329 lines
11 KiB
Go
329 lines
11 KiB
Go
package test
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import (
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"context"
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"fmt"
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"sort"
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"github.com/miekg/dns"
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)
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type sect int
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const (
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// Answer is the answer section in an Msg.
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Answer sect = iota
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// Ns is the authoritative section in an Msg.
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Ns
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// Extra is the additional section in an Msg.
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Extra
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)
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// RRSet represents a list of RRs.
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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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// Case represents a test case that encapsulates various data from a query and response.
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// Note that is the TTL of a record is 303 we don't compare it with the TTL.
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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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AuthenticatedData 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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Error error
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}
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// Msg returns a *dns.Msg embedded in c.
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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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// A returns an A record from rr. It panics on errors.
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func A(rr string) *dns.A { r, _ := dns.NewRR(rr); return r.(*dns.A) }
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// AAAA returns an AAAA record from rr. It panics on errors.
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func AAAA(rr string) *dns.AAAA { r, _ := dns.NewRR(rr); return r.(*dns.AAAA) }
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// CNAME returns a CNAME record from rr. It panics on errors.
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func CNAME(rr string) *dns.CNAME { r, _ := dns.NewRR(rr); return r.(*dns.CNAME) }
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// DNAME returns a DNAME record from rr. It panics on errors.
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func DNAME(rr string) *dns.DNAME { r, _ := dns.NewRR(rr); return r.(*dns.DNAME) }
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// SRV returns a SRV record from rr. It panics on errors.
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func SRV(rr string) *dns.SRV { r, _ := dns.NewRR(rr); return r.(*dns.SRV) }
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// SOA returns a SOA record from rr. It panics on errors.
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func SOA(rr string) *dns.SOA { r, _ := dns.NewRR(rr); return r.(*dns.SOA) }
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// NS returns an NS record from rr. It panics on errors.
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func NS(rr string) *dns.NS { r, _ := dns.NewRR(rr); return r.(*dns.NS) }
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// PTR returns a PTR record from rr. It panics on errors.
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func PTR(rr string) *dns.PTR { r, _ := dns.NewRR(rr); return r.(*dns.PTR) }
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// TXT returns a TXT record from rr. It panics on errors.
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func TXT(rr string) *dns.TXT { r, _ := dns.NewRR(rr); return r.(*dns.TXT) }
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// CAA returns a CAA record from rr. It panics on errors.
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func CAA(rr string) *dns.CAA { r, _ := dns.NewRR(rr); return r.(*dns.CAA) }
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// HINFO returns a HINFO record from rr. It panics on errors.
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func HINFO(rr string) *dns.HINFO { r, _ := dns.NewRR(rr); return r.(*dns.HINFO) }
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// MX returns an MX record from rr. It panics on errors.
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func MX(rr string) *dns.MX { r, _ := dns.NewRR(rr); return r.(*dns.MX) }
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// RRSIG returns an RRSIG record from rr. It panics on errors.
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func RRSIG(rr string) *dns.RRSIG { r, _ := dns.NewRR(rr); return r.(*dns.RRSIG) }
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// NSEC returns an NSEC record from rr. It panics on errors.
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func NSEC(rr string) *dns.NSEC { r, _ := dns.NewRR(rr); return r.(*dns.NSEC) }
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// DNSKEY returns a DNSKEY record from rr. It panics on errors.
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func DNSKEY(rr string) *dns.DNSKEY { r, _ := dns.NewRR(rr); return r.(*dns.DNSKEY) }
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// DS returns a DS record from rr. It panics on errors.
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func DS(rr string) *dns.DS { r, _ := dns.NewRR(rr); return r.(*dns.DS) }
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// NAPTR returns a NAPTR record from rr. It panics on errors.
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func NAPTR(rr string) *dns.NAPTR { r, _ := dns.NewRR(rr); return r.(*dns.NAPTR) }
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// OPT returns an OPT record with UDP buffer size set to bufsize and the DO bit set to do.
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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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// Header tests if the header in resp matches the header as defined in tc.
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func Header(tc Case, resp *dns.Msg) error {
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if resp.Rcode != tc.Rcode {
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return fmt.Errorf("rcode is %q, expected %q", dns.RcodeToString[resp.Rcode], dns.RcodeToString[tc.Rcode])
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}
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if len(resp.Answer) != len(tc.Answer) {
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return fmt.Errorf("answer for %q contained %d results, %d expected", tc.Qname, len(resp.Answer), len(tc.Answer))
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}
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if len(resp.Ns) != len(tc.Ns) {
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return fmt.Errorf("authority for %q contained %d results, %d expected", tc.Qname, len(resp.Ns), len(tc.Ns))
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}
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if len(resp.Extra) != len(tc.Extra) {
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return fmt.Errorf("additional for %q contained %d results, %d expected", tc.Qname, len(resp.Extra), len(tc.Extra))
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}
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return nil
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}
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// Section tests if the section in tc matches rr.
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func Section(tc Case, sec sect, rr []dns.RR) error {
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section := []dns.RR{}
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switch sec {
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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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return fmt.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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}
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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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return fmt.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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}
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}
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if a.Header().Rrtype != section[i].Header().Rrtype {
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return fmt.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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}
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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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return fmt.Errorf("RR %d should have a Priority of %d, but has %d", i, section[i].(*dns.SRV).Priority, x.Priority)
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}
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if x.Weight != section[i].(*dns.SRV).Weight {
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return fmt.Errorf("RR %d should have a Weight of %d, but has %d", i, section[i].(*dns.SRV).Weight, x.Weight)
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}
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if x.Port != section[i].(*dns.SRV).Port {
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return fmt.Errorf("RR %d should have a Port of %d, but has %d", i, section[i].(*dns.SRV).Port, x.Port)
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}
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if x.Target != section[i].(*dns.SRV).Target {
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return fmt.Errorf("RR %d should have a Target of %q, but has %q", i, section[i].(*dns.SRV).Target, x.Target)
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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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return fmt.Errorf("RR %d should have a TypeCovered of %d, but has %d", i, section[i].(*dns.RRSIG).TypeCovered, x.TypeCovered)
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}
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if x.Labels != section[i].(*dns.RRSIG).Labels {
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return fmt.Errorf("RR %d should have a Labels of %d, but has %d", i, section[i].(*dns.RRSIG).Labels, x.Labels)
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}
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if x.SignerName != section[i].(*dns.RRSIG).SignerName {
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return fmt.Errorf("RR %d should have a SignerName of %s, but has %s", i, section[i].(*dns.RRSIG).SignerName, x.SignerName)
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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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return fmt.Errorf("RR %d should have a NextDomain of %s, but has %s", i, section[i].(*dns.NSEC).NextDomain, x.NextDomain)
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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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return fmt.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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}
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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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return fmt.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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}
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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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return fmt.Errorf("RR %d should have a Txt of %q, but has %q", i, section[i].(*dns.TXT).Txt[j], txt)
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}
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}
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case *dns.HINFO:
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if x.Cpu != section[i].(*dns.HINFO).Cpu {
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return fmt.Errorf("RR %d should have a Cpu of %s, but has %s", i, section[i].(*dns.HINFO).Cpu, x.Cpu)
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}
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if x.Os != section[i].(*dns.HINFO).Os {
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return fmt.Errorf("RR %d should have a Os of %s, but has %s", i, section[i].(*dns.HINFO).Os, x.Os)
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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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return fmt.Errorf("SOA nameserver should be %q, but is %q", tt.Ns, x.Ns)
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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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return fmt.Errorf("PTR ptr should be %q, but is %q", tt.Ptr, x.Ptr)
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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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return fmt.Errorf("CNAME target should be %q, but is %q", tt.Target, x.Target)
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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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return fmt.Errorf("MX Mx should be %q, but is %q", tt.Mx, x.Mx)
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}
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if x.Preference != tt.Preference {
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return fmt.Errorf("MX Preference should be %q, but is %q", tt.Preference, x.Preference)
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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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return fmt.Errorf("NS nameserver should be %q, but is %q", tt.Ns, x.Ns)
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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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return fmt.Errorf("OPT UDPSize should be %d, but is %d", tt.UDPSize(), x.UDPSize())
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}
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if x.Do() != tt.Do() {
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return fmt.Errorf("OPT DO should be %t, but is %t", tt.Do(), x.Do())
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}
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}
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}
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return nil
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}
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// CNAMEOrder makes sure that CNAMES do not appear after their target records.
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func CNAMEOrder(res *dns.Msg) error {
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for i, c := range res.Answer {
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if c.Header().Rrtype != dns.TypeCNAME {
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continue
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}
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for _, a := range res.Answer[:i] {
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if a.Header().Name != c.(*dns.CNAME).Target {
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continue
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}
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return fmt.Errorf("CNAME found after target record")
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}
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}
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return nil
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}
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// SortAndCheck sorts resp and the checks the header and three sections against the testcase in tc.
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func SortAndCheck(resp *dns.Msg, tc Case) error {
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sort.Sort(RRSet(resp.Answer))
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sort.Sort(RRSet(resp.Ns))
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sort.Sort(RRSet(resp.Extra))
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if err := Header(tc, resp); err != nil {
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return err
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}
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if err := Section(tc, Answer, resp.Answer); err != nil {
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return err
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}
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if err := Section(tc, Ns, resp.Ns); err != nil {
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return err
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}
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return Section(tc, Extra, resp.Extra)
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}
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// ErrorHandler returns a Handler that returns ServerFailure error when called.
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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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// NextHandler returns a Handler that returns rcode and err.
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func NextHandler(rcode int, err error) Handler {
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return HandlerFunc(func(ctx context.Context, w dns.ResponseWriter, r *dns.Msg) (int, error) {
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return rcode, err
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})
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}
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// Copied here to prevent an import cycle, so that we can define to above handlers.
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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 defines a plugin.
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Handler interface {
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ServeDNS(context.Context, dns.ResponseWriter, *dns.Msg) (int, error)
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Name() string
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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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// Name implements the Handler interface.
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func (f HandlerFunc) Name() string { return "handlerfunc" }
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