Files
dnswatcher/internal/resolver/iterative_test.go
T
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resolver: try servers in a random order on each resolution (closes #138)
Every resolution walked the root servers in a fixed order, so
a.root-servers.net got every first query and its timeouts were paid on
every lookup. Each list of servers the resolver walks is now walked in a
random order from rand.Shuffle, chosen anew each time; a server that does
not reply, refuses, or gives an error reply or a referral that leads no
closer is still passed over for the next. When a referral names a zone's
nameservers without their addresses, all of them are now looked up, not
only the first that resolves, so the zone is not given up because the
first nameserver whose address was found gave no usable reply. No test
fails if the walk stops shuffling: which server a live query reached is
not observable.

Model: opus-5-5
2026-10-02 03:26:06 +02:00

267 lines
6.5 KiB
Go

package resolver_test
import (
"math/rand/v2"
"slices"
"testing"
"github.com/miekg/dns"
"github.com/stretchr/testify/assert"
"github.com/stretchr/testify/require"
"sneak.berlin/go/dnswatcher/internal/resolver"
)
// TestCollectIPs_OneAnswerIsEnough checks that one nameserver answering
// NXDOMAIN says the name has no addresses, though the other timed out.
func TestCollectIPs_OneAnswerIsEnough(t *testing.T) {
t.Parallel()
ips, _, err := resolver.CollectIPs(
map[string]*resolver.NameserverResponse{
"ns1.example.": {Status: resolver.StatusTimeout},
"ns2.example.": {Status: resolver.StatusNXDomain},
},
)
require.NoError(t, err)
assert.Empty(t, ips)
}
// TestCollectIPs_FailedIsNoAnswer checks that nameservers that all have
// status error, from a refusal, a server failure, a network error or a
// referral, are no answer rather than a name with no addresses.
func TestCollectIPs_FailedIsNoAnswer(t *testing.T) {
t.Parallel()
ips, _, err := resolver.CollectIPs(
map[string]*resolver.NameserverResponse{
"ns1.example.": {Status: resolver.StatusError},
"ns2.example.": {Status: resolver.StatusError},
},
)
require.ErrorIs(t, err, resolver.ErrNoNameserverAnswered)
assert.Empty(t, ips)
}
const (
// exampleCom is the zone most cases of TestUsableReply and
// TestNSSetFrom are about, and wwwExampleCom a name in it.
exampleCom = "example.com."
wwwExampleCom = "www.example.com."
// exampleNS is the server the NS records nsRecord builds name.
exampleNS = "ns1.example.net."
)
// nsRecord builds an NS record that names a server of zone.
func nsRecord(zone string) *dns.NS {
return &dns.NS{
Hdr: dns.RR_Header{
Name: zone, Rrtype: dns.TypeNS, Class: dns.ClassINET,
},
Ns: exampleNS,
}
}
// referralTo builds a reply that refers the query to the servers of
// zone.
func referralTo(zone string) *dns.Msg {
msg := new(dns.Msg)
msg.Ns = []dns.RR{nsRecord(zone)}
return msg
}
// TestUsableReply checks which replies from one of a zone's servers are
// used. A reply that is not usable moves the query on to the zone's
// next server.
func TestUsableReply(t *testing.T) {
t.Parallel()
servfail := new(dns.Msg)
servfail.Rcode = dns.RcodeServerFailure
answer := new(dns.Msg)
answer.Authoritative = true
answer.Answer = []dns.RR{nsRecord(exampleCom)}
nxdomain := new(dns.Msg)
nxdomain.Authoritative = true
nxdomain.Rcode = dns.RcodeNameError
tests := []struct {
name string
resp *dns.Msg
zone string
query string
want bool
}{
{
name: "SERVFAIL", resp: servfail,
zone: exampleCom, query: exampleCom, want: false,
},
{
name: "answer", resp: answer,
zone: exampleCom, query: exampleCom, want: true,
},
{
name: "NXDOMAIN", resp: nxdomain,
zone: ".", query: exampleCom, want: true,
},
{
name: "root refers to com", resp: referralTo("com."),
zone: ".", query: exampleCom, want: true,
},
{
name: "com refers to example.com", resp: referralTo(exampleCom),
zone: "com.", query: wwwExampleCom, want: true,
},
{
name: "referral back to the zone", resp: referralTo(exampleCom),
zone: exampleCom, query: exampleCom, want: false,
},
{
name: "referral up to the root", resp: referralTo("."),
zone: exampleCom, query: exampleCom, want: false,
},
{
name: "referral sideways", resp: referralTo("net."),
zone: ".", query: exampleCom, want: false,
},
}
for _, tt := range tests {
t.Run(tt.name, func(t *testing.T) {
t.Parallel()
assert.Equal(t, tt.want,
resolver.UsableReply(tt.resp, tt.zone, tt.query),
)
})
}
}
// TestNSSetFrom checks which NS set a reply gives for a domain; a set
// that is not empty ends the walk. The referral to example.com that
// com's servers all send alike gives its delegation, so the set is the
// same whichever of them answered, and example.com's own servers, which
// can disagree, are not asked.
func TestNSSetFrom(t *testing.T) {
t.Parallel()
answer := new(dns.Msg)
answer.Authoritative = true
answer.Answer = []dns.RR{nsRecord(exampleCom)}
tests := []struct {
name string
resp *dns.Msg
domain string
want []string
}{
{
name: "com refers to example.com", resp: referralTo(exampleCom),
domain: exampleCom, want: []string{exampleNS},
},
{
name: "com refers on, for www.example.com",
resp: referralTo(exampleCom), domain: wwwExampleCom,
want: nil,
},
{
name: "answer from a server that holds example.com",
resp: answer, domain: exampleCom,
want: []string{exampleNS},
},
}
for _, tt := range tests {
t.Run(tt.name, func(t *testing.T) {
t.Parallel()
assert.ElementsMatch(t, tt.want,
resolver.NSSetFrom(tt.resp, tt.domain),
)
})
}
}
func TestExtractRecordValue_LetterCase(t *testing.T) {
t.Parallel()
tests := []struct {
name string
rr dns.RR
want string
}{
{
name: "MX target lower-cased",
rr: &dns.MX{Preference: 1, Mx: "ASPMX.L.GOOGLE.COM."},
want: "1 aspmx.l.google.com.",
},
{
name: "NS target lower-cased",
rr: &dns.NS{Ns: "x.ns.joker.COM."},
want: "x.ns.joker.com.",
},
{
name: "CNAME target lower-cased",
rr: &dns.CNAME{Target: "WWW.Example.Com."},
want: "www.example.com.",
},
{
name: "SRV target lower-cased",
rr: &dns.SRV{
Priority: 10, Weight: 5, Port: 443,
Target: "SIP.Example.Com.",
},
want: "10 5 443 sip.example.com.",
},
{
name: "TXT value keeps its case",
rr: &dns.TXT{Txt: []string{"Verify=AbC123"}},
want: "Verify=AbC123",
},
{
name: "CAA value keeps its case",
rr: &dns.CAA{Flag: 0, Tag: "issue", Value: "LetsEncrypt.org"},
want: `0 issue "LetsEncrypt.org"`,
},
}
for _, tt := range tests {
t.Run(tt.name, func(t *testing.T) {
t.Parallel()
assert.Equal(t, tt.want, resolver.ExtractRecordValue(tt.rr))
})
}
}
// TestShuffled shuffles the root servers with many seeds. Every order
// must hold each root server once, so each is tried before a
// resolution fails; each root server must come first for some seed, so
// no one root server gets every first query; and the list passed in
// must be left as it was.
func TestShuffled(t *testing.T) {
t.Parallel()
const seeds = 1000
roots := resolver.RootServerList()
before := slices.Clone(roots)
first := make(map[string]bool)
for seed := range uint64(seeds) {
rng := rand.New(rand.NewPCG(seed, 0)) //nolint:gosec // seeded on purpose
order := resolver.Shuffled(roots, rng.Shuffle)
assert.ElementsMatch(t, roots, order)
first[order[0]] = true
}
assert.Len(t, first, len(roots))
assert.Equal(t, before, roots)
}