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/* specfunc/gsl_sf_zeta.h
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*
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* Copyright (C) 1996, 1997, 1998, 1999, 2000, 2004 Gerard Jungman
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*
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* This program is free software; you can redistribute it and/or modify
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* it under the terms of the GNU General Public License as published by
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* the Free Software Foundation; either version 3 of the License, or (at
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* your option) any later version.
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*
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* This program is distributed in the hope that it will be useful, but
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* WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
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* General Public License for more details.
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*
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* You should have received a copy of the GNU General Public License
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* along with this program; if not, write to the Free Software
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* Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301, USA.
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*/
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/* Author: G. Jungman */
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#ifndef __GSL_SF_ZETA_H__
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#define __GSL_SF_ZETA_H__
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#include <gsl/gsl_sf_result.h>
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#undef __BEGIN_DECLS
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#undef __END_DECLS
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#ifdef __cplusplus
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# define __BEGIN_DECLS extern "C" {
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# define __END_DECLS }
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#else
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# define __BEGIN_DECLS /* empty */
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# define __END_DECLS /* empty */
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#endif
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__BEGIN_DECLS
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/* Riemann Zeta Function
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* zeta(n) = Sum[ k^(-n), {k,1,Infinity} ]
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*
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* n=integer, n != 1
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* exceptions: GSL_EDOM, GSL_EOVRFLW
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*/
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int gsl_sf_zeta_int_e(const int n, gsl_sf_result * result);
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double gsl_sf_zeta_int(const int n);
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/* Riemann Zeta Function
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* zeta(x) = Sum[ k^(-s), {k,1,Infinity} ], s != 1.0
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*
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* s != 1.0
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* exceptions: GSL_EDOM, GSL_EOVRFLW
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*/
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int gsl_sf_zeta_e(const double s, gsl_sf_result * result);
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double gsl_sf_zeta(const double s);
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/* Riemann Zeta Function minus 1
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* useful for evaluating the fractional part
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* of Riemann zeta for large argument
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*
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* s != 1.0
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* exceptions: GSL_EDOM, GSL_EOVRFLW
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*/
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int gsl_sf_zetam1_e(const double s, gsl_sf_result * result);
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double gsl_sf_zetam1(const double s);
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/* Riemann Zeta Function minus 1 for integer arg
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* useful for evaluating the fractional part
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* of Riemann zeta for large argument
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*
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* s != 1.0
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* exceptions: GSL_EDOM, GSL_EOVRFLW
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*/
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int gsl_sf_zetam1_int_e(const int s, gsl_sf_result * result);
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double gsl_sf_zetam1_int(const int s);
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/* Hurwitz Zeta Function
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* zeta(s,q) = Sum[ (k+q)^(-s), {k,0,Infinity} ]
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*
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* s > 1.0, q > 0.0
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* exceptions: GSL_EDOM, GSL_EUNDRFLW, GSL_EOVRFLW
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*/
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int gsl_sf_hzeta_e(const double s, const double q, gsl_sf_result * result);
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double gsl_sf_hzeta(const double s, const double q);
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/* Eta Function
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* eta(n) = (1-2^(1-n)) zeta(n)
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*
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* exceptions: GSL_EUNDRFLW, GSL_EOVRFLW
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*/
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int gsl_sf_eta_int_e(int n, gsl_sf_result * result);
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double gsl_sf_eta_int(const int n);
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/* Eta Function
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* eta(s) = (1-2^(1-s)) zeta(s)
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*
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* exceptions: GSL_EUNDRFLW, GSL_EOVRFLW
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*/
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int gsl_sf_eta_e(const double s, gsl_sf_result * result);
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double gsl_sf_eta(const double s);
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__END_DECLS
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#endif /* __GSL_SF_ZETA_H__ */
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