mirror of
https://github.com/cwinfo/yggdrasil-go.git
synced 2024-11-10 04:00:37 +00:00
Add new reject channel to router so we can send back rejected packets to adapter (e.g. for ICMPv6 Packet Too Big), implement ICMPv6 PTB in TUN/TAP instead of router
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0715e829c2
commit
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@ -11,6 +11,8 @@ import (
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"time"
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"github.com/gologme/log"
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"golang.org/x/net/icmp"
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"golang.org/x/net/ipv6"
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"github.com/songgao/packets/ethernet"
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"github.com/yggdrasil-network/water"
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@ -64,10 +66,10 @@ func (tun *TunAdapter) IsTAP() bool {
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}
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// Initialises the TUN/TAP adapter.
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func (tun *TunAdapter) Init(config *config.NodeState, log *log.Logger, send chan<- []byte, recv <-chan []byte) {
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func (tun *TunAdapter) Init(config *config.NodeState, log *log.Logger, send chan<- []byte, recv <-chan []byte, reject <-chan yggdrasil.RejectedPacket) {
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tun.config = config
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tun.log = log
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tun.Adapter.Init(config, log, send, recv)
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tun.Adapter.Init(config, log, send, recv, reject)
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tun.icmpv6.Init(tun)
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go func() {
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for {
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@ -146,81 +148,118 @@ func (tun *TunAdapter) Start(a address.Address, s address.Subnet) error {
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// host operating system.
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func (tun *TunAdapter) Write() error {
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for {
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data := <-tun.Recv
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if tun.iface == nil {
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continue
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}
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if tun.iface.IsTAP() {
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var destAddr address.Address
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if data[0]&0xf0 == 0x60 {
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if len(data) < 40 {
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//panic("Tried to send a packet shorter than an IPv6 header...")
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util.PutBytes(data)
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continue
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select {
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case reject := <-tun.Reject:
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switch reject.Reason {
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case yggdrasil.PacketTooBig:
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if mtu, ok := reject.Detail.(int); ok {
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// Create the Packet Too Big response
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ptb := &icmp.PacketTooBig{
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MTU: int(mtu),
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Data: reject.Packet,
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}
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// Create the ICMPv6 response from it
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icmpv6Buf, err := CreateICMPv6(
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reject.Packet[8:24], reject.Packet[24:40],
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ipv6.ICMPTypePacketTooBig, 0, ptb)
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// Send the ICMPv6 response back to the TUN/TAP adapter
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if err == nil {
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tun.iface.Write(icmpv6Buf)
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}
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}
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copy(destAddr[:16], data[24:])
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} else if data[0]&0xf0 == 0x40 {
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if len(data) < 20 {
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//panic("Tried to send a packet shorter than an IPv4 header...")
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util.PutBytes(data)
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continue
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}
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copy(destAddr[:4], data[16:])
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} else {
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return errors.New("Invalid address family")
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fallthrough
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default:
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continue
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}
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sendndp := func(destAddr address.Address) {
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neigh, known := tun.icmpv6.peermacs[destAddr]
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known = known && (time.Since(neigh.lastsolicitation).Seconds() < 30)
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if !known {
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request, err := tun.icmpv6.CreateNDPL2(destAddr)
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if err != nil {
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panic(err)
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case data := <-tun.Recv:
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if tun.iface == nil {
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continue
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}
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if tun.iface.IsTAP() {
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var destAddr address.Address
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if data[0]&0xf0 == 0x60 {
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if len(data) < 40 {
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//panic("Tried to send a packet shorter than an IPv6 header...")
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util.PutBytes(data)
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continue
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}
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if _, err := tun.iface.Write(request); err != nil {
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panic(err)
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copy(destAddr[:16], data[24:])
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} else if data[0]&0xf0 == 0x40 {
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if len(data) < 20 {
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//panic("Tried to send a packet shorter than an IPv4 header...")
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util.PutBytes(data)
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continue
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}
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tun.icmpv6.peermacs[destAddr] = neighbor{
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lastsolicitation: time.Now(),
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copy(destAddr[:4], data[16:])
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} else {
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return errors.New("Invalid address family")
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}
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sendndp := func(destAddr address.Address) {
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neigh, known := tun.icmpv6.peermacs[destAddr]
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known = known && (time.Since(neigh.lastsolicitation).Seconds() < 30)
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if !known {
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request, err := tun.icmpv6.CreateNDPL2(destAddr)
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if err != nil {
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panic(err)
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}
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if _, err := tun.iface.Write(request); err != nil {
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panic(err)
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}
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tun.icmpv6.peermacs[destAddr] = neighbor{
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lastsolicitation: time.Now(),
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}
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}
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}
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}
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var peermac macAddress
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var peerknown bool
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if data[0]&0xf0 == 0x40 {
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destAddr = tun.addr
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} else if data[0]&0xf0 == 0x60 {
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if !bytes.Equal(tun.addr[:16], destAddr[:16]) && !bytes.Equal(tun.subnet[:8], destAddr[:8]) {
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var peermac macAddress
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var peerknown bool
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if data[0]&0xf0 == 0x40 {
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destAddr = tun.addr
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} else if data[0]&0xf0 == 0x60 {
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if !bytes.Equal(tun.addr[:16], destAddr[:16]) && !bytes.Equal(tun.subnet[:8], destAddr[:8]) {
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destAddr = tun.addr
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}
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}
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if neighbor, ok := tun.icmpv6.peermacs[destAddr]; ok && neighbor.learned {
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peermac = neighbor.mac
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peerknown = true
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} else if neighbor, ok := tun.icmpv6.peermacs[tun.addr]; ok && neighbor.learned {
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peermac = neighbor.mac
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peerknown = true
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sendndp(destAddr)
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} else {
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sendndp(tun.addr)
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}
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if peerknown {
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var proto ethernet.Ethertype
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switch {
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case data[0]&0xf0 == 0x60:
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proto = ethernet.IPv6
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case data[0]&0xf0 == 0x40:
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proto = ethernet.IPv4
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}
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var frame ethernet.Frame
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frame.Prepare(
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peermac[:6], // Destination MAC address
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tun.icmpv6.mymac[:6], // Source MAC address
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ethernet.NotTagged, // VLAN tagging
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proto, // Ethertype
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len(data)) // Payload length
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copy(frame[tun_ETHER_HEADER_LENGTH:], data[:])
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if _, err := tun.iface.Write(frame); err != nil {
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tun.mutex.RLock()
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open := tun.isOpen
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tun.mutex.RUnlock()
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if !open {
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return nil
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} else {
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panic(err)
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}
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}
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}
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}
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if neighbor, ok := tun.icmpv6.peermacs[destAddr]; ok && neighbor.learned {
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peermac = neighbor.mac
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peerknown = true
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} else if neighbor, ok := tun.icmpv6.peermacs[tun.addr]; ok && neighbor.learned {
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peermac = neighbor.mac
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peerknown = true
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sendndp(destAddr)
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} else {
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sendndp(tun.addr)
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}
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if peerknown {
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var proto ethernet.Ethertype
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switch {
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case data[0]&0xf0 == 0x60:
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proto = ethernet.IPv6
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case data[0]&0xf0 == 0x40:
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proto = ethernet.IPv4
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}
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var frame ethernet.Frame
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frame.Prepare(
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peermac[:6], // Destination MAC address
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tun.icmpv6.mymac[:6], // Source MAC address
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ethernet.NotTagged, // VLAN tagging
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proto, // Ethertype
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len(data)) // Payload length
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copy(frame[tun_ETHER_HEADER_LENGTH:], data[:])
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if _, err := tun.iface.Write(frame); err != nil {
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if _, err := tun.iface.Write(data); err != nil {
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tun.mutex.RLock()
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open := tun.isOpen
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tun.mutex.RUnlock()
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@ -231,19 +270,8 @@ func (tun *TunAdapter) Write() error {
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}
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}
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}
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} else {
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if _, err := tun.iface.Write(data); err != nil {
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tun.mutex.RLock()
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open := tun.isOpen
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tun.mutex.RUnlock()
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if !open {
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return nil
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} else {
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panic(err)
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}
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}
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util.PutBytes(data)
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}
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util.PutBytes(data)
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}
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}
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@ -13,12 +13,13 @@ type Adapter struct {
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Core *Core
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Send chan<- []byte
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Recv <-chan []byte
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Reject <-chan RejectedPacket
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Reconfigure chan chan error
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}
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// Defines the minimum required functions for an adapter type
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type adapterImplementation interface {
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Init(*config.NodeState, *log.Logger, chan<- []byte, <-chan []byte)
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Init(*config.NodeState, *log.Logger, chan<- []byte, <-chan []byte, <-chan RejectedPacket)
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Name() string
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MTU() int
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IsTAP() bool
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@ -29,9 +30,10 @@ type adapterImplementation interface {
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}
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// Initialises the adapter.
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func (adapter *Adapter) Init(config *config.NodeState, log *log.Logger, send chan<- []byte, recv <-chan []byte) {
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func (adapter *Adapter) Init(config *config.NodeState, log *log.Logger, send chan<- []byte, recv <-chan []byte, reject <-chan RejectedPacket) {
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log.Traceln("Adapter setup - given channels:", send, recv)
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adapter.Send = send
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adapter.Recv = recv
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adapter.Reject = reject
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adapter.Reconfigure = make(chan chan error, 1)
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}
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@ -44,6 +44,7 @@ type router struct {
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tun adapterImplementation // TUN/TAP adapter
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recv chan<- []byte // place where the tun pulls received packets from
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send <-chan []byte // place where the tun puts outgoing packets
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reject chan<- RejectedPacket // place where we send error packets back to tun
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reset chan struct{} // signal that coords changed (re-init sessions/dht)
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admin chan func() // pass a lambda for the admin socket to query stuff
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cryptokey cryptokey
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@ -56,6 +57,19 @@ type router_recvPacket struct {
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sinfo *sessionInfo
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}
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type RejectedPacketReason int
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const (
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// The router rejected the packet because it is too big for the session
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PacketTooBig = 1 + iota
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)
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type RejectedPacket struct {
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Reason RejectedPacketReason
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Packet []byte
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Detail interface{}
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}
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// Initializes the router struct, which includes setting up channels to/from the tun/tap.
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func (r *router) init(core *Core) {
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r.core = core
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@ -103,8 +117,10 @@ func (r *router) init(core *Core) {
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r.toRecv = make(chan router_recvPacket, 32)
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recv := make(chan []byte, 32)
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send := make(chan []byte, 32)
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reject := make(chan RejectedPacket, 32)
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r.recv = recv
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r.send = send
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r.reject = reject
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r.reset = make(chan struct{}, 1)
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r.admin = make(chan func(), 32)
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r.nodeinfo.init(r.core)
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@ -112,7 +128,7 @@ func (r *router) init(core *Core) {
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r.nodeinfo.setNodeInfo(r.core.config.Current.NodeInfo, r.core.config.Current.NodeInfoPrivacy)
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r.core.config.Mutex.RUnlock()
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r.cryptokey.init(r.core)
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r.tun.Init(&r.core.config, r.core.log, send, recv)
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r.tun.Init(&r.core.config, r.core.log, send, recv, reject)
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}
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// Starts the mainLoop goroutine.
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@ -303,25 +319,18 @@ func (r *router) sendPacket(bs []byte) {
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// Generate an ICMPv6 Packet Too Big for packets larger than session MTU
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if len(bs) > int(sinfo.getMTU()) {
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// Get the size of the oversized payload, up to a max of 900 bytes
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/*window := 900
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window := 900
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if int(sinfo.getMTU()) < window {
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window = int(sinfo.getMTU())
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}
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// Create the Packet Too Big response
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ptb := &icmp.PacketTooBig{
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MTU: int(sinfo.getMTU()),
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Data: bs[:window],
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// Send the error back to the adapter
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r.reject <- RejectedPacket{
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Reason: PacketTooBig,
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Packet: bs[:window],
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Detail: int(sinfo.getMTU()),
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}
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// Create the ICMPv6 response from it
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icmpv6Buf, err := CreateICMPv6(
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bs[8:24], bs[24:40],
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ipv6.ICMPTypePacketTooBig, 0, ptb)
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if err == nil {
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r.recv <- icmpv6Buf
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}*/
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// Don't continue - drop the packet
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return
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}
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