2023-05-28 16:50:43 +08:00
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// Copyright 2023 The frp Authors
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//
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// Licensed under the Apache License, Version 2.0 (the "License");
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// you may not use this file except in compliance with the License.
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// You may obtain a copy of the License at
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//
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// http://www.apache.org/licenses/LICENSE-2.0
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//
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// Unless required by applicable law or agreed to in writing, software
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// distributed under the License is distributed on an "AS IS" BASIS,
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// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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// See the License for the specific language governing permissions and
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// limitations under the License.
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2018-12-09 22:06:22 +08:00
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package proxy
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2018-12-07 17:05:36 +08:00
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import (
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2019-10-12 20:13:12 +08:00
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"context"
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2018-12-07 17:05:36 +08:00
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"fmt"
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2019-10-12 20:13:12 +08:00
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"net"
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2023-09-06 10:18:02 +08:00
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"strconv"
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2018-12-07 17:05:36 +08:00
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"sync"
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"sync/atomic"
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"time"
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2022-08-29 01:02:53 +08:00
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"github.com/fatedier/golib/errors"
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2018-12-09 22:06:22 +08:00
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"github.com/fatedier/frp/client/event"
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"github.com/fatedier/frp/client/health"
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v1 "github.com/fatedier/frp/pkg/config/v1"
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2020-09-23 13:49:14 +08:00
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"github.com/fatedier/frp/pkg/msg"
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"github.com/fatedier/frp/pkg/transport"
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2020-09-23 13:49:14 +08:00
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"github.com/fatedier/frp/pkg/util/xlog"
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2018-12-07 17:05:36 +08:00
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)
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const (
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ProxyPhaseNew = "new"
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ProxyPhaseWaitStart = "wait start"
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ProxyPhaseStartErr = "start error"
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ProxyPhaseRunning = "running"
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ProxyPhaseCheckFailed = "check failed"
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ProxyPhaseClosed = "closed"
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)
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var (
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statusCheckInterval = 3 * time.Second
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waitResponseTimeout = 20 * time.Second
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startErrTimeout = 30 * time.Second
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)
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type WorkingStatus struct {
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Name string `json:"name"`
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Type string `json:"type"`
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Phase string `json:"status"`
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Err string `json:"err"`
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Cfg v1.ProxyConfigurer `json:"cfg"`
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// Got from server.
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RemoteAddr string `json:"remote_addr"`
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}
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type Wrapper struct {
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WorkingStatus
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// underlying proxy
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pxy Proxy
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// if ProxyConf has healcheck config
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// monitor will watch if it is alive
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monitor *health.Monitor
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2018-12-07 17:05:36 +08:00
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// event handler
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handler event.Handler
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2018-12-07 17:05:36 +08:00
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msgTransporter transport.MessageTransporter
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2018-12-07 17:05:36 +08:00
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health uint32
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lastSendStartMsg time.Time
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lastStartErr time.Time
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closeCh chan struct{}
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healthNotifyCh chan struct{}
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mu sync.RWMutex
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2019-10-12 20:13:12 +08:00
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xl *xlog.Logger
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ctx context.Context
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}
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func NewWrapper(
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ctx context.Context,
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cfg v1.ProxyConfigurer,
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clientCfg *v1.ClientCommonConfig,
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eventHandler event.Handler,
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msgTransporter transport.MessageTransporter,
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) *Wrapper {
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baseInfo := cfg.GetBaseConfig()
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xl := xlog.FromContextSafe(ctx).Spawn().AppendPrefix(baseInfo.Name)
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pw := &Wrapper{
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WorkingStatus: WorkingStatus{
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Name: baseInfo.Name,
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Type: baseInfo.Type,
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Phase: ProxyPhaseNew,
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Cfg: cfg,
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},
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closeCh: make(chan struct{}),
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healthNotifyCh: make(chan struct{}),
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handler: eventHandler,
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msgTransporter: msgTransporter,
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xl: xl,
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ctx: xlog.NewContext(ctx, xl),
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}
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if baseInfo.HealthCheck.Type != "" && baseInfo.LocalPort > 0 {
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pw.health = 1 // means failed
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addr := net.JoinHostPort(baseInfo.LocalIP, strconv.Itoa(baseInfo.LocalPort))
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pw.monitor = health.NewMonitor(pw.ctx, baseInfo.HealthCheck, addr,
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pw.statusNormalCallback, pw.statusFailedCallback)
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xl.Trace("enable health check monitor")
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}
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pw.pxy = NewProxy(pw.ctx, pw.Cfg, clientCfg, pw.msgTransporter)
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return pw
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}
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2023-11-21 11:19:35 +08:00
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func (pw *Wrapper) SetInWorkConnCallback(cb func(*v1.ProxyBaseConfig, net.Conn, *msg.StartWorkConn) bool) {
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pw.pxy.SetInWorkConnCallback(cb)
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}
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func (pw *Wrapper) SetRunningStatus(remoteAddr string, respErr string) error {
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pw.mu.Lock()
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defer pw.mu.Unlock()
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if pw.Phase != ProxyPhaseWaitStart {
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return fmt.Errorf("status not wait start, ignore start message")
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}
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pw.RemoteAddr = remoteAddr
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if respErr != "" {
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pw.Phase = ProxyPhaseStartErr
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pw.Err = respErr
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pw.lastStartErr = time.Now()
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return fmt.Errorf(pw.Err)
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}
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if err := pw.pxy.Run(); err != nil {
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2020-02-04 19:41:39 +08:00
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pw.close()
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pw.Phase = ProxyPhaseStartErr
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pw.Err = err.Error()
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pw.lastStartErr = time.Now()
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return err
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}
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pw.Phase = ProxyPhaseRunning
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pw.Err = ""
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return nil
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}
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func (pw *Wrapper) Start() {
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go pw.checkWorker()
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if pw.monitor != nil {
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go pw.monitor.Start()
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}
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}
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func (pw *Wrapper) Stop() {
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pw.mu.Lock()
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defer pw.mu.Unlock()
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close(pw.closeCh)
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close(pw.healthNotifyCh)
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pw.pxy.Close()
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if pw.monitor != nil {
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pw.monitor.Stop()
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}
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pw.Phase = ProxyPhaseClosed
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2020-02-04 19:41:39 +08:00
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pw.close()
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}
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func (pw *Wrapper) close() {
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_ = pw.handler(&event.CloseProxyPayload{
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CloseProxyMsg: &msg.CloseProxy{
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ProxyName: pw.Name,
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},
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})
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}
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func (pw *Wrapper) checkWorker() {
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xl := pw.xl
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2018-12-09 21:56:46 +08:00
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if pw.monitor != nil {
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// let monitor do check request first
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time.Sleep(500 * time.Millisecond)
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}
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2018-12-07 17:05:36 +08:00
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for {
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// check proxy status
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now := time.Now()
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if atomic.LoadUint32(&pw.health) == 0 {
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pw.mu.Lock()
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if pw.Phase == ProxyPhaseNew ||
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pw.Phase == ProxyPhaseCheckFailed ||
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(pw.Phase == ProxyPhaseWaitStart && now.After(pw.lastSendStartMsg.Add(waitResponseTimeout))) ||
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(pw.Phase == ProxyPhaseStartErr && now.After(pw.lastStartErr.Add(startErrTimeout))) {
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2018-12-07 17:05:36 +08:00
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2020-05-24 17:48:37 +08:00
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xl.Trace("change status from [%s] to [%s]", pw.Phase, ProxyPhaseWaitStart)
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pw.Phase = ProxyPhaseWaitStart
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2018-12-07 17:05:36 +08:00
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var newProxyMsg msg.NewProxy
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pw.Cfg.MarshalToMsg(&newProxyMsg)
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pw.lastSendStartMsg = now
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_ = pw.handler(&event.StartProxyPayload{
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NewProxyMsg: &newProxyMsg,
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})
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}
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pw.mu.Unlock()
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} else {
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pw.mu.Lock()
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if pw.Phase == ProxyPhaseRunning || pw.Phase == ProxyPhaseWaitStart {
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2020-02-04 19:41:39 +08:00
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pw.close()
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2020-05-24 17:48:37 +08:00
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xl.Trace("change status from [%s] to [%s]", pw.Phase, ProxyPhaseCheckFailed)
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pw.Phase = ProxyPhaseCheckFailed
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2018-12-07 17:05:36 +08:00
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}
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pw.mu.Unlock()
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}
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select {
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case <-pw.closeCh:
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return
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case <-time.After(statusCheckInterval):
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2018-12-09 21:56:46 +08:00
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case <-pw.healthNotifyCh:
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2018-12-07 17:05:36 +08:00
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}
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}
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}
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2020-05-24 17:48:37 +08:00
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func (pw *Wrapper) statusNormalCallback() {
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xl := pw.xl
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2018-12-07 17:05:36 +08:00
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atomic.StoreUint32(&pw.health, 0)
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_ = errors.PanicToError(func() {
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2018-12-09 21:56:46 +08:00
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select {
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case pw.healthNotifyCh <- struct{}{}:
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default:
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}
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})
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2019-10-12 20:13:12 +08:00
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xl.Info("health check success")
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2018-12-07 17:05:36 +08:00
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}
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2020-05-24 17:48:37 +08:00
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func (pw *Wrapper) statusFailedCallback() {
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2019-10-12 20:13:12 +08:00
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xl := pw.xl
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2018-12-07 17:05:36 +08:00
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atomic.StoreUint32(&pw.health, 1)
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2022-08-29 01:02:53 +08:00
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_ = errors.PanicToError(func() {
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2018-12-09 21:56:46 +08:00
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select {
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case pw.healthNotifyCh <- struct{}{}:
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default:
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}
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})
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2019-10-12 20:13:12 +08:00
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xl.Info("health check failed")
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2018-12-07 17:05:36 +08:00
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}
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2020-05-24 17:48:37 +08:00
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func (pw *Wrapper) InWorkConn(workConn net.Conn, m *msg.StartWorkConn) {
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xl := pw.xl
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2018-12-07 17:05:36 +08:00
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pw.mu.RLock()
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pxy := pw.pxy
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pw.mu.RUnlock()
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if pxy != nil && pw.Phase == ProxyPhaseRunning {
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2019-10-12 20:13:12 +08:00
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xl.Debug("start a new work connection, localAddr: %s remoteAddr: %s", workConn.LocalAddr().String(), workConn.RemoteAddr().String())
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2019-03-29 19:01:18 +08:00
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go pxy.InWorkConn(workConn, m)
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2018-12-07 17:05:36 +08:00
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} else {
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workConn.Close()
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}
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}
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2020-05-24 17:48:37 +08:00
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func (pw *Wrapper) GetStatus() *WorkingStatus {
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2018-12-07 17:05:36 +08:00
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pw.mu.RLock()
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defer pw.mu.RUnlock()
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ps := &WorkingStatus{
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Name: pw.Name,
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Type: pw.Type,
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Phase: pw.Phase,
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2018-12-07 17:05:36 +08:00
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Err: pw.Err,
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Cfg: pw.Cfg,
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RemoteAddr: pw.RemoteAddr,
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}
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return ps
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}
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