constructor
http2.Http2ServerResponse.constructor
Not implemented in Bun
Referenced types
interface ServerHttp2Stream
Duplex streams are streams that implement both the Readable and Writable interfaces.
Examples of Duplex streams include:
TCP socketszlib streamscrypto streams
- readonly aborted: boolean
Set to
trueif theHttp2Streaminstance was aborted abnormally. When set, the'aborted'event will have been emitted. - allowHalfOpen: boolean
If
falsethen the stream will automatically end the writable side when the readable side ends. Set initially by theallowHalfOpenconstructor option, which defaults totrue.This can be changed manually to change the half-open behavior of an existing
Duplexstream instance, but must be changed before the'end'event is emitted. - readonly bufferSize: number
This property shows the number of characters currently buffered to be written. See
net.Socket.bufferSizefor details. - readonly destroyed: boolean
Set to
trueif theHttp2Streaminstance has been destroyed and is no longer usable. - readonly endAfterHeaders: boolean
Set to
trueif theEND_STREAMflag was set in the request or response HEADERS frame received, indicating that no additional data should be received and the readable side of theHttp2Streamwill be closed. - readonly id?: number
The numeric stream identifier of this
Http2Streaminstance. Set toundefinedif the stream identifier has not yet been assigned. - readonly pending: boolean
Set to
trueif theHttp2Streaminstance has not yet been assigned a numeric stream identifier. - readonly pushAllowed: boolean
Read-only property mapped to the
SETTINGS_ENABLE_PUSHflag of the remote client's most recentSETTINGSframe. Will betrueif the remote peer accepts push streams,falseotherwise. Settings are the same for everyHttp2Streamin the sameHttp2Session. - readable: boolean
Is
trueif it is safe to call read, which means the stream has not been destroyed or emitted'error'or'end'. - readonly readableAborted: boolean
Returns whether the stream was destroyed or errored before emitting
'end'. - readonly readableEncoding: null | BufferEncoding
Getter for the property
encodingof a givenReadablestream. Theencodingproperty can be set using the setEncoding method. - readableFlowing: null | boolean
This property reflects the current state of a
Readablestream as described in the Three states section. - readonly readableHighWaterMark: number
Returns the value of
highWaterMarkpassed when creating thisReadable. - readonly readableLength: number
This property contains the number of bytes (or objects) in the queue ready to be read. The value provides introspection data regarding the status of the
highWaterMark. - readonly rstCode: number
Set to the
RST_STREAMerror codereported when theHttp2Streamis destroyed after either receiving anRST_STREAMframe from the connected peer, callinghttp2stream.close(), orhttp2stream.destroy(). Will beundefinedif theHttp2Streamhas not been closed. - readonly sentHeaders: OutgoingHttpHeaders
An object containing the outbound headers sent for this
Http2Stream. - readonly sentInfoHeaders?: OutgoingHttpHeaders[]
An array of objects containing the outbound informational (additional) headers sent for this
Http2Stream. - readonly sentTrailers?: OutgoingHttpHeaders
An object containing the outbound trailers sent for this
HttpStream. - readonly session: undefined | Http2Session
A reference to the
Http2Sessioninstance that owns thisHttp2Stream. The value will beundefinedafter theHttp2Streaminstance is destroyed. - readonly state: StreamState
Provides miscellaneous information about the current state of the
Http2Stream.A current state of this
Http2Stream. - writable: boolean
Is
trueif it is safe to callwritable.write(), which means the stream has not been destroyed, errored, or ended. - readonly writableAborted: boolean
Returns whether the stream was destroyed or errored before emitting
'finish'. - readonly writableCorked: number
Number of times
writable.uncork()needs to be called in order to fully uncork the stream. - readonly writableEnded: boolean
Is
trueafterwritable.end()has been called. This property does not indicate whether the data has been flushed, for this usewritable.writableFinishedinstead. - readonly writableHighWaterMark: number
Return the value of
highWaterMarkpassed when creating thisWritable. - readonly writableLength: number
This property contains the number of bytes (or objects) in the queue ready to be written. The value provides introspection data regarding the status of the
highWaterMark. - readonly writableNeedDrain: boolean
Is
trueif the stream's buffer has been full and stream will emit'drain'. Calls
readable.destroy()with anAbortErrorand returns a promise that fulfills when the stream is finished.- @returns
AsyncIteratorto fully consume the stream. - event: string | symbol,...args: any[]): void;
The
Symbol.for('nodejs.rejection')method is called in case a promise rejection happens when emitting an event andcaptureRejectionsis enabled on the emitter. It is possible to useevents.captureRejectionSymbolin place ofSymbol.for('nodejs.rejection').import { EventEmitter, captureRejectionSymbol } from 'node:events'; class MyClass extends EventEmitter { constructor() { super({ captureRejections: true }); } [captureRejectionSymbol](err, event, ...args) { console.log('rejection happened for', event, 'with', err, ...args); this.destroy(err); } destroy(err) { // Tear the resource down here. } } When the
--experimental-stream-iterflag is enabled,Readablestreams implement theStream.toAsyncStreamableprotocol, enabling efficient consumption by thestream/iterAPI.This provides a batched async iterator that drains the stream's internal buffer into
Uint8Array[]batches, amortizing the per-chunk Promise overhead of the standardSymbol.asyncIteratorpath. For byte-mode streams, chunks are yielded directly asBufferinstances (which areUint8Arraysubclasses). For object-mode or encoded streams, each chunk is normalized toUint8Arraybefore batching.The returned iterator is tagged as a validated source, so
from()passes it through without additional normalization.import { Readable } from 'node:stream'; import { text, from } from 'node:stream/iter'; const readable = new Readable({ read() { this.push('hello'); this.push(null); }, }); // Readable is automatically consumed via toAsyncStreamable console.log(await text(from(readable))); // 'hello'Without the
--experimental-stream-iterflag, calling this method throwsERR_STREAM_ITER_MISSING_FLAG.- ): void;
Sends an additional informational
HEADERSframe to the connected HTTP/2 peer. - eventName: E,): this;
Alias for
emitter.on(eventName, listener). - code?: number,callback?: () => void): void;
Closes the
Http2Streaminstance by sending anRST_STREAMframe to the connected HTTP/2 peer.@param codeUnsigned 32-bit integer identifying the error code.
@param callbackAn optional function registered to listen for the
'close'event. import { Readable } from 'node:stream'; async function* splitToWords(source) { for await (const chunk of source) { const words = String(chunk).split(' '); for (const word of words) { yield word; } } } const wordsStream = Readable.from(['text passed through', 'composed stream']).compose(splitToWords); const words = await wordsStream.toArray(); console.log(words); // prints ['text', 'passed', 'through', 'composed', 'stream']readable.compose(s)is equivalent tostream.compose(readable, s).This method also allows for an
AbortSignalto be provided, which will destroy the composed stream when aborted.See
stream.compose(...streams)for more information.@returnsa stream composed with the stream
stream.The
writable.cork()method forces all written data to be buffered in memory. The buffered data will be flushed when either the uncork or end methods are called.The primary intent of
writable.cork()is to accommodate a situation in which several small chunks are written to the stream in rapid succession. Instead of immediately forwarding them to the underlying destination,writable.cork()buffers all the chunks untilwritable.uncork()is called, which will pass them all towritable._writev(), if present. This prevents a head-of-line blocking situation where data is being buffered while waiting for the first small chunk to be processed. However, use ofwritable.cork()without implementingwritable._writev()may have an adverse effect on throughput.See also:
writable.uncork(),writable._writev().- ): this;
Destroy the stream. Optionally emit an
'error'event, and emit a'close'event (unlessemitCloseis set tofalse). After this call, the readable stream will release any internal resources and subsequent calls topush()will be ignored.Once
destroy()has been called any further calls will be a no-op and no further errors except from_destroy()may be emitted as'error'.Implementors should not override this method, but instead implement
readable._destroy().@param errorError which will be passed as payload in
'error'event - eventName: E,): boolean;
Synchronously calls each of the listeners registered for the event named
eventName, in the order they were registered, passing the supplied arguments to each.Returns
trueif the event had listeners,falseotherwise.import { EventEmitter } from 'node:events'; const myEmitter = new EventEmitter(); // First listener myEmitter.on('event', function firstListener() { console.log('Helloooo! first listener'); }); // Second listener myEmitter.on('event', function secondListener(arg1, arg2) { console.log(`event with parameters ${arg1}, ${arg2} in second listener`); }); // Third listener myEmitter.on('event', function thirdListener(...args) { const parameters = args.join(', '); console.log(`event with parameters ${parameters} in third listener`); }); console.log(myEmitter.listeners('event')); myEmitter.emit('event', 1, 2, 3, 4, 5); // Prints: // [ // [Function: firstListener], // [Function: secondListener], // [Function: thirdListener] // ] // Helloooo! first listener // event with parameters 1, 2 in second listener // event with parameters 1, 2, 3, 4, 5 in third listener - end(cb?: () => void): this;
Calling the
writable.end()method signals that no more data will be written to theWritable. The optionalchunkandencodingarguments allow one final additional chunk of data to be written immediately before closing the stream.Calling the write method after calling end will raise an error.
// Write 'hello, ' and then end with 'world!'. import fs from 'node:fs'; const file = fs.createWriteStream('example.txt'); file.write('hello, '); file.end('world!'); // Writing more now is not allowed!@param cbCallback for when the stream is finished.
end(chunk: any,cb?: () => void): this;Signals that no more data will be written, with one final chunk of data.
@param chunkOptional data to write. For streams not operating in object mode,
chunkmust be a {string}, {Buffer}, {TypedArray} or {DataView}. For object mode streams,chunkmay be any JavaScript value other thannull.@param cbCallback for when the stream is finished.
end(chunk: any,encoding: BufferEncoding,cb?: () => void): this;Signals that no more data will be written, with one final chunk of data.
@param chunkOptional data to write. For streams not operating in object mode,
chunkmust be a {string}, {Buffer}, {TypedArray} or {DataView}. For object mode streams,chunkmay be any JavaScript value other thannull.@param encodingThe encoding if
chunkis a string@param cbCallback for when the stream is finished.
Returns an array listing the events for which the emitter has registered listeners.
import { EventEmitter } from 'node:events'; const myEE = new EventEmitter(); myEE.on('foo', () => {}); myEE.on('bar', () => {}); const sym = Symbol('symbol'); myEE.on(sym, () => {}); console.log(myEE.eventNames()); // Prints: [ 'foo', 'bar', Symbol(symbol) ]- ): Promise<boolean>;
This method is similar to
Array.prototype.everyand calls fn on each chunk in the stream to check if all awaited return values are truthy value for fn. Once an fn call on a chunkawaited return value is falsy, the stream is destroyed and the promise is fulfilled withfalse. If all of the fn calls on the chunks return a truthy value, the promise is fulfilled withtrue.@param fna function to call on each chunk of the stream. Async or not.
@returnsa promise evaluating to
trueif fn returned a truthy value for every one of the chunks. This method allows filtering the stream. For each chunk in the stream the fn function will be called and if it returns a truthy value, the chunk will be passed to the result stream. If the fn function returns a promise - that promise will be
awaited.@param fna function to filter chunks from the stream. Async or not.
@returnsa stream filtered with the predicate fn.
- ): Promise<undefined | T>;
This method is similar to
Array.prototype.findand calls fn on each chunk in the stream to find a chunk with a truthy value for fn. Once an fn call's awaited return value is truthy, the stream is destroyed and the promise is fulfilled with value for which fn returned a truthy value. If all of the fn calls on the chunks return a falsy value, the promise is fulfilled withundefined.@param fna function to call on each chunk of the stream. Async or not.
@returnsa promise evaluating to the first chunk for which fn evaluated with a truthy value, or
undefinedif no element was found.find(): Promise<any>;This method is similar to
Array.prototype.findand calls fn on each chunk in the stream to find a chunk with a truthy value for fn. Once an fn call's awaited return value is truthy, the stream is destroyed and the promise is fulfilled with value for which fn returned a truthy value. If all of the fn calls on the chunks return a falsy value, the promise is fulfilled withundefined.@param fna function to call on each chunk of the stream. Async or not.
@returnsa promise evaluating to the first chunk for which fn evaluated with a truthy value, or
undefinedif no element was found. This method returns a new stream by applying the given callback to each chunk of the stream and then flattening the result.
It is possible to return a stream or another iterable or async iterable from fn and the result streams will be merged (flattened) into the returned stream.
@param fna function to map over every chunk in the stream. May be async. May be a stream or generator.
@returnsa stream flat-mapped with the function fn.
- ): Promise<void>;
This method allows iterating a stream. For each chunk in the stream the fn function will be called. If the fn function returns a promise - that promise will be
awaited.This method is different from
for await...ofloops in that it can optionally process chunks concurrently. In addition, aforEachiteration can only be stopped by having passed asignaloption and aborting the related AbortController whilefor await...ofcan be stopped withbreakorreturn. In either case the stream will be destroyed.This method is different from listening to the
'data'event in that it uses thereadableevent in the underlying machinary and can limit the number of concurrent fn calls.@param fna function to call on each chunk of the stream. Async or not.
@returnsa promise for when the stream has finished.
Returns the current max listener value for the
EventEmitterwhich is either set byemitter.setMaxListeners(n)or defaults toevents.defaultMaxListeners.The
readable.isPaused()method returns the current operating state of theReadable. This is used primarily by the mechanism that underlies thereadable.pipe()method. In most typical cases, there will be no reason to use this method directly.const readable = new stream.Readable(); readable.isPaused(); // === false readable.pause(); readable.isPaused(); // === true readable.resume(); readable.isPaused(); // === false- ): AsyncIterator<any>;
The iterator created by this method gives users the option to cancel the destruction of the stream if the
for await...ofloop is exited byreturn,break, orthrow, or if the iterator should destroy the stream if the stream emitted an error during iteration. - eventName: E,): number;
Returns the number of listeners listening for the event named
eventName. Iflisteneris provided, it will return how many times the listener is found in the list of the listeners of the event.@param eventNameThe name of the event being listened for
@param listenerThe event handler function
- eventName: E
Returns a copy of the array of listeners for the event named
eventName.server.on('connection', (stream) => { console.log('someone connected!'); }); console.log(util.inspect(server.listeners('connection'))); // Prints: [ [Function] ] - map(
This method allows mapping over the stream. The fn function will be called for every chunk in the stream. If the fn function returns a promise - that promise will be
awaited before being passed to the result stream.@param fna function to map over every chunk in the stream. Async or not.
@returnsa stream mapped with the function fn.
- eventName: E,): this;
Alias for
emitter.removeListener(). - eventName: E,): this;
Adds the
listenerfunction to the end of the listeners array for the event namedeventName. No checks are made to see if thelistenerhas already been added. Multiple calls passing the same combination ofeventNameandlistenerwill result in thelistenerbeing added, and called, multiple times.server.on('connection', (stream) => { console.log('someone connected!'); });Returns a reference to the
EventEmitter, so that calls can be chained.By default, event listeners are invoked in the order they are added. The
emitter.prependListener()method can be used as an alternative to add the event listener to the beginning of the listeners array.import { EventEmitter } from 'node:events'; const myEE = new EventEmitter(); myEE.on('foo', () => console.log('a')); myEE.prependListener('foo', () => console.log('b')); myEE.emit('foo'); // Prints: // b // a@param eventNameThe name of the event.
@param listenerThe callback function
- eventName: E,): this;
Adds a one-time
listenerfunction for the event namedeventName. The next timeeventNameis triggered, this listener is removed and then invoked.server.once('connection', (stream) => { console.log('Ah, we have our first user!'); });Returns a reference to the
EventEmitter, so that calls can be chained.By default, event listeners are invoked in the order they are added. The
emitter.prependOnceListener()method can be used as an alternative to add the event listener to the beginning of the listeners array.import { EventEmitter } from 'node:events'; const myEE = new EventEmitter(); myEE.once('foo', () => console.log('a')); myEE.prependOnceListener('foo', () => console.log('b')); myEE.emit('foo'); // Prints: // b // a@param eventNameThe name of the event.
@param listenerThe callback function
The
readable.pause()method will cause a stream in flowing mode to stop emitting'data'events, switching out of flowing mode. Any data that becomes available will remain in the internal buffer.const readable = getReadableStreamSomehow(); readable.on('data', (chunk) => { console.log(`Received ${chunk.length} bytes of data.`); readable.pause(); console.log('There will be no additional data for 1 second.'); setTimeout(() => { console.log('Now data will start flowing again.'); readable.resume(); }, 1000); });The
readable.pause()method has no effect if there is a'readable'event listener.- eventName: E,): this;
Adds the
listenerfunction to the beginning of the listeners array for the event namedeventName. No checks are made to see if thelistenerhas already been added. Multiple calls passing the same combination ofeventNameandlistenerwill result in thelistenerbeing added, and called, multiple times.server.prependListener('connection', (stream) => { console.log('someone connected!'); });Returns a reference to the
EventEmitter, so that calls can be chained.@param eventNameThe name of the event.
@param listenerThe callback function
- eventName: E,): this;
Adds a one-time
listenerfunction for the event namedeventNameto the beginning of the listeners array. The next timeeventNameis triggered, this listener is removed, and then invoked.server.prependOnceListener('connection', (stream) => { console.log('Ah, we have our first user!'); });Returns a reference to the
EventEmitter, so that calls can be chained.@param eventNameThe name of the event.
@param listenerThe callback function
- ): void;
Initiates a push stream. The callback is invoked with the new
Http2Streaminstance created for the push stream passed as the second argument, or anErrorpassed as the first argument.import http2 from 'node:http2'; const server = http2.createServer(); server.on('stream', (stream) => { stream.respond({ ':status': 200 }); stream.pushStream({ ':path': '/' }, (err, pushStream, headers) => { if (err) throw err; pushStream.respond({ ':status': 200 }); pushStream.end('some pushed data'); }); stream.end('some data'); });Setting the weight of a push stream is not allowed in the
HEADERSframe. Pass aweightvalue tohttp2stream.prioritywith thesilentoption set totrueto enable server-side bandwidth balancing between concurrent streams.Calling
http2stream.pushStream()from within a pushed stream is not permitted and will throw an error.@param callbackCallback that is called once the push stream has been initiated.
): void; - eventName: E
Returns a copy of the array of listeners for the event named
eventName, including any wrappers (such as those created by.once()).import { EventEmitter } from 'node:events'; const emitter = new EventEmitter(); emitter.once('log', () => console.log('log once')); // Returns a new Array with a function `onceWrapper` which has a property // `listener` which contains the original listener bound above const listeners = emitter.rawListeners('log'); const logFnWrapper = listeners[0]; // Logs "log once" to the console and does not unbind the `once` event logFnWrapper.listener(); // Logs "log once" to the console and removes the listener logFnWrapper(); emitter.on('log', () => console.log('log persistently')); // Will return a new Array with a single function bound by `.on()` above const newListeners = emitter.rawListeners('log'); // Logs "log persistently" twice newListeners[0](); emitter.emit('log'); - read(size?: number): any;
The
readable.read()method reads data out of the internal buffer and returns it. If no data is available to be read,nullis returned. By default, the data is returned as aBufferobject unless an encoding has been specified using thereadable.setEncoding()method or the stream is operating in object mode.The optional
sizeargument specifies a specific number of bytes to read. Ifsizebytes are not available to be read,nullwill be returned unless the stream has ended, in which case all of the data remaining in the internal buffer will be returned.If the
sizeargument is not specified, all of the data contained in the internal buffer will be returned.The
sizeargument must be less than or equal to 1 GiB.The
readable.read()method should only be called onReadablestreams operating in paused mode. In flowing mode,readable.read()is called automatically until the internal buffer is fully drained.const readable = getReadableStreamSomehow(); // 'readable' may be triggered multiple times as data is buffered in readable.on('readable', () => { let chunk; console.log('Stream is readable (new data received in buffer)'); // Use a loop to make sure we read all currently available data while (null !== (chunk = readable.read())) { console.log(`Read ${chunk.length} bytes of data...`); } }); // 'end' will be triggered once when there is no more data available readable.on('end', () => { console.log('Reached end of stream.'); });Each call to
readable.read()returns a chunk of data, ornull. The chunks are not concatenated. Awhileloop is necessary to consume all data currently in the buffer. When reading a large file.read()may returnnull, having consumed all buffered content so far, but there is still more data to come not yet buffered. In this case a new'readable'event will be emitted when there is more data in the buffer. Finally the'end'event will be emitted when there is no more data to come.Therefore to read a file's whole contents from a
readable, it is necessary to collect chunks across multiple'readable'events:const chunks = []; readable.on('readable', () => { let chunk; while (null !== (chunk = readable.read())) { chunks.push(chunk); } }); readable.on('end', () => { const content = chunks.join(''); });A
Readablestream in object mode will always return a single item from a call toreadable.read(size), regardless of the value of thesizeargument.If the
readable.read()method returns a chunk of data, a'data'event will also be emitted.Calling read after the
'end'event has been emitted will returnnull. No runtime error will be raised.@param sizeOptional argument to specify how much data to read.
- ): Promise<T>;
This method calls fn on each chunk of the stream in order, passing it the result from the calculation on the previous element. It returns a promise for the final value of the reduction.
If no initial value is supplied the first chunk of the stream is used as the initial value. If the stream is empty, the promise is rejected with a
TypeErrorwith theERR_INVALID_ARGScode property.The reducer function iterates the stream element-by-element which means that there is no concurrency parameter or parallelism. To perform a reduce concurrently, you can extract the async function to
readable.mapmethod.@param fna reducer function to call over every chunk in the stream. Async or not.
@returnsa promise for the final value of the reduction.
initial: T,): Promise<T>;This method calls fn on each chunk of the stream in order, passing it the result from the calculation on the previous element. It returns a promise for the final value of the reduction.
If no initial value is supplied the first chunk of the stream is used as the initial value. If the stream is empty, the promise is rejected with a
TypeErrorwith theERR_INVALID_ARGScode property.The reducer function iterates the stream element-by-element which means that there is no concurrency parameter or parallelism. To perform a reduce concurrently, you can extract the async function to
readable.mapmethod.@param fna reducer function to call over every chunk in the stream. Async or not.
@param initialthe initial value to use in the reduction.
@returnsa promise for the final value of the reduction.
- eventName?: E): this;
Removes all listeners, or those of the specified
eventName.It is bad practice to remove listeners added elsewhere in the code, particularly when the
EventEmitterinstance was created by some other component or module (e.g. sockets or file streams).Returns a reference to the
EventEmitter, so that calls can be chained. - eventName: E,): this;
Removes the specified
listenerfrom the listener array for the event namedeventName.const callback = (stream) => { console.log('someone connected!'); }; server.on('connection', callback); // ... server.removeListener('connection', callback);removeListener()will remove, at most, one instance of a listener from the listener array. If any single listener has been added multiple times to the listener array for the specifiedeventName, thenremoveListener()must be called multiple times to remove each instance.Once an event is emitted, all listeners attached to it at the time of emitting are called in order. This implies that any
removeListener()orremoveAllListeners()calls after emitting and before the last listener finishes execution will not remove them fromemit()in progress. Subsequent events behave as expected.import { EventEmitter } from 'node:events'; class MyEmitter extends EventEmitter {} const myEmitter = new MyEmitter(); const callbackA = () => { console.log('A'); myEmitter.removeListener('event', callbackB); }; const callbackB = () => { console.log('B'); }; myEmitter.on('event', callbackA); myEmitter.on('event', callbackB); // callbackA removes listener callbackB but it will still be called. // Internal listener array at time of emit [callbackA, callbackB] myEmitter.emit('event'); // Prints: // A // B // callbackB is now removed. // Internal listener array [callbackA] myEmitter.emit('event'); // Prints: // ABecause listeners are managed using an internal array, calling this will change the position indexes of any listener registered after the listener being removed. This will not impact the order in which listeners are called, but it means that any copies of the listener array as returned by the
emitter.listeners()method will need to be recreated.When a single function has been added as a handler multiple times for a single event (as in the example below),
removeListener()will remove the most recently added instance. In the example theonce('ping')listener is removed:import { EventEmitter } from 'node:events'; const ee = new EventEmitter(); function pong() { console.log('pong'); } ee.on('ping', pong); ee.once('ping', pong); ee.removeListener('ping', pong); ee.emit('ping'); ee.emit('ping');Returns a reference to the
EventEmitter, so that calls can be chained. - ): void;
import http2 from 'node:http2'; const server = http2.createServer(); server.on('stream', (stream) => { stream.respond({ ':status': 200 }); stream.end('some data'); });Initiates a response. When the
options.waitForTrailersoption is set, the'wantTrailers'event will be emitted immediately after queuing the last chunk of payload data to be sent. Thehttp2stream.sendTrailers()method can then be used to send trailing header fields to the peer.When
options.waitForTrailersis set, theHttp2Streamwill not automatically close when the finalDATAframe is transmitted. User code must call eitherhttp2stream.sendTrailers()orhttp2stream.close()to close theHttp2Stream.import http2 from 'node:http2'; const server = http2.createServer(); server.on('stream', (stream) => { stream.respond({ ':status': 200 }, { waitForTrailers: true }); stream.on('wantTrailers', () => { stream.sendTrailers({ ABC: 'some value to send' }); }); stream.end('some data'); }); - ): void;
Initiates a response whose data is read from the given file descriptor. No validation is performed on the given file descriptor. If an error occurs while attempting to read data using the file descriptor, the
Http2Streamwill be closed using anRST_STREAMframe using the standardINTERNAL_ERRORcode.When used, the
Http2Streamobject'sDuplexinterface will be closed automatically.import http2 from 'node:http2'; import fs from 'node:fs'; const server = http2.createServer(); server.on('stream', (stream) => { const fd = fs.openSync('/some/file', 'r'); const stat = fs.fstatSync(fd); const headers = { 'content-length': stat.size, 'last-modified': stat.mtime.toUTCString(), 'content-type': 'text/plain; charset=utf-8', }; stream.respondWithFD(fd, headers); stream.on('close', () => fs.closeSync(fd)); });The optional
options.statCheckfunction may be specified to give user code an opportunity to set additional content headers based on thefs.Statdetails of the given fd. If thestatCheckfunction is provided, thehttp2stream.respondWithFD()method will perform anfs.fstat()call to collect details on the provided file descriptor.The
offsetandlengthoptions may be used to limit the response to a specific range subset. This can be used, for instance, to support HTTP Range requests.The file descriptor or
FileHandleis not closed when the stream is closed, so it will need to be closed manually once it is no longer needed. Using the same file descriptor concurrently for multiple streams is not supported and may result in data loss. Re-using a file descriptor after a stream has finished is supported.When the
options.waitForTrailersoption is set, the'wantTrailers'event will be emitted immediately after queuing the last chunk of payload data to be sent. Thehttp2stream.sendTrailers()method can then be used to sent trailing header fields to the peer.When
options.waitForTrailersis set, theHttp2Streamwill not automatically close when the finalDATAframe is transmitted. User code must call eitherhttp2stream.sendTrailers()orhttp2stream.close()to close theHttp2Stream.import http2 from 'node:http2'; import fs from 'node:fs'; const server = http2.createServer(); server.on('stream', (stream) => { const fd = fs.openSync('/some/file', 'r'); const stat = fs.fstatSync(fd); const headers = { 'content-length': stat.size, 'last-modified': stat.mtime.toUTCString(), 'content-type': 'text/plain; charset=utf-8', }; stream.respondWithFD(fd, headers, { waitForTrailers: true }); stream.on('wantTrailers', () => { stream.sendTrailers({ ABC: 'some value to send' }); }); stream.on('close', () => fs.closeSync(fd)); });@param fdA readable file descriptor.
- path: string,): void;
Sends a regular file as the response. The
pathmust specify a regular file or an'error'event will be emitted on theHttp2Streamobject.When used, the
Http2Streamobject'sDuplexinterface will be closed automatically.The optional
options.statCheckfunction may be specified to give user code an opportunity to set additional content headers based on thefs.Statdetails of the given file:If an error occurs while attempting to read the file data, the
Http2Streamwill be closed using anRST_STREAMframe using the standardINTERNAL_ERRORcode. If theonErrorcallback is defined, then it will be called. Otherwise, the stream will be destroyed.Example using a file path:
import http2 from 'node:http2'; const server = http2.createServer(); server.on('stream', (stream) => { function statCheck(stat, headers) { headers['last-modified'] = stat.mtime.toUTCString(); } function onError(err) { // stream.respond() can throw if the stream has been destroyed by // the other side. try { if (err.code === 'ENOENT') { stream.respond({ ':status': 404 }); } else { stream.respond({ ':status': 500 }); } } catch (err) { // Perform actual error handling. console.error(err); } stream.end(); } stream.respondWithFile('/some/file', { 'content-type': 'text/plain; charset=utf-8' }, { statCheck, onError }); });The
options.statCheckfunction may also be used to cancel the send operation by returningfalse. For instance, a conditional request may check the stat results to determine if the file has been modified to return an appropriate304response:import http2 from 'node:http2'; const server = http2.createServer(); server.on('stream', (stream) => { function statCheck(stat, headers) { // Check the stat here... stream.respond({ ':status': 304 }); return false; // Cancel the send operation } stream.respondWithFile('/some/file', { 'content-type': 'text/plain; charset=utf-8' }, { statCheck }); });The
content-lengthheader field will be automatically set.The
offsetandlengthoptions may be used to limit the response to a specific range subset. This can be used, for instance, to support HTTP Range requests.The
options.onErrorfunction may also be used to handle all the errors that could happen before the delivery of the file is initiated. The default behavior is to destroy the stream.When the
options.waitForTrailersoption is set, the'wantTrailers'event will be emitted immediately after queuing the last chunk of payload data to be sent. Thehttp2stream.sendTrailers()method can then be used to sent trailing header fields to the peer.When
options.waitForTrailersis set, theHttp2Streamwill not automatically close when the finalDATAframe is transmitted. User code must call eitherhttp2stream.sendTrailers()orhttp2stream.close()to close theHttp2Stream.import http2 from 'node:http2'; const server = http2.createServer(); server.on('stream', (stream) => { stream.respondWithFile('/some/file', { 'content-type': 'text/plain; charset=utf-8' }, { waitForTrailers: true }); stream.on('wantTrailers', () => { stream.sendTrailers({ ABC: 'some value to send' }); }); }); The
readable.resume()method causes an explicitly pausedReadablestream to resume emitting'data'events, switching the stream into flowing mode.The
readable.resume()method can be used to fully consume the data from a stream without actually processing any of that data:getReadableStreamSomehow() .resume() .on('end', () => { console.log('Reached the end, but did not read anything.'); });The
readable.resume()method has no effect if there is a'readable'event listener.- ): void;
Sends a trailing
HEADERSframe to the connected HTTP/2 peer. This method will cause theHttp2Streamto be immediately closed and must only be called after the'wantTrailers'event has been emitted. When sending a request or sending a response, theoptions.waitForTrailersoption must be set in order to keep theHttp2Streamopen after the finalDATAframe so that trailers can be sent.import http2 from 'node:http2'; const server = http2.createServer(); server.on('stream', (stream) => { stream.respond(undefined, { waitForTrailers: true }); stream.on('wantTrailers', () => { stream.sendTrailers({ xyz: 'abc' }); }); stream.end('Hello World'); });The HTTP/1 specification forbids trailers from containing HTTP/2 pseudo-header fields (e.g.
':method',':path', etc). - encoding: BufferEncoding): this;
The
writable.setDefaultEncoding()method sets the defaultencodingfor aWritablestream.@param encodingThe new default encoding
- encoding: BufferEncoding): this;
The
readable.setEncoding()method sets the character encoding for data read from theReadablestream.By default, no encoding is assigned and stream data will be returned as
Bufferobjects. Setting an encoding causes the stream data to be returned as strings of the specified encoding rather than asBufferobjects. For instance, callingreadable.setEncoding('utf8')will cause the output data to be interpreted as UTF-8 data, and passed as strings. Callingreadable.setEncoding('hex')will cause the data to be encoded in hexadecimal string format.The
Readablestream will properly handle multi-byte characters delivered through the stream that would otherwise become improperly decoded if simply pulled from the stream asBufferobjects.const readable = getReadableStreamSomehow(); readable.setEncoding('utf8'); readable.on('data', (chunk) => { assert.equal(typeof chunk, 'string'); console.log('Got %d characters of string data:', chunk.length); });@param encodingThe encoding to use.
- n: number): this;
By default
EventEmitters will print a warning if more than10listeners are added for a particular event. This is a useful default that helps finding memory leaks. Theemitter.setMaxListeners()method allows the limit to be modified for this specificEventEmitterinstance. The value can be set toInfinity(or0) to indicate an unlimited number of listeners.Returns a reference to the
EventEmitter, so that calls can be chained. - msecs: number,callback?: () => void): void;
import http2 from 'node:http2'; const client = http2.connect('http://example.org:8000'); const { NGHTTP2_CANCEL } = http2.constants; const req = client.request({ ':path': '/' }); // Cancel the stream if there's no activity after 5 seconds req.setTimeout(5000, () => req.close(NGHTTP2_CANCEL)); - some(): Promise<boolean>;
This method is similar to
Array.prototype.someand calls fn on each chunk in the stream until the awaited return value istrue(or any truthy value). Once an fn call on a chunkawaited return value is truthy, the stream is destroyed and the promise is fulfilled withtrue. If none of the fn calls on the chunks return a truthy value, the promise is fulfilled withfalse.@param fna function to call on each chunk of the stream. Async or not.
@returnsa promise evaluating to
trueif fn returned a truthy value for at least one of the chunks. - ): Promise<any[]>;
This method allows easily obtaining the contents of a stream.
As this method reads the entire stream into memory, it negates the benefits of streams. It's intended for interoperability and convenience, not as the primary way to consume streams.
@returnsa promise containing an array with the contents of the stream.
The
writable.uncork()method flushes all data buffered since cork was called.When using
writable.cork()andwritable.uncork()to manage the buffering of writes to a stream, defer calls towritable.uncork()usingprocess.nextTick(). Doing so allows batching of allwritable.write()calls that occur within a given Node.js event loop phase.stream.cork(); stream.write('some '); stream.write('data '); process.nextTick(() => stream.uncork());If the
writable.cork()method is called multiple times on a stream, the same number of calls towritable.uncork()must be called to flush the buffered data.stream.cork(); stream.write('some '); stream.cork(); stream.write('data '); process.nextTick(() => { stream.uncork(); // The data will not be flushed until uncork() is called a second time. stream.uncork(); });See also:
writable.cork().- destination?: WritableStream): this;
The
readable.unpipe()method detaches aWritablestream previously attached using the pipe method.If the
destinationis not specified, then all pipes are detached.If the
destinationis specified, but no pipe is set up for it, then the method does nothing.import fs from 'node:fs'; const readable = getReadableStreamSomehow(); const writable = fs.createWriteStream('file.txt'); // All the data from readable goes into 'file.txt', // but only for the first second. readable.pipe(writable); setTimeout(() => { console.log('Stop writing to file.txt.'); readable.unpipe(writable); console.log('Manually close the file stream.'); writable.end(); }, 1000);@param destinationOptional specific stream to unpipe
- chunk: any,encoding?: BufferEncoding): void;
Passing
chunkasnullsignals the end of the stream (EOF) and behaves the same asreadable.push(null), after which no more data can be written. The EOF signal is put at the end of the buffer and any buffered data will still be flushed.The
readable.unshift()method pushes a chunk of data back into the internal buffer. This is useful in certain situations where a stream is being consumed by code that needs to "un-consume" some amount of data that it has optimistically pulled out of the source, so that the data can be passed on to some other party.The
stream.unshift(chunk)method cannot be called after the'end'event has been emitted or a runtime error will be thrown.Developers using
stream.unshift()often should consider switching to use of aTransformstream instead. See theAPI for stream implementerssection for more information.// Pull off a header delimited by \n\n. // Use unshift() if we get too much. // Call the callback with (error, header, stream). import { StringDecoder } from 'node:string_decoder'; function parseHeader(stream, callback) { stream.on('error', callback); stream.on('readable', onReadable); const decoder = new StringDecoder('utf8'); let header = ''; function onReadable() { let chunk; while (null !== (chunk = stream.read())) { const str = decoder.write(chunk); if (str.includes('\n\n')) { // Found the header boundary. const split = str.split(/\n\n/); header += split.shift(); const remaining = split.join('\n\n'); const buf = Buffer.from(remaining, 'utf8'); stream.removeListener('error', callback); // Remove the 'readable' listener before unshifting. stream.removeListener('readable', onReadable); if (buf.length) stream.unshift(buf); // Now the body of the message can be read from the stream. callback(null, header, stream); return; } // Still reading the header. header += str; } } }Unlike push,
stream.unshift(chunk)will not end the reading process by resetting the internal reading state of the stream. This can cause unexpected results ifreadable.unshift()is called during a read (i.e. from within a _read implementation on a custom stream). Following the call toreadable.unshift()with an immediate push will reset the reading state appropriately, however it is best to simply avoid callingreadable.unshift()while in the process of performing a read.@param chunkChunk of data to unshift onto the read queue. For streams not operating in object mode,
chunkmust be a {string}, {Buffer}, {TypedArray}, {DataView} ornull. For object mode streams,chunkmay be any JavaScript value.@param encodingEncoding of string chunks. Must be a valid
Bufferencoding, such as'utf8'or'ascii'. - wrap(stream: ReadableStream): this;
Prior to Node.js 0.10, streams did not implement the entire
node:streammodule API as it is currently defined. (SeeCompatibilityfor more information.)When using an older Node.js library that emits
'data'events and has a pause method that is advisory only, thereadable.wrap()method can be used to create aReadablestream that uses the old stream as its data source.It will rarely be necessary to use
readable.wrap()but the method has been provided as a convenience for interacting with older Node.js applications and libraries.import { OldReader } from './old-api-module.js'; import { Readable } from 'node:stream'; const oreader = new OldReader(); const myReader = new Readable().wrap(oreader); myReader.on('readable', () => { myReader.read(); // etc. });@param streamAn "old style" readable stream
- chunk: any,): boolean;
The
writable.write()method writes some data to the stream, and calls the suppliedcallbackonce the data has been fully handled. If an error occurs, thecallbackwill be called with the error as its first argument. Thecallbackis called asynchronously and before'error'is emitted.The return value is
trueif the internal buffer is less than thehighWaterMarkconfigured when the stream was created after admittingchunk. Iffalseis returned, further attempts to write data to the stream should stop until the'drain'event is emitted.While a stream is not draining, calls to
write()will bufferchunk, and return false. Once all currently buffered chunks are drained (accepted for delivery by the operating system), the'drain'event will be emitted. Oncewrite()returns false, do not write more chunks until the'drain'event is emitted. While callingwrite()on a stream that is not draining is allowed, Node.js will buffer all written chunks until maximum memory usage occurs, at which point it will abort unconditionally. Even before it aborts, high memory usage will cause poor garbage collector performance and high RSS (which is not typically released back to the system, even after the memory is no longer required). Since TCP sockets may never drain if the remote peer does not read the data, writing a socket that is not draining may lead to a remotely exploitable vulnerability.Writing data while the stream is not draining is particularly problematic for a
Transform, because theTransformstreams are paused by default until they are piped or a'data'or'readable'event handler is added.If the data to be written can be generated or fetched on demand, it is recommended to encapsulate the logic into a
Readableand use pipe. However, if callingwrite()is preferred, it is possible to respect backpressure and avoid memory issues using the'drain'event:function write(data, cb) { if (!stream.write(data)) { stream.once('drain', cb); } else { process.nextTick(cb); } } // Wait for cb to be called before doing any other write. write('hello', () => { console.log('Write completed, do more writes now.'); });A
Writablestream in object mode will always ignore theencodingargument.@param chunkOptional data to write. For streams not operating in object mode,
chunkmust be a {string}, {Buffer}, {TypedArray} or {DataView}. For object mode streams,chunkmay be any JavaScript value other thannull.@param callbackCallback for when this chunk of data is flushed.
@returnsfalseif the stream wishes for the calling code to wait for the'drain'event to be emitted before continuing to write additional data; otherwisetrue.chunk: any,encoding: BufferEncoding,): boolean;Writes data to the stream, with an explicit encoding for string data.
@param chunkOptional data to write. For streams not operating in object mode,
chunkmust be a {string}, {Buffer}, {TypedArray} or {DataView}. For object mode streams,chunkmay be any JavaScript value other thannull.@param encodingThe encoding, if
chunkis a string.@param callbackCallback for when this chunk of data is flushed.
@returnsfalseif the stream wishes for the calling code to wait for the'drain'event to be emitted before continuing to write additional data; otherwisetrue.
class Http2ServerResponse<Request extends Http2ServerRequest = Http2ServerRequest>
This object is created internally by an HTTP server, not by the user. It is passed as the second parameter to the 'request' event.
- sendDate: boolean
When true, the Date header will be automatically generated and sent in the response if it is not already present in the headers. Defaults to true.
This should only be disabled for testing; HTTP requires the Date header in responses.
- readonly socket: Socket | TLSSocket
Returns a
Proxyobject that acts as anet.Socket(ortls.TLSSocket) but applies getters, setters, and methods based on HTTP/2 logic.destroyed,readable, andwritableproperties will be retrieved from and set onresponse.stream.destroy,emit,end,onandoncemethods will be called onresponse.stream.setTimeoutmethod will be called onresponse.stream.session.pause,read,resume, andwritewill throw an error with codeERR_HTTP2_NO_SOCKET_MANIPULATION. SeeHttp2Session and Socketsfor more information.All other interactions will be routed directly to the socket.
import http2 from 'node:http2'; const server = http2.createServer((req, res) => { const ip = req.socket.remoteAddress; const port = req.socket.remotePort; res.end(`Your IP address is ${ip} and your source port is ${port}.`); }).listen(3000); - statusCode: number
When using implicit headers (not calling
response.writeHead()explicitly), this property controls the status code that will be sent to the client when the headers get flushed.response.statusCode = 404;After response header was sent to the client, this property indicates the status code which was sent out.
- statusMessage: ''
Status message is not supported by HTTP/2 (RFC 7540 8.1.2.4). It returns an empty string.
- writable: boolean
Is
trueif it is safe to callwritable.write(), which means the stream has not been destroyed, errored, or ended. - readonly writableAborted: boolean
Returns whether the stream was destroyed or errored before emitting
'finish'. - readonly writableCorked: number
Number of times
writable.uncork()needs to be called in order to fully uncork the stream. - readonly writableEnded: boolean
Is
trueafterwritable.end()has been called. This property does not indicate whether the data has been flushed, for this usewritable.writableFinishedinstead. - readonly writableHighWaterMark: number
Return the value of
highWaterMarkpassed when creating thisWritable. - readonly writableLength: number
This property contains the number of bytes (or objects) in the queue ready to be written. The value provides introspection data regarding the status of the
highWaterMark. - readonly writableNeedDrain: boolean
Is
trueif the stream's buffer has been full and stream will emit'drain'. Calls
writable.destroy()with anAbortErrorand returns a promise that fulfills when the stream is finished.- event: string | symbol,...args: any[]): void;
The
Symbol.for('nodejs.rejection')method is called in case a promise rejection happens when emitting an event andcaptureRejectionsis enabled on the emitter. It is possible to useevents.captureRejectionSymbolin place ofSymbol.for('nodejs.rejection').import { EventEmitter, captureRejectionSymbol } from 'node:events'; class MyClass extends EventEmitter { constructor() { super({ captureRejections: true }); } [captureRejectionSymbol](err, event, ...args) { console.log('rejection happened for', event, 'with', err, ...args); this.destroy(err); } destroy(err) { // Tear the resource down here. } } - eventName: E,): this;
Alias for
emitter.on(eventName, listener). - ): void;
This method adds HTTP trailing headers (a header but at the end of the message) to the response.
Attempting to set a header field name or value that contains invalid characters will result in a
TypeErrorbeing thrown. - name: string,value: string | string[]): void;
Append a single header value to the header object.
If the value is an array, this is equivalent to calling this method multiple times.
If there were no previous values for the header, this is equivalent to calling setHeader.
Attempting to set a header field name or value that contains invalid characters will result in a TypeError being thrown.
// Returns headers including "set-cookie: a" and "set-cookie: b" const server = http2.createServer((req, res) => { res.setHeader('set-cookie', 'a'); res.appendHeader('set-cookie', 'b'); res.writeHead(200); res.end('ok'); }); The
writable.cork()method forces all written data to be buffered in memory. The buffered data will be flushed when either the uncork or end methods are called.The primary intent of
writable.cork()is to accommodate a situation in which several small chunks are written to the stream in rapid succession. Instead of immediately forwarding them to the underlying destination,writable.cork()buffers all the chunks untilwritable.uncork()is called, which will pass them all towritable._writev(), if present. This prevents a head-of-line blocking situation where data is being buffered while waiting for the first small chunk to be processed. However, use ofwritable.cork()without implementingwritable._writev()may have an adverse effect on throughput.See also:
writable.uncork(),writable._writev().- ): void;
Call
http2stream.pushStream()with the given headers, and wrap the givenHttp2Streamon a newly createdHttp2ServerResponseas the callback parameter if successful. WhenHttp2ServerRequestis closed, the callback is called with an errorERR_HTTP2_INVALID_STREAM.@param headersAn object describing the headers
@param callbackCalled once
http2stream.pushStream()is finished, or either when the attempt to create the pushedHttp2Streamhas failed or has been rejected, or the state ofHttp2ServerRequestis closed prior to calling thehttp2stream.pushStream()method - ): this;
Destroy the stream. Optionally emit an
'error'event, and emit a'close'event (unlessemitCloseis set tofalse). After this call, the writable stream has ended and subsequent calls towrite()orend()will result in anERR_STREAM_DESTROYEDerror. This is a destructive and immediate way to destroy a stream. Previous calls towrite()may not have drained, and may trigger anERR_STREAM_DESTROYEDerror. Useend()instead of destroy if data should flush before close, or wait for the'drain'event before destroying the stream.Once
destroy()has been called any further calls will be a no-op and no further errors except from_destroy()may be emitted as'error'.Implementors should not override this method, but instead implement
writable._destroy().@param errorOptional, an error to emit with
'error'event. - eventName: E,): boolean;
Synchronously calls each of the listeners registered for the event named
eventName, in the order they were registered, passing the supplied arguments to each.Returns
trueif the event had listeners,falseotherwise.import { EventEmitter } from 'node:events'; const myEmitter = new EventEmitter(); // First listener myEmitter.on('event', function firstListener() { console.log('Helloooo! first listener'); }); // Second listener myEmitter.on('event', function secondListener(arg1, arg2) { console.log(`event with parameters ${arg1}, ${arg2} in second listener`); }); // Third listener myEmitter.on('event', function thirdListener(...args) { const parameters = args.join(', '); console.log(`event with parameters ${parameters} in third listener`); }); console.log(myEmitter.listeners('event')); myEmitter.emit('event', 1, 2, 3, 4, 5); // Prints: // [ // [Function: firstListener], // [Function: secondListener], // [Function: thirdListener] // ] // Helloooo! first listener // event with parameters 1, 2 in second listener // event with parameters 1, 2, 3, 4, 5 in third listener - end(callback?: () => void): this;
This method signals to the server that all of the response headers and body have been sent; that server should consider this message complete. The method,
response.end(), MUST be called on each response.If
datais specified, it is equivalent to callingresponse.write(data, encoding)followed byresponse.end(callback).If
callbackis specified, it will be called when the response stream is finished.end(callback?: () => void): this;Signals that no more data will be written, with one final chunk of data.
end(encoding: BufferEncoding,callback?: () => void): this;Signals that no more data will be written, with one final chunk of data.
@param encodingThe encoding if
chunkis a string Returns an array listing the events for which the emitter has registered listeners.
import { EventEmitter } from 'node:events'; const myEE = new EventEmitter(); myEE.on('foo', () => {}); myEE.on('bar', () => {}); const sym = Symbol('symbol'); myEE.on(sym, () => {}); console.log(myEE.eventNames()); // Prints: [ 'foo', 'bar', Symbol(symbol) ]- name: string): string;
Reads out a header that has already been queued but not sent to the client. The name is case-insensitive.
const contentType = response.getHeader('content-type'); Returns an array containing the unique names of the current outgoing headers. All header names are lowercase.
response.setHeader('Foo', 'bar'); response.setHeader('Set-Cookie', ['foo=bar', 'bar=baz']); const headerNames = response.getHeaderNames(); // headerNames === ['foo', 'set-cookie']Returns a shallow copy of the current outgoing headers. Since a shallow copy is used, array values may be mutated without additional calls to various header-related http module methods. The keys of the returned object are the header names and the values are the respective header values. All header names are lowercase.
The object returned by the
response.getHeaders()method does not prototypically inherit from the JavaScriptObject. This means that typicalObjectmethods such asobj.toString(),obj.hasOwnProperty(), and others are not defined and will not work.response.setHeader('Foo', 'bar'); response.setHeader('Set-Cookie', ['foo=bar', 'bar=baz']); const headers = response.getHeaders(); // headers === { foo: 'bar', 'set-cookie': ['foo=bar', 'bar=baz'] }Returns the current max listener value for the
EventEmitterwhich is either set byemitter.setMaxListeners(n)or defaults toevents.defaultMaxListeners.- name: string): boolean;
Returns
trueif the header identified bynameis currently set in the outgoing headers. The header name matching is case-insensitive.const hasContentType = response.hasHeader('content-type'); - eventName: E,): number;
Returns the number of listeners listening for the event named
eventName. Iflisteneris provided, it will return how many times the listener is found in the list of the listeners of the event.@param eventNameThe name of the event being listened for
@param listenerThe event handler function
- eventName: E
Returns a copy of the array of listeners for the event named
eventName.server.on('connection', (stream) => { console.log('someone connected!'); }); console.log(util.inspect(server.listeners('connection'))); // Prints: [ [Function] ] - eventName: E,): this;
Alias for
emitter.removeListener(). - eventName: E,): this;
Adds the
listenerfunction to the end of the listeners array for the event namedeventName. No checks are made to see if thelistenerhas already been added. Multiple calls passing the same combination ofeventNameandlistenerwill result in thelistenerbeing added, and called, multiple times.server.on('connection', (stream) => { console.log('someone connected!'); });Returns a reference to the
EventEmitter, so that calls can be chained.By default, event listeners are invoked in the order they are added. The
emitter.prependListener()method can be used as an alternative to add the event listener to the beginning of the listeners array.import { EventEmitter } from 'node:events'; const myEE = new EventEmitter(); myEE.on('foo', () => console.log('a')); myEE.prependListener('foo', () => console.log('b')); myEE.emit('foo'); // Prints: // b // a@param eventNameThe name of the event.
@param listenerThe callback function
- eventName: E,): this;
Adds a one-time
listenerfunction for the event namedeventName. The next timeeventNameis triggered, this listener is removed and then invoked.server.once('connection', (stream) => { console.log('Ah, we have our first user!'); });Returns a reference to the
EventEmitter, so that calls can be chained.By default, event listeners are invoked in the order they are added. The
emitter.prependOnceListener()method can be used as an alternative to add the event listener to the beginning of the listeners array.import { EventEmitter } from 'node:events'; const myEE = new EventEmitter(); myEE.once('foo', () => console.log('a')); myEE.prependOnceListener('foo', () => console.log('b')); myEE.emit('foo'); // Prints: // b // a@param eventNameThe name of the event.
@param listenerThe callback function
- eventName: E,): this;
Adds the
listenerfunction to the beginning of the listeners array for the event namedeventName. No checks are made to see if thelistenerhas already been added. Multiple calls passing the same combination ofeventNameandlistenerwill result in thelistenerbeing added, and called, multiple times.server.prependListener('connection', (stream) => { console.log('someone connected!'); });Returns a reference to the
EventEmitter, so that calls can be chained.@param eventNameThe name of the event.
@param listenerThe callback function
- eventName: E,): this;
Adds a one-time
listenerfunction for the event namedeventNameto the beginning of the listeners array. The next timeeventNameis triggered, this listener is removed, and then invoked.server.prependOnceListener('connection', (stream) => { console.log('Ah, we have our first user!'); });Returns a reference to the
EventEmitter, so that calls can be chained.@param eventNameThe name of the event.
@param listenerThe callback function
- eventName: E
Returns a copy of the array of listeners for the event named
eventName, including any wrappers (such as those created by.once()).import { EventEmitter } from 'node:events'; const emitter = new EventEmitter(); emitter.once('log', () => console.log('log once')); // Returns a new Array with a function `onceWrapper` which has a property // `listener` which contains the original listener bound above const listeners = emitter.rawListeners('log'); const logFnWrapper = listeners[0]; // Logs "log once" to the console and does not unbind the `once` event logFnWrapper.listener(); // Logs "log once" to the console and removes the listener logFnWrapper(); emitter.on('log', () => console.log('log persistently')); // Will return a new Array with a single function bound by `.on()` above const newListeners = emitter.rawListeners('log'); // Logs "log persistently" twice newListeners[0](); emitter.emit('log'); - eventName?: E): this;
Removes all listeners, or those of the specified
eventName.It is bad practice to remove listeners added elsewhere in the code, particularly when the
EventEmitterinstance was created by some other component or module (e.g. sockets or file streams).Returns a reference to the
EventEmitter, so that calls can be chained. - name: string): void;
Removes a header that has been queued for implicit sending.
response.removeHeader('Content-Encoding'); - eventName: E,): this;
Removes the specified
listenerfrom the listener array for the event namedeventName.const callback = (stream) => { console.log('someone connected!'); }; server.on('connection', callback); // ... server.removeListener('connection', callback);removeListener()will remove, at most, one instance of a listener from the listener array. If any single listener has been added multiple times to the listener array for the specifiedeventName, thenremoveListener()must be called multiple times to remove each instance.Once an event is emitted, all listeners attached to it at the time of emitting are called in order. This implies that any
removeListener()orremoveAllListeners()calls after emitting and before the last listener finishes execution will not remove them fromemit()in progress. Subsequent events behave as expected.import { EventEmitter } from 'node:events'; class MyEmitter extends EventEmitter {} const myEmitter = new MyEmitter(); const callbackA = () => { console.log('A'); myEmitter.removeListener('event', callbackB); }; const callbackB = () => { console.log('B'); }; myEmitter.on('event', callbackA); myEmitter.on('event', callbackB); // callbackA removes listener callbackB but it will still be called. // Internal listener array at time of emit [callbackA, callbackB] myEmitter.emit('event'); // Prints: // A // B // callbackB is now removed. // Internal listener array [callbackA] myEmitter.emit('event'); // Prints: // ABecause listeners are managed using an internal array, calling this will change the position indexes of any listener registered after the listener being removed. This will not impact the order in which listeners are called, but it means that any copies of the listener array as returned by the
emitter.listeners()method will need to be recreated.When a single function has been added as a handler multiple times for a single event (as in the example below),
removeListener()will remove the most recently added instance. In the example theonce('ping')listener is removed:import { EventEmitter } from 'node:events'; const ee = new EventEmitter(); function pong() { console.log('pong'); } ee.on('ping', pong); ee.once('ping', pong); ee.removeListener('ping', pong); ee.emit('ping'); ee.emit('ping');Returns a reference to the
EventEmitter, so that calls can be chained. - encoding: BufferEncoding): this;
The
writable.setDefaultEncoding()method sets the defaultencodingfor aWritablestream.@param encodingThe new default encoding
- name: string,value: string | number | readonly string[]): void;
Sets a single header value for implicit headers. If this header already exists in the to-be-sent headers, its value will be replaced. Use an array of strings here to send multiple headers with the same name.
response.setHeader('Content-Type', 'text/html; charset=utf-8');or
response.setHeader('Set-Cookie', ['type=ninja', 'language=javascript']);Attempting to set a header field name or value that contains invalid characters will result in a
TypeErrorbeing thrown.When headers have been set with
response.setHeader(), they will be merged with any headers passed toresponse.writeHead(), with the headers passed toresponse.writeHead()given precedence.// Returns content-type = text/plain const server = http2.createServer((req, res) => { res.setHeader('Content-Type', 'text/html; charset=utf-8'); res.setHeader('X-Foo', 'bar'); res.writeHead(200, { 'Content-Type': 'text/plain; charset=utf-8' }); res.end('ok'); }); - n: number): this;
By default
EventEmitters will print a warning if more than10listeners are added for a particular event. This is a useful default that helps finding memory leaks. Theemitter.setMaxListeners()method allows the limit to be modified for this specificEventEmitterinstance. The value can be set toInfinity(or0) to indicate an unlimited number of listeners.Returns a reference to the
EventEmitter, so that calls can be chained. - msecs: number,callback?: () => void): void;
Sets the
Http2Stream's timeout value tomsecs. If a callback is provided, then it is added as a listener on the'timeout'event on the response object.If no
'timeout'listener is added to the request, the response, or the server, thenHttp2Streams are destroyed when they time out. If a handler is assigned to the request, the response, or the server's'timeout'events, timed out sockets must be handled explicitly. The
writable.uncork()method flushes all data buffered since cork was called.When using
writable.cork()andwritable.uncork()to manage the buffering of writes to a stream, defer calls towritable.uncork()usingprocess.nextTick(). Doing so allows batching of allwritable.write()calls that occur within a given Node.js event loop phase.stream.cork(); stream.write('some '); stream.write('data '); process.nextTick(() => stream.uncork());If the
writable.cork()method is called multiple times on a stream, the same number of calls towritable.uncork()must be called to flush the buffered data.stream.cork(); stream.write('some '); stream.cork(); stream.write('data '); process.nextTick(() => { stream.uncork(); // The data will not be flushed until uncork() is called a second time. stream.uncork(); });See also:
writable.cork().- ): boolean;
If this method is called and
response.writeHead()has not been called, it will switch to implicit header mode and flush the implicit headers.This sends a chunk of the response body. This method may be called multiple times to provide successive parts of the body.
In the
node:httpmodule, the response body is omitted when the request is a HEAD request. Similarly, the204and304responses must not include a message body.chunkcan be a string or a buffer. Ifchunkis a string, the second parameter specifies how to encode it into a byte stream. By default theencodingis'utf8'.callbackwill be called when this chunk of data is flushed.This is the raw HTTP body and has nothing to do with higher-level multi-part body encodings that may be used.
The first time
response.write()is called, it will send the buffered header information and the first chunk of the body to the client. The second timeresponse.write()is called, Node.js assumes data will be streamed, and sends the new data separately. That is, the response is buffered up to the first chunk of the body.Returns
trueif the entire data was flushed successfully to the kernel buffer. Returnsfalseif all or part of the data was queued in user memory.'drain'will be emitted when the buffer is free again.encoding: BufferEncoding,): boolean;Writes data to the stream, with an explicit encoding for string data.
@param chunkOptional data to write. For streams not operating in object mode,
chunkmust be a {string}, {Buffer}, {TypedArray} or {DataView}. For object mode streams,chunkmay be any JavaScript value other thannull.@param encodingThe encoding, if
chunkis a string.@param callbackCallback for when this chunk of data is flushed.
@returnsfalseif the stream wishes for the calling code to wait for the'drain'event to be emitted before continuing to write additional data; otherwisetrue. Sends a status
100 Continueto the client, indicating that the request body should be sent. See the'checkContinue'event onHttp2ServerandHttp2SecureServer.- hints: Record<string, string | string[]>): void;
Sends a status
103 Early Hintsto the client with a Link header, indicating that the user agent can preload/preconnect the linked resources. Thehintsis an object containing the values of headers to be sent with early hints message.Example
const earlyHintsLink = '</styles.css>; rel=preload; as=style'; response.writeEarlyHints({ 'link': earlyHintsLink, }); const earlyHintsLinks = [ '</styles.css>; rel=preload; as=style', '</scripts.js>; rel=preload; as=script', ]; response.writeEarlyHints({ 'link': earlyHintsLinks, }); - statusCode: number,): this;
Sends a response header to the request. The status code is a 3-digit HTTP status code, like
404. The last argument,headers, are the response headers.Returns a reference to the
Http2ServerResponse, so that calls can be chained.For compatibility with
HTTP/1, a human-readablestatusMessagemay be passed as the second argument. However, because thestatusMessagehas no meaning within HTTP/2, the argument will have no effect and a process warning will be emitted.const body = 'hello world'; response.writeHead(200, { 'Content-Length': Buffer.byteLength(body), 'Content-Type': 'text/plain; charset=utf-8', });Content-Lengthis given in bytes not characters. TheBuffer.byteLength()API may be used to determine the number of bytes in a given encoding. On outbound messages, Node.js does not check if Content-Length and the length of the body being transmitted are equal or not. However, when receiving messages, Node.js will automatically reject messages when theContent-Lengthdoes not match the actual payload size.This method may be called at most one time on a message before
response.end()is called.If
response.write()orresponse.end()are called before calling this, the implicit/mutable headers will be calculated and call this function.When headers have been set with
response.setHeader(), they will be merged with any headers passed toresponse.writeHead(), with the headers passed toresponse.writeHead()given precedence.// Returns content-type = text/plain const server = http2.createServer((req, res) => { res.setHeader('Content-Type', 'text/html; charset=utf-8'); res.setHeader('X-Foo', 'bar'); res.writeHead(200, { 'Content-Type': 'text/plain; charset=utf-8' }); res.end('ok'); });Attempting to set a header field name or value that contains invalid characters will result in a
TypeErrorbeing thrown.statusCode: number,statusMessage: string,): this;Sends a response header to the request. The status code is a 3-digit HTTP status code, like
404. The last argument,headers, are the response headers.Returns a reference to the
Http2ServerResponse, so that calls can be chained.For compatibility with
HTTP/1, a human-readablestatusMessagemay be passed as the second argument. However, because thestatusMessagehas no meaning within HTTP/2, the argument will have no effect and a process warning will be emitted.const body = 'hello world'; response.writeHead(200, { 'Content-Length': Buffer.byteLength(body), 'Content-Type': 'text/plain; charset=utf-8', });Content-Lengthis given in bytes not characters. TheBuffer.byteLength()API may be used to determine the number of bytes in a given encoding. On outbound messages, Node.js does not check if Content-Length and the length of the body being transmitted are equal or not. However, when receiving messages, Node.js will automatically reject messages when theContent-Lengthdoes not match the actual payload size.This method may be called at most one time on a message before
response.end()is called.If
response.write()orresponse.end()are called before calling this, the implicit/mutable headers will be calculated and call this function.When headers have been set with
response.setHeader(), they will be merged with any headers passed toresponse.writeHead(), with the headers passed toresponse.writeHead()given precedence.// Returns content-type = text/plain const server = http2.createServer((req, res) => { res.setHeader('Content-Type', 'text/html; charset=utf-8'); res.setHeader('X-Foo', 'bar'); res.writeHead(200, { 'Content-Type': 'text/plain; charset=utf-8' }); res.end('ok'); });Attempting to set a header field name or value that contains invalid characters will result in a
TypeErrorbeing thrown. - options?: Pick<WritableOptions<Writable>, 'decodeStrings' | 'highWaterMark' | 'objectMode' | 'signal'>
A utility method for creating a
Writablefrom a webWritableStream. - streamWritable: WritableStream
A utility method for creating a web
WritableStreamfrom aWritable.