microsoft / microsoft/TypeScript

noThirdPartyAny to flag anys that come from third-party type declarations

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Beschreibung

Suggestion

🔍 Search Terms

  • noImplicitAny @types

Related:

✅ Viability Checklist

My suggestion meets these guidelines:

  • This wouldn't be a breaking change in existing TypeScript/JavaScript code (it would have to an opt-in via a new flag)
  • This wouldn't change the runtime behavior of existing JavaScript code
  • This could be implemented without emitting different JS based on the types of the expressions
  • This isn't a runtime feature (e.g. library functionality, non-ECMAScript syntax with JavaScript output, new syntax sugar for JS, etc.)
  • This feature would agree with the rest of TypeScript's Design Goals.

⭐ Suggestion

I'd like to add a new flag, perhaps noThirdPartyAny, that makes it an error for a symbol to have an any type if that any comes from third-party code, e.g. from @types or from lib/dom.d.ts. (Just like with noImplicitAny, it would be fine if you wanted to explicitly give that symbol an any.)

📃 Motivating Example

TypeScript with noImplicitAny requires you to provide type annotations on all symbols that would otherwise implicitly have an any type. You'd think that this would only leave you with explicit anys, i.e. a symbol can only have an any type if you write the word any somewhere.

But that's not quite true because type declarations files (@types) can include any types as well.

Maybe the most common example is JSON.parse (also Response.prototype.json()):

const data = JSON.parse('{"a": 12}');
const b = data.b.toString();  // 💥

I'm using --strict and I never wrote any, but the type of b is still any and it leads to a runtime error that TS misses.

Here's a more intricate React example that tripped me up this week:

import React from 'react';

function MyComponent() {
  const [value, setValue] = React.useState('');
  return (<input onChange={e => setValue(e.currentTarget.value)} value={value} />);
}

This works correctly. The e parameter in the callback has a type of React.ChangeEvent<HTMLInputElement>, which is exactly right.

Now I decide to memoize the handler using React.useCallback, copy-pasting my callback:

import React from 'react';

function MyComponent() {
  const [value, setValue] = React.useState('');
  const handleChange = React.useCallback(e => setValue(e.currentTarget.value), []);
  return (<input onChange={handleChange} value={value} />);
}

Again, this works (at runtime) and it passes the type checker. But it's actually a looming disaster because e now has an any type! This comes from the React typings:

https://github.com/DefinitelyTyped/DefinitelyTyped/blob/07e9b3d9d301b7d17390c16816c02cdf92706ecb/types/react/index.d.ts#L1099-L1107

This use of any is a known issue (https://github.com/DefinitelyTyped/DefinitelyTyped/issues/52873) that the maintainers prefer not to fix until the next major version of React comes out. That's fine, but it makes useCallback very any-prone.

I've found that anys that come from @types and the built-in libraries are quite common and always surprising. They let anys creep into your code even when you think you're being strict. I'd like some way to have TypeScript help me fight back against these implicit anys.

💻 Use Cases

See above. noImplicitAny solves this for anys that are truly implicit. I'm proposing a new flag that would extend this to any symbols that do appear explicitly in type declarations, just not ones that I wrote.

You can use declaration merging to eliminate these on a case-by-case basis (see blog post) but this feels like playing whack-a-mole. The new --useUnknownInCatchVariables flag is another tool in this game of any whack-a-mole.

The best way to spot these any leaks is with ts-coverage (https://github.com/plantain-00/type-coverage), which reports every symbol in your code that has an any type, wherever it came from. The downside is that this exists outside the TypeScript toolchain, so I tend to only run it every once in a while, whereas type errors always get fixed immediately.

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Rechercherichtung

Beginnen Sie mit der Prüfung des vorgeschlagenen Verhaltens von noThirdPartyAny, der verknüpften verwandten Issues und des referenzierten React-Deklarationsbereichs in types/react/index.d.ts. Legen Sie fest, wie anys aus Deklarationen von Drittanbietern und integrierte Deklarations-anys identifiziert werden sollen und welches explizite Opt-in-Verhalten erforderlich ist; abgeschlossen bedeutet, dass der Vorschlag ein akzeptiertes Design und eine entsprechende Compiler-Abdeckung hat.

Vom Indexierungsmodell aus dem Issue-Text verfasst.

Bewertung

Tech-Stack
typescript
Bereich
compilers, devtools
Issue-Typ
Feature
Schwierigkeit
5/5
Geschätzter Aufwand
Über eine Woche
Aktivitätsstatus
Veraltet
Klarheit
Muss geklärt werden
Anfängerfreundlichkeit
25/100

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