Add cross mesh granularity
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cb238c85a1
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@ -69,6 +69,7 @@ var (
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availableGranularities = strings.Join([]string{
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string(mesh.LogicalGranularity),
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string(mesh.FullGranularity),
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string(mesh.CrossGranularity),
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}, ", ")
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availableLogLevels = strings.Join([]string{
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logLevelAll,
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@ -223,6 +224,7 @@ func runRoot(_ *cobra.Command, _ []string) error {
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switch gr {
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case mesh.LogicalGranularity:
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case mesh.FullGranularity:
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case mesh.CrossGranularity:
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default:
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return fmt.Errorf("mesh granularity %v unknown; possible values are: %s", granularity, availableGranularities)
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}
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@ -47,6 +47,11 @@ kgctl graph | circo -Tsvg > cluster.svg
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<img src="./graphs/full-mesh.svg" />
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# Cross Mesh
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In this topology all nodes within the same location are not encrypted. Traffic to any other node outside of current location is encrypted
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with direct node-to-node encryption. To use this mesh specify `--mesh-granularity=cross`.
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## Mixed
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The `kilo.squat.ai/location` annotation can be used to create cluster mixing some fully meshed nodes and some nodes grouped by logical location.
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@ -50,6 +50,9 @@ const (
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// FullGranularity indicates that the network should create
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// a mesh between every node.
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FullGranularity Granularity = "full"
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// CrossGranularity indicates that network is encrypted only
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// between nodes in different locations.
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CrossGranularity Granularity = "cross"
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// AutoGranularity can be used with kgctl to obtain
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// the granularity automatically.
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AutoGranularity Granularity = "auto"
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@ -137,7 +137,7 @@ func (t *Topology) Routes(kiloIfaceName string, kiloIface, privIface, tunlIface
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}
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for _, segment := range t.segments {
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// Add routes for the current segment if local is true.
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if segment.location == t.location {
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if (segment.location == t.location) || (t.nodeLocation != "" && segment.nodeLocation == t.nodeLocation) {
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// If the local node does not have a private IP address,
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// then skip adding routes, because the node is in its own location.
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if local && t.privateIP != nil {
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@ -37,8 +37,10 @@ type Topology struct {
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// key is the private key of the node creating the topology.
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key wgtypes.Key
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port int
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// Location is the logical location of the local host.
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// location is the logical location of the local host.
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location string
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// nodeLocation is the location annotation of the node. This is set only in cross location topology.
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nodeLocation string
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segments []*segment
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peers []*Peer
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@ -71,8 +73,10 @@ type segment struct {
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endpoint *wireguard.Endpoint
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key wgtypes.Key
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persistentKeepalive time.Duration
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// Location is the logical location of this segment.
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// location is the logical location of this segment.
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location string
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// nodeLocation is the node location annotation. This is set only for cross location topology.
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nodeLocation string
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// cidrs is a slice of subnets of all peers in the segment.
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cidrs []*net.IPNet
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@ -91,14 +95,34 @@ type segment struct {
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allowedLocationIPs []net.IPNet
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}
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// topoKey is used to group nodes into locations.
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type topoKey struct {
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location string
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nodeLocation string
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}
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// NewTopology creates a new Topology struct from a given set of nodes and peers.
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func NewTopology(nodes map[string]*Node, peers map[string]*Peer, granularity Granularity, hostname string, port int, key wgtypes.Key, subnet *net.IPNet, persistentKeepalive time.Duration, logger log.Logger) (*Topology, error) {
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if logger == nil {
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logger = log.NewNopLogger()
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}
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topoMap := make(map[string][]*Node)
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topoMap := make(map[topoKey][]*Node)
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var localLocation, localNodeLocation string
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switch granularity {
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case LogicalGranularity:
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localLocation = logicalLocationPrefix + nodes[hostname].Location
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if nodes[hostname].InternalIP == nil {
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localLocation = nodeLocationPrefix + hostname
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}
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case FullGranularity:
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localLocation = nodeLocationPrefix + hostname
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case CrossGranularity:
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localLocation = nodeLocationPrefix + hostname
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localNodeLocation = logicalLocationPrefix + nodes[hostname].Location
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}
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for _, node := range nodes {
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var location string
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var location, nodeLocation string
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switch granularity {
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case LogicalGranularity:
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location = logicalLocationPrefix + node.Location
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@ -109,18 +133,12 @@ func NewTopology(nodes map[string]*Node, peers map[string]*Peer, granularity Gra
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}
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case FullGranularity:
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location = nodeLocationPrefix + node.Name
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case CrossGranularity:
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location = nodeLocationPrefix + node.Name
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nodeLocation = logicalLocationPrefix + node.Location
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}
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topoMap[location] = append(topoMap[location], node)
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}
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var localLocation string
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switch granularity {
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case LogicalGranularity:
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localLocation = logicalLocationPrefix + nodes[hostname].Location
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if nodes[hostname].InternalIP == nil {
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localLocation = nodeLocationPrefix + hostname
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}
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case FullGranularity:
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localLocation = nodeLocationPrefix + hostname
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key := topoKey{location: location, nodeLocation: nodeLocation}
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topoMap[key] = append(topoMap[key], node)
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}
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t := Topology{
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@ -128,6 +146,7 @@ func NewTopology(nodes map[string]*Node, peers map[string]*Peer, granularity Gra
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port: port,
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hostname: hostname,
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location: localLocation,
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nodeLocation: localNodeLocation,
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persistentKeepalive: persistentKeepalive,
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privateIP: nodes[hostname].InternalIP,
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subnet: nodes[hostname].Subnet,
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@ -141,7 +160,7 @@ func NewTopology(nodes map[string]*Node, peers map[string]*Peer, granularity Gra
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return topoMap[location][i].Name < topoMap[location][j].Name
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})
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leader := findLeader(topoMap[location])
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if location == localLocation && topoMap[location][leader].Name == hostname {
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if location.nodeLocation != "" || (location.location == localLocation && topoMap[location][leader].Name == hostname) {
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t.leader = true
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}
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var allowedIPs []net.IPNet
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@ -181,7 +200,8 @@ func NewTopology(nodes map[string]*Node, peers map[string]*Peer, granularity Gra
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endpoint: topoMap[location][leader].Endpoint,
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key: topoMap[location][leader].Key,
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persistentKeepalive: topoMap[location][leader].PersistentKeepalive,
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location: location,
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location: location.location,
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nodeLocation: location.nodeLocation,
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cidrs: cidrs,
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hostnames: hostnames,
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leader: leader,
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@ -225,7 +245,7 @@ func NewTopology(nodes map[string]*Node, peers map[string]*Peer, granularity Gra
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// Now that the topology is ordered, update the discoveredEndpoints map
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// add new ones by going through the ordered topology: segments, nodes
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for _, node := range topoMap[segment.location] {
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for _, node := range topoMap[topoKey{location: segment.location, nodeLocation: segment.nodeLocation}] {
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for key := range node.DiscoveredEndpoints {
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if _, ok := t.discoveredEndpoints[key]; !ok {
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t.discoveredEndpoints[key] = node.DiscoveredEndpoints[key]
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@ -308,7 +328,7 @@ func (t *Topology) Conf() *wireguard.Conf {
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},
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}
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for _, s := range t.segments {
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if s.location == t.location {
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if (s.location == t.location) || (t.nodeLocation != "" && t.nodeLocation == s.nodeLocation) {
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continue
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}
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peer := wireguard.Peer{
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@ -532,6 +532,274 @@ func TestNewTopology(t *testing.T) {
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logger: log.NewNopLogger(),
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},
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},
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{
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name: "cross from a",
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granularity: CrossGranularity,
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hostname: nodes["a"].Name,
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result: &Topology{
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hostname: nodes["a"].Name,
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leader: true,
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location: nodeLocationPrefix + nodes["a"].Name,
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nodeLocation: logicalLocationPrefix + nodes["a"].Location,
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subnet: nodes["a"].Subnet,
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privateIP: nodes["a"].InternalIP,
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wireGuardCIDR: &net.IPNet{IP: w1, Mask: net.CIDRMask(16, 32)},
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segments: []*segment{
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{
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allowedIPs: []net.IPNet{*nodes["a"].Subnet, *nodes["a"].InternalIP, {IP: w1, Mask: net.CIDRMask(32, 32)}},
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endpoint: nodes["a"].Endpoint,
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key: nodes["a"].Key,
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persistentKeepalive: nodes["a"].PersistentKeepalive,
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location: nodeLocationPrefix + nodes["a"].Name,
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nodeLocation: logicalLocationPrefix + nodes["a"].Location,
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cidrs: []*net.IPNet{nodes["a"].Subnet},
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hostnames: []string{"a"},
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privateIPs: []net.IP{nodes["a"].InternalIP.IP},
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wireGuardIP: w1,
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},
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{
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allowedIPs: []net.IPNet{*nodes["b"].Subnet, *nodes["b"].InternalIP, {IP: w2, Mask: net.CIDRMask(32, 32)}},
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endpoint: nodes["b"].Endpoint,
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key: nodes["b"].Key,
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persistentKeepalive: nodes["b"].PersistentKeepalive,
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location: nodeLocationPrefix + nodes["b"].Name,
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nodeLocation: logicalLocationPrefix + nodes["b"].Location,
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cidrs: []*net.IPNet{nodes["b"].Subnet},
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hostnames: []string{"b"},
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privateIPs: []net.IP{nodes["b"].InternalIP.IP},
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wireGuardIP: w2,
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allowedLocationIPs: nodes["b"].AllowedLocationIPs,
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},
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{
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allowedIPs: []net.IPNet{*nodes["c"].Subnet, *nodes["c"].InternalIP, {IP: w3, Mask: net.CIDRMask(32, 32)}},
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endpoint: nodes["c"].Endpoint,
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key: nodes["c"].Key,
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persistentKeepalive: nodes["c"].PersistentKeepalive,
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location: nodeLocationPrefix + nodes["c"].Name,
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nodeLocation: logicalLocationPrefix + nodes["c"].Location,
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cidrs: []*net.IPNet{nodes["c"].Subnet},
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hostnames: []string{"c"},
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privateIPs: []net.IP{nodes["c"].InternalIP.IP},
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wireGuardIP: w3,
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},
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{
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allowedIPs: []net.IPNet{*nodes["d"].Subnet, {IP: w4, Mask: net.CIDRMask(32, 32)}},
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endpoint: nodes["d"].Endpoint,
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key: nodes["d"].Key,
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persistentKeepalive: nodes["d"].PersistentKeepalive,
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location: nodeLocationPrefix + nodes["d"].Name,
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nodeLocation: logicalLocationPrefix + nodes["d"].Location,
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cidrs: []*net.IPNet{nodes["d"].Subnet},
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hostnames: []string{"d"},
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privateIPs: nil,
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wireGuardIP: w4,
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},
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},
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peers: []*Peer{peers["a"], peers["b"]},
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logger: log.NewNopLogger(),
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},
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},
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{
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name: "cross from b",
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granularity: CrossGranularity,
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hostname: nodes["b"].Name,
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result: &Topology{
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hostname: nodes["b"].Name,
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leader: true,
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location: nodeLocationPrefix + nodes["b"].Name,
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nodeLocation: logicalLocationPrefix + nodes["b"].Location,
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subnet: nodes["b"].Subnet,
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privateIP: nodes["b"].InternalIP,
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wireGuardCIDR: &net.IPNet{IP: w2, Mask: net.CIDRMask(16, 32)},
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segments: []*segment{
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{
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allowedIPs: []net.IPNet{*nodes["a"].Subnet, *nodes["a"].InternalIP, {IP: w1, Mask: net.CIDRMask(32, 32)}},
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endpoint: nodes["a"].Endpoint,
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key: nodes["a"].Key,
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persistentKeepalive: nodes["a"].PersistentKeepalive,
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location: nodeLocationPrefix + nodes["a"].Name,
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nodeLocation: logicalLocationPrefix + nodes["a"].Location,
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cidrs: []*net.IPNet{nodes["a"].Subnet},
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hostnames: []string{"a"},
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privateIPs: []net.IP{nodes["a"].InternalIP.IP},
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wireGuardIP: w1,
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},
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{
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allowedIPs: []net.IPNet{*nodes["b"].Subnet, *nodes["b"].InternalIP, {IP: w2, Mask: net.CIDRMask(32, 32)}},
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endpoint: nodes["b"].Endpoint,
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key: nodes["b"].Key,
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persistentKeepalive: nodes["b"].PersistentKeepalive,
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location: nodeLocationPrefix + nodes["b"].Name,
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nodeLocation: logicalLocationPrefix + nodes["b"].Location,
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cidrs: []*net.IPNet{nodes["b"].Subnet},
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hostnames: []string{"b"},
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privateIPs: []net.IP{nodes["b"].InternalIP.IP},
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wireGuardIP: w2,
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allowedLocationIPs: nodes["b"].AllowedLocationIPs,
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},
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{
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allowedIPs: []net.IPNet{*nodes["c"].Subnet, *nodes["c"].InternalIP, {IP: w3, Mask: net.CIDRMask(32, 32)}},
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endpoint: nodes["c"].Endpoint,
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key: nodes["c"].Key,
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persistentKeepalive: nodes["c"].PersistentKeepalive,
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location: nodeLocationPrefix + nodes["c"].Name,
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nodeLocation: logicalLocationPrefix + nodes["c"].Location,
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cidrs: []*net.IPNet{nodes["c"].Subnet},
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hostnames: []string{"c"},
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privateIPs: []net.IP{nodes["c"].InternalIP.IP},
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wireGuardIP: w3,
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},
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{
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allowedIPs: []net.IPNet{*nodes["d"].Subnet, {IP: w4, Mask: net.CIDRMask(32, 32)}},
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endpoint: nodes["d"].Endpoint,
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key: nodes["d"].Key,
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persistentKeepalive: nodes["d"].PersistentKeepalive,
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location: nodeLocationPrefix + nodes["d"].Name,
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nodeLocation: logicalLocationPrefix + nodes["d"].Location,
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cidrs: []*net.IPNet{nodes["d"].Subnet},
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hostnames: []string{"d"},
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privateIPs: nil,
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wireGuardIP: w4,
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},
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},
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peers: []*Peer{peers["a"], peers["b"]},
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logger: log.NewNopLogger(),
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},
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},
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{
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name: "cross from c",
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granularity: CrossGranularity,
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hostname: nodes["c"].Name,
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result: &Topology{
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hostname: nodes["c"].Name,
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leader: true,
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location: nodeLocationPrefix + nodes["c"].Name,
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nodeLocation: logicalLocationPrefix + nodes["c"].Location,
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subnet: nodes["c"].Subnet,
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privateIP: nodes["c"].InternalIP,
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wireGuardCIDR: &net.IPNet{IP: w3, Mask: net.CIDRMask(16, 32)},
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segments: []*segment{
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{
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allowedIPs: []net.IPNet{*nodes["a"].Subnet, *nodes["a"].InternalIP, {IP: w1, Mask: net.CIDRMask(32, 32)}},
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endpoint: nodes["a"].Endpoint,
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key: nodes["a"].Key,
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persistentKeepalive: nodes["a"].PersistentKeepalive,
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location: nodeLocationPrefix + nodes["a"].Name,
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nodeLocation: logicalLocationPrefix + nodes["a"].Location,
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cidrs: []*net.IPNet{nodes["a"].Subnet},
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hostnames: []string{"a"},
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privateIPs: []net.IP{nodes["a"].InternalIP.IP},
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wireGuardIP: w1,
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},
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{
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allowedIPs: []net.IPNet{*nodes["b"].Subnet, *nodes["b"].InternalIP, {IP: w2, Mask: net.CIDRMask(32, 32)}},
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endpoint: nodes["b"].Endpoint,
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key: nodes["b"].Key,
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persistentKeepalive: nodes["b"].PersistentKeepalive,
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location: nodeLocationPrefix + nodes["b"].Name,
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nodeLocation: logicalLocationPrefix + nodes["b"].Location,
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cidrs: []*net.IPNet{nodes["b"].Subnet},
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hostnames: []string{"b"},
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privateIPs: []net.IP{nodes["b"].InternalIP.IP},
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wireGuardIP: w2,
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allowedLocationIPs: nodes["b"].AllowedLocationIPs,
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},
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{
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allowedIPs: []net.IPNet{*nodes["c"].Subnet, *nodes["c"].InternalIP, {IP: w3, Mask: net.CIDRMask(32, 32)}},
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endpoint: nodes["c"].Endpoint,
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key: nodes["c"].Key,
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persistentKeepalive: nodes["c"].PersistentKeepalive,
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location: nodeLocationPrefix + nodes["c"].Name,
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nodeLocation: logicalLocationPrefix + nodes["c"].Location,
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cidrs: []*net.IPNet{nodes["c"].Subnet},
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hostnames: []string{"c"},
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privateIPs: []net.IP{nodes["c"].InternalIP.IP},
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wireGuardIP: w3,
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},
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{
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allowedIPs: []net.IPNet{*nodes["d"].Subnet, {IP: w4, Mask: net.CIDRMask(32, 32)}},
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endpoint: nodes["d"].Endpoint,
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key: nodes["d"].Key,
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persistentKeepalive: nodes["d"].PersistentKeepalive,
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location: nodeLocationPrefix + nodes["d"].Name,
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nodeLocation: logicalLocationPrefix + nodes["d"].Location,
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cidrs: []*net.IPNet{nodes["d"].Subnet},
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hostnames: []string{"d"},
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privateIPs: nil,
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wireGuardIP: w4,
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},
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},
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peers: []*Peer{peers["a"], peers["b"]},
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logger: log.NewNopLogger(),
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},
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},
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{
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name: "cross from d",
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granularity: CrossGranularity,
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hostname: nodes["d"].Name,
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result: &Topology{
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hostname: nodes["d"].Name,
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leader: true,
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location: nodeLocationPrefix + nodes["d"].Name,
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nodeLocation: logicalLocationPrefix + nodes["d"].Location,
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subnet: nodes["d"].Subnet,
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privateIP: nil,
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wireGuardCIDR: &net.IPNet{IP: w4, Mask: net.CIDRMask(16, 32)},
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segments: []*segment{
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{
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allowedIPs: []net.IPNet{*nodes["a"].Subnet, *nodes["a"].InternalIP, {IP: w1, Mask: net.CIDRMask(32, 32)}},
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endpoint: nodes["a"].Endpoint,
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key: nodes["a"].Key,
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persistentKeepalive: nodes["a"].PersistentKeepalive,
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location: nodeLocationPrefix + nodes["a"].Name,
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nodeLocation: logicalLocationPrefix + nodes["a"].Location,
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cidrs: []*net.IPNet{nodes["a"].Subnet},
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hostnames: []string{"a"},
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privateIPs: []net.IP{nodes["a"].InternalIP.IP},
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wireGuardIP: w1,
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},
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{
|
||||
allowedIPs: []net.IPNet{*nodes["b"].Subnet, *nodes["b"].InternalIP, {IP: w2, Mask: net.CIDRMask(32, 32)}},
|
||||
endpoint: nodes["b"].Endpoint,
|
||||
key: nodes["b"].Key,
|
||||
persistentKeepalive: nodes["b"].PersistentKeepalive,
|
||||
location: nodeLocationPrefix + nodes["b"].Name,
|
||||
nodeLocation: logicalLocationPrefix + nodes["b"].Location,
|
||||
cidrs: []*net.IPNet{nodes["b"].Subnet},
|
||||
hostnames: []string{"b"},
|
||||
privateIPs: []net.IP{nodes["b"].InternalIP.IP},
|
||||
wireGuardIP: w2,
|
||||
allowedLocationIPs: nodes["b"].AllowedLocationIPs,
|
||||
},
|
||||
{
|
||||
allowedIPs: []net.IPNet{*nodes["c"].Subnet, *nodes["c"].InternalIP, {IP: w3, Mask: net.CIDRMask(32, 32)}},
|
||||
endpoint: nodes["c"].Endpoint,
|
||||
key: nodes["c"].Key,
|
||||
persistentKeepalive: nodes["c"].PersistentKeepalive,
|
||||
location: nodeLocationPrefix + nodes["c"].Name,
|
||||
nodeLocation: logicalLocationPrefix + nodes["c"].Location,
|
||||
cidrs: []*net.IPNet{nodes["c"].Subnet},
|
||||
hostnames: []string{"c"},
|
||||
privateIPs: []net.IP{nodes["c"].InternalIP.IP},
|
||||
wireGuardIP: w3,
|
||||
},
|
||||
{
|
||||
allowedIPs: []net.IPNet{*nodes["d"].Subnet, {IP: w4, Mask: net.CIDRMask(32, 32)}},
|
||||
endpoint: nodes["d"].Endpoint,
|
||||
key: nodes["d"].Key,
|
||||
persistentKeepalive: nodes["d"].PersistentKeepalive,
|
||||
location: nodeLocationPrefix + nodes["d"].Name,
|
||||
nodeLocation: logicalLocationPrefix + nodes["d"].Location,
|
||||
cidrs: []*net.IPNet{nodes["d"].Subnet},
|
||||
hostnames: []string{"d"},
|
||||
privateIPs: nil,
|
||||
wireGuardIP: w4,
|
||||
},
|
||||
},
|
||||
peers: []*Peer{peers["a"], peers["b"]},
|
||||
logger: log.NewNopLogger(),
|
||||
},
|
||||
},
|
||||
} {
|
||||
tc.result.key = key
|
||||
tc.result.port = port
|
||||
|
Loading…
Reference in New Issue
Block a user