Mercurial > hg > octave-nkf
view scripts/plot/polar.m @ 14868:5d3a684236b0
maint: Use Octave coding conventions for cuddling parentheses in scripts directory
* lin2mu.m, loadaudio.m, wavread.m, accumarray.m, bicubic.m, celldisp.m,
colon.m, cplxpair.m, dblquad.m, divergence.m, genvarname.m, gradient.m,
int2str.m, interp1.m, interp1q.m, interp2.m, interpn.m, loadobj.m, nthargout.m,
__isequal__.m, __splinen__.m, quadgk.m, quadl.m, quadv.m, rat.m, rot90.m,
rotdim.m, saveobj.m, subsindex.m, triplequad.m, delaunay3.m, griddata.m,
inpolygon.m, tsearchn.m, voronoi.m, get_first_help_sentence.m, which.m,
gray2ind.m, pink.m, dlmwrite.m, strread.m, textread.m, textscan.m, housh.m,
ishermitian.m, issymmetric.m, krylov.m, logm.m, null.m, rref.m,
compare_versions.m, copyfile.m, dump_prefs.m, edit.m, fileparts.m,
getappdata.m, isappdata.m, movefile.m, orderfields.m, parseparams.m,
__xzip__.m, rmappdata.m, setappdata.m, swapbytes.m, unpack.m, ver.m, fminbnd.m,
fminunc.m, fsolve.m, glpk.m, lsqnonneg.m, qp.m, sqp.m, configure_make.m,
copy_files.m, describe.m, get_description.m, get_forge_pkg.m, install.m,
installed_packages.m, is_architecture_dependent.m, load_package_dirs.m,
print_package_description.m, rebuild.m, repackage.m, save_order.m, shell.m,
allchild.m, ancestor.m, area.m, axes.m, axis.m, clabel.m, close.m, colorbar.m,
comet.m, comet3.m, contour.m, cylinder.m, ezmesh.m, ezsurf.m, findobj.m,
fplot.m, hist.m, isocolors.m, isonormals.m, isosurface.m, isprop.m, legend.m,
mesh.m, meshz.m, pareto.m, pcolor.m, peaks.m, plot3.m, plotmatrix.m, plotyy.m,
polar.m, print.m, __add_datasource__.m, __add_default_menu__.m,
__axes_limits__.m, __bar__.m, __clabel__.m, __contour__.m, __errcomm__.m,
__errplot__.m, __ezplot__.m, __file_filter__.m, __fltk_print__.m,
__ghostscript__.m, __gnuplot_print__.m, __go_draw_axes__.m,
__go_draw_figure__.m, __interp_cube__.m, __marching_cube__.m, __patch__.m,
__pie__.m, __plt__.m, __print_parse_opts__.m, __quiver__.m, __scatter__.m,
__stem__.m, __tight_eps_bbox__.m, __uigetdir_fltk__.m, __uigetfile_fltk__.m,
__uiputfile_fltk__.m, quiver.m, quiver3.m, rectangle.m, refreshdata.m,
ribbon.m, scatter.m, semilogy.m, shading.m, slice.m, subplot.m, surface.m,
surfl.m, surfnorm.m, text.m, uigetfile.m, uiputfile.m, whitebg.m, deconv.m,
mkpp.m, pchip.m, polyaffine.m, polyder.m, polygcd.m, polyout.m, polyval.m,
ppint.m, ppjumps.m, ppval.m, residue.m, roots.m, spline.m, splinefit.m,
addpref.m, getpref.m, setpref.m, ismember.m, setxor.m, arch_fit.m, arch_rnd.m,
arch_test.m, autoreg_matrix.m, diffpara.m, fftconv.m, filter2.m, hanning.m,
hurst.m, periodogram.m, triangle_sw.m, sinc.m, spectral_xdf.m, spencer.m,
stft.m, synthesis.m, unwrap.m, yulewalker.m, bicgstab.m, gmres.m, pcg.m, pcr.m,
__sprand_impl__.m, speye.m, spfun.m, sprandn.m, spstats.m, svds.m,
treelayout.m, treeplot.m, bessel.m, factor.m, legendre.m, perms.m, primes.m,
magic.m, toeplitz.m, corr.m, cov.m, mean.m, median.m, mode.m, qqplot.m,
quantile.m, ranks.m, zscore.m, logistic_regression_likelihood.m,
bartlett_test.m, chisquare_test_homogeneity.m, chisquare_test_independence.m,
kolmogorov_smirnov_test.m, run_test.m, u_test.m, wilcoxon_test.m, z_test.m,
z_test_2.m, bin2dec.m, dec2base.m, mat2str.m, strcat.m, strchr.m, strjust.m,
strtok.m, substr.m, untabify.m, assert.m, demo.m, example.m, fail.m, speed.m,
test.m, now.m: Use Octave coding conventions for cuddling parentheses in
scripts directory.
author | Rik <octave@nomad.inbox5.com> |
---|---|
date | Tue, 17 Jul 2012 07:08:39 -0700 |
parents | 460a3c6d8bf1 |
children | 64e7bb01fce2 |
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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} {} polar (@var{theta}, @var{rho}) ## @deftypefnx {Function File} {} polar (@var{theta}, @var{rho}, @var{fmt}) ## @deftypefnx {Function File} {} polar (@var{h}, @dots{}) ## @deftypefnx {Function File} {@var{h} =} polar (@dots{}) ## Create a two-dimensional plot from polar coordinates @var{theta} and ## @var{rho}. ## ## The optional argument @var{fmt} specifies the line format. ## ## The optional return value @var{h} is a graphics handle to the created plot. ## ## @seealso{plot} ## @end deftypefn ## Author: jwe function retval = polar (varargin) [h, varargin, nargs] = __plt_get_axis_arg__ ("polar", varargin{:}); if (nargs < 1) print_usage (); endif oldh = gca (); unwind_protect axes (h); newplot (); if (nargs == 3) if (! ischar (varargin{3})) error ("polar: third argument must be a string"); endif tmp = __plr2__ (h, varargin{:}); maxr = max (varargin {2} (:)); elseif (nargs == 2) if (ischar (varargin{2})) tmp = __plr1__ (h, varargin{:}); if (iscomplex (varargin{1})) maxr = max (imag (varargin{1})(:)); else maxr = max (varargin{1}(:)); endif else fmt = ""; tmp = __plr2__ (h, varargin{:}, fmt); maxr = max (varargin {2} (:)); endif elseif (nargs == 1) fmt = ""; tmp = __plr1__ (h, varargin{:}, fmt); if (iscomplex (varargin{1})) maxr = max (imag (varargin{1})(:)); else maxr = max (varargin{1}(:)); endif else print_usage (); endif set (h, "xlim", [-maxr, maxr], "ylim", [-maxr, maxr], "xaxislocation", "zero", "yaxislocation", "zero", "plotboxaspectratio", [1, 1, 1]); if (nargout > 0) retval = tmp; endif unwind_protect_cleanup axes (oldh); end_unwind_protect endfunction function retval = __plr1__ (h, theta, fmt) if (nargin != 3) print_usage (); endif [nr, nc] = size (theta); if (nr == 1) theta = theta'; tmp = nr; nr = nc; nc = tmp; endif theta_i = imag (theta); if (any (theta_i)) rho = theta_i; theta = real (theta); else rho = theta; theta = (1:nr)'; endif retval = __plr2__ (h, theta, rho, fmt); endfunction function retval = __plr2__ (h, theta, rho, fmt) if (nargin != 4) print_usage (); endif if (any (imag (theta))) theta = real (theta); endif if (any (imag (rho))) rho = real (rho); endif if (isscalar (theta)) if (isscalar (rho)) x = rho * cos (theta); y = rho * sin (theta); retval = __plt__ ("polar", h, x, y, fmt); else error ("__plr2__: invalid data for plotting"); endif elseif (isvector (theta)) if (isvector (rho)) if (length (theta) != length (rho)) error ("__plr2__: vector lengths must match"); endif if (rows (rho) == 1) rho = rho'; endif if (rows (theta) == 1) theta = theta'; endif x = rho .* cos (theta); y = rho .* sin (theta); retval = __plt__ ("polar", h, x, y, fmt); elseif (ismatrix (rho)) [t_nr, t_nc] = size (theta); if (t_nr == 1) theta = theta'; tmp = t_nr; t_nr = t_nc; t_nc = tmp; endif [r_nr, r_nc] = size (rho); if (t_nr != r_nr) rho = rho'; tmp = r_nr; r_nr = r_nc; r_nc = tmp; endif if (t_nr != r_nr) error ("__plr2__: vector and matrix sizes must match"); endif x = diag (cos (theta)) * rho; y = diag (sin (theta)) * rho; retval = __plt__ ("polar", h, x, y, fmt); else error ("__plr2__: invalid data for plotting"); endif elseif (ismatrix (theta)) if (isvector (rho)) [r_nr, r_nc] = size (rho); if (r_nr == 1) rho = rho'; tmp = r_nr; r_nr = r_nc; r_nc = tmp; endif [t_nr, t_nc] = size (theta); if (r_nr != t_nr) theta = theta'; tmp = t_nr; t_nr = t_nc; t_nc = tmp; endif if (r_nr != t_nr) error ("__plr2__: vector and matrix sizes must match"); endif diag_r = diag (rho); x = diag_r * cos (theta); y = diag_r * sin (theta); retval = __plt__ ("polar", h, x, y, fmt); elseif (ismatrix (rho)) if (! size_equal (rho, theta)) error ("__plr2__: matrix dimensions must match"); endif x = rho .* cos (theta); y = rho .* sin (theta); retval = __plt__ ("polar", h, x, y, fmt); else error ("__plr2__: invalid data for plotting"); endif else error ("__plr2__: invalid data for plotting"); endif endfunction %!demo %! clf; %! theta = linspace (0,2*pi,1000); %! rho = sin (7*theta); %! polar (theta, rho); %!demo %! clf; %! theta = linspace (0,10*pi,1000); %! rho = sin (5/4*theta); %! polar (theta, rho);