fusenapi/server/websocket/internal/logic/datatransferlogic.go

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package logic
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//websocket连接
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import (
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"bytes"
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"encoding/json"
"fusenapi/constants"
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"fusenapi/utils/auth"
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"fusenapi/utils/websocket_data"
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"net/http"
"sync"
"time"
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"github.com/google/uuid"
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"github.com/gorilla/websocket"
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"context"
"fusenapi/server/websocket/internal/svc"
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"github.com/zeromicro/go-zero/core/logx"
)
type DataTransferLogic struct {
logx.Logger
ctx context.Context
svcCtx *svc.ServiceContext
}
func NewDataTransferLogic(ctx context.Context, svcCtx *svc.ServiceContext) *DataTransferLogic {
return &DataTransferLogic{
Logger: logx.WithContext(ctx),
ctx: ctx,
svcCtx: svcCtx,
}
}
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var (
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//临时缓存对象池
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buffPool = sync.Pool{
New: func() interface{} {
return bytes.Buffer{}
},
}
//升级websocket
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upgrader = websocket.Upgrader{
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//最大可读取大小 10M
ReadBufferSize: 1024 * 10,
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//握手超时时间15s
HandshakeTimeout: time.Second * 15,
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//允许跨域
CheckOrigin: func(r *http.Request) bool {
return true
},
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//写的缓存池
WriteBufferPool: &buffPool,
//是否支持压缩
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EnableCompression: true,
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}
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//websocket连接存储
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mapConnPool = sync.Map{}
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//公共互斥锁(复用连接标识用)
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publicMutex sync.Mutex
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)
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// 每个连接的连接基本属性
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type wsConnectItem struct {
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conn *websocket.Conn //websocket的连接(基本属性)
logic *DataTransferLogic //logic(基本属性,用于获取上下文,配置或者操作数据库)
closeChan chan struct{} //ws连接关闭chan(基本属性)
isClose bool //是否已经关闭(基本属性)
uniqueId string //ws连接唯一标识(基本属性)
inChan chan []byte //接受消息缓冲通道(基本属性)
outChan chan []byte //发送回客户端的消息(基本属性)
mutex sync.Mutex //互斥锁(关闭连接方法中用)
userId int64 //用户id(基本属性)
guestId int64 //游客id(基本属性)
renderProperty renderProperty //扩展云渲染属性(扩展属性)
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}
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// 请求建立连接升级websocket协议
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func (l *DataTransferLogic) DataTransfer(w http.ResponseWriter, r *http.Request) {
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//把子协议携带的token设置到标准token头信息中
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token := r.Header.Get("Sec-Websocket-Protocol")
r.Header.Set("Authorization", "Bearer "+token)
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//设置Sec-Websocket-Protocol
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upgrader.Subprotocols = []string{token}
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//升级websocket
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conn, err := upgrader.Upgrade(w, r, nil)
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if err != nil {
logx.Error("http upgrade websocket err:", err)
return
}
defer conn.Close()
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//鉴权不成功后断开
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var (
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userInfo *auth.UserInfo
isAuth bool
)
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isAuth, userInfo = l.checkAuth(r)
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if !isAuth {
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//未授权响应消息
l.unAuthResponse(conn)
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return
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}
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//设置连接
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ws := l.setConnPool(conn, *userInfo)
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defer ws.close()
//循环读客户端信息
go ws.readLoop()
//循环把数据发送给客户端
go ws.writeLoop()
//推消息到云渲染
go ws.sendLoop()
//操作连接中渲染任务的增加/删除
go ws.operationRenderTask()
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//消费渲染缓冲队列
go ws.renderImage()
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//心跳
ws.heartbeat()
}
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// 设置连接
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func (l *DataTransferLogic) setConnPool(conn *websocket.Conn, userInfo auth.UserInfo) wsConnectItem {
publicMutex.Lock()
defer publicMutex.Unlock()
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//生成连接唯一标识
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uniqueId := l.getUniqueId(userInfo)
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ws := wsConnectItem{
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conn: conn,
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logic: l,
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uniqueId: uniqueId,
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closeChan: make(chan struct{}, 1),
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inChan: make(chan []byte, 1000),
outChan: make(chan []byte, 1000),
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userId: userInfo.UserId,
guestId: userInfo.GuestId,
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renderProperty: renderProperty{
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renderImageTask: make(map[string]*renderTask),
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renderImageTaskCtlChan: make(chan renderImageControlChanItem, 500),
renderChan: make(chan []byte, 500),
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},
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}
//保存连接
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mapConnPool.Store(uniqueId, ws)
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go func() {
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defer func() {
if err := recover(); err != nil {
logx.Error("set conn pool panic:", err)
}
}()
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//把连接成功消息发回去
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time.Sleep(time.Second * 1) //兼容下火狐(直接发回去收不到第一条消息:有待研究)
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ws.sendToOutChan(ws.respondDataFormat(constants.WEBSOCKET_CONNECT_SUCCESS, uniqueId))
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}()
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return ws
}
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// 获取唯一id
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func (l *DataTransferLogic) getUniqueId(userInfo auth.UserInfo) string {
//后面拼接上用户id
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uniqueId := uuid.New().String() + getUserJoinPart(userInfo.UserId, userInfo.GuestId)
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if _, ok := mapConnPool.Load(uniqueId); ok {
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uniqueId = l.getUniqueId(userInfo)
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}
return uniqueId
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}
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// 鉴权
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func (l *DataTransferLogic) checkAuth(r *http.Request) (isAuth bool, userInfo *auth.UserInfo) {
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// 解析JWT token,并对空用户进行判断
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claims, err := l.svcCtx.ParseJwtToken(r)
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// 如果解析JWT token出错,则返回未授权的JSON响应并记录错误消息
if err != nil {
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logx.Error(err)
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return false, nil
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}
if claims != nil {
// 从token中获取对应的用户信息
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userInfo, err = auth.GetUserInfoFormMapClaims(claims)
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// 如果获取用户信息出错,则返回未授权的JSON响应并记录错误消息
if err != nil {
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logx.Error(err)
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return false, nil
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}
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//不是登录用户也不是游客
if !userInfo.IsUser() && !userInfo.IsGuest() {
return false, nil
}
return true, userInfo
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}
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return false, nil
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}
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// 鉴权失败通知
func (l *DataTransferLogic) unAuthResponse(conn *websocket.Conn) {
time.Sleep(time.Second * 1) //兼容下火狐(直接发回去收不到第一条消息:有待研究)
rsp := websocket_data.DataTransferData{
T: constants.WEBSOCKET_UNAUTH,
D: nil,
}
b, _ := json.Marshal(rsp)
//先发一条正常信息
_ = conn.WriteMessage(websocket.TextMessage, b)
//发送关闭信息
_ = conn.WriteMessage(websocket.CloseMessage, nil)
//关闭连接
conn.Close()
}
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// 心跳检测
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func (w *wsConnectItem) heartbeat() {
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tick := time.Tick(time.Second * 5)
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for {
select {
case <-w.closeChan:
return
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case <-tick:
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//发送心跳信息
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if err := w.conn.WriteMessage(websocket.PongMessage, nil); err != nil {
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logx.Error("发送心跳信息异常,关闭连接:", w.uniqueId, err)
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w.close()
return
}
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}
}
}
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// 关闭websocket连接
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func (w *wsConnectItem) close() {
w.mutex.Lock()
defer w.mutex.Unlock()
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logx.Info("websocket:", w.uniqueId, " is closing...")
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//发送关闭信息
_ = w.conn.WriteMessage(websocket.CloseMessage, nil)
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w.conn.Close()
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mapConnPool.Delete(w.uniqueId)
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if !w.isClose {
w.isClose = true
close(w.closeChan)
}
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logx.Info("websocket:", w.uniqueId, " is closed")
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}
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// 读取出口缓冲池数据输出返回给浏览器端
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func (w *wsConnectItem) writeLoop() {
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defer func() {
if err := recover(); err != nil {
logx.Error("write loop panic:", err)
}
}()
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for {
select {
case <-w.closeChan: //如果关闭了
return
case data := <-w.outChan:
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if err := w.conn.WriteMessage(websocket.TextMessage, data); err != nil {
logx.Error("websocket write loop err:", err)
w.close()
return
}
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}
}
}
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// 接受客户端发来的消息并写入入口缓冲池
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func (w *wsConnectItem) readLoop() {
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defer func() {
if err := recover(); err != nil {
logx.Error("read loop panic:", err)
}
}()
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for {
select {
case <-w.closeChan: //如果关闭了
return
default:
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msgType, data, err := w.conn.ReadMessage()
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if err != nil {
logx.Error("接受信息错误:", err)
//关闭连接
w.close()
return
}
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//ping的消息不处理
if msgType != websocket.PingMessage {
//消息传入缓冲通道
w.inChan <- data
}
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}
}
}
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// 消费websocket入口数据池中的数据
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func (w *wsConnectItem) sendLoop() {
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defer func() {
if err := recover(); err != nil {
logx.Error("send loop panic:", err)
}
}()
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for {
select {
case <-w.closeChan:
return
case data := <-w.inChan:
w.dealwithReciveData(data)
}
}
}
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// 把要传递给客户端的数据放入出口缓冲池
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func (w *wsConnectItem) sendToOutChan(data []byte) {
select {
case <-w.closeChan:
return
case w.outChan <- data:
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return
case <-time.After(time.Second * 3): //阻塞超过3秒丢弃
return
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}
}
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// 格式化为websocket标准返回格式
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func (w *wsConnectItem) respondDataFormat(msgType constants.Websocket, data interface{}) []byte {
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d := websocket_data.DataTransferData{
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T: msgType,
D: data,
}
b, _ := json.Marshal(d)
return b
}
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// 处理入口缓冲池中不同类型的数据(分发处理)
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func (w *wsConnectItem) dealwithReciveData(data []byte) {
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var parseInfo websocket_data.DataTransferData
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if err := json.Unmarshal(data, &parseInfo); err != nil {
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logx.Error("invalid format of websocket message:", err)
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w.sendToOutChan(w.respondDataFormat(constants.WEBSOCKET_ERR_DATA_FORMAT, "invalid format of websocket message:"+string(data)))
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return
}
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d, _ := json.Marshal(parseInfo.D)
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//分消息类型给到不同逻辑处理,可扩展
switch parseInfo.T {
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//图片渲染
case constants.WEBSOCKET_RENDER_IMAGE:
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w.sendToRenderChan(d)
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//刷新重连请求恢复上次连接的标识
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case constants.WEBSOCKET_REQUEST_REUSE_LAST_CONNECT:
w.reuseLastConnect(d)
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default:
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logx.Error("未知消息类型:", parseInfo.T)
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}
}