mirror of
https://github.com/vishvananda/netlink
synced 2024-12-28 01:22:18 +00:00
12f4097df1
Signed-off-by: Alexander Morozov <lk4d4@docker.com>
182 lines
4.9 KiB
Go
182 lines
4.9 KiB
Go
package netlink
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import (
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"fmt"
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"syscall"
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"github.com/vishvananda/netlink/nl"
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)
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func writeStateAlgo(a *XfrmStateAlgo) []byte {
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algo := nl.XfrmAlgo{
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AlgKeyLen: uint32(len(a.Key) * 8),
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AlgKey: a.Key,
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}
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end := len(a.Name)
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if end > 64 {
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end = 64
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}
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copy(algo.AlgName[:end], a.Name)
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return algo.Serialize()
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}
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func writeStateAlgoAuth(a *XfrmStateAlgo) []byte {
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algo := nl.XfrmAlgoAuth{
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AlgKeyLen: uint32(len(a.Key) * 8),
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AlgTruncLen: uint32(a.TruncateLen),
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AlgKey: a.Key,
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}
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end := len(a.Name)
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if end > 64 {
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end = 64
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}
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copy(algo.AlgName[:end], a.Name)
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return algo.Serialize()
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}
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// XfrmStateAdd will add an xfrm state to the system.
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// Equivalent to: `ip xfrm state add $state`
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func XfrmStateAdd(state *XfrmState) error {
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// A state with spi 0 can't be deleted so don't allow it to be set
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if state.Spi == 0 {
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return fmt.Errorf("Spi must be set when adding xfrm state.")
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}
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req := nl.NewNetlinkRequest(nl.XFRM_MSG_NEWSA, syscall.NLM_F_CREATE|syscall.NLM_F_EXCL|syscall.NLM_F_ACK)
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msg := &nl.XfrmUsersaInfo{}
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msg.Family = uint16(nl.GetIPFamily(state.Dst))
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msg.Id.Daddr.FromIP(state.Dst)
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msg.Saddr.FromIP(state.Src)
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msg.Id.Proto = uint8(state.Proto)
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msg.Mode = uint8(state.Mode)
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msg.Id.Spi = nl.Swap32(uint32(state.Spi))
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msg.Reqid = uint32(state.Reqid)
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msg.ReplayWindow = uint8(state.ReplayWindow)
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msg.Lft.SoftByteLimit = nl.XFRM_INF
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msg.Lft.HardByteLimit = nl.XFRM_INF
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msg.Lft.SoftPacketLimit = nl.XFRM_INF
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msg.Lft.HardPacketLimit = nl.XFRM_INF
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req.AddData(msg)
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if state.Auth != nil {
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out := nl.NewRtAttr(nl.XFRMA_ALG_AUTH_TRUNC, writeStateAlgoAuth(state.Auth))
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req.AddData(out)
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}
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if state.Crypt != nil {
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out := nl.NewRtAttr(nl.XFRMA_ALG_CRYPT, writeStateAlgo(state.Crypt))
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req.AddData(out)
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}
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if state.Encap != nil {
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encapData := make([]byte, nl.SizeofXfrmEncapTmpl)
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encap := nl.DeserializeXfrmEncapTmpl(encapData)
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encap.EncapType = uint16(state.Encap.Type)
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encap.EncapSport = nl.Swap16(uint16(state.Encap.SrcPort))
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encap.EncapDport = nl.Swap16(uint16(state.Encap.DstPort))
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encap.EncapOa.FromIP(state.Encap.OriginalAddress)
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out := nl.NewRtAttr(nl.XFRMA_ENCAP, encapData)
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req.AddData(out)
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}
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_, err := req.Execute(syscall.NETLINK_XFRM, 0)
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return err
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}
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// XfrmStateDel will delete an xfrm state from the system. Note that
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// the Algos are ignored when matching the state to delete.
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// Equivalent to: `ip xfrm state del $state`
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func XfrmStateDel(state *XfrmState) error {
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req := nl.NewNetlinkRequest(nl.XFRM_MSG_DELSA, syscall.NLM_F_ACK)
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msg := &nl.XfrmUsersaId{}
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msg.Daddr.FromIP(state.Dst)
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msg.Family = uint16(nl.GetIPFamily(state.Dst))
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msg.Proto = uint8(state.Proto)
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msg.Spi = nl.Swap32(uint32(state.Spi))
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req.AddData(msg)
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saddr := nl.XfrmAddress{}
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saddr.FromIP(state.Src)
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srcdata := nl.NewRtAttr(nl.XFRMA_SRCADDR, saddr.Serialize())
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req.AddData(srcdata)
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_, err := req.Execute(syscall.NETLINK_XFRM, 0)
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return err
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}
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// XfrmStateList gets a list of xfrm states in the system.
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// Equivalent to: `ip xfrm state show`.
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// The list can be filtered by ip family.
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func XfrmStateList(family int) ([]XfrmState, error) {
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req := nl.NewNetlinkRequest(nl.XFRM_MSG_GETSA, syscall.NLM_F_DUMP)
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msg := nl.NewIfInfomsg(family)
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req.AddData(msg)
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msgs, err := req.Execute(syscall.NETLINK_XFRM, nl.XFRM_MSG_NEWSA)
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if err != nil {
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return nil, err
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}
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var res []XfrmState
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for _, m := range msgs {
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msg := nl.DeserializeXfrmUsersaInfo(m)
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if family != FAMILY_ALL && family != int(msg.Family) {
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continue
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}
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var state XfrmState
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state.Dst = msg.Id.Daddr.ToIP()
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state.Src = msg.Saddr.ToIP()
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state.Proto = Proto(msg.Id.Proto)
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state.Mode = Mode(msg.Mode)
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state.Spi = int(nl.Swap32(msg.Id.Spi))
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state.Reqid = int(msg.Reqid)
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state.ReplayWindow = int(msg.ReplayWindow)
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attrs, err := nl.ParseRouteAttr(m[msg.Len():])
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if err != nil {
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return 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 nl.XFRMA_ALG_AUTH, nl.XFRMA_ALG_CRYPT:
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var resAlgo *XfrmStateAlgo
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if attr.Attr.Type == nl.XFRMA_ALG_AUTH {
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if state.Auth == nil {
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state.Auth = new(XfrmStateAlgo)
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}
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resAlgo = state.Auth
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} else {
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state.Crypt = new(XfrmStateAlgo)
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resAlgo = state.Crypt
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}
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algo := nl.DeserializeXfrmAlgo(attr.Value[:])
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(*resAlgo).Name = nl.BytesToString(algo.AlgName[:])
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(*resAlgo).Key = algo.AlgKey
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case nl.XFRMA_ALG_AUTH_TRUNC:
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if state.Auth == nil {
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state.Auth = new(XfrmStateAlgo)
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}
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algo := nl.DeserializeXfrmAlgoAuth(attr.Value[:])
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state.Auth.Name = nl.BytesToString(algo.AlgName[:])
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state.Auth.Key = algo.AlgKey
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state.Auth.TruncateLen = int(algo.AlgTruncLen)
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case nl.XFRMA_ENCAP:
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encap := nl.DeserializeXfrmEncapTmpl(attr.Value[:])
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state.Encap = new(XfrmStateEncap)
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state.Encap.Type = EncapType(encap.EncapType)
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state.Encap.SrcPort = int(nl.Swap16(encap.EncapSport))
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state.Encap.DstPort = int(nl.Swap16(encap.EncapDport))
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state.Encap.OriginalAddress = encap.EncapOa.ToIP()
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}
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}
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res = append(res, state)
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}
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return res, nil
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}
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