mirror of https://gogs.blitter.com/RLabs/xs
Added more (explicit) sizes for all KEX algs
This commit is contained in:
parent
361fa2a7c3
commit
5d9a110d57
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@ -8,10 +8,22 @@
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package hkexnet
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const (
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KEX_HERRADURA = iota // this MUST be first for default if omitted in ctor
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KEX_HERRADURA256 = iota // this MUST be first for default if omitted in ctor
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KEX_HERRADURA512
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KEX_HERRADURA1024
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KEX_HERRADURA2048
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KEX_resvd4
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KEX_resvd5
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KEX_resvd6
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KEX_resvd7
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KEX_KYBER512
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KEX_KYBER768
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//KEX_DH
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//KEX_ETC
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KEX_KYBER1024
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KEX_resvd11
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KEX_resvd12
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KEX_resvd13
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KEX_resvd14
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KEX_resvd15
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)
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// Sent from client to server in order to specify which
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@ -26,6 +38,7 @@ const (
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CSEExecFail // cmd.Start() (exec) failed
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CSEPtyExecFail // pty.Start() (exec w/pty) failed
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)
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// Extended (>255 UNIX exit status) codes
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// This indicate channel-related or internal errors
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type CSExtendedCode uint32
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@ -37,6 +50,7 @@ const (
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CSOExitStatus // Remote cmd exit status
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CSOChaff // Dummy packet, do not pass beyond decryption
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)
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// Channel status type
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type CSOType uint32
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@ -49,6 +63,7 @@ const (
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CAlgBlowfish64 // golang.org/x/crypto/blowfish
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CAlgNoneDisallowed
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)
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// Available ciphers for hkex.Conn
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type CSCipherAlg uint32
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@ -57,5 +72,6 @@ const (
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HmacSHA512
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HmacNoneDisallowed
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)
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// Available HMACs for hkex.Conn (TODO: not currently used)
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type CSHmacAlg uint32
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@ -141,15 +141,37 @@ func (hc *Conn) SetOpts(opts uint32) {
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}
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func getkexalgnum(extensions ...string) (k KEXAlg) {
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k = KEX_HERRADURA256 // default
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for _, s := range extensions {
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switch s {
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case "KEX_HERRADURA":
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default:
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log.Println("[extension arg = KEX_HERRADURA]")
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k = KEX_HERRADURA
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case "KEX_HERRADURA256":
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log.Println("[extension arg = KEX_HERRADURA256]")
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k = KEX_HERRADURA256
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break //out of for
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case "KEX_HERRADURA512":
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log.Println("[extension arg = KEX_HERRADURA512]")
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k = KEX_HERRADURA512
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break //out of for
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case "KEX_HERRADURA1024":
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log.Println("[extension arg = KEX_HERRADURA1024]")
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k = KEX_HERRADURA1024
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break //out of for
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case "KEX_HERRADURA2048":
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log.Println("[extension arg = KEX_HERRADURA2048]")
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k = KEX_HERRADURA2048
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break //out of for
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case "KEX_KYBER512":
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log.Println("[extension arg = KEX_KYBER512]")
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k = KEX_KYBER512
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break //out of for
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case "KEX_KYBER768":
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log.Println("[extension arg = KEX_KYBER768]")
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k = KEX_KYBER768
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break //out of for
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case "KEX_KYBER1024":
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log.Println("[extension arg = KEX_KYBER1024]")
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k = KEX_KYBER1024
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break //out of for
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}
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}
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return
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@ -170,16 +192,24 @@ func _new(kexAlg KEXAlg, conn *net.Conn) (hc *Conn, e error) {
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*hc.closeStat = CSEStillOpen // open or prematurely-closed status
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// Set up KEx/KEM-specifics
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switch hc.kex {
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case KEX_HERRADURA:
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return hc, nil //HKExAcceptSetup(hc.c, hc)
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switch kexAlg {
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case KEX_HERRADURA256:
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fallthrough
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case KEX_HERRADURA512:
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fallthrough
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case KEX_HERRADURA1024:
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fallthrough
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case KEX_HERRADURA2048:
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log.Printf("[KEx alg %d accepted]\n", kexAlg)
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case KEX_KYBER512:
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fallthrough
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case KEX_KYBER768:
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return hc, nil //Kyber768AcceptSetup(hc.c, hc)
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fallthrough
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case KEX_KYBER1024:
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log.Printf("[KEx alg %d accepted]\n", kexAlg)
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default:
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return hc, nil //HKExAcceptSetup(hc.c, hc)
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log.Printf("[KEx alg %d accepted]\n", kexAlg)
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hc.kex = KEX_HERRADURA256
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log.Printf("[KEx alg %d ?? defaults to %d]\n", kexAlg, hc.kex)
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}
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return
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}
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@ -197,30 +227,24 @@ func (hc *Conn) applyConnExtensions(extensions ...string) {
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log.Println("[extension arg = C_AES_256]")
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hc.cipheropts &= (0xFFFFFF00)
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hc.cipheropts |= CAlgAES256
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break
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case "C_TWOFISH_128":
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log.Println("[extension arg = C_TWOFISH_128]")
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hc.cipheropts &= (0xFFFFFF00)
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hc.cipheropts |= CAlgTwofish128
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break
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case "C_BLOWFISH_64":
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log.Println("[extension arg = C_BLOWFISH_64]")
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hc.cipheropts &= (0xFFFFFF00)
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hc.cipheropts |= CAlgBlowfish64
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break
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case "H_SHA256":
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log.Println("[extension arg = H_SHA256]")
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hc.cipheropts &= (0xFFFF00FF)
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hc.cipheropts |= (HmacSHA256 << 8)
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break
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case "H_SHA512":
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log.Println("[extension arg = H_SHA512]")
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hc.cipheropts &= (0xFFFF00FF)
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hc.cipheropts |= (HmacSHA512 << 8)
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break
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default:
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log.Printf("[Dial ext \"%s\" ignored]\n", s)
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break
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//default:
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// log.Printf("[Dial ext \"%s\" ignored]\n", s)
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}
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}
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}
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@ -235,13 +259,24 @@ func (r randReader) Read(b []byte) (n int, e error) {
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return
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}
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func Kyber768DialSetup(c net.Conn, hc *Conn) (err error) {
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//h := hkex.New(0, 0)
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func KyberDialSetup(c net.Conn, hc *Conn) (err error) {
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// Send hkexnet.Conn parameters to remote side
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// Alice, step 1: Generate a key pair.
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r := new(randReader)
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alicePublicKey, alicePrivateKey, err := kyber.Kyber768.GenerateKeyPair(r)
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var alicePublicKey *kyber.PublicKey
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var alicePrivateKey *kyber.PrivateKey
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switch hc.kex {
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case KEX_KYBER512:
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alicePublicKey, alicePrivateKey, err = kyber.Kyber512.GenerateKeyPair(r)
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case KEX_KYBER768:
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alicePublicKey, alicePrivateKey, err = kyber.Kyber768.GenerateKeyPair(r)
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case KEX_KYBER1024:
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alicePublicKey, alicePrivateKey, err = kyber.Kyber1024.GenerateKeyPair(r)
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default:
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alicePublicKey, alicePrivateKey, err = kyber.Kyber768.GenerateKeyPair(r)
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}
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if err != nil {
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panic(err)
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}
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@ -275,7 +310,20 @@ func Kyber768DialSetup(c net.Conn, hc *Conn) (err error) {
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}
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func HKExDialSetup(c net.Conn, hc *Conn) (err error) {
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h := hkex.New(0, 0)
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var h *hkex.HerraduraKEx
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switch hc.kex {
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case KEX_HERRADURA256:
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h = hkex.New(256, 64)
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case KEX_HERRADURA512:
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h = hkex.New(512, 128)
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case KEX_HERRADURA1024:
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h = hkex.New(1024, 256)
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case KEX_HERRADURA2048:
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h = hkex.New(2048, 512)
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default:
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h = hkex.New(256, 64)
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}
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// Send hkexnet.Conn parameters to remote side
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// d is value for Herradura key exchange
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fmt.Fprintf(c, "0x%s\n%08x:%08x\n", h.D().Text(16),
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@ -304,8 +352,7 @@ func HKExDialSetup(c net.Conn, hc *Conn) (err error) {
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return
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}
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func Kyber768AcceptSetup(c *net.Conn, hc *Conn) (err error) {
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//h := hkex.New(0, 0)
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func KyberAcceptSetup(c *net.Conn, hc *Conn) (err error) {
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// Bob, step 1: Deserialize Alice's public key from the binary encoding.
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alicePublicKey := big.NewInt(0)
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_, err = fmt.Fscanln(*c, alicePublicKey)
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@ -320,7 +367,18 @@ func Kyber768AcceptSetup(c *net.Conn, hc *Conn) (err error) {
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return err
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}
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peerPublicKey, err := kyber.Kyber768.PublicKeyFromBytes(alicePublicKey.Bytes())
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var peerPublicKey *kyber.PublicKey
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switch hc.kex {
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case KEX_KYBER512:
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peerPublicKey, err = kyber.Kyber512.PublicKeyFromBytes(alicePublicKey.Bytes())
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case KEX_KYBER768:
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peerPublicKey, err = kyber.Kyber768.PublicKeyFromBytes(alicePublicKey.Bytes())
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case KEX_KYBER1024:
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peerPublicKey, err = kyber.Kyber1024.PublicKeyFromBytes(alicePublicKey.Bytes())
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default:
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peerPublicKey, err = kyber.Kyber768.PublicKeyFromBytes(alicePublicKey.Bytes())
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}
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if err != nil {
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panic(err)
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}
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@ -343,7 +401,20 @@ func Kyber768AcceptSetup(c *net.Conn, hc *Conn) (err error) {
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}
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func HKExAcceptSetup(c *net.Conn, hc *Conn) (err error) {
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h := hkex.New(0, 0)
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var h *hkex.HerraduraKEx
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switch hc.kex {
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case KEX_HERRADURA256:
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h = hkex.New(256, 64)
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case KEX_HERRADURA512:
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h = hkex.New(512, 128)
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case KEX_HERRADURA1024:
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h = hkex.New(1024, 256)
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case KEX_HERRADURA2048:
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h = hkex.New(2048, 512)
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default:
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h = hkex.New(256, 64)
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}
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// Read in hkexnet.Conn parameters over raw Conn c
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// d is value for Herradura key exchange
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d := big.NewInt(0)
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@ -403,21 +474,28 @@ func Dial(protocol string, ipport string, extensions ...string) (hc Conn, err er
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// Perform Key Exchange according to client-request algorithm
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fmt.Fprintf(c, "%02x\n", hc.kex)
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switch hc.kex {
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case KEX_HERRADURA:
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fmt.Println("[HKExDialSetup()]")
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case KEX_HERRADURA256:
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fallthrough
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case KEX_HERRADURA512:
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fallthrough
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case KEX_HERRADURA1024:
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fallthrough
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case KEX_HERRADURA2048:
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log.Printf("[Setting up for KEX_HERRADURA %d]\n", hc.kex)
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if HKExDialSetup(c, &hc) != nil {
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return Conn{}, nil
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}
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case KEX_KYBER512:
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fallthrough
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case KEX_KYBER768:
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fmt.Println("[Kyber768DialSetup()]")
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if Kyber768DialSetup(c, &hc) != nil {
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fallthrough
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case KEX_KYBER1024:
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log.Printf("[Setting up for KEX_KYBER %d]\n", hc.kex)
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if KyberDialSetup(c, &hc) != nil {
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return Conn{}, nil
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}
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default:
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fmt.Println("[Default HKExDialSetup()]")
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if HKExDialSetup(c, &hc) != nil {
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return Conn{}, nil
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}
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return Conn{}, nil
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}
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return
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}
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@ -530,7 +608,9 @@ func (hl *HKExListener) Accept() (hc Conn, err error) {
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// Read KEx alg proposed by client
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var kexAlg KEXAlg
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_, err = fmt.Fscanln(c, &kexAlg)
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//! NB. Was using fmt.FScanln() here, but integers with a leading zero
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// were being mis-scanned? (is it an octal thing? Investigate.)
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_, err = fmt.Fscanf(c, "%02x\n", &kexAlg)
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if err != nil {
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return Conn{}, err
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}
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@ -544,24 +624,28 @@ func (hl *HKExListener) Accept() (hc Conn, err error) {
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hc = *ret
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switch hc.kex {
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case KEX_HERRADURA:
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log.Println("[Setting up for KEX_HERRADURA]")
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case KEX_HERRADURA256:
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fallthrough
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case KEX_HERRADURA512:
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fallthrough
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case KEX_HERRADURA1024:
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fallthrough
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case KEX_HERRADURA2048:
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log.Printf("[Setting up for KEX_HERRADURA %d]\n", hc.kex)
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if HKExAcceptSetup(&c, &hc) != nil {
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log.Println("[ERROR - KEX_HERRADURA]")
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return Conn{}, nil
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}
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case KEX_KYBER512:
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fallthrough
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case KEX_KYBER768:
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log.Println("[Setting up for KEX_KYBER768]")
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if Kyber768AcceptSetup(&c, &hc) != nil {
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log.Println("[ERROR - KEX_KYBER768]")
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fallthrough
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case KEX_KYBER1024:
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log.Printf("[Setting up for KEX_KYBER %d]\n", hc.kex)
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if KyberAcceptSetup(&c, &hc) != nil {
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return Conn{}, nil
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}
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default:
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log.Println("[unknown alg, Setting up for KEX_HERRADURA]")
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if HKExAcceptSetup(&c, &hc) != nil {
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log.Println("[ERROR - default KEX_HERRADURA]")
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return Conn{}, nil
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}
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return Conn{}, nil
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}
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log.Println("[hc.Accept successful]")
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return
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@ -374,7 +374,7 @@ func main() {
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flag.BoolVar(&dbg, "d", false, "debug logging")
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flag.StringVar(&cAlg, "c", "C_AES_256", "`cipher` [\"C_AES_256\" | \"C_TWOFISH_128\" | \"C_BLOWFISH_64\"]")
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flag.StringVar(&hAlg, "m", "H_SHA256", "`hmac` [\"H_SHA256\"]")
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flag.StringVar(&kAlg, "k", "KEX_HERRADURA", "`kex` [\"KEX_HERRADURA\" | \"KEX_KYBER768\"]")
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flag.StringVar(&kAlg, "k", "KEX_HERRADURA256", "`kex` [\"KEX_HERRADURA{256/512/1024/2048}\" | \"KEX_KYBER{512/768/1024}\"]")
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flag.UintVar(&port, "p", 2000, "`port`")
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//flag.StringVar(&authCookie, "a", "", "auth cookie")
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flag.BoolVar(&chaffEnabled, "e", true, "enabled chaff pkts (default true)")
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