Add DoT and TCP DNS Client Example (#10256)
Motivation: [DNS-over-TLS (DoT)](https://tools.ietf.org/html/rfc7858.html) encrypts DNS queries and sends it over TLS connection to make sure queries are secure in transit. [TCP DNS](https://tools.ietf.org/html/rfc7766) sends DNS queries over TCP connection (unencrypted). Modification: Add DNS-over-TLS (DoT) Client Example which uses TLSv1.2 and TLSv1.3. Add TCP DNS Client Example Result: DNS-over-TLS (DoT) Client Example TCP DNS Client Example
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example/src/main/java/io/netty/example/dns/dot/DoTClient.java
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example/src/main/java/io/netty/example/dns/dot/DoTClient.java
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/*
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* Copyright 2020 The Netty Project
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*
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* The Netty Project licenses this file to you under the Apache License,
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* version 2.0 (the "License"); you may not use this file except in compliance
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* with the License. You may obtain a copy of the License at:
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*
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* http://www.apache.org/licenses/LICENSE-2.0
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*
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* Unless required by applicable law or agreed to in writing, software
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* distributed under the License is distributed on an "AS IS" BASIS, WITHOUT
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* WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. See the
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* License for the specific language governing permissions and limitations
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* under the License.
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*/
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package io.netty.example.dns.dot;
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import io.netty.bootstrap.Bootstrap;
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import io.netty.buffer.ByteBufUtil;
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import io.netty.channel.Channel;
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import io.netty.channel.ChannelInitializer;
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import io.netty.channel.ChannelHandlerContext;
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import io.netty.channel.ChannelPipeline;
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import io.netty.channel.EventLoopGroup;
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import io.netty.channel.nio.NioEventLoopGroup;
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import io.netty.channel.socket.SocketChannel;
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import io.netty.channel.socket.nio.NioSocketChannel;
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import io.netty.channel.SimpleChannelInboundHandler;
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import io.netty.handler.codec.dns.DefaultDnsQuestion;
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import io.netty.handler.codec.dns.DefaultDnsResponse;
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import io.netty.handler.codec.dns.DnsQuestion;
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import io.netty.handler.codec.dns.DnsQuery;
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import io.netty.handler.codec.dns.DefaultDnsQuery;
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import io.netty.handler.codec.dns.DnsOpCode;
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import io.netty.handler.codec.dns.DnsRecord;
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import io.netty.handler.codec.dns.DnsSection;
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import io.netty.handler.codec.dns.DnsRecordType;
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import io.netty.handler.codec.dns.DnsRawRecord;
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import io.netty.handler.codec.dns.TcpDnsQueryEncoder;
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import io.netty.handler.codec.dns.TcpDnsResponseDecoder;
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import io.netty.handler.ssl.SslContext;
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import io.netty.handler.ssl.SslContextBuilder;
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import io.netty.util.NetUtil;
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import java.util.Random;
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import java.util.concurrent.TimeUnit;
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public final class DoTClient {
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private static final String QUERY_DOMAIN = "www.example.com";
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private static final int DNS_SERVER_PORT = 853;
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private static final String DNS_SERVER_HOST = "8.8.8.8";
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private DoTClient() {
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}
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private static void handleQueryResp(DefaultDnsResponse msg) {
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if (msg.count(DnsSection.QUESTION) > 0) {
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DnsQuestion question = msg.recordAt(DnsSection.QUESTION, 0);
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System.out.printf("name: %s%n", question.name());
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}
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for (int i = 0, count = msg.count(DnsSection.ANSWER); i < count; i++) {
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DnsRecord record = msg.recordAt(DnsSection.ANSWER, i);
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if (record.type() == DnsRecordType.A) {
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//just print the IP after query
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DnsRawRecord raw = (DnsRawRecord) record;
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System.out.println(NetUtil.bytesToIpAddress(ByteBufUtil.getBytes(raw.content())));
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}
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}
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}
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public static void main(String[] args) throws Exception {
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EventLoopGroup group = new NioEventLoopGroup();
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try {
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final SslContext sslContext = SslContextBuilder.forClient()
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.protocols("TLSv1.3", "TLSv1.2")
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.build();
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Bootstrap b = new Bootstrap();
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b.group(group)
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.channel(NioSocketChannel.class)
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.handler(new ChannelInitializer<SocketChannel>() {
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@Override
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protected void initChannel(SocketChannel ch) {
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ChannelPipeline p = ch.pipeline();
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p.addLast(sslContext.newHandler(ch.alloc(), DNS_SERVER_HOST, DNS_SERVER_PORT))
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.addLast(new TcpDnsQueryEncoder())
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.addLast(new TcpDnsResponseDecoder())
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.addLast(new SimpleChannelInboundHandler<DefaultDnsResponse>() {
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@Override
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protected void messageReceived(
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ChannelHandlerContext ctx, DefaultDnsResponse msg) {
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try {
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handleQueryResp(msg);
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} finally {
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ctx.close();
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}
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}
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});
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}
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});
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final Channel ch = b.connect(DNS_SERVER_HOST, DNS_SERVER_PORT).sync().channel();
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int randomID = new Random().nextInt(60000 - 1000) + 1000;
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DnsQuery query = new DefaultDnsQuery(randomID, DnsOpCode.QUERY)
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.setRecord(DnsSection.QUESTION, new DefaultDnsQuestion(QUERY_DOMAIN, DnsRecordType.A));
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ch.writeAndFlush(query).sync();
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boolean success = ch.closeFuture().await(10, TimeUnit.SECONDS);
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if (!success) {
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System.err.println("dns query timeout!");
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ch.close().sync();
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}
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} finally {
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group.shutdownGracefully();
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}
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}
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}
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example/src/main/java/io/netty/example/dns/tcp/TcpDnsClient.java
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example/src/main/java/io/netty/example/dns/tcp/TcpDnsClient.java
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/*
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* Copyright 2020 The Netty Project
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*
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* The Netty Project licenses this file to you under the Apache License,
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* version 2.0 (the "License"); you may not use this file except in compliance
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* with the License. You may obtain a copy of the License at:
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*
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* http://www.apache.org/licenses/LICENSE-2.0
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*
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* Unless required by applicable law or agreed to in writing, software
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* distributed under the License is distributed on an "AS IS" BASIS, WITHOUT
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* WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. See the
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* License for the specific language governing permissions and limitations
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* under the License.
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*/
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package io.netty.example.dns.tcp;
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import io.netty.bootstrap.Bootstrap;
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import io.netty.buffer.ByteBufUtil;
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import io.netty.channel.Channel;
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import io.netty.channel.ChannelInitializer;
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import io.netty.channel.ChannelHandlerContext;
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import io.netty.channel.ChannelPipeline;
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import io.netty.channel.EventLoopGroup;
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import io.netty.channel.nio.NioEventLoopGroup;
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import io.netty.channel.socket.SocketChannel;
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import io.netty.channel.socket.nio.NioSocketChannel;
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import io.netty.channel.SimpleChannelInboundHandler;
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import io.netty.handler.codec.dns.DefaultDnsQuestion;
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import io.netty.handler.codec.dns.DefaultDnsResponse;
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import io.netty.handler.codec.dns.DnsQuestion;
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import io.netty.handler.codec.dns.DnsQuery;
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import io.netty.handler.codec.dns.DefaultDnsQuery;
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import io.netty.handler.codec.dns.DnsOpCode;
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import io.netty.handler.codec.dns.DnsRecord;
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import io.netty.handler.codec.dns.DnsSection;
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import io.netty.handler.codec.dns.DnsRecordType;
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import io.netty.handler.codec.dns.DnsRawRecord;
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import io.netty.handler.codec.dns.TcpDnsQueryEncoder;
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import io.netty.handler.codec.dns.TcpDnsResponseDecoder;
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import io.netty.util.NetUtil;
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import java.util.Random;
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import java.util.concurrent.TimeUnit;
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public final class TcpDnsClient {
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private static final String QUERY_DOMAIN = "www.example.com";
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private static final int DNS_SERVER_PORT = 53;
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private static final String DNS_SERVER_HOST = "8.8.8.8";
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private TcpDnsClient() {
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}
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private static void handleQueryResp(DefaultDnsResponse msg) {
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if (msg.count(DnsSection.QUESTION) > 0) {
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DnsQuestion question = msg.recordAt(DnsSection.QUESTION, 0);
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System.out.printf("name: %s%n", question.name());
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}
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for (int i = 0, count = msg.count(DnsSection.ANSWER); i < count; i++) {
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DnsRecord record = msg.recordAt(DnsSection.ANSWER, i);
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if (record.type() == DnsRecordType.A) {
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//just print the IP after query
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DnsRawRecord raw = (DnsRawRecord) record;
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System.out.println(NetUtil.bytesToIpAddress(ByteBufUtil.getBytes(raw.content())));
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}
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}
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}
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public static void main(String[] args) throws Exception {
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EventLoopGroup group = new NioEventLoopGroup();
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try {
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Bootstrap b = new Bootstrap();
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b.group(group)
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.channel(NioSocketChannel.class)
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.handler(new ChannelInitializer<SocketChannel>() {
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@Override
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protected void initChannel(SocketChannel ch) {
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ChannelPipeline p = ch.pipeline();
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p.addLast(new TcpDnsQueryEncoder())
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.addLast(new TcpDnsResponseDecoder())
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.addLast(new SimpleChannelInboundHandler<DefaultDnsResponse>() {
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@Override
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protected void messageReceived(
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ChannelHandlerContext ctx, DefaultDnsResponse msg) {
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try {
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handleQueryResp(msg);
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} finally {
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ctx.close();
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}
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}
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});
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}
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});
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final Channel ch = b.connect(DNS_SERVER_HOST, DNS_SERVER_PORT).sync().channel();
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int randomID = new Random().nextInt(60000 - 1000) + 1000;
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DnsQuery query = new DefaultDnsQuery(randomID, DnsOpCode.QUERY)
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.setRecord(DnsSection.QUESTION, new DefaultDnsQuestion(QUERY_DOMAIN, DnsRecordType.A));
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ch.writeAndFlush(query).sync();
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boolean success = ch.closeFuture().await(10, TimeUnit.SECONDS);
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if (!success) {
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System.err.println("dns query timeout!");
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ch.close().sync();
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}
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} finally {
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group.shutdownGracefully();
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}
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}
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}
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