mirror of https://github.com/slackhq/nebula.git
221 lines
6.0 KiB
Go
221 lines
6.0 KiB
Go
//go:build e2e_testing
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// +build e2e_testing
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package e2e
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import (
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"fmt"
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"io"
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"net/netip"
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"os"
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"testing"
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"time"
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"dario.cat/mergo"
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"github.com/google/gopacket"
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"github.com/google/gopacket/layers"
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"github.com/sirupsen/logrus"
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"github.com/slackhq/nebula"
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"github.com/slackhq/nebula/cert"
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"github.com/slackhq/nebula/config"
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"github.com/slackhq/nebula/e2e/router"
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"github.com/stretchr/testify/assert"
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"gopkg.in/yaml.v2"
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)
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type m map[string]interface{}
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// newSimpleServer creates a nebula instance with many assumptions
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func newSimpleServer(caCrt *cert.NebulaCertificate, caKey []byte, name string, sVpnIpNet string, overrides m) (*nebula.Control, netip.Prefix, netip.AddrPort, *config.C) {
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l := NewTestLogger()
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vpnIpNet, err := netip.ParsePrefix(sVpnIpNet)
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if err != nil {
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panic(err)
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}
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var udpAddr netip.AddrPort
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if vpnIpNet.Addr().Is4() {
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budpIp := vpnIpNet.Addr().As4()
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budpIp[1] -= 128
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udpAddr = netip.AddrPortFrom(netip.AddrFrom4(budpIp), 4242)
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} else {
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budpIp := vpnIpNet.Addr().As16()
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budpIp[13] -= 128
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udpAddr = netip.AddrPortFrom(netip.AddrFrom16(budpIp), 4242)
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}
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_, _, myPrivKey, myPEM := NewTestCert(caCrt, caKey, name, time.Now(), time.Now().Add(5*time.Minute), vpnIpNet, nil, []string{})
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caB, err := caCrt.MarshalToPEM()
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if err != nil {
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panic(err)
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}
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mc := m{
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"pki": m{
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"ca": string(caB),
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"cert": string(myPEM),
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"key": string(myPrivKey),
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},
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//"tun": m{"disabled": true},
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"firewall": m{
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"outbound": []m{{
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"proto": "any",
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"port": "any",
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"host": "any",
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}},
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"inbound": []m{{
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"proto": "any",
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"port": "any",
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"host": "any",
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}},
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},
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//"handshakes": m{
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// "try_interval": "1s",
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//},
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"listen": m{
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"host": udpAddr.Addr().String(),
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"port": udpAddr.Port(),
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},
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"logging": m{
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"timestamp_format": fmt.Sprintf("%v 15:04:05.000000", name),
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"level": l.Level.String(),
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},
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"timers": m{
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"pending_deletion_interval": 2,
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"connection_alive_interval": 2,
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},
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}
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if overrides != nil {
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err = mergo.Merge(&overrides, mc, mergo.WithAppendSlice)
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if err != nil {
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panic(err)
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}
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mc = overrides
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}
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cb, err := yaml.Marshal(mc)
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if err != nil {
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panic(err)
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}
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c := config.NewC(l)
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c.LoadString(string(cb))
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control, err := nebula.Main(c, false, "e2e-test", l, nil)
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if err != nil {
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panic(err)
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}
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return control, vpnIpNet, udpAddr, c
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}
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type doneCb func()
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func deadline(t *testing.T, seconds time.Duration) doneCb {
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timeout := time.After(seconds * time.Second)
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done := make(chan bool)
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go func() {
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select {
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case <-timeout:
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t.Fatal("Test did not finish in time")
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case <-done:
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}
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}()
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return func() {
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done <- true
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}
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}
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func assertTunnel(t *testing.T, vpnIpA, vpnIpB netip.Addr, controlA, controlB *nebula.Control, r *router.R) {
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// Send a packet from them to me
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controlB.InjectTunUDPPacket(vpnIpA, 80, 90, []byte("Hi from B"))
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bPacket := r.RouteForAllUntilTxTun(controlA)
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assertUdpPacket(t, []byte("Hi from B"), bPacket, vpnIpB, vpnIpA, 90, 80)
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// And once more from me to them
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controlA.InjectTunUDPPacket(vpnIpB, 80, 90, []byte("Hello from A"))
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aPacket := r.RouteForAllUntilTxTun(controlB)
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assertUdpPacket(t, []byte("Hello from A"), aPacket, vpnIpA, vpnIpB, 90, 80)
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}
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func assertHostInfoPair(t *testing.T, addrA, addrB netip.AddrPort, vpnIpA, vpnIpB netip.Addr, controlA, controlB *nebula.Control) {
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// Get both host infos
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hBinA := controlA.GetHostInfoByVpnIp(vpnIpB, false)
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assert.NotNil(t, hBinA, "Host B was not found by vpnIp in controlA")
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hAinB := controlB.GetHostInfoByVpnIp(vpnIpA, false)
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assert.NotNil(t, hAinB, "Host A was not found by vpnIp in controlB")
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// Check that both vpn and real addr are correct
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assert.Equal(t, vpnIpB, hBinA.VpnIp, "Host B VpnIp is wrong in control A")
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assert.Equal(t, vpnIpA, hAinB.VpnIp, "Host A VpnIp is wrong in control B")
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assert.Equal(t, addrB, hBinA.CurrentRemote, "Host B remote is wrong in control A")
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assert.Equal(t, addrA, hAinB.CurrentRemote, "Host A remote is wrong in control B")
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// Check that our indexes match
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assert.Equal(t, hBinA.LocalIndex, hAinB.RemoteIndex, "Host B local index does not match host A remote index")
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assert.Equal(t, hBinA.RemoteIndex, hAinB.LocalIndex, "Host B remote index does not match host A local index")
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//TODO: Would be nice to assert this memory
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//checkIndexes := func(name string, hm *HostMap, hi *HostInfo) {
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// hBbyIndex := hmA.Indexes[hBinA.localIndexId]
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// assert.NotNil(t, hBbyIndex, "Could not host info by local index in %s", name)
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// assert.Equal(t, &hBbyIndex, &hBinA, "%s Indexes map did not point to the right host info", name)
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//
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// //TODO: remote indexes are susceptible to collision
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// hBbyRemoteIndex := hmA.RemoteIndexes[hBinA.remoteIndexId]
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// assert.NotNil(t, hBbyIndex, "Could not host info by remote index in %s", name)
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// assert.Equal(t, &hBbyRemoteIndex, &hBinA, "%s RemoteIndexes did not point to the right host info", name)
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//}
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//
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//// Check hostmap indexes too
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//checkIndexes("hmA", hmA, hBinA)
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//checkIndexes("hmB", hmB, hAinB)
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}
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func assertUdpPacket(t *testing.T, expected, b []byte, fromIp, toIp netip.Addr, fromPort, toPort uint16) {
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packet := gopacket.NewPacket(b, layers.LayerTypeIPv4, gopacket.Lazy)
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v4 := packet.Layer(layers.LayerTypeIPv4).(*layers.IPv4)
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assert.NotNil(t, v4, "No ipv4 data found")
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assert.Equal(t, fromIp.AsSlice(), []byte(v4.SrcIP), "Source ip was incorrect")
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assert.Equal(t, toIp.AsSlice(), []byte(v4.DstIP), "Dest ip was incorrect")
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udp := packet.Layer(layers.LayerTypeUDP).(*layers.UDP)
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assert.NotNil(t, udp, "No udp data found")
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assert.Equal(t, fromPort, uint16(udp.SrcPort), "Source port was incorrect")
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assert.Equal(t, toPort, uint16(udp.DstPort), "Dest port was incorrect")
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data := packet.ApplicationLayer()
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assert.NotNil(t, data)
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assert.Equal(t, expected, data.Payload(), "Data was incorrect")
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}
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func NewTestLogger() *logrus.Logger {
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l := logrus.New()
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v := os.Getenv("TEST_LOGS")
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if v == "" {
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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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}
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switch v {
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case "2":
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l.SetLevel(logrus.DebugLevel)
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case "3":
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l.SetLevel(logrus.TraceLevel)
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default:
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l.SetLevel(logrus.InfoLevel)
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}
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return l
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}
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