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54d7d01bfc | |||
b15035bfe6 |
@ -8,7 +8,7 @@ Roadmap:
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2. Use the builder pattern to get add working with its implmentations defined incrementally before producing the final overload. [Didn't quite work the way we wnated, but maybe we can do an alternative later.]
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3. Make a version of over.ts, call it util/overload.ts, that takes an array of implementations without redundant type annotation. [DONE]
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4. Improve that version of overload with rtti to select the implementation without the implementations having to throw errors. [DONE]
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5. Use the builder pattern to get a single object with both an add and a negate method, with both defined incrementally, working. [DONE]
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3. Use the builder pattern to get a single object with both an add and a negate method, with both defined incrementally, working.
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4. Incorporate a subtract method that works on numbers and bigint by separate definitions but with dependencies on add and negate.
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5. Incorporate a subtract method that works with one generic implementation that works for both number and bigint with dependencies on add and negate.
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5. Attempt to eliminate redundant specification of implementation signatures.
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@ -1,26 +0,0 @@
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import 'reflect-metadata'
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import {reflect} from 'typescript-rtti'
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import {merge, overloadValues} from '../util/overload.js'
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const numImps = {
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add: [(x: number, y: number) => x + y],
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negate: [(x: number) => -x]
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} as const
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const strImps = {
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add: [(x: string, y: string) => x + ', ' + y],
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negate: [(x: string) => 'NOT ' + x]
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} as const
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const merger = merge(numImps)
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const mathImps = merger.with(strImps).imps()
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const math = overloadValues(mathImps)
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console.log(math.add(1.5, 2.5))
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console.log(math.add('One and a half', 'Two and a half'))
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console.log(math.negate(3.5))
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console.log(math.negate('Three and a half'))
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//@ts-expect-error
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console.log(math.add(1.5, 'Two and a half'))
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@ -10,8 +10,7 @@ export default function overload<T extends readonly [...any[]]>(
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const impTypes = reflect(callSite).parameters[0].elements
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return <any>((...a: any[]) => {
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for (let i = 0; i < imps.length; ++i) {
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const paramTypes = imps[i].functionType.parameters
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|| impTypes[i].type.parameters
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const paramTypes = impTypes[i].type.parameters
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let match = true
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const haveArgs = a.length
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let onArg = 0
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@ -41,77 +40,3 @@ export default function overload<T extends readonly [...any[]]>(
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+ 'did not match any implementation')
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})
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}
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type AVO = Record<string, readonly [...any[]]>
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type MergeArrayValues<L extends AVO, R extends AVO> =
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Pick<L, Exclude<keyof L, keyof R>>
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& Pick<R, Exclude<keyof R, keyof L>>
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& { [P in (keyof L & keyof R)]: [...L[P], ...R[P]] }
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function mergeImps<T extends AVO, U extends AVO>(
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impT: T, impU: U): MergeArrayValues<T, U> {
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const dummy = Object.assign({}, impT, impU)
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const result = {} as AVO
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for (const key in dummy) {
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if (key in impT) {
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if (key in impU) {
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const k = key as Extract<keyof T & keyof U, string>
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result[k] = [...impT[k], ...impU[k]]
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} else {
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result[key] = impT[key]
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}
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} else {
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result[key] = impU[key]
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}
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}
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return result as MergeArrayValues<T, U>
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}
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class ImpMerger<T extends AVO> {
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implementations: T
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constructor(imps: T) {
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this.implementations = imps
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}
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with<U extends AVO>(
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moreImps: U, callSite?: CallSite): ImpMerger<MergeArrayValues<T,U>> {
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const Utype = reflect(callSite).parameters[0]
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// Annotate the implementations with their RTTI while we have it
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for (const [key, imps] of Object.entries(moreImps)) {
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if (!(imps[0].functionType)) {
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const tuple = Utype.members.find(m => m.name === key)
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for (let i = 0; i < imps.length; ++i) {
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imps[i].functionType = tuple.type.elements[i].type
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}
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}
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}
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return new ImpMerger(mergeImps<T,U>(this.implementations, moreImps))
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}
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imps(): T {
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return this.implementations
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}
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}
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function merge<T extends AVO>(impsObject: T, callSite?: CallSite) {
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const Ttype = reflect(callSite).parameters[0]
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// Annotate the implementations with their RTTI while we have it
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for (const [key, imps] of Object.entries(impsObject)) {
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if (!(imps[0].functionType)) {
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const tuple = Ttype.members.find(m => m.name === key)
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for (let i = 0; i < imps.length; ++i) {
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imps[i].functionType = tuple.type.elements[i].type
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}
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}
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}
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return new ImpMerger(impsObject)
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}
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type OverloadedValues<T extends AVO> = {
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[P in keyof T]: UnionToIntersection<T[P][number]>}
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function overloadValues<T extends AVO>(impObject: T) : OverloadedValues<T> {
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return Object.fromEntries(Object.entries(impObject).map(
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([k, v]) => [k, overload(v)])) as OverloadedValues<T>
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}
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export {merge, mergeImps, overloadValues}
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