
if host == "" || port == "" {
return serverAddr
}
if looksLikeIPv6(host) {
return "[" + host + "]:" + port
}
return serverAddr
}
func looksLikeIPv6(address string) bool {
return strings.Count(address, ":") >= 2
}
func asBool(v interface{}, def bool) bool {
s := strings.TrimSpace(strings.ToLower(asString(v)))
if s == "" {
return def
}
switch s {
case "1", "t", "true", "yes", "y":
return true
case "0", "f", "false", "no", "n":
return false
default:
return def
}
}
func (h *Handler) sendLimiterConfig(limiterID int64, speedMbps int, tunnelID int64) error {
rate := float64(speedMbps) / 8.0
limitStr := fmt.Sprintf("$ %.1fMB %.1fMB", rate, rate)
payload := map[string]interface{}{
"name": strconv.FormatInt(limiterID, 10),
"limits": []string{limitStr},
}
nodes, err := h.tunnelEntryNodeIDs(tunnelID)
if err != nil {
return err
}
for _, nodeID := range nodes {
_, _ = h.sendNodeCommand(nodeID, "AddLimiters", payload, false, false)
}
return nil
}
func (h *Handler) sendDeleteLimiterConfig(limiterID int64, tunnelID int64) error {
payload := map[string]interface{}{
"limiter": strconv.FormatInt(limiterID, 10),
}
nodes, err := h.tunnelEntryNodeIDs(tunnelID)
if err != nil {
return err
}
for _, nodeID := range nodes {
_, _ = h.sendNodeCommand(nodeID, "DeleteLimiters", payload, false, true)
}
return nil
}
func (h *Handler) ensureLimiterOnNode(nodeID int64, limiterID int64, speed int) {
rate := float64(speed) / 8.0
limitStr := fmt.Sprintf("$ %.1fMB %.1fMB", rate, rate)
payload := map[string]interface{}{
"name": strconv.FormatInt(limiterID, 10),
"limits": []string{limitStr},
}
_, _ = h.sendNodeCommand(nodeID, "AddLimiters", payload, false, false)
}