Mercurial > hg > octave-nkf
annotate scripts/plot/ezmesh.m @ 14327:4d917a6a858b stable
doc: Use Octave coding conventions in @example blocks of docstrings.
* accumarray.m, accumdim.m, bar.m, base2dec.m, bincoeff.m, bitcmp.m, bitset.m,
celldisp.m, chop.m, clabel.m, cloglog.m, colon.m, compass.m, computer.m,
contour3.m, contourc.m, corr.m, cstrcat.m, ctime.m, cylinder.m, date.m,
dec2base.m, demo.m, dir.m, dlmwrite.m, expm.m, ezcontourf.m, ezcontour.m,
ezmeshc.m, ezmesh.m, ezplot.m, ezsurfc.m, ezsurf.m, feather.m, findobj.m,
flipdim.m, fplot.m, genvarname.m, getfield.m, hankel.m, hilb.m, hist.m,
idivide.m, index.m, int2str.m, interp1.m, is_leap_year.m, ismember.m,
isocolors.m, isonormals.m, isosurface.m, kurtosis.m, legendre.m, linkprop.m,
logit.m, logm.m, __makeinfo__.m, __marching_cube__.m, median.m, mkoctfile.m,
moment.m, mpoles.m, orderfields.m, pcg.m, pcr.m, plot3.m, plotmatrix.m,
polyaffine.m, polygcd.m, poly.m, polyout.m, print.m, qp.m, quadgk.m, qzhess.m,
randi.m, rat.m, refreshdata.m, residue.m, rose.m, rot90.m, saveas.m, saveobj.m,
shiftdim.m, skewness.m, spaugment.m, spdiags.m, sqp.m, stem.m, str2num.m,
strcat.m, strjust.m, strread.m, strsplit.m, structfun.m, subplot.m,
subsindex.m, substruct.m, surfl.m, surfnorm.m, svds.m, uimenu.m, union.m,
voronoi.m, warning_ids.m, wblpdf.m: Use Octave coding conventions in
@example blocks of docstrings.
author | Rik <octave@nomad.inbox5.com> |
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date | Sat, 04 Feb 2012 22:12:50 -0800 |
parents | 72c96de7a403 |
children | ce2b59a6d0e5 |
rev | line source |
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maint: update copyright notices for 2012
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1 ## Copyright (C) 2007-2012 David Bateman |
7337 | 2 ## |
3 ## This file is part of Octave. | |
4 ## | |
5 ## Octave is free software; you can redistribute it and/or modify it | |
6 ## under the terms of the GNU General Public License as published by | |
7 ## the Free Software Foundation; either version 3 of the License, or (at | |
8 ## your option) any later version. | |
9 ## | |
10 ## Octave is distributed in the hope that it will be useful, but | |
11 ## WITHOUT ANY WARRANTY; without even the implied warranty of | |
12 ## MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU | |
13 ## General Public License for more details. | |
14 ## | |
15 ## You should have received a copy of the GNU General Public License | |
16 ## along with Octave; see the file COPYING. If not, see | |
17 ## <http://www.gnu.org/licenses/>. | |
18 | |
19 ## -*- texinfo -*- | |
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20 ## @deftypefn {Function File} {} ezmesh (@var{f}) |
7337 | 21 ## @deftypefnx {Function File} {} ezmesh (@var{fx}, @var{fy}, @var{fz}) |
22 ## @deftypefnx {Function File} {} ezmesh (@dots{}, @var{dom}) | |
23 ## @deftypefnx {Function File} {} ezmesh (@dots{}, @var{n}) | |
24 ## @deftypefnx {Function File} {} ezmesh (@dots{}, 'circ') | |
25 ## @deftypefnx {Function File} {} ezmesh (@var{h}, @dots{}) | |
26 ## @deftypefnx {Function File} {@var{h} =} ezmesh (@dots{}) | |
27 ## | |
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28 ## Plot the mesh defined by a function. @var{f} is a string, inline |
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29 ## function or function handle with two arguments defining the function. By |
7337 | 30 ## default the plot is over the domain @code{-2*pi < @var{x} < 2*pi} and |
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31 ## @code{-2*pi < @var{y} < 2*pi} with 60 points in each dimension. |
7337 | 32 ## |
33 ## If @var{dom} is a two element vector, it represents the minimum and maximum | |
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34 ## value of both @var{x} and @var{y}. If @var{dom} is a four element vector, |
7337 | 35 ## then the minimum and maximum value of @var{x} and @var{y} are specify |
36 ## separately. | |
37 ## | |
38 ## @var{n} is a scalar defining the number of points to use in each dimension. | |
39 ## | |
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40 ## If three functions are passed, then plot the parametrically defined |
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41 ## function @code{[@var{fx} (@var{s}, @var{t}), @var{fy} (@var{s}, @var{t}), |
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42 ## @var{fz} (@var{s}, @var{t})]}. |
7337 | 43 ## |
44 ## If the argument 'circ' is given, then the function is plotted over a disk | |
45 ## centered on the middle of the domain @var{dom}. | |
46 ## | |
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47 ## The optional return value @var{h} is a graphics handle to the created |
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48 ## surface object. |
7337 | 49 ## |
50 ## @example | |
51 ## @group | |
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52 ## f = @@(x,y) sqrt (abs (x .* y)) ./ (1 + x.^2 + y.^2); |
7337 | 53 ## ezmesh (f, [-3, 3]); |
54 ## @end group | |
55 ## @end example | |
56 ## | |
57 ## An example of a parametrically defined function is | |
58 ## | |
59 ## @example | |
60 ## @group | |
61 ## fx = @@(s,t) cos (s) .* cos(t); | |
62 ## fy = @@(s,t) sin (s) .* cos(t); | |
63 ## fz = @@(s,t) sin(t); | |
64 ## ezmesh (fx, fy, fz, [-pi, pi, -pi/2, pi/2], 20); | |
65 ## @end group | |
66 ## @end example | |
67 ## | |
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68 ## @seealso{ezplot, ezmeshc, ezsurf, ezsurfc} |
7337 | 69 ## @end deftypefn |
70 | |
71 function retval = ezmesh (varargin) | |
72 | |
73 [h, needusage] = __ezplot__ ("mesh", varargin{:}); | |
74 | |
75 if (needusage) | |
76 print_usage (); | |
77 endif | |
78 | |
79 if (nargout > 0) | |
80 retval = h; | |
81 endif | |
82 endfunction | |
83 | |
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84 |
7337 | 85 %!demo |
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86 %! clf |
7337 | 87 %! f = @(x,y) sqrt(abs(x .* y)) ./ (1 + x.^2 + y.^2); |
88 %! ezmesh (f, [-3, 3]); | |
89 | |
90 %!demo | |
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91 %! clf |
7337 | 92 %! fx = @(s,t) cos (s) .* cos(t); |
93 %! fy = @(s,t) sin (s) .* cos(t); | |
94 %! fz = @(s,t) sin (t); | |
95 %! ezmesh (fx, fy, fz, [-pi,pi,-pi/2,pi/2], 20); | |
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96 |