3abaca2aae
* gnu/packages/patches/nettle-3.5-check-_pkcs1_sec_decrypt-msg-len.patch, gnu/packages/patches/nettle-3.5-CVE-2021-3580-pt1.patch, gnu/packages/patches/nettle-3.5-CVE-2021-3580-pt2.patch: New files. * gnu/local.mk (dist_patch_DATA): Add them. * gnu/packages/nettle.scm (nettle)[replacement]: New field. (nettle-3.5/fixed): New variable.
276 lines
9 KiB
Diff
276 lines
9 KiB
Diff
Copied from upstream nettle git repository.
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Removed changes to ChangeLog, to allow this patch to apply to nettle-3.5.
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From 485b5e2820a057e873b1ba812fdb39cae4adf98c Mon Sep 17 00:00:00 2001
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From: Niels Möller <nisse@lysator.liu.se>
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Date: Mon, 17 May 2021 20:55:26 +0200
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Subject: [PATCH 1/2] Change _rsa_sec_compute_root_tr to take a fix input size.
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Improves consistency with _rsa_sec_compute_root, and fixes zero-input bug.
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---
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ChangeLog | 15 +++++++++
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rsa-decrypt-tr.c | 7 ++---
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rsa-internal.h | 4 +--
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rsa-sec-decrypt.c | 9 ++++--
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rsa-sign-tr.c | 61 +++++++++++++++++-------------------
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testsuite/rsa-encrypt-test.c | 14 ++++++++-
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6 files changed, 68 insertions(+), 42 deletions(-)
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diff --git a/rsa-decrypt-tr.c b/rsa-decrypt-tr.c
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index 0224c0b7..927a8915 100644
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--- a/rsa-decrypt-tr.c
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+++ b/rsa-decrypt-tr.c
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@@ -52,14 +52,13 @@ rsa_decrypt_tr(const struct rsa_public_key *pub,
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mp_size_t key_limb_size;
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int res;
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- key_limb_size = NETTLE_OCTET_SIZE_TO_LIMB_SIZE(key->size);
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+ key_limb_size = mpz_size(pub->n);
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TMP_GMP_ALLOC (m, key_limb_size);
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TMP_GMP_ALLOC (em, key->size);
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+ mpz_limbs_copy(m, gibberish, key_limb_size);
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- res = _rsa_sec_compute_root_tr (pub, key, random_ctx, random, m,
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- mpz_limbs_read(gibberish),
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- mpz_size(gibberish));
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+ res = _rsa_sec_compute_root_tr (pub, key, random_ctx, random, m, m);
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mpn_get_base256 (em, key->size, m, key_limb_size);
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diff --git a/rsa-internal.h b/rsa-internal.h
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index b828e451..f66a7df0 100644
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--- a/rsa-internal.h
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+++ b/rsa-internal.h
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@@ -78,11 +78,11 @@ _rsa_sec_compute_root(const struct rsa_private_key *key,
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mp_limb_t *scratch);
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/* Safe side-channel silent variant, using RSA blinding, and checking the
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- * result after CRT. */
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+ * result after CRT. In-place calls, with x == m, is allowed. */
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int
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_rsa_sec_compute_root_tr(const struct rsa_public_key *pub,
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const struct rsa_private_key *key,
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void *random_ctx, nettle_random_func *random,
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- mp_limb_t *x, const mp_limb_t *m, size_t mn);
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+ mp_limb_t *x, const mp_limb_t *m);
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#endif /* NETTLE_RSA_INTERNAL_H_INCLUDED */
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diff --git a/rsa-sec-decrypt.c b/rsa-sec-decrypt.c
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index 6866e7c8..fc4757a0 100644
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--- a/rsa-sec-decrypt.c
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+++ b/rsa-sec-decrypt.c
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@@ -58,9 +58,12 @@ rsa_sec_decrypt(const struct rsa_public_key *pub,
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TMP_GMP_ALLOC (m, mpz_size(pub->n));
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TMP_GMP_ALLOC (em, key->size);
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- res = _rsa_sec_compute_root_tr (pub, key, random_ctx, random, m,
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- mpz_limbs_read(gibberish),
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- mpz_size(gibberish));
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+ /* We need a copy because m can be shorter than key_size,
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+ * but _rsa_sec_compute_root_tr expect all inputs to be
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+ * normalized to a key_size long buffer length */
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+ mpz_limbs_copy(m, gibberish, mpz_size(pub->n));
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+
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+ res = _rsa_sec_compute_root_tr (pub, key, random_ctx, random, m, m);
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mpn_get_base256 (em, key->size, m, mpz_size(pub->n));
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diff --git a/rsa-sign-tr.c b/rsa-sign-tr.c
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index f824c4ca..9e137c7a 100644
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--- a/rsa-sign-tr.c
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+++ b/rsa-sign-tr.c
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@@ -131,35 +131,34 @@ int
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_rsa_sec_compute_root_tr(const struct rsa_public_key *pub,
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const struct rsa_private_key *key,
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void *random_ctx, nettle_random_func *random,
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- mp_limb_t *x, const mp_limb_t *m, size_t mn)
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+ mp_limb_t *x, const mp_limb_t *m)
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{
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+ mp_size_t nn;
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mpz_t mz;
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mpz_t xz;
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int res;
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- mpz_init(mz);
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mpz_init(xz);
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- mpn_copyi(mpz_limbs_write(mz, mn), m, mn);
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- mpz_limbs_finish(mz, mn);
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+ nn = mpz_size (pub->n);
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- res = rsa_compute_root_tr(pub, key, random_ctx, random, xz, mz);
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+ res = rsa_compute_root_tr(pub, key, random_ctx, random, xz,
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+ mpz_roinit_n(mz, m, nn));
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if (res)
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- mpz_limbs_copy(x, xz, mpz_size(pub->n));
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+ mpz_limbs_copy(x, xz, nn);
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- mpz_clear(mz);
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mpz_clear(xz);
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return res;
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}
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#else
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/* Blinds m, by computing c = m r^e (mod n), for a random r. Also
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- returns the inverse (ri), for use by rsa_unblind. */
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+ returns the inverse (ri), for use by rsa_unblind. Must have c != m,
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+ no in-place operation.*/
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static void
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rsa_sec_blind (const struct rsa_public_key *pub,
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void *random_ctx, nettle_random_func *random,
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- mp_limb_t *c, mp_limb_t *ri, const mp_limb_t *m,
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- mp_size_t mn)
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+ mp_limb_t *c, mp_limb_t *ri, const mp_limb_t *m)
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{
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const mp_limb_t *ep = mpz_limbs_read (pub->e);
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const mp_limb_t *np = mpz_limbs_read (pub->n);
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@@ -177,15 +176,15 @@ rsa_sec_blind (const struct rsa_public_key *pub,
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/* c = m*(r^e) mod n */
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itch = mpn_sec_powm_itch(nn, ebn, nn);
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- i2 = mpn_sec_mul_itch(nn, mn);
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+ i2 = mpn_sec_mul_itch(nn, nn);
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itch = MAX(itch, i2);
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- i2 = mpn_sec_div_r_itch(nn + mn, nn);
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+ i2 = mpn_sec_div_r_itch(2*nn, nn);
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itch = MAX(itch, i2);
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i2 = mpn_sec_invert_itch(nn);
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itch = MAX(itch, i2);
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- TMP_GMP_ALLOC (tp, nn + mn + itch);
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- scratch = tp + nn + mn;
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+ TMP_GMP_ALLOC (tp, 2*nn + itch);
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+ scratch = tp + 2*nn;
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/* ri = r^(-1) */
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do
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@@ -198,9 +197,8 @@ rsa_sec_blind (const struct rsa_public_key *pub,
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while (!mpn_sec_invert (ri, tp, np, nn, 2 * nn * GMP_NUMB_BITS, scratch));
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mpn_sec_powm (c, rp, nn, ep, ebn, np, nn, scratch);
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- /* normally mn == nn, but m can be smaller in some cases */
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- mpn_sec_mul (tp, c, nn, m, mn, scratch);
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- mpn_sec_div_r (tp, nn + mn, np, nn, scratch);
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+ mpn_sec_mul (tp, c, nn, m, nn, scratch);
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+ mpn_sec_div_r (tp, 2*nn, np, nn, scratch);
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mpn_copyi(c, tp, nn);
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TMP_GMP_FREE (r);
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@@ -208,7 +206,7 @@ rsa_sec_blind (const struct rsa_public_key *pub,
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TMP_GMP_FREE (tp);
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}
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-/* m = c ri mod n */
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+/* m = c ri mod n. Allows x == c. */
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static void
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rsa_sec_unblind (const struct rsa_public_key *pub,
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mp_limb_t *x, mp_limb_t *ri, const mp_limb_t *c)
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@@ -299,7 +297,7 @@ int
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_rsa_sec_compute_root_tr(const struct rsa_public_key *pub,
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const struct rsa_private_key *key,
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void *random_ctx, nettle_random_func *random,
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- mp_limb_t *x, const mp_limb_t *m, size_t mn)
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+ mp_limb_t *x, const mp_limb_t *m)
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{
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TMP_GMP_DECL (c, mp_limb_t);
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TMP_GMP_DECL (ri, mp_limb_t);
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@@ -307,7 +305,7 @@ _rsa_sec_compute_root_tr(const struct rsa_public_key *pub,
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size_t key_limb_size;
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int ret;
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- key_limb_size = NETTLE_OCTET_SIZE_TO_LIMB_SIZE(key->size);
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+ key_limb_size = mpz_size(pub->n);
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/* mpz_powm_sec handles only odd moduli. If p, q or n is even, the
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key is invalid and rejected by rsa_private_key_prepare. However,
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@@ -321,19 +319,18 @@ _rsa_sec_compute_root_tr(const struct rsa_public_key *pub,
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}
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assert(mpz_size(pub->n) == key_limb_size);
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- assert(mn <= key_limb_size);
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TMP_GMP_ALLOC (c, key_limb_size);
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TMP_GMP_ALLOC (ri, key_limb_size);
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TMP_GMP_ALLOC (scratch, _rsa_sec_compute_root_itch(key));
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- rsa_sec_blind (pub, random_ctx, random, x, ri, m, mn);
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+ rsa_sec_blind (pub, random_ctx, random, c, ri, m);
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- _rsa_sec_compute_root(key, c, x, scratch);
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+ _rsa_sec_compute_root(key, x, c, scratch);
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- ret = rsa_sec_check_root(pub, c, x);
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+ ret = rsa_sec_check_root(pub, x, c);
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- rsa_sec_unblind(pub, x, ri, c);
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+ rsa_sec_unblind(pub, x, ri, x);
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cnd_mpn_zero(1 - ret, x, key_limb_size);
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@@ -357,17 +354,17 @@ rsa_compute_root_tr(const struct rsa_public_key *pub,
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mpz_t x, const mpz_t m)
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{
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TMP_GMP_DECL (l, mp_limb_t);
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+ mp_size_t nn = mpz_size(pub->n);
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int res;
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- mp_size_t l_size = NETTLE_OCTET_SIZE_TO_LIMB_SIZE(key->size);
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- TMP_GMP_ALLOC (l, l_size);
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+ TMP_GMP_ALLOC (l, nn);
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+ mpz_limbs_copy(l, m, nn);
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- res = _rsa_sec_compute_root_tr (pub, key, random_ctx, random, l,
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- mpz_limbs_read(m), mpz_size(m));
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+ res = _rsa_sec_compute_root_tr (pub, key, random_ctx, random, l, l);
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if (res) {
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- mp_limb_t *xp = mpz_limbs_write (x, l_size);
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- mpn_copyi (xp, l, l_size);
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- mpz_limbs_finish (x, l_size);
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+ mp_limb_t *xp = mpz_limbs_write (x, nn);
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+ mpn_copyi (xp, l, nn);
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+ mpz_limbs_finish (x, nn);
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}
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TMP_GMP_FREE (l);
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diff --git a/testsuite/rsa-encrypt-test.c b/testsuite/rsa-encrypt-test.c
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index 87525f78..d3bc374b 100644
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--- a/testsuite/rsa-encrypt-test.c
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+++ b/testsuite/rsa-encrypt-test.c
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@@ -19,6 +19,7 @@ test_main(void)
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uint8_t after;
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mpz_t gibberish;
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+ mpz_t zero;
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rsa_private_key_init(&key);
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rsa_public_key_init(&pub);
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@@ -101,6 +102,17 @@ test_main(void)
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ASSERT(decrypted[decrypted_length] == after);
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ASSERT(decrypted[0] == 'A');
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+ /* Test zero input. */
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+ mpz_init_set_ui (zero, 0);
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+ decrypted_length = msg_length;
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+ ASSERT(!rsa_decrypt(&key, &decrypted_length, decrypted, zero));
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+ ASSERT(!rsa_decrypt_tr(&pub, &key,
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+ &lfib, (nettle_random_func *) knuth_lfib_random,
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+ &decrypted_length, decrypted, zero));
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+ ASSERT(!rsa_sec_decrypt(&pub, &key,
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+ &lfib, (nettle_random_func *) knuth_lfib_random,
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+ decrypted_length, decrypted, zero));
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+ ASSERT(decrypted_length == msg_length);
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/* Test invalid key. */
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mpz_add_ui (key.q, key.q, 2);
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@@ -112,6 +124,6 @@ test_main(void)
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rsa_private_key_clear(&key);
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rsa_public_key_clear(&pub);
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mpz_clear(gibberish);
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+ mpz_clear(zero);
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free(decrypted);
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}
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-
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--
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2.31.1
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