Add 64-bit support to BN_nist_mod_244 and engage BN_nist_mod_* on 64-bit
platforms.
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@ -76,7 +76,7 @@ static const BN_ULONG _nist_p_224[][BN_NIST_224_TOP] = {
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{0x0000000000000001ULL,0xFFFFFFFF00000000ULL,
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0xFFFFFFFFFFFFFFFFULL,0x00000000FFFFFFFFULL},
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{0x0000000000000002ULL,0xFFFFFFFE00000000ULL,
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0xFFFFFFFFFFFFFFFFULL,0x00000000FFFFFFFFULL}
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0xFFFFFFFFFFFFFFFFULL,0x00000001FFFFFFFFULL} /* this one is "carry-full" */
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};
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static const BN_ULONG _nist_p_256[][BN_NIST_256_TOP] = {
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{0xFFFFFFFFFFFFFFFFULL,0x00000000FFFFFFFFULL,
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@ -148,6 +148,8 @@ static const BN_ULONG _nist_p_521[] = {0xFFFFFFFF,0xFFFFFFFF,0xFFFFFFFF,
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0xFFFFFFFF,0xFFFFFFFF,0xFFFFFFFF,0xFFFFFFFF,0xFFFFFFFF,0xFFFFFFFF,
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0xFFFFFFFF,0xFFFFFFFF,0xFFFFFFFF,0xFFFFFFFF,0xFFFFFFFF,0xFFFFFFFF,
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0xFFFFFFFF,0x000001FF};
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#else
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#error "unsupported BN_BITS2"
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#endif
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const BIGNUM *BN_get0_nist_prime_192(void)
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@ -321,7 +323,6 @@ typedef BN_ULONG (*bn_addsub_f)(BN_ULONG *,const BN_ULONG *,const BN_ULONG *,int
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int BN_nist_mod_224(BIGNUM *r, const BIGNUM *a, const BIGNUM *field,
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BN_CTX *ctx)
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{
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#if BN_BITS2 == 32
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int top = a->top, i;
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int carry;
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BN_ULONG *r_d, *a_d = a->d;
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@ -354,8 +355,16 @@ int BN_nist_mod_224(BIGNUM *r, const BIGNUM *a, const BIGNUM *field,
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else
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r_d = a_d;
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#if BN_BITS2==64
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/* copy upper 256 bits of 448 bit number ... */
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nist_cp_bn_0(t_d, a_d + (BN_NIST_224_TOP-1), top - (BN_NIST_224_TOP-1), BN_NIST_224_TOP);
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/* ... and right shift by 32 to obtain upper 224 bits */
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nist_set_224(buf, t_d, 14, 13, 12, 11, 10, 9, 8);
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/* truncate lower part to 224 bits too */
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r_d[BN_NIST_224_TOP-1] &= BN_MASK2l;
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#else
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nist_cp_bn_0(buf, a_d + BN_NIST_224_TOP, top - BN_NIST_224_TOP, BN_NIST_224_TOP);
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#endif
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nist_set_224(t_d, buf, 10, 9, 8, 7, 0, 0, 0);
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carry = bn_add_words(r_d, r_d, t_d, BN_NIST_224_TOP);
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nist_set_224(t_d, buf, 0, 13, 12, 11, 0, 0, 0);
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@ -365,9 +374,17 @@ int BN_nist_mod_224(BIGNUM *r, const BIGNUM *a, const BIGNUM *field,
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nist_set_224(t_d, buf, 0, 0, 0, 0, 13, 12, 11);
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carry -= bn_sub_words(r_d, r_d, t_d, BN_NIST_224_TOP);
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#if BN_BITS2==64
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carry = (int)(r_d[BN_NIST_224_TOP-1]>>32);
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#endif
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u.f = bn_sub_words;
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if (carry > 0)
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{
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carry = bn_sub_words(r_d,r_d,_nist_p_224[carry-1],BN_NIST_224_TOP);
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#if BN_BITS2==64
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carry=(int)(~(r_d[BN_NIST_224_TOP-1]>>32))&1;
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#endif
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}
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else if (carry < 0)
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{
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/* it's a bit more comlicated logic in this case.
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@ -392,9 +409,6 @@ int BN_nist_mod_224(BIGNUM *r, const BIGNUM *a, const BIGNUM *field,
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bn_correct_top(r);
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return 1;
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#else /* BN_BITS!=32 */
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return 0;
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#endif
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}
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#define nist_set_256(to, from, a1, a2, a3, a4, a5, a6, a7, a8) \
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@ -112,10 +112,6 @@ const EC_METHOD *EC_GFp_nist_method(void)
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return &ret;
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}
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#if BN_BITS2 == 64
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#define NO_32_BIT_TYPE
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#endif
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int ec_GFp_nist_group_copy(EC_GROUP *dest, const EC_GROUP *src)
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{
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dest->field_mod_func = src->field_mod_func;
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@ -139,34 +135,12 @@ int ec_GFp_nist_group_set_curve(EC_GROUP *group, const BIGNUM *p,
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if (BN_ucmp(BN_get0_nist_prime_192(), p) == 0)
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group->field_mod_func = BN_nist_mod_192;
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else if (BN_ucmp(BN_get0_nist_prime_224(), p) == 0)
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{
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#ifndef NO_32_BIT_TYPE
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group->field_mod_func = BN_nist_mod_224;
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#else
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ECerr(EC_F_EC_GFP_NIST_GROUP_SET_CURVE, EC_R_NOT_A_SUPPORTED_NIST_PRIME);
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goto err;
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#endif
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}
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else if (BN_ucmp(BN_get0_nist_prime_256(), p) == 0)
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{
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#ifndef NO_32_BIT_TYPE
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group->field_mod_func = BN_nist_mod_256;
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#else
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ECerr(EC_F_EC_GFP_NIST_GROUP_SET_CURVE, EC_R_NOT_A_SUPPORTED_NIST_PRIME);
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goto err;
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#endif
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}
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else if (BN_ucmp(BN_get0_nist_prime_384(), p) == 0)
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{
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#ifndef NO_32_BIT_TYPE
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group->field_mod_func = BN_nist_mod_384;
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#else
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ECerr(EC_F_EC_GFP_NIST_GROUP_SET_CURVE, EC_R_NOT_A_SUPPORTED_NIST_PRIME);
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goto err;
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#endif
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}
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else if (BN_ucmp(BN_get0_nist_prime_521(), p) == 0)
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/* this one works in the NO_32_BIT_TYPE case */
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group->field_mod_func = BN_nist_mod_521;
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else
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{
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