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m_nat.go
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m_nat.go
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package tc
import (
"fmt"
"github.com/mdlayher/netlink"
)
const (
tcaNatUnspec = iota
tcaNatParms
tcaNatTm
tcaNatPad
)
// Nat contains attribute of the nat discipline
type Nat struct {
Parms *NatParms
Tm *Tcft
}
// NatParms from from include/uapi/linux/tc_act/tc_nat.h
type NatParms struct {
Index uint32
Capab uint32
Action uint32
RefCnt uint32
BindCnt uint32
OldAddr uint32
NewAddr uint32
Mask uint32
Flags uint32
}
// marshalNat returns the binary encoding of Ife
func marshalNat(info *Nat) ([]byte, error) {
options := []tcOption{}
if info == nil {
return []byte{}, fmt.Errorf("Nat: %w", ErrNoArg)
}
// TODO: improve logic and check combinations
if info.Tm != nil {
return []byte{}, ErrNoArgAlter
}
if info.Parms != nil {
data, err := marshalStruct(info.Parms)
if err != nil {
return []byte{}, err
}
options = append(options, tcOption{Interpretation: vtBytes, Type: tcaNatParms, Data: data})
}
return marshalAttributes(options)
}
// unmarshalNat parses the nat-encoded data and stores the result in the value pointed to by info.
func unmarshalNat(data []byte, info *Nat) error {
ad, err := netlink.NewAttributeDecoder(data)
if err != nil {
return err
}
ad.ByteOrder = nativeEndian
for ad.Next() {
switch ad.Type() {
case tcaNatParms:
parms := &NatParms{}
if err := unmarshalStruct(ad.Bytes(), parms); err != nil {
return err
}
info.Parms = parms
case tcaNatTm:
tcft := &Tcft{}
if err := unmarshalStruct(ad.Bytes(), tcft); err != nil {
return err
}
info.Tm = tcft
case tcaNatPad:
// padding does not contain data, we just skip it
default:
return fmt.Errorf("unmarshalNat()\t%d\n\t%v", ad.Type(), ad.Bytes())
}
}
return nil
}