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version 1.8, 2014/04/03 07:34:31 version 1.9, 2014/05/15 07:34:05
Line 113  The nightly snapshot of the asir-contrib can be found 
Line 113  The nightly snapshot of the asir-contrib can be found 
 or look up our <a href="http://www.math.sci.kobe-u.ac.jp/cgi/cvsweb.cgi/">  or look up our <a href="http://www.math.sci.kobe-u.ac.jp/cgi/cvsweb.cgi/">
 cvsweb page</a>.  cvsweb page</a>.
 <ol>  <ol>
   <li> Command line interfaces are in the folder OpenXM/src/hgm
   in the OpenXM source tree. See <a href="http://www.math.kobe-u.ac.jp/OpenXM">
   OpenXM distribution page </a>.
 <li> <a href="http://www.math.kobe-u.ac.jp/OpenXM/Math/hgm/"> hgm package for R </a> for the step 3.  <li> <a href="http://www.math.kobe-u.ac.jp/OpenXM/Math/hgm/"> hgm package for R </a> for the step 3.
 <li> yang (for Pfaffian systems) , nk_restriction (for D-module integrations),  <li> yang (for Pfaffian systems) , nk_restriction (for D-module integrations),
 tk_jack  (for Jack polynomials), ko_fb_pfaffian (Pfaffian system for the Fisher-Bingham system)  tk_jack  (for Jack polynomials), ko_fb_pfaffian (Pfaffian system for the Fisher-Bingham system)
Line 129  It is in the 
Line 132  It is in the 
 <li> <a href="http://www.math.kobe-u.ac.jp/OpenXM/Math/Fisher-Bingham-2"> d-dimensional Fisher-Bingham System </a>  <li> <a href="http://www.math.kobe-u.ac.jp/OpenXM/Math/Fisher-Bingham-2"> d-dimensional Fisher-Bingham System </a>
 </ol>  </ol>
   
 <pre> $OpenXM: OpenXM/src/hgm/doc/ref-hgm.html,v 1.7 2014/03/31 07:23:09 takayama Exp $ </pre>  <pre> $OpenXM: OpenXM/src/hgm/doc/ref-hgm.html,v 1.8 2014/04/03 07:34:31 takayama Exp $ </pre>
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