feat: add @actions/cache

This commit is contained in:
xHyroM 2022-07-12 09:00:22 +02:00
parent b15fb7d098
commit 16e8c96a41
1932 changed files with 261172 additions and 10 deletions

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node_modules/@azure/core-paging/LICENSE generated vendored Normal file
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The MIT License (MIT)
Copyright (c) 2020 Microsoft
Permission is hereby granted, free of charge, to any person obtaining a copy
of this software and associated documentation files (the "Software"), to deal
in the Software without restriction, including without limitation the rights
to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
copies of the Software, and to permit persons to whom the Software is
furnished to do so, subject to the following conditions:
The above copyright notice and this permission notice shall be included in all
copies or substantial portions of the Software.
THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
SOFTWARE.

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# Azure Core Paging client library for JavaScript
This library provides core types for paging async iterable iterators.
## Getting started
### Installation
If using this as part of another project in the [azure-sdk-for-js](https://github.com/Azure/azure-sdk-for-js) repo,
then run `rush install` after cloning the repo.
Otherwise, use npm to install this package in your application as follows
```javascript
npm install @azure/core-paging
```
## Key concepts
You can find an explanation of how this repository's code works by going to our [architecture overview](https://github.com/Azure/ms-rest-js/blob/master/docs/architectureOverview.md).
## Examples
Example of building with the types:
```typescript
public listSecrets(
options: ListSecretsOptions = {}
): PagedAsyncIterableIterator<SecretAttributes> {
const iter = this.listSecretsAll(options);
return {
async next() { return iter.next(); },
[Symbol.asyncIterator]() { return this; },
byPage: (settings: PageSettings = {}) => this.listSecretsPage(settings, options),
};
}
```
And using the types:
```
for await (let page of client.listSecrets().byPage({ maxPageSize: 2 })) {
for (const secret of page) {
console.log("secret: ", secret);
}
}
```
## Next steps
Try out this package in your application when dealing with async iterable iterators and provide feedback!
## Troubleshooting
Log an issue at https://github.com/Azure/azure-sdk-for-js/issues
## Contributing
If you'd like to contribute to this library, please read the [contributing guide](https://github.com/Azure/azure-sdk-for-js/blob/main/CONTRIBUTING.md) to learn more about how to build and test the code.
![Impressions](https://azure-sdk-impressions.azurewebsites.net/api/impressions/azure-sdk-for-js%2Fsdk%2Fcore%2Fcore-paging%2FREADME.png)

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// Copyright (c) Microsoft Corporation.
// Licensed under the MIT license.
import { __asyncDelegator, __asyncGenerator, __asyncValues, __await } from "tslib";
/**
* returns an async iterator that iterates over results. It also has a `byPage`
* method that returns pages of items at once.
*
* @param pagedResult - an object that specifies how to get pages.
* @returns a paged async iterator that iterates over results.
*/
export function getPagedAsyncIterator(pagedResult) {
var _a;
const iter = getItemAsyncIterator(pagedResult);
return {
next() {
return iter.next();
},
[Symbol.asyncIterator]() {
return this;
},
byPage: (_a = pagedResult === null || pagedResult === void 0 ? void 0 : pagedResult.byPage) !== null && _a !== void 0 ? _a : ((settings) => {
const { continuationToken, maxPageSize } = settings !== null && settings !== void 0 ? settings : {};
return getPageAsyncIterator(pagedResult, {
pageLink: continuationToken,
maxPageSize,
});
}),
};
}
function getItemAsyncIterator(pagedResult) {
return __asyncGenerator(this, arguments, function* getItemAsyncIterator_1() {
var e_1, _a;
const pages = getPageAsyncIterator(pagedResult);
const firstVal = yield __await(pages.next());
// if the result does not have an array shape, i.e. TPage = TElement, then we return it as is
if (!Array.isArray(firstVal.value)) {
yield yield __await(firstVal.value);
// `pages` is of type `AsyncIterableIterator<TPage>` but TPage = TElement in this case
yield __await(yield* __asyncDelegator(__asyncValues(pages)));
}
else {
yield __await(yield* __asyncDelegator(__asyncValues(firstVal.value)));
try {
for (var pages_1 = __asyncValues(pages), pages_1_1; pages_1_1 = yield __await(pages_1.next()), !pages_1_1.done;) {
const page = pages_1_1.value;
// pages is of type `AsyncIterableIterator<TPage>` so `page` is of type `TPage`. In this branch,
// it must be the case that `TPage = TElement[]`
yield __await(yield* __asyncDelegator(__asyncValues(page)));
}
}
catch (e_1_1) { e_1 = { error: e_1_1 }; }
finally {
try {
if (pages_1_1 && !pages_1_1.done && (_a = pages_1.return)) yield __await(_a.call(pages_1));
}
finally { if (e_1) throw e_1.error; }
}
}
});
}
function getPageAsyncIterator(pagedResult, options = {}) {
return __asyncGenerator(this, arguments, function* getPageAsyncIterator_1() {
const { pageLink, maxPageSize } = options;
let response = yield __await(pagedResult.getPage(pageLink !== null && pageLink !== void 0 ? pageLink : pagedResult.firstPageLink, maxPageSize));
yield yield __await(response.page);
while (response.nextPageLink) {
response = yield __await(pagedResult.getPage(response.nextPageLink, maxPageSize));
yield yield __await(response.page);
}
});
}
//# sourceMappingURL=getPagedAsyncIterator.js.map

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// Copyright (c) Microsoft Corporation.
// Licensed under the MIT license.
export * from "./models";
export * from "./getPagedAsyncIterator";
//# sourceMappingURL=index.js.map

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// Copyright (c) Microsoft Corporation.
// Licensed under the MIT license.
export {};
//# sourceMappingURL=models.js.map

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{"version":3,"file":"models.js","sourceRoot":"","sources":["../../src/models.ts"],"names":[],"mappings":"AAAA,uCAAuC;AACvC,kCAAkC","sourcesContent":["// Copyright (c) Microsoft Corporation.\n// Licensed under the MIT license.\n\n/**\n * An interface that tracks the settings for paged iteration\n */\nexport interface PageSettings {\n /**\n * The token that keeps track of where to continue the iterator\n */\n continuationToken?: string;\n /**\n * The size of the page during paged iteration\n */\n maxPageSize?: number;\n}\n/**\n * An interface that allows async iterable iteration both to completion and by page.\n */\nexport interface PagedAsyncIterableIterator<T, PageT = T[], PageSettingsT = PageSettings> {\n /**\n * The next method, part of the iteration protocol\n */\n next(): Promise<IteratorResult<T>>;\n /**\n * The connection to the async iterator, part of the iteration protocol\n */\n [Symbol.asyncIterator](): PagedAsyncIterableIterator<T, PageT, PageSettingsT>;\n /**\n * Return an AsyncIterableIterator that works a page at a time\n */\n byPage: (settings?: PageSettingsT) => AsyncIterableIterator<PageT>;\n}\n\n/**\n * An interface that describes how to communicate with the service.\n */\nexport interface PagedResult<TPage, TPageSettings = PageSettings, TLink = string> {\n /**\n * Link to the first page of results.\n */\n firstPageLink: TLink;\n /**\n * A method that returns a page of results.\n */\n getPage: (\n pageLink: TLink,\n maxPageSize?: number\n ) => Promise<{ page: TPage; nextPageLink?: TLink }>;\n /**\n * a function to implement the `byPage` method on the paged async iterator. The default is\n * one that sets the `maxPageSizeParam` from `settings.maxPageSize`.\n */\n byPage?: (settings?: TPageSettings) => AsyncIterableIterator<TPage>;\n}\n"]}

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node_modules/@azure/core-paging/dist/index.js generated vendored Normal file
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'use strict';
Object.defineProperty(exports, '__esModule', { value: true });
var tslib = require('tslib');
// Copyright (c) Microsoft Corporation.
/**
* returns an async iterator that iterates over results. It also has a `byPage`
* method that returns pages of items at once.
*
* @param pagedResult - an object that specifies how to get pages.
* @returns a paged async iterator that iterates over results.
*/
function getPagedAsyncIterator(pagedResult) {
var _a;
const iter = getItemAsyncIterator(pagedResult);
return {
next() {
return iter.next();
},
[Symbol.asyncIterator]() {
return this;
},
byPage: (_a = pagedResult === null || pagedResult === void 0 ? void 0 : pagedResult.byPage) !== null && _a !== void 0 ? _a : ((settings) => {
const { continuationToken, maxPageSize } = settings !== null && settings !== void 0 ? settings : {};
return getPageAsyncIterator(pagedResult, {
pageLink: continuationToken,
maxPageSize,
});
}),
};
}
function getItemAsyncIterator(pagedResult) {
return tslib.__asyncGenerator(this, arguments, function* getItemAsyncIterator_1() {
var e_1, _a;
const pages = getPageAsyncIterator(pagedResult);
const firstVal = yield tslib.__await(pages.next());
// if the result does not have an array shape, i.e. TPage = TElement, then we return it as is
if (!Array.isArray(firstVal.value)) {
yield yield tslib.__await(firstVal.value);
// `pages` is of type `AsyncIterableIterator<TPage>` but TPage = TElement in this case
yield tslib.__await(yield* tslib.__asyncDelegator(tslib.__asyncValues(pages)));
}
else {
yield tslib.__await(yield* tslib.__asyncDelegator(tslib.__asyncValues(firstVal.value)));
try {
for (var pages_1 = tslib.__asyncValues(pages), pages_1_1; pages_1_1 = yield tslib.__await(pages_1.next()), !pages_1_1.done;) {
const page = pages_1_1.value;
// pages is of type `AsyncIterableIterator<TPage>` so `page` is of type `TPage`. In this branch,
// it must be the case that `TPage = TElement[]`
yield tslib.__await(yield* tslib.__asyncDelegator(tslib.__asyncValues(page)));
}
}
catch (e_1_1) { e_1 = { error: e_1_1 }; }
finally {
try {
if (pages_1_1 && !pages_1_1.done && (_a = pages_1.return)) yield tslib.__await(_a.call(pages_1));
}
finally { if (e_1) throw e_1.error; }
}
}
});
}
function getPageAsyncIterator(pagedResult, options = {}) {
return tslib.__asyncGenerator(this, arguments, function* getPageAsyncIterator_1() {
const { pageLink, maxPageSize } = options;
let response = yield tslib.__await(pagedResult.getPage(pageLink !== null && pageLink !== void 0 ? pageLink : pagedResult.firstPageLink, maxPageSize));
yield yield tslib.__await(response.page);
while (response.nextPageLink) {
response = yield tslib.__await(pagedResult.getPage(response.nextPageLink, maxPageSize));
yield yield tslib.__await(response.page);
}
});
}
exports.getPagedAsyncIterator = getPagedAsyncIterator;
//# sourceMappingURL=index.js.map

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node_modules/@azure/core-paging/dist/index.js.map generated vendored Normal file
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/******************************************************************************
Copyright (c) Microsoft Corporation.
Permission to use, copy, modify, and/or distribute this software for any
purpose with or without fee is hereby granted.
THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES WITH
REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF MERCHANTABILITY
AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY SPECIAL, DIRECT,
INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES WHATSOEVER RESULTING FROM
LOSS OF USE, DATA OR PROFITS, WHETHER IN AN ACTION OF CONTRACT, NEGLIGENCE OR
OTHER TORTIOUS ACTION, ARISING OUT OF OR IN CONNECTION WITH THE USE OR
PERFORMANCE OF THIS SOFTWARE.
***************************************************************************** */

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Copyright (c) Microsoft Corporation.
Permission to use, copy, modify, and/or distribute this software for any
purpose with or without fee is hereby granted.
THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES WITH
REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF MERCHANTABILITY
AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY SPECIAL, DIRECT,
INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES WHATSOEVER RESULTING FROM
LOSS OF USE, DATA OR PROFITS, WHETHER IN AN ACTION OF CONTRACT, NEGLIGENCE OR
OTHER TORTIOUS ACTION, ARISING OUT OF OR IN CONNECTION WITH THE USE OR
PERFORMANCE OF THIS SOFTWARE.

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# tslib
This is a runtime library for [TypeScript](http://www.typescriptlang.org/) that contains all of the TypeScript helper functions.
This library is primarily used by the `--importHelpers` flag in TypeScript.
When using `--importHelpers`, a module that uses helper functions like `__extends` and `__assign` in the following emitted file:
```ts
var __assign = (this && this.__assign) || Object.assign || function(t) {
for (var s, i = 1, n = arguments.length; i < n; i++) {
s = arguments[i];
for (var p in s) if (Object.prototype.hasOwnProperty.call(s, p))
t[p] = s[p];
}
return t;
};
exports.x = {};
exports.y = __assign({}, exports.x);
```
will instead be emitted as something like the following:
```ts
var tslib_1 = require("tslib");
exports.x = {};
exports.y = tslib_1.__assign({}, exports.x);
```
Because this can avoid duplicate declarations of things like `__extends`, `__assign`, etc., this means delivering users smaller files on average, as well as less runtime overhead.
For optimized bundles with TypeScript, you should absolutely consider using `tslib` and `--importHelpers`.
# Installing
For the latest stable version, run:
## npm
```sh
# TypeScript 3.9.2 or later
npm install tslib
# TypeScript 3.8.4 or earlier
npm install tslib@^1
# TypeScript 2.3.2 or earlier
npm install tslib@1.6.1
```
## yarn
```sh
# TypeScript 3.9.2 or later
yarn add tslib
# TypeScript 3.8.4 or earlier
yarn add tslib@^1
# TypeScript 2.3.2 or earlier
yarn add tslib@1.6.1
```
## bower
```sh
# TypeScript 3.9.2 or later
bower install tslib
# TypeScript 3.8.4 or earlier
bower install tslib@^1
# TypeScript 2.3.2 or earlier
bower install tslib@1.6.1
```
## JSPM
```sh
# TypeScript 3.9.2 or later
jspm install tslib
# TypeScript 3.8.4 or earlier
jspm install tslib@^1
# TypeScript 2.3.2 or earlier
jspm install tslib@1.6.1
```
# Usage
Set the `importHelpers` compiler option on the command line:
```
tsc --importHelpers file.ts
```
or in your tsconfig.json:
```json
{
"compilerOptions": {
"importHelpers": true
}
}
```
#### For bower and JSPM users
You will need to add a `paths` mapping for `tslib`, e.g. For Bower users:
```json
{
"compilerOptions": {
"module": "amd",
"importHelpers": true,
"baseUrl": "./",
"paths": {
"tslib" : ["bower_components/tslib/tslib.d.ts"]
}
}
}
```
For JSPM users:
```json
{
"compilerOptions": {
"module": "system",
"importHelpers": true,
"baseUrl": "./",
"paths": {
"tslib" : ["jspm_packages/npm/tslib@2.x.y/tslib.d.ts"]
}
}
}
```
## Deployment
- Choose your new version number
- Set it in `package.json` and `bower.json`
- Create a tag: `git tag [version]`
- Push the tag: `git push --tags`
- Create a [release in GitHub](https://github.com/microsoft/tslib/releases)
- Run the [publish to npm](https://github.com/microsoft/tslib/actions?query=workflow%3A%22Publish+to+NPM%22) workflow
Done.
# Contribute
There are many ways to [contribute](https://github.com/Microsoft/TypeScript/blob/master/CONTRIBUTING.md) to TypeScript.
* [Submit bugs](https://github.com/Microsoft/TypeScript/issues) and help us verify fixes as they are checked in.
* Review the [source code changes](https://github.com/Microsoft/TypeScript/pulls).
* Engage with other TypeScript users and developers on [StackOverflow](http://stackoverflow.com/questions/tagged/typescript).
* Join the [#typescript](http://twitter.com/#!/search/realtime/%23typescript) discussion on Twitter.
* [Contribute bug fixes](https://github.com/Microsoft/TypeScript/blob/master/CONTRIBUTING.md).
# Documentation
* [Quick tutorial](http://www.typescriptlang.org/Tutorial)
* [Programming handbook](http://www.typescriptlang.org/Handbook)
* [Homepage](http://www.typescriptlang.org/)

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import tslib from '../tslib.js';
const {
__extends,
__assign,
__rest,
__decorate,
__param,
__metadata,
__awaiter,
__generator,
__exportStar,
__createBinding,
__values,
__read,
__spread,
__spreadArrays,
__spreadArray,
__await,
__asyncGenerator,
__asyncDelegator,
__asyncValues,
__makeTemplateObject,
__importStar,
__importDefault,
__classPrivateFieldGet,
__classPrivateFieldSet,
__classPrivateFieldIn,
} = tslib;
export {
__extends,
__assign,
__rest,
__decorate,
__param,
__metadata,
__awaiter,
__generator,
__exportStar,
__createBinding,
__values,
__read,
__spread,
__spreadArrays,
__spreadArray,
__await,
__asyncGenerator,
__asyncDelegator,
__asyncValues,
__makeTemplateObject,
__importStar,
__importDefault,
__classPrivateFieldGet,
__classPrivateFieldSet,
__classPrivateFieldIn,
};

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{
"type": "module"
}

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{
"name": "tslib",
"author": "Microsoft Corp.",
"homepage": "https://www.typescriptlang.org/",
"version": "2.4.0",
"license": "0BSD",
"description": "Runtime library for TypeScript helper functions",
"keywords": [
"TypeScript",
"Microsoft",
"compiler",
"language",
"javascript",
"tslib",
"runtime"
],
"bugs": {
"url": "https://github.com/Microsoft/TypeScript/issues"
},
"repository": {
"type": "git",
"url": "https://github.com/Microsoft/tslib.git"
},
"main": "tslib.js",
"module": "tslib.es6.js",
"jsnext:main": "tslib.es6.js",
"typings": "tslib.d.ts",
"sideEffects": false,
"exports": {
".": {
"module": "./tslib.es6.js",
"import": "./modules/index.js",
"default": "./tslib.js"
},
"./*": "./*",
"./": "./"
}
}

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/******************************************************************************
Copyright (c) Microsoft Corporation.
Permission to use, copy, modify, and/or distribute this software for any
purpose with or without fee is hereby granted.
THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES WITH
REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF MERCHANTABILITY
AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY SPECIAL, DIRECT,
INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES WHATSOEVER RESULTING FROM
LOSS OF USE, DATA OR PROFITS, WHETHER IN AN ACTION OF CONTRACT, NEGLIGENCE OR
OTHER TORTIOUS ACTION, ARISING OUT OF OR IN CONNECTION WITH THE USE OR
PERFORMANCE OF THIS SOFTWARE.
***************************************************************************** */
/**
* Used to shim class extends.
*
* @param d The derived class.
* @param b The base class.
*/
export declare function __extends(d: Function, b: Function): void;
/**
* Copy the values of all of the enumerable own properties from one or more source objects to a
* target object. Returns the target object.
*
* @param t The target object to copy to.
* @param sources One or more source objects from which to copy properties
*/
export declare function __assign(t: any, ...sources: any[]): any;
/**
* Performs a rest spread on an object.
*
* @param t The source value.
* @param propertyNames The property names excluded from the rest spread.
*/
export declare function __rest(t: any, propertyNames: (string | symbol)[]): any;
/**
* Applies decorators to a target object
*
* @param decorators The set of decorators to apply.
* @param target The target object.
* @param key If specified, the own property to apply the decorators to.
* @param desc The property descriptor, defaults to fetching the descriptor from the target object.
* @experimental
*/
export declare function __decorate(decorators: Function[], target: any, key?: string | symbol, desc?: any): any;
/**
* Creates an observing function decorator from a parameter decorator.
*
* @param paramIndex The parameter index to apply the decorator to.
* @param decorator The parameter decorator to apply. Note that the return value is ignored.
* @experimental
*/
export declare function __param(paramIndex: number, decorator: Function): Function;
/**
* Creates a decorator that sets metadata.
*
* @param metadataKey The metadata key
* @param metadataValue The metadata value
* @experimental
*/
export declare function __metadata(metadataKey: any, metadataValue: any): Function;
/**
* Converts a generator function into a pseudo-async function, by treating each `yield` as an `await`.
*
* @param thisArg The reference to use as the `this` value in the generator function
* @param _arguments The optional arguments array
* @param P The optional promise constructor argument, defaults to the `Promise` property of the global object.
* @param generator The generator function
*/
export declare function __awaiter(thisArg: any, _arguments: any, P: Function, generator: Function): any;
/**
* Creates an Iterator object using the body as the implementation.
*
* @param thisArg The reference to use as the `this` value in the function
* @param body The generator state-machine based implementation.
*
* @see [./docs/generator.md]
*/
export declare function __generator(thisArg: any, body: Function): any;
/**
* Creates bindings for all enumerable properties of `m` on `exports`
*
* @param m The source object
* @param exports The `exports` object.
*/
export declare function __exportStar(m: any, o: any): void;
/**
* Creates a value iterator from an `Iterable` or `ArrayLike` object.
*
* @param o The object.
* @throws {TypeError} If `o` is neither `Iterable`, nor an `ArrayLike`.
*/
export declare function __values(o: any): any;
/**
* Reads values from an `Iterable` or `ArrayLike` object and returns the resulting array.
*
* @param o The object to read from.
* @param n The maximum number of arguments to read, defaults to `Infinity`.
*/
export declare function __read(o: any, n?: number): any[];
/**
* Creates an array from iterable spread.
*
* @param args The Iterable objects to spread.
* @deprecated since TypeScript 4.2 - Use `__spreadArray`
*/
export declare function __spread(...args: any[][]): any[];
/**
* Creates an array from array spread.
*
* @param args The ArrayLikes to spread into the resulting array.
* @deprecated since TypeScript 4.2 - Use `__spreadArray`
*/
export declare function __spreadArrays(...args: any[][]): any[];
/**
* Spreads the `from` array into the `to` array.
*
* @param pack Replace empty elements with `undefined`.
*/
export declare function __spreadArray(to: any[], from: any[], pack?: boolean): any[];
/**
* Creates an object that signals to `__asyncGenerator` that it shouldn't be yielded,
* and instead should be awaited and the resulting value passed back to the generator.
*
* @param v The value to await.
*/
export declare function __await(v: any): any;
/**
* Converts a generator function into an async generator function, by using `yield __await`
* in place of normal `await`.
*
* @param thisArg The reference to use as the `this` value in the generator function
* @param _arguments The optional arguments array
* @param generator The generator function
*/
export declare function __asyncGenerator(thisArg: any, _arguments: any, generator: Function): any;
/**
* Used to wrap a potentially async iterator in such a way so that it wraps the result
* of calling iterator methods of `o` in `__await` instances, and then yields the awaited values.
*
* @param o The potentially async iterator.
* @returns A synchronous iterator yielding `__await` instances on every odd invocation
* and returning the awaited `IteratorResult` passed to `next` every even invocation.
*/
export declare function __asyncDelegator(o: any): any;
/**
* Creates a value async iterator from an `AsyncIterable`, `Iterable` or `ArrayLike` object.
*
* @param o The object.
* @throws {TypeError} If `o` is neither `AsyncIterable`, `Iterable`, nor an `ArrayLike`.
*/
export declare function __asyncValues(o: any): any;
/**
* Creates a `TemplateStringsArray` frozen object from the `cooked` and `raw` arrays.
*
* @param cooked The cooked possibly-sparse array.
* @param raw The raw string content.
*/
export declare function __makeTemplateObject(cooked: string[], raw: string[]): TemplateStringsArray;
/**
* Used to shim default and named imports in ECMAScript Modules transpiled to CommonJS.
*
* ```js
* import Default, { Named, Other } from "mod";
* // or
* import { default as Default, Named, Other } from "mod";
* ```
*
* @param mod The CommonJS module exports object.
*/
export declare function __importStar<T>(mod: T): T;
/**
* Used to shim default imports in ECMAScript Modules transpiled to CommonJS.
*
* ```js
* import Default from "mod";
* ```
*
* @param mod The CommonJS module exports object.
*/
export declare function __importDefault<T>(mod: T): T | { default: T };
/**
* Emulates reading a private instance field.
*
* @param receiver The instance from which to read the private field.
* @param state A WeakMap containing the private field value for an instance.
* @param kind Either `"f"` for a field, `"a"` for an accessor, or `"m"` for a method.
*
* @throws {TypeError} If `state` doesn't have an entry for `receiver`.
*/
export declare function __classPrivateFieldGet<T extends object, V>(
receiver: T,
state: { has(o: T): boolean, get(o: T): V | undefined },
kind?: "f"
): V;
/**
* Emulates reading a private static field.
*
* @param receiver The object from which to read the private static field.
* @param state The class constructor containing the definition of the static field.
* @param kind Either `"f"` for a field, `"a"` for an accessor, or `"m"` for a method.
* @param f The descriptor that holds the static field value.
*
* @throws {TypeError} If `receiver` is not `state`.
*/
export declare function __classPrivateFieldGet<T extends new (...args: any[]) => unknown, V>(
receiver: T,
state: T,
kind: "f",
f: { value: V }
): V;
/**
* Emulates evaluating a private instance "get" accessor.
*
* @param receiver The instance on which to evaluate the private "get" accessor.
* @param state A WeakSet used to verify an instance supports the private "get" accessor.
* @param kind Either `"f"` for a field, `"a"` for an accessor, or `"m"` for a method.
* @param f The "get" accessor function to evaluate.
*
* @throws {TypeError} If `state` doesn't have an entry for `receiver`.
*/
export declare function __classPrivateFieldGet<T extends object, V>(
receiver: T,
state: { has(o: T): boolean },
kind: "a",
f: () => V
): V;
/**
* Emulates evaluating a private static "get" accessor.
*
* @param receiver The object on which to evaluate the private static "get" accessor.
* @param state The class constructor containing the definition of the static "get" accessor.
* @param kind Either `"f"` for a field, `"a"` for an accessor, or `"m"` for a method.
* @param f The "get" accessor function to evaluate.
*
* @throws {TypeError} If `receiver` is not `state`.
*/
export declare function __classPrivateFieldGet<T extends new (...args: any[]) => unknown, V>(
receiver: T,
state: T,
kind: "a",
f: () => V
): V;
/**
* Emulates reading a private instance method.
*
* @param receiver The instance from which to read a private method.
* @param state A WeakSet used to verify an instance supports the private method.
* @param kind Either `"f"` for a field, `"a"` for an accessor, or `"m"` for a method.
* @param f The function to return as the private instance method.
*
* @throws {TypeError} If `state` doesn't have an entry for `receiver`.
*/
export declare function __classPrivateFieldGet<T extends object, V extends (...args: any[]) => unknown>(
receiver: T,
state: { has(o: T): boolean },
kind: "m",
f: V
): V;
/**
* Emulates reading a private static method.
*
* @param receiver The object from which to read the private static method.
* @param state The class constructor containing the definition of the static method.
* @param kind Either `"f"` for a field, `"a"` for an accessor, or `"m"` for a method.
* @param f The function to return as the private static method.
*
* @throws {TypeError} If `receiver` is not `state`.
*/
export declare function __classPrivateFieldGet<T extends new (...args: any[]) => unknown, V extends (...args: any[]) => unknown>(
receiver: T,
state: T,
kind: "m",
f: V
): V;
/**
* Emulates writing to a private instance field.
*
* @param receiver The instance on which to set a private field value.
* @param state A WeakMap used to store the private field value for an instance.
* @param value The value to store in the private field.
* @param kind Either `"f"` for a field, `"a"` for an accessor, or `"m"` for a method.
*
* @throws {TypeError} If `state` doesn't have an entry for `receiver`.
*/
export declare function __classPrivateFieldSet<T extends object, V>(
receiver: T,
state: { has(o: T): boolean, set(o: T, value: V): unknown },
value: V,
kind?: "f"
): V;
/**
* Emulates writing to a private static field.
*
* @param receiver The object on which to set the private static field.
* @param state The class constructor containing the definition of the private static field.
* @param value The value to store in the private field.
* @param kind Either `"f"` for a field, `"a"` for an accessor, or `"m"` for a method.
* @param f The descriptor that holds the static field value.
*
* @throws {TypeError} If `receiver` is not `state`.
*/
export declare function __classPrivateFieldSet<T extends new (...args: any[]) => unknown, V>(
receiver: T,
state: T,
value: V,
kind: "f",
f: { value: V }
): V;
/**
* Emulates writing to a private instance "set" accessor.
*
* @param receiver The instance on which to evaluate the private instance "set" accessor.
* @param state A WeakSet used to verify an instance supports the private "set" accessor.
* @param value The value to store in the private accessor.
* @param kind Either `"f"` for a field, `"a"` for an accessor, or `"m"` for a method.
* @param f The "set" accessor function to evaluate.
*
* @throws {TypeError} If `state` doesn't have an entry for `receiver`.
*/
export declare function __classPrivateFieldSet<T extends object, V>(
receiver: T,
state: { has(o: T): boolean },
value: V,
kind: "a",
f: (v: V) => void
): V;
/**
* Emulates writing to a private static "set" accessor.
*
* @param receiver The object on which to evaluate the private static "set" accessor.
* @param state The class constructor containing the definition of the static "set" accessor.
* @param value The value to store in the private field.
* @param kind Either `"f"` for a field, `"a"` for an accessor, or `"m"` for a method.
* @param f The "set" accessor function to evaluate.
*
* @throws {TypeError} If `receiver` is not `state`.
*/
export declare function __classPrivateFieldSet<T extends new (...args: any[]) => unknown, V>(
receiver: T,
state: T,
value: V,
kind: "a",
f: (v: V) => void
): V;
/**
* Checks for the existence of a private field/method/accessor.
*
* @param state The class constructor containing the static member, or the WeakMap or WeakSet associated with a private instance member.
* @param receiver The object for which to test the presence of the private member.
*/
export declare function __classPrivateFieldIn(
state: (new (...args: any[]) => unknown) | { has(o: any): boolean },
receiver: unknown,
): boolean;
/**
* Creates a re-export binding on `object` with key `objectKey` that references `target[key]`.
*
* @param object The local `exports` object.
* @param target The object to re-export from.
* @param key The property key of `target` to re-export.
* @param objectKey The property key to re-export as. Defaults to `key`.
*/
export declare function __createBinding(object: object, target: object, key: PropertyKey, objectKey?: PropertyKey): void;

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<script src="tslib.es6.js"></script>

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/******************************************************************************
Copyright (c) Microsoft Corporation.
Permission to use, copy, modify, and/or distribute this software for any
purpose with or without fee is hereby granted.
THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES WITH
REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF MERCHANTABILITY
AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY SPECIAL, DIRECT,
INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES WHATSOEVER RESULTING FROM
LOSS OF USE, DATA OR PROFITS, WHETHER IN AN ACTION OF CONTRACT, NEGLIGENCE OR
OTHER TORTIOUS ACTION, ARISING OUT OF OR IN CONNECTION WITH THE USE OR
PERFORMANCE OF THIS SOFTWARE.
***************************************************************************** */
/* global Reflect, Promise */
var extendStatics = function(d, b) {
extendStatics = Object.setPrototypeOf ||
({ __proto__: [] } instanceof Array && function (d, b) { d.__proto__ = b; }) ||
function (d, b) { for (var p in b) if (Object.prototype.hasOwnProperty.call(b, p)) d[p] = b[p]; };
return extendStatics(d, b);
};
export function __extends(d, b) {
if (typeof b !== "function" && b !== null)
throw new TypeError("Class extends value " + String(b) + " is not a constructor or null");
extendStatics(d, b);
function __() { this.constructor = d; }
d.prototype = b === null ? Object.create(b) : (__.prototype = b.prototype, new __());
}
export var __assign = function() {
__assign = Object.assign || function __assign(t) {
for (var s, i = 1, n = arguments.length; i < n; i++) {
s = arguments[i];
for (var p in s) if (Object.prototype.hasOwnProperty.call(s, p)) t[p] = s[p];
}
return t;
}
return __assign.apply(this, arguments);
}
export function __rest(s, e) {
var t = {};
for (var p in s) if (Object.prototype.hasOwnProperty.call(s, p) && e.indexOf(p) < 0)
t[p] = s[p];
if (s != null && typeof Object.getOwnPropertySymbols === "function")
for (var i = 0, p = Object.getOwnPropertySymbols(s); i < p.length; i++) {
if (e.indexOf(p[i]) < 0 && Object.prototype.propertyIsEnumerable.call(s, p[i]))
t[p[i]] = s[p[i]];
}
return t;
}
export function __decorate(decorators, target, key, desc) {
var c = arguments.length, r = c < 3 ? target : desc === null ? desc = Object.getOwnPropertyDescriptor(target, key) : desc, d;
if (typeof Reflect === "object" && typeof Reflect.decorate === "function") r = Reflect.decorate(decorators, target, key, desc);
else for (var i = decorators.length - 1; i >= 0; i--) if (d = decorators[i]) r = (c < 3 ? d(r) : c > 3 ? d(target, key, r) : d(target, key)) || r;
return c > 3 && r && Object.defineProperty(target, key, r), r;
}
export function __param(paramIndex, decorator) {
return function (target, key) { decorator(target, key, paramIndex); }
}
export function __metadata(metadataKey, metadataValue) {
if (typeof Reflect === "object" && typeof Reflect.metadata === "function") return Reflect.metadata(metadataKey, metadataValue);
}
export function __awaiter(thisArg, _arguments, P, generator) {
function adopt(value) { return value instanceof P ? value : new P(function (resolve) { resolve(value); }); }
return new (P || (P = Promise))(function (resolve, reject) {
function fulfilled(value) { try { step(generator.next(value)); } catch (e) { reject(e); } }
function rejected(value) { try { step(generator["throw"](value)); } catch (e) { reject(e); } }
function step(result) { result.done ? resolve(result.value) : adopt(result.value).then(fulfilled, rejected); }
step((generator = generator.apply(thisArg, _arguments || [])).next());
});
}
export function __generator(thisArg, body) {
var _ = { label: 0, sent: function() { if (t[0] & 1) throw t[1]; return t[1]; }, trys: [], ops: [] }, f, y, t, g;
return g = { next: verb(0), "throw": verb(1), "return": verb(2) }, typeof Symbol === "function" && (g[Symbol.iterator] = function() { return this; }), g;
function verb(n) { return function (v) { return step([n, v]); }; }
function step(op) {
if (f) throw new TypeError("Generator is already executing.");
while (_) try {
if (f = 1, y && (t = op[0] & 2 ? y["return"] : op[0] ? y["throw"] || ((t = y["return"]) && t.call(y), 0) : y.next) && !(t = t.call(y, op[1])).done) return t;
if (y = 0, t) op = [op[0] & 2, t.value];
switch (op[0]) {
case 0: case 1: t = op; break;
case 4: _.label++; return { value: op[1], done: false };
case 5: _.label++; y = op[1]; op = [0]; continue;
case 7: op = _.ops.pop(); _.trys.pop(); continue;
default:
if (!(t = _.trys, t = t.length > 0 && t[t.length - 1]) && (op[0] === 6 || op[0] === 2)) { _ = 0; continue; }
if (op[0] === 3 && (!t || (op[1] > t[0] && op[1] < t[3]))) { _.label = op[1]; break; }
if (op[0] === 6 && _.label < t[1]) { _.label = t[1]; t = op; break; }
if (t && _.label < t[2]) { _.label = t[2]; _.ops.push(op); break; }
if (t[2]) _.ops.pop();
_.trys.pop(); continue;
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@ -0,0 +1 @@
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View file

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/******************************************************************************
Copyright (c) Microsoft Corporation.
Permission to use, copy, modify, and/or distribute this software for any
purpose with or without fee is hereby granted.
THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES WITH
REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF MERCHANTABILITY
AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY SPECIAL, DIRECT,
INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES WHATSOEVER RESULTING FROM
LOSS OF USE, DATA OR PROFITS, WHETHER IN AN ACTION OF CONTRACT, NEGLIGENCE OR
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108
node_modules/@azure/core-paging/package.json generated vendored Normal file
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{
"name": "@azure/core-paging",
"author": "Microsoft Corporation",
"sdk-type": "client",
"version": "1.3.0",
"description": "Core types for paging async iterable iterators",
"tags": [
"microsoft",
"clientruntime"
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"clientruntime",
"azure",
"cloud"
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"@azure/dev-tool": "^1.0.0",
"@microsoft/api-extractor": "7.18.11",
"@azure/eslint-plugin-azure-sdk": "^3.0.0",
"@types/chai": "^4.1.6",
"@types/mocha": "^7.0.2",
"@types/node": "^12.0.0",
"chai": "^4.2.0",
"downlevel-dts": "^0.8.0",
"eslint": "^7.15.0",
"karma": "^6.2.0",
"karma-chrome-launcher": "^3.0.0",
"karma-coverage": "^2.0.0",
"karma-edge-launcher": "^0.4.2",
"karma-env-preprocessor": "^0.1.1",
"karma-firefox-launcher": "^1.1.0",
"karma-ie-launcher": "^1.0.0",
"karma-junit-reporter": "^2.0.1",
"karma-mocha": "^2.0.1",
"karma-mocha-reporter": "^2.2.5",
"karma-sourcemap-loader": "^0.3.8",
"mocha": "^7.1.1",
"mocha-junit-reporter": "^2.0.0",
"prettier": "^2.5.1",
"rimraf": "^3.0.0",
"typescript": "~4.6.0"
},
"//sampleConfiguration": {
"skipFolder": true,
"disableDocsMs": true,
"productName": "Azure SDK Core",
"productSlugs": [
"azure"
]
}
}

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/**
* returns an async iterator that iterates over results. It also has a `byPage`
* method that returns pages of items at once.
*
* @param pagedResult - an object that specifies how to get pages.
* @returns a paged async iterator that iterates over results.
*/
export declare function getPagedAsyncIterator<TElement, TPage = TElement[], TPageSettings = PageSettings, TLink = string>(pagedResult: PagedResult<TPage, TPageSettings, TLink>): PagedAsyncIterableIterator<TElement, TPage, TPageSettings>;
/**
* An interface that allows async iterable iteration both to completion and by page.
*/
export declare interface PagedAsyncIterableIterator<T, PageT = T[], PageSettingsT = PageSettings> {
/**
* The next method, part of the iteration protocol
*/
next(): Promise<IteratorResult<T>>;
/**
* The connection to the async iterator, part of the iteration protocol
*/
[Symbol.asyncIterator](): PagedAsyncIterableIterator<T, PageT, PageSettingsT>;
/**
* Return an AsyncIterableIterator that works a page at a time
*/
byPage: (settings?: PageSettingsT) => AsyncIterableIterator<PageT>;
}
/**
* An interface that describes how to communicate with the service.
*/
export declare interface PagedResult<TPage, TPageSettings = PageSettings, TLink = string> {
/**
* Link to the first page of results.
*/
firstPageLink: TLink;
/**
* A method that returns a page of results.
*/
getPage: (pageLink: TLink, maxPageSize?: number) => Promise<{
page: TPage;
nextPageLink?: TLink;
}>;
/**
* a function to implement the `byPage` method on the paged async iterator. The default is
* one that sets the `maxPageSizeParam` from `settings.maxPageSize`.
*/
byPage?: (settings?: TPageSettings) => AsyncIterableIterator<TPage>;
}
/**
* An interface that tracks the settings for paged iteration
*/
export declare interface PageSettings {
/**
* The token that keeps track of where to continue the iterator
*/
continuationToken?: string;
/**
* The size of the page during paged iteration
*/
maxPageSize?: number;
}
export {};

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export declare function main(): Promise<void>;
//# sourceMappingURL=getPagedAsyncIteratorSample.d.ts.map

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import { PageSettings, PagedAsyncIterableIterator, PagedResult } from "./models";
/**
* returns an async iterator that iterates over results. It also has a `byPage`
* method that returns pages of items at once.
*
* @param pagedResult - an object that specifies how to get pages.
* @returns a paged async iterator that iterates over results.
*/
export declare function getPagedAsyncIterator<TElement, TPage = TElement[], TPageSettings = PageSettings, TLink = string>(pagedResult: PagedResult<TPage, TPageSettings, TLink>): PagedAsyncIterableIterator<TElement, TPage, TPageSettings>;
//# sourceMappingURL=getPagedAsyncIterator.d.ts.map

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export * from "./models";
export * from "./getPagedAsyncIterator";
//# sourceMappingURL=index.d.ts.map

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/**
* An interface that tracks the settings for paged iteration
*/
export interface PageSettings {
/**
* The token that keeps track of where to continue the iterator
*/
continuationToken?: string;
/**
* The size of the page during paged iteration
*/
maxPageSize?: number;
}
/**
* An interface that allows async iterable iteration both to completion and by page.
*/
export interface PagedAsyncIterableIterator<T, PageT = T[], PageSettingsT = PageSettings> {
/**
* The next method, part of the iteration protocol
*/
next(): Promise<IteratorResult<T>>;
/**
* The connection to the async iterator, part of the iteration protocol
*/
[Symbol.asyncIterator](): PagedAsyncIterableIterator<T, PageT, PageSettingsT>;
/**
* Return an AsyncIterableIterator that works a page at a time
*/
byPage: (settings?: PageSettingsT) => AsyncIterableIterator<PageT>;
}
/**
* An interface that describes how to communicate with the service.
*/
export interface PagedResult<TPage, TPageSettings = PageSettings, TLink = string> {
/**
* Link to the first page of results.
*/
firstPageLink: TLink;
/**
* A method that returns a page of results.
*/
getPage: (pageLink: TLink, maxPageSize?: number) => Promise<{
page: TPage;
nextPageLink?: TLink;
}>;
/**
* a function to implement the `byPage` method on the paged async iterator. The default is
* one that sets the `maxPageSizeParam` from `settings.maxPageSize`.
*/
byPage?: (settings?: TPageSettings) => AsyncIterableIterator<TPage>;
}
//# sourceMappingURL=models.d.ts.map

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export {};
//# sourceMappingURL=getPagedAsyncIterator.spec.d.ts.map

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/**
* returns an async iterator that iterates over results. It also has a `byPage`
* method that returns pages of items at once.
*
* @param pagedResult - an object that specifies how to get pages.
* @returns a paged async iterator that iterates over results.
*/
export declare function getPagedAsyncIterator<TElement, TPage = TElement[], TPageSettings = PageSettings, TLink = string>(pagedResult: PagedResult<TPage, TPageSettings, TLink>): PagedAsyncIterableIterator<TElement, TPage, TPageSettings>;
/**
* An interface that allows async iterable iteration both to completion and by page.
*/
export declare interface PagedAsyncIterableIterator<T, PageT = T[], PageSettingsT = PageSettings> {
/**
* The next method, part of the iteration protocol
*/
next(): Promise<IteratorResult<T>>;
/**
* The connection to the async iterator, part of the iteration protocol
*/
[Symbol.asyncIterator](): PagedAsyncIterableIterator<T, PageT, PageSettingsT>;
/**
* Return an AsyncIterableIterator that works a page at a time
*/
byPage: (settings?: PageSettingsT) => AsyncIterableIterator<PageT>;
}
/**
* An interface that describes how to communicate with the service.
*/
export declare interface PagedResult<TPage, TPageSettings = PageSettings, TLink = string> {
/**
* Link to the first page of results.
*/
firstPageLink: TLink;
/**
* A method that returns a page of results.
*/
getPage: (pageLink: TLink, maxPageSize?: number) => Promise<{
page: TPage;
nextPageLink?: TLink;
}>;
/**
* a function to implement the `byPage` method on the paged async iterator. The default is
* one that sets the `maxPageSizeParam` from `settings.maxPageSize`.
*/
byPage?: (settings?: TPageSettings) => AsyncIterableIterator<TPage>;
}
/**
* An interface that tracks the settings for paged iteration
*/
export declare interface PageSettings {
/**
* The token that keeps track of where to continue the iterator
*/
continuationToken?: string;
/**
* The size of the page during paged iteration
*/
maxPageSize?: number;
}
export { }