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Author SHA1 Message Date
mrambossekandClaude Opus 5 35baf70cdb server: canary DNS — authoritative zone with frozen §6.1 reference records
server-release / image (push) Successful in 15s
server-test / test (push) Successful in 26s
server-release / release (push) Successful in 27s
Stdlib DNS responder (no external deps): parses single-question queries
with EDNS OPT (bufsize, DO, ECS), serves the spec's frozen reference
records (ttl-{5,60,3600,86400} A/AAAA/TXT, many-rr 8×A in order, big-txt
~1800B), and per-query <nonce>.<session>.<zone> answers in 192.0.2.0/24.
UDP truncation sets TC past 512 (or the EDNS bufsize); TCP never
truncates — the EDNS-bufsize / TCP-fallback test. Every query is logged
(qname, resolver, transport, EDNS, ECS, case) and surfaced per session
prefix in GET /v1/sessions/{id}/observations as dns_canary. Profile gains
canary_zone + the canary-dns capability when configured.

Wire format validated against an independent client (correct rcodes,
answer counts, TC behavior, full EDNS response); unit tests cover
references, truncation-vs-EDNS, logging, NXDOMAIN.

Versioning: patch-first convention recorded in CLAUDE.md.

Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
2026-07-31 20:08:30 +02:00
mrambossekandClaude Opus 5 4f5499198b build-status: server v0.3.0 live on fmr — STUN/TCP-echo/observations/actions verified
Deployed via self-update (first real run). External checks: stun-5780
advertised, STUN binding OK v4+v6 with OTHER-ADDRESS, TCP echo mss=1440
over IPv6.

Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
2026-07-31 19:56:22 +02:00
10 changed files with 900 additions and 8 deletions
+7
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@@ -30,6 +30,13 @@ is the mutable one — update it as work lands.
Keep prober result IDs aligned with the measurement-schema test-type registry.
## Versioning
Prefer **patch** bumps (`server-v0.3.1`) for additive/incremental work; reserve **minor** bumps
for real milestones. Don't burn through minor versions. Tags are namespaced: `server-v*` for the
Go server, `v*` for the app. Pushing a `server-v*` tag runs CI → binaries + Gitea release +
registry image; the server on fmr can `--self-update` from those releases.
## Layout
Monorepo. The prober is one deliverable; the Go server and the production app land as siblings.
+18
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@@ -224,3 +224,21 @@ externally over v4+v6). UDP data plane on all four service addresses :8442 — t
the stun-5780 substrate. Daily randomized self-update timer installed (checksum-verified
against SHA256SUMS; signature verification still TODO before treating the source as untrusted).
Host config in `/etc/echolot-server.env`. SSH access for sessions: `ssh claude-echolot`.
## Server v0.3.0 — STUN + TCP echo + observations + actions (2026-07-31)
Shipped and deployed to fmr via the server's own `--self-update` (first real exercise:
checksum-verified download v0.2.0→v0.3.0, atomic replace, restart — worked). Added over v0.2.0:
- **STUN** (RFC 5389 + 5780): 4 service addrs × primary/alt-port grid. Externally verified on
v4 AND v6 — binding success with XOR-MAPPED, RESPONSE-ORIGIN, OTHER-ADDRESS present, so the
profile now advertises **`stun-5780`** (the second IP earns its keep).
- **TCP echo** (:8441): JSON greeting with observed src + real Linux TCP_INFO — verified
externally `mss:1440` (v6, 150060), options `[sack,wscale]`, then byte-echo.
- **Observations API** `GET /v1/sessions/{id}/observations` (per-packet UDP view, connect-back
results, TCP records correlated by source IP).
- **Actions** `POST /v1/sessions/{id}/actions`: `delayed_echo` (DELAYED_ECHO at the observed
data-plane source — NAT-lifetime primitive) and `connect_back` (dials the control-plane
source, records connected/refused/timeout+rtt).
- Capabilities computed from what's actually wired: `udp-probe, delayed-echo, connect-back,
tcp-echo, stun-5780`.
Still not implemented: TLS-echo/JA4, HTTP echo, tls-reference, canary DNS (§6.1 reference
records), and the train/big-send/frag/throughput actions. Admin UI still token-mint + health only.
+11 -3
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@@ -36,9 +36,17 @@ All configurable via `ECHOLOT_*_LISTEN`. Plus:
2. **Second IP (optional):** full RFC 5780 NAT-behavior discovery (`stun-5780`) needs an
alternate reply address; without it the profile advertises `stun-basic` and clients degrade
gracefully.
3. **Delegated DNS subzone (optional, later):** the `canary-dns` capability needs port 53 on
some IP + an NS delegation (mind systemd-resolved on 127.0.0.53). Absent → capability simply
not advertised.
3. **Delegated DNS subzone (for `canary-dns`):** set `ECHOLOT_DNS_LISTEN` (udp+tcp/53 on the
service IPs) and `ECHOLOT_CANARY_ZONE` (e.g. `c.echo-lot.app`), then delegate the zone to
this host in your DNS provider:
```
c.echo-lot.app. NS fmr-1.echo-lot.app.
c.echo-lot.app. NS fmr-2.echo-lot.app.
```
The server is authoritative for that zone only, serving the spec §6.1 reference records
(frozen in `internal/canarydns/dns_reference.go`) plus per-query `<nonce>.<session>.<zone>`
lookups it logs. Binding :53 on the public IPs is fine even with systemd-resolved (it only
claims 127.0.0.53). Absent config → capability simply not advertised.
4. **Outbound freedom** for connect-back / delayed-echo actions — no extra inbound ports;
generated traffic goes only to the session's observed source.
+54 -1
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@@ -25,6 +25,7 @@ import (
"math/big"
"net"
"net/http"
"net/netip"
"os"
"os/signal"
"path/filepath"
@@ -32,6 +33,7 @@ import (
"syscall"
"time"
"echo-lot.app/server/internal/canarydns"
"echo-lot.app/server/internal/config"
"echo-lot.app/server/internal/control"
"echo-lot.app/server/internal/dataplane"
@@ -204,10 +206,40 @@ func serve(cfg *config.Config) error {
ctl.Capabilities = caps
}
// Canary DNS (spec §6.1) — authoritative for CanaryZone, udp+tcp per addr.
var dnsUDP []*net.UDPConn
var dnsTCP []net.Listener
if dnsAddrs := config.Addrs(cfg.DNSListen); len(dnsAddrs) > 0 && cfg.CanaryZone != "" {
v4, v6 := firstByFamily(dnsAddrs)
cd := canarydns.New(cfg.CanaryZone, cfg.Name, v4, v6)
for _, addr := range dnsAddrs {
ua, err := net.ResolveUDPAddr("udp", addr)
if err != nil {
return fmt.Errorf("dns udp addr %s: %w", addr, err)
}
uc, err := net.ListenUDP("udp", ua)
if err != nil {
return fmt.Errorf("dns udp listen %s: %w", addr, err)
}
dnsUDP = append(dnsUDP, uc)
go func(a string, c *net.UDPConn) { errCh <- fmt.Errorf("dns-udp %s: %w", a, cd.ServeUDP(c)) }(addr, uc)
tl, err := net.Listen("tcp", addr)
if err != nil {
return fmt.Errorf("dns tcp listen %s: %w", addr, err)
}
dnsTCP = append(dnsTCP, tl)
go func(a string, l net.Listener) { errCh <- fmt.Errorf("dns-tcp %s: %w", a, cd.ServeTCP(l)) }(addr, tl)
}
ctl.CanaryZone = cfg.CanaryZone
ctl.CanaryQueries = func(prefix string) any { return cd.RecentForPrefix(prefix) }
ctl.Capabilities = append(ctl.Capabilities, "canary-dns")
}
slog.Info("listening",
"control", ctlAddrs, "admin", cfg.AdminListen, "udp", udpAddrs,
"tcp", config.Addrs(cfg.TCPListen), "stun", config.Addrs(cfg.StunListen),
"capabilities", ctl.Capabilities)
"dns", config.Addrs(cfg.DNSListen), "capabilities", ctl.Capabilities)
select {
case <-ctx.Done():
@@ -225,12 +257,33 @@ func serve(cfg *config.Config) error {
if stunSrv != nil {
stunSrv.Close()
}
for _, c := range dnsUDP {
_ = c.Close()
}
for _, l := range dnsTCP {
_ = l.Close()
}
return nil
case err := <-errCh:
return err
}
}
// firstByFamily returns the first v4 and first v6 address from a list of
// "ip:port" specs — used for the canary zone's apex/NS answers.
func firstByFamily(addrs []string) (v4, v6 netip.Addr) {
for _, a := range addrs {
if ap, err := netip.ParseAddrPort(a); err == nil {
if ap.Addr().Unmap().Is4() && !v4.IsValid() {
v4 = ap.Addr().Unmap()
} else if ap.Addr().Is6() && !ap.Addr().Is4In6() && !v6.IsValid() {
v6 = ap.Addr()
}
}
}
return
}
func firstAddr(spec string) string {
if a := config.Addrs(spec); len(a) > 0 {
return a[0]
+287
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@@ -0,0 +1,287 @@
// SPDX-FileCopyrightText: 2026 Echolot contributors
// SPDX-License-Identifier: GPL-3.0-or-later
package canarydns
import (
"encoding/binary"
"hash/fnv"
"net"
"net/netip"
"strings"
"sync"
"time"
)
// DNS constants (RFC 1035 + RFC 6891 EDNS).
const (
typeA = 1
typeNS = 2
typeTXT = 16
typeAAAA = 28
typeOPT = 41
classIN = 1
rcodeNoError = 0
rcodeNXDomain = 3
flagQR = 0x8000
flagAA = 0x0400
flagTC = 0x0200
flagRD = 0x0100
flagRA = 0x0080
udpMaxNoEDNS = 512
ednsDO = 0x8000 // DO bit lives in the OPT TTL field's high half
optECS = 8 // EDNS Client Subnet option code
)
// Query is one logged canary lookup (spec §6 dns_canary shape).
type Query struct {
QName string `json:"qname"`
At time.Time `json:"at"`
ResolverIP string `json:"resolver_ip"`
Transport string `json:"transport"` // "udp" | "tcp"
EDNS edns `json:"edns"`
ECS string `json:"ecs,omitempty"`
CasePreserved bool `json:"case_preserved"`
// qname_minimized is not reliably detectable authoritative-side without
// cross-query correlation; left false (TODO) rather than guessed.
QNameMinimized bool `json:"qname_minimized"`
}
type edns struct {
Present bool `json:"present"`
Bufsize int `json:"bufsize"`
Flags []string `json:"flags"`
}
// Server is the authoritative responder for one canary zone.
type Server struct {
zone string // fully-qualified, lowercase, trailing dot, e.g. "c.echo-lot.app."
nsName string // this server's own name for NS/authority answers
primaryV4 netip.Addr
primaryV6 netip.Addr
mu sync.Mutex
log []Query // ring, newest last
retainTo time.Time
}
const logCap = 8192
// New creates a server for zone (with or without trailing dot). nsName is the
// server's own hostname (for the zone's NS record); primary v4/v6 are this
// host's addresses used to answer the zone apex / NS glue.
func New(zone, nsName string, v4, v6 netip.Addr) *Server {
z := strings.ToLower(strings.TrimSuffix(zone, ".")) + "."
return &Server{zone: z, nsName: strings.TrimSuffix(nsName, ".") + ".", primaryV4: v4, primaryV6: v6}
}
// RecentForPrefix returns logged queries whose qname contains ".<prefix>."
// (the session prefix the app embeds: <nonce>.<session-prefix>.<zone>).
func (s *Server) RecentForPrefix(prefix string) []Query {
s.mu.Lock()
defer s.mu.Unlock()
needle := "." + strings.ToLower(prefix) + "."
var out []Query
for _, q := range s.log {
if strings.Contains(strings.ToLower(q.QName), needle) {
out = append(out, q)
}
}
return out
}
func (s *Server) record(q Query) {
s.mu.Lock()
defer s.mu.Unlock()
if len(s.log) >= logCap {
s.log = s.log[1:]
}
s.log = append(s.log, q)
}
// ServeUDP / ServeTCP run read loops; call one per bound address.
func (s *Server) ServeUDP(conn *net.UDPConn) error {
buf := make([]byte, 1500)
for {
n, raddr, err := conn.ReadFromUDPAddrPort(buf)
if err != nil {
return err
}
resp := s.handle(buf[:n], raddr.Addr(), "udp")
if resp != nil {
_, _ = conn.WriteToUDPAddrPort(resp, raddr)
}
}
}
func (s *Server) ServeTCP(ln net.Listener) error {
for {
c, err := ln.Accept()
if err != nil {
return err
}
go s.handleTCP(c)
}
}
func (s *Server) handleTCP(c net.Conn) {
defer c.Close()
_ = c.SetDeadline(time.Now().Add(10 * time.Second))
var lenBuf [2]byte
if _, err := readFull(c, lenBuf[:]); err != nil {
return
}
msg := make([]byte, binary.BigEndian.Uint16(lenBuf[:]))
if _, err := readFull(c, msg); err != nil {
return
}
ra, _ := netip.ParseAddrPort(c.RemoteAddr().String())
resp := s.handle(msg, ra.Addr(), "tcp")
if resp == nil {
return
}
// TCP has no 512 limit; never truncate.
out := make([]byte, 2+len(resp))
binary.BigEndian.PutUint16(out[0:2], uint16(len(resp)))
copy(out[2:], resp)
_, _ = c.Write(out)
}
func readFull(c net.Conn, b []byte) (int, error) {
got := 0
for got < len(b) {
n, err := c.Read(b[got:])
got += n
if err != nil {
return got, err
}
}
return got, nil
}
// handle parses one query, logs it, and returns the wire response (nil to drop).
func (s *Server) handle(pkt []byte, resolver netip.Addr, transport string) []byte {
if len(pkt) < 12 {
return nil
}
id := binary.BigEndian.Uint16(pkt[0:2])
qdcount := binary.BigEndian.Uint16(pkt[4:6])
arcount := binary.BigEndian.Uint16(pkt[10:12])
if qdcount != 1 {
return s.errorResponse(id, rcodeNoError, nil) // we only answer single-question queries
}
qnameRaw, qtype, _, qEnd, ok := parseQuestion(pkt, 12)
if !ok {
return nil
}
// EDNS OPT is an additional-section RR; scan for it after the question.
opt := parseOPT(pkt, qEnd, arcount)
// Log every query — this is the whole point of the canary zone.
q := Query{
QName: strings.TrimSuffix(qnameRaw, "."), At: time.Now().UTC(),
ResolverIP: resolver.Unmap().String(), Transport: transport,
EDNS: opt.edns,
ECS: opt.ecs,
CasePreserved: qnameRaw == strings.ToLower(qnameRaw), // mixed case ⇒ 0x20 randomization
}
s.record(q)
name := strings.ToLower(qnameRaw)
if !strings.HasSuffix(name, s.zone) {
return s.errorResponse(id, rcodeNXDomain, &opt)
}
sub := strings.TrimSuffix(name, s.zone) // e.g. "ttl-5." or "" for apex
return s.answer(id, pkt, qEnd, sub, qtype, &opt, transport)
}
// answer builds the response for a name known to be in-zone.
func (s *Server) answer(id uint16, pkt []byte, qEnd int, sub string, qtype uint16, opt *optInfo, transport string) []byte {
labels := splitLabels(sub) // e.g. ["ttl-5"], [], ["<nonce>","miss"], ["<nonce>","<sessprefix>"]
var rrs []rr
switch {
case len(labels) == 0: // zone apex
if qtype == typeNS {
rrs = append(rrs, rr{ttl: 3600, typ: typeNS, ns: s.nsName})
} else if qtype == typeA && s.primaryV4.IsValid() {
rrs = append(rrs, rr{ttl: 3600, typ: typeA, addr: s.primaryV4})
} else if qtype == typeAAAA && s.primaryV6.IsValid() {
rrs = append(rrs, rr{ttl: 3600, typ: typeAAAA, addr: s.primaryV6})
}
case len(labels) == 1:
if ref := findReference(labels[0]); ref != nil {
rrs = referenceAnswers(ref, qtype)
}
default:
// Per-query names: <nonce>.miss.<zone> and <nonce>.<session-prefix>.<zone>.
// Deterministic A derived from the leftmost label (the nonce), TTL 3600,
// documentation range — ground truth that can never be pre-cached.
if qtype == typeA {
rrs = append(rrs, rr{ttl: 3600, typ: typeA, addr: nonceAddr(labels[0])})
}
}
if len(rrs) == 0 {
// In-zone but no such record/type → NOERROR/NODATA (or NXDOMAIN at apex miss).
return s.buildResponse(id, pkt, qEnd, nil, opt, transport, rcodeNoError)
}
return s.buildResponse(id, pkt, qEnd, rrs, opt, transport, rcodeNoError)
}
// nonceAddr maps a nonce label into 192.0.2.0/24 deterministically.
func nonceAddr(nonce string) netip.Addr {
h := fnv.New32a()
_, _ = h.Write([]byte(nonce))
return netip.AddrFrom4([4]byte{192, 0, 2, byte(h.Sum32()%254 + 1)})
}
func referenceAnswers(ref *refRecord, qtype uint16) []rr {
var rrs []rr
switch qtype {
case typeA:
for _, a := range ref.a {
if a.Is4() {
rrs = append(rrs, rr{ttl: ref.ttl, typ: typeA, addr: a})
}
}
case typeAAAA:
for _, a := range ref.a {
if a.Is6() && !a.Is4In6() {
rrs = append(rrs, rr{ttl: ref.ttl, typ: typeAAAA, addr: a})
}
}
case typeTXT:
if len(ref.txt) > 0 {
rrs = append(rrs, rr{ttl: ref.ttl, typ: typeTXT, txt: ref.txt})
}
}
return rrs
}
func splitLabels(sub string) []string {
sub = strings.TrimSuffix(sub, ".")
if sub == "" {
return nil
}
return strings.Split(sub, ".")
}
func (s *Server) errorResponse(id uint16, rcode int, opt *optInfo) []byte {
hdr := make([]byte, 12)
binary.BigEndian.PutUint16(hdr[0:2], id)
binary.BigEndian.PutUint16(hdr[2:4], uint16(flagQR|flagAA|rcode))
if opt != nil && opt.edns.Present {
binary.BigEndian.PutUint16(hdr[10:12], 1)
return append(hdr, buildOPT(opt)...)
}
return hdr
}
+161
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@@ -0,0 +1,161 @@
// SPDX-FileCopyrightText: 2026 Echolot contributors
// SPDX-License-Identifier: GPL-3.0-or-later
package canarydns
import (
"encoding/binary"
"net"
"net/netip"
"testing"
)
// buildQuery makes a single-question DNS query, optionally with an EDNS OPT.
func buildQuery(name string, qtype uint16, ednsBufsize int) []byte {
msg := make([]byte, 12)
binary.BigEndian.PutUint16(msg[0:2], 0x1234)
binary.BigEndian.PutUint16(msg[2:4], flagRD)
binary.BigEndian.PutUint16(msg[4:6], 1) // QDCOUNT
msg = append(msg, encodeName(name)...)
msg = binary.BigEndian.AppendUint16(msg, qtype)
msg = binary.BigEndian.AppendUint16(msg, classIN)
if ednsBufsize > 0 {
binary.BigEndian.PutUint16(msg[10:12], 1) // ARCOUNT
msg = append(msg, 0) // root name
msg = binary.BigEndian.AppendUint16(msg, typeOPT)
msg = binary.BigEndian.AppendUint16(msg, uint16(ednsBufsize))
msg = binary.BigEndian.AppendUint32(msg, 0)
msg = binary.BigEndian.AppendUint16(msg, 0)
}
return msg
}
// parseAnswers pulls (type, ttl, rdata) tuples from a response.
type ans struct {
typ uint16
ttl uint32
data []byte
}
func parseResponse(t *testing.T, resp []byte) (flags uint16, answers []ans) {
t.Helper()
flags = binary.BigEndian.Uint16(resp[2:4])
qd := binary.BigEndian.Uint16(resp[4:6])
an := binary.BigEndian.Uint16(resp[6:8])
off := 12
for i := uint16(0); i < qd; i++ {
_, next, ok := readName(resp, off)
if !ok {
t.Fatal("bad question name")
}
off = next + 4
}
for i := uint16(0); i < an; i++ {
_, next, ok := readName(resp, off)
if !ok {
t.Fatal("bad answer name")
}
typ := binary.BigEndian.Uint16(resp[next : next+2])
ttl := binary.BigEndian.Uint32(resp[next+4 : next+8])
rdlen := int(binary.BigEndian.Uint16(resp[next+8 : next+10]))
answers = append(answers, ans{typ, ttl, resp[next+10 : next+10+rdlen]})
off = next + 10 + rdlen
}
return
}
func newTestServer() *Server {
return New("c.echo-lot.app", "fmr", netip.MustParseAddr("192.0.2.1"), netip.MustParseAddr("2001:db8::1"))
}
func TestReferenceRecords(t *testing.T) {
s := newTestServer()
resolver := netip.MustParseAddr("198.51.100.7")
// ttl-5 A → 192.0.2.5, TTL 5
resp := s.handle(buildQuery("ttl-5.c.echo-lot.app", typeA, 0), resolver, "udp")
_, answers := parseResponse(t, resp)
if len(answers) != 1 || answers[0].ttl != 5 || !netip.AddrFrom4([4]byte(answers[0].data)).IsValid() {
t.Fatalf("ttl-5 A: %+v", answers)
}
if got := net.IP(answers[0].data).String(); got != "192.0.2.5" {
t.Fatalf("ttl-5 A = %s, want 192.0.2.5", got)
}
// many-rr → exactly 8 A records, in order .101..108
resp = s.handle(buildQuery("many-rr.c.echo-lot.app", typeA, 0), resolver, "udp")
_, answers = parseResponse(t, resp)
if len(answers) != 8 {
t.Fatalf("many-rr: got %d A records, want 8", len(answers))
}
for i, a := range answers {
if a.data[3] != byte(101+i) {
t.Fatalf("many-rr order: record %d = .%d, want .%d", i, a.data[3], 101+i)
}
}
}
func TestBigTxtTruncationVsEDNS(t *testing.T) {
s := newTestServer()
resolver := netip.MustParseAddr("198.51.100.7")
// No EDNS → 512 cap → TC set, answers dropped.
resp := s.handle(buildQuery("big-txt.c.echo-lot.app", typeTXT, 0), resolver, "udp")
flags, answers := parseResponse(t, resp)
if flags&flagTC == 0 {
t.Fatal("big-txt over plain UDP should set TC")
}
if len(answers) != 0 {
t.Fatalf("truncated response should carry no answers, got %d", len(answers))
}
// EDNS bufsize 4096 → full answer, no TC.
resp = s.handle(buildQuery("big-txt.c.echo-lot.app", typeTXT, 4096), resolver, "udp")
flags, answers = parseResponse(t, resp)
if flags&flagTC != 0 {
t.Fatal("big-txt with EDNS 4096 should not truncate")
}
if len(answers) != 1 {
t.Fatalf("want 1 TXT answer, got %d", len(answers))
}
// TCP → never truncates.
resp = s.handle(buildQuery("big-txt.c.echo-lot.app", typeTXT, 0), resolver, "tcp")
flags, _ = parseResponse(t, resp)
if flags&flagTC != 0 {
t.Fatal("TCP must not truncate")
}
}
func TestQueryLogAndPerPrefix(t *testing.T) {
s := newTestServer()
s.handle(buildQuery("abc123.SESSPREFIX1.c.echo-lot.app", typeA, 1232), netip.MustParseAddr("198.51.100.7"), "udp")
s.handle(buildQuery("def456.other.c.echo-lot.app", typeA, 0), netip.MustParseAddr("203.0.113.9"), "udp")
all := s.RecentForPrefix("sessprefix1")
if len(all) != 1 {
t.Fatalf("per-prefix filter: got %d, want 1", len(all))
}
q := all[0]
if q.ResolverIP != "198.51.100.7" || q.Transport != "udp" {
t.Fatalf("logged resolver/transport wrong: %+v", q)
}
if !q.EDNS.Present || q.EDNS.Bufsize != 1232 {
t.Fatalf("EDNS not captured: %+v", q.EDNS)
}
// nonce answer is deterministic + in doc range
resp := s.handle(buildQuery("abc123.SESSPREFIX1.c.echo-lot.app", typeA, 0), netip.MustParseAddr("198.51.100.7"), "udp")
_, answers := parseResponse(t, resp)
if len(answers) != 1 || answers[0].data[0] != 192 || answers[0].data[1] != 0 || answers[0].data[2] != 2 {
t.Fatalf("nonce answer not in 192.0.2.0/24: %+v", answers)
}
}
func TestOutOfZoneNXDomain(t *testing.T) {
s := newTestServer()
resp := s.handle(buildQuery("example.com", typeA, 0), netip.MustParseAddr("198.51.100.7"), "udp")
flags, _ := parseResponse(t, resp)
if flags&0x000F != rcodeNXDomain {
t.Fatalf("out-of-zone should be NXDOMAIN, flags=%#x", flags)
}
}
@@ -0,0 +1,78 @@
// SPDX-FileCopyrightText: 2026 Echolot contributors
// SPDX-License-Identifier: GPL-3.0-or-later
// Package canarydns serves the authoritative canary zone (spec §6.1). The
// reference records below are FROZEN by the protocol spec — names, TTLs, and
// RDATA are ground truth the client compares against, so they must never
// change without a spec revision and a matching update in the app. All
// addresses are documentation-range (RFC 5737 192.0.2.0/24, RFC 3849
// 2001:db8::/32).
package canarydns
import "net/netip"
// refRecord is one frozen reference name (relative to the zone) with its
// per-type answers. A zero value in a field means "no record of that type".
type refRecord struct {
label string
ttl uint32
a []netip.Addr // A / AAAA answers (order preserved)
txt []string // one string per TXT record
}
// referenceRecords are the spec §6.1 fixed records. The RDATA constants are
// frozen HERE (the spec calls this file the source of truth) and mirrored in
// the app. Order within many-rr is part of the test (order/stripping check).
var referenceRecords = []refRecord{
{label: "ttl-5", ttl: 5,
a: []netip.Addr{netip.MustParseAddr("192.0.2.5"), netip.MustParseAddr("2001:db8::5")},
txt: []string{"echolot-ref ttl=5"}},
{label: "ttl-60", ttl: 60,
a: []netip.Addr{netip.MustParseAddr("192.0.2.60"), netip.MustParseAddr("2001:db8::60")},
txt: []string{"echolot-ref ttl=60"}},
{label: "ttl-3600", ttl: 3600,
a: []netip.Addr{netip.MustParseAddr("192.0.2.36"), netip.MustParseAddr("2001:db8::3600")},
txt: []string{"echolot-ref ttl=3600"}},
{label: "ttl-86400", ttl: 86400,
a: []netip.Addr{netip.MustParseAddr("192.0.2.86"), netip.MustParseAddr("2001:db8::8640")},
txt: []string{"echolot-ref ttl=86400"}},
// many-rr: exactly 8 A records in defined order.
{label: "many-rr", ttl: 300, a: []netip.Addr{
netip.MustParseAddr("192.0.2.101"), netip.MustParseAddr("192.0.2.102"),
netip.MustParseAddr("192.0.2.103"), netip.MustParseAddr("192.0.2.104"),
netip.MustParseAddr("192.0.2.105"), netip.MustParseAddr("192.0.2.106"),
netip.MustParseAddr("192.0.2.107"), netip.MustParseAddr("192.0.2.108"),
}},
// big-txt: ~1800 bytes, exercises EDNS bufsize / TCP fallback.
{label: "big-txt", ttl: 300, txt: bigTxt()},
}
// bigTxt builds a deterministic ~1800-byte TXT payload as a sequence of
// 255-byte character-strings (the DNS TXT chunk limit). The content is fixed
// so the client can verify integrity, not just length.
func bigTxt() []string {
const total = 1800
const pattern = "echolot-big-txt-reference-0123456789abcdef-"
buf := make([]byte, 0, total)
for len(buf) < total {
buf = append(buf, pattern...)
}
buf = buf[:total]
var out []string
for len(buf) > 0 {
n := min(255, len(buf))
out = append(out, string(buf[:n]))
buf = buf[n:]
}
return out
}
// findReference returns the reference record for a label, or nil.
func findReference(label string) *refRecord {
for i := range referenceRecords {
if referenceRecords[i].label == label {
return &referenceRecords[i]
}
}
return nil
}
+266
View File
@@ -0,0 +1,266 @@
// SPDX-FileCopyrightText: 2026 Echolot contributors
// SPDX-License-Identifier: GPL-3.0-or-later
package canarydns
import (
"encoding/binary"
"net/netip"
"strings"
)
// rr is a resource record to encode into the answer section.
type rr struct {
ttl uint32
typ uint16
addr netip.Addr // for A/AAAA
txt []string // for TXT
ns string // for NS
}
// optInfo is the parsed EDNS OPT plus the derived observation fields.
type optInfo struct {
edns edns
ecs string
}
// parseQuestion reads a single question starting at off. Returns the raw
// (case-preserved) qname with trailing dot, qtype, qclass, and the offset
// just past the question.
func parseQuestion(pkt []byte, off int) (qname string, qtype, qclass uint16, end int, ok bool) {
name, next, ok := readName(pkt, off)
if !ok || next+4 > len(pkt) {
return "", 0, 0, 0, false
}
qtype = binary.BigEndian.Uint16(pkt[next : next+2])
qclass = binary.BigEndian.Uint16(pkt[next+2 : next+4])
return name, qtype, qclass, next + 4, true
}
// readName decodes a DNS name (with compression pointers) into a
// dot-terminated string, preserving label case.
func readName(pkt []byte, off int) (string, int, bool) {
var sb strings.Builder
end := -1
jumps := 0
for {
if off >= len(pkt) {
return "", 0, false
}
l := int(pkt[off])
switch {
case l == 0:
off++
if end < 0 {
end = off
}
if sb.Len() == 0 {
return ".", end, true
}
return sb.String(), end, true
case l&0xC0 == 0xC0: // compression pointer
if off+1 >= len(pkt) {
return "", 0, false
}
if end < 0 {
end = off + 2
}
off = int(binary.BigEndian.Uint16(pkt[off:off+2]) & 0x3FFF)
jumps++
if jumps > 16 {
return "", 0, false
}
default:
if off+1+l > len(pkt) {
return "", 0, false
}
sb.Write(pkt[off+1 : off+1+l])
sb.WriteByte('.')
off += 1 + l
}
}
}
// parseOPT scans the additional section for an EDNS OPT RR and extracts
// bufsize, the DO flag, and any ECS option.
func parseOPT(pkt []byte, off int, arcount uint16) optInfo {
var info optInfo
for i := uint16(0); i < arcount && off < len(pkt); i++ {
_, next, ok := readName(pkt, off)
if !ok || next+10 > len(pkt) {
return info
}
typ := binary.BigEndian.Uint16(pkt[next : next+2])
class := binary.BigEndian.Uint16(pkt[next+2 : next+4]) // OPT: requester bufsize
ttl := binary.BigEndian.Uint32(pkt[next+4 : next+8]) // OPT: extended-rcode/version/flags
rdlen := int(binary.BigEndian.Uint16(pkt[next+8 : next+10]))
rdata := next + 10
if rdata+rdlen > len(pkt) {
return info
}
if typ == typeOPT {
info.edns.Present = true
info.edns.Bufsize = int(class)
if ttl&ednsDO != 0 {
info.edns.Flags = append(info.edns.Flags, "do")
}
info.ecs = parseECS(pkt[rdata : rdata+rdlen])
return info
}
off = rdata + rdlen
}
return info
}
// parseECS extracts an EDNS Client Subnet option (RFC 7871) as "ip/scope".
func parseECS(rdata []byte) string {
for len(rdata) >= 4 {
code := binary.BigEndian.Uint16(rdata[0:2])
olen := int(binary.BigEndian.Uint16(rdata[2:4]))
if 4+olen > len(rdata) {
return ""
}
if code == optECS && olen >= 4 {
fam := binary.BigEndian.Uint16(rdata[4:6])
srcPrefix := rdata[6]
addrBytes := rdata[8 : 4+olen]
var ip netip.Addr
if fam == 1 {
var b [4]byte
copy(b[:], addrBytes)
ip = netip.AddrFrom4(b)
} else if fam == 2 {
var b [16]byte
copy(b[:], addrBytes)
ip = netip.AddrFrom16(b)
}
if ip.IsValid() {
return ip.String() + "/" + itoa(int(srcPrefix))
}
}
rdata = rdata[4+olen:]
}
return ""
}
func itoa(n int) string {
if n == 0 {
return "0"
}
var b [4]byte
i := len(b)
for n > 0 {
i--
b[i] = byte('0' + n%10)
n /= 10
}
return string(b[i:])
}
// buildResponse assembles the answer, sets TC when a UDP response exceeds the
// negotiated buffer, and appends the OPT RR when the query used EDNS.
func (s *Server) buildResponse(id uint16, pkt []byte, qEnd int, answers []rr, opt *optInfo, transport string, rcode int) []byte {
msg := make([]byte, 12)
binary.BigEndian.PutUint16(msg[0:2], id)
// question is copied verbatim (case preserved) from the query
msg = append(msg, pkt[12:qEnd]...)
body := make([]byte, 0, 512)
for _, a := range answers {
body = append(body, encodeRR(a)...)
}
extra := 0
if opt != nil && opt.edns.Present {
extra = 1
}
flags := uint16(flagQR|flagAA) | (binary.BigEndian.Uint16(pkt[2:4]) & flagRD) | uint16(rcode)
if opt != nil && opt.edns.Present {
body = append(body, buildOPT(opt)...)
}
// UDP truncation: without EDNS the limit is 512; with EDNS it's the
// requester's bufsize (floored at 512). Drop the answer section and set TC.
if transport == "udp" {
limit := udpMaxNoEDNS
if opt != nil && opt.edns.Present && opt.edns.Bufsize > udpMaxNoEDNS {
limit = opt.edns.Bufsize
}
if 12+(qEnd-12)+len(body) > limit {
flags |= flagTC
// Keep only the OPT RR (if any); drop answers.
body = body[:0]
if opt != nil && opt.edns.Present {
body = append(body, buildOPT(opt)...)
answers = nil
} else {
answers = nil
}
}
}
binary.BigEndian.PutUint16(msg[2:4], uint16(flags))
binary.BigEndian.PutUint16(msg[4:6], 1) // QDCOUNT
binary.BigEndian.PutUint16(msg[6:8], uint16(len(answers)))
binary.BigEndian.PutUint16(msg[10:12], uint16(extra))
return append(msg, body...)
}
// encodeRR encodes one answer RR, using a compression pointer (0xC00C) to the
// question name at offset 12.
func encodeRR(a rr) []byte {
var rdata []byte
switch a.typ {
case typeA:
b := a.addr.As4()
rdata = b[:]
case typeAAAA:
b := a.addr.As16()
rdata = b[:]
case typeTXT:
for _, s := range a.txt {
for len(s) > 0 {
n := len(s)
if n > 255 {
n = 255
}
rdata = append(rdata, byte(n))
rdata = append(rdata, s[:n]...)
s = s[n:]
}
}
case typeNS:
rdata = encodeName(a.ns)
}
out := make([]byte, 0, 12+len(rdata))
out = append(out, 0xC0, 0x0C) // name → pointer to question
out = binary.BigEndian.AppendUint16(out, a.typ)
out = binary.BigEndian.AppendUint16(out, classIN)
out = binary.BigEndian.AppendUint32(out, a.ttl)
out = binary.BigEndian.AppendUint16(out, uint16(len(rdata)))
return append(out, rdata...)
}
func encodeName(name string) []byte {
var out []byte
for _, label := range strings.Split(strings.TrimSuffix(name, "."), ".") {
if label == "" {
continue
}
out = append(out, byte(len(label)))
out = append(out, label...)
}
return append(out, 0)
}
// buildOPT emits a minimal EDNS OPT RR echoing our own bufsize (advertise a
// generous 4096) with DO cleared — we serve no DNSSEC.
func buildOPT(*optInfo) []byte {
out := []byte{0} // root name
out = binary.BigEndian.AppendUint16(out, typeOPT)
out = binary.BigEndian.AppendUint16(out, 4096) // our bufsize
out = binary.BigEndian.AppendUint32(out, 0) // ext-rcode/version/flags
out = binary.BigEndian.AppendUint16(out, 0) // rdlen
return out
}
+4
View File
@@ -27,6 +27,8 @@ type Config struct {
UDPListen string // ECHOLOT_UDP_LISTEN / --udp-listen (spec default port 8442)
TCPListen string // ECHOLOT_TCP_LISTEN / --tcp-listen (spec default port 8441)
StunListen string // ECHOLOT_STUN_LISTEN / --stun-listen (spec default 3478; empty disables)
DNSListen string // ECHOLOT_DNS_LISTEN / --dns-listen (canary zone; empty disables)
CanaryZone string // ECHOLOT_CANARY_ZONE / --canary-zone (e.g. c.echo-lot.app)
// Admin UI / health listener (spec §7: localhost-only by default)
AdminListen string // ECHOLOT_ADMIN_LISTEN / --admin-listen
@@ -67,6 +69,8 @@ func Load(args []string) (*Config, *Actions, error) {
fs.StringVar(&c.UDPListen, "udp-listen", envOr("UDP_LISTEN", ":8442"), "UDP data-plane listen address(es), comma-separated")
fs.StringVar(&c.TCPListen, "tcp-listen", envOr("TCP_LISTEN", ":8441"), "TCP echo listen address(es), comma-separated")
fs.StringVar(&c.StunListen, "stun-listen", envOr("STUN_LISTEN", ":3478"), "STUN listen address(es), comma-separated; empty disables (spec §4)")
fs.StringVar(&c.DNSListen, "dns-listen", envOr("DNS_LISTEN", ""), "canary-DNS listen address(es) udp+tcp/53, comma-separated; empty disables (spec §6.1)")
fs.StringVar(&c.CanaryZone, "canary-zone", envOr("CANARY_ZONE", ""), "authoritative canary zone, e.g. c.echo-lot.app")
fs.StringVar(&c.AdminListen, "admin-listen", envOr("ADMIN_LISTEN", "127.0.0.1:8444"), "admin/health listen address (keep localhost)")
fs.StringVar(&c.StateDir, "state-dir", envOr("STATE_DIR", defaultStateDir()), "state directory (device store, generated TLS)")
fs.StringVar(&c.Name, "name", envOr("NAME", "echolot"), "server profile name")
+14 -4
View File
@@ -47,6 +47,10 @@ type Server struct {
TCPRecent func(ip string) any
// DelayedEcho schedules/sends a DELAYED_ECHO for a session (may be nil).
DelayedEcho func(sess *session.Session, actionID string) error
// CanaryQueries returns logged canary lookups for a session prefix (may be nil).
CanaryQueries func(sessionPrefix string) any
// CanaryZone is surfaced in the profile so the app knows what to query.
CanaryZone string
}
func (s *Server) Handler() http.Handler {
@@ -93,11 +97,16 @@ func (s *Server) observations(w http.ResponseWriter, r *http.Request) {
tcp = s.TCPRecent(sess.ControlSource.Unmap().String())
}
}
var dnsCanary any
if s.CanaryQueries != nil {
dnsCanary = s.CanaryQueries(sess.ID[:16]) // the session's wire prefix
}
writeJSON(w, http.StatusOK, map[string]any{
"udp": map[string]any{"packets_seen": packetsSeen, "packets": udp},
"tcp": tcp,
"connect_back": cb,
// TODO(spec §6): http echo records, dns_canary
"dns_canary": dnsCanary,
// TODO(spec §6): http echo records
})
}
@@ -243,9 +252,10 @@ func (s *Server) profile(w http.ResponseWriter, r *http.Request) {
"tcp_port": s.TCPPort,
"stun_port": s.StunPort,
}},
"pins": []string{"pin-sha256:" + s.PinB64},
"next_pins": []string{},
"limits": map[string]any{"max_kbps": 50000, "max_session_s": 900},
"pins": []string{"pin-sha256:" + s.PinB64},
"next_pins": []string{},
"canary_zone": s.CanaryZone,
"limits": map[string]any{"max_kbps": 50000, "max_session_s": 900},
})
}