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@ -29,25 +29,100 @@ type PacketConner interface {
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PacketConn() net.PacketConn
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PacketConn() net.PacketConn
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}
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}
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func mustPrefix(s string) netaddr.IPPrefix {
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ipp, err := netaddr.ParseIPPrefix(s)
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if err != nil {
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panic(err)
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}
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return ipp
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}
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// NewInternet returns a network that simulates the internet.
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func NewInternet() *Network {
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return &Network{
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v4Pool: mustPrefix("203.0.113.0/24"), // documentation netblock that looks Internet-y
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v6Pool: mustPrefix("fc00:52::/64"),
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}
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}
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type Network struct {
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type Network struct {
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name string
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name string
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dhcpPool netaddr.IPPrefix
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v4Pool netaddr.IPPrefix
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alloced map[netaddr.IP]bool
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v6Pool netaddr.IPPrefix
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pushRoute netaddr.IPPrefix
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pushRoute netaddr.IPPrefix
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mu sync.Mutex
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machine map[netaddr.IP]*Machine
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lastV4 netaddr.IP
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lastV6 netaddr.IP
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}
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func (n *Network) AllocIPv4() netaddr.IP {
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n.mu.Lock()
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defer n.mu.Unlock()
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if n.lastV4.IsZero() {
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n.lastV4 = n.v4Pool.IP
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}
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a := n.lastV4.As16()
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addOne(&a, 15)
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n.lastV4 = netaddr.IPFrom16(a)
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if !n.v4Pool.Contains(n.lastV4) {
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panic("pool exhausted")
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}
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return n.lastV4
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}
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func (n *Network) AllocIPv6() netaddr.IP {
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n.mu.Lock()
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defer n.mu.Unlock()
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if n.lastV6.IsZero() {
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n.lastV6 = n.v6Pool.IP
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}
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a := n.lastV6.As16()
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addOne(&a, 15)
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n.lastV6 = netaddr.IPFrom16(a)
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if !n.v6Pool.Contains(n.lastV6) {
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panic("pool exhausted")
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}
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return n.lastV6
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}
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func addOne(a *[16]byte, index int) {
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if v := a[index]; v < 255 {
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a[index]++
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} else {
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a[index] = 0
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addOne(a, index-1)
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}
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}
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}
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func (n *Network) write(p []byte, dst, src netaddr.IPPort) (num int, err error) {
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func (n *Network) write(p []byte, dst, src netaddr.IPPort) (num int, err error) {
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panic("TODO")
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panic("TODO")
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}
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}
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type iface struct {
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type Interface struct {
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net *Network
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net *Network
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name string // optional
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name string // optional
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ips []netaddr.IP // static; not mutated once created
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ips []netaddr.IP // static; not mutated once created
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}
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}
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func (f *iface) String() string {
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// V4 returns the machine's first IPv4 address, or the zero value if none.
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func (f *Interface) V4() netaddr.IP { return f.pickIP(netaddr.IP.Is4) }
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// V6 returns the machine's first IPv6 address, or the zero value if none.
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func (f *Interface) V6() netaddr.IP { return f.pickIP(netaddr.IP.Is6) }
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func (f *Interface) pickIP(pred func(netaddr.IP) bool) netaddr.IP {
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for _, ip := range f.ips {
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if pred(ip) {
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return ip
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}
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}
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return netaddr.IP{}
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}
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func (f *Interface) String() string {
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// TODO: make this all better
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// TODO: make this all better
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if f.name != "" {
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if f.name != "" {
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return f.name
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return f.name
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@ -56,7 +131,7 @@ func (f *iface) String() string {
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}
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}
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// Contains reports whether f contains ip as an IP.
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// Contains reports whether f contains ip as an IP.
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func (f *iface) Contains(ip netaddr.IP) bool {
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func (f *Interface) Contains(ip netaddr.IP) bool {
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for _, v := range f.ips {
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for _, v := range f.ips {
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if ip == v {
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if ip == v {
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return true
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return true
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@ -67,19 +142,43 @@ func (f *iface) Contains(ip netaddr.IP) bool {
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type routeEntry struct {
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type routeEntry struct {
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prefix netaddr.IPPrefix
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prefix netaddr.IPPrefix
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iface *iface
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iface *Interface
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}
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// NewMachine returns a new Machine without any network connection.
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// The name is just for debugging and need not be globally unique.
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// Use Attach to add networks.
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func NewMachine(name string) *Machine {
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return &Machine{name: name}
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}
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}
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// A Machine is a representation of an operating system's network stack.
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// A Machine is a representation of an operating system's network stack.
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// It has a network routing table and can have multiple attached networks.
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// It has a network routing table and can have multiple attached networks.
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type Machine struct {
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type Machine struct {
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name string
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mu sync.Mutex
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mu sync.Mutex
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interfaces []*iface
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interfaces []*Interface
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routes []routeEntry // sorted by longest prefix to shortest
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routes []routeEntry // sorted by longest prefix to shortest
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conns map[netaddr.IPPort]*conn
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conns map[netaddr.IPPort]*conn
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}
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}
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// Attach
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func (m *Machine) Attach(interfaceName string, n *Network) *Interface {
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f := &Interface{
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net: n,
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name: interfaceName,
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}
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// TODO: get f.ips, routes
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m.mu.Lock()
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defer m.mu.Unlock()
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m.interfaces = append(m.interfaces, f)
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return f
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}
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var (
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var (
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v4unspec = netaddr.IPv4(0, 0, 0, 0)
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v4unspec = netaddr.IPv4(0, 0, 0, 0)
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v6unspec = netaddr.IPv6Unspecified()
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v6unspec = netaddr.IPv6Unspecified()
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@ -90,19 +189,25 @@ func (m *Machine) writePacket(p []byte, dst, src netaddr.IPPort) (n int, err err
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if err != nil {
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if err != nil {
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return 0, err
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return 0, err
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}
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}
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unspec := src.IP == v4unspec || src.IP == v6unspec
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origSrcIP := src.IP
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if unspec {
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switch {
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// TODO: pick a src IP
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case src.IP == v4unspec:
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} else {
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src.IP = iface.V4()
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case src.IP == v6unspec:
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src.IP = iface.V6()
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default:
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if !iface.Contains(src.IP) {
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if !iface.Contains(src.IP) {
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return 0, fmt.Errorf("can't send to %v with src %v on interface %v", dst.IP, src.IP, iface)
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return 0, fmt.Errorf("can't send to %v with src %v on interface %v", dst.IP, src.IP, iface)
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}
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}
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}
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}
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if src.IP.IsZero() {
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return 0, fmt.Errorf("no matching address for address family for %v", origSrcIP)
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}
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return iface.net.write(p, dst, src)
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return iface.net.write(p, dst, src)
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}
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}
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func (m *Machine) interfaceForIP(ip netaddr.IP) (*iface, error) {
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func (m *Machine) interfaceForIP(ip netaddr.IP) (*Interface, error) {
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m.mu.Lock()
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m.mu.Lock()
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defer m.mu.Unlock()
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defer m.mu.Unlock()
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for _, re := range m.routes {
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for _, re := range m.routes {
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