Mercurial > hg > octave-nkf
view scripts/plot/stem.m @ 17191:85e55da61409
doc: Clarify description of plot format.
* scripts/plot/plot.m: Clarify description of plot format.
author | Rik <rik@octave.org> |
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date | Tue, 06 Aug 2013 21:23:38 -0700 |
parents | eaab03308c0b |
children | bc924baa2c4e |
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## Copyright (C) 2006-2012 Michel D. Schmid ## ## 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} {} stem (@var{y}) ## @deftypefnx {Function File} {} stem (@var{x}, @var{y}) ## @deftypefnx {Function File} {} stem (@dots{}, @var{linespec}) ## @deftypefnx {Function File} {} stem (@dots{}, "filled") ## @deftypefnx {Function File} {} stem (@dots{}, @var{prop}, @var{val}, @dots{}) ## @deftypefnx {Function File} {} stem (@var{hax}, @dots{}) ## @deftypefnx {Function File} {@var{h} =} stem (@dots{}) ## Plot a 2-D stem graph. ## ## If only one argument is given, it is taken as the y-values and the ## x-coordinates are taken from the indices of the elements. ## ## If @var{y} is a matrix, then each column of the matrix is plotted as ## a separate stem graph. In this case @var{x} can either be a vector, ## the same length as the number of rows in @var{y}, or it can be a ## matrix of the same size as @var{y}. ## ## The default color is @code{"b"} (blue), the default line style is ## @code{"-"}, and the default marker is @code{"o"}. The line style can ## be altered by the @code{linespec} argument in the same manner as the ## @code{plot} command. If the "filled" argument is present the markers at ## the top of the stems will be filled in. For example, ## ## @example ## @group ## x = 1:10; ## y = 2*x; ## stem (x, y, "r"); ## @end group ## @end example ## ## @noindent ## plots 10 stems with heights from 2 to 20 in red; ## ## Optional property/value pairs may be specified to control the appearance ## of the plot. ## ## 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 vector of "stem series" graphics ## handles with one handle per column of the variable @var{y}. The ## handle regroups the elements of the stem graph together as the ## children of the "stem series" handle, allowing them to be altered ## together. For example, ## ## @example ## @group ## x = [0:10]'; ## y = [sin(x), cos(x)] ## h = stem (x, y); ## set (h(2), "color", "g"); ## set (h(1), "basevalue", -1) ## @end group ## @end example ## ## @noindent ## changes the color of the second "stem series" and moves the base line ## of the first. ## @seealso{stem3, bar, hist, plot, stairs} ## @end deftypefn ## Author: Michel D. Schmid <michaelschmid@users.sourceforge.net> ## Adapted-by: jwe function h = stem (varargin) if (nargin < 1) print_usage (); endif htmp = __stem__ (false, varargin{:}); if (nargout > 0) h = htmp; endif endfunction %!demo %! clf; %! x = 1:10; %! stem (x); %!demo %! clf; %! x = 1:10; %! y = 2*x; %! stem (x, y); %!demo %! clf; %! x = 1:10; %! y = 2*x; %! h = stem (x, y, 'r'); %!demo %! clf; %! x = 1:10; %! y = 2*x; %! h = stem (x, y, '-.k'); %!demo %! clf; %! x = 1:10; %! y = 2*x; %! h = stem (x, y, '-.k.'); %!demo %! clf; %! x = 1:10; %! y = 2*x; %! h = stem (x, y, 'filled'); %!demo %! clf; %! x = (0 : 10)'; %! y = [sin(x), cos(x)]; %! h = stem (x, y); %! set (h(2), 'color', 'g'); %! set (h(1), 'basevalue', -1); %!demo %! clf; %! N = 11; %! x = 0:(N-1); %! y = rand (1, N); %! hs = stem (x(1), y(1)); %! set (gca (), 'xlim', [1, N-1], 'ylim', [0, 1]); %! for k=2:N %! set (hs, 'xdata', x(1:k), 'ydata', y(1:k)) %! drawnow (); %! pause (0.2); %! end