netmaker/logic/peers.go

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package logic
import (
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"fmt"
"log"
"net"
"strconv"
"strings"
"time"
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"github.com/gravitl/netmaker/database"
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"github.com/gravitl/netmaker/logger"
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"github.com/gravitl/netmaker/logic/acls"
"github.com/gravitl/netmaker/logic/acls/nodeacls"
"github.com/gravitl/netmaker/models"
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"github.com/seancfoley/ipaddress-go/ipaddr"
"golang.zx2c4.com/wireguard/wgctrl/wgtypes"
)
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// GetHubPeer - in HubAndSpoke networks, if not the hub, return the hub
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/*
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func GetHubPeer(networkName string) []models.Node {
var hubpeer = make([]models.Node, 0)
servernodes, err := GetNetworkNodes(networkName)
if err != nil {
return hubpeer
}
for i := range servernodes {
if servernodes[i].IsHub == "yes" {
return []models.Node{servernodes[i]}
}
}
return hubpeer
}
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*/
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// GetNodePeers - fetches peers for a given node
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func GetNodePeers(network *models.Network, nodeid string, excludeRelayed bool, isP2S bool) ([]models.Node, error) {
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var peers []models.Node
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var networkNodes, egressNetworkNodes, err = getNetworkEgressAndNodes(network.NetID)
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if err != nil {
return peers, nil
}
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udppeers, errN := database.GetPeers(network.NetID)
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if errN != nil {
logger.Log(2, errN.Error())
}
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currentNetworkACLs, aclErr := nodeacls.FetchAllACLs(nodeacls.NetworkID(network.NetID))
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if aclErr != nil {
return peers, aclErr
}
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for _, node := range networkNodes {
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if !currentNetworkACLs.IsAllowed(acls.AclID(nodeid), acls.AclID(node.ID)) {
continue
}
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var peer = models.Node{}
if node.IsEgressGateway == "yes" { // handle egress stuff
peer.EgressGatewayRanges = node.EgressGatewayRanges
peer.IsEgressGateway = node.IsEgressGateway
}
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peer.IsIngressGateway = node.IsIngressGateway
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allow := node.IsRelayed != "yes" || !excludeRelayed
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if node.Network == network.NetID && node.IsPending != "yes" && allow {
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peer = setPeerInfo(&node)
if node.UDPHolePunch == "yes" && errN == nil && CheckEndpoint(udppeers[node.PublicKey]) {
endpointstring := udppeers[node.PublicKey]
endpointarr := strings.Split(endpointstring, ":")
if len(endpointarr) == 2 {
port, err := strconv.Atoi(endpointarr[1])
if err == nil {
// peer.Endpoint = endpointarr[0]
peer.ListenPort = int32(port)
}
}
}
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// if udp hole punching is on, but port is still set to default (e.g. 51821), use the LocalListenPort
if node.UDPHolePunch == "yes" && node.IsStatic != "yes" && peer.ListenPort == node.ListenPort {
peer.ListenPort = node.LocalListenPort
}
if node.IsRelay == "yes" { // TODO, check if addressrange6 needs to be appended
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peer.AllowedIPs = append(peer.AllowedIPs, network.AddressRange)
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for _, egressNode := range egressNetworkNodes {
if egressNode.IsRelayed == "yes" && StringSliceContains(node.RelayAddrs, egressNode.Address) {
peer.AllowedIPs = append(peer.AllowedIPs, egressNode.EgressGatewayRanges...)
}
}
}
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if peer.IsIngressGateway == "yes" { // handle ingress stuff
if currentExtClients, err := GetExtPeersList(&node); err == nil {
for i := range currentExtClients {
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if network.IsIPv4 == "yes" && currentExtClients[i].Address != "" {
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peer.AllowedIPs = append(peer.AllowedIPs, currentExtClients[i].Address)
}
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if network.IsIPv6 == "yes" && currentExtClients[i].Address6 != "" {
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peer.AllowedIPs = append(peer.AllowedIPs, currentExtClients[i].Address6)
}
}
}
}
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if (!isP2S || peer.IsHub == "yes") && currentNetworkACLs.IsAllowed(acls.AclID(nodeid), acls.AclID(node.ID)) {
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peers = append(peers, peer)
}
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}
}
return peers, err
}
// GetPeersList - gets the peers of a given network
func GetPeersList(refnode *models.Node) ([]models.Node, error) {
var peers []models.Node
var err error
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var isP2S bool
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var networkName = refnode.Network
var excludeRelayed = refnode.IsRelay != "yes"
var relayedNodeAddr string
if refnode.IsRelayed == "yes" {
relayedNodeAddr = refnode.Address
}
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network, err := GetNetwork(networkName)
if err != nil {
return peers, err
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} else if network.IsPointToSite == "yes" && refnode.IsHub != "yes" {
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isP2S = true
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}
if relayedNodeAddr == "" {
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peers, err = GetNodePeers(&network, refnode.ID, excludeRelayed, isP2S)
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} else {
var relayNode models.Node
relayNode, err = GetNodeRelay(networkName, relayedNodeAddr)
if relayNode.Address != "" {
var peerNode = setPeerInfo(&relayNode)
network, err := GetNetwork(networkName)
if err == nil { // TODO: check if addressrange6 needs to be appended
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peerNode.AllowedIPs = append(peerNode.AllowedIPs, network.AddressRange)
var _, egressNetworkNodes, err = getNetworkEgressAndNodes(networkName)
if err == nil {
for _, egress := range egressNetworkNodes {
if egress.Address != relayedNodeAddr {
peerNode.AllowedIPs = append(peerNode.AllowedIPs, egress.EgressGatewayRanges...)
}
}
}
} else {
peerNode.AllowedIPs = append(peerNode.AllowedIPs, peerNode.RelayAddrs...)
}
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nodepeers, err := GetNodePeers(&network, refnode.ID, false, isP2S)
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if err == nil && peerNode.UDPHolePunch == "yes" {
for _, nodepeer := range nodepeers {
if nodepeer.Address == peerNode.Address {
// peerNode.Endpoint = nodepeer.Endpoint
peerNode.ListenPort = nodepeer.ListenPort
}
}
}
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if !isP2S || peerNode.IsHub == "yes" {
peers = append(peers, peerNode)
}
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}
}
return peers, err
}
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// GetPeerUpdate - gets a wireguard peer config for each peer of a node
func GetPeerUpdate(node *models.Node) (models.PeerUpdate, error) {
var peerUpdate models.PeerUpdate
var peers []wgtypes.PeerConfig
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var serverNodeAddresses = []models.ServerAddr{}
currentPeers, err := GetPeers(node)
if err != nil {
return models.PeerUpdate{}, err
}
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// #1 Set Keepalive values: set_keepalive
// #2 Set local address: set_local - could be a LOT BETTER and fix some bugs with additional logic
// #3 Set allowedips: set_allowedips
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for _, peer := range currentPeers {
if peer.ID == node.ID {
//skip yourself
continue
}
pubkey, err := wgtypes.ParseKey(peer.PublicKey)
if err != nil {
return models.PeerUpdate{}, err
}
if node.Endpoint == peer.Endpoint {
//peer is on same network
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// set_local
if node.LocalAddress != peer.LocalAddress && peer.LocalAddress != "" {
peer.Endpoint = peer.LocalAddress
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if peer.LocalListenPort != 0 {
peer.ListenPort = peer.LocalListenPort
}
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} else {
continue
}
}
endpoint := peer.Endpoint + ":" + strconv.FormatInt(int64(peer.ListenPort), 10)
address, err := net.ResolveUDPAddr("udp", endpoint)
if err != nil {
return models.PeerUpdate{}, err
}
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// set_allowedips
allowedips := GetAllowedIPs(node, &peer)
var keepalive time.Duration
if node.PersistentKeepalive != 0 {
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// set_keepalive
keepalive, _ = time.ParseDuration(strconv.FormatInt(int64(node.PersistentKeepalive), 10) + "s")
}
var peerData = wgtypes.PeerConfig{
PublicKey: pubkey,
Endpoint: address,
ReplaceAllowedIPs: true,
AllowedIPs: allowedips,
PersistentKeepaliveInterval: &keepalive,
}
peers = append(peers, peerData)
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if peer.IsServer == "yes" {
serverNodeAddresses = append(serverNodeAddresses, models.ServerAddr{IsLeader: IsLeader(&peer), Address: peer.Address})
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}
}
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if node.IsIngressGateway == "yes" {
extPeers, err := getExtPeers(node)
if err == nil {
peers = append(peers, extPeers...)
} else {
log.Println("ERROR RETRIEVING EXTERNAL PEERS", err)
}
}
peerUpdate.Network = node.Network
peerUpdate.Peers = peers
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peerUpdate.ServerAddrs = serverNodeAddresses
peerUpdate.DNS = getPeerDNS(node.Network)
return peerUpdate, nil
}
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func getExtPeers(node *models.Node) ([]wgtypes.PeerConfig, error) {
var peers []wgtypes.PeerConfig
extPeers, err := GetExtPeersList(node)
if err != nil {
return peers, err
}
for _, extPeer := range extPeers {
pubkey, err := wgtypes.ParseKey(extPeer.PublicKey)
if err != nil {
logger.Log(1, "error parsing ext pub key:", err.Error())
continue
}
if node.PublicKey == extPeer.PublicKey {
continue
}
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var allowedips []net.IPNet
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var peer wgtypes.PeerConfig
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if extPeer.Address != "" {
var peeraddr = net.IPNet{
IP: net.ParseIP(extPeer.Address),
Mask: net.CIDRMask(32, 32),
}
if peeraddr.IP != nil && peeraddr.Mask != nil {
allowedips = append(allowedips, peeraddr)
}
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}
if extPeer.Address6 != "" {
var addr6 = net.IPNet{
IP: net.ParseIP(extPeer.Address6),
Mask: net.CIDRMask(128, 128),
}
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if addr6.IP != nil && addr6.Mask != nil {
allowedips = append(allowedips, addr6)
}
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}
peer = wgtypes.PeerConfig{
PublicKey: pubkey,
ReplaceAllowedIPs: true,
AllowedIPs: allowedips,
}
peers = append(peers, peer)
}
return peers, nil
}
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// GetAllowedIPs - calculates the wireguard allowedip field for a peer of a node based on the peer and node settings
func GetAllowedIPs(node, peer *models.Node) []net.IPNet {
var allowedips []net.IPNet
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if peer.Address != "" {
var peeraddr = net.IPNet{
IP: net.ParseIP(peer.Address),
Mask: net.CIDRMask(32, 32),
}
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allowedips = append(allowedips, peeraddr)
}
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if peer.Address6 != "" {
var addr6 = net.IPNet{
IP: net.ParseIP(peer.Address6),
Mask: net.CIDRMask(128, 128),
}
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allowedips = append(allowedips, addr6)
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}
// handle manually set peers
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for _, allowedIp := range peer.AllowedIPs {
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currentAddr := ipaddr.NewIPAddressString(allowedIp).GetAddress()
if currentAddr.IsIPv4() {
if _, ipnet, err := net.ParseCIDR(allowedIp); err == nil {
nodeEndpointArr := strings.Split(node.Endpoint, ":")
if !ipnet.Contains(net.IP(nodeEndpointArr[0])) && ipnet.IP.String() != peer.Address { // don't need to add an allowed ip that already exists..
allowedips = append(allowedips, *ipnet)
}
} else if appendip := net.ParseIP(allowedIp); appendip != nil && allowedIp != peer.Address {
ipnet := net.IPNet{
IP: net.ParseIP(allowedIp),
Mask: net.CIDRMask(32, 32),
}
allowedips = append(allowedips, ipnet)
}
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} else if currentAddr.IsIPv6() {
ipnet := net.IPNet{
IP: net.ParseIP(allowedIp),
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Mask: net.CIDRMask(128, 128),
}
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allowedips = append(allowedips, ipnet)
}
}
// handle egress gateway peers
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if peer.IsEgressGateway == "yes" {
//hasGateway = true
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ranges := peer.EgressGatewayRanges
for _, iprange := range ranges { // go through each cidr for egress gateway
_, ipnet, err := net.ParseCIDR(iprange) // confirming it's valid cidr
if err != nil {
logger.Log(1, "could not parse gateway IP range. Not adding ", iprange)
continue // if can't parse CIDR
}
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nodeEndpointArr := strings.Split(peer.Endpoint, ":") // getting the public ip of node
if ipnet.Contains(net.ParseIP(nodeEndpointArr[0])) { // ensuring egress gateway range does not contain endpoint of node
logger.Log(2, "egress IP range of ", iprange, " overlaps with ", node.Endpoint, ", omitting")
continue // skip adding egress range if overlaps with node's ip
}
// TODO: Could put in a lot of great logic to avoid conflicts / bad routes
if ipnet.Contains(net.ParseIP(node.LocalAddress)) { // ensuring egress gateway range does not contain public ip of node
logger.Log(2, "egress IP range of ", iprange, " overlaps with ", node.LocalAddress, ", omitting")
continue // skip adding egress range if overlaps with node's local ip
}
if err != nil {
logger.Log(1, "error encountered when setting egress range", err.Error())
} else {
allowedips = append(allowedips, *ipnet)
}
}
}
return allowedips
}
func getPeerDNS(network string) string {
var dns string
if nodes, err := GetNetworkNodes(network); err == nil {
for i := range nodes {
dns = dns + fmt.Sprintf("%s %s.%s\n", nodes[i].Address, nodes[i].Name, nodes[i].Network)
}
}
if customDNSEntries, err := GetCustomDNS(network); err == nil {
for _, entry := range customDNSEntries {
// TODO - filter entries based on ACLs / given peers vs nodes in network
dns = dns + fmt.Sprintf("%s %s.%s\n", entry.Address, entry.Name, entry.Network)
}
}
return dns
}