chore(lint): vendor anti-slop oxlint plugin and add batched cleanup pipeline
Vendor the anti-slop Oxlint plugin at tools/oxlint/anti-slop and register it in oxlint.config.ts, with Oxlint's own rule categories disabled so ESLint stays the general-purpose linter. Add scripts/anti-slop.mjs (bun run deslop) mirroring the React Doctor batch interface: next-batch, check-batch, active, release, top, file. Batch handoff directories now double as file claims shared across clones via ~/.openchamber/maintenance-claims, so concurrent maintenance batches from either pipeline never select the same file. Harden both scheduled maintenance flows: stop on a dirty worktree, stop on NO BATCH AVAILABLE, validate per package instead of workspace-wide, and pin react-doctor to 0.9.12. The anti-slop task command documents concrete good and bad fixes and forbids laundering types to satisfy a rule.
This commit is contained in:
@@ -0,0 +1,502 @@
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import type { ESTree } from "@oxlint/plugins";
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const BUILT_INS = new Set([
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"Record",
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"Readonly",
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"Partial",
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"Required",
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"Pick",
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"Omit",
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"PropertyKey",
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"NonNullable",
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]);
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const TRANSPARENT_WRAPPERS = new Set(["Readonly", "Partial", "Required", "NonNullable"]);
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|
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type TypeAliasEnvironment = ReadonlyMap<string, ESTree.TSType>;
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|
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type ResolvedType = {
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readonly type: ESTree.TSType;
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readonly substitutions: TypeAliasEnvironment;
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};
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|
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export type UnsafeDictionary = {
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readonly kind: "unsafe-dictionary";
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readonly unsafeValue: "any" | "empty-object" | "object" | "union" | "unknown";
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};
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export type WideningTargetKind =
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| "anonymous object"
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| "generic container"
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| "object"
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| "open dictionary"
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| "unknown";
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export type WideningTarget = {
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readonly kind: WideningTargetKind;
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};
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export type TypeEnvironment = {
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readonly aliases: ReadonlyMap<string, ESTree.TSTypeAliasDeclaration>;
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readonly interfaces: ReadonlyMap<string, readonly ESTree.TSInterfaceDeclaration[]>;
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readonly shadowedBuiltIns: ReadonlySet<string>;
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};
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function declaredStatement(statement: ESTree.Statement): ESTree.Node | null {
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return statement.type === "ExportNamedDeclaration" ||
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statement.type === "ExportDefaultDeclaration"
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? (statement.declaration ?? null)
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: statement;
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}
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export function createTypeEnvironment(program: ESTree.Program): TypeEnvironment {
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const aliases = new Map<string, ESTree.TSTypeAliasDeclaration>();
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const interfaces = new Map<string, ESTree.TSInterfaceDeclaration[]>();
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const shadowedBuiltIns = new Set<string>();
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|
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for (const statement of program.body) {
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const declaration = declaredStatement(statement);
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if (declaration?.type === "ImportDeclaration") {
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for (const specifier of declaration.specifiers) {
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if (BUILT_INS.has(specifier.local.name)) shadowedBuiltIns.add(specifier.local.name);
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}
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continue;
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}
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if (declaration?.type === "TSTypeAliasDeclaration") {
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const existing = aliases.get(declaration.id.name);
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if (existing === undefined) aliases.set(declaration.id.name, declaration);
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else shadowedBuiltIns.add(declaration.id.name);
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if (BUILT_INS.has(declaration.id.name)) shadowedBuiltIns.add(declaration.id.name);
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continue;
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}
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if (declaration?.type === "TSInterfaceDeclaration") {
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const declarations = interfaces.get(declaration.id.name) ?? [];
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declarations.push(declaration);
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interfaces.set(declaration.id.name, declarations);
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if (BUILT_INS.has(declaration.id.name)) shadowedBuiltIns.add(declaration.id.name);
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continue;
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}
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if (declaration?.type === "TSEnumDeclaration") {
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if (BUILT_INS.has(declaration.id.name)) shadowedBuiltIns.add(declaration.id.name);
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continue;
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}
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if (
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(declaration?.type === "ClassDeclaration" ||
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declaration?.type === "FunctionDeclaration") &&
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declaration.id !== null
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) {
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if (BUILT_INS.has(declaration.id.name)) shadowedBuiltIns.add(declaration.id.name);
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}
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}
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return { aliases, interfaces, shadowedBuiltIns };
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}
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function typeReferenceName(type: ESTree.TSTypeReference): string | null {
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return type.typeName.type === "Identifier" ? type.typeName.name : null;
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}
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|
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function isBuiltIn(name: string, environment: TypeEnvironment): boolean {
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return BUILT_INS.has(name) && !environment.shadowedBuiltIns.has(name);
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}
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|
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function isUnappliedReferenceTo(type: ESTree.TSType, name: string): boolean {
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const unwrapped = unwrapTransparentType(type);
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return (
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unwrapped.type === "TSTypeReference" &&
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typeReferenceName(unwrapped) === name &&
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(unwrapped.typeArguments === null ||
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unwrapped.typeArguments === undefined ||
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unwrapped.typeArguments.params.length === 0)
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);
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}
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function unwrapTransparentType(type: ESTree.TSType): ESTree.TSType {
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let current = type;
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while (
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current.type === "TSParenthesizedType" ||
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(current.type === "TSTypeOperator" && current.operator === "readonly")
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) {
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current = current.typeAnnotation;
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}
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return current;
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}
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function isNeverType(type: ESTree.TSType): boolean {
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return unwrapTransparentType(type).type === "TSNeverKeyword";
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}
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function isEffectivelyEmptyMember(member: ESTree.TSSignature): boolean {
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return (
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member.type === "TSPropertySignature" &&
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member.optional === true &&
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member.typeAnnotation !== null &&
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member.typeAnnotation !== undefined &&
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isNeverType(member.typeAnnotation.typeAnnotation)
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);
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}
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function isEffectivelyEmptyTypeLiteral(type: ESTree.TSTypeLiteral): boolean {
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return type.members.length === 0 || type.members.every(isEffectivelyEmptyMember);
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}
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function isEffectivelyEmptyInterface(
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declarations: readonly ESTree.TSInterfaceDeclaration[],
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): boolean {
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if (declarations.length !== 1) return false;
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const [type] = declarations;
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return (
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type !== undefined &&
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type.extends.length === 0 &&
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(type.body.body.length === 0 || type.body.body.every(isEffectivelyEmptyMember))
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);
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}
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function resolvedSubstitutionArgument(
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type: ESTree.TSType,
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base: TypeAliasEnvironment,
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resolving: ReadonlySet<string> = new Set(),
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): ESTree.TSType {
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const unwrapped = unwrapTransparentType(type);
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if (unwrapped.type !== "TSTypeReference") return type;
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const name = typeReferenceName(unwrapped);
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if (name === null || resolving.has(name)) return type;
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const substitution = base.get(name);
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if (substitution === undefined) return type;
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const nextResolving = new Set(resolving);
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nextResolving.add(name);
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return resolvedSubstitutionArgument(substitution, base, nextResolving);
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}
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function aliasSubstitution(
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alias: ESTree.TSTypeAliasDeclaration,
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type: ESTree.TSTypeReference,
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base: TypeAliasEnvironment,
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): TypeAliasEnvironment | null {
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const parameters = alias.typeParameters?.params ?? [];
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const arguments_ = type.typeArguments?.params ?? [];
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const next = new Map(base);
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for (const [index, parameter] of parameters.entries()) {
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const argument = arguments_[index] ?? parameter.default;
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if (argument === null || argument === undefined) return null;
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next.set(parameter.name.name, resolvedSubstitutionArgument(argument, next));
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}
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return next;
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}
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function unsafeDirectValue(
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type: ESTree.TSType,
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environment: TypeEnvironment,
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substitutions: TypeAliasEnvironment,
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resolvingAliases: ReadonlySet<string>,
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): UnsafeDictionary["unsafeValue"] | null {
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const unwrapped = unwrapTransparentType(type);
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if (unwrapped.type === "TSUnknownKeyword") return "unknown";
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if (unwrapped.type === "TSAnyKeyword") return "any";
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if (unwrapped.type === "TSObjectKeyword") return "object";
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if (unwrapped.type === "TSTypeLiteral" && isEffectivelyEmptyTypeLiteral(unwrapped))
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return "empty-object";
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if (unwrapped.type === "TSUnionType") {
|
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return unwrapped.types.some(
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(member) => unsafeDirectValue(member, environment, substitutions, resolvingAliases) !== null,
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)
|
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? "union"
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: null;
|
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}
|
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if (unwrapped.type === "TSIntersectionType") {
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const unsafeMembers = unwrapped.types.map((member) =>
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unsafeDirectValue(member, environment, substitutions, resolvingAliases),
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);
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if (unsafeMembers.includes("any")) return "any";
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return unsafeMembers.length > 0 && unsafeMembers.every((member) => member !== null)
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? unsafeMembers[0]
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: null;
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}
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if (unwrapped.type !== "TSTypeReference") return null;
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const name = typeReferenceName(unwrapped);
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if (name === null) return null;
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if (TRANSPARENT_WRAPPERS.has(name) && isBuiltIn(name, environment)) {
|
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const wrapped = unwrapped.typeArguments?.params[0];
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return wrapped === undefined
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? null
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: unsafeDirectValue(wrapped, environment, substitutions, resolvingAliases);
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}
|
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const substitution = substitutions.get(name);
|
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if (substitution !== undefined) {
|
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return isUnappliedReferenceTo(substitution, name)
|
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? null
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: unsafeDirectValue(substitution, environment, substitutions, resolvingAliases);
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}
|
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const interfaceDeclarations = environment.interfaces.get(name);
|
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if (interfaceDeclarations !== undefined) {
|
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return isEffectivelyEmptyInterface(interfaceDeclarations) ? "empty-object" : null;
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}
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const alias = environment.aliases.get(name);
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if (alias === undefined || resolvingAliases.has(name)) return null;
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const nextSubstitutions = aliasSubstitution(alias, unwrapped, substitutions);
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if (nextSubstitutions === null) return null;
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const nextResolving = new Set(resolvingAliases);
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nextResolving.add(name);
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return unsafeDirectValue(alias.typeAnnotation, environment, nextSubstitutions, nextResolving);
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}
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|
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function dictionaryValueTypes(
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type: ESTree.TSType,
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environment: TypeEnvironment,
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substitutions: TypeAliasEnvironment,
|
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resolvingAliases: ReadonlySet<string>,
|
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): readonly ResolvedType[] {
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const unwrapped = unwrapTransparentType(type);
|
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|
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if (unwrapped.type === "TSTypeLiteral") {
|
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return unwrapped.members.flatMap((member): readonly ResolvedType[] =>
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member.type === "TSIndexSignature" && member.typeAnnotation !== null
|
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? [{ type: member.typeAnnotation.typeAnnotation, substitutions }]
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: [],
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);
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}
|
||||
|
||||
if (unwrapped.type === "TSMappedType") {
|
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return unwrapped.typeAnnotation === null
|
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? []
|
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: [{ type: unwrapped.typeAnnotation, substitutions }];
|
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}
|
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|
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if (unwrapped.type !== "TSTypeReference") return [];
|
||||
const name = typeReferenceName(unwrapped);
|
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if (name === null) return [];
|
||||
|
||||
const substitution = substitutions.get(name);
|
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if (substitution !== undefined) {
|
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return isUnappliedReferenceTo(substitution, name)
|
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? []
|
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: dictionaryValueTypes(substitution, environment, substitutions, resolvingAliases);
|
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}
|
||||
|
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if (TRANSPARENT_WRAPPERS.has(name) && isBuiltIn(name, environment)) {
|
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const wrapped = unwrapped.typeArguments?.params[0];
|
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return wrapped === undefined
|
||||
? []
|
||||
: dictionaryValueTypes(wrapped, environment, substitutions, resolvingAliases);
|
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}
|
||||
|
||||
if (name === "Record" && isBuiltIn(name, environment)) {
|
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const value = unwrapped.typeArguments?.params[1] ?? null;
|
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return value === null ? [] : [{ type: value, substitutions }];
|
||||
}
|
||||
|
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if ((name === "Pick" || name === "Omit") && isBuiltIn(name, environment)) {
|
||||
const source = unwrapped.typeArguments?.params[0];
|
||||
return source === undefined
|
||||
? []
|
||||
: dictionaryValueTypes(source, environment, substitutions, resolvingAliases);
|
||||
}
|
||||
|
||||
const alias = environment.aliases.get(name);
|
||||
if (alias === undefined || resolvingAliases.has(name)) return [];
|
||||
const nextSubstitutions = aliasSubstitution(alias, unwrapped, substitutions);
|
||||
if (nextSubstitutions === null) return [];
|
||||
const nextResolving = new Set(resolvingAliases);
|
||||
nextResolving.add(name);
|
||||
return dictionaryValueTypes(alias.typeAnnotation, environment, nextSubstitutions, nextResolving);
|
||||
}
|
||||
|
||||
export function classifyUnsafeDictionaryValue(
|
||||
valueType: ESTree.TSType,
|
||||
environment: TypeEnvironment,
|
||||
): UnsafeDictionary | null {
|
||||
const unsafeValue = unsafeDirectValue(valueType, environment, new Map(), new Set());
|
||||
return unsafeValue === null ? null : { kind: "unsafe-dictionary", unsafeValue };
|
||||
}
|
||||
|
||||
export function classifyUnsafeDictionary(
|
||||
type: ESTree.TSType,
|
||||
environment: TypeEnvironment,
|
||||
): UnsafeDictionary | null {
|
||||
for (const valueType of dictionaryValueTypes(type, environment, new Map(), new Set())) {
|
||||
const unsafeValue = unsafeDirectValue(
|
||||
valueType.type,
|
||||
environment,
|
||||
valueType.substitutions,
|
||||
new Set(),
|
||||
);
|
||||
if (unsafeValue !== null) return { kind: "unsafe-dictionary", unsafeValue };
|
||||
}
|
||||
return null;
|
||||
}
|
||||
|
||||
function resolvesToDictionary(
|
||||
type: ESTree.TSType,
|
||||
environment: TypeEnvironment,
|
||||
substitutions: TypeAliasEnvironment,
|
||||
resolvingAliases: ReadonlySet<string>,
|
||||
): boolean {
|
||||
return dictionaryValueTypes(type, environment, substitutions, resolvingAliases).length > 0;
|
||||
}
|
||||
|
||||
export function classifyWideningTarget(
|
||||
type: ESTree.TSType,
|
||||
environment: TypeEnvironment,
|
||||
): WideningTarget | null {
|
||||
const unwrapped = unwrapTransparentType(type);
|
||||
if (unwrapped.type === "TSUnknownKeyword") return { kind: "unknown" };
|
||||
if (unwrapped.type === "TSObjectKeyword") return { kind: "object" };
|
||||
if (unwrapped.type === "TSTypeLiteral") {
|
||||
return unwrapped.members.some((member) => member.type === "TSIndexSignature")
|
||||
? { kind: "open dictionary" }
|
||||
: unwrapped.members.length > 0
|
||||
? { kind: "anonymous object" }
|
||||
: null;
|
||||
}
|
||||
if (unwrapped.type === "TSMappedType") return { kind: "open dictionary" };
|
||||
if (unwrapped.type !== "TSTypeReference") return null;
|
||||
const name = typeReferenceName(unwrapped);
|
||||
if (name === null) return null;
|
||||
if (TRANSPARENT_WRAPPERS.has(name) && isBuiltIn(name, environment)) {
|
||||
const wrapped = unwrapped.typeArguments?.params[0];
|
||||
return wrapped === undefined ? null : classifyWideningTarget(wrapped, environment);
|
||||
}
|
||||
if (name === "Record" && isBuiltIn(name, environment)) return { kind: "open dictionary" };
|
||||
const alias = environment.aliases.get(name);
|
||||
if (alias === undefined) return null;
|
||||
if ((alias.typeParameters?.params.length ?? 0) > 0) {
|
||||
const substitutions = aliasSubstitution(alias, unwrapped, new Map());
|
||||
return substitutions !== null &&
|
||||
resolvesToDictionary(alias.typeAnnotation, environment, substitutions, new Set([name]))
|
||||
? { kind: "generic container" }
|
||||
: null;
|
||||
}
|
||||
const substitutions = aliasSubstitution(alias, unwrapped, new Map());
|
||||
if (substitutions === null) return null;
|
||||
const resolved = classifyAliasBroadTarget(
|
||||
alias.typeAnnotation,
|
||||
environment,
|
||||
substitutions,
|
||||
new Set([name]),
|
||||
);
|
||||
return resolved;
|
||||
}
|
||||
|
||||
function isBroadMappedKey(
|
||||
type: ESTree.TSType,
|
||||
environment: TypeEnvironment,
|
||||
substitutions: TypeAliasEnvironment,
|
||||
): boolean {
|
||||
const unwrapped = unwrapTransparentType(type);
|
||||
if (
|
||||
unwrapped.type === "TSStringKeyword" ||
|
||||
unwrapped.type === "TSNumberKeyword" ||
|
||||
unwrapped.type === "TSSymbolKeyword"
|
||||
) {
|
||||
return true;
|
||||
}
|
||||
if (unwrapped.type === "TSUnionType") {
|
||||
return unwrapped.types.every((member) =>
|
||||
isBroadMappedKey(member, environment, substitutions),
|
||||
);
|
||||
}
|
||||
if (unwrapped.type !== "TSTypeReference") return false;
|
||||
const name = typeReferenceName(unwrapped);
|
||||
if (name === null) return false;
|
||||
const substitution = substitutions.get(name);
|
||||
if (substitution !== undefined && !isUnappliedReferenceTo(substitution, name)) {
|
||||
return isBroadMappedKey(substitution, environment, substitutions);
|
||||
}
|
||||
return name === "PropertyKey" && isBuiltIn(name, environment);
|
||||
}
|
||||
|
||||
function classifyAliasBroadTarget(
|
||||
type: ESTree.TSType,
|
||||
environment: TypeEnvironment,
|
||||
substitutions: TypeAliasEnvironment,
|
||||
resolvingAliases: ReadonlySet<string>,
|
||||
): WideningTarget | null {
|
||||
const unwrapped = unwrapTransparentType(type);
|
||||
if (unwrapped.type === "TSUnknownKeyword") return { kind: "unknown" };
|
||||
if (unwrapped.type === "TSObjectKeyword") return { kind: "object" };
|
||||
if (unwrapped.type === "TSTypeLiteral") {
|
||||
return unwrapped.members.some((member) => member.type === "TSIndexSignature")
|
||||
? { kind: "open dictionary" }
|
||||
: null;
|
||||
}
|
||||
if (unwrapped.type === "TSMappedType") {
|
||||
return isBroadMappedKey(unwrapped.constraint, environment, substitutions)
|
||||
? { kind: "open dictionary" }
|
||||
: null;
|
||||
}
|
||||
if (unwrapped.type !== "TSTypeReference") return null;
|
||||
const name = typeReferenceName(unwrapped);
|
||||
if (name === null) return null;
|
||||
const substitution = substitutions.get(name);
|
||||
if (substitution !== undefined) {
|
||||
return isUnappliedReferenceTo(substitution, name)
|
||||
? null
|
||||
: classifyAliasBroadTarget(
|
||||
substitution,
|
||||
environment,
|
||||
substitutions,
|
||||
resolvingAliases,
|
||||
);
|
||||
}
|
||||
if (TRANSPARENT_WRAPPERS.has(name) && isBuiltIn(name, environment)) {
|
||||
const wrapped = unwrapped.typeArguments?.params[0];
|
||||
return wrapped === undefined
|
||||
? null
|
||||
: classifyAliasBroadTarget(wrapped, environment, substitutions, resolvingAliases);
|
||||
}
|
||||
if (name === "Record" && isBuiltIn(name, environment)) {
|
||||
return { kind: "open dictionary" };
|
||||
}
|
||||
const alias = environment.aliases.get(name);
|
||||
if (alias === undefined || resolvingAliases.has(name)) return null;
|
||||
const nextSubstitutions = aliasSubstitution(alias, unwrapped, substitutions);
|
||||
if (nextSubstitutions === null) return null;
|
||||
const nextResolving = new Set(resolvingAliases);
|
||||
nextResolving.add(name);
|
||||
return classifyAliasBroadTarget(
|
||||
alias.typeAnnotation,
|
||||
environment,
|
||||
nextSubstitutions,
|
||||
nextResolving,
|
||||
);
|
||||
}
|
||||
|
||||
export function isPopulatedObjectExpression(expression: ESTree.Expression): boolean {
|
||||
let current = expression;
|
||||
while (
|
||||
current.type === "ParenthesizedExpression" ||
|
||||
current.type === "TSAsExpression" ||
|
||||
current.type === "TSTypeAssertion" ||
|
||||
current.type === "TSNonNullExpression"
|
||||
) {
|
||||
current = current.expression;
|
||||
}
|
||||
return current.type === "ObjectExpression" && current.properties.length > 0;
|
||||
}
|
||||
|
||||
export function isKnownEvidenceExpression(expression: ESTree.Expression): boolean {
|
||||
let current = expression;
|
||||
while (
|
||||
current.type === "ParenthesizedExpression" ||
|
||||
current.type === "TSAsExpression" ||
|
||||
current.type === "TSTypeAssertion" ||
|
||||
current.type === "TSNonNullExpression" ||
|
||||
current.type === "TSSatisfiesExpression"
|
||||
) {
|
||||
current = current.expression;
|
||||
}
|
||||
if (current.type === "ObjectExpression") return true;
|
||||
return (
|
||||
current.type === "ArrayExpression" ||
|
||||
current.type === "ArrowFunctionExpression" ||
|
||||
current.type === "ClassExpression" ||
|
||||
current.type === "FunctionExpression" ||
|
||||
current.type === "NewExpression" ||
|
||||
current.type === "Literal" ||
|
||||
current.type === "TemplateLiteral" ||
|
||||
current.type === "UnaryExpression"
|
||||
);
|
||||
}
|
||||
@@ -0,0 +1,61 @@
|
||||
import type { ESTree } from "@oxlint/plugins";
|
||||
|
||||
type VisitorKeys = Readonly<Record<string, readonly string[]>>;
|
||||
|
||||
function isNode(value: unknown): value is ESTree.Node {
|
||||
return (
|
||||
typeof value === "object" &&
|
||||
value !== null &&
|
||||
"type" in value &&
|
||||
typeof value.type === "string"
|
||||
);
|
||||
}
|
||||
|
||||
function collectInferTypeParameterNames(
|
||||
node: ESTree.Node,
|
||||
visitorKeys: VisitorKeys,
|
||||
names: Set<string>,
|
||||
): void {
|
||||
if (node.type === "TSInferType") names.add(node.typeParameter.name.name);
|
||||
const record = node as unknown as Readonly<Record<string, unknown>>;
|
||||
for (const key of visitorKeys[node.type] ?? []) {
|
||||
const value = record[key];
|
||||
if (isNode(value)) {
|
||||
collectInferTypeParameterNames(value, visitorKeys, names);
|
||||
continue;
|
||||
}
|
||||
if (!Array.isArray(value)) continue;
|
||||
for (const child of value) {
|
||||
if (isNode(child)) collectInferTypeParameterNames(child, visitorKeys, names);
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
/** Collect type binders that are in scope at a node and can shadow module aliases. */
|
||||
export function lexicalTypeParameterNames(
|
||||
node: ESTree.Node,
|
||||
visitorKeys: VisitorKeys,
|
||||
): ReadonlySet<string> {
|
||||
const names = new Set<string>();
|
||||
let descendant: ESTree.Node = node;
|
||||
let current: ESTree.Node | null = node;
|
||||
while (current !== null && current.type !== "Program") {
|
||||
if ("typeParameters" in current) {
|
||||
for (const parameter of current.typeParameters?.params ?? []) {
|
||||
names.add(parameter.name.name);
|
||||
}
|
||||
}
|
||||
if (
|
||||
current.type === "TSMappedType" &&
|
||||
(descendant === current.nameType || descendant === current.typeAnnotation)
|
||||
) {
|
||||
names.add(current.key.name);
|
||||
}
|
||||
if (current.type === "TSConditionalType" && descendant === current.trueType) {
|
||||
collectInferTypeParameterNames(current.extendsType, visitorKeys, names);
|
||||
}
|
||||
descendant = current;
|
||||
current = current.parent;
|
||||
}
|
||||
return names;
|
||||
}
|
||||
@@ -0,0 +1,35 @@
|
||||
import type { ESTree, Scope, SourceCode, Variable } from "@oxlint/plugins";
|
||||
|
||||
function resolveVariable(
|
||||
sourceCode: SourceCode,
|
||||
identifier: ESTree.IdentifierReference,
|
||||
): Variable | null {
|
||||
let scope: Scope | null = sourceCode.getScope(identifier);
|
||||
while (scope !== null) {
|
||||
const variable = scope.set.get(identifier.name);
|
||||
if (variable !== undefined) return variable;
|
||||
scope = scope.upper;
|
||||
}
|
||||
return null;
|
||||
}
|
||||
|
||||
function isGlobalReflect(sourceCode: SourceCode, expression: ESTree.Expression): boolean {
|
||||
if (expression.type !== "Identifier" || expression.name !== "Reflect") return false;
|
||||
if (sourceCode.isGlobalReference(expression)) return true;
|
||||
const variable = resolveVariable(sourceCode, expression);
|
||||
return variable === null || variable.defs.length === 0;
|
||||
}
|
||||
|
||||
/** Reports whether a call target names one method on the global Reflect object. */
|
||||
export function isGlobalReflectMethodCall(
|
||||
sourceCode: SourceCode,
|
||||
callee: ESTree.Expression,
|
||||
methodName: string,
|
||||
): boolean {
|
||||
if (!("property" in callee) || !("object" in callee) || !("computed" in callee)) return false;
|
||||
if (!isGlobalReflect(sourceCode, callee.object)) return false;
|
||||
const property = callee.property;
|
||||
return callee.computed
|
||||
? property.type === "Literal" && property.value === methodName
|
||||
: property.type === "Identifier" && property.name === methodName;
|
||||
}
|
||||
Reference in New Issue
Block a user