2014-09-19 02:04:48 +00:00
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package nl
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2014-09-01 03:27:34 +00:00
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import (
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"bytes"
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"crypto/rand"
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"encoding/binary"
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"testing"
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)
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func (msg *XfrmUsersaId) write(b []byte) {
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2014-09-19 02:04:48 +00:00
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native := NativeEndian()
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2014-09-01 03:27:34 +00:00
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msg.Daddr.write(b[0:SizeofXfrmAddress])
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native.PutUint32(b[SizeofXfrmAddress:SizeofXfrmAddress+4], msg.Spi)
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native.PutUint16(b[SizeofXfrmAddress+4:SizeofXfrmAddress+6], msg.Family)
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b[SizeofXfrmAddress+6] = msg.Proto
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b[SizeofXfrmAddress+7] = msg.Pad
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}
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func (msg *XfrmUsersaId) serializeSafe() []byte {
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b := make([]byte, SizeofXfrmUsersaId)
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msg.write(b)
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return b
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}
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func deserializeXfrmUsersaIdSafe(b []byte) *XfrmUsersaId {
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var msg = XfrmUsersaId{}
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2014-09-19 02:04:48 +00:00
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binary.Read(bytes.NewReader(b[0:SizeofXfrmUsersaId]), NativeEndian(), &msg)
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2014-09-01 03:27:34 +00:00
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return &msg
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}
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func TestXfrmUsersaIdDeserializeSerialize(t *testing.T) {
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var orig = make([]byte, SizeofXfrmUsersaId)
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rand.Read(orig)
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safemsg := deserializeXfrmUsersaIdSafe(orig)
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msg := DeserializeXfrmUsersaId(orig)
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testDeserializeSerialize(t, orig, safemsg, msg)
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}
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func (msg *XfrmStats) write(b []byte) {
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2014-09-19 02:04:48 +00:00
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native := NativeEndian()
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2014-09-01 03:27:34 +00:00
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native.PutUint32(b[0:4], msg.ReplayWindow)
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native.PutUint32(b[4:8], msg.Replay)
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native.PutUint32(b[8:12], msg.IntegrityFailed)
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}
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func (msg *XfrmStats) serializeSafe() []byte {
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b := make([]byte, SizeofXfrmStats)
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msg.write(b)
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return b
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}
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func deserializeXfrmStatsSafe(b []byte) *XfrmStats {
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var msg = XfrmStats{}
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2014-09-19 02:04:48 +00:00
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binary.Read(bytes.NewReader(b[0:SizeofXfrmStats]), NativeEndian(), &msg)
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2014-09-01 03:27:34 +00:00
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return &msg
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}
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func TestXfrmStatsDeserializeSerialize(t *testing.T) {
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var orig = make([]byte, SizeofXfrmStats)
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rand.Read(orig)
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safemsg := deserializeXfrmStatsSafe(orig)
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msg := DeserializeXfrmStats(orig)
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testDeserializeSerialize(t, orig, safemsg, msg)
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}
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func (msg *XfrmUsersaInfo) write(b []byte) {
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const IdEnd = SizeofXfrmSelector + SizeofXfrmId
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const AddressEnd = IdEnd + SizeofXfrmAddress
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const CfgEnd = AddressEnd + SizeofXfrmLifetimeCfg
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const CurEnd = CfgEnd + SizeofXfrmLifetimeCur
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const StatsEnd = CurEnd + SizeofXfrmStats
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2014-09-19 02:04:48 +00:00
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native := NativeEndian()
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2014-09-01 03:27:34 +00:00
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msg.Sel.write(b[0:SizeofXfrmSelector])
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msg.Id.write(b[SizeofXfrmSelector:IdEnd])
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msg.Saddr.write(b[IdEnd:AddressEnd])
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msg.Lft.write(b[AddressEnd:CfgEnd])
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msg.Curlft.write(b[CfgEnd:CurEnd])
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msg.Stats.write(b[CurEnd:StatsEnd])
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native.PutUint32(b[StatsEnd:StatsEnd+4], msg.Seq)
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native.PutUint32(b[StatsEnd+4:StatsEnd+8], msg.Reqid)
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native.PutUint16(b[StatsEnd+8:StatsEnd+10], msg.Family)
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b[StatsEnd+10] = msg.Mode
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b[StatsEnd+11] = msg.ReplayWindow
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b[StatsEnd+12] = msg.Flags
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copy(b[StatsEnd+13:StatsEnd+20], msg.Pad[:])
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}
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func (msg *XfrmUsersaInfo) serializeSafe() []byte {
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b := make([]byte, SizeofXfrmUsersaInfo)
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msg.write(b)
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return b
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}
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func deserializeXfrmUsersaInfoSafe(b []byte) *XfrmUsersaInfo {
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var msg = XfrmUsersaInfo{}
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2014-09-19 02:04:48 +00:00
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binary.Read(bytes.NewReader(b[0:SizeofXfrmUsersaInfo]), NativeEndian(), &msg)
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2014-09-01 03:27:34 +00:00
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return &msg
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}
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func TestXfrmUsersaInfoDeserializeSerialize(t *testing.T) {
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var orig = make([]byte, SizeofXfrmUsersaInfo)
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rand.Read(orig)
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safemsg := deserializeXfrmUsersaInfoSafe(orig)
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msg := DeserializeXfrmUsersaInfo(orig)
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testDeserializeSerialize(t, orig, safemsg, msg)
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}
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func (msg *XfrmAlgo) write(b []byte) {
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2014-09-19 02:04:48 +00:00
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native := NativeEndian()
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2014-09-01 03:27:34 +00:00
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copy(b[0:64], msg.AlgName[:])
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native.PutUint32(b[64:68], msg.AlgKeyLen)
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copy(b[68:msg.Len()], msg.AlgKey[:])
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}
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func (msg *XfrmAlgo) serializeSafe() []byte {
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b := make([]byte, msg.Len())
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msg.write(b)
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return b
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}
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func deserializeXfrmAlgoSafe(b []byte) *XfrmAlgo {
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var msg = XfrmAlgo{}
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copy(msg.AlgName[:], b[0:64])
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2014-09-19 02:04:48 +00:00
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binary.Read(bytes.NewReader(b[64:68]), NativeEndian(), &msg.AlgKeyLen)
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2014-09-01 03:27:34 +00:00
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msg.AlgKey = b[68:msg.Len()]
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return &msg
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}
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func TestXfrmAlgoDeserializeSerialize(t *testing.T) {
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// use a 32 byte key len
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var orig = make([]byte, SizeofXfrmAlgo+32)
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rand.Read(orig)
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// set the key len to 256 bits
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orig[64] = 0
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orig[65] = 1
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orig[66] = 0
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orig[67] = 0
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safemsg := deserializeXfrmAlgoSafe(orig)
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msg := DeserializeXfrmAlgo(orig)
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testDeserializeSerialize(t, orig, safemsg, msg)
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}
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func (msg *XfrmAlgoAuth) write(b []byte) {
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2014-09-19 02:04:48 +00:00
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native := NativeEndian()
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2014-09-01 03:27:34 +00:00
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copy(b[0:64], msg.AlgName[:])
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native.PutUint32(b[64:68], msg.AlgKeyLen)
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native.PutUint32(b[68:72], msg.AlgTruncLen)
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copy(b[72:msg.Len()], msg.AlgKey[:])
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}
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func (msg *XfrmAlgoAuth) serializeSafe() []byte {
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b := make([]byte, msg.Len())
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msg.write(b)
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return b
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}
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func deserializeXfrmAlgoAuthSafe(b []byte) *XfrmAlgoAuth {
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var msg = XfrmAlgoAuth{}
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copy(msg.AlgName[:], b[0:64])
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2014-09-19 02:04:48 +00:00
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binary.Read(bytes.NewReader(b[64:68]), NativeEndian(), &msg.AlgKeyLen)
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binary.Read(bytes.NewReader(b[68:72]), NativeEndian(), &msg.AlgTruncLen)
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2014-09-01 03:27:34 +00:00
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msg.AlgKey = b[72:msg.Len()]
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return &msg
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}
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func TestXfrmAlgoAuthDeserializeSerialize(t *testing.T) {
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// use a 32 byte key len
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var orig = make([]byte, SizeofXfrmAlgoAuth+32)
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rand.Read(orig)
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// set the key len to 256 bits
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orig[64] = 0
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orig[65] = 1
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orig[66] = 0
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orig[67] = 0
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safemsg := deserializeXfrmAlgoAuthSafe(orig)
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msg := DeserializeXfrmAlgoAuth(orig)
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testDeserializeSerialize(t, orig, safemsg, msg)
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}
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2014-09-16 00:04:48 +00:00
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func (msg *XfrmEncapTmpl) write(b []byte) {
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2014-09-19 02:04:48 +00:00
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native := NativeEndian()
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2014-09-16 00:04:48 +00:00
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native.PutUint16(b[0:2], msg.EncapType)
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native.PutUint16(b[2:4], msg.EncapSport)
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native.PutUint16(b[4:6], msg.EncapDport)
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copy(b[6:8], msg.Pad[:])
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msg.EncapOa.write(b[8:SizeofXfrmAddress])
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}
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func (msg *XfrmEncapTmpl) serializeSafe() []byte {
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b := make([]byte, SizeofXfrmEncapTmpl)
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msg.write(b)
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return b
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}
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func deserializeXfrmEncapTmplSafe(b []byte) *XfrmEncapTmpl {
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var msg = XfrmEncapTmpl{}
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2014-09-19 02:04:48 +00:00
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binary.Read(bytes.NewReader(b[0:SizeofXfrmEncapTmpl]), NativeEndian(), &msg)
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2014-09-16 00:04:48 +00:00
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return &msg
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}
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func TestXfrmEncapTmplDeserializeSerialize(t *testing.T) {
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var orig = make([]byte, SizeofXfrmEncapTmpl)
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rand.Read(orig)
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safemsg := deserializeXfrmEncapTmplSafe(orig)
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msg := DeserializeXfrmEncapTmpl(orig)
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testDeserializeSerialize(t, orig, safemsg, msg)
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}
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2016-05-01 03:31:59 +00:00
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func (msg *XfrmMark) write(b []byte) {
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native := NativeEndian()
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native.PutUint32(b[0:4], msg.Value)
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native.PutUint32(b[4:8], msg.Mask)
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}
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func (msg *XfrmMark) serializeSafe() []byte {
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b := make([]byte, SizeofXfrmMark)
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msg.write(b)
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return b
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}
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func deserializeXfrmMarkSafe(b []byte) *XfrmMark {
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var msg = XfrmMark{}
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binary.Read(bytes.NewReader(b[0:SizeofXfrmMark]), NativeEndian(), &msg)
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return &msg
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}
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func TestXfrmMarkDeserializeSerialize(t *testing.T) {
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var orig = make([]byte, SizeofXfrmMark)
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rand.Read(orig)
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safemsg := deserializeXfrmMarkSafe(orig)
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msg := DeserializeXfrmMark(orig)
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testDeserializeSerialize(t, orig, safemsg, msg)
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}
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