mirror of https://github.com/vishvananda/netlink
470 lines
13 KiB
Go
470 lines
13 KiB
Go
package netlink
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import (
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"fmt"
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"net"
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"syscall"
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"github.com/vishvananda/netlink/nl"
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"github.com/vishvananda/netns"
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)
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// RtAttr is shared so it is in netlink_linux.go
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const (
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SCOPE_UNIVERSE Scope = syscall.RT_SCOPE_UNIVERSE
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SCOPE_SITE Scope = syscall.RT_SCOPE_SITE
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SCOPE_LINK Scope = syscall.RT_SCOPE_LINK
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SCOPE_HOST Scope = syscall.RT_SCOPE_HOST
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SCOPE_NOWHERE Scope = syscall.RT_SCOPE_NOWHERE
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)
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const (
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RT_FILTER_PROTOCOL uint64 = 1 << (1 + iota)
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RT_FILTER_SCOPE
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RT_FILTER_TYPE
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RT_FILTER_TOS
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RT_FILTER_IIF
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RT_FILTER_OIF
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RT_FILTER_DST
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RT_FILTER_SRC
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RT_FILTER_GW
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RT_FILTER_TABLE
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)
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const (
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FLAG_ONLINK NextHopFlag = syscall.RTNH_F_ONLINK
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FLAG_PERVASIVE NextHopFlag = syscall.RTNH_F_PERVASIVE
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)
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var testFlags = []flagString{
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{f: FLAG_ONLINK, s: "onlink"},
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{f: FLAG_PERVASIVE, s: "pervasive"},
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}
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func (r *Route) ListFlags() []string {
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var flags []string
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for _, tf := range testFlags {
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if r.Flags&int(tf.f) != 0 {
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flags = append(flags, tf.s)
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}
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}
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return flags
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}
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// RouteAdd will add a route to the system.
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// Equivalent to: `ip route add $route`
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func RouteAdd(route *Route) error {
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return pkgHandle.RouteAdd(route)
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}
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// RouteAdd will add a route to the system.
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// Equivalent to: `ip route add $route`
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func (h *Handle) RouteAdd(route *Route) error {
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req := h.newNetlinkRequest(syscall.RTM_NEWROUTE, syscall.NLM_F_CREATE|syscall.NLM_F_EXCL|syscall.NLM_F_ACK)
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return h.routeHandle(route, req, nl.NewRtMsg())
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}
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// RouteDel will delete a route from the system.
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// Equivalent to: `ip route del $route`
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func RouteDel(route *Route) error {
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return pkgHandle.RouteDel(route)
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}
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// RouteDel will delete a route from the system.
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// Equivalent to: `ip route del $route`
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func (h *Handle) RouteDel(route *Route) error {
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req := h.newNetlinkRequest(syscall.RTM_DELROUTE, syscall.NLM_F_ACK)
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return h.routeHandle(route, req, nl.NewRtDelMsg())
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}
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func (h *Handle) routeHandle(route *Route, req *nl.NetlinkRequest, msg *nl.RtMsg) error {
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if (route.Dst == nil || route.Dst.IP == nil) && route.Src == nil && route.Gw == nil {
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return fmt.Errorf("one of Dst.IP, Src, or Gw must not be nil")
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}
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family := -1
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var rtAttrs []*nl.RtAttr
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if route.Dst != nil && route.Dst.IP != nil {
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dstLen, _ := route.Dst.Mask.Size()
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msg.Dst_len = uint8(dstLen)
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dstFamily := nl.GetIPFamily(route.Dst.IP)
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family = dstFamily
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var dstData []byte
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if dstFamily == FAMILY_V4 {
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dstData = route.Dst.IP.To4()
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} else {
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dstData = route.Dst.IP.To16()
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}
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rtAttrs = append(rtAttrs, nl.NewRtAttr(syscall.RTA_DST, dstData))
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}
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if route.Src != nil {
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srcFamily := nl.GetIPFamily(route.Src)
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if family != -1 && family != srcFamily {
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return fmt.Errorf("source and destination ip are not the same IP family")
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}
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family = srcFamily
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var srcData []byte
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if srcFamily == FAMILY_V4 {
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srcData = route.Src.To4()
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} else {
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srcData = route.Src.To16()
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}
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// The commonly used src ip for routes is actually PREFSRC
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rtAttrs = append(rtAttrs, nl.NewRtAttr(syscall.RTA_PREFSRC, srcData))
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}
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if route.Gw != nil {
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gwFamily := nl.GetIPFamily(route.Gw)
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if family != -1 && family != gwFamily {
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return fmt.Errorf("gateway, source, and destination ip are not the same IP family")
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}
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family = gwFamily
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var gwData []byte
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if gwFamily == FAMILY_V4 {
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gwData = route.Gw.To4()
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} else {
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gwData = route.Gw.To16()
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}
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rtAttrs = append(rtAttrs, nl.NewRtAttr(syscall.RTA_GATEWAY, gwData))
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}
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if len(route.MultiPath) > 0 {
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buf := []byte{}
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for _, nh := range route.MultiPath {
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rtnh := &nl.RtNexthop{
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RtNexthop: syscall.RtNexthop{
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Hops: uint8(nh.Hops),
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Ifindex: int32(nh.LinkIndex),
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Len: uint16(syscall.SizeofRtNexthop),
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},
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}
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var gwData []byte
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if nh.Gw != nil {
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gwFamily := nl.GetIPFamily(nh.Gw)
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if family != -1 && family != gwFamily {
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return fmt.Errorf("gateway, source, and destination ip are not the same IP family")
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}
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var gw *nl.RtAttr
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if gwFamily == FAMILY_V4 {
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gw = nl.NewRtAttr(syscall.RTA_GATEWAY, []byte(nh.Gw.To4()))
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} else {
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gw = nl.NewRtAttr(syscall.RTA_GATEWAY, []byte(nh.Gw.To16()))
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}
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gwData = gw.Serialize()
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rtnh.Len += uint16(len(gwData))
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}
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buf = append(buf, rtnh.Serialize()...)
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buf = append(buf, gwData...)
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}
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rtAttrs = append(rtAttrs, nl.NewRtAttr(syscall.RTA_MULTIPATH, buf))
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}
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if route.Table > 0 {
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if route.Table >= 256 {
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msg.Table = syscall.RT_TABLE_UNSPEC
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b := make([]byte, 4)
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native.PutUint32(b, uint32(route.Table))
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rtAttrs = append(rtAttrs, nl.NewRtAttr(syscall.RTA_TABLE, b))
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} else {
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msg.Table = uint8(route.Table)
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}
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}
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if route.Priority > 0 {
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b := make([]byte, 4)
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native.PutUint32(b, uint32(route.Priority))
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rtAttrs = append(rtAttrs, nl.NewRtAttr(syscall.RTA_PRIORITY, b))
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}
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if route.Tos > 0 {
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msg.Tos = uint8(route.Tos)
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}
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if route.Protocol > 0 {
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msg.Protocol = uint8(route.Protocol)
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}
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if route.Type > 0 {
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msg.Type = uint8(route.Type)
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}
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msg.Flags = uint32(route.Flags)
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msg.Scope = uint8(route.Scope)
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msg.Family = uint8(family)
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req.AddData(msg)
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for _, attr := range rtAttrs {
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req.AddData(attr)
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}
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var (
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b = make([]byte, 4)
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native = nl.NativeEndian()
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)
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native.PutUint32(b, uint32(route.LinkIndex))
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req.AddData(nl.NewRtAttr(syscall.RTA_OIF, b))
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_, err := req.Execute(syscall.NETLINK_ROUTE, 0)
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return err
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}
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// RouteList gets a list of routes in the system.
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// Equivalent to: `ip route show`.
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// The list can be filtered by link and ip family.
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func RouteList(link Link, family int) ([]Route, error) {
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return pkgHandle.RouteList(link, family)
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}
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// RouteList gets a list of routes in the system.
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// Equivalent to: `ip route show`.
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// The list can be filtered by link and ip family.
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func (h *Handle) RouteList(link Link, family int) ([]Route, error) {
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var routeFilter *Route
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if link != nil {
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routeFilter = &Route{
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LinkIndex: link.Attrs().Index,
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}
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}
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return h.RouteListFiltered(family, routeFilter, RT_FILTER_OIF)
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}
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// RouteListFiltered gets a list of routes in the system filtered with specified rules.
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// All rules must be defined in RouteFilter struct
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func RouteListFiltered(family int, filter *Route, filterMask uint64) ([]Route, error) {
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return pkgHandle.RouteListFiltered(family, filter, filterMask)
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}
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// RouteListFiltered gets a list of routes in the system filtered with specified rules.
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// All rules must be defined in RouteFilter struct
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func (h *Handle) RouteListFiltered(family int, filter *Route, filterMask uint64) ([]Route, error) {
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req := h.newNetlinkRequest(syscall.RTM_GETROUTE, syscall.NLM_F_DUMP)
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infmsg := nl.NewIfInfomsg(family)
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req.AddData(infmsg)
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msgs, err := req.Execute(syscall.NETLINK_ROUTE, syscall.RTM_NEWROUTE)
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if err != nil {
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return nil, err
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}
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var res []Route
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for _, m := range msgs {
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msg := nl.DeserializeRtMsg(m)
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if msg.Flags&syscall.RTM_F_CLONED != 0 {
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// Ignore cloned routes
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continue
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}
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if msg.Table != syscall.RT_TABLE_MAIN {
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if filter == nil || filter != nil && filterMask&RT_FILTER_TABLE == 0 {
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// Ignore non-main tables
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continue
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}
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}
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route, err := deserializeRoute(m)
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if err != nil {
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return nil, err
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}
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if filter != nil {
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switch {
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case filterMask&RT_FILTER_TABLE != 0 && route.Table != filter.Table:
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continue
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case filterMask&RT_FILTER_PROTOCOL != 0 && route.Protocol != filter.Protocol:
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continue
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case filterMask&RT_FILTER_SCOPE != 0 && route.Scope != filter.Scope:
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continue
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case filterMask&RT_FILTER_TYPE != 0 && route.Type != filter.Type:
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continue
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case filterMask&RT_FILTER_TOS != 0 && route.Tos != filter.Tos:
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continue
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case filterMask&RT_FILTER_OIF != 0 && route.LinkIndex != filter.LinkIndex:
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continue
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case filterMask&RT_FILTER_IIF != 0 && route.ILinkIndex != filter.ILinkIndex:
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continue
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case filterMask&RT_FILTER_GW != 0 && !route.Gw.Equal(filter.Gw):
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continue
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case filterMask&RT_FILTER_SRC != 0 && !route.Src.Equal(filter.Src):
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continue
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case filterMask&RT_FILTER_DST != 0:
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if filter.Dst == nil {
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if route.Dst != nil {
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continue
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}
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} else {
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if route.Dst == nil {
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continue
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}
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aMaskLen, aMaskBits := route.Dst.Mask.Size()
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bMaskLen, bMaskBits := filter.Dst.Mask.Size()
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if !(route.Dst.IP.Equal(filter.Dst.IP) && aMaskLen == bMaskLen && aMaskBits == bMaskBits) {
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continue
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}
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}
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}
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}
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res = append(res, route)
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}
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return res, nil
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}
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// deserializeRoute decodes a binary netlink message into a Route struct
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func deserializeRoute(m []byte) (Route, error) {
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msg := nl.DeserializeRtMsg(m)
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attrs, err := nl.ParseRouteAttr(m[msg.Len():])
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if err != nil {
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return Route{}, err
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}
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route := Route{
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Scope: Scope(msg.Scope),
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Protocol: int(msg.Protocol),
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Table: int(msg.Table),
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Type: int(msg.Type),
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Tos: int(msg.Tos),
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Flags: int(msg.Flags),
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}
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native := nl.NativeEndian()
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for _, attr := range attrs {
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switch attr.Attr.Type {
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case syscall.RTA_GATEWAY:
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route.Gw = net.IP(attr.Value)
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case syscall.RTA_PREFSRC:
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route.Src = net.IP(attr.Value)
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case syscall.RTA_DST:
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route.Dst = &net.IPNet{
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IP: attr.Value,
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Mask: net.CIDRMask(int(msg.Dst_len), 8*len(attr.Value)),
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}
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case syscall.RTA_OIF:
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route.LinkIndex = int(native.Uint32(attr.Value[0:4]))
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case syscall.RTA_IIF:
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route.ILinkIndex = int(native.Uint32(attr.Value[0:4]))
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case syscall.RTA_PRIORITY:
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route.Priority = int(native.Uint32(attr.Value[0:4]))
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case syscall.RTA_TABLE:
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route.Table = int(native.Uint32(attr.Value[0:4]))
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case syscall.RTA_MULTIPATH:
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parseRtNexthop := func(value []byte) (*NexthopInfo, []byte, error) {
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if len(value) < syscall.SizeofRtNexthop {
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return nil, nil, fmt.Errorf("Lack of bytes")
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}
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nh := nl.DeserializeRtNexthop(value)
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if len(value) < int(nh.RtNexthop.Len) {
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return nil, nil, fmt.Errorf("Lack of bytes")
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}
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info := &NexthopInfo{
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LinkIndex: int(nh.RtNexthop.Ifindex),
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Hops: int(nh.RtNexthop.Hops),
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}
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attrs, err := nl.ParseRouteAttr(value[syscall.SizeofRtNexthop:int(nh.RtNexthop.Len)])
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if err != nil {
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return nil, nil, err
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}
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for _, attr := range attrs {
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switch attr.Attr.Type {
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case syscall.RTA_GATEWAY:
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info.Gw = net.IP(attr.Value)
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}
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}
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return info, value[int(nh.RtNexthop.Len):], nil
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}
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rest := attr.Value
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for len(rest) > 0 {
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info, buf, err := parseRtNexthop(rest)
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if err != nil {
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return route, err
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}
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route.MultiPath = append(route.MultiPath, info)
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rest = buf
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}
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}
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}
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return route, nil
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}
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// RouteGet gets a route to a specific destination from the host system.
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// Equivalent to: 'ip route get'.
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func RouteGet(destination net.IP) ([]Route, error) {
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return pkgHandle.RouteGet(destination)
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}
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// RouteGet gets a route to a specific destination from the host system.
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// Equivalent to: 'ip route get'.
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func (h *Handle) RouteGet(destination net.IP) ([]Route, error) {
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req := h.newNetlinkRequest(syscall.RTM_GETROUTE, syscall.NLM_F_REQUEST)
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family := nl.GetIPFamily(destination)
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var destinationData []byte
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var bitlen uint8
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if family == FAMILY_V4 {
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destinationData = destination.To4()
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bitlen = 32
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} else {
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destinationData = destination.To16()
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bitlen = 128
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}
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msg := &nl.RtMsg{}
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msg.Family = uint8(family)
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msg.Dst_len = bitlen
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req.AddData(msg)
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rtaDst := nl.NewRtAttr(syscall.RTA_DST, destinationData)
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req.AddData(rtaDst)
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msgs, err := req.Execute(syscall.NETLINK_ROUTE, syscall.RTM_NEWROUTE)
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if err != nil {
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return nil, err
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}
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var res []Route
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for _, m := range msgs {
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route, err := deserializeRoute(m)
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if err != nil {
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return nil, err
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}
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res = append(res, route)
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}
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return res, nil
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}
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// RouteSubscribe takes a chan down which notifications will be sent
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// when routes are added or deleted. Close the 'done' chan to stop subscription.
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func RouteSubscribe(ch chan<- RouteUpdate, done <-chan struct{}) error {
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return routeSubscribeAt(netns.None(), netns.None(), ch, done)
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}
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// RouteSubscribeAt works like RouteSubscribe plus it allows the caller
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// to choose the network namespace in which to subscribe (ns).
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func RouteSubscribeAt(ns netns.NsHandle, ch chan<- RouteUpdate, done <-chan struct{}) error {
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return routeSubscribeAt(ns, netns.None(), ch, done)
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}
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func routeSubscribeAt(newNs, curNs netns.NsHandle, ch chan<- RouteUpdate, done <-chan struct{}) error {
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s, err := nl.SubscribeAt(newNs, curNs, syscall.NETLINK_ROUTE, syscall.RTNLGRP_IPV4_ROUTE, syscall.RTNLGRP_IPV6_ROUTE)
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if err != nil {
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return err
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}
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if done != nil {
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go func() {
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<-done
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s.Close()
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}()
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}
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go func() {
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defer close(ch)
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for {
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msgs, err := s.Receive()
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if err != nil {
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return
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}
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for _, m := range msgs {
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route, err := deserializeRoute(m.Data)
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if err != nil {
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return
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}
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ch <- RouteUpdate{Type: m.Header.Type, Route: route}
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}
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}
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}()
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return nil
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}
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