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worktree-d
| Author | SHA1 | Date | |
|---|---|---|---|
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473d61afc4 | ||
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d918235afd | ||
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f7af852851 | ||
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4546908ceb |
@@ -3,6 +3,7 @@ package dns
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import (
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"context"
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"fmt"
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"maps"
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"math"
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"net"
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"slices"
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@@ -31,6 +32,26 @@ type SubdomainMatcher interface {
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MatchSubdomains() bool
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}
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// responseMeta holds the annotations handlers attach to a request to explain the
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// response the chain ends up writing. It survives a deferral, so an answer that
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// did not come from the handler that owns the name still says who stepped aside
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// and why.
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type responseMeta map[resutil.MetaKey]string
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// format renders the annotations for the response log line. The order is stable
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// so the same event reads the same way every time; a map's own order is not.
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func (m responseMeta) format() string {
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if len(m) == 0 {
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return ""
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}
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var b strings.Builder
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for _, k := range slices.Sorted(maps.Keys(m)) {
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b.WriteString(" " + string(k) + "=" + m[k])
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}
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return b.String()
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}
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type HandlerEntry struct {
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Handler dns.Handler
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Priority int
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@@ -52,8 +73,19 @@ type ResponseWriterChain struct {
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origPattern string
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requestID string
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shouldContinue bool
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response *dns.Msg
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meta map[string]string
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// softNegative suppresses a poisoning negative verdict for this request. A
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// handler that owns the name but cannot answer this query type sets it
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// before deferring, and it stays set for every handler that runs after.
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softNegative bool
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// clientHasEdns records whether the original query advertised EDNS0, taken
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// before any handler ran: handlers add EDNS0 to the query they forward
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// upstream, so the message itself no longer answers the question later.
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clientHasEdns bool
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response *dns.Msg
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// meta is handed to the next handler when this one defers, so the same map
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// outlives the writer that created it. Handlers must only set metadata from
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// within ServeDNS, never from a goroutine that outlives the call.
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meta responseMeta
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}
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// RequestID returns the request ID for tracing
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@@ -62,26 +94,64 @@ func (w *ResponseWriterChain) RequestID() string {
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}
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// SetMeta sets a metadata key-value pair for logging
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func (w *ResponseWriterChain) SetMeta(key, value string) {
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func (w *ResponseWriterChain) SetMeta(key resutil.MetaKey, value string) {
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if w.meta == nil {
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w.meta = make(map[string]string)
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w.meta = make(responseMeta)
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}
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w.meta[key] = value
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}
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// RequestSoftNegative marks the request so a downstream NXDOMAIN is turned into
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// NODATA before it reaches the client. Set by a handler that defers a query for
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// a name it owns but a type it cannot resolve.
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func (w *ResponseWriterChain) RequestSoftNegative() {
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w.softNegative = true
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}
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func (w *ResponseWriterChain) WriteMsg(m *dns.Msg) error {
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// Check if this is a continue signal (NXDOMAIN with Zero bit set)
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if m.Rcode == dns.RcodeNameError && m.MsgHdr.Zero {
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w.shouldContinue = true
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return nil
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}
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if w.softNegative && m.Rcode == dns.RcodeNameError {
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m = softenNegative(m, w.clientHasEdns)
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w.SetMeta(resutil.MetaKeySoftened, "nxdomain->nodata")
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}
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w.response = m
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if m.MsgHdr.Truncated {
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w.SetMeta("truncated", "true")
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w.SetMeta(resutil.MetaKeyTruncated, "true")
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}
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return w.ResponseWriter.WriteMsg(m)
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}
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// softenNegative downgrades an NXDOMAIN to NODATA for a request a handler that
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// owns the name deferred. NXDOMAIN is cached for the name and every type below
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// it, so a resolver that has never heard of a routed name would take out the
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// record types the route does serve; NODATA is cached for this name and type
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// only. The authority section goes with it: the negative TTL of a zone we just
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// overruled does not apply, and RFC 2308 keeps a negative answer that carries no
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// SOA out of caches altogether, so the rewrite cannot outlive the route.
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//
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// The rewrite is ours, not the answering resolver's, so an EDNS0 client is told
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// as much: the reply we hand back travels a path no capture on this host sees,
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// and an empty answer is otherwise indistinguishable from a real one. Returns a
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// copy so the answering handler keeps whatever it may hold on to.
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func softenNegative(m *dns.Msg, clientHasEdns bool) *dns.Msg {
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out := m.Copy()
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out.Rcode = dns.RcodeSuccess
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out.Ns = nil
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if clientHasEdns {
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resutil.AttachEDE(out, resutil.EDENetbirdSoftenedNegative,
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"netbird: name is served locally, NXDOMAIN from the fallthrough resolver suppressed")
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} else {
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resutil.StripOPT(out)
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}
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return out
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}
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func NewHandlerChain() *HandlerChain {
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return &HandlerChain{
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handlers: make([]HandlerEntry, 0),
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@@ -223,6 +293,19 @@ func (c *HandlerChain) dispatch(w dns.ResponseWriter, r *dns.Msg, maxPriority in
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handlers := slices.Clone(c.handlers)
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c.mu.RUnlock()
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// Carried across deferrals: once a handler that owns the name defers, no
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// handler after it may answer with a verdict that poisons the name. The
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// metadata of a handler that stepped aside is carried too, so the response
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// log line explains an answer that did not come from the handler that owns
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// the name.
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var softNegative bool
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var carried responseMeta
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// Taken before any handler runs: handlers advertise EDNS0 on the query they
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// forward upstream, so afterwards the message no longer tells us whether the
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// client did.
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clientHasEdns := r.IsEdns0() != nil
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// Try handlers in priority order
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for _, entry := range handlers {
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if entry.Priority > maxPriority {
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@@ -245,11 +328,16 @@ func (c *HandlerChain) dispatch(w dns.ResponseWriter, r *dns.Msg, maxPriority in
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ResponseWriter: w,
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origPattern: entry.OrigPattern,
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requestID: requestID,
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softNegative: softNegative,
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clientHasEdns: clientHasEdns,
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meta: carried,
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}
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entry.Handler.ServeDNS(chainWriter, r)
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// If handler wants to continue, try next handler
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if chainWriter.shouldContinue {
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softNegative = softNegative || chainWriter.softNegative
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carried = chainWriter.meta
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if entry.Priority != PriorityMgmtCache {
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logger.Tracef("handler requested continue for domain=%s", qname)
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}
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@@ -265,30 +353,59 @@ func (c *HandlerChain) dispatch(w dns.ResponseWriter, r *dns.Msg, maxPriority in
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qname, dns.TypeToString[question.Qtype], dns.ClassToString[question.Qclass])
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resp := &dns.Msg{}
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resp.SetRcode(r, dns.RcodeRefused)
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// A handler that owns the name deferred and nothing below it could answer
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// (a client with no primary nameserver group). The name exists as far as
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// this client is concerned, since the route serves its addresses, so REFUSED
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// would contradict the route: a stub that takes it as "not served here" and
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// retries another resolver can come back with an NXDOMAIN that takes the
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// whole name down. Answer "no records of this type" instead, without an SOA,
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// so RFC 2308 keeps it out of negative caches, and tell an EDNS0 client the
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// empty answer is ours rather than a resolver's.
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if softNegative {
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resp.Rcode = dns.RcodeSuccess
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if clientHasEdns {
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resutil.AttachEDE(resp, resutil.EDENetbirdSoftenedNegative,
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"netbird: name is served locally, no fallthrough resolver for this query type")
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}
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// logResponse never runs on this path, so the carried metadata is
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// appended here or the reason for the deferral is lost in exactly the
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// case that is hardest to diagnose.
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logger.Tracef("no handler below the deferring one for domain=%s type=%s, answering NODATA%s",
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qname, dns.TypeToString[question.Qtype], carried.format())
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}
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if err := w.WriteMsg(resp); err != nil {
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logger.Errorf("failed to write DNS response: %v", err)
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}
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}
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func (c *HandlerChain) logResponse(logger *log.Entry, cw *ResponseWriterChain, qname string, startTime time.Time) {
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// Runs for every query, and the arguments below are not free: Len() packs
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// the message to measure it, and formatting the answers and the metadata
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// allocates. None of it is worth doing when the line is discarded.
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if !log.IsLevelEnabled(log.TraceLevel) {
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return
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}
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if cw.response == nil {
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return
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}
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var meta string
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for k, v := range cw.meta {
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meta += " " + k + "=" + v
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}
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logger.Tracef("response: domain=%s rcode=%s answers=%s size=%dB%s took=%s",
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qname, dns.RcodeToString[cw.response.Rcode], resutil.FormatAnswers(cw.response.Answer),
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cw.response.Len(), meta, time.Since(startTime))
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cw.response.Len(), cw.meta.format(), time.Since(startTime))
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}
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// ResolveInternal runs an in-process DNS query against the chain, skipping any
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// handler with priority > maxPriority. Used by internal callers (e.g. the mgmt
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// cache refresher) that must bypass themselves to avoid loops. Honors ctx
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// cancellation; on ctx.Done the dispatch goroutine is left to drain on its own
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// cache refresher) that must bypass themselves to avoid loops.
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//
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// "Nothing answered" is read off RcodeRefused, which a request soft-negatived by
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// a deferring handler never carries: it ends in an empty NOERROR instead, and
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// would look resolved. No caller can reach that today, since every handler that
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// defers sits above the maxPriority any caller passes. Lowering one below it
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// means this check needs the soft-negative case too.
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//
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// Honors ctx cancellation; on ctx.Done the dispatch goroutine is left to drain on its own
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// (bounded by the invoked handler's internal timeout).
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func (c *HandlerChain) ResolveInternal(ctx context.Context, r *dns.Msg, maxPriority int) (*dns.Msg, error) {
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if len(r.Question) == 0 {
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@@ -3,15 +3,19 @@ package dns_test
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import (
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"context"
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"net"
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"strings"
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"testing"
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"time"
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"github.com/miekg/dns"
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log "github.com/sirupsen/logrus"
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logtest "github.com/sirupsen/logrus/hooks/test"
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"github.com/stretchr/testify/assert"
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"github.com/stretchr/testify/mock"
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"github.com/stretchr/testify/require"
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nbdns "github.com/netbirdio/netbird/client/internal/dns"
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"github.com/netbirdio/netbird/client/internal/dns/resutil"
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"github.com/netbirdio/netbird/client/internal/dns/test"
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)
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@@ -1238,6 +1242,276 @@ func TestHandlerChain_ResolveInternal_HonorsContextTimeout(t *testing.T) {
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assert.Less(t, elapsed, 500*time.Millisecond, "ResolveInternal must return shortly after ctx deadline")
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}
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// requestSoftNegative asks the chain to soften a negative verdict produced by
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// the handlers that run after the caller defers, reporting whether the chain
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// supports the signal. Written as a type assertion so these tests compile
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// against a chain that does not support it yet.
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func requestSoftNegative(w dns.ResponseWriter) bool {
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sn, ok := w.(interface{ RequestSoftNegative() })
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if ok {
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sn.RequestSoftNegative()
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}
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return ok
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}
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// deferringHandler defers to the next handler in the chain, optionally asking
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// for the negative verdict of whatever answers instead to be softened. This is
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// what a DNS route handler does for a record type its routing peer cannot
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// resolve.
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type deferringHandler struct {
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softNegative bool
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called bool
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supported bool
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}
|
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|
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func (h *deferringHandler) ServeDNS(w dns.ResponseWriter, r *dns.Msg) {
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h.called = true
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if h.softNegative {
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h.supported = requestSoftNegative(w)
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// The real handler records why it stepped aside, for the response log
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// line of whichever handler answers instead.
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resutil.SetMeta(w, resutil.MetaKeyDeferredBy, "test handler")
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}
|
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resp := new(dns.Msg)
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resp.SetRcode(r, dns.RcodeNameError)
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resp.MsgHdr.Zero = true
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_ = w.WriteMsg(resp)
|
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}
|
||||
|
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// nxdomainHandler answers an authoritative NXDOMAIN with an SOA in the
|
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// authority section, the way a public resolver answers for a name that only
|
||||
// exists inside the routed network.
|
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type nxdomainHandler struct{}
|
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|
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func (h *nxdomainHandler) ServeDNS(w dns.ResponseWriter, r *dns.Msg) {
|
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resp := new(dns.Msg)
|
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resp.SetRcode(r, dns.RcodeNameError)
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resp.Ns = []dns.RR{&dns.SOA{
|
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Hdr: dns.RR_Header{Name: "example.com.", Rrtype: dns.TypeSOA, Class: dns.ClassINET, Ttl: 3600},
|
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Ns: "ns1.example.com.",
|
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Mbox: "hostmaster.example.com.",
|
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Minttl: 3600,
|
||||
Expire: 604800,
|
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Refresh: 7200,
|
||||
Retry: 3600,
|
||||
}}
|
||||
_ = w.WriteMsg(resp)
|
||||
}
|
||||
|
||||
// TestHandlerChain_SoftNegative_DowngradesDownstreamNXDOMAIN is the whole point
|
||||
// of the soft-negative signal: a route handler may only defer a query to the
|
||||
// public chain if the answer cannot poison the routed name. NXDOMAIN is cached
|
||||
// for the name and every type under it (RFC 2308, RFC 8020), so it has to be
|
||||
// rewritten to NODATA, which is cached per name and type only.
|
||||
func TestHandlerChain_SoftNegative_DowngradesDownstreamNXDOMAIN(t *testing.T) {
|
||||
chain := nbdns.NewHandlerChain()
|
||||
|
||||
route := &deferringHandler{softNegative: true}
|
||||
chain.AddHandler("*.example.com.", route, nbdns.PriorityDNSRoute)
|
||||
chain.AddHandler(".", &nxdomainHandler{}, nbdns.PriorityDefault)
|
||||
|
||||
r := new(dns.Msg)
|
||||
r.SetQuestion("_mongodb._tcp.db.example.com.", dns.TypeSRV)
|
||||
|
||||
mw := &test.MockResponseWriter{}
|
||||
chain.ServeDNS(&nbdns.ResponseWriterChain{ResponseWriter: mw}, r)
|
||||
|
||||
resp := mw.GetLastResponse()
|
||||
require.NotNil(t, resp, "a response must reach the client")
|
||||
assert.True(t, route.called, "the route handler must run first")
|
||||
require.True(t, route.supported, "the chain writer must accept a soft-negative request")
|
||||
assert.Equal(t, dns.RcodeSuccess, resp.Rcode, "NXDOMAIN must be softened to NODATA")
|
||||
assert.Empty(t, resp.Answer, "a softened negative carries no answer")
|
||||
assert.Empty(t, resp.Ns, "the downstream zone's SOA must not set the negative TTL for a name we overrode")
|
||||
}
|
||||
|
||||
// responseLineFor returns the chain's response log line for one query. Raising
|
||||
// the level to trace also unmutes whatever else is logging in this package, so
|
||||
// the line has to be picked by the name it was asked about rather than by being
|
||||
// the last one seen.
|
||||
func responseLineFor(hook *logtest.Hook, qname string) string {
|
||||
for _, e := range hook.AllEntries() {
|
||||
if strings.HasPrefix(e.Message, "response:") && strings.Contains(e.Message, qname) {
|
||||
return e.Message
|
||||
}
|
||||
}
|
||||
return ""
|
||||
}
|
||||
|
||||
// TestHandlerChain_SoftNegative_IsVisibleToTheClient covers observability of the
|
||||
// rewrite. The reply we hand the application travels over loopback, which the
|
||||
// bundle capture does not see, so a softened verdict has to say so on the wire:
|
||||
// without it an empty answer is indistinguishable from a real "no such record"
|
||||
// in a dig output or a capture taken next to the application.
|
||||
func TestHandlerChain_SoftNegative_IsVisibleToTheClient(t *testing.T) {
|
||||
// One hook for the whole test: logtest installs it on the standard logger
|
||||
// and logrus has no way to take it off again, so a hook per subtest would
|
||||
// leave several behind buffering every later line in the package.
|
||||
hook := logtest.NewGlobal()
|
||||
t.Cleanup(hook.Reset)
|
||||
|
||||
newChain := func() *nbdns.HandlerChain {
|
||||
chain := nbdns.NewHandlerChain()
|
||||
chain.AddHandler("*.example.com.", &deferringHandler{softNegative: true}, nbdns.PriorityDNSRoute)
|
||||
chain.AddHandler(".", &nxdomainHandler{}, nbdns.PriorityDefault)
|
||||
return chain
|
||||
}
|
||||
|
||||
t.Run("EDNS0 client gets an extended error", func(t *testing.T) {
|
||||
r := new(dns.Msg)
|
||||
r.SetQuestion("_mongodb._tcp.db.example.com.", dns.TypeSRV)
|
||||
r.SetEdns0(dns.DefaultMsgSize, false)
|
||||
|
||||
mw := &test.MockResponseWriter{}
|
||||
newChain().ServeDNS(&nbdns.ResponseWriterChain{ResponseWriter: mw}, r)
|
||||
|
||||
resp := mw.GetLastResponse()
|
||||
require.NotNil(t, resp)
|
||||
require.Equal(t, dns.RcodeSuccess, resp.Rcode)
|
||||
|
||||
ede, ok := resutil.ExtractEDE(resp)
|
||||
require.True(t, ok, "a softened verdict must carry an extended DNS error")
|
||||
assert.Equal(t, resutil.EDENetbirdSoftenedNegative, ede.InfoCode)
|
||||
assert.Contains(t, ede.ExtraText, "netbird", "the text must name us as the source of the rewrite")
|
||||
})
|
||||
|
||||
t.Run("plain client gets no OPT", func(t *testing.T) {
|
||||
r := new(dns.Msg)
|
||||
r.SetQuestion("_mongodb._tcp.db.example.com.", dns.TypeSRV)
|
||||
|
||||
mw := &test.MockResponseWriter{}
|
||||
newChain().ServeDNS(&nbdns.ResponseWriterChain{ResponseWriter: mw}, r)
|
||||
|
||||
resp := mw.GetLastResponse()
|
||||
require.NotNil(t, resp)
|
||||
assert.Nil(t, resp.IsEdns0(), "RFC 6891 forbids an OPT toward a client that did not advertise EDNS0")
|
||||
})
|
||||
|
||||
// The response line is what support reads out of a debug bundle, and it now
|
||||
// carries several annotations at once. Built from a map, their order would
|
||||
// differ on every query, so the same event never looks the same twice.
|
||||
t.Run("log fields keep a stable order", func(t *testing.T) {
|
||||
const qname = "_mongodb._tcp.stable.example.com."
|
||||
|
||||
prev := log.GetLevel()
|
||||
log.SetLevel(log.TraceLevel)
|
||||
t.Cleanup(func() { log.SetLevel(prev) })
|
||||
|
||||
lineFor := func() string {
|
||||
hook.Reset()
|
||||
|
||||
r := new(dns.Msg)
|
||||
r.SetQuestion(qname, dns.TypeSRV)
|
||||
|
||||
mw := &test.MockResponseWriter{}
|
||||
newChain().ServeDNS(&nbdns.ResponseWriterChain{ResponseWriter: mw}, r)
|
||||
|
||||
line := responseLineFor(hook, qname)
|
||||
// The duration differs per query and is not what we compare.
|
||||
line, _, _ = strings.Cut(line, " took=")
|
||||
return line
|
||||
}
|
||||
|
||||
first := lineFor()
|
||||
require.NotEmpty(t, first, "the chain must log the response it wrote")
|
||||
require.Contains(t, first, "deferred_by=", "the line must carry more than one annotation to be worth ordering")
|
||||
require.Contains(t, first, "softened=")
|
||||
|
||||
for range 20 {
|
||||
assert.Equal(t, first, lineFor(), "the same event must produce the same line")
|
||||
}
|
||||
})
|
||||
|
||||
t.Run("logged with the reason it was deferred", func(t *testing.T) {
|
||||
const qname = "_mongodb._tcp.reason.example.com."
|
||||
|
||||
hook.Reset()
|
||||
|
||||
prev := log.GetLevel()
|
||||
log.SetLevel(log.TraceLevel)
|
||||
t.Cleanup(func() { log.SetLevel(prev) })
|
||||
|
||||
r := new(dns.Msg)
|
||||
r.SetQuestion(qname, dns.TypeSRV)
|
||||
|
||||
mw := &test.MockResponseWriter{}
|
||||
newChain().ServeDNS(&nbdns.ResponseWriterChain{ResponseWriter: mw}, r)
|
||||
|
||||
response := responseLineFor(hook, qname)
|
||||
require.NotEmpty(t, response, "the chain must log the response it wrote")
|
||||
assert.Contains(t, response, "softened=", "the log must show the verdict was rewritten")
|
||||
assert.Contains(t, response, "deferred_by=", "the log must name the handler that deferred")
|
||||
})
|
||||
}
|
||||
|
||||
// TestHandlerChain_SoftNegative_NoHandlerBelow covers a client with no primary
|
||||
// nameserver group: the deferred query reaches the end of the chain unanswered.
|
||||
// REFUSED would say the name is not served here while the route serves its
|
||||
// addresses, and a stub that acts on that by asking elsewhere can bring back an
|
||||
// NXDOMAIN for the whole name. The answer must be an empty, uncacheable NODATA.
|
||||
func TestHandlerChain_SoftNegative_NoHandlerBelow(t *testing.T) {
|
||||
chain := nbdns.NewHandlerChain()
|
||||
|
||||
route := &deferringHandler{softNegative: true}
|
||||
chain.AddHandler("*.example.com.", route, nbdns.PriorityDNSRoute)
|
||||
|
||||
r := new(dns.Msg)
|
||||
r.SetQuestion("db.example.com.", dns.TypeHTTPS)
|
||||
|
||||
mw := &test.MockResponseWriter{}
|
||||
chain.ServeDNS(&nbdns.ResponseWriterChain{ResponseWriter: mw}, r)
|
||||
|
||||
resp := mw.GetLastResponse()
|
||||
require.NotNil(t, resp, "a response must reach the client")
|
||||
assert.Equal(t, dns.RcodeSuccess, resp.Rcode, "an unanswered soft-negative query must be NODATA, not REFUSED")
|
||||
assert.Empty(t, resp.Answer)
|
||||
assert.Empty(t, resp.Ns,
|
||||
"no SOA, so RFC 2308 keeps the empty answer out of negative caches and it cannot outlive the route")
|
||||
}
|
||||
|
||||
// TestHandlerChain_SoftNegative_KeepsRealAnswers guards the other direction:
|
||||
// softening applies to negative verdicts only. A real answer from a downstream
|
||||
// handler must reach the client untouched.
|
||||
func TestHandlerChain_SoftNegative_KeepsRealAnswers(t *testing.T) {
|
||||
chain := nbdns.NewHandlerChain()
|
||||
|
||||
route := &deferringHandler{softNegative: true}
|
||||
chain.AddHandler("*.example.com.", route, nbdns.PriorityDNSRoute)
|
||||
chain.AddHandler(".", &answeringHandler{name: "public", ip: "203.0.113.10"}, nbdns.PriorityDefault)
|
||||
|
||||
r := new(dns.Msg)
|
||||
r.SetQuestion("db.example.com.", dns.TypeA)
|
||||
|
||||
mw := &test.MockResponseWriter{}
|
||||
chain.ServeDNS(&nbdns.ResponseWriterChain{ResponseWriter: mw}, r)
|
||||
|
||||
resp := mw.GetLastResponse()
|
||||
require.NotNil(t, resp, "a response must reach the client")
|
||||
assert.Equal(t, dns.RcodeSuccess, resp.Rcode)
|
||||
require.Len(t, resp.Answer, 1, "the downstream answer must pass through")
|
||||
}
|
||||
|
||||
// TestHandlerChain_NXDOMAINPreservedWithoutSoftNegative makes sure the
|
||||
// softening is opt-in: an ordinary chain continuation still yields NXDOMAIN, so
|
||||
// genuine non-existence keeps being reported.
|
||||
func TestHandlerChain_NXDOMAINPreservedWithoutSoftNegative(t *testing.T) {
|
||||
chain := nbdns.NewHandlerChain()
|
||||
|
||||
route := &deferringHandler{}
|
||||
chain.AddHandler("*.example.com.", route, nbdns.PriorityDNSRoute)
|
||||
chain.AddHandler(".", &nxdomainHandler{}, nbdns.PriorityDefault)
|
||||
|
||||
r := new(dns.Msg)
|
||||
r.SetQuestion("nope.example.com.", dns.TypeA)
|
||||
|
||||
mw := &test.MockResponseWriter{}
|
||||
chain.ServeDNS(&nbdns.ResponseWriterChain{ResponseWriter: mw}, r)
|
||||
|
||||
resp := mw.GetLastResponse()
|
||||
require.NotNil(t, resp, "a response must reach the client")
|
||||
assert.Equal(t, dns.RcodeNameError, resp.Rcode, "without the signal a real NXDOMAIN must survive")
|
||||
}
|
||||
|
||||
func TestHandlerChain_HasRootHandlerAtOrBelow(t *testing.T) {
|
||||
chain := nbdns.NewHandlerChain()
|
||||
h := &answeringHandler{name: "h", ip: "10.0.0.1"}
|
||||
|
||||
@@ -19,6 +19,34 @@ import (
|
||||
// uses when a resolved host has no addresses of the requested family.
|
||||
const errNoSuitableAddress = "no suitable address found"
|
||||
|
||||
// Extended DNS Error info codes NetBird emits so a client can see why an answer
|
||||
// looks the way it does without reading this peer's logs. They live in the RFC
|
||||
// 8914 Private Use range (49152-65535) and are registered here, in one place,
|
||||
// because nothing else guarantees two NetBird components pick distinct codes.
|
||||
const (
|
||||
// EDENetbirdUpstreamTimeout: a DNS forwarder's upstream did not answer.
|
||||
EDENetbirdUpstreamTimeout uint16 = 49152
|
||||
// EDENetbirdUpstreamFailure: a DNS forwarder's upstream failed.
|
||||
EDENetbirdUpstreamFailure uint16 = 49153
|
||||
// EDENetbirdSoftenedNegative: the empty answer is ours, not the answering
|
||||
// resolver's. A handler that owns the name deferred this query type, and the
|
||||
// negative verdict that came back was downgraded so it cannot poison the
|
||||
// name.
|
||||
EDENetbirdSoftenedNegative uint16 = 49154
|
||||
)
|
||||
|
||||
// AttachEDE adds an Extended DNS Error (RFC 8914) option to a message, creating
|
||||
// the OPT pseudo-record if it has none. Callers must only use it toward a client
|
||||
// that advertised EDNS0: per RFC 6891 an OPT must not appear otherwise.
|
||||
func AttachEDE(msg *dns.Msg, code uint16, text string) {
|
||||
opt := msg.IsEdns0()
|
||||
if opt == nil {
|
||||
msg.SetEdns0(dns.DefaultMsgSize, false)
|
||||
opt = msg.IsEdns0()
|
||||
}
|
||||
opt.Option = append(opt.Option, &dns.EDNS0_EDE{InfoCode: code, ExtraText: text})
|
||||
}
|
||||
|
||||
// GenerateRequestID creates a random 8-character hex string for request tracing.
|
||||
func GenerateRequestID() string {
|
||||
bytes := make([]byte, 4)
|
||||
@@ -78,10 +106,38 @@ type resolver interface {
|
||||
LookupNetIP(ctx context.Context, network, host string) ([]netip.Addr, error)
|
||||
}
|
||||
|
||||
// MetaKey names an annotation a handler attaches to a request to explain the
|
||||
// response the chain ends up writing. The set is closed and rendered onto a
|
||||
// single log line, so an unrecognized key is a typo inventing a field rather
|
||||
// than a new fact.
|
||||
type MetaKey string
|
||||
|
||||
const (
|
||||
// MetaKeyProtocol: the transport a query arrived on.
|
||||
MetaKeyProtocol MetaKey = "protocol"
|
||||
// MetaKeyUpstream: the upstream that answered.
|
||||
MetaKeyUpstream MetaKey = "upstream"
|
||||
// MetaKeyUpstreamProtocol: the transport used toward that upstream.
|
||||
MetaKeyUpstreamProtocol MetaKey = "upstream_protocol"
|
||||
// MetaKeyPeer: the routing peer whose forwarder answered.
|
||||
MetaKeyPeer MetaKey = "peer"
|
||||
// MetaKeyEDE: an Extended DNS Error carried by the answer.
|
||||
MetaKeyEDE MetaKey = "ede"
|
||||
// MetaKeyTruncated: the answer did not fit and was truncated.
|
||||
MetaKeyTruncated MetaKey = "truncated"
|
||||
// MetaKeySoftened: a negative verdict was rewritten so it cannot poison a
|
||||
// name served locally.
|
||||
MetaKeySoftened MetaKey = "softened"
|
||||
// MetaKeyDeferredBy: the handler that owned the name and stepped aside.
|
||||
MetaKeyDeferredBy MetaKey = "deferred_by"
|
||||
// MetaKeyDeferredReason: why it stepped aside.
|
||||
MetaKeyDeferredReason MetaKey = "deferred_reason"
|
||||
)
|
||||
|
||||
// chainedWriter is implemented by ResponseWriters that carry request metadata
|
||||
type chainedWriter interface {
|
||||
RequestID() string
|
||||
SetMeta(key, value string)
|
||||
SetMeta(key MetaKey, value string)
|
||||
}
|
||||
|
||||
// GetRequestID extracts a request ID from the ResponseWriter if available,
|
||||
@@ -96,12 +152,30 @@ func GetRequestID(w dns.ResponseWriter) string {
|
||||
}
|
||||
|
||||
// SetMeta sets metadata on the ResponseWriter if it supports it.
|
||||
func SetMeta(w dns.ResponseWriter, key, value string) {
|
||||
func SetMeta(w dns.ResponseWriter, key MetaKey, value string) {
|
||||
if cw, ok := w.(chainedWriter); ok {
|
||||
cw.SetMeta(key, value)
|
||||
}
|
||||
}
|
||||
|
||||
// softNegativeRequester is implemented by chain writers that can soften the
|
||||
// negative verdict of the handlers a deferring handler falls through to.
|
||||
type softNegativeRequester interface {
|
||||
RequestSoftNegative()
|
||||
}
|
||||
|
||||
// RequestSoftNegative asks the handler chain to downgrade an NXDOMAIN from the
|
||||
// handlers that run after the caller defers. A handler that owns a name but
|
||||
// cannot answer one query type for it needs this: the resolvers it falls
|
||||
// through to cannot prove the name absent, and an NXDOMAIN from them is cached
|
||||
// for the name and every type under it (RFC 2308, RFC 8020), taking the
|
||||
// addresses the handler does serve down with it.
|
||||
func RequestSoftNegative(w dns.ResponseWriter) {
|
||||
if sn, ok := w.(softNegativeRequester); ok {
|
||||
sn.RequestSoftNegative()
|
||||
}
|
||||
}
|
||||
|
||||
// LookupResult contains the result of an external DNS lookup
|
||||
type LookupResult struct {
|
||||
IPs []netip.Addr
|
||||
@@ -199,11 +273,27 @@ type RecordResolver interface {
|
||||
LookupAddr(ctx context.Context, addr string) ([]string, error)
|
||||
}
|
||||
|
||||
// SupportedRecordQtype reports whether LookupRecords can resolve qtype. The
|
||||
// set is bounded by the net.Resolver API, which exposes no way to query an
|
||||
// arbitrary record type, and going around it with a raw exchange would mean
|
||||
// picking nameservers ourselves instead of resolving the way the host does.
|
||||
//
|
||||
// Both ends read this: a DNS forwarder answers these types for the domains it
|
||||
// routes, and a client uses it to tell which types are worth forwarding to a
|
||||
// peer at all.
|
||||
func SupportedRecordQtype(qtype uint16) bool {
|
||||
switch qtype {
|
||||
case dns.TypeMX, dns.TypeTXT, dns.TypeNS, dns.TypeSRV, dns.TypeCNAME, dns.TypePTR:
|
||||
return true
|
||||
default:
|
||||
return false
|
||||
}
|
||||
}
|
||||
|
||||
// LookupRecords resolves a non-address DNS record type through the host
|
||||
// resolver and returns the resource records and the DNS rcode. Types the host
|
||||
// resolver cannot answer (anything not covered by the net.Resolver Lookup*
|
||||
// methods) yield NODATA so that a routed name is never poisoned with NXDOMAIN
|
||||
// for an unsupported type.
|
||||
// resolver and returns the resource records and the DNS rcode. Types outside
|
||||
// SupportedRecordQtype yield NODATA so that a routed name is never poisoned
|
||||
// with NXDOMAIN for a type we cannot look up.
|
||||
func LookupRecords(ctx context.Context, r RecordResolver, name string, qtype uint16, ttl uint32) ([]dns.RR, int) {
|
||||
fqdn := dns.Fqdn(name)
|
||||
|
||||
|
||||
@@ -295,7 +295,7 @@ func (u *upstreamResolverBase) ServeDNS(w dns.ResponseWriter, r *dns.Msg) {
|
||||
if addr := w.RemoteAddr(); addr != nil {
|
||||
network := addr.Network()
|
||||
ctx = contextWithDNSProtocol(ctx, network)
|
||||
resutil.SetMeta(w, "protocol", network)
|
||||
resutil.SetMeta(w, resutil.MetaKeyProtocol, network)
|
||||
}
|
||||
|
||||
ok, failures := u.tryUpstreamServers(ctx, w, r, logger)
|
||||
@@ -331,7 +331,7 @@ func (u *upstreamResolverBase) tryOnlyRace(ctx context.Context, w dns.ResponseWr
|
||||
return false, res.failures
|
||||
}
|
||||
if res.ede != "" {
|
||||
resutil.SetMeta(w, "ede", res.ede)
|
||||
resutil.SetMeta(w, resutil.MetaKeyEDE, res.ede)
|
||||
}
|
||||
u.writeSuccessResponse(w, res.msg, res.upstream, r.Question[0].Name, res.protocol, logger)
|
||||
return true, res.failures
|
||||
@@ -361,7 +361,7 @@ func (u *upstreamResolverBase) raceAll(ctx context.Context, w dns.ResponseWriter
|
||||
failures = append(failures, res.failures...)
|
||||
if res.msg != nil {
|
||||
if res.ede != "" {
|
||||
resutil.SetMeta(w, "ede", res.ede)
|
||||
resutil.SetMeta(w, resutil.MetaKeyEDE, res.ede)
|
||||
}
|
||||
u.writeSuccessResponse(w, res.msg, res.upstream, r.Question[0].Name, res.protocol, logger)
|
||||
return true, failures
|
||||
@@ -550,9 +550,9 @@ func (u *upstreamResolverBase) debugUpstreamTimeout(upstream netip.AddrPort) str
|
||||
}
|
||||
|
||||
func (u *upstreamResolverBase) writeSuccessResponse(w dns.ResponseWriter, rm *dns.Msg, upstream netip.AddrPort, domain string, proto string, logger *log.Entry) {
|
||||
resutil.SetMeta(w, "upstream", upstream.String())
|
||||
resutil.SetMeta(w, resutil.MetaKeyUpstream, upstream.String())
|
||||
if proto != "" {
|
||||
resutil.SetMeta(w, "upstream_protocol", proto)
|
||||
resutil.SetMeta(w, resutil.MetaKeyUpstreamProtocol, proto)
|
||||
}
|
||||
|
||||
// Clear Zero bit from external responses to prevent upstream servers from
|
||||
|
||||
@@ -26,15 +26,6 @@ import (
|
||||
const errResolveFailed = "failed to resolve query for domain=%s: %v"
|
||||
const upstreamTimeout = 15 * time.Second
|
||||
|
||||
// EDE info codes the forwarder emits on upstream failures so the querying
|
||||
// client can see the reason without inspecting this peer's logs. They live in
|
||||
// the RFC 8914 Private Use range (49152-65535); the Go resolver never exposes a
|
||||
// real upstream EDE here, so these cannot collide with a genuine code.
|
||||
const (
|
||||
edeNetbirdUpstreamTimeout uint16 = 49152
|
||||
edeNetbirdUpstreamFailure uint16 = 49153
|
||||
)
|
||||
|
||||
type resolver interface {
|
||||
LookupNetIP(ctx context.Context, network, host string) ([]netip.Addr, error)
|
||||
LookupMX(ctx context.Context, name string) ([]*net.MX, error)
|
||||
@@ -216,6 +207,9 @@ func (f *DNSForwarder) handleDNSQuery(logger *log.Entry, w dns.ResponseWriter, q
|
||||
qname, dns.TypeToString[question.Qtype], dns.ClassToString[question.Qclass])
|
||||
|
||||
resp := query.SetReply(query)
|
||||
// Every answer here comes from a recursive lookup on this peer. SetReply
|
||||
// leaves RA unset, which reads to a client as a server that cannot recurse.
|
||||
resp.RecursionAvailable = true
|
||||
|
||||
mostSpecificResId, matchingEntries := f.getMatchingEntries(strings.TrimSuffix(qname, "."))
|
||||
if mostSpecificResId == "" {
|
||||
@@ -229,20 +223,22 @@ func (f *DNSForwarder) handleDNSQuery(logger *log.Entry, w dns.ResponseWriter, q
|
||||
|
||||
reqHasEdns := query.IsEdns0() != nil
|
||||
|
||||
switch question.Qtype {
|
||||
case dns.TypeA, dns.TypeAAAA:
|
||||
switch {
|
||||
case question.Qtype == dns.TypeA || question.Qtype == dns.TypeAAAA:
|
||||
f.handleAddressQuery(ctx, logger, w, resp, mostSpecificResId, matchingEntries, reqHasEdns, startTime)
|
||||
case dns.TypeMX, dns.TypeTXT, dns.TypeNS, dns.TypeSRV, dns.TypeCNAME, dns.TypePTR:
|
||||
case resutil.SupportedRecordQtype(question.Qtype):
|
||||
f.handleRecordQuery(ctx, logger, w, resp, startTime)
|
||||
default:
|
||||
// The domain is routed here, so any other type is answered NODATA
|
||||
// (NOERROR, empty answer) rather than falling back to a resolver that
|
||||
// would poison the name with NXDOMAIN. The Extended DNS Error lets a
|
||||
// client tell this capability-driven NODATA apart from an
|
||||
// authoritative one. The OPT pseudo-record must not appear unless the
|
||||
// query advertised EDNS0.
|
||||
// authoritative one; a current client knows the type is unsupported and
|
||||
// resolves it through its own handler chain instead of asking at all.
|
||||
// The OPT pseudo-record must not appear unless the query advertised
|
||||
// EDNS0.
|
||||
if reqHasEdns {
|
||||
attachEDE(resp, dns.ExtendedErrorCodeNotSupported, "netbird forwarder: unsupported query type")
|
||||
resutil.AttachEDE(resp, dns.ExtendedErrorCodeNotSupported, "netbird forwarder: unsupported query type")
|
||||
}
|
||||
f.writeResponse(logger, w, resp, qname, startTime)
|
||||
}
|
||||
@@ -441,7 +437,7 @@ func (f *DNSForwarder) handleDNSError(
|
||||
}
|
||||
|
||||
if reqHasEdns {
|
||||
attachEDE(resp, edeCodeFor(dnsErr), edeText(dnsErr))
|
||||
resutil.AttachEDE(resp, edeCodeFor(dnsErr), edeText(dnsErr))
|
||||
}
|
||||
|
||||
f.writeResponse(logger, w, resp, domain, startTime)
|
||||
@@ -488,9 +484,9 @@ func (f *DNSForwarder) getMatchingEntries(domain string) (route.ResID, []*Forwar
|
||||
// edeCodeFor maps an upstream lookup error to the NetBird EDE info code.
|
||||
func edeCodeFor(dnsErr *net.DNSError) uint16 {
|
||||
if dnsErr != nil && dnsErr.IsTimeout {
|
||||
return edeNetbirdUpstreamTimeout
|
||||
return resutil.EDENetbirdUpstreamTimeout
|
||||
}
|
||||
return edeNetbirdUpstreamFailure
|
||||
return resutil.EDENetbirdUpstreamFailure
|
||||
}
|
||||
|
||||
// edeText builds the EDE extra-text describing the class of upstream failure.
|
||||
@@ -503,14 +499,3 @@ func edeText(dnsErr *net.DNSError) string {
|
||||
}
|
||||
return "netbird forwarder: upstream failure"
|
||||
}
|
||||
|
||||
// attachEDE adds an Extended DNS Error (RFC 8914) option to the response,
|
||||
// creating the OPT pseudo-record if the response does not already carry one.
|
||||
func attachEDE(resp *dns.Msg, code uint16, text string) {
|
||||
opt := resp.IsEdns0()
|
||||
if opt == nil {
|
||||
resp.SetEdns0(dns.DefaultMsgSize, false)
|
||||
opt = resp.IsEdns0()
|
||||
}
|
||||
opt.Option = append(opt.Option, &dns.EDNS0_EDE{InfoCode: code, ExtraText: text})
|
||||
}
|
||||
|
||||
@@ -649,6 +649,39 @@ func TestDNSForwarder_ResponseCodes(t *testing.T) {
|
||||
}
|
||||
}
|
||||
|
||||
// TestDNSForwarder_RecursionAvailable covers the RA bit. Every answer this
|
||||
// forwarder produces comes from a recursive lookup on the routing peer, but
|
||||
// dns.Msg.SetReply leaves RA unset, so clients report "recursion not available"
|
||||
// and some stub resolvers treat the server as unable to serve the query.
|
||||
func TestDNSForwarder_RecursionAvailable(t *testing.T) {
|
||||
t.Run("record answer", func(t *testing.T) {
|
||||
mockResolver := &MockResolver{}
|
||||
forwarder := newRecordTestForwarder(t, mockResolver, "example.com")
|
||||
|
||||
mockResolver.On("LookupMX", mock.Anything, "example.com.").
|
||||
Return([]*net.MX{{Host: "mail.example.com.", Pref: 10}}, nil).Once()
|
||||
|
||||
resp := runRecordQuery(t, forwarder, "example.com", dns.TypeMX)
|
||||
assert.True(t, resp.RecursionAvailable, "the forwarder resolves recursively")
|
||||
})
|
||||
|
||||
t.Run("unsupported type NODATA", func(t *testing.T) {
|
||||
forwarder := newRecordTestForwarder(t, &MockResolver{}, "example.com")
|
||||
|
||||
resp := runRecordQuery(t, forwarder, "example.com", dns.TypeCAA)
|
||||
require.Equal(t, dns.RcodeSuccess, resp.Rcode)
|
||||
assert.True(t, resp.RecursionAvailable, "RA describes the server, not the query type")
|
||||
})
|
||||
|
||||
t.Run("unauthorized domain", func(t *testing.T) {
|
||||
forwarder := newRecordTestForwarder(t, &MockResolver{}, "example.com")
|
||||
|
||||
resp := runRecordQuery(t, forwarder, "other.com", dns.TypeMX)
|
||||
require.Equal(t, dns.RcodeRefused, resp.Rcode)
|
||||
assert.True(t, resp.RecursionAvailable, "RA describes the server, not the verdict")
|
||||
})
|
||||
}
|
||||
|
||||
func hasEDE(m *dns.Msg, code uint16) bool {
|
||||
opt := m.IsEdns0()
|
||||
if opt == nil {
|
||||
@@ -859,7 +892,7 @@ func TestDNSForwarder_UpstreamFailureEDE(t *testing.T) {
|
||||
lookupErr: &net.DNSError{Err: "i/o timeout", Server: "10.0.0.53:53", IsTimeout: true},
|
||||
reqEdns: true,
|
||||
wantEDE: true,
|
||||
wantCode: edeNetbirdUpstreamTimeout,
|
||||
wantCode: resutil.EDENetbirdUpstreamTimeout,
|
||||
wantTextHas: "netbird forwarder: upstream timeout",
|
||||
},
|
||||
{
|
||||
@@ -867,7 +900,7 @@ func TestDNSForwarder_UpstreamFailureEDE(t *testing.T) {
|
||||
lookupErr: &net.DNSError{Err: "server misbehaving", Server: "10.0.0.53:53"},
|
||||
reqEdns: true,
|
||||
wantEDE: true,
|
||||
wantCode: edeNetbirdUpstreamFailure,
|
||||
wantCode: resutil.EDENetbirdUpstreamFailure,
|
||||
wantTextHas: "netbird forwarder: upstream failure",
|
||||
},
|
||||
{
|
||||
|
||||
@@ -22,7 +22,6 @@ import (
|
||||
nbdns "github.com/netbirdio/netbird/client/internal/dns"
|
||||
"github.com/netbirdio/netbird/client/internal/dns/resutil"
|
||||
"github.com/netbirdio/netbird/client/internal/peer"
|
||||
"github.com/netbirdio/netbird/client/internal/peerstore"
|
||||
"github.com/netbirdio/netbird/client/internal/routemanager/common"
|
||||
"github.com/netbirdio/netbird/client/internal/routemanager/fakeip"
|
||||
iface "github.com/netbirdio/netbird/client/internal/routemanager/iface"
|
||||
@@ -40,6 +39,61 @@ type internalDNATer interface {
|
||||
AddInternalDNATMapping(netip.Addr, netip.Addr) error
|
||||
}
|
||||
|
||||
// peerAllowedIPs reports the tunnel address a peer is reachable on.
|
||||
type peerAllowedIPs interface {
|
||||
AllowedIP(pubKey string) (netip.Addr, bool)
|
||||
}
|
||||
|
||||
// disposition says where a query for a given record type has to be answered.
|
||||
type disposition int
|
||||
|
||||
const (
|
||||
// dispositionPeer: the routing peer owns the answer. Address records are
|
||||
// what a DNS route exists for, and their answer programs the routes,
|
||||
// allowed IPs and firewall sets, so they are never resolved anywhere else.
|
||||
dispositionPeer disposition = iota
|
||||
// dispositionPeerFirst: the peer's forwarder resolves the type, and the
|
||||
// records may only exist inside the routed network, so it has to be asked.
|
||||
// A peer running a client that predates that support cannot answer, which
|
||||
// only its reply reveals.
|
||||
dispositionPeerFirst
|
||||
// dispositionChain: no forwarder resolves the type, so asking would cost a
|
||||
// tunnel round trip for a reply that says nothing. Public records for the
|
||||
// name are still better than none, so the query goes to the rest of the
|
||||
// chain.
|
||||
dispositionChain
|
||||
)
|
||||
|
||||
func dispositionFor(qtype uint16) disposition {
|
||||
switch {
|
||||
case qtype == dns.TypeA || qtype == dns.TypeAAAA:
|
||||
return dispositionPeer
|
||||
case resutil.SupportedRecordQtype(qtype):
|
||||
return dispositionPeerFirst
|
||||
default:
|
||||
return dispositionChain
|
||||
}
|
||||
}
|
||||
|
||||
// peerCannotAnswer reports whether a forwarder reply means the peer is unable to
|
||||
// resolve this query type, as opposed to having resolved it and found nothing.
|
||||
// A forwarder older than the one that learned to resolve non-address types
|
||||
// answers NOTIMP to all of them, before it even looks at the domain; FORMERR
|
||||
// covers one that cannot parse the EDNS0 we add to the query.
|
||||
//
|
||||
// REFUSED is deliberately not here. It says the peer does not hold the name,
|
||||
// which happens while the client and the peer disagree about the route set, and
|
||||
// falling through then would hand the name of an internal-only domain to a
|
||||
// public resolver. No forwarder version reports a missing record type that way.
|
||||
func peerCannotAnswer(rcode int) bool {
|
||||
switch rcode {
|
||||
case dns.RcodeNotImplemented, dns.RcodeFormatError:
|
||||
return true
|
||||
default:
|
||||
return false
|
||||
}
|
||||
}
|
||||
|
||||
type DnsInterceptor struct {
|
||||
mu sync.RWMutex
|
||||
route *route.Route
|
||||
@@ -50,7 +104,7 @@ type DnsInterceptor struct {
|
||||
currentPeerKey string
|
||||
interceptedDomains domainMap
|
||||
wgInterface iface.WGIface
|
||||
peerStore *peerstore.Store
|
||||
peerStore peerAllowedIPs
|
||||
firewall firewall.Manager
|
||||
fakeIPManager *fakeip.Manager
|
||||
forwarderPort *atomic.Uint32
|
||||
@@ -226,11 +280,14 @@ func (d *DnsInterceptor) ServeDNS(w dns.ResponseWriter, r *dns.Msg) {
|
||||
return
|
||||
}
|
||||
|
||||
// All query types for an intercepted domain are forwarded to the peer's
|
||||
// DNS forwarder, which owns the name. Falling through to the system
|
||||
// resolver would let it answer NXDOMAIN for a name it isn't authoritative
|
||||
// for, poisoning the whole name (including the A/AAAA records the route
|
||||
// does serve). The forwarder answers NODATA for types it cannot resolve.
|
||||
qtype := r.Question[0].Qtype
|
||||
dispose := dispositionFor(qtype)
|
||||
|
||||
if dispose == dispositionChain {
|
||||
d.deferToChain(w, r, logger, "unsupported-qtype")
|
||||
return
|
||||
}
|
||||
|
||||
d.mu.RLock()
|
||||
peerKey := d.currentPeerKey
|
||||
d.mu.RUnlock()
|
||||
@@ -246,35 +303,33 @@ func (d *DnsInterceptor) ServeDNS(w dns.ResponseWriter, r *dns.Msg) {
|
||||
return
|
||||
}
|
||||
|
||||
if r.Extra == nil {
|
||||
r.MsgHdr.AuthenticatedData = true
|
||||
}
|
||||
|
||||
// Advertise EDNS0 to the forwarder so it may return an Extended DNS Error
|
||||
// describing why a lookup failed. The OPT is stripped from the reply when
|
||||
// the original client did not request EDNS0.
|
||||
hadEdns := r.IsEdns0() != nil
|
||||
if !hadEdns {
|
||||
r.SetEdns0(dns.DefaultMsgSize, false)
|
||||
}
|
||||
query, hadEdns := peerQuery(r)
|
||||
|
||||
upstream := net.JoinHostPort(upstreamIP.String(), strconv.FormatUint(uint64(d.forwarderPort.Load()), 10))
|
||||
ctx, cancel := context.WithTimeout(context.Background(), dnsTimeout)
|
||||
defer cancel()
|
||||
|
||||
reply := d.queryUpstreamDNS(ctx, w, r, upstream, upstreamIP, peerKey, logger)
|
||||
reply := d.queryUpstreamDNS(ctx, w, query, upstream, upstreamIP, peerKey, logger)
|
||||
if reply == nil {
|
||||
// queryUpstreamDNS already logged the failure and answered the client
|
||||
return
|
||||
}
|
||||
|
||||
// The peer owns the name but its forwarder cannot resolve this type. No
|
||||
// capability is announced anywhere, so the round trip above is the probe.
|
||||
if dispose == dispositionPeerFirst && peerCannotAnswer(reply.Rcode) {
|
||||
d.deferToChain(w, r, logger, "peer-rcode-"+dns.RcodeToString[reply.Rcode])
|
||||
return
|
||||
}
|
||||
|
||||
if ede, ok := resutil.ExtractEDE(reply); ok {
|
||||
resutil.SetMeta(w, "ede", fmt.Sprintf("%d %s", ede.InfoCode, ede.ExtraText))
|
||||
resutil.SetMeta(w, resutil.MetaKeyEDE, fmt.Sprintf("%d %s", ede.InfoCode, ede.ExtraText))
|
||||
}
|
||||
if !hadEdns {
|
||||
resutil.StripOPT(reply)
|
||||
}
|
||||
|
||||
resutil.SetMeta(w, "peer", peerKey)
|
||||
resutil.SetMeta(w, resutil.MetaKeyPeer, peerKey)
|
||||
|
||||
reply.Id = r.Id
|
||||
if err := d.writeMsg(w, reply, logger); err != nil {
|
||||
@@ -282,6 +337,30 @@ func (d *DnsInterceptor) ServeDNS(w dns.ResponseWriter, r *dns.Msg) {
|
||||
}
|
||||
}
|
||||
|
||||
// deferToChain hands the query to the next handler in the chain and asks the
|
||||
// chain to soften the negative verdict of whatever answers instead. The
|
||||
// resolvers below cannot prove a name inside the routed network absent, so their
|
||||
// NXDOMAIN must not reach the client: it would be cached for the name and every
|
||||
// type under it, taking the addresses this route does serve with it.
|
||||
func (d *DnsInterceptor) deferToChain(w dns.ResponseWriter, r *dns.Msg, logger *log.Entry, reason string) {
|
||||
logger.Tracef("continuing to next handler for domain=%s type=%s reason=%s",
|
||||
r.Question[0].Name, dns.TypeToString[r.Question[0].Qtype], reason)
|
||||
|
||||
resutil.RequestSoftNegative(w)
|
||||
// Carried to the chain's response log line: without it the answer looks like
|
||||
// it came from the fallthrough resolver on its own.
|
||||
resutil.SetMeta(w, resutil.MetaKeyDeferredBy, "dns-route")
|
||||
resutil.SetMeta(w, resutil.MetaKeyDeferredReason, reason)
|
||||
|
||||
resp := new(dns.Msg)
|
||||
resp.SetRcode(r, dns.RcodeNameError)
|
||||
// Set Zero bit to signal handler chain to continue
|
||||
resp.MsgHdr.Zero = true
|
||||
if err := w.WriteMsg(resp); err != nil {
|
||||
logger.Errorf("failed writing DNS continue response: %v", err)
|
||||
}
|
||||
}
|
||||
|
||||
func (d *DnsInterceptor) writeDNSError(w dns.ResponseWriter, r *dns.Msg, logger *log.Entry, reason string) {
|
||||
logger.Warnf("failed to query upstream for domain=%s: %s", r.Question[0].Name, reason)
|
||||
|
||||
@@ -621,3 +700,26 @@ func (d *DnsInterceptor) debugPeerTimeout(peerIP netip.Addr, peerKey string) str
|
||||
|
||||
return fmt.Sprintf(" (peer %s)", nbdns.FormatPeerStatus(&peerState))
|
||||
}
|
||||
|
||||
// peerQuery builds the query sent to a peer's DNS forwarder and reports whether
|
||||
// the client itself advertised EDNS0. EDNS0 is added so the forwarder can return
|
||||
// an Extended DNS Error describing an upstream failure, and the OPT is stripped
|
||||
// from the reply again when the client did not ask for it. The client's message
|
||||
// is left untouched: it may still be handed to the next handler in the chain,
|
||||
// and neither the OPT nor the AD bit is ours to put on the wire on its behalf.
|
||||
func peerQuery(r *dns.Msg) (query *dns.Msg, hadEdns bool) {
|
||||
query = r.Copy()
|
||||
hadEdns = query.IsEdns0() != nil
|
||||
|
||||
// AD tells the forwarder we understand authenticated data. Only set when the
|
||||
// client sent no additional section of its own, so we never overrule what it
|
||||
// asked for.
|
||||
if len(query.Extra) == 0 {
|
||||
query.MsgHdr.AuthenticatedData = true
|
||||
}
|
||||
if !hadEdns {
|
||||
query.SetEdns0(dns.DefaultMsgSize, false)
|
||||
}
|
||||
|
||||
return query, hadEdns
|
||||
}
|
||||
|
||||
399
client/internal/routemanager/dnsinterceptor/handler_test.go
Normal file
399
client/internal/routemanager/dnsinterceptor/handler_test.go
Normal file
@@ -0,0 +1,399 @@
|
||||
package dnsinterceptor
|
||||
|
||||
import (
|
||||
"net"
|
||||
"net/netip"
|
||||
"sync"
|
||||
"sync/atomic"
|
||||
"testing"
|
||||
"time"
|
||||
|
||||
"github.com/miekg/dns"
|
||||
"github.com/stretchr/testify/assert"
|
||||
"github.com/stretchr/testify/require"
|
||||
"golang.zx2c4.com/wireguard/tun/netstack"
|
||||
|
||||
"github.com/netbirdio/netbird/client/iface/device"
|
||||
"github.com/netbirdio/netbird/client/iface/wgaddr"
|
||||
"github.com/netbirdio/netbird/client/internal/dns/resutil"
|
||||
"github.com/netbirdio/netbird/client/internal/dns/test"
|
||||
"github.com/netbirdio/netbird/client/internal/peer"
|
||||
"github.com/netbirdio/netbird/route"
|
||||
)
|
||||
|
||||
// softNegativeWriter records what the handler told the chain: whether to soften
|
||||
// a negative verdict from the handlers it defers to, and the metadata that ends
|
||||
// up on the chain's response log line.
|
||||
type softNegativeWriter struct {
|
||||
test.MockResponseWriter
|
||||
softNegative bool
|
||||
meta map[resutil.MetaKey]string
|
||||
}
|
||||
|
||||
func (w *softNegativeWriter) RequestSoftNegative() { w.softNegative = true }
|
||||
|
||||
func (w *softNegativeWriter) RequestID() string { return "test" }
|
||||
|
||||
func (w *softNegativeWriter) SetMeta(key resutil.MetaKey, value string) {
|
||||
if w.meta == nil {
|
||||
w.meta = make(map[resutil.MetaKey]string)
|
||||
}
|
||||
w.meta[key] = value
|
||||
}
|
||||
|
||||
// TestServeDNS_QtypeTheForwarderCannotResolve covers the record types no DNS
|
||||
// forwarder can answer, because the host resolver exposes no API for them.
|
||||
// Asking the peer only burns a tunnel round trip, so the query goes straight to
|
||||
// the rest of the chain. No peer key is configured, proving no round trip is
|
||||
// attempted.
|
||||
func TestServeDNS_QtypeTheForwarderCannotResolve(t *testing.T) {
|
||||
qtypes := []uint16{
|
||||
dns.TypeHTTPS,
|
||||
dns.TypeSVCB,
|
||||
dns.TypeCAA,
|
||||
dns.TypeNAPTR,
|
||||
dns.TypeTLSA,
|
||||
dns.TypeSOA,
|
||||
}
|
||||
|
||||
for _, qtype := range qtypes {
|
||||
t.Run(dns.TypeToString[qtype], func(t *testing.T) {
|
||||
d := &DnsInterceptor{}
|
||||
w := &softNegativeWriter{}
|
||||
|
||||
r := new(dns.Msg)
|
||||
r.SetQuestion("db.example.com.", qtype)
|
||||
|
||||
d.ServeDNS(w, r)
|
||||
|
||||
resp := w.GetLastResponse()
|
||||
require.NotNil(t, resp, "a response must be written")
|
||||
assert.Equal(t, dns.RcodeNameError, resp.Rcode, "chain continuation is signalled as NXDOMAIN")
|
||||
assert.True(t, resp.MsgHdr.Zero, "Zero bit must be set so the chain continues")
|
||||
assert.True(t, w.softNegative,
|
||||
"a downstream NXDOMAIN must be softened, or the fallthrough poisons the routed name")
|
||||
assert.Equal(t, "dns-route", w.meta[resutil.MetaKeyDeferredBy],
|
||||
"the chain's response log line must name us as the handler that stepped aside")
|
||||
assert.Equal(t, "unsupported-qtype", w.meta[resutil.MetaKeyDeferredReason],
|
||||
"the reason must survive to the log line, or the fallthrough is invisible")
|
||||
})
|
||||
}
|
||||
}
|
||||
|
||||
// TestServeDNS_AddressQtypeNeverFallsThrough locks in the opposite case: A and
|
||||
// AAAA are what the route exists for, and the peer is authoritative for them.
|
||||
// A missing peer is an error the client must see, never a fallthrough to a
|
||||
// resolver that knows nothing about the routed name.
|
||||
func TestServeDNS_AddressQtypeNeverFallsThrough(t *testing.T) {
|
||||
for _, qtype := range []uint16{dns.TypeA, dns.TypeAAAA} {
|
||||
t.Run(dns.TypeToString[qtype], func(t *testing.T) {
|
||||
d := &DnsInterceptor{}
|
||||
w := &softNegativeWriter{}
|
||||
|
||||
r := new(dns.Msg)
|
||||
r.SetQuestion("db.example.com.", qtype)
|
||||
|
||||
d.ServeDNS(w, r)
|
||||
|
||||
resp := w.GetLastResponse()
|
||||
require.NotNil(t, resp, "a response must be written")
|
||||
assert.Equal(t, dns.RcodeServerFailure, resp.Rcode, "an unusable route must fail, not fall through")
|
||||
assert.False(t, resp.MsgHdr.Zero, "the chain must not continue for address queries")
|
||||
assert.False(t, w.softNegative, "no fallthrough means nothing to soften")
|
||||
})
|
||||
}
|
||||
}
|
||||
|
||||
// TestDispositionFor pins the query-type policy, and ties the types we ask a
|
||||
// peer about to the types a forwarder can actually resolve, so the two ends
|
||||
// cannot drift apart.
|
||||
func TestDispositionFor(t *testing.T) {
|
||||
tests := []struct {
|
||||
qtype uint16
|
||||
want disposition
|
||||
}{
|
||||
{dns.TypeA, dispositionPeer},
|
||||
{dns.TypeAAAA, dispositionPeer},
|
||||
{dns.TypeMX, dispositionPeerFirst},
|
||||
{dns.TypeTXT, dispositionPeerFirst},
|
||||
{dns.TypeNS, dispositionPeerFirst},
|
||||
{dns.TypeSRV, dispositionPeerFirst},
|
||||
{dns.TypeCNAME, dispositionPeerFirst},
|
||||
{dns.TypePTR, dispositionPeerFirst},
|
||||
{dns.TypeHTTPS, dispositionChain},
|
||||
{dns.TypeSVCB, dispositionChain},
|
||||
{dns.TypeCAA, dispositionChain},
|
||||
{dns.TypeNAPTR, dispositionChain},
|
||||
{dns.TypeTLSA, dispositionChain},
|
||||
{dns.TypeDS, dispositionChain},
|
||||
{dns.TypeDNSKEY, dispositionChain},
|
||||
{dns.TypeSOA, dispositionChain},
|
||||
{dns.TypeANY, dispositionChain},
|
||||
}
|
||||
|
||||
for _, tt := range tests {
|
||||
t.Run(dns.TypeToString[tt.qtype], func(t *testing.T) {
|
||||
assert.Equal(t, tt.want, dispositionFor(tt.qtype), "disposition for %s", dns.TypeToString[tt.qtype])
|
||||
|
||||
// Address types are resolved by the forwarder's address path, not by
|
||||
// its record path, so they are deliberately outside
|
||||
// SupportedRecordQtype and their disposition does not depend on it.
|
||||
if tt.want == dispositionPeer {
|
||||
assert.False(t, resutil.SupportedRecordQtype(tt.qtype),
|
||||
"address types take the forwarder's address path")
|
||||
return
|
||||
}
|
||||
|
||||
assert.Equal(t, tt.want == dispositionPeerFirst, resutil.SupportedRecordQtype(tt.qtype),
|
||||
"only types a forwarder resolves may be sent to a peer")
|
||||
})
|
||||
}
|
||||
}
|
||||
|
||||
// TestPeerCannotAnswer separates a peer that cannot resolve a type from one that
|
||||
// resolved it and found nothing. Only the former may be retried elsewhere:
|
||||
// treating NODATA or NXDOMAIN as a capability failure would send the client to a
|
||||
// public resolver behind the peer's back and prefer a public record over the
|
||||
// private one the route exists to reach.
|
||||
func TestPeerCannotAnswer(t *testing.T) {
|
||||
cannot := []int{dns.RcodeNotImplemented, dns.RcodeFormatError}
|
||||
for _, rcode := range cannot {
|
||||
assert.True(t, peerCannotAnswer(rcode), "%s means the peer cannot answer", dns.RcodeToString[rcode])
|
||||
}
|
||||
|
||||
// REFUSED belongs here, not above: it says the peer does not hold the name,
|
||||
// so retrying elsewhere would leak the name of an internal-only domain to a
|
||||
// public resolver. No forwarder version reports a missing record type this
|
||||
// way, so nothing is lost by keeping it out.
|
||||
can := []int{
|
||||
dns.RcodeSuccess,
|
||||
dns.RcodeNameError,
|
||||
dns.RcodeServerFailure,
|
||||
dns.RcodeNotAuth,
|
||||
dns.RcodeRefused,
|
||||
}
|
||||
for _, rcode := range can {
|
||||
assert.False(t, peerCannotAnswer(rcode), "%s is the peer's answer, not a capability failure", dns.RcodeToString[rcode])
|
||||
}
|
||||
}
|
||||
|
||||
// fakeWGIface is the minimum an interceptor needs to reach a peer's DNS
|
||||
// forwarder over a plain socket. A nil netstack keeps the exchange on the host
|
||||
// stack so the test can point it at a loopback listener.
|
||||
type fakeWGIface struct{}
|
||||
|
||||
func (fakeWGIface) AddAllowedIP(string, netip.Prefix) error { return nil }
|
||||
func (fakeWGIface) RemoveAllowedIP(string, netip.Prefix) error { return nil }
|
||||
func (fakeWGIface) Name() string { return "wt0" }
|
||||
func (fakeWGIface) Address() wgaddr.Address { return wgaddr.Address{} }
|
||||
func (fakeWGIface) ToInterface() *net.Interface { return nil }
|
||||
func (fakeWGIface) IsUserspaceBind() bool { return false }
|
||||
func (fakeWGIface) GetFilter() device.PacketFilter { return nil }
|
||||
func (fakeWGIface) GetDevice() *device.FilteredDevice { return nil }
|
||||
func (fakeWGIface) GetNet() *netstack.Net { return nil }
|
||||
|
||||
// fakePeerIPs resolves every peer key to the loopback address the test's
|
||||
// forwarder stub listens on.
|
||||
type fakePeerIPs struct {
|
||||
addr netip.Addr
|
||||
}
|
||||
|
||||
func (p fakePeerIPs) AllowedIP(string) (netip.Addr, bool) { return p.addr, p.addr.IsValid() }
|
||||
|
||||
// forwarderStub stands in for the DNS forwarder of a routing peer, recording
|
||||
// what it was asked and answering with a canned reply.
|
||||
type forwarderStub struct {
|
||||
mu sync.Mutex
|
||||
queries []*dns.Msg
|
||||
reply func(q *dns.Msg) *dns.Msg
|
||||
port uint16
|
||||
shutdown func()
|
||||
}
|
||||
|
||||
func (s *forwarderStub) received() []*dns.Msg {
|
||||
s.mu.Lock()
|
||||
defer s.mu.Unlock()
|
||||
return append([]*dns.Msg(nil), s.queries...)
|
||||
}
|
||||
|
||||
func newForwarderStub(t *testing.T, reply func(q *dns.Msg) *dns.Msg) *forwarderStub {
|
||||
t.Helper()
|
||||
|
||||
conn, err := net.ListenUDP("udp", net.UDPAddrFromAddrPort(netip.MustParseAddrPort("127.0.0.1:0")))
|
||||
require.NoError(t, err, "listen for the forwarder stub")
|
||||
|
||||
stub := &forwarderStub{reply: reply}
|
||||
stub.port = uint16(conn.LocalAddr().(*net.UDPAddr).Port)
|
||||
|
||||
mux := dns.NewServeMux()
|
||||
mux.HandleFunc(".", func(w dns.ResponseWriter, q *dns.Msg) {
|
||||
stub.mu.Lock()
|
||||
stub.queries = append(stub.queries, q.Copy())
|
||||
stub.mu.Unlock()
|
||||
_ = w.WriteMsg(stub.reply(q))
|
||||
})
|
||||
|
||||
srv := &dns.Server{PacketConn: conn, Handler: mux}
|
||||
started := make(chan struct{})
|
||||
srv.NotifyStartedFunc = func() { close(started) }
|
||||
go func() {
|
||||
_ = srv.ActivateAndServe()
|
||||
}()
|
||||
select {
|
||||
case <-started:
|
||||
case <-time.After(5 * time.Second):
|
||||
t.Fatal("forwarder stub did not start")
|
||||
}
|
||||
|
||||
stub.shutdown = func() { _ = srv.Shutdown() }
|
||||
t.Cleanup(stub.shutdown)
|
||||
|
||||
return stub
|
||||
}
|
||||
|
||||
func newTestInterceptor(t *testing.T, stub *forwarderStub) *DnsInterceptor {
|
||||
t.Helper()
|
||||
|
||||
port := new(atomic.Uint32)
|
||||
port.Store(uint32(stub.port))
|
||||
|
||||
return &DnsInterceptor{
|
||||
route: &route.Route{Domains: nil},
|
||||
statusRecorder: peer.NewRecorder("https://mgm"),
|
||||
currentPeerKey: "peer-key",
|
||||
interceptedDomains: make(domainMap),
|
||||
wgInterface: fakeWGIface{},
|
||||
peerStore: fakePeerIPs{addr: netip.MustParseAddr("127.0.0.1")},
|
||||
forwarderPort: port,
|
||||
}
|
||||
}
|
||||
|
||||
// TestServeDNS_PeerCannotResolveQtype is the reported regression: a routing peer
|
||||
// running a client older than the one that taught the forwarder about non-address
|
||||
// record types answers NOTIMP for every SRV query, and the interceptor used to
|
||||
// hand that straight to the application, breaking SRV-based service discovery.
|
||||
// The client cannot know the peer's capability up front, so it must try the peer
|
||||
// and fall back to the chain when the peer says it cannot answer.
|
||||
func TestServeDNS_PeerCannotResolveQtype(t *testing.T) {
|
||||
for _, rcode := range []int{dns.RcodeNotImplemented, dns.RcodeFormatError} {
|
||||
t.Run(dns.RcodeToString[rcode], func(t *testing.T) {
|
||||
stub := newForwarderStub(t, func(q *dns.Msg) *dns.Msg {
|
||||
resp := new(dns.Msg)
|
||||
resp.SetRcode(q, rcode)
|
||||
return resp
|
||||
})
|
||||
d := newTestInterceptor(t, stub)
|
||||
w := &softNegativeWriter{}
|
||||
|
||||
r := new(dns.Msg)
|
||||
r.SetQuestion("_mongodb._tcp.db.example.com.", dns.TypeSRV)
|
||||
|
||||
d.ServeDNS(w, r)
|
||||
|
||||
require.Len(t, stub.received(), 1, "the peer must be asked before giving up on it")
|
||||
|
||||
resp := w.GetLastResponse()
|
||||
require.NotNil(t, resp, "a response must be written")
|
||||
assert.Equal(t, dns.RcodeNameError, resp.Rcode, "chain continuation is signalled as NXDOMAIN")
|
||||
assert.True(t, resp.MsgHdr.Zero, "Zero bit must be set so the chain continues")
|
||||
assert.True(t, w.softNegative, "the fallthrough must not be allowed to poison the routed name")
|
||||
assert.Equal(t, "dns-route", w.meta[resutil.MetaKeyDeferredBy])
|
||||
assert.Equal(t, "peer-rcode-"+dns.RcodeToString[rcode], w.meta[resutil.MetaKeyDeferredReason],
|
||||
"the peer's verdict must be visible in the log, it is the only trace of the probe")
|
||||
})
|
||||
}
|
||||
}
|
||||
|
||||
// TestServeDNS_PeerVerdictPassesThrough covers the replies that are the peer's
|
||||
// answer rather than a statement about its capability. The peer is authoritative
|
||||
// for a name routed to it, so its verdict reaches the client as it is: retrying
|
||||
// these elsewhere would send the name of an internal-only domain to a public
|
||||
// resolver and prefer whatever that resolver says over the route.
|
||||
func TestServeDNS_PeerVerdictPassesThrough(t *testing.T) {
|
||||
// REFUSED means the peer does not consider the name routed to it, which
|
||||
// happens while the client and the peer disagree about the route set. It is
|
||||
// never how a peer reports a record type it cannot resolve: a forwarder too
|
||||
// old for non-address types answers NOTIMP before it looks at the domain.
|
||||
for _, rcode := range []int{dns.RcodeRefused, dns.RcodeNameError, dns.RcodeSuccess} {
|
||||
t.Run(dns.RcodeToString[rcode], func(t *testing.T) {
|
||||
stub := newForwarderStub(t, func(q *dns.Msg) *dns.Msg {
|
||||
resp := new(dns.Msg)
|
||||
resp.SetRcode(q, rcode)
|
||||
return resp
|
||||
})
|
||||
d := newTestInterceptor(t, stub)
|
||||
w := &softNegativeWriter{}
|
||||
|
||||
r := new(dns.Msg)
|
||||
r.SetQuestion("_mongodb._tcp.db.example.com.", dns.TypeSRV)
|
||||
|
||||
d.ServeDNS(w, r)
|
||||
|
||||
require.Len(t, stub.received(), 1, "the peer must be asked exactly once")
|
||||
|
||||
resp := w.GetLastResponse()
|
||||
require.NotNil(t, resp, "a response must be written")
|
||||
assert.Equal(t, rcode, resp.Rcode, "the peer's verdict must reach the client unchanged")
|
||||
assert.False(t, resp.MsgHdr.Zero, "the chain must not continue past an answered query")
|
||||
assert.False(t, w.softNegative, "nothing was deferred, so nothing may be softened")
|
||||
})
|
||||
}
|
||||
}
|
||||
|
||||
// TestServeDNS_PeerResolvesQtype guards the common case: a peer that can answer
|
||||
// the type stays authoritative, and its records reach the client unchanged.
|
||||
func TestServeDNS_PeerResolvesQtype(t *testing.T) {
|
||||
stub := newForwarderStub(t, func(q *dns.Msg) *dns.Msg {
|
||||
resp := new(dns.Msg)
|
||||
resp.SetReply(q)
|
||||
resp.Answer = []dns.RR{&dns.SRV{
|
||||
Hdr: dns.RR_Header{Name: q.Question[0].Name, Rrtype: dns.TypeSRV, Class: dns.ClassINET, Ttl: 60},
|
||||
Target: "shard-00.db.example.com.",
|
||||
Port: 27017,
|
||||
}}
|
||||
return resp
|
||||
})
|
||||
d := newTestInterceptor(t, stub)
|
||||
w := &softNegativeWriter{}
|
||||
|
||||
r := new(dns.Msg)
|
||||
r.SetQuestion("_mongodb._tcp.db.example.com.", dns.TypeSRV)
|
||||
|
||||
d.ServeDNS(w, r)
|
||||
|
||||
resp := w.GetLastResponse()
|
||||
require.NotNil(t, resp, "a response must be written")
|
||||
assert.Equal(t, dns.RcodeSuccess, resp.Rcode)
|
||||
require.Len(t, resp.Answer, 1, "the peer's records must pass through")
|
||||
assert.False(t, resp.MsgHdr.Zero, "an answered query must not continue the chain")
|
||||
assert.False(t, w.softNegative)
|
||||
}
|
||||
|
||||
// TestServeDNS_DeferredQueryIsPristine covers what the fallthrough hands to the
|
||||
// next handler. The interceptor advertises EDNS0 to the peer so the forwarder can
|
||||
// return an Extended DNS Error, and sets AD, but neither belongs to the client's
|
||||
// query: on the deferred path they would travel to the public resolver and the
|
||||
// reply could come back carrying an OPT the client never advertised, which
|
||||
// RFC 6891 forbids us from passing on.
|
||||
func TestServeDNS_DeferredQueryIsPristine(t *testing.T) {
|
||||
stub := newForwarderStub(t, func(q *dns.Msg) *dns.Msg {
|
||||
resp := new(dns.Msg)
|
||||
resp.SetRcode(q, dns.RcodeNotImplemented)
|
||||
return resp
|
||||
})
|
||||
d := newTestInterceptor(t, stub)
|
||||
w := &softNegativeWriter{}
|
||||
|
||||
r := new(dns.Msg)
|
||||
r.SetQuestion("_mongodb._tcp.db.example.com.", dns.TypeSRV)
|
||||
|
||||
d.ServeDNS(w, r)
|
||||
|
||||
sent := stub.received()
|
||||
require.Len(t, sent, 1)
|
||||
assert.NotNil(t, sent[0].IsEdns0(), "the peer must be asked with EDNS0 so it can return an EDE")
|
||||
|
||||
assert.Nil(t, r.IsEdns0(), "the deferred query must not carry an OPT the client never sent")
|
||||
assert.False(t, r.AuthenticatedData, "the deferred query must not carry an AD bit the client never set")
|
||||
assert.Empty(t, r.Extra, "the deferred query must reach the next handler as the client sent it")
|
||||
}
|
||||
@@ -0,0 +1,7 @@
|
||||
//go:build windows
|
||||
|
||||
package dnsinterceptor
|
||||
|
||||
// GetInterfaceGUIDString completes iface.WGIface on Windows, which requires the
|
||||
// interface GUID for DNS registration.
|
||||
func (fakeWGIface) GetInterfaceGUIDString() (string, error) { return "", nil }
|
||||
@@ -165,10 +165,6 @@ type AccessRestrictions struct {
|
||||
AllowedCountries []string `json:"allowed_countries,omitempty" gorm:"serializer:json"`
|
||||
BlockedCountries []string `json:"blocked_countries,omitempty" gorm:"serializer:json"`
|
||||
CrowdSecMode string `json:"crowdsec_mode,omitempty" gorm:"serializer:json"`
|
||||
// AllowMatch controls how the allowlists combine: "" or "all" require
|
||||
// matching every allowlist (AND), "any" requires matching at least one (OR).
|
||||
// Empty is treated as "all" for backward compatibility with existing records.
|
||||
AllowMatch string `json:"allow_match,omitempty" gorm:"serializer:json"`
|
||||
}
|
||||
|
||||
// Copy returns a deep copy of the AccessRestrictions.
|
||||
@@ -179,7 +175,6 @@ func (r AccessRestrictions) Copy() AccessRestrictions {
|
||||
AllowedCountries: slices.Clone(r.AllowedCountries),
|
||||
BlockedCountries: slices.Clone(r.BlockedCountries),
|
||||
CrowdSecMode: r.CrowdSecMode,
|
||||
AllowMatch: r.AllowMatch,
|
||||
}
|
||||
}
|
||||
|
||||
@@ -813,19 +808,13 @@ func restrictionsFromAPI(r *api.AccessRestrictions) (AccessRestrictions, error)
|
||||
}
|
||||
res.CrowdSecMode = string(*r.CrowdsecMode)
|
||||
}
|
||||
if r.AllowMatch != nil {
|
||||
if !r.AllowMatch.Valid() {
|
||||
return AccessRestrictions{}, fmt.Errorf("invalid allow_match %q", *r.AllowMatch)
|
||||
}
|
||||
res.AllowMatch = string(*r.AllowMatch)
|
||||
}
|
||||
return res, nil
|
||||
}
|
||||
|
||||
func restrictionsToAPI(r AccessRestrictions) *api.AccessRestrictions {
|
||||
if len(r.AllowedCIDRs) == 0 && len(r.BlockedCIDRs) == 0 &&
|
||||
len(r.AllowedCountries) == 0 && len(r.BlockedCountries) == 0 &&
|
||||
r.CrowdSecMode == "" && r.AllowMatch == "" {
|
||||
r.CrowdSecMode == "" {
|
||||
return nil
|
||||
}
|
||||
res := &api.AccessRestrictions{}
|
||||
@@ -845,17 +834,13 @@ func restrictionsToAPI(r AccessRestrictions) *api.AccessRestrictions {
|
||||
mode := api.AccessRestrictionsCrowdsecMode(r.CrowdSecMode)
|
||||
res.CrowdsecMode = &mode
|
||||
}
|
||||
if r.AllowMatch != "" {
|
||||
match := api.AccessRestrictionsAllowMatch(r.AllowMatch)
|
||||
res.AllowMatch = &match
|
||||
}
|
||||
return res
|
||||
}
|
||||
|
||||
func restrictionsToProto(r AccessRestrictions) *proto.AccessRestrictions {
|
||||
if len(r.AllowedCIDRs) == 0 && len(r.BlockedCIDRs) == 0 &&
|
||||
len(r.AllowedCountries) == 0 && len(r.BlockedCountries) == 0 &&
|
||||
r.CrowdSecMode == "" && r.AllowMatch == "" {
|
||||
r.CrowdSecMode == "" {
|
||||
return nil
|
||||
}
|
||||
return &proto.AccessRestrictions{
|
||||
@@ -864,7 +849,6 @@ func restrictionsToProto(r AccessRestrictions) *proto.AccessRestrictions {
|
||||
AllowedCountries: r.AllowedCountries,
|
||||
BlockedCountries: r.BlockedCountries,
|
||||
CrowdsecMode: r.CrowdSecMode,
|
||||
AllowMatch: r.AllowMatch,
|
||||
}
|
||||
}
|
||||
|
||||
@@ -1258,22 +1242,10 @@ func validateCrowdSecMode(mode string) error {
|
||||
}
|
||||
}
|
||||
|
||||
func validateAllowMatch(mode string) error {
|
||||
switch mode {
|
||||
case "", "all", "any":
|
||||
return nil
|
||||
default:
|
||||
return fmt.Errorf("allow_match %q is invalid", mode)
|
||||
}
|
||||
}
|
||||
|
||||
func validateAccessRestrictions(r *AccessRestrictions) error {
|
||||
if err := validateCrowdSecMode(r.CrowdSecMode); err != nil {
|
||||
return err
|
||||
}
|
||||
if err := validateAllowMatch(r.AllowMatch); err != nil {
|
||||
return err
|
||||
}
|
||||
|
||||
if len(r.AllowedCIDRs) > maxCIDREntries {
|
||||
return fmt.Errorf("allowed_cidrs: exceeds maximum of %d entries", maxCIDREntries)
|
||||
|
||||
@@ -1302,65 +1302,6 @@ func TestValidate_Private_AcceptsClusterTargetWithAccessGroups(t *testing.T) {
|
||||
require.NoError(t, rp.Validate())
|
||||
}
|
||||
|
||||
func TestRestrictions_AllowMatch_RoundTrip(t *testing.T) {
|
||||
anyMatch := api.AccessRestrictionsAllowMatchAny
|
||||
apiIn := &api.AccessRestrictions{
|
||||
AllowedCidrs: &[]string{"203.0.113.0/24"},
|
||||
AllowedCountries: &[]string{"US"},
|
||||
AllowMatch: &anyMatch,
|
||||
}
|
||||
|
||||
model, err := restrictionsFromAPI(apiIn)
|
||||
require.NoError(t, err)
|
||||
assert.Equal(t, "any", model.AllowMatch)
|
||||
|
||||
apiOut := restrictionsToAPI(model)
|
||||
require.NotNil(t, apiOut.AllowMatch)
|
||||
assert.Equal(t, api.AccessRestrictionsAllowMatchAny, *apiOut.AllowMatch)
|
||||
|
||||
protoOut := restrictionsToProto(model)
|
||||
require.NotNil(t, protoOut)
|
||||
assert.Equal(t, "any", protoOut.AllowMatch)
|
||||
}
|
||||
|
||||
func TestRestrictions_AllowMatch_EmptyDefaultsToAll(t *testing.T) {
|
||||
// A stored record with no allow_match (existing services) stays empty and
|
||||
// must not surface a value on the API, preserving AND behavior downstream.
|
||||
model, err := restrictionsFromAPI(&api.AccessRestrictions{
|
||||
AllowedCidrs: &[]string{"203.0.113.0/24"},
|
||||
})
|
||||
require.NoError(t, err)
|
||||
assert.Empty(t, model.AllowMatch, "unset allow_match stays empty")
|
||||
|
||||
apiOut := restrictionsToAPI(model)
|
||||
require.NotNil(t, apiOut)
|
||||
assert.Nil(t, apiOut.AllowMatch, "empty allow_match is omitted from the API response")
|
||||
}
|
||||
|
||||
func TestRestrictions_AllowMatchOnly_Preserved(t *testing.T) {
|
||||
// allow_match set without any list must not be dropped by the emptiness
|
||||
// guards, so it round-trips through both the API and proto conversions.
|
||||
model := AccessRestrictions{AllowMatch: "any"}
|
||||
|
||||
apiOut := restrictionsToAPI(model)
|
||||
require.NotNil(t, apiOut, "allow-match-only restriction must not be omitted from the API response")
|
||||
require.NotNil(t, apiOut.AllowMatch)
|
||||
assert.Equal(t, api.AccessRestrictionsAllowMatchAny, *apiOut.AllowMatch)
|
||||
|
||||
protoOut := restrictionsToProto(model)
|
||||
require.NotNil(t, protoOut, "allow-match-only restriction must not be omitted from the proto output")
|
||||
assert.Equal(t, "any", protoOut.AllowMatch)
|
||||
}
|
||||
|
||||
func TestValidate_RejectsInvalidAllowMatch(t *testing.T) {
|
||||
rp := validProxy()
|
||||
rp.Restrictions = AccessRestrictions{
|
||||
AllowedCIDRs: []string{"203.0.113.0/24"},
|
||||
AllowMatch: "sometimes",
|
||||
}
|
||||
assert.ErrorContains(t, rp.Validate(), "allow_match")
|
||||
}
|
||||
|
||||
func TestValidate_Private_RejectsNonHTTPMode(t *testing.T) {
|
||||
rp := validProxy()
|
||||
rp.Private = true
|
||||
|
||||
@@ -2259,7 +2259,7 @@ func (s *SqlStore) getPostureChecks(ctx context.Context, accountID string) ([]*p
|
||||
}
|
||||
|
||||
func (s *SqlStore) getServices(ctx context.Context, accountID string) ([]*rpservice.Service, error) {
|
||||
const serviceQuery = `SELECT id, account_id, name, domain, enabled, auth, restrictions,
|
||||
const serviceQuery = `SELECT id, account_id, name, domain, enabled, auth,
|
||||
meta_created_at, meta_certificate_issued_at, meta_status, proxy_cluster,
|
||||
pass_host_header, rewrite_redirects, session_private_key, session_public_key,
|
||||
mode, listen_port, port_auto_assigned, source, source_peer, terminated,
|
||||
@@ -2278,7 +2278,6 @@ func (s *SqlStore) getServices(ctx context.Context, accountID string) ([]*rpserv
|
||||
services, err := pgx.CollectRows(serviceRows, func(row pgx.CollectableRow) (*rpservice.Service, error) {
|
||||
var s rpservice.Service
|
||||
var auth []byte
|
||||
var restrictions []byte
|
||||
var accessGroups []byte
|
||||
var createdAt, certIssuedAt sql.NullTime
|
||||
var status, proxyCluster, sessionPrivateKey, sessionPublicKey sql.NullString
|
||||
@@ -2292,7 +2291,6 @@ func (s *SqlStore) getServices(ctx context.Context, accountID string) ([]*rpserv
|
||||
&s.Domain,
|
||||
&s.Enabled,
|
||||
&auth,
|
||||
&restrictions,
|
||||
&createdAt,
|
||||
&certIssuedAt,
|
||||
&status,
|
||||
@@ -2320,12 +2318,6 @@ func (s *SqlStore) getServices(ctx context.Context, accountID string) ([]*rpserv
|
||||
}
|
||||
}
|
||||
|
||||
if len(restrictions) > 0 {
|
||||
if err := json.Unmarshal(restrictions, &s.Restrictions); err != nil {
|
||||
return nil, fmt.Errorf("unmarshal restrictions: %w", err)
|
||||
}
|
||||
}
|
||||
|
||||
if len(accessGroups) > 0 {
|
||||
if err := json.Unmarshal(accessGroups, &s.AccessGroups); err != nil {
|
||||
return nil, fmt.Errorf("unmarshal access_groups: %w", err)
|
||||
|
||||
@@ -44,42 +44,3 @@ func TestSqlStore_GetAccount_PrivateServiceRoundtrip(t *testing.T) {
|
||||
assert.Equal(t, []string{"grp-admins", "grp-ops"}, got.AccessGroups)
|
||||
})
|
||||
}
|
||||
|
||||
func TestSqlStore_GetAccount_ServiceRestrictionsRoundtrip(t *testing.T) {
|
||||
if os.Getenv("CI") == "true" && (runtime.GOOS == "darwin" || runtime.GOOS == "windows") {
|
||||
t.Skip("skip CI tests on darwin and windows")
|
||||
}
|
||||
|
||||
runTestForAllEngines(t, "", func(t *testing.T, store Store) {
|
||||
ctx := context.Background()
|
||||
account := newAccountWithId(ctx, "account_svc_restrictions", "testuser", "")
|
||||
require.NoError(t, store.SaveAccount(ctx, account))
|
||||
|
||||
svc := &rpservice.Service{
|
||||
ID: "svc-restrictions",
|
||||
AccountID: account.Id,
|
||||
Name: "restricted-svc",
|
||||
Domain: "restricted.example",
|
||||
Enabled: true,
|
||||
Mode: rpservice.ModeHTTP,
|
||||
Restrictions: rpservice.AccessRestrictions{
|
||||
AllowedCIDRs: []string{"203.0.113.0/24"},
|
||||
AllowedCountries: []string{"US"},
|
||||
AllowMatch: "any",
|
||||
},
|
||||
}
|
||||
require.NoError(t, store.CreateService(ctx, svc))
|
||||
|
||||
loaded, err := store.GetAccount(ctx, account.Id)
|
||||
require.NoError(t, err)
|
||||
require.Len(t, loaded.Services, 1)
|
||||
|
||||
// Restrictions are stored as a JSON blob; confirm the whole struct,
|
||||
// including allow_match, survives the read path (Postgres pgx path
|
||||
// included via runTestForAllEngines).
|
||||
got := loaded.Services[0].Restrictions
|
||||
assert.Equal(t, []string{"203.0.113.0/24"}, got.AllowedCIDRs)
|
||||
assert.Equal(t, []string{"US"}, got.AllowedCountries)
|
||||
assert.Equal(t, "any", got.AllowMatch)
|
||||
})
|
||||
}
|
||||
|
||||
@@ -50,28 +50,6 @@ const (
|
||||
CrowdSecObserve CrowdSecMode = "observe"
|
||||
)
|
||||
|
||||
// AllowMatch controls how the configured allowlists (CIDR, country) combine.
|
||||
// Blocklists are always a separate hard-deny gate and are unaffected by it.
|
||||
type AllowMatch string
|
||||
|
||||
const (
|
||||
// AllowMatchAll requires the address to match every configured allowlist
|
||||
// (AND). This is the default and preserves the historical behavior.
|
||||
AllowMatchAll AllowMatch = "all"
|
||||
// AllowMatchAny requires the address to match at least one configured
|
||||
// allowlist (OR), e.g. "allowed country OR allowed CIDR".
|
||||
AllowMatchAny AllowMatch = "any"
|
||||
)
|
||||
|
||||
// normalizeAllowMatch maps unknown or empty values to the restrictive default
|
||||
// (AllowMatchAll) so an unrecognized mode never loosens access.
|
||||
func normalizeAllowMatch(m AllowMatch) AllowMatch {
|
||||
if m == AllowMatchAny {
|
||||
return AllowMatchAny
|
||||
}
|
||||
return AllowMatchAll
|
||||
}
|
||||
|
||||
// Filter evaluates IP restrictions. CIDR checks are performed first
|
||||
// (cheap), followed by country lookups (more expensive) only when needed.
|
||||
type Filter struct {
|
||||
@@ -81,9 +59,6 @@ type Filter struct {
|
||||
BlockedCountries []string
|
||||
CrowdSec CrowdSecChecker
|
||||
CrowdSecMode CrowdSecMode
|
||||
// AllowMatch controls how the allowlists combine (AND vs OR). Empty means
|
||||
// AllowMatchAll.
|
||||
AllowMatch AllowMatch
|
||||
}
|
||||
|
||||
// FilterConfig holds the raw configuration for building a Filter.
|
||||
@@ -94,7 +69,6 @@ type FilterConfig struct {
|
||||
BlockedCountries []string
|
||||
CrowdSec CrowdSecChecker
|
||||
CrowdSecMode CrowdSecMode
|
||||
AllowMatch AllowMatch
|
||||
Logger *log.Entry
|
||||
}
|
||||
|
||||
@@ -115,7 +89,6 @@ func ParseFilter(cfg FilterConfig) *Filter {
|
||||
f := &Filter{
|
||||
AllowedCountries: normalizeCountryCodes(cfg.AllowedCountries),
|
||||
BlockedCountries: normalizeCountryCodes(cfg.BlockedCountries),
|
||||
AllowMatch: normalizeAllowMatch(cfg.AllowMatch),
|
||||
}
|
||||
if hasCS {
|
||||
f.CrowdSec = cfg.CrowdSec
|
||||
@@ -243,10 +216,6 @@ func (f *Filter) Check(addr netip.Addr, geo GeoResolver) Verdict {
|
||||
// IPv4 CIDR rules match regardless of how the address was received.
|
||||
addr = addr.Unmap()
|
||||
|
||||
if f.AllowMatch == AllowMatchAny {
|
||||
return f.checkAny(addr, geo)
|
||||
}
|
||||
|
||||
if v := f.checkCIDR(addr); v != Allow {
|
||||
return v
|
||||
}
|
||||
@@ -256,68 +225,6 @@ func (f *Filter) Check(addr netip.Addr, geo GeoResolver) Verdict {
|
||||
return f.checkCrowdSec(addr)
|
||||
}
|
||||
|
||||
// checkAny evaluates the filter with OR semantics across allowlists: the
|
||||
// address is admitted if it matches any configured allowlist (CIDR or country).
|
||||
// Blocklists remain a hard-deny gate evaluated first and are independent of the
|
||||
// allow-combine mode, so a blocklist match (or unverifiable country block) still
|
||||
// denies. CrowdSec runs last, as in the default path.
|
||||
//
|
||||
// The country is resolved at most once and shared by both the blocklist and the
|
||||
// allowlist, matching what the all-mode path does. Splitting the two checks into
|
||||
// separate helpers cost a second geo lookup per connection whenever both country
|
||||
// lists were configured.
|
||||
func (f *Filter) checkAny(addr netip.Addr, geo GeoResolver) Verdict {
|
||||
for _, prefix := range f.BlockedCIDRs {
|
||||
if prefix.Contains(addr) {
|
||||
return DenyCIDR
|
||||
}
|
||||
}
|
||||
|
||||
cidrActive := len(f.AllowedCIDRs) > 0
|
||||
cidrAllowed := false
|
||||
if cidrActive {
|
||||
for _, prefix := range f.AllowedCIDRs {
|
||||
if prefix.Contains(addr) {
|
||||
cidrAllowed = true
|
||||
break
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
countryActive := len(f.AllowedCountries) > 0
|
||||
// The blocklist is a hard gate, so it needs the country even when a CIDR
|
||||
// allowlist already admitted the address. The allowlist needs it only when
|
||||
// the CIDR list did not admit it, which is why a matching allowed CIDR
|
||||
// still skips the lookup when no country blocklist is configured.
|
||||
needCountry := len(f.BlockedCountries) > 0 || (countryActive && !cidrAllowed)
|
||||
|
||||
country := ""
|
||||
if needCountry {
|
||||
if geo == nil || !geo.Available() {
|
||||
return DenyGeoUnavailable
|
||||
}
|
||||
country = geo.LookupAddr(addr).CountryCode
|
||||
}
|
||||
|
||||
if country != "" && slices.Contains(f.BlockedCountries, country) {
|
||||
return DenyCountry
|
||||
}
|
||||
|
||||
allowed := (!cidrActive && !countryActive) ||
|
||||
cidrAllowed ||
|
||||
(countryActive && country != "" && slices.Contains(f.AllowedCountries, country))
|
||||
if !allowed {
|
||||
// Both allowlists missing is reported against the CIDR list, the one
|
||||
// checked first, so the reason stays stable for existing access logs.
|
||||
if cidrActive {
|
||||
return DenyCIDR
|
||||
}
|
||||
return DenyCountry
|
||||
}
|
||||
|
||||
return f.checkCrowdSec(addr)
|
||||
}
|
||||
|
||||
func (f *Filter) checkCIDR(addr netip.Addr) Verdict {
|
||||
if len(f.AllowedCIDRs) > 0 {
|
||||
allowed := false
|
||||
|
||||
@@ -5,7 +5,6 @@ import (
|
||||
"testing"
|
||||
|
||||
"github.com/stretchr/testify/assert"
|
||||
"github.com/stretchr/testify/require"
|
||||
|
||||
"github.com/netbirdio/netbird/proxy/internal/geolocation"
|
||||
)
|
||||
@@ -151,187 +150,6 @@ func TestFilter_Check_CIDRAllowThenCountryBlock(t *testing.T) {
|
||||
assert.Equal(t, DenyCIDR, f.Check(netip.MustParseAddr("192.168.1.1"), geo), "CIDR denied before country check")
|
||||
}
|
||||
|
||||
// TestFilter_Check_CrossCategoryAllowlistsAreAND documents the current
|
||||
// behavior: when both a CIDR allowlist and a country allowlist are set, a
|
||||
// request must satisfy BOTH to be allowed (AND across categories). There is no
|
||||
// way today to express "allow if in allowed country OR in allowed CIDR", e.g.
|
||||
// "allow all US traffic plus our office IP abroad". This is the gap an
|
||||
// any/all allow-combine mode would close; the cases marked "GAP" are the ones
|
||||
// that would flip to Allow under an "any" mode.
|
||||
func TestFilter_Check_CrossCategoryAllowlistsAreAND(t *testing.T) {
|
||||
officeAbroad := "203.0.113.7" // in allowed CIDR, but country not in allowlist
|
||||
usOutsideOffice := "1.1.1.1" // allowed country, but not in allowed CIDR
|
||||
usOffice := "203.0.113.8" // both
|
||||
neither := "198.51.100.1" // neither
|
||||
|
||||
geo := newMockGeo(map[string]string{
|
||||
officeAbroad: "DE",
|
||||
usOutsideOffice: "US",
|
||||
usOffice: "US",
|
||||
neither: "CN",
|
||||
})
|
||||
f := ParseFilter(FilterConfig{
|
||||
AllowedCIDRs: []string{"203.0.113.0/24"},
|
||||
AllowedCountries: []string{"US"},
|
||||
})
|
||||
|
||||
assert.Equal(t, Allow, f.Check(netip.MustParseAddr(usOffice), geo), "in allowed CIDR and allowed country")
|
||||
assert.Equal(t, DenyCountry, f.Check(netip.MustParseAddr(officeAbroad), geo), "GAP: in allowed CIDR but country not allowed; any-mode should Allow")
|
||||
assert.Equal(t, DenyCIDR, f.Check(netip.MustParseAddr(usOutsideOffice), geo), "GAP: allowed country but not in allowed CIDR; any-mode should Allow")
|
||||
assert.Equal(t, DenyCIDR, f.Check(netip.MustParseAddr(neither), geo), "neither: denied under both modes")
|
||||
}
|
||||
|
||||
// TestFilter_Check_CrossCategoryBlockAndAllow locks the current (all/AND)
|
||||
// cross-category semantics that the evaluator must preserve: a blocklist match
|
||||
// in any category denies regardless of allowlists, and blocklists across
|
||||
// categories are effectively OR (a match in either denies).
|
||||
func TestFilter_Check_CrossCategoryBlockAndAllow(t *testing.T) {
|
||||
geo := newMockGeo(map[string]string{
|
||||
"1.1.1.1": "US",
|
||||
"10.1.2.3": "US",
|
||||
"2.2.2.2": "CN",
|
||||
"3.3.3.3": "US",
|
||||
})
|
||||
|
||||
t.Run("country allowlist with CIDR blocklist", func(t *testing.T) {
|
||||
f := ParseFilter(FilterConfig{
|
||||
AllowedCountries: []string{"US"},
|
||||
BlockedCIDRs: []string{"10.1.0.0/16"},
|
||||
})
|
||||
assert.Equal(t, Allow, f.Check(netip.MustParseAddr("1.1.1.1"), geo), "US and not in blocked CIDR")
|
||||
assert.Equal(t, DenyCIDR, f.Check(netip.MustParseAddr("10.1.2.3"), geo), "US but in blocked CIDR, block wins")
|
||||
assert.Equal(t, DenyCountry, f.Check(netip.MustParseAddr("2.2.2.2"), geo), "not in allowed country")
|
||||
})
|
||||
|
||||
t.Run("blocklists across categories are OR", func(t *testing.T) {
|
||||
f := ParseFilter(FilterConfig{
|
||||
BlockedCIDRs: []string{"10.1.0.0/16"},
|
||||
BlockedCountries: []string{"CN"},
|
||||
})
|
||||
assert.Equal(t, DenyCIDR, f.Check(netip.MustParseAddr("10.1.2.3"), geo), "in blocked CIDR")
|
||||
assert.Equal(t, DenyCountry, f.Check(netip.MustParseAddr("2.2.2.2"), geo), "in blocked country")
|
||||
assert.Equal(t, Allow, f.Check(netip.MustParseAddr("3.3.3.3"), geo), "in neither blocklist")
|
||||
})
|
||||
}
|
||||
|
||||
// TestFilter_Check_AllowCIDRPlusAllowCountryDeniesGeolessLAN documents a trap
|
||||
// with all/AND mode: pairing an allowed CIDR (a private LAN) with an allowed
|
||||
// country denies the LAN source, because a private IP has no country in the
|
||||
// geo DB and an active country allowlist denies unknown countries. Under an
|
||||
// "any" mode the CIDR match alone would admit it. This is the strongest reason
|
||||
// allow-CIDR + allow-country usually wants OR, not AND.
|
||||
func TestFilter_Check_AllowCIDRPlusAllowCountryDeniesGeolessLAN(t *testing.T) {
|
||||
geo := newMockGeo(map[string]string{}) // no entries: every lookup is unknown country
|
||||
f := ParseFilter(FilterConfig{
|
||||
AllowedCIDRs: []string{"192.168.50.0/24"},
|
||||
AllowedCountries: []string{"US"},
|
||||
})
|
||||
|
||||
got := f.Check(netip.MustParseAddr("192.168.50.5"), geo)
|
||||
assert.Equal(t, DenyCountry, got, "GAP: LAN source in allowed CIDR is denied by the country allowlist; any-mode should Allow")
|
||||
}
|
||||
|
||||
func TestFilter_Check_AllowMatchAny(t *testing.T) {
|
||||
bannedIP := "203.0.113.9"
|
||||
geo := newMockGeo(map[string]string{
|
||||
"1.1.1.1": "US", // allowed country, outside allowed CIDR
|
||||
"203.0.113.7": "DE", // allowed CIDR, non-allowed country
|
||||
"203.0.113.8": "US", // both
|
||||
bannedIP: "US", // allowed CIDR, but CrowdSec-banned
|
||||
"198.51.100.1": "CN", // neither
|
||||
"2.2.2.2": "CN", // blocked country, but in allowed CIDR
|
||||
})
|
||||
|
||||
tests := []struct {
|
||||
name string
|
||||
config FilterConfig
|
||||
addr string
|
||||
geo GeoResolver
|
||||
want Verdict
|
||||
}{
|
||||
{
|
||||
name: "in allowed CIDR only",
|
||||
config: FilterConfig{AllowMatch: AllowMatchAny, AllowedCIDRs: []string{"203.0.113.0/24"}, AllowedCountries: []string{"US"}},
|
||||
addr: "203.0.113.7", geo: geo, want: Allow,
|
||||
},
|
||||
{
|
||||
name: "in allowed country only",
|
||||
config: FilterConfig{AllowMatch: AllowMatchAny, AllowedCIDRs: []string{"203.0.113.0/24"}, AllowedCountries: []string{"US"}},
|
||||
addr: "1.1.1.1", geo: geo, want: Allow,
|
||||
},
|
||||
{
|
||||
name: "in both",
|
||||
config: FilterConfig{AllowMatch: AllowMatchAny, AllowedCIDRs: []string{"203.0.113.0/24"}, AllowedCountries: []string{"US"}},
|
||||
addr: "203.0.113.8", geo: geo, want: Allow,
|
||||
},
|
||||
{
|
||||
name: "in neither",
|
||||
config: FilterConfig{AllowMatch: AllowMatchAny, AllowedCIDRs: []string{"203.0.113.0/24"}, AllowedCountries: []string{"US"}},
|
||||
addr: "198.51.100.1", geo: geo, want: DenyCIDR,
|
||||
},
|
||||
{
|
||||
name: "geoless LAN admitted via CIDR (the #597 trap, fixed)",
|
||||
config: FilterConfig{AllowMatch: AllowMatchAny, AllowedCIDRs: []string{"192.168.50.0/24"}, AllowedCountries: []string{"US"}},
|
||||
addr: "192.168.50.5", geo: newMockGeo(map[string]string{}), want: Allow,
|
||||
},
|
||||
{
|
||||
name: "CIDR match short-circuits geo when geo unavailable",
|
||||
config: FilterConfig{AllowMatch: AllowMatchAny, AllowedCIDRs: []string{"203.0.113.0/24"}, AllowedCountries: []string{"US"}},
|
||||
addr: "203.0.113.7", geo: &unavailableGeo{}, want: Allow,
|
||||
},
|
||||
{
|
||||
name: "geo unavailable fails closed when CIDR does not match",
|
||||
config: FilterConfig{AllowMatch: AllowMatchAny, AllowedCIDRs: []string{"203.0.113.0/24"}, AllowedCountries: []string{"US"}},
|
||||
addr: "1.1.1.1", geo: &unavailableGeo{}, want: DenyGeoUnavailable,
|
||||
},
|
||||
{
|
||||
name: "block gate wins over allowed CIDR (blocked country)",
|
||||
config: FilterConfig{AllowMatch: AllowMatchAny, AllowedCIDRs: []string{"0.0.0.0/0"}, BlockedCountries: []string{"CN"}},
|
||||
addr: "2.2.2.2", geo: geo, want: DenyCountry,
|
||||
},
|
||||
{
|
||||
name: "block gate wins over allowed country (blocked CIDR)",
|
||||
config: FilterConfig{AllowMatch: AllowMatchAny, AllowedCountries: []string{"US"}, BlockedCIDRs: []string{"203.0.113.0/24"}},
|
||||
addr: "203.0.113.8", geo: geo, want: DenyCIDR,
|
||||
},
|
||||
}
|
||||
|
||||
for _, tc := range tests {
|
||||
t.Run(tc.name, func(t *testing.T) {
|
||||
f := ParseFilter(tc.config)
|
||||
assert.Equal(t, tc.want, f.Check(netip.MustParseAddr(tc.addr), tc.geo))
|
||||
})
|
||||
}
|
||||
}
|
||||
|
||||
func TestFilter_Check_AllowMatchAny_CrowdSecStillRuns(t *testing.T) {
|
||||
bannedIP := "203.0.113.9"
|
||||
cs := &mockCrowdSec{decisions: map[string]*CrowdSecDecision{bannedIP: {Type: DecisionBan}}, ready: true}
|
||||
geo := newMockGeo(map[string]string{bannedIP: "US", "203.0.113.7": "US"})
|
||||
|
||||
f := ParseFilter(FilterConfig{
|
||||
AllowMatch: AllowMatchAny,
|
||||
AllowedCIDRs: []string{"203.0.113.0/24"},
|
||||
CrowdSec: cs,
|
||||
CrowdSecMode: CrowdSecEnforce,
|
||||
})
|
||||
assert.Equal(t, DenyCrowdSecBan, f.Check(netip.MustParseAddr(bannedIP), geo), "CrowdSec ban denies even when allowlist admits")
|
||||
assert.Equal(t, Allow, f.Check(netip.MustParseAddr("203.0.113.7"), geo), "clean IP in allowed CIDR is allowed")
|
||||
}
|
||||
|
||||
func TestFilter_Check_UnknownAllowMatchDefaultsToAll(t *testing.T) {
|
||||
// An unrecognized allow-combine mode must fall back to the restrictive
|
||||
// AND default, never loosen access.
|
||||
geo := newMockGeo(map[string]string{"203.0.113.7": "DE"})
|
||||
f := ParseFilter(FilterConfig{
|
||||
AllowMatch: AllowMatch("bogus"),
|
||||
AllowedCIDRs: []string{"203.0.113.0/24"},
|
||||
AllowedCountries: []string{"US"},
|
||||
})
|
||||
assert.Equal(t, AllowMatchAll, f.AllowMatch, "unknown mode normalizes to all")
|
||||
assert.Equal(t, DenyCountry, f.Check(netip.MustParseAddr("203.0.113.7"), geo), "AND semantics: in CIDR but wrong country denied")
|
||||
}
|
||||
|
||||
func TestParseFilter_Empty(t *testing.T) {
|
||||
f := ParseFilter(FilterConfig{})
|
||||
assert.Nil(t, f)
|
||||
@@ -734,81 +552,3 @@ func TestFilter_HasRestrictions_CrowdSec(t *testing.T) {
|
||||
f2 := ParseFilter(FilterConfig{CrowdSec: nil, CrowdSecMode: CrowdSecEnforce})
|
||||
assert.True(t, f2.HasRestrictions())
|
||||
}
|
||||
|
||||
// countingGeo records how many times an address was resolved.
|
||||
type countingGeo struct {
|
||||
countries map[string]string
|
||||
lookups int
|
||||
}
|
||||
|
||||
func (c *countingGeo) LookupAddr(addr netip.Addr) geolocation.Result {
|
||||
c.lookups++
|
||||
return geolocation.Result{CountryCode: c.countries[addr.String()]}
|
||||
}
|
||||
|
||||
func (c *countingGeo) Available() bool { return true }
|
||||
|
||||
// The geo lookup is the expensive part of the check and runs per connection, so
|
||||
// "any" mode must resolve the country once and share it between the blocklist
|
||||
// and the allowlist, the way "all" mode does.
|
||||
func TestCheck_AnyResolvesCountryOnce(t *testing.T) {
|
||||
tests := []struct {
|
||||
name string
|
||||
ip string
|
||||
want Verdict
|
||||
wantLookups int
|
||||
}{
|
||||
{"blocked and allowed lists both active", "203.0.113.1", Allow, 1},
|
||||
{"blocked country denies", "198.51.100.1", DenyCountry, 1},
|
||||
{"neither allowlist matches", "192.0.2.1", DenyCIDR, 1},
|
||||
}
|
||||
for _, tt := range tests {
|
||||
t.Run(tt.name, func(t *testing.T) {
|
||||
geo := &countingGeo{countries: map[string]string{
|
||||
"203.0.113.1": "US",
|
||||
"198.51.100.1": "CN",
|
||||
"192.0.2.1": "FR",
|
||||
}}
|
||||
f := ParseFilter(FilterConfig{
|
||||
AllowedCIDRs: []string{"10.0.0.0/8"},
|
||||
AllowedCountries: []string{"US"},
|
||||
BlockedCountries: []string{"CN"},
|
||||
AllowMatch: AllowMatchAny,
|
||||
})
|
||||
require.NotNil(t, f)
|
||||
|
||||
assert.Equal(t, tt.want, f.Check(netip.MustParseAddr(tt.ip), geo))
|
||||
assert.Equal(t, tt.wantLookups, geo.lookups, "the country must be resolved at most once per check")
|
||||
})
|
||||
}
|
||||
}
|
||||
|
||||
// A matching allowed CIDR short-circuits the allowlist, so with no country
|
||||
// blocklist configured there is nothing left to resolve.
|
||||
func TestCheck_AnySkipsLookupWhenCIDRAdmits(t *testing.T) {
|
||||
geo := &countingGeo{countries: map[string]string{"10.1.2.3": "US"}}
|
||||
f := ParseFilter(FilterConfig{
|
||||
AllowedCIDRs: []string{"10.0.0.0/8"},
|
||||
AllowedCountries: []string{"DE"},
|
||||
AllowMatch: AllowMatchAny,
|
||||
})
|
||||
require.NotNil(t, f)
|
||||
|
||||
assert.Equal(t, Allow, f.Check(netip.MustParseAddr("10.1.2.3"), geo))
|
||||
assert.Zero(t, geo.lookups, "an admitted CIDR needs no geo lookup")
|
||||
}
|
||||
|
||||
// The blocklist is a hard gate, so it is consulted even when a CIDR allowlist
|
||||
// already admitted the address.
|
||||
func TestCheck_AnyBlocklistOutranksAllowedCIDR(t *testing.T) {
|
||||
geo := &countingGeo{countries: map[string]string{"10.1.2.3": "CN"}}
|
||||
f := ParseFilter(FilterConfig{
|
||||
AllowedCIDRs: []string{"10.0.0.0/8"},
|
||||
BlockedCountries: []string{"CN"},
|
||||
AllowMatch: AllowMatchAny,
|
||||
})
|
||||
require.NotNil(t, f)
|
||||
|
||||
assert.Equal(t, DenyCountry, f.Check(netip.MustParseAddr("10.1.2.3"), geo))
|
||||
assert.Equal(t, 1, geo.lookups)
|
||||
}
|
||||
|
||||
@@ -1904,7 +1904,6 @@ func (s *Server) parseRestrictions(mapping *proto.ProxyMapping) *restrict.Filter
|
||||
BlockedCountries: r.GetBlockedCountries(),
|
||||
CrowdSec: checker,
|
||||
CrowdSecMode: csMode,
|
||||
AllowMatch: restrict.AllowMatch(r.GetAllowMatch()),
|
||||
Logger: log.NewEntry(s.Logger),
|
||||
})
|
||||
}
|
||||
|
||||
@@ -3379,18 +3379,6 @@ components:
|
||||
- "observe"
|
||||
default: "off"
|
||||
description: CrowdSec IP reputation mode. Only available when the proxy cluster supports CrowdSec.
|
||||
allow_match:
|
||||
type: string
|
||||
enum:
|
||||
- "all"
|
||||
- "any"
|
||||
default: "all"
|
||||
description: >-
|
||||
How the allowlists (allowed_cidrs, allowed_countries) combine.
|
||||
"all" (default) requires a connection to match every configured
|
||||
allowlist (AND); "any" requires it to match at least one (OR), e.g.
|
||||
an allowed country OR an allowed CIDR. Blocklists always reject on
|
||||
match regardless of this setting.
|
||||
PasswordAuthConfig:
|
||||
type: object
|
||||
properties:
|
||||
|
||||
@@ -17,24 +17,6 @@ const (
|
||||
TokenAuthScopes tokenAuthContextKey = "TokenAuth.Scopes"
|
||||
)
|
||||
|
||||
// Defines values for AccessRestrictionsAllowMatch.
|
||||
const (
|
||||
AccessRestrictionsAllowMatchAll AccessRestrictionsAllowMatch = "all"
|
||||
AccessRestrictionsAllowMatchAny AccessRestrictionsAllowMatch = "any"
|
||||
)
|
||||
|
||||
// Valid indicates whether the value is a known member of the AccessRestrictionsAllowMatch enum.
|
||||
func (e AccessRestrictionsAllowMatch) Valid() bool {
|
||||
switch e {
|
||||
case AccessRestrictionsAllowMatchAll:
|
||||
return true
|
||||
case AccessRestrictionsAllowMatchAny:
|
||||
return true
|
||||
default:
|
||||
return false
|
||||
}
|
||||
}
|
||||
|
||||
// Defines values for AccessRestrictionsCrowdsecMode.
|
||||
const (
|
||||
AccessRestrictionsCrowdsecModeEnforce AccessRestrictionsCrowdsecMode = "enforce"
|
||||
@@ -1552,9 +1534,6 @@ func (e PutApiIntegrationsMspTenantsIdInviteJSONBodyValue) Valid() bool {
|
||||
|
||||
// AccessRestrictions Connection-level access restrictions based on IP address or geography. Applies to both HTTP and L4 services.
|
||||
type AccessRestrictions struct {
|
||||
// AllowMatch How the allowlists (allowed_cidrs, allowed_countries) combine. "all" (default) requires a connection to match every configured allowlist (AND); "any" requires it to match at least one (OR), e.g. an allowed country OR an allowed CIDR. Blocklists always reject on match regardless of this setting.
|
||||
AllowMatch *AccessRestrictionsAllowMatch `json:"allow_match,omitempty"`
|
||||
|
||||
// AllowedCidrs CIDR allowlist. If non-empty, only IPs matching these CIDRs are allowed.
|
||||
AllowedCidrs *[]string `json:"allowed_cidrs,omitempty"`
|
||||
|
||||
@@ -1571,9 +1550,6 @@ type AccessRestrictions struct {
|
||||
CrowdsecMode *AccessRestrictionsCrowdsecMode `json:"crowdsec_mode,omitempty"`
|
||||
}
|
||||
|
||||
// AccessRestrictionsAllowMatch How the allowlists (allowed_cidrs, allowed_countries) combine. "all" (default) requires a connection to match every configured allowlist (AND); "any" requires it to match at least one (OR), e.g. an allowed country OR an allowed CIDR. Blocklists always reject on match regardless of this setting.
|
||||
type AccessRestrictionsAllowMatch string
|
||||
|
||||
// AccessRestrictionsCrowdsecMode CrowdSec IP reputation mode. Only available when the proxy cluster supports CrowdSec.
|
||||
type AccessRestrictionsCrowdsecMode string
|
||||
|
||||
|
||||
@@ -990,10 +990,6 @@ type AccessRestrictions struct {
|
||||
BlockedCountries []string `protobuf:"bytes,4,rep,name=blocked_countries,json=blockedCountries,proto3" json:"blocked_countries,omitempty"`
|
||||
// CrowdSec IP reputation mode: "", "off", "enforce", or "observe".
|
||||
CrowdsecMode string `protobuf:"bytes,5,opt,name=crowdsec_mode,json=crowdsecMode,proto3" json:"crowdsec_mode,omitempty"`
|
||||
// How the allowlists (CIDR, country) combine: "" or "all" require matching
|
||||
// every allowlist (AND); "any" requires matching at least one (OR).
|
||||
// Blocklists are always a hard-deny gate, independent of this mode.
|
||||
AllowMatch string `protobuf:"bytes,6,opt,name=allow_match,json=allowMatch,proto3" json:"allow_match,omitempty"`
|
||||
}
|
||||
|
||||
func (x *AccessRestrictions) Reset() {
|
||||
@@ -1063,13 +1059,6 @@ func (x *AccessRestrictions) GetCrowdsecMode() string {
|
||||
return ""
|
||||
}
|
||||
|
||||
func (x *AccessRestrictions) GetAllowMatch() string {
|
||||
if x != nil {
|
||||
return x.AllowMatch
|
||||
}
|
||||
return ""
|
||||
}
|
||||
|
||||
type ProxyMapping struct {
|
||||
state protoimpl.MessageState
|
||||
sizeCache protoimpl.SizeCache
|
||||
@@ -3330,7 +3319,7 @@ var file_proxy_service_proto_rawDesc = []byte{
|
||||
0x72, 0x5f, 0x61, 0x75, 0x74, 0x68, 0x73, 0x18, 0x06, 0x20, 0x03, 0x28, 0x0b, 0x32, 0x16, 0x2e,
|
||||
0x6d, 0x61, 0x6e, 0x61, 0x67, 0x65, 0x6d, 0x65, 0x6e, 0x74, 0x2e, 0x48, 0x65, 0x61, 0x64, 0x65,
|
||||
0x72, 0x41, 0x75, 0x74, 0x68, 0x52, 0x0b, 0x68, 0x65, 0x61, 0x64, 0x65, 0x72, 0x41, 0x75, 0x74,
|
||||
0x68, 0x73, 0x22, 0xfe, 0x01, 0x0a, 0x12, 0x41, 0x63, 0x63, 0x65, 0x73, 0x73, 0x52, 0x65, 0x73,
|
||||
0x68, 0x73, 0x22, 0xdd, 0x01, 0x0a, 0x12, 0x41, 0x63, 0x63, 0x65, 0x73, 0x73, 0x52, 0x65, 0x73,
|
||||
0x74, 0x72, 0x69, 0x63, 0x74, 0x69, 0x6f, 0x6e, 0x73, 0x12, 0x23, 0x0a, 0x0d, 0x61, 0x6c, 0x6c,
|
||||
0x6f, 0x77, 0x65, 0x64, 0x5f, 0x63, 0x69, 0x64, 0x72, 0x73, 0x18, 0x01, 0x20, 0x03, 0x28, 0x09,
|
||||
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|
||||
@@ -3344,395 +3333,393 @@ var file_proxy_service_proto_rawDesc = []byte{
|
||||
0x63, 0x6b, 0x65, 0x64, 0x43, 0x6f, 0x75, 0x6e, 0x74, 0x72, 0x69, 0x65, 0x73, 0x12, 0x23, 0x0a,
|
||||
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|
||||
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|
||||
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|
||||
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|
||||
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|
||||
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|
||||
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|
||||
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|
||||
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|
||||
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|
||||
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|
||||
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|
||||
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|
||||
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|
||||
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|
||||
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|
||||
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|
||||
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|
||||
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|
||||
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|
||||
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|
||||
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|
||||
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|
||||
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|
||||
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|
||||
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|
||||
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|
||||
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|
||||
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|
||||
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|
||||
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|
||||
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|
||||
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|
||||
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|
||||
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|
||||
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|
||||
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|
||||
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|
||||
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|
||||
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|
||||
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|
||||
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|
||||
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|
||||
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|
||||
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|
||||
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|
||||
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|
||||
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}
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|
||||
var (
|
||||
|
||||
@@ -203,10 +203,6 @@ message AccessRestrictions {
|
||||
repeated string blocked_countries = 4;
|
||||
// CrowdSec IP reputation mode: "", "off", "enforce", or "observe".
|
||||
string crowdsec_mode = 5;
|
||||
// How the allowlists (CIDR, country) combine: "" or "all" require matching
|
||||
// every allowlist (AND); "any" requires matching at least one (OR).
|
||||
// Blocklists are always a hard-deny gate, independent of this mode.
|
||||
string allow_match = 6;
|
||||
}
|
||||
|
||||
message ProxyMapping {
|
||||
|
||||
Reference in New Issue
Block a user