#endif
int i;
+ if (w == 0)
+ return (BN_ULONG)-1;
+
bn_check_top(a);
w&=BN_MASK2;
for (i=a->top-1; i>=0; i--)
if (!w)
/* actually this an error (division by zero) */
- return 0;
+ return (BN_ULONG)-1;
if (a->top == 0)
return 0;
j = BN_BITS2 - BN_num_bits_word(w);
w <<= j;
if (!BN_lshift(a, a, j))
- return 0;
+ return (BN_ULONG)-1;
for (i=a->top-1; i>=0; i--)
{
BN_sub_word() subtracts B<w> from B<a> (C<a-=w>).
-BN_mul_word() multiplies B<a> and B<w> (C<a*=b>).
+BN_mul_word() multiplies B<a> and B<w> (C<a*=w>).
BN_div_word() divides B<a> by B<w> (C<a/=w>) and returns the remainder.
-BN_mod_word() returns the remainder of B<a> divided by B<w> (C<a%m>).
+BN_mod_word() returns the remainder of B<a> divided by B<w> (C<a%w>).
For BN_div_word() and BN_mod_word(), B<w> must not be 0.
BN_add_word(), BN_sub_word() and BN_mul_word() return 1 for success, 0
on error. The error codes can be obtained by L<ERR_get_error(3)|ERR_get_error(3)>.
-BN_mod_word() and BN_div_word() return B<a>%B<w>.
+BN_mod_word() and BN_div_word() return B<a>%B<w> on success and
+B<(BN_ULONG)-1> if an error occurred.
=head1 SEE ALSO
SSLeay and OpenSSL. BN_div_word() was added in SSLeay 0.8, and
BN_sub_word() and BN_mul_word() in SSLeay 0.9.0.
+Before 0.9.8a the return value for BN_div_word() and BN_mod_word()
+in case of an error was 0.
+
=cut