This change modifies the build scripts to use --legacy-peer-deps flag when installing npm dependencies to resolve potential peer dependency conflicts during the build process. The change is applied to both bash (build.sh) and batch (build.bat) build scripts.
337 lines
12 KiB
JavaScript
337 lines
12 KiB
JavaScript
/**
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* @fileoverview Rule to flag on declaring variables already declared in the outer scope
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* @author Ilya Volodin
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*/
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"use strict";
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//------------------------------------------------------------------------------
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// Requirements
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//------------------------------------------------------------------------------
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const astUtils = require("./utils/ast-utils");
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//------------------------------------------------------------------------------
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// Helpers
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//------------------------------------------------------------------------------
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const FUNC_EXPR_NODE_TYPES = new Set(["ArrowFunctionExpression", "FunctionExpression"]);
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const CALL_EXPR_NODE_TYPE = new Set(["CallExpression"]);
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const FOR_IN_OF_TYPE = /^For(?:In|Of)Statement$/u;
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const SENTINEL_TYPE = /^(?:(?:Function|Class)(?:Declaration|Expression)|ArrowFunctionExpression|CatchClause|ImportDeclaration|ExportNamedDeclaration)$/u;
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//------------------------------------------------------------------------------
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// Rule Definition
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//------------------------------------------------------------------------------
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/** @type {import('../shared/types').Rule} */
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module.exports = {
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meta: {
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type: "suggestion",
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docs: {
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description: "Disallow variable declarations from shadowing variables declared in the outer scope",
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recommended: false,
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url: "https://eslint.org/docs/latest/rules/no-shadow"
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},
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schema: [
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{
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type: "object",
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properties: {
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builtinGlobals: { type: "boolean", default: false },
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hoist: { enum: ["all", "functions", "never"], default: "functions" },
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allow: {
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type: "array",
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items: {
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type: "string"
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}
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},
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ignoreOnInitialization: { type: "boolean", default: false }
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},
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additionalProperties: false
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}
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],
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messages: {
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noShadow: "'{{name}}' is already declared in the upper scope on line {{shadowedLine}} column {{shadowedColumn}}.",
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noShadowGlobal: "'{{name}}' is already a global variable."
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}
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},
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create(context) {
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const options = {
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builtinGlobals: context.options[0] && context.options[0].builtinGlobals,
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hoist: (context.options[0] && context.options[0].hoist) || "functions",
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allow: (context.options[0] && context.options[0].allow) || [],
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ignoreOnInitialization: context.options[0] && context.options[0].ignoreOnInitialization
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};
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const sourceCode = context.sourceCode;
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/**
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* Checks whether or not a given location is inside of the range of a given node.
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* @param {ASTNode} node An node to check.
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* @param {number} location A location to check.
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* @returns {boolean} `true` if the location is inside of the range of the node.
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*/
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function isInRange(node, location) {
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return node && node.range[0] <= location && location <= node.range[1];
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}
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/**
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* Searches from the current node through its ancestry to find a matching node.
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* @param {ASTNode} node a node to get.
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* @param {(node: ASTNode) => boolean} match a callback that checks whether or not the node verifies its condition or not.
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* @returns {ASTNode|null} the matching node.
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*/
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function findSelfOrAncestor(node, match) {
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let currentNode = node;
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while (currentNode && !match(currentNode)) {
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currentNode = currentNode.parent;
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}
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return currentNode;
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}
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/**
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* Finds function's outer scope.
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* @param {Scope} scope Function's own scope.
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* @returns {Scope} Function's outer scope.
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*/
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function getOuterScope(scope) {
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const upper = scope.upper;
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if (upper.type === "function-expression-name") {
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return upper.upper;
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}
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return upper;
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}
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/**
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* Checks if a variable and a shadowedVariable have the same init pattern ancestor.
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* @param {Object} variable a variable to check.
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* @param {Object} shadowedVariable a shadowedVariable to check.
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* @returns {boolean} Whether or not the variable and the shadowedVariable have the same init pattern ancestor.
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*/
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function isInitPatternNode(variable, shadowedVariable) {
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const outerDef = shadowedVariable.defs[0];
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if (!outerDef) {
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return false;
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}
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const { variableScope } = variable.scope;
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if (!(FUNC_EXPR_NODE_TYPES.has(variableScope.block.type) && getOuterScope(variableScope) === shadowedVariable.scope)) {
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return false;
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}
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const fun = variableScope.block;
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const { parent } = fun;
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const callExpression = findSelfOrAncestor(
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parent,
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node => CALL_EXPR_NODE_TYPE.has(node.type)
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);
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if (!callExpression) {
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return false;
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}
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let node = outerDef.name;
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const location = callExpression.range[1];
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while (node) {
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if (node.type === "VariableDeclarator") {
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if (isInRange(node.init, location)) {
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return true;
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}
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if (FOR_IN_OF_TYPE.test(node.parent.parent.type) &&
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isInRange(node.parent.parent.right, location)
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) {
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return true;
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}
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break;
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} else if (node.type === "AssignmentPattern") {
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if (isInRange(node.right, location)) {
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return true;
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}
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} else if (SENTINEL_TYPE.test(node.type)) {
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break;
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}
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node = node.parent;
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}
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return false;
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}
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/**
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* Check if variable name is allowed.
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* @param {ASTNode} variable The variable to check.
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* @returns {boolean} Whether or not the variable name is allowed.
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*/
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function isAllowed(variable) {
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return options.allow.includes(variable.name);
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}
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/**
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* Checks if a variable of the class name in the class scope of ClassDeclaration.
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*
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* ClassDeclaration creates two variables of its name into its outer scope and its class scope.
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* So we should ignore the variable in the class scope.
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* @param {Object} variable The variable to check.
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* @returns {boolean} Whether or not the variable of the class name in the class scope of ClassDeclaration.
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*/
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function isDuplicatedClassNameVariable(variable) {
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const block = variable.scope.block;
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return block.type === "ClassDeclaration" && block.id === variable.identifiers[0];
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}
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/**
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* Checks if a variable is inside the initializer of scopeVar.
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*
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* To avoid reporting at declarations such as `var a = function a() {};`.
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* But it should report `var a = function(a) {};` or `var a = function() { function a() {} };`.
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* @param {Object} variable The variable to check.
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* @param {Object} scopeVar The scope variable to look for.
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* @returns {boolean} Whether or not the variable is inside initializer of scopeVar.
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*/
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function isOnInitializer(variable, scopeVar) {
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const outerScope = scopeVar.scope;
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const outerDef = scopeVar.defs[0];
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const outer = outerDef && outerDef.parent && outerDef.parent.range;
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const innerScope = variable.scope;
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const innerDef = variable.defs[0];
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const inner = innerDef && innerDef.name.range;
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return (
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outer &&
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inner &&
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outer[0] < inner[0] &&
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inner[1] < outer[1] &&
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((innerDef.type === "FunctionName" && innerDef.node.type === "FunctionExpression") || innerDef.node.type === "ClassExpression") &&
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outerScope === innerScope.upper
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);
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}
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/**
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* Get a range of a variable's identifier node.
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* @param {Object} variable The variable to get.
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* @returns {Array|undefined} The range of the variable's identifier node.
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*/
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function getNameRange(variable) {
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const def = variable.defs[0];
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return def && def.name.range;
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}
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/**
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* Get declared line and column of a variable.
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* @param {eslint-scope.Variable} variable The variable to get.
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* @returns {Object} The declared line and column of the variable.
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*/
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function getDeclaredLocation(variable) {
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const identifier = variable.identifiers[0];
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let obj;
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if (identifier) {
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obj = {
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global: false,
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line: identifier.loc.start.line,
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column: identifier.loc.start.column + 1
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};
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} else {
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obj = {
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global: true
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};
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}
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return obj;
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}
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/**
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* Checks if a variable is in TDZ of scopeVar.
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* @param {Object} variable The variable to check.
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* @param {Object} scopeVar The variable of TDZ.
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* @returns {boolean} Whether or not the variable is in TDZ of scopeVar.
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*/
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function isInTdz(variable, scopeVar) {
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const outerDef = scopeVar.defs[0];
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const inner = getNameRange(variable);
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const outer = getNameRange(scopeVar);
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return (
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inner &&
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outer &&
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inner[1] < outer[0] &&
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// Excepts FunctionDeclaration if is {"hoist":"function"}.
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(options.hoist !== "functions" || !outerDef || outerDef.node.type !== "FunctionDeclaration")
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);
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}
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/**
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* Checks the current context for shadowed variables.
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* @param {Scope} scope Fixme
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* @returns {void}
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*/
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function checkForShadows(scope) {
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const variables = scope.variables;
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for (let i = 0; i < variables.length; ++i) {
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const variable = variables[i];
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// Skips "arguments" or variables of a class name in the class scope of ClassDeclaration.
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if (variable.identifiers.length === 0 ||
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isDuplicatedClassNameVariable(variable) ||
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isAllowed(variable)
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) {
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continue;
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}
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// Gets shadowed variable.
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const shadowed = astUtils.getVariableByName(scope.upper, variable.name);
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if (shadowed &&
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(shadowed.identifiers.length > 0 || (options.builtinGlobals && "writeable" in shadowed)) &&
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!isOnInitializer(variable, shadowed) &&
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!(options.ignoreOnInitialization && isInitPatternNode(variable, shadowed)) &&
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!(options.hoist !== "all" && isInTdz(variable, shadowed))
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) {
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const location = getDeclaredLocation(shadowed);
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const messageId = location.global ? "noShadowGlobal" : "noShadow";
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const data = { name: variable.name };
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if (!location.global) {
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data.shadowedLine = location.line;
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data.shadowedColumn = location.column;
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}
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context.report({
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node: variable.identifiers[0],
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messageId,
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data
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});
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}
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}
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}
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return {
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"Program:exit"(node) {
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const globalScope = sourceCode.getScope(node);
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const stack = globalScope.childScopes.slice();
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while (stack.length) {
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const scope = stack.pop();
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stack.push(...scope.childScopes);
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checkForShadows(scope);
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}
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}
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};
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}
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};
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