3c6029c702
which will wait for there to be no network requests in progress during the `idleTime` before resolving.
467 lines
15 KiB
TypeScript
467 lines
15 KiB
TypeScript
/**
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* Copyright 2017 Google Inc. All rights reserved.
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*
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* Licensed under the Apache License, Version 2.0 (the "License");
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* you may not use this file except in compliance with the License.
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* You may obtain a copy of the License at
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*
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* http://www.apache.org/licenses/LICENSE-2.0
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*
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* Unless required by applicable law or agreed to in writing, software
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* distributed under the License is distributed on an "AS IS" BASIS,
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* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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* See the License for the specific language governing permissions and
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* limitations under the License.
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*/
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import { EventEmitter } from './EventEmitter.js';
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import { assert } from './assert.js';
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import { helper, debugError } from './helper.js';
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import { Protocol } from 'devtools-protocol';
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import { CDPSession } from './Connection.js';
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import { FrameManager } from './FrameManager.js';
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import { HTTPRequest } from './HTTPRequest.js';
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import { HTTPResponse } from './HTTPResponse.js';
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/**
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* @public
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*/
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export interface Credentials {
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username: string;
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password: string;
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}
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/**
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* @public
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*/
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export interface NetworkConditions {
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// Download speed (bytes/s)
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download: number;
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// Upload speed (bytes/s)
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upload: number;
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// Latency (ms)
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latency: number;
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}
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/**
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* @public
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*/
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export interface InternalNetworkConditions extends NetworkConditions {
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offline: boolean;
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}
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/**
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* We use symbols to prevent any external parties listening to these events.
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* They are internal to Puppeteer.
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*
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* @internal
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*/
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export const NetworkManagerEmittedEvents = {
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Request: Symbol('NetworkManager.Request'),
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RequestServedFromCache: Symbol('NetworkManager.RequestServedFromCache'),
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Response: Symbol('NetworkManager.Response'),
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RequestFailed: Symbol('NetworkManager.RequestFailed'),
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RequestFinished: Symbol('NetworkManager.RequestFinished'),
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} as const;
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/**
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* @internal
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*/
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export class NetworkManager extends EventEmitter {
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_client: CDPSession;
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_ignoreHTTPSErrors: boolean;
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_frameManager: FrameManager;
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/*
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* There are four possible orders of events:
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* A. `_onRequestWillBeSent`
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* B. `_onRequestWillBeSent`, `_onRequestPaused`
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* C. `_onRequestPaused`, `_onRequestWillBeSent`
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* D. `_onRequestPaused`, `_onRequestWillBeSent`, `_onRequestPaused`
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* (see crbug.com/1196004)
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*
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* For `_onRequest` we need the event from `_onRequestWillBeSent` and
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* optionally the `interceptionId` from `_onRequestPaused`.
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*
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* If request interception is disabled, call `_onRequest` once per call to
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* `_onRequestWillBeSent`.
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* If request interception is enabled, call `_onRequest` once per call to
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* `_onRequestPaused` (once per `interceptionId`).
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*
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* Events are stored to allow for subsequent events to call `_onRequest`.
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*
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* Note that (chains of) redirect requests have the same `requestId` (!) as
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* the original request. We have to anticipate series of events like these:
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* A. `_onRequestWillBeSent`,
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* `_onRequestWillBeSent`, ...
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* B. `_onRequestWillBeSent`, `_onRequestPaused`,
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* `_onRequestWillBeSent`, `_onRequestPaused`, ...
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* C. `_onRequestWillBeSent`, `_onRequestPaused`,
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* `_onRequestPaused`, `_onRequestWillBeSent`, ...
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* D. `_onRequestPaused`, `_onRequestWillBeSent`,
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* `_onRequestPaused`, `_onRequestWillBeSent`, `_onRequestPaused`, ...
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* (see crbug.com/1196004)
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*/
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_requestIdToRequestWillBeSentEvent = new Map<
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string,
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Protocol.Network.RequestWillBeSentEvent
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>();
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_requestIdToRequestPausedEvent = new Map<
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string,
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Protocol.Fetch.RequestPausedEvent
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>();
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_requestIdToRequest = new Map<string, HTTPRequest>();
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_extraHTTPHeaders: Record<string, string> = {};
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_credentials?: Credentials = null;
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_attemptedAuthentications = new Set<string>();
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_userRequestInterceptionEnabled = false;
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_protocolRequestInterceptionEnabled = false;
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_userCacheDisabled = false;
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_emulatedNetworkConditions: InternalNetworkConditions = {
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offline: false,
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upload: -1,
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download: -1,
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latency: 0,
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};
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constructor(
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client: CDPSession,
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ignoreHTTPSErrors: boolean,
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frameManager: FrameManager
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) {
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super();
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this._client = client;
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this._ignoreHTTPSErrors = ignoreHTTPSErrors;
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this._frameManager = frameManager;
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this._client.on('Fetch.requestPaused', this._onRequestPaused.bind(this));
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this._client.on('Fetch.authRequired', this._onAuthRequired.bind(this));
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this._client.on(
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'Network.requestWillBeSent',
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this._onRequestWillBeSent.bind(this)
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);
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this._client.on(
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'Network.requestServedFromCache',
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this._onRequestServedFromCache.bind(this)
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);
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this._client.on(
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'Network.responseReceived',
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this._onResponseReceived.bind(this)
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);
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this._client.on(
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'Network.loadingFinished',
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this._onLoadingFinished.bind(this)
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);
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this._client.on('Network.loadingFailed', this._onLoadingFailed.bind(this));
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}
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async initialize(): Promise<void> {
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await this._client.send('Network.enable');
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if (this._ignoreHTTPSErrors)
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await this._client.send('Security.setIgnoreCertificateErrors', {
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ignore: true,
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});
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}
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async authenticate(credentials?: Credentials): Promise<void> {
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this._credentials = credentials;
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await this._updateProtocolRequestInterception();
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}
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async setExtraHTTPHeaders(
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extraHTTPHeaders: Record<string, string>
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): Promise<void> {
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this._extraHTTPHeaders = {};
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for (const key of Object.keys(extraHTTPHeaders)) {
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const value = extraHTTPHeaders[key];
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assert(
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helper.isString(value),
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`Expected value of header "${key}" to be String, but "${typeof value}" is found.`
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);
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this._extraHTTPHeaders[key.toLowerCase()] = value;
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}
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await this._client.send('Network.setExtraHTTPHeaders', {
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headers: this._extraHTTPHeaders,
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});
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}
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extraHTTPHeaders(): Record<string, string> {
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return Object.assign({}, this._extraHTTPHeaders);
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}
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numRequestsInProgress(): number {
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return [...this._requestIdToRequest].filter(([, request]) => {
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return !request.response();
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}).length;
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}
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async setOfflineMode(value: boolean): Promise<void> {
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this._emulatedNetworkConditions.offline = value;
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await this._updateNetworkConditions();
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}
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async emulateNetworkConditions(
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networkConditions: NetworkConditions | null
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): Promise<void> {
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this._emulatedNetworkConditions.upload = networkConditions
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? networkConditions.upload
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: -1;
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this._emulatedNetworkConditions.download = networkConditions
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? networkConditions.download
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: -1;
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this._emulatedNetworkConditions.latency = networkConditions
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? networkConditions.latency
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: 0;
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await this._updateNetworkConditions();
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}
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async _updateNetworkConditions(): Promise<void> {
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await this._client.send('Network.emulateNetworkConditions', {
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offline: this._emulatedNetworkConditions.offline,
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latency: this._emulatedNetworkConditions.latency,
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uploadThroughput: this._emulatedNetworkConditions.upload,
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downloadThroughput: this._emulatedNetworkConditions.download,
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});
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}
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async setUserAgent(
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userAgent: string,
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userAgentMetadata?: Protocol.Emulation.UserAgentMetadata
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): Promise<void> {
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await this._client.send('Network.setUserAgentOverride', {
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userAgent: userAgent,
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userAgentMetadata: userAgentMetadata,
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});
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}
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async setCacheEnabled(enabled: boolean): Promise<void> {
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this._userCacheDisabled = !enabled;
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await this._updateProtocolCacheDisabled();
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}
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async setRequestInterception(value: boolean): Promise<void> {
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this._userRequestInterceptionEnabled = value;
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await this._updateProtocolRequestInterception();
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}
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async _updateProtocolRequestInterception(): Promise<void> {
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const enabled = this._userRequestInterceptionEnabled || !!this._credentials;
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if (enabled === this._protocolRequestInterceptionEnabled) return;
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this._protocolRequestInterceptionEnabled = enabled;
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if (enabled) {
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await Promise.all([
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this._updateProtocolCacheDisabled(),
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this._client.send('Fetch.enable', {
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handleAuthRequests: true,
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patterns: [{ urlPattern: '*' }],
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}),
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]);
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} else {
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await Promise.all([
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this._updateProtocolCacheDisabled(),
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this._client.send('Fetch.disable'),
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]);
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}
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}
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_cacheDisabled(): boolean {
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return this._userCacheDisabled;
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}
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async _updateProtocolCacheDisabled(): Promise<void> {
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await this._client.send('Network.setCacheDisabled', {
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cacheDisabled: this._cacheDisabled(),
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});
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}
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_onRequestWillBeSent(event: Protocol.Network.RequestWillBeSentEvent): void {
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// Request interception doesn't happen for data URLs with Network Service.
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if (
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this._userRequestInterceptionEnabled &&
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!event.request.url.startsWith('data:')
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) {
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const requestId = event.requestId;
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const requestPausedEvent =
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this._requestIdToRequestPausedEvent.get(requestId);
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this._requestIdToRequestWillBeSentEvent.set(requestId, event);
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if (requestPausedEvent) {
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const interceptionId = requestPausedEvent.requestId;
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this._onRequest(event, interceptionId);
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this._requestIdToRequestPausedEvent.delete(requestId);
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}
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return;
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}
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this._onRequest(event, null);
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}
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_onAuthRequired(event: Protocol.Fetch.AuthRequiredEvent): void {
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/* TODO(jacktfranklin): This is defined in protocol.d.ts but not
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* in an easily referrable way - we should look at exposing it.
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*/
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type AuthResponse = 'Default' | 'CancelAuth' | 'ProvideCredentials';
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let response: AuthResponse = 'Default';
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if (this._attemptedAuthentications.has(event.requestId)) {
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response = 'CancelAuth';
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} else if (this._credentials) {
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response = 'ProvideCredentials';
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this._attemptedAuthentications.add(event.requestId);
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}
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const { username, password } = this._credentials || {
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username: undefined,
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password: undefined,
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};
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this._client
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.send('Fetch.continueWithAuth', {
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requestId: event.requestId,
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authChallengeResponse: { response, username, password },
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})
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.catch(debugError);
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}
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_onRequestPaused(event: Protocol.Fetch.RequestPausedEvent): void {
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if (
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!this._userRequestInterceptionEnabled &&
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this._protocolRequestInterceptionEnabled
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) {
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this._client
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.send('Fetch.continueRequest', {
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requestId: event.requestId,
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})
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.catch(debugError);
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}
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const requestId = event.networkId;
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const interceptionId = event.requestId;
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if (!requestId) {
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return;
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}
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let requestWillBeSentEvent =
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this._requestIdToRequestWillBeSentEvent.get(requestId);
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// redirect requests have the same `requestId`,
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if (
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requestWillBeSentEvent &&
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(requestWillBeSentEvent.request.url !== event.request.url ||
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requestWillBeSentEvent.request.method !== event.request.method)
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) {
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this._requestIdToRequestWillBeSentEvent.delete(requestId);
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requestWillBeSentEvent = null;
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}
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if (requestWillBeSentEvent) {
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this._onRequest(requestWillBeSentEvent, interceptionId);
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this._requestIdToRequestWillBeSentEvent.delete(requestId);
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} else {
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this._requestIdToRequestPausedEvent.set(requestId, event);
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}
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}
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_onRequest(
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event: Protocol.Network.RequestWillBeSentEvent,
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interceptionId?: string
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): void {
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let redirectChain = [];
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if (event.redirectResponse) {
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const request = this._requestIdToRequest.get(event.requestId);
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// If we connect late to the target, we could have missed the
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// requestWillBeSent event.
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if (request) {
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this._handleRequestRedirect(request, event.redirectResponse);
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redirectChain = request._redirectChain;
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}
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}
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const frame = event.frameId
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? this._frameManager.frame(event.frameId)
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: null;
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const request = new HTTPRequest(
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this._client,
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frame,
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interceptionId,
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this._userRequestInterceptionEnabled,
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event,
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redirectChain
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);
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this._requestIdToRequest.set(event.requestId, request);
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this.emit(NetworkManagerEmittedEvents.Request, request);
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request.finalizeInterceptions().catch((error) => {
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// This should never happen, but catch just in case.
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debugError(error);
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});
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}
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_onRequestServedFromCache(
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event: Protocol.Network.RequestServedFromCacheEvent
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): void {
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const request = this._requestIdToRequest.get(event.requestId);
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if (request) request._fromMemoryCache = true;
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this.emit(NetworkManagerEmittedEvents.RequestServedFromCache, request);
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}
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_handleRequestRedirect(
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request: HTTPRequest,
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responsePayload: Protocol.Network.Response
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): void {
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const response = new HTTPResponse(this._client, request, responsePayload);
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request._response = response;
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request._redirectChain.push(request);
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response._resolveBody(
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new Error('Response body is unavailable for redirect responses')
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);
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this._forgetRequest(request, false);
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this.emit(NetworkManagerEmittedEvents.Response, response);
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this.emit(NetworkManagerEmittedEvents.RequestFinished, request);
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}
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_onResponseReceived(event: Protocol.Network.ResponseReceivedEvent): void {
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const request = this._requestIdToRequest.get(event.requestId);
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// FileUpload sends a response without a matching request.
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if (!request) return;
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const response = new HTTPResponse(this._client, request, event.response);
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request._response = response;
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this.emit(NetworkManagerEmittedEvents.Response, response);
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}
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_forgetRequest(request: HTTPRequest, events: boolean): void {
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const requestId = request._requestId;
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const interceptionId = request._interceptionId;
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this._requestIdToRequest.delete(requestId);
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this._attemptedAuthentications.delete(interceptionId);
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if (events) {
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this._requestIdToRequestWillBeSentEvent.delete(requestId);
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this._requestIdToRequestPausedEvent.delete(requestId);
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}
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}
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_onLoadingFinished(event: Protocol.Network.LoadingFinishedEvent): void {
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const request = this._requestIdToRequest.get(event.requestId);
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// For certain requestIds we never receive requestWillBeSent event.
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// @see https://crbug.com/750469
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if (!request) return;
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// Under certain conditions we never get the Network.responseReceived
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// event from protocol. @see https://crbug.com/883475
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if (request.response()) request.response()._resolveBody(null);
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this._forgetRequest(request, true);
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this.emit(NetworkManagerEmittedEvents.RequestFinished, request);
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}
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_onLoadingFailed(event: Protocol.Network.LoadingFailedEvent): void {
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const request = this._requestIdToRequest.get(event.requestId);
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// For certain requestIds we never receive requestWillBeSent event.
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// @see https://crbug.com/750469
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if (!request) return;
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request._failureText = event.errorText;
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const response = request.response();
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if (response) response._resolveBody(null);
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this._forgetRequest(request, true);
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this.emit(NetworkManagerEmittedEvents.RequestFailed, request);
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}
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}
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