typescript

Use este guia ao trabalhar em alterações TypeScript no monorepo FAST — criando Web Components, escrevendo templates e estilos, trabalhando com o…

npx skills add https://github.com/microsoft/fast --skill typescript

TypeScript Patterns for FAST

Modules

fast-element enables verbatimModuleSyntax, so type-only imports must use import type or the inline type qualifier:

import type { Notifier, Subscriber } from "./notifier.js";
import { type Constructable, isFunction } from "../interfaces.js";

Sub-entry-points expose focused APIs through the exports map:

import { twoWay } from "@microsoft/fast-element/two-way.js";
import { reactive } from "@microsoft/fast-element/state.js";

The barrel index.ts explicitly lists every re-export grouped by subsystem — no export * statements.

Aside from the index.ts or index.*.ts files there should be no barrel exports.

Side Effects

Do not add side effectful code and do not add sideEffects to package.json files. APIs added should import named exports.

Browser APIs

Do not use

Our stance as a framework library is that certain browser APIs are best avoided by the framework. We may facilitate the use of them through our provided APIs.

List of APIs to avoid implementing in FAST packages:

  • requestIdleCallback
  • setTimeout
  • setInterval

Avoid

Some browser APIs can be used but should be avoided as a developer may encounter edge cases with task queuing or other logic their app is executing.

List of APIs to avoid in FAST packages:

  • requestAnimationFrame
  • queueMicrotask

Custom elements

Elements extend FASTElement. Do not use the @customElement decorator.

Use define() for registration. define() returns a Promise that resolves immediately when a template is provided:

Example define.ts (side-effect import):

export class MyElement extends FASTElement {
    @observable items: string[] = [];
}

await MyElement.define({
    name: "my-element",
    template,
    styles,
});

Templates

Templates use the html tagged template literal typed to the element class:

import { html } from "@microsoft/fast-element/html.js";
import { repeat } from "@microsoft/fast-element/repeat.js";
import { when } from "@microsoft/fast-element/when.js";
import type { MyElement } from "./my-element.js";

export const template = html<MyElement>`
    <h1>${x => x.title}</h1>
    ${when(x => x.showList, html<MyElement>`
        <ul>
            ${repeat(
                x => x.items,
                html<string>`<li>${x => x}</li>`
            )}
        </ul>
    `)}
`;

Binding syntax

PrefixPurposeExample
${x => ...}Content or attribute${x => x.name}
@eventEvent listener@click=${x => x.handleClick()}
@eventEvent with context@click=${(x, c) => c.parent.remove(x)}
:propDOM property:value=${twoWay(x => x.description)}
?attrBoolean attribute?disabled=${x => !x.isValid}

Two-way bindings require a sub-entry-point import:

import { twoWay } from "@microsoft/fast-element/two-way.js";

Partial HTML

Use html.partial() to inject pre-built HTML strings into a template without creating a full ViewTemplate:

html<MyElement>`
    <div>${html.partial("<span>static markup</span>")}</div>
`;

Styles

Styles use the css tagged template literal. They attach through the element definition's styles property:

import { css } from "@microsoft/fast-element/css.js";

export const styles = css`
    :host {
        display: block;
        padding: 16px;
    }
`;

For declarative HTML definitions, styles live in a separate .styles.css file linked from both the initial shadow root template and the <f-template>:

<f-template name="my-element">
    <template>
        <link rel="stylesheet" href="./my-element.styles.css">
    </template>
</f-template>

css.partial() works the same way as html.partial() — injecting raw CSS strings.

Reactivity

@attr maps HTML attributes to properties. @observable creates reactive properties tracked by templates. @volatile marks getters whose dependencies change between calls:

import { FASTElement } from "@microsoft/fast-element/fast-element.js";
import { attr, nullableNumberConverter } from "@microsoft/fast-element/attr.js";
import { Observable, observable } from "@microsoft/fast-element/observable.js";
import { volatile } from "@microsoft/fast-element/volatile.js";

class MyElement extends FASTElement {
    @attr label?: string;
    @attr({ mode: "boolean" }) active?: boolean;
    @attr({ converter: nullableNumberConverter }) count?: number;

    @observable private _items: string[] = [];

    // Convention: ${propertyName}Changed
    labelChanged(prev: string | undefined, next: string | undefined) {}

    @volatile
    get sortedItems(): readonly string[] {
        return [...this._items].sort();
    }
}

Notify the system after in-place mutations that it cannot detect automatically:

this._items.splice(index, 1);
Observable.notify(this, "_items");

Make plain objects observable via the state sub-entry-point:

import { reactive } from "@microsoft/fast-element/state.js";
const todo = reactive({ description: "Buy milk", done: false });

Testing

Tests use Playwright Test (*.pw.spec.ts) and combine two patterns within the same file.

Direct-import tests

For logic that does not need browser APIs — the test callback takes no parameters:

import { expect, test } from "@playwright/test";
import { Observable } from "./observable.js";

test.describe("Observable", () => {
    test("can get a notifier", () => {
        const notifier = Observable.getNotifier(new Model());
        expect(notifier).toBeInstanceOf(PropertyChangeNotifier);
    });
});

Browser-evaluated tests

For tests requiring DOM APIs, navigate to the Vite dev server and import via "/main.js". The @ts-expect-error comment is required because TypeScript cannot resolve the URL-based import:

test("renders element", async ({ page }) => {
    await page.goto("/");

    const result = await page.evaluate(async () => {
        // @ts-expect-error: Client module.
        const { FASTElement, html, uniqueElementName } = await import("/main.js");
        // ... test logic ...
        return someSerializableValue;
    });

    expect(result).toBe(expected);
});

Only serializable values can cross the page.evaluate boundary — run expect() assertions outside it on the returned data.

The test harness at packages/<package>/test/main.ts re-exports source modules for browser tests. When adding new package exports, add them there too.

TypeScript idioms

Const-type merging for enumerations

Frozen const objects paired with a type extracted from their values replace TypeScript enum:

export const SourceLifetime = {
    default: undefined,
    couple: 1,
} as const;

export type SourceLifetime =
    (typeof SourceLifetime)[keyof typeof SourceLifetime];

Interface-const merging

FASTElement is both an interface (instance shape) and a const (constructor). Static methods use typeof to carry overloaded signatures:

export const FASTElement: {
    new (): FASTElement;
    define: typeof define;
} = Object.assign(createFASTElement(HTMLElement), { define });

Tagged template intersection types

html and css are typed as intersections of a tagged template function and a .partial() method:

type HTMLTemplateTag = (<TSource, TParent>(
    strings: TemplateStringsArray,
    ...values: TemplateValue<TSource, TParent>[]
) => ViewTemplate<TSource, TParent>) & {
    partial(html: string): InlineTemplateDirective;
};

Mais skills de microsoft

oss-growth
microsoft
Persona de growth hacker OSS
agent-framework-azure-ai-py
microsoft
Crie agentes do Azure AI Foundry usando o SDK Python do Microsoft Agent Framework (agent-framework-azure-ai). Use ao criar agentes persistentes com AzureAIAgentsProvider, usando ferramentas hospedadas (interpretador de código, pesquisa de arquivos, pesquisa na web), integrando servidores MCP, gerenciando threads de conversa ou implementando respostas em streaming. Abrange ferramentas de função, saídas estruturadas e agentes com múltiplas ferramentas.
development
airunway-aks-setup
microsoft
Configure o AI Runway no AKS — do cluster vazio ao modelo em execução. Abrange verificação do cluster, instalação do controlador, avaliação de GPU, configuração do provedor e primeira implantação. QUANDO: "configurar AI Runway", "integrar cluster AKS", "instalar AI Runway", "configuração do airunway", "implantar modelo no AKS", "inferência GPU no AKS", "configuração KAITO no AKS", "executar LLM no AKS", "vLLM no AKS", "configurar serviço de modelo no AKS", "controlador AI Runway".
devops
appinsights-instrumentation
microsoft
Orientação para instrumentar aplicações web com Azure Application Insights. Fornece padrões de telemetria, configuração de SDK e referências de configuração. QUANDO: como instrumentar o app, SDK do App Insights, padrões de telemetria, o que é App Insights, orientação sobre Application Insights, exemplos de instrumentação, melhores práticas de APM.
devops
applicationinsights-web-ts
microsoft
Instrumente aplicativos de navegador/web com o SDK JavaScript do Application Insights (@microsoft/applicationinsights-web). Use para Real User Monitoring (RUM) — visualizações de página, cliques, dependências AJAX/fetch, exceções, eventos personalizados e rastreamentos de agentes GenAI no lado do navegador correlacionados a rastreamentos OpenTelemetry no backend. Abrange o Script de Carregamento do SDK e a configuração via npm, extensões de frameworks (React, React Native, Angular), Click Analytics, inicializadores de telemetria e convenções semânticas GenAI do OTel para spans de agente/ferramenta/modelo emitidos pelo navegador.
devops
azure-ai-anomalydetector-java
microsoft
Crie aplicativos de detecção de anomalias com o SDK do Azure AI Anomaly Detector para Java. Use ao implementar detecção de anomalias univariada/multivariada, análise de séries temporais ou monitoramento com IA.
development
azure-ai-language-conversations-py
microsoft
Implemente o reconhecimento de linguagem conversacional (CLU) usando o SDK Python azure-ai-language-conversations. Use ao trabalhar com ConversationAnalysisClient para analisar intenção e entidades de conversas, criar recursos de NLP ou integrar o reconhecimento de linguagem em aplicativos.
development
azure-ai-ml-py
microsoft
SDK v2 do Azure Machine Learning para Python. Use para workspaces de ML, jobs, modelos, conjuntos de dados, computação e pipelines. Gatilhos: "azure-ai-ml", "MLClient", "workspace", "registro de modelos", "jobs de treinamento", "conjuntos de dados".
development