242 lines
7.3 KiB
Go
242 lines
7.3 KiB
Go
// Copyright 2018-present the CoreDHCP Authors. All rights reserved
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// This source code is licensed under the MIT license found in the
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// LICENSE file in the root directory of this source tree.
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package server
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import (
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"errors"
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"fmt"
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"net"
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"sync"
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"golang.org/x/net/ipv4"
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"golang.org/x/net/ipv6"
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"github.com/insomniacslk/dhcp/dhcpv4"
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"github.com/insomniacslk/dhcp/dhcpv6"
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)
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// HandleMsg6 runs for every received DHCPv6 packet. It will run every
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// registered handler in sequence, and reply with the resulting response.
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// It will not reply if the resulting response is `nil`.
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func (l *listener6) HandleMsg6(buf []byte, oob *ipv6.ControlMessage, peer *net.UDPAddr) {
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d, err := dhcpv6.FromBytes(buf)
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bufpool.Put(&buf)
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if err != nil {
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log.Printf("Error parsing DHCPv6 request: %v", err)
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return
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}
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// decapsulate the relay message
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msg, err := d.GetInnerMessage()
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if err != nil {
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log.Warningf("DHCPv6: cannot get inner message: %v", err)
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return
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}
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// Create a suitable basic response packet
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var resp dhcpv6.DHCPv6
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switch msg.Type() {
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case dhcpv6.MessageTypeSolicit:
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if msg.GetOneOption(dhcpv6.OptionRapidCommit) != nil {
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resp, err = dhcpv6.NewReplyFromMessage(msg)
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} else {
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resp, err = dhcpv6.NewAdvertiseFromSolicit(msg)
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}
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case dhcpv6.MessageTypeRequest, dhcpv6.MessageTypeConfirm, dhcpv6.MessageTypeRenew,
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dhcpv6.MessageTypeRebind, dhcpv6.MessageTypeRelease, dhcpv6.MessageTypeInformationRequest:
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resp, err = dhcpv6.NewReplyFromMessage(msg)
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default:
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err = fmt.Errorf("MainHandler6: message type %d not supported", msg.Type())
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}
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if err != nil {
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log.Printf("MainHandler6: NewReplyFromDHCPv6Message failed: %v", err)
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return
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}
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var stop bool
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for _, handler := range l.handlers {
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resp, stop = handler(d, resp)
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if stop {
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break
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}
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}
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if resp == nil {
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log.Print("MainHandler6: dropping request because response is nil")
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return
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}
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// if the request was relayed, re-encapsulate the response
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if d.IsRelay() {
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if rmsg, ok := resp.(*dhcpv6.Message); !ok {
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log.Warningf("DHCPv6: response is a relayed message, not reencapsulating")
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} else {
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tmp, err := dhcpv6.NewRelayReplFromRelayForw(d.(*dhcpv6.RelayMessage), rmsg)
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if err != nil {
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log.Warningf("DHCPv6: cannot create relay-repl from relay-forw: %v", err)
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return
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}
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resp = tmp
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}
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}
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var woob *ipv6.ControlMessage
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if peer.IP.IsLinkLocalUnicast() {
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// LL need to be directed to the correct interface. Globally reachable
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// addresses should use the default route, in case of asymetric routing.
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switch {
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case l.Interface.Index != 0:
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woob = &ipv6.ControlMessage{IfIndex: l.Interface.Index}
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case oob != nil && oob.IfIndex != 0:
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woob = &ipv6.ControlMessage{IfIndex: oob.IfIndex}
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default:
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log.Errorf("HandleMsg6: Did not receive interface information")
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}
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}
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if _, err := l.WriteTo(resp.ToBytes(), woob, peer); err != nil {
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log.Printf("MainHandler6: conn.Write to %v failed: %v", peer, err)
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}
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}
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func (l *listener4) HandleMsg4(buf []byte, oob *ipv4.ControlMessage, _peer net.Addr) {
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var (
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resp, tmp *dhcpv4.DHCPv4
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err error
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stop bool
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)
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req, err := dhcpv4.FromBytes(buf)
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bufpool.Put(&buf)
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if err != nil {
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log.Printf("Error parsing DHCPv4 request: %v", err)
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return
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}
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if req.OpCode != dhcpv4.OpcodeBootRequest {
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log.Printf("MainHandler4: unsupported opcode %d. Only BootRequest (%d) is supported", req.OpCode, dhcpv4.OpcodeBootRequest)
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return
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}
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tmp, err = dhcpv4.NewReplyFromRequest(req)
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if err != nil {
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log.Printf("MainHandler4: failed to build reply: %v", err)
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return
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}
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switch mt := req.MessageType(); mt {
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case dhcpv4.MessageTypeDiscover:
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tmp.UpdateOption(dhcpv4.OptMessageType(dhcpv4.MessageTypeOffer))
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case dhcpv4.MessageTypeRequest:
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tmp.UpdateOption(dhcpv4.OptMessageType(dhcpv4.MessageTypeAck))
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default:
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log.Printf("plugins/server: Unhandled message type: %v", mt)
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return
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}
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resp = tmp
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for _, handler := range l.handlers {
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resp, stop = handler(req, resp)
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if stop {
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break
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}
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}
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if resp != nil {
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useEthernet := false
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var peer *net.UDPAddr
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if !req.GatewayIPAddr.IsUnspecified() {
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// TODO: make RFC8357 compliant
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peer = &net.UDPAddr{IP: req.GatewayIPAddr, Port: dhcpv4.ServerPort}
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} else if resp.MessageType() == dhcpv4.MessageTypeNak {
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peer = &net.UDPAddr{IP: net.IPv4bcast, Port: dhcpv4.ClientPort}
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} else if !req.ClientIPAddr.IsUnspecified() {
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peer = &net.UDPAddr{IP: req.ClientIPAddr, Port: dhcpv4.ClientPort}
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} else if req.IsBroadcast() {
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peer = &net.UDPAddr{IP: net.IPv4bcast, Port: dhcpv4.ClientPort}
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} else {
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//sends a layer2 frame so that we can define the destination MAC address
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peer = &net.UDPAddr{IP: resp.YourIPAddr, Port: dhcpv4.ClientPort}
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useEthernet = true
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}
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var woob *ipv4.ControlMessage
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if peer.IP.Equal(net.IPv4bcast) || peer.IP.IsLinkLocalUnicast() || useEthernet {
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// Direct broadcasts, link-local and layer2 unicasts to the interface the request was
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// received on. Other packets should use the normal routing table in
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// case of asymetric routing
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switch {
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case l.Interface.Index != 0:
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woob = &ipv4.ControlMessage{IfIndex: l.Interface.Index}
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case oob != nil && oob.IfIndex != 0:
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woob = &ipv4.ControlMessage{IfIndex: oob.IfIndex}
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default:
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log.Errorf("HandleMsg4: Did not receive interface information")
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}
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}
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if useEthernet {
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intf, err := net.InterfaceByIndex(woob.IfIndex)
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if err != nil {
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log.Errorf("MainHandler4: Can not get Interface for index %d %v", woob.IfIndex, err)
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return
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}
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err = sendEthernet(*intf, resp)
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if err != nil {
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log.Errorf("MainHandler4: Cannot send Ethernet packet: %v", err)
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}
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} else {
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if _, err := l.WriteTo(resp.ToBytes(), woob, peer); err != nil {
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log.Errorf("MainHandler4: conn.Write to %v failed: %v", peer, err)
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}
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}
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} else {
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log.Print("MainHandler4: dropping request because response is nil")
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}
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}
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// XXX: performance-wise, Pool may or may not be good (see https://github.com/golang/go/issues/23199)
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// Interface is good for what we want. Maybe "just" trust the GC and we'll be fine ?
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var bufpool = sync.Pool{New: func() interface{} { r := make([]byte, MaxDatagram); return &r }}
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// MaxDatagram is the maximum length of message that can be received.
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const MaxDatagram = 1 << 16
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// XXX: investigate using RecvMsgs to batch messages and reduce syscalls
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// Serve6 handles datagrams received on conn and passes them to the pluginchain
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func (l *listener6) Serve() error {
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log.Printf("Listen %s", l.LocalAddr())
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for {
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b := *bufpool.Get().(*[]byte)
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b = b[:MaxDatagram] //Reslice to max capacity in case the buffer in pool was resliced smaller
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n, oob, peer, err := l.ReadFrom(b)
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if errors.Is(err, net.ErrClosed) {
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// Server is quitting
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return nil
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} else if err != nil {
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log.Printf("Error reading from connection: %v", err)
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return err
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}
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go l.HandleMsg6(b[:n], oob, peer.(*net.UDPAddr))
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}
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}
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// Serve6 handles datagrams received on conn and passes them to the pluginchain
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func (l *listener4) Serve() error {
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log.Printf("Listen %s", l.LocalAddr())
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for {
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b := *bufpool.Get().(*[]byte)
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b = b[:MaxDatagram] //Reslice to max capacity in case the buffer in pool was resliced smaller
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n, oob, peer, err := l.ReadFrom(b)
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if errors.Is(err, net.ErrClosed) {
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// Server is quitting
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return nil
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} else if err != nil {
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log.Printf("Error reading from connection: %v", err)
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return err
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}
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go l.HandleMsg4(b[:n], oob, peer.(*net.UDPAddr))
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}
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}
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