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d04d5677d9
This PR updates the node_compat setup script. Now the copied version in each test file is corrected. Also `TODO.md` links to the correct files in Node.js repo.
327 lines
9.2 KiB
JavaScript
327 lines
9.2 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 20.11.1
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// This file is automatically generated by `tests/node_compat/runner/setup.ts`. Do not modify this file manually.
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'use strict';
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const assert = require('assert');
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const os = require('os');
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const types = {
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A: 1,
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AAAA: 28,
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NS: 2,
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CNAME: 5,
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SOA: 6,
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PTR: 12,
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MX: 15,
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TXT: 16,
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ANY: 255,
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CAA: 257,
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};
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const classes = {
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IN: 1,
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};
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// Naïve DNS parser/serializer.
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function readDomainFromPacket(buffer, offset) {
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assert.ok(offset < buffer.length);
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const length = buffer[offset];
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if (length === 0) {
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return { nread: 1, domain: '' };
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} else if ((length & 0xC0) === 0) {
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offset += 1;
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const chunk = buffer.toString('ascii', offset, offset + length);
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// Read the rest of the domain.
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const { nread, domain } = readDomainFromPacket(buffer, offset + length);
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return {
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nread: 1 + length + nread,
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domain: domain ? `${chunk}.${domain}` : chunk,
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};
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}
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// Pointer to another part of the packet.
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assert.strictEqual(length & 0xC0, 0xC0);
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// eslint-disable-next-line space-infix-ops, space-unary-ops
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const pointeeOffset = buffer.readUInt16BE(offset) &~ 0xC000;
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return {
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nread: 2,
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domain: readDomainFromPacket(buffer, pointeeOffset),
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};
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}
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function parseDNSPacket(buffer) {
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assert.ok(buffer.length > 12);
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const parsed = {
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id: buffer.readUInt16BE(0),
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flags: buffer.readUInt16BE(2),
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};
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const counts = [
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['questions', buffer.readUInt16BE(4)],
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['answers', buffer.readUInt16BE(6)],
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['authorityAnswers', buffer.readUInt16BE(8)],
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['additionalRecords', buffer.readUInt16BE(10)],
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];
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let offset = 12;
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for (const [ sectionName, count ] of counts) {
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parsed[sectionName] = [];
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for (let i = 0; i < count; ++i) {
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const { nread, domain } = readDomainFromPacket(buffer, offset);
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offset += nread;
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const type = buffer.readUInt16BE(offset);
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const rr = {
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domain,
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cls: buffer.readUInt16BE(offset + 2),
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};
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offset += 4;
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for (const name in types) {
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if (types[name] === type)
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rr.type = name;
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}
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if (sectionName !== 'questions') {
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rr.ttl = buffer.readInt32BE(offset);
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const dataLength = buffer.readUInt16BE(offset);
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offset += 6;
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switch (type) {
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case types.A:
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assert.strictEqual(dataLength, 4);
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rr.address = `${buffer[offset + 0]}.${buffer[offset + 1]}.` +
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`${buffer[offset + 2]}.${buffer[offset + 3]}`;
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break;
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case types.AAAA:
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assert.strictEqual(dataLength, 16);
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rr.address = buffer.toString('hex', offset, offset + 16)
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.replace(/(.{4}(?!$))/g, '$1:');
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break;
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case types.TXT:
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{
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let position = offset;
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rr.entries = [];
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while (position < offset + dataLength) {
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const txtLength = buffer[offset];
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rr.entries.push(buffer.toString('utf8',
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position + 1,
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position + 1 + txtLength));
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position += 1 + txtLength;
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}
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assert.strictEqual(position, offset + dataLength);
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break;
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}
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case types.MX:
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{
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rr.priority = buffer.readInt16BE(buffer, offset);
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offset += 2;
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const { nread, domain } = readDomainFromPacket(buffer, offset);
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rr.exchange = domain;
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assert.strictEqual(nread, dataLength);
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break;
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}
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case types.NS:
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case types.CNAME:
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case types.PTR:
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{
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const { nread, domain } = readDomainFromPacket(buffer, offset);
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rr.value = domain;
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assert.strictEqual(nread, dataLength);
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break;
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}
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case types.SOA:
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{
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const mname = readDomainFromPacket(buffer, offset);
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const rname = readDomainFromPacket(buffer, offset + mname.nread);
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rr.nsname = mname.domain;
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rr.hostmaster = rname.domain;
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const trailerOffset = offset + mname.nread + rname.nread;
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rr.serial = buffer.readUInt32BE(trailerOffset);
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rr.refresh = buffer.readUInt32BE(trailerOffset + 4);
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rr.retry = buffer.readUInt32BE(trailerOffset + 8);
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rr.expire = buffer.readUInt32BE(trailerOffset + 12);
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rr.minttl = buffer.readUInt32BE(trailerOffset + 16);
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assert.strictEqual(trailerOffset + 20, dataLength);
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break;
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}
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default:
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throw new Error(`Unknown RR type ${rr.type}`);
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}
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offset += dataLength;
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}
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parsed[sectionName].push(rr);
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assert.ok(offset <= buffer.length);
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}
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}
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assert.strictEqual(offset, buffer.length);
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return parsed;
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}
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function writeIPv6(ip) {
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const parts = ip.replace(/^:|:$/g, '').split(':');
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const buf = Buffer.alloc(16);
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let offset = 0;
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for (const part of parts) {
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if (part === '') {
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offset += 16 - 2 * (parts.length - 1);
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} else {
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buf.writeUInt16BE(parseInt(part, 16), offset);
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offset += 2;
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}
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}
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return buf;
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}
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function writeDomainName(domain) {
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return Buffer.concat(domain.split('.').map((label) => {
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assert(label.length < 64);
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return Buffer.concat([
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Buffer.from([label.length]),
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Buffer.from(label, 'ascii'),
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]);
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}).concat([Buffer.alloc(1)]));
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}
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function writeDNSPacket(parsed) {
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const buffers = [];
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const kStandardResponseFlags = 0x8180;
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buffers.push(new Uint16Array([
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parsed.id,
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parsed.flags === undefined ? kStandardResponseFlags : parsed.flags,
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parsed.questions && parsed.questions.length,
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parsed.answers && parsed.answers.length,
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parsed.authorityAnswers && parsed.authorityAnswers.length,
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parsed.additionalRecords && parsed.additionalRecords.length,
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]));
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for (const q of parsed.questions) {
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assert(types[q.type]);
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buffers.push(writeDomainName(q.domain));
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buffers.push(new Uint16Array([
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types[q.type],
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q.cls === undefined ? classes.IN : q.cls,
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]));
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}
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for (const rr of [].concat(parsed.answers,
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parsed.authorityAnswers,
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parsed.additionalRecords)) {
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if (!rr) continue;
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assert(types[rr.type]);
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buffers.push(writeDomainName(rr.domain));
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buffers.push(new Uint16Array([
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types[rr.type],
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rr.cls === undefined ? classes.IN : rr.cls,
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]));
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buffers.push(new Int32Array([rr.ttl]));
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const rdLengthBuf = new Uint16Array(1);
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buffers.push(rdLengthBuf);
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switch (rr.type) {
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case 'A':
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rdLengthBuf[0] = 4;
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buffers.push(new Uint8Array(rr.address.split('.')));
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break;
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case 'AAAA':
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rdLengthBuf[0] = 16;
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buffers.push(writeIPv6(rr.address));
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break;
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case 'TXT': {
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const total = rr.entries.map((s) => s.length).reduce((a, b) => a + b);
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// Total length of all strings + 1 byte each for their lengths.
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rdLengthBuf[0] = rr.entries.length + total;
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for (const txt of rr.entries) {
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buffers.push(new Uint8Array([Buffer.byteLength(txt)]));
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buffers.push(Buffer.from(txt));
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}
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break;
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}
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case 'MX':
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rdLengthBuf[0] = 2;
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buffers.push(new Uint16Array([rr.priority]));
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// fall through
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case 'NS':
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case 'CNAME':
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case 'PTR':
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{
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const domain = writeDomainName(rr.exchange || rr.value);
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rdLengthBuf[0] += domain.length;
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buffers.push(domain);
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break;
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}
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case 'SOA':
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{
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const mname = writeDomainName(rr.nsname);
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const rname = writeDomainName(rr.hostmaster);
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rdLengthBuf[0] = mname.length + rname.length + 20;
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buffers.push(mname, rname);
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buffers.push(new Uint32Array([
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rr.serial, rr.refresh, rr.retry, rr.expire, rr.minttl,
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]));
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break;
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}
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case 'CAA':
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{
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rdLengthBuf[0] = 5 + rr.issue.length + 2;
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buffers.push(Buffer.from([Number(rr.critical)]));
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buffers.push(Buffer.from([Number(5)]));
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buffers.push(Buffer.from('issue' + rr.issue));
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break;
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}
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default:
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throw new Error(`Unknown RR type ${rr.type}`);
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}
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}
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return Buffer.concat(buffers.map((typedArray) => {
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const buf = Buffer.from(typedArray.buffer,
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typedArray.byteOffset,
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typedArray.byteLength);
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if (os.endianness() === 'LE') {
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if (typedArray.BYTES_PER_ELEMENT === 2) buf.swap16();
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if (typedArray.BYTES_PER_ELEMENT === 4) buf.swap32();
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}
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return buf;
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}));
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}
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const mockedErrorCode = 'ENOTFOUND';
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const mockedSysCall = 'getaddrinfo';
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function errorLookupMock(code = mockedErrorCode, syscall = mockedSysCall) {
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return function lookupWithError(hostname, dnsopts, cb) {
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const err = new Error(`${syscall} ${code} ${hostname}`);
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err.code = code;
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err.errno = code;
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err.syscall = syscall;
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err.hostname = hostname;
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cb(err);
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};
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}
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module.exports = {
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types,
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classes,
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writeDNSPacket,
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parseDNSPacket,
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errorLookupMock,
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mockedErrorCode,
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mockedSysCall,
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};
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