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- package amneziawgnet
- import (
- "fmt"
- "net/netip"
- "testing"
- "time"
- awgconn "github.com/amnezia-vpn/amneziawg-go/v3/conn"
- "github.com/amnezia-vpn/amneziawg-go/v3/device"
- "github.com/amnezia-vpn/amneziawg-go/v3/tun/netstack"
- "gvisor.dev/gvisor/pkg/tcpip"
- "gvisor.dev/gvisor/pkg/tcpip/header"
- "github.com/mhsanaei/3x-ui/v3/internal/amneziawg"
- "github.com/mhsanaei/3x-ui/v3/internal/util/wireguard"
- )
- // TestNewDeviceUDPHandlerAndReply is the UDP counterpart of
- // TestNewDeviceHandshakeForwarderAndIdentity: this package's own udp.go was
- // refactored from the Phase 0 spike's bake-the-dial-in version to a generic
- // handler-plus-reply-injection design (see AttachUDPHandler/WriteUDPReply's
- // doc comments), a real behavior change worth its own verification rather
- // than assuming the port preserved correctness -- UDP was flagged as "the
- // harder half" in the migration plan's own risk list, precisely because
- // gVisor has no udp.NewForwarder and the reply path has to be constructed
- // by hand.
- func TestNewDeviceUDPHandlerAndReply(t *testing.T) {
- serverPriv, serverPub, err := wireguard.GenerateWireguardKeypair()
- if err != nil {
- t.Fatalf("generate server keypair: %v", err)
- }
- clientPriv, clientPub, err := wireguard.GenerateWireguardKeypair()
- if err != nil {
- t.Fatalf("generate client keypair: %v", err)
- }
- const listenPort = 58713 // distinct from the TCP test's port
- const wantEmail = "[email protected]"
- const echoPayload = "hello-from-client"
- inst := amneziawg.Instance{
- Id: 2,
- InterfaceName: "awgtest2",
- ListenPort: listenPort,
- PrivateKey: serverPriv,
- PublicKey: serverPub,
- Address: []string{"10.202.0.1/24"},
- MTU: 1420,
- Obfuscation: amneziawg.Obfuscation31{
- Jc: 4, Jmin: 40, Jmax: 70,
- S1: 20, S2: 30, S3: 20, S4: 20,
- },
- Peers: []amneziawg.Peer{{
- Email: wantEmail,
- PublicKey: clientPub,
- AllowedIPs: []string{"10.202.0.2/32"},
- }},
- }
- dev, err := newUnconfiguredDevice(inst, DeviceOptions{})
- if err != nil {
- t.Fatalf("newUnconfiguredDevice: %v", err)
- }
- defer dev.Close()
- idx := NewPeerIndex(inst.Peers)
- // Never configured anywhere server-side, same idea as the TCP test.
- wantDest := netip.MustParseAddrPort("10.202.9.9:5353")
- identityErrCh := make(chan error, 8)
- AttachUDPHandler(dev.Stack, func(src, dst netip.AddrPort, payload []byte) {
- if peer, ok := idx.Lookup(src.Addr()); !ok || peer.Email != wantEmail {
- identityErrCh <- fmt.Errorf("peer identity lookup for src %v: ok=%v email=%q, want %q", src, ok, peer.Email, wantEmail)
- return
- }
- if dst != wantDest {
- identityErrCh <- fmt.Errorf("recovered dest = %v, want %v", dst, wantDest)
- return
- }
- // Echo the payload back, posing as a reply from the destination the
- // client dialed -- exactly what a real relay's downstream reply
- // would look like from the tunnel's point of view.
- if err := WriteUDPReply(dev.Stack, dst, src, payload); err != nil {
- identityErrCh <- fmt.Errorf("WriteUDPReply: %w", err)
- }
- })
- // Configure (IpcSet) must come after AttachUDPHandler -- see
- // newUnconfiguredDevice's doc comment.
- if err := dev.Configure(inst, DeviceOptions{}); err != nil {
- t.Fatalf("Configure: %v", err)
- }
- clientTun, clientNet, err := netstack.CreateNetTUN(
- []netip.Addr{netip.MustParseAddr("10.202.0.2")},
- []netip.Addr{netip.MustParseAddr("1.1.1.1")}, 1420)
- if err != nil {
- t.Fatalf("client CreateNetTUN: %v", err)
- }
- clientDev := device.NewDevice(clientTun, awgconn.NewDefaultBind(), device.NewLogger(device.LogLevelSilent, ""))
- defer clientDev.Close()
- clientPrivHex, err := wireguard.KeyToHex(clientPriv)
- if err != nil {
- t.Fatalf("client key to hex: %v", err)
- }
- serverPubHex, err := wireguard.KeyToHex(serverPub)
- if err != nil {
- t.Fatalf("server key to hex: %v", err)
- }
- clientConf := fmt.Sprintf(
- "private_key=%s\njc=4\njmin=40\njmax=70\ns1=20\ns2=30\ns3=20\ns4=20\npublic_key=%s\nendpoint=127.0.0.1:%d\nallowed_ip=0.0.0.0/0\n",
- clientPrivHex, serverPubHex, listenPort)
- if err := clientDev.IpcSet(clientConf); err != nil {
- t.Fatalf("client IpcSet: %v", err)
- }
- if err := clientDev.Up(); err != nil {
- t.Fatalf("client Up: %v", err)
- }
- conn, err := clientNet.DialUDPAddrPort(netip.AddrPort{}, wantDest)
- if err != nil {
- t.Fatalf("client DialUDPAddrPort: %v", err)
- }
- defer conn.Close()
- deadline := time.Now().Add(5 * time.Second)
- var buf [256]byte
- for {
- select {
- case err := <-identityErrCh:
- t.Fatal(err)
- default:
- }
- _ = conn.SetWriteDeadline(time.Now().Add(200 * time.Millisecond))
- if _, err := conn.Write([]byte(echoPayload)); err != nil {
- if time.Now().After(deadline) {
- t.Fatalf("client write never succeeded: %v", err)
- }
- continue
- }
- _ = conn.SetReadDeadline(time.Now().Add(200 * time.Millisecond))
- n, err := conn.Read(buf[:])
- if err != nil {
- if time.Now().After(deadline) {
- t.Fatalf("client never received a reply: %v", err)
- }
- continue
- }
- if got := string(buf[:n]); got != echoPayload {
- t.Fatalf("echoed payload = %q, want %q", got, echoPayload)
- }
- return
- }
- }
- // udpDatagram builds a complete IPv4/UDP packet, the shape stackTun.Write
- // expects from amneziawg-go after decryption.
- func udpDatagram(src, dst netip.AddrPort, payload []byte) []byte {
- total := header.IPv4MinimumSize + header.UDPMinimumSize + len(payload)
- p := make([]byte, total)
- ip := header.IPv4(p)
- ip.Encode(&header.IPv4Fields{
- TotalLength: uint16(total),
- TTL: 64,
- Protocol: uint8(header.UDPProtocolNumber),
- SrcAddr: tcpip.AddrFromSlice(src.Addr().AsSlice()),
- DstAddr: tcpip.AddrFromSlice(dst.Addr().AsSlice()),
- })
- ip.SetChecksum(^ip.CalculateChecksum())
- u := header.UDP(p[header.IPv4MinimumSize:])
- u.Encode(&header.UDPFields{
- SrcPort: src.Port(),
- DstPort: dst.Port(),
- Length: uint16(header.UDPMinimumSize + len(payload)),
- })
- copy(p[header.IPv4MinimumSize+header.UDPMinimumSize:], payload)
- return p
- }
- // TestAttachUDPHandlerDoesNotStrandPacketBuffers drives a real datagram all the
- // way through the stack: Range.ToSlice already copies, so cloning pkt only leaks.
- func TestAttachUDPHandlerDoesNotStrandPacketBuffers(t *testing.T) {
- tun, gstack, err := createNetTUNWithStack([]netip.Addr{netip.MustParseAddr("10.77.0.1")}, 1420)
- if err != nil {
- t.Fatalf("createNetTUNWithStack: %v", err)
- }
- defer tun.Close()
- src := netip.MustParseAddrPort("10.77.0.2:40000")
- dst := netip.MustParseAddrPort("10.77.9.9:5353")
- payload := make([]byte, 512)
- var delivered int
- AttachUDPHandler(gstack, func(gotSrc, gotDst netip.AddrPort, got []byte) {
- if gotSrc != src || gotDst != dst || len(got) != len(payload) {
- t.Errorf("handler got (%v -> %v, %d bytes), want (%v -> %v, %d bytes)", gotSrc, gotDst, len(got), src, dst, len(payload))
- }
- delivered++
- })
- bufs := [][]byte{udpDatagram(src, dst, payload)}
- st := tun.(*stackTun)
- allocs := testing.AllocsPerRun(500, func() {
- if _, err := st.Write(bufs, 0); err != nil {
- t.Fatalf("Write: %v", err)
- }
- })
- if delivered == 0 {
- t.Fatal("handler never ran: the datagram never reached the UDP transport handler")
- }
- // 2 once nothing is stranded (1 is ToSlice itself), 8 with the leaked
- // clone plus the un-released packet buffer; -race adds ~1.
- if allocs > 4 {
- t.Fatalf("UDP delivery allocates %v times per datagram, want <=4: pooled packet buffers are being stranded", allocs)
- }
- }
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