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@ -7,8 +7,8 @@ import (
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"time"
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envChecks "git.ruekov.eu/ruakij/routingtabletowg/lib/environmentchecks"
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"git.ruekov.eu/ruakij/routingtabletowg/lib/wgchecks/netchecks"
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"git.ruekov.eu/ruakij/routingtabletowg/lib/wgchecks/netchecks"
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"github.com/vishvananda/netlink"
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"golang.zx2c4.com/wireguard/wgctrl"
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"golang.zx2c4.com/wireguard/wgctrl/wgtypes"
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@ -18,153 +18,152 @@ var envRequired = []string{
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"INTERFACE",
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}
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var envDefaults = map[string]string{
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"IPV6_FORMAT": "fc12::%02x%02x:%02x%02x/%d",
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"FILTER_PREFIX": "100.100",
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"RECHECK_INTERVAL": "5m",
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"IPV6_FORMAT": "fc12::%02x%02x:%02x%02x/%d",
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"FILTER_PREFIX": "100.100",
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"RECHECK_INTERVAL": "5m",
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}
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func main() {
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// Environment-vars
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err := envChecks.HandleRequired(envRequired)
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if(err != nil){
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if err != nil {
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logger.Error.Fatal(err)
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}
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envChecks.HandleDefaults(envDefaults)
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// Get the network interface object
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// Get the network interface object
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iface := os.Getenv("INTERFACE")
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netInterface, err := netlink.LinkByName(iface)
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if err != nil {
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logger.Error.Fatal(err)
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}
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ipv6Format := os.Getenv("IPV6_FORMAT")
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ipv6TestStr := *convertIPv4ToIPv6(&ipv6Format, &net.IPNet{IP: net.IPv4(1,1,1,1), Mask: net.CIDRMask(24, net.IPv4len)})
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_, err = netlink.ParseIPNet(ipv6TestStr)
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if err != nil {
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logger.Error.Fatalf("IPV6_FORMAT is invalid: %s", err)
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}
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filterPrefix := os.Getenv("FILTER_PREFIX")
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checkIntervalStr := os.Getenv("RECHECK_INTERVAL")
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checkInterval, err := time.ParseDuration(checkIntervalStr)
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netInterface, err := netlink.LinkByName(iface)
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if err != nil {
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logger.Error.Fatal(err)
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}
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ipv6Format := os.Getenv("IPV6_FORMAT")
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ipv6TestStr := *convertIPv4ToIPv6(&ipv6Format, &net.IPNet{IP: net.IPv4(1, 1, 1, 1), Mask: net.CIDRMask(24, net.IPv4len)})
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_, err = netlink.ParseIPNet(ipv6TestStr)
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if err != nil {
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logger.Error.Fatalf("IPV6_FORMAT is invalid: %s", err)
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}
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filterPrefix := os.Getenv("FILTER_PREFIX")
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checkIntervalStr := os.Getenv("RECHECK_INTERVAL")
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checkInterval, err := time.ParseDuration(checkIntervalStr)
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if err != nil {
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logger.Error.Fatalf("Couldn't parse RECHECK_INTERVAL '%s': %s", checkIntervalStr, err)
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}
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// Create a WireGuard client
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client, err := wgctrl.New()
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if err != nil {
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logger.Error.Fatal(err)
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}
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defer client.Close()
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// Loop indefinitely
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for {
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// Get the IPv4 addresses of the interface
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addrs, err := netlink.AddrList(netInterface, netlink.FAMILY_V4)
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if err != nil {
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logger.Error.Fatal(err)
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}
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processedCount := 0
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filteredCount := 0
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for _, addr := range addrs {
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// Check filter
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if addr.String()[:len(filterPrefix)] != filterPrefix {
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filteredCount++
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continue
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}
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// Add the IPv6 address to the interface
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ipv6Str := *convertIPv4ToIPv6(&ipv6Format, addr.IPNet)
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ipv6, err := netlink.ParseAddr(ipv6Str)
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if err != nil {
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logger.Warn.Printf("failed parsing converted %s -> %s : %s", addr.IPNet.String(), ipv6Str, err)
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continue
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}
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logger.Info.Printf("Adding converted %s -> %s to interface", addr.IPNet.String(), ipv6Str)
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err = netlink.AddrAdd(netInterface, ipv6)
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if err != nil {
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switch {
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case os.IsExist(err):
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logger.Warn.Println("Address is already set on interface")
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default:
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logger.Error.Fatalf("Failed to set address on interface: %v", err)
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}
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}
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processedCount++
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}
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if processedCount != len(addrs) {
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logger.Warn.Printf("Not all Interface-Addresses were processed. Summary: %d processed, %d filtered, %d failed", processedCount, filteredCount, len(addrs)-processedCount-filteredCount)
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}
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// Get the WireGuard peers on the interface
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wgDevice, err := client.Device(iface)
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if err != nil {
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logger.Error.Fatalf("getting WireGuard device from interface '%s' failed: %s", iface, err)
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}
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// Create a WireGuard client
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client, err := wgctrl.New()
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if err != nil {
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logger.Error.Fatal(err)
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}
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defer client.Close()
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// Loop indefinitely
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for {
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// Get the IPv4 addresses of the interface
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addrs, err := netlink.AddrList(netInterface, netlink.FAMILY_V4)
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if err != nil {
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logger.Error.Fatal(err)
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}
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processedCount := 0
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filteredCount := 0
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for _, addr := range addrs {
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// Check filter
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if addr.String()[:len(filterPrefix)] != filterPrefix {
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filteredCount++
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continue
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}
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// Add the IPv6 address to the interface
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ipv6Str := *convertIPv4ToIPv6(&ipv6Format, addr.IPNet)
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ipv6, err := netlink.ParseAddr(ipv6Str)
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if err != nil {
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logger.Warn.Printf("failed parsing converted %s -> %s : %s", addr.IPNet.String(), ipv6Str, err)
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continue
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}
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logger.Info.Printf("Adding converted %s -> %s to interface", addr.IPNet.String(), ipv6Str)
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err = netlink.AddrAdd(netInterface, ipv6)
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if err != nil {
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switch {
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case os.IsExist(err):
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logger.Warn.Println("Address is already set on interface")
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default:
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logger.Error.Fatalf("Failed to set address on interface: %v", err)
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}
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}
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processedCount++
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}
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if processedCount != len(addrs) {
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logger.Warn.Printf("Not all Interface-Addresses were processed. Summary: %d processed, %d filtered, %d failed", processedCount, filteredCount, len(addrs)-processedCount-filteredCount)
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}
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// Get the WireGuard peers on the interface
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wgDevice, err := client.Device(iface)
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if err != nil {
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logger.Error.Fatalf("getting WireGuard device from interface '%s' failed: %s", iface, err)
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}
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var wgConfig wgtypes.Config
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wgConfig.Peers = make([]wgtypes.PeerConfig, 0, len(wgDevice.Peers))
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for _, peer := range wgDevice.Peers {
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// Create slice for 1 expected addition
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var addAllowedIPs = make([]net.IPNet, 0, 1)
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// Loop through the allowed-ips and add the ones starting with 100.100
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for _, allowedIP := range peer.AllowedIPs {
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if allowedIP.String()[:len(filterPrefix)] == filterPrefix {
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// Convert the IPv4 allowed-ip to an IPv6 address
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ipv6Str := *convertIPv4ToIPv6(&ipv6Format, &allowedIP)
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logger.Info.Printf("AllowedIP %s -> %s to peer %s", allowedIP.String(), ipv6Str, peer.PublicKey)
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ipv6, err := netlink.ParseIPNet(ipv6Str)
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if err != nil {
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logger.Warn.Printf("Couldnt parse IPv6 address %s of peer %s: %s", ipv6Str, peer.PublicKey, err)
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continue
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}
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// Check if already set
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if i, _ := netchecks.IPNetIndexByIPNet(&peer.AllowedIPs, ipv6); i != -1 {
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continue
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}
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// Add the IPv6 allowed-ip to the peer
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addAllowedIPs = append(addAllowedIPs, *ipv6)
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}
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}
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if(len(addAllowedIPs) > 0){
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// Create peer-config
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peerConfig := wgtypes.PeerConfig{
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PublicKey: peer.PublicKey,
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AllowedIPs: append(peer.AllowedIPs, addAllowedIPs...),
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}
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// Add entry
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wgConfig.Peers = append(wgConfig.Peers, peerConfig)
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}
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}
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if(len(wgConfig.Peers) == 0){
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logger.Info.Println("No changes, skipping")
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} else {
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err = client.ConfigureDevice(iface, wgConfig)
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if(err != nil){
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logger.Error.Fatalf("Error configuring wg-device '%s': %s", iface, err)
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}
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}
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// Sleep for x seconds before running the loop again
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time.Sleep(checkInterval)
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}
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wgConfig.Peers = make([]wgtypes.PeerConfig, 0, len(wgDevice.Peers))
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for _, peer := range wgDevice.Peers {
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// Create slice for 1 expected addition
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var addAllowedIPs = make([]net.IPNet, 0, 1)
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// Loop through the allowed-ips and add the ones starting with 100.100
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for _, allowedIP := range peer.AllowedIPs {
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if allowedIP.String()[:len(filterPrefix)] == filterPrefix {
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// Convert the IPv4 allowed-ip to an IPv6 address
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ipv6Str := *convertIPv4ToIPv6(&ipv6Format, &allowedIP)
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logger.Info.Printf("AllowedIP %s -> %s to peer %s", allowedIP.String(), ipv6Str, peer.PublicKey)
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ipv6, err := netlink.ParseIPNet(ipv6Str)
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if err != nil {
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logger.Warn.Printf("Couldnt parse IPv6 address %s of peer %s: %s", ipv6Str, peer.PublicKey, err)
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continue
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}
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// Check if already set
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if i, _ := netchecks.IPNetIndexByIPNet(&peer.AllowedIPs, ipv6); i != -1 {
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continue
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}
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// Add the IPv6 allowed-ip to the peer
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addAllowedIPs = append(addAllowedIPs, *ipv6)
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}
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}
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if len(addAllowedIPs) > 0 {
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// Create peer-config
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peerConfig := wgtypes.PeerConfig{
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PublicKey: peer.PublicKey,
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AllowedIPs: append(peer.AllowedIPs, addAllowedIPs...),
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}
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// Add entry
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wgConfig.Peers = append(wgConfig.Peers, peerConfig)
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}
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}
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if len(wgConfig.Peers) == 0 {
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logger.Info.Println("No changes, skipping")
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} else {
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err = client.ConfigureDevice(iface, wgConfig)
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if err != nil {
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logger.Error.Fatalf("Error configuring wg-device '%s': %s", iface, err)
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}
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}
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// Sleep for x seconds before running the loop again
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time.Sleep(checkInterval)
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}
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}
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func convertIPv4ToIPv6(ipv6Format *string, ipv4 *net.IPNet) (*string) {
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CIDR, _ := ipv4.Mask.Size()
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// Run format
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ipv6Str := fmt.Sprintf(*ipv6Format, (*ipv4).IP[0], (*ipv4).IP[1], (*ipv4).IP[2], (*ipv4).IP[3], net.IPv6len*8-(net.IPv4len*8-CIDR))
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return &ipv6Str
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func convertIPv4ToIPv6(ipv6Format *string, ipv4 *net.IPNet) *string {
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CIDR, _ := ipv4.Mask.Size()
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// Run format
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ipv6Str := fmt.Sprintf(*ipv6Format, (*ipv4).IP[0], (*ipv4).IP[1], (*ipv4).IP[2], (*ipv4).IP[3], net.IPv6len*8-(net.IPv4len*8-CIDR))
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return &ipv6Str
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}
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