Gateways WebSocket com o Adaptador Socket.IO
Implemente manipuladores @WebSocketGateway, salas e ganchos de ciclo de vida para comunicação ao vivo.
Gateways WebSocket com o Adaptador Socket.IO é uma aula grátis de NestJS Enterprise Backend APIs no CoddyKit. Esta é a aula 1 de 4. Você pode ler a aula completa abaixo gratuitamente — depois pratica ao vivo no navegador com um editor de código integrado e um tutor de IA 24/7. Faz parte do caminho de aprendizado de NestJS Enterprise Backend APIs, e seu progresso é sincronizado entre a web e o app CoddyKit. O curso de NestJS Enterprise Backend APIs inclui 4 aulas no total.
Partes desta aula ainda não foram traduzidas e aparecem em inglês.
Why Gateways Exist
REST handles request/response, but real-time features (chat, presence, live dashboards) need a persistent, bidirectional channel. NestJS wraps this with a WebSocket Gateway.
- A gateway is a provider decorated with
@WebSocketGateway(). - By default Nest uses the Socket.IO platform adapter (
@nestjs/platform-socket.io). - Gateways are normal Nest classes: they support dependency injection, guards, pipes, and interceptors just like controllers.
Install the deps with npm i @nestjs/websockets @nestjs/platform-socket.io socket.io.
Declaring a Gateway
Decorate a class with @WebSocketGateway() and register it as a provider in a module. You can pass a port and options such as namespace and CORS config.
@SubscribeMessage('event')binds a handler to an inbound Socket.IO event.- The return value (or a
WsResponse) is emitted back to the calling client.
Below, clients sending ping receive a pong reply.
import { WebSocketGateway, SubscribeMessage, MessageBody } from '@nestjs/websockets';
@WebSocketGateway({ namespace: '/chat', cors: { origin: '*' } })
export class ChatGateway {
@SubscribeMessage('ping')
handlePing(@MessageBody() data: string): { event: string; data: string } {
return { event: 'pong', data: `received: ${data}` };
}
}Accessing the Server Instance
To broadcast to many clients you need the underlying Socket.IO Server. Inject it with the @WebSocketServer() property decorator.
server.emit('event', payload)sends to every connected client in the namespace.- This is the foundation for fan-out features like global announcements.
import { WebSocketGateway, WebSocketServer, SubscribeMessage, MessageBody } from '@nestjs/websockets';
import { Server } from 'socket.io';
@WebSocketGateway({ namespace: '/chat' })
export class ChatGateway {
@WebSocketServer()
server: Server;
@SubscribeMessage('broadcast')
handleBroadcast(@MessageBody() message: string): void {
this.server.emit('announcement', message);
}
}The Connected Socket
Each client has its own Socket. Inject it per-handler with @ConnectedSocket() to read auth data, the socket id, or to reply only to that client.
client.emit(...)targets just the sender.client.iduniquely identifies the connection.client.handshakeexposes headers, query, and auth handed in at connect time.
import { WebSocketGateway, SubscribeMessage, MessageBody, ConnectedSocket } from '@nestjs/websockets';
import { Socket } from 'socket.io';
@WebSocketGateway({ namespace: '/chat' })
export class ChatGateway {
@SubscribeMessage('whoami')
whoAmI(@ConnectedSocket() client: Socket, @MessageBody() _: unknown): void {
client.emit('identity', { id: client.id, token: client.handshake.auth?.token });
}
}Lifecycle Hooks
Gateways can implement lifecycle interfaces to react to connection events:
OnGatewayInit→afterInit(server)runs once the server is ready.OnGatewayConnection→handleConnection(client)fires per new client.OnGatewayDisconnect→handleDisconnect(client)fires when a client leaves.
Use these for presence tracking, auth on connect, and cleanup.
import { WebSocketGateway, OnGatewayInit, OnGatewayConnection, OnGatewayDisconnect } from '@nestjs/websockets';
import { Server, Socket } from 'socket.io';
import { Logger } from '@nestjs/common';
@WebSocketGateway({ namespace: '/chat' })
export class ChatGateway implements OnGatewayInit, OnGatewayConnection, OnGatewayDisconnect {
private readonly logger = new Logger(ChatGateway.name);
afterInit(server: Server): void {
this.logger.log('Gateway initialized');
}
handleConnection(client: Socket): void {
this.logger.log(`Client connected: ${client.id}`);
}
handleDisconnect(client: Socket): void {
this.logger.log(`Client disconnected: ${client.id}`);
}
}Rooms: Grouping Sockets
A room is a server-side label you attach to sockets so you can broadcast to a subset. A socket can belong to many rooms.
client.join('room')adds the socket to a room.client.leave('room')removes it.- Socket.IO automatically puts each socket in a room named after its own
client.id.
Rooms are how you build per-channel chat, per-tenant dashboards, or per-document collaboration.
import { WebSocketGateway, SubscribeMessage, MessageBody, ConnectedSocket } from '@nestjs/websockets';
import { Socket } from 'socket.io';
@WebSocketGateway({ namespace: '/chat' })
export class ChatGateway {
@SubscribeMessage('joinRoom')
joinRoom(@ConnectedSocket() client: Socket, @MessageBody() room: string): void {
client.join(room);
client.emit('joined', room);
}
}Broadcasting to a Room
Target a room with server.to('room').emit(...). To exclude the sender, emit from the client socket: client.to('room').emit(...) sends to everyone in the room except that client.
server.to(room).emit(...)→ everyone in the room.client.to(room).emit(...)→ everyone in the room but the sender.
import { WebSocketGateway, WebSocketServer, SubscribeMessage, MessageBody, ConnectedSocket } from '@nestjs/websockets';
import { Server, Socket } from 'socket.io';
@WebSocketGateway({ namespace: '/chat' })
export class ChatGateway {
@WebSocketServer() server: Server;
@SubscribeMessage('sendToRoom')
sendToRoom(
@ConnectedSocket() client: Socket,
@MessageBody() body: { room: string; text: string },
): void {
client.to(body.room).emit('message', { from: client.id, text: body.text });
}
}Acknowledgements with WsResponse
Socket.IO supports request/response style acknowledgements. In Nest you can return a value, a WsResponse<T> object, or even an Observable that streams multiple emissions back.
- Return
{ event, data }to emit a named event back to the caller. - Returning an
Observableemits one message per value, useful for progress updates.
import { WebSocketGateway, SubscribeMessage, MessageBody, WsResponse } from '@nestjs/websockets';
import { from, Observable } from 'rxjs';
import { map } from 'rxjs/operators';
@WebSocketGateway({ namespace: '/jobs' })
export class JobsGateway {
@SubscribeMessage('countdown')
countdown(@MessageBody() n: number): Observable<WsResponse<number>> {
const ticks = Array.from({ length: n }, (_, i) => n - i);
return from(ticks).pipe(map((value) => ({ event: 'tick', data: value })));
}
}Validation with Pipes
Gateways reuse Nest's ValidationPipe, but errors are thrown as WsException rather than HTTP exceptions. Apply the pipe at the handler or gateway level and validate a DTO via @MessageBody().
- Set
transform: trueso plain payloads become class instances. - A
WsExceptionis serialized to anexceptionevent on the client.
import { WebSocketGateway, SubscribeMessage, MessageBody } from '@nestjs/websockets';
import { UsePipes, ValidationPipe } from '@nestjs/common';
import { IsString, MinLength } from 'class-validator';
class SendMessageDto {
@IsString() @MinLength(1)
text: string;
}
@WebSocketGateway({ namespace: '/chat' })
export class ChatGateway {
@UsePipes(new ValidationPipe({ transform: true }))
@SubscribeMessage('send')
send(@MessageBody() dto: SendMessageDto): { event: string; data: string } {
return { event: 'sent', data: dto.text };
}
}Authenticating on Connect
Authenticate clients during handleConnection by reading the token from the handshake and disconnecting unauthorized sockets early. Storing the user on client.data makes it available to every later handler.
- Token usually arrives via
handshake.auth.tokenor anAuthorizationheader. - Call
client.disconnect()to reject bad clients before they join rooms.
import { WebSocketGateway, OnGatewayConnection } from '@nestjs/websockets';
import { Socket } from 'socket.io';
import { JwtService } from '@nestjs/jwt';
@WebSocketGateway({ namespace: '/chat' })
export class ChatGateway implements OnGatewayConnection {
constructor(private readonly jwt: JwtService) {}
async handleConnection(client: Socket): Promise<void> {
try {
const token = client.handshake.auth?.token as string;
client.data.user = await this.jwt.verifyAsync(token);
} catch {
client.emit('error', 'Unauthorized');
client.disconnect();
}
}
}Swapping the Adapter for Scale
Out of the box, Socket.IO state lives in a single process. To run multiple Nest instances behind a load balancer you must share room/emit state. Use a custom adapter with the Redis adapter so broadcasts reach clients on other nodes.
- Subclass
IoAdapterand attach@socket.io/redis-adapterincreateIOServer. - Register it via
app.useWebSocketAdapter(new RedisIoAdapter(app))inmain.ts.
import { IoAdapter } from '@nestjs/platform-socket.io';
import { ServerOptions } from 'socket.io';
import { createAdapter } from '@socket.io/redis-adapter';
import { createClient } from 'redis';
export class RedisIoAdapter extends IoAdapter {
private adapterConstructor: ReturnType<typeof createAdapter>;
async connectToRedis(): Promise<void> {
const pub = createClient({ url: 'redis://localhost:6379' });
const sub = pub.duplicate();
await Promise.all([pub.connect(), sub.connect()]);
this.adapterConstructor = createAdapter(pub, sub);
}
createIOServer(port: number, options?: ServerOptions): any {
const server = super.createIOServer(port, options);
server.adapter(this.adapterConstructor);
return server;
}
}Quick Check
Test your understanding of room broadcasting semantics.
Recap
You built a real-time layer with NestJS WebSocket gateways on the Socket.IO adapter:
- Gateway basics:
@WebSocketGateway()providers with@SubscribeMessagehandlers; inject the server via@WebSocketServer()and the per-client socket via@ConnectedSocket(). - Lifecycle hooks:
afterInit,handleConnection, andhandleDisconnectfor init, presence, and cleanup. - Rooms:
client.join/leave, thenserver.to(room)for everyone orclient.to(room)to exclude the sender. - Robustness: validate payloads with
ValidationPipe(errors becomeWsException), authenticate inhandleConnection, and use acknowledgements/Observables for replies. - Scale: swap in a Redis-backed
IoAdapterso broadcasts work across multiple instances.
Perguntas Frequentes
A aula “Gateways WebSocket com o Adaptador Socket.IO” é grátis?
Sim — o texto completo de “Gateways WebSocket com o Adaptador Socket.IO” é grátis para ler aqui na web. Para praticá-la interativamente (um editor de código integrado e um tutor de IA 24/7) e desbloquear o restante do curso de NestJS Enterprise Backend APIs, atualize para CoddyKit PRO. O curso de NestJS Enterprise Backend APIs inclui 4 aulas no total.
O que vou aprender em “Gateways WebSocket com o Adaptador Socket.IO”?
Implemente manipuladores @WebSocketGateway, salas e ganchos de ciclo de vida para comunicação ao vivo. Você pratica NestJS Enterprise Backend APIs com código prático que executa diretamente no navegador, e um tutor de IA 24/7 responde suas dúvidas enquanto trabalha na aula.
Preciso ter experiência prévia para começar NestJS Enterprise Backend APIs?
Nenhuma experiência prévia é necessária. NestJS Enterprise Backend APIs no CoddyKit é estruturado para alunos iniciantes até avançados, então você pode começar aqui ou desde o início e aprender no seu ritmo. Esta é a aula 1 de 4.
Quanto tempo leva a aula “Gateways WebSocket com o Adaptador Socket.IO”?
A maioria das aulas CoddyKit leva cerca de 5–10 minutos. Cada uma é compacta e interativa, então você faz progresso constante e retoma exatamente de onde parou entre web e app.
Posso escrever e executar código nesta aula de NestJS Enterprise Backend APIs?
Sim. Cada aula de NestJS Enterprise Backend APIs inclui um editor de código integrado, então você escreve e executa código real direto no navegador e recebe feedback de IA instantaneamente — nenhuma configuração local necessária.
Todas as aulas deste curso
- Gateways WebSocket com o Adaptador Socket.IO
- Autenticando e Protegendo Conexões Socket
- Eventos Enviados pelo Servidor para Envio Unidirecional
- Escalando o Tempo Real com um Adaptador Redis Pub/Sub