watcher tests: far fewer live queries, longer live attempts (closes #214) #215
@@ -19,6 +19,8 @@ trial run of the finished image: https://git.eeqj.de/sneak/dnswatcher/issues/149
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# Completed Steps
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# Completed Steps
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- 2026-10-02: watcher tests send far fewer queries and a live attempt may take
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18s; nameserver addresses are asked only for A, AAAA, CNAME (closes #214).
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- 2026-10-02: the resolver tries root servers, and every other server list it
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- 2026-10-02: the resolver tries root servers, and every other server list it
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walks, in a random order each time, not always from the top (closes #138).
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walks, in a random order each time, not always from the top (closes #138).
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- 2026-10-02: a name listed more than once in `DNSWATCHER_TARGETS`, in any
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- 2026-10-02: a name listed more than once in `DNSWATCHER_TARGETS`, in any
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@@ -36,11 +36,18 @@ const (
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// before the test fails.
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// before the test fails.
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attempts = 3
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attempts = 3
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// AttemptTimeout bounds one attempt. Worst case for an operation
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// AttemptTimeout bounds one attempt. It must fit the longest
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// is attempts * AttemptTimeout plus the backoff — about 26
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// operation, a watcher check, which sends over a hundred queries one
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// seconds, well inside the 90-second `go test -timeout` backstop
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// after another and on a slow build host takes several times as long
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// even when several operations exhaust their attempts.
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// as the few seconds it takes on a fast one. An operation whose
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AttemptTimeout = 8 * time.Second
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// every attempt fails takes attempts * AttemptTimeout plus the
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// backoff, about 56 seconds, after it waits for one of the
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// Concurrency slots that every live operation in the test binary
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// shares. So when live DNS does not answer at all, a test binary
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// with more live operations than slots runs into the 90-second
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// `go test -timeout` backstop instead of each test failing on its
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// own.
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AttemptTimeout = 18 * time.Second
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// backoffBase is the delay after the first failed attempt; it is
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// backoffBase is the delay after the first failed attempt; it is
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// multiplied by backoffFactor each time.
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// multiplied by backoffFactor each time.
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@@ -34,7 +34,7 @@ func (r *Resolver) QueryEachNS(
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nameservers []string,
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nameservers []string,
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hostname string,
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hostname string,
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) (map[string]*NameserverResponse, error) {
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) (map[string]*NameserverResponse, error) {
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return r.queryEachNS(ctx, nameservers, hostname)
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return r.queryEachNS(ctx, nameservers, hostname, recordTypes())
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}
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}
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// ResolveNSIPs exports resolveNSIPs for testing.
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// ResolveNSIPs exports resolveNSIPs for testing.
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@@ -533,12 +533,39 @@ func (r *Resolver) FindAuthoritativeNameservers(
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return nil, ErrNoNameservers
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return nil, ErrNoNameservers
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}
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}
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// recordTypes returns the record types a nameserver is asked for when a
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// name is checked.
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func recordTypes() []uint16 {
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return []uint16{
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dns.TypeA, dns.TypeAAAA, dns.TypeCNAME,
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dns.TypeMX, dns.TypeTXT, dns.TypeSRV,
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dns.TypeCAA, dns.TypeNS,
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}
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}
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// addressTypes returns the record types ResolveIPAddresses asks for,
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// the only ones it reads.
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func addressTypes() []uint16 {
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return []uint16{dns.TypeA, dns.TypeAAAA, dns.TypeCNAME}
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}
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// QueryNameserver queries a specific nameserver for all record
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// QueryNameserver queries a specific nameserver for all record
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// types and builds a NameserverResponse.
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// types and builds a NameserverResponse.
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func (r *Resolver) QueryNameserver(
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func (r *Resolver) QueryNameserver(
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ctx context.Context,
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ctx context.Context,
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nsHostname string,
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nsHostname string,
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hostname string,
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hostname string,
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) (*NameserverResponse, error) {
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return r.queryNameserver(ctx, nsHostname, hostname, recordTypes())
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}
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// queryNameserver queries a specific nameserver for the record types
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// in qtypes and builds a NameserverResponse.
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func (r *Resolver) queryNameserver(
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ctx context.Context,
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nsHostname string,
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hostname string,
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qtypes []uint16,
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) (*NameserverResponse, error) {
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) (*NameserverResponse, error) {
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if checkCtx(ctx) != nil {
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if checkCtx(ctx) != nil {
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return nil, ErrContextCanceled
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return nil, ErrContextCanceled
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@@ -551,7 +578,7 @@ func (r *Resolver) QueryNameserver(
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hostname = dns.Fqdn(hostname)
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hostname = dns.Fqdn(hostname)
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return r.queryAllTypes(ctx, nsHostname, nsIPs[0], hostname)
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return r.queryTypes(ctx, nsHostname, nsIPs[0], hostname, qtypes)
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}
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}
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// QueryNameserverIP queries a nameserver by its IP address directly,
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// QueryNameserverIP queries a nameserver by its IP address directly,
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@@ -568,14 +595,15 @@ func (r *Resolver) QueryNameserverIP(
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hostname = dns.Fqdn(hostname)
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hostname = dns.Fqdn(hostname)
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return r.queryAllTypes(ctx, nsHostname, nsIP, hostname)
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return r.queryTypes(ctx, nsHostname, nsIP, hostname, recordTypes())
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}
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}
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func (r *Resolver) queryAllTypes(
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func (r *Resolver) queryTypes(
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ctx context.Context,
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ctx context.Context,
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nsHostname string,
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nsHostname string,
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nsIP string,
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nsIP string,
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hostname string,
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hostname string,
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qtypes []uint16,
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) (*NameserverResponse, error) {
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) (*NameserverResponse, error) {
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resp := &NameserverResponse{
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resp := &NameserverResponse{
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Nameserver: nsHostname,
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Nameserver: nsHostname,
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@@ -583,12 +611,6 @@ func (r *Resolver) queryAllTypes(
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Status: StatusOK,
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Status: StatusOK,
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}
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}
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qtypes := []uint16{
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dns.TypeA, dns.TypeAAAA, dns.TypeCNAME,
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dns.TypeMX, dns.TypeTXT, dns.TypeSRV,
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dns.TypeCAA, dns.TypeNS,
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}
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state := r.queryEachType(ctx, nsIP, hostname, qtypes, resp)
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state := r.queryEachType(ctx, nsIP, hostname, qtypes, resp)
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classifyResponse(resp, state)
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classifyResponse(resp, state)
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@@ -779,18 +801,19 @@ func (r *Resolver) QueryAllNameservers(
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return nil, err
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return nil, err
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}
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}
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return r.queryEachNS(ctx, nameservers, hostname)
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return r.queryEachNS(ctx, nameservers, hostname, recordTypes())
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}
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}
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func (r *Resolver) queryEachNS(
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func (r *Resolver) queryEachNS(
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ctx context.Context,
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ctx context.Context,
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nameservers []string,
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nameservers []string,
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hostname string,
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hostname string,
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qtypes []uint16,
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) (map[string]*NameserverResponse, error) {
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) (map[string]*NameserverResponse, error) {
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results := make(map[string]*NameserverResponse)
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results := make(map[string]*NameserverResponse)
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for _, ns := range nameservers {
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for _, ns := range nameservers {
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resp, err := r.QueryNameserver(ctx, ns, hostname)
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resp, err := r.queryNameserver(ctx, ns, hostname, qtypes)
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// A query the context cut short says nothing about the
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// A query the context cut short says nothing about the
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// nameserver, so it must not be returned as its failure.
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// nameserver, so it must not be returned as its failure.
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@@ -835,9 +858,10 @@ func (r *Resolver) LookupAllRecords(
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}
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}
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// ResolveIPAddresses resolves a hostname to all IPv4 and IPv6
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// ResolveIPAddresses resolves a hostname to all IPv4 and IPv6
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// addresses, following CNAME chains up to MaxCNAMEDepth. When no
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// addresses, following CNAME chains up to MaxCNAMEDepth. It asks each
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// nameserver of the name's zone answered, it returns an error rather
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// nameserver of the name's zone for its A, AAAA and CNAME records only.
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// than no addresses.
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// When no nameserver of the name's zone answered, it returns an error
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// rather than no addresses.
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func (r *Resolver) ResolveIPAddresses(
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func (r *Resolver) ResolveIPAddresses(
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ctx context.Context,
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ctx context.Context,
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hostname string,
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hostname string,
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@@ -858,7 +882,12 @@ func (r *Resolver) resolveIPWithCNAME(
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return nil, ErrCNAMEDepthExceeded
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return nil, ErrCNAMEDepthExceeded
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}
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}
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results, err := r.QueryAllNameservers(ctx, hostname)
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nameservers, err := r.FindAuthoritativeNameservers(ctx, hostname)
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if err != nil {
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return nil, err
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}
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results, err := r.queryEachNS(ctx, nameservers, hostname, addressTypes())
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if err != nil {
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if err != nil {
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return nil, err
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return nil, err
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}
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}
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@@ -562,6 +562,34 @@ func TestResolveIPAddresses_CloudflareDomain(t *testing.T) {
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assert.NotEmpty(t, ips)
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assert.NotEmpty(t, ips)
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}
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}
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// TestResolveIPAddresses_NameserverIPv4AndIPv6 looks up the addresses of
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// one of cloudflare.com's nameservers, as a domain check does for each
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// nameserver. That name has A and AAAA records, so both kinds of address
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// come back.
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func TestResolveIPAddresses_NameserverIPv4AndIPv6(t *testing.T) {
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t.Parallel()
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r := newTestResolver(t)
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ns := findOneNSForDomain(t, r, "cloudflare.com")
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ips := liveResolveIPs(t, r, ns)
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var ipv4, ipv6 int
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for _, ip := range ips {
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parsed := net.ParseIP(ip)
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require.NotNil(t, parsed, "should be valid IP: %s", ip)
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if parsed.To4() != nil {
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ipv4++
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} else {
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ipv6++
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}
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}
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assert.Positive(t, ipv4, "no IPv4 address for %s: %v", ns, ips)
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assert.Positive(t, ipv6, "no IPv6 address for %s: %v", ns, ips)
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}
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// ----------------------------------------------------------------
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// ----------------------------------------------------------------
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// Context cancellation tests
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// Context cancellation tests
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// ----------------------------------------------------------------
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// ----------------------------------------------------------------
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@@ -26,18 +26,22 @@ import (
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// The watcher looks these names up in live DNS with the real resolver,
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// The watcher looks these names up in live DNS with the real resolver,
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// so tests assert on what the watcher does with the answers, never on
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// so tests assert on what the watcher does with the answers, never on
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// the records these zones publish. testHost's nameservers and addresses
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// the records these zones publish. The nameservers of testHost and
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// stay the same from one check to the next, which the tests that check
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// testSmallDomain stay the same between a test looking them up and its
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// it twice rely on, and testSmallDomain's nameservers stay the same
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// check. Every query a check sends is one more that can be lost, so the
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// between a test looking them up and its check. A domain check looks up
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// tests keep them few. A check asks each of a name's nameservers about
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// each nameserver's addresses, about a second per nameserver, so the
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// every record type, and both names have two. A domain check also looks
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// tests that check a domain use testSmallDomain, which has two
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// up each nameserver's addresses at every nameserver of the zone that
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// nameservers, and check it once. The tests that query testDomain's
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// nameserver is in: testSmallDomain's nameservers are in zones with two
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// nameservers directly do no domain check.
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// nameservers, while a domain whose nameservers are in, say,
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// cloudflare.com, which has five, makes each domain check much longer.
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// A test checks a domain only when it is about domains, and checks once,
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// from saved state it builds, rather than twice. The tests that query
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// testDomain's nameservers directly do no domain check.
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const (
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const (
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testDomain = "google.com"
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testDomain = "google.com"
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testSmallDomain = "example.com"
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testSmallDomain = "desec.io"
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testHost = "cloudflare.com"
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testHost = "example.org"
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testIssuer = "DigiCert"
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testIssuer = "DigiCert"
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)
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)
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@@ -259,55 +263,48 @@ func checkOnce(
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// runChecks builds a watcher, lets prepare set up the saved state and
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// runChecks builds a watcher, lets prepare set up the saved state and
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// stand-ins it starts from, and runs its checks once against live DNS.
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// stand-ins it starts from, and runs its checks once against live DNS.
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// If change is not nil, change then alters the saved state or stand-ins
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// When the check finds no fresh address for a name (see checkOnce), the
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// and the checks run a second time. When either check finds no fresh
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// watcher is thrown away and all of this runs again on a new one, so a
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// address for a name (see checkOnce), the watcher is thrown away and
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// failed attempt leaves nothing behind in the saved state, the
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// all of this runs again on a new one, so a failed attempt leaves
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// stand-ins or the notifications.
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// nothing behind in the saved state, the stand-ins or the notifications.
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func runChecks(
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func runChecks(
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t *testing.T,
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t *testing.T,
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cfg *config.Config,
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cfg *config.Config,
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prepare, change func(deps *testDeps),
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prepare func(deps *testDeps),
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) *testDeps {
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) (*watcher.Watcher, *testDeps) {
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t.Helper()
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t.Helper()
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var deps *testDeps
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var (
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w *watcher.Watcher
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deps *testDeps
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)
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livednstest.Retry(t, "watcher checks", func(ctx context.Context) error {
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livednstest.Retry(t, "watcher checks", func(ctx context.Context) error {
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var w *watcher.Watcher
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w, deps = newTestWatcher(t, cfg)
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w, deps = newTestWatcher(t, cfg)
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if prepare != nil {
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if prepare != nil {
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prepare(deps)
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prepare(deps)
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}
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}
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err := checkOnce(ctx, w, deps)
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if err != nil || change == nil {
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return err
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}
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change(deps)
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return checkOnce(ctx, w, deps)
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return checkOnce(ctx, w, deps)
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})
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})
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return deps
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return w, deps
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}
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}
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// lookupNameservers returns the nameservers live DNS lists for domain,
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// lookupNameservers returns the nameservers live DNS lists for name,
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// for a test to save in the state its check starts from.
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// for a test to save in the state its check starts from.
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func lookupNameservers(t *testing.T, domain string) []string {
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func lookupNameservers(t *testing.T, name string) []string {
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t.Helper()
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t.Helper()
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res := resolver.NewFromLogger(slog.Default())
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res := resolver.NewFromLogger(slog.Default())
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var nameservers []string
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var nameservers []string
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|
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livednstest.Retry(t, "LookupNS("+domain+")", func(ctx context.Context) error {
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livednstest.Retry(t, "LookupNS("+name+")", func(ctx context.Context) error {
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var err error
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var err error
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||||||
|
|
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nameservers, err = res.LookupNS(ctx, domain)
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nameservers, err = res.LookupNS(ctx, name)
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|
|
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return err
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return err
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||||||
})
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})
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@@ -370,7 +367,7 @@ func TestFirstRunBaseline(t *testing.T) {
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|||||||
cfg.Domains = []string{testSmallDomain}
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cfg.Domains = []string{testSmallDomain}
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cfg.Hostnames = []string{testHost}
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cfg.Hostnames = []string{testHost}
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|
|
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deps := runChecks(t, cfg, nil, nil)
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_, deps := runChecks(t, cfg, nil)
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||||||
|
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assertNoNotifications(t, deps)
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assertNoNotifications(t, deps)
|
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assertStatePopulated(t, deps)
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assertStatePopulated(t, deps)
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||||||
@@ -422,7 +419,7 @@ func TestDomainPortAndTLSChecks(t *testing.T) {
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cfg := defaultTestConfig(t)
|
cfg := defaultTestConfig(t)
|
||||||
cfg.Domains = []string{testSmallDomain}
|
cfg.Domains = []string{testSmallDomain}
|
||||||
|
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deps := runChecks(t, cfg, nil, nil)
|
_, deps := runChecks(t, cfg, nil)
|
||||||
|
|
||||||
snap := deps.state.GetSnapshot()
|
snap := deps.state.GetSnapshot()
|
||||||
|
|
||||||
@@ -462,11 +459,11 @@ func TestNSChangeDetection(t *testing.T) {
|
|||||||
cfg.Domains = []string{testSmallDomain}
|
cfg.Domains = []string{testSmallDomain}
|
||||||
|
|
||||||
// The saved state lists nameservers that live DNS does not.
|
// The saved state lists nameservers that live DNS does not.
|
||||||
deps := runChecks(t, cfg, func(deps *testDeps) {
|
_, deps := runChecks(t, cfg, func(deps *testDeps) {
|
||||||
deps.state.SetDomainState(testSmallDomain, &state.DomainState{
|
deps.state.SetDomainState(testSmallDomain, &state.DomainState{
|
||||||
Nameservers: []string{oldNS1, oldNS2},
|
Nameservers: []string{oldNS1, oldNS2},
|
||||||
})
|
})
|
||||||
}, nil)
|
})
|
||||||
|
|
||||||
assertNotified(t, deps, "NS Change: "+testSmallDomain, "warning")
|
assertNotified(t, deps, "NS Change: "+testSmallDomain, "warning")
|
||||||
|
|
||||||
@@ -486,7 +483,7 @@ func TestNSAddressChangeDetection(t *testing.T) {
|
|||||||
|
|
||||||
// The saved state lists the nameservers live DNS lists, each at an
|
// The saved state lists the nameservers live DNS lists, each at an
|
||||||
// address live DNS never returns.
|
// address live DNS never returns.
|
||||||
deps := runChecks(t, cfg, func(deps *testDeps) {
|
_, deps := runChecks(t, cfg, func(deps *testDeps) {
|
||||||
nsAddresses := make(map[string][]string, len(nameservers))
|
nsAddresses := make(map[string][]string, len(nameservers))
|
||||||
for _, ns := range nameservers {
|
for _, ns := range nameservers {
|
||||||
nsAddresses[ns] = []string{oldIP}
|
nsAddresses[ns] = []string{oldIP}
|
||||||
@@ -496,7 +493,7 @@ func TestNSAddressChangeDetection(t *testing.T) {
|
|||||||
Nameservers: nameservers,
|
Nameservers: nameservers,
|
||||||
NameserverAddresses: nsAddresses,
|
NameserverAddresses: nsAddresses,
|
||||||
})
|
})
|
||||||
}, nil)
|
})
|
||||||
|
|
||||||
title := "NS Address Change: " + testSmallDomain
|
title := "NS Address Change: " + testSmallDomain
|
||||||
ds, _ := deps.state.GetDomainState(testSmallDomain)
|
ds, _ := deps.state.GetDomainState(testSmallDomain)
|
||||||
@@ -542,12 +539,12 @@ func TestNSAddedAndRemovedIsNoAddressChange(t *testing.T) {
|
|||||||
// The saved state lists oldNS1, which live DNS does not, in place of
|
// The saved state lists oldNS1, which live DNS does not, in place of
|
||||||
// the first nameserver live DNS lists, so that the check finds that
|
// the first nameserver live DNS lists, so that the check finds that
|
||||||
// one added and oldNS1 removed. Only oldNS1 has addresses saved.
|
// one added and oldNS1 removed. Only oldNS1 has addresses saved.
|
||||||
deps := runChecks(t, cfg, func(deps *testDeps) {
|
_, deps := runChecks(t, cfg, func(deps *testDeps) {
|
||||||
deps.state.SetDomainState(testSmallDomain, &state.DomainState{
|
deps.state.SetDomainState(testSmallDomain, &state.DomainState{
|
||||||
Nameservers: append([]string{oldNS1}, nameservers[1:]...),
|
Nameservers: append([]string{oldNS1}, nameservers[1:]...),
|
||||||
NameserverAddresses: map[string][]string{oldNS1: {oldIP}},
|
NameserverAddresses: map[string][]string{oldNS1: {oldIP}},
|
||||||
})
|
})
|
||||||
}, nil)
|
})
|
||||||
|
|
||||||
if n := countNotifications(deps, "NS Change: "+testSmallDomain); n != 1 {
|
if n := countNotifications(deps, "NS Change: "+testSmallDomain); n != 1 {
|
||||||
t.Errorf("sent %d NS changes, want 1", n)
|
t.Errorf("sent %d NS changes, want 1", n)
|
||||||
@@ -565,15 +562,17 @@ func TestRecordChangeDetection(t *testing.T) {
|
|||||||
cfg := defaultTestConfig(t)
|
cfg := defaultTestConfig(t)
|
||||||
cfg.Hostnames = []string{testHost}
|
cfg.Hostnames = []string{testHost}
|
||||||
|
|
||||||
// Between the checks, save for every nameserver an address live DNS
|
nameservers := lookupNameservers(t, testHost)
|
||||||
// never returns.
|
|
||||||
deps := runChecks(t, cfg, nil, func(deps *testDeps) {
|
// The saved state has every nameserver live DNS lists answering
|
||||||
hs, _ := deps.state.GetHostnameState(testHost)
|
// with an address live DNS never returns.
|
||||||
for _, nsState := range hs.RecordsByNameserver {
|
_, deps := runChecks(t, cfg, func(deps *testDeps) {
|
||||||
nsState.Records = map[string][]string{"A": {oldIP}}
|
byNameserver := make(map[string]*state.NameserverRecordState)
|
||||||
|
for _, ns := range nameservers {
|
||||||
|
byNameserver[ns] = answered(map[string][]string{"A": {oldIP}})
|
||||||
}
|
}
|
||||||
|
|
||||||
deps.state.SetHostnameState(testHost, hs)
|
deps.state.SetHostnameState(testHost, saved(byNameserver))
|
||||||
})
|
})
|
||||||
|
|
||||||
assertNotified(t, deps, "Record Change: "+testHost, "warning")
|
assertNotified(t, deps, "Record Change: "+testHost, "warning")
|
||||||
@@ -585,12 +584,15 @@ func TestPortStateChange(t *testing.T) {
|
|||||||
cfg := defaultTestConfig(t)
|
cfg := defaultTestConfig(t)
|
||||||
cfg.Hostnames = []string{testHost}
|
cfg.Hostnames = []string{testHost}
|
||||||
|
|
||||||
// Between the checks, every port closes.
|
w, deps := runChecks(t, cfg, nil)
|
||||||
deps := runChecks(t, cfg, nil, func(deps *testDeps) {
|
|
||||||
|
// Every port closes, and the port checks run again. They look
|
||||||
|
// nothing up.
|
||||||
deps.portChecker.mu.Lock()
|
deps.portChecker.mu.Lock()
|
||||||
deps.portChecker.closed = true
|
deps.portChecker.closed = true
|
||||||
deps.portChecker.mu.Unlock()
|
deps.portChecker.mu.Unlock()
|
||||||
})
|
|
||||||
|
w.CheckAllPorts(t.Context())
|
||||||
|
|
||||||
hs, _ := deps.state.GetHostnameState(testHost)
|
hs, _ := deps.state.GetHostnameState(testHost)
|
||||||
assertNotified(
|
assertNotified(
|
||||||
@@ -610,7 +612,7 @@ func TestTLSExpiryWarning(t *testing.T) {
|
|||||||
cfg := defaultTestConfig(t)
|
cfg := defaultTestConfig(t)
|
||||||
cfg.Hostnames = []string{testHost}
|
cfg.Hostnames = []string{testHost}
|
||||||
|
|
||||||
deps := runChecks(t, cfg, expiresInThreeDays, nil)
|
_, deps := runChecks(t, cfg, expiresInThreeDays)
|
||||||
|
|
||||||
assertNotified(t, deps, "TLS Expiry Warning: "+testHost, "warning")
|
assertNotified(t, deps, "TLS Expiry Warning: "+testHost, "warning")
|
||||||
}
|
}
|
||||||
@@ -782,7 +784,7 @@ func TestDNSRunsBeforePortAndTLSChecks(t *testing.T) {
|
|||||||
cfg.Hostnames = []string{testHost}
|
cfg.Hostnames = []string{testHost}
|
||||||
|
|
||||||
// The saved state says the last check found testHost at oldIP.
|
// The saved state says the last check found testHost at oldIP.
|
||||||
deps := runChecks(t, cfg, func(deps *testDeps) {
|
_, deps := runChecks(t, cfg, func(deps *testDeps) {
|
||||||
deps.state.SetHostnameState(testHost, &state.HostnameState{
|
deps.state.SetHostnameState(testHost, &state.HostnameState{
|
||||||
RecordsByNameserver: map[string]*state.NameserverRecordState{
|
RecordsByNameserver: map[string]*state.NameserverRecordState{
|
||||||
oldNS1: {
|
oldNS1: {
|
||||||
@@ -791,7 +793,7 @@ func TestDNSRunsBeforePortAndTLSChecks(t *testing.T) {
|
|||||||
},
|
},
|
||||||
},
|
},
|
||||||
})
|
})
|
||||||
}, nil)
|
})
|
||||||
|
|
||||||
snap := deps.state.GetSnapshot()
|
snap := deps.state.GetSnapshot()
|
||||||
|
|
||||||
@@ -922,21 +924,20 @@ func TestNSFailureAndRecovery(t *testing.T) {
|
|||||||
cfg := defaultTestConfig(t)
|
cfg := defaultTestConfig(t)
|
||||||
cfg.Hostnames = []string{testHost}
|
cfg.Hostnames = []string{testHost}
|
||||||
|
|
||||||
// Between the checks, save every nameserver the first check found
|
nameservers := lookupNameservers(t, testHost)
|
||||||
// as one that did not answer, and add, as answering, one that live
|
|
||||||
// DNS does not list, which then disappears.
|
// The saved state has every nameserver live DNS lists as one that
|
||||||
deps := runChecks(t, cfg, nil, func(deps *testDeps) {
|
// did not answer, and, as answering, one that live DNS does not
|
||||||
hs, _ := deps.state.GetHostnameState(testHost)
|
// list, which then disappears.
|
||||||
for ns := range hs.RecordsByNameserver {
|
_, deps := runChecks(t, cfg, func(deps *testDeps) {
|
||||||
hs.RecordsByNameserver[ns] = failed()
|
byNameserver := map[string]*state.NameserverRecordState{
|
||||||
|
oldNS1: answered(map[string][]string{"A": {oldIP}}),
|
||||||
|
}
|
||||||
|
for _, ns := range nameservers {
|
||||||
|
byNameserver[ns] = failed()
|
||||||
}
|
}
|
||||||
|
|
||||||
hs.RecordsByNameserver[oldNS1] = &state.NameserverRecordState{
|
deps.state.SetHostnameState(testHost, saved(byNameserver))
|
||||||
Records: map[string][]string{"A": {oldIP}},
|
|
||||||
Status: "ok",
|
|
||||||
}
|
|
||||||
|
|
||||||
deps.state.SetHostnameState(testHost, hs)
|
|
||||||
})
|
})
|
||||||
|
|
||||||
assertNotified(t, deps, "NS Failure: "+testHost, "error")
|
assertNotified(t, deps, "NS Failure: "+testHost, "error")
|
||||||
|
|||||||
Reference in New Issue
Block a user