444 lines
11 KiB
Go
444 lines
11 KiB
Go
package barertc
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import (
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"context"
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"encoding/json"
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"errors"
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"fmt"
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"net/http"
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"sort"
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"strings"
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"sync"
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"time"
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"git.kirsle.net/apps/barertc/pkg/config"
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"git.kirsle.net/apps/barertc/pkg/jwt"
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"git.kirsle.net/apps/barertc/pkg/log"
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"git.kirsle.net/apps/barertc/pkg/util"
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"nhooyr.io/websocket"
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)
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// Subscriber represents a connected WebSocket session.
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type Subscriber struct {
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// User properties
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ID int // ID assigned by server
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Username string
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ChatStatus string
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VideoStatus int
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JWTClaims *jwt.Claims
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authenticated bool // has passed the login step
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conn *websocket.Conn
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ctx context.Context
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cancel context.CancelFunc
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messages chan []byte
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closeSlow func()
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muteMu sync.RWMutex
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booted map[string]struct{} // usernames booted off your camera
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muted map[string]struct{} // usernames you muted
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// Record which message IDs belong to this user.
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midMu sync.Mutex
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messageIDs map[int]struct{}
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}
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// ReadLoop spawns a goroutine that reads from the websocket connection.
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func (sub *Subscriber) ReadLoop(s *Server) {
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go func() {
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for {
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msgType, data, err := sub.conn.Read(sub.ctx)
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if err != nil {
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log.Error("ReadLoop error(%d=%s): %+v", sub.ID, sub.Username, err)
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s.DeleteSubscriber(sub)
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// Notify if this user was auth'd and not hidden
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if sub.authenticated && sub.ChatStatus != "hidden" {
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s.Broadcast(Message{
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Action: ActionPresence,
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Username: sub.Username,
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Message: "has exited the room!",
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})
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s.SendWhoList()
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}
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return
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}
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if msgType != websocket.MessageText {
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log.Error("Unexpected MessageType")
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continue
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}
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// Read the user's posted message.
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var msg Message
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if err := json.Unmarshal(data, &msg); err != nil {
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log.Error("Read(%d=%s) Message error: %s", sub.ID, sub.Username, err)
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continue
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}
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if msg.Action != ActionFile {
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log.Debug("Read(%d=%s): %s", sub.ID, sub.Username, data)
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}
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// What action are they performing?
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switch msg.Action {
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case ActionLogin:
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s.OnLogin(sub, msg)
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case ActionMessage:
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s.OnMessage(sub, msg)
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case ActionFile:
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s.OnFile(sub, msg)
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case ActionMe:
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s.OnMe(sub, msg)
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case ActionOpen:
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s.OnOpen(sub, msg)
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case ActionBoot:
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s.OnBoot(sub, msg)
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case ActionMute, ActionUnmute:
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s.OnMute(sub, msg, msg.Action == ActionMute)
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case ActionBlocklist:
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s.OnBlocklist(sub, msg)
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case ActionCandidate:
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s.OnCandidate(sub, msg)
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case ActionSDP:
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s.OnSDP(sub, msg)
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case ActionWatch:
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s.OnWatch(sub, msg)
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case ActionUnwatch:
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s.OnUnwatch(sub, msg)
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case ActionTakeback:
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s.OnTakeback(sub, msg)
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case ActionReact:
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s.OnReact(sub, msg)
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default:
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sub.ChatServer("Unsupported message type.")
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}
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}
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}()
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}
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// IsAdmin safely checks if the subscriber is an admin.
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func (sub *Subscriber) IsAdmin() bool {
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return sub.JWTClaims != nil && sub.JWTClaims.IsAdmin
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}
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// SendJSON sends a JSON message to the websocket client.
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func (sub *Subscriber) SendJSON(v interface{}) error {
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data, err := json.Marshal(v)
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if err != nil {
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return err
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}
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log.Debug("SendJSON(%d=%s): %s", sub.ID, sub.Username, data)
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return sub.conn.Write(sub.ctx, websocket.MessageText, data)
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}
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// SendMe sends the current user state to the client.
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func (sub *Subscriber) SendMe() {
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sub.SendJSON(Message{
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Action: ActionMe,
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Username: sub.Username,
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VideoStatus: sub.VideoStatus,
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})
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}
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// ChatServer is a convenience function to deliver a ChatServer error to the client.
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func (sub *Subscriber) ChatServer(message string, v ...interface{}) {
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sub.SendJSON(Message{
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Action: ActionError,
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Username: "ChatServer",
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Message: fmt.Sprintf(message, v...),
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})
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}
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// WebSocket handles the /ws websocket connection endpoint.
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func (s *Server) WebSocket() http.HandlerFunc {
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return http.HandlerFunc(func(w http.ResponseWriter, r *http.Request) {
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ip := util.IPAddress(r)
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log.Info("WebSocket connection from %s - %s", ip, r.Header.Get("User-Agent"))
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log.Debug("Headers: %+v", r.Header)
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c, err := websocket.Accept(w, r, &websocket.AcceptOptions{
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CompressionMode: websocket.CompressionDisabled,
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})
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if err != nil {
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w.WriteHeader(http.StatusInternalServerError)
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fmt.Fprintf(w, "Could not accept websocket connection: %s", err)
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return
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}
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defer c.Close(websocket.StatusInternalError, "the sky is falling")
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log.Debug("WebSocket: %s has connected", ip)
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c.SetReadLimit(config.Current.WebSocketReadLimit)
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// CloseRead starts a goroutine that will read from the connection
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// until it is closed.
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// ctx := c.CloseRead(r.Context())
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ctx, cancel := context.WithCancel(r.Context())
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sub := &Subscriber{
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conn: c,
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ctx: ctx,
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cancel: cancel,
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messages: make(chan []byte, s.subscriberMessageBuffer),
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closeSlow: func() {
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c.Close(websocket.StatusPolicyViolation, "connection too slow to keep up with messages")
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},
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booted: make(map[string]struct{}),
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muted: make(map[string]struct{}),
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messageIDs: make(map[int]struct{}),
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ChatStatus: "online",
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}
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s.AddSubscriber(sub)
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defer s.DeleteSubscriber(sub)
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go sub.ReadLoop(s)
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pinger := time.NewTicker(PingInterval)
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for {
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select {
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case msg := <-sub.messages:
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err = writeTimeout(ctx, time.Second*5, c, msg)
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if err != nil {
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return
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}
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case <-pinger.C:
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// Send a ping, and a refreshed JWT token if the user sent one.
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var token string
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if sub.JWTClaims != nil {
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if jwt, err := sub.JWTClaims.ReSign(); err != nil {
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log.Error("ReSign JWT token for %s: %s", sub.Username, err)
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} else {
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token = jwt
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}
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}
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sub.SendJSON(Message{
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Action: ActionPing,
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JWTToken: token,
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})
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case <-ctx.Done():
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pinger.Stop()
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return
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}
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}
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})
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}
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// Auto incrementing Subscriber ID, assigned in AddSubscriber.
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var SubscriberID int
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// AddSubscriber adds a WebSocket subscriber to the server.
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func (s *Server) AddSubscriber(sub *Subscriber) {
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// Assign a unique ID.
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SubscriberID++
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sub.ID = SubscriberID
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log.Debug("AddSubscriber: ID #%d", sub.ID)
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s.subscribersMu.Lock()
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s.subscribers[sub] = struct{}{}
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s.subscribersMu.Unlock()
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}
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// GetSubscriber by username.
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func (s *Server) GetSubscriber(username string) (*Subscriber, error) {
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for _, sub := range s.IterSubscribers() {
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if sub.Username == username {
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return sub, nil
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}
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}
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return nil, errors.New("not found")
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}
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// DeleteSubscriber removes a subscriber from the server.
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func (s *Server) DeleteSubscriber(sub *Subscriber) {
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log.Error("DeleteSubscriber: %s", sub.Username)
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// Cancel its context to clean up the for-loop goroutine.
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if sub.cancel != nil {
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sub.cancel()
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}
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s.subscribersMu.Lock()
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delete(s.subscribers, sub)
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s.subscribersMu.Unlock()
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}
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// IterSubscribers loops over the subscriber list with a read lock. If the
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// caller already holds a lock, pass the optional `true` parameter for isLocked.
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func (s *Server) IterSubscribers(isLocked ...bool) []*Subscriber {
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var result = []*Subscriber{}
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// Has the caller already taken the read lock or do we get it?
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if locked := len(isLocked) > 0 && isLocked[0]; !locked {
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s.subscribersMu.RLock()
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defer s.subscribersMu.RUnlock()
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}
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for sub := range s.subscribers {
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result = append(result, sub)
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}
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return result
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}
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// UniqueUsername ensures a username will be unique or renames it. If the name is already unique, the error result is nil.
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func (s *Server) UniqueUsername(username string) (string, error) {
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var (
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subs = s.IterSubscribers()
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usernames = map[string]interface{}{}
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origUsername = username
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counter = 2
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)
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for _, sub := range subs {
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usernames[sub.Username] = nil
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}
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// Check until unique.
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for {
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if _, ok := usernames[username]; ok {
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username = fmt.Sprintf("%s %d", origUsername, counter)
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counter++
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} else {
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break
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}
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}
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if username != origUsername {
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return username, errors.New("username was not unique and a unique name has been returned")
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}
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return username, nil
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}
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// Broadcast a message to the chat room.
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func (s *Server) Broadcast(msg Message) {
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if len(msg.Message) < 1024 {
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log.Debug("Broadcast: %+v", msg)
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}
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// Get the list of users who are online NOW, so we don't hold the mutex lock too long.
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// Example: sending a fat GIF to a large audience could hang up the server for a long
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// time until every copy of the GIF has been sent.
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var subs = s.IterSubscribers()
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for _, sub := range subs {
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if !sub.authenticated {
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continue
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}
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// Don't deliver it if the receiver has muted us.
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if sub.Mutes(msg.Username) {
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log.Debug("Do not broadcast message to %s: they have muted or booted %s", sub.Username, msg.Username)
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continue
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}
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sub.SendJSON(msg)
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}
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}
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// SendTo sends a message to a given username.
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func (s *Server) SendTo(username string, msg Message) error {
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log.Debug("SendTo(%s): %+v", username, msg)
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username = strings.TrimPrefix(username, "@")
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var found bool
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var subs = s.IterSubscribers()
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for _, sub := range subs {
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if sub.Username == username {
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found = true
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sub.SendJSON(Message{
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Action: msg.Action,
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Channel: msg.Channel,
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Username: msg.Username,
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Message: msg.Message,
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MessageID: msg.MessageID,
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})
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}
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}
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if !found {
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return fmt.Errorf("%s is not online", username)
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}
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return nil
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}
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// SendWhoList broadcasts the connected members to everybody in the room.
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func (s *Server) SendWhoList() {
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var (
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subscribers = s.IterSubscribers()
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usernames = []string{} // distinct and sorted usernames
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userSub = map[string]*Subscriber{}
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)
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for _, sub := range subscribers {
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if !sub.authenticated {
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continue
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}
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usernames = append(usernames, sub.Username)
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userSub[sub.Username] = sub
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}
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sort.Strings(usernames)
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// Build the WhoList for each subscriber.
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// TODO: it's the only way to fake videoActive for booted user views.
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for _, sub := range subscribers {
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if !sub.authenticated {
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continue
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}
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var users = []WhoList{}
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for _, un := range usernames {
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user := userSub[un]
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if user.ChatStatus == "hidden" {
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continue
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}
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who := WhoList{
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Username: user.Username,
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Status: user.ChatStatus,
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Video: user.VideoStatus,
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}
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// If this person had booted us, force their camera to "off"
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if (user.Boots(sub.Username) || user.Mutes(sub.Username)) && !sub.IsAdmin() {
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who.Video = 0
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}
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if user.JWTClaims != nil {
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who.Operator = user.JWTClaims.IsAdmin
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who.Avatar = user.JWTClaims.Avatar
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who.ProfileURL = user.JWTClaims.ProfileURL
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who.Nickname = user.JWTClaims.Nick
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who.Emoji = user.JWTClaims.Emoji
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who.Gender = user.JWTClaims.Gender
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}
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users = append(users, who)
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}
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sub.SendJSON(Message{
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Action: ActionWhoList,
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WhoList: users,
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})
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}
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}
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// Boots checks whether the subscriber has blocked username from their camera.
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func (s *Subscriber) Boots(username string) bool {
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s.muteMu.RLock()
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defer s.muteMu.RUnlock()
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_, ok := s.booted[username]
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return ok
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}
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// Mutes checks whether the subscriber has muted username.
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func (s *Subscriber) Mutes(username string) bool {
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s.muteMu.RLock()
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defer s.muteMu.RUnlock()
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_, ok := s.muted[username]
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return ok
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}
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func writeTimeout(ctx context.Context, timeout time.Duration, c *websocket.Conn, msg []byte) error {
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ctx, cancel := context.WithTimeout(ctx, timeout)
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defer cancel()
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return c.Write(ctx, websocket.MessageText, msg)
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}
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