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183
node_modules/@babel/traverse/lib/path/inference/inferer-reference.js
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183
node_modules/@babel/traverse/lib/path/inference/inferer-reference.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.default = _default;
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function t() {
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const data = _interopRequireWildcard(require("@babel/types"));
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t = function () {
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return data;
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};
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return data;
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}
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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; } var cache = _getRequireWildcardCache(); if (cache && cache.has(obj)) { return cache.get(obj); } var newObj = {}; if (obj != null) { 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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function _default(node) {
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if (!this.isReferenced()) return;
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const binding = this.scope.getBinding(node.name);
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if (binding) {
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if (binding.identifier.typeAnnotation) {
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return binding.identifier.typeAnnotation;
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} else {
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return getTypeAnnotationBindingConstantViolations(binding, this, node.name);
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}
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}
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if (node.name === "undefined") {
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return t().voidTypeAnnotation();
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} else if (node.name === "NaN" || node.name === "Infinity") {
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return t().numberTypeAnnotation();
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} else if (node.name === "arguments") {}
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}
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function getTypeAnnotationBindingConstantViolations(binding, path, name) {
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const types = [];
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const functionConstantViolations = [];
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let constantViolations = getConstantViolationsBefore(binding, path, functionConstantViolations);
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const testType = getConditionalAnnotation(binding, path, name);
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if (testType) {
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const testConstantViolations = getConstantViolationsBefore(binding, testType.ifStatement);
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constantViolations = constantViolations.filter(path => testConstantViolations.indexOf(path) < 0);
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types.push(testType.typeAnnotation);
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}
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if (constantViolations.length) {
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constantViolations = constantViolations.concat(functionConstantViolations);
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for (const violation of constantViolations) {
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types.push(violation.getTypeAnnotation());
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}
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}
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if (types.length) {
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return t().createUnionTypeAnnotation(types);
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}
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}
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function getConstantViolationsBefore(binding, path, functions) {
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const violations = binding.constantViolations.slice();
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violations.unshift(binding.path);
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return violations.filter(violation => {
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violation = violation.resolve();
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const status = violation._guessExecutionStatusRelativeTo(path);
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if (functions && status === "unknown") functions.push(violation);
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return status === "before";
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});
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}
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function inferAnnotationFromBinaryExpression(name, path) {
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const operator = path.node.operator;
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const right = path.get("right").resolve();
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const left = path.get("left").resolve();
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let target;
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if (left.isIdentifier({
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name
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})) {
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target = right;
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} else if (right.isIdentifier({
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name
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})) {
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target = left;
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}
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if (target) {
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if (operator === "===") {
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return target.getTypeAnnotation();
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}
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if (t().BOOLEAN_NUMBER_BINARY_OPERATORS.indexOf(operator) >= 0) {
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return t().numberTypeAnnotation();
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}
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return;
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}
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if (operator !== "===" && operator !== "==") return;
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let typeofPath;
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let typePath;
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if (left.isUnaryExpression({
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operator: "typeof"
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})) {
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typeofPath = left;
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typePath = right;
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} else if (right.isUnaryExpression({
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operator: "typeof"
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})) {
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typeofPath = right;
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typePath = left;
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}
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if (!typeofPath) return;
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if (!typeofPath.get("argument").isIdentifier({
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name
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})) return;
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typePath = typePath.resolve();
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if (!typePath.isLiteral()) return;
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const typeValue = typePath.node.value;
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if (typeof typeValue !== "string") return;
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return t().createTypeAnnotationBasedOnTypeof(typeValue);
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}
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function getParentConditionalPath(binding, path, name) {
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let parentPath;
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while (parentPath = path.parentPath) {
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if (parentPath.isIfStatement() || parentPath.isConditionalExpression()) {
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if (path.key === "test") {
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return;
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}
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return parentPath;
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}
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if (parentPath.isFunction()) {
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if (parentPath.parentPath.scope.getBinding(name) !== binding) return;
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}
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path = parentPath;
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}
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}
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function getConditionalAnnotation(binding, path, name) {
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const ifStatement = getParentConditionalPath(binding, path, name);
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if (!ifStatement) return;
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const test = ifStatement.get("test");
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const paths = [test];
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const types = [];
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for (let i = 0; i < paths.length; i++) {
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const path = paths[i];
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if (path.isLogicalExpression()) {
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if (path.node.operator === "&&") {
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paths.push(path.get("left"));
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paths.push(path.get("right"));
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}
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} else if (path.isBinaryExpression()) {
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const type = inferAnnotationFromBinaryExpression(name, path);
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if (type) types.push(type);
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}
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}
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if (types.length) {
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return {
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typeAnnotation: t().createUnionTypeAnnotation(types),
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ifStatement
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};
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}
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return getConditionalAnnotation(ifStatement, name);
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}
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