Files
3x-ui/internal/amneziawgnet/egress_domain_test.go
T
Rouzbeh† d5ab84e8d5 feat(amneziawg): add AmneziaWG as an outbound protocol (#6320)
* feat(amneziawg): add AmneziaWG as an outbound protocol

- AmneziaWG outbound protocol end-to-end: config schema, socks bridge, netstack, panel UI
- Route amneziawg outbounds to HTTP probe in TCP mode (backend + frontend classifiers) with pinning test
- Add 2-minute idle read deadline to pumpUDPEgress to reap idle egress sessions
- Require SOCKS5 username/password auth on the egress server (reject NO-AUTH with 0xFF) with test
- Bound the egress TCP tunnel dial with portForwardDialTimeout (10s), matching portfwd.go
- Resolve UDP domain targets off the association's reader loop via deliverUDPDatagram; race-safe getOrDial starts the reply pump at session creation; client passed by value into resolver goroutines (pinned by TestEgressUDPDatagramDomainInterleavedClients)
- Reconcile early-returns on an empty desired set and closes the egress listener; EgressBasePort (64900) is reserved against local inbound port conflicts like the internal API port, with pinning tests for both the port reservation (TestCheckPortConflict_EgressPortBlockedLocal) and the Reconcile empty-desired Close/Listen lifecycle (TestOutboundManagerReconcileEmptyDesiredClosesEgress)
- Eliminate acceptLoop shutdown race by validating listener != nil and registering to tracked under s.mu before wg.Add; bound pre-auth handshake with deadline (pinned by TestEgressServerCloseDuringConcurrentAccepts)
- Support AAAA and dual-stack domain resolution in tunnel DNS resolver with v6 default fallback (DefaultTunnelDNSServerV6); add DNS field to frontend protocol form; avoid unneeded cache flushes on unchanged SetStack ticks

* fix(amneziawg): resolve IPv6-only DNS default fallback and validate required keys

- Default to IPv6 tunnel DNS on IPv6-only outbounds with blank dns
- Require non-empty secretKey and peer publicKey in ValidateAmneziaWGOutbound
- Add end-to-end IPv6 tunnel domain resolution test and test empty key rejection
- Trim comment blocks exceeding 2 lines across modified files
- Fix Storybook test execution on environments with POSIX locale

Co-Authored-By: Claude Code <noreply@anthropic.com>

---------

Co-authored-by: rqzbeh <rqzbeh@users.noreply.github.com>
Co-authored-by: Claude Code <noreply@anthropic.com>
Co-authored-by: Sanaei <ho3ein.sanaei@gmail.com>
2026-09-10 14:50:48 +02:00

742 lines
21 KiB
Go

package amneziawgnet
import (
"bytes"
"encoding/binary"
"fmt"
"io"
"net"
"net/netip"
"strconv"
"strings"
"testing"
"time"
"gvisor.dev/gvisor/pkg/tcpip"
"gvisor.dev/gvisor/pkg/tcpip/adapters/gonet"
"gvisor.dev/gvisor/pkg/tcpip/network/ipv4"
"gvisor.dev/gvisor/pkg/tcpip/network/ipv6"
"github.com/amnezia-vpn/amneziawg-go/v3/device"
"github.com/mhsanaei/3x-ui/v3/internal/amneziawg"
wgutil "github.com/mhsanaei/3x-ui/v3/internal/util/wireguard"
)
func verboseLoggerForTest(prefix string) *device.Logger {
return device.NewLogger(device.LogLevelVerbose, prefix)
}
const (
tunnelTestClientAddr = "10.203.0.2"
tunnelTestServerAddr = "10.203.0.1"
tunnelTestClientAddrV6 = "fd00:203::2"
tunnelTestServerAddrV6 = "fd00:203::1"
egressTestDialTimeout = 5 * time.Second
)
// pairedTunnel wires an outbound client device to an embedded server device
// over host UDP; the server stack hosts the far-end services under test.
type pairedTunnel struct {
client *Device
server *Device
serverIP netip.Addr
}
func newPairedTunnelForTest(t *testing.T) *pairedTunnel {
t.Helper()
slog := verboseLoggerForTest("(tsrv) ")
serverPriv, serverPub, err := wgutil.GenerateWireguardKeypair()
if err != nil {
t.Fatal(err)
}
clientPriv, clientPub, err := wgutil.GenerateWireguardKeypair()
if err != nil {
t.Fatal(err)
}
pc, err := net.ListenPacket("udp", "127.0.0.1:0")
if err != nil {
t.Fatal(err)
}
listenPort := pc.LocalAddr().(*net.UDPAddr).Port
pc.Close()
obf := amneziawg.Obfuscation31{Jc: 4, Jmin: 40, Jmax: 70, S1: 20, S2: 30, S3: 20, S4: 20}
serverInst := amneziawg.Instance{
Id: 1,
InterfaceName: "awg-dnstest",
ListenPort: listenPort,
PrivateKey: serverPriv,
PublicKey: serverPub,
Address: []string{tunnelTestServerAddr + "/24"},
MTU: 1420,
Obfuscation: obf,
Peers: []amneziawg.Peer{{
PublicKey: clientPub,
AllowedIPs: []string{tunnelTestClientAddr + "/32"},
}},
}
server, err := newUnconfiguredDevice(serverInst, DeviceOptions{Logger: slog})
if err != nil {
t.Fatalf("server device: %v", err)
}
t.Cleanup(server.Close)
// Server Up before client exists: the first handshake fires at
// ConfigureClient; a missed initiation costs a 5s REKEY_TIMEOUT.
if err := server.Configure(serverInst, DeviceOptions{Logger: slog}); err != nil {
t.Fatalf("server Configure: %v", err)
}
clientInst := amneziawg.OutboundInstance{
Tag: "awg-dom-test",
Address: []string{tunnelTestClientAddr + "/32"},
MTU: 1420,
PrivateKey: clientPriv,
Obfuscation: obf,
Peers: []amneziawg.OutboundPeer{{
PublicKey: serverPub,
Endpoint: net.JoinHostPort("127.0.0.1", strconv.Itoa(listenPort)),
AllowedIPs: []string{"0.0.0.0/0", "::/0"},
KeepAlive: 1,
}},
}
clog := verboseLoggerForTest("(tcli) ")
client, err := newUnconfiguredClientDevice(clientInst, DeviceOptions{Logger: clog})
if err != nil {
t.Fatalf("client device: %v", err)
}
if err := client.ConfigureClient(clientInst, DeviceOptions{Logger: clog}); err != nil {
client.Close()
t.Fatalf("ConfigureClient: %v", err)
}
t.Cleanup(client.Close)
return &pairedTunnel{
client: client,
server: server,
serverIP: netip.MustParseAddr(tunnelTestServerAddr),
}
}
func newPairedTunnelV6ForTest(t *testing.T) *pairedTunnel {
t.Helper()
slog := verboseLoggerForTest("(tsrv6) ")
serverPriv, serverPub, err := wgutil.GenerateWireguardKeypair()
if err != nil {
t.Fatal(err)
}
clientPriv, clientPub, err := wgutil.GenerateWireguardKeypair()
if err != nil {
t.Fatal(err)
}
pc, err := net.ListenPacket("udp", "127.0.0.1:0")
if err != nil {
t.Fatal(err)
}
listenPort := pc.LocalAddr().(*net.UDPAddr).Port
pc.Close()
obf := amneziawg.Obfuscation31{Jc: 4, Jmin: 40, Jmax: 70, S1: 20, S2: 30, S3: 20, S4: 20}
serverInst := amneziawg.Instance{
Id: 2,
InterfaceName: "awg-dnstest6",
ListenPort: listenPort,
PrivateKey: serverPriv,
PublicKey: serverPub,
Address: []string{tunnelTestServerAddrV6 + "/64", "2606:4700:4700::1111/128"},
MTU: 1420,
Obfuscation: obf,
Peers: []amneziawg.Peer{{
PublicKey: clientPub,
AllowedIPs: []string{tunnelTestClientAddrV6 + "/128"},
}},
}
server, err := newUnconfiguredDevice(serverInst, DeviceOptions{Logger: slog})
if err != nil {
t.Fatalf("server device: %v", err)
}
t.Cleanup(server.Close)
if err := server.Configure(serverInst, DeviceOptions{Logger: slog}); err != nil {
t.Fatalf("server Configure: %v", err)
}
clientInst := amneziawg.OutboundInstance{
Tag: "awg-dom-v6-test",
Address: []string{tunnelTestClientAddrV6 + "/128"},
MTU: 1420,
PrivateKey: clientPriv,
Obfuscation: obf,
Peers: []amneziawg.OutboundPeer{{
PublicKey: serverPub,
Endpoint: net.JoinHostPort("127.0.0.1", strconv.Itoa(listenPort)),
AllowedIPs: []string{"::/0"},
KeepAlive: 1,
}},
}
clog := verboseLoggerForTest("(tcli6) ")
client, err := newUnconfiguredClientDevice(clientInst, DeviceOptions{Logger: clog})
if err != nil {
t.Fatalf("client device: %v", err)
}
if err := client.ConfigureClient(clientInst, DeviceOptions{Logger: clog}); err != nil {
client.Close()
t.Fatalf("ConfigureClient: %v", err)
}
t.Cleanup(client.Close)
return &pairedTunnel{
client: client,
server: server,
serverIP: netip.MustParseAddr(tunnelTestServerAddrV6),
}
}
func registerEgressDeviceForTest(t *testing.T, dev *Device) {
t.Helper()
srv := GetEgressServer()
srv.SetStack("awg-dom-test", dev)
if err := srv.Listen(); err != nil {
t.Fatal(err)
}
t.Cleanup(func() { srv.DeleteStack("awg-dom-test") })
}
// startTunnelDNS answers A/AAAA queries from INSIDE the server's netstack;
// reaching it proves DNS rode the tunnel, not the host resolver.
func (p *pairedTunnel) startDNS(t *testing.T, answer netip.Addr) chan string {
t.Helper()
proto := ipv4.ProtocolNumber
if p.serverIP.Is6() {
proto = ipv6.ProtocolNumber
}
ln, err := gonet.DialUDP(p.server.Stack, &tcpip.FullAddress{NIC: 1, Port: 53}, nil, proto)
if err != nil {
t.Fatalf("bind fake dns in server stack: %v", err)
}
got := make(chan string, 8)
go func() {
defer ln.Close()
buf := make([]byte, 512)
for {
n, from, rerr := ln.ReadFrom(buf)
if rerr != nil {
return
}
q := buf[:n]
if name := dnsQuestionName(q); name != "" {
select {
case got <- name:
default:
}
}
if resp := buildARecordReply(q, answer); resp != nil {
if _, werr := ln.WriteTo(resp, from); werr != nil {
return
}
}
}
}()
t.Cleanup(func() { ln.Close() })
return got
}
func (p *pairedTunnel) overrideDNS(t *testing.T, answer netip.Addr) chan string {
t.Helper()
srv := GetEgressServer()
prev := srv.currentDNSServer()
srv.SetDNSServer(net.JoinHostPort(p.serverIP.String(), "53"))
t.Cleanup(func() { srv.SetDNSServer(prev) })
resetTunnelDNSCacheForTest()
return p.startDNS(t, answer)
}
func resetTunnelDNSCacheForTest() {
tunnelDNSCache.mu.Lock()
tunnelDNSCache.m = map[string]tunnelDNSCacheEntry{}
tunnelDNSCache.mu.Unlock()
}
func dnsQuestionName(q []byte) string {
if len(q) < 12 {
return ""
}
i := 12
var parts []byte
for i < len(q) {
l := int(q[i])
i++
if l == 0 {
break
}
if i+l > len(q) || l > 63 {
return ""
}
parts = append(parts, q[i:i+l]...)
parts = append(parts, '.')
i += l
}
for len(parts) > 0 && parts[len(parts)-1] == '.' {
parts = parts[:len(parts)-1]
}
return string(parts)
}
func buildARecordReply(q []byte, answer netip.Addr) []byte {
if len(q) < 17 {
return nil
}
out := make([]byte, 0, len(q)+16)
header := make([]byte, 12)
copy(header[0:2], q[0:2])
header[2] = 0x81 // QR=1 RD=1
header[3] = 0x80 // RA=1 RCODE=0
binary.BigEndian.PutUint16(header[4:], 1)
binary.BigEndian.PutUint16(header[6:], 1)
out = append(out, header...)
end := len(q)
for end >= 5 && q[end-4] == 0 && q[end-3] == 0 && q[end-2] == 0 && q[end-1] == 0 {
end -= 4
}
out = append(out, q[12:end]...)
if answer.Is4() {
a := answer.As4()
rr := make([]byte, 16)
rr[0], rr[1] = 0xc0, 0x0c
binary.BigEndian.PutUint16(rr[2:], 1) // Type A
binary.BigEndian.PutUint16(rr[4:], 1) // IN
binary.BigEndian.PutUint32(rr[6:], 30) // TTL
binary.BigEndian.PutUint16(rr[10:], 4)
copy(rr[12:], a[:])
out = append(out, rr...)
} else if answer.Is6() {
a16 := answer.As16()
rr := make([]byte, 28)
rr[0], rr[1] = 0xc0, 0x0c
binary.BigEndian.PutUint16(rr[2:], 28) // Type AAAA
binary.BigEndian.PutUint16(rr[4:], 1) // IN
binary.BigEndian.PutUint32(rr[6:], 30) // TTL
binary.BigEndian.PutUint16(rr[10:], 16)
copy(rr[12:], a16[:])
out = append(out, rr...)
}
return out
}
func socksAuthUser(t *testing.T, ctl net.Conn, user string) {
t.Helper()
ctl.SetDeadline(time.Now().Add(egressTestDialTimeout))
if _, err := ctl.Write([]byte{0x05, 0x02, 0x00, 0x02}); err != nil {
t.Fatal(err)
}
r := make([]byte, 2)
if _, err := io.ReadFull(ctl, r); err != nil {
t.Fatalf("greeting read: %v", err)
}
pass := SocksPassword()
req := make([]byte, 0, 3+len(user)+len(pass))
req = append(req, 0x01, byte(len(user)))
req = append(req, user...)
req = append(req, byte(len(pass)))
req = append(req, pass...)
if _, err := ctl.Write(req); err != nil {
t.Fatal(err)
}
auth := make([]byte, 2)
if _, err := io.ReadFull(ctl, auth); err != nil || auth[1] != 0x00 {
t.Fatalf("auth rejected: %v %v", err, auth)
}
}
func socksAuth(t *testing.T, ctl net.Conn) {
t.Helper()
socksAuthUser(t, ctl, "awg-dom-test")
}
func TestEgressGreetingRejectsNoAuthClient(t *testing.T) {
tun := newPairedTunnelForTest(t)
registerEgressDeviceForTest(t, tun.client)
ctl, err := (&net.Dialer{Timeout: egressTestDialTimeout}).Dial("tcp", net.JoinHostPort("127.0.0.1", strconv.Itoa(EgressBasePort)))
if err != nil {
t.Fatal(err)
}
defer ctl.Close()
ctl.SetDeadline(time.Now().Add(egressTestDialTimeout))
// Client offers only NO-AUTH; server must answer 0xFF.
if _, err := ctl.Write([]byte{0x05, 0x01, 0x00}); err != nil {
t.Fatal(err)
}
r := make([]byte, 2)
if _, err := io.ReadFull(ctl, r); err != nil {
t.Fatalf("greeting read: %v", err)
}
if r[0] != 0x05 || r[1] != 0xFF {
t.Fatalf("greeting reply = %v, want 05 FF (auth required)", r)
}
}
func TestEgressConnectDomainResolvesThroughTunnel(t *testing.T) {
tun := newPairedTunnelForTest(t)
registerEgressDeviceForTest(t, tun.client)
// Resolving to the server's own tunnel address makes the follow-up dial
// fail fast (nothing listens on :80), while proving resolution happened.
gotQuery := tun.overrideDNS(t, tun.serverIP)
ctl, err := (&net.Dialer{Timeout: egressTestDialTimeout}).Dial("tcp", net.JoinHostPort("127.0.0.1", strconv.Itoa(EgressBasePort)))
if err != nil {
t.Fatal(err)
}
defer ctl.Close()
socksAuth(t, ctl)
name := "example.internal"
req := make([]byte, 0, 7+len(name))
req = append(req, 0x05, 0x01, 0x00, 0x03, byte(len(name)))
req = append(req, name...)
req = append(req, 0x00, 0x50)
if _, err := ctl.Write(req); err != nil {
t.Fatal(err)
}
select {
case queried := <-gotQuery:
if len(queried) < len(name) || queried[:len(name)] != name {
t.Fatalf("resolver queried %q, want prefix %q -- DNS did not ride the tunnel", queried, name)
}
case <-time.After(egressTestDialTimeout):
t.Fatal("no DNS query reached the in-tunnel resolver")
}
reply := make([]byte, 10)
ctl.SetDeadline(time.Now().Add(egressTestDialTimeout))
if _, err := io.ReadFull(ctl, reply); err != nil {
t.Fatalf("read reply: %v", err)
}
if reply[1] == 0x00 {
t.Fatal("unexpected success: nothing should be listening on the resolved address")
}
}
func TestEgressConnectDomainIPv6OnlyTunnelResolvesThroughTunnel(t *testing.T) {
tun := newPairedTunnelV6ForTest(t)
srv := GetEgressServer()
srv.SetStack("awg-dom-v6-test", tun.client)
if err := srv.Listen(); err != nil {
t.Fatal(err)
}
t.Cleanup(func() { srv.DeleteStack("awg-dom-v6-test") })
// No override: a blank dns has to fall through currentDNSServer to
// defaultDNSFor, which the server stack answers on its own v6 /128.
prevDNS := srv.currentDNSServer()
srv.SetDNSServer("")
t.Cleanup(func() { srv.SetDNSServer(prevDNS) })
resetTunnelDNSCacheForTest()
gotQuery := tun.startDNS(t, tun.serverIP)
ctl, err := (&net.Dialer{Timeout: egressTestDialTimeout}).Dial("tcp", net.JoinHostPort("127.0.0.1", strconv.Itoa(EgressBasePort)))
if err != nil {
t.Fatal(err)
}
defer ctl.Close()
socksAuthUser(t, ctl, "awg-dom-v6-test")
name := "v6.example.internal"
req := make([]byte, 0, 7+len(name))
req = append(req, 0x05, 0x01, 0x00, 0x03, byte(len(name)))
req = append(req, name...)
req = append(req, 0x00, 0x50)
if _, err := ctl.Write(req); err != nil {
t.Fatal(err)
}
select {
case queried := <-gotQuery:
if len(queried) < len(name) || queried[:len(name)] != name {
t.Fatalf("resolver queried %q, want prefix %q -- DNS did not ride the v6 tunnel", queried, name)
}
case <-time.After(egressTestDialTimeout):
t.Fatal("no DNS query reached the in-tunnel v6 resolver")
}
reply := make([]byte, 10)
ctl.SetDeadline(time.Now().Add(egressTestDialTimeout))
if _, err := io.ReadFull(ctl, reply); err != nil {
t.Fatalf("read reply: %v", err)
}
if reply[1] == 0x00 {
t.Fatal("unexpected success: nothing should be listening on the resolved address")
}
}
func TestEgressUDPDatagramDomainForwardedIntoTunnel(t *testing.T) {
tun := newPairedTunnelForTest(t)
registerEgressDeviceForTest(t, tun.client)
gotQuery := tun.overrideDNS(t, tun.serverIP)
in, err := gonet.DialUDP(tun.server.Stack, &tcpip.FullAddress{NIC: 1, Port: 9999}, nil, ipv4.ProtocolNumber)
if err != nil {
t.Fatal(err)
}
defer in.Close()
ctl, err := (&net.Dialer{Timeout: egressTestDialTimeout}).Dial("tcp", net.JoinHostPort("127.0.0.1", strconv.Itoa(EgressBasePort)))
if err != nil {
t.Fatal(err)
}
defer ctl.Close()
socksAuth(t, ctl)
if _, err := ctl.Write([]byte{0x05, 0x03, 0x00, 0x01, 0, 0, 0, 0, 0, 0}); err != nil {
t.Fatal(err)
}
reply := make([]byte, 10)
if _, err := io.ReadFull(ctl, reply); err != nil || reply[1] != 0x00 {
t.Fatalf("associate failed: %v %v", err, reply)
}
bindPort := binary.BigEndian.Uint16(reply[8:10])
udp, err := net.DialUDP("udp", nil, &net.UDPAddr{IP: net.IPv4(127, 0, 0, 1), Port: int(bindPort)})
if err != nil {
t.Fatal(err)
}
defer udp.Close()
udp.SetDeadline(time.Now().Add(egressTestDialTimeout))
// Plain-IP control datagram isolates domain parsing from transport.
// Retried to avoid warmup race on slow -race runners.
ctrl := []byte{0x00, 0x00, 0x00, 0x01, 10, 203, 0, 1, 0x27, 0x0f, 'c', 't', 'r', 'l'}
rcv := make([]byte, 64)
var nr int
var rerr error
for attempt := 0; attempt < 3; attempt++ {
if _, err := udp.Write(ctrl); err != nil {
t.Fatal(err)
}
in.SetReadDeadline(time.Now().Add(3 * time.Second))
nr, _, rerr = in.ReadFrom(rcv)
if rerr == nil {
break
}
}
if rerr != nil {
t.Fatalf("CONTROL datagram never reached the tunnel target: %v", rerr)
}
if string(rcv[:nr]) != "ctrl" {
t.Fatalf("control payload = %q", rcv[:nr])
}
name := "quic.internal"
dgram := make([]byte, 0, 5+len(name)+2+4)
dgram = append(dgram, 0x00, 0x00, 0x00, 0x03, byte(len(name)))
dgram = append(dgram, name...)
dgram = append(dgram, 0x27, 0x0f)
dgram = append(dgram, 'p', 'i', 'n', 'g')
var queried string
for attempt := 0; attempt < 3 && queried == ""; attempt++ {
if _, err := udp.Write(dgram); err != nil {
t.Fatal(err)
}
select {
case q := <-gotQuery:
queried = q
case <-time.After(1500 * time.Millisecond):
}
}
if len(queried) < len(name) || queried[:len(name)] != name {
t.Fatalf("resolver queried %q, want prefix %q -- DNS did not ride the tunnel", queried, name)
}
in.SetReadDeadline(time.Now().Add(3 * time.Second))
nr, _, rerr = in.ReadFrom(rcv)
if rerr != nil {
t.Fatalf("domain datagram never reached the tunnel target: %v", rerr)
}
if nr < 4 || string(rcv[:4]) != "ping" {
t.Fatalf("payload = %q (n=%d)", rcv[:nr], nr)
}
}
// TestEgressUDPDatagramDomainInterleavedClients ensures datagrams pass client
// address by value into resolver goroutines so responses route correctly.
func TestEgressUDPDatagramDomainInterleavedClients(t *testing.T) {
tun := newPairedTunnelForTest(t)
registerEgressDeviceForTest(t, tun.client)
gotQuery := tun.overrideDNS(t, tun.serverIP)
in, err := gonet.DialUDP(tun.server.Stack, &tcpip.FullAddress{NIC: 1, Port: 9999}, nil, ipv4.ProtocolNumber)
if err != nil {
t.Fatal(err)
}
defer in.Close()
go func() {
buf := make([]byte, 512)
for {
n, from, rerr := in.ReadFrom(buf)
if rerr != nil {
return
}
_, _ = in.WriteTo(append([]byte("echo:"), buf[:n]...), from)
}
}()
dialUDP := func() *net.UDPConn {
ctl, err := (&net.Dialer{Timeout: egressTestDialTimeout}).Dial("tcp", net.JoinHostPort("127.0.0.1", strconv.Itoa(EgressBasePort)))
if err != nil {
t.Fatal(err)
}
t.Cleanup(func() { ctl.Close() })
socksAuth(t, ctl)
if _, err := ctl.Write([]byte{0x05, 0x03, 0x00, 0x01, 0, 0, 0, 0, 0, 0}); err != nil {
t.Fatal(err)
}
reply := make([]byte, 10)
if _, err := io.ReadFull(ctl, reply); err != nil || reply[1] != 0x00 {
t.Fatalf("associate failed: %v %v", err, reply)
}
bindPort := binary.BigEndian.Uint16(reply[8:10])
udp, err := net.DialUDP("udp", nil, &net.UDPAddr{IP: net.IPv4(127, 0, 0, 1), Port: int(bindPort)})
if err != nil {
t.Fatal(err)
}
t.Cleanup(func() { udp.Close() })
udp.SetDeadline(time.Now().Add(egressTestDialTimeout))
return udp
}
name := func(i int) string { return fmt.Sprintf("interleaved-%d.internal", i) }
dgram := func(i int, payload string) []byte {
n := name(i)
d := make([]byte, 0, 5+len(n)+2+len(payload))
d = append(d, 0x00, 0x00, 0x00, 0x03, byte(len(n)))
d = append(d, n...)
d = append(d, 0x27, 0x0f)
return append(d, payload...)
}
for seq := 0; seq < 4; seq++ {
udp := dialUDP()
payload := fmt.Sprintf("p-%d", seq)
if _, err := udp.Write(dgram(seq, payload)); err != nil {
t.Fatal(err)
}
select {
case q := <-gotQuery:
if !strings.HasPrefix(q, "interleaved-") {
t.Fatalf("resolver queried %q, want an interleaved-* name", q)
}
case <-time.After(4 * time.Second):
t.Fatalf("query %d not observed", seq)
}
rcv := make([]byte, 512)
nr, _, rerr := udp.ReadFrom(rcv)
if rerr != nil {
t.Fatalf("reply %d never reached client: %v", seq, rerr)
}
if nr < 10 || !strings.Contains(string(rcv[:nr]), "echo:"+payload) {
t.Fatalf("reply payload = %q, want echo:%s", rcv[:nr], payload)
}
}
}
func TestDefaultDNSFor(t *testing.T) {
v4 := netip.MustParseAddr("10.8.0.2")
v6 := netip.MustParseAddr("2001:db8::2")
if got := defaultDNSFor([]netip.Addr{v4}); got != DefaultTunnelDNSServer {
t.Errorf("defaultDNSFor(v4) = %q, want %q", got, DefaultTunnelDNSServer)
}
if got := defaultDNSFor([]netip.Addr{v4, v6}); got != DefaultTunnelDNSServer {
t.Errorf("defaultDNSFor(dual) = %q, want %q", got, DefaultTunnelDNSServer)
}
if got := defaultDNSFor([]netip.Addr{v6}); got != DefaultTunnelDNSServerV6 {
t.Errorf("defaultDNSFor(v6-only) = %q, want %q", got, DefaultTunnelDNSServerV6)
}
if got := defaultDNSFor(nil); got != DefaultTunnelDNSServer {
t.Errorf("defaultDNSFor(nil) = %q, want %q", got, DefaultTunnelDNSServer)
}
}
func TestParseDatagramDomainHeader(t *testing.T) {
hdr := []byte{0, 0, 0, 0x03, 4, 'a', 'b', '.', 'd', 0x00, 0x35, 'x'}
name, port, hdrLen, err := parseDatagramDomainHeader(hdr)
if err != nil {
t.Fatal(err)
}
if name != "ab.d" || port != 53 || hdrLen != 11 {
t.Fatalf("name=%q port=%d hdrLen=%d", name, port, hdrLen)
}
truncated := []byte{0, 0, 0, 0x03, 200, 'a'}
if _, _, _, err := parseDatagramDomainHeader(truncated); err == nil {
t.Fatal("truncated domain accepted")
}
empty := []byte{0, 0, 0, 0x03, 0, 0x00, 0x35}
if _, _, _, err := parseDatagramDomainHeader(empty); err == nil {
t.Fatal("empty domain accepted")
}
}
func TestReadSocksRequestTargetKeepsHostnameUnresolved(t *testing.T) {
payload := append([]byte{byte(len("invalid."))}, []byte("invalid.")...)
payload = append(payload, 0x01, 0xbb)
tr, err := readSocksRequestTarget(bytes.NewReader(payload), 0x03)
if err != nil {
t.Fatalf("domain request rejected: %v", err)
}
if tr.host != "invalid." || tr.port != 443 || tr.ip.IsValid() {
t.Fatalf("target = %+v", tr)
}
}
func TestTunnelDNSCache_ScopedPerTagAndServer(t *testing.T) {
resetTunnelDNSCacheForTest()
tagA, tagB := "out-a", "out-b"
dns1, dns2 := "1.1.1.1:53", "8.8.8.8:53"
host := "example.com"
addrA := netip.MustParseAddr("10.0.0.1")
addrB := netip.MustParseAddr("10.0.0.2")
keyA := dnsCacheKey(tagA, dns1, host)
keyB := dnsCacheKey(tagB, dns1, host)
keyA2 := dnsCacheKey(tagA, dns2, host)
tunnelDNSCache.mu.Lock()
tunnelDNSCache.m[keyA] = tunnelDNSCacheEntry{addr: addrA, exp: time.Now().Add(time.Hour)}
tunnelDNSCache.m[keyB] = tunnelDNSCacheEntry{addr: addrB, exp: time.Now().Add(time.Hour)}
tunnelDNSCache.mu.Unlock()
tunnelDNSCache.mu.Lock()
eA, okA := tunnelDNSCache.m[keyA]
eB, okB := tunnelDNSCache.m[keyB]
_, okA2 := tunnelDNSCache.m[keyA2]
tunnelDNSCache.mu.Unlock()
if !okA || eA.addr != addrA {
t.Fatalf("tagA cache entry mismatch: %v, %v", okA, eA)
}
if !okB || eB.addr != addrB {
t.Fatalf("tagB cache entry mismatch: %v, %v", okB, eB)
}
if okA2 {
t.Fatal("key with different DNS server should not match")
}
flushTunnelDNSCacheForTag(tagA)
tunnelDNSCache.mu.Lock()
_, okAAfter := tunnelDNSCache.m[keyA]
_, okBAfter := tunnelDNSCache.m[keyB]
tunnelDNSCache.mu.Unlock()
if okAAfter {
t.Fatal("tagA entry should be flushed")
}
if !okBAfter {
t.Fatal("tagB entry should survive flush of tagA")
}
}