client.go 7.4 KB

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  1. package client
  2. import (
  3. "bufio"
  4. "bytes"
  5. "net"
  6. "net/http"
  7. "strconv"
  8. "time"
  9. "github.com/astaxie/beego/logs"
  10. "github.com/xtaci/kcp-go"
  11. "github.com/cnlh/nps/lib/common"
  12. "github.com/cnlh/nps/lib/config"
  13. "github.com/cnlh/nps/lib/conn"
  14. "github.com/cnlh/nps/lib/crypt"
  15. "github.com/cnlh/nps/lib/mux"
  16. )
  17. type TRPClient struct {
  18. svrAddr string
  19. bridgeConnType string
  20. proxyUrl string
  21. vKey string
  22. p2pAddr map[string]string
  23. tunnel *mux.Mux
  24. signal *conn.Conn
  25. ticker *time.Ticker
  26. cnf *config.Config
  27. }
  28. //new client
  29. func NewRPClient(svraddr string, vKey string, bridgeConnType string, proxyUrl string, cnf *config.Config) *TRPClient {
  30. return &TRPClient{
  31. svrAddr: svraddr,
  32. p2pAddr: make(map[string]string, 0),
  33. vKey: vKey,
  34. bridgeConnType: bridgeConnType,
  35. proxyUrl: proxyUrl,
  36. cnf: cnf,
  37. }
  38. }
  39. //start
  40. func (s *TRPClient) Start() {
  41. retry:
  42. c, err := NewConn(s.bridgeConnType, s.vKey, s.svrAddr, common.WORK_MAIN, s.proxyUrl)
  43. if err != nil {
  44. logs.Error("The connection server failed and will be reconnected in five seconds, error", err.Error())
  45. time.Sleep(time.Second * 5)
  46. goto retry
  47. }
  48. if c == nil {
  49. logs.Error("Error data from server, and will be reconnected in five seconds")
  50. time.Sleep(time.Second * 5)
  51. goto retry
  52. }
  53. logs.Info("Successful connection with server %s", s.svrAddr)
  54. //monitor the connection
  55. go s.ping()
  56. s.signal = c
  57. //start a channel connection
  58. go s.newChan()
  59. //start health check if the it's open
  60. if s.cnf != nil && len(s.cnf.Healths) > 0 {
  61. go heathCheck(s.cnf.Healths, s.signal)
  62. }
  63. //msg connection, eg udp
  64. s.handleMain()
  65. }
  66. //handle main connection
  67. func (s *TRPClient) handleMain() {
  68. for {
  69. flags, err := s.signal.ReadFlag()
  70. if err != nil {
  71. logs.Error("Accept server data error %s, end this service", err.Error())
  72. break
  73. }
  74. switch flags {
  75. case common.NEW_UDP_CONN:
  76. //read server udp addr and password
  77. if lAddr, err := s.signal.GetShortLenContent(); err != nil {
  78. logs.Warn(err)
  79. return
  80. } else if pwd, err := s.signal.GetShortLenContent(); err == nil {
  81. var localAddr string
  82. //The local port remains unchanged for a certain period of time
  83. if v, ok := s.p2pAddr[crypt.Md5(string(pwd)+strconv.Itoa(int(time.Now().Unix()/100)))]; !ok {
  84. tmpConn, err := common.GetLocalUdpAddr()
  85. if err != nil {
  86. logs.Error(err)
  87. return
  88. }
  89. localAddr = tmpConn.LocalAddr().String()
  90. } else {
  91. localAddr = v
  92. }
  93. go s.newUdpConn(localAddr, string(lAddr), string(pwd))
  94. }
  95. }
  96. }
  97. s.Close()
  98. }
  99. func (s *TRPClient) newUdpConn(localAddr, rAddr string, md5Password string) {
  100. var localConn net.PacketConn
  101. var err error
  102. var remoteAddress string
  103. if remoteAddress, localConn, err = handleP2PUdp(localAddr, rAddr, md5Password, common.WORK_P2P_PROVIDER); err != nil {
  104. logs.Error(err)
  105. return
  106. }
  107. l, err := kcp.ServeConn(nil, 150, 3, localConn)
  108. if err != nil {
  109. logs.Error(err)
  110. return
  111. }
  112. logs.Trace("start local p2p udp listen, local address", localConn.LocalAddr().String())
  113. for {
  114. udpTunnel, err := l.AcceptKCP()
  115. if err != nil {
  116. logs.Error(err)
  117. l.Close()
  118. return
  119. }
  120. if udpTunnel.RemoteAddr().String() == string(remoteAddress) {
  121. conn.SetUdpSession(udpTunnel)
  122. logs.Trace("successful connection with client ,address %s", udpTunnel.RemoteAddr().String())
  123. //read link info from remote
  124. conn.Accept(mux.NewMux(udpTunnel, s.bridgeConnType), func(c net.Conn) {
  125. go s.handleChan(c)
  126. })
  127. break
  128. }
  129. }
  130. }
  131. //mux tunnel
  132. func (s *TRPClient) newChan() {
  133. tunnel, err := NewConn(s.bridgeConnType, s.vKey, s.svrAddr, common.WORK_CHAN, s.proxyUrl)
  134. if err != nil {
  135. logs.Error("connect to ", s.svrAddr, "error:", err)
  136. return
  137. }
  138. s.tunnel = mux.NewMux(tunnel.Conn, s.bridgeConnType)
  139. for {
  140. src, err := s.tunnel.Accept()
  141. if err != nil {
  142. logs.Warn(err)
  143. s.Close()
  144. break
  145. }
  146. go s.handleChan(src)
  147. }
  148. }
  149. func (s *TRPClient) handleChan(src net.Conn) {
  150. lk, err := conn.NewConn(src).GetLinkInfo()
  151. if err != nil || lk == nil {
  152. src.Close()
  153. logs.Error("get connection info from server error ", err)
  154. return
  155. }
  156. //host for target processing
  157. lk.Host = common.FormatAddress(lk.Host)
  158. //if Conn type is http, read the request and log
  159. if lk.ConnType == "http" {
  160. if targetConn, err := net.DialTimeout(common.CONN_TCP, lk.Host, lk.Option.Timeout); err != nil {
  161. logs.Warn("connect to %s error %s", lk.Host, err.Error())
  162. src.Close()
  163. } else {
  164. srcConn := conn.GetConn(src, lk.Crypt, lk.Compress, nil, false)
  165. go func() {
  166. common.CopyBuffer(srcConn, targetConn)
  167. srcConn.Close()
  168. targetConn.Close()
  169. }()
  170. for {
  171. if r, err := http.ReadRequest(bufio.NewReader(srcConn)); err != nil {
  172. srcConn.Close()
  173. targetConn.Close()
  174. break
  175. } else {
  176. logs.Trace("http request, method %s, host %s, url %s, remote address %s", r.Method, r.Host, r.URL.Path, r.RemoteAddr)
  177. r.Write(targetConn)
  178. }
  179. }
  180. }
  181. return
  182. }
  183. if lk.ConnType == "udp5" {
  184. logs.Trace("new %s connection with the goal of %s, remote address:%s", lk.ConnType, lk.Host, lk.RemoteAddr)
  185. s.handleUdp(src)
  186. }
  187. //connect to target if conn type is tcp or udp
  188. if targetConn, err := net.DialTimeout(lk.ConnType, lk.Host, lk.Option.Timeout); err != nil {
  189. logs.Warn("connect to %s error %s", lk.Host, err.Error())
  190. src.Close()
  191. } else {
  192. logs.Trace("new %s connection with the goal of %s, remote address:%s", lk.ConnType, lk.Host, lk.RemoteAddr)
  193. conn.CopyWaitGroup(src, targetConn, lk.Crypt, lk.Compress, nil, nil, false, nil)
  194. }
  195. }
  196. func (s *TRPClient) handleUdp(serverConn net.Conn) {
  197. // bind a local udp port
  198. local, err := net.ListenUDP("udp", nil)
  199. defer local.Close()
  200. defer serverConn.Close()
  201. if err != nil {
  202. logs.Error("bind local udp port error ", err.Error())
  203. return
  204. }
  205. go func() {
  206. defer serverConn.Close()
  207. b := common.BufPoolUdp.Get().([]byte)
  208. defer common.BufPoolUdp.Put(b)
  209. for {
  210. n, raddr, err := local.ReadFrom(b)
  211. if err != nil {
  212. logs.Error("read data from remote server error", err.Error())
  213. }
  214. buf := bytes.Buffer{}
  215. dgram := common.NewUDPDatagram(common.NewUDPHeader(0, 0, common.ToSocksAddr(raddr)), b[:n])
  216. dgram.Write(&buf)
  217. b, err := conn.GetLenBytes(buf.Bytes())
  218. if err != nil {
  219. logs.Warn("get len bytes error", err.Error())
  220. continue
  221. }
  222. if _, err := serverConn.Write(b); err != nil {
  223. logs.Error("write data to remote error", err.Error())
  224. return
  225. }
  226. }
  227. }()
  228. b := common.BufPoolUdp.Get().([]byte)
  229. defer common.BufPoolUdp.Put(b)
  230. for {
  231. n, err := serverConn.Read(b)
  232. if err != nil {
  233. logs.Error("read udp data from server error ", err.Error())
  234. return
  235. }
  236. udpData, err := common.ReadUDPDatagram(bytes.NewReader(b[:n]))
  237. if err != nil {
  238. logs.Error("unpack data error", err.Error())
  239. return
  240. }
  241. raddr, err := net.ResolveUDPAddr("udp", udpData.Header.Addr.String())
  242. if err != nil {
  243. logs.Error("build remote addr err", err.Error())
  244. continue // drop silently
  245. }
  246. _, err = local.WriteTo(udpData.Data, raddr)
  247. if err != nil {
  248. logs.Error("write data to remote ", raddr.String(), "error", err.Error())
  249. return
  250. }
  251. }
  252. }
  253. // Whether the monitor channel is closed
  254. func (s *TRPClient) ping() {
  255. s.ticker = time.NewTicker(time.Second * 5)
  256. loop:
  257. for {
  258. select {
  259. case <-s.ticker.C:
  260. if s.tunnel != nil && s.tunnel.IsClose {
  261. s.Close()
  262. break loop
  263. }
  264. }
  265. }
  266. }
  267. func (s *TRPClient) Close() {
  268. if s.tunnel != nil {
  269. s.tunnel.Close()
  270. }
  271. if s.signal != nil {
  272. s.signal.Close()
  273. }
  274. if s.ticker != nil {
  275. s.ticker.Stop()
  276. }
  277. }