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⚠️ This article was written in 2022. Some content may be outdated.

Vue 3.3 Reactive Props Destructuring

In daily development, Vue 3.3 reactive props destructuring is being used more and more frequently. This article systematically explains its usage, principles, and optimization strategies.

Quick Start ​

Let's start with the basic implementation:

javascript
import { useState, useEffect, useCallback } from 'react'

function DataList({ endpoint, pageSize = 20 }) {
  const [data, setData] = useState([])
  const [page, setPage] = useState(1)
  const [loading, setLoading] = useState(false)

  const fetchData = useCallback(async () => {
    setLoading(true)
    try {
      const res = await fetch(`${endpoint}?page=${page}&size=${pageSize}`)
      setData(await res.json())
    } finally { setLoading(false) }
  }, [endpoint, page, pageSize])

  useEffect(() => { fetchData() }, [fetchData])

  return <div>{loading ? <Spinner /> : <List items={data} />}</div>
}

This code demonstrates the basic usage. In real projects, you also need to consider error handling and edge cases.

Internal Principles ​

Building on this foundation, we can further optimize:

javascript
type DeepPartial<T> = T extends object ? { [P in keyof T]?: DeepPartial<T[P]> } : T

interface AppConfig {
  api: { baseUrl: string; timeout: number; retries: number }
  ui: { theme: 'light' | 'dark'; language: string; pageSize: number }
}

type PartialConfig = DeepPartial<AppConfig>

function mergeConfig(defaults: AppConfig, overrides: PartialConfig): AppConfig {
  const result = { ...defaults }
  for (const key of Object.keys(overrides) as (keyof AppConfig)[]) {
    if (overrides[key] && typeof overrides[key] === 'object') {
      result[key] = { ...defaults[key], ...overrides[key] } as any
    }
  }
  return result
}

This pattern is very practical in large projects and can significantly reduce maintenance costs.

Business Practice ​

In real projects, the usage is a bit more complex:

javascript
:root {
  --bg: light-dark(#fff, #1a1a2e);
  --text: light-dark(#333, #e0e0e0);
  --accent: light-dark(#2563eb, #60a5fa);
  color-scheme: light dark;
}

.carousel {
  display: flex; gap: 1rem; overflow-x: auto;
  scroll-snap-type: x mandatory;
  scroll-padding: 1rem;
}

.carousel__item {
  flex: 0 0 80%; scroll-snap-align: start;
  border-radius: 12px; transition: scale 0.3s ease;
}

Through this approach, both the testability and scalability of the code are improved.

Performance Comparison ​

Here is a complete example:

javascript
import { useState, useEffect, useCallback } from 'react'

function DataList({ endpoint, pageSize = 20 }) {
  const [data, setData] = useState([])
  const [page, setPage] = useState(1)
  const [loading, setLoading] = useState(false)

  const fetchData = useCallback(async () => {
    setLoading(true)
    try {
      const res = await fetch(`${endpoint}?page=${page}&size=${pageSize}`)
      setData(await res.json())
    } finally { setLoading(false) }
  }, [endpoint, page, pageSize])

  useEffect(() => { fetchData() }, [fetchData])

  return <div>{loading ? <Spinner /> : <List items={data} />}</div>
}

Pay attention to boundary condition handling, which is critical in production.

Summary ​

  • Understanding underlying principles is more important than memorizing APIs
  • Always verify compatibility before using in production
  • In team collaboration, conventions and documentation are more important than the technology itself

MIT Licensed