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 Some content may be outdated.

Comparing AI Code Generation Tools

The topic of comparing AI code generation tools has been discussed many times in the community, but with version updates, many conclusions need refreshing. This article re-examines the landscape based on the latest versions.

Getting Started ​

Here is a complete example:

javascript
'use client'
import { useChat } from 'ai/react'

export function AIChat() {
  const { messages, input, handleInputChange, handleSubmit, isLoading } = useChat({
    api: '/api/chat'
  })
  return (
    <div className="chat-container">
      {messages.map(m => (
        <div key={m.id} className={`message ${m.role}`}>
          <p>{m.content}</p>
        </div>
      ))}
      <form onSubmit={handleSubmit}>
        <input value={input} onChange={handleInputChange} />
        <button type="submit" disabled={isLoading}>发送</button>
      </form>
    </div>
  )
}

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

Source Code Analysis ​

The key lies in understanding the core logic:

javascript
import { openai } from '@ai-sdk/openai'
import { streamText } from 'ai'

export async function POST(req) {
  const { messages } = await req.json()
  const result = await streamText({
    model: openai('gpt-4o'),
    messages,
    system: '你是一个专业的前端开发助手。',
    maxTokens: 2000
  })
  return result.toDataStreamResponse()
}

Performance optimization should be tailored to specific scenarios; not all cases require over-optimization.

Real-World Applications ​

We can improve it in the following ways:

javascript
'use client'
import { useChat } from 'ai/react'

export function AIChat() {
  const { messages, input, handleInputChange, handleSubmit, isLoading } = useChat({
    api: '/api/chat'
  })
  return (
    <div className="chat-container">
      {messages.map(m => (
        <div key={m.id} className={`message ${m.role}`}>
          <p>{m.content}</p>
        </div>
      ))}
      <form onSubmit={handleSubmit}>
        <input value={input} onChange={handleInputChange} />
        <button type="submit" disabled={isLoading}>发送</button>
      </form>
    </div>
  )
}

This approach has been running stably in production for over six months and has been practically validated.

Optimization Tips ​

Let's start with the basic implementation:

javascript
import { openai } from '@ai-sdk/openai'
import { streamText } from 'ai'

export async function POST(req) {
  const { messages } = await req.json()
  const result = await streamText({
    model: openai('gpt-4o'),
    messages,
    system: '你是一个专业的前端开发助手。',
    maxTokens: 2000
  })
  return result.toDataStreamResponse()
}

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

Pitfall Guide ​

Building on this foundation, we can further optimize:

javascript
'use client'
import { useChat } from 'ai/react'

export function AIChat() {
  const { messages, input, handleInputChange, handleSubmit, isLoading } = useChat({
    api: '/api/chat'
  })
  return (
    <div className="chat-container">
      {messages.map(m => (
        <div key={m.id} className={`message ${m.role}`}>
          <p>{m.content}</p>
        </div>
      ))}
      <form onSubmit={handleSubmit}>
        <input value={input} onChange={handleInputChange} />
        <button type="submit" disabled={isLoading}>发送</button>
      </form>
    </div>
  )
}

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

Summary ​

  • In team collaboration, conventions and documentation are more important than the technology itself
  • Stay updated with the community; technical solutions need continuous iteration
  • Don't adopt new technology just for the sake of it

MIT Licensed