mirror of
https://github.com/denoland/deno.git
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2187c11e5d
This commit adds tracking of resources that are related to "HttpConn" so they can be closed automatically when closing the connection.
407 lines
12 KiB
JavaScript
407 lines
12 KiB
JavaScript
// Copyright 2018-2021 the Deno authors. All rights reserved. MIT license.
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"use strict";
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((window) => {
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const webidl = window.__bootstrap.webidl;
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const { InnerBody } = window.__bootstrap.fetchBody;
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const { setEventTargetData } = window.__bootstrap.eventTarget;
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const {
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Response,
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fromInnerRequest,
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toInnerResponse,
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newInnerRequest,
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newInnerResponse,
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fromInnerResponse,
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} = window.__bootstrap.fetch;
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const core = window.Deno.core;
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const { BadResource, Interrupted } = core;
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const { ReadableStream } = window.__bootstrap.streams;
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const abortSignal = window.__bootstrap.abortSignal;
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const { WebSocket, _rid, _readyState, _eventLoop, _protocol, _server } =
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window.__bootstrap.webSocket;
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const {
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ArrayPrototypeIncludes,
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ArrayPrototypePush,
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ArrayPrototypeSome,
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Promise,
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Set,
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SetPrototypeAdd,
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SetPrototypeDelete,
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SetPrototypeValues,
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StringPrototypeIncludes,
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StringPrototypeToLowerCase,
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StringPrototypeSplit,
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Symbol,
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SymbolAsyncIterator,
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TypedArrayPrototypeSubarray,
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TypeError,
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Uint8Array,
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} = window.__bootstrap.primordials;
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const connErrorSymbol = Symbol("connError");
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class HttpConn {
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#rid = 0;
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// This set holds resource ids of resources
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// that were created during lifecycle of this request.
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// When the connection is closed these resources should be closed
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// as well.
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managedResources = new Set();
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constructor(rid) {
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this.#rid = rid;
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}
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/** @returns {number} */
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get rid() {
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return this.#rid;
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}
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/** @returns {Promise<ResponseEvent | null>} */
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async nextRequest() {
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let nextRequest;
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try {
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nextRequest = await core.opAsync(
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"op_http_request_next",
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this.#rid,
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);
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} catch (error) {
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// A connection error seen here would cause disrupted responses to throw
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// a generic `BadResource` error. Instead store this error and replace
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// those with it.
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this[connErrorSymbol] = error;
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if (error instanceof BadResource) {
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return null;
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} else if (error instanceof Interrupted) {
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return null;
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} else if (
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StringPrototypeIncludes(error.message, "connection closed")
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) {
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return null;
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}
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throw error;
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}
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if (nextRequest === null) return null;
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const [
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requestRid,
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responseSenderRid,
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method,
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headersList,
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url,
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] = nextRequest;
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/** @type {ReadableStream<Uint8Array> | undefined} */
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let body = null;
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if (typeof requestRid === "number") {
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SetPrototypeAdd(this.managedResources, requestRid);
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body = createRequestBodyStream(this, requestRid);
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}
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const innerRequest = newInnerRequest(
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method,
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url,
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headersList,
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body !== null ? new InnerBody(body) : null,
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);
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const signal = abortSignal.newSignal();
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const request = fromInnerRequest(innerRequest, signal, "immutable");
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SetPrototypeAdd(this.managedResources, responseSenderRid);
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const respondWith = createRespondWith(
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this,
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responseSenderRid,
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requestRid,
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);
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return { request, respondWith };
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}
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/** @returns {void} */
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close() {
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for (const rid of SetPrototypeValues(this.managedResources)) {
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try {
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core.close(rid);
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} catch (_e) {
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// pass, might have already been closed
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}
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}
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core.close(this.#rid);
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}
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[SymbolAsyncIterator]() {
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// deno-lint-ignore no-this-alias
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const httpConn = this;
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return {
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async next() {
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const reqEvt = await httpConn.nextRequest();
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// Change with caution, current form avoids a v8 deopt
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return { value: reqEvt, done: reqEvt === null };
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},
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};
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}
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}
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function readRequest(requestRid, zeroCopyBuf) {
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return core.opAsync(
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"op_http_request_read",
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requestRid,
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zeroCopyBuf,
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);
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}
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function createRespondWith(httpConn, responseSenderRid, requestRid) {
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return async function respondWith(resp) {
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if (resp instanceof Promise) {
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resp = await resp;
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}
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if (!(resp instanceof Response)) {
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throw new TypeError(
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"First argument to respondWith must be a Response or a promise resolving to a Response.",
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);
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}
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const innerResp = toInnerResponse(resp);
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// If response body length is known, it will be sent synchronously in a
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// single op, in other case a "response body" resource will be created and
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// we'll be streaming it.
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/** @type {ReadableStream<Uint8Array> | Uint8Array | null} */
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let respBody = null;
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if (innerResp.body !== null) {
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if (innerResp.body.unusable()) throw new TypeError("Body is unusable.");
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if (innerResp.body.streamOrStatic instanceof ReadableStream) {
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if (
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innerResp.body.length === null ||
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innerResp.body.source instanceof Blob
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) {
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respBody = innerResp.body.stream;
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} else {
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const reader = innerResp.body.stream.getReader();
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const r1 = await reader.read();
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if (r1.done) {
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respBody = new Uint8Array(0);
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} else {
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respBody = r1.value;
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const r2 = await reader.read();
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if (!r2.done) throw new TypeError("Unreachable");
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}
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}
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} else {
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innerResp.body.streamOrStatic.consumed = true;
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respBody = innerResp.body.streamOrStatic.body;
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}
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} else {
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respBody = new Uint8Array(0);
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}
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SetPrototypeDelete(httpConn.managedResources, responseSenderRid);
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let responseBodyRid;
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try {
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responseBodyRid = await core.opAsync("op_http_response", [
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responseSenderRid,
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innerResp.status ?? 200,
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innerResp.headerList,
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], respBody instanceof Uint8Array ? respBody : null);
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} catch (error) {
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const connError = httpConn[connErrorSymbol];
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if (error instanceof BadResource && connError != null) {
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// deno-lint-ignore no-ex-assign
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error = new connError.constructor(connError.message);
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}
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if (respBody !== null && respBody instanceof ReadableStream) {
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await respBody.cancel(error);
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}
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throw error;
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}
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// If `respond` returns a responseBodyRid, we should stream the body
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// to that resource.
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if (responseBodyRid !== null) {
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SetPrototypeAdd(httpConn.managedResources, responseBodyRid);
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try {
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if (respBody === null || !(respBody instanceof ReadableStream)) {
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throw new TypeError("Unreachable");
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}
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const reader = respBody.getReader();
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while (true) {
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const { value, done } = await reader.read();
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if (done) break;
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if (!(value instanceof Uint8Array)) {
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await reader.cancel(new TypeError("Value not a Uint8Array"));
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break;
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}
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try {
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await core.opAsync(
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"op_http_response_write",
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responseBodyRid,
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value,
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);
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} catch (error) {
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const connError = httpConn[connErrorSymbol];
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if (error instanceof BadResource && connError != null) {
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// deno-lint-ignore no-ex-assign
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error = new connError.constructor(connError.message);
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}
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await reader.cancel(error);
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throw error;
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}
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}
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} finally {
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// Once all chunks are sent, and the request body is closed, we can
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// close the response body.
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SetPrototypeDelete(httpConn.managedResources, responseBodyRid);
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try {
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await core.opAsync("op_http_response_close", responseBodyRid);
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} catch { /* pass */ }
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}
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}
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const ws = resp[_ws];
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if (ws) {
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if (typeof requestRid !== "number") {
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throw new TypeError(
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"This request can not be upgraded to a websocket connection.",
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);
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}
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const wsRid = await core.opAsync(
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"op_http_upgrade_websocket",
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requestRid,
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);
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ws[_rid] = wsRid;
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ws[_protocol] = resp.headers.get("sec-websocket-protocol");
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if (ws[_readyState] === WebSocket.CLOSING) {
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await core.opAsync("op_ws_close", { rid: wsRid });
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ws[_readyState] = WebSocket.CLOSED;
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const errEvent = new ErrorEvent("error");
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ws.dispatchEvent(errEvent);
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const event = new CloseEvent("close");
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ws.dispatchEvent(event);
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try {
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core.close(wsRid);
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} catch (err) {
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// Ignore error if the socket has already been closed.
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if (!(err instanceof Deno.errors.BadResource)) throw err;
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}
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} else {
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ws[_readyState] = WebSocket.OPEN;
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const event = new Event("open");
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ws.dispatchEvent(event);
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ws[_eventLoop]();
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}
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}
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};
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}
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function createRequestBodyStream(httpConn, requestRid) {
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return new ReadableStream({
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type: "bytes",
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async pull(controller) {
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try {
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// This is the largest possible size for a single packet on a TLS
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// stream.
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const chunk = new Uint8Array(16 * 1024 + 256);
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const read = await readRequest(
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requestRid,
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chunk,
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);
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if (read > 0) {
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// We read some data. Enqueue it onto the stream.
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controller.enqueue(TypedArrayPrototypeSubarray(chunk, 0, read));
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} else {
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// We have reached the end of the body, so we close the stream.
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controller.close();
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SetPrototypeDelete(httpConn.managedResources, requestRid);
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core.close(requestRid);
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}
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} catch (err) {
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// There was an error while reading a chunk of the body, so we
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// error.
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controller.error(err);
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controller.close();
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SetPrototypeDelete(httpConn.managedResources, requestRid);
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core.close(requestRid);
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}
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},
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cancel() {
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SetPrototypeDelete(httpConn.managedResources, requestRid);
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core.close(requestRid);
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},
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});
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}
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const _ws = Symbol("[[associated_ws]]");
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function upgradeWebSocket(request, options = {}) {
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if (request.headers.get("upgrade") !== "websocket") {
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throw new TypeError(
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"Invalid Header: 'upgrade' header must be 'websocket'",
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);
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}
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const connection = request.headers.get("connection");
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const connectionHasUpgradeOption = connection !== null &&
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ArrayPrototypeSome(
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StringPrototypeSplit(connection, /\s*,\s*/),
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(option) => StringPrototypeToLowerCase(option) === "upgrade",
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);
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if (!connectionHasUpgradeOption) {
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throw new TypeError(
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"Invalid Header: 'connection' header must be 'Upgrade'",
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);
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}
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const websocketKey = request.headers.get("sec-websocket-key");
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if (websocketKey === null) {
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throw new TypeError(
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"Invalid Header: 'sec-websocket-key' header must be set",
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);
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}
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const accept = core.opSync("op_http_websocket_accept_header", websocketKey);
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const r = newInnerResponse(101);
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r.headerList = [
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["upgrade", "websocket"],
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["connection", "Upgrade"],
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["sec-websocket-accept", accept],
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];
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const protocolsStr = request.headers.get("sec-websocket-protocol") || "";
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const protocols = StringPrototypeSplit(protocolsStr, ", ");
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if (protocols && options.protocol) {
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if (ArrayPrototypeIncludes(protocols, options.protocol)) {
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ArrayPrototypePush(r.headerList, [
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"sec-websocket-protocol",
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options.protocol,
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]);
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} else {
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throw new TypeError(
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`Protocol '${options.protocol}' not in the request's protocol list (non negotiable)`,
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);
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}
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}
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const response = fromInnerResponse(r, "immutable");
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const socket = webidl.createBranded(WebSocket);
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setEventTargetData(socket);
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socket[_server] = true;
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response[_ws] = socket;
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return { response, socket };
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}
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window.__bootstrap.http = {
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HttpConn,
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upgradeWebSocket,
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};
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})(this);
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