321 lines
10 KiB
Go
321 lines
10 KiB
Go
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package dns
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import (
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"bytes"
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"encoding/hex"
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"net"
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"testing"
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)
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func TestPackUnpack(t *testing.T) {
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out := new(Msg)
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out.Answer = make([]RR, 1)
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key := new(DNSKEY)
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key = &DNSKEY{Flags: 257, Protocol: 3, Algorithm: RSASHA1}
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key.Hdr = RR_Header{Name: "miek.nl.", Rrtype: TypeDNSKEY, Class: ClassINET, Ttl: 3600}
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key.PublicKey = "AwEAAaHIwpx3w4VHKi6i1LHnTaWeHCL154Jug0Rtc9ji5qwPXpBo6A5sRv7cSsPQKPIwxLpyCrbJ4mr2L0EPOdvP6z6YfljK2ZmTbogU9aSU2fiq/4wjxbdkLyoDVgtO+JsxNN4bjr4WcWhsmk1Hg93FV9ZpkWb0Tbad8DFqNDzr//kZ"
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out.Answer[0] = key
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msg, err := out.Pack()
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if err != nil {
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t.Error("failed to pack msg with DNSKEY")
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}
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in := new(Msg)
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if in.Unpack(msg) != nil {
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t.Error("failed to unpack msg with DNSKEY")
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}
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sig := new(RRSIG)
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sig = &RRSIG{TypeCovered: TypeDNSKEY, Algorithm: RSASHA1, Labels: 2,
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OrigTtl: 3600, Expiration: 4000, Inception: 4000, KeyTag: 34641, SignerName: "miek.nl.",
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Signature: "AwEAAaHIwpx3w4VHKi6i1LHnTaWeHCL154Jug0Rtc9ji5qwPXpBo6A5sRv7cSsPQKPIwxLpyCrbJ4mr2L0EPOdvP6z6YfljK2ZmTbogU9aSU2fiq/4wjxbdkLyoDVgtO+JsxNN4bjr4WcWhsmk1Hg93FV9ZpkWb0Tbad8DFqNDzr//kZ"}
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sig.Hdr = RR_Header{Name: "miek.nl.", Rrtype: TypeRRSIG, Class: ClassINET, Ttl: 3600}
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out.Answer[0] = sig
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msg, err = out.Pack()
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if err != nil {
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t.Error("failed to pack msg with RRSIG")
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}
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if in.Unpack(msg) != nil {
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t.Error("failed to unpack msg with RRSIG")
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}
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}
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func TestPackUnpack2(t *testing.T) {
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m := new(Msg)
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m.Extra = make([]RR, 1)
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m.Answer = make([]RR, 1)
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dom := "miek.nl."
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rr := new(A)
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rr.Hdr = RR_Header{Name: dom, Rrtype: TypeA, Class: ClassINET, Ttl: 0}
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rr.A = net.IPv4(127, 0, 0, 1)
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x := new(TXT)
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x.Hdr = RR_Header{Name: dom, Rrtype: TypeTXT, Class: ClassINET, Ttl: 0}
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x.Txt = []string{"heelalaollo"}
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m.Extra[0] = x
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m.Answer[0] = rr
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_, err := m.Pack()
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if err != nil {
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t.Error("Packing failed: ", err)
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return
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}
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}
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func TestPackUnpack3(t *testing.T) {
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m := new(Msg)
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m.Extra = make([]RR, 2)
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m.Answer = make([]RR, 1)
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dom := "miek.nl."
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rr := new(A)
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rr.Hdr = RR_Header{Name: dom, Rrtype: TypeA, Class: ClassINET, Ttl: 0}
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rr.A = net.IPv4(127, 0, 0, 1)
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x1 := new(TXT)
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x1.Hdr = RR_Header{Name: dom, Rrtype: TypeTXT, Class: ClassINET, Ttl: 0}
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x1.Txt = []string{}
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x2 := new(TXT)
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x2.Hdr = RR_Header{Name: dom, Rrtype: TypeTXT, Class: ClassINET, Ttl: 0}
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x2.Txt = []string{"heelalaollo"}
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m.Extra[0] = x1
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m.Extra[1] = x2
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m.Answer[0] = rr
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b, err := m.Pack()
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if err != nil {
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t.Error("packing failed: ", err)
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return
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}
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var unpackMsg Msg
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err = unpackMsg.Unpack(b)
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if err != nil {
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t.Error("unpacking failed")
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return
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}
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}
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func TestBailiwick(t *testing.T) {
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yes := map[string]string{
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"miek1.nl": "miek1.nl",
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"miek.nl": "ns.miek.nl",
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".": "miek.nl",
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}
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for parent, child := range yes {
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if !IsSubDomain(parent, child) {
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t.Errorf("%s should be child of %s", child, parent)
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t.Errorf("comparelabels %d", CompareDomainName(parent, child))
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t.Errorf("lenlabels %d %d", CountLabel(parent), CountLabel(child))
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}
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}
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no := map[string]string{
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"www.miek.nl": "ns.miek.nl",
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"m\\.iek.nl": "ns.miek.nl",
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"w\\.iek.nl": "w.iek.nl",
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"p\\\\.iek.nl": "ns.p.iek.nl", // p\\.iek.nl , literal \ in domain name
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"miek.nl": ".",
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}
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for parent, child := range no {
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if IsSubDomain(parent, child) {
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t.Errorf("%s should not be child of %s", child, parent)
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t.Errorf("comparelabels %d", CompareDomainName(parent, child))
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t.Errorf("lenlabels %d %d", CountLabel(parent), CountLabel(child))
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}
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}
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}
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func TestPackNAPTR(t *testing.T) {
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for _, n := range []string{
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`apple.com. IN NAPTR 100 50 "se" "SIP+D2U" "" _sip._udp.apple.com.`,
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`apple.com. IN NAPTR 90 50 "se" "SIP+D2T" "" _sip._tcp.apple.com.`,
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`apple.com. IN NAPTR 50 50 "se" "SIPS+D2T" "" _sips._tcp.apple.com.`,
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} {
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rr := testRR(n)
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msg := make([]byte, rr.len())
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if off, err := PackRR(rr, msg, 0, nil, false); err != nil {
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t.Errorf("packing failed: %v", err)
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t.Errorf("length %d, need more than %d", rr.len(), off)
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}
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}
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}
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func TestToRFC3597(t *testing.T) {
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a := testRR("miek.nl. IN A 10.0.1.1")
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x := new(RFC3597)
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x.ToRFC3597(a)
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if x.String() != `miek.nl. 3600 CLASS1 TYPE1 \# 4 0a000101` {
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t.Errorf("string mismatch, got: %s", x)
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}
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b := testRR("miek.nl. IN MX 10 mx.miek.nl.")
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x.ToRFC3597(b)
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if x.String() != `miek.nl. 3600 CLASS1 TYPE15 \# 14 000a026d78046d69656b026e6c00` {
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t.Errorf("string mismatch, got: %s", x)
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}
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}
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func TestNoRdataPack(t *testing.T) {
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data := make([]byte, 1024)
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for typ, fn := range TypeToRR {
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r := fn()
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*r.Header() = RR_Header{Name: "miek.nl.", Rrtype: typ, Class: ClassINET, Ttl: 16}
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_, err := PackRR(r, data, 0, nil, false)
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if err != nil {
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t.Errorf("failed to pack RR with zero rdata: %s: %v", TypeToString[typ], err)
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}
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}
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}
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func TestNoRdataUnpack(t *testing.T) {
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data := make([]byte, 1024)
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for typ, fn := range TypeToRR {
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if typ == TypeSOA || typ == TypeTSIG || typ == TypeTKEY {
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// SOA, TSIG will not be seen (like this) in dyn. updates?
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// TKEY requires length fields to be present for the Key and OtherData fields
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continue
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}
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r := fn()
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*r.Header() = RR_Header{Name: "miek.nl.", Rrtype: typ, Class: ClassINET, Ttl: 16}
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off, err := PackRR(r, data, 0, nil, false)
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if err != nil {
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// Should always works, TestNoDataPack should have caught this
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t.Errorf("failed to pack RR: %v", err)
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continue
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}
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if _, _, err := UnpackRR(data[:off], 0); err != nil {
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t.Errorf("failed to unpack RR with zero rdata: %s: %v", TypeToString[typ], err)
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}
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}
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}
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func TestRdataOverflow(t *testing.T) {
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rr := new(RFC3597)
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rr.Hdr.Name = "."
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rr.Hdr.Class = ClassINET
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rr.Hdr.Rrtype = 65280
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rr.Rdata = hex.EncodeToString(make([]byte, 0xFFFF))
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buf := make([]byte, 0xFFFF*2)
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if _, err := PackRR(rr, buf, 0, nil, false); err != nil {
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t.Fatalf("maximum size rrdata pack failed: %v", err)
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}
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rr.Rdata += "00"
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if _, err := PackRR(rr, buf, 0, nil, false); err != ErrRdata {
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t.Fatalf("oversize rrdata pack didn't return ErrRdata - instead: %v", err)
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}
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}
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func TestCopy(t *testing.T) {
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rr := testRR("miek.nl. 2311 IN A 127.0.0.1") // Weird TTL to avoid catching TTL
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rr1 := Copy(rr)
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if rr.String() != rr1.String() {
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t.Fatalf("Copy() failed %s != %s", rr.String(), rr1.String())
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}
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}
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func TestMsgCopy(t *testing.T) {
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m := new(Msg)
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m.SetQuestion("miek.nl.", TypeA)
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rr := testRR("miek.nl. 2311 IN A 127.0.0.1")
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m.Answer = []RR{rr}
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rr = testRR("miek.nl. 2311 IN NS 127.0.0.1")
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m.Ns = []RR{rr}
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m1 := m.Copy()
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if m.String() != m1.String() {
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t.Fatalf("Msg.Copy() failed %s != %s", m.String(), m1.String())
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}
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m1.Answer[0] = testRR("somethingelse.nl. 2311 IN A 127.0.0.1")
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if m.String() == m1.String() {
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t.Fatalf("Msg.Copy() failed; change to copy changed template %s", m.String())
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}
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rr = testRR("miek.nl. 2311 IN A 127.0.0.2")
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m1.Answer = append(m1.Answer, rr)
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if m1.Ns[0].String() == m1.Answer[1].String() {
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t.Fatalf("Msg.Copy() failed; append changed underlying array %s", m1.Ns[0].String())
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}
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}
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func TestMsgPackBuffer(t *testing.T) {
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var testMessages = []string{
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// news.ycombinator.com.in.escapemg.com. IN A, response
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"586285830001000000010000046e6577730b79636f6d62696e61746f7203636f6d02696e086573636170656d6703636f6d0000010001c0210006000100000e10002c036e7332c02103646e730b67726f6f7665736861726bc02d77ed50e600002a3000000e1000093a8000000e10",
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// news.ycombinator.com.in.escapemg.com. IN A, question
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"586201000001000000000000046e6577730b79636f6d62696e61746f7203636f6d02696e086573636170656d6703636f6d0000010001",
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"398781020001000000000000046e6577730b79636f6d62696e61746f7203636f6d0000010001",
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}
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for i, hexData := range testMessages {
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// we won't fail the decoding of the hex
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input, _ := hex.DecodeString(hexData)
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m := new(Msg)
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if err := m.Unpack(input); err != nil {
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t.Errorf("packet %d failed to unpack", i)
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continue
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}
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}
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}
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// Make sure we can decode a TKEY packet from the string, modify the RR, and then pack it again.
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func TestTKEY(t *testing.T) {
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// An example TKEY RR captured. There is no known accepted standard text format for a TKEY
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// record so we do this from a hex string instead of from a text readable string.
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tkeyStr := "0737362d6d732d370932322d3332633233332463303439663961662d633065612d313165372d363839362d6463333937396666656666640000f900ff0000000000d2086773732d747369670059fd01f359fe53730003000000b8a181b53081b2a0030a0100a10b06092a864882f712010202a2819d04819a60819706092a864886f71201020202006f8187308184a003020105a10302010fa2783076a003020112a26f046db29b1b1d2625da3b20b49dafef930dd1e9aad335e1c5f45dcd95e0005d67a1100f3e573d70506659dbed064553f1ab890f68f65ae10def0dad5b423b39f240ebe666f2886c5fe03819692d29182bbed87b83e1f9d16b7334ec16a3c4fc5ad4a990088e0be43f0c6957916f5fe60000"
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tkeyBytes, err := hex.DecodeString(tkeyStr)
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if err != nil {
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t.Fatal("unable to decode TKEY string ", err)
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}
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// Decode the RR
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rr, tkeyLen, unPackErr := UnpackRR(tkeyBytes, 0)
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if unPackErr != nil {
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t.Fatal("unable to decode TKEY RR", unPackErr)
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}
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// Make sure it's a TKEY record
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if rr.Header().Rrtype != TypeTKEY {
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t.Fatal("Unable to decode TKEY")
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}
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// Make sure we get back the same length
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if rr.len() != len(tkeyBytes) {
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t.Fatalf("Lengths don't match %d != %d", rr.len(), len(tkeyBytes))
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}
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// make space for it with some fudge room
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msg := make([]byte, tkeyLen+1000)
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offset, packErr := PackRR(rr, msg, 0, nil, false)
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if packErr != nil {
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t.Fatal("unable to pack TKEY RR", packErr)
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}
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if offset != len(tkeyBytes) {
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t.Fatalf("mismatched TKEY RR size %d != %d", len(tkeyBytes), offset)
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}
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if bytes.Compare(tkeyBytes, msg[0:offset]) != 0 {
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t.Fatal("mismatched TKEY data after rewriting bytes")
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}
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t.Logf("got TKEY of: " + rr.String())
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// Now add some bytes to this and make sure we can encode OtherData properly
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tkey := rr.(*TKEY)
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tkey.OtherData = "abcd"
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tkey.OtherLen = 2
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offset, packErr = PackRR(tkey, msg, 0, nil, false)
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if packErr != nil {
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t.Fatal("unable to pack TKEY RR after modification", packErr)
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}
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if offset != (len(tkeyBytes) + 2) {
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t.Fatalf("mismatched TKEY RR size %d != %d", offset, len(tkeyBytes)+2)
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}
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t.Logf("modified to TKEY of: " + rr.String())
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// Make sure we can parse our string output
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tkey.Hdr.Class = ClassINET // https://github.com/miekg/dns/issues/577
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newRR, newError := NewRR(tkey.String())
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if newError != nil {
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t.Fatalf("unable to parse TKEY string: %s", newError)
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}
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t.Log("got reparsed TKEY of newRR: " + newRR.String())
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}
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