mirror of https://github.com/vishvananda/netlink
209 lines
3.7 KiB
Go
209 lines
3.7 KiB
Go
package netlink
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import (
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"bytes"
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"encoding/binary"
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"fmt"
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"os"
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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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"golang.org/x/sys/unix"
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)
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const CN_IDX_PROC = 0x1
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const (
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PROC_EVENT_NONE = 0x00000000
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PROC_EVENT_FORK = 0x00000001
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PROC_EVENT_EXEC = 0x00000002
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PROC_EVENT_UID = 0x00000004
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PROC_EVENT_GID = 0x00000040
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PROC_EVENT_SID = 0x00000080
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PROC_EVENT_PTRACE = 0x00000100
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PROC_EVENT_COMM = 0x00000200
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PROC_EVENT_COREDUMP = 0x40000000
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PROC_EVENT_EXIT = 0x80000000
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)
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const (
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CN_VAL_PROC = 0x1
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PROC_CN_MCAST_LISTEN = 0x1
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)
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type ProcEventMsg interface {
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Pid() uint32
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Tgid() uint32
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}
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type ProcEventHeader struct {
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What uint32
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CPU uint32
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Timestamp uint64
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}
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type ProcEvent struct {
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ProcEventHeader
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Msg ProcEventMsg
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}
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func (pe *ProcEvent) setHeader(h ProcEventHeader) {
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pe.What = h.What
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pe.CPU = h.CPU
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pe.Timestamp = h.Timestamp
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}
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type ExitProcEvent struct {
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ProcessPid uint32
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ProcessTgid uint32
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ExitCode uint32
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ExitSignal uint32
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ParentPid uint32
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ParentTgid uint32
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}
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func (e *ExitProcEvent) Pid() uint32 {
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return e.ProcessPid
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}
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func (e *ExitProcEvent) Tgid() uint32 {
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return e.ProcessTgid
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}
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type ExecProcEvent struct {
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ProcessPid uint32
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ProcessTgid uint32
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}
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func (e *ExecProcEvent) Pid() uint32 {
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return e.ProcessPid
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}
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func (e *ExecProcEvent) Tgid() uint32 {
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return e.ProcessTgid
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}
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type ForkProcEvent struct {
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ParentPid uint32
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ParentTgid uint32
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ChildPid uint32
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ChildTgid uint32
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}
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func (e *ForkProcEvent) Pid() uint32 {
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return e.ParentPid
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}
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func (e *ForkProcEvent) Tgid() uint32 {
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return e.ParentTgid
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}
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type CommProcEvent struct {
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ProcessPid uint32
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ProcessTgid uint32
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Comm [16]byte
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}
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func (e *CommProcEvent) Pid() uint32 {
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return e.ProcessPid
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}
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func (e *CommProcEvent) Tgid() uint32 {
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return e.ProcessTgid
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}
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func ProcEventMonitor(ch chan<- ProcEvent, done <-chan struct{}, errorChan chan<- error) error {
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h, err := NewHandle()
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if err != nil {
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return err
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}
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defer h.Delete()
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s, err := nl.SubscribeAt(netns.None(), netns.None(), unix.NETLINK_CONNECTOR, CN_IDX_PROC)
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if err != nil {
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return err
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}
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var nlmsg nl.NetlinkRequest
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nlmsg.Pid = uint32(os.Getpid())
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nlmsg.Type = unix.NLMSG_DONE
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nlmsg.Len = uint32(unix.SizeofNlMsghdr)
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cm := nl.NewCnMsg(CN_IDX_PROC, CN_VAL_PROC, PROC_CN_MCAST_LISTEN)
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nlmsg.AddData(cm)
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s.Send(&nlmsg)
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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, from, err := s.Receive()
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if err != nil {
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errorChan <- err
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return
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}
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if from.Pid != nl.PidKernel {
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errorChan <- fmt.Errorf("Wrong sender portid %d, expected %d", from.Pid, nl.PidKernel)
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return
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}
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for _, m := range msgs {
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e := parseNetlinkMessage(m)
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if e != nil {
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ch <- *e
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}
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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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func parseNetlinkMessage(m syscall.NetlinkMessage) *ProcEvent {
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if m.Header.Type == unix.NLMSG_DONE {
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buf := bytes.NewBuffer(m.Data)
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msg := &nl.CnMsg{}
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hdr := &ProcEventHeader{}
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binary.Read(buf, nl.NativeEndian(), msg)
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binary.Read(buf, nl.NativeEndian(), hdr)
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pe := &ProcEvent{}
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pe.setHeader(*hdr)
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switch hdr.What {
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case PROC_EVENT_EXIT:
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event := &ExitProcEvent{}
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binary.Read(buf, nl.NativeEndian(), event)
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pe.Msg = event
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return pe
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case PROC_EVENT_FORK:
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event := &ForkProcEvent{}
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binary.Read(buf, nl.NativeEndian(), event)
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pe.Msg = event
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return pe
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case PROC_EVENT_EXEC:
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event := &ExecProcEvent{}
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binary.Read(buf, nl.NativeEndian(), event)
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pe.Msg = event
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return pe
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case PROC_EVENT_COMM:
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event := &CommProcEvent{}
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binary.Read(buf, nl.NativeEndian(), event)
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pe.Msg = event
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return pe
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}
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return nil
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}
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return nil
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}
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