forked from jshiffer/matterbridge
450 lines
12 KiB
Go
450 lines
12 KiB
Go
// Copyright 2009 The Go Authors. All rights reserved.
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// Use of this source code is governed by a BSD-style
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// license that can be found in the LICENSE file.
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// Package websocket implements a client and server for the WebSocket protocol
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// as specified in RFC 6455.
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//
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// This package currently lacks some features found in an alternative
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// and more actively maintained WebSocket package:
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//
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// https://pkg.go.dev/nhooyr.io/websocket
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package websocket // import "golang.org/x/net/websocket"
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import (
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"bufio"
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"crypto/tls"
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"encoding/json"
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"errors"
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"io"
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"io/ioutil"
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"net"
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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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)
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const (
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ProtocolVersionHybi13 = 13
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ProtocolVersionHybi = ProtocolVersionHybi13
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SupportedProtocolVersion = "13"
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ContinuationFrame = 0
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TextFrame = 1
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BinaryFrame = 2
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CloseFrame = 8
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PingFrame = 9
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PongFrame = 10
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UnknownFrame = 255
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DefaultMaxPayloadBytes = 32 << 20 // 32MB
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)
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// ProtocolError represents WebSocket protocol errors.
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type ProtocolError struct {
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ErrorString string
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}
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func (err *ProtocolError) Error() string { return err.ErrorString }
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var (
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ErrBadProtocolVersion = &ProtocolError{"bad protocol version"}
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ErrBadScheme = &ProtocolError{"bad scheme"}
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ErrBadStatus = &ProtocolError{"bad status"}
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ErrBadUpgrade = &ProtocolError{"missing or bad upgrade"}
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ErrBadWebSocketOrigin = &ProtocolError{"missing or bad WebSocket-Origin"}
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ErrBadWebSocketLocation = &ProtocolError{"missing or bad WebSocket-Location"}
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ErrBadWebSocketProtocol = &ProtocolError{"missing or bad WebSocket-Protocol"}
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ErrBadWebSocketVersion = &ProtocolError{"missing or bad WebSocket Version"}
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ErrChallengeResponse = &ProtocolError{"mismatch challenge/response"}
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ErrBadFrame = &ProtocolError{"bad frame"}
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ErrBadFrameBoundary = &ProtocolError{"not on frame boundary"}
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ErrNotWebSocket = &ProtocolError{"not websocket protocol"}
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ErrBadRequestMethod = &ProtocolError{"bad method"}
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ErrNotSupported = &ProtocolError{"not supported"}
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)
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// ErrFrameTooLarge is returned by Codec's Receive method if payload size
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// exceeds limit set by Conn.MaxPayloadBytes
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var ErrFrameTooLarge = errors.New("websocket: frame payload size exceeds limit")
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// Addr is an implementation of net.Addr for WebSocket.
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type Addr struct {
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*url.URL
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}
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// Network returns the network type for a WebSocket, "websocket".
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func (addr *Addr) Network() string { return "websocket" }
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// Config is a WebSocket configuration
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type Config struct {
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// A WebSocket server address.
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Location *url.URL
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// A Websocket client origin.
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Origin *url.URL
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// WebSocket subprotocols.
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Protocol []string
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// WebSocket protocol version.
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Version int
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// TLS config for secure WebSocket (wss).
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TlsConfig *tls.Config
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// Additional header fields to be sent in WebSocket opening handshake.
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Header http.Header
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// Dialer used when opening websocket connections.
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Dialer *net.Dialer
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handshakeData map[string]string
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}
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// serverHandshaker is an interface to handle WebSocket server side handshake.
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type serverHandshaker interface {
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// ReadHandshake reads handshake request message from client.
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// Returns http response code and error if any.
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ReadHandshake(buf *bufio.Reader, req *http.Request) (code int, err error)
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// AcceptHandshake accepts the client handshake request and sends
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// handshake response back to client.
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AcceptHandshake(buf *bufio.Writer) (err error)
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// NewServerConn creates a new WebSocket connection.
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NewServerConn(buf *bufio.ReadWriter, rwc io.ReadWriteCloser, request *http.Request) (conn *Conn)
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}
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// frameReader is an interface to read a WebSocket frame.
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type frameReader interface {
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// Reader is to read payload of the frame.
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io.Reader
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// PayloadType returns payload type.
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PayloadType() byte
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// HeaderReader returns a reader to read header of the frame.
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HeaderReader() io.Reader
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// TrailerReader returns a reader to read trailer of the frame.
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// If it returns nil, there is no trailer in the frame.
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TrailerReader() io.Reader
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// Len returns total length of the frame, including header and trailer.
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Len() int
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}
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// frameReaderFactory is an interface to creates new frame reader.
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type frameReaderFactory interface {
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NewFrameReader() (r frameReader, err error)
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}
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// frameWriter is an interface to write a WebSocket frame.
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type frameWriter interface {
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// Writer is to write payload of the frame.
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io.WriteCloser
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}
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// frameWriterFactory is an interface to create new frame writer.
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type frameWriterFactory interface {
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NewFrameWriter(payloadType byte) (w frameWriter, err error)
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}
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type frameHandler interface {
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HandleFrame(frame frameReader) (r frameReader, err error)
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WriteClose(status int) (err error)
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}
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// Conn represents a WebSocket connection.
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//
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// Multiple goroutines may invoke methods on a Conn simultaneously.
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type Conn struct {
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config *Config
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request *http.Request
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buf *bufio.ReadWriter
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rwc io.ReadWriteCloser
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rio sync.Mutex
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frameReaderFactory
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frameReader
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wio sync.Mutex
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frameWriterFactory
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frameHandler
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PayloadType byte
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defaultCloseStatus int
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// MaxPayloadBytes limits the size of frame payload received over Conn
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// by Codec's Receive method. If zero, DefaultMaxPayloadBytes is used.
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MaxPayloadBytes int
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}
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// Read implements the io.Reader interface:
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// it reads data of a frame from the WebSocket connection.
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// if msg is not large enough for the frame data, it fills the msg and next Read
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// will read the rest of the frame data.
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// it reads Text frame or Binary frame.
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func (ws *Conn) Read(msg []byte) (n int, err error) {
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ws.rio.Lock()
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defer ws.rio.Unlock()
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again:
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if ws.frameReader == nil {
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frame, err := ws.frameReaderFactory.NewFrameReader()
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if err != nil {
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return 0, err
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}
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ws.frameReader, err = ws.frameHandler.HandleFrame(frame)
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if err != nil {
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return 0, err
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}
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if ws.frameReader == nil {
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goto again
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}
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}
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n, err = ws.frameReader.Read(msg)
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if err == io.EOF {
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if trailer := ws.frameReader.TrailerReader(); trailer != nil {
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io.Copy(ioutil.Discard, trailer)
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}
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ws.frameReader = nil
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goto again
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}
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return n, err
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}
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// Write implements the io.Writer interface:
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// it writes data as a frame to the WebSocket connection.
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func (ws *Conn) Write(msg []byte) (n int, err error) {
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ws.wio.Lock()
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defer ws.wio.Unlock()
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w, err := ws.frameWriterFactory.NewFrameWriter(ws.PayloadType)
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if err != nil {
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return 0, err
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}
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n, err = w.Write(msg)
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w.Close()
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return n, err
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}
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// Close implements the io.Closer interface.
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func (ws *Conn) Close() error {
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err := ws.frameHandler.WriteClose(ws.defaultCloseStatus)
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err1 := ws.rwc.Close()
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if err != nil {
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return err
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}
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return err1
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}
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// IsClientConn reports whether ws is a client-side connection.
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func (ws *Conn) IsClientConn() bool { return ws.request == nil }
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// IsServerConn reports whether ws is a server-side connection.
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func (ws *Conn) IsServerConn() bool { return ws.request != nil }
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// LocalAddr returns the WebSocket Origin for the connection for client, or
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// the WebSocket location for server.
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func (ws *Conn) LocalAddr() net.Addr {
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if ws.IsClientConn() {
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return &Addr{ws.config.Origin}
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}
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return &Addr{ws.config.Location}
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}
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// RemoteAddr returns the WebSocket location for the connection for client, or
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// the Websocket Origin for server.
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func (ws *Conn) RemoteAddr() net.Addr {
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if ws.IsClientConn() {
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return &Addr{ws.config.Location}
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}
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return &Addr{ws.config.Origin}
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}
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var errSetDeadline = errors.New("websocket: cannot set deadline: not using a net.Conn")
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// SetDeadline sets the connection's network read & write deadlines.
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func (ws *Conn) SetDeadline(t time.Time) error {
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if conn, ok := ws.rwc.(net.Conn); ok {
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return conn.SetDeadline(t)
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}
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return errSetDeadline
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}
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// SetReadDeadline sets the connection's network read deadline.
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func (ws *Conn) SetReadDeadline(t time.Time) error {
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if conn, ok := ws.rwc.(net.Conn); ok {
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return conn.SetReadDeadline(t)
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}
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return errSetDeadline
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}
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// SetWriteDeadline sets the connection's network write deadline.
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func (ws *Conn) SetWriteDeadline(t time.Time) error {
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if conn, ok := ws.rwc.(net.Conn); ok {
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return conn.SetWriteDeadline(t)
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}
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return errSetDeadline
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}
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// Config returns the WebSocket config.
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func (ws *Conn) Config() *Config { return ws.config }
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// Request returns the http request upgraded to the WebSocket.
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// It is nil for client side.
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func (ws *Conn) Request() *http.Request { return ws.request }
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// Codec represents a symmetric pair of functions that implement a codec.
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type Codec struct {
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Marshal func(v interface{}) (data []byte, payloadType byte, err error)
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Unmarshal func(data []byte, payloadType byte, v interface{}) (err error)
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}
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// Send sends v marshaled by cd.Marshal as single frame to ws.
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func (cd Codec) Send(ws *Conn, v interface{}) (err error) {
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data, payloadType, err := cd.Marshal(v)
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if err != nil {
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return err
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}
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ws.wio.Lock()
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defer ws.wio.Unlock()
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w, err := ws.frameWriterFactory.NewFrameWriter(payloadType)
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if err != nil {
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return err
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}
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_, err = w.Write(data)
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w.Close()
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return err
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}
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// Receive receives single frame from ws, unmarshaled by cd.Unmarshal and stores
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// in v. The whole frame payload is read to an in-memory buffer; max size of
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// payload is defined by ws.MaxPayloadBytes. If frame payload size exceeds
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// limit, ErrFrameTooLarge is returned; in this case frame is not read off wire
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// completely. The next call to Receive would read and discard leftover data of
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// previous oversized frame before processing next frame.
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func (cd Codec) Receive(ws *Conn, v interface{}) (err error) {
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ws.rio.Lock()
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defer ws.rio.Unlock()
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if ws.frameReader != nil {
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_, err = io.Copy(ioutil.Discard, ws.frameReader)
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if err != nil {
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return err
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}
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ws.frameReader = nil
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}
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again:
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frame, err := ws.frameReaderFactory.NewFrameReader()
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if err != nil {
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return err
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}
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frame, err = ws.frameHandler.HandleFrame(frame)
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if err != nil {
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return err
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}
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if frame == nil {
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goto again
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}
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maxPayloadBytes := ws.MaxPayloadBytes
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if maxPayloadBytes == 0 {
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maxPayloadBytes = DefaultMaxPayloadBytes
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}
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if hf, ok := frame.(*hybiFrameReader); ok && hf.header.Length > int64(maxPayloadBytes) {
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// payload size exceeds limit, no need to call Unmarshal
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//
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// set frameReader to current oversized frame so that
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// the next call to this function can drain leftover
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// data before processing the next frame
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ws.frameReader = frame
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return ErrFrameTooLarge
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}
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payloadType := frame.PayloadType()
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data, err := ioutil.ReadAll(frame)
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if err != nil {
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return err
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}
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return cd.Unmarshal(data, payloadType, v)
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}
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func marshal(v interface{}) (msg []byte, payloadType byte, err error) {
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switch data := v.(type) {
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case string:
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return []byte(data), TextFrame, nil
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case []byte:
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return data, BinaryFrame, nil
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}
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return nil, UnknownFrame, ErrNotSupported
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}
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func unmarshal(msg []byte, payloadType byte, v interface{}) (err error) {
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switch data := v.(type) {
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case *string:
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*data = string(msg)
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return nil
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case *[]byte:
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*data = msg
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return nil
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}
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return ErrNotSupported
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}
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/*
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Message is a codec to send/receive text/binary data in a frame on WebSocket connection.
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To send/receive text frame, use string type.
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To send/receive binary frame, use []byte type.
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Trivial usage:
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import "websocket"
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// receive text frame
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var message string
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websocket.Message.Receive(ws, &message)
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// send text frame
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message = "hello"
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websocket.Message.Send(ws, message)
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// receive binary frame
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var data []byte
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websocket.Message.Receive(ws, &data)
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// send binary frame
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data = []byte{0, 1, 2}
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websocket.Message.Send(ws, data)
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*/
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var Message = Codec{marshal, unmarshal}
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func jsonMarshal(v interface{}) (msg []byte, payloadType byte, err error) {
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msg, err = json.Marshal(v)
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return msg, TextFrame, err
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}
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func jsonUnmarshal(msg []byte, payloadType byte, v interface{}) (err error) {
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return json.Unmarshal(msg, v)
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}
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/*
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JSON is a codec to send/receive JSON data in a frame from a WebSocket connection.
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Trivial usage:
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import "websocket"
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type T struct {
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Msg string
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Count int
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}
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// receive JSON type T
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var data T
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websocket.JSON.Receive(ws, &data)
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// send JSON type T
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websocket.JSON.Send(ws, data)
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*/
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var JSON = Codec{jsonMarshal, jsonUnmarshal}
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