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335 lines
7.6 KiB
Go
335 lines
7.6 KiB
Go
// Copyright (c) 2020 Tailscale Inc & AUTHORS All rights reserved.
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// Use of this source code is governed by a BSD-style
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// license that can be found in the LICENSE file.
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package resolver
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import (
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"fmt"
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"net"
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"net/netip"
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"strings"
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"testing"
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"github.com/miekg/dns"
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)
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// This file exists to isolate the test infrastructure
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// that depends on github.com/miekg/dns
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// from the rest, which only depends on dnsmessage.
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// resolveToIP returns a handler function which responds
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// to queries of type A it receives with an A record containing ipv4,
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// to queries of type AAAA with an AAAA record containing ipv6,
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// to queries of type NS with an NS record containing name.
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func resolveToIP(ipv4, ipv6 netip.Addr, ns string) dns.HandlerFunc {
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return func(w dns.ResponseWriter, req *dns.Msg) {
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m := new(dns.Msg)
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m.SetReply(req)
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if len(req.Question) != 1 {
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panic("not a single-question request")
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}
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question := req.Question[0]
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var ans dns.RR
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switch question.Qtype {
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case dns.TypeA:
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ans = &dns.A{
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Hdr: dns.RR_Header{
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Name: question.Name,
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Rrtype: dns.TypeA,
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Class: dns.ClassINET,
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},
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A: ipv4.AsSlice(),
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}
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case dns.TypeAAAA:
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ans = &dns.AAAA{
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Hdr: dns.RR_Header{
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Name: question.Name,
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Rrtype: dns.TypeAAAA,
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Class: dns.ClassINET,
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},
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AAAA: ipv6.AsSlice(),
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}
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case dns.TypeNS:
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ans = &dns.NS{
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Hdr: dns.RR_Header{
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Name: question.Name,
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Rrtype: dns.TypeNS,
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Class: dns.ClassINET,
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},
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Ns: ns,
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}
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}
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m.Answer = append(m.Answer, ans)
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w.WriteMsg(m)
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}
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}
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// resolveToIPLowercase returns a handler function which canonicalizes responses
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// by lowercasing the question and answer names, and responds
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// to queries of type A it receives with an A record containing ipv4,
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// to queries of type AAAA with an AAAA record containing ipv6,
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// to queries of type NS with an NS record containing name.
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func resolveToIPLowercase(ipv4, ipv6 netip.Addr, ns string) dns.HandlerFunc {
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return func(w dns.ResponseWriter, req *dns.Msg) {
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m := new(dns.Msg)
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m.SetReply(req)
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if len(req.Question) != 1 {
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panic("not a single-question request")
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}
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m.Question[0].Name = strings.ToLower(m.Question[0].Name)
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question := req.Question[0]
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var ans dns.RR
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switch question.Qtype {
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case dns.TypeA:
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ans = &dns.A{
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Hdr: dns.RR_Header{
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Name: question.Name,
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Rrtype: dns.TypeA,
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Class: dns.ClassINET,
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},
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A: ipv4.AsSlice(),
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}
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case dns.TypeAAAA:
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ans = &dns.AAAA{
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Hdr: dns.RR_Header{
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Name: question.Name,
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Rrtype: dns.TypeAAAA,
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Class: dns.ClassINET,
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},
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AAAA: ipv6.AsSlice(),
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}
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case dns.TypeNS:
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ans = &dns.NS{
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Hdr: dns.RR_Header{
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Name: question.Name,
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Rrtype: dns.TypeNS,
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Class: dns.ClassINET,
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},
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Ns: ns,
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}
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}
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m.Answer = append(m.Answer, ans)
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w.WriteMsg(m)
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}
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}
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// resolveToTXT returns a handler function which responds to queries of type TXT
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// it receives with the strings in txts.
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func resolveToTXT(txts []string, ednsMaxSize uint16) dns.HandlerFunc {
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return func(w dns.ResponseWriter, req *dns.Msg) {
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m := new(dns.Msg)
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m.SetReply(req)
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if len(req.Question) != 1 {
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panic("not a single-question request")
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}
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question := req.Question[0]
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if question.Qtype != dns.TypeTXT {
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w.WriteMsg(m)
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return
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}
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ans := &dns.TXT{
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Hdr: dns.RR_Header{
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Name: question.Name,
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Rrtype: dns.TypeTXT,
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Class: dns.ClassINET,
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},
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Txt: txts,
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}
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m.Answer = append(m.Answer, ans)
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queryInfo := &dns.TXT{
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Hdr: dns.RR_Header{
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Name: "query-info.test.",
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Rrtype: dns.TypeTXT,
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Class: dns.ClassINET,
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},
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}
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if edns := req.IsEdns0(); edns == nil {
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queryInfo.Txt = []string{"EDNS=false"}
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} else {
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queryInfo.Txt = []string{"EDNS=true", fmt.Sprintf("maxSize=%v", edns.UDPSize())}
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}
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m.Extra = append(m.Extra, queryInfo)
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if ednsMaxSize > 0 {
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m.SetEdns0(ednsMaxSize, false)
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}
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if err := w.WriteMsg(m); err != nil {
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panic(err)
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}
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}
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}
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var resolveToNXDOMAIN = dns.HandlerFunc(func(w dns.ResponseWriter, req *dns.Msg) {
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m := new(dns.Msg)
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m.SetRcode(req, dns.RcodeNameError)
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w.WriteMsg(m)
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})
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// weirdoGoCNAMEHandler returns a DNS handler that satisfies
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// Go's weird Resolver.LookupCNAME (read its godoc carefully!).
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//
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// This doesn't even return a CNAME record, because that's not
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// what Go looks for.
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func weirdoGoCNAMEHandler(target string) dns.HandlerFunc {
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return func(w dns.ResponseWriter, req *dns.Msg) {
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m := new(dns.Msg)
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m.SetReply(req)
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question := req.Question[0]
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switch question.Qtype {
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case dns.TypeA:
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m.Answer = append(m.Answer, &dns.CNAME{
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Hdr: dns.RR_Header{
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Name: target,
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Rrtype: dns.TypeCNAME,
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Class: dns.ClassINET,
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Ttl: 600,
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},
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Target: target,
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})
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case dns.TypeAAAA:
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m.Answer = append(m.Answer, &dns.AAAA{
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Hdr: dns.RR_Header{
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Name: target,
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Rrtype: dns.TypeAAAA,
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Class: dns.ClassINET,
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Ttl: 600,
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},
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AAAA: net.ParseIP("1::2"),
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})
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}
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w.WriteMsg(m)
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}
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}
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// dnsHandler returns a handler that replies with the answers/options
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// provided.
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//
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// Types supported: netip.Addr.
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func dnsHandler(answers ...any) dns.HandlerFunc {
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return func(w dns.ResponseWriter, req *dns.Msg) {
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m := new(dns.Msg)
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m.SetReply(req)
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if len(req.Question) != 1 {
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panic("not a single-question request")
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}
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m.RecursionAvailable = true // to stop net package's errLameReferral on empty replies
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question := req.Question[0]
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for _, a := range answers {
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switch a := a.(type) {
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default:
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panic(fmt.Sprintf("unsupported dnsHandler arg %T", a))
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case netip.Addr:
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ip := a
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if ip.Is4() {
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m.Answer = append(m.Answer, &dns.A{
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Hdr: dns.RR_Header{
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Name: question.Name,
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Rrtype: dns.TypeA,
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Class: dns.ClassINET,
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},
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A: ip.AsSlice(),
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})
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} else if ip.Is6() {
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m.Answer = append(m.Answer, &dns.AAAA{
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Hdr: dns.RR_Header{
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Name: question.Name,
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Rrtype: dns.TypeAAAA,
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Class: dns.ClassINET,
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},
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AAAA: ip.AsSlice(),
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})
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}
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case dns.PTR:
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ptr := a
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ptr.Hdr = dns.RR_Header{
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Name: question.Name,
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Rrtype: dns.TypePTR,
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Class: dns.ClassINET,
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}
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m.Answer = append(m.Answer, &ptr)
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case dns.CNAME:
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c := a
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c.Hdr = dns.RR_Header{
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Name: question.Name,
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Rrtype: dns.TypeCNAME,
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Class: dns.ClassINET,
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Ttl: 600,
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}
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m.Answer = append(m.Answer, &c)
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case dns.TXT:
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txt := a
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txt.Hdr = dns.RR_Header{
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Name: question.Name,
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Rrtype: dns.TypeTXT,
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Class: dns.ClassINET,
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}
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m.Answer = append(m.Answer, &txt)
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case dns.SRV:
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srv := a
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srv.Hdr = dns.RR_Header{
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Name: question.Name,
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Rrtype: dns.TypeSRV,
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Class: dns.ClassINET,
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}
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m.Answer = append(m.Answer, &srv)
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case dns.NS:
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rr := a
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rr.Hdr = dns.RR_Header{
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Name: question.Name,
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Rrtype: dns.TypeNS,
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Class: dns.ClassINET,
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}
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m.Answer = append(m.Answer, &rr)
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}
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}
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w.WriteMsg(m)
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}
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}
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func serveDNS(tb testing.TB, addr string, records ...any) *dns.Server {
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if len(records)%2 != 0 {
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panic("must have an even number of record values")
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}
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mux := dns.NewServeMux()
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for i := 0; i < len(records); i += 2 {
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name := records[i].(string)
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handler := records[i+1].(dns.Handler)
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mux.Handle(name, handler)
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}
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waitch := make(chan struct{})
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server := &dns.Server{
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Addr: addr,
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Net: "udp",
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Handler: mux,
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NotifyStartedFunc: func() { close(waitch) },
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ReusePort: true,
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}
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go func() {
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err := server.ListenAndServe()
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if err != nil {
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panic(fmt.Sprintf("ListenAndServe(%q): %v", addr, err))
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}
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}()
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<-waitch
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return server
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}
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