| 123456789101112131415161718192021222324252627282930313233343536373839404142434445464748495051525354555657585960616263646566676869707172737475767778798081828384858687888990919293949596979899100101102103104105106107108109110111112113114115116117118119120121122123124125126127128129130131132133134135136137138139140141142143144145146147148149150151152153154155156157158159160161162163164165166167168169170171172173174175176177178179180181182183184185186187188189190191192193194195196197198199200201202203204205206207208209210211212213214215216217218219220221222223224225226227228229230231232233234235236237238239240241242243244245246247248249250251252253254255256257258259260261262263264265266267268269270271272273274275276277278279280281282283284285286287288289290291292293294295296297298299300301302303304305306307308309310311312313314315316317318319320321322323324325326327328329330331332333334335336337338339340341342343344345346347348349350 | import { IfAny } from '@vue/shared';declare type BaseTypes = string | number | boolean;declare type Builtin = Primitive | Function | Date | Error | RegExp;declare type CollectionTypes = IterableCollections | WeakCollections;export declare function computed<T>(getter: ComputedGetter<T>, debugOptions?: DebuggerOptions): ComputedRef<T>;export declare function computed<T>(options: WritableComputedOptions<T>, debugOptions?: DebuggerOptions): WritableComputedRef<T>;export declare type ComputedGetter<T> = (...args: any[]) => T;export declare interface ComputedRef<T = any> extends WritableComputedRef<T> {    readonly value: T;    [ComputedRefSymbol]: true;}declare class ComputedRefImpl<T> {    private readonly _setter;    dep?: Dep;    private _value;    readonly effect: ReactiveEffect<T>;    readonly __v_isRef = true;    readonly [ReactiveFlags.IS_READONLY]: boolean;    _dirty: boolean;    _cacheable: boolean;    constructor(getter: ComputedGetter<T>, _setter: ComputedSetter<T>, isReadonly: boolean, isSSR: boolean);    get value(): T;    set value(newValue: T);}declare const ComputedRefSymbol: unique symbol;export declare type ComputedSetter<T> = (v: T) => void;export declare function customRef<T>(factory: CustomRefFactory<T>): Ref<T>;export declare type CustomRefFactory<T> = (track: () => void, trigger: () => void) => {    get: () => T;    set: (value: T) => void;};export declare type DebuggerEvent = {    effect: ReactiveEffect;} & DebuggerEventExtraInfo;export declare type DebuggerEventExtraInfo = {    target: object;    type: TrackOpTypes | TriggerOpTypes;    key: any;    newValue?: any;    oldValue?: any;    oldTarget?: Map<any, any> | Set<any>;};export declare interface DebuggerOptions {    onTrack?: (event: DebuggerEvent) => void;    onTrigger?: (event: DebuggerEvent) => void;}export declare type DeepReadonly<T> = T extends Builtin ? T : T extends Map<infer K, infer V> ? ReadonlyMap<DeepReadonly<K>, DeepReadonly<V>> : T extends ReadonlyMap<infer K, infer V> ? ReadonlyMap<DeepReadonly<K>, DeepReadonly<V>> : T extends WeakMap<infer K, infer V> ? WeakMap<DeepReadonly<K>, DeepReadonly<V>> : T extends Set<infer U> ? ReadonlySet<DeepReadonly<U>> : T extends ReadonlySet<infer U> ? ReadonlySet<DeepReadonly<U>> : T extends WeakSet<infer U> ? WeakSet<DeepReadonly<U>> : T extends Promise<infer U> ? Promise<DeepReadonly<U>> : T extends Ref<infer U> ? Readonly<Ref<DeepReadonly<U>>> : T extends {} ? {    readonly [K in keyof T]: DeepReadonly<T[K]>;} : Readonly<T>;export declare function deferredComputed<T>(getter: () => T): ComputedRef<T>;declare type Dep = Set<ReactiveEffect> & TrackedMarkers;export declare function effect<T = any>(fn: () => T, options?: ReactiveEffectOptions): ReactiveEffectRunner;export declare type EffectScheduler = (...args: any[]) => any;export declare class EffectScope {    detached: boolean;    /* Excluded from this release type: active */    /* Excluded from this release type: effects */    /* Excluded from this release type: cleanups */    /* Excluded from this release type: parent */    /* Excluded from this release type: scopes */    /* Excluded from this release type: index */    constructor(detached?: boolean);    run<T>(fn: () => T): T | undefined;    /* Excluded from this release type: on */    /* Excluded from this release type: off */    stop(fromParent?: boolean): void;}export declare function effectScope(detached?: boolean): EffectScope;export declare function enableTracking(): void;export declare function getCurrentScope(): EffectScope | undefined;export declare function isProxy(value: unknown): boolean;export declare function isReactive(value: unknown): boolean;export declare function isReadonly(value: unknown): boolean;export declare function isRef<T>(r: Ref<T> | unknown): r is Ref<T>;export declare function isShallow(value: unknown): boolean;declare type IterableCollections = Map<any, any> | Set<any>;export declare const ITERATE_KEY: unique symbol;export declare function markRaw<T extends object>(value: T): Raw<T>;export declare function onScopeDispose(fn: () => void): void;export declare function pauseTracking(): void;declare type Primitive = string | number | boolean | bigint | symbol | undefined | null;export declare function proxyRefs<T extends object>(objectWithRefs: T): ShallowUnwrapRef<T>;export declare type Raw<T> = T & {    [RawSymbol]?: true;};declare const RawSymbol: unique symbol;/** * Creates a reactive copy of the original object. * * The reactive conversion is "deep"—it affects all nested properties. In the * ES2015 Proxy based implementation, the returned proxy is **not** equal to the * original object. It is recommended to work exclusively with the reactive * proxy and avoid relying on the original object. * * A reactive object also automatically unwraps refs contained in it, so you * don't need to use `.value` when accessing and mutating their value: * * ```js * const count = ref(0) * const obj = reactive({ *   count * }) * * obj.count++ * obj.count // -> 1 * count.value // -> 1 * ``` */export declare function reactive<T extends object>(target: T): UnwrapNestedRefs<T>;export declare class ReactiveEffect<T = any> {    fn: () => T;    scheduler: EffectScheduler | null;    active: boolean;    deps: Dep[];    parent: ReactiveEffect | undefined;    /* Excluded from this release type: computed */    /* Excluded from this release type: allowRecurse */    /* Excluded from this release type: deferStop */    onStop?: () => void;    onTrack?: (event: DebuggerEvent) => void;    onTrigger?: (event: DebuggerEvent) => void;    constructor(fn: () => T, scheduler?: EffectScheduler | null, scope?: EffectScope);    run(): T | undefined;    stop(): void;}export declare interface ReactiveEffectOptions extends DebuggerOptions {    lazy?: boolean;    scheduler?: EffectScheduler;    scope?: EffectScope;    allowRecurse?: boolean;    onStop?: () => void;}export declare interface ReactiveEffectRunner<T = any> {    (): T;    effect: ReactiveEffect;}export declare const enum ReactiveFlags {    SKIP = "__v_skip",    IS_REACTIVE = "__v_isReactive",    IS_READONLY = "__v_isReadonly",    IS_SHALLOW = "__v_isShallow",    RAW = "__v_raw"}/** * Creates a readonly copy of the original object. Note the returned copy is not * made reactive, but `readonly` can be called on an already reactive object. */export declare function readonly<T extends object>(target: T): DeepReadonly<UnwrapNestedRefs<T>>;export declare interface Ref<T = any> {    value: T;    /**     * Type differentiator only.     * We need this to be in public d.ts but don't want it to show up in IDE     * autocomplete, so we use a private Symbol instead.     */    [RefSymbol]: true;}export declare function ref<T extends object>(value: T): [T] extends [Ref] ? T : Ref<UnwrapRef<T>>;export declare function ref<T>(value: T): Ref<UnwrapRef<T>>;export declare function ref<T = any>(): Ref<T | undefined>;declare const RefSymbol: unique symbol;/** * This is a special exported interface for other packages to declare * additional types that should bail out for ref unwrapping. For example * \@vue/runtime-dom can declare it like so in its d.ts: * * ``` ts * declare module '@vue/reactivity' { *   export interface RefUnwrapBailTypes { *     runtimeDOMBailTypes: Node | Window *   } * } * ``` * * Note that api-extractor somehow refuses to include `declare module` * augmentations in its generated d.ts, so we have to manually append them * to the final generated d.ts in our build process. */export declare interface RefUnwrapBailTypes {}export declare function resetTracking(): void;export declare type ShallowReactive<T> = T & {    [ShallowReactiveMarker]?: true;};/** * Return a shallowly-reactive copy of the original object, where only the root * level properties are reactive. It also does not auto-unwrap refs (even at the * root level). */export declare function shallowReactive<T extends object>(target: T): ShallowReactive<T>;declare const ShallowReactiveMarker: unique symbol;/** * Returns a reactive-copy of the original object, where only the root level * properties are readonly, and does NOT unwrap refs nor recursively convert * returned properties. * This is used for creating the props proxy object for stateful components. */export declare function shallowReadonly<T extends object>(target: T): Readonly<T>;export declare type ShallowRef<T = any> = Ref<T> & {    [ShallowRefMarker]?: true;};export declare function shallowRef<T extends object>(value: T): T extends Ref ? T : ShallowRef<T>;export declare function shallowRef<T>(value: T): ShallowRef<T>;export declare function shallowRef<T = any>(): ShallowRef<T | undefined>;declare const ShallowRefMarker: unique symbol;export declare type ShallowUnwrapRef<T> = {    [K in keyof T]: T[K] extends Ref<infer V> ? V : T[K] extends Ref<infer V> | undefined ? unknown extends V ? undefined : V | undefined : T[K];};declare function stop_2(runner: ReactiveEffectRunner): void;export { stop_2 as stop }export declare function toRaw<T>(observed: T): T;export declare type ToRef<T> = IfAny<T, Ref<T>, [T] extends [Ref] ? T : Ref<T>>;export declare function toRef<T extends object, K extends keyof T>(object: T, key: K): ToRef<T[K]>;export declare function toRef<T extends object, K extends keyof T>(object: T, key: K, defaultValue: T[K]): ToRef<Exclude<T[K], undefined>>;export declare type ToRefs<T = any> = {    [K in keyof T]: ToRef<T[K]>;};export declare function toRefs<T extends object>(object: T): ToRefs<T>;export declare function track(target: object, type: TrackOpTypes, key: unknown): void;/** * wasTracked and newTracked maintain the status for several levels of effect * tracking recursion. One bit per level is used to define whether the dependency * was/is tracked. */declare type TrackedMarkers = {    /**     * wasTracked     */    w: number;    /**     * newTracked     */    n: number;};export declare const enum TrackOpTypes {    GET = "get",    HAS = "has",    ITERATE = "iterate"}export declare function trigger(target: object, type: TriggerOpTypes, key?: unknown, newValue?: unknown, oldValue?: unknown, oldTarget?: Map<unknown, unknown> | Set<unknown>): void;export declare const enum TriggerOpTypes {    SET = "set",    ADD = "add",    DELETE = "delete",    CLEAR = "clear"}export declare function triggerRef(ref: Ref): void;export declare function unref<T>(ref: T | Ref<T>): T;export declare type UnwrapNestedRefs<T> = T extends Ref ? T : UnwrapRefSimple<T>;export declare type UnwrapRef<T> = T extends ShallowRef<infer V> ? V : T extends Ref<infer V> ? UnwrapRefSimple<V> : UnwrapRefSimple<T>;declare type UnwrapRefSimple<T> = T extends Function | CollectionTypes | BaseTypes | Ref | RefUnwrapBailTypes[keyof RefUnwrapBailTypes] | {    [RawSymbol]?: true;} ? T : T extends ReadonlyArray<any> ? {    [K in keyof T]: UnwrapRefSimple<T[K]>;} : T extends object & {    [ShallowReactiveMarker]?: never;} ? {    [P in keyof T]: P extends symbol ? T[P] : UnwrapRef<T[P]>;} : T;declare type WeakCollections = WeakMap<any, any> | WeakSet<any>;export declare interface WritableComputedOptions<T> {    get: ComputedGetter<T>;    set: ComputedSetter<T>;}export declare interface WritableComputedRef<T> extends Ref<T> {    readonly effect: ReactiveEffect<T>;}export { }
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