sign_keygen(): don't hash the secret scalar in non-deterministic mode
Improve clarity No need to clamp the key prior to computing a synthetic nonce nonce -> Z for clarity
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@ -15,7 +15,11 @@ crypto_sign_ed25519_seed_keypair(unsigned char *pk, unsigned char *sk,
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{
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ge_p3 A;
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crypto_hash_sha512(sk, seed, 32);
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#ifdef ED25519_NONDETERMINISTIC
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memcpy(sk, seed, crypto_sign_ed25519_SECRETKEYBYTES);
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#else
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crypto_hash_sha512(sk, seed, crypto_sign_ed25519_SECRETKEYBYTES);
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#endif
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sk[0] &= 248;
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sk[31] &= 63;
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sk[31] |= 64;
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@ -23,8 +27,8 @@ crypto_sign_ed25519_seed_keypair(unsigned char *pk, unsigned char *sk,
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ge_scalarmult_base(&A, sk);
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ge_p3_tobytes(pk, &A);
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memmove(sk, seed, 32);
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memmove(sk + 32, pk, 32);
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memmove(sk, seed, crypto_sign_ed25519_SECRETKEYBYTES);
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memmove(sk + 32, pk, crypto_sign_ed25519_PUBLICKEYBYTES);
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return 0;
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}
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@ -76,9 +80,13 @@ crypto_sign_ed25519_sk_to_curve25519(unsigned char *curve25519_sk,
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{
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unsigned char h[crypto_hash_sha512_BYTES];
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#ifdef ED25519_NONDETERMINISTIC
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memcpy(h, ed25519_sk, crypto_sign_ed25519_SECRETKEYBYTES);
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#else
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crypto_hash_sha512(h, ed25519_sk,
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crypto_sign_ed25519_SECRETKEYBYTES -
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crypto_sign_ed25519_PUBLICKEYBYTES);
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#endif
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h[0] &= 248;
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h[31] &= 127;
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h[31] |= 64;
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@ -36,9 +36,8 @@ _crypto_sign_ed25519_clamp(unsigned char k[32])
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/* r = hash(B || empty_labelset || Z || pad1 || k || pad2 || empty_labelset || K || extra || M) (mod q) */
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static void
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_crypto_sign_ed25519_synthetic_r_hv(crypto_hash_sha512_state *hs,
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unsigned char nonce[64],
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unsigned char sk_copy[64],
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const unsigned char sk[64])
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unsigned char Z[32],
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const unsigned char sk[32])
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{
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static const unsigned char B[32] = {
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0x58, 0x66, 0x66, 0x66, 0x66, 0x66, 0x66, 0x66,
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@ -49,14 +48,12 @@ _crypto_sign_ed25519_synthetic_r_hv(crypto_hash_sha512_state *hs,
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static const unsigned char zeros[16] = { 0x00 };
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static const unsigned char empty_labelset[3] = { 0x02, 0x00, 0x00 };
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memcpy(sk_copy, sk, 32);
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_crypto_sign_ed25519_clamp(sk_copy);
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crypto_hash_sha512_update(hs, B, 32);
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crypto_hash_sha512_update(hs, empty_labelset, 3);
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randombytes_buf(nonce, 32);
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crypto_hash_sha512_update(hs, nonce, 32);
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randombytes_buf(Z, 32);
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crypto_hash_sha512_update(hs, Z, 32);
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crypto_hash_sha512_update(hs, zeros, 16 - (32 + 3 + 32) % 16);
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crypto_hash_sha512_update(hs, sk_copy, 32);
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crypto_hash_sha512_update(hs, sk, 32);
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/* empty pad2 */
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crypto_hash_sha512_update(hs, empty_labelset, 3);
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crypto_hash_sha512_update(hs, sk + 32, 32);
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@ -75,15 +72,16 @@ _crypto_sign_ed25519_detached(unsigned char *sig, unsigned long long *siglen_p,
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unsigned char hram[64];
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ge_p3 R;
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#ifdef ED25519_NONDETERMINISTIC
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_crypto_sign_ed25519_ref10_hinit(&hs, prehashed);
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_crypto_sign_ed25519_synthetic_r_hv(&hs, nonce, az, sk);
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#ifdef ED25519_NONDETERMINISTIC
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memcpy(az, sk, 32);
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_crypto_sign_ed25519_synthetic_r_hv(&hs, nonce, az);
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#else
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crypto_hash_sha512(az, sk, 32);
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_crypto_sign_ed25519_clamp(az);
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_crypto_sign_ed25519_ref10_hinit(&hs, prehashed);
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crypto_hash_sha512_update(&hs, az + 32, 32);
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#endif
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crypto_hash_sha512_update(&hs, m, mlen);
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crypto_hash_sha512_final(&hs, nonce);
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@ -99,6 +97,7 @@ _crypto_sign_ed25519_detached(unsigned char *sig, unsigned long long *siglen_p,
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crypto_hash_sha512_final(&hs, hram);
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sc_reduce(hram);
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_crypto_sign_ed25519_clamp(az);
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sc_muladd(sig + 32, hram, az, nonce);
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sodium_memzero(az, sizeof az);
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@ -18,9 +18,17 @@ main(void)
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unsigned char curve25519_sk[crypto_scalarmult_curve25519_BYTES];
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char curve25519_pk_hex[crypto_scalarmult_curve25519_BYTES * 2 + 1];
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char curve25519_sk_hex[crypto_scalarmult_curve25519_BYTES * 2 + 1];
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unsigned char hseed[crypto_hash_sha512_BYTES];
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unsigned int i;
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crypto_sign_ed25519_seed_keypair(ed25519_pk, ed25519_skpk, keypair_seed);
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assert(crypto_sign_ed25519_SEEDBYTES <= crypto_hash_sha512_BYTES);
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#ifdef ED25519_NONDETERMINISTIC
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crypto_hash_sha512(hseed, keypair_seed, crypto_sign_ed25519_SEEDBYTES);
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#else
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memcpy(hseed, keypair_seed, crypto_sign_ed25519_SEEDBYTES);
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#endif
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crypto_sign_ed25519_seed_keypair(ed25519_pk, ed25519_skpk, hseed);
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if (crypto_sign_ed25519_pk_to_curve25519(curve25519_pk, ed25519_pk) != 0) {
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printf("conversion failed\n");
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}
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