/* mpn_sbpi1_div_qr -- Schoolbook division using the Möller-Granlund 3/2
division algorithm .
Contributed to the GNU project by Torbjorn Granlund .
THE FUNCTION IN THIS FILE IS INTERNAL WITH A MUTABLE INTERFACE . IT IS ONLY
SAFE TO REACH IT THROUGH DOCUMENTED INTERFACES . IN FACT , IT IS ALMOST
GUARANTEED THAT IT WILL CHANGE OR DISAPPEAR IN A FUTURE GMP RELEASE .
Copyright 2007 , 2009 Free Software Foundation , Inc .
This file is part of the GNU MP Library .
The GNU MP Library is free software ; you can redistribute it and / or modify
it under the terms of either :
* the GNU Lesser General Public License as published by the Free
Software Foundation ; either version 3 of the License , or ( at your
option ) any later version .
or
* the GNU General Public License as published by the Free Software
Foundation ; either version 2 of the License , or ( at your option ) any
later version .
or both in parallel , as here .
The GNU MP Library is distributed in the hope that it will be useful , but
WITHOUT ANY WARRANTY ; without even the implied warranty of MERCHANTABILITY
or FITNESS FOR A PARTICULAR PURPOSE . See the GNU General Public License
for more details .
You should have received copies of the GNU General Public License and the
GNU Lesser General Public License along with the GNU MP Library . If not ,
see https://www.gnu.org/licenses/. */
#include "gmp-impl.h"
#include "longlong.h"
mp_limb_t
mpn_sbpi1_div_qr (mp_ptr qp,
mp_ptr np, mp_size_t nn,
mp_srcptr dp, mp_size_t dn,
mp_limb_t dinv)
{
mp_limb_t qh;
mp_size_t i;
mp_limb_t n1, n0;
mp_limb_t d1, d0;
mp_limb_t cy, cy1;
mp_limb_t q;
ASSERT (dn >
2 );
ASSERT (nn >= dn);
ASSERT ((dp[dn-
1 ] & GMP_NUMB_HIGHBIT) !=
0 );
np += nn;
qh = mpn_cmp (np - dn, dp, dn) >=
0 ;
if (qh !=
0 )
mpn_sub_n (np - dn, np - dn, dp, dn);
qp += nn - dn;
dn -=
2 ;
/* offset dn by 2 for main division loops,
saving two iterations in mpn_submul_1. */
d1 = dp[dn +
1 ];
d0 = dp[dn +
0 ];
np -=
2 ;
n1 = np[
1 ];
for (i = nn - (dn +
2 ); i >
0 ; i--)
{
np--;
if (UNLIKELY (n1 == d1) && np[
1 ] == d0)
{
q = GMP_NUMB_MASK;
mpn_submul_1 (np - dn, dp, dn +
2 , q);
n1 = np[
1 ];
/* update n1, last loop's value will now be invalid */
}
else
{
udiv_qr_3by2 (q, n1, n0, n1, np[
1 ], np[
0 ], d1, d0, dinv);
cy = mpn_submul_1 (np - dn, dp, dn, q);
cy1 = n0 < cy;
n0 = (n0 - cy) & GMP_NUMB_MASK;
cy = n1 < cy1;
n1 = (n1 - cy1) & GMP_NUMB_MASK;
np[
0 ] = n0;
if (UNLIKELY (cy !=
0 ))
{
n1 += d1 + mpn_add_n (np - dn, np - dn, dp, dn +
1 );
q--;
}
}
*--qp = q;
}
np[
1 ] = n1;
return qh;
}
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