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server.go
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server.go
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package main
import (
"crypto/tls"
"encoding/json"
"flag"
"fmt"
"log"
"net"
"os"
"os/signal"
"strconv"
"strings"
"syscall"
"time"
"github.com/vzex/dog-tunnel/admin"
"github.com/vzex/dog-tunnel/auth"
"github.com/vzex/dog-tunnel/common"
)
var listenAddr = flag.String("addr", "0.0.0.0:8000", "server addr")
var listenAddrUDP = flag.String("addrudp", "0.0.0.0:8018", "udp server addr")
var bUseSSL = flag.Bool("ssl", false, "use ssl")
var bUseHttps = flag.Bool("https", false, "use https")
var certFile = flag.String("cert", "", "cert file")
var keyFile = flag.String("key", "", "key file")
var adminAddr = flag.String("admin", "", "admin addr")
var bShowVersion = flag.Bool("version", false, "show version")
var db_user = flag.String("dbuser", "", "db user")
var db_pass = flag.String("dbpass", "", "db password")
var db_host = flag.String("dbhost", "", "db host")
var bUseDB = false
func handleClient(conn net.Conn) {
common.Conn2ClientInfo[conn] = &common.ClientInfo{Conn: conn, ClientMap: make(map[net.Conn]*common.Session), Id2Session: make(map[string]*common.Session), IsServer: false, Quit: make(chan bool), ResponseTime: time.Now().Unix()}
log.Println("client linked success", conn.RemoteAddr().String())
common.Conn2ClientInfo[conn].Loop()
common.Read(conn, handleResponse)
client, bHave := common.Conn2ClientInfo[conn]
if bHave {
close(client.Quit)
if client.IsServer {
for conn, session := range client.ClientMap {
conn.Close()
common.RmId(client.ServerName, session.Id)
}
delete(common.ServerName2Conn, client.ServerName)
log.Println("unregister service Name", client.ServerName)
if bUseDB {
user, _ := auth.GetUser(client.UserName)
if user != nil {
user.OnLogout()
}
}
} else {
common.GetServerInfoByConn(conn, func(server *common.ClientInfo) {
id := server.DelClient(conn)
log.Println("send quit")
common.Write(server.Conn, id, "clientquit", "")
}, func() {})
}
delete(common.Conn2ClientInfo, conn)
}
conn.Close()
log.Println("client disconnected", conn.RemoteAddr().String())
}
func udphandleClient(conn *net.UDPConn) {
for {
data := make([]byte, 1024)
_, remoteAddr, err := conn.ReadFromUDP(data)
if err != nil {
log.Println("failed to read UDP msg because of ", err.Error())
break
}
conn.WriteToUDP([]byte(remoteAddr.String()), remoteAddr)
}
}
func handleResponse(conn net.Conn, id string, action string, content string) {
//log.Println("got", id, action, content)
common.GetClientInfoByConn(conn, func(client *common.ClientInfo) {
client.ResponseTime = time.Now().Unix()
}, func() {
})
switch action {
case "init":
clientInfoStr := content
var clientInfo common.ClientSetting
err := json.Unmarshal([]byte(clientInfoStr), &clientInfo)
if err != nil {
log.Println("error decode clientinfo, kick out", conn.RemoteAddr().String())
common.Write(conn, "0", "showandquit", "server decode clientInfo error")
return
}
if common.Version != clientInfo.Version {
s_version := fmt.Sprintf("%.2f", common.Version)
c_version := fmt.Sprintf("%.2f", clientInfo.Version)
log.Println("version not eq", conn.RemoteAddr().String(), s_version, c_version)
common.Write(conn, "0", "showandquit", "client version:"+c_version+" not eq with server:"+s_version)
return
}
ServerName := clientInfo.Name
if clientInfo.ClientType == "reg" {
var user *auth.User
if bUseDB {
if clientInfo.AccessKey == "" {
user, _ = auth.GetUser("test")
} else {
user, _ = auth.GetUserByKey(clientInfo.AccessKey)
}
} else {
user = &auth.User{UserType: auth.UserType_Admin}
}
//fmt.Printf("%+v\n", user)
if user == nil {
common.Write(conn, "0", "showandquit", "invalid user accessKey:"+clientInfo.AccessKey+"!!!")
return
}
if !user.CheckOnlineServiceNum() {
common.Write(conn, "0", "showandquit", "online service num cannot overstep "+strconv.Itoa(user.MaxOnlineServerNum))
return
}
if !user.CheckIpLimit(conn.RemoteAddr().(*net.TCPAddr).IP.String()) {
common.Write(conn, "0", "showandquit", "ip limit service num cannot overstep "+strconv.Itoa(user.MaxSameIPServers))
return
}
common.GetClientInfoByName(ServerName, func(server *common.ClientInfo) {
common.Write(conn, "0", "showandretry", "already have the ServerName!")
}, func() {
common.ServerName2Conn[ServerName] = conn
common.GetClientInfoByConn(conn, func(info *common.ClientInfo) {
info.ServerName = ServerName
info.IsServer = true
info.Id2MakeSession = make(map[string]*common.UDPMakeSession)
info.UserName = user.UserName
info.ClientKey = clientInfo.ClientKey
}, func() {})
log.Println("client reg service success", conn.RemoteAddr().String(), user.UserName, ServerName)
common.Write(conn, "0", "show", "register service ok, user:"+user.UserName)
})
} else if clientInfo.ClientType == "link" {
if clientInfo.Mode < 0 || clientInfo.Mode > 2 {
clientInfo.Mode = 0
}
ServerName := clientInfo.Name
bAuth := true
common.GetClientInfoByName(ServerName, func(info *common.ClientInfo) {
var user *auth.User
if bUseDB {
user, _ = auth.GetUser(info.UserName)
} else {
user = &auth.User{UserType: auth.UserType_Admin}
}
//fmt.Printf("%+v\n", user)
if user == nil {
common.Write(conn, "0", "showandquit", "invalid user:"+info.UserName+"!!!")
bAuth = false
return
}
if info.ClientKey != clientInfo.ClientKey {
common.Write(conn, "0", "showandquit", "clientkey invalid!!!")
bAuth = false
return
}
if !user.CheckSessionNum(len(info.ClientMap)) {
common.Write(conn, "0", "showandquit", "session numcannot overstep "+strconv.Itoa(len(info.ClientMap)))
bAuth = false
return
}
if !user.CheckPipeNum(clientInfo.PipeNum) {
common.Write(conn, "0", "showandquit", "pipenum cannot overstep "+strconv.Itoa(user.MaxPipeNum))
bAuth = false
return
}
}, func() {
common.Write(conn, "0", "showandquit", "serverName invalid!!!")
bAuth = false
})
if !bAuth {
return
}
common.GetClientInfoByConn(conn, func(client *common.ClientInfo) {
client.ServerName = ServerName
}, func() {
})
common.GetClientInfoByName(ServerName, func(server *common.ClientInfo) {
log.Println("client link service success", conn.RemoteAddr().String(), ServerName)
server.AddClient(conn, clientInfo)
}, func() {
common.Write(conn, "0", "showandquit", "donnt have this service name")
})
}
case "tunnel_error":
common.GetServerInfoByConn(conn, func(server *common.ClientInfo) {
log.Println("<<=====tunnel_error", server.ServerName, conn.RemoteAddr().String())
session, bHave := server.Id2Session[id]
if bHave {
session.Status = "fail"
common.Write(session.ClientA, "0", "showandquit", content)
server.DelClient(session.ClientA)
}
}, func() {
})
case "makeholefail":
common.GetServerInfoByConn(conn, func(server *common.ClientInfo) {
udpsession, bHave := server.Id2MakeSession[id]
if bHave {
log.Println("<<=====make hole fail", conn.RemoteAddr().String(), udpsession.ServerName, udpsession.SessionId, id)
sessionId := udpsession.SessionId
session, _bHave := server.Id2Session[sessionId]
if _bHave {
session.Status = "fail"
session.MakeHoleResponseN++
session.MakeHoleHasFail = true
if session.MakeHoleResponseN == session.Setting.PipeNum {
if session.Method == "udp" {
session.RestartSession(server.ServerName)
} else if session.Method == "restart" {
if session.Setting.Mode == 0 {
tmp := session.ClientA
session.ClientA = session.ClientB
session.ClientB = tmp
session.StartCSMode()
} else {
server.DelClient(session.ClientB)
}
} else {
server.DelClient(session.ClientA)
}
}
}
udpsession.Remove(false)
}
}, func() {
})
case "makeholeok":
common.GetServerInfoByConn(conn, func(server *common.ClientInfo) {
if content == "csmode" {
session, _bHave := server.Id2Session[id]
if _bHave {
log.Println("<<=====make hole ok", conn.RemoteAddr().String(), server.ServerName, session.Id)
session.Status = "ok"
session.MakeHoleResponseN++
}
}
udpsession, bHave := server.Id2MakeSession[id]
if bHave {
log.Println("<<=====make hole ok", conn.RemoteAddr().String(), udpsession.ServerName, udpsession.SessionId, id)
sessionId := udpsession.SessionId
session, _bHave := server.Id2Session[sessionId]
if _bHave {
session.MakeHoleResponseN++
if session.MakeHoleResponseN == session.Setting.PipeNum {
if !session.MakeHoleHasFail {
session.Status = "ok"
}
}
}
udpsession.Remove(false)
}
}, func() {
})
case "report_addrlist":
common.GetServerInfoByConn(conn, func(server *common.ClientInfo) {
udpsession, bHave := server.Id2MakeSession[id]
//log.Println("test", udpsession, id, server.ServerName)
if bHave {
log.Println("<<===report addr list ok", conn.RemoteAddr().String(), udpsession.ServerName, udpsession.Id)
udpsession.BeginMakeHole(1, content)
}
}, func() {
})
case "success_bust_a":
common.GetServerInfoByConn(conn, func(server *common.ClientInfo) {
udpsession, bHave := server.Id2MakeSession[id]
if bHave {
log.Println("<<=====success_bust_a", conn.RemoteAddr().String(), udpsession.ServerName, udpsession.SessionId, id)
udpsession.BeginMakeHole(2, content)
}
}, func() {
})
// for c/s mode
case "tunnel_close":
common.GetServerInfoByConn(conn, func(server *common.ClientInfo) {
session := server.GetSession(conn)
if session != nil {
common.Write(session.ClientB, session.Id+"-"+id, "csmode_s_tunnel_close", content)
} else {
println("no session")
}
}, func() {
})
case "tunnel_open":
common.GetServerInfoByConn(conn, func(server *common.ClientInfo) {
session := server.GetSession(conn)
if session != nil {
common.Write(session.ClientB, session.Id+"-"+id, "csmode_s_tunnel_open", content)
} else {
println("no session")
}
}, func() {
})
case "tunnel_msg_c":
common.GetServerInfoByConn(conn, func(server *common.ClientInfo) {
var user *auth.User
if bUseDB {
user, _ = auth.GetUser(server.UserName)
} else {
user = &auth.User{UserType: auth.UserType_Admin}
}
if user == nil {
common.Write(conn, "0", "showandquit", "cannot get userinfo of this service "+server.UserName)
return
}
if !user.UpdateCSMode(len(content)) {
common.Write(conn, "0", "showandquit", "reach today's csmode data limit")
return
}
session := server.GetSession(conn)
if session != nil {
common.Write(session.ClientB, session.Id+"-"+id, "csmode_msg_c", content)
} else {
println("no session")
}
}, func() {
})
case "tunnel_msg_s":
common.GetServerInfoByConn(conn, func(server *common.ClientInfo) {
var user *auth.User
if bUseDB {
user, _ = auth.GetUser(server.UserName)
} else {
user = &auth.User{UserType: auth.UserType_Admin}
}
if user == nil {
common.Write(conn, "0", "showandquit", "cannot get userinfo of this service"+server.UserName)
return
}
if !user.UpdateCSMode(len(content)) {
common.Write(conn, "0", "show", "reach today's csmode data limit")
return
}
arr := strings.Split(id, "-")
clientId := arr[0]
session, bHave := server.Id2Session[clientId]
if bHave {
common.Write(session.ClientA, id, "csmode_msg_s", content)
} else {
println("no session")
}
}, func() {
})
case "tunnel_close_s":
common.GetServerInfoByConn(conn, func(server *common.ClientInfo) {
arr := strings.Split(id, "-")
clientId := arr[0]
session, bHave := server.Id2Session[clientId]
if bHave {
common.Write(session.ClientA, id, "csmode_c_tunnel_close", content)
} else {
println("no session")
}
}, func() {
})
}
}
var err error
var g_Master net.Listener
func main() {
flag.Parse()
if *bShowVersion {
fmt.Printf("%.2f\n", common.Version)
return
}
common.Conn2ClientInfo = make(map[net.Conn]*common.ClientInfo)
common.ServerName2Conn = make(map[string]net.Conn)
common.Conn2Admin = make(map[net.Conn]*common.AdminInfo)
listener, err := net.Listen("tcp", *listenAddr)
if err != nil {
log.Println("cannot listen addr:" + err.Error())
return
}
if *bUseSSL {
config := &tls.Config{}
config.Certificates = make([]tls.Certificate, 1)
config.Certificates[0], err = tls.LoadX509KeyPair(*certFile, *keyFile)
if err != nil {
log.Println("load key file error", err.Error())
return
}
g_Master = tls.NewListener(listener, config)
} else {
g_Master = listener
}
go func() {
for {
conn, err := g_Master.Accept()
if err != nil {
continue
}
go handleClient(conn)
}
}()
udpaddr, err := net.ResolveUDPAddr("udp", *listenAddrUDP)
if err != nil {
log.Println("Can't resolve address: ", err)
return
}
udpconn, err := net.ListenUDP("udp", udpaddr)
if err != nil {
log.Println("Error UDP listening:", err)
return
}
log.Println("listenAdd: ", *listenAddrUDP)
defer udpconn.Close()
go udphandleClient(udpconn)
if *db_host != "" {
err = auth.Init(*db_user, *db_pass, *db_host)
if err != nil {
log.Println("mysql client fail", err.Error())
return
}
defer auth.DeInit()
bUseDB = true
}
log.Println("master start success")
if *adminAddr != "" {
cert, key := "", ""
if *bUseHttps {
cert, key = *certFile, *keyFile
}
err := admin.InitAdminPort(*adminAddr, cert, key)
if err != nil {
log.Println("admin service start fail", err.Error())
return
}
log.Println("admin service start success")
}
c := make(chan os.Signal, 1)
signal.Notify(c, os.Interrupt, syscall.SIGTERM)
<-c
log.Println("received signal,shutdown")
shutdown()
}
func shutdown() {
for conn, client := range common.Conn2ClientInfo {
if !client.IsServer {
log.Println("shutdown client", client.ServerName)
common.Write(conn, "0", "showandquit", "server shutdown")
} else {
log.Println("unregister service Name", client.ServerName)
if bUseDB {
user, _ := auth.GetUser(client.UserName)
if user != nil {
user.OnLogout()
}
}
//donnot showandquit,because client_server need to reconnect
}
}
}