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f5e46c9bf2
This looks like a massive PR, but it's only a move from cli/tests -> tests, and updates of relative paths for files. This is the first step towards aggregate all of the integration test files under tests/, which will lead to a set of integration tests that can run without the CLI binary being built. While we could leave these tests under `cli`, it would require us to keep a more complex directory structure for the various test runners. In addition, we have a lot of complexity to ignore various test files in the `cli` project itself (cargo publish exclusion rules, autotests = false, etc). And finally, the `tests/` folder will eventually house the `test_ffi`, `test_napi` and other testing code, reducing the size of the root repo directory. For easier review, the extremely large and noisy "move" is in the first commit (with no changes -- just a move), while the remainder of the changes to actual files is in the second commit.
250 lines
5.6 KiB
JavaScript
250 lines
5.6 KiB
JavaScript
// deno-fmt-ignore-file
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// deno-lint-ignore-file
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// Copyright Joyent and Node contributors. All rights reserved. MIT license.
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// Taken from Node 16.13.0
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// This file is automatically generated by "node/_tools/setup.ts". Do not modify this file manually
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'use strict';
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// TODO: enable remaining tests once functionality is implemented.
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const common = require('../common');
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const { addresses } = require('../common/internet');
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if (!common.hasIPv6)
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common.skip('this test, no IPv6 support');
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const assert = require('assert');
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const dns = require('dns');
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const net = require('net');
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const dnsPromises = dns.promises;
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const isIPv6 = net.isIPv6;
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let running = false;
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const queue = [];
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function TEST(f) {
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function next() {
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const f = queue.shift();
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if (f) {
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running = true;
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console.log(f.name);
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f(done);
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}
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}
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function done() {
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running = false;
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process.nextTick(next);
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}
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queue.push(f);
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if (!running) {
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next();
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}
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}
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function checkWrap(req) {
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assert.ok(typeof req === 'object');
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}
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TEST(async function test_resolve6(done) {
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function validateResult(res) {
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assert.ok(res.length > 0);
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for (let i = 0; i < res.length; i++) {
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assert.ok(isIPv6(res[i]));
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}
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}
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validateResult(await dnsPromises.resolve6(addresses.INET6_HOST));
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const req = dns.resolve6(
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addresses.INET6_HOST,
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common.mustSucceed((ips) => {
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validateResult(ips);
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done();
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}));
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checkWrap(req);
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});
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// TEST(async function test_reverse_ipv6(done) {
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// function validateResult(res) {
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// assert.ok(res.length > 0);
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// for (let i = 0; i < res.length; i++) {
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// assert.ok(typeof res[i] === 'string');
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// }
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// }
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// validateResult(await dnsPromises.reverse(addresses.INET6_IP));
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// const req = dns.reverse(
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// addresses.INET6_IP,
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// common.mustSucceed((domains) => {
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// validateResult(domains);
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// done();
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// }));
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// checkWrap(req);
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// });
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TEST(async function test_lookup_ipv6_explicit(done) {
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function validateResult(res) {
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assert.ok(isIPv6(res.address));
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assert.strictEqual(res.family, 6);
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}
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validateResult(await dnsPromises.lookup(addresses.INET6_HOST, 6));
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const req = dns.lookup(
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addresses.INET6_HOST,
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6,
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common.mustSucceed((ip, family) => {
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validateResult({ address: ip, family });
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done();
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}));
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checkWrap(req);
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});
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// This ends up just being too problematic to test
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// TEST(function test_lookup_ipv6_implicit(done) {
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// var req = dns.lookup(addresses.INET6_HOST, function(err, ip, family) {
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// assert.ifError(err);
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// assert.ok(net.isIPv6(ip));
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// assert.strictEqual(family, 6);
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// done();
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// });
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// checkWrap(req);
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// });
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TEST(async function test_lookup_ipv6_explicit_object(done) {
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function validateResult(res) {
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assert.ok(isIPv6(res.address));
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assert.strictEqual(res.family, 6);
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}
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validateResult(await dnsPromises.lookup(addresses.INET6_HOST, { family: 6 }));
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const req = dns.lookup(addresses.INET6_HOST, {
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family: 6
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}, common.mustSucceed((ip, family) => {
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validateResult({ address: ip, family });
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done();
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}));
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checkWrap(req);
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});
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TEST(function test_lookup_ipv6_hint(done) {
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const req = dns.lookup(addresses.INET6_HOST, {
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family: 6,
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hints: dns.V4MAPPED
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}, common.mustCall((err, ip, family) => {
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if (err) {
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// FreeBSD does not support V4MAPPED
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if (common.isFreeBSD) {
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assert(err instanceof Error);
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assert.strictEqual(err.code, 'EAI_BADFLAGS');
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assert.strictEqual(err.hostname, addresses.INET_HOST);
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assert.match(err.message, /getaddrinfo EAI_BADFLAGS/);
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done();
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return;
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}
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assert.ifError(err);
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}
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assert.ok(isIPv6(ip));
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assert.strictEqual(family, 6);
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done();
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}));
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checkWrap(req);
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});
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TEST(async function test_lookup_ip_ipv6(done) {
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function validateResult(res) {
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assert.ok(isIPv6(res.address));
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assert.strictEqual(res.family, 6);
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}
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validateResult(await dnsPromises.lookup('::1'));
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const req = dns.lookup(
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'::1',
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common.mustSucceed((ip, family) => {
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validateResult({ address: ip, family });
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done();
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}));
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checkWrap(req);
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});
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TEST(async function test_lookup_all_ipv6(done) {
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function validateResult(res) {
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assert.ok(Array.isArray(res));
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assert.ok(res.length > 0);
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res.forEach((ip) => {
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assert.ok(isIPv6(ip.address),
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`Invalid IPv6: ${ip.address.toString()}`);
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assert.strictEqual(ip.family, 6);
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});
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}
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validateResult(await dnsPromises.lookup(addresses.INET6_HOST, {
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all: true,
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family: 6
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}));
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const req = dns.lookup(
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addresses.INET6_HOST,
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{ all: true, family: 6 },
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common.mustSucceed((ips) => {
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validateResult(ips);
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done();
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})
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);
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checkWrap(req);
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});
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// TEST(function test_lookupservice_ip_ipv6(done) {
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// const req = dns.lookupService(
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// '::1', 80,
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// common.mustCall((err, host, service) => {
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// if (err) {
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// // Not skipping the test, rather checking an alternative result,
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// // i.e. that ::1 may not be configured (e.g. in /etc/hosts)
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// assert.strictEqual(err.code, 'ENOTFOUND');
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// return done();
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// }
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// assert.strictEqual(typeof host, 'string');
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// assert(host);
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// assert(['http', 'www', '80'].includes(service));
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// done();
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// })
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// );
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// checkWrap(req);
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// });
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// Disabled because it appears to be not working on Linux.
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// TEST(function test_lookup_localhost_ipv6(done) {
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// var req = dns.lookup('localhost', 6, function(err, ip, family) {
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// assert.ifError(err);
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// assert.ok(net.isIPv6(ip));
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// assert.strictEqual(family, 6);
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//
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// done();
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// });
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//
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// checkWrap(req);
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// });
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