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@ -131,7 +131,7 @@ func runDERPAndStun(t *testing.T, logf logger.Logf, l nettype.PacketListener, st
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// necessary to send and receive packets to test e2e wireguard
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// happiness.
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type magicStack struct {
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privateKey wgkey.Private
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privateKey key.NodePrivate
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epCh chan []tailcfg.Endpoint // endpoint updates produced by this peer
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conn *Conn // the magicsock itself
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tun *tuntest.ChannelTUN // TUN device to send/receive packets
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@ -144,15 +144,11 @@ type magicStack struct {
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// friends. You need to call conn.SetNetworkMap and dev.Reconfig
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// before anything interesting happens.
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func newMagicStack(t testing.TB, logf logger.Logf, l nettype.PacketListener, derpMap *tailcfg.DERPMap) *magicStack {
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privateKey, err := wgkey.NewPrivate()
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if err != nil {
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t.Fatalf("generating private key: %v", err)
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}
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privateKey := key.NewNode()
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return newMagicStackWithKey(t, logf, l, derpMap, privateKey)
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}
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func newMagicStackWithKey(t testing.TB, logf logger.Logf, l nettype.PacketListener, derpMap *tailcfg.DERPMap, privateKey wgkey.Private) *magicStack {
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func newMagicStackWithKey(t testing.TB, logf logger.Logf, l nettype.PacketListener, derpMap *tailcfg.DERPMap, privateKey key.NodePrivate) *magicStack {
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t.Helper()
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epCh := make(chan []tailcfg.Endpoint, 100) // arbitrary
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@ -215,7 +211,7 @@ func (s *magicStack) Close() {
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}
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func (s *magicStack) Public() key.Public {
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return key.Public(s.privateKey.Public())
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return s.privateKey.Public().AsPublic()
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}
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func (s *magicStack) Status() *ipnstate.Status {
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@ -256,8 +252,8 @@ func meshStacks(logf logger.Logf, mutateNetmap func(idx int, nm *netmap.NetworkM
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buildNetmapLocked := func(myIdx int) *netmap.NetworkMap {
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me := ms[myIdx]
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nm := &netmap.NetworkMap{
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PrivateKey: key.NodePrivateFromRaw32(mem.B(me.privateKey[:])),
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NodeKey: tailcfg.NodeKey(me.privateKey.Public()),
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PrivateKey: me.privateKey,
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NodeKey: tailcfg.NodeKeyFromNodePublic(me.privateKey.Public()),
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Addresses: []netaddr.IPPrefix{netaddr.IPPrefixFrom(netaddr.IPv4(1, 0, 0, byte(myIdx+1)), 32)},
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}
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for i, peer := range ms {
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@ -268,7 +264,7 @@ func meshStacks(logf logger.Logf, mutateNetmap func(idx int, nm *netmap.NetworkM
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peer := &tailcfg.Node{
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ID: tailcfg.NodeID(i + 1),
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Name: fmt.Sprintf("node%d", i+1),
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Key: tailcfg.NodeKey(peer.privateKey.Public()),
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Key: tailcfg.NodeKeyFromNodePublic(peer.privateKey.Public()),
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DiscoKey: peer.conn.DiscoPublicKey(),
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Addresses: addrs,
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AllowedIPs: addrs,
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@ -363,7 +359,7 @@ func TestNewConn(t *testing.T) {
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}
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defer conn.Close()
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conn.SetDERPMap(stuntest.DERPMapOf(stunAddr.String()))
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conn.SetPrivateKey(wgkey.Private(key.NewPrivate()))
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conn.SetPrivateKey(key.NewNode())
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go func() {
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var pkt [64 << 10]byte
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@ -666,10 +662,7 @@ func TestDiscokeyChange(t *testing.T) {
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derpMap, cleanup := runDERPAndStun(t, t.Logf, localhostListener{}, netaddr.IPv4(127, 0, 0, 1))
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defer cleanup()
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m1Key, err := wgkey.NewPrivate()
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if err != nil {
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t.Fatalf("generating nodekey: %v", err)
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}
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m1Key := key.NewNode()
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m1 := newMagicStackWithKey(t, t.Logf, localhostListener{}, derpMap, m1Key)
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defer m1.Close()
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m2 := newMagicStack(t, t.Logf, localhostListener{}, derpMap)
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@ -1007,10 +1000,10 @@ func testTwoDevicePing(t *testing.T, d *devices) {
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// Wait for magicsock to be told about peers from meshStacks.
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tstest.WaitFor(10*time.Second, func() error {
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if p := m1.Status().Peer[key.Public(m2.privateKey.Public())]; p == nil || !p.InMagicSock {
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if p := m1.Status().Peer[m2.privateKey.Public().AsPublic()]; p == nil || !p.InMagicSock {
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return errors.New("m1 not ready")
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}
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if p := m2.Status().Peer[key.Public(m1.privateKey.Public())]; p == nil || !p.InMagicSock {
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if p := m2.Status().Peer[m1.privateKey.Public().AsPublic()]; p == nil || !p.InMagicSock {
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return errors.New("m2 not ready")
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}
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return nil
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@ -1018,11 +1011,11 @@ func testTwoDevicePing(t *testing.T, d *devices) {
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m1cfg := &wgcfg.Config{
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Name: "peer1",
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PrivateKey: key.NodePrivateFromRaw32(mem.B(m1.privateKey[:])),
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PrivateKey: m1.privateKey,
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Addresses: []netaddr.IPPrefix{netaddr.MustParseIPPrefix("1.0.0.1/32")},
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Peers: []wgcfg.Peer{
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wgcfg.Peer{
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PublicKey: key.NodePrivateFromRaw32(mem.B(m2.privateKey[:])).Public(),
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PublicKey: m2.privateKey.Public(),
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DiscoKey: m2.conn.DiscoPublicKey(),
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AllowedIPs: []netaddr.IPPrefix{netaddr.MustParseIPPrefix("1.0.0.2/32")},
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},
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@ -1030,11 +1023,11 @@ func testTwoDevicePing(t *testing.T, d *devices) {
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}
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m2cfg := &wgcfg.Config{
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Name: "peer2",
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PrivateKey: key.NodePrivateFromRaw32(mem.B(m2.privateKey[:])),
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PrivateKey: m2.privateKey,
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Addresses: []netaddr.IPPrefix{netaddr.MustParseIPPrefix("1.0.0.2/32")},
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Peers: []wgcfg.Peer{
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wgcfg.Peer{
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PublicKey: key.NodePrivateFromRaw32(mem.B(m1.privateKey[:])).Public(),
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PublicKey: m1.privateKey.Public(),
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DiscoKey: m1.conn.DiscoPublicKey(),
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AllowedIPs: []netaddr.IPPrefix{netaddr.MustParseIPPrefix("1.0.0.1/32")},
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},
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@ -1251,7 +1244,7 @@ func addTestEndpoint(tb testing.TB, conn *Conn, sendConn net.PacketConn) (tailcf
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},
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},
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})
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conn.SetPrivateKey(wgkey.Private{0: 1})
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conn.SetPrivateKey(key.NodePrivateFromRaw32(mem.B([]byte{0: 1, 31: 0})))
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_, err := conn.ParseEndpoint(wgkey.Key(nodeKey).HexString())
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if err != nil {
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tb.Fatal(err)
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@ -1410,7 +1403,7 @@ func TestSetNetworkMapChangingNodeKey(t *testing.T) {
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var buf tstest.MemLogger
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conn.logf = buf.Logf
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conn.SetPrivateKey(wgkey.Private{0: 1})
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conn.SetPrivateKey(key.NodePrivateFromRaw32(mem.B([]byte{0: 1, 31: 0})))
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discoKey := tailcfg.DiscoKey{31: 1}
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nodeKey1 := tailcfg.NodeKey{0: 'N', 1: 'K', 2: '1'}
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