if (`$ENV{CC} -Wa,-v -c -o /dev/null -x assembler /dev/null 2>&1`
=~ /GNU assembler version ([2-9]\.[0-9]+)/) {
$avx = ($1>=2.19) + ($1>=2.22);
+ $addx = ($1>=2.23);
}
if (!$avx && $win64 && ($flavour =~ /nasm/ || $ENV{ASM} =~ /nasm/) &&
`nasm -v 2>&1` =~ /NASM version ([2-9]\.[0-9]+)/) {
$avx = ($1>=2.09) + ($1>=2.10);
+ $addx = ($1>=2.10);
}
if (!$avx && $win64 && ($flavour =~ /masm/ || $ENV{ASM} =~ /ml64/) &&
`ml64 2>&1` =~ /Version ([0-9]+)\./) {
$avx = ($1>=10) + ($1>=11);
+ $addx = ($1>=11);
}
open OUT,"| $^X $xlate $flavour $output";
.align 32
rsaz_avx2_eligible:
mov OPENSSL_ia32cap_P+8(%rip),%eax
+___
+$code.=<<___ if ($addx);
+ mov \$`1<<8|1<<19`,%ecx
+ mov \$0,%edx
+ and %eax,%ecx
+ cmp \$`1<<8|1<<19`,%ecx # check for BMI2+AD*X
+ cmove %edx,%eax
+___
+$code.=<<___;
and \$`1<<5`,%eax
shr \$5,%eax
ret
* RSAZ exponentiation. For further information see
* crypto/bn/rsaz_exp.c and accompanying assembly modules.
*/
- if (((OPENSSL_ia32cap_P[2]&0x80100) != 0x80100) /* check for MULX/AD*X */
- && (16 == a->top) && (16 == p->top) && (BN_num_bits(m) == 1024)
+ if ((16 == a->top) && (16 == p->top) && (BN_num_bits(m) == 1024)
&& rsaz_avx2_eligible())
{
if (NULL == bn_wexpand(rr, 16)) goto err;