#include "fmpz.h"
#include "fmpz_vec.h"
#include "fmpq_poly.h"
void
_fmpq_poly_atanh_series(fmpz * g, fmpz_t gden,
const fmpz * h, const fmpz_t hden, slong hlen, slong n)
{
fmpz * t;
fmpz * u;
fmpz_t tden;
fmpz_t uden;
slong h2len;
hlen = FLINT_MIN(hlen, n);
h2len = FLINT_MIN(2 * hlen - 1, n);
if (hlen == 1)
{
_fmpz_vec_zero(g, n);
fmpz_one(gden);
return;
}
t = _fmpz_vec_init(n);
u = _fmpz_vec_init(n);
fmpz_init(tden);
fmpz_init(uden);
_fmpq_poly_mullow(u, uden, h, hden, hlen, h, hden, hlen, h2len);
_fmpq_poly_canonicalise(u, uden, h2len);
_fmpz_vec_neg(u, u, h2len);
fmpz_set(u, uden);
_fmpq_poly_derivative(t, tden, h, hden, hlen);
_fmpq_poly_div_series(g, gden, t, tden, hlen - 1, u, uden, h2len, n);
_fmpq_poly_canonicalise(g, gden, n - 1);
_fmpq_poly_integral(g, gden, g, gden, n);
_fmpz_vec_clear(t, n);
_fmpz_vec_clear(u, n);
fmpz_clear(tden);
fmpz_clear(uden);
}
void fmpq_poly_atanh_series(fmpq_poly_t res, const fmpq_poly_t poly, slong n)
{
if (poly->length && !fmpz_is_zero(poly->coeffs))
{
flint_throw(FLINT_ERROR, "Exception (fmpq_poly_atanh_series). Constant term != 0.\n");
}
if (poly->length == 0 || n < 2)
{
fmpq_poly_zero(res);
return;
}
if (res != poly)
{
fmpq_poly_fit_length(res, n);
_fmpq_poly_atanh_series(res->coeffs, res->den,
poly->coeffs, poly->den, poly->length, n);
}
else
{
fmpq_poly_t t;
fmpq_poly_init2(t, n);
_fmpq_poly_atanh_series(t->coeffs, t->den,
poly->coeffs, poly->den, poly->length, n);
fmpq_poly_swap(res, t);
fmpq_poly_clear(t);
}
_fmpq_poly_set_length(res, n);
_fmpq_poly_normalise(res);
}