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563 lines
18 KiB
563 lines
18 KiB
// Originally from narwhal.js (http://narwhaljs.org)
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// Copyright (c) 2009 Thomas Robinson <280north.com>
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//
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// Permission is hereby granted, free of charge, to any person obtaining a copy
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// of this software and associated documentation files (the 'Software'), to
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// deal in the Software without restriction, including without limitation the
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// rights to use, copy, modify, merge, publish, distribute, sublicense, and/or
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// sell copies of the Software, and to permit persons to whom the Software is
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// furnished to do so, subject to the following conditions:
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//
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// The above copyright notice and this permission notice shall be included in
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// all copies or substantial portions of the Software.
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//
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// THE SOFTWARE IS PROVIDED 'AS IS', WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
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// IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
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// FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
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// AUTHORS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN
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// ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION
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// WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE.
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'use strict';
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// UTILITY
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const compare = process.binding('buffer').compare;
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const util = require('util');
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const { isSet, isMap } = process.binding('util');
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const objectToString = require('internal/util').objectToString;
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const Buffer = require('buffer').Buffer;
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var errors;
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function lazyErrors() {
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if (!errors)
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errors = require('internal/errors');
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return errors;
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}
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// The assert module provides functions that throw
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// AssertionError's when particular conditions are not met. The
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// assert module must conform to the following interface.
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const assert = module.exports = ok;
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// The AssertionError is defined in assert.
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// new assert.AssertionError({ message: message,
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// actual: actual,
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// expected: expected });
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// TODO(jasnell): Consider moving AssertionError into internal/errors.js
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class AssertionError extends Error {
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constructor(options = {}) {
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if (typeof options !== 'object' || options === null) {
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// Lazy because the errors module itself uses assertions, leading to
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// a circular dependency. This can be eliminated by moving this class
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// into internal/errors.js
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const errors = lazyErrors();
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throw new errors.TypeError('ERR_INVALID_ARG_TYPE', 'options', 'object');
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}
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const message = options.message ||
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`${util.inspect(options.actual).slice(0, 128)} ` +
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`${options.operator} ` +
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util.inspect(options.expected).slice(0, 128);
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super(message);
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this.generatedMessage = !options.message;
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this.name = 'AssertionError [ERR_ASSERTION]';
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this.code = 'ERR_ASSERTION';
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this.actual = options.actual;
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this.expected = options.expected;
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this.operator = options.operator;
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var stackStartFunction = options.stackStartFunction || fail;
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Error.captureStackTrace(this, stackStartFunction);
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}
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}
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assert.AssertionError = AssertionError;
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// At present only the three keys mentioned above are used and
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// understood by the spec. Implementations or sub modules can pass
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// other keys to the AssertionError's constructor - they will be
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// ignored.
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// All of the following functions must throw an AssertionError
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// when a corresponding condition is not met, with a message that
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// may be undefined if not provided. All assertion methods provide
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// both the actual and expected values to the assertion error for
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// display purposes.
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function fail(actual, expected, message, operator, stackStartFunction) {
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if (arguments.length === 1)
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message = actual;
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if (arguments.length === 2)
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operator = '!=';
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throw new AssertionError({
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message: message,
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actual: actual,
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expected: expected,
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operator: operator,
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stackStartFunction: stackStartFunction
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});
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}
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// EXTENSION! allows for well behaved errors defined elsewhere.
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assert.fail = fail;
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// Pure assertion tests whether a value is truthy, as determined
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// by !!guard.
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// assert.ok(guard, message_opt);
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// This statement is equivalent to assert.equal(true, !!guard,
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// message_opt);. To test strictly for the value true, use
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// assert.strictEqual(true, guard, message_opt);.
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function ok(value, message) {
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if (!value) fail(value, true, message, '==', assert.ok);
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}
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assert.ok = ok;
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// The equality assertion tests shallow, coercive equality with
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// ==.
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// assert.equal(actual, expected, message_opt);
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/* eslint-disable no-restricted-properties */
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assert.equal = function equal(actual, expected, message) {
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// eslint-disable-next-line eqeqeq
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if (actual != expected) fail(actual, expected, message, '==', assert.equal);
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};
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// The non-equality assertion tests for whether two objects are not
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// equal with !=.
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// assert.notEqual(actual, expected, message_opt);
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assert.notEqual = function notEqual(actual, expected, message) {
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// eslint-disable-next-line eqeqeq
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if (actual == expected) {
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fail(actual, expected, message, '!=', assert.notEqual);
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}
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};
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// The equivalence assertion tests a deep equality relation.
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// assert.deepEqual(actual, expected, message_opt);
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assert.deepEqual = function deepEqual(actual, expected, message) {
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if (!_deepEqual(actual, expected, false)) {
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fail(actual, expected, message, 'deepEqual', assert.deepEqual);
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}
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};
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/* eslint-enable */
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assert.deepStrictEqual = function deepStrictEqual(actual, expected, message) {
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if (!_deepEqual(actual, expected, true)) {
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fail(actual, expected, message, 'deepStrictEqual', assert.deepStrictEqual);
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}
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};
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function areSimilarRegExps(a, b) {
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return a.source === b.source && a.flags === b.flags;
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}
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function areSimilarTypedArrays(a, b) {
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return compare(Buffer.from(a.buffer,
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a.byteOffset,
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a.byteLength),
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Buffer.from(b.buffer,
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b.byteOffset,
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b.byteLength)) === 0;
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}
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function isNullOrNonObj(object) {
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return object === null || typeof object !== 'object';
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}
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function isFloatTypedArrayTag(tag) {
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return tag === '[object Float32Array]' || tag === '[object Float64Array]';
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}
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function isArguments(tag) {
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return tag === '[object Arguments]';
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}
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function _deepEqual(actual, expected, strict, memos) {
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// All identical values are equivalent, as determined by ===.
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if (actual === expected) {
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return true;
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}
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// For primitives / functions
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// (determined by typeof value !== 'object'),
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// or null, equivalence is determined by === or ==.
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if (isNullOrNonObj(actual) && isNullOrNonObj(expected)) {
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// eslint-disable-next-line eqeqeq
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return strict ? actual === expected : actual == expected;
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}
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// If they bypass the previous check, then at least
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// one of them must be an non-null object.
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// If the other one is null or undefined, they must not be equal.
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if (actual === null || actual === undefined ||
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expected === null || expected === undefined)
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return false;
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// Notes: Type tags are historical [[Class]] properties that can be set by
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// FunctionTemplate::SetClassName() in C++ or Symbol.toStringTag in JS
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// and retrieved using Object.prototype.toString.call(obj) in JS
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// See https://tc39.github.io/ecma262/#sec-object.prototype.tostring
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// for a list of tags pre-defined in the spec.
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// There are some unspecified tags in the wild too (e.g. typed array tags).
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// Since tags can be altered, they only serve fast failures
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const actualTag = objectToString(actual);
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const expectedTag = objectToString(expected);
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// Passing null or undefined to Object.getPrototypeOf() will throw
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// so this must done after previous checks.
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// For strict comparison, objects should have
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// a) The same prototypes.
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// b) The same built-in type tags
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if (strict) {
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if (Object.getPrototypeOf(actual) !== Object.getPrototypeOf(expected)) {
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return false;
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}
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if (actualTag !== expectedTag) {
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return false;
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}
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}
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// Do fast checks for builtin types.
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// If they don't match, they must not be equal.
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// If they match, return true for non-strict comparison.
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// For strict comparison we need to exam further.
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// If both values are Date objects,
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// check if the time underneath are equal first.
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if (util.isDate(actual) && util.isDate(expected)) {
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if (actual.getTime() !== expected.getTime()) {
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return false;
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} else if (!strict) {
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return true; // Skip further checks for non-strict comparison.
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}
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}
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// If both values are RegExp, check if they have
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// the same source and flags first
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if (util.isRegExp(actual) && util.isRegExp(expected)) {
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if (!areSimilarRegExps(actual, expected)) {
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return false;
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} else if (!strict) {
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return true; // Skip further checks for non-strict comparison.
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}
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}
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// Ensure reflexivity of deepEqual with `arguments` objects.
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// See https://github.com/nodejs/node-v0.x-archive/pull/7178
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if (isArguments(actualTag) !== isArguments(expectedTag)) {
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return false;
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}
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// Check typed arrays and buffers by comparing the content in their
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// underlying ArrayBuffer. This optimization requires that it's
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// reasonable to interpret their underlying memory in the same way,
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// which is checked by comparing their type tags.
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// (e.g. a Uint8Array and a Uint16Array with the same memory content
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// could still be different because they will be interpreted differently)
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// Never perform binary comparisons for Float*Arrays, though,
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// since e.g. +0 === -0 is true despite the two values' bit patterns
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// not being identical.
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if (ArrayBuffer.isView(actual) && ArrayBuffer.isView(expected) &&
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actualTag === expectedTag && !isFloatTypedArrayTag(actualTag)) {
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if (!areSimilarTypedArrays(actual, expected)) {
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return false;
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} else if (!strict) {
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return true; // Skip further checks for non-strict comparison.
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}
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// Buffer.compare returns true, so actual.length === expected.length
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// if they both only contain numeric keys, we don't need to exam further
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if (Object.keys(actual).length === actual.length &&
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Object.keys(expected).length === expected.length) {
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return true;
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}
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}
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// For all other Object pairs, including Array objects and Maps,
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// equivalence is determined by having:
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// a) The same number of owned enumerable properties
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// b) The same set of keys/indexes (although not necessarily the same order)
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// c) Equivalent values for every corresponding key/index
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// d) For Sets and Maps, equal contents
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// Note: this accounts for both named and indexed properties on Arrays.
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// Use memos to handle cycles.
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memos = memos || { actual: [], expected: [] };
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const actualIndex = memos.actual.indexOf(actual);
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if (actualIndex !== -1) {
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if (actualIndex === memos.expected.indexOf(expected)) {
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return true;
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}
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}
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memos.actual.push(actual);
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memos.expected.push(expected);
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return objEquiv(actual, expected, strict, memos);
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}
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function setHasSimilarElement(set, val1, strict, memo) {
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if (set.has(val1))
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return true;
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// In strict mode the only things which can match a primitive or a function
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// will already be detected by set.has(val1).
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if (strict && (util.isPrimitive(val1) || util.isFunction(val1)))
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return false;
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// Otherwise go looking.
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for (const val2 of set) {
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if (_deepEqual(val1, val2, strict, memo))
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return true;
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}
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return false;
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}
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function setEquiv(a, b, strict, memo) {
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// This code currently returns false for this pair of sets:
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// assert.deepEqual(new Set(['1', 1]), new Set([1]))
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//
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// In theory, all the items in the first set have a corresponding == value in
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// the second set, but the sets have different sizes. Its a silly case,
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// and more evidence that deepStrictEqual should always be preferred over
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// deepEqual.
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if (a.size !== b.size)
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return false;
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for (const val1 of a) {
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// If the value doesn't exist in the second set by reference, and its an
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// object or an array we'll need to go hunting for something thats
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// deep-equal to it. Note that this is O(n^2) complexity, and will get
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// slower if large, very similar sets / maps are nested inside.
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// Unfortunately there's no real way around this.
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if (!setHasSimilarElement(b, val1, strict, memo)) {
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return false;
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}
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}
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return true;
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}
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function mapHasSimilarEntry(map, key1, item1, strict, memo) {
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// To be able to handle cases like:
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// Map([[1, 'a'], ['1', 'b']]) vs Map([['1', 'a'], [1, 'b']])
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// or:
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// Map([[{}, 'a'], [{}, 'b']]) vs Map([[{}, 'b'], [{}, 'a']])
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// ... we need to consider *all* matching keys, not just the first we find.
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// This check is not strictly necessary. The loop performs this check, but
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// doing it here improves performance of the common case when reference-equal
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// keys exist (which includes all primitive-valued keys).
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if (map.has(key1) && _deepEqual(item1, map.get(key1), strict, memo))
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return true;
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if (strict && (util.isPrimitive(key1) || util.isFunction(key1)))
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return false;
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for (const [key2, item2] of map) {
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// This case is checked above.
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if (key2 === key1)
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continue;
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if (_deepEqual(key1, key2, strict, memo) &&
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_deepEqual(item1, item2, strict, memo)) {
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return true;
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}
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}
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return false;
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}
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function mapEquiv(a, b, strict, memo) {
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// Caveat: In non-strict mode, this implementation does not handle cases
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// where maps contain two equivalent-but-not-reference-equal keys.
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//
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// For example, maps like this are currently considered not equivalent:
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if (a.size !== b.size)
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return false;
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for (const [key1, item1] of a) {
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// Just like setEquiv above, this hunt makes this function O(n^2) when
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// using objects and lists as keys
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if (!mapHasSimilarEntry(b, key1, item1, strict, memo))
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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 objEquiv(a, b, strict, actualVisitedObjects) {
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// If one of them is a primitive, the other must be the same.
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if (util.isPrimitive(a) || util.isPrimitive(b))
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return a === b;
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const aKeys = Object.keys(a);
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const bKeys = Object.keys(b);
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var key, i;
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// The pair must have the same number of owned properties
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// (keys incorporates hasOwnProperty).
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if (aKeys.length !== bKeys.length)
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return false;
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// The pair must have the same set of keys (although not
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// necessarily in the same order).
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aKeys.sort();
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bKeys.sort();
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// Cheap key test:
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for (i = aKeys.length - 1; i >= 0; i--) {
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if (aKeys[i] !== bKeys[i])
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return false;
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}
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// Sets and maps don't have their entries accessible via normal object
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// properties.
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if (isSet(a)) {
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if (!isSet(b) || !setEquiv(a, b, strict, actualVisitedObjects))
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return false;
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} else if (isSet(b)) {
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return false;
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}
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if (isMap(a)) {
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if (!isMap(b) || !mapEquiv(a, b, strict, actualVisitedObjects))
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return false;
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} else if (isMap(b)) {
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return false;
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}
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// The pair must have equivalent values for every corresponding key.
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// Possibly expensive deep test:
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for (i = aKeys.length - 1; i >= 0; i--) {
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key = aKeys[i];
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if (!_deepEqual(a[key], b[key], strict, actualVisitedObjects))
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return false;
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}
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return true;
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}
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// The non-equivalence assertion tests for any deep inequality.
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// assert.notDeepEqual(actual, expected, message_opt);
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assert.notDeepEqual = function notDeepEqual(actual, expected, message) {
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if (_deepEqual(actual, expected, false)) {
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fail(actual, expected, message, 'notDeepEqual', assert.notDeepEqual);
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}
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};
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assert.notDeepStrictEqual = notDeepStrictEqual;
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function notDeepStrictEqual(actual, expected, message) {
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if (_deepEqual(actual, expected, true)) {
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fail(actual, expected, message, 'notDeepStrictEqual', notDeepStrictEqual);
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}
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}
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// The strict equality assertion tests strict equality, as determined by ===.
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// assert.strictEqual(actual, expected, message_opt);
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assert.strictEqual = function strictEqual(actual, expected, message) {
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if (actual !== expected) {
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fail(actual, expected, message, '===', assert.strictEqual);
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}
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};
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// The strict non-equality assertion tests for strict inequality, as
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// determined by !==.
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// assert.notStrictEqual(actual, expected, message_opt);
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assert.notStrictEqual = function notStrictEqual(actual, expected, message) {
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if (actual === expected) {
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fail(actual, expected, message, '!==', assert.notStrictEqual);
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}
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};
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function expectedException(actual, expected) {
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// actual is guaranteed to be an Error object, but we need to check expected.
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if (!expected) {
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return false;
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}
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if (objectToString(expected) === '[object RegExp]') {
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return expected.test(actual);
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}
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try {
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if (actual instanceof expected) {
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return true;
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}
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} catch (e) {
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// Ignore. The instanceof check doesn't work for arrow functions.
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}
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if (Error.isPrototypeOf(expected)) {
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return false;
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}
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return expected.call({}, actual) === true;
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}
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function _tryBlock(block) {
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var error;
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try {
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block();
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} catch (e) {
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error = e;
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}
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return error;
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}
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function _throws(shouldThrow, block, expected, message) {
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var actual;
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if (typeof block !== 'function') {
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throw new TypeError('"block" argument must be a function');
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}
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|
|
|
if (typeof expected === 'string') {
|
|
message = expected;
|
|
expected = null;
|
|
}
|
|
|
|
actual = _tryBlock(block);
|
|
|
|
message = (expected && expected.name ? ' (' + expected.name + ')' : '') +
|
|
(message ? ': ' + message : '.');
|
|
|
|
if (shouldThrow && !actual) {
|
|
fail(actual, expected, 'Missing expected exception' + message);
|
|
}
|
|
|
|
const userProvidedMessage = typeof message === 'string';
|
|
const isUnwantedException = !shouldThrow && util.isError(actual);
|
|
const isUnexpectedException = !shouldThrow && actual && !expected;
|
|
|
|
if ((isUnwantedException &&
|
|
userProvidedMessage &&
|
|
expectedException(actual, expected)) ||
|
|
isUnexpectedException) {
|
|
fail(actual, expected, 'Got unwanted exception' + message);
|
|
}
|
|
|
|
if ((shouldThrow && actual && expected &&
|
|
!expectedException(actual, expected)) || (!shouldThrow && actual)) {
|
|
throw actual;
|
|
}
|
|
}
|
|
|
|
// Expected to throw an error.
|
|
// assert.throws(block, Error_opt, message_opt);
|
|
|
|
assert.throws = function throws(block, /*optional*/error, /*optional*/message) {
|
|
_throws(true, block, error, message);
|
|
};
|
|
|
|
// EXTENSION! This is annoying to write outside this module.
|
|
assert.doesNotThrow = doesNotThrow;
|
|
function doesNotThrow(block, /*optional*/error, /*optional*/message) {
|
|
_throws(false, block, error, message);
|
|
}
|
|
|
|
assert.ifError = function ifError(err) { if (err) throw err; };
|
|
|