check / check (push) Failing after 2m5s
The port check removed the saved port state of every address no configured name resolves to. A name whose nameservers all timed out or failed is saved with no records, so its addresses looked gone and lost their port state; when the nameservers answered again it was recorded afresh, and a port that opened or closed meanwhile was not notified. An entry is now kept when one of the names saved on it is configured and none of its nameservers answered on its last check, and such a name stays on the entry when the port is checked again for another name. A name whose nameservers answer with no addresses still loses it, and so does a name no longer configured. Model: opus-5-5
449 lines
12 KiB
Go
449 lines
12 KiB
Go
package watcher_test
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import (
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"context"
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"fmt"
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"log/slog"
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"strings"
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"testing"
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"time"
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"sneak.berlin/go/dnswatcher/internal/livednstest"
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"sneak.berlin/go/dnswatcher/internal/resolver"
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"sneak.berlin/go/dnswatcher/internal/state"
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"sneak.berlin/go/dnswatcher/internal/watcher"
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)
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// answered is what a check saves for a nameserver that answered with
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// these records.
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func answered(records map[string][]string) *state.NameserverRecordState {
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return &state.NameserverRecordState{Records: records, Status: "ok"}
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}
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// failed is what a check saves for a nameserver that did not answer.
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func failed() *state.NameserverRecordState {
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return &state.NameserverRecordState{
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Records: map[string][]string{},
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Status: "error",
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Error: "all queries timed out",
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}
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}
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// saved builds the hostname state a check saves.
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func saved(
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byNameserver map[string]*state.NameserverRecordState,
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) *state.HostnameState {
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return &state.HostnameState{RecordsByNameserver: byNameserver}
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}
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// alertCounts counts the hostname alerts sent, by kind.
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type alertCounts struct {
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failures, recoveries, recordChanges, inconsistencies int
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}
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// countAlerts runs the hostname change detection from the state loaded
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// at startup through each check in turn, and counts the alerts sent.
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func countAlerts(
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t *testing.T,
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loaded *state.HostnameState,
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checks []*state.HostnameState,
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) alertCounts {
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t.Helper()
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// The hostname change detection uses only the notifier.
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notifier := &mockNotifier{}
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w := watcher.NewForTest(nil, nil, nil, nil, nil, notifier)
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prev := loaded
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for _, current := range checks {
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w.DetectHostnameChanges(t.Context(), host, prev, current)
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prev = current
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}
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var got alertCounts
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for _, n := range notifier.getNotifications() {
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kind, _, _ := strings.Cut(n.Title, ":")
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switch kind {
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case "NS Failure":
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got.failures++
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case "NS Recovery":
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got.recoveries++
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case "Record Change":
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got.recordChanges++
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case "Inconsistency":
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got.inconsistencies++
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}
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}
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return got
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}
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func TestNSFailureAndRecoveryAlerts(t *testing.T) {
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t.Parallel()
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records := map[string][]string{"A": {ip1}}
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bothAnswer := saved(map[string]*state.NameserverRecordState{
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nsA: answered(records), nsB: answered(records),
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})
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bFails := saved(map[string]*state.NameserverRecordState{
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nsA: answered(records), nsB: failed(),
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})
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onlyA := saved(map[string]*state.NameserverRecordState{
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nsA: answered(records),
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})
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bAnswersNoRecords := saved(map[string]*state.NameserverRecordState{
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nsA: answered(records), nsB: answered(map[string][]string{}),
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})
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bAnswersDifferently := saved(map[string]*state.NameserverRecordState{
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nsA: answered(records), nsB: answered(map[string][]string{"A": {ip2}}),
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})
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// Each case starts from the state loaded at startup and runs the
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// checks in order.
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tests := []struct {
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name string
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loaded *state.HostnameState
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checks []*state.HostnameState
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want alertCounts
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}{
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{
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"failure lasting several checks alerts once",
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bothAnswer, []*state.HostnameState{bFails, bFails, bFails},
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alertCounts{failures: 1},
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},
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{
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"recovery alerts once",
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bFails, []*state.HostnameState{bothAnswer, bothAnswer},
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alertCounts{recoveries: 1},
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},
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{
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"failing again after recovering alerts again",
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bothAnswer, []*state.HostnameState{bFails, bothAnswer, bFails},
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alertCounts{failures: 2, recoveries: 1},
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},
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{
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"nameserver failing when first seen does not alert",
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onlyA, []*state.HostnameState{bFails, bFails},
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alertCounts{},
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},
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{
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"answer with no records is a record change, not a failure",
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bothAnswer, []*state.HostnameState{bAnswersNoRecords},
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alertCounts{recordChanges: 1, inconsistencies: 1},
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},
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{
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"recovered nameserver that answers differently disagrees",
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bFails, []*state.HostnameState{bAnswersDifferently},
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alertCounts{recoveries: 1, inconsistencies: 1},
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},
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}
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for _, tt := range tests {
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t.Run(tt.name, func(t *testing.T) {
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t.Parallel()
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got := countAlerts(t, tt.loaded, tt.checks)
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if got != tt.want {
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t.Errorf("sent %+v, want %+v", got, tt.want)
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}
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})
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}
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}
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func TestNSFailureAlertNamesHostnameNameserverAndReason(t *testing.T) {
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t.Parallel()
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records := map[string][]string{"A": {ip1}}
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notifier := &mockNotifier{}
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w := watcher.NewForTest(nil, nil, nil, nil, nil, notifier)
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w.DetectHostnameChanges(
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t.Context(), host,
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saved(map[string]*state.NameserverRecordState{nsA: answered(records)}),
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saved(map[string]*state.NameserverRecordState{nsA: failed()}),
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)
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notifications := notifier.getNotifications()
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if len(notifications) != 1 {
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t.Fatalf("sent %v, want one NS Failure", notifications)
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}
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msg := notifications[0].Message
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if !strings.Contains(msg, host) || !strings.Contains(msg, nsA) ||
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!strings.Contains(msg, failed().Error) {
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t.Errorf(
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"message %q does not name %s, %s and the reason",
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msg, host, nsA,
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)
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}
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}
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// TestNameserverThatNeverAnswers asks a nameserver address where
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// nothing answers, 192.0.2.1, and checks what the watcher saves for it.
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// The deadline outlasts the resolver's first two-second try, as in the
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// resolver's timeout test.
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func TestNameserverThatNeverAnswers(t *testing.T) {
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t.Parallel()
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ctx, cancel := context.WithTimeout(t.Context(), 3*time.Second)
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t.Cleanup(cancel)
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res := resolver.NewFromLogger(slog.Default())
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resp, err := res.QueryNameserverIP(ctx, nsA, "192.0.2.1", host)
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if err != nil {
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t.Fatal(err)
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}
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hs := watcher.BuildHostnameState(
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map[string]*resolver.NameserverResponse{nsA: resp}, time.Now(),
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)
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got := hs.RecordsByNameserver[nsA]
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if got.Status != "error" || got.Error == "" {
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t.Errorf(
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"saved status %q, error %q; want status error with a reason",
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got.Status, got.Error,
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)
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}
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}
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// TestNameserverThatAnswersNXDOMAIN asks a real nameserver about a name
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// that does not exist and checks what the watcher saves for it: NXDOMAIN
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// is an answer, so the nameserver is saved as ok with no error.
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func TestNameserverThatAnswersNXDOMAIN(t *testing.T) {
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t.Parallel()
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res := resolver.NewFromLogger(slog.Default())
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name := "this-surely-does-not-exist-xyz." + testDomain
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var (
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ns string
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resp *resolver.NameserverResponse
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)
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livednstest.Retry(t, "QueryNameserver("+name+")", func(ctx context.Context) error {
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nameservers, err := res.LookupNS(ctx, testDomain)
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if err != nil {
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return err
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}
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ns = nameservers[0]
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resp, err = res.QueryNameserver(ctx, ns, name)
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if err != nil {
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return err
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}
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// A timeout or a failure is no answer to check.
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if resp.Status == resolver.StatusTimeout ||
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resp.Status == resolver.StatusError {
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return fmt.Errorf(
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"%w: %s: %s", livednstest.ErrNoAnswer, ns, resp.Error,
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)
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}
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return nil
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})
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if resp.Status != resolver.StatusNXDomain {
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t.Fatalf("%s answered %q for %s, want NXDOMAIN", ns, resp.Status, name)
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}
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hs := watcher.BuildHostnameState(
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map[string]*resolver.NameserverResponse{ns: resp}, time.Now(),
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)
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got := hs.RecordsByNameserver[ns]
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if got.Status != "ok" || got.Error != "" {
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t.Errorf(
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"saved status %q, error %q; want status ok with no error",
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got.Status, got.Error,
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)
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}
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}
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// TestNameserverThatRefuses asks a google.com nameserver about
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// cloudflare.com, a zone it does not serve, which it refuses, and checks
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// what the watcher saves for it: REFUSED is no answer, so the nameserver
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// is saved as error with the reason.
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func TestNameserverThatRefuses(t *testing.T) {
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t.Parallel()
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const reason = "server returned REFUSED"
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res := resolver.NewFromLogger(slog.Default())
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var (
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ns string
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resp *resolver.NameserverResponse
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)
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livednstest.Retry(
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t,
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"QueryNameserver(cloudflare.com)",
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func(ctx context.Context) error {
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nameservers, err := res.LookupNS(ctx, testDomain)
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if err != nil {
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return err
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}
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ns = nameservers[0]
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resp, err = res.QueryNameserver(ctx, ns, "cloudflare.com")
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if err != nil {
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return err
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}
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// A timeout or a network error is no reply at all.
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if resp.Status == resolver.StatusTimeout ||
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strings.HasPrefix(resp.Error, "network error") {
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return fmt.Errorf(
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"%w: %s: %s", livednstest.ErrNoAnswer, ns, resp.Error,
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)
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}
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return nil
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},
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)
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if resp.Error != reason {
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t.Fatalf(
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"%s answered %q (%s) for cloudflare.com, want REFUSED",
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ns, resp.Status, resp.Error,
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)
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}
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hs := watcher.BuildHostnameState(
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map[string]*resolver.NameserverResponse{ns: resp}, time.Now(),
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)
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got := hs.RecordsByNameserver[ns]
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if got.Status != failed().Status || got.Error != reason {
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t.Errorf(
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"saved status %q, error %q; want status %q, error %q",
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got.Status, got.Error, failed().Status, reason,
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)
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}
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}
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// TestPortStateWhenNoNameserverAnswered runs the port checks on
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// hostname state built here, which gives the name no address. The port
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// state saved for its old address is kept only when the name is a
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// configured hostname or domain and none of its nameservers answered.
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func TestPortStateWhenNoNameserverAnswered(t *testing.T) {
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t.Parallel()
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noneAnswered := saved(map[string]*state.NameserverRecordState{
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nsA: failed(), nsB: failed(),
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})
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oneAnsweredNoAddress := saved(map[string]*state.NameserverRecordState{
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nsA: answered(map[string][]string{}), nsB: failed(),
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})
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configured := []string{host}
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tests := []struct {
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name string
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hostname *state.HostnameState
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hostnames []string
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domains []string
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wantKept bool
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}{
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{"no nameserver answered", noneAnswered, configured, nil, true},
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{
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"no nameserver answered, configured as a domain",
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noneAnswered, nil, configured, true,
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},
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{
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"one answered with no address",
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oneAnsweredNoAddress, configured, nil, false,
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},
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{"no nameserver answered, not configured", noneAnswered, nil, nil, false},
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}
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for _, tt := range tests {
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t.Run(tt.name, func(t *testing.T) {
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t.Parallel()
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cfg := defaultTestConfig(t)
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cfg.Hostnames = tt.hostnames
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cfg.Domains = tt.domains
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// The port checks read the saved hostname state and look
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// nothing up, so the watcher has no resolver.
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deps := newTestDeps(t, cfg)
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w := watcher.NewForTest(
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cfg, deps.state, nil,
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deps.portChecker, deps.tlsChecker, deps.notifier,
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)
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key := ip1 + ":443"
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deps.state.SetHostnameState(host, tt.hostname)
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deps.state.SetPortState(key, &state.PortState{
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Open: true, Hostnames: []string{host},
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})
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w.CheckAllPorts(t.Context())
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_, kept := deps.state.GetPortState(key)
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if kept != tt.wantKept {
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t.Errorf("port state %s kept: %v, want %v", key, kept, tt.wantKept)
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}
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})
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}
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}
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// TestPortStateWhenNoNameserverAnsweredAndOtherNameMovesAway saves the
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// port state of an address two configured hostnames resolve to. While
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// none of the first one's nameservers answer, the port checks run with
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// the other one still at that address, then after it moved away; the
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// port state is kept both times.
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func TestPortStateWhenNoNameserverAnsweredAndOtherNameMovesAway(
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t *testing.T,
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) {
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t.Parallel()
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const other = "mail.example.net"
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cfg := defaultTestConfig(t)
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cfg.Hostnames = []string{host, other}
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// The port checks read the saved hostname state and look nothing
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// up, so the watcher has no resolver.
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deps := newTestDeps(t, cfg)
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w := watcher.NewForTest(
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cfg, deps.state, nil,
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deps.portChecker, deps.tlsChecker, deps.notifier,
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)
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key := ip1 + ":443"
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deps.state.SetPortState(key, &state.PortState{
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Open: true, Hostnames: []string{host, other},
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})
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deps.state.SetHostnameState(host, saved(
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map[string]*state.NameserverRecordState{nsA: failed(), nsB: failed()},
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))
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for _, otherIP := range []string{ip1, ip2} {
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deps.state.SetHostnameState(other, saved(
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map[string]*state.NameserverRecordState{
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nsA: answered(map[string][]string{"A": {otherIP}}),
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},
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))
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w.CheckAllPorts(t.Context())
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if _, kept := deps.state.GetPortState(key); !kept {
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t.Fatalf("port state %s removed with %s at %s", key, other, otherIP)
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}
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}
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}
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