Files
dnswatcher/internal/resolver/livedns_harness_test.go
T
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tests: remove the DNS stand-ins from the watcher and resolver tests (closes #159)
The watcher tests used a stand-in resolver and the resolver timeout test
a stand-in DNS client, against the rule that DNS is never mocked.
Watcher tests that look something up in DNS now run the real resolver
against live servers, each attempt on a new watcher. A DNS change is
tested by saving values live DNS never returns (names under .invalid,
192.0.2.1) in the state a check starts from, or by marking a real
nameserver failed. The timeout test queries 192.0.2.1, where nothing
answers. The live-DNS retry and concurrency limit moved from the
resolver tests to internal/livedns, so both packages share them.
NewFromLoggerWithClient had no other use and is gone. TESTING.md now
states the README's rule.

Model: opus-5-5
2026-09-29 05:45:28 +00:00

193 lines
4.6 KiB
Go

package resolver_test
import (
"testing"
"github.com/stretchr/testify/assert"
"sneak.berlin/go/dnswatcher/internal/resolver"
)
// Tests for the live-DNS harness in livedns_test.go itself. These
// exercise pure logic; they perform no DNS resolution of any kind, so
// they neither mock DNS nor depend on it.
// Names for the synthetic status maps below. Nothing is ever queried
// at them: they are map keys handed to the package's pure counting
// helpers, not a stand-in for a nameserver.
const (
nsExample1 = "ns1.example."
nsExample2 = "ns2.example."
nsExample3 = "ns3.example."
nsExample4 = "ns4.example."
)
func TestLiveQuorumIsStrictMajority(t *testing.T) {
t.Parallel()
cases := map[int]int{
0: 1,
1: 1,
2: 2,
3: 2,
4: 3,
5: 3,
13: 7,
}
for total, want := range cases {
assert.Equal(
t, want, liveQuorum(total),
"liveQuorum(%d)", total,
)
}
}
func TestStatusCountingIgnoresSilentNameservers(t *testing.T) {
t.Parallel()
results := map[string]*resolver.NameserverResponse{
nsExample1: {
Nameserver: nsExample1,
Status: resolver.StatusOK,
},
nsExample2: {
Nameserver: nsExample2,
Status: resolver.StatusOK,
},
nsExample3: {
Nameserver: nsExample3,
Status: resolver.StatusTimeout,
},
nsExample4: {
Nameserver: nsExample4,
Status: resolver.StatusError,
},
}
assert.Equal(
t, 2, countStatus(results, resolver.StatusOK),
)
assert.Equal(
t, 0, countStatus(results, resolver.StatusNXDomain),
)
// Two of four answered, which is short of the quorum of
// three: this is the state that triggers a retry rather
// than an assertion failure.
assert.Equal(t, 2, answeredCount(results))
assert.Less(t, answeredCount(results), liveQuorum(len(results)))
assert.Equal(
t,
"ns1.example.=ok ns2.example.=ok "+
"ns3.example.=timeout ns4.example.=error",
describeStatuses(results),
)
}
// TestUnsanctionedStatusesRejectsWrongAnswers is the regression test
// for the defect this allowlist exists to prevent: a minority of
// nameservers answering WRONGLY while quorum keeps the suite green.
// nodata is the case that motivated it — it is a wrong answer, not
// silence, and it was previously banned by neither test.
func TestUnsanctionedStatusesRejectsWrongAnswers(t *testing.T) {
t.Parallel()
// Four nameservers, three OK and one answering nodata: a
// quorum of three is satisfied and no NXDOMAIN is present, so
// the old blocklist assertions both passed on this input.
results := map[string]*resolver.NameserverResponse{
nsExample1: {
Nameserver: nsExample1,
Status: resolver.StatusOK,
},
nsExample2: {
Nameserver: nsExample2,
Status: resolver.StatusOK,
},
nsExample3: {
Nameserver: nsExample3,
Status: resolver.StatusOK,
},
nsExample4: {
Nameserver: nsExample4,
Status: resolver.StatusNoData,
},
}
assert.GreaterOrEqual(
t,
countStatus(results, resolver.StatusOK),
liveQuorum(len(results)),
)
assert.Zero(t, countStatus(results, resolver.StatusNXDomain))
// nodata is an ANSWER, so it never triggers a retry: nothing
// but the allowlist stands between it and a false green.
assert.Equal(t, len(results), answeredCount(results))
assert.Equal(
t,
[]string{nsExample4 + "=nodata"},
unsanctionedStatuses(
results,
resolver.StatusOK,
resolver.StatusTimeout,
resolver.StatusError,
),
"nodata must be reported as an unsanctioned status",
)
}
func TestUnsanctionedStatusesToleratesSilenceOnly(t *testing.T) {
t.Parallel()
results := map[string]*resolver.NameserverResponse{
nsExample1: {
Nameserver: nsExample1,
Status: resolver.StatusNXDomain,
},
nsExample2: {
Nameserver: nsExample2,
Status: resolver.StatusTimeout,
},
nsExample3: {
Nameserver: nsExample3,
Status: resolver.StatusError,
},
}
allowed := []string{
resolver.StatusNXDomain,
resolver.StatusTimeout,
resolver.StatusError,
}
assert.Empty(
t,
unsanctionedStatuses(results, allowed...),
"timeout and error are non-answers and are tolerated",
)
// The same silent nameservers do not count towards a quorum.
assert.Equal(t, 1, answeredCount(results))
// An unknown status is treated as silence by answeredCount —
// so it retries and fails loudly — and is unsanctioned by the
// allowlist rather than quietly permitted.
const laterStatus = "some-status-added-later"
results[nsExample4] = &resolver.NameserverResponse{
Nameserver: nsExample4,
Status: laterStatus,
}
assert.Equal(t, 1, answeredCount(results))
assert.Equal(
t,
[]string{nsExample4 + "=" + laterStatus},
unsanctionedStatuses(results, allowed...),
)
}