whisper: message format changed

This commit is contained in:
Vlad 2018-01-09 17:22:07 +02:00
parent a1c4361d75
commit 74eebe8fca
3 changed files with 13 additions and 81 deletions

View file

@ -198,29 +198,25 @@ func (e *Envelope) OpenSymmetric(key []byte) (msg *ReceivedMessage, err error) {
// Open tries to decrypt an envelope, and populates the message fields in case of success. // Open tries to decrypt an envelope, and populates the message fields in case of success.
func (e *Envelope) Open(watcher *Filter) (msg *ReceivedMessage) { func (e *Envelope) Open(watcher *Filter) (msg *ReceivedMessage) {
// The API interface forbids filters doing both symmetric and // The API interface forbids filters doing both symmetric and asymmetric encryption.
// asymmetric encryption.
if watcher.expectsAsymmetricEncryption() && watcher.expectsSymmetricEncryption() { if watcher.expectsAsymmetricEncryption() && watcher.expectsSymmetricEncryption() {
return nil return nil
} }
var symmetric bool
if watcher.expectsAsymmetricEncryption() { if watcher.expectsAsymmetricEncryption() {
msg, _ = e.OpenAsymmetric(watcher.KeyAsym) msg, _ = e.OpenAsymmetric(watcher.KeyAsym)
if msg != nil { if msg != nil {
symmetric = false
msg.Dst = &watcher.KeyAsym.PublicKey msg.Dst = &watcher.KeyAsym.PublicKey
} }
} else if watcher.expectsSymmetricEncryption() { } else if watcher.expectsSymmetricEncryption() {
msg, _ = e.OpenSymmetric(watcher.KeySym) msg, _ = e.OpenSymmetric(watcher.KeySym)
if msg != nil { if msg != nil {
symmetric = true
msg.SymKeyHash = crypto.Keccak256Hash(watcher.KeySym) msg.SymKeyHash = crypto.Keccak256Hash(watcher.KeySym)
} }
} }
if msg != nil { if msg != nil {
ok := msg.ValidateAndParse(symmetric) ok := msg.ValidateAndParse()
if !ok { if !ok {
return nil return nil
} }

View file

@ -101,22 +101,13 @@ func NewSentMessage(params *MessageParams) (*sentMessage, error) {
// appendPayloadSizeField appends the auxiliary field containing the size of payload // appendPayloadSizeField appends the auxiliary field containing the size of payload
func (msg *sentMessage) addPayloadSizeField(payload []byte) { func (msg *sentMessage) addPayloadSizeField(payload []byte) {
fieldSize := getAuxFieldSize(payload) fieldSize := getAuxFieldSize(payload)
field := make([]byte, fieldSize) field := make([]byte, 4)
binary.LittleEndian.PutUint32(field, uint32(len(payload))) binary.LittleEndian.PutUint32(field, uint32(len(payload)))
field = field[:fieldSize]
msg.Raw = append(msg.Raw, field...) msg.Raw = append(msg.Raw, field...)
msg.Raw[0] |= byte(fieldSize) msg.Raw[0] |= byte(fieldSize)
} }
// getSizeOfLength returns the number of bytes necessary to encode the size of padding
//func getAuxFieldSize(payload []byte) (sz int, err error) {
// sz = intSize(len(b)) // first iteration
// sz = intSize(len(b) + sz) // second iteration
// if sz > 3 {
// err = errors.New("oversized padding parameter")
// }
// return sz, err
//}
// getAuxFieldSize returns the number of bytes necessary to encode the size of payload // getAuxFieldSize returns the number of bytes necessary to encode the size of payload
func getAuxFieldSize(payload []byte) int { func getAuxFieldSize(payload []byte) int {
s := 1 s := 1
@ -144,29 +135,7 @@ func (msg *sentMessage) appendPadding(params *MessageParams) error {
rawSize += AESNonceLength rawSize += AESNonceLength
} }
odd := rawSize % padSizeLimit odd := rawSize % padSizeLimit
//if len(params.Padding) != 0 {
// // padding data was provided by the Dapp, just use it as is
// padSize := len(params.Padding)
// padLengthSize, err := intSize(len(params.Padding))
// if err != nil {
// return err
// }
// totalPadSize := padSize + padLengthSize
// buf := make([]byte, 8)
// binary.LittleEndian.PutUint32(buf, uint32(totalPadSize))
// buf = buf[:padLengthSize]
// msg.Raw = append(msg.Raw, buf...)
// msg.Raw = append(msg.Raw, params.Padding...)
// msg.Raw[0] |= byte(padLengthSize) // number of bytes indicating the padding size
//} else if odd != 0 {
paddingSize := padSizeLimit - odd paddingSize := padSizeLimit - odd
//if totalPadSize > 255 {
// // this algorithm is only valid if padSizeLimit < 256.
// // if padSizeLimit will ever change, please fix the algorithm
// // (please see also ReceivedMessage.extractPadding() function).
// panic("please fix the padding algorithm before releasing new version")
//}
pad := make([]byte, paddingSize) pad := make([]byte, paddingSize)
_, err := crand.Read(pad) _, err := crand.Read(pad)
if err != nil { if err != nil {
@ -175,10 +144,7 @@ func (msg *sentMessage) appendPadding(params *MessageParams) error {
if !validateSymmetricKey(pad) { if !validateSymmetricKey(pad) {
return errors.New("failed to generate random padding of size " + strconv.Itoa(paddingSize)) return errors.New("failed to generate random padding of size " + strconv.Itoa(paddingSize))
} }
//buf[0] = byte(totalPadSize)
msg.Raw = append(msg.Raw, pad...) msg.Raw = append(msg.Raw, pad...)
//msg.Raw[0] |= byte(0x1) // number of bytes indicating the padding size
//}
return nil return nil
} }
@ -195,11 +161,10 @@ func (msg *sentMessage) sign(key *ecdsa.PrivateKey) error {
hash := crypto.Keccak256(msg.Raw) hash := crypto.Keccak256(msg.Raw)
signature, err := crypto.Sign(hash, key) signature, err := crypto.Sign(hash, key)
if err != nil { if err != nil {
msg.Raw[0] ^= signatureFlag // clear the flag msg.Raw[0] &= (0xFF ^ signatureFlag) // clear the flag
return err return err
} }
msg.Raw = append(msg.Raw, signature...) msg.Raw = append(msg.Raw, signature...)
return nil return nil
} }
@ -297,8 +262,7 @@ func (msg *sentMessage) Wrap(options *MessageParams) (envelope *Envelope, err er
// decryptSymmetric decrypts a message with a topic key, using AES-GCM-256. // decryptSymmetric decrypts a message with a topic key, using AES-GCM-256.
// nonce size should be 12 bytes (see cipher.gcmStandardNonceSize). // nonce size should be 12 bytes (see cipher.gcmStandardNonceSize).
func (msg *ReceivedMessage) decryptSymmetric(key []byte) error { func (msg *ReceivedMessage) decryptSymmetric(key []byte) error {
// In v6, symmetric messages are expected to contain the 12-byte // symmetric messages are expected to contain the 12-byte nonce at the end of the payload
// "salt" at the end of the payload.
if len(msg.Raw) < AESNonceLength { if len(msg.Raw) < AESNonceLength {
return errors.New("missing salt or invalid payload in symmetric message") return errors.New("missing salt or invalid payload in symmetric message")
} }
@ -335,16 +299,12 @@ func (msg *ReceivedMessage) decryptAsymmetric(key *ecdsa.PrivateKey) error {
} }
// Validate checks the message validity and extracts the fields in case of success. // Validate checks the message validity and extracts the fields in case of success.
func (msg *ReceivedMessage) ValidateAndParse(symmetric bool) bool { func (msg *ReceivedMessage) ValidateAndParse() bool {
end := len(msg.Raw) end := len(msg.Raw)
if end < 1 { if end < 1 {
return false return false
} }
if symmetric {
end -= AESNonceLength
}
if isMessageSigned(msg.Raw[0]) { if isMessageSigned(msg.Raw[0]) {
end -= signatureLength end -= signatureLength
if end <= 1 { if end <= 1 {
@ -371,33 +331,9 @@ func (msg *ReceivedMessage) ValidateAndParse(symmetric bool) bool {
beg += payloadSize beg += payloadSize
msg.Padding = msg.Raw[beg:end] msg.Padding = msg.Raw[beg:end]
//padSize, ok := msg.extractPadding(end)
//if !ok {
// return false
//}
//msg.Payload = msg.Raw[1+padSize : end]
return true return true
} }
// extractPadding extracts the padding from raw message.
// although we don't support sending messages with padding size
// exceeding 255 bytes, such messages are perfectly valid, and
// can be successfully decrypted.
//func (msg *ReceivedMessage) extractPadding(end int) (int, bool) {
// payloadSize := 0
// auxFieldSize := int(msg.Raw[0] & auxFieldSizeMask) // number of bytes indicating the size of payload
// if sz != 0 {
// paddingSize = int(bytesToUintLittleEndian(msg.Raw[1 : 1+sz]))
// if paddingSize < sz || paddingSize+1 > end {
// return 0, false
// }
// msg.Padding = msg.Raw[1+sz : 1+paddingSize]
// }
// return paddingSize, true
//}
// Recover retrieves the public key of the message signer. // Recover retrieves the public key of the message signer.
func (msg *ReceivedMessage) SigToPubKey() *ecdsa.PublicKey { func (msg *ReceivedMessage) SigToPubKey() *ecdsa.PublicKey {
defer func() { recover() }() // in case of invalid signature defer func() { recover() }() // in case of invalid signature

View file

@ -90,8 +90,8 @@ func singleMessageTest(t *testing.T, symmetric bool) {
t.Fatalf("failed to encrypt with seed %d: %s.", seed, err) t.Fatalf("failed to encrypt with seed %d: %s.", seed, err)
} }
if !decrypted.ValidateAndParse(symmetric) { if !decrypted.ValidateAndParse() {
t.Fatalf("failed to validate with seed %d.", seed) t.Fatalf("failed to validate with seed %d, symmetric = %v.", seed, symmetric)
} }
if !bytes.Equal(text, decrypted.Payload) { if !bytes.Equal(text, decrypted.Payload) {
@ -427,7 +427,7 @@ func TestPaddingAppendedToSymMessages(t *testing.T) {
// payload + flag + aesnonce > 256. Check that the result // payload + flag + aesnonce > 256. Check that the result
// is padded on the next 256 boundary. // is padded on the next 256 boundary.
msg := sentMessage{} msg := sentMessage{}
msg.Raw = make([]byte, len(params.Payload)+1+AESNonceLength) msg.Raw = make([]byte, 1+1+len(params.Payload))
err := msg.appendPadding(params) err := msg.appendPadding(params)
@ -436,7 +436,7 @@ func TestPaddingAppendedToSymMessages(t *testing.T) {
return return
} }
if len(msg.Raw) != 512 { if len(msg.Raw) != 512-AESNonceLength {
t.Errorf("Invalid size %d != 512", len(msg.Raw)) t.Errorf("Invalid size %d != 512", len(msg.Raw))
} }
} }
@ -459,7 +459,7 @@ func TestPaddingAppendedToSymMessagesWithSignature(t *testing.T) {
// payload + flag + aesnonce > 256. Check that the result // payload + flag + aesnonce > 256. Check that the result
// is padded on the next 256 boundary. // is padded on the next 256 boundary.
msg := sentMessage{} msg := sentMessage{}
msg.Raw = make([]byte, len(params.Payload)+1+AESNonceLength+signatureLength) msg.Raw = make([]byte, 1+1+len(params.Payload))
err = msg.appendPadding(params) err = msg.appendPadding(params)
@ -468,7 +468,7 @@ func TestPaddingAppendedToSymMessagesWithSignature(t *testing.T) {
return return
} }
if len(msg.Raw) != 512 { if len(msg.Raw) != 512-AESNonceLength-signatureLength {
t.Errorf("Invalid size %d != 512", len(msg.Raw)) t.Errorf("Invalid size %d != 512", len(msg.Raw))
} }
} }