Add node modules and compiled JavaScript from main
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253
node_modules/@babel/generator/lib/node/parentheses.js
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253
node_modules/@babel/generator/lib/node/parentheses.js
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"use strict";
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Object.defineProperty(exports, "__esModule", {
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value: true
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});
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exports.NullableTypeAnnotation = NullableTypeAnnotation;
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exports.FunctionTypeAnnotation = FunctionTypeAnnotation;
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exports.UpdateExpression = UpdateExpression;
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exports.ObjectExpression = ObjectExpression;
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exports.DoExpression = DoExpression;
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exports.Binary = Binary;
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exports.IntersectionTypeAnnotation = exports.UnionTypeAnnotation = UnionTypeAnnotation;
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exports.TSAsExpression = TSAsExpression;
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exports.TSTypeAssertion = TSTypeAssertion;
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exports.TSIntersectionType = exports.TSUnionType = TSUnionType;
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exports.TSInferType = TSInferType;
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exports.BinaryExpression = BinaryExpression;
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exports.SequenceExpression = SequenceExpression;
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exports.AwaitExpression = exports.YieldExpression = YieldExpression;
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exports.ClassExpression = ClassExpression;
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exports.UnaryLike = UnaryLike;
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exports.FunctionExpression = FunctionExpression;
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exports.ArrowFunctionExpression = ArrowFunctionExpression;
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exports.ConditionalExpression = ConditionalExpression;
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exports.OptionalCallExpression = exports.OptionalMemberExpression = OptionalMemberExpression;
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exports.AssignmentExpression = AssignmentExpression;
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exports.LogicalExpression = LogicalExpression;
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var t = _interopRequireWildcard(require("@babel/types"));
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function _getRequireWildcardCache() { if (typeof WeakMap !== "function") return null; var cache = new WeakMap(); _getRequireWildcardCache = function () { return cache; }; return cache; }
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function _interopRequireWildcard(obj) { if (obj && obj.__esModule) { return obj; } if (obj === null || typeof obj !== "object" && typeof obj !== "function") { return { default: obj }; } var cache = _getRequireWildcardCache(); if (cache && cache.has(obj)) { return cache.get(obj); } var newObj = {}; var hasPropertyDescriptor = Object.defineProperty && Object.getOwnPropertyDescriptor; for (var key in obj) { if (Object.prototype.hasOwnProperty.call(obj, key)) { var desc = hasPropertyDescriptor ? Object.getOwnPropertyDescriptor(obj, key) : null; if (desc && (desc.get || desc.set)) { Object.defineProperty(newObj, key, desc); } else { newObj[key] = obj[key]; } } } newObj.default = obj; if (cache) { cache.set(obj, newObj); } return newObj; }
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const PRECEDENCE = {
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"||": 0,
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"??": 0,
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"&&": 1,
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"|": 2,
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"^": 3,
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"&": 4,
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"==": 5,
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"===": 5,
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"!=": 5,
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"!==": 5,
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"<": 6,
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">": 6,
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"<=": 6,
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">=": 6,
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in: 6,
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instanceof: 6,
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">>": 7,
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"<<": 7,
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">>>": 7,
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"+": 8,
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"-": 8,
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"*": 9,
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"/": 9,
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"%": 9,
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"**": 10
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};
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const isClassExtendsClause = (node, parent) => (t.isClassDeclaration(parent) || t.isClassExpression(parent)) && parent.superClass === node;
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const hasPostfixPart = (node, parent) => (t.isMemberExpression(parent) || t.isOptionalMemberExpression(parent)) && parent.object === node || (t.isCallExpression(parent) || t.isOptionalCallExpression(parent) || t.isNewExpression(parent)) && parent.callee === node || t.isTaggedTemplateExpression(parent) && parent.tag === node || t.isTSNonNullExpression(parent);
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function NullableTypeAnnotation(node, parent) {
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return t.isArrayTypeAnnotation(parent);
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}
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function FunctionTypeAnnotation(node, parent, printStack) {
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return t.isUnionTypeAnnotation(parent) || t.isIntersectionTypeAnnotation(parent) || t.isArrayTypeAnnotation(parent) || t.isTypeAnnotation(parent) && t.isArrowFunctionExpression(printStack[printStack.length - 3]);
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}
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function UpdateExpression(node, parent) {
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return hasPostfixPart(node, parent) || isClassExtendsClause(node, parent);
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}
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function ObjectExpression(node, parent, printStack) {
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return isFirstInStatement(printStack, {
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considerArrow: true
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});
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}
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function DoExpression(node, parent, printStack) {
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return isFirstInStatement(printStack);
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}
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function Binary(node, parent) {
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if (node.operator === "**" && t.isBinaryExpression(parent, {
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operator: "**"
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})) {
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return parent.left === node;
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}
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if (isClassExtendsClause(node, parent)) {
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return true;
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}
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if (hasPostfixPart(node, parent) || t.isUnaryLike(parent) || t.isAwaitExpression(parent)) {
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return true;
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}
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if (t.isBinary(parent)) {
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const parentOp = parent.operator;
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const parentPos = PRECEDENCE[parentOp];
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const nodeOp = node.operator;
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const nodePos = PRECEDENCE[nodeOp];
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if (parentPos === nodePos && parent.right === node && !t.isLogicalExpression(parent) || parentPos > nodePos) {
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return true;
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}
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}
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}
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function UnionTypeAnnotation(node, parent) {
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return t.isArrayTypeAnnotation(parent) || t.isNullableTypeAnnotation(parent) || t.isIntersectionTypeAnnotation(parent) || t.isUnionTypeAnnotation(parent);
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}
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function TSAsExpression() {
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return true;
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}
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function TSTypeAssertion() {
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return true;
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}
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function TSUnionType(node, parent) {
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return t.isTSArrayType(parent) || t.isTSOptionalType(parent) || t.isTSIntersectionType(parent) || t.isTSUnionType(parent) || t.isTSRestType(parent);
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}
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function TSInferType(node, parent) {
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return t.isTSArrayType(parent) || t.isTSOptionalType(parent);
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}
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function BinaryExpression(node, parent) {
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return node.operator === "in" && (t.isVariableDeclarator(parent) || t.isFor(parent));
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}
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function SequenceExpression(node, parent) {
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if (t.isForStatement(parent) || t.isThrowStatement(parent) || t.isReturnStatement(parent) || t.isIfStatement(parent) && parent.test === node || t.isWhileStatement(parent) && parent.test === node || t.isForInStatement(parent) && parent.right === node || t.isSwitchStatement(parent) && parent.discriminant === node || t.isExpressionStatement(parent) && parent.expression === node) {
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return false;
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}
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return true;
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}
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function YieldExpression(node, parent) {
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return t.isBinary(parent) || t.isUnaryLike(parent) || hasPostfixPart(node, parent) || t.isAwaitExpression(parent) && t.isYieldExpression(node) || t.isConditionalExpression(parent) && node === parent.test || isClassExtendsClause(node, parent);
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}
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function ClassExpression(node, parent, printStack) {
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return isFirstInStatement(printStack, {
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considerDefaultExports: true
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});
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}
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function UnaryLike(node, parent) {
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return hasPostfixPart(node, parent) || t.isBinaryExpression(parent, {
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operator: "**",
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left: node
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}) || isClassExtendsClause(node, parent);
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}
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function FunctionExpression(node, parent, printStack) {
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return isFirstInStatement(printStack, {
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considerDefaultExports: true
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});
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}
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function ArrowFunctionExpression(node, parent) {
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return t.isExportDeclaration(parent) || ConditionalExpression(node, parent);
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}
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function ConditionalExpression(node, parent) {
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if (t.isUnaryLike(parent) || t.isBinary(parent) || t.isConditionalExpression(parent, {
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test: node
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}) || t.isAwaitExpression(parent) || t.isTSTypeAssertion(parent) || t.isTSAsExpression(parent)) {
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return true;
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}
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return UnaryLike(node, parent);
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}
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function OptionalMemberExpression(node, parent) {
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return t.isCallExpression(parent, {
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callee: node
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}) || t.isMemberExpression(parent, {
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object: node
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});
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}
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function AssignmentExpression(node, parent, printStack) {
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if (t.isObjectPattern(node.left)) {
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return true;
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} else {
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return ConditionalExpression(node, parent, printStack);
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}
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}
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function LogicalExpression(node, parent) {
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switch (node.operator) {
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case "||":
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if (!t.isLogicalExpression(parent)) return false;
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return parent.operator === "??" || parent.operator === "&&";
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case "&&":
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return t.isLogicalExpression(parent, {
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operator: "??"
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});
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case "??":
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return t.isLogicalExpression(parent) && parent.operator !== "??";
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}
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}
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function isFirstInStatement(printStack, {
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considerArrow = false,
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considerDefaultExports = false
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} = {}) {
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let i = printStack.length - 1;
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let node = printStack[i];
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i--;
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let parent = printStack[i];
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while (i > 0) {
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if (t.isExpressionStatement(parent, {
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expression: node
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}) || considerDefaultExports && t.isExportDefaultDeclaration(parent, {
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declaration: node
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}) || considerArrow && t.isArrowFunctionExpression(parent, {
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body: node
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})) {
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return true;
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}
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if (hasPostfixPart(node, parent) && !t.isNewExpression(parent) || t.isSequenceExpression(parent) && parent.expressions[0] === node || t.isConditional(parent, {
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test: node
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}) || t.isBinary(parent, {
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left: node
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}) || t.isAssignmentExpression(parent, {
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left: node
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})) {
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node = parent;
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i--;
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parent = printStack[i];
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} else {
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return false;
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}
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}
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return false;
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}
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