config.go 21 KB

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  1. /*
  2. * Copyright (c) 2016, Psiphon Inc.
  3. * All rights reserved.
  4. *
  5. * This program is free software: you can redistribute it and/or modify
  6. * it under the terms of the GNU General Public License as published by
  7. * the Free Software Foundation, either version 3 of the License, or
  8. * (at your option) any later version.
  9. *
  10. * This program is distributed in the hope that it will be useful,
  11. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  12. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  13. * GNU General Public License for more details.
  14. *
  15. * You should have received a copy of the GNU General Public License
  16. * along with this program. If not, see <http://www.gnu.org/licenses/>.
  17. *
  18. */
  19. package server
  20. import (
  21. "crypto/rand"
  22. "crypto/rsa"
  23. "crypto/x509"
  24. "encoding/base64"
  25. "encoding/json"
  26. "encoding/pem"
  27. "errors"
  28. "fmt"
  29. "net"
  30. "strconv"
  31. "strings"
  32. "github.com/Psiphon-Inc/crypto/ssh"
  33. "github.com/Psiphon-Labs/psiphon-tunnel-core/psiphon"
  34. "github.com/Psiphon-Labs/psiphon-tunnel-core/psiphon/common"
  35. "golang.org/x/crypto/nacl/box"
  36. )
  37. const (
  38. SERVER_CONFIG_FILENAME = "psiphond.config"
  39. SERVER_TRAFFIC_RULES_FILENAME = "psiphond-traffic-rules.config"
  40. SERVER_ENTRY_FILENAME = "server-entry.dat"
  41. DEFAULT_SERVER_IP_ADDRESS = "127.0.0.1"
  42. WEB_SERVER_SECRET_BYTE_LENGTH = 32
  43. DISCOVERY_VALUE_KEY_BYTE_LENGTH = 32
  44. SSH_USERNAME_SUFFIX_BYTE_LENGTH = 8
  45. SSH_PASSWORD_BYTE_LENGTH = 32
  46. SSH_RSA_HOST_KEY_BITS = 2048
  47. SSH_OBFUSCATED_KEY_BYTE_LENGTH = 32
  48. )
  49. // Config specifies the configuration and behavior of a Psiphon
  50. // server.
  51. type Config struct {
  52. // LogLevel specifies the log level. Valid values are:
  53. // panic, fatal, error, warn, info, debug
  54. LogLevel string
  55. // LogFilename specifies the path of the file to log
  56. // to. When blank, logs are written to stderr.
  57. LogFilename string
  58. // DiscoveryValueHMACKey is the network-wide secret value
  59. // used to determine a unique discovery strategy.
  60. DiscoveryValueHMACKey string
  61. // GeoIPDatabaseFilenames ares paths of GeoIP2/GeoLite2
  62. // MaxMind database files. When empty, no GeoIP lookups are
  63. // performed. Each file is queried, in order, for the
  64. // logged fields: country code, city, and ISP. Multiple
  65. // file support accomodates the MaxMind distribution where
  66. // ISP data in a separate file.
  67. GeoIPDatabaseFilenames []string
  68. // PsinetDatabaseFilename is the path of the Psiphon automation
  69. // jsonpickle format Psiphon API data file.
  70. PsinetDatabaseFilename string
  71. // HostID is the ID of the server host; this is used for API
  72. // event logging.
  73. HostID string
  74. // ServerIPAddress is the public IP address of the server.
  75. ServerIPAddress string
  76. // WebServerPort is the listening port of the web server.
  77. // When <= 0, no web server component is run.
  78. WebServerPort int
  79. // WebServerSecret is the unique secret value that the client
  80. // must supply to make requests to the web server.
  81. WebServerSecret string
  82. // WebServerCertificate is the certificate the client uses to
  83. // authenticate the web server.
  84. WebServerCertificate string
  85. // WebServerPrivateKey is the private key the web server uses to
  86. // authenticate itself to clients.
  87. WebServerPrivateKey string
  88. // WebServerPortForwardAddress specifies the expected network
  89. // address ("<host>:<port>") specified in a client's port forward
  90. // HostToConnect and PortToConnect when the client is making a
  91. // tunneled connection to the web server. This address is always
  92. // exempted from validation against SSH_DISALLOWED_PORT_FORWARD_HOSTS
  93. // and AllowTCPPorts/DenyTCPPorts.
  94. WebServerPortForwardAddress string
  95. // WebServerPortForwardRedirectAddress specifies an alternate
  96. // destination address to be substituted and dialed instead of
  97. // the original destination when the port forward destination is
  98. // WebServerPortForwardAddress.
  99. WebServerPortForwardRedirectAddress string
  100. // TunnelProtocolPorts specifies which tunnel protocols to run
  101. // and which ports to listen on for each protocol. Valid tunnel
  102. // protocols include: "SSH", "OSSH", "UNFRONTED-MEEK-OSSH",
  103. // "UNFRONTED-MEEK-HTTPS-OSSH", "FRONTED-MEEK-OSSH",
  104. // "FRONTED-MEEK-HTTP-OSSH".
  105. TunnelProtocolPorts map[string]int
  106. // SSHPrivateKey is the SSH host key. The same key is used for
  107. // all protocols, run by this server instance, which use SSH.
  108. SSHPrivateKey string
  109. // SSHServerVersion is the server version presented in the
  110. // identification string. The same value is used for all
  111. // protocols, run by this server instance, which use SSH.
  112. SSHServerVersion string
  113. // SSHUserName is the SSH user name to be presented by the
  114. // the tunnel-core client. The same value is used for all
  115. // protocols, run by this server instance, which use SSH.
  116. SSHUserName string
  117. // SSHPassword is the SSH password to be presented by the
  118. // the tunnel-core client. The same value is used for all
  119. // protocols, run by this server instance, which use SSH.
  120. SSHPassword string
  121. // ObfuscatedSSHKey is the secret key for use in the Obfuscated
  122. // SSH protocol. The same secret key is used for all protocols,
  123. // run by this server instance, which use Obfuscated SSH.
  124. ObfuscatedSSHKey string
  125. // MeekCookieEncryptionPrivateKey is the NaCl private key used
  126. // to decrypt meek cookie payload sent from clients. The same
  127. // key is used for all meek protocols run by this server instance.
  128. MeekCookieEncryptionPrivateKey string
  129. // MeekObfuscatedKey is the secret key used for obfuscating
  130. // meek cookies sent from clients. The same key is used for all
  131. // meek protocols run by this server instance.
  132. MeekObfuscatedKey string
  133. // MeekCertificateCommonName is the value used for the hostname
  134. // in the self-signed certificate generated and used for meek
  135. // HTTPS modes. The same value is used for all HTTPS meek
  136. // protocols.
  137. MeekCertificateCommonName string
  138. // MeekProhibitedHeaders is a list of HTTP headers to check for
  139. // in client requests. If one of these headers is found, the
  140. // request fails. This is used to defend against abuse.
  141. MeekProhibitedHeaders []string
  142. // MeekProxyForwardedForHeaders is a list of HTTP headers which
  143. // may be added by downstream HTTP proxies or CDNs in front
  144. // of clients. These headers supply the original client IP
  145. // address, which is geolocated for stats purposes. Headers
  146. // include, for example, X-Forwarded-For. The header's value
  147. // is assumed to be a comma delimted list of IP addresses where
  148. // the client IP is the first IP address in the list. Meek protocols
  149. // look for these headers and use the client IP address from
  150. // the header if any one is present and the value is a valid
  151. // IP address; otherwise the direct connection remote address is
  152. // used as the client IP.
  153. MeekProxyForwardedForHeaders []string
  154. // UDPInterceptUdpgwServerAddress specifies the network address of
  155. // a udpgw server which clients may be port forwarding to. When
  156. // specified, these TCP port forwards are intercepted and handled
  157. // directly by this server, which parses the SSH channel using the
  158. // udpgw protocol. Handling includes udpgw transparent DNS: tunneled
  159. // UDP DNS packets are rerouted to the host's DNS server.
  160. //
  161. // The intercept is applied before the port forward destination is
  162. // validated against SSH_DISALLOWED_PORT_FORWARD_HOSTS and
  163. // AllowTCPPorts/DenyTCPPorts. So the intercept address may be any
  164. // otherwise prohibited destination.
  165. UDPInterceptUdpgwServerAddress string
  166. // DNSResolverIPAddress specifies the IP address of a DNS server
  167. // to be used when "/etc/resolv.conf" doesn't exist or fails to
  168. // parse. When blank, "/etc/resolv.conf" must contain a usable
  169. // "nameserver" entry.
  170. DNSResolverIPAddress string
  171. // LoadMonitorPeriodSeconds indicates how frequently to log server
  172. // load information (number of connected clients per tunnel protocol,
  173. // number of running goroutines, amount of memory allocated, etc.)
  174. // The default, 0, disables load logging.
  175. LoadMonitorPeriodSeconds int
  176. // TrafficRulesFilename is the path of a file containing a
  177. // JSON-encoded TrafficRulesSet, the traffic rules to apply to
  178. // Psiphon client tunnels.
  179. TrafficRulesFilename string
  180. }
  181. // RunWebServer indicates whether to run a web server component.
  182. func (config *Config) RunWebServer() bool {
  183. return config.WebServerPort > 0
  184. }
  185. // RunLoadMonitor indicates whether to monitor and log server load.
  186. func (config *Config) RunLoadMonitor() bool {
  187. return config.LoadMonitorPeriodSeconds > 0
  188. }
  189. // LoadConfig loads and validates a JSON encoded server config.
  190. func LoadConfig(configJSON []byte) (*Config, error) {
  191. var config Config
  192. err := json.Unmarshal(configJSON, &config)
  193. if err != nil {
  194. return nil, common.ContextError(err)
  195. }
  196. if config.ServerIPAddress == "" {
  197. return nil, errors.New("ServerIPAddress is required")
  198. }
  199. if config.WebServerPort > 0 && (config.WebServerSecret == "" || config.WebServerCertificate == "" ||
  200. config.WebServerPrivateKey == "") {
  201. return nil, errors.New(
  202. "Web server requires WebServerSecret, WebServerCertificate, WebServerPrivateKey")
  203. }
  204. if config.WebServerPortForwardAddress != "" {
  205. if err := validateNetworkAddress(config.WebServerPortForwardAddress, false); err != nil {
  206. return nil, errors.New("WebServerPortForwardAddress is invalid")
  207. }
  208. }
  209. if config.WebServerPortForwardRedirectAddress != "" {
  210. if config.WebServerPortForwardAddress == "" {
  211. return nil, errors.New(
  212. "WebServerPortForwardRedirectAddress requires WebServerPortForwardAddress")
  213. }
  214. if err := validateNetworkAddress(config.WebServerPortForwardRedirectAddress, false); err != nil {
  215. return nil, errors.New("WebServerPortForwardRedirectAddress is invalid")
  216. }
  217. }
  218. for tunnelProtocol, _ := range config.TunnelProtocolPorts {
  219. if !common.Contains(common.SupportedTunnelProtocols, tunnelProtocol) {
  220. return nil, fmt.Errorf("Unsupported tunnel protocol: %s", tunnelProtocol)
  221. }
  222. if common.TunnelProtocolUsesSSH(tunnelProtocol) ||
  223. common.TunnelProtocolUsesObfuscatedSSH(tunnelProtocol) {
  224. if config.SSHPrivateKey == "" || config.SSHServerVersion == "" ||
  225. config.SSHUserName == "" || config.SSHPassword == "" {
  226. return nil, fmt.Errorf(
  227. "Tunnel protocol %s requires SSHPrivateKey, SSHServerVersion, SSHUserName, SSHPassword",
  228. tunnelProtocol)
  229. }
  230. }
  231. if common.TunnelProtocolUsesObfuscatedSSH(tunnelProtocol) {
  232. if config.ObfuscatedSSHKey == "" {
  233. return nil, fmt.Errorf(
  234. "Tunnel protocol %s requires ObfuscatedSSHKey",
  235. tunnelProtocol)
  236. }
  237. }
  238. if common.TunnelProtocolUsesMeekHTTP(tunnelProtocol) ||
  239. common.TunnelProtocolUsesMeekHTTPS(tunnelProtocol) {
  240. if config.MeekCookieEncryptionPrivateKey == "" || config.MeekObfuscatedKey == "" {
  241. return nil, fmt.Errorf(
  242. "Tunnel protocol %s requires MeekCookieEncryptionPrivateKey, MeekObfuscatedKey",
  243. tunnelProtocol)
  244. }
  245. }
  246. if common.TunnelProtocolUsesMeekHTTPS(tunnelProtocol) {
  247. if config.MeekCertificateCommonName == "" {
  248. return nil, fmt.Errorf(
  249. "Tunnel protocol %s requires MeekCertificateCommonName",
  250. tunnelProtocol)
  251. }
  252. }
  253. }
  254. if config.UDPInterceptUdpgwServerAddress != "" {
  255. if err := validateNetworkAddress(config.UDPInterceptUdpgwServerAddress, true); err != nil {
  256. return nil, fmt.Errorf("UDPInterceptUdpgwServerAddress is invalid: %s", err)
  257. }
  258. }
  259. if config.DNSResolverIPAddress != "" {
  260. if net.ParseIP(config.DNSResolverIPAddress) == nil {
  261. return nil, fmt.Errorf("DNSResolverIPAddress is invalid")
  262. }
  263. }
  264. return &config, nil
  265. }
  266. func validateNetworkAddress(address string, requireIPaddress bool) error {
  267. host, portStr, err := net.SplitHostPort(address)
  268. if err != nil {
  269. return err
  270. }
  271. if requireIPaddress && net.ParseIP(host) == nil {
  272. return errors.New("host must be an IP address")
  273. }
  274. port, err := strconv.Atoi(portStr)
  275. if err != nil {
  276. return err
  277. }
  278. if port < 0 || port > 65535 {
  279. return errors.New("invalid port")
  280. }
  281. return nil
  282. }
  283. // GenerateConfigParams specifies customizations to be applied to
  284. // a generated server config.
  285. type GenerateConfigParams struct {
  286. LogFilename string
  287. ServerIPAddress string
  288. WebServerPort int
  289. EnableSSHAPIRequests bool
  290. TunnelProtocolPorts map[string]int
  291. TrafficRulesFilename string
  292. }
  293. // GenerateConfig creates a new Psiphon server config. It returns JSON
  294. // encoded configs and a client-compatible "server entry" for the server. It
  295. // generates all necessary secrets and key material, which are emitted in
  296. // the config file and server entry as necessary.
  297. // GenerateConfig uses sample values for many fields. The intention is for
  298. // generated configs to be used for testing or as a template for production
  299. // setup, not to generate production-ready configurations.
  300. func GenerateConfig(params *GenerateConfigParams) ([]byte, []byte, []byte, error) {
  301. // Input validation
  302. if net.ParseIP(params.ServerIPAddress) == nil {
  303. return nil, nil, nil, common.ContextError(errors.New("invalid IP address"))
  304. }
  305. if len(params.TunnelProtocolPorts) == 0 {
  306. return nil, nil, nil, common.ContextError(errors.New("no tunnel protocols"))
  307. }
  308. usedPort := make(map[int]bool)
  309. if params.WebServerPort != 0 {
  310. usedPort[params.WebServerPort] = true
  311. }
  312. usingMeek := false
  313. for protocol, port := range params.TunnelProtocolPorts {
  314. if !common.Contains(common.SupportedTunnelProtocols, protocol) {
  315. return nil, nil, nil, common.ContextError(errors.New("invalid tunnel protocol"))
  316. }
  317. if usedPort[port] {
  318. return nil, nil, nil, common.ContextError(errors.New("duplicate listening port"))
  319. }
  320. usedPort[port] = true
  321. if common.TunnelProtocolUsesMeekHTTP(protocol) ||
  322. common.TunnelProtocolUsesMeekHTTPS(protocol) {
  323. usingMeek = true
  324. }
  325. }
  326. // Web server config
  327. var webServerSecret, webServerCertificate,
  328. webServerPrivateKey, webServerPortForwardAddress string
  329. if params.WebServerPort != 0 {
  330. var err error
  331. webServerSecret, err = common.MakeRandomStringHex(WEB_SERVER_SECRET_BYTE_LENGTH)
  332. if err != nil {
  333. return nil, nil, nil, common.ContextError(err)
  334. }
  335. webServerCertificate, webServerPrivateKey, err = GenerateWebServerCertificate("")
  336. if err != nil {
  337. return nil, nil, nil, common.ContextError(err)
  338. }
  339. webServerPortForwardAddress = net.JoinHostPort(
  340. params.ServerIPAddress, strconv.Itoa(params.WebServerPort))
  341. }
  342. // SSH config
  343. // TODO: use other key types: anti-fingerprint by varying params
  344. rsaKey, err := rsa.GenerateKey(rand.Reader, SSH_RSA_HOST_KEY_BITS)
  345. if err != nil {
  346. return nil, nil, nil, common.ContextError(err)
  347. }
  348. sshPrivateKey := pem.EncodeToMemory(
  349. &pem.Block{
  350. Type: "RSA PRIVATE KEY",
  351. Bytes: x509.MarshalPKCS1PrivateKey(rsaKey),
  352. },
  353. )
  354. signer, err := ssh.NewSignerFromKey(rsaKey)
  355. if err != nil {
  356. return nil, nil, nil, common.ContextError(err)
  357. }
  358. sshPublicKey := signer.PublicKey()
  359. sshUserNameSuffix, err := common.MakeRandomStringHex(SSH_USERNAME_SUFFIX_BYTE_LENGTH)
  360. if err != nil {
  361. return nil, nil, nil, common.ContextError(err)
  362. }
  363. sshUserName := "psiphon_" + sshUserNameSuffix
  364. sshPassword, err := common.MakeRandomStringHex(SSH_PASSWORD_BYTE_LENGTH)
  365. if err != nil {
  366. return nil, nil, nil, common.ContextError(err)
  367. }
  368. // TODO: vary version string for anti-fingerprint
  369. sshServerVersion := "SSH-2.0-Psiphon"
  370. // Obfuscated SSH config
  371. obfuscatedSSHKey, err := common.MakeRandomStringHex(SSH_OBFUSCATED_KEY_BYTE_LENGTH)
  372. if err != nil {
  373. return nil, nil, nil, common.ContextError(err)
  374. }
  375. // Meek config
  376. var meekCookieEncryptionPublicKey, meekCookieEncryptionPrivateKey, meekObfuscatedKey string
  377. if usingMeek {
  378. rawMeekCookieEncryptionPublicKey, rawMeekCookieEncryptionPrivateKey, err :=
  379. box.GenerateKey(rand.Reader)
  380. if err != nil {
  381. return nil, nil, nil, common.ContextError(err)
  382. }
  383. meekCookieEncryptionPublicKey = base64.StdEncoding.EncodeToString(rawMeekCookieEncryptionPublicKey[:])
  384. meekCookieEncryptionPrivateKey = base64.StdEncoding.EncodeToString(rawMeekCookieEncryptionPrivateKey[:])
  385. meekObfuscatedKey, err = common.MakeRandomStringHex(SSH_OBFUSCATED_KEY_BYTE_LENGTH)
  386. if err != nil {
  387. return nil, nil, nil, common.ContextError(err)
  388. }
  389. }
  390. // Other config
  391. discoveryValueHMACKey, err := common.MakeRandomStringBase64(DISCOVERY_VALUE_KEY_BYTE_LENGTH)
  392. if err != nil {
  393. return nil, nil, nil, common.ContextError(err)
  394. }
  395. // Assemble configs and server entry
  396. // Note: this config is intended for either testing or as an illustrative
  397. // example or template and is not intended for production deployment.
  398. config := &Config{
  399. LogLevel: "info",
  400. LogFilename: params.LogFilename,
  401. GeoIPDatabaseFilenames: nil,
  402. HostID: "example-host-id",
  403. ServerIPAddress: params.ServerIPAddress,
  404. DiscoveryValueHMACKey: discoveryValueHMACKey,
  405. WebServerPort: params.WebServerPort,
  406. WebServerSecret: webServerSecret,
  407. WebServerCertificate: webServerCertificate,
  408. WebServerPrivateKey: webServerPrivateKey,
  409. WebServerPortForwardAddress: webServerPortForwardAddress,
  410. SSHPrivateKey: string(sshPrivateKey),
  411. SSHServerVersion: sshServerVersion,
  412. SSHUserName: sshUserName,
  413. SSHPassword: sshPassword,
  414. ObfuscatedSSHKey: obfuscatedSSHKey,
  415. TunnelProtocolPorts: params.TunnelProtocolPorts,
  416. DNSResolverIPAddress: "8.8.8.8",
  417. UDPInterceptUdpgwServerAddress: "127.0.0.1:7300",
  418. MeekCookieEncryptionPrivateKey: meekCookieEncryptionPrivateKey,
  419. MeekObfuscatedKey: meekObfuscatedKey,
  420. MeekCertificateCommonName: "www.example.org",
  421. MeekProhibitedHeaders: nil,
  422. MeekProxyForwardedForHeaders: []string{"X-Forwarded-For"},
  423. LoadMonitorPeriodSeconds: 300,
  424. TrafficRulesFilename: params.TrafficRulesFilename,
  425. }
  426. encodedConfig, err := json.MarshalIndent(config, "\n", " ")
  427. if err != nil {
  428. return nil, nil, nil, common.ContextError(err)
  429. }
  430. intPtr := func(i int) *int {
  431. return &i
  432. }
  433. trafficRulesSet := &TrafficRulesSet{
  434. DefaultRules: TrafficRules{
  435. RateLimits: RateLimits{
  436. ReadUnthrottledBytes: new(int64),
  437. ReadBytesPerSecond: new(int64),
  438. WriteUnthrottledBytes: new(int64),
  439. WriteBytesPerSecond: new(int64),
  440. },
  441. IdleTCPPortForwardTimeoutMilliseconds: intPtr(30000),
  442. IdleUDPPortForwardTimeoutMilliseconds: intPtr(30000),
  443. MaxTCPPortForwardCount: intPtr(1024),
  444. MaxUDPPortForwardCount: intPtr(32),
  445. AllowTCPPorts: nil,
  446. AllowUDPPorts: nil,
  447. DenyTCPPorts: nil,
  448. DenyUDPPorts: nil,
  449. },
  450. }
  451. encodedTrafficRulesSet, err := json.MarshalIndent(trafficRulesSet, "\n", " ")
  452. if err != nil {
  453. return nil, nil, nil, common.ContextError(err)
  454. }
  455. capabilities := []string{}
  456. if params.EnableSSHAPIRequests {
  457. capabilities = append(capabilities, common.CAPABILITY_SSH_API_REQUESTS)
  458. }
  459. if params.WebServerPort != 0 {
  460. capabilities = append(capabilities, common.CAPABILITY_UNTUNNELED_WEB_API_REQUESTS)
  461. }
  462. for protocol, _ := range params.TunnelProtocolPorts {
  463. capabilities = append(capabilities, psiphon.GetCapability(protocol))
  464. }
  465. sshPort := params.TunnelProtocolPorts["SSH"]
  466. obfuscatedSSHPort := params.TunnelProtocolPorts["OSSH"]
  467. // Meek port limitations
  468. // - fronted meek protocols are hard-wired in the client to be port 443 or 80.
  469. // - only one other meek port may be specified.
  470. meekPort := params.TunnelProtocolPorts["UNFRONTED-MEEK-OSSH"]
  471. if meekPort == 0 {
  472. meekPort = params.TunnelProtocolPorts["UNFRONTED-MEEK-HTTPS-OSSH"]
  473. }
  474. // Note: fronting params are a stub; this server entry will exercise
  475. // client and server fronting code paths, but not actually traverse
  476. // a fronting hop.
  477. serverEntryWebServerPort := ""
  478. strippedWebServerCertificate := ""
  479. if params.WebServerPort != 0 {
  480. serverEntryWebServerPort = fmt.Sprintf("%d", params.WebServerPort)
  481. // Server entry format omits the BEGIN/END lines and newlines
  482. lines := strings.Split(webServerCertificate, "\n")
  483. strippedWebServerCertificate = strings.Join(lines[1:len(lines)-2], "")
  484. }
  485. serverEntry := &psiphon.ServerEntry{
  486. IpAddress: params.ServerIPAddress,
  487. WebServerPort: serverEntryWebServerPort,
  488. WebServerSecret: webServerSecret,
  489. WebServerCertificate: strippedWebServerCertificate,
  490. SshPort: sshPort,
  491. SshUsername: sshUserName,
  492. SshPassword: sshPassword,
  493. SshHostKey: base64.RawStdEncoding.EncodeToString(sshPublicKey.Marshal()),
  494. SshObfuscatedPort: obfuscatedSSHPort,
  495. SshObfuscatedKey: obfuscatedSSHKey,
  496. Capabilities: capabilities,
  497. Region: "US",
  498. MeekServerPort: meekPort,
  499. MeekCookieEncryptionPublicKey: meekCookieEncryptionPublicKey,
  500. MeekObfuscatedKey: meekObfuscatedKey,
  501. MeekFrontingHosts: []string{params.ServerIPAddress},
  502. MeekFrontingAddresses: []string{params.ServerIPAddress},
  503. MeekFrontingDisableSNI: false,
  504. }
  505. encodedServerEntry, err := psiphon.EncodeServerEntry(serverEntry)
  506. if err != nil {
  507. return nil, nil, nil, common.ContextError(err)
  508. }
  509. return encodedConfig, encodedTrafficRulesSet, []byte(encodedServerEntry), nil
  510. }