frp/client/control.go

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// Copyright 2017 fatedier, fatedier@gmail.com
//
// Licensed under the Apache License, Version 2.0 (the "License");
// you may not use this file except in compliance with the License.
// You may obtain a copy of the License at
//
// http://www.apache.org/licenses/LICENSE-2.0
//
// Unless required by applicable law or agreed to in writing, software
// distributed under the License is distributed on an "AS IS" BASIS,
// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
// See the License for the specific language governing permissions and
// limitations under the License.
package client
import (
"fmt"
"io"
"runtime"
"sync"
"time"
"github.com/fatedier/frp/models/config"
"github.com/fatedier/frp/models/msg"
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"github.com/fatedier/frp/utils/crypto"
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"github.com/fatedier/frp/utils/log"
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frpNet "github.com/fatedier/frp/utils/net"
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"github.com/fatedier/frp/utils/shutdown"
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"github.com/fatedier/frp/utils/util"
"github.com/fatedier/frp/utils/version"
"github.com/xtaci/smux"
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)
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const (
connReadTimeout time.Duration = 10 * time.Second
)
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type Control struct {
// frpc service
svr *Service
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// login message to server, only used
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loginMsg *msg.Login
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pm *ProxyManager
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// control connection
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conn frpNet.Conn
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// tcp stream multiplexing, if enabled
session *smux.Session
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// put a message in this channel to send it over control connection to server
sendCh chan (msg.Message)
// read from this channel to get the next message sent by server
readCh chan (msg.Message)
// run id got from server
runId string
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// if we call close() in control, do not reconnect to server
exit bool
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// goroutines can block by reading from this channel, it will be closed only in reader() when control connection is closed
closedCh chan int
// last time got the Pong message
lastPong time.Time
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readerShutdown *shutdown.Shutdown
writerShutdown *shutdown.Shutdown
msgHandlerShutdown *shutdown.Shutdown
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mu sync.RWMutex
log.Logger
}
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func NewControl(svr *Service, pxyCfgs map[string]config.ProxyConf, visitorCfgs map[string]config.ProxyConf) *Control {
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loginMsg := &msg.Login{
Arch: runtime.GOARCH,
Os: runtime.GOOS,
PoolCount: config.ClientCommonCfg.PoolCount,
User: config.ClientCommonCfg.User,
Version: version.Full(),
}
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ctl := &Control{
svr: svr,
loginMsg: loginMsg,
sendCh: make(chan msg.Message, 10),
readCh: make(chan msg.Message, 10),
closedCh: make(chan int),
readerShutdown: shutdown.New(),
writerShutdown: shutdown.New(),
msgHandlerShutdown: shutdown.New(),
Logger: log.NewPrefixLogger(""),
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}
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ctl.pm = NewProxyManager(ctl, ctl.sendCh, "")
ctl.pm.Reload(pxyCfgs, visitorCfgs)
return ctl
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}
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func (ctl *Control) Run() (err error) {
for {
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err = ctl.login()
if err != nil {
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ctl.Warn("login to server failed: %v", err)
// if login_fail_exit is true, just exit this program
// otherwise sleep a while and continues relogin to server
if config.ClientCommonCfg.LoginFailExit {
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return
} else {
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time.Sleep(10 * time.Second)
}
} else {
break
}
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}
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go ctl.worker()
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// start all local visitors and send NewProxy message for all configured proxies
ctl.pm.Reset(ctl.sendCh, ctl.runId)
ctl.pm.CheckAndStartProxy()
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return nil
}
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func (ctl *Control) HandleReqWorkConn(inMsg *msg.ReqWorkConn) {
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workConn, err := ctl.connectServer()
if err != nil {
return
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}
m := &msg.NewWorkConn{
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RunId: ctl.runId,
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}
if err = msg.WriteMsg(workConn, m); err != nil {
ctl.Warn("work connection write to server error: %v", err)
workConn.Close()
return
}
var startMsg msg.StartWorkConn
if err = msg.ReadMsgInto(workConn, &startMsg); err != nil {
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ctl.Error("work connection closed, %v", err)
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workConn.Close()
return
}
workConn.AddLogPrefix(startMsg.ProxyName)
// dispatch this work connection to related proxy
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ctl.pm.HandleWorkConn(startMsg.ProxyName, workConn)
}
func (ctl *Control) HandleNewProxyResp(inMsg *msg.NewProxyResp) {
// Server will return NewProxyResp message to each NewProxy message.
// Start a new proxy handler if no error got
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err := ctl.pm.StartProxy(inMsg.ProxyName, inMsg.RemoteAddr, inMsg.Error)
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if err != nil {
ctl.Warn("[%s] start error: %v", inMsg.ProxyName, err)
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} else {
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ctl.Info("[%s] start proxy success", inMsg.ProxyName)
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}
}
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func (ctl *Control) Close() error {
ctl.mu.Lock()
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defer ctl.mu.Unlock()
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ctl.exit = true
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ctl.pm.CloseProxies()
return nil
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}
// login send a login message to server and wait for a loginResp message.
func (ctl *Control) login() (err error) {
if ctl.conn != nil {
ctl.conn.Close()
}
if ctl.session != nil {
ctl.session.Close()
}
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conn, err := frpNet.ConnectServerByHttpProxy(config.ClientCommonCfg.HttpProxy, config.ClientCommonCfg.Protocol,
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fmt.Sprintf("%s:%d", config.ClientCommonCfg.ServerAddr, config.ClientCommonCfg.ServerPort))
if err != nil {
return err
}
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defer func() {
if err != nil {
conn.Close()
}
}()
if config.ClientCommonCfg.TcpMux {
session, errRet := smux.Client(conn, nil)
if errRet != nil {
return errRet
}
stream, errRet := session.OpenStream()
if errRet != nil {
session.Close()
return errRet
}
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conn = frpNet.WrapConn(stream)
ctl.session = session
}
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now := time.Now().Unix()
ctl.loginMsg.PrivilegeKey = util.GetAuthKey(config.ClientCommonCfg.PrivilegeToken, now)
ctl.loginMsg.Timestamp = now
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ctl.loginMsg.RunId = ctl.runId
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if err = msg.WriteMsg(conn, ctl.loginMsg); err != nil {
return err
}
var loginRespMsg msg.LoginResp
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conn.SetReadDeadline(time.Now().Add(connReadTimeout))
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if err = msg.ReadMsgInto(conn, &loginRespMsg); err != nil {
return err
}
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conn.SetReadDeadline(time.Time{})
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if loginRespMsg.Error != "" {
err = fmt.Errorf("%s", loginRespMsg.Error)
ctl.Error("%s", loginRespMsg.Error)
return err
}
ctl.conn = conn
// update runId got from server
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ctl.runId = loginRespMsg.RunId
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config.ClientCommonCfg.ServerUdpPort = loginRespMsg.ServerUdpPort
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ctl.ClearLogPrefix()
ctl.AddLogPrefix(loginRespMsg.RunId)
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ctl.Info("login to server success, get run id [%s], server udp port [%d]", loginRespMsg.RunId, loginRespMsg.ServerUdpPort)
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return nil
}
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func (ctl *Control) connectServer() (conn frpNet.Conn, err error) {
if config.ClientCommonCfg.TcpMux {
stream, errRet := ctl.session.OpenStream()
if errRet != nil {
err = errRet
ctl.Warn("start new connection to server error: %v", err)
return
}
conn = frpNet.WrapConn(stream)
} else {
conn, err = frpNet.ConnectServerByHttpProxy(config.ClientCommonCfg.HttpProxy, config.ClientCommonCfg.Protocol,
fmt.Sprintf("%s:%d", config.ClientCommonCfg.ServerAddr, config.ClientCommonCfg.ServerPort))
if err != nil {
ctl.Warn("start new connection to server error: %v", err)
return
}
}
return
}
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// reader read all messages from frps and send to readCh
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func (ctl *Control) reader() {
defer func() {
if err := recover(); err != nil {
ctl.Error("panic error: %v", err)
}
}()
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defer ctl.readerShutdown.Done()
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defer close(ctl.closedCh)
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encReader := crypto.NewReader(ctl.conn, []byte(config.ClientCommonCfg.PrivilegeToken))
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for {
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if m, err := msg.ReadMsg(encReader); err != nil {
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if err == io.EOF {
ctl.Debug("read from control connection EOF")
return
} else {
ctl.Warn("read error: %v", err)
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return
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}
} else {
ctl.readCh <- m
}
}
}
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// writer writes messages got from sendCh to frps
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func (ctl *Control) writer() {
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defer ctl.writerShutdown.Done()
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encWriter, err := crypto.NewWriter(ctl.conn, []byte(config.ClientCommonCfg.PrivilegeToken))
if err != nil {
ctl.conn.Error("crypto new writer error: %v", err)
ctl.conn.Close()
return
}
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for {
if m, ok := <-ctl.sendCh; !ok {
ctl.Info("control writer is closing")
return
} else {
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if err := msg.WriteMsg(encWriter, m); err != nil {
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ctl.Warn("write message to control connection error: %v", err)
return
}
}
}
}
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// msgHandler handles all channel events and do corresponding operations.
func (ctl *Control) msgHandler() {
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defer func() {
if err := recover(); err != nil {
ctl.Error("panic error: %v", err)
}
}()
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defer ctl.msgHandlerShutdown.Done()
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hbSend := time.NewTicker(time.Duration(config.ClientCommonCfg.HeartBeatInterval) * time.Second)
defer hbSend.Stop()
hbCheck := time.NewTicker(time.Second)
defer hbCheck.Stop()
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ctl.lastPong = time.Now()
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for {
select {
case <-hbSend.C:
// send heartbeat to server
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ctl.Debug("send heartbeat to server")
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ctl.sendCh <- &msg.Ping{}
case <-hbCheck.C:
if time.Since(ctl.lastPong) > time.Duration(config.ClientCommonCfg.HeartBeatTimeout)*time.Second {
ctl.Warn("heartbeat timeout")
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// let reader() stop
ctl.conn.Close()
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return
}
case rawMsg, ok := <-ctl.readCh:
if !ok {
return
}
switch m := rawMsg.(type) {
case *msg.ReqWorkConn:
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go ctl.HandleReqWorkConn(m)
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case *msg.NewProxyResp:
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ctl.HandleNewProxyResp(m)
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case *msg.Pong:
ctl.lastPong = time.Now()
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ctl.Debug("receive heartbeat from server")
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}
}
}
}
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// controler keep watching closedCh, start a new connection if previous control connection is closed.
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// If controler is notified by closedCh, reader and writer and handler will exit, then recall these functions.
func (ctl *Control) worker() {
go ctl.msgHandler()
go ctl.writer()
go ctl.reader()
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var err error
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maxDelayTime := 20 * time.Second
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delayTime := time.Second
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checkInterval := 10 * time.Second
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checkProxyTicker := time.NewTicker(checkInterval)
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for {
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select {
case <-checkProxyTicker.C:
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// every 10 seconds, check which proxy registered failed and reregister it to server
ctl.pm.CheckAndStartProxy()
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case _, ok := <-ctl.closedCh:
// we won't get any variable from this channel
if !ok {
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// close related channels and wait until other goroutines done
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close(ctl.readCh)
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ctl.readerShutdown.WaitDone()
ctl.msgHandlerShutdown.WaitDone()
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close(ctl.sendCh)
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ctl.writerShutdown.WaitDone()
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ctl.pm.CloseProxies()
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// if ctl.exit is true, just exit
ctl.mu.RLock()
exit := ctl.exit
ctl.mu.RUnlock()
if exit {
return
}
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// loop util reconnecting to server success
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for {
ctl.Info("try to reconnect to server...")
err = ctl.login()
if err != nil {
ctl.Warn("reconnect to server error: %v", err)
time.Sleep(delayTime)
delayTime = delayTime * 2
if delayTime > maxDelayTime {
delayTime = maxDelayTime
}
continue
}
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// reconnect success, init delayTime
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delayTime = time.Second
break
}
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// init related channels and variables
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ctl.sendCh = make(chan msg.Message, 10)
ctl.readCh = make(chan msg.Message, 10)
ctl.closedCh = make(chan int)
ctl.readerShutdown = shutdown.New()
ctl.writerShutdown = shutdown.New()
ctl.msgHandlerShutdown = shutdown.New()
ctl.pm.Reset(ctl.sendCh, ctl.runId)
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// previous work goroutines should be closed and start them here
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go ctl.msgHandler()
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go ctl.writer()
go ctl.reader()
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// start all configured proxies
ctl.pm.CheckAndStartProxy()
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checkProxyTicker.Stop()
checkProxyTicker = time.NewTicker(checkInterval)
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}
}
}
}
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func (ctl *Control) reloadConf(pxyCfgs map[string]config.ProxyConf, visitorCfgs map[string]config.ProxyConf) error {
err := ctl.pm.Reload(pxyCfgs, visitorCfgs)
return err
}