Mercurial > hg > octave-lyh
view scripts/statistics/distributions/chi2rnd.m @ 17173:bb60b1bb47cf
view.m: Fix args undefined error when calling with two arguments
author | Max Brister <max@2bass.com> |
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date | Sat, 03 Aug 2013 17:23:44 -0600 |
parents | 57569a35765c |
children |
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## Copyright (C) 2012 Rik Wehbring ## Copyright (C) 1995-2012 Kurt Hornik ## ## 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 3 of the License, 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, see ## <http://www.gnu.org/licenses/>. ## -*- texinfo -*- ## @deftypefn {Function File} {} chi2rnd (@var{n}) ## @deftypefnx {Function File} {} chi2rnd (@var{n}, @var{r}) ## @deftypefnx {Function File} {} chi2rnd (@var{n}, @var{r}, @var{c}, @dots{}) ## @deftypefnx {Function File} {} chi2rnd (@var{n}, [@var{sz}]) ## Return a matrix of random samples from the chi-square distribution with ## @var{n} degrees of freedom. ## ## When called with a single size argument, return a square matrix with ## the dimension specified. When called with more than one scalar argument the ## first two arguments are taken as the number of rows and columns and any ## further arguments specify additional matrix dimensions. The size may also ## be specified with a vector of dimensions @var{sz}. ## ## If no size arguments are given then the result matrix is the size of ## @var{n}. ## @end deftypefn ## Author: KH <Kurt.Hornik@wu-wien.ac.at> ## Description: Random deviates from the chi-square distribution function rnd = chi2rnd (n, varargin) if (nargin < 1) print_usage (); endif if (nargin == 1) sz = size (n); elseif (nargin == 2) if (isscalar (varargin{1}) && varargin{1} >= 0) sz = [varargin{1}, varargin{1}]; elseif (isrow (varargin{1}) && all (varargin{1} >= 0)) sz = varargin{1}; else error ("chi2rnd: dimension vector must be row vector of non-negative integers"); endif elseif (nargin > 2) if (any (cellfun (@(x) (!isscalar (x) || x < 0), varargin))) error ("chi2rnd: dimensions must be non-negative integers"); endif sz = [varargin{:}]; endif if (!isscalar (n) && !isequal (size (n), sz)) error ("chi2rnd: N must be scalar or of size SZ"); endif if (iscomplex (n)) error ("chi2rnd: N must not be complex"); endif if (isa (n, "single")) cls = "single"; else cls = "double"; endif if (isscalar (n)) if ((n > 0) && (n < Inf)) rnd = 2 * randg (n/2, sz, cls); else rnd = NaN (sz, cls); endif else rnd = NaN (sz, cls); k = (n > 0) | (n < Inf); rnd(k) = 2 * randg (n(k)/2, cls); endif endfunction %!assert (size (chi2rnd (2)), [1, 1]) %!assert (size (chi2rnd (ones (2,1))), [2, 1]) %!assert (size (chi2rnd (ones (2,2))), [2, 2]) %!assert (size (chi2rnd (1, 3)), [3, 3]) %!assert (size (chi2rnd (1, [4 1])), [4, 1]) %!assert (size (chi2rnd (1, 4, 1)), [4, 1]) %% Test class of input preserved %!assert (class (chi2rnd (2)), "double") %!assert (class (chi2rnd (single (2))), "single") %!assert (class (chi2rnd (single ([2 2]))), "single") %% Test input validation %!error chi2rnd () %!error chi2rnd (ones (3), ones (2)) %!error chi2rnd (ones (2), ones (3)) %!error chi2rnd (i) %!error chi2rnd (1, -1) %!error chi2rnd (1, ones (2)) %!error chi2rnd (1, [2 -1 2]) %!error chi2rnd (ones (2,2), 3) %!error chi2rnd (ones (2,2), [3, 2]) %!error chi2rnd (ones (2,2), 2, 3)