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50
README.md
50
README.md
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@ -8,3 +8,53 @@ To build and run the prototype, run:
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pnpm install
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pnpm build-and-run
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```
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## experiment
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See: the section under `/src/experiment` and `/src/plugins`.
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### The idea
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Create a TypeScript plugin which can replace structures like:
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infer(factoryFunction)
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where `factoryFunction` is a mathjs factory function in TypeScript, with something like:
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infer({ signature: factoryFunction })
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where `signature` is a string containing the type of the factory function and its dependencies.
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Relevant methods of the TypeScript compiler are:
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```ts
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const program = ts.createProgram(fileNames, options)
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const typeChecker = program.getTypeChecker()
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// relevant methods:
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//
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// typeChecker.getSymbolAtLocation
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// typeChecker.getTypeOfSymbolAtLocation
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// typeChecker.getResolvedSignature
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// typeChecker.getSignaturesOfType
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```
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### Status
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None of the experiments (`infer1` and `infer2`) are outputting something useful yet.
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### How to run
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pnpm experiment:infer1
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pnpm experiment:infer1-direct
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pnpm experiment:infer2
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### Read more
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- https://github.com/microsoft/TypeScript/wiki/Writing-a-Language-Service-Plugin
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- https://github.com/Microsoft/TypeScript/wiki/Using-the-Compiler-API
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- https://github.com/Microsoft/TypeScript/wiki/Using-the-Compiler-API#using-the-type-checker
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- https://github.com/Microsoft/TypeScript/wiki/Using-the-Language-Service-API
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- https://stackoverflow.com/questions/63944135/typescript-compiler-api-how-to-get-type-with-resolved-type-arguments
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- https://stackoverflow.com/questions/48886508/typechecker-api-how-do-i-find-inferred-type-arguments-to-a-function
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@ -5,6 +5,9 @@
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main: 'index.ts',
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scripts: {
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'build-and-run': 'ttsc -b && node build',
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'experiment:infer1': 'ttsc -b && node build/plugins/infer.js ./src/generic/arithmetic.ts',
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'experiment:infer1-direct': 'ttsc -b && node build/plugins/infer.js ./src/experiment/arithmeticInfer1.ts',
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'experiment:infer2': 'ttsc -b && node build/plugins/infer2.js ./src/experiment/arithmeticInfer2.ts',
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test: 'echo "Error: no test specified" && exit 1',
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},
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keywords: [
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8
src/experiment/arithmeticInfer1.ts
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8
src/experiment/arithmeticInfer1.ts
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@ -0,0 +1,8 @@
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import {infer} from '../generic/infer'
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export const square = infer(<T>(dep: {
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multiply: (a: number, b: number) => number,
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unaryMinus: (x: number) => number, // just for the experiment
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}): (a: number) => number =>
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z => dep.multiply(z, z)
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)
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15
src/experiment/arithmeticInfer2.ts
Normal file
15
src/experiment/arithmeticInfer2.ts
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@ -0,0 +1,15 @@
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import { infer } from '../generic/infer'
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import { Dependencies, Signature } from '../interfaces/type'
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export type multiplyDep<T> = Dependencies<'multiply', T>
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export const square1 =
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<T>(dep: Dependencies<'multiply', T>): Signature<'square', T> =>
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z => dep.multiply(z, z)
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export const square2 = infer(<T>(dep: {
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multiply: (a: number, b: number) => number,
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unaryMinus: (x: number) => number, // just for the experiment
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}): (a: number) => number =>
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z => dep.multiply(z, z)
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)
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4
src/generic/infer.ts
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4
src/generic/infer.ts
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@ -0,0 +1,4 @@
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export function infer<T>(arg: T) : T {
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console.error('infer should be replace with runtime type information by a magic TypeScript plugin')
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return arg
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}
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73
src/plugins/infer1.ts
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73
src/plugins/infer1.ts
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@ -0,0 +1,73 @@
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import { readFileSync } from "fs";
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import * as ts from "typescript";
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import { inspect } from 'util'
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export function infer(sourceFile: ts.SourceFile) {
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recurse(sourceFile);
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function getType(kind: number) {
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switch(kind) {
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case ts.SyntaxKind.NumberKeyword: return 'number'
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case ts.SyntaxKind.StringKeyword: return 'string'
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case ts.SyntaxKind.BooleanKeyword: return 'boolean'
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default: return String(ts.SyntaxKind[kind]) // TODO: work out all types
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}
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}
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function recurse(node: ts.Node) {
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if (node.kind === ts.SyntaxKind.Identifier) {
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console.log('Identifier', node['escapedText'], ts.SyntaxKind[node.kind])
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}
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// recognize a structure like:
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//
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// export const square = infer(<T>(dep: {
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// multiply: (a: number, b: number) => number
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// }): (a: number) => number =>
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// z => dep.multiply(z, z)
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// )
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if (node?.['name']?.kind === ts.SyntaxKind.Identifier && node?.['name']['escapedText'] === 'dep') {
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console.log('dep', getType(node['type'].kind), node)
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node['type']?.members?.forEach(member => {
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console.log('member', {
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name: member.name.escapedText,
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parameters: member.type.parameters.map(parameter => {
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return parameter.name.escapedText + ': ' + getType(parameter.type.kind)
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}),
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returns: getType(member.type.type.kind)
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})
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})
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}
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// recognize a structure like:
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//
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// export const square =
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// <T>(dep: Dependencies<'multiply' | 'unaryMinus', T>): Signature<'square', T> =>
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// z => dep.multiply(z, z)
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if (node?.['name']?.kind === ts.SyntaxKind.Identifier && node?.['name']['escapedText'] === 'dep') {
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// TODO
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}
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ts.forEachChild(node, recurse);
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}
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}
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const fileNames = process.argv.slice(2);
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console.log('infer files', fileNames)
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fileNames.forEach(fileName => {
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// Parse a file
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const sourceFile = ts.createSourceFile(
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fileName,
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readFileSync(fileName).toString(),
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ts.ScriptTarget.ES2022,
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/*setParentNodes */ true
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);
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console.log('AST', fileName, inspect(sourceFile, { depth: null, colors: true }))
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console.log(sourceFile.text)
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console.log()
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infer(sourceFile);
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});
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74
src/plugins/infer2.ts
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74
src/plugins/infer2.ts
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import * as ts from "typescript"
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// based on: https://github.com/Microsoft/TypeScript/wiki/Using-the-Compiler-API#using-the-type-checker
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infer2(process.argv.slice(2), {
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target: ts.ScriptTarget.ES5,
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module: ts.ModuleKind.CommonJS
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})
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function infer2(
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fileNames: string[],
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options: ts.CompilerOptions
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): void {
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const program = ts.createProgram(fileNames, options)
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const typeChecker = program.getTypeChecker()
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for (const sourceFile of program.getSourceFiles()) {
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if (!sourceFile.isDeclarationFile) {
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ts.forEachChild(sourceFile, visit)
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}
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}
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return
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function visit(node: ts.Node) {
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// // Only consider exported nodes
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// if (!isNodeExported(node)) {
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// return;
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// }
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// console.log('Node', node.kind, node?.['name']?.escapedText)
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if (ts.isModuleDeclaration(node)) {
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// This is a namespace, visit its children
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console.log('check')
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ts.forEachChild(node, visit);
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} else if (ts.isTypeAliasDeclaration(node)) {
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console.log('isTypeAliasDeclaration', node.name.escapedText)
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let symbol = typeChecker.getSymbolAtLocation(node.name);
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if (symbol) {
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const symbolType = typeChecker.getTypeOfSymbolAtLocation(symbol, symbol.valueDeclaration)
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const symbolSignature = typeChecker.getSignaturesOfType(symbolType, ts.SignatureKind.Call)
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// checker.getResolvedSignature(symbol)
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console.log('symbol', symbol.getName(), symbolSignature)
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// getTypeOfSymbolAtLocation
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// getResolvedSignature
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}
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} else if (ts.isCallExpression(node)) {
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console.log('isCallExpression', node.expression)
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} else if (ts.isFunctionDeclaration(node)) {
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console.log('isFunctionDeclaration', node.name.escapedText, { typeParameter0: node.typeParameters[0] })
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if (node.name.escapedText === 'infer') {
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const param0 = node.typeParameters[0]
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if (ts.isPropertyDeclaration(param0)) {
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const symbol = typeChecker.getSymbolAtLocation(param0)
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// TODO: get resolving
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// console.log('getResolvedSignature', typeChecker.getResolvedSignature(node) )
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// const symbolType = typeChecker.getTypeOfSymbolAtLocation(symbol, symbol.valueDeclaration)
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// const symbolSignature = typeChecker.getSignaturesOfType(symbolType, ts.SignatureKind.Call)
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// console.log('symbol', symbol.getName(), symbolSignature)
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// console.log('getSignaturesOfType', typeChecker.getSignaturesOfType(param0)
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}
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}
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}
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}
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}
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