X-Git-Url: https://www.ginac.de/ginac.git//ginac.git?p=ginac.git;a=blobdiff_plain;f=ginac%2Finifcns.h;h=95ed15a1606404e458a41e3aab64801e21da1f2b;hp=644492d852dcb42f9f2c697a86409f7b8e8a505f;hb=9df145c8bfa8ce9f2cbe6c05673481b6ca4c4c22;hpb=15d4b353c85f8815a95d97ab977c9ca48e155574;ds=sidebyside diff --git a/ginac/inifcns.h b/ginac/inifcns.h index 644492d8..95ed15a1 100644 --- a/ginac/inifcns.h +++ b/ginac/inifcns.h @@ -23,15 +23,21 @@ #ifndef __GINAC_INIFCNS_H__ #define __GINAC_INIFCNS_H__ -#include -#include +#include "function.h" +#include "ex.h" -#ifndef NO_GINAC_NAMESPACE +#ifndef NO_NAMESPACE_GINAC namespace GiNaC { -#endif // ndef NO_GINAC_NAMESPACE +#endif // ndef NO_NAMESPACE_GINAC /** Absolute value. */ DECLARE_FUNCTION_1P(abs) + +/** Complex sign. */ +DECLARE_FUNCTION_1P(csgn) + +/** Eta function: log(a*b) == log(a) + log(b) + eta(a, b). */ +DECLARE_FUNCTION_2P(eta) /** Sine. */ DECLARE_FUNCTION_1P(sin) @@ -84,33 +90,34 @@ DECLARE_FUNCTION_1P(Li2) /** Trilogarithm. */ DECLARE_FUNCTION_1P(Li3) -// overloading at work: we cannot use the macros +// overloading at work: we cannot use the macros here /** Riemann's Zeta-function. */ extern const unsigned function_index_zeta1; -inline function zeta(ex const & p1) { +inline function zeta(const ex & p1) { return function(function_index_zeta1, p1); } /** Derivatives of Riemann's Zeta-function. */ extern const unsigned function_index_zeta2; -inline function zeta(ex const & p1, ex const & p2) { +inline function zeta(const ex & p1, const ex & p2) { return function(function_index_zeta2, p1, p2); } /** Gamma-function. */ -DECLARE_FUNCTION_1P(gamma) +DECLARE_FUNCTION_1P(lgamma) +DECLARE_FUNCTION_1P(tgamma) /** Beta-function. */ DECLARE_FUNCTION_2P(beta) -// overloading at work: we cannot use the macros +// overloading at work: we cannot use the macros here /** Psi-function (aka digamma-function). */ extern const unsigned function_index_psi1; -inline function psi(ex const & p1) { +inline function psi(const ex & p1) { return function(function_index_psi1, p1); } /** Derivatives of Psi-function (aka polygamma-functions). */ extern const unsigned function_index_psi2; -inline function psi(ex const & p1, ex const & p2) { +inline function psi(const ex & p1, const ex & p2) { return function(function_index_psi2, p1, p2); } @@ -123,17 +130,20 @@ DECLARE_FUNCTION_2P(binomial) /** Order term function (for truncated power series). */ DECLARE_FUNCTION_1P(Order) -ex lsolve(ex const &eqns, ex const &symbols); +/** Inert partial differentiation operator. */ +DECLARE_FUNCTION_2P(Derivative) + +ex lsolve(const ex &eqns, const ex &symbols); -ex ncpower(ex const &basis, unsigned exponent); +ex ncpower(const ex &basis, unsigned exponent); -inline bool is_order_function(ex const & e) +inline bool is_order_function(const ex & e) { return is_ex_the_function(e, Order); } -#ifndef NO_GINAC_NAMESPACE +#ifndef NO_NAMESPACE_GINAC } // namespace GiNaC -#endif // ndef NO_GINAC_NAMESPACE +#endif // ndef NO_NAMESPACE_GINAC #endif // ndef __GINAC_INIFCNS_H__