wafformatter.go 19 KB

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  1. package service
  2. import (
  3. "context"
  4. "encoding/json"
  5. "fmt"
  6. v1 "github.com/go-nunu/nunu-layout-advanced/api/v1"
  7. "github.com/go-nunu/nunu-layout-advanced/internal/model"
  8. "github.com/go-nunu/nunu-layout-advanced/internal/repository"
  9. "github.com/go-nunu/nunu-layout-advanced/pkg/rabbitmq"
  10. amqp "github.com/rabbitmq/amqp091-go"
  11. "go.uber.org/zap"
  12. "golang.org/x/net/idna"
  13. "golang.org/x/net/publicsuffix"
  14. "golang.org/x/sync/errgroup"
  15. "net"
  16. "slices"
  17. "strconv"
  18. "strings"
  19. )
  20. type WafFormatterService interface {
  21. Require(ctx context.Context, req v1.GlobalRequire) (RequireResponse, error)
  22. validateWafPortCount(ctx context.Context, hostId int) error
  23. validateWafDomainCount(ctx context.Context, req v1.GlobalRequire) error
  24. ConvertToWildcardDomain(ctx context.Context, domain string) (string, error)
  25. AppendWafIp(ctx context.Context, req []string, returnSourceIp string) ([]v1.IpInfo, error)
  26. WashIps(ctx context.Context, req []string) ([]string, error)
  27. PublishIpWhitelistTask(ips []string, action string, returnSourceIp string, color string)
  28. PublishDomainWhitelistTask(domain, ip, action string)
  29. findIpDifferences(oldIps, newIps []string) ([]string, []string)
  30. WashDeleteWafIp(ctx context.Context, backendList []string) ([]string, error)
  31. WashEditWafIp(ctx context.Context, newBackendList []string, oldBackendList []string) ([]string, []string, error)
  32. //cdn添加网站
  33. AddOrigin(ctx context.Context, req v1.WebJson) (int64, error)
  34. // 获取ip数量等于1的源站过白ip
  35. WashDelIps(ctx context.Context, ips []string) ([]string, error)
  36. // 判断域名是否是IDN,如果是,转换为 Punycode
  37. ConvertToPunycodeIfIDN(ctx context.Context, domain string) (isIDN bool, punycodeDomain string, err error)
  38. // 验证端口重复
  39. VerifyPort(ctx context.Context,protocol string, id int64, port string,hostId int64,domain string) error
  40. }
  41. func NewWafFormatterService(
  42. service *Service,
  43. globalRep repository.GlobalLimitRepository,
  44. hostRep repository.HostRepository,
  45. required RequiredService,
  46. parser ParserService,
  47. tcpforwardingRep repository.TcpforwardingRepository,
  48. udpForWardingRep repository.UdpForWardingRepository,
  49. webForwardingRep repository.WebForwardingRepository,
  50. mq *rabbitmq.RabbitMQ,
  51. host HostService,
  52. gatewayIpRep repository.GatewayipRepository,
  53. gatewayIp GatewayipService,
  54. cdn CdnService,
  55. ) WafFormatterService {
  56. return &wafFormatterService{
  57. Service: service,
  58. globalRep: globalRep,
  59. hostRep: hostRep,
  60. required: required,
  61. parser: parser,
  62. tcpforwardingRep: tcpforwardingRep,
  63. udpForWardingRep: udpForWardingRep,
  64. webForwardingRep: webForwardingRep,
  65. host: host,
  66. mq: mq,
  67. gatewayIpRep: gatewayIpRep,
  68. cdn: cdn,
  69. gatewayIp : gatewayIp,
  70. }
  71. }
  72. type wafFormatterService struct {
  73. *Service
  74. globalRep repository.GlobalLimitRepository
  75. hostRep repository.HostRepository
  76. required RequiredService
  77. parser ParserService
  78. tcpforwardingRep repository.TcpforwardingRepository
  79. udpForWardingRep repository.UdpForWardingRepository
  80. webForwardingRep repository.WebForwardingRepository
  81. host HostService
  82. mq *rabbitmq.RabbitMQ
  83. gatewayIpRep repository.GatewayipRepository
  84. cdn CdnService
  85. gatewayIp GatewayipService
  86. }
  87. type RequireResponse struct {
  88. model.GlobalLimit `json:"globalLimit" form:"globalLimit"`
  89. GatewayIps []string `json:"ips" form:"ips"`
  90. Tag string `json:"tag" form:"tag"`
  91. }
  92. func (s *wafFormatterService) Require(ctx context.Context, req v1.GlobalRequire) (RequireResponse, error) {
  93. var res RequireResponse
  94. // 获取全局配置信息
  95. globalLimit, err := s.globalRep.GetGlobalLimitByHostId(ctx, int64(req.HostId))
  96. if err != nil {
  97. return RequireResponse{}, err
  98. }
  99. if globalLimit != nil {
  100. res.GlobalLimit = *globalLimit
  101. }
  102. // 获取主机名
  103. domain, err := s.hostRep.GetDomainById(ctx, req.HostId)
  104. if err != nil {
  105. return RequireResponse{}, err
  106. }
  107. res.Tag = strconv.Itoa(req.Uid) + "_" + strconv.Itoa(req.HostId) + "_" + domain + "_" + req.Comment
  108. res.GatewayIps, err = s.gatewayIp.GetGatewayipOnlyIpByHostIdAll(ctx, int64(req.HostId), int64(req.Uid))
  109. if err != nil {
  110. return RequireResponse{}, err
  111. }
  112. if res.GatewayIps == nil {
  113. return RequireResponse{}, fmt.Errorf("请先配置实例")
  114. }
  115. // 检查是否过期
  116. expired, err := s.host.CheckExpired(ctx, int64(req.Uid), int64(req.HostId))
  117. if err != nil {
  118. return RequireResponse{}, err
  119. }
  120. if !expired {
  121. return RequireResponse{}, fmt.Errorf("实例已过期")
  122. }
  123. return res, nil
  124. }
  125. func (s *wafFormatterService) validateWafPortCount(ctx context.Context, hostId int) error {
  126. congfig, err := s.host.GetGlobalLimitConfig(ctx, hostId)
  127. if err != nil {
  128. return err
  129. }
  130. tcpCount, err := s.tcpforwardingRep.GetTcpForwardingPortCountByHostId(ctx, hostId)
  131. if err != nil {
  132. return err
  133. }
  134. udpCount, err := s.udpForWardingRep.GetUdpForwardingPortCountByHostId(ctx, hostId)
  135. if err != nil {
  136. return err
  137. }
  138. webCount, err := s.webForwardingRep.GetWebForwardingPortCountByHostId(ctx, hostId)
  139. if err != nil {
  140. return err
  141. }
  142. if int64(congfig.PortCount) > tcpCount+udpCount+webCount {
  143. return nil
  144. }
  145. return fmt.Errorf("端口数量超出套餐限制,已配置%d个端口,套餐限制为%d个端口", tcpCount+udpCount+webCount, congfig.PortCount)
  146. }
  147. func (s *wafFormatterService) validateWafDomainCount(ctx context.Context, req v1.GlobalRequire) error {
  148. congfig, err := s.host.GetGlobalLimitConfig(ctx, req.HostId)
  149. if err != nil {
  150. return err
  151. }
  152. domainCount, domainSlice, err := s.webForwardingRep.GetWebForwardingDomainCountByHostId(ctx, req.HostId)
  153. if err != nil {
  154. return err
  155. }
  156. if req.Domain != "" {
  157. if !slices.Contains(domainSlice, req.Domain) {
  158. domainCount += 1
  159. if domainCount > int64(congfig.DomainCount) {
  160. return fmt.Errorf("域名数量已达到上限,已配置%d个域名,套餐限制为%d个域名", domainCount, congfig.DomainCount)
  161. }
  162. }
  163. }
  164. return nil
  165. }
  166. func (s *wafFormatterService) ConvertToWildcardDomain(ctx context.Context, domain string) (string, error) {
  167. // 1. 使用 EffectiveTLDPlusOne 获取可注册域名部分。
  168. // 例如,对于 "www.google.com",这将返回 "google.com"。
  169. // 对于 "a.b.c.tokyo.jp",这将返回 "c.tokyo.jp"。
  170. if domain == "" {
  171. return "", nil
  172. }
  173. registrableDomain, err := publicsuffix.EffectiveTLDPlusOne(domain)
  174. if err != nil {
  175. s.logger.Error("无效的域名", zap.String("domain", domain), zap.Error(err))
  176. // 如果域名无效(如 IP 地址、localhost),则返回错误。
  177. return "", nil
  178. }
  179. // 2. 比较原始域名和可注册域名。
  180. // 如果它们不相等,说明原始域名包含子域名。
  181. if domain != registrableDomain {
  182. // 3. 如果存在子域名,则用 "*." 加上可注册域名来构造通配符域名。
  183. return registrableDomain, nil
  184. }
  185. // 4. 如果原始域名和可注册域名相同(例如,输入就是 "google.com"),
  186. // 则说明没有子域名可替换,直接返回原始域名。
  187. return domain, nil
  188. }
  189. func (s *wafFormatterService) AppendWafIp(ctx context.Context, req []string, returnSourceIp string) ([]v1.IpInfo, error) {
  190. var ips []v1.IpInfo
  191. for _, v := range req {
  192. ips = append(ips, v1.IpInfo{
  193. FType: "0",
  194. FStartIp: v,
  195. FEndIp: v,
  196. FRemark: "宁波高防IP过白",
  197. FServerIp: returnSourceIp,
  198. })
  199. }
  200. return ips, nil
  201. }
  202. func (s *wafFormatterService) AppendWafIpByRemovePort(ctx context.Context, req []string) ([]v1.IpInfo, error) {
  203. var ips []v1.IpInfo
  204. for _, v := range req {
  205. ip, _, err := net.SplitHostPort(v)
  206. if err != nil {
  207. return nil, err
  208. }
  209. ips = append(ips, v1.IpInfo{
  210. FType: "0",
  211. FStartIp: ip,
  212. FEndIp: ip,
  213. FRemark: "宁波高防IP过白",
  214. FServerIp: "",
  215. })
  216. }
  217. return ips, nil
  218. }
  219. func (s *wafFormatterService) WashIps(ctx context.Context, req []string) ([]string, error) {
  220. var res []string
  221. for _, v := range req {
  222. res = append(res, v)
  223. }
  224. return res, nil
  225. }
  226. // publishDomainWhitelistTask is a helper function to publish domain whitelist tasks to RabbitMQ.
  227. // It can handle different actions like "add" or "del".
  228. func (s *wafFormatterService) PublishDomainWhitelistTask(domain, ip, action string) {
  229. // Define message payload, including the action
  230. type domainTaskPayload struct {
  231. Domain string `json:"domain"`
  232. Ip string `json:"ip"`
  233. Action string `json:"action"`
  234. }
  235. payload := domainTaskPayload{
  236. Domain: domain,
  237. Ip: ip,
  238. Action: action,
  239. }
  240. // Serialize the message
  241. msgBody, err := json.Marshal(payload)
  242. if err != nil {
  243. s.logger.Error("Failed to serialize domain whitelist task message", zap.Error(err), zap.String("domain", domain), zap.String("ip", ip), zap.String("action", action))
  244. return
  245. }
  246. // Get task configuration
  247. taskCfg, ok := s.mq.GetTaskConfig("domain_whitelist")
  248. if !ok {
  249. s.logger.Error("Failed to get 'domain_whitelist' task configuration")
  250. return
  251. }
  252. // Construct the routing key dynamically based on the action
  253. routingKey := fmt.Sprintf("whitelist.domain.%s", action)
  254. // Construct the amqp.Publishing message
  255. publishingMsg := amqp.Publishing{
  256. ContentType: "application/json",
  257. Body: msgBody,
  258. DeliveryMode: amqp.Persistent, // Persistent message
  259. }
  260. // Publish the message
  261. err = s.mq.PublishWithCh(taskCfg.Exchange, routingKey, publishingMsg)
  262. if err != nil {
  263. s.logger.Error("发布 域名 白名单任务到 MQ 失败", zap.Error(err), zap.String("domain", domain), zap.String("action", action))
  264. } else {
  265. s.logger.Info("成功将 域名 白名单任务发布到 MQ", zap.String("domain", domain), zap.String("action", action))
  266. }
  267. }
  268. func (s *wafFormatterService) PublishIpWhitelistTask(ips []string, action string, returnSourceIp string, color string) {
  269. // Define message payload, including the action
  270. type ipTaskPayload struct {
  271. Ips []string `json:"ips"`
  272. Action string `json:"action"`
  273. ReturnSourceIp string `json:"return_source_ip"`
  274. Color string `json:"color"`
  275. }
  276. payload := ipTaskPayload{
  277. Ips: ips,
  278. Action: action,
  279. ReturnSourceIp: returnSourceIp,
  280. Color: color,
  281. }
  282. // Serialize the message
  283. msgBody, err := json.Marshal(payload)
  284. if err != nil {
  285. s.logger.Error("序列化 IP 白名单任务消息失败", zap.Error(err), zap.Any("IPs", ips), zap.String("action", action), zap.String("color", color))
  286. return
  287. }
  288. // Get task configuration
  289. taskCfg, ok := s.mq.GetTaskConfig("ip_white")
  290. if !ok {
  291. s.logger.Error("无法获取“ip_white”任务配置")
  292. return
  293. }
  294. // Construct the routing key dynamically based on the action
  295. routingKey := fmt.Sprintf("task.ip_white.%s", action)
  296. // Construct the amqp.Publishing message
  297. publishingMsg := amqp.Publishing{
  298. ContentType: "application/json",
  299. Body: msgBody,
  300. DeliveryMode: amqp.Persistent, // Persistent message
  301. }
  302. // Publish the message
  303. err = s.mq.PublishWithCh(taskCfg.Exchange, routingKey, publishingMsg)
  304. if err != nil {
  305. s.logger.Error("发布 IP 白名单任务到 MQ 失败", zap.Error(err), zap.String("action", action), zap.String("color", color))
  306. } else {
  307. s.logger.Info("成功将 IP 白名单任务发布到 MQ", zap.String("action", action), zap.String("color", color))
  308. }
  309. }
  310. func (s *wafFormatterService) findIpDifferences(oldIps, newIps []string) ([]string, []string) {
  311. // 使用 map 实现 set,用于快速查找
  312. oldIpsSet := make(map[string]struct{}, len(oldIps))
  313. for _, ip := range oldIps {
  314. oldIpsSet[ip] = struct{}{}
  315. }
  316. newIpsSet := make(map[string]struct{}, len(newIps))
  317. for _, ip := range newIps {
  318. newIpsSet[ip] = struct{}{}
  319. }
  320. var addedIps []string
  321. // 查找新增的 IP:存在于 newIpsSet 但不存在于 oldIpsSet
  322. for ip := range newIpsSet {
  323. if _, found := oldIpsSet[ip]; !found {
  324. addedIps = append(addedIps, ip)
  325. }
  326. }
  327. var removedIps []string
  328. // 查找移除的 IP:存在于 oldIpsSet 但不存在于 newIpsSet
  329. for ip := range oldIpsSet {
  330. if _, found := newIpsSet[ip]; !found {
  331. removedIps = append(removedIps, ip)
  332. }
  333. }
  334. return addedIps, removedIps
  335. }
  336. func (s *wafFormatterService) WashDeleteWafIp(ctx context.Context, backendList []string) ([]string, error) {
  337. var res []string
  338. for _, v := range backendList {
  339. ip, _, err := net.SplitHostPort(v)
  340. if err != nil {
  341. return nil, err
  342. }
  343. res = append(res, ip)
  344. }
  345. return res, nil
  346. }
  347. func (s *wafFormatterService) WashEditWafIp(ctx context.Context, newBackendList []string, oldBackendList []string) ([]string, []string, error) {
  348. var oldIps []string
  349. var newIps []string
  350. for _, v := range oldBackendList {
  351. ip, _, err := net.SplitHostPort(v)
  352. if err != nil {
  353. return nil, nil, err
  354. }
  355. oldIps = append(oldIps, ip)
  356. }
  357. if newBackendList != nil {
  358. for _, v := range newBackendList {
  359. ip, _, err := net.SplitHostPort(v)
  360. if err != nil {
  361. return nil, nil, err
  362. }
  363. newIps = append(newIps, ip)
  364. }
  365. }
  366. addedIps, removedIps := s.findIpDifferences(oldIps, newIps)
  367. return addedIps, removedIps, nil
  368. }
  369. func (s *wafFormatterService) AddOrigin(ctx context.Context, req v1.WebJson) (int64, error) {
  370. ip, port, err := net.SplitHostPort(req.BackendList)
  371. if err != nil {
  372. return 0, fmt.Errorf("无效的后端地址: %s", err)
  373. }
  374. addr := v1.Addr{
  375. Protocol: req.ApiType,
  376. Host: ip,
  377. Port: port,
  378. }
  379. id, err := s.cdn.CreateOrigin(ctx, v1.Origin{
  380. Addr: addr,
  381. Weight: 10,
  382. Description: req.Comment,
  383. Host: req.Host,
  384. IsOn: true,
  385. TlsSecurityVerifyMode: "auto",
  386. })
  387. if err != nil {
  388. return 0, err
  389. }
  390. return id, nil
  391. }
  392. // 获取ip数量等于1的源站过白ip
  393. func (s *wafFormatterService) WashDelIps(ctx context.Context, ips []string) ([]string, error) {
  394. var udpIpCounts, tcpIpCounts, webIpCounts []v1.IpCountResult
  395. g, gCtx := errgroup.WithContext(ctx)
  396. // 1. 查询 IP 的数量
  397. g.Go(func() error {
  398. var err error
  399. udpIpCounts, err = s.udpForWardingRep.GetIpCountByIp(gCtx, ips)
  400. if err != nil {
  401. return fmt.Errorf("in udp repository: %w", err)
  402. }
  403. return nil
  404. })
  405. g.Go(func() error {
  406. var err error
  407. tcpIpCounts, err = s.tcpforwardingRep.GetIpCountByIp(gCtx, ips)
  408. if err != nil {
  409. return fmt.Errorf("in tcp repository: %w", err)
  410. }
  411. return nil
  412. })
  413. g.Go(func() error {
  414. var err error
  415. webIpCounts, err = s.webForwardingRep.GetIpCountByIp(gCtx, ips)
  416. if err != nil {
  417. return fmt.Errorf("in web repository: %w", err)
  418. }
  419. return nil
  420. })
  421. if err := g.Wait(); err != nil {
  422. return nil, err
  423. }
  424. // 2. 汇总所有计数结果
  425. totalCountMap := make(map[string]int)
  426. // 将多个 for 循环合并到一个函数中
  427. accumulateCounts := func(counts []v1.IpCountResult) {
  428. for _, result := range counts {
  429. totalCountMap[result.Ip] += result.Count
  430. }
  431. }
  432. accumulateCounts(udpIpCounts)
  433. accumulateCounts(tcpIpCounts)
  434. accumulateCounts(webIpCounts)
  435. // 3. 筛选出总引用数等于 1 的 IP
  436. var ipsToDelist []string
  437. for _, ip := range ips {
  438. if totalCountMap[ip] == 1 {
  439. ipsToDelist = append(ipsToDelist, ip)
  440. }
  441. }
  442. return ipsToDelist, nil
  443. }
  444. // 判断域名是否为 中文域名,如果是,转换为 Punycode
  445. func (s *wafFormatterService) ConvertToPunycodeIfIDN(ctx context.Context, domain string) (isIDN bool, punycodeDomain string, err error) {
  446. // 使用 idna.ToASCII 将域名转换为 Punycode。
  447. // 这个函数同时会根据 IDNA 规范验证域名的合法性。
  448. punycodeDomain, err = idna.ToASCII(domain)
  449. if err != nil {
  450. // 如果转换出错,说明域名格式不符合 IDNA 标准。
  451. return false, "", fmt.Errorf("域名 '%s' 格式无效: %v", domain, err)
  452. }
  453. // 判断是否为 IDN 的关键:
  454. // 比较转换后的 Punycode 域名和原始域名(忽略大小写)。
  455. // 如果不相等,说明原始域名包含非 ASCII 字符,即为 IDN。
  456. isIDN = !strings.EqualFold(domain, punycodeDomain)
  457. return isIDN, punycodeDomain, nil
  458. }
  459. // 验证端口重复
  460. func (s *wafFormatterService) VerifyPort(ctx context.Context,protocol string, id int64, port string,hostId int64,domain string) error {
  461. switch protocol {
  462. case "http", "https":
  463. return s.verifyWebForwardingPort(ctx, protocol, id, port, hostId, domain)
  464. case "tcp":
  465. return s.verifyTCPPort(ctx, hostId, port)
  466. case "udp":
  467. return s.verifyUDPPort(ctx, hostId, port)
  468. default:
  469. return fmt.Errorf("不支持的协议类型:%s", protocol)
  470. }
  471. }
  472. // verifyWebForwardingPort 专门处理 HTTP 和 HTTPS 的端口校验逻辑。
  473. func (s *wafFormatterService) verifyWebForwardingPort(ctx context.Context, protocol string, id int64, port string, hostId int64, domain string) error {
  474. errPortInUse := fmt.Errorf("端口 %s 已经被使用,无法添加", port)
  475. // 1. 检查是否存在 TCP 转发规则占用该端口
  476. tcpCount, err := s.tcpforwardingRep.GetPortCount(ctx, hostId, port)
  477. if err != nil {
  478. return err
  479. }
  480. if tcpCount > 0 {
  481. return errPortInUse
  482. }
  483. // 2. 获取该主机和端口上所有已存在的 Web 转发规则
  484. existingRules, err := s.webForwardingRep.GetDomainByHostIdPort(ctx, hostId, port)
  485. if err != nil {
  486. return err
  487. }
  488. // 如果没有任何规则,则该端口可用,直接返回
  489. if len(existingRules) == 0 {
  490. return nil
  491. }
  492. // 3. 核心逻辑:检查协议冲突和域名冲突
  493. isNewRuleHTTPS := 0
  494. if protocol == "https" {
  495. isNewRuleHTTPS = 1
  496. }
  497. for _, rule := range existingRules {
  498. // 关键检查:HTTP 和 HTTPS 不能在同一个端口上共存。
  499. if rule.IsHttps != isNewRuleHTTPS {
  500. return errPortInUse
  501. }
  502. // 如果现有规则是“全匹配”规则(空域名或IP),并且不是我们正在编辑的规则,则冲突。
  503. isExistingRuleCatchAll := rule.Domain == "" || net.ParseIP(rule.Domain) != nil
  504. if isExistingRuleCatchAll && int64(rule.Id) != id {
  505. return errPortInUse
  506. }
  507. }
  508. // 4. 反向检查:如果要添加/修改的规则是“全匹配”规则,则该端口上不能有其他规则。
  509. isNewRuleCatchAll := domain == "" || net.ParseIP(domain) != nil
  510. if isNewRuleCatchAll {
  511. // 如果已存在规则数大于1,则必然冲突。
  512. if len(existingRules) > 1 {
  513. return errPortInUse
  514. }
  515. // 如果只存在1条规则,但其ID和当前要修改的ID不同,也冲突。
  516. // (此场景意味着你在为一个已有其他规则的端口添加一条新的“全匹配”规则)
  517. if len(existingRules) == 1 && int64(existingRules[0].Id) != id {
  518. return errPortInUse
  519. }
  520. }
  521. return nil
  522. }
  523. // verifyTCPPort 专门处理 TCP 的端口校验逻辑。
  524. func (s *wafFormatterService) verifyTCPPort(ctx context.Context, hostId int64, port string) error {
  525. errPortInUse := fmt.Errorf("端口 %s 已经被使用,无法添加", port)
  526. // TCP 规则不能与已有的 TCP 规则共存
  527. tcpCount, err := s.tcpforwardingRep.GetPortCount(ctx, hostId, port)
  528. if err != nil {
  529. return err
  530. }
  531. if tcpCount > 0 {
  532. return errPortInUse
  533. }
  534. // TCP 规则也不能与已有的 Web 转发(HTTP/HTTPS)规则共存
  535. webRules, err := s.webForwardingRep.GetDomainByHostIdPort(ctx, hostId, port)
  536. if err != nil {
  537. return err
  538. }
  539. if len(webRules) > 0 {
  540. return errPortInUse
  541. }
  542. return nil
  543. }
  544. // verifyUDPPort 专门处理 UDP 的端口校验逻辑。
  545. func (s *wafFormatterService) verifyUDPPort(ctx context.Context, hostId int64, port string) error {
  546. errPortInUse := fmt.Errorf("端口 %s 已经被使用,无法添加", port)
  547. // UDP 规则不能与已有的 UDP 规则共存
  548. count, err := s.udpForWardingRep.GetPortCount(ctx, hostId, port)
  549. if err != nil {
  550. return err
  551. }
  552. if count > 0 {
  553. return errPortInUse
  554. }
  555. return nil
  556. }