From: Dragan T. <dr...@us...> - 2004-11-28 07:44:32
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Update of /cvsroot/octaviz/octaviz/Scripts In directory sc8-pr-cvs1.sourceforge.net:/tmp/cvs-serv16175 Modified Files: vtk_line3.m vtk_mesh.m Log Message: Corrected examples to allow cut'n'paste. Index: vtk_mesh.m =================================================================== RCS file: /cvsroot/octaviz/octaviz/Scripts/vtk_mesh.m,v retrieving revision 1.5 retrieving revision 1.6 diff -u -d -r1.5 -r1.6 --- vtk_mesh.m 28 Nov 2004 03:25:26 -0000 1.5 +++ vtk_mesh.m 28 Nov 2004 04:01:13 -0000 1.6 @@ -24,13 +24,15 @@ ## Optional @var{prop},@var{val} arguments can be used to change ## properties of the plot. Currently, valid properties are ## ";BallRadius;LineRadius;Fancy;". -## Example: Triaxial Teardrop ## +## Example: Triaxial Teardrop +## @example ## [u,v] = meshgrid(0:pi/20:pi,0:pi/20:2*pi); ## x = ( 1 - cos(u) ) .* cos( u + 2*pi/3 ) .* cos( v + 2*pi/3 ) / 2; ## y = ( 1 - cos(u) ) .* cos( u + 2*pi/3 ) .* cos( v - 2*pi/3 ) / 2; ## z = cos( u - 2*pi/3 ); ## vtk_mesh(x,y,z,'Fancy',1); +## @end example ## ## @end deftypefn ## @seealso{vtk_trimesh, vtk_surf} Index: vtk_line3.m =================================================================== RCS file: /cvsroot/octaviz/octaviz/Scripts/vtk_line3.m,v retrieving revision 1.3 retrieving revision 1.4 diff -u -d -r1.3 -r1.4 --- vtk_line3.m 28 Nov 2004 03:25:26 -0000 1.3 +++ vtk_line3.m 28 Nov 2004 04:01:13 -0000 1.4 @@ -16,13 +16,16 @@ ## -*- texinfo -*- ## @deftypefn {Function File} {} vtk_line3(@var{x}, @var{y}, @var{z}, [@var{fmt} | @var{prop},@var{val}]) +## ## Plots 3D line segments between the specified points. The data point ## coordinates must be given as 3 equal size @var{x}, @var{y}, and ## @var{z} matrices. The optional @var{fmt} takes the form of a "line ## specification"; e.g. "r" would cause the lines to be plotted in color ## red. The optional @var{prop},@var{val} is a property,value pair ## argument. Valid properties are Color, Radius, and Opacity. +## ## Example: Knot (torus) +## @example ## nmeridian = 6; nlongitude = 11; ## phi = 0:pi/1000:2*pi; ## mu = phi * nmeridian; @@ -30,6 +33,7 @@ ## y = sin(mu) .* (1 + cos(nlongitude*mu/nmeridian) / 2.0); ## z = sin(nlongitude*mu/nmeridian) / 2.0; ## vtk_line3(x',y',z','Radius',0.05); +## @end example ## ## @end deftypefn ## @seealso{vtk_plot3,vtk_arrows3,vtk_get_line_spec} |