vesium
Version:
Vue component and composition-api library for Cesium.
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text/typescript
import { Arrayable, FunctionArgs, MaybeComputedElementRef } from "@vueuse/core";
import { ComputedRef, MaybeRef, MaybeRefOrGetter, Ref, ShallowReactive, ShallowRef, WatchStopHandle } from "vue";
import { Camera, Cartesian2, Cartesian3, Cartographic, CustomDataSource, CzmlDataSource, DataSource, DataSourceCollection, Entity, EntityCollection, Event, GeoJsonDataSource, GpxDataSource, ImageryLayer, ImageryLayerCollection, JulianDate, KeyboardEventModifier, KmlDataSource, Material, MaterialProperty, PostProcessStage, PostProcessStageCollection, PrimitiveCollection, Property, Rectangle, Scene, ScreenSpaceEventHandler, ScreenSpaceEventType, TextureMagnificationFilter, TextureMinificationFilter, Viewer } from "cesium";
//#region createViewer/index.d.ts
/**
* Pass in an existing Viewer instance,
* which can be accessed by the current component and its descendant components using {@link useViewer}
*
* When the Viewer instance referenced by this overloaded function becomes invalid, it will not trigger destruction.
*/
declare function createViewer(viewer: MaybeRef<Viewer | undefined>): Readonly<ShallowRef<Viewer | undefined>>;
/**
* Initialize a Viewer instance, which can be accessed by the
* current component and its descendant components using {@link useViewer}.
*
* The Viewer instance created by this overloaded function will automatically be destroyed when it becomes invalid.
*
* @param element - The DOM element or ID that will contain the widget
* @param options - @see {Viewer.ConstructorOptions}
*/
declare function createViewer(element?: MaybeComputedElementRef, options?: Viewer.ConstructorOptions): Readonly<ShallowRef<Viewer | undefined>>;
//# sourceMappingURL=index.d.ts.map
//#endregion
//#region toPromiseValue/index.d.ts
type OnAsyncGetterCancel = (onCancel: () => void) => void;
type MaybeAsyncGetter<T> = () => (Promise<T> | T);
type MaybeRefOrAsyncGetter<T> = MaybeRef<T> | MaybeAsyncGetter<T>;
interface ToPromiseValueOptions {
/**
* Determines whether the source should be unwrapped to its raw value.
* @default true
*/
raw?: boolean;
}
/**
* Similar to Vue's built-in `toValue`, but capable of handling asynchronous functions, thus returning a `await value`.
*
* Used in conjunction with VueUse's `computedAsync`.
*
* @param source The source value, which can be a reactive reference or an asynchronous getter.
* @param options Conversion options
*
* @example
* ```ts
*
* const data = computedAsync(async ()=> {
* return await toPromiseValue(promiseRef)
* })
*
* ```
*/
declare function toPromiseValue<T>(source: MaybeRefOrAsyncGetter<T>, options?: ToPromiseValueOptions): Promise<T>;
//# sourceMappingURL=index.d.ts.map
//#endregion
//#region useCameraState/index.d.ts
interface UseCameraStateOptions {
/**
* The camera to use
* @default useViewer().value.scene.camera
*/
camera?: MaybeRefOrGetter<Camera | undefined>;
/**
* Camera event type to watch
* @default `changed`
*/
event?: MaybeRefOrGetter<'changed' | 'moveStart' | 'moveEnd'>;
/**
* Throttled delay duration (ms)
* @default 8
*/
delay?: number;
}
interface UseCameraStateRetrun {
camera: ComputedRef<Camera | undefined>;
/**
* The position of the camera.
*/
position: ComputedRef<Cartesian3 | undefined>;
/**
* The view direction of the camera.
*/
direction: ComputedRef<Cartesian3 | undefined>;
/**
* The up direction of the camera.
*/
up: ComputedRef<Cartesian3 | undefined>;
/**
* The right direction of the camera.
*/
right: ComputedRef<Cartesian3 | undefined>;
/**
* Gets the {@link Cartographic} position of the camera, with longitude and latitude
* expressed in radians and height in meters. In 2D and Columbus View, it is possible
* for the returned longitude and latitude to be outside the range of valid longitudes
* and latitudes when the camera is outside the map.
*/
positionCartographic: ComputedRef<Cartographic | undefined>;
/**
* Gets the position of the camera in world coordinates.
*/
positionWC: ComputedRef<Cartesian3 | undefined>;
/**
* Gets the view direction of the camera in world coordinates.
*/
directionWC: ComputedRef<Cartesian3 | undefined>;
/**
* Gets the up direction of the camera in world coordinates.
*/
upWC: ComputedRef<Cartesian3 | undefined>;
/**
* Gets the right direction of the camera in world coordinates.
*/
rightWC: ComputedRef<Cartesian3 | undefined>;
/**
* Computes the approximate visible rectangle on the ellipsoid.
*/
viewRectangle: ComputedRef<Rectangle | undefined>;
/**
* Gets the camera heading in radians.
*/
heading: ComputedRef<number | undefined>;
/**
* Gets the camera pitch in radians.
*/
pitch: ComputedRef<number | undefined>;
/**
* Gets the camera roll in radians.
*/
roll: ComputedRef<number | undefined>;
/**
* Gets the camera center hierarchy level
*/
level: ComputedRef<number | undefined>;
}
/**
* Reactive Cesium Camera state
*/
declare function useCameraState(options?: UseCameraStateOptions): UseCameraStateRetrun;
//# sourceMappingURL=index.d.ts.map
//#endregion
//#region useCesiumEventListener/index.d.ts
interface UseCesiumEventListenerOptions {
/**
* Whether to active the event listener.
* @default true
*/
isActive?: MaybeRefOrGetter<boolean>;
}
/**
* Easily use the `addEventListener` in `Cesium.Event` instances,
* when the dependent data changes or the component is unmounted,
* the listener function will automatically reload or destroy.
*/
declare function useCesiumEventListener<FN extends FunctionArgs<any[]>>(event: Arrayable<Event<FN> | undefined> | Arrayable<MaybeRefOrGetter<Event<FN> | undefined>> | MaybeRefOrGetter<Arrayable<Event<FN> | undefined>>, listener: FN, options?: UseCesiumEventListenerOptions): WatchStopHandle;
//# sourceMappingURL=index.d.ts.map
//#endregion
//#region useCesiumFps/index.d.ts
interface UseCesiumFpsOptions {
/**
* Throttled sampling (ms)
* @default 100
*/
delay?: number;
}
interface UseCesiumFpsRetrun {
/**
* Inter-frame Interval (ms)
*/
interval: Readonly<Ref<number>>;
/**
* Frames Per Second
*/
fps: Readonly<Ref<number>>;
}
/**
* Reactive get the frame rate of Cesium
*/
declare function useCesiumFps(options?: UseCesiumFpsOptions): UseCesiumFpsRetrun;
//# sourceMappingURL=index.d.ts.map
//#endregion
//#region useCollectionScope/index.d.ts
type EffcetRemovePredicate<T> = (instance: T) => boolean;
interface UseCollectionScopeReturn<isPromise extends boolean, T, AddArgs extends any[], RemoveArgs extends any[], RemoveReturn = any> {
/**
* A `Set` for storing SideEffect instance,
* which is encapsulated using `ShallowReactive` to provide Vue's reactive functionality
*/
scope: Readonly<ShallowReactive<Set<T>>>;
/**
* Add SideEffect instance
*/
add: (i: T, ...args: AddArgs) => isPromise extends true ? Promise<T> : T;
/**
* Remove specified SideEffect instance
*/
remove: (i: T, ...args: RemoveArgs) => RemoveReturn;
/**
* Remove all SideEffect instance that meets the specified criteria
*/
removeWhere: (predicate: EffcetRemovePredicate<T>, ...args: RemoveArgs) => void;
/**
* Remove all SideEffect instance within current scope
*/
removeScope: (...args: RemoveArgs) => void;
}
/**
* Scope the SideEffects of Cesium-related `Collection` and automatically remove them when unmounted.
* - note: This is a basic function that is intended to be called by other lower-level function
* @param addFn - add SideEffect function. eg.`entites.add`
* @param removeFn - Clean SideEffect function. eg.`entities.remove`
* @param removeScopeArgs - The parameters to pass for `removeScope` triggered when the component is unmounted
*/
declare function useCollectionScope<isPromise extends boolean, T = any, AddArgs extends any[] = any[], RemoveArgs extends any[] = any[], RemoveReturn = any>(addFn: (i: T, ...args: AddArgs) => isPromise extends true ? Promise<T> : T, removeFn: (i: T, ...args: RemoveArgs) => RemoveReturn, removeScopeArgs: RemoveArgs): UseCollectionScopeReturn<isPromise, T, AddArgs, RemoveArgs, RemoveReturn>;
//# sourceMappingURL=index.d.ts.map
//#endregion
//#region utils/arrayDiff.d.ts
interface ArrayDiffRetrun<T> {
added: T[];
removed: T[];
}
/**
* 计算两个数组的差异,返回新增和删除的元素
*/
declare function arrayDiff<T>(list: T[], oldList: T[] | undefined): ArrayDiffRetrun<T>;
//# sourceMappingURL=arrayDiff.d.ts.map
//#endregion
//#region utils/canvasCoordToCartesian.d.ts
/**
* Convert canvas coordinates to Cartesian coordinates
*
* @param canvasCoord Canvas coordinates
* @param scene Cesium.Scene instance
* @param mode optional values are 'pickPosition' | 'globePick' | 'auto' | 'noHeight' @default 'auto'
*
* `pickPosition`: Use scene.pickPosition for conversion, which can be used for picking models, oblique photography, etc.
* However, if depth detection is not enabled (globe.depthTestAgainstTerrain=false), picking terrain or inaccurate issues may occur
*
* `globePick`: Use camera.getPickRay for conversion, which cannot be used for picking models or oblique photography,
* but can be used for picking terrain. If terrain does not exist, the picked elevation is 0
*
* `auto`: Automatically determine which picking content to return
*
* Calculation speed comparison: globePick > auto >= pickPosition
*/
declare function canvasCoordToCartesian(canvasCoord: Cartesian2, scene: Scene, mode?: 'pickPosition' | 'globePick' | 'auto'): Cartesian3 | undefined;
//# sourceMappingURL=canvasCoordToCartesian.d.ts.map
//#endregion
//#region utils/cartesianToCanvasCoord.d.ts
/**
* Convert Cartesian coordinates to canvas coordinates
*
* @param position Cartesian coordinates
* @param scene Cesium.Scene instance
*/
declare function cartesianToCanvasCoord(position: Cartesian3, scene: Scene): Cartesian2;
//# sourceMappingURL=cartesianToCanvasCoord.d.ts.map
//#endregion
//#region utils/cesiumEquals.d.ts
/**
* Determines if two Cesium objects are equal.
*
* This function not only judges whether the instances are equal,
* but also judges the equals method in the example.
*
* @param left The first Cesium object
* @param right The second Cesium object
* @returns Returns true if the two Cesium objects are equal, otherwise false
*/
declare function cesiumEquals(left: any, right: any): boolean;
//# sourceMappingURL=cesiumEquals.d.ts.map
//#endregion
//#region utils/types.d.ts
type Nullable<T> = T | null | undefined;
type BasicType = number | string | boolean | symbol | bigint | null | undefined;
type ArgsFn<Args extends any[] = any[], Return = void> = (...args: Args) => Return;
type AnyFn = (...args: any[]) => any;
type MaybePromise<T = any> = T | (() => T) | Promise<T> | (() => Promise<T>);
/**
* 2D Coordinate System
*/
type CoordArray = [longitude: number, latitude: number];
/**
* 3D Coordinate System
*/
type CoordArray_ALT = [longitude: number, latitude: number, height?: number];
/**
* 2D Coordinate System
*/
interface CoordObject {
longitude: number;
latitude: number;
}
/**
* 3D Coordinate System
*/
interface CoordObject_ALT {
longitude: number;
latitude: number;
height?: number | undefined;
}
/**
* Common Coordinate
* Can be a Cartesian3 point, a Cartographic point, an array, or an object containing longitude, latitude, and optional height information
*/
type CommonCoord = Cartesian3 | Cartographic | CoordArray | CoordArray_ALT | CoordObject | CoordObject_ALT;
/**
* Common DataSource
*/
type CesiumDataSource = DataSource | CustomDataSource | CzmlDataSource | GeoJsonDataSource | GpxDataSource | KmlDataSource;
//# sourceMappingURL=types.d.ts.map
//#endregion
//#region utils/convertDMS.d.ts
type DMSCoord = [longitude: string, latitude: string, height?: number];
/**
* Convert degrees to DMS (Degrees Minutes Seconds) format string
*
* @param degrees The angle value
* @param precision The number of decimal places to retain for the seconds, defaults to 3
* @returns A DMS formatted string in the format: degrees° minutes′ seconds″
*/
declare function dmsEncode(degrees: number, precision?: number): string;
/**
* Decode a DMS (Degrees Minutes Seconds) formatted string to a decimal angle value
*
* @param dmsCode DMS formatted string, e.g. "120°30′45″N"
* @returns The decoded decimal angle value, or 0 if decoding fails
*/
declare function dmsDecode(dmsCode: string): number;
/**
* Convert latitude and longitude coordinates to degrees-minutes-seconds format
*
* @param position The latitude and longitude coordinates
* @param precision The number of decimal places to retain for 'seconds', default is 3
* @returns Returns the coordinates in degrees-minutes-seconds format, or undefined if the conversion fails
*/
declare function degreesToDms(position: CommonCoord, precision?: number): DMSCoord | undefined;
/**
* Convert DMS (Degrees Minutes Seconds) format to decimal degrees for latitude and longitude coordinates
*
* @param dms The latitude or longitude coordinate in DMS format
* @returns Returns the coordinate in decimal degrees format, or undefined if the conversion fails
*/
declare function dmsToDegrees(dms: DMSCoord): CoordArray_ALT | undefined;
//# sourceMappingURL=convertDMS.d.ts.map
//#endregion
//#region utils/is.d.ts
declare function isDef<T = any>(val?: T): val is T;
declare function isBoolean(val: any): val is boolean;
declare function isFunction<T extends AnyFn>(val: any): val is T;
declare function isNumber(val: any): val is number;
declare function isString(val: unknown): val is string;
declare function isObject(val: any): val is object;
declare function isWindow(val: any): val is Window;
declare function isPromise$1<T extends Promise<any>>(val: any): val is T;
declare function isElement<T extends Element>(val: any): val is T;
declare const isArray: (arg: any) => arg is any[];
declare function isBase64(val: string): boolean;
declare function assertError(condition: boolean, error: any): void;
//# sourceMappingURL=is.d.ts.map
//#endregion
//#region utils/property.d.ts
type MaybeProperty<T = any> = T | {
getValue: (time?: JulianDate) => T;
};
type MaybePropertyOrGetter<T = any> = MaybeProperty<T> | (() => T);
/**
* Is Cesium.Property
* @param value - The target object
*/
declare function isProperty(value: any): value is Property;
/**
* Converts a value that may be a Property into its target value, @see {toProperty} for the reverse operation
* ```typescript
* toPropertyValue('val') //=> 'val'
* toPropertyValue(new ConstantProperty('val')) //=> 'val'
* toPropertyValue(new CallbackProperty(()=>'val')) //=> 'val'
* ```
*
* @param value - The value to convert
*/
declare function toPropertyValue<T = unknown>(value: MaybeProperty<T>, time?: JulianDate): T;
type PropertyCallback<T = any> = (time: JulianDate, result?: T) => T;
/**
* Converts a value that may be a Property into a Property object, @see {toPropertyValue} for the reverse operation
*
* @param value - The property value or getter to convert, can be undefined or null
* @param isConstant - The second parameter for converting to CallbackProperty
* @returns Returns the converted Property object, if value is undefined or null, returns undefined
*/
declare function toProperty<T>(value?: MaybePropertyOrGetter<T>, isConstant?: boolean): Property;
/**
* Create a Cesium property key
*
* @param scope The host object
* @param field The property name
* @param maybeProperty Optional property or getter
* @param readonly Whether the property is read-only
*/
declare function createPropertyField<T>(scope: any, field: string, maybeProperty?: MaybePropertyOrGetter<T>, readonly?: boolean): void;
interface CreateCesiumAttributeOptions {
readonly?: boolean;
toProperty?: boolean;
/**
* The event name that triggers the change
* @default 'definitionChanged'
*/
changedEventKey?: string;
shallowClone?: boolean;
}
declare function createCesiumAttribute<Scope extends object>(scope: Scope, key: keyof Scope, value: any, options?: CreateCesiumAttributeOptions): void;
interface CreateCesiumPropertyOptions {
readonly?: boolean;
/**
* The event name that triggers the change
* @default 'definitionChanged'
*/
changedEventKey?: string;
}
declare function createCesiumProperty<Scope extends object>(scope: Scope, key: keyof Scope, value: any, options?: CreateCesiumPropertyOptions): void;
//# sourceMappingURL=property.d.ts.map
//#endregion
//#region utils/isCesiumConstant.d.ts
/**
* Determines if the Cesium property is a constant.
*
* @param value Cesium property
*/
declare function isCesiumConstant(value: MaybeProperty): boolean;
//# sourceMappingURL=isCesiumConstant.d.ts.map
//#endregion
//#region utils/material.d.ts
/**
* Cesium.Material.fabric parameters
*/
interface CesiumMaterialFabricOptions<U> {
/**
* Used to declare what material the fabric object will ultimately generate. If it's an official built-in one, use the official built-in one directly; otherwise, create a custom material and cache it.
*/
type: string;
/**
* Can nest another level of child fabric to form a composite material
*/
materials?: Material;
/**
* glsl code
*/
source?: string;
components?: {
diffuse?: string;
alpha?: string;
};
/**
* Pass variables to glsl code
*/
uniforms?: U & Record<string, any>;
}
/**
* Cesium.Material parameters
*/
interface CesiumMaterialConstructorOptions<U> {
/**
* Strict mode
*/
strict?: boolean;
/**
* translucent
*/
translucent?: boolean | ((...params: any[]) => any);
/**
* Minification filter
*/
minificationFilter?: TextureMinificationFilter;
/**
* Magnification filter
*/
magnificationFilter?: TextureMagnificationFilter;
/**
* Matrix configuration
*/
fabric: CesiumMaterialFabricOptions<U>;
}
/**
* Only as a type fix for `Cesium.Material`
*/
declare class CesiumMaterial<U> extends Material {
constructor(options: CesiumMaterialConstructorOptions<U>);
/**
* Matrix configuration
*/
fabric: CesiumMaterialFabricOptions<U>;
}
/**
* Only as a type fix for `Cesium.MaterialProperty`
*/
interface CesiumMaterialProperty<V> extends MaterialProperty {
get isConstant(): boolean;
get definitionChanged(): Event<(scope: this, field: string, value: any, previous: any) => void>;
getType: (time: JulianDate) => string;
getValue: (time: JulianDate, result?: V) => V;
equals: (other?: any) => boolean;
}
/**
* Get material from cache, alias of `Material._materialCache.getMaterial`
*/
declare function getMaterialCache<T extends Material = CesiumMaterial<any>>(type: string): T | undefined;
/**
* Add material to Cesium's material cache, alias of `Material._materialCache.addMaterial`
*/
declare function addMaterialCache(type: string, material: CesiumMaterialConstructorOptions<any>): void;
//# sourceMappingURL=material.d.ts.map
//#endregion
//#region utils/pick.d.ts
/**
* Analyze the result of Cesium's `scene.pick` and convert it to an array format
*/
declare function resolvePick(pick?: any): any[];
/**
* Determine if the given array of graphics is hit by Cesium's `scene.pick`
*
* @param pick The `scene.pick` object used for matching
* @param graphic An array of graphics to check for hits
*/
declare function pickHitGraphic(pick: any, graphic: any | any[]): boolean;
//# sourceMappingURL=pick.d.ts.map
//#endregion
//#region utils/throttle.d.ts
type ThrottleCallback<T extends any[]> = (...rest: T) => void;
/**
* Throttle function, which limits the frequency of execution of the function
*
* @param callback raw function
* @param delay Throttled delay duration (ms)
* @param trailing Trigger callback function after last call @default true
* @param leading Trigger the callback function immediately on the first call @default false
* @returns Throttle function
*/
declare function throttle<T extends any[]>(callback: ThrottleCallback<T>, delay?: number, trailing?: boolean, leading?: boolean): ThrottleCallback<T>;
//# sourceMappingURL=throttle.d.ts.map
//#endregion
//#region utils/toCartesian3.d.ts
/**
* Converts position to a coordinate point in the Cartesian coordinate system
*
* @param position Position information, which can be a Cartesian coordinate point (Cartesian3), a geographic coordinate point (Cartographic), an array, or an object containing WGS84 latitude, longitude, and height information
* @returns The converted Cartesian coordinate point. If the input parameter is invalid, undefined is returned
*/
declare function toCartesian3(position?: CommonCoord): Cartesian3 | undefined;
//# sourceMappingURL=toCartesian3.d.ts.map
//#endregion
//#region utils/toCartographic.d.ts
/**
* Converts a position to a Cartographic coordinate point
*
* @param position Position information, which can be a Cartesian3 coordinate point, a Cartographic coordinate point, an array, or an object containing WGS84 longitude, latitude, and height information
* @returns The converted Cartographic coordinate point, or undefined if the input parameter is invalid
*/
declare function toCartographic(position?: CommonCoord): Cartographic | undefined;
//# sourceMappingURL=toCartographic.d.ts.map
//#endregion
//#region utils/toCoord.d.ts
interface ToCoordOptions<T extends 'Array' | 'Object', Alt extends boolean> {
/**
* Return type
* @default 'Array'
*/
type?: T;
/**
* Whether to return altitude information
*/
alt?: Alt;
}
type ToCoordReturn<T extends 'Array' | 'Object', Alt extends boolean> = T extends 'Array' ? Alt extends true ? CoordArray_ALT : CoordArray : Alt extends true ? CoordObject_ALT : CoordObject;
/**
* Converts coordinates to an array or object in the specified format.
*
* @param position The coordinate to be converted, which can be a Cartesian3, Cartographic, array, or object.
* @param options Conversion options, including conversion type and whether to include altitude information.
* @returns The converted coordinate, which may be an array or object. If the input position is empty, undefined is returned.
*
* @template T Conversion type, optional values are 'Array' or 'Object', @default 'Array'.
* @template Alt Whether to include altitude information, default is false
*/
declare function toCoord<T extends 'Array' | 'Object' = 'Array', Alt extends boolean = false>(position?: CommonCoord, options?: ToCoordOptions<T, Alt>): ToCoordReturn<T, Alt> | undefined;
//#endregion
//#region utils/tryRun.d.ts
/**
* Safely execute the provided function without throwing errors,
* essentially a simple wrapper around a `try...catch...` block
*/
declare function tryRun<T extends AnyFn>(fn: T): T;
//# sourceMappingURL=tryRun.d.ts.map
//#endregion
//#region useDataSource/index.d.ts
interface UseDataSourceOptions {
/**
* The collection of DataSource to be added
* @default useViewer().value.dataSources
*/
collection?: DataSourceCollection;
/**
* default value of `isActive`
* @default true
*/
isActive?: MaybeRefOrGetter<boolean>;
/**
* Ref passed to receive the updated of async evaluation
*/
evaluating?: Ref<boolean>;
/**
* The second parameter passed to the `remove` function
*
* `dataSources.remove(dataSource,destroyOnRemove)`
*/
destroyOnRemove?: MaybeRefOrGetter<boolean>;
}
/**
* Add `DataSource` to the `DataSourceCollection`, automatically update when the data changes, and destroy the side effects caused by the previous `DataSource`.
*
* overLoaded1: Parameter supports passing in a single value.
*/
declare function useDataSource<T extends CesiumDataSource = CesiumDataSource>(dataSource?: MaybeRefOrAsyncGetter<T | undefined>, options?: UseDataSourceOptions): ComputedRef<T | undefined>;
/**
* Add `DataSource` to the `DataSourceCollection`, automatically update when the data changes, and destroy the side effects caused by the previous `DataSource`.
*
* overLoaded2: Parameter supports passing in an array.
*/
declare function useDataSource<T extends CesiumDataSource = CesiumDataSource>(dataSources?: MaybeRefOrAsyncGetter<T[] | undefined>, options?: UseDataSourceOptions): ComputedRef<T[] | undefined>;
//# sourceMappingURL=index.d.ts.map
//#endregion
//#region useDataSourceScope/index.d.ts
interface UseDataSourceScopeOptions {
/**
* The collection of DataSource to be added
* @default useViewer().value.dataSources
*/
collection?: MaybeRefOrGetter<DataSourceCollection>;
/**
* The second parameter passed to the `remove` function
*
* `dataSources.remove(dataSource,destroyOnRemove)`
*/
destroyOnRemove?: boolean;
}
interface UseDataSourceScopeRetrun {
/**
* A `Set` for storing SideEffect instance,
* which is encapsulated using `ShallowReactive` to provide Vue's reactive functionality
*/
scope: Readonly<ShallowReactive<Set<CesiumDataSource>>>;
/**
* Add SideEffect instance
*/
add: <T extends CesiumDataSource>(dataSource: T) => Promise<T>;
/**
* Remove specified SideEffect instance
*/
remove: (dataSource: CesiumDataSource, destroy?: boolean) => boolean;
/**
* Remove all SideEffect instance that meets the specified criteria
*/
removeWhere: (predicate: EffcetRemovePredicate<CesiumDataSource>, destroy?: boolean) => void;
/**
* Remove all SideEffect instance within current scope
*/
removeScope: (destroy?: boolean) => void;
}
/**
* // Scope the SideEffects of `DataSourceCollection` operations and automatically remove them when unmounted
*/
declare function useDataSourceScope(options?: UseDataSourceScopeOptions): UseDataSourceScopeRetrun;
//# sourceMappingURL=index.d.ts.map
//#endregion
//#region useElementOverlay/index.d.ts
interface UseElementOverlayOptions {
/**
* Horizontal origin of the target element
* @default `center`
*/
horizontal?: MaybeRefOrGetter<'center' | 'left' | 'right' | undefined>;
/**
* Vertical origin of the target element
* @default `bottom`
*/
vertical?: MaybeRefOrGetter<'center' | 'bottom' | 'top' | undefined>;
/**
* Pixel offset presented by the target element
* @default {x:0,y:0}
*/
offset?: MaybeRefOrGetter<{
x?: number;
y?: number;
} | undefined>;
/**
* The reference element for calculating the position of the target element
* - `true` refer to the browser viewport
* - `false` refer to the Cesium canvas
*/
referenceWindow?: MaybeRefOrGetter<boolean>;
/**
* Whether to apply style to the target element
* @default true
*/
applyStyle?: MaybeRefOrGetter<boolean>;
}
interface UseElementOverlayRetrun {
/**
* Calculation result of the target element's horizontal direction
*/
x: ComputedRef<number>;
/**
* Calculation result of the target element's vertical direction
*/
y: ComputedRef<number>;
/**
* Calculation `css` of the target element
*/
style: ComputedRef<{
left: string;
top: string;
}>;
}
/**
* Cesium HtmlElement Overlay
*/
declare function useElementOverlay(target?: MaybeComputedElementRef, position?: MaybeRefOrGetter<CommonCoord | undefined>, options?: UseElementOverlayOptions): UseElementOverlayRetrun;
//# sourceMappingURL=index.d.ts.map
//#endregion
//#region useEntity/index.d.ts
interface UseEntityOptions {
/**
* The collection of Entity to be added
* @default useViewer().value.entities
*/
collection?: EntityCollection;
/**
* default value of `isActive`
* @default true
*/
isActive?: MaybeRefOrGetter<boolean>;
/**
* Ref passed to receive the updated of async evaluation
*/
evaluating?: Ref<boolean>;
}
/**
* Add `Entity` to the `EntityCollection`, automatically update when the data changes, and destroy the side effects caused by the previous `Entity`.
*
* overLoaded1: Parameter supports passing in a single value.
*/
declare function useEntity<T extends Entity = Entity>(entity?: MaybeRefOrAsyncGetter<T | undefined>, options?: UseEntityOptions): ComputedRef<T | undefined>;
/**
* Add `Entity` to the `EntityCollection`, automatically update when the data changes, and destroy the side effects caused by the previous `Entity`.
*
* overLoaded2: Parameter supports passing in an array.
*/
declare function useEntity<T extends Entity = Entity>(entities?: MaybeRefOrAsyncGetter<Array<T | undefined>>, options?: UseEntityOptions): ComputedRef<T[] | undefined>;
//# sourceMappingURL=index.d.ts.map
//#endregion
//#region useEntityScope/index.d.ts
interface UseEntityScopeOptions {
/**
* The collection of Entity to be added
* @default useViewer().value.entities
*/
collection?: MaybeRefOrGetter<EntityCollection>;
}
interface UseEntityScopeRetrun {
/**
* A `Set` for storing SideEffect instance,
* which is encapsulated using `ShallowReactive` to provide Vue's reactive functionality
*/
scope: Readonly<ShallowReactive<Set<Entity>>>;
/**
* Add SideEffect instance
*/
add: <T extends Entity>(entity: T) => T;
/**
* Remove specified SideEffect instance
*/
remove: (entity: Entity, destroy?: boolean) => boolean;
/**
* Remove all SideEffect instance that meets the specified criteria
*/
removeWhere: (predicate: EffcetRemovePredicate<Entity>, destroy?: boolean) => void;
/**
* Remove all SideEffect instance within current scope
*/
removeScope: (destroy?: boolean) => void;
}
/**
* Make `add` and `remove` operations of `EntityCollection` scoped,
* automatically remove `Entity` instance when component is unmounted.
*/
declare function useEntityScope(options?: UseEntityScopeOptions): UseEntityScopeRetrun;
//# sourceMappingURL=index.d.ts.map
//#endregion
//#region useGraphicEvent/useDrag.d.ts
/**
* Parameters for graphic drag events
*/
interface GraphicDragEvent {
/**
* Event of the motion event
*/
event: ScreenSpaceEventHandler.MotionEvent;
/**
* The graphic object picked by `scene.pick`
*/
pick: any;
/**
* Whether the graphic is currently being dragged.
*/
dragging: boolean;
/**
* Whether to lock the camera, Will automatically resume when you end dragging.
*/
lockCamera: () => void;
}
/**
* Use graphic drag events with ease, and remove listener automatically on unmounted.
*/
//#endregion
//#region useGraphicEvent/useHover.d.ts
/**
* Parameters for graphic hover events
*/
interface GraphicHoverEvent {
/**
* Event of the motion event
*/
event: ScreenSpaceEventHandler.MotionEvent;
/**
* The graphic object picked by `scene.pick`
*/
pick: any;
/**
* Whether the graphic is currently being hoverged. Returns `true` continuously while hoverging, and `false` once it ends.
*/
hovering: boolean;
}
/**
* Use graphic hover events with ease, and remove listener automatically on unmounted.
*/
//#endregion
//#region useGraphicEvent/usePositioned.d.ts
type PositionedEventType = 'LEFT_DOWN' | 'LEFT_UP' | 'LEFT_CLICK' | 'LEFT_DOUBLE_CLICK' | 'RIGHT_DOWN' | 'RIGHT_UP' | 'RIGHT_CLICK' | 'MIDDLE_DOWN' | 'MIDDLE_UP' | 'MIDDLE_CLICK';
/**
* Parameters for graphics click related events
*/
interface GraphicPositionedEvent {
/**
* Event of the picked area
*/
event: ScreenSpaceEventHandler.PositionedEvent;
/**
* The graphic object picked by `scene.pick`
*/
pick: any;
}
//#endregion
//#region useGraphicEvent/index.d.ts
type CesiumGraphic = Entity | any;
type GraphicEventType = PositionedEventType | 'HOVER' | 'DRAG';
type GraphicEventListener<T extends GraphicEventType> = T extends 'DRAG' ? (event: GraphicDragEvent) => void : T extends 'HOVER' ? (event: GraphicHoverEvent) => void : (event: GraphicPositionedEvent) => void;
type RemoveGraphicEventFn = () => void;
interface AddGraphicEventOptions {
/**
* The cursor style to use when the mouse is over the graphic.
* @default 'pointer'
*/
cursor?: Nullable<string> | ((event: GraphicHoverEvent) => Nullable<string>);
/**
* The cursor style to use when the mouse is over the graphic during a drag operation.
* @default 'crosshair'
*/
dragCursor?: Nullable<string> | ((event: GraphicHoverEvent) => Nullable<string>);
}
interface UseGraphicEventRetrun {
/**
* Add a graphic event listener and return a function to remove it.
* @param graphic - The graphic object, 'global' indicates the global graphic object.
* @param type - The event type, 'all' indicates clearing all events.
* @param listener - The event listener function.
*/
addGraphicEvent: <T extends GraphicEventType>(graphic: CesiumGraphic | 'global', type: T, listener: GraphicEventListener<T>, options?: AddGraphicEventOptions) => RemoveGraphicEventFn;
/**
* Remove a graphic event listener.
* @param graphic - The graphic object, 'global' indicates the global graphic object.
* @param type - The event type, 'all' indicates clearing all events.
* @param listener - The event listener function.
*/
removeGraphicEvent: <T extends GraphicEventType>(graphic: CesiumGraphic | 'global', type: T, listener: GraphicEventListener<T>) => void;
/**
* Clear graphic event listeners.
* @param graphic - The graphic object.
* @param type - The event type, 'all' indicates clearing all events.
*/
clearGraphicEvent: (graphic: CesiumGraphic | 'global', type: GraphicEventType | 'all') => void;
}
/**
* Handle graphic event listeners and cursor styles for Cesium graphics.
* You don't need to overly worry about memory leaks from the function, as it automatically cleans up internally.
*/
declare function useGraphicEvent(): UseGraphicEventRetrun;
//# sourceMappingURL=index.d.ts.map
//#endregion
//#region useImageryLayer/index.d.ts
interface UseImageryLayerOptions {
/**
* The collection of ImageryLayer to be added
* @default useViewer().value.imageryLayers
*/
collection?: ImageryLayerCollection;
/**
* default value of `isActive`
* @default true
*/
isActive?: MaybeRefOrGetter<boolean>;
/**
* Ref passed to receive the updated of async evaluation
*/
evaluating?: Ref<boolean>;
/**
* The second parameter passed to the `remove` function
*
* `imageryLayers.remove(layer,destroyOnRemove)`
*/
destroyOnRemove?: MaybeRefOrGetter<boolean>;
}
/**
* Add `ImageryLayer` to the `ImageryLayerCollection`, automatically update when the data changes, and destroy the side effects caused by the previous `ImageryLayer`.
*
* overLoaded1: Parameter supports passing in a single value.
*/
declare function useImageryLayer<T extends ImageryLayer = ImageryLayer>(layer?: MaybeRefOrAsyncGetter<T | undefined>, options?: UseImageryLayerOptions): ComputedRef<T | undefined>;
/**
* Add `ImageryLayer` to the `ImageryLayerCollection`, automatically update when the data changes, and destroy the side effects caused by the previous `ImageryLayer`.
*
* overLoaded2: Parameter supports passing in an array.
*/
declare function useImageryLayer<T extends ImageryLayer = ImageryLayer>(layers?: MaybeRefOrAsyncGetter<Array<T | undefined>>, options?: UseImageryLayerOptions): ComputedRef<T[] | undefined>;
//# sourceMappingURL=index.d.ts.map
//#endregion
//#region useImageryLayerScope/index.d.ts
interface UseImageryLayerScopeOptions {
/**
* The collection of ImageryLayer to be added
* @default useViewer().value.imageryLayers
*/
collection?: MaybeRefOrGetter<ImageryLayerCollection>;
/**
* The second parameter passed to the `remove` function
*
* `imageryLayers.remove(imageryLayer,destroyOnRemove)`
*/
destroyOnRemove?: boolean;
}
interface UseImageryLayerScopeRetrun {
/**
* A `Set` for storing SideEffect instance,
* which is encapsulated using `ShallowReactive` to provide Vue's reactive functionality
*/
scope: Readonly<ShallowReactive<Set<ImageryLayer>>>;
/**
* Add SideEffect instance
*/
add: <T extends ImageryLayer>(imageryLayer: T) => T;
/**
* Remove specified SideEffect instance
*/
remove: (imageryLayer: ImageryLayer, destroy?: boolean) => boolean;
/**
* Remove all SideEffect instance that meets the specified criteria
*/
removeWhere: (predicate: EffcetRemovePredicate<ImageryLayer>, destroy?: boolean) => void;
/**
* Remove all SideEffect instance within current scope
*/
removeScope: (destroy?: boolean) => void;
}
/**
* Make `add` and `remove` operations of `ImageryLayerCollection` scoped,
* automatically remove `ImageryLayer` instance when component is unmounted.
*/
declare function useImageryLayerScope(options?: UseImageryLayerScopeOptions): UseImageryLayerScopeRetrun;
//# sourceMappingURL=index.d.ts.map
//#endregion
//#region usePostProcessStage/index.d.ts
interface UsePostProcessStageOptions {
/**
* The collection of PostProcessStage to be added
* @default useViewer().scene.postProcessStages
*/
collection?: PostProcessStageCollection;
/**
* default value of `isActive`
* @default true
*/
isActive?: MaybeRefOrGetter<boolean>;
/**
* Ref passed to receive the updated of async evaluation
*/
evaluating?: Ref<boolean>;
}
/**
* Add `PostProcessStage` to the `PostProcessStageCollection`, automatically update when the data changes, and destroy the side effects caused by the previous `PostProcessStage`.
*
* overLoaded1: Parameter supports passing in a single value.
*/
declare function usePostProcessStage<T extends PostProcessStage = PostProcessStage>(stage?: MaybeRefOrAsyncGetter<T | undefined>, options?: UsePostProcessStageOptions): ComputedRef<T | undefined>;
/**
* Add `PostProcessStage` to the `PostProcessStageCollection`, automatically update when the data changes, and destroy the side effects caused by the previous `PostProcessStage`.
*
* overLoaded2: Parameter supports passing in an array.
*/
declare function usePostProcessStage<T extends PostProcessStage = PostProcessStage>(stages?: MaybeRefOrAsyncGetter<Array<T | undefined>>, options?: UsePostProcessStageOptions): ComputedRef<T[] | undefined>;
//# sourceMappingURL=index.d.ts.map
//#endregion
//#region usePostProcessStageScope/index.d.ts
interface UsePostProcessStageScopeOptions {
/**
* The collection of PostProcessStage to be added
* @default useViewer().value.postProcessStages
*/
collection?: MaybeRefOrGetter<PostProcessStageCollection>;
}
interface UsePostProcessStageScopeRetrun {
/**
* A `Set` for storing SideEffect instance,
* which is encapsulated using `ShallowReactive` to provide Vue's reactive functionality
*/
scope: Readonly<ShallowReactive<Set<PostProcessStage>>>;
/**
* Add SideEffect instance
*/
add: <T extends PostProcessStage>(postProcessStage: T) => T;
/**
* Remove specified SideEffect instance
*/
remove: (postProcessStage: PostProcessStage, destroy?: boolean) => boolean;
/**
* Remove all SideEffect instance that meets the specified criteria
*/
removeWhere: (predicate: EffcetRemovePredicate<PostProcessStage>, destroy?: boolean) => void;
/**
* Remove all SideEffect instance within current scope
*/
removeScope: (destroy?: boolean) => void;
}
/**
* Make `add` and `remove` operations of `PostProcessStageCollection` scoped,
* automatically remove `PostProcessStage` instance when component is unmounted.
*/
declare function usePostProcessStageScope(options?: UsePostProcessStageScopeOptions): UsePostProcessStageScopeRetrun;
//# sourceMappingURL=index.d.ts.map
//#endregion
//#region usePrimitive/index.d.ts
interface UsePrimitiveOptions {
/**
* The collection of Primitive to be added
* - `ground` : `useViewer().scene.groundPrimitives`
* @default useViewer().scene.primitives
*/
collection?: PrimitiveCollection | 'ground';
/**
* default value of `isActive`
* @default true
*/
isActive?: MaybeRefOrGetter<boolean>;
/**
* Ref passed to receive the updated of async evaluation
*/
evaluating?: Ref<boolean>;
}
/**
* Add `Primitive` to the `PrimitiveCollection`, automatically update when the data changes, and destroy the side effects caused by the previous `Primitive`.
*
* overLoaded1: Parameter supports passing in a single value.
*/
declare function usePrimitive<T = any>(primitive?: MaybeRefOrAsyncGetter<T | undefined>, options?: UsePrimitiveOptions): ComputedRef<T | undefined>;
/**
* Add `Primitive` to the `PrimitiveCollection`, automatically update when the data changes, and destroy the side effects caused by the previous `Primitive`.
*
* overLoaded2: Parameter supports passing in an array.
*/
declare function usePrimitive<T = any>(primitives?: MaybeRefOrAsyncGetter<Array<T | undefined>>, options?: UsePrimitiveOptions): ComputedRef<T[] | undefined>;
//# sourceMappingURL=index.d.ts.map
//#endregion
//#region usePrimitiveScope/index.d.ts
interface UsePrimitiveScopeOptions {
/**
* The collection of Primitive to be added
* @default useViewer().value.scene.primitives
*/
collection?: MaybeRefOrGetter<PrimitiveCollection>;
}
interface UsePrimitiveScopeRetrun {
/**
* A `Set` for storing SideEffect instance,
* which is encapsulated using `ShallowReactive` to provide Vue's reactive functionality
*/
scope: Readonly<ShallowReactive<Set<any>>>;
/**
* Add SideEffect instance
*/
add: <T>(primitive: T) => T;
/**
* Remove specified SideEffect instance
*/
remove: (primitive: any, destroy?: boolean) => boolean;
/**
* Remove all SideEffect instance that meets the specified criteria
*/
removeWhere: (predicate: EffcetRemovePredicate<any>, destroy?: boolean) => void;
/**
* Remove all SideEffect instance within current scope
*/
removeScope: (destroy?: boolean) => void;
}
/**
* Make `add` and `remove` operations of `PrimitiveCollection` scoped,
* automatically remove `Primitive` instance when component is unmounted.
*/
declare function usePrimitiveScope(options?: UsePrimitiveScopeOptions): UsePrimitiveScopeRetrun;
//# sourceMappingURL=index.d.ts.map
//#endregion
//#region useScaleBar/index.d.ts
interface UseScaleBarOptions {
/**
* The maximum width of the scale (px)
* @default 80
*/
maxPixel?: MaybeRefOrGetter<number>;
/**
* Throttled delay duration (ms)
* @default 8
*/
delay?: number;
}
interface UseScaleBarRetrun {
/**
* The actual distance of a single pixel in the current canvas
*/
pixelDistance: Readonly<Ref<number | undefined>>;
/**
* The width of the scale.(px)
*/
width: Readonly<Ref<number>>;
/**
* The actual distance corresponding to the width of the scale (m)
*/
distance: Readonly<Ref<number | undefined>>;
/**
* Formatted content of distance.
* eg. 100m,100km
*/
distanceText: Readonly<Ref<string | undefined>>;
}
/**
* Reactive generation of scale bars
*/
declare function useScaleBar(options?: UseScaleBarOptions): UseScaleBarRetrun;
//# sourceMappingURL=index.d.ts.map
//#endregion
//#region useSceneDrillPick/index.d.ts
interface UseSceneDrillPickOptions {
/**
* Whether to activate the pick function.
* @default true
*/
isActive?: MaybeRefOrGetter<boolean | undefined>;
/**
* Throttled sampling (ms)
* @default 8
*/
throttled?: number;
/**
* If supplied, stop drilling after collecting this many picks.
*/
limit?: MaybeRefOrGetter<number | undefined>;
/**
* The width of the pick rectangle.
* @default 3
*/
width?: MaybeRefOrGetter<number | undefined>;
/**
* The height of the pick rectangle.
* @default 3
*/
height?: MaybeRefOrGetter<number | undefined>;
}
/**
* Uses the `scene.drillPick` function to perform screen point picking,
* return a computed property containing the pick result, or undefined if no object is picked.
*
* @param windowPosition The screen coordinates of the pick point.
*/
declare function useSceneDrillPick(windowPosition: MaybeRefOrGetter<Cartesian2 | undefined>, options?: UseSceneDrillPickOptions): ComputedRef<any[] | undefined>;
//# sourceMappingURL=index.d.ts.map
//#endregion
//#region useScenePick/index.d.ts
interface UseScenePickOptions {
/**
* Whether to active the event listener.
* @default true
*/
isActive?: MaybeRefOrGetter<boolean>;
/**
* Throttled sampling (ms)
* @default 8
*/
throttled?: number;
/**
* The width of the pick rectangle.
* @default 3
*/
width?: MaybeRefOrGetter<number | undefined>;
/**
* The height of the pick rectangle.
* @default 3
*/
height?: MaybeRefOrGetter<number | undefined>;
}
/**
* Uses the `scene.pick` function in Cesium's Scene object to perform screen point picking,
* return a computed property containing the pick result, or undefined if no object is picked.
*
* @param windowPosition The screen coordinates of the pick point.
*/
declare function useScenePick(windowPosition: MaybeRefOrGetter<Cartesian2 | undefined>, options?: UseScenePickOptions): Readonly<ShallowRef<any | undefined>>;
//# sourceMappingURL=index.d.ts.map
//#endregion
//#region useScreenSpaceEventHandler/index.d.ts
type ScreenSpaceEvent<T extends ScreenSpaceEventType> = {
[ScreenSpaceEventType.LEFT_DOWN]: ScreenSpaceEventHandler.PositionedEvent;
[ScreenSpaceEventType.LEFT_UP]: ScreenSpaceEventHandler.PositionedEvent;
[ScreenSpaceEventType.LEFT_CLICK]: ScreenSpaceEventHandler.PositionedEvent;
[ScreenSpaceEventType.LEFT_DOUBLE_CLICK]: ScreenSpaceEventHandler.PositionedEvent;
[ScreenSpaceEventType.RIGHT_DOWN]: ScreenSpaceEventHandler.PositionedEvent;
[ScreenSpaceEventType.RIGHT_UP]: ScreenSpaceEventHandler.PositionedEvent;
[ScreenSpaceEventType.RIGHT_CLICK]: ScreenSpaceEventHandler.PositionedEvent;
[ScreenSpaceEventType.MIDDLE_DOWN]: ScreenSpaceEventHandler.PositionedEvent;
[ScreenSpaceEventType.MIDDLE_UP]: ScreenSpaceEventHandler.PositionedEvent;
[ScreenSpaceEventType.MIDDLE_CLICK]: ScreenSpaceEventHandler.PositionedEvent;
[ScreenSpaceEventType.MOUSE_MOVE]: ScreenSpaceEventHandler.MotionEvent;
[ScreenSpaceEventType.WHEEL]: number;
[ScreenSpaceEventType.PINCH_START]: ScreenSpaceEventHandler.TwoPointEvent;
[ScreenSpaceEventType.PINCH_END]: ScreenSpaceEventHandler.TwoPointEvent;
[ScreenSpaceEventType.PINCH_MOVE]: ScreenSpaceEventHandler.TwoPointMotionEvent;
}[T];
interface UseScreenSpaceEventHandlerOptions {
/**
* Modifier key
*/
modifier?: MaybeRefOrGetter<KeyboardEventModifier | undefined>;
/**
* Whether to active the event listener.
* @default true
*/
isActive?: MaybeRefOrGetter<boolean>;
}
/**
* Easily use the `ScreenSpaceEventHandler`,
* when the dependent data changes or the component is unmounted,
* the listener function will automatically reload or destroy.
*
* @param type Types of mouse event
* @param inputAction Callback function for listening
*/
declare function useScreenSpaceEventHandler<T extends ScreenSpaceEventType>(type?: MaybeRefOrGetter<T | undefined>, inputAction?: (event: ScreenSpaceEvent<T>) => any, options?: UseScreenSpaceEventHandlerOptions): WatchStopHandle;
//# sourceMappingURL=index.d.ts.map
//#endregion
//#region useViewer/index.d.ts
/**
* Obtain the `Viewer` instance injected through `createViewer` in the current component or its ancestor components.
*
* note:
* - If `createViewer` and `useViewer` are called in the same component, the `Viewer` instance injected by `createViewer` will be used preferentially.
* - When calling `createViewer` and `useViewer` in the same component, `createViewer` should be called before `useViewer`.
*/
declare function useViewer(): Readonly<ShallowRef<Viewer | undefined>>;
//# sourceMappingURL=index.d.ts.map
//#endregion
export { AddGraphicEventOptions, AnyFn, ArgsFn, ArrayDiffRetrun, BasicType, CesiumDataSource, CesiumGraphic, CesiumMaterial, CesiumMaterialConstructorOptions, CesiumMaterialFabricOptions, CesiumMaterialProperty, CommonCoord, CoordArray, CoordArray_ALT, CoordObject, CoordObject_ALT, CreateCesiumAttributeOptions, CreateCesiumPropertyOptions, DMSCoord, EffcetRemovePredicate, GraphicEventListener, GraphicEventType, MaybeAsyncGetter, MaybePromise, MaybeProperty, MaybePropertyOrGetter, MaybeRefOrAsyncGetter, Nullable, OnAsyncGetterCancel, PropertyCallback, RemoveGraphicEventFn, ScreenSpaceEvent, ThrottleCallback, ToCoordReturn, ToPromiseValueOptions, UseCameraStateOptions, UseCameraStateRetrun, UseCesiumEventListenerOptions, UseCesiumFpsOptions, UseCesiumFpsRetrun, UseCollectionScopeReturn, UseDataSourceOptions, UseDataSourceScopeOptions, UseDataSourceScopeRetrun, UseElementOverlayOptions, UseElementOverlayRetrun, UseEntityOptions, UseEntityScopeOptions, UseEntityScopeRetrun, UseGraphicEventRetrun, UseImageryLayerOptions, UseImageryLayerScopeOptions, UseImageryLayerScopeRetrun, UsePostProcessStageOptions, UsePostProcessStageScopeOptions, UsePostProcessStageScopeRetrun, UsePrimitiveOptions, UsePrimitiveScopeOptions, UsePrimitiveScopeRetrun, UseScaleBarOptions, UseScaleBarRetrun, UseSceneDrillPickOptions, UseScenePickOptions, UseScreenSpaceEventHandlerOptions, addMaterialCache, arrayDiff, assertError, canvasCoordToCartesian, cartesianToCanvasCoord, cesiumEquals, createCesiumAttribute, createCesiumProperty, createPropertyField, createViewer, degreesToDms, dmsDecode, dmsEncode, dmsToDegrees, getMaterialCache, isArray, isBase64, isBoolean, isCesiumConstant, isDef, isElement, isFunction, isNumber, isObject, isPromise$1 as isPromise, isProperty, isString, isWindow, pickHitGraphic, resolvePick, throttle, toCartesian3, toCartographic, toCoord, toPromiseValue, toProperty, toPropertyValue, tryRun, useCameraState, useCesiumEventListener, useCesiumFps, useCollectionScope, useDataSource, useDataSourceScope, useElementOverlay, useEntity, useEntityScope, useGraphicEvent, useImageryLayer, useImageryLayerScope, usePostProcessStage, usePostProcessStageScope, usePrimitive, usePrimitiveScope, useScaleBar, useSceneDrillPick, useScenePick, useScreenSpaceEventHandler, useViewer };
//# sourceMappingURL=index.d.cts.map