microsoft / microsoft/TypeScript
Proposal: Make base class expressions able to access class type parameters
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Beschreibung
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Base class expressions cannot reference class type parameters
Suggestion
Right now it is possible in Ts to generate base classes dynamically (via a function):
function prop<T>(): T {
// implementation detail doesn't matter
return null as any;
}
function createDynamicClass<T>(_props: T): { new(): T} {
// implementation detail doesn't matter
return null as any;
}
// without generics on the main class all is fine
class C2 extends createDynamicClass({x: prop<number>()}) {
setX(x: number) {
this.x = x
}
}
const c2 = new C2()
c2.x = 20
c2.setX(30)
And it is also possible to reuse a generic when the base class is a "pure" class with a generic type:
class Base<T> { x: number }
class Child<T> extends Base<T> {}
However, currently it is impossible for a function that generates a dynamic class to re-use the type from the child class:
// error: Base class expressions cannot reference class type parameters
class C3<T> extends createDynamicClass({x: prop<T>()}) {
setX(x: T) {
this.x = x
}
}
const c3 = new C3<number>()
c3.x = 20
c3.setX(30)
There's a (somehow ugly) workaround, which is encapsulating the generation of the child class in a function and use its result:
function generateC4<T>() {
return class extends createDynamicClass({ x: prop<T>() }) {
setX(x: T) {
this.x = x
}
}
}
const C4 = generateC4<number>()
const c4 = new C4()
c4.x = 20
c4.setX(30)
But it is quite ugly, and results in a new class being generated for each generic when it is not actually needed (just for the typings).
The proposal is basically to lift this constraint and allow it to be used (like it can be easily used for pure classes).
Use Cases
Right now in mobx-keystone it uses such a pattern (a function that generates a dynamic base class) to generate models:
class Point extends Model({
x: prop<number>(),
y: prop<number>(),
}) {
@modelAction
setXY(x: number y: number) {
this.x = x
this.y = y
}
}
const numberPoint = new Point({x: 10, y: 20})
but in order to support generics, rather than just doing this:
class Point<T> extends Model({
x: prop<T>(),
y: prop<T>(),
}) {
@modelAction
setXY(x: T, y: T) {
this.x = x
this.y = y
}
}
const numberPoint = new Point<number>({x: 10, y: 20})
users have to resort to a factory pattern like this:
function createPointClass<T>() {
class Point extends Model({
x: prop<T>(),
y: prop<T>(),
}) {
@modelAction
setXY(x: T, y: T) {
this.x = x
this.y = y
}
}
return Point
}
const NumberPoint = createPointClass<number>()
const numberPoint = new NumberPoint({x: 10, y: 20})
which is far from ideal (and this is just to get typings right).
Examples
See above
Checklist
My suggestion meets these guidelines:
- This wouldn't be a breaking change in existing TypeScript/JavaScript code
It wouldn't since it is lifting a constraint that currently is just not allowed, so no current code can be using it.
- This wouldn't change the runtime behavior of existing JavaScript code
The runtime behaviour would be exactly the same, it just addresses a typings problem.
- 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, etc.)
- This feature would agree with the rest of TypeScript's Design Goals.
Beitragsleitfaden
Erste Schritte
- Lies das ganze Issue und danach den Beitragsleitfaden des Projekts.
- Schreib ins Issue, dass du es übernimmst — das erspart doppelte Arbeit.
- Forke das Repository und arbeite in einem Branch.
- Öffne einen Pull Request, der die Issue-Nummer nennt.
Rechercherichtung
Beginne damit, die C3- und Point-Beispiele zu reproduzieren und sie mit dem funktionierenden C4-Fabrikmuster zu vergleichen. Verfolge, wie TypeScript Typparameter von Klassen in Ausdrücken für Basisklassen behandelt, und definiere anschließend Tests, die zeigen, dass die vorgeschlagenen Formen die Typprüfung bestehen und dabei das bestehende Laufzeitverhalten erhalten bleibt.
Vom Indexierungsmodell aus dem Issue-Text verfasst.
Bewertung
- Tech-Stack
- typescript
- Bereich
- compilers
- Issue-Typ
- Feature
- Schwierigkeit
- 5/5
- Geschätzter Aufwand
- Über eine Woche
- Aktivitätsstatus
- Veraltet
- Klarheit
- Größtenteils klar
- Anfängerfreundlichkeit
- 30/100