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crypto/tls: support AES-GCM.
AES-GCM is the only current TLS ciphersuite that doesn't have cryptographic weaknesses (RC4), nor major construction issues (CBC mode ciphers) and has some deployment (i.e. not-CCM). R=golang-dev, bradfitz CC=golang-dev https://golang.org/cl/13249044
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@ -49,22 +49,25 @@ type cipherSuite struct {
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elliptic bool
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cipher func(key, iv []byte, isRead bool) interface{}
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mac func(version uint16, macKey []byte) macFunction
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aead func(key, fixedNonce []byte) cipher.AEAD
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}
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var cipherSuites = []*cipherSuite{
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// Ciphersuite order is chosen so that ECDHE comes before plain RSA
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// and RC4 comes before AES (because of the Lucky13 attack).
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{TLS_ECDHE_RSA_WITH_RC4_128_SHA, 16, 20, 0, ecdheRSAKA, true, cipherRC4, macSHA1},
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{TLS_ECDHE_ECDSA_WITH_RC4_128_SHA, 16, 20, 0, ecdheECDSAKA, true, cipherRC4, macSHA1},
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{TLS_ECDHE_RSA_WITH_AES_128_CBC_SHA, 16, 20, 16, ecdheRSAKA, true, cipherAES, macSHA1},
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{TLS_ECDHE_ECDSA_WITH_AES_128_CBC_SHA, 16, 20, 16, ecdheECDSAKA, true, cipherAES, macSHA1},
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{TLS_ECDHE_RSA_WITH_AES_256_CBC_SHA, 32, 20, 16, ecdheRSAKA, true, cipherAES, macSHA1},
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{TLS_ECDHE_ECDSA_WITH_AES_256_CBC_SHA, 32, 20, 16, ecdheECDSAKA, true, cipherAES, macSHA1},
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{TLS_RSA_WITH_RC4_128_SHA, 16, 20, 0, rsaKA, false, cipherRC4, macSHA1},
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{TLS_RSA_WITH_AES_128_CBC_SHA, 16, 20, 16, rsaKA, false, cipherAES, macSHA1},
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{TLS_RSA_WITH_AES_256_CBC_SHA, 32, 20, 16, rsaKA, false, cipherAES, macSHA1},
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{TLS_ECDHE_RSA_WITH_3DES_EDE_CBC_SHA, 24, 20, 8, ecdheRSAKA, true, cipher3DES, macSHA1},
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{TLS_RSA_WITH_3DES_EDE_CBC_SHA, 24, 20, 8, rsaKA, false, cipher3DES, macSHA1},
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{TLS_ECDHE_RSA_WITH_AES_128_GCM_SHA256, 16, 0, 4, ecdheRSAKA, true, nil, nil, aeadAESGCM},
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{TLS_ECDHE_ECDSA_WITH_AES_128_GCM_SHA256, 16, 0, 4, ecdheECDSAKA, true, nil, nil, aeadAESGCM},
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{TLS_ECDHE_RSA_WITH_RC4_128_SHA, 16, 20, 0, ecdheRSAKA, true, cipherRC4, macSHA1, nil},
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{TLS_ECDHE_ECDSA_WITH_RC4_128_SHA, 16, 20, 0, ecdheECDSAKA, true, cipherRC4, macSHA1, nil},
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{TLS_ECDHE_RSA_WITH_AES_128_CBC_SHA, 16, 20, 16, ecdheRSAKA, true, cipherAES, macSHA1, nil},
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{TLS_ECDHE_ECDSA_WITH_AES_128_CBC_SHA, 16, 20, 16, ecdheECDSAKA, true, cipherAES, macSHA1, nil},
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{TLS_ECDHE_RSA_WITH_AES_256_CBC_SHA, 32, 20, 16, ecdheRSAKA, true, cipherAES, macSHA1, nil},
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{TLS_ECDHE_ECDSA_WITH_AES_256_CBC_SHA, 32, 20, 16, ecdheECDSAKA, true, cipherAES, macSHA1, nil},
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{TLS_RSA_WITH_RC4_128_SHA, 16, 20, 0, rsaKA, false, cipherRC4, macSHA1, nil},
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{TLS_RSA_WITH_AES_128_CBC_SHA, 16, 20, 16, rsaKA, false, cipherAES, macSHA1, nil},
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{TLS_RSA_WITH_AES_256_CBC_SHA, 32, 20, 16, rsaKA, false, cipherAES, macSHA1, nil},
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{TLS_ECDHE_RSA_WITH_3DES_EDE_CBC_SHA, 24, 20, 8, ecdheRSAKA, true, cipher3DES, macSHA1, nil},
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{TLS_RSA_WITH_3DES_EDE_CBC_SHA, 24, 20, 8, rsaKA, false, cipher3DES, macSHA1, nil},
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}
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func cipherRC4(key, iv []byte, isRead bool) interface{} {
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@ -106,6 +109,46 @@ type macFunction interface {
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MAC(digestBuf, seq, header, data []byte) []byte
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}
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// fixedNonceAEAD wraps an AEAD and prefixes a fixed portion of the nonce to
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// each call.
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type fixedNonceAEAD struct {
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// sealNonce and openNonce are buffers where the larger nonce will be
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// constructed. Since a seal and open operation may be running
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// concurrently, there is a separate buffer for each.
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sealNonce, openNonce []byte
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aead cipher.AEAD
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}
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func (f *fixedNonceAEAD) NonceSize() int { return 8 }
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func (f *fixedNonceAEAD) Overhead() int { return f.aead.Overhead() }
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func (f *fixedNonceAEAD) Seal(out, nonce, plaintext, additionalData []byte) []byte {
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copy(f.sealNonce[len(f.sealNonce)-8:], nonce)
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return f.aead.Seal(out, f.sealNonce, plaintext, additionalData)
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}
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func (f *fixedNonceAEAD) Open(out, nonce, plaintext, additionalData []byte) ([]byte, error) {
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copy(f.openNonce[len(f.openNonce)-8:], nonce)
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return f.aead.Open(out, f.openNonce, plaintext, additionalData)
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}
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func aeadAESGCM(key, fixedNonce []byte) cipher.AEAD {
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aes, err := aes.NewCipher(key)
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if err != nil {
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panic(err)
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}
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aead, err := cipher.NewGCM(aes)
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if err != nil {
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panic(err)
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}
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nonce1, nonce2 := make([]byte, 12), make([]byte, 12)
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copy(nonce1, fixedNonce)
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copy(nonce2, fixedNonce)
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return &fixedNonceAEAD{nonce1, nonce2, aead}
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}
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// ssl30MAC implements the SSLv3 MAC function, as defined in
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// www.mozilla.org/projects/security/pki/nss/ssl/draft302.txt section 5.2.3.1
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type ssl30MAC struct {
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@ -197,15 +240,17 @@ func mutualCipherSuite(have []uint16, want uint16) *cipherSuite {
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// A list of the possible cipher suite ids. Taken from
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// http://www.iana.org/assignments/tls-parameters/tls-parameters.xml
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const (
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TLS_RSA_WITH_RC4_128_SHA uint16 = 0x0005
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TLS_RSA_WITH_3DES_EDE_CBC_SHA uint16 = 0x000a
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TLS_RSA_WITH_AES_128_CBC_SHA uint16 = 0x002f
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TLS_RSA_WITH_AES_256_CBC_SHA uint16 = 0x0035
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TLS_ECDHE_ECDSA_WITH_RC4_128_SHA uint16 = 0xc007
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TLS_ECDHE_ECDSA_WITH_AES_128_CBC_SHA uint16 = 0xc009
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TLS_ECDHE_ECDSA_WITH_AES_256_CBC_SHA uint16 = 0xc00a
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TLS_ECDHE_RSA_WITH_RC4_128_SHA uint16 = 0xc011
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TLS_ECDHE_RSA_WITH_3DES_EDE_CBC_SHA uint16 = 0xc012
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TLS_ECDHE_RSA_WITH_AES_128_CBC_SHA uint16 = 0xc013
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TLS_ECDHE_RSA_WITH_AES_256_CBC_SHA uint16 = 0xc014
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TLS_RSA_WITH_RC4_128_SHA uint16 = 0x0005
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TLS_RSA_WITH_3DES_EDE_CBC_SHA uint16 = 0x000a
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TLS_RSA_WITH_AES_128_CBC_SHA uint16 = 0x002f
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TLS_RSA_WITH_AES_256_CBC_SHA uint16 = 0x0035
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TLS_ECDHE_ECDSA_WITH_RC4_128_SHA uint16 = 0xc007
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TLS_ECDHE_ECDSA_WITH_AES_128_CBC_SHA uint16 = 0xc009
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TLS_ECDHE_ECDSA_WITH_AES_256_CBC_SHA uint16 = 0xc00a
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TLS_ECDHE_RSA_WITH_RC4_128_SHA uint16 = 0xc011
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TLS_ECDHE_RSA_WITH_3DES_EDE_CBC_SHA uint16 = 0xc012
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TLS_ECDHE_RSA_WITH_AES_128_CBC_SHA uint16 = 0xc013
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TLS_ECDHE_RSA_WITH_AES_256_CBC_SHA uint16 = 0xc014
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TLS_ECDHE_RSA_WITH_AES_128_GCM_SHA256 uint16 = 0xc02f
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TLS_ECDHE_ECDSA_WITH_AES_128_GCM_SHA256 uint16 = 0xc02b
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)
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@ -146,6 +146,9 @@ func (hc *halfConn) changeCipherSpec() error {
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hc.mac = hc.nextMac
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hc.nextCipher = nil
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hc.nextMac = nil
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for i := range hc.seq {
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hc.seq[i] = 0
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}
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return nil
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}
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@ -255,6 +258,26 @@ func (hc *halfConn) decrypt(b *block) (ok bool, prefixLen int, alertValue alert)
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switch c := hc.cipher.(type) {
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case cipher.Stream:
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c.XORKeyStream(payload, payload)
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case cipher.AEAD:
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explicitIVLen = 8
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if len(payload) < explicitIVLen {
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return false, 0, alertBadRecordMAC
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}
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nonce := payload[:8]
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payload = payload[8:]
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var additionalData [13]byte
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copy(additionalData[:], hc.seq[:])
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copy(additionalData[8:], b.data[:3])
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n := len(payload) - c.Overhead()
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additionalData[11] = byte(n >> 8)
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additionalData[12] = byte(n)
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var err error
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payload, err = c.Open(payload[:0], nonce, payload, additionalData[:])
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if err != nil {
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return false, 0, alertBadRecordMAC
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}
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b.resize(recordHeaderLen + explicitIVLen + len(payload))
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case cbcMode:
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blockSize := c.BlockSize()
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if hc.version >= VersionTLS11 {
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@ -305,13 +328,13 @@ func (hc *halfConn) decrypt(b *block) (ok bool, prefixLen int, alertValue alert)
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b.resize(recordHeaderLen + explicitIVLen + n)
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remoteMAC := payload[n:]
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localMAC := hc.mac.MAC(hc.inDigestBuf, hc.seq[0:], b.data[:recordHeaderLen], payload[:n])
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hc.incSeq()
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if subtle.ConstantTimeCompare(localMAC, remoteMAC) != 1 || paddingGood != 255 {
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return false, 0, alertBadRecordMAC
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}
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hc.inDigestBuf = localMAC
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}
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hc.incSeq()
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return true, recordHeaderLen + explicitIVLen, 0
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}
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@ -338,7 +361,6 @@ func (hc *halfConn) encrypt(b *block, explicitIVLen int) (bool, alert) {
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// mac
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if hc.mac != nil {
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mac := hc.mac.MAC(hc.outDigestBuf, hc.seq[0:], b.data[:recordHeaderLen], b.data[recordHeaderLen+explicitIVLen:])
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hc.incSeq()
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n := len(b.data)
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b.resize(n + len(mac))
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@ -353,6 +375,20 @@ func (hc *halfConn) encrypt(b *block, explicitIVLen int) (bool, alert) {
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switch c := hc.cipher.(type) {
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case cipher.Stream:
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c.XORKeyStream(payload, payload)
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case cipher.AEAD:
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payloadLen := len(b.data) - recordHeaderLen - explicitIVLen
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b.resize(len(b.data) + c.Overhead())
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nonce := b.data[recordHeaderLen : recordHeaderLen+explicitIVLen]
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payload := b.data[recordHeaderLen+explicitIVLen:]
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payload = payload[:payloadLen]
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var additionalData [13]byte
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copy(additionalData[:], hc.seq[:])
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copy(additionalData[8:], b.data[:3])
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additionalData[11] = byte(payloadLen >> 8)
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additionalData[12] = byte(payloadLen)
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c.Seal(payload[:0], nonce, payload, additionalData[:])
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case cbcMode:
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blockSize := c.BlockSize()
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if explicitIVLen > 0 {
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@ -372,6 +408,7 @@ func (hc *halfConn) encrypt(b *block, explicitIVLen int) (bool, alert) {
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n := len(b.data) - recordHeaderLen
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b.data[3] = byte(n >> 8)
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b.data[4] = byte(n)
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hc.incSeq()
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return true, 0
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}
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@ -660,6 +697,7 @@ func (c *Conn) writeRecord(typ recordType, data []byte) (n int, err error) {
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m = maxPlaintext
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}
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explicitIVLen := 0
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explicitIVIsSeq := false
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var cbc cbcMode
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if c.out.version >= VersionTLS11 {
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@ -668,6 +706,18 @@ func (c *Conn) writeRecord(typ recordType, data []byte) (n int, err error) {
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explicitIVLen = cbc.BlockSize()
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}
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}
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if explicitIVLen == 0 {
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if _, ok := c.out.cipher.(cipher.AEAD); ok {
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explicitIVLen = 8
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// The AES-GCM construction in TLS has an
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// explicit nonce so that the nonce can be
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// random. However, the nonce is only 8 bytes
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// which is too small for a secure, random
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// nonce. Therefore we use the sequence number
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// as the nonce.
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explicitIVIsSeq = true
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}
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}
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b.resize(recordHeaderLen + explicitIVLen + m)
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b.data[0] = byte(typ)
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vers := c.vers
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@ -682,8 +732,12 @@ func (c *Conn) writeRecord(typ recordType, data []byte) (n int, err error) {
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b.data[4] = byte(m)
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if explicitIVLen > 0 {
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explicitIV := b.data[recordHeaderLen : recordHeaderLen+explicitIVLen]
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if _, err = io.ReadFull(c.config.rand(), explicitIV); err != nil {
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break
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if explicitIVIsSeq {
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copy(explicitIV, c.out.seq[:])
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} else {
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if _, err = io.ReadFull(c.config.rand(), explicitIV); err != nil {
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break
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}
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}
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}
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copy(b.data[recordHeaderLen+explicitIVLen:], data)
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@ -308,8 +308,14 @@ func (c *Conn) clientHandshake() error {
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clientMAC, serverMAC, clientKey, serverKey, clientIV, serverIV :=
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keysFromMasterSecret(c.vers, masterSecret, hello.random, serverHello.random, suite.macLen, suite.keyLen, suite.ivLen)
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clientCipher := suite.cipher(clientKey, clientIV, false /* not for reading */)
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clientHash := suite.mac(c.vers, clientMAC)
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var clientCipher interface{}
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var clientHash macFunction
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if suite.cipher != nil {
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clientCipher = suite.cipher(clientKey, clientIV, false /* not for reading */)
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clientHash = suite.mac(c.vers, clientMAC)
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} else {
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clientCipher = suite.aead(clientKey, clientIV)
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}
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c.out.prepareCipherSpec(c.vers, clientCipher, clientHash)
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c.writeRecord(recordTypeChangeCipherSpec, []byte{1})
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@ -329,8 +335,14 @@ func (c *Conn) clientHandshake() error {
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finishedHash.Write(finished.marshal())
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c.writeRecord(recordTypeHandshake, finished.marshal())
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serverCipher := suite.cipher(serverKey, serverIV, true /* for reading */)
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serverHash := suite.mac(c.vers, serverMAC)
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var serverCipher interface{}
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var serverHash macFunction
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if suite.cipher != nil {
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serverCipher = suite.cipher(serverKey, serverIV, true /* for reading */)
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serverHash = suite.mac(c.vers, serverMAC)
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} else {
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serverCipher = suite.aead(serverKey, serverIV)
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}
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c.in.prepareCipherSpec(c.vers, serverCipher, serverHash)
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c.readRecord(recordTypeChangeCipherSpec)
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if err := c.error(); err != nil {
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@ -435,12 +435,20 @@ func (hs *serverHandshakeState) establishKeys() error {
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clientMAC, serverMAC, clientKey, serverKey, clientIV, serverIV :=
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keysFromMasterSecret(c.vers, hs.masterSecret, hs.clientHello.random, hs.hello.random, hs.suite.macLen, hs.suite.keyLen, hs.suite.ivLen)
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clientCipher := hs.suite.cipher(clientKey, clientIV, true /* for reading */)
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clientHash := hs.suite.mac(c.vers, clientMAC)
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c.in.prepareCipherSpec(c.vers, clientCipher, clientHash)
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var clientCipher, serverCipher interface{}
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var clientHash, serverHash macFunction
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serverCipher := hs.suite.cipher(serverKey, serverIV, false /* not for reading */)
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serverHash := hs.suite.mac(c.vers, serverMAC)
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if hs.suite.aead == nil {
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clientCipher = hs.suite.cipher(clientKey, clientIV, true /* for reading */)
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clientHash = hs.suite.mac(c.vers, clientMAC)
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serverCipher = hs.suite.cipher(serverKey, serverIV, false /* not for reading */)
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serverHash = hs.suite.mac(c.vers, serverMAC)
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} else {
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clientCipher = hs.suite.aead(clientKey, clientIV)
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serverCipher = hs.suite.aead(serverKey, serverIV)
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}
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c.in.prepareCipherSpec(c.vers, clientCipher, clientHash)
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c.out.prepareCipherSpec(c.vers, serverCipher, serverHash)
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return nil
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@ -309,6 +309,13 @@ func TestTLS11Server(t *testing.T) {
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testServerScript(t, "TLS11", tls11ECDHEAESServerScript, &config, nil)
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}
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func TestAESGCM(t *testing.T) {
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var config = *testConfig
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config.CipherSuites = []uint16{TLS_ECDHE_RSA_WITH_AES_128_GCM_SHA256}
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config.MaxVersion = VersionTLS12
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testServerScript(t, "AES-GCM", aesGCMServerScript, &config, nil)
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}
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// recordingConn is a net.Conn that records the traffic that passes through it.
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// WriteTo can be used to produce Go code that contains the recorded traffic.
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type recordingConn struct {
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@ -3483,3 +3490,238 @@ var clientauthECDSATests = []clientauthTest{
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},
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}},
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}
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var aesGCMServerScript = [][]byte{
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{
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0x16, 0x03, 0x01, 0x01, 0x1c, 0x01, 0x00, 0x01,
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0x18, 0x03, 0x03, 0x52, 0x1e, 0x74, 0xf0, 0xb0,
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0xc1, 0x8b, 0x16, 0xf9, 0x74, 0xfc, 0x16, 0xc4,
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0x11, 0x18, 0x96, 0x08, 0x25, 0x38, 0x4f, 0x98,
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0x98, 0xbe, 0xb5, 0x61, 0xdf, 0x94, 0x15, 0xcc,
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0x9b, 0x61, 0xef, 0x00, 0x00, 0x80, 0xc0, 0x30,
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0xc0, 0x2c, 0xc0, 0x28, 0xc0, 0x24, 0xc0, 0x14,
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0xc0, 0x0a, 0x00, 0xa3, 0x00, 0x9f, 0x00, 0x6b,
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0x00, 0x6a, 0x00, 0x39, 0x00, 0x38, 0xc0, 0x32,
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0xc0, 0x2e, 0xc0, 0x2a, 0xc0, 0x26, 0xc0, 0x0f,
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0xc0, 0x05, 0x00, 0x9d, 0x00, 0x3d, 0x00, 0x35,
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0xc0, 0x12, 0xc0, 0x08, 0x00, 0x16, 0x00, 0x13,
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0xc0, 0x0d, 0xc0, 0x03, 0x00, 0x0a, 0xc0, 0x2f,
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0xc0, 0x2b, 0xc0, 0x27, 0xc0, 0x23, 0xc0, 0x13,
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0xc0, 0x09, 0x00, 0xa2, 0x00, 0x9e, 0x00, 0x67,
|
||||
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|
||||
0x03, 0x03, 0x00, 0x01, 0x01, 0x16, 0x03, 0x03,
|
||||
0x00, 0x28, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
|
||||
0x00, 0x00, 0x35, 0xcb, 0x17, 0x66, 0xee, 0xfd,
|
||||
0x27, 0xdb, 0xb8, 0xa8, 0x8a, 0xf1, 0x56, 0x67,
|
||||
0x89, 0x0d, 0x13, 0xac, 0xe2, 0x31, 0xb9, 0xa2,
|
||||
0x26, 0xbb, 0x1c, 0xcf, 0xd1, 0xb2, 0x48, 0x1d,
|
||||
0x0d, 0xb1, 0x17, 0x03, 0x03, 0x00, 0x25, 0x00,
|
||||
0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x01, 0xc0,
|
||||
0x89, 0x7c, 0x58, 0x6a, 0x9b, 0x00, 0x05, 0x8c,
|
||||
0x7f, 0x28, 0x54, 0x61, 0x44, 0x10, 0xee, 0x85,
|
||||
0x26, 0xa8, 0x04, 0xcd, 0xca, 0x85, 0x60, 0xf2,
|
||||
0xeb, 0x22, 0xbd, 0x9e, 0x15, 0x03, 0x03, 0x00,
|
||||
0x1a, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
|
||||
0x02, 0x10, 0xe4, 0xe5, 0xf9, 0x85, 0xe3, 0xb0,
|
||||
0xec, 0x84, 0x29, 0x91, 0x05, 0x7d, 0x86, 0xe3,
|
||||
0x97, 0xeb, 0xb2,
|
||||
},
|
||||
}
|
||||
|
Loading…
Reference in New Issue
Block a user