view scripts/general/del2.m @ 20158:7503499a252b stable

doc: Update docstrings to have one sentence summary as first line. Update scripts in audio, elfun, general, geometry, and image directories. * scripts/audio/@audioplayer/__get_properties__.m, scripts/audio/@audioplayer/audioplayer.m, scripts/audio/@audioplayer/get.m, scripts/audio/@audioplayer/isplaying.m, scripts/audio/@audioplayer/play.m, scripts/audio/@audioplayer/playblocking.m, scripts/audio/@audioplayer/set.m, scripts/audio/@audioplayer/subsasgn.m, scripts/audio/@audioplayer/subsref.m, scripts/audio/@audiorecorder/audiorecorder.m, scripts/audio/@audiorecorder/get.m, scripts/audio/@audiorecorder/getaudiodata.m, scripts/audio/@audiorecorder/getplayer.m, scripts/audio/@audiorecorder/isrecording.m, scripts/audio/@audiorecorder/play.m, scripts/audio/@audiorecorder/record.m, scripts/audio/@audiorecorder/recordblocking.m, scripts/audio/@audiorecorder/set.m, scripts/audio/@audiorecorder/stop.m, scripts/audio/@audiorecorder/subsasgn.m, scripts/audio/@audiorecorder/subsref.m, scripts/audio/lin2mu.m, scripts/audio/mu2lin.m, scripts/audio/record.m, scripts/audio/sound.m, scripts/audio/soundsc.m, scripts/audio/wavread.m, scripts/audio/wavwrite.m, scripts/elfun/cosd.m, scripts/elfun/sind.m, scripts/elfun/tand.m, scripts/general/accumarray.m, scripts/general/accumdim.m, scripts/general/bitcmp.m, scripts/general/bitget.m, scripts/general/bitset.m, scripts/general/blkdiag.m, scripts/general/cart2pol.m, scripts/general/cart2sph.m, scripts/general/cell2mat.m, scripts/general/celldisp.m, scripts/general/chop.m, scripts/general/circshift.m, scripts/general/common_size.m, scripts/general/cplxpair.m, scripts/general/cumtrapz.m, scripts/general/dblquad.m, scripts/general/deal.m, scripts/general/del2.m, scripts/general/display.m, scripts/general/divergence.m, scripts/general/fieldnames.m, scripts/general/flip.m, scripts/general/flipdim.m, scripts/general/fliplr.m, scripts/general/flipud.m, scripts/general/gradient.m, scripts/general/interp3.m, scripts/general/interpft.m, scripts/general/interpn.m, scripts/general/loadobj.m, scripts/general/logspace.m, scripts/general/methods.m, scripts/general/nargchk.m, scripts/general/narginchk.m, scripts/general/nargoutchk.m, scripts/general/nextpow2.m, scripts/general/nthargout.m, scripts/general/num2str.m, scripts/general/pol2cart.m, scripts/general/polyarea.m, scripts/general/postpad.m, scripts/general/prepad.m, scripts/general/profile.m, scripts/general/quadgk.m, scripts/general/quadl.m, scripts/general/quadv.m, scripts/general/randi.m, scripts/general/rat.m, scripts/general/repmat.m, scripts/general/rot90.m, scripts/general/rotdim.m, scripts/general/saveobj.m, scripts/general/shift.m, scripts/general/shiftdim.m, scripts/general/sortrows.m, scripts/general/sph2cart.m, scripts/general/structfun.m, scripts/general/subsindex.m, scripts/general/trapz.m, scripts/general/triplequad.m, scripts/geometry/delaunayn.m, scripts/geometry/dsearch.m, scripts/geometry/dsearchn.m, scripts/geometry/griddata.m, scripts/geometry/griddata3.m, scripts/geometry/griddatan.m, scripts/geometry/inpolygon.m, scripts/geometry/rectint.m, scripts/geometry/tsearchn.m, scripts/geometry/voronoi.m, scripts/geometry/voronoin.m, scripts/help/__unimplemented__.m, scripts/help/doc.m, scripts/help/doc_cache_create.m, scripts/help/get_first_help_sentence.m, scripts/help/help.m, scripts/help/lookfor.m, scripts/help/print_usage.m, scripts/help/type.m, scripts/help/which.m, scripts/image/autumn.m, scripts/image/bone.m, scripts/image/brighten.m, scripts/image/cmpermute.m, scripts/image/colorcube.m, scripts/image/contrast.m, scripts/image/cool.m, scripts/image/copper.m, scripts/image/cubehelix.m, scripts/image/flag.m, scripts/image/gmap40.m, scripts/image/gray.m, scripts/image/gray2ind.m, scripts/image/hot.m, scripts/image/hsv.m, scripts/image/image.m, scripts/image/imagesc.m, scripts/image/imfinfo.m, scripts/image/imformats.m, scripts/image/imread.m, scripts/image/imshow.m, scripts/image/imwrite.m, scripts/image/iscolormap.m, scripts/image/jet.m, scripts/image/lines.m, scripts/image/ntsc2rgb.m, scripts/image/ocean.m, scripts/image/pink.m, scripts/image/prism.m, scripts/image/rainbow.m, scripts/image/rgb2ntsc.m, scripts/image/spinmap.m, scripts/image/spring.m, scripts/image/summer.m, scripts/image/white.m, scripts/image/winter.m: Update docstrings to have one sentence summary as first line. Re-structure to have line lengths <= 80 chars.
author Rik <rik@octave.org>
date Sun, 03 May 2015 09:36:20 -0700
parents 9fc020886ae9
children
line wrap: on
line source

## Copyright (C) 2000-2015 Kai Habel
## Copyright (C) 2007  David Bateman
##
## 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} {@var{d} =} del2 (@var{M})
## @deftypefnx {Function File} {@var{d} =} del2 (@var{M}, @var{h})
## @deftypefnx {Function File} {@var{d} =} del2 (@var{M}, @var{dx}, @var{dy}, @dots{})
##
## Calculate the discrete Laplace
## @tex
## operator $( \nabla^2 )$.
## @end tex
## @ifnottex
## operator.
## @end ifnottex
##
## For a 2-dimensional matrix @var{M} this is defined as
## @tex
## $$d = {1 \over 4} \left( {d^2 \over dx^2} M(x,y) + {d^2 \over dy^2} M(x,y) \right)$$
## @end tex
## @ifnottex
##
## @example
## @group
##       1    / d^2            d^2         \
## D  = --- * | ---  M(x,y) +  ---  M(x,y) |
##       4    \ dx^2           dy^2        /
## @end group
## @end example
##
## @end ifnottex
## For N-dimensional arrays the sum in parentheses is expanded to include second
## derivatives over the additional higher dimensions.
##
## The spacing between evaluation points may be defined by @var{h}, which is a
## scalar defining the equidistant spacing in all dimensions.  Alternatively,
## the spacing in each dimension may be defined separately by @var{dx},
## @var{dy}, etc.  A scalar spacing argument defines equidistant spacing,
## whereas a vector argument can be used to specify variable spacing.  The
## length of the spacing vectors must match the respective dimension of
## @var{M}.  The default spacing value is 1.
##
## At least 3 data points are needed for each dimension.  Boundary points are
## calculated from the linear extrapolation of interior points.
##
## @seealso{gradient, diff}
## @end deftypefn

## Author:  Kai Habel <kai.habel@gmx.de>

function D = del2 (M, varargin)

  if (nargin < 1)
    print_usage ();
  endif

  nd = ndims (M);
  sz = size (M);
  dx = cell (1, nd);
  if (nargin == 2 || nargin == 1)
    if (nargin == 1)
      h = 1;
    else
      h = varargin{1};
    endif
    for i = 1 : nd
      if (isscalar (h))
        dx{i} = h * ones (sz (i), 1);
      else
        if (length (h) == sz (i))
          dx{i} = diff (h)(:);
        else
          error ("del2: dimensionality mismatch in %d-th spacing vector", i);
        endif
      endif
    endfor
  elseif (nargin - 1 == nd)
    ## Reverse dx{1} and dx{2} as the X-dim is the 2nd dim of the ND array
    tmp = varargin{1};
    varargin{1} = varargin{2};
    varargin{2} = tmp;

    for i = 1 : nd
      if (isscalar (varargin{i}))
        dx{i} = varargin{i} * ones (sz (i), 1);
      else
        if (length (varargin{i}) == sz (i))
          dx{i} = diff (varargin{i})(:);
        else
          error ("del2: dimensionality mismatch in %d-th spacing vector", i);
        endif
      endif
    endfor
  else
    print_usage ();
  endif

  idx = cell (1, nd);
  for i = 1: nd
    idx{i} = ":";
  endfor

  D = zeros (sz);
  for i = 1: nd
    if (sz(i) >= 3)
      DD = zeros (sz);
      idx1 = idx2 = idx3 = idx;

      ## interior points
      idx1{i} = 1 : sz(i) - 2;
      idx2{i} = 2 : sz(i) - 1;
      idx3{i} = 3 : sz(i);
      szi = sz;
      szi (i) = 1;

      h1 = repmat (shiftdim (dx{i}(1 : sz(i) - 2), 1 - i), szi);
      h2 = repmat (shiftdim (dx{i}(2 : sz(i) - 1), 1 - i), szi);
      DD(idx2{:}) = ((M(idx1{:}) - M(idx2{:})) ./ h1 + ...
                     (M(idx3{:}) - M(idx2{:})) ./ h2) ./ (h1 + h2);

      ## left and right boundary
      if (sz(i) == 3)
        DD(idx1{:}) = DD(idx3{:}) = DD(idx2{:});
      else
        idx1{i} = 1;
        idx2{i} = 2;
        idx3{i} = 3;
        DD(idx1{:}) = (dx{i}(1) + dx{i}(2)) / dx{i}(2) * DD(idx2{:}) - ...
            dx{i}(1) / dx{i}(2) * DD(idx3{:});

        idx1{i} = sz(i);
        idx2{i} = sz(i) - 1;
        idx3{i} = sz(i) - 2;
        DD(idx1{:}) = (dx{i}(sz(i) - 1) + dx{i}(sz(i) - 2)) / ...
            dx{i}(sz(i) - 2) * DD(idx2{:}) - ...
            dx{i}(sz(i) - 1) / dx{i}(sz(i) - 2) * DD(idx3{:});
      endif

      D += DD;
    endif
  endfor

  D = D ./ nd;
endfunction


## 3x3 constant test
%!test
%! a = ones (3,3);
%! b = del2 (a);
%! assert (b(:,1), [0.00;0.00;0.00]);
%! assert (b(:,2), [0.00;0.00;0.00]);
%! assert (b(:,3), [0.00;0.00;0.00]);

## 3x3 planar test
%!test
%! a = [1,2,3;2,3,4;3,4,5];
%! b = del2 (a);
%! assert (b(:,1), [0.00;0.00;0.00]);
%! assert (b(:,2), [0.00;0.00;0.00]);
%! assert (b(:,3), [0.00;0.00;0.00]);

## 3x3 corner test
%!test
%! a = zeros (3,3);
%! a(1,1) = 1.0;
%! b = 2*del2 (a);
%! assert (b(:,1), [1.00;0.50;0.50]);
%! assert (b(:,2), [0.50;0.00;0.00]);
%! assert (b(:,3), [0.50;0.00;0.00]);
%! assert (b, flipud (2*del2 (flipud (a))));
%! assert (b, fliplr (2*del2 (fliplr (a))));
%! assert (b, flipud (fliplr (2*del2 (fliplr (flipud (a))))));

## 3x3 boundary test
%!test
%! a = zeros (3,3);
%! a(2,1)=1.0;
%! b = 2*del2 (a);
%! assert (b(:,1), [-1.00;-0.50;-1.00]);
%! assert (b(:,2), [0.00;0.50;0.00]);
%! assert (b(:,3), [0.00;0.50;0.00]);
%! assert (b, flipud (2*del2 (flipud (a))));
%! assert (b, fliplr (2*del2 (fliplr (a))));
%! assert (b, flipud (fliplr (2*del2 (fliplr (flipud (a))))));

## 3x3 center test
%!test
%! a = zeros (3,3);
%! a(2,2) = 1.0;
%! b = del2 (a);
%! assert (b(:,1), [0.00;-0.50;0.00]);
%! assert (b(:,2), [-0.50;-1.00;-0.50]);
%! assert (b(:,3), [0.00;-0.50;0.00]);

## 4x4 constant test
%!test
%! a = ones (4,4);
%! b = del2 (a);
%! assert (b(:,1), [0.00;0.00;0.00;0.00]);
%! assert (b(:,2), [0.00;0.00;0.00;0.00]);
%! assert (b(:,3), [0.00;0.00;0.00;0.00]);
%! assert (b(:,4), [0.00;0.00;0.00;0.00]);

## 4x4 planar test
%!test
%! a = [1,2,3,4;2,3,4,5;3,4,5,6;4,5,6,7];
%! b = del2 (a);
%! assert (b(:,1), [0.00;0.00;0.00;0.00]);
%! assert (b(:,2), [0.00;0.00;0.00;0.00]);
%! assert (b(:,3), [0.00;0.00;0.00;0.00]);
%! assert (b(:,4), [0.00;0.00;0.00;0.00]);

## 4x4 corner test
%!test
%! a = zeros (4,4);
%! a(1,1) = 1.0;
%! b = 2*del2 (a);
%! assert (b(:,1), [2.00;0.50;0.00;-0.50]);
%! assert (b(:,2), [0.50;0.00;0.00;0.00]);
%! assert (b(:,3), [0.00;0.00;0.00;0.00]);
%! assert (b(:,4), [-0.50;0.00;0.00;0.00]);
%! assert (b, flipud (2*del2 (flipud (a))));
%! assert (b, fliplr (2*del2 (fliplr (a))));
%! assert (b, flipud (fliplr (2*del2 (fliplr (flipud (a))))));

## 9x9 center test
%!test
%! a = zeros (9,9);
%! a(5,5) = 1.0;
%! b = 2*del2 (a);
%! assert (b(:,1), [0.00;0.00;0.00;0.00;0.00;0.00;0.00;0.00;0.00]);
%! assert (b(:,2), [0.00;0.00;0.00;0.00;0.00;0.00;0.00;0.00;0.00]);
%! assert (b(:,3), [0.00;0.00;0.00;0.00;0.00;0.00;0.00;0.00;0.00]);
%! assert (b(:,4), [0.00;0.00;0.00;0.00;0.50;0.00;0.00;0.00;0.00]);
%! assert (b(:,5), [0.00;0.00;0.00;0.50;-2.00;0.50;0.00;0.00;0.00]);
%! assert (b(:,6), b(:,4));
%! assert (b(:,7), b(:,3));
%! assert (b(:,8), b(:,2));
%! assert (b(:,9), b(:,1));

## 9x9 boundary test
%!test
%! a = zeros (9,9);
%! a(1,5) = 1.0;
%! b = 2*del2 (a);
%! assert (b(1,:), [0.00,0.00,0.00,0.50,0.00,0.50,0.00,0.00,0.00]);
%! assert (b(2,:), [0.00,0.00,0.00,0.00,0.50,0.00,0.00,0.00,0.00]);
%! assert (b(3:9,:), zeros (7,9));
%! a(1,5) = 0.0;
%! a(5,1) = 1.0;
%! b = 2*del2 (a);
%! assert (b(:,1), [0.00;0.00;0.00;0.50;0.00;0.50;0.00;0.00;0.00]);
%! assert (b(:,2), [0.00;0.00;0.00;0.00;0.50;0.00;0.00;0.00;0.00]);
%! assert (b(:,3:9), zeros (9,7));

## 9x9 dh center test
%!test
%! a = zeros (9,9);
%! a(5,5) = 1.0;
%! b = 8*del2 (a,2);
%! assert (b(:,1:3), zeros (9,3));
%! assert (b(:,4), [0.00;0.00;0.00;0.00;0.50;0.00;0.00;0.00;0.00]);
%! assert (b(:,5), [0.00;0.00;0.00;0.50;-2.00;0.50;0.00;0.00;0.00]);
%! assert (b(:,6), b(:,4));
%! assert (b(:,7:9), zeros (9,3));

## 9x9 dx test
%!test
%! a = zeros (9,9);
%! a(5,5) = 1.0;
%! b = 4*del2 (a,2,1);
%! assert (b(1:3,:), zeros (3,9));
%! assert (b(4,:), [0.00;0.00;0.00;0.00;1.00;0.00;0.00;0.00;0.00]');
%! assert (b(5,:), [0.00;0.00;0.00;0.25;-2.5;0.25;0.00;0.00;0.00]');
%! assert (b(6,:), b(4,:));
%! assert (b(7:9,:), zeros (3,9));

## 9x9 dy test
%!test
%! a = zeros (9,9);
%! a(5,5) = 1.0;
%! b = 4*del2 (a,1,2);
%! assert (b(:,1:3), zeros (9,3));
%! assert (b(:,4), [0.00;0.00;0.00;0.00;1.00;0.00;0.00;0.00;0.00]);
%! assert (b(:,5), [0.00;0.00;0.00;0.25;-2.5;0.25;0.00;0.00;0.00]);
%! assert (b(:,6), b(:,4));
%! assert (b(:,7:9), zeros (9,3));

## 3D test
%!test
%! a = zeros (9,9,9);
%! a(5,5,5) = 1.0;
%! b = 8*3*del2 (a,2);
%! assert (b(:,:,1:3), zeros (9,9,3));
%! assert (b(:,1:3,:), zeros (9,3,9));
%! assert (b(1:3,:,:), zeros (3,9,9));
%! assert (b(4:5,4,4), [0.0,0.0]');
%! assert (b(5,5,4), 1.00);
%! assert (b(4,4,5), 0.00);
%! assert (b(5,4,5), 1.00);
%! assert (b(5,5,5),-6.00);
%! assert (b, flip (b,1));
%! assert (b, flip (b,2));
%! assert (b, flip (b,3));