mirror of
https://github.com/osrg/gobgp.git
synced 2024-05-11 05:55:10 +00:00
239 lines
6.3 KiB
Go
239 lines
6.3 KiB
Go
// Copyright (C) 2015 Nippon Telegraph and Telephone Corporation.
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//
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// Licensed under the Apache License, Version 2.0 (the "License");
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// you may not use this file except in compliance with the License.
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// You may obtain a copy of the License at
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//
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// http://www.apache.org/licenses/LICENSE-2.0
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//
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// Unless required by applicable law or agreed to in writing, software
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// distributed under the License is distributed on an "AS IS" BASIS,
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// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or
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// implied.
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// See the License for the specific language governing permissions and
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// limitations under the License.
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package server
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import (
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"fmt"
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log "github.com/Sirupsen/logrus"
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"github.com/osrg/gobgp/packet/bgp"
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"github.com/osrg/gobgp/table"
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"github.com/osrg/gobgp/zebra"
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"net"
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"strconv"
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"strings"
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"time"
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)
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func newIPRouteMessage(dst []*table.Path, version uint8, vrfId uint16) *zebra.Message {
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paths := make([]*table.Path, 0, len(dst))
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for _, path := range dst {
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if path == nil || path.IsFromExternal() {
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continue
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}
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paths = append(paths, path)
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}
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if len(paths) == 0 {
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return nil
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}
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path := paths[0]
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l := strings.SplitN(path.GetNlri().String(), "/", 2)
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var command zebra.API_TYPE
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var prefix net.IP
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nexthops := make([]net.IP, 0, len(paths))
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switch path.GetRouteFamily() {
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case bgp.RF_IPv4_UC, bgp.RF_IPv4_VPN:
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if path.IsWithdraw == true {
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command = zebra.IPV4_ROUTE_DELETE
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} else {
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command = zebra.IPV4_ROUTE_ADD
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}
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if path.GetRouteFamily() == bgp.RF_IPv4_UC {
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prefix = path.GetNlri().(*bgp.IPAddrPrefix).IPAddrPrefixDefault.Prefix.To4()
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} else {
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prefix = path.GetNlri().(*bgp.LabeledVPNIPAddrPrefix).IPAddrPrefixDefault.Prefix.To4()
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}
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for _, p := range paths {
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nexthops = append(nexthops, p.GetNexthop().To4())
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}
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case bgp.RF_IPv6_UC, bgp.RF_IPv6_VPN:
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if path.IsWithdraw == true {
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command = zebra.IPV6_ROUTE_DELETE
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} else {
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command = zebra.IPV6_ROUTE_ADD
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}
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if path.GetRouteFamily() == bgp.RF_IPv6_UC {
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prefix = path.GetNlri().(*bgp.IPv6AddrPrefix).IPAddrPrefixDefault.Prefix.To16()
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} else {
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prefix = path.GetNlri().(*bgp.LabeledVPNIPv6AddrPrefix).IPAddrPrefixDefault.Prefix.To16()
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}
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for _, p := range paths {
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nexthops = append(nexthops, p.GetNexthop().To16())
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}
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default:
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return nil
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}
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flags := uint8(zebra.MESSAGE_NEXTHOP)
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plen, _ := strconv.Atoi(l[1])
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med, err := path.GetMed()
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if err == nil {
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flags |= zebra.MESSAGE_METRIC
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}
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return &zebra.Message{
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Header: zebra.Header{
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Len: zebra.HeaderSize(version),
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Marker: zebra.HEADER_MARKER,
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Version: version,
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Command: command,
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VrfId: vrfId,
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},
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Body: &zebra.IPRouteBody{
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Type: zebra.ROUTE_BGP,
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SAFI: zebra.SAFI_UNICAST,
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Message: flags,
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Prefix: prefix,
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PrefixLength: uint8(plen),
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Nexthops: nexthops,
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Metric: med,
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},
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}
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}
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func createPathFromIPRouteMessage(m *zebra.Message) *table.Path {
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header := m.Header
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body := m.Body.(*zebra.IPRouteBody)
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family := bgp.RF_IPv6_UC
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if header.Command == zebra.IPV4_ROUTE_ADD || header.Command == zebra.IPV4_ROUTE_DELETE {
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family = bgp.RF_IPv4_UC
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}
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var nlri bgp.AddrPrefixInterface
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pattr := make([]bgp.PathAttributeInterface, 0)
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var mpnlri *bgp.PathAttributeMpReachNLRI
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var isWithdraw bool = header.Command == zebra.IPV4_ROUTE_DELETE || header.Command == zebra.IPV6_ROUTE_DELETE
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origin := bgp.NewPathAttributeOrigin(bgp.BGP_ORIGIN_ATTR_TYPE_IGP)
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pattr = append(pattr, origin)
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log.WithFields(log.Fields{
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"Topic": "Zebra",
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"RouteType": body.Type.String(),
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"Flag": body.Flags.String(),
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"Message": body.Message,
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"Prefix": body.Prefix,
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"PrefixLength": body.PrefixLength,
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"Nexthop": body.Nexthops,
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"IfIndex": body.Ifindexs,
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"Metric": body.Metric,
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"Distance": body.Distance,
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"api": header.Command.String(),
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}).Debugf("create path from ip route message.")
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switch family {
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case bgp.RF_IPv4_UC:
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nlri = bgp.NewIPAddrPrefix(body.PrefixLength, body.Prefix.String())
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nexthop := bgp.NewPathAttributeNextHop(body.Nexthops[0].String())
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pattr = append(pattr, nexthop)
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case bgp.RF_IPv6_UC:
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nlri = bgp.NewIPv6AddrPrefix(body.PrefixLength, body.Prefix.String())
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mpnlri = bgp.NewPathAttributeMpReachNLRI(body.Nexthops[0].String(), []bgp.AddrPrefixInterface{nlri})
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pattr = append(pattr, mpnlri)
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default:
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log.WithFields(log.Fields{
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"Topic": "Zebra",
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}).Errorf("unsupport address family: %s", family)
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return nil
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}
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med := bgp.NewPathAttributeMultiExitDisc(body.Metric)
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pattr = append(pattr, med)
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path := table.NewPath(nil, nlri, isWithdraw, pattr, time.Now(), false)
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path.SetIsFromExternal(true)
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return path
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}
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type zebraClient struct {
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client *zebra.Client
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server *BgpServer
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dead chan struct{}
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}
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func (z *zebraClient) stop() {
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close(z.dead)
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}
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func (z *zebraClient) loop() {
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w := z.server.Watch(WatchBestPath())
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defer func() { w.Stop() }()
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for {
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select {
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case <-z.dead:
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return
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case msg := <-z.client.Receive():
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switch msg.Body.(type) {
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case *zebra.IPRouteBody:
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if p := createPathFromIPRouteMessage(msg); p != nil {
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if _, err := z.server.AddPath("", []*table.Path{p}); err != nil {
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log.Errorf("failed to add path from zebra: %s", p)
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}
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}
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}
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case ev := <-w.Event():
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msg := ev.(*WatchEventBestPath)
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if table.UseMultiplePaths.Enabled {
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for _, dst := range msg.MultiPathList {
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if m := newIPRouteMessage(dst, z.client.Version, 0); m != nil {
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z.client.Send(m)
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}
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}
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} else {
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for _, path := range msg.PathList {
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if len(path.VrfIds) == 0 {
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path.VrfIds = []uint16{0}
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}
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for _, i := range path.VrfIds {
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if m := newIPRouteMessage([]*table.Path{path}, z.client.Version, i); m != nil {
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z.client.Send(m)
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}
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}
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}
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}
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}
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}
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}
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func newZebraClient(s *BgpServer, url string, protos []string, version uint8) (*zebraClient, error) {
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l := strings.SplitN(url, ":", 2)
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if len(l) != 2 {
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return nil, fmt.Errorf("unsupported url: %s", url)
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}
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cli, err := zebra.NewClient(l[0], l[1], zebra.ROUTE_BGP, version)
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if err != nil {
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return nil, err
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}
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cli.SendHello()
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cli.SendRouterIDAdd()
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cli.SendInterfaceAdd()
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for _, typ := range protos {
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t, err := zebra.RouteTypeFromString(typ)
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if err != nil {
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return nil, err
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}
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cli.SendRedistribute(t, zebra.VRF_DEFAULT)
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}
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w := &zebraClient{
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dead: make(chan struct{}),
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client: cli,
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server: s,
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}
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go w.loop()
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return w, nil
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}
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