add correct authentication with HMAC

This commit is contained in:
zelig 2015-01-23 12:44:57 +00:00
parent a4b4f680a1
commit 2f00e5cad1
5 changed files with 28 additions and 28 deletions

View file

@ -150,7 +150,7 @@ func (self *cryptoId) NewSession(r io.Reader, w io.Writer, remotePubKeyS []byte,
}
clogger.Debugf("receiver handshake (sent to %v):\n%v", hexkey(remotePubKeyS), hexkey(response))
}
return self.newSession(r, w, initNonce, recNonce, auth, randomPrivKey, remoteRandomPubKey)
return self.newSession(r, w, initiator, initNonce, recNonce, auth, randomPrivKey, remoteRandomPubKey)
}
/*
@ -357,7 +357,7 @@ func (self *cryptoId) completeHandshake(auth []byte) (respNonce []byte, remoteRa
/*
newSession is called after the handshake is completed. The arguments are values negotiated in the handshake and the return value is a new session : a new session Token to be remembered for the next time we connect with this peer. And a MsgReadWriter that implements an encrypted and authenticated connection with key material obtained from the crypto handshake key exchange
*/
func (self *cryptoId) newSession(r io.Reader, w io.Writer, initNonce, respNonce, auth []byte, privKey *ecdsa.PrivateKey, remoteRandomPubKey *ecdsa.PublicKey) (sessionToken []byte, rw MsgReadWriter, err error) {
func (self *cryptoId) newSession(r io.Reader, w io.Writer, initiator bool, initNonce, respNonce, auth []byte, privKey *ecdsa.PrivateKey, remoteRandomPubKey *ecdsa.PublicKey) (sessionToken []byte, rw MsgReadWriter, err error) {
// 3) Now we can trust ecdhe-random-pubk to derive new keys
//ecdhe-shared-secret = ecdh.agree(ecdhe-random, remote-ecdhe-random-pubk)
var dhSharedSecret []byte
@ -375,13 +375,14 @@ func (self *cryptoId) newSession(r io.Reader, w io.Writer, initNonce, respNonce,
// mac-secret = crypto.Sha3(ecdhe-shared-secret || aes-secret)
var macSecret = crypto.Sha3(append(dhSharedSecret, aesSecret...))
// # destroy ecdhe-shared-secret
// egress-mac = crypto.Sha3(mac-secret^nonce || auth)
var egressMac = crypto.Sha3(append(Xor(macSecret, respNonce), auth...))
// # destroy nonce
// ingress-mac = crypto.Sha3(mac-secret^initiator-nonce || auth),
var ingressMac = crypto.Sha3(append(Xor(macSecret, initNonce), auth...))
// # destroy remote-nonce
var egressMac, ingressMac []byte
if initiator {
egressMac = Xor(macSecret, respNonce)
ingressMac = Xor(macSecret, initNonce)
} else {
egressMac = Xor(macSecret, initNonce)
ingressMac = Xor(macSecret, respNonce)
}
clogger.Debugf("aes-secret: %v", hexkey(aesSecret))
clogger.Debugf("mac-secret: %v", hexkey(macSecret))
clogger.Debugf("egress-mac: %v", hexkey(egressMac))

View file

@ -109,12 +109,12 @@ func TestCryptoHandshake(t *testing.T) {
conn0, conn1 := net.Pipe()
// now both parties should have the same session parameters
initSessionToken, initRW, err := initiator.newSession(bufio.NewReader(conn0), conn0, initNonce, recNonce, auth, randomPrivKey, remoteRandomPubKey)
initSessionToken, initRW, err := initiator.newSession(bufio.NewReader(conn0), conn0, true, initNonce, recNonce, auth, randomPrivKey, remoteRandomPubKey)
if err != nil {
t.Errorf("%v", err)
}
recSessionToken, recRW, err := receiver.newSession(bufio.NewReader(conn1), conn1, remoteInitNonce, remoteRecNonce, auth, remoteRandomPrivKey, remoteInitRandomPubKey)
recSessionToken, recRW, err := receiver.newSession(bufio.NewReader(conn1), conn1, false, remoteInitNonce, remoteRecNonce, auth, remoteRandomPrivKey, remoteInitRandomPubKey)
if err != nil {
t.Errorf("%v", err)
}
@ -149,11 +149,11 @@ func TestCryptoHandshake(t *testing.T) {
if !bytes.Equal(initSecretRW.macSecret, recSecretRW.macSecret) {
t.Errorf("macSecrets do not match")
}
if !bytes.Equal(initSecretRW.egressMac, recSecretRW.egressMac) {
t.Errorf("egressMacs do not match")
if !bytes.Equal(initSecretRW.egressMac, recSecretRW.ingressMac) {
t.Errorf("initiator's egressMac do not match receiver's ingressMac")
}
if !bytes.Equal(initSecretRW.ingressMac, recSecretRW.ingressMac) {
t.Errorf("ingressMacs do not match")
if !bytes.Equal(initSecretRW.ingressMac, recSecretRW.egressMac) {
t.Errorf("initiator's inressMac do not match receiver's egressMac")
}
}

View file

@ -7,11 +7,9 @@ import (
"crypto/hmac"
"crypto/sha256"
"encoding/binary"
"fmt"
"hash"
"io"
// "github.com/ethereum/go-ethereum/crypto/sha256"
"github.com/ethereum/go-ethereum/ethutil"
"github.com/ethereum/go-ethereum/rlp"
)
@ -82,11 +80,11 @@ func (self *CryptoMsgRW) WriteMsg(msg Msg) (err error) {
copy(plaintext[listhdrLen:], code)
msg.Payload.Read(plaintext[listhdrLen+codeLen:])
self.Encrypt(ciphertext, plaintext)
fmt.Printf("ENCRYPT:\npt: %v\nct: %v\n", hexkey(plaintext), hexkey(ciphertext))
if _, err = self.w.Write(ciphertext); err != nil {
return
}
if _, err = self.w.Write(self.egress.Sum(nil)); err != nil {
mac := self.egress.Sum(nil)
if _, err = self.w.Write(mac); err != nil {
return
}
@ -130,18 +128,16 @@ func (self *CryptoMsgRW) readPayload(size uint32) (r rlp.ByteReader, err error)
ciphertext := make([]byte, size)
self.r.Read(ciphertext)
self.Decrypt(plaintext, ciphertext)
fmt.Printf("DECRYPT:\npt: %v\nct: %v\n", hexkey(plaintext), hexkey(ciphertext))
mac := make([]byte, 32)
if _, err = self.r.Read(mac); err != nil {
err = newPeerError(errRead, "%v", err)
return
}
// var expectedMac = self.ingress.Sum(nil)
// if !hmac.Equal(expectedMac, mac) {
// err = newPeerError(errAuthentication, "ingress incorrect")
// return
// }
var expectedMac = self.ingress.Sum(nil)
if !hmac.Equal(expectedMac, mac) {
err = newPeerError(errAuthentication, "ingress incorrect:\nexp %v\ngot %v\n", hexkey(expectedMac), hexkey(mac))
return
}
r = bytes.NewReader(plaintext)
// r = io.LimitReader(bytes.NewReader(plaintext), int64(size))
return
}

View file

@ -4,7 +4,6 @@ import (
"bufio"
"bytes"
"crypto/rand"
// "fmt"
"io"
"net"
"testing"
@ -47,7 +46,8 @@ func TestEncryption(t *testing.T) {
}
messenger0 := NewMessenger(rw0)
rw1, err := NewCryptoMsgRW(bufio.NewReader(conn1), conn1, args[0], args[1], args[2], args[3])
// note that args 3/2 swapped! ingress <-> egress MAC should reverse
rw1, err := NewCryptoMsgRW(bufio.NewReader(conn1), conn1, args[0], args[1], args[3], args[2])
if err != nil {
return
}

View file

@ -321,6 +321,8 @@ func (p *Peer) handleCryptoHandshake() (err error) {
if crw, err = NewMsgRW(bufio.NewReader(p.conn), p.conn); err != nil {
return
}
p.Infof("insecure connection using no encryption/authentication")
case EthCrypto:
// cryptoId is just created for the lifecycle of the handshake
// it is survived by an encrypted readwriter
@ -350,6 +352,7 @@ func (p *Peer) handleCryptoHandshake() (err error) {
p.Errorf("%v", err)
}
p.crw = NewMessenger(crw)
p.Infof("secure connection using %v", p.CryptoType)
return
}