- model: ServerURL → Protocol/Host/ServerIPs/Port/Path 五个字段 - db: 自动迁移旧 server_url 列到新表结构 - ui: 配置窗口改为横向分组布局,保存失败时不再关闭窗口 - transport: 支持 TLS SNI + Host 头覆盖以连接 CDN 边缘节点 - session: CDN IP 列表连接失败自动切换到下一个 - 新增重置数据库按钮,一键清空所有配置
286 lines
7.9 KiB
Go
286 lines
7.9 KiB
Go
// Package transport implements the LMVPN WebSocket client transport.
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//
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// It handles the full connection lifecycle:
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// 1. Dial the WebSocket (no Origin header, per server's allow-empty rule)
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// 2. Authenticate — JWT via ?token= query param, or password via first
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// text message {type:auth}
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// 3. Receive the {type:init} message with tunnel parameters
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// 4. Call the OnInit callback (TUN configuration)
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// 5. Send {type:ready}
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// 6. Provide ReadPacket/WritePacket for raw IP binary frames
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//
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// Reconnection with exponential backoff is handled by the vpn package's
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// SessionManager, not here. This type represents a single connection.
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package transport
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import (
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"context"
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"crypto/tls"
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"encoding/json"
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"fmt"
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"net/http"
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"net/url"
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"sync"
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"time"
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"lmvpn/internal/protocol"
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"github.com/gorilla/websocket"
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)
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// HandshakeConfig configures a single connection attempt.
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type HandshakeConfig struct {
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ServerURL string // e.g. wss://vpn.example.com/ws
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SNIHost string // TLS SNI hostname for CDN edge connections
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Token string // JWT; if non-empty, used via ?token= (method A)
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Username string // for password auth (method B), or fallback
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Password string // for password auth (method B), or fallback
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OnInit func(protocol.InitMessage) error // configure TUN; nil = auto-ready
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}
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// Conn is an established VPN tunnel connection.
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type Conn struct {
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ws *websocket.Conn
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init protocol.InitMessage
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writeMu sync.Mutex
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closed bool
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mu sync.Mutex
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}
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// Connect dials, authenticates, and completes the tunnel handshake.
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// It blocks until the connection is ready for data transfer or an
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// error occurs.
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func Connect(ctx context.Context, cfg HandshakeConfig) (*Conn, error) {
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dialer := websocket.Dialer{
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HandshakeTimeout: 15 * time.Second,
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ReadBufferSize: 4096, // match server (handler.go:17)
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WriteBufferSize: 4096, // match server (handler.go:18)
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}
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if cfg.SNIHost != "" {
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dialer.TLSClientConfig = &tls.Config{
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ServerName: cfg.SNIHost,
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}
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}
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// Build URL: append ?token= for JWT auth.
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urlStr := cfg.ServerURL
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if cfg.Token != "" {
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urlStr = appendQuery(urlStr, "token", cfg.Token)
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}
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header := http.Header{}
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header.Set("Origin", "")
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if cfg.SNIHost != "" {
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header.Set("Host", cfg.SNIHost)
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}
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ws, resp, err := dialer.DialContext(ctx, urlStr, header)
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if err != nil {
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if resp != nil {
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resp.Body.Close()
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}
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return nil, fmt.Errorf("dial %s: %w", urlStr, err)
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}
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defer resp.Body.Close()
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ws.SetReadLimit(protocol.MaxMessageSize)
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conn := &Conn{ws: ws}
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// Step 2: authenticate (only for password mode; JWT is validated
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// during the WS upgrade).
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if cfg.Token == "" {
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if err := conn.passwordAuth(cfg.Username, cfg.Password); err != nil {
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ws.Close()
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return nil, err
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}
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}
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// Step 3: receive init (or error/auth_err).
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initMsg, err := conn.readInit()
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if err != nil {
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ws.Close()
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return nil, err
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}
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conn.init = initMsg
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// Step 4: configure TUN via callback.
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if cfg.OnInit != nil {
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if err := cfg.OnInit(initMsg); err != nil {
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ws.Close()
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return nil, fmt.Errorf("tun configure: %w", err)
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}
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}
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// Step 5: send ready.
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if err := conn.sendReady(); err != nil {
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ws.Close()
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return nil, fmt.Errorf("send ready: %w", err)
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}
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// Step 6: set up keepalive — reset read deadline on each server
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// ping, and auto-respond with pong (allowed via WriteControl in
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// handler — see gorilla/websocket docs).
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ws.SetReadDeadline(time.Now().Add(protocol.ReadTimeout))
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ws.SetPingHandler(func(appData string) error {
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ws.SetReadDeadline(time.Now().Add(protocol.ReadTimeout))
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return ws.WriteControl(websocket.PongMessage, []byte(appData),
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time.Now().Add(protocol.WriteTimeout))
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})
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return conn, nil
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}
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// passwordAuth sends the {type:auth} message and waits for auth_ok.
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func (c *Conn) passwordAuth(username, password string) error {
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c.ws.SetReadDeadline(time.Now().Add(protocol.ReadTimeout))
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msg := protocol.AuthMessage{
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Type: protocol.TypeAuth,
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Username: username,
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Password: password,
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}
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data, err := json.Marshal(msg)
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if err != nil {
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return err
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}
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if err := c.writeText(data); err != nil {
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return fmt.Errorf("send auth: %w", err)
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}
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// Read auth response.
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_, respData, err := c.ws.ReadMessage()
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if err != nil {
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return fmt.Errorf("read auth response: %w", err)
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}
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var resp protocol.AuthResponse
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if err := json.Unmarshal(respData, &resp); err != nil {
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return fmt.Errorf("parse auth response: %w", err)
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}
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if resp.Type == protocol.TypeAuthErr {
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return &AuthError{Message: resp.Message}
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}
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if resp.Type != protocol.TypeAuthOK {
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return fmt.Errorf("unexpected auth response type: %s", resp.Type)
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}
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return nil
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}
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// readInit reads the init message (or error/auth_err).
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func (c *Conn) readInit() (protocol.InitMessage, error) {
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c.ws.SetReadDeadline(time.Now().Add(protocol.ReadTimeout))
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_, data, err := c.ws.ReadMessage()
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if err != nil {
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return protocol.InitMessage{}, fmt.Errorf("read init: %w", err)
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}
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// Try init first (most common path).
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var initMsg protocol.InitMessage
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if err := json.Unmarshal(data, &initMsg); err == nil && initMsg.Type == protocol.TypeInit {
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return initMsg, nil
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}
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// Otherwise it's an error or auth_err control message.
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var ctrl protocol.ControlMessage
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if err := json.Unmarshal(data, &ctrl); err != nil {
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return protocol.InitMessage{}, fmt.Errorf("parse init/error: %w (raw: %s)", err, data)
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}
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if ctrl.Type == protocol.TypeError || ctrl.Type == protocol.TypeAuthErr {
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return protocol.InitMessage{}, &ServerError{Type: ctrl.Type, Message: ctrl.Message}
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}
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return protocol.InitMessage{}, fmt.Errorf("unexpected message type: %s", ctrl.Type)
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}
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// sendReady sends the {type:ready} control message.
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func (c *Conn) sendReady() error {
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data, _ := json.Marshal(protocol.ControlMessage{Type: protocol.TypeReady})
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return c.writeText(data)
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}
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// writeText sends a text frame with the write deadline.
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func (c *Conn) writeText(data []byte) error {
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c.writeMu.Lock()
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defer c.writeMu.Unlock()
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c.ws.SetWriteDeadline(time.Now().Add(protocol.WriteTimeout))
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return c.ws.WriteMessage(websocket.TextMessage, data)
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}
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// ReadPacket reads the next binary IP packet from the tunnel.
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// It blocks until a packet is available or the connection breaks.
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func (c *Conn) ReadPacket() ([]byte, error) {
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for {
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msgType, data, err := c.ws.ReadMessage()
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if err != nil {
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return nil, err
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}
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if msgType == websocket.BinaryMessage {
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return data, nil
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}
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// Text messages after handshake are ignored (server shouldn't
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// send any, but be resilient).
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}
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}
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// WritePacket sends a raw IP packet as a binary frame.
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func (c *Conn) WritePacket(data []byte) error {
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if len(data) == 0 {
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return nil
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}
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c.writeMu.Lock()
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defer c.writeMu.Unlock()
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c.ws.SetWriteDeadline(time.Now().Add(protocol.WriteTimeout))
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return c.ws.WriteMessage(websocket.BinaryMessage, data)
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}
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// Init returns the init message received during handshake.
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func (c *Conn) Init() protocol.InitMessage { return c.init }
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// AssignedIP returns the IP assigned by the server.
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func (c *Conn) AssignedIP() string { return c.init.IP }
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// Close terminates the connection.
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func (c *Conn) Close() error {
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c.mu.Lock()
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if c.closed {
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c.mu.Unlock()
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return nil
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}
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c.closed = true
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c.mu.Unlock()
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return c.ws.Close()
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}
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// AuthError indicates authentication failure (auth_err from server).
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type AuthError struct{ Message string }
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func (e *AuthError) Error() string { return "auth failed: " + e.Message }
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// ServerError indicates a server-side rejection (error or auth_err).
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type ServerError struct {
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Type string
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Message string
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}
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func (e *ServerError) Error() string {
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return fmt.Sprintf("server %s: %s", e.Type, e.Message)
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}
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// appendQuery appends a key=value parameter to a URL, with the value
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// properly URL-escaped.
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func appendQuery(rawURL, key, value string) string {
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sep := "?"
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if contains(rawURL, "?") {
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sep = "&"
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}
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return rawURL + sep + key + "=" + url.QueryEscape(value)
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}
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func contains(s, sub string) bool {
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for i := 0; i+len(sub) <= len(s); i++ {
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if s[i:i+len(sub)] == sub {
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return true
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}
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}
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return false
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}
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