psinet.go 18 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 psiphon/server/psinet implements psinet database services. The psinet
  20. // database is a JSON-format file containing information about the Psiphon network,
  21. // including sponsors, home pages, stats regexes, available upgrades, and other
  22. // servers for discovery. This package also implements the Psiphon discovery algorithm.
  23. package psinet
  24. import (
  25. "encoding/hex"
  26. "encoding/json"
  27. "fmt"
  28. "math"
  29. "math/rand"
  30. "strconv"
  31. "strings"
  32. "time"
  33. "github.com/Psiphon-Labs/psiphon-tunnel-core/psiphon/common"
  34. )
  35. // Database serves Psiphon API data requests. It's safe for
  36. // concurrent usage. The Reload function supports hot reloading
  37. // of Psiphon network data while the server is running.
  38. type Database struct {
  39. common.ReloadableFile
  40. Hosts map[string]Host `json:"hosts"`
  41. Servers []Server `json:"servers"`
  42. Sponsors map[string]Sponsor `json:"sponsors"`
  43. Versions map[string][]ClientVersion `json:"client_versions"`
  44. DefaultSponsorID string `json:"default_sponsor_id"`
  45. }
  46. type Host struct {
  47. DatacenterName string `json:"datacenter_name"`
  48. Id string `json:"id"`
  49. IpAddress string `json:"ip_address"`
  50. IsTCS bool `json:"is_TCS"`
  51. MeekCookieEncryptionPublicKey string `json:"meek_cookie_encryption_public_key"`
  52. MeekServerObfuscatedKey string `json:"meek_server_obfuscated_key"`
  53. MeekServerPort int `json:"meek_server_port"`
  54. Region string `json:"region"`
  55. }
  56. type Server struct {
  57. AlternateSshObfuscatedPorts []string `json:"alternate_ssh_obfuscated_ports"`
  58. Capabilities map[string]bool `json:"capabilities"`
  59. DiscoveryDateRange []string `json:"discovery_date_range"`
  60. EgressIpAddress string `json:"egress_ip_address"`
  61. HostId string `json:"host_id"`
  62. Id string `json:"id"`
  63. InternalIpAddress string `json:"internal_ip_address"`
  64. IpAddress string `json:"ip_address"`
  65. IsEmbedded bool `json:"is_embedded"`
  66. IsPermanent bool `json:"is_permanent"`
  67. PropogationChannelId string `json:"propagation_channel_id"`
  68. SshHostKey string `json:"ssh_host_key"`
  69. SshObfuscatedKey string `json:"ssh_obfuscated_key"`
  70. SshObfuscatedPort int `json:"ssh_obfuscated_port"`
  71. SshPassword string `json:"ssh_password"`
  72. SshPort string `json:"ssh_port"`
  73. SshUsername string `json:"ssh_username"`
  74. WebServerCertificate string `json:"web_server_certificate"`
  75. WebServerPort string `json:"web_server_port"`
  76. WebServerSecret string `json:"web_server_secret"`
  77. }
  78. type Sponsor struct {
  79. Banner string
  80. HomePages map[string][]HomePage `json:"home_pages"`
  81. HttpsRequestRegexes []HttpsRequestRegex `json:"https_request_regexes"`
  82. Id string `json:"id"`
  83. MobileHomePages map[string][]HomePage `json:"mobile_home_pages"`
  84. Name string `json:"name"`
  85. PageViewRegexes []PageViewRegex `json:"page_view_regexes"`
  86. WebsiteBanner string `json:"website_banner"`
  87. WebsiteBannerLink string `json:"website_banner_link"`
  88. }
  89. type ClientVersion struct {
  90. Version string `json:"version"`
  91. }
  92. type HomePage struct {
  93. Region string `json:"region"`
  94. Url string `json:"url"`
  95. }
  96. type HttpsRequestRegex struct {
  97. Regex string `json:"regex"`
  98. Replace string `json:"replace"`
  99. }
  100. type MobileHomePage struct {
  101. Region string `json:"region"`
  102. Url string `json:"url"`
  103. }
  104. type PageViewRegex struct {
  105. Regex string `json:"regex"`
  106. Replace string `json:"replace"`
  107. }
  108. // NewDatabase initializes a Database, calling Reload on the specified
  109. // filename.
  110. func NewDatabase(filename string) (*Database, error) {
  111. database := &Database{}
  112. database.ReloadableFile = common.NewReloadableFile(
  113. filename,
  114. func(fileContent []byte) error {
  115. var newDatabase Database
  116. err := json.Unmarshal(fileContent, &newDatabase)
  117. if err != nil {
  118. return common.ContextError(err)
  119. }
  120. // Note: an unmarshal directly into &database would fail
  121. // to reset to zero value fields not present in the JSON.
  122. database.Hosts = newDatabase.Hosts
  123. database.Servers = newDatabase.Servers
  124. database.Sponsors = newDatabase.Sponsors
  125. database.Versions = newDatabase.Versions
  126. database.DefaultSponsorID = newDatabase.DefaultSponsorID
  127. return nil
  128. })
  129. _, err := database.Reload()
  130. if err != nil {
  131. return nil, common.ContextError(err)
  132. }
  133. return database, nil
  134. }
  135. // GetRandomHomepage returns a random home page from a set of home pages
  136. // for the specified sponsor, region, and platform.
  137. func (db *Database) GetRandomHomepage(sponsorID, clientRegion string, isMobilePlatform bool) []string {
  138. homepages := db.GetHomepages(sponsorID, clientRegion, isMobilePlatform)
  139. if len(homepages) > 0 {
  140. index := rand.Intn(len(homepages))
  141. return homepages[index : index+1]
  142. }
  143. return homepages
  144. }
  145. // GetHomepages returns a list of home pages for the specified sponsor,
  146. // region, and platform.
  147. func (db *Database) GetHomepages(sponsorID, clientRegion string, isMobilePlatform bool) []string {
  148. db.ReloadableFile.RLock()
  149. defer db.ReloadableFile.RUnlock()
  150. sponsorHomePages := make([]string, 0)
  151. // Sponsor id does not exist: fail gracefully
  152. sponsor, ok := db.Sponsors[sponsorID]
  153. if !ok {
  154. sponsor, ok = db.Sponsors[db.DefaultSponsorID]
  155. if !ok {
  156. return sponsorHomePages
  157. }
  158. }
  159. homePages := sponsor.HomePages
  160. if isMobilePlatform {
  161. if sponsor.MobileHomePages != nil {
  162. homePages = sponsor.MobileHomePages
  163. }
  164. }
  165. // Case: lookup succeeded and corresponding homepages found for region
  166. homePagesByRegion, ok := homePages[clientRegion]
  167. if ok {
  168. for _, homePage := range homePagesByRegion {
  169. sponsorHomePages = append(sponsorHomePages, strings.Replace(homePage.Url, "client_region=XX", "client_region="+clientRegion, 1))
  170. }
  171. }
  172. // Case: lookup failed or no corresponding homepages found for region --> use default
  173. if len(sponsorHomePages) == 0 {
  174. defaultHomePages, ok := homePages["None"]
  175. if ok {
  176. for _, homePage := range defaultHomePages {
  177. // client_region query parameter substitution
  178. sponsorHomePages = append(sponsorHomePages, strings.Replace(homePage.Url, "client_region=XX", "client_region="+clientRegion, 1))
  179. }
  180. }
  181. }
  182. return sponsorHomePages
  183. }
  184. // GetUpgradeClientVersion returns a new client version when an upgrade is
  185. // indicated for the specified client current version. The result is "" when
  186. // no upgrade is available. Caller should normalize clientPlatform.
  187. func (db *Database) GetUpgradeClientVersion(clientVersion, clientPlatform string) string {
  188. db.ReloadableFile.RLock()
  189. defer db.ReloadableFile.RUnlock()
  190. // Check lastest version number against client version number
  191. clientVersions, ok := db.Versions[clientPlatform]
  192. if !ok {
  193. return ""
  194. }
  195. if len(clientVersions) == 0 {
  196. return ""
  197. }
  198. // NOTE: Assumes versions list is in ascending version order
  199. lastVersion := clientVersions[len(clientVersions)-1].Version
  200. lastVersionInt, err := strconv.Atoi(lastVersion)
  201. if err != nil {
  202. return ""
  203. }
  204. clientVersionInt, err := strconv.Atoi(clientVersion)
  205. if err != nil {
  206. return ""
  207. }
  208. // Return latest version if upgrade needed
  209. if lastVersionInt > clientVersionInt {
  210. return lastVersion
  211. }
  212. return ""
  213. }
  214. // GetHttpsRequestRegexes returns bytes transferred stats regexes for the
  215. // specified sponsor.
  216. func (db *Database) GetHttpsRequestRegexes(sponsorID string) []map[string]string {
  217. db.ReloadableFile.RLock()
  218. defer db.ReloadableFile.RUnlock()
  219. regexes := make([]map[string]string, 0)
  220. sponsor, ok := db.Sponsors[sponsorID]
  221. if !ok {
  222. sponsor, ok = db.Sponsors[db.DefaultSponsorID]
  223. }
  224. // If neither sponsorID or DefaultSponsorID were found, sponsor will be the
  225. // zero value of the map, an empty Sponsor struct.
  226. for _, sponsorRegex := range sponsor.HttpsRequestRegexes {
  227. regex := make(map[string]string)
  228. regex["replace"] = sponsorRegex.Replace
  229. regex["regex"] = sponsorRegex.Regex
  230. regexes = append(regexes, regex)
  231. }
  232. return regexes
  233. }
  234. // DiscoverServers selects new encoded server entries to be "discovered" by
  235. // the client, using the discoveryValue -- a function of the client's IP
  236. // address -- as the input into the discovery algorithm.
  237. // The server list (db.Servers) loaded from JSON is stored as an array instead of
  238. // a map to ensure servers are discovered deterministically. Each iteration over a
  239. // map in go is seeded with a random value which causes non-deterministic ordering.
  240. func (db *Database) DiscoverServers(discoveryValue int) []string {
  241. db.ReloadableFile.RLock()
  242. defer db.ReloadableFile.RUnlock()
  243. var servers []Server
  244. discoveryDate := time.Now().UTC()
  245. candidateServers := make([]Server, 0)
  246. for _, server := range db.Servers {
  247. var start time.Time
  248. var end time.Time
  249. var err error
  250. // All servers that are discoverable on this day are eligable for discovery
  251. if len(server.DiscoveryDateRange) != 0 {
  252. start, err = time.Parse("2006-01-02T15:04:05", server.DiscoveryDateRange[0])
  253. if err != nil {
  254. continue
  255. }
  256. end, err = time.Parse("2006-01-02T15:04:05", server.DiscoveryDateRange[1])
  257. if err != nil {
  258. continue
  259. }
  260. if discoveryDate.After(start) && discoveryDate.Before(end) {
  261. candidateServers = append(candidateServers, server)
  262. }
  263. }
  264. }
  265. timeInSeconds := int(discoveryDate.Unix())
  266. servers = selectServers(candidateServers, timeInSeconds, discoveryValue)
  267. encodedServerEntries := make([]string, 0)
  268. for _, server := range servers {
  269. encodedServerEntries = append(encodedServerEntries, db.getEncodedServerEntry(server))
  270. }
  271. return encodedServerEntries
  272. }
  273. // Combine client IP address and time-of-day strategies to give out different
  274. // discovery servers to different clients. The aim is to achieve defense against
  275. // enumerability. We also want to achieve a degree of load balancing clients
  276. // and these strategies are expected to have reasonably random distribution,
  277. // even for a cluster of users coming from the same network.
  278. //
  279. // We only select one server: multiple results makes enumeration easier; the
  280. // strategies have a built-in load balancing effect; and date range discoverability
  281. // means a client will actually learn more servers later even if they happen to
  282. // always pick the same result at this point.
  283. //
  284. // This is a blended strategy: as long as there are enough servers to pick from,
  285. // both aspects determine which server is selected. IP address is given the
  286. // priority: if there are only a couple of servers, for example, IP address alone
  287. // determines the outcome.
  288. func selectServers(servers []Server, timeInSeconds, discoveryValue int) []Server {
  289. TIME_GRANULARITY := 3600
  290. if len(servers) == 0 {
  291. return nil
  292. }
  293. // Time truncated to an hour
  294. timeStrategyValue := timeInSeconds / TIME_GRANULARITY
  295. // Divide servers into buckets. The bucket count is chosen such that the number
  296. // of buckets and the number of items in each bucket are close (using sqrt).
  297. // IP address selects the bucket, time selects the item in the bucket.
  298. // NOTE: this code assumes that the range of possible timeStrategyValues
  299. // and discoveryValues are sufficient to index to all bucket items.
  300. bucketCount := calculateBucketCount(len(servers))
  301. buckets := bucketizeServerList(servers, bucketCount)
  302. if len(buckets) == 0 {
  303. return nil
  304. }
  305. bucket := buckets[discoveryValue%len(buckets)]
  306. if len(bucket) == 0 {
  307. return nil
  308. }
  309. server := bucket[timeStrategyValue%len(bucket)]
  310. serverList := make([]Server, 1)
  311. serverList[0] = server
  312. return serverList
  313. }
  314. // Number of buckets such that first strategy picks among about the same number
  315. // of choices as the second strategy. Gives an edge to the "outer" strategy.
  316. func calculateBucketCount(length int) int {
  317. return int(math.Ceil(math.Sqrt(float64(length))))
  318. }
  319. // bucketizeServerList creates nearly equal sized slices of the input list.
  320. func bucketizeServerList(servers []Server, bucketCount int) [][]Server {
  321. // This code creates the same partitions as legacy servers:
  322. // https://bitbucket.org/psiphon/psiphon-circumvention-system/src/03bc1a7e51e7c85a816e370bb3a6c755fd9c6fee/Automation/psi_ops_discovery.py
  323. //
  324. // Both use the same algorithm from:
  325. // http://stackoverflow.com/questions/2659900/python-slicing-a-list-into-n-nearly-equal-length-partitions
  326. // TODO: this partition is constant for fixed Database content, so it could
  327. // be done once and cached in the Database ReloadableFile reloadAction.
  328. buckets := make([][]Server, bucketCount)
  329. division := float64(len(servers)) / float64(bucketCount)
  330. for i := 0; i < bucketCount; i++ {
  331. start := int((division * float64(i)) + 0.5)
  332. end := int((division * (float64(i) + 1)) + 0.5)
  333. buckets[i] = servers[start:end]
  334. }
  335. return buckets
  336. }
  337. // Return hex encoded server entry string for comsumption by client.
  338. // Newer clients ignore the legacy fields and only utilize the extended (new) config.
  339. func (db *Database) getEncodedServerEntry(server Server) string {
  340. host, hostExists := db.Hosts[server.HostId]
  341. if !hostExists {
  342. return ""
  343. }
  344. // TCS web server certificate has PEM headers and newlines, so strip those now
  345. // for legacy format compatibility
  346. webServerCertificate := server.WebServerCertificate
  347. if host.IsTCS {
  348. splitCert := strings.Split(server.WebServerCertificate, "\n")
  349. if len(splitCert) <= 2 {
  350. webServerCertificate = ""
  351. } else {
  352. webServerCertificate = strings.Join(splitCert[1:len(splitCert)-2], "")
  353. }
  354. }
  355. // Double-check that we're not giving our blank server credentials
  356. if len(server.IpAddress) <= 1 || len(server.WebServerPort) <= 1 || len(server.WebServerSecret) <= 1 || len(webServerCertificate) <= 1 {
  357. return ""
  358. }
  359. // Extended (new) entry fields are in a JSON string
  360. var extendedConfig struct {
  361. IpAddress string `json:"ipAddress"`
  362. WebServerPort string `json:"webServerPort"` // not an int
  363. WebServerSecret string `json:"webServerSecret"`
  364. WebServerCertificate string `json:"webServerCertificate"`
  365. SshPort int `json:"sshPort"`
  366. SshUsername string `json:"sshUsername"`
  367. SshPassword string `json:"sshPassword"`
  368. SshHostKey string `json:"sshHostKey"`
  369. SshObfuscatedPort int `json:"sshObfuscatedPort"`
  370. SshObfuscatedKey string `json:"sshObfuscatedKey"`
  371. Capabilities []string `json:"capabilities"`
  372. Region string `json:"region"`
  373. MeekServerPort int `json:"meekServerPort"`
  374. MeekCookieEncryptionPublicKey string `json:"meekCookieEncryptionPublicKey"`
  375. MeekObfuscatedKey string `json:"meekObfuscatedKey"`
  376. }
  377. // NOTE: also putting original values in extended config for easier parsing by new clients
  378. extendedConfig.IpAddress = server.IpAddress
  379. extendedConfig.WebServerPort = server.WebServerPort
  380. extendedConfig.WebServerSecret = server.WebServerSecret
  381. extendedConfig.WebServerCertificate = webServerCertificate
  382. sshPort, err := strconv.Atoi(server.SshPort)
  383. if err != nil {
  384. extendedConfig.SshPort = 0
  385. } else {
  386. extendedConfig.SshPort = sshPort
  387. }
  388. extendedConfig.SshUsername = server.SshUsername
  389. extendedConfig.SshPassword = server.SshPassword
  390. sshHostKeyType, sshHostKey := parseSshKeyString(server.SshHostKey)
  391. if strings.Compare(sshHostKeyType, "ssh-rsa") == 0 {
  392. extendedConfig.SshHostKey = sshHostKey
  393. } else {
  394. extendedConfig.SshHostKey = ""
  395. }
  396. extendedConfig.SshObfuscatedPort = server.SshObfuscatedPort
  397. // Use the latest alternate port unless tunneling through meek
  398. if len(server.AlternateSshObfuscatedPorts) > 0 && !server.Capabilities["UNFRONTED-MEEK"] {
  399. port, err := strconv.Atoi(server.AlternateSshObfuscatedPorts[len(server.AlternateSshObfuscatedPorts)-1])
  400. if err == nil {
  401. extendedConfig.SshObfuscatedPort = port
  402. }
  403. }
  404. extendedConfig.SshObfuscatedKey = server.SshObfuscatedKey
  405. extendedConfig.Region = host.Region
  406. extendedConfig.MeekCookieEncryptionPublicKey = host.MeekCookieEncryptionPublicKey
  407. extendedConfig.MeekServerPort = host.MeekServerPort
  408. extendedConfig.MeekObfuscatedKey = host.MeekServerObfuscatedKey
  409. serverCapabilities := make(map[string]bool, 0)
  410. for capability, enabled := range server.Capabilities {
  411. serverCapabilities[capability] = enabled
  412. }
  413. if serverCapabilities["UNFRONTED-MEEK"] && host.MeekServerPort == 443 {
  414. serverCapabilities["UNFRONTED-MEEK"] = false
  415. serverCapabilities["UNFRONTED-MEEK-HTTPS"] = true
  416. }
  417. for capability, enabled := range serverCapabilities {
  418. if enabled == true {
  419. extendedConfig.Capabilities = append(extendedConfig.Capabilities, capability)
  420. }
  421. }
  422. jsonDump, err := json.Marshal(extendedConfig)
  423. if err != nil {
  424. return ""
  425. }
  426. // Legacy format + extended (new) config
  427. prefixString := fmt.Sprintf("%s %s %s %s ", server.IpAddress, server.WebServerPort, server.WebServerSecret, webServerCertificate)
  428. return hex.EncodeToString(append([]byte(prefixString)[:], []byte(jsonDump)[:]...))
  429. }
  430. // Parse string of format "ssh-key-type ssh-key".
  431. func parseSshKeyString(sshKeyString string) (keyType string, key string) {
  432. sshKeyArr := strings.Split(sshKeyString, " ")
  433. if len(sshKeyArr) != 2 {
  434. return "", ""
  435. }
  436. return sshKeyArr[0], sshKeyArr[1]
  437. }