broker.go 12 KB

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  1. /*
  2. Broker acts as the HTTP signaling channel.
  3. It matches clients and snowflake proxies by passing corresponding
  4. SessionDescriptions in order to negotiate a WebRTC connection.
  5. */
  6. package main
  7. import (
  8. "bytes"
  9. "container/heap"
  10. "context"
  11. "crypto/tls"
  12. "flag"
  13. "io"
  14. "log"
  15. "net/http"
  16. "os"
  17. "os/signal"
  18. "strings"
  19. "sync"
  20. "syscall"
  21. "time"
  22. "gitlab.torproject.org/tpo/anti-censorship/pluggable-transports/snowflake/v2/common/bridgefingerprint"
  23. "github.com/aws/aws-sdk-go-v2/config"
  24. "github.com/aws/aws-sdk-go-v2/service/sqs"
  25. "github.com/prometheus/client_golang/prometheus"
  26. "github.com/prometheus/client_golang/prometheus/promhttp"
  27. "gitlab.torproject.org/tpo/anti-censorship/pluggable-transports/ptutil/safelog"
  28. "gitlab.torproject.org/tpo/anti-censorship/pluggable-transports/snowflake/v2/common/namematcher"
  29. "golang.org/x/crypto/acme/autocert"
  30. )
  31. type BrokerContext struct {
  32. snowflakes *SnowflakeHeap
  33. restrictedSnowflakes *SnowflakeHeap
  34. // Maps keeping track of snowflakeIDs required to match SDP answers from
  35. // the second http POST. Restricted snowflakes can only be matched up with
  36. // clients behind an unrestricted NAT.
  37. idToSnowflake map[string]*Snowflake
  38. // Synchronization for the snowflake map and heap
  39. snowflakeLock sync.Mutex
  40. proxyPolls chan *ProxyPoll
  41. metrics *Metrics
  42. bridgeList BridgeListHolderFileBased
  43. allowedRelayPattern string
  44. }
  45. func (ctx *BrokerContext) GetBridgeInfo(fingerprint bridgefingerprint.Fingerprint) (BridgeInfo, error) {
  46. return ctx.bridgeList.GetBridgeInfo(fingerprint)
  47. }
  48. func NewBrokerContext(
  49. metricsLogger *log.Logger,
  50. allowedRelayPattern string,
  51. ) *BrokerContext {
  52. snowflakes := new(SnowflakeHeap)
  53. heap.Init(snowflakes)
  54. rSnowflakes := new(SnowflakeHeap)
  55. heap.Init(rSnowflakes)
  56. metrics, err := NewMetrics(metricsLogger)
  57. if err != nil {
  58. panic(err.Error())
  59. }
  60. if metrics == nil {
  61. panic("Failed to create metrics")
  62. }
  63. bridgeListHolder := NewBridgeListHolder()
  64. const DefaultBridges = `{"displayName":"default", "webSocketAddress":"wss://snowflake.torproject.net/", "fingerprint":"2B280B23E1107BB62ABFC40DDCC8824814F80A72"}
  65. `
  66. bridgeListHolder.LoadBridgeInfo(bytes.NewReader([]byte(DefaultBridges)))
  67. return &BrokerContext{
  68. snowflakes: snowflakes,
  69. restrictedSnowflakes: rSnowflakes,
  70. idToSnowflake: make(map[string]*Snowflake),
  71. proxyPolls: make(chan *ProxyPoll),
  72. metrics: metrics,
  73. bridgeList: bridgeListHolder,
  74. allowedRelayPattern: allowedRelayPattern,
  75. }
  76. }
  77. // Proxies may poll for client offers concurrently.
  78. type ProxyPoll struct {
  79. id string
  80. proxyType string
  81. natType string
  82. clients int
  83. offerChannel chan *ClientOffer
  84. }
  85. // Registers a Snowflake and waits for some Client to send an offer,
  86. // as part of the polling logic of the proxy handler.
  87. func (ctx *BrokerContext) RequestOffer(id string, proxyType string, natType string, clients int) *ClientOffer {
  88. request := new(ProxyPoll)
  89. request.id = id
  90. request.proxyType = proxyType
  91. request.natType = natType
  92. request.clients = clients
  93. request.offerChannel = make(chan *ClientOffer)
  94. ctx.proxyPolls <- request
  95. // Block until an offer is available, or timeout which sends a nil offer.
  96. offer := <-request.offerChannel
  97. return offer
  98. }
  99. // goroutine which matches clients to proxies and sends SDP offers along.
  100. // Safely processes proxy requests, responding to them with either an available
  101. // client offer or nil on timeout / none are available.
  102. func (ctx *BrokerContext) Broker() {
  103. for request := range ctx.proxyPolls {
  104. snowflake := ctx.AddSnowflake(request.id, request.proxyType, request.natType, request.clients)
  105. // Wait for a client to avail an offer to the snowflake.
  106. go func(request *ProxyPoll) {
  107. select {
  108. case offer := <-snowflake.offerChannel:
  109. request.offerChannel <- offer
  110. case <-time.After(time.Second * ProxyTimeout):
  111. // This snowflake is no longer available to serve clients.
  112. ctx.snowflakeLock.Lock()
  113. defer ctx.snowflakeLock.Unlock()
  114. if snowflake.index != -1 {
  115. if request.natType == NATUnrestricted {
  116. heap.Remove(ctx.snowflakes, snowflake.index)
  117. } else {
  118. heap.Remove(ctx.restrictedSnowflakes, snowflake.index)
  119. }
  120. ctx.metrics.promMetrics.AvailableProxies.With(prometheus.Labels{"nat": request.natType, "type": request.proxyType}).Dec()
  121. delete(ctx.idToSnowflake, snowflake.id)
  122. close(request.offerChannel)
  123. }
  124. }
  125. }(request)
  126. }
  127. }
  128. // Create and add a Snowflake to the heap.
  129. // Required to keep track of proxies between providing them
  130. // with an offer and awaiting their second POST with an answer.
  131. func (ctx *BrokerContext) AddSnowflake(id string, proxyType string, natType string, clients int) *Snowflake {
  132. snowflake := new(Snowflake)
  133. snowflake.id = id
  134. snowflake.clients = clients
  135. snowflake.proxyType = proxyType
  136. snowflake.natType = natType
  137. snowflake.offerChannel = make(chan *ClientOffer)
  138. snowflake.answerChannel = make(chan string)
  139. ctx.snowflakeLock.Lock()
  140. if natType == NATUnrestricted {
  141. heap.Push(ctx.snowflakes, snowflake)
  142. } else {
  143. heap.Push(ctx.restrictedSnowflakes, snowflake)
  144. }
  145. ctx.metrics.promMetrics.AvailableProxies.With(prometheus.Labels{"nat": natType, "type": proxyType}).Inc()
  146. ctx.idToSnowflake[id] = snowflake
  147. ctx.snowflakeLock.Unlock()
  148. return snowflake
  149. }
  150. func (ctx *BrokerContext) InstallBridgeListProfile(reader io.Reader) error {
  151. if err := ctx.bridgeList.LoadBridgeInfo(reader); err != nil {
  152. return err
  153. }
  154. return nil
  155. }
  156. func (ctx *BrokerContext) CheckProxyRelayPattern(pattern string, nonSupported bool) bool {
  157. if nonSupported {
  158. return false
  159. }
  160. proxyPattern := namematcher.NewNameMatcher(pattern)
  161. brokerPattern := namematcher.NewNameMatcher(ctx.allowedRelayPattern)
  162. return proxyPattern.IsSupersetOf(brokerPattern)
  163. }
  164. // Client offer contains an SDP, bridge fingerprint and the NAT type of the client
  165. type ClientOffer struct {
  166. natType string
  167. sdp []byte
  168. fingerprint []byte
  169. }
  170. func main() {
  171. var acmeEmail string
  172. var acmeHostnamesCommas string
  173. var acmeCertCacheDir string
  174. var addr string
  175. var geoipDatabase string
  176. var geoip6Database string
  177. var bridgeListFilePath, allowedRelayPattern string
  178. var brokerSQSQueueName, brokerSQSQueueRegion string
  179. var disableTLS bool
  180. var certFilename, keyFilename string
  181. var disableGeoip bool
  182. var metricsFilename string
  183. var unsafeLogging bool
  184. flag.StringVar(&acmeEmail, "acme-email", "", "optional contact email for Let's Encrypt notifications")
  185. flag.StringVar(&acmeHostnamesCommas, "acme-hostnames", "", "comma-separated hostnames for TLS certificate")
  186. flag.StringVar(&certFilename, "cert", "", "TLS certificate file")
  187. flag.StringVar(&keyFilename, "key", "", "TLS private key file")
  188. flag.StringVar(&acmeCertCacheDir, "acme-cert-cache", "acme-cert-cache", "directory in which certificates should be cached")
  189. flag.StringVar(&addr, "addr", ":443", "address to listen on")
  190. flag.StringVar(&geoipDatabase, "geoipdb", "/usr/share/tor/geoip", "path to correctly formatted geoip database mapping IPv4 address ranges to country codes")
  191. flag.StringVar(&geoip6Database, "geoip6db", "/usr/share/tor/geoip6", "path to correctly formatted geoip database mapping IPv6 address ranges to country codes")
  192. flag.StringVar(&bridgeListFilePath, "bridge-list-path", "", "file path for bridgeListFile")
  193. flag.StringVar(&allowedRelayPattern, "allowed-relay-pattern", "", "allowed pattern for relay host name. The broker will reject proxies whose AcceptedRelayPattern is more restrictive than this")
  194. flag.StringVar(&brokerSQSQueueName, "broker-sqs-name", "", "name of broker SQS queue to listen for incoming messages on")
  195. flag.StringVar(&brokerSQSQueueRegion, "broker-sqs-region", "", "name of AWS region of broker SQS queue")
  196. flag.BoolVar(&disableTLS, "disable-tls", false, "don't use HTTPS")
  197. flag.BoolVar(&disableGeoip, "disable-geoip", false, "don't use geoip for stats collection")
  198. flag.StringVar(&metricsFilename, "metrics-log", "", "path to metrics logging output")
  199. flag.BoolVar(&unsafeLogging, "unsafe-logging", false, "prevent logs from being scrubbed")
  200. flag.Parse()
  201. var metricsFile io.Writer
  202. var logOutput io.Writer = os.Stderr
  203. if unsafeLogging {
  204. log.SetOutput(logOutput)
  205. } else {
  206. // We want to send the log output through our scrubber first
  207. log.SetOutput(&safelog.LogScrubber{Output: logOutput})
  208. }
  209. log.SetFlags(log.LstdFlags | log.LUTC)
  210. if metricsFilename != "" {
  211. var err error
  212. metricsFile, err = os.OpenFile(metricsFilename, os.O_APPEND|os.O_CREATE|os.O_WRONLY, 0644)
  213. if err != nil {
  214. log.Fatal(err.Error())
  215. }
  216. } else {
  217. metricsFile = os.Stdout
  218. }
  219. metricsLogger := log.New(metricsFile, "", 0)
  220. ctx := NewBrokerContext(metricsLogger, allowedRelayPattern)
  221. if bridgeListFilePath != "" {
  222. bridgeListFile, err := os.Open(bridgeListFilePath)
  223. if err != nil {
  224. log.Fatal(err.Error())
  225. }
  226. err = ctx.InstallBridgeListProfile(bridgeListFile)
  227. if err != nil {
  228. log.Fatal(err.Error())
  229. }
  230. }
  231. if !disableGeoip {
  232. err := ctx.metrics.LoadGeoipDatabases(geoipDatabase, geoip6Database)
  233. if err != nil {
  234. log.Fatal(err.Error())
  235. }
  236. }
  237. go ctx.Broker()
  238. i := &IPC{ctx}
  239. http.HandleFunc("/robots.txt", robotsTxtHandler)
  240. http.Handle("/proxy", SnowflakeHandler{i, proxyPolls})
  241. http.Handle("/client", SnowflakeHandler{i, clientOffers})
  242. http.Handle("/answer", SnowflakeHandler{i, proxyAnswers})
  243. http.Handle("/debug", SnowflakeHandler{i, debugHandler})
  244. http.Handle("/metrics", MetricsHandler{metricsFilename, metricsHandler})
  245. http.Handle("/prometheus", promhttp.HandlerFor(ctx.metrics.promMetrics.registry, promhttp.HandlerOpts{}))
  246. http.Handle("/amp/client/", SnowflakeHandler{i, ampClientOffers})
  247. server := http.Server{
  248. Addr: addr,
  249. }
  250. // Run SQS Handler to continuously poll and process messages from SQS
  251. if brokerSQSQueueName != "" && brokerSQSQueueRegion != "" {
  252. log.Printf("Loading SQSHandler using SQS Queue %s in region %s\n", brokerSQSQueueName, brokerSQSQueueRegion)
  253. sqsHandlerContext := context.Background()
  254. cfg, err := config.LoadDefaultConfig(sqsHandlerContext, config.WithRegion(brokerSQSQueueRegion))
  255. if err != nil {
  256. log.Fatal(err)
  257. }
  258. client := sqs.NewFromConfig(cfg)
  259. sqsHandler, err := newSQSHandler(sqsHandlerContext, client, brokerSQSQueueName, brokerSQSQueueRegion, i)
  260. if err != nil {
  261. log.Fatal(err)
  262. }
  263. go sqsHandler.PollAndHandleMessages(sqsHandlerContext)
  264. }
  265. sigChan := make(chan os.Signal, 1)
  266. signal.Notify(sigChan, syscall.SIGHUP)
  267. // go routine to handle a SIGHUP signal to allow the broker operator to send
  268. // a SIGHUP signal when the geoip database files are updated, without requiring
  269. // a restart of the broker
  270. go func() {
  271. for {
  272. signal := <-sigChan
  273. log.Printf("Received signal: %s. Reloading geoip databases.", signal)
  274. if err := ctx.metrics.LoadGeoipDatabases(geoipDatabase, geoip6Database); err != nil {
  275. log.Fatalf("reload of Geo IP databases on signal %s returned error: %v", signal, err)
  276. }
  277. }
  278. }()
  279. // Handle the various ways of setting up TLS. The legal configurations
  280. // are:
  281. // --acme-hostnames (with optional --acme-email and/or --acme-cert-cache)
  282. // --cert and --key together
  283. // --disable-tls
  284. // The outputs of this block of code are the disableTLS,
  285. // needHTTP01Listener, certManager, and getCertificate variables.
  286. var err error
  287. if acmeHostnamesCommas != "" {
  288. acmeHostnames := strings.Split(acmeHostnamesCommas, ",")
  289. log.Printf("ACME hostnames: %q", acmeHostnames)
  290. var cache autocert.Cache
  291. if err := os.MkdirAll(acmeCertCacheDir, 0700); err != nil {
  292. log.Printf("Warning: Couldn't create cache directory %q (reason: %s) so we're *not* using our certificate cache.", acmeCertCacheDir, err)
  293. } else {
  294. cache = autocert.DirCache(acmeCertCacheDir)
  295. }
  296. certManager := autocert.Manager{
  297. Cache: cache,
  298. Prompt: autocert.AcceptTOS,
  299. HostPolicy: autocert.HostWhitelist(acmeHostnames...),
  300. Email: acmeEmail,
  301. }
  302. go func() {
  303. log.Printf("Starting HTTP-01 listener")
  304. log.Fatal(http.ListenAndServe(":80", certManager.HTTPHandler(nil)))
  305. }()
  306. server.TLSConfig = &tls.Config{GetCertificate: certManager.GetCertificate}
  307. err = server.ListenAndServeTLS("", "")
  308. } else if certFilename != "" && keyFilename != "" {
  309. if acmeEmail != "" || acmeHostnamesCommas != "" {
  310. log.Fatalf("The --cert and --key options are not allowed with --acme-email or --acme-hostnames.")
  311. }
  312. err = server.ListenAndServeTLS(certFilename, keyFilename)
  313. } else if disableTLS {
  314. err = server.ListenAndServe()
  315. } else {
  316. log.Fatal("the --acme-hostnames, --cert and --key, or --disable-tls option is required")
  317. }
  318. if err != nil {
  319. log.Fatal(err)
  320. }
  321. }