mirror of
https://gogs.blitter.com/RLabs/xs
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2a6663ed3c
Signed-off-by: Russ Magee <rmagee@gmail.com>
166 lines
4.2 KiB
Go
166 lines
4.2 KiB
Go
// newhope_simple.go - NewHope-Simple interface.
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//
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// To the extent possible under law, Yawning Angel has waived all copyright
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// and related or neighboring rights to newhope, using the Creative
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// Commons "CC0" public domain dedication. See LICENSE or
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// <http://creativecommons.org/publicdomain/zero/1.0/> for full details.
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package newhope
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import (
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"io"
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"golang.org/x/crypto/sha3"
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)
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const (
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// HighBytes is the length of the encoded secret in bytes.
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HighBytes = 384
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// SendASimpleSize is the length of Alice's NewHope-Simple public key in
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// bytes.
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SendASimpleSize = PolyBytes + SeedBytes
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// SendBSimpleSize is the length of Bob's NewHope-Simple public key in
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// bytes.
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SendBSimpleSize = PolyBytes + HighBytes
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)
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func encodeBSimple(r []byte, b *poly, v *poly) {
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b.toBytes(r)
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v.compress(r[PolyBytes:])
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}
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func decodeBSimple(b *poly, v *poly, r []byte) {
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b.fromBytes(r)
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v.decompress(r[PolyBytes:])
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}
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// PublicKeySimpleAlice is Alice's NewHope-Simple public key.
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type PublicKeySimpleAlice struct {
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Send [SendASimpleSize]byte
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}
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// PrivateKeySimpleAlice is Alice's NewHope-Simple private key.
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type PrivateKeySimpleAlice struct {
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sk poly
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}
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// Reset clears all sensitive information such that it no longer appears in
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// memory.
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func (k *PrivateKeySimpleAlice) Reset() {
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k.sk.reset()
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}
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// GenerateKeyPairSimpleAlice returns a NewHope-Simple private/public key pair.
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// The private key is generated using the given reader, which must return
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// random data. The receiver side of the key exchange (aka "Bob") MUST use
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// KeyExchangeSimpleBob() instead of this routine.
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func GenerateKeyPairSimpleAlice(rand io.Reader) (*PrivateKeySimpleAlice, *PublicKeySimpleAlice, error) {
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var a, e, pk, r poly
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var seed, noiseSeed [SeedBytes]byte
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if _, err := io.ReadFull(rand, seed[:]); err != nil {
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return nil, nil, err
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}
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seed = sha3.Sum256(seed[:]) // Don't send output of system RNG.
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a.uniform(&seed, TorSampling)
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if _, err := io.ReadFull(rand, noiseSeed[:]); err != nil {
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return nil, nil, err
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}
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defer memwipe(noiseSeed[:])
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privKey := new(PrivateKeySimpleAlice)
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privKey.sk.getNoise(&noiseSeed, 0)
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privKey.sk.ntt()
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e.getNoise(&noiseSeed, 1)
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e.ntt()
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pubKey := new(PublicKeySimpleAlice)
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r.pointwise(&privKey.sk, &a)
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pk.add(&e, &r)
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encodeA(pubKey.Send[:], &pk, &seed)
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return privKey, pubKey, nil
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}
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// PublicKeySimpleBob is Bob's NewHope-Simple public key.
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type PublicKeySimpleBob struct {
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Send [SendBSimpleSize]byte
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}
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// KeyExchangeSimpleBob is the Responder side of the NewHope-Simple key
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// exchange. The shared secret and "public key" are generated using the
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// given reader, which must return random data.
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func KeyExchangeSimpleBob(rand io.Reader, alicePk *PublicKeySimpleAlice) (*PublicKeySimpleBob, []byte, error) {
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var pka, a, sp, ep, bp, v, epp, m poly
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var seed, noiseSeed [SeedBytes]byte
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if _, err := io.ReadFull(rand, noiseSeed[:]); err != nil {
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return nil, nil, err
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}
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defer memwipe(noiseSeed[:])
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var sharedKey [SharedSecretSize]byte
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if _, err := io.ReadFull(rand, sharedKey[:]); err != nil {
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return nil, nil, err
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}
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defer memwipe(sharedKey[:])
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sharedKey = sha3.Sum256(sharedKey[:])
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m.fromMsg(sharedKey[:])
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decodeA(&pka, &seed, alicePk.Send[:])
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a.uniform(&seed, TorSampling)
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sp.getNoise(&noiseSeed, 0)
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sp.ntt()
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ep.getNoise(&noiseSeed, 1)
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ep.ntt()
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bp.pointwise(&a, &sp)
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bp.add(&bp, &ep)
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v.pointwise(&pka, &sp)
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v.invNtt()
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epp.getNoise(&noiseSeed, 2)
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v.add(&v, &epp)
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v.add(&v, &m) // add key
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pubKey := new(PublicKeySimpleBob)
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encodeBSimple(pubKey.Send[:], &bp, &v)
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mu := sha3.Sum256(sharedKey[:])
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// Scrub the sensitive stuff...
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sp.reset()
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v.reset()
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m.reset()
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return pubKey, mu[:], nil
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}
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// KeyExchangeSimpleAlice is the Initiaitor side of the NewHope-Simple key
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// exchange. The provided private key is obliterated prior to returning.
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func KeyExchangeSimpleAlice(bobPk *PublicKeySimpleBob, aliceSk *PrivateKeySimpleAlice) ([]byte, error) {
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var v, bp, k poly
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decodeBSimple(&bp, &v, bobPk.Send[:])
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k.pointwise(&aliceSk.sk, &bp)
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k.invNtt()
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k.sub(&k, &v)
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var sharedKey [SharedSecretSize]byte
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k.toMsg(sharedKey[:])
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// mu <- Sha3-256(v')
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mu := sha3.Sum256(sharedKey[:])
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// Scrub the sensitive stuff...
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memwipe(sharedKey[:])
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k.reset()
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aliceSk.Reset()
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return mu[:], nil
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}
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