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main
packages/zone.js/lib/common/events.ts
956 строк
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arturovt
fix(zone.js): harden zoneSymbolEventNames against __proto__ key (defense-in-depth)
11 июн 2026, 19:41
11 июн 2026, 19:41
fd7c2da
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/** * @license * Copyright Google LLC All Rights Reserved. * * Use of this source code is governed by an MIT-style license that can be * found in the LICENSE file at https://angular.dev/license */ /** * @fileoverview * @suppress {missingRequire} */ import { ADD_EVENT_LISTENER_STR, attachOriginToPatched, FALSE_STR, isNode, ObjectGetPrototypeOf, REMOVE_EVENT_LISTENER_STR, TRUE_STR, ZONE_SYMBOL_PREFIX, zoneSymbol, } from './utils'; /** @internal **/ interface EventTaskData extends TaskData { // use global callback or not readonly useG?: boolean; taskData?: any; } /** @internal **/ interface InternalGlobalTaskData { // This is used internally to avoid duplicating event listeners on // the same target when the event name is the same, such as when // `addEventListener` is called multiple times on the `document` // for the `keydown` event. isExisting?: boolean; // `target` is the actual event target on which `addEventListener` // is being called. target?: any; eventName?: string; capture?: boolean; // Not changing the type to avoid any regressions. options?: any; // boolean | AddEventListenerOptions } /** * The `scheduleEventTask` function returns an `EventTask` object. * However, we also store some task-related information on the task * itself, such as the task target, for easy access when the task is * manually canceled or for other purposes. This internal storage is * used solely for enhancing our understanding of which properties are * being assigned to the task. * * @internal */ interface InternalEventTask extends EventTask { removeAbortListener?: VoidFunction | null; // `target` is the actual event target on which `addEventListener` // is being called for this specific task. target?: any; eventName?: string; capture?: boolean; // Not changing the type to avoid any regressions. options?: any; // boolean | AddEventListenerOptions // `isRemoved` is associated with a specific task and indicates whether // that task was canceled and removed from the event target to prevent // its invocation if dispatched later. isRemoved?: boolean; allRemoved?: boolean; // `originalDelegate` is the actual event listener object passed when // calling `addEventListener()`, i.e., `{ handleEvent: event => ... }`. // This object is used to compare event listeners when `addEventListener` // is called again with the same event listener object reference. // For example: // const eventListenerObject = { handleEvent: console.log }; // document.addEventListener('click', eventListenerObject); // document.addEventListener('click', eventListenerObject); originalDelegate?: EventListenerObject; } // an identifier to tell ZoneTask do not create a new invoke closure const OPTIMIZED_ZONE_EVENT_TASK_DATA: EventTaskData = { useG: true, }; // tslint:disable-next-line:no-toplevel-property-access export const zoneSymbolEventNames: any = Object.create(null); export const globalSources: any = {}; const EVENT_NAME_SYMBOL_REGX = new RegExp('^' + ZONE_SYMBOL_PREFIX + '(\\w+)(true|false)$'); const IMMEDIATE_PROPAGATION_SYMBOL = zoneSymbol('propagationStopped'); function prepareEventNames(eventName: string, eventNameToString?: (eventName: string) => string) { const falseEventName = (eventNameToString ? eventNameToString(eventName) : eventName) + FALSE_STR; const trueEventName = (eventNameToString ? eventNameToString(eventName) : eventName) + TRUE_STR; const symbol = ZONE_SYMBOL_PREFIX + falseEventName; const symbolCapture = ZONE_SYMBOL_PREFIX + trueEventName; zoneSymbolEventNames[eventName] = { [FALSE_STR]: symbol, [TRUE_STR]: symbolCapture, }; } export interface PatchEventTargetOptions { /** * Optional validator for the event handler before patching. * If it returns false, the handler will not be patched. * * @param nativeDelegate The native method (e.g., original addEventListener). * @param delegate The provided handler function. * @param target The object being patched. * @param args The arguments passed to the method. * @returns Whether the handler is valid for patching. */ vh?: (nativeDelegate: any, delegate: any, target: any, args: any) => boolean; /** * The property name for the method that adds an event listener. * Typically `addEventListener`. */ add?: string; /** * The property name for the method that removes an event listener. * Typically `removeEventListener`. */ rm?: string; /** * The property name for a method that prepends an event listener. * Used in some Node.js-style APIs. */ prepend?: string; /** * The property name for the method that returns the current listeners. * `eventListeners` is the default. * * Example: * ```js * const element = document.querySelector(...); * console.log(element.eventListeners()); * ``` */ listeners?: string; /** * The property name for the method that removes all listeners for an event. * `removeAllListeners` is the default. */ rmAll?: string; /** * Indicates whether a shared global callback should be used for all events * instead of individual per-event callbacks. */ useG?: boolean; /** * If true, checks for duplicate listeners before adding a new one. * Prevents multiple registrations of the same handler. */ chkDup?: boolean; /** * If true, the patched add method will return the target object * (matching typical `addEventListener` behavior). */ rt?: boolean; /** * Optional function to compare existing tasks with a given delegate. * Used to match handlers when removing or managing listeners. * * @param task The internal Zone.js task object. * @param delegate The original event handler function. * @returns Whether the two refer to the same handler. */ diff?: (task: any, delegate: any) => boolean; /** * Converts an event name to a string. * Useful when event names are symbols (e.g., in Node.js). */ eventNameToString?: (eventName: any) => string; /** * Transforms or normalizes the event name before use. * Allows remapping or renaming of event types. */ transferEventName?: (eventName: string) => string; } export function patchEventTarget( _global: any, api: _ZonePrivate, apis: any[], patchOptions?: PatchEventTargetOptions, ) { const ADD_EVENT_LISTENER = (patchOptions && patchOptions.add) || ADD_EVENT_LISTENER_STR; const REMOVE_EVENT_LISTENER = (patchOptions && patchOptions.rm) || REMOVE_EVENT_LISTENER_STR; const LISTENERS_EVENT_LISTENER = (patchOptions && patchOptions.listeners) || 'eventListeners'; const REMOVE_ALL_LISTENERS_EVENT_LISTENER = (patchOptions && patchOptions.rmAll) || 'removeAllListeners'; const zoneSymbolAddEventListener = zoneSymbol(ADD_EVENT_LISTENER); const ADD_EVENT_LISTENER_SOURCE = '.' + ADD_EVENT_LISTENER + ':'; const PREPEND_EVENT_LISTENER = 'prependListener'; const PREPEND_EVENT_LISTENER_SOURCE = '.' + PREPEND_EVENT_LISTENER + ':'; const invokeTask = function (task: any, target: any, event: Event): Error | undefined { // for better performance, check isRemoved which is set // by removeEventListener if (task.isRemoved) { return; } const delegate = task.callback; if (typeof delegate === 'object' && delegate.handleEvent) { // create the bind version of handleEvent when invoke task.callback = (event: Event) => delegate.handleEvent(event); task.originalDelegate = delegate; } // invoke static task.invoke // need to try/catch error here, otherwise, the error in one event listener // will break the executions of the other event listeners. Also error will // not remove the event listener when `once` options is true. let error; try { task.invoke(task, target, [event]); } catch (err: any) { error = err; } const options = task.options; if (options && typeof options === 'object' && options.once) { // if options.once is true, after invoke once remove listener here // only browser need to do this, nodejs eventEmitter will cal removeListener // inside EventEmitter.once const delegate = task.originalDelegate ? task.originalDelegate : task.callback; target[REMOVE_EVENT_LISTENER].call(target, event.type, delegate, options); } return error; }; function globalCallback(context: unknown, event: Event, isCapture: boolean) { // https://github.com/angular/zone.js/issues/911, in IE, sometimes // event will be undefined, so we need to use window.event event = event || _global.event; if (!event) { return; } // event.target is needed for Samsung TV and SourceBuffer // || global is needed https://github.com/angular/zone.js/issues/190 const target: any = context || event.target || _global; const tasks = target[zoneSymbolEventNames[event.type][isCapture ? TRUE_STR : FALSE_STR]]; if (tasks) { const errors = []; // invoke all tasks which attached to current target with given event.type and capture = false // for performance concern, if task.length === 1, just invoke if (tasks.length === 1) { const err = invokeTask(tasks[0], target, event); err && errors.push(err); } else { // https://github.com/angular/zone.js/issues/836 // copy the tasks array before invoke, to avoid // the callback will remove itself or other listener const copyTasks = tasks.slice(); for (let i = 0; i < copyTasks.length; i++) { if (event && (event as any)[IMMEDIATE_PROPAGATION_SYMBOL] === true) { break; } const err = invokeTask(copyTasks[i], target, event); err && errors.push(err); } } // Since there is only one error, we don't need to schedule microTask // to throw the error. if (errors.length === 1) { throw errors[0]; } else { for (let i = 0; i < errors.length; i++) { const err = errors[i]; api.nativeScheduleMicroTask(() => { throw err; }); } } } } // global shared zoneAwareCallback to handle all event callback with capture = false const globalZoneAwareCallback = function (this: unknown, event: Event) { return globalCallback(this, event, false); }; // global shared zoneAwareCallback to handle all event callback with capture = true const globalZoneAwareCaptureCallback = function (this: unknown, event: Event) { return globalCallback(this, event, true); }; function patchEventTargetMethods(obj: any, patchOptions?: PatchEventTargetOptions) { if (!obj) { return false; } let useGlobalCallback = true; if (patchOptions && patchOptions.useG !== undefined) { useGlobalCallback = patchOptions.useG; } const validateHandler = patchOptions && patchOptions.vh; let checkDuplicate = true; if (patchOptions && patchOptions.chkDup !== undefined) { checkDuplicate = patchOptions.chkDup; } let returnTarget = false; if (patchOptions && patchOptions.rt !== undefined) { returnTarget = patchOptions.rt; } let proto = obj; while (proto && !proto.hasOwnProperty(ADD_EVENT_LISTENER)) { proto = ObjectGetPrototypeOf(proto); } if (!proto && obj[ADD_EVENT_LISTENER]) { // somehow we did not find it, but we can see it. This happens on IE for Window properties. proto = obj; } if (!proto) { return false; } if (proto[zoneSymbolAddEventListener]) { return false; } const eventNameToString = patchOptions && patchOptions.eventNameToString; // We use a shared global `taskData` to pass data for `scheduleEventTask`, // eliminating the need to create a new object solely for passing data. // WARNING: This object has a static lifetime, meaning it is not created // each time `addEventListener` is called. It is instantiated only once // and captured by reference inside the `addEventListener` and // `removeEventListener` functions. Do not add any new properties to this // object, as doing so would necessitate maintaining the information // between `addEventListener` calls. const taskData: InternalGlobalTaskData = {}; const nativeAddEventListener = (proto[zoneSymbolAddEventListener] = proto[ADD_EVENT_LISTENER]); const nativeRemoveEventListener = (proto[zoneSymbol(REMOVE_EVENT_LISTENER)] = proto[REMOVE_EVENT_LISTENER]); const nativeListeners = (proto[zoneSymbol(LISTENERS_EVENT_LISTENER)] = proto[LISTENERS_EVENT_LISTENER]); const nativeRemoveAllListeners = (proto[zoneSymbol(REMOVE_ALL_LISTENERS_EVENT_LISTENER)] = proto[REMOVE_ALL_LISTENERS_EVENT_LISTENER]); let nativePrependEventListener: any; if (patchOptions && patchOptions.prepend) { nativePrependEventListener = proto[zoneSymbol(patchOptions.prepend)] = proto[patchOptions.prepend]; } /** * This util function will build an option object with passive option * to handle all possible input from the user. */ function buildEventListenerOptions(options: any, passive: boolean) { if (!passive) { return options; } if (typeof options === 'boolean') { return {capture: options, passive: true}; } if (!options) { return {passive: true}; } if (typeof options === 'object' && options.passive !== false) { return {...options, passive: true}; } return options; } const customScheduleGlobal = function (task: Task) { // if there is already a task for the eventName + capture, // just return, because we use the shared globalZoneAwareCallback here. if (taskData.isExisting) { return; } return nativeAddEventListener.call( taskData.target, taskData.eventName, taskData.capture ? globalZoneAwareCaptureCallback : globalZoneAwareCallback, taskData.options, ); }; /** * In the context of events and listeners, this function will be * called at the end by `cancelTask`, which, in turn, calls `task.cancelFn`. * Cancelling a task is primarily used to remove event listeners from * the task target. */ const customCancelGlobal = function (task: InternalEventTask) { // if task is not marked as isRemoved, this call is directly // from Zone.prototype.cancelTask, we should remove the task // from tasksList of target first if (!task.isRemoved) { const symbolEventNames = zoneSymbolEventNames[task.eventName!]; let symbolEventName; if (symbolEventNames) { symbolEventName = symbolEventNames[task.capture ? TRUE_STR : FALSE_STR]; } const existingTasks = symbolEventName && task.target[symbolEventName]; if (existingTasks) { for (let i = 0; i < existingTasks.length; i++) { const existingTask = existingTasks[i]; if (existingTask === task) { existingTasks.splice(i, 1); // set isRemoved to data for faster invokeTask check task.isRemoved = true; if (task.removeAbortListener) { task.removeAbortListener(); task.removeAbortListener = null; } if (existingTasks.length === 0) { // all tasks for the eventName + capture have gone, // remove globalZoneAwareCallback and remove the task cache from target task.allRemoved = true; task.target[symbolEventName] = null; } break; } } } } // if all tasks for the eventName + capture have gone, // we will really remove the global event callback, // if not, return if (!task.allRemoved) { return; } return nativeRemoveEventListener.call( task.target, task.eventName, task.capture ? globalZoneAwareCaptureCallback : globalZoneAwareCallback, task.options, ); }; const customScheduleNonGlobal = function (task: Task) { return nativeAddEventListener.call( taskData.target, taskData.eventName, task.invoke, taskData.options, ); }; const customSchedulePrepend = function (task: Task) { return nativePrependEventListener.call( taskData.target, taskData.eventName, task.invoke, taskData.options, ); }; const customCancelNonGlobal = function (task: any) { return nativeRemoveEventListener.call(task.target, task.eventName, task.invoke, task.options); }; const customSchedule = useGlobalCallback ? customScheduleGlobal : customScheduleNonGlobal; const customCancel = useGlobalCallback ? customCancelGlobal : customCancelNonGlobal; const compareTaskCallbackVsDelegate = function (task: any, delegate: any) { const typeOfDelegate = typeof delegate; return ( (typeOfDelegate === 'function' && task.callback === delegate) || (typeOfDelegate === 'object' && task.originalDelegate === delegate) ); }; const compare = patchOptions?.diff || compareTaskCallbackVsDelegate; const unpatchedEvents: string[] = (Zone as any)[zoneSymbol('UNPATCHED_EVENTS')]; const passiveEvents: string[] = _global[zoneSymbol('PASSIVE_EVENTS')]; function copyEventListenerOptions(options: any) { if (typeof options === 'object' && options !== null) { // We need to destructure the target `options` object since it may // be frozen or sealed (possibly provided implicitly by a third-party // library), or its properties may be readonly. const newOptions: any = {...options}; // The `signal` option was recently introduced, which caused regressions in // third-party scenarios where `AbortController` was directly provided to // `addEventListener` as options. For instance, in cases like // `document.addEventListener('keydown', callback, abortControllerInstance)`, // which is valid because `AbortController` includes a `signal` getter, spreading // `{...options}` wouldn't copy the `signal`. Additionally, using `Object.create` // isn't feasible since `AbortController` is a built-in object type, and attempting // to create a new object directly with it as the prototype might result in // unexpected behavior. if (options.signal) { newOptions.signal = options.signal; } return newOptions; } return options; } const makeAddListener = function ( nativeListener: any, addSource: string, customScheduleFn: any, customCancelFn: any, returnTarget = false, prepend = false, ) { return function (this: unknown) { const target = this || _global; let eventName = arguments[0]; if (patchOptions && patchOptions.transferEventName) { eventName = patchOptions.transferEventName(eventName); } let delegate: EventListenerOrEventListenerObject = arguments[1]; if (!delegate) { return nativeListener.apply(this, arguments); } if (isNode && eventName === 'uncaughtException') { // don't patch uncaughtException of nodejs to prevent endless loop return nativeListener.apply(this, arguments); } // To improve `addEventListener` performance, we will create the callback // for the task later when the task is invoked. let isEventListenerObject = false; if (typeof delegate !== 'function') { // This checks whether the provided listener argument is an object with // a `handleEvent` method (since we can call `addEventListener` with a // function `event => ...` or with an object `{ handleEvent: event => ... }`). if (!delegate.handleEvent) { return nativeListener.apply(this, arguments); } isEventListenerObject = true; } if (validateHandler && !validateHandler(nativeListener, delegate, target, arguments)) { return; } const passive = !!passiveEvents && passiveEvents.indexOf(eventName) !== -1; const options = copyEventListenerOptions(buildEventListenerOptions(arguments[2], passive)); const signal: AbortSignal | undefined = options?.signal; if (signal?.aborted) { // the signal is an aborted one, just return without attaching the event listener. return; } if (unpatchedEvents) { // check unpatched list for (let i = 0; i < unpatchedEvents.length; i++) { if (eventName === unpatchedEvents[i]) { if (passive) { return nativeListener.call(target, eventName, delegate, options); } else { return nativeListener.apply(this, arguments); } } } } const capture = !options ? false : typeof options === 'boolean' ? true : options.capture; const once = options && typeof options === 'object' ? options.once : false; const zone = Zone.current; let symbolEventNames = zoneSymbolEventNames[eventName]; if (!symbolEventNames) { prepareEventNames(eventName, eventNameToString); symbolEventNames = zoneSymbolEventNames[eventName]; } const symbolEventName = symbolEventNames[capture ? TRUE_STR : FALSE_STR]; let existingTasks = target[symbolEventName]; let isExisting = false; if (existingTasks) { // already have task registered isExisting = true; if (checkDuplicate) { for (let i = 0; i < existingTasks.length; i++) { if (compare(existingTasks[i], delegate)) { // same callback, same capture, same event name, just return return; } } } } else { existingTasks = target[symbolEventName] = []; } let source; const constructorName = target.constructor['name']; const targetSource = globalSources[constructorName]; if (targetSource) { source = targetSource[eventName]; } if (!source) { source = constructorName + addSource + (eventNameToString ? eventNameToString(eventName) : eventName); } // In the code below, `options` should no longer be reassigned; instead, it // should only be mutated. This is because we pass that object to the native // `addEventListener`. // It's generally recommended to use the same object reference for options. // This ensures consistency and avoids potential issues. taskData.options = options; if (once) { // When using `addEventListener` with the `once` option, we don't pass // the `once` option directly to the native `addEventListener` method. // Instead, we keep the `once` setting and handle it ourselves. taskData.options.once = false; } taskData.target = target; taskData.capture = capture; taskData.eventName = eventName; taskData.isExisting = isExisting; const data = useGlobalCallback ? OPTIMIZED_ZONE_EVENT_TASK_DATA : undefined; // keep taskData into data to allow onScheduleEventTask to access the task information if (data) { data.taskData = taskData; } if (signal) { // When using `addEventListener` with the `signal` option, we don't pass // the `signal` option directly to the native `addEventListener` method. // Instead, we keep the `signal` setting and handle it ourselves. taskData.options.signal = undefined; } // The `scheduleEventTask` function will ultimately call `customScheduleGlobal`, // which in turn calls the native `addEventListener`. This is why `taskData.options` // is updated before scheduling the task, as `customScheduleGlobal` uses // `taskData.options` to pass it to the native `addEventListener`. const task: InternalEventTask = zone.scheduleEventTask( source, <Function>delegate, data, customScheduleFn, customCancelFn, ); if (signal) { // after task is scheduled, we need to store the signal back to task.options taskData.options.signal = signal; // Wrapping `task` in a weak reference would not prevent memory leaks. Weak references are // primarily used for preventing strong references cycles. `onAbort` is always reachable // as it's an event listener, so its closure retains a strong reference to the `task`. const onAbort = () => task.zone.cancelTask(task); nativeListener.call(signal, 'abort', onAbort, {once: true}); // We need to remove the `abort` listener when the event listener is going to be removed, // as it creates a closure that captures `task`. This closure retains a reference to the // `task` object even after it goes out of scope, preventing `task` from being garbage // collected. task.removeAbortListener = () => signal.removeEventListener('abort', onAbort); } // should clear taskData.target to avoid memory leak // issue, https://github.com/angular/angular/issues/20442 taskData.target = null; // need to clear up taskData because it is a global object if (data) { data.taskData = null; } // have to save those information to task in case // application may call task.zone.cancelTask() directly if (once) { taskData.options.once = true; } if (typeof task.options !== 'boolean') { // We should save the options on the task (if it's an object) because // we'll be using `task.options` later when removing the event listener // and passing it back to `removeEventListener`. task.options = options; } task.target = target; task.capture = capture; task.eventName = eventName; if (isEventListenerObject) { // save original delegate for compare to check duplicate task.originalDelegate = <EventListenerObject>delegate; } if (!prepend) { existingTasks.push(task); } else { existingTasks.unshift(task); } if (returnTarget) { return target; } }; }; proto[ADD_EVENT_LISTENER] = makeAddListener( nativeAddEventListener, ADD_EVENT_LISTENER_SOURCE, customSchedule, customCancel, returnTarget, ); if (nativePrependEventListener) { proto[PREPEND_EVENT_LISTENER] = makeAddListener( nativePrependEventListener, PREPEND_EVENT_LISTENER_SOURCE, customSchedulePrepend, customCancel, returnTarget, true, ); } proto[REMOVE_EVENT_LISTENER] = function () { const target = this || _global; let eventName = arguments[0]; if (patchOptions && patchOptions.transferEventName) { eventName = patchOptions.transferEventName(eventName); } const options = arguments[2]; const capture = !options ? false : typeof options === 'boolean' ? true : options.capture; const delegate = arguments[1]; if (!delegate) { return nativeRemoveEventListener.apply(this, arguments); } if ( validateHandler && !validateHandler(nativeRemoveEventListener, delegate, target, arguments) ) { return; } const symbolEventNames = zoneSymbolEventNames[eventName]; let symbolEventName; if (symbolEventNames) { symbolEventName = symbolEventNames[capture ? TRUE_STR : FALSE_STR]; } const existingTasks: InternalEventTask[] = symbolEventName && target[symbolEventName]; // `existingTasks` may not exist if the `addEventListener` was called before // it was patched by zone.js. Please refer to the attached issue for // clarification, particularly after the `if` condition, before calling // the native `removeEventListener`. if (existingTasks) { for (let i = 0; i < existingTasks.length; i++) { const existingTask = existingTasks[i]; if (compare(existingTask, delegate)) { existingTasks.splice(i, 1); // set isRemoved to data for faster invokeTask check existingTask.isRemoved = true; if (existingTasks.length === 0) { // all tasks for the eventName + capture have gone, // remove globalZoneAwareCallback and remove the task cache from target existingTask.allRemoved = true; target[symbolEventName] = null; // in the target, we have an event listener which is added by on_property // such as target.onclick = function() {}, so we need to clear this internal // property too if all delegates with capture=false were removed // https:// github.com/angular/angular/issues/31643 // https://github.com/angular/angular/issues/54581 if (!capture && typeof eventName === 'string') { const onPropertySymbol = ZONE_SYMBOL_PREFIX + 'ON_PROPERTY' + eventName; target[onPropertySymbol] = null; } } // In all other conditions, when `addEventListener` is called after being // patched by zone.js, we would always find an event task on the `EventTarget`. // This will trigger `cancelFn` on the `existingTask`, leading to `customCancelGlobal`, // which ultimately removes an event listener and cleans up the abort listener // (if an `AbortSignal` was provided when scheduling a task). existingTask.zone.cancelTask(existingTask); if (returnTarget) { return target; } return; } } } // https://github.com/angular/zone.js/issues/930 // We may encounter a situation where the `addEventListener` was // called on the event target before zone.js is loaded, resulting // in no task being stored on the event target due to its invocation // of the native implementation. In this scenario, we simply need to // invoke the native `removeEventListener`. return nativeRemoveEventListener.apply(this, arguments); }; proto[LISTENERS_EVENT_LISTENER] = function () { const target = this || _global; let eventName = arguments[0]; if (patchOptions && patchOptions.transferEventName) { eventName = patchOptions.transferEventName(eventName); } const listeners: any[] = []; const tasks = findEventTasks( target, eventNameToString ? eventNameToString(eventName) : eventName, ); for (let i = 0; i < tasks.length; i++) { const task: any = tasks[i]; let delegate = task.originalDelegate ? task.originalDelegate : task.callback; listeners.push(delegate); } return listeners; }; proto[REMOVE_ALL_LISTENERS_EVENT_LISTENER] = function () { const target = this || _global; let eventName = arguments[0]; if (!eventName) { const keys = Object.keys(target); for (let i = 0; i < keys.length; i++) { const prop = keys[i]; const match = EVENT_NAME_SYMBOL_REGX.exec(prop); let evtName = match && match[1]; // in nodejs EventEmitter, removeListener event is // used for monitoring the removeListener call, // so just keep removeListener eventListener until // all other eventListeners are removed if (evtName && evtName !== 'removeListener') { this[REMOVE_ALL_LISTENERS_EVENT_LISTENER].call(this, evtName); } } // remove removeListener listener finally this[REMOVE_ALL_LISTENERS_EVENT_LISTENER].call(this, 'removeListener'); } else { if (patchOptions && patchOptions.transferEventName) { eventName = patchOptions.transferEventName(eventName); } const symbolEventNames = zoneSymbolEventNames[eventName]; if (symbolEventNames) { const symbolEventName = symbolEventNames[FALSE_STR]; const symbolCaptureEventName = symbolEventNames[TRUE_STR]; const tasks = target[symbolEventName]; const captureTasks = target[symbolCaptureEventName]; if (tasks) { const removeTasks = tasks.slice(); for (let i = 0; i < removeTasks.length; i++) { const task = removeTasks[i]; let delegate = task.originalDelegate ? task.originalDelegate : task.callback; this[REMOVE_EVENT_LISTENER].call(this, eventName, delegate, task.options); } } if (captureTasks) { const removeTasks = captureTasks.slice(); for (let i = 0; i < removeTasks.length; i++) { const task = removeTasks[i]; let delegate = task.originalDelegate ? task.originalDelegate : task.callback; this[REMOVE_EVENT_LISTENER].call(this, eventName, delegate, task.options); } } } } if (returnTarget) { return this; } }; // for native toString patch attachOriginToPatched(proto[ADD_EVENT_LISTENER], nativeAddEventListener); attachOriginToPatched(proto[REMOVE_EVENT_LISTENER], nativeRemoveEventListener); if (nativeRemoveAllListeners) { attachOriginToPatched(proto[REMOVE_ALL_LISTENERS_EVENT_LISTENER], nativeRemoveAllListeners); } if (nativeListeners) { attachOriginToPatched(proto[LISTENERS_EVENT_LISTENER], nativeListeners); } return true; } let results: any[] = []; for (let i = 0; i < apis.length; i++) { results[i] = patchEventTargetMethods(apis[i], patchOptions); } return results; } export function findEventTasks(target: any, eventName: string): Task[] { if (!eventName) { const foundTasks: any[] = []; for (let prop in target) { const match = EVENT_NAME_SYMBOL_REGX.exec(prop); let evtName = match && match[1]; if (evtName && (!eventName || evtName === eventName)) { const tasks: any = target[prop]; if (tasks) { for (let i = 0; i < tasks.length; i++) { foundTasks.push(tasks[i]); } } } } return foundTasks; } let symbolEventName = zoneSymbolEventNames[eventName]; if (!symbolEventName) { prepareEventNames(eventName); symbolEventName = zoneSymbolEventNames[eventName]; } const captureFalseTasks = target[symbolEventName[FALSE_STR]]; const captureTrueTasks = target[symbolEventName[TRUE_STR]]; if (!captureFalseTasks) { return captureTrueTasks ? captureTrueTasks.slice() : []; } else { return captureTrueTasks ? captureFalseTasks.concat(captureTrueTasks) : captureFalseTasks.slice(); } } export function patchEventPrototype(global: any, api: _ZonePrivate) { const Event = global['Event']; if (Event && Event.prototype) { api.patchMethod( Event.prototype, 'stopImmediatePropagation', (delegate: Function) => function (self: any, args: any[]) { self[IMMEDIATE_PROPAGATION_SYMBOL] = true; // we need to call the native stopImmediatePropagation // in case in some hybrid application, some part of // application will be controlled by zone, some are not delegate && delegate.apply(self, args); }, ); } }