Mercurial > hg > octave-lyh
view scripts/plot/semilogx.m @ 17455:359366a4994f
waitbar.m: Use Octave coding conventions.
* scripts/plot/waitbar.m: Rename 'retval' to 'h' to match documentation.
Use 'hf', 'hp' for figure and patch graphics handles.
author | Rik <rik@octave.org> |
---|---|
date | Thu, 19 Sep 2013 14:26:47 -0700 |
parents | 68bcac3c043a |
children |
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## Copyright (C) 1993-2012 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 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} {} semilogx (@var{y}) ## @deftypefnx {Function File} {} semilogx (@var{x}, @var{y}) ## @deftypefnx {Function File} {} semilogx (@var{x}, @var{y}, @var{property}, @var{value}, @dots{}) ## @deftypefnx {Function File} {} semilogx (@var{x}, @var{y}, @var{fmt}) ## @deftypefnx {Function File} {} semilogx (@var{hax}, @dots{}) ## @deftypefnx {Function File} {@var{h} =} semilogx (@dots{}) ## Produce a 2-D plot using a logarithmic scale for the x-axis. ## ## See the documentation of @code{plot} for a description of the ## arguments that @code{semilogx} will accept. ## ## If the first argument @var{hax} is an axes handle, then plot into this axis, ## rather than the current axes returned by @code{gca}. ## ## The optional return value @var{h} is a graphics handle to the created plot. ## @seealso{plot, semilogy, loglog} ## @end deftypefn ## Author: jwe function h = semilogx (varargin) [hax, varargin, nargs] = __plt_get_axis_arg__ ("semilogx", varargin{:}); if (nargs < 1) print_usage (); endif oldfig = []; if (! isempty (hax)) oldfig = get (0, "currentfigure"); endif unwind_protect hax = newplot (hax); set (hax, "xscale", "log"); if (! ishold (hax)) set (hax, "xminortick", "on"); endif htmp = __plt__ ("semilogx", hax, varargin{:}); unwind_protect_cleanup if (! isempty (oldfig)) set (0, "currentfigure", oldfig); endif end_unwind_protect if (nargout > 0) h = htmp; endif endfunction %!demo %! clf; %! x = 1:0.01:10; %! y = (x .* (1 + rand (size (x)))) .^ 2; %! semilogx (y, x); %! title ({'semilogx() plot', 'X-axis is logarithmic'}); %!demo %! clf; %! x = logspace (-5, 1, 10); %! y = logspace (-5, 1, 10); %! %! subplot (1,2,1); %! semilogx (x, y); %! xlabel ('semilogx (x, y)'); %! %! subplot (1,2,2); %! semilogx (-x, y); %! xlabel ('semilogx (-x, y)'); %!demo %! clf; %! x = logspace (-5, 1, 10); %! y = logspace (-5, 1, 10); %! %! subplot (1,2,1); %! semilogx (x, y); %! set (gca, 'xdir', 'reverse', 'activepositionproperty', 'outerposition'); %! xlabel ({'semilogx (x, y)', 'xdir = reversed'}); %! %! subplot (1,2,2); %! semilogx (-x, y); %! set (gca, 'xdir', 'reverse', 'activepositionproperty', 'outerposition'); %! xlabel ({'semilogx (-x, y)', 'xdir = reversed'}); %!test %! hf = figure ("visible", "off"); %! unwind_protect %! a = logspace (-5, 1, 10); %! b = logspace (-5, 1, 10); %! semilogx (a, b); %! assert (get (gca, "xscale"), "log"); %! assert (get (gca, "yscale"), "linear"); %! unwind_protect_cleanup %! close (hf); %! end_unwind_protect %!test %! hf = figure ("visible", "off"); %! unwind_protect %! a =-logspace (-5, 1, 10); %! b = logspace (-5, 1, 10); %! semilogx (a, b); %! axis tight; %! assert (all (get (gca, "xtick") < 0)); %! unwind_protect_cleanup %! close (hf); %! end_unwind_protect