mirror of
https://github.com/netbirdio/netbird.git
synced 2024-12-12 09:50:47 +01:00
fd67892cb4
Refactor the flat code structure
365 lines
9.7 KiB
Go
365 lines
9.7 KiB
Go
package acl
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import (
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"context"
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"net"
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"testing"
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"github.com/golang/mock/gomock"
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"github.com/netbirdio/netbird/client/firewall"
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"github.com/netbirdio/netbird/client/firewall/manager"
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"github.com/netbirdio/netbird/client/iface"
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"github.com/netbirdio/netbird/client/internal/acl/mocks"
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mgmProto "github.com/netbirdio/netbird/management/proto"
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)
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func TestDefaultManager(t *testing.T) {
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networkMap := &mgmProto.NetworkMap{
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FirewallRules: []*mgmProto.FirewallRule{
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{
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PeerIP: "10.93.0.1",
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Direction: mgmProto.RuleDirection_OUT,
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Action: mgmProto.RuleAction_ACCEPT,
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Protocol: mgmProto.RuleProtocol_TCP,
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Port: "80",
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},
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{
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PeerIP: "10.93.0.2",
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Direction: mgmProto.RuleDirection_OUT,
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Action: mgmProto.RuleAction_DROP,
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Protocol: mgmProto.RuleProtocol_UDP,
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Port: "53",
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},
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},
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}
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ctrl := gomock.NewController(t)
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defer ctrl.Finish()
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ifaceMock := mocks.NewMockIFaceMapper(ctrl)
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ifaceMock.EXPECT().IsUserspaceBind().Return(true).AnyTimes()
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ifaceMock.EXPECT().SetFilter(gomock.Any())
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ip, network, err := net.ParseCIDR("172.0.0.1/32")
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if err != nil {
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t.Fatalf("failed to parse IP address: %v", err)
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}
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ifaceMock.EXPECT().Name().Return("lo").AnyTimes()
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ifaceMock.EXPECT().Address().Return(iface.WGAddress{
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IP: ip,
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Network: network,
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}).AnyTimes()
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// we receive one rule from the management so for testing purposes ignore it
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fw, err := firewall.NewFirewall(context.Background(), ifaceMock)
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if err != nil {
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t.Errorf("create firewall: %v", err)
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return
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}
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defer func(fw manager.Manager) {
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_ = fw.Reset()
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}(fw)
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acl := NewDefaultManager(fw)
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t.Run("apply firewall rules", func(t *testing.T) {
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acl.ApplyFiltering(networkMap)
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if len(acl.peerRulesPairs) != 2 {
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t.Errorf("firewall rules not applied: %v", acl.peerRulesPairs)
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return
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}
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})
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t.Run("add extra rules", func(t *testing.T) {
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existedPairs := map[string]struct{}{}
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for id := range acl.peerRulesPairs {
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existedPairs[id.GetRuleID()] = struct{}{}
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}
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// remove first rule
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networkMap.FirewallRules = networkMap.FirewallRules[1:]
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networkMap.FirewallRules = append(
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networkMap.FirewallRules,
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&mgmProto.FirewallRule{
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PeerIP: "10.93.0.3",
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Direction: mgmProto.RuleDirection_IN,
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Action: mgmProto.RuleAction_DROP,
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Protocol: mgmProto.RuleProtocol_ICMP,
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},
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)
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acl.ApplyFiltering(networkMap)
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// we should have one old and one new rule in the existed rules
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if len(acl.peerRulesPairs) != 2 {
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t.Errorf("firewall rules not applied")
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return
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}
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// check that old rule was removed
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previousCount := 0
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for id := range acl.peerRulesPairs {
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if _, ok := existedPairs[id.GetRuleID()]; ok {
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previousCount++
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}
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}
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if previousCount != 1 {
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t.Errorf("old rule was not removed")
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}
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})
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t.Run("handle default rules", func(t *testing.T) {
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networkMap.FirewallRules = networkMap.FirewallRules[:0]
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networkMap.FirewallRulesIsEmpty = true
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if acl.ApplyFiltering(networkMap); len(acl.peerRulesPairs) != 0 {
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t.Errorf("rules should be empty if FirewallRulesIsEmpty is set, got: %v", len(acl.peerRulesPairs))
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return
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}
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networkMap.FirewallRulesIsEmpty = false
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acl.ApplyFiltering(networkMap)
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if len(acl.peerRulesPairs) != 2 {
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t.Errorf("rules should contain 2 rules if FirewallRulesIsEmpty is not set, got: %v", len(acl.peerRulesPairs))
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return
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}
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})
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}
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func TestDefaultManagerSquashRules(t *testing.T) {
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networkMap := &mgmProto.NetworkMap{
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RemotePeers: []*mgmProto.RemotePeerConfig{
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{AllowedIps: []string{"10.93.0.1"}},
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{AllowedIps: []string{"10.93.0.2"}},
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{AllowedIps: []string{"10.93.0.3"}},
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{AllowedIps: []string{"10.93.0.4"}},
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},
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FirewallRules: []*mgmProto.FirewallRule{
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{
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PeerIP: "10.93.0.1",
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Direction: mgmProto.RuleDirection_IN,
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Action: mgmProto.RuleAction_ACCEPT,
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Protocol: mgmProto.RuleProtocol_ALL,
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},
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{
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PeerIP: "10.93.0.2",
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Direction: mgmProto.RuleDirection_IN,
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Action: mgmProto.RuleAction_ACCEPT,
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Protocol: mgmProto.RuleProtocol_ALL,
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},
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{
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PeerIP: "10.93.0.3",
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Direction: mgmProto.RuleDirection_IN,
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Action: mgmProto.RuleAction_ACCEPT,
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Protocol: mgmProto.RuleProtocol_ALL,
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},
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{
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PeerIP: "10.93.0.4",
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Direction: mgmProto.RuleDirection_IN,
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Action: mgmProto.RuleAction_ACCEPT,
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Protocol: mgmProto.RuleProtocol_ALL,
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},
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{
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PeerIP: "10.93.0.1",
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Direction: mgmProto.RuleDirection_OUT,
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Action: mgmProto.RuleAction_ACCEPT,
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Protocol: mgmProto.RuleProtocol_ALL,
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},
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{
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PeerIP: "10.93.0.2",
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Direction: mgmProto.RuleDirection_OUT,
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Action: mgmProto.RuleAction_ACCEPT,
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Protocol: mgmProto.RuleProtocol_ALL,
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},
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{
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PeerIP: "10.93.0.3",
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Direction: mgmProto.RuleDirection_OUT,
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Action: mgmProto.RuleAction_ACCEPT,
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Protocol: mgmProto.RuleProtocol_ALL,
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},
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{
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PeerIP: "10.93.0.4",
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Direction: mgmProto.RuleDirection_OUT,
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Action: mgmProto.RuleAction_ACCEPT,
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Protocol: mgmProto.RuleProtocol_ALL,
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},
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},
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}
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manager := &DefaultManager{}
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rules, _ := manager.squashAcceptRules(networkMap)
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if len(rules) != 2 {
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t.Errorf("rules should contain 2, got: %v", rules)
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return
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}
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r := rules[0]
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switch {
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case r.PeerIP != "0.0.0.0":
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t.Errorf("IP should be 0.0.0.0, got: %v", r.PeerIP)
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return
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case r.Direction != mgmProto.RuleDirection_IN:
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t.Errorf("direction should be IN, got: %v", r.Direction)
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return
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case r.Protocol != mgmProto.RuleProtocol_ALL:
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t.Errorf("protocol should be ALL, got: %v", r.Protocol)
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return
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case r.Action != mgmProto.RuleAction_ACCEPT:
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t.Errorf("action should be ACCEPT, got: %v", r.Action)
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return
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}
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r = rules[1]
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switch {
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case r.PeerIP != "0.0.0.0":
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t.Errorf("IP should be 0.0.0.0, got: %v", r.PeerIP)
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return
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case r.Direction != mgmProto.RuleDirection_OUT:
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t.Errorf("direction should be OUT, got: %v", r.Direction)
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return
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case r.Protocol != mgmProto.RuleProtocol_ALL:
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t.Errorf("protocol should be ALL, got: %v", r.Protocol)
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return
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case r.Action != mgmProto.RuleAction_ACCEPT:
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t.Errorf("action should be ACCEPT, got: %v", r.Action)
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return
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}
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}
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func TestDefaultManagerSquashRulesNoAffect(t *testing.T) {
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networkMap := &mgmProto.NetworkMap{
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RemotePeers: []*mgmProto.RemotePeerConfig{
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{AllowedIps: []string{"10.93.0.1"}},
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{AllowedIps: []string{"10.93.0.2"}},
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{AllowedIps: []string{"10.93.0.3"}},
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{AllowedIps: []string{"10.93.0.4"}},
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},
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FirewallRules: []*mgmProto.FirewallRule{
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{
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PeerIP: "10.93.0.1",
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Direction: mgmProto.RuleDirection_IN,
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Action: mgmProto.RuleAction_ACCEPT,
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Protocol: mgmProto.RuleProtocol_ALL,
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},
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{
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PeerIP: "10.93.0.2",
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Direction: mgmProto.RuleDirection_IN,
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Action: mgmProto.RuleAction_ACCEPT,
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Protocol: mgmProto.RuleProtocol_ALL,
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},
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{
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PeerIP: "10.93.0.3",
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Direction: mgmProto.RuleDirection_IN,
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Action: mgmProto.RuleAction_ACCEPT,
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Protocol: mgmProto.RuleProtocol_ALL,
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},
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{
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PeerIP: "10.93.0.4",
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Direction: mgmProto.RuleDirection_IN,
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Action: mgmProto.RuleAction_ACCEPT,
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Protocol: mgmProto.RuleProtocol_TCP,
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},
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{
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PeerIP: "10.93.0.1",
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Direction: mgmProto.RuleDirection_OUT,
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Action: mgmProto.RuleAction_ACCEPT,
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Protocol: mgmProto.RuleProtocol_ALL,
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},
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{
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PeerIP: "10.93.0.2",
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Direction: mgmProto.RuleDirection_OUT,
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Action: mgmProto.RuleAction_ACCEPT,
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Protocol: mgmProto.RuleProtocol_ALL,
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},
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{
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PeerIP: "10.93.0.3",
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Direction: mgmProto.RuleDirection_OUT,
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Action: mgmProto.RuleAction_ACCEPT,
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Protocol: mgmProto.RuleProtocol_ALL,
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},
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{
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PeerIP: "10.93.0.4",
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Direction: mgmProto.RuleDirection_OUT,
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Action: mgmProto.RuleAction_ACCEPT,
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Protocol: mgmProto.RuleProtocol_UDP,
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},
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},
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}
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manager := &DefaultManager{}
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if rules, _ := manager.squashAcceptRules(networkMap); len(rules) != len(networkMap.FirewallRules) {
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t.Errorf("we should get the same amount of rules as output, got %v", len(rules))
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}
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}
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func TestDefaultManagerEnableSSHRules(t *testing.T) {
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networkMap := &mgmProto.NetworkMap{
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PeerConfig: &mgmProto.PeerConfig{
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SshConfig: &mgmProto.SSHConfig{
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SshEnabled: true,
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},
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},
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RemotePeers: []*mgmProto.RemotePeerConfig{
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{AllowedIps: []string{"10.93.0.1"}},
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{AllowedIps: []string{"10.93.0.2"}},
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{AllowedIps: []string{"10.93.0.3"}},
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},
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FirewallRules: []*mgmProto.FirewallRule{
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{
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PeerIP: "10.93.0.1",
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Direction: mgmProto.RuleDirection_IN,
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Action: mgmProto.RuleAction_ACCEPT,
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Protocol: mgmProto.RuleProtocol_TCP,
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},
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{
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PeerIP: "10.93.0.2",
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Direction: mgmProto.RuleDirection_IN,
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Action: mgmProto.RuleAction_ACCEPT,
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Protocol: mgmProto.RuleProtocol_TCP,
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},
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{
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PeerIP: "10.93.0.3",
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Direction: mgmProto.RuleDirection_OUT,
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Action: mgmProto.RuleAction_ACCEPT,
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Protocol: mgmProto.RuleProtocol_UDP,
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},
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},
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}
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ctrl := gomock.NewController(t)
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defer ctrl.Finish()
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ifaceMock := mocks.NewMockIFaceMapper(ctrl)
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ifaceMock.EXPECT().IsUserspaceBind().Return(true).AnyTimes()
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ifaceMock.EXPECT().SetFilter(gomock.Any())
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ip, network, err := net.ParseCIDR("172.0.0.1/32")
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if err != nil {
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t.Fatalf("failed to parse IP address: %v", err)
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}
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ifaceMock.EXPECT().Name().Return("lo").AnyTimes()
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ifaceMock.EXPECT().Address().Return(iface.WGAddress{
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IP: ip,
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Network: network,
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}).AnyTimes()
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// we receive one rule from the management so for testing purposes ignore it
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fw, err := firewall.NewFirewall(context.Background(), ifaceMock)
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if err != nil {
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t.Errorf("create firewall: %v", err)
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return
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}
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defer func(fw manager.Manager) {
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_ = fw.Reset()
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}(fw)
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acl := NewDefaultManager(fw)
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acl.ApplyFiltering(networkMap)
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if len(acl.peerRulesPairs) != 4 {
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t.Errorf("expect 4 rules (last must be SSH), got: %d", len(acl.peerRulesPairs))
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return
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}
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}
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