Mercurial > hg > octave-lyh
view src/DLD-FUNCTIONS/gammainc.cc @ 3753:f751e43de300
[project @ 2000-12-14 03:01:23 by jwe]
author | jwe |
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date | Thu, 14 Dec 2000 03:01:24 +0000 |
parents | 505f5c35a2c9 |
children | 9f7ef92b50b0 |
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/* Copyright (C) 1997 John W. Eaton This file is part of Octave. Octave 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, or (at your option) any later version. Octave 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 Octave; see the file COPYING. If not, write to the Free Software Foundation, 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA. */ #ifdef HAVE_CONFIG_H #include <config.h> #endif #include "lo-specfun.h" #include "defun-dld.h" #include "error.h" #include "gripes.h" #include "oct-obj.h" #include "utils.h" DEFUN_DLD (gammainc, args, , "-*- texinfo -*-\n\ @deftypefn {Mapping Function} {} gammainc (@var{x}, @var{a})\n\ Computes the incomplete gamma function,\n\ @iftex\n\ @tex\n\ $$\n\ \\gamma (x, a) = {\\displaystyle\\int_0^x e^{-t} t^{a-1} dt \\over \\Gamma (a)}\n\ $$\n\ @end tex\n\ @end iftex\n\ @ifinfo\n\ \n\ @smallexample\n\ x\n\ 1 /\n\ gammainc (x, a) = --------- | exp (-t) t^(a-1) dt\n\ gamma (a) /\n\ t=0\n\ @end smallexample\n\ @end ifinfo\n\ \n\ If @var{a} is scalar, then @code{gammainc (@var{x}, @var{a})} is returned\n\ for each element of @var{x} and vice versa.\n\ \n\ If neither @var{x} nor @var{a} is scalar, the sizes of @var{x} and\n\ @var{a} must agree, and @var{gammainc} is applied element-by-element.\n\ @end deftypefn\n\ @seealso{gamma and lgamma}") { octave_value retval; int nargin = args.length (); if (nargin == 2) { octave_value x_arg = args(0); octave_value a_arg = args(1); if (x_arg.is_scalar_type ()) { double x = x_arg.double_value (); if (! error_state) { if (a_arg.is_scalar_type ()) { double a = a_arg.double_value (); if (! error_state) retval = gammainc (x, a); } else { Matrix a = a_arg.matrix_value (); if (! error_state) retval = gammainc (x, a); } } } else { Matrix x = x_arg.matrix_value (); if (! error_state) { if (a_arg.is_scalar_type ()) { double a = a_arg.double_value (); if (! error_state) retval = gammainc (x, a); } else { Matrix a = a_arg.matrix_value (); if (! error_state) retval = gammainc (x, a); } } } } else print_usage ("gammainc"); return retval; } /* ;;; Local Variables: *** ;;; mode: C++ *** ;;; End: *** */