Files
nps/bridge/bridge.go
T

242 lines
5.0 KiB
Go
Executable File

package bridge
import (
"errors"
"github.com/cnlh/easyProxy/utils"
"log"
"net"
"strconv"
"sync"
"time"
)
type list struct {
connList chan *utils.Conn
}
func (l *list) Add(c *utils.Conn) {
l.connList <- c
}
func (l *list) Pop() *utils.Conn {
return <-l.connList
}
func (l *list) Len() int {
return len(l.connList)
}
func newList() *list {
l := new(list)
l.connList = make(chan *utils.Conn, 1000)
return l
}
type Tunnel struct {
TunnelPort int //通信隧道端口
listener *net.TCPListener //server端监听
SignalList map[int]*list //通信
TunnelList map[int]*list //隧道
RunList map[int]interface{} //运行中的任务
lock sync.Mutex
tunnelLock sync.Mutex
}
func NewTunnel(tunnelPort int, runList map[int]interface{}) *Tunnel {
t := new(Tunnel)
t.TunnelPort = tunnelPort
t.SignalList = make(map[int]*list)
t.TunnelList = make(map[int]*list)
t.RunList = runList
return t
}
func (s *Tunnel) StartTunnel() error {
var err error
s.listener, err = net.ListenTCP("tcp", &net.TCPAddr{net.ParseIP("0.0.0.0"), s.TunnelPort, ""})
if err != nil {
return err
}
go s.tunnelProcess()
return nil
}
//tcp server
func (s *Tunnel) tunnelProcess() error {
var err error
for {
conn, err := s.listener.Accept()
if err != nil {
log.Println(err)
continue
}
go s.cliProcess(utils.NewConn(conn))
}
return err
}
//验证失败,返回错误验证flag,并且关闭连接
func (s *Tunnel) verifyError(c *utils.Conn) {
c.Conn.Write([]byte(utils.VERIFY_EER))
c.Conn.Close()
}
func (s *Tunnel) cliProcess(c *utils.Conn) error {
c.Conn.(*net.TCPConn).SetReadDeadline(time.Now().Add(time.Duration(5) * time.Second))
vval := make([]byte, 32)
if _, err := c.Conn.Read(vval); err != nil {
log.Println("客户端读超时。客户端地址为::", c.Conn.RemoteAddr())
c.Conn.Close()
return err
}
id, err := utils.GetCsvDb().GetIdByVerifyKey(string(vval),c.Conn.RemoteAddr().String())
if err != nil {
log.Println("当前客户端连接校验错误,关闭此客户端:", c.Conn.RemoteAddr())
s.verifyError(c)
return errors.New("验证错误")
}
c.Conn.(*net.TCPConn).SetReadDeadline(time.Time{})
//做一个判断 添加到对应的channel里面以供使用
if flag, err := c.ReadFlag(); err != nil {
return err
} else {
return s.typeDeal(flag, c, id)
}
}
//tcp连接类型区分
func (s *Tunnel) typeDeal(typeVal string, c *utils.Conn, id int) error {
switch typeVal {
case utils.WORK_MAIN:
log.Println("客户端连接成功", c.Conn.RemoteAddr())
s.addList(s.SignalList, c, id)
case utils.WORK_CHAN:
s.addList(s.TunnelList, c, id)
default:
return errors.New("无法识别")
}
c.SetAlive()
return nil
}
//加到对应的list中
func (s *Tunnel) addList(m map[int]*list, c *utils.Conn, id int) {
s.lock.Lock()
if v, ok := m[id]; ok {
v.Add(c)
} else {
l := newList()
l.Add(c)
m[id] = l
}
s.lock.Unlock()
}
//新建隧道
func (s *Tunnel) newChan(id int) error {
var connPass *utils.Conn
var err error
retry:
if connPass, err = s.waitAndPop(s.SignalList, id); err != nil {
return err
}
if _, err = connPass.Conn.Write([]byte("chan")); err != nil {
goto retry
}
s.SignalList[id].Add(connPass)
return nil
}
//得到一个tcp隧道
//TODO 超时问题 锁机制问题 对单个客户端加锁
func (s *Tunnel) GetTunnel(id int, en, de int, crypt, mux bool) (c *utils.Conn, err error) {
retry:
if c, err = s.waitAndPop(s.TunnelList, id); err != nil {
return
}
if _, err = c.WriteTest(); err != nil {
c.Close()
goto retry
}
c.WriteConnInfo(en, de, crypt, mux)
return
}
//得到一个通信通道
func (s *Tunnel) GetSignal(id int) (err error, conn *utils.Conn) {
if v, ok := s.SignalList[id]; !ok || v.Len() == 0 {
err = errors.New("客户端未连接")
return
}
conn = s.SignalList[id].Pop()
return
}
//重回slice 复用
func (s *Tunnel) ReturnSignal(conn *utils.Conn, id int) {
if v, ok := s.SignalList[id]; ok {
v.Add(conn)
}
}
//重回slice 复用
func (s *Tunnel) ReturnTunnel(conn *utils.Conn, id int) {
if v, ok := s.TunnelList[id]; ok {
utils.FlushConn(conn.Conn)
v.Add(conn)
}
}
//删除通信通道
func (s *Tunnel) DelClientSignal(id int) {
s.delClient(id, s.SignalList)
}
//删除隧道
func (s *Tunnel) DelClientTunnel(id int) {
s.delClient(id, s.TunnelList)
}
func (s *Tunnel) delClient(id int, l map[int]*list) {
if t := l[id]; t != nil {
for {
if t.Len() <= 0 {
break
}
t.Pop().Close()
}
delete(l, id)
}
}
//等待
func (s *Tunnel) waitAndPop(m map[int]*list, id int) (c *utils.Conn, err error) {
ticker := time.NewTicker(time.Millisecond * 100)
stop := time.After(time.Second * 3)
for {
select {
case <-ticker.C:
s.lock.Lock()
if v, ok := m[id]; ok && v.Len() > 0 {
c = v.Pop()
ticker.Stop()
s.lock.Unlock()
return
}
s.lock.Unlock()
case <-stop:
err = errors.New("client id: " + strconv.Itoa(id) + ",err: get client conn timeout")
return
}
}
return
}
func (s *Tunnel) verify(id int) bool {
for k := range s.RunList {
if k == id {
return true
}
}
return false
}