Fix for CVE-2014-0076
Fix for the attack described in the paper "Recovering OpenSSL
ECDSA Nonces Using the FLUSH+RELOAD Cache Side-channel Attack"
by Yuval Yarom and Naomi Benger. Details can be obtained from:
http://eprint.iacr.org/2014/140
Thanks to Yuval Yarom and Naomi Benger for discovering this
flaw and to Yuval Yarom for supplying a fix.
(cherry picked from commit 2198be3483
)
Conflicts:
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@ -4,6 +4,15 @@
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Changes between 1.0.1f and 1.0.1g [xx XXX xxxx]
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*) Fix for the attack described in the paper "Recovering OpenSSL
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ECDSA Nonces Using the FLUSH+RELOAD Cache Side-channel Attack"
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by Yuval Yarom and Naomi Benger. Details can be obtained from:
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http://eprint.iacr.org/2014/140
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Thanks to Yuval Yarom and Naomi Benger for discovering this
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flaw and to Yuval Yarom for supplying a fix (CVE-2014-0076)
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[Yuval Yarom and Naomi Benger]
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*) TLS pad extension: draft-agl-tls-padding-02
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Workaround for the "TLS hang bug" (see FAQ and PR#2771): if the
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@ -538,6 +538,8 @@ BIGNUM *BN_mod_inverse(BIGNUM *ret,
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BIGNUM *BN_mod_sqrt(BIGNUM *ret,
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const BIGNUM *a, const BIGNUM *n,BN_CTX *ctx);
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void BN_consttime_swap(BN_ULONG swap, BIGNUM *a, BIGNUM *b, int nwords);
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/* Deprecated versions */
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#ifndef OPENSSL_NO_DEPRECATED
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BIGNUM *BN_generate_prime(BIGNUM *ret,int bits,int safe,
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@ -774,11 +776,20 @@ int RAND_pseudo_bytes(unsigned char *buf,int num);
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#define bn_fix_top(a) bn_check_top(a)
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#define bn_check_size(bn, bits) bn_wcheck_size(bn, ((bits+BN_BITS2-1))/BN_BITS2)
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#define bn_wcheck_size(bn, words) \
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do { \
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const BIGNUM *_bnum2 = (bn); \
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assert(words <= (_bnum2)->dmax && words >= (_bnum2)->top); \
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} while(0)
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#else /* !BN_DEBUG */
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#define bn_pollute(a)
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#define bn_check_top(a)
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#define bn_fix_top(a) bn_correct_top(a)
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#define bn_check_size(bn, bits)
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#define bn_wcheck_size(bn, words)
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#endif
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@ -824,3 +824,55 @@ int bn_cmp_part_words(const BN_ULONG *a, const BN_ULONG *b,
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}
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return bn_cmp_words(a,b,cl);
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}
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/*
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* Constant-time conditional swap of a and b.
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* a and b are swapped if condition is not 0. The code assumes that at most one bit of condition is set.
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* nwords is the number of words to swap. The code assumes that at least nwords are allocated in both a and b,
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* and that no more than nwords are used by either a or b.
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* a and b cannot be the same number
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*/
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void BN_consttime_swap(BN_ULONG condition, BIGNUM *a, BIGNUM *b, int nwords)
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{
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BN_ULONG t;
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int i;
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bn_wcheck_size(a, nwords);
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bn_wcheck_size(b, nwords);
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assert(a != b);
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assert((condition & (condition - 1)) == 0);
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assert(sizeof(BN_ULONG) >= sizeof(int));
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condition = ((condition - 1) >> (BN_BITS2 - 1)) - 1;
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t = (a->top^b->top) & condition;
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a->top ^= t;
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b->top ^= t;
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#define BN_CONSTTIME_SWAP(ind) \
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do { \
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t = (a->d[ind] ^ b->d[ind]) & condition; \
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a->d[ind] ^= t; \
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b->d[ind] ^= t; \
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} while (0)
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switch (nwords) {
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default:
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for (i = 10; i < nwords; i++)
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BN_CONSTTIME_SWAP(i);
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/* Fallthrough */
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case 10: BN_CONSTTIME_SWAP(9); /* Fallthrough */
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case 9: BN_CONSTTIME_SWAP(8); /* Fallthrough */
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case 8: BN_CONSTTIME_SWAP(7); /* Fallthrough */
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case 7: BN_CONSTTIME_SWAP(6); /* Fallthrough */
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case 6: BN_CONSTTIME_SWAP(5); /* Fallthrough */
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case 5: BN_CONSTTIME_SWAP(4); /* Fallthrough */
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case 4: BN_CONSTTIME_SWAP(3); /* Fallthrough */
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case 3: BN_CONSTTIME_SWAP(2); /* Fallthrough */
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case 2: BN_CONSTTIME_SWAP(1); /* Fallthrough */
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case 1: BN_CONSTTIME_SWAP(0);
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}
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#undef BN_CONSTTIME_SWAP
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}
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@ -208,11 +208,15 @@ static int gf2m_Mxy(const EC_GROUP *group, const BIGNUM *x, const BIGNUM *y, BIG
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return ret;
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}
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/* Computes scalar*point and stores the result in r.
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* point can not equal r.
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* Uses algorithm 2P of
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* Uses a modified algorithm 2P of
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* Lopez, J. and Dahab, R. "Fast multiplication on elliptic curves over
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* GF(2^m) without precomputation" (CHES '99, LNCS 1717).
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*
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* To protect against side-channel attack the function uses constant time swap,
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* avoiding conditional branches.
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*/
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static int ec_GF2m_montgomery_point_multiply(const EC_GROUP *group, EC_POINT *r, const BIGNUM *scalar,
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const EC_POINT *point, BN_CTX *ctx)
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@ -246,6 +250,11 @@ static int ec_GF2m_montgomery_point_multiply(const EC_GROUP *group, EC_POINT *r,
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x2 = &r->X;
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z2 = &r->Y;
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bn_wexpand(x1, group->field.top);
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bn_wexpand(z1, group->field.top);
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bn_wexpand(x2, group->field.top);
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bn_wexpand(z2, group->field.top);
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if (!BN_GF2m_mod_arr(x1, &point->X, group->poly)) goto err; /* x1 = x */
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if (!BN_one(z1)) goto err; /* z1 = 1 */
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if (!group->meth->field_sqr(group, z2, x1, ctx)) goto err; /* z2 = x1^2 = x^2 */
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@ -270,16 +279,12 @@ static int ec_GF2m_montgomery_point_multiply(const EC_GROUP *group, EC_POINT *r,
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word = scalar->d[i];
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while (mask)
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{
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if (word & mask)
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{
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if (!gf2m_Madd(group, &point->X, x1, z1, x2, z2, ctx)) goto err;
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if (!gf2m_Mdouble(group, x2, z2, ctx)) goto err;
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}
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else
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{
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if (!gf2m_Madd(group, &point->X, x2, z2, x1, z1, ctx)) goto err;
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if (!gf2m_Mdouble(group, x1, z1, ctx)) goto err;
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}
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BN_consttime_swap(word & mask, x1, x2, group->field.top);
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BN_consttime_swap(word & mask, z1, z2, group->field.top);
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if (!gf2m_Madd(group, &point->X, x2, z2, x1, z1, ctx)) goto err;
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if (!gf2m_Mdouble(group, x1, z1, ctx)) goto err;
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BN_consttime_swap(word & mask, x1, x2, group->field.top);
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BN_consttime_swap(word & mask, z1, z2, group->field.top);
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mask >>= 1;
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}
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mask = BN_TBIT;
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