mirror of
https://github.com/slackhq/nebula.git
synced 2025-11-09 03:23:57 +01:00
Add a simple benchmark to e2e tests (#739)
This commit is contained in:
parent
c2259f14a7
commit
feb3e1317f
3
Makefile
3
Makefile
@ -66,6 +66,9 @@ e2evvv: e2ev
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e2evvvv: TEST_ENV += TEST_LOGS=3
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e2evvvv: TEST_ENV += TEST_LOGS=3
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e2evvvv: e2ev
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e2evvvv: e2ev
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e2e-bench: TEST_FLAGS = -bench=. -benchmem -run=^$
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e2e-bench: e2e
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all: $(ALL:%=build/%/nebula) $(ALL:%=build/%/nebula-cert)
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all: $(ALL:%=build/%/nebula) $(ALL:%=build/%/nebula-cert)
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release: $(ALL:%=build/nebula-%.tar.gz)
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release: $(ALL:%=build/nebula-%.tar.gz)
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@ -16,6 +16,30 @@ import (
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"github.com/stretchr/testify/assert"
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"github.com/stretchr/testify/assert"
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)
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)
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func BenchmarkHotPath(b *testing.B) {
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ca, _, caKey, _ := newTestCaCert(time.Now(), time.Now().Add(10*time.Minute), []*net.IPNet{}, []*net.IPNet{}, []string{})
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myControl, _, _ := newSimpleServer(ca, caKey, "me", net.IP{10, 0, 0, 1}, nil)
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theirControl, theirVpnIp, theirUdpAddr := newSimpleServer(ca, caKey, "them", net.IP{10, 0, 0, 2}, nil)
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// Put their info in our lighthouse
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myControl.InjectLightHouseAddr(theirVpnIp, theirUdpAddr)
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// Start the servers
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myControl.Start()
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theirControl.Start()
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r := router.NewR(b, myControl, theirControl)
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r.CancelFlowLogs()
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for n := 0; n < b.N; n++ {
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myControl.InjectTunUDPPacket(theirVpnIp, 80, 80, []byte("Hi from me"))
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_ = r.RouteForAllUntilTxTun(theirControl)
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}
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myControl.Stop()
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theirControl.Stop()
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}
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func TestGoodHandshake(t *testing.T) {
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func TestGoodHandshake(t *testing.T) {
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ca, _, caKey, _ := newTestCaCert(time.Now(), time.Now().Add(10*time.Minute), []*net.IPNet{}, []*net.IPNet{}, []string{})
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ca, _, caKey, _ := newTestCaCert(time.Now(), time.Now().Add(10*time.Minute), []*net.IPNet{}, []*net.IPNet{}, []string{})
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myControl, myVpnIp, myUdpAddr := newSimpleServer(ca, caKey, "me", net.IP{10, 0, 0, 1}, nil)
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myControl, myVpnIp, myUdpAddr := newSimpleServer(ca, caKey, "me", net.IP{10, 0, 0, 1}, nil)
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@ -7,7 +7,6 @@ import (
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"crypto/rand"
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"crypto/rand"
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"fmt"
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"fmt"
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"io"
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"io"
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"io/ioutil"
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"net"
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"net"
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"os"
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"os"
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"testing"
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"testing"
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@ -304,7 +303,8 @@ func NewTestLogger() *logrus.Logger {
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v := os.Getenv("TEST_LOGS")
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v := os.Getenv("TEST_LOGS")
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if v == "" {
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if v == "" {
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l.SetOutput(ioutil.Discard)
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l.SetOutput(io.Discard)
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l.SetLevel(logrus.PanicLevel)
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return l
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return l
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}
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}
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@ -47,7 +47,7 @@ type R struct {
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fn string
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fn string
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cancelRender context.CancelFunc
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cancelRender context.CancelFunc
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t *testing.T
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t testing.TB
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}
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}
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type flowEntry struct {
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type flowEntry struct {
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@ -63,6 +63,12 @@ type packet struct {
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rx bool // the packet was received by a udp device
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rx bool // the packet was received by a udp device
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}
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}
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func (p *packet) WasReceived() {
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if p != nil {
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p.rx = true
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}
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}
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type ExitType int
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type ExitType int
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const (
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const (
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@ -79,7 +85,7 @@ type ExitFunc func(packet *udp.Packet, receiver *nebula.Control) ExitType
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// NewR creates a new router to pass packets in a controlled fashion between the provided controllers.
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// NewR creates a new router to pass packets in a controlled fashion between the provided controllers.
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// The packet flow will be recorded in a file within the mermaid directory under the same name as the test.
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// The packet flow will be recorded in a file within the mermaid directory under the same name as the test.
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// Renders will occur automatically, roughly every 100ms, until a call to RenderFlow() is made
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// Renders will occur automatically, roughly every 100ms, until a call to RenderFlow() is made
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func NewR(t *testing.T, controls ...*nebula.Control) *R {
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func NewR(t testing.TB, controls ...*nebula.Control) *R {
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ctx, cancel := context.WithCancel(context.Background())
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ctx, cancel := context.WithCancel(context.Background())
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if err := os.MkdirAll("mermaid", 0755); err != nil {
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if err := os.MkdirAll("mermaid", 0755); err != nil {
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@ -91,6 +97,7 @@ func NewR(t *testing.T, controls ...*nebula.Control) *R {
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vpnControls: make(map[iputil.VpnIp]*nebula.Control),
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vpnControls: make(map[iputil.VpnIp]*nebula.Control),
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inNat: make(map[string]*nebula.Control),
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inNat: make(map[string]*nebula.Control),
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outNat: make(map[string]net.UDPAddr),
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outNat: make(map[string]net.UDPAddr),
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flow: []flowEntry{},
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fn: filepath.Join("mermaid", fmt.Sprintf("%s.md", t.Name())),
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fn: filepath.Join("mermaid", fmt.Sprintf("%s.md", t.Name())),
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t: t,
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t: t,
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cancelRender: cancel,
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cancelRender: cancel,
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@ -148,14 +155,24 @@ func (r *R) RenderFlow() {
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r.renderFlow()
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r.renderFlow()
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}
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}
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// CancelFlowLogs stops flow logs from being tracked and destroys any logs already collected
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func (r *R) CancelFlowLogs() {
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r.cancelRender()
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r.flow = nil
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}
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func (r *R) renderFlow() {
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func (r *R) renderFlow() {
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if r.flow == nil {
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return
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}
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f, err := os.OpenFile(r.fn, os.O_CREATE|os.O_TRUNC|os.O_RDWR, 0644)
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f, err := os.OpenFile(r.fn, os.O_CREATE|os.O_TRUNC|os.O_RDWR, 0644)
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if err != nil {
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if err != nil {
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panic(err)
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panic(err)
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}
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}
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var participants = map[string]struct{}{}
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var participants = map[string]struct{}{}
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var participansVals []string
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var participantsVals []string
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fmt.Fprintln(f, "```mermaid")
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fmt.Fprintln(f, "```mermaid")
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fmt.Fprintln(f, "sequenceDiagram")
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fmt.Fprintln(f, "sequenceDiagram")
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@ -172,7 +189,7 @@ func (r *R) renderFlow() {
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}
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}
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participants[addr] = struct{}{}
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participants[addr] = struct{}{}
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sanAddr := strings.Replace(addr, ":", "#58;", 1)
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sanAddr := strings.Replace(addr, ":", "#58;", 1)
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participansVals = append(participansVals, sanAddr)
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participantsVals = append(participantsVals, sanAddr)
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fmt.Fprintf(
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fmt.Fprintf(
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f, " participant %s as Nebula: %s<br/>UDP: %s\n",
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f, " participant %s as Nebula: %s<br/>UDP: %s\n",
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sanAddr, e.packet.from.GetVpnIp(), sanAddr,
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sanAddr, e.packet.from.GetVpnIp(), sanAddr,
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@ -183,7 +200,7 @@ func (r *R) renderFlow() {
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h := &header.H{}
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h := &header.H{}
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for _, e := range r.flow {
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for _, e := range r.flow {
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if e.packet == nil {
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if e.packet == nil {
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fmt.Fprintf(f, " note over %s: %s\n", strings.Join(participansVals, ", "), e.note)
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fmt.Fprintf(f, " note over %s: %s\n", strings.Join(participantsVals, ", "), e.note)
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continue
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continue
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}
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}
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@ -222,6 +239,10 @@ func (r *R) InjectFlow(from, to *nebula.Control, p *udp.Packet) {
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}
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}
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func (r *R) Log(arg ...any) {
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func (r *R) Log(arg ...any) {
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if r.flow == nil {
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return
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}
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r.Lock()
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r.Lock()
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r.flow = append(r.flow, flowEntry{note: fmt.Sprint(arg...)})
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r.flow = append(r.flow, flowEntry{note: fmt.Sprint(arg...)})
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r.t.Log(arg...)
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r.t.Log(arg...)
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@ -229,6 +250,10 @@ func (r *R) Log(arg ...any) {
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}
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}
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func (r *R) Logf(format string, arg ...any) {
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func (r *R) Logf(format string, arg ...any) {
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if r.flow == nil {
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return
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}
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r.Lock()
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r.Lock()
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r.flow = append(r.flow, flowEntry{note: fmt.Sprintf(format, arg...)})
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r.flow = append(r.flow, flowEntry{note: fmt.Sprintf(format, arg...)})
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r.t.Logf(format, arg...)
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r.t.Logf(format, arg...)
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@ -236,14 +261,20 @@ func (r *R) Logf(format string, arg ...any) {
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}
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}
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// unlockedInjectFlow is used by the router to record a packet has been transmitted, the packet is returned and
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// unlockedInjectFlow is used by the router to record a packet has been transmitted, the packet is returned and
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// should be marked as received AFTER it has been placed on the receivers channel
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// should be marked as received AFTER it has been placed on the receivers channel.
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// If flow logs have been disabled this function will return nil
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func (r *R) unlockedInjectFlow(from, to *nebula.Control, p *udp.Packet, tun bool) *packet {
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func (r *R) unlockedInjectFlow(from, to *nebula.Control, p *udp.Packet, tun bool) *packet {
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if r.flow == nil {
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return nil
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}
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fp := &packet{
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fp := &packet{
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from: from,
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from: from,
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to: to,
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to: to,
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packet: p.Copy(),
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packet: p.Copy(),
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tun: tun,
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tun: tun,
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}
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}
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r.flow = append(r.flow, flowEntry{packet: fp})
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r.flow = append(r.flow, flowEntry{packet: fp})
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return fp
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return fp
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}
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}
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@ -285,7 +316,7 @@ func (r *R) RouteUntilTxTun(sender *nebula.Control, receiver *nebula.Control) []
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}
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}
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fp := r.unlockedInjectFlow(sender, c, p, false)
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fp := r.unlockedInjectFlow(sender, c, p, false)
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c.InjectUDPPacket(p)
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c.InjectUDPPacket(p)
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fp.rx = true
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fp.WasReceived()
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r.Unlock()
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r.Unlock()
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}
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}
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}
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}
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@ -344,7 +375,7 @@ func (r *R) RouteForAllUntilTxTun(receiver *nebula.Control) []byte {
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}
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}
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fp := r.unlockedInjectFlow(cm[x], c, p, false)
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fp := r.unlockedInjectFlow(cm[x], c, p, false)
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c.InjectUDPPacket(p)
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c.InjectUDPPacket(p)
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fp.rx = true
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fp.WasReceived()
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}
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}
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r.Unlock()
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r.Unlock()
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}
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}
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@ -381,14 +412,14 @@ func (r *R) RouteExitFunc(sender *nebula.Control, whatDo ExitFunc) {
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case RouteAndExit:
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case RouteAndExit:
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fp := r.unlockedInjectFlow(sender, receiver, p, false)
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fp := r.unlockedInjectFlow(sender, receiver, p, false)
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receiver.InjectUDPPacket(p)
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receiver.InjectUDPPacket(p)
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fp.rx = true
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fp.WasReceived()
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r.Unlock()
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r.Unlock()
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return
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return
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case KeepRouting:
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case KeepRouting:
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fp := r.unlockedInjectFlow(sender, receiver, p, false)
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fp := r.unlockedInjectFlow(sender, receiver, p, false)
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receiver.InjectUDPPacket(p)
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receiver.InjectUDPPacket(p)
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fp.rx = true
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fp.WasReceived()
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default:
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default:
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panic(fmt.Sprintf("Unknown exitFunc return: %v", e))
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panic(fmt.Sprintf("Unknown exitFunc return: %v", e))
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@ -439,7 +470,7 @@ func (r *R) InjectUDPPacket(sender, receiver *nebula.Control, packet *udp.Packet
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fp := r.unlockedInjectFlow(sender, receiver, packet, false)
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fp := r.unlockedInjectFlow(sender, receiver, packet, false)
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receiver.InjectUDPPacket(packet)
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receiver.InjectUDPPacket(packet)
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fp.rx = true
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fp.WasReceived()
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}
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}
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// RouteForUntilAfterToAddr will route for sender and return only after it sees and sends a packet destined for toAddr
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// RouteForUntilAfterToAddr will route for sender and return only after it sees and sends a packet destined for toAddr
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@ -503,14 +534,14 @@ func (r *R) RouteForAllExitFunc(whatDo ExitFunc) {
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case RouteAndExit:
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case RouteAndExit:
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fp := r.unlockedInjectFlow(cm[x], receiver, p, false)
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fp := r.unlockedInjectFlow(cm[x], receiver, p, false)
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receiver.InjectUDPPacket(p)
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receiver.InjectUDPPacket(p)
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fp.rx = true
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fp.WasReceived()
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r.Unlock()
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r.Unlock()
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return
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return
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case KeepRouting:
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case KeepRouting:
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fp := r.unlockedInjectFlow(cm[x], receiver, p, false)
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fp := r.unlockedInjectFlow(cm[x], receiver, p, false)
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receiver.InjectUDPPacket(p)
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receiver.InjectUDPPacket(p)
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fp.rx = true
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fp.WasReceived()
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default:
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default:
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panic(fmt.Sprintf("Unknown exitFunc return: %v", e))
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panic(fmt.Sprintf("Unknown exitFunc return: %v", e))
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@ -14,7 +14,9 @@ import (
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func (f *Interface) consumeInsidePacket(packet []byte, fwPacket *firewall.Packet, nb, out []byte, q int, localCache firewall.ConntrackCache) {
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func (f *Interface) consumeInsidePacket(packet []byte, fwPacket *firewall.Packet, nb, out []byte, q int, localCache firewall.ConntrackCache) {
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err := newPacket(packet, false, fwPacket)
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err := newPacket(packet, false, fwPacket)
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if err != nil {
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if err != nil {
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if f.l.Level >= logrus.DebugLevel {
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f.l.WithField("packet", packet).Debugf("Error while validating outbound packet: %s", err)
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f.l.WithField("packet", packet).Debugf("Error while validating outbound packet: %s", err)
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}
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return
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return
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}
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}
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@ -7,6 +7,7 @@ import (
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"fmt"
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"fmt"
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"io"
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"io"
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"net"
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"net"
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"os"
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"github.com/sirupsen/logrus"
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"github.com/sirupsen/logrus"
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"github.com/slackhq/nebula/cidr"
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"github.com/slackhq/nebula/cidr"
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@ -49,7 +50,9 @@ func newTunFromFd(_ *logrus.Logger, _ int, _ *net.IPNet, _ int, _ []Route, _ int
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// These are unencrypted ip layer frames destined for another nebula node.
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// These are unencrypted ip layer frames destined for another nebula node.
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// packets should exit the udp side, capture them with udpConn.Get
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// packets should exit the udp side, capture them with udpConn.Get
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func (t *TestTun) Send(packet []byte) {
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func (t *TestTun) Send(packet []byte) {
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if t.l.Level >= logrus.InfoLevel {
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t.l.WithField("dataLen", len(packet)).Info("Tun receiving injected packet")
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t.l.WithField("dataLen", len(packet)).Info("Tun receiving injected packet")
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}
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t.rxPackets <- packet
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t.rxPackets <- packet
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}
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}
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@ -107,7 +110,10 @@ func (t *TestTun) Close() error {
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}
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}
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func (t *TestTun) Read(b []byte) (int, error) {
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func (t *TestTun) Read(b []byte) (int, error) {
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p := <-t.rxPackets
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p, ok := <-t.rxPackets
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if !ok {
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return 0, os.ErrClosed
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}
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copy(b, p)
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copy(b, p)
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return len(p), nil
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return len(p), nil
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}
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}
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@ -62,10 +62,12 @@ func (u *Conn) Send(packet *Packet) {
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if err := h.Parse(packet.Data); err != nil {
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if err := h.Parse(packet.Data); err != nil {
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panic(err)
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panic(err)
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}
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}
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if u.l.Level >= logrus.InfoLevel {
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u.l.WithField("header", h).
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u.l.WithField("header", h).
|
||||||
WithField("udpAddr", fmt.Sprintf("%v:%v", packet.FromIp, packet.FromPort)).
|
WithField("udpAddr", fmt.Sprintf("%v:%v", packet.FromIp, packet.FromPort)).
|
||||||
WithField("dataLen", len(packet.Data)).
|
WithField("dataLen", len(packet.Data)).
|
||||||
Info("UDP receiving injected packet")
|
Info("UDP receiving injected packet")
|
||||||
|
}
|
||||||
u.RxPackets <- packet
|
u.RxPackets <- packet
|
||||||
}
|
}
|
||||||
|
|
||||||
@ -114,7 +116,10 @@ func (u *Conn) ListenOut(r EncReader, lhf LightHouseHandlerFunc, cache *firewall
|
|||||||
nb := make([]byte, 12, 12)
|
nb := make([]byte, 12, 12)
|
||||||
|
|
||||||
for {
|
for {
|
||||||
p := <-u.RxPackets
|
p, ok := <-u.RxPackets
|
||||||
|
if !ok {
|
||||||
|
return
|
||||||
|
}
|
||||||
ua.Port = p.FromPort
|
ua.Port = p.FromPort
|
||||||
copy(ua.IP, p.FromIp.To16())
|
copy(ua.IP, p.FromIp.To16())
|
||||||
r(ua, nil, plaintext[:0], p.Data, h, fwPacket, lhf, nb, q, cache.Get(u.l))
|
r(ua, nil, plaintext[:0], p.Data, h, fwPacket, lhf, nb, q, cache.Get(u.l))
|
||||||
|
|||||||
Loading…
x
Reference in New Issue
Block a user