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* feat(siit): Initial version Signed-off-by: Michée Lengronne <michee.lengronne@coppint.com> * cleaner readme Signed-off-by: Michée Lengronne <michee.lengronne@coppint.com> * linting and generating Signed-off-by: Michée Lengronne <michee.lengronne@coppint.com> * improving README and removing a useless case Signed-off-by: Michée Lengronne <michee.lengronne@coppint.com> * improvements Signed-off-by: Michée Lengronne <michee.lengronne@coppint.com> * improvements Signed-off-by: Michée Lengronne <michee.lengronne@coppint.com> * linting Signed-off-by: Michée Lengronne <michee.lengronne@coppint.com> * New fixes Signed-off-by: Michée Lengronne <michee.lengronne@coppint.com> * improvements Signed-off-by: Michée Lengronne <michee.lengronne@coppint.com> * improvements Signed-off-by: Michée Lengronne <michee.lengronne@coppint.com> --------- Signed-off-by: Michée Lengronne <michee.lengronne@coppint.com>
332 lines
11 KiB
Go
332 lines
11 KiB
Go
// Package siit implements a plugin that performs AAAA to A translation.
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//
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// See: RFC 6052 (https://tools.ietf.org/html/rfc6052)
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// See: RFC 7757 (https://tools.ietf.org/html/rfc7757)
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package siit
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import (
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"context"
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"errors"
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"net"
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"time"
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"github.com/coredns/coredns/plugin"
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"github.com/coredns/coredns/plugin/metrics"
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"github.com/coredns/coredns/plugin/pkg/nonwriter"
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"github.com/coredns/coredns/plugin/pkg/response"
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"github.com/coredns/coredns/request"
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"github.com/miekg/dns"
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)
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// UpstreamInt wraps the Upstream API for dependency injection during testing
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type UpstreamInt interface {
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Lookup(ctx context.Context, state request.Request, name string, typ uint16) (*dns.Msg, error)
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}
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// SIIT performs SIIT.
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type SIIT struct {
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Next plugin.Handler
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IPv6Prefix *net.IPNet
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Eam4 map[string]net.IP
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Upstream UpstreamInt
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}
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// synthesisCtxKey marks a context as belonging to a translation plugin's own
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// internal synthesis lookup (as opposed to a query that arrived from a
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// client). Unexported so it can't collide with keys set by other packages.
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type synthesisCtxKey struct{}
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// markSynthesisLookup flags ctx as carrying a nested lookup issued by SIIT's
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// own synthesis logic. The flag propagates through every
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// plugin.Handler.ServeDNS(ctx, ...) call in the chain, including through
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// other translation plugins such as dns64, whose own internal
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// Upstream.Lookup calls reuse the context they were invoked with.
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func markSynthesisLookup(ctx context.Context) context.Context {
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return context.WithValue(ctx, synthesisCtxKey{}, true)
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}
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// isSynthesisLookup reports whether ctx was produced by markSynthesisLookup.
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func isSynthesisLookup(ctx context.Context) bool {
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v, _ := ctx.Value(synthesisCtxKey{}).(bool)
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return v
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}
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// ServeDNS implements the plugin.Handler interface.
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func (d *SIIT) ServeDNS(ctx context.Context, w dns.ResponseWriter, r *dns.Msg) (int, error) {
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// A nested lookup issued as part of an in-flight synthesis (SIIT's own,
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// or another translation plugin's further up the chain, e.g. dns64)
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// must not be intercepted again — just pass it through. Otherwise SIIT
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// and dns64 chained together can trigger each other's internal lookups
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// indefinitely: SIIT's AAAA synthesis lookup re-enters the server and
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// reaches dns64, whose own internal A lookup (issued with that same
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// context) re-enters the server and reaches SIIT again as a plain A
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// query, which SIIT would otherwise translate by issuing yet another
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// AAAA lookup, and so on with no bound.
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if isSynthesisLookup(ctx) {
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return plugin.NextOrFailure(d.Name(), d.Next, ctx, w, r)
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}
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// Don't proxy if we don't need to.
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if !d.requestShouldIntercept(&request.Request{W: w, Req: r}) {
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return plugin.NextOrFailure(d.Name(), d.Next, ctx, w, r)
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}
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// Pass the request to the next plugin in the chain, but intercept the response.
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nw := nonwriter.New(w)
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origRc, origErr := d.Next.ServeDNS(ctx, nw, r)
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if nw.Msg == nil { // somehow we didn't get a response (or raw bytes were written)
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return origRc, origErr
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}
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// If the response doesn't need SIIT, short-circuit.
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if !d.responseShouldSIIT(&request.Request{W: w, Req: r}, nw.Msg) {
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w.WriteMsg(nw.Msg)
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return origRc, origErr
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}
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// otherwise do the actual SIIT request and response synthesis
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msg, synthesized, err := d.DoSIIT(ctx, w, r, nw.Msg)
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if err != nil {
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// err means we weren't able to even issue the A or AAAA request
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// to CoreDNS upstream
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return dns.RcodeServerFailure, err
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}
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if synthesized {
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RequestsTranslatedCount.WithLabelValues(metrics.WithServer(ctx)).Inc()
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}
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w.WriteMsg(msg)
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return msg.Rcode, nil
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}
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// Name implements the Handler interface.
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func (d *SIIT) Name() string { return "siit" }
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// requestShouldIntercept returns true if the request represents one that is eligible
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// for SIIT rewriting:
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// 2. The request is of type A
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// 3. The request is of class INET
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func (d *SIIT) requestShouldIntercept(req *request.Request) bool {
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// Do not modify if question is not A or not of class IN. See RFC 6147 5.1
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return (req.QType() == dns.TypeA) && req.QClass() == dns.ClassINET
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}
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// responseShouldSIIT returns true if the response indicates we should attempt
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// SIIT rewriting:
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// 1. The response has no valid (RFC 5.1.4) A records (RFC 5.1.1)
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// 2. The response code (RCODE) is not 3 (Name Error) (RFC 5.1.2)
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//
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// Note that requestShouldIntercept must also have been true, so the request
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// is known to be of type A.
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func (d *SIIT) responseShouldSIIT(req *request.Request, origResponse *dns.Msg) bool {
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if origResponse.Truncated {
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return false
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}
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ty, _ := response.Typify(origResponse, time.Now().UTC())
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// Handle NameError normally. See RFC 6147 5.1.2
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// All other error types are "equivalent" to empty response
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if ty == response.NameError {
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return false
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}
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// if response includes A record for an A request, no need to rewrite
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for _, rr := range origResponse.Answer {
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if rr.Header().Rrtype == dns.TypeA && req.QType() == dns.TypeA {
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return false
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}
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}
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return true
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}
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// DoSIIT takes an (empty) response to an A question, issues the AAAA request,
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// and synthesizes the answer. Returns the response message, or error on internal failure.
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func (d *SIIT) DoSIIT(ctx context.Context, w dns.ResponseWriter, r *dns.Msg, origResponse *dns.Msg) (*dns.Msg, bool, error) {
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req := request.Request{W: w, Req: r}
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defaultreq := dns.TypeAAAA
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resp, err := d.Upstream.Lookup(markSynthesisLookup(ctx), req, req.Name(), defaultreq)
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if err != nil {
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return nil, false, err
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}
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if resp == nil {
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// Upstream.Lookup isn't expected to return (nil, nil), but guard
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// against it explicitly rather than let ServeDNS write a nil
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// message and then dereference msg.Rcode.
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return nil, false, errors.New("siit: upstream lookup returned no response")
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}
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if resp.Rcode != dns.RcodeSuccess {
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// Not a transport error — we got an answer, it's just SERVFAIL/
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// REFUSED/NXDOMAIN/etc. resp still carries the *internal* AAAA
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// question we issued, not the client's original A question.
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// RFC 6147 §5.4 requires the assembled response to carry the
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// original initiator's question/ID/transaction framing, so we
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// can't return resp as-is — rebuild the envelope from the
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// original request and copy over resp's RCODE, flags, and
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// authority/additional sections.
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return d.copyErrorResponse(r, resp), false, nil
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}
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out, synthesized := d.Synthesize(r, origResponse, resp)
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return out, synthesized, nil
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}
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// copyErrorResponse builds a response addressed to the client's original
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// request — correct ID, Question, and QR/Opcode framing via SetReply — while
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// carrying over the secondary AAAA lookup's RCODE, AA/RA/TC flags, answer,
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// authority, and additional sections. Used when the internal AAAA lookup
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// itself failed (SERVFAIL, NXDOMAIN, REFUSED, etc.) so the client never sees
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// the internal AAAA question in reply to its A query.
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func (d *SIIT) copyErrorResponse(origReq, resp *dns.Msg) *dns.Msg {
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ret := new(dns.Msg)
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ret.SetReply(origReq) // sets Id, Question, Opcode, RD/CD from origReq
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ret.Rcode = resp.Rcode
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ret.Authoritative = resp.Authoritative
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ret.RecursionAvailable = resp.RecursionAvailable
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ret.Truncated = resp.Truncated
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ret.Answer = resp.Answer
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ret.Ns = resp.Ns
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ret.Extra = resp.Extra
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return ret
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}
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// Synthesize merges the AAAA response and the records from the A response.
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// The bool return reports whether at least one AAAA record was actually
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// translated into a synthetic A record. false means the caller got back
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// origResponse unchanged — nothing in the AAAA answer was mappable (no EAM
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// entry, and the address wasn't in ipv6_prefix) — and this must not be
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// counted as a translated request.
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func (d *SIIT) Synthesize(origReq, origResponse, resp *dns.Msg) (*dns.Msg, bool) {
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ret := dns.Msg{}
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ret.SetReply(origReq)
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mappedAny := false
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ret.Authoritative = resp.Authoritative
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ret.RecursionAvailable = resp.RecursionAvailable
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ret.AuthenticatedData = false
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// persist truncated state of AAAA or A response
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ret.Truncated = resp.Truncated
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// 5.3.2: SIIT MUST pass the additional section unchanged
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ret.Extra = resp.Extra
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ret.Ns = resp.Ns
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// 5.1.7: The TTL is the minimum of the A RR and the SOA RR. If SOA is
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// unknown, then the TTL is the minimum of A TTL and 600
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SOATtl := uint32(600) // Default NS record TTL
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for _, ns := range origResponse.Ns {
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if ns.Header().Rrtype == dns.TypeSOA {
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SOATtl = ns.Header().Ttl
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}
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}
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ret.Answer = make([]dns.RR, 0, len(resp.Answer))
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// convert A records to AAAA records
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// and vice-versa
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for _, rr := range resp.Answer {
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header := rr.Header()
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// 5.3.3: All other RR's MUST be returned unchanged
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if header.Rrtype != dns.TypeAAAA {
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ret.Answer = append(ret.Answer, rr)
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continue
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}
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if header.Rrtype == dns.TypeAAAA {
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a, mapped := to4(d.Eam4, d.IPv6Prefix, rr.(*dns.AAAA).AAAA)
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if !mapped {
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// No EAM entry and address isn't in ipv6_prefix — nothing to synthesize
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// for this record; skip it rather than emitting an empty-RDATA A record.
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continue
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}
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mappedAny = true
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// ttl is min of SOA TTL and A TTL
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ttl := min(rr.Header().Ttl, SOATtl)
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// Replace AAAA answer with a SIIT A answer
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ret.Answer = append(ret.Answer, &dns.A{
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Hdr: dns.RR_Header{
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Name: header.Name,
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Rrtype: dns.TypeA,
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Class: header.Class,
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Ttl: ttl,
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},
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A: a.To16(),
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})
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}
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}
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if !mappedAny {
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return origResponse, false
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}
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return &ret, true
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}
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// extractIPv4 reverses CoreDNS's dns64 embedding logic: given a v6 address
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// that was built by embedding a v4 address into prefix, it extracts that
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// v4 address back out. prefix must be a valid NAT64 prefix length per
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// RFC 6052 (/32, /40, /48, /56, /64, or /96).
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func extractIPv4(v6 net.IP, prefix *net.IPNet) net.IP {
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n, _ := prefix.Mask.Size()
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v6 = v6.To16()
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addr := make([]byte, 4)
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i, j := n/8, 0 // skip the prefix bytes, we don't need them back
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for ; i < 8; i, j = i+1, j+1 {
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addr[j] = v6[i]
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}
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if i == 8 {
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i++ // skip the reserved "u" byte
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}
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for ; j < 4; i, j = i+1, j+1 {
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addr[j] = v6[i]
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}
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return net.IP(addr)
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}
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// to4 takes an IPv6 address and an eam and returns an IPv4 address.
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func to4(eam map[string]net.IP, ipv6prefix *net.IPNet, addr net.IP) (net.IP, bool) {
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addr = addr.To16()
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if addr == nil || addr.To4() != nil {
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return nil, false
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}
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// RFC 7757 §3.3.2: search the EAM table first.
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if eam[addr.String()] != nil {
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v4 := eam[addr.String()]
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return v4, true
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}
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// Fall back to RFC 6052 algorithmic translation only if no EAM matched.
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if ipv6prefix.Contains(addr) {
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// RFC 6052 §2.2: byte 8 (bits 64-71, the "u" octet) is reserved and
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// MUST be zero. A correctly-configured prefix guarantees this for
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// its own bits (validated at setup time), but for prefix lengths
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// shorter than /96 that byte belongs to the address, not the
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// prefix, and an upstream AAAA answer isn't required to zero it.
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// Reject rather than silently translating from a malformed address.
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if addr[8] != 0 {
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return nil, false
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}
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v4 := extractIPv4(addr, ipv6prefix)
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return v4, true
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}
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return nil, false
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}
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