| name | vercel-composition-patterns |
| description | React composition patterns for scaling components and avoiding boolean prop proliferation. |
| license | MIT |
| metadata | {"source":"vercel-labs/agent-skills"} |
React Composition Patterns
Composition patterns for building flexible, maintainable React components. Avoid boolean prop proliferation by using compound components, lifting state, and composing internals. These patterns make codebases easier for both humans and AI agents to work with as they scale.
When to Apply
Reference these guidelines when:
- Refactoring components with many boolean props
- Building reusable component libraries
- Designing flexible component APIs
- Reviewing component architecture
- Working with compound components or context providers
Rule Categories by Priority
| Priority | Category | Impact | Prefix |
|---|
| 1 | Component Architecture | HIGH | architecture- |
| 2 | State Management | MEDIUM | state- |
| 3 | Implementation Patterns | MEDIUM | patterns- |
| 4 | React 19 APIs | MEDIUM | react19- |
Quick Reference
1. Component Architecture (HIGH)
architecture-avoid-boolean-props - Don't add boolean props to customize behavior; use composition
architecture-compound-components - Structure complex components with shared context
2. State Management (MEDIUM)
state-decouple-implementation - Provider is the only place that knows how state is managed
state-context-interface - Define generic interface with state, actions, meta for dependency injection
state-lift-state - Move state into provider components for sibling access
3. Implementation Patterns (MEDIUM)
patterns-explicit-variants - Create explicit variant components instead of boolean modes
patterns-children-over-render-props - Use children for composition instead of renderX props
4. React 19 APIs (MEDIUM)
React 19+ only. Skip this section if using React 18 or earlier.
react19-no-forwardref - Don't use forwardRef; use use() instead of useContext()
architecture-avoid-boolean-props
Don't add boolean props to customize component behavior. Use composition instead.
Incorrect:
function Modal({ isFullScreen, hasCloseButton, isScrollable, showOverlay, children }) {
return (
<div className={cn("modal", isFullScreen && "modal-full", isScrollable && "modal-scroll")}>
{showOverlay && <div className="overlay" />}
{children}
{hasCloseButton && <button>Close</button>}
</div>
)
}
<Modal isFullScreen hasCloseButton isScrollable showOverlay>
<p>Content</p>
</Modal>
Correct:
function Modal({ children }) {
return <div className="modal">{children}</div>
}
function ModalOverlay() {
return <div className="overlay" />
}
function ModalCloseButton() {
return <button>Close</button>
}
<Modal>
<ModalOverlay />
<ModalCloseButton />
<p>Content</p>
</Modal>
architecture-compound-components
Structure complex components with shared context so parts communicate without prop drilling.
Incorrect:
<Tabs
items={[
{ label: "Tab 1", content: <Panel1 /> },
{ label: "Tab 2", content: <Panel2 /> },
]}
activeTab={0}
onTabChange={setTab}
/>
Correct:
<Tabs defaultValue="tab1">
<TabsList>
<TabsTrigger value="tab1">Tab 1</TabsTrigger>
<TabsTrigger value="tab2">Tab 2</TabsTrigger>
</TabsList>
<TabsContent value="tab1"><Panel1 /></TabsContent>
<TabsContent value="tab2"><Panel2 /></TabsContent>
</Tabs>
state-decouple-implementation
The provider is the only place that knows how state is managed. Consumers use the context interface without caring about the implementation.
Incorrect:
function App() {
const [items, setItems] = useState([])
const [filter, setFilter] = useState("")
return (
<ItemList items={items} setItems={setItems} filter={filter} setFilter={setFilter} />
)
}
Correct:
function ItemProvider({ children }) {
const [items, setItems] = useState([])
const [filter, setFilter] = useState("")
const value = {
state: { items, filter },
actions: { addItem: (item) => setItems(prev => [...prev, item]), setFilter },
}
return <ItemContext value={value}>{children}</ItemContext>
}
function ItemList() {
const { state, actions } = use(ItemContext)
}
state-context-interface
Define a generic interface with state, actions, and meta for dependency injection.
type ContextValue<S, A, M = undefined> = {
state: S
actions: A
meta?: M
}
type CartContext = ContextValue<
{ items: CartItem[]; total: number },
{ addItem: (item: CartItem) => void; removeItem: (id: string) => void; clear: () => void },
{ currency: string }
>
state-lift-state
Move state into provider components for sibling access rather than passing callbacks through intermediaries.
Incorrect:
function Parent() {
const [selected, setSelected] = useState(null)
return (
<>
<Sidebar onSelect={setSelected} />
<Detail item={selected} />
</>
)
}
Correct:
function SelectionProvider({ children }) {
const [selected, setSelected] = useState(null)
return (
<SelectionContext value={{ selected, setSelected }}>
{children}
</SelectionContext>
)
}
function Parent() {
return (
<SelectionProvider>
<Sidebar />
<Detail />
</SelectionProvider>
)
}
patterns-explicit-variants
Create explicit variant components instead of boolean modes.
Incorrect:
<Button isPrimary isLarge isLoading>Submit</Button>
Correct:
<Button variant="primary" size="lg">
<Spinner data-icon="inline-start" />
Submit
</Button>
patterns-children-over-render-props
Use children for composition instead of renderX props.
Incorrect:
<List
renderItem={(item) => <ItemCard item={item} />}
renderEmpty={() => <EmptyState />}
renderHeader={() => <h2>Items</h2>}
/>
Correct:
<List>
<ListHeader><h2>Items</h2></ListHeader>
{items.length === 0 ? (
<EmptyState />
) : (
items.map(item => <ItemCard key={item.id} item={item} />)
)}
</List>
react19-no-forwardref
In React 19, ref is a regular prop. Don't use forwardRef. Use use() instead of useContext().
Incorrect (React 18 pattern):
import { forwardRef, useContext } from 'react'
const Input = forwardRef<HTMLInputElement, InputProps>((props, ref) => {
const theme = useContext(ThemeContext)
return <input ref={ref} {...props} />
})
Correct (React 19):
import { use } from 'react'
function Input({ ref, ...props }: InputProps & { ref?: React.Ref<HTMLInputElement> }) {
const theme = use(ThemeContext)
return <input ref={ref} {...props} />
}