[ec/ecp_nistp*.c] remove flip_endian()
Replace flip_endian() by using the little endian specific BN_bn2lebinpad() and BN_lebin2bn(). Reviewed-by: Matt Caswell <matt@openssl.org> Reviewed-by: Bernd Edlinger <bernd.edlinger@hotmail.de> (Merged from https://github.com/openssl/openssl/pull/9511) (cherry picked from commit e0b660c27d8d97b4ad9e2098cc957de26872c0ef)
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2432e1291d
commit
61387fd3a5
3 changed files with 68 additions and 90 deletions
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@ -324,32 +324,21 @@ static void felem_to_bin28(u8 out[28], const felem in)
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}
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}
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/* To preserve endianness when using BN_bn2bin and BN_bin2bn */
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static void flip_endian(u8 *out, const u8 *in, unsigned len)
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{
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unsigned i;
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for (i = 0; i < len; ++i)
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out[i] = in[len - 1 - i];
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}
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/* From OpenSSL BIGNUM to internal representation */
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static int BN_to_felem(felem out, const BIGNUM *bn)
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{
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felem_bytearray b_in;
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felem_bytearray b_out;
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unsigned num_bytes;
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int num_bytes;
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num_bytes = BN_num_bytes(bn);
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if (num_bytes > sizeof(b_out)) {
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ECerr(EC_F_BN_TO_FELEM, EC_R_BIGNUM_OUT_OF_RANGE);
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return 0;
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}
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if (BN_is_negative(bn)) {
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ECerr(EC_F_BN_TO_FELEM, EC_R_BIGNUM_OUT_OF_RANGE);
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return 0;
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}
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num_bytes = BN_bn2binpad(bn, b_in, sizeof(b_in));
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flip_endian(b_out, b_in, num_bytes);
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num_bytes = BN_bn2lebinpad(bn, b_out, sizeof(b_out));
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if (num_bytes < 0) {
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ECerr(EC_F_BN_TO_FELEM, EC_R_BIGNUM_OUT_OF_RANGE);
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return 0;
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}
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bin28_to_felem(out, b_out);
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return 1;
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}
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@ -357,10 +346,9 @@ static int BN_to_felem(felem out, const BIGNUM *bn)
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/* From internal representation to OpenSSL BIGNUM */
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static BIGNUM *felem_to_BN(BIGNUM *out, const felem in)
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{
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felem_bytearray b_in, b_out;
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felem_to_bin28(b_in, in);
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flip_endian(b_out, b_in, sizeof(b_out));
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return BN_bin2bn(b_out, sizeof(b_out), out);
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felem_bytearray b_out;
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felem_to_bin28(b_out, in);
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return BN_lebin2bn(b_out, sizeof(b_out), out);
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}
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/******************************************************************************/
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@ -1400,8 +1388,7 @@ int ec_GFp_nistp224_points_mul(const EC_GROUP *group, EC_POINT *r,
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felem_bytearray *secrets = NULL;
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felem (*pre_comp)[17][3] = NULL;
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felem *tmp_felems = NULL;
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felem_bytearray tmp;
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unsigned num_bytes;
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int num_bytes;
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int have_pre_comp = 0;
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size_t num_points = num;
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felem x_in, y_in, z_in, x_out, y_out, z_out;
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@ -1499,10 +1486,16 @@ int ec_GFp_nistp224_points_mul(const EC_GROUP *group, EC_POINT *r,
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ECerr(EC_F_EC_GFP_NISTP224_POINTS_MUL, ERR_R_BN_LIB);
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goto err;
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}
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num_bytes = BN_bn2binpad(tmp_scalar, tmp, sizeof(tmp));
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} else
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num_bytes = BN_bn2binpad(p_scalar, tmp, sizeof(tmp));
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flip_endian(secrets[i], tmp, num_bytes);
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num_bytes = BN_bn2lebinpad(tmp_scalar,
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secrets[i], sizeof(secrets[i]));
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} else {
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num_bytes = BN_bn2lebinpad(p_scalar,
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secrets[i], sizeof(secrets[i]));
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}
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if (num_bytes < 0) {
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ECerr(EC_F_EC_GFP_NISTP224_POINTS_MUL, ERR_R_BN_LIB);
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goto err;
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}
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/* precompute multiples */
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if ((!BN_to_felem(x_out, p->X)) ||
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(!BN_to_felem(y_out, p->Y)) ||
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@ -1545,10 +1538,9 @@ int ec_GFp_nistp224_points_mul(const EC_GROUP *group, EC_POINT *r,
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ECerr(EC_F_EC_GFP_NISTP224_POINTS_MUL, ERR_R_BN_LIB);
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goto err;
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}
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num_bytes = BN_bn2binpad(tmp_scalar, tmp, sizeof(tmp));
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num_bytes = BN_bn2lebinpad(tmp_scalar, g_secret, sizeof(g_secret));
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} else
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num_bytes = BN_bn2binpad(scalar, tmp, sizeof(tmp));
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flip_endian(g_secret, tmp, num_bytes);
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num_bytes = BN_bn2lebinpad(scalar, g_secret, sizeof(g_secret));
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/* do the multiplication with generator precomputation */
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batch_mul(x_out, y_out, z_out,
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(const felem_bytearray(*))secrets, num_points,
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@ -146,32 +146,21 @@ static void smallfelem_to_bin32(u8 out[32], const smallfelem in)
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*((u64 *)&out[24]) = in[3];
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}
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/* To preserve endianness when using BN_bn2bin and BN_bin2bn */
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static void flip_endian(u8 *out, const u8 *in, unsigned len)
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{
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unsigned i;
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for (i = 0; i < len; ++i)
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out[i] = in[len - 1 - i];
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}
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/* BN_to_felem converts an OpenSSL BIGNUM into an felem */
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static int BN_to_felem(felem out, const BIGNUM *bn)
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{
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felem_bytearray b_in;
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felem_bytearray b_out;
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unsigned num_bytes;
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int num_bytes;
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num_bytes = BN_num_bytes(bn);
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if (num_bytes > sizeof(b_out)) {
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ECerr(EC_F_BN_TO_FELEM, EC_R_BIGNUM_OUT_OF_RANGE);
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return 0;
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}
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if (BN_is_negative(bn)) {
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ECerr(EC_F_BN_TO_FELEM, EC_R_BIGNUM_OUT_OF_RANGE);
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return 0;
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}
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num_bytes = BN_bn2binpad(bn, b_in, sizeof(b_in));
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flip_endian(b_out, b_in, num_bytes);
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num_bytes = BN_bn2lebinpad(bn, b_out, sizeof(b_out));
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if (num_bytes < 0) {
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ECerr(EC_F_BN_TO_FELEM, EC_R_BIGNUM_OUT_OF_RANGE);
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return 0;
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}
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bin32_to_felem(out, b_out);
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return 1;
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}
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@ -179,10 +168,9 @@ static int BN_to_felem(felem out, const BIGNUM *bn)
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/* felem_to_BN converts an felem into an OpenSSL BIGNUM */
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static BIGNUM *smallfelem_to_BN(BIGNUM *out, const smallfelem in)
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{
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felem_bytearray b_in, b_out;
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smallfelem_to_bin32(b_in, in);
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flip_endian(b_out, b_in, sizeof(b_out));
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return BN_bin2bn(b_out, sizeof(b_out), out);
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felem_bytearray b_out;
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smallfelem_to_bin32(b_out, in);
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return BN_lebin2bn(b_out, sizeof(b_out), out);
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}
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/*-
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@ -2022,8 +2010,8 @@ int ec_GFp_nistp256_points_mul(const EC_GROUP *group, EC_POINT *r,
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felem_bytearray *secrets = NULL;
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smallfelem (*pre_comp)[17][3] = NULL;
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smallfelem *tmp_smallfelems = NULL;
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felem_bytearray tmp;
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unsigned i, num_bytes;
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unsigned i;
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int num_bytes;
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int have_pre_comp = 0;
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size_t num_points = num;
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smallfelem x_in, y_in, z_in;
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@ -2126,10 +2114,16 @@ int ec_GFp_nistp256_points_mul(const EC_GROUP *group, EC_POINT *r,
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ECerr(EC_F_EC_GFP_NISTP256_POINTS_MUL, ERR_R_BN_LIB);
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goto err;
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}
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num_bytes = BN_bn2binpad(tmp_scalar, tmp, sizeof(tmp));
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} else
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num_bytes = BN_bn2binpad(p_scalar, tmp, sizeof(tmp));
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flip_endian(secrets[i], tmp, num_bytes);
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num_bytes = BN_bn2lebinpad(tmp_scalar,
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secrets[i], sizeof(secrets[i]));
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} else {
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num_bytes = BN_bn2lebinpad(p_scalar,
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secrets[i], sizeof(secrets[i]));
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}
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if (num_bytes < 0) {
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ECerr(EC_F_EC_GFP_NISTP256_POINTS_MUL, ERR_R_BN_LIB);
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goto err;
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}
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/* precompute multiples */
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if ((!BN_to_felem(x_out, p->X)) ||
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(!BN_to_felem(y_out, p->Y)) ||
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@ -2174,10 +2168,9 @@ int ec_GFp_nistp256_points_mul(const EC_GROUP *group, EC_POINT *r,
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ECerr(EC_F_EC_GFP_NISTP256_POINTS_MUL, ERR_R_BN_LIB);
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goto err;
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}
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num_bytes = BN_bn2binpad(tmp_scalar, tmp, sizeof(tmp));
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num_bytes = BN_bn2lebinpad(tmp_scalar, g_secret, sizeof(g_secret));
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} else
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num_bytes = BN_bn2binpad(scalar, tmp, sizeof(tmp));
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flip_endian(g_secret, tmp, num_bytes);
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num_bytes = BN_bn2lebinpad(scalar, g_secret, sizeof(g_secret));
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/* do the multiplication with generator precomputation */
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batch_mul(x_out, y_out, z_out,
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(const felem_bytearray(*))secrets, num_points,
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@ -169,32 +169,21 @@ static void felem_to_bin66(u8 out[66], const felem in)
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(*((limb *) & out[58])) = in[8];
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}
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/* To preserve endianness when using BN_bn2bin and BN_bin2bn */
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static void flip_endian(u8 *out, const u8 *in, unsigned len)
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{
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unsigned i;
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for (i = 0; i < len; ++i)
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out[i] = in[len - 1 - i];
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}
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/* BN_to_felem converts an OpenSSL BIGNUM into an felem */
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static int BN_to_felem(felem out, const BIGNUM *bn)
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{
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felem_bytearray b_in;
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felem_bytearray b_out;
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unsigned num_bytes;
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int num_bytes;
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num_bytes = BN_num_bytes(bn);
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if (num_bytes > sizeof(b_out)) {
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ECerr(EC_F_BN_TO_FELEM, EC_R_BIGNUM_OUT_OF_RANGE);
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return 0;
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}
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if (BN_is_negative(bn)) {
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ECerr(EC_F_BN_TO_FELEM, EC_R_BIGNUM_OUT_OF_RANGE);
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return 0;
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}
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num_bytes = BN_bn2binpad(bn, b_in, sizeof(b_in));
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flip_endian(b_out, b_in, num_bytes);
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num_bytes = BN_bn2lebinpad(bn, b_out, sizeof(b_out));
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if (num_bytes < 0) {
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ECerr(EC_F_BN_TO_FELEM, EC_R_BIGNUM_OUT_OF_RANGE);
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return 0;
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}
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bin66_to_felem(out, b_out);
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return 1;
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}
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@ -202,10 +191,9 @@ static int BN_to_felem(felem out, const BIGNUM *bn)
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/* felem_to_BN converts an felem into an OpenSSL BIGNUM */
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static BIGNUM *felem_to_BN(BIGNUM *out, const felem in)
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{
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felem_bytearray b_in, b_out;
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felem_to_bin66(b_in, in);
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flip_endian(b_out, b_in, sizeof(b_out));
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return BN_bin2bn(b_out, sizeof(b_out), out);
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felem_bytearray b_out;
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felem_to_bin66(b_out, in);
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return BN_lebin2bn(b_out, sizeof(b_out), out);
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}
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/*-
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@ -1864,8 +1852,8 @@ int ec_GFp_nistp521_points_mul(const EC_GROUP *group, EC_POINT *r,
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felem_bytearray *secrets = NULL;
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felem (*pre_comp)[17][3] = NULL;
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felem *tmp_felems = NULL;
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felem_bytearray tmp;
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unsigned i, num_bytes;
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unsigned i;
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int num_bytes;
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int have_pre_comp = 0;
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size_t num_points = num;
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felem x_in, y_in, z_in, x_out, y_out, z_out;
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@ -1966,10 +1954,16 @@ int ec_GFp_nistp521_points_mul(const EC_GROUP *group, EC_POINT *r,
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ECerr(EC_F_EC_GFP_NISTP521_POINTS_MUL, ERR_R_BN_LIB);
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goto err;
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}
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num_bytes = BN_bn2binpad(tmp_scalar, tmp, sizeof(tmp));
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} else
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num_bytes = BN_bn2binpad(p_scalar, tmp, sizeof(tmp));
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flip_endian(secrets[i], tmp, num_bytes);
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num_bytes = BN_bn2lebinpad(tmp_scalar,
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secrets[i], sizeof(secrets[i]));
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} else {
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num_bytes = BN_bn2lebinpad(p_scalar,
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secrets[i], sizeof(secrets[i]));
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}
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if (num_bytes < 0) {
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ECerr(EC_F_EC_GFP_NISTP521_POINTS_MUL, ERR_R_BN_LIB);
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goto err;
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}
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/* precompute multiples */
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if ((!BN_to_felem(x_out, p->X)) ||
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(!BN_to_felem(y_out, p->Y)) ||
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@ -2012,10 +2006,9 @@ int ec_GFp_nistp521_points_mul(const EC_GROUP *group, EC_POINT *r,
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ECerr(EC_F_EC_GFP_NISTP521_POINTS_MUL, ERR_R_BN_LIB);
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goto err;
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}
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num_bytes = BN_bn2binpad(tmp_scalar, tmp, sizeof(tmp));
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num_bytes = BN_bn2lebinpad(tmp_scalar, g_secret, sizeof(g_secret));
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} else
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num_bytes = BN_bn2binpad(scalar, tmp, sizeof(tmp));
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flip_endian(g_secret, tmp, num_bytes);
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num_bytes = BN_bn2lebinpad(scalar, g_secret, sizeof(g_secret));
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/* do the multiplication with generator precomputation */
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batch_mul(x_out, y_out, z_out,
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(const felem_bytearray(*))secrets, num_points,
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