svelte

por vercel

Renderizador Svelte 5 para json-render que transforma especificações JSON em árvores de componentes Svelte. Use ao trabalhar com @json-render/svelte, construindo UIs Svelte a partir de JSON,…

npx skills add https://github.com/vercel-labs/json-render --skill svelte

@json-render/svelte

Svelte 5 renderer that converts json-render specs into Svelte component trees.

Quick Start

<script lang="ts">
  import { Renderer, JsonUIProvider } from "@json-render/svelte";
  import type { Spec } from "@json-render/svelte";
  import Card from "./components/Card.svelte";
  import Button from "./components/Button.svelte";

  interface Props {
    spec: Spec | null;
  }

  let { spec }: Props = $props();
  const registry = { Card, Button };
</script>

<JsonUIProvider>
  <Renderer {spec} {registry} />
</JsonUIProvider>

Creating a Catalog

import { defineCatalog } from "@json-render/core";
import { schema } from "@json-render/svelte";
import { z } from "zod";

export const catalog = defineCatalog(schema, {
  components: {
    Button: {
      props: z.object({
        label: z.string(),
        variant: z.enum(["primary", "secondary"]).nullable(),
      }),
      description: "Clickable button",
    },
    Card: {
      props: z.object({ title: z.string() }),
      description: "Card container with title",
    },
  },
});

Defining Components

Components should accept BaseComponentProps<TProps>:

interface BaseComponentProps<TProps> {
  props: TProps; // Resolved props for this component
  children?: Snippet; // Child elements (use {@render children()})
  emit: (event: string) => void; // Fire a named event
  bindings?: Record<string, string>; // Map of prop names to state paths (for $bindState)
  loading?: boolean; // True while spec is streaming
}
<!-- Button.svelte -->
<script lang="ts">
  import type { BaseComponentProps } from "@json-render/svelte";

  interface Props extends BaseComponentProps<{ label: string; variant?: string }> {}
  let { props, emit }: Props = $props();
</script>

<button class={props.variant} onclick={() => emit("press")}>
  {props.label}
</button>
<!-- Card.svelte -->
<script lang="ts">
  import type { Snippet } from "svelte";
  import type { BaseComponentProps } from "@json-render/svelte";

  interface Props extends BaseComponentProps<{ title: string }> {
    children?: Snippet;
  }

  let { props, children }: Props = $props();
</script>

<div class="card">
  <h2>{props.title}</h2>
  {#if children}
    {@render children()}
  {/if}
</div>

Creating a Registry

import { defineRegistry } from "@json-render/svelte";
import { catalog } from "./catalog";
import Card from "./components/Card.svelte";
import Button from "./components/Button.svelte";

const { registry, handlers, executeAction } = defineRegistry(catalog, {
  components: {
    Card,
    Button,
  },
  actions: {
    submit: async (params, setState, state) => {
      // handle action
    },
  },
});

Spec Structure (Element Tree)

The Svelte schema uses the element tree format:

{
  "root": "card1",
  "elements": {
    "card1": {
      "type": "Card",
      "props": { "title": "Hello" },
      "children": ["btn1"]
    },
    "btn1": {
      "type": "Button",
      "props": { "label": "Click me" }
    }
  }
}

Visibility Conditions

Use visible on elements to show/hide based on state:

  • { "$state": "/path" } - truthy check
  • { "$state": "/path", "eq": value } - equality check
  • { "$state": "/path", "not": true } - falsy check
  • { "$and": [cond1, cond2] } - AND conditions
  • { "$or": [cond1, cond2] } - OR conditions

Providers (via JsonUIProvider)

JsonUIProvider composes all contexts. Individual contexts:

ContextPurpose
StateContextShare state across components (JSON Pointer paths)
ActionContextHandle actions dispatched via the event system
VisibilityContextEnable conditional rendering based on state
ValidationContextForm field validation

Event System

Components use emit to fire named events. The element's on field maps events to action bindings:

<!-- Button.svelte -->
<script lang="ts">
  import type { BaseComponentProps } from "@json-render/svelte";

  interface Props extends BaseComponentProps<{ label: string }> {}

  let { props, emit }: Props = $props();
</script>

<button onclick={() => emit("press")}>{props.label}</button>
{
  "type": "Button",
  "props": { "label": "Submit" },
  "on": { "press": { "action": "submit" } }
}

Built-in Actions

The setState action is handled automatically and updates the state model:

{
  "action": "setState",
  "actionParams": { "statePath": "/activeTab", "value": "home" }
}

Other built-in actions: pushState, removeState, push, pop.

Dynamic Props and Two-Way Binding

Nested lists can set repeat.statePath to { "$item": "field" } inside an enclosing repeat.

Expression forms resolved before your component receives props:

  • {"$state": "/state/key"} - read from state
  • {"$bindState": "/form/email"} - read + write-back to state
  • {"$bindItem": "field"} - read + write-back for repeat items
  • {"$cond": <condition>, "$then": <value>, "$else": <value>} - conditional value

For writable bindings inside components, use getBoundProp:

<script lang="ts">
  import { getBoundProp } from "@json-render/svelte";
  import type { BaseComponentProps } from "@json-render/svelte";

  interface Props extends BaseComponentProps<{ value?: string }> {}
  let { props, bindings }: Props = $props();

  let value = getBoundProp<string>(
    () => props.value,
    () => bindings?.value,
  );
</script>

<input bind:value={value.current} />

Context Helpers

Preferred helpers:

  • getStateValue(path) - returns { current } (read/write)
  • getBoundProp(() => value, () => bindingPath) - returns { current } (read/write when bound)
  • isVisible(condition) - returns { current } (boolean)
  • getAction(name) - returns { current } (registered handler)

Advanced context access:

  • getStateContext()
  • getActionContext()
  • getVisibilityContext()
  • getValidationContext()
  • getOptionalValidationContext()
  • getFieldValidation(ctx, path, config?)

Streaming UI

Use createUIStream for spec streaming:

<script lang="ts">
  import { createUIStream, Renderer } from "@json-render/svelte";

  const stream = createUIStream({
    api: "/api/generate-ui",
    onComplete: (spec) => console.log("Done", spec),
  });

  async function generate() {
    await stream.send("Create a login form");
  }
</script>

<button onclick={generate} disabled={stream.isStreaming}>
  {stream.isStreaming ? "Generating..." : "Generate UI"}
</button>

{#if stream.spec}
  <Renderer spec={stream.spec} {registry} loading={stream.isStreaming} />
{/if}

Use createChatUI for chat + UI responses:

const chat = createChatUI({ api: "/api/chat-ui" });
await chat.send("Build a settings panel");

Mais skills de vercel

vercel
vercel
API REST do Vercel emulada para desenvolvimento e testes locais. Use quando o usuário precisar interagir com endpoints da API do Vercel localmente, testar integrações com o Vercel,…
cron-jobs
vercel
Configuração e melhores práticas de Vercel Cron Jobs. Use ao adicionar, editar ou depurar tarefas agendadas em vercel.json.
codegen
vercel
Utilitários de geração de código para json-render. Use ao gerar código a partir de especificações de UI, construir exportadores de código personalizados, percorrer especificações ou serializar props para…
next-best-practice
vercel
Práticas recomendadas do Next.js - convenções de arquivos, limites de RSC, padrões de dados, APIs assíncronas, metadados, tratamento de erros, manipuladores de rotas, otimização de imagens/fontes,…
benchmark-sandbox
vercel
Executa cenários de avaliação do vercel-plugin em Vercel Sandboxes em vez de painéis locais do WezTerm. Provisiona microVMs efêmeras com Claude Code + plugin pré-instalado,…
write-guide
vercel
Produza um guia técnico que ensine um caso de uso do mundo real por meio de exemplos progressivos. Os
benchmark-testing
vercel
Criar e lançar projetos de teste de benchmark para exercitar a injeção de habilidades do vercel-plugin em cenários realistas. Configura diretórios isolados, instala o…
ai-gateway
vercel
Orientação especializada do Vercel AI Gateway. Use ao configurar roteamento de modelos, failover de provedores, rastreamento de custos ou gerenciamento de múltiplos provedores de IA através de uma interface unificada…