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3672f29a4e
The goal is to move more network state accessors to netmon.Monitor where they can be cheaper/cached. But first (this change and others) we need to make sure the one netmon.Monitor is plumbed everywhere. Some notable bits: * tsdial.NewDialer is added, taking a now-required netmon * because a tsdial.Dialer always has a netmon, anything taking both a Dialer and a NetMon is now redundant; take only the Dialer and get the NetMon from that if/when needed. * netmon.NewStatic is added, primarily for tests Updates tailscale/corp#10910 Updates tailscale/corp#18960 Updates #7967 Updates #3299 Change-Id: I877f9cb87618c4eb037cee098241d18da9c01691 Signed-off-by: Brad Fitzpatrick <bradfitz@tailscale.com>
273 lines
6.4 KiB
Go
273 lines
6.4 KiB
Go
// Copyright (c) Tailscale Inc & AUTHORS
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// SPDX-License-Identifier: BSD-3-Clause
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package portmapper
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import (
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"bytes"
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"fmt"
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"net"
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"net/http"
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"net/http/httptest"
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"net/netip"
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"sync"
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"sync/atomic"
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"testing"
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"tailscale.com/control/controlknobs"
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"tailscale.com/net/netaddr"
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"tailscale.com/net/netmon"
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"tailscale.com/syncs"
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"tailscale.com/types/logger"
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)
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// TestIGD is an IGD (Internet Gateway Device) for testing. It supports fake
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// implementations of NAT-PMP, PCP, and/or UPnP to test clients against.
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type TestIGD struct {
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upnpConn net.PacketConn // for UPnP discovery
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pxpConn net.PacketConn // for NAT-PMP and/or PCP
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ts *httptest.Server
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upnpHTTP syncs.AtomicValue[http.Handler]
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logf logger.Logf
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closed atomic.Bool
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// do* will log which packets are sent, but will not reply to unexpected packets.
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doPMP bool
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doPCP bool
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doUPnP bool
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mu sync.Mutex // guards below
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counters igdCounters
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}
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// TestIGDOptions are options
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type TestIGDOptions struct {
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PMP bool
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PCP bool
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UPnP bool // TODO: more options for 3 flavors of UPnP services
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}
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type igdCounters struct {
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numUPnPDiscoRecv int32
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numUPnPOtherUDPRecv int32
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numPMPRecv int32
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numPCPRecv int32
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numPCPDiscoRecv int32
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numPCPMapRecv int32
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numPCPOtherRecv int32
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numPMPPublicAddrRecv int32
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numPMPBogusRecv int32
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numFailedWrites int32
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invalidPCPMapPkt int32
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}
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func NewTestIGD(logf logger.Logf, t TestIGDOptions) (*TestIGD, error) {
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d := &TestIGD{
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doPMP: t.PMP,
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doPCP: t.PCP,
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doUPnP: t.UPnP,
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}
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d.logf = func(msg string, args ...any) {
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// Don't log after the device has closed;
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// stray trailing logging angers testing.T.Logf.
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if d.closed.Load() {
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return
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}
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logf(msg, args...)
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}
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var err error
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if d.upnpConn, err = testListenUDP(); err != nil {
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return nil, err
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}
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if d.pxpConn, err = testListenUDP(); err != nil {
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d.upnpConn.Close()
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return nil, err
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}
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d.ts = httptest.NewServer(http.HandlerFunc(d.serveUPnPHTTP))
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go d.serveUPnPDiscovery()
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go d.servePxP()
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return d, nil
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}
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func testListenUDP() (net.PacketConn, error) {
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return net.ListenPacket("udp4", "127.0.0.1:0")
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}
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func (d *TestIGD) TestPxPPort() uint16 {
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return uint16(d.pxpConn.LocalAddr().(*net.UDPAddr).Port)
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}
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func (d *TestIGD) TestUPnPPort() uint16 {
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return uint16(d.upnpConn.LocalAddr().(*net.UDPAddr).Port)
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}
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func testIPAndGateway() (gw, ip netip.Addr, ok bool) {
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return netaddr.IPv4(127, 0, 0, 1), netaddr.IPv4(1, 2, 3, 4), true
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}
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func (d *TestIGD) Close() error {
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d.closed.Store(true)
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d.ts.Close()
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d.upnpConn.Close()
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d.pxpConn.Close()
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return nil
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}
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func (d *TestIGD) inc(p *int32) {
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d.mu.Lock()
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defer d.mu.Unlock()
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(*p)++
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}
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func (d *TestIGD) stats() igdCounters {
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d.mu.Lock()
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defer d.mu.Unlock()
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return d.counters
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}
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func (d *TestIGD) SetUPnPHandler(h http.Handler) {
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d.upnpHTTP.Store(h)
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}
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func (d *TestIGD) serveUPnPHTTP(w http.ResponseWriter, r *http.Request) {
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if handler := d.upnpHTTP.Load(); handler != nil {
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handler.ServeHTTP(w, r)
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return
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}
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http.NotFound(w, r)
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}
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func (d *TestIGD) serveUPnPDiscovery() {
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buf := make([]byte, 1500)
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for {
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n, src, err := d.upnpConn.ReadFrom(buf)
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if err != nil {
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if !d.closed.Load() {
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d.logf("serveUPnP failed: %v", err)
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}
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return
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}
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pkt := buf[:n]
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if bytes.Equal(pkt, uPnPPacket) { // a super lazy "parse"
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d.inc(&d.counters.numUPnPDiscoRecv)
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resPkt := fmt.Appendf(nil, "HTTP/1.1 200 OK\r\nCACHE-CONTROL: max-age=120\r\nST: urn:schemas-upnp-org:device:InternetGatewayDevice:1\r\nUSN: uuid:bee7052b-49e8-3597-b545-55a1e38ac11::urn:schemas-upnp-org:device:InternetGatewayDevice:1\r\nEXT:\r\nSERVER: Tailscale-Test/1.0 UPnP/1.1 MiniUPnPd/2.2.1\r\nLOCATION: %s\r\nOPT: \"http://schemas.upnp.org/upnp/1/0/\"; ns=01\r\n01-NLS: 1627958564\r\nBOOTID.UPNP.ORG: 1627958564\r\nCONFIGID.UPNP.ORG: 1337\r\n\r\n", d.ts.URL+"/rootDesc.xml")
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if d.doUPnP {
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_, err = d.upnpConn.WriteTo(resPkt, src)
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if err != nil {
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d.inc(&d.counters.numFailedWrites)
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}
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}
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} else {
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d.inc(&d.counters.numUPnPOtherUDPRecv)
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}
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}
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}
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// servePxP serves NAT-PMP and PCP, which share a port number.
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func (d *TestIGD) servePxP() {
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buf := make([]byte, 1500)
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for {
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n, a, err := d.pxpConn.ReadFrom(buf)
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if err != nil {
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if !d.closed.Load() {
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d.logf("servePxP failed: %v", err)
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}
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return
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}
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src := netaddr.Unmap(a.(*net.UDPAddr).AddrPort())
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if !src.IsValid() {
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panic("bogus addr")
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}
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pkt := buf[:n]
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if len(pkt) < 2 {
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continue
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}
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ver := pkt[0]
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switch ver {
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default:
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continue
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case pmpVersion:
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d.handlePMPQuery(pkt, src)
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case pcpVersion:
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d.handlePCPQuery(pkt, src)
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}
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}
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}
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func (d *TestIGD) handlePMPQuery(pkt []byte, src netip.AddrPort) {
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d.inc(&d.counters.numPMPRecv)
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if len(pkt) < 2 {
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return
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}
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op := pkt[1]
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switch op {
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case pmpOpMapPublicAddr:
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if len(pkt) != 2 {
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d.inc(&d.counters.numPMPBogusRecv)
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return
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}
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d.inc(&d.counters.numPMPPublicAddrRecv)
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}
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// TODO
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}
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func (d *TestIGD) handlePCPQuery(pkt []byte, src netip.AddrPort) {
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d.inc(&d.counters.numPCPRecv)
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if len(pkt) < 24 {
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return
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}
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op := pkt[1]
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pktSrcBytes := [16]byte{}
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copy(pktSrcBytes[:], pkt[8:24])
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pktSrc := netip.AddrFrom16(pktSrcBytes).Unmap()
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if pktSrc != src.Addr() {
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// TODO this error isn't fatal but should be rejected by server.
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// Since it's a test it's difficult to get them the same though.
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d.logf("mismatch of packet source and source IP: got %v, expected %v", pktSrc, src.Addr())
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}
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switch op {
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case pcpOpAnnounce:
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d.inc(&d.counters.numPCPDiscoRecv)
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if !d.doPCP {
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return
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}
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resp := buildPCPDiscoResponse(pkt)
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if _, err := d.pxpConn.WriteTo(resp, net.UDPAddrFromAddrPort(src)); err != nil {
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d.inc(&d.counters.numFailedWrites)
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}
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case pcpOpMap:
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if len(pkt) < 60 {
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d.logf("got too short packet for pcp op map: %v", pkt)
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d.inc(&d.counters.invalidPCPMapPkt)
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return
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}
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d.inc(&d.counters.numPCPMapRecv)
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if !d.doPCP {
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return
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}
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resp := buildPCPMapResponse(pkt)
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d.pxpConn.WriteTo(resp, net.UDPAddrFromAddrPort(src))
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default:
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// unknown op code, ignore it for now.
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d.inc(&d.counters.numPCPOtherRecv)
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return
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}
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}
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func newTestClient(t *testing.T, igd *TestIGD) *Client {
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var c *Client
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c = NewClient(t.Logf, netmon.NewStatic(), nil, new(controlknobs.Knobs), func() {
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t.Logf("port map changed")
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t.Logf("have mapping: %v", c.HaveMapping())
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})
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c.testPxPPort = igd.TestPxPPort()
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c.testUPnPPort = igd.TestUPnPPort()
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c.netMon = netmon.NewStatic()
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c.SetGatewayLookupFunc(testIPAndGateway)
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return c
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}
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