mirror of
https://git.zx2c4.com/wireguard-go
synced 2024-11-15 01:05:15 +01:00
Completed get/set configuration
For debugging of "outbound flow" Mostly, a few things still missing
This commit is contained in:
parent
1f0976a26c
commit
7e185db141
132
src/config.go
132
src/config.go
@ -5,24 +5,22 @@ import (
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"errors"
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"fmt"
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"io"
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"log"
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"net"
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"strconv"
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"strings"
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"time"
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)
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/* TODO : use real error code
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* Many of which will be the same
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// #include <errno.h>
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import "C"
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/* TODO: More fine grained?
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*/
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const (
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ipcErrorNoPeer = 0
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ipcErrorNoKeyValue = 1
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ipcErrorInvalidKey = 2
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ipcErrorInvalidValue = 2
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ipcErrorInvalidPrivateKey = 3
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ipcErrorInvalidPublicKey = 4
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ipcErrorInvalidPort = 5
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ipcErrorInvalidIPAddress = 6
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ipcErrorNoPeer = C.EPROTO
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ipcErrorNoKeyValue = C.EPROTO
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ipcErrorInvalidKey = C.EPROTO
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ipcErrorInvalidValue = C.EPROTO
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)
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type IPCError struct {
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@ -78,7 +76,7 @@ func ipcGetOperation(device *Device, socket *bufio.ReadWriter) error {
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// send lines
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for _, line := range lines {
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device.log.Debug.Println("config:", line)
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device.log.Debug.Println("Response:", line)
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_, err := socket.WriteString(line + "\n")
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if err != nil {
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return err
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@ -89,29 +87,26 @@ func ipcGetOperation(device *Device, socket *bufio.ReadWriter) error {
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}
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func ipcSetOperation(device *Device, socket *bufio.ReadWriter) *IPCError {
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logger := device.log.Debug
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scanner := bufio.NewScanner(socket)
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device.mutex.Lock()
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defer device.mutex.Unlock()
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var peer *Peer
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for scanner.Scan() {
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var key string
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var value string
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var peer *Peer
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// Parse line
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line := scanner.Text()
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if line == "\n" {
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break
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if line == "" {
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return nil
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}
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fmt.Println(line)
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n, err := fmt.Sscanf(line, "%s=%s\n", &key, &value)
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if n != 2 || err != nil {
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fmt.Println(err, n)
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parts := strings.Split(line, "=")
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if len(parts) != 2 {
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device.log.Debug.Println(parts)
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return &IPCError{Code: ipcErrorNoKeyValue}
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}
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key := parts[0]
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value := parts[1]
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logger.Println("Key-value pair: (", key, ",", value, ")") // TODO: Remove, leaks private key to log
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switch key {
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@ -119,41 +114,60 @@ func ipcSetOperation(device *Device, socket *bufio.ReadWriter) *IPCError {
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case "private_key":
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if value == "" {
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device.mutex.Lock()
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device.privateKey = NoisePrivateKey{}
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device.mutex.Unlock()
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} else {
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device.mutex.Lock()
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err := device.privateKey.FromHex(value)
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device.mutex.Unlock()
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if err != nil {
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return &IPCError{Code: ipcErrorInvalidPrivateKey}
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logger.Println("Failed to set private_key:", err)
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return &IPCError{Code: ipcErrorInvalidValue}
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}
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}
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case "listen_port":
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_, err := fmt.Sscanf(value, "%ud", &device.address.Port)
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if err != nil {
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return &IPCError{Code: ipcErrorInvalidPort}
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var port int
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_, err := fmt.Sscanf(value, "%d", &port)
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if err != nil || port > (1<<16) || port < 0 {
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logger.Println("Failed to set listen_port:", err)
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return &IPCError{Code: ipcErrorInvalidValue}
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}
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device.mutex.Lock()
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if device.address == nil {
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device.address = &net.UDPAddr{}
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}
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device.address.Port = port
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device.mutex.Unlock()
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case "fwmark":
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panic(nil) // not handled yet
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logger.Println("FWMark not handled yet")
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case "public_key":
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var pubKey NoisePublicKey
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err := pubKey.FromHex(value)
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if err != nil {
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return &IPCError{Code: ipcErrorInvalidPublicKey}
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logger.Println("Failed to get peer by public_key:", err)
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return &IPCError{Code: ipcErrorInvalidValue}
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}
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device.mutex.RLock()
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found, ok := device.peers[pubKey]
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device.mutex.RUnlock()
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if ok {
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peer = found
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} else {
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peer = device.NewPeer(pubKey)
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}
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if peer == nil {
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panic(errors.New("bug: failed to find peer"))
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}
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case "replace_peers":
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if key == "true" {
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if value == "true" {
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device.RemoveAllPeers()
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} else if key == "false" {
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} else {
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logger.Println("Failed to set replace_peers, invalid value:", value)
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return &IPCError{Code: ipcErrorInvalidValue}
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}
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@ -161,6 +175,7 @@ func ipcSetOperation(device *Device, socket *bufio.ReadWriter) *IPCError {
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/* Peer configuration */
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if peer == nil {
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logger.Println("No peer referenced, before peer operation")
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return &IPCError{Code: ipcErrorNoPeer}
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}
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@ -168,7 +183,9 @@ func ipcSetOperation(device *Device, socket *bufio.ReadWriter) *IPCError {
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case "remove":
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peer.mutex.Lock()
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// device.RemovePeer(peer.publicKey)
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device.RemovePeer(peer.handshake.remoteStatic)
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peer.mutex.Unlock()
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logger.Println("Remove peer")
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peer = nil
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case "preshared_key":
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@ -178,13 +195,15 @@ func ipcSetOperation(device *Device, socket *bufio.ReadWriter) *IPCError {
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return peer.handshake.presharedKey.FromHex(value)
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}()
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if err != nil {
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return &IPCError{Code: ipcErrorInvalidPublicKey}
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logger.Println("Failed to set preshared_key:", err)
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return &IPCError{Code: ipcErrorInvalidValue}
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}
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case "endpoint":
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ip := net.ParseIP(value)
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if ip == nil {
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return &IPCError{Code: ipcErrorInvalidIPAddress}
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logger.Println("Failed to set endpoint:", value)
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return &IPCError{Code: ipcErrorInvalidValue}
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}
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peer.mutex.Lock()
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// peer.endpoint = ip FIX
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@ -193,6 +212,7 @@ func ipcSetOperation(device *Device, socket *bufio.ReadWriter) *IPCError {
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case "persistent_keepalive_interval":
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secs, err := strconv.ParseInt(value, 10, 64)
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if secs < 0 || err != nil {
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logger.Println("Failed to set persistent_keepalive_interval:", err)
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return &IPCError{Code: ipcErrorInvalidValue}
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}
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peer.mutex.Lock()
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@ -200,24 +220,27 @@ func ipcSetOperation(device *Device, socket *bufio.ReadWriter) *IPCError {
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peer.mutex.Unlock()
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case "replace_allowed_ips":
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if key == "true" {
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if value == "true" {
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device.routingTable.RemovePeer(peer)
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} else if key == "false" {
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} else {
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logger.Println("Failed to set replace_allowed_ips, invalid value:", value)
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return &IPCError{Code: ipcErrorInvalidValue}
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}
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case "allowed_ip":
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_, network, err := net.ParseCIDR(value)
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if err != nil {
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logger.Println("Failed to set allowed_ip:", err)
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return &IPCError{Code: ipcErrorInvalidValue}
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}
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ones, _ := network.Mask.Size()
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logger.Println(network, ones, network.IP)
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device.routingTable.Insert(network.IP, uint(ones), peer)
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/* Invalid key */
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default:
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logger.Println("Invalid key:", key)
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return &IPCError{Code: ipcErrorInvalidKey}
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}
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}
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@ -226,49 +249,48 @@ func ipcSetOperation(device *Device, socket *bufio.ReadWriter) *IPCError {
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return nil
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}
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func ipcListen(device *Device, socket io.ReadWriter) error {
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func ipcHandle(device *Device, socket net.Conn) {
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buffered := func(s io.ReadWriter) *bufio.ReadWriter {
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reader := bufio.NewReader(s)
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writer := bufio.NewWriter(s)
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return bufio.NewReadWriter(reader, writer)
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}(socket)
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func() {
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buffered := func(s io.ReadWriter) *bufio.ReadWriter {
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reader := bufio.NewReader(s)
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writer := bufio.NewWriter(s)
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return bufio.NewReadWriter(reader, writer)
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}(socket)
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defer buffered.Flush()
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defer buffered.Flush()
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for {
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op, err := buffered.ReadString('\n')
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if err != nil {
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return err
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return
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}
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log.Println(op)
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switch op {
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case "set=1\n":
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device.log.Debug.Println("Config, set operation")
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err := ipcSetOperation(device, buffered)
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if err != nil {
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fmt.Fprintf(buffered, "errno=%d\n\n", err.ErrorCode())
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return err
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} else {
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fmt.Fprintf(buffered, "errno=0\n\n")
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}
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buffered.Flush()
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break
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case "get=1\n":
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device.log.Debug.Println("Config, get operation")
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err := ipcGetOperation(device, buffered)
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if err != nil {
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fmt.Fprintf(buffered, "errno=1\n\n") // fix
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return err
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} else {
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fmt.Fprintf(buffered, "errno=0\n\n")
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}
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buffered.Flush()
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break
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case "\n":
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default:
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return errors.New("handle this please")
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device.log.Info.Println("Invalid UAPI operation:", op)
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}
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}
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}()
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socket.Close()
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}
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@ -81,10 +81,7 @@ func (device *Device) RemovePeer(key NoisePublicKey) {
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peer.mutex.Lock()
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device.routingTable.RemovePeer(peer)
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delete(device.peers, key)
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}
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func (device *Device) RemoveAllAllowedIps(peer *Peer) {
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peer.Close()
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}
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func (device *Device) RemoveAllPeers() {
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@ -93,8 +90,7 @@ func (device *Device) RemoveAllPeers() {
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for key, peer := range device.peers {
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peer.mutex.Lock()
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device.routingTable.RemovePeer(peer)
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delete(device.peers, key)
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peer.mutex.Unlock()
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peer.Close()
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}
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}
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25
src/main.go
25
src/main.go
@ -1,21 +1,28 @@
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package main
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import (
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"fmt"
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"log"
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"net"
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"os"
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)
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/*
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*
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* TODO: Fix logging
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/* TODO: Fix logging
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* TODO: Fix daemon
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*/
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func main() {
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if len(os.Args) != 2 {
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return
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}
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deviceName := os.Args[1]
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// Open TUN device
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// TODO: Fix capabilities
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tun, err := CreateTUN("test0")
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tun, err := CreateTUN(deviceName)
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log.Println(tun, err)
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if err != nil {
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return
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@ -25,19 +32,17 @@ func main() {
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// Start configuration lister
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l, err := net.Listen("unix", "/var/run/wireguard/wg0.sock")
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socketPath := fmt.Sprintf("/var/run/wireguard/%s.sock", deviceName)
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l, err := net.Listen("unix", socketPath)
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if err != nil {
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log.Fatal("listen error:", err)
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}
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for {
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fd, err := l.Accept()
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conn, err := l.Accept()
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if err != nil {
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log.Fatal("accept error:", err)
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}
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go func(conn net.Conn) {
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err := ipcListen(device, conn)
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log.Println(err)
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}(fd)
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go ipcHandle(device, conn)
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}
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}
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@ -16,9 +16,9 @@ func (table *RoutingTable) AllowedIPs(peer *Peer) []net.IPNet {
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table.mutex.RLock()
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defer table.mutex.RUnlock()
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allowed := make([]net.IPNet, 10)
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table.IPv4.AllowedIPs(peer, allowed)
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table.IPv6.AllowedIPs(peer, allowed)
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allowed := make([]net.IPNet, 0, 10)
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allowed = table.IPv4.AllowedIPs(peer, allowed)
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allowed = table.IPv6.AllowedIPs(peer, allowed)
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return allowed
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}
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@ -61,9 +61,11 @@ func (peer *Peer) InsertOutbound(elem *QueueOutboundElement) {
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* Obs. Single instance per TUN device
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*/
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func (device *Device) RoutineReadFromTUN(tun TUNDevice) {
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device.log.Debug.Println("Routine, TUN Reader: started")
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for {
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// read packet
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device.log.Debug.Println("Read")
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packet := make([]byte, 1<<16) // TODO: Fix & avoid dynamic allocation
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size, err := tun.Read(packet)
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if err != nil {
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@ -76,8 +78,6 @@ func (device *Device) RoutineReadFromTUN(tun TUNDevice) {
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continue
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}
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device.log.Debug.Println("New packet on TUN:", packet) // TODO: Slow debugging, remove.
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// lookup peer
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var peer *Peer
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@ -85,10 +85,12 @@ func (device *Device) RoutineReadFromTUN(tun TUNDevice) {
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case IPv4version:
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dst := packet[IPv4offsetDst : IPv4offsetDst+net.IPv4len]
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peer = device.routingTable.LookupIPv4(dst)
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device.log.Debug.Println("New IPv4 packet:", packet, dst)
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case IPv6version:
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dst := packet[IPv6offsetDst : IPv6offsetDst+net.IPv6len]
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peer = device.routingTable.LookupIPv6(dst)
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device.log.Debug.Println("New IPv6 packet:", packet, dst)
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default:
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device.log.Debug.Println("Receieved packet with unknown IP version")
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@ -97,7 +99,7 @@ func (device *Device) RoutineReadFromTUN(tun TUNDevice) {
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if peer == nil {
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device.log.Debug.Println("No peer configured for IP")
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return
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continue
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}
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// insert into nonce/pre-handshake queue
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|
10
src/trie.go
10
src/trie.go
@ -195,7 +195,10 @@ func (node *Trie) Count() uint {
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return l + r
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}
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func (node *Trie) AllowedIPs(p *Peer, results []net.IPNet) {
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func (node *Trie) AllowedIPs(p *Peer, results []net.IPNet) []net.IPNet {
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if node == nil {
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return results
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}
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if node.peer == p {
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var mask net.IPNet
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mask.Mask = net.CIDRMask(int(node.cidr), len(node.bits)*8)
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@ -213,6 +216,7 @@ func (node *Trie) AllowedIPs(p *Peer, results []net.IPNet) {
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}
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results = append(results, mask)
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}
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node.child[0].AllowedIPs(p, results)
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node.child[1].AllowedIPs(p, results)
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results = node.child[0].AllowedIPs(p, results)
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results = node.child[1].AllowedIPs(p, results)
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return results
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}
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