* Make CoreDNS a server type plugin for Caddy Remove code we don't need and port all middleware over. Fix all tests and rework the documentation. Also make `go generate` build a caddy binary which we then copy into our directory. This means `go build`-builds remain working as-is. And new etc instances in each etcd test for better isolation. Fix more tests and rework test.Server with the newer support Caddy offers. Fix Makefile to support new mode of operation.
250 lines
7.7 KiB
Go
250 lines
7.7 KiB
Go
package test
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import (
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"testing"
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"github.com/miekg/dns"
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"golang.org/x/net/context"
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)
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type Sect int
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const (
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Answer Sect = iota
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Ns
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Extra
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)
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type RRSet []dns.RR
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func (p RRSet) Len() int { return len(p) }
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func (p RRSet) Swap(i, j int) { p[i], p[j] = p[j], p[i] }
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func (p RRSet) Less(i, j int) bool { return p[i].String() < p[j].String() }
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// If the TTL of a record is 303 we don't care what the TTL is.
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type Case struct {
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Qname string
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Qtype uint16
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Rcode int
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Do bool
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Answer []dns.RR
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Ns []dns.RR
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Extra []dns.RR
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}
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func (c Case) Msg() *dns.Msg {
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m := new(dns.Msg)
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m.SetQuestion(dns.Fqdn(c.Qname), c.Qtype)
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if c.Do {
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o := new(dns.OPT)
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o.Hdr.Name = "."
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o.Hdr.Rrtype = dns.TypeOPT
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o.SetDo()
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o.SetUDPSize(4096)
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m.Extra = []dns.RR{o}
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}
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return m
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}
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func A(rr string) *dns.A { r, _ := dns.NewRR(rr); return r.(*dns.A) }
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func AAAA(rr string) *dns.AAAA { r, _ := dns.NewRR(rr); return r.(*dns.AAAA) }
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func CNAME(rr string) *dns.CNAME { r, _ := dns.NewRR(rr); return r.(*dns.CNAME) }
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func SRV(rr string) *dns.SRV { r, _ := dns.NewRR(rr); return r.(*dns.SRV) }
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func SOA(rr string) *dns.SOA { r, _ := dns.NewRR(rr); return r.(*dns.SOA) }
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func NS(rr string) *dns.NS { r, _ := dns.NewRR(rr); return r.(*dns.NS) }
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func PTR(rr string) *dns.PTR { r, _ := dns.NewRR(rr); return r.(*dns.PTR) }
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func TXT(rr string) *dns.TXT { r, _ := dns.NewRR(rr); return r.(*dns.TXT) }
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func MX(rr string) *dns.MX { r, _ := dns.NewRR(rr); return r.(*dns.MX) }
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func RRSIG(rr string) *dns.RRSIG { r, _ := dns.NewRR(rr); return r.(*dns.RRSIG) }
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func NSEC(rr string) *dns.NSEC { r, _ := dns.NewRR(rr); return r.(*dns.NSEC) }
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func DNSKEY(rr string) *dns.DNSKEY { r, _ := dns.NewRR(rr); return r.(*dns.DNSKEY) }
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func OPT(bufsize int, do bool) *dns.OPT {
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o := new(dns.OPT)
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o.Hdr.Name = "."
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o.Hdr.Rrtype = dns.TypeOPT
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o.SetVersion(0)
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o.SetUDPSize(uint16(bufsize))
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if do {
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o.SetDo()
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}
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return o
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}
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func Header(t *testing.T, tc Case, resp *dns.Msg) bool {
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if resp.Rcode != tc.Rcode {
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t.Errorf("rcode is %q, expected %q", dns.RcodeToString[resp.Rcode], dns.RcodeToString[tc.Rcode])
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return false
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}
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if len(resp.Answer) != len(tc.Answer) {
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t.Errorf("answer for %q contained %d results, %d expected", tc.Qname, len(resp.Answer), len(tc.Answer))
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return false
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}
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if len(resp.Ns) != len(tc.Ns) {
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t.Errorf("authority for %q contained %d results, %d expected", tc.Qname, len(resp.Ns), len(tc.Ns))
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return false
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}
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if len(resp.Extra) != len(tc.Extra) {
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t.Errorf("additional for %q contained %d results, %d expected", tc.Qname, len(resp.Extra), len(tc.Extra))
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return false
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}
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return true
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}
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func Section(t *testing.T, tc Case, sect Sect, rr []dns.RR) bool {
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section := []dns.RR{}
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switch sect {
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case 0:
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section = tc.Answer
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case 1:
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section = tc.Ns
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case 2:
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section = tc.Extra
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}
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for i, a := range rr {
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if a.Header().Name != section[i].Header().Name {
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t.Errorf("rr %d should have a Header Name of %q, but has %q", i, section[i].Header().Name, a.Header().Name)
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return false
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}
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// 303 signals: don't care what the ttl is.
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if section[i].Header().Ttl != 303 && a.Header().Ttl != section[i].Header().Ttl {
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if _, ok := section[i].(*dns.OPT); !ok {
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// we check edns0 bufize on this one
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t.Errorf("rr %d should have a Header TTL of %d, but has %d", i, section[i].Header().Ttl, a.Header().Ttl)
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return false
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}
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}
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if a.Header().Rrtype != section[i].Header().Rrtype {
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t.Errorf("rr %d should have a header rr type of %d, but has %d", i, section[i].Header().Rrtype, a.Header().Rrtype)
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return false
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}
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switch x := a.(type) {
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case *dns.SRV:
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if x.Priority != section[i].(*dns.SRV).Priority {
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t.Errorf("rr %d should have a Priority of %d, but has %d", i, section[i].(*dns.SRV).Priority, x.Priority)
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return false
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}
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if x.Weight != section[i].(*dns.SRV).Weight {
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t.Errorf("rr %d should have a Weight of %d, but has %d", i, section[i].(*dns.SRV).Weight, x.Weight)
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return false
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}
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if x.Port != section[i].(*dns.SRV).Port {
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t.Errorf("rr %d should have a Port of %d, but has %d", i, section[i].(*dns.SRV).Port, x.Port)
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return false
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}
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if x.Target != section[i].(*dns.SRV).Target {
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t.Errorf("rr %d should have a Target of %q, but has %q", i, section[i].(*dns.SRV).Target, x.Target)
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return false
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}
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case *dns.RRSIG:
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if x.TypeCovered != section[i].(*dns.RRSIG).TypeCovered {
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t.Errorf("rr %d should have a TypeCovered of %d, but has %d", i, section[i].(*dns.RRSIG).TypeCovered, x.TypeCovered)
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return false
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}
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if x.Labels != section[i].(*dns.RRSIG).Labels {
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t.Errorf("rr %d should have a Labels of %d, but has %d", i, section[i].(*dns.RRSIG).Labels, x.Labels)
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return false
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}
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if x.SignerName != section[i].(*dns.RRSIG).SignerName {
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t.Errorf("rr %d should have a SignerName of %d, but has %d", i, section[i].(*dns.RRSIG).SignerName, x.SignerName)
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return false
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}
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case *dns.NSEC:
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if x.NextDomain != section[i].(*dns.NSEC).NextDomain {
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t.Errorf("rr %d should have a NextDomain of %d, but has %d", i, section[i].(*dns.NSEC).NextDomain, x.NextDomain)
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return false
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}
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// TypeBitMap
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case *dns.A:
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if x.A.String() != section[i].(*dns.A).A.String() {
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t.Errorf("rr %d should have a Address of %q, but has %q", i, section[i].(*dns.A).A.String(), x.A.String())
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return false
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}
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case *dns.AAAA:
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if x.AAAA.String() != section[i].(*dns.AAAA).AAAA.String() {
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t.Errorf("rr %d should have a Address of %q, but has %q", i, section[i].(*dns.AAAA).AAAA.String(), x.AAAA.String())
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return false
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}
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case *dns.TXT:
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for j, txt := range x.Txt {
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if txt != section[i].(*dns.TXT).Txt[j] {
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t.Errorf("rr %d should have a Txt of %q, but has %q", i, section[i].(*dns.TXT).Txt[j], txt)
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return false
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}
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}
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case *dns.SOA:
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tt := section[i].(*dns.SOA)
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if x.Ns != tt.Ns {
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t.Errorf("SOA nameserver should be %q, but is %q", x.Ns, tt.Ns)
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return false
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}
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case *dns.PTR:
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tt := section[i].(*dns.PTR)
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if x.Ptr != tt.Ptr {
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t.Errorf("PTR ptr should be %q, but is %q", x.Ptr, tt.Ptr)
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return false
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}
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case *dns.CNAME:
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tt := section[i].(*dns.CNAME)
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if x.Target != tt.Target {
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t.Errorf("CNAME target should be %q, but is %q", x.Target, tt.Target)
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return false
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}
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case *dns.MX:
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tt := section[i].(*dns.MX)
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if x.Mx != tt.Mx {
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t.Errorf("MX Mx should be %q, but is %q", x.Mx, tt.Mx)
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return false
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}
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if x.Preference != tt.Preference {
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t.Errorf("MX Preference should be %q, but is %q", x.Preference, tt.Preference)
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return false
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}
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case *dns.NS:
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tt := section[i].(*dns.NS)
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if x.Ns != tt.Ns {
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t.Errorf("NS nameserver should be %q, but is %q", x.Ns, tt.Ns)
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return false
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}
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case *dns.OPT:
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tt := section[i].(*dns.OPT)
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if x.UDPSize() != tt.UDPSize() {
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t.Errorf("OPT UDPSize should be %d, but is %d", tt.UDPSize(), x.UDPSize())
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return false
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}
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if x.Do() != tt.Do() {
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t.Errorf("OPT DO should be %t, but is %t", tt.Do(), x.Do())
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return false
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}
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}
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}
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return true
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}
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func ErrorHandler() Handler {
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return HandlerFunc(func(ctx context.Context, w dns.ResponseWriter, r *dns.Msg) (int, error) {
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m := new(dns.Msg)
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m.SetRcode(r, dns.RcodeServerFailure)
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w.WriteMsg(m)
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return dns.RcodeServerFailure, nil
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})
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}
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// Copied here to prevent an import cycle.
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type (
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// HandlerFunc is a convenience type like dns.HandlerFunc, except
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// ServeDNS returns an rcode and an error.
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HandlerFunc func(context.Context, dns.ResponseWriter, *dns.Msg) (int, error)
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Handler interface {
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ServeDNS(context.Context, dns.ResponseWriter, *dns.Msg) (int, error)
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}
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)
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// ServeDNS implements the Handler interface.
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func (f HandlerFunc) ServeDNS(ctx context.Context, w dns.ResponseWriter, r *dns.Msg) (int, error) {
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return f(ctx, w, r)
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}
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