arb/fmprb_poly/compose.c

107 lines
3.2 KiB
C
Raw Normal View History

/*=============================================================================
This file is part of ARB.
ARB is free software; you can redistribute it and/or modify
it under the terms of 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.
ARB 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 a copy of the GNU General Public License
along with ARB; if not, write to the Free Software
Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
=============================================================================*/
/******************************************************************************
Copyright (C) 2010 William Hart
Copyright (C) 2012 Sebastian Pancratz
Copyright (C) 2012 Fredrik Johansson
******************************************************************************/
#include "fmprb_poly.h"
void
_fmprb_poly_compose(fmprb_ptr res,
fmprb_srcptr poly1, long len1,
fmprb_srcptr poly2, long len2, long prec)
{
2013-08-26 14:03:46 +02:00
if (len2 == 1)
{
_fmprb_poly_evaluate(res, poly1, len1, poly2, prec);
}
else if (_fmprb_vec_is_zero(poly2, len2 - 1)) /* poly2 is a monomial */
{
long i;
fmprb_t t;
fmprb_init(t);
fmprb_set(t, poly2 + len2 - 1);
fmprb_set_round(res, poly1, prec);
for (i = 1; i < len1; i++)
{
fmprb_mul(res + i * (len2 - 1), poly1 + i, t, prec);
if (i + 1 < len1)
fmprb_mul(t, t, poly2 + len2 - 1, prec);
_fmprb_vec_zero(res + (i - 1) * (len2 - 1) + 1, len2 - 2);
}
fmprb_clear(t);
}
else if (len1 <= 7)
{
_fmprb_poly_compose_horner(res, poly1, len1, poly2, len2, prec);
2013-08-26 14:03:46 +02:00
}
else
2013-08-26 14:03:46 +02:00
{
_fmprb_poly_compose_divconquer(res, poly1, len1, poly2, len2, prec);
2013-08-26 14:03:46 +02:00
}
}
void fmprb_poly_compose(fmprb_poly_t res,
const fmprb_poly_t poly1, const fmprb_poly_t poly2, long prec)
{
const long len1 = poly1->length;
const long len2 = poly2->length;
if (len1 == 0)
{
fmprb_poly_zero(res);
}
else if (len1 == 1 || len2 == 0)
{
fmprb_poly_set_fmprb(res, poly1->coeffs);
}
else
{
const long lenr = (len1 - 1) * (len2 - 1) + 1;
if (res != poly1 && res != poly2)
{
fmprb_poly_fit_length(res, lenr);
_fmprb_poly_compose(res->coeffs, poly1->coeffs, len1,
poly2->coeffs, len2, prec);
}
else
{
fmprb_poly_t t;
fmprb_poly_init2(t, lenr);
_fmprb_poly_compose(t->coeffs, poly1->coeffs, len1,
poly2->coeffs, len2, prec);
fmprb_poly_swap(res, t);
fmprb_poly_clear(t);
}
_fmprb_poly_set_length(res, lenr);
_fmprb_poly_normalise(res);
}
}