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				| <!-------- @HEADER
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|  !
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|  ! !!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!!
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|  !
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|  !  Zoltan Toolkit for Load-balancing, Partitioning, Ordering and Coloring
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|  ! Questions? Contact Karen Devine	kddevin@sandia.gov
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|  !                    Erik Boman	egboman@sandia.gov
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|  ! @HEADER
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| -------> 
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| <!DOCTYPE html PUBLIC "-//w3c//dtd html 4.0 transitional//en">
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| <html>
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| <head>
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|   <meta http-equiv="Content-Type"
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|  content="text/html; charset=iso-8859-1">
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|  content="Mozilla/4.76 [en] (X11; U; Linux 2.4.2-2smp i686) [Netscape]">
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|   <meta name="author" content="Zoltan PI">
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| 
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|   <title>Zoltan User's Guide: Graph vs. Hypergraph Partitioning</title>
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| </head>
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| <body bgcolor="#ffffff">
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| <div align="right"><b><i><a href="ug.html">Zoltan User's Guide</a>  |
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| <a href="ug_alg_parmetis.html"> Next</a>  |
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|  <a href="ug_alg_graph.html">Previous</a> 
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| </i>
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| </b></div>
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| 
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| <h2>
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| <a name="Graph vs Hypergraph Partitioning">
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| </a>Graph vs Hypergraph Partitioning</h2>
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| 
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| Graph partitioning has proven quite useful in scientific computing. 
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| <a href="ug_alg_hypergraph.html">Hypergraph partitioning</a>
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| is a more recent improvement
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| that uses a hypergraph model, which is
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| often a more accurate model than the graph model for scientific computing. 
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| (Hypergraphs contain hyperedges which connect two <i>or more</i>
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| vertices.)
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| See <a href="ug_refs.html#catalyurek99">[Catalyurek & Aykanat]</a> and
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| <a href="ug_refs.html#hendrickson-kolda">[Hendrickson & Kolda]</a> 
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| for further details. 
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| 
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| You do not need to understand the underlying models
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| to use graph or hypergraph partitioning for load-balancing
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| in Zoltan. The basic trade-offs are:
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| <ul>
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| <li> Hypergraph partitioning usually produces partitions (assignments)
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| of higher quality than graph partitioning, which may reduce
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| communication time in parallel applications (up to 30-40%
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| reduction has been reported). However, hypergraph
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| partitioning takes longer time to compute. </li>
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| <li> The graph model is restricted to symmetric data dependencies. 
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| If you have a non-symmetric problem, we recommend hypergraph 
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| partitioning. </li>
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| </ul>
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| 
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| <h3>Migrating from ParMetis to PHG in Zoltan</h3>
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| If you already use Zoltan for graph partitioning (via ParMetis),
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| there are three ways to switch to the Zoltan-PHG hypergraph partitioner: 
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| 
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| <ol>
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| <li>The quick and easy way: Just change the <a href="ug_alg.html#LB_METHOD">
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| LB_METHOD</a> to "Hypergraph".
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| Zoltan will then use the graph query functions (presumably
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| already implemented) to construct a hypergraph model, which
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| is similar to but not equivalent to the graph.
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| <li>The proper way: Change the LB_METHOD, but also implement and
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| register the <a href="ug_query_lb.html#ZOLTAN_HG_SIZE_CS_FN">
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| hypergraph query functions</a>
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| required by Zoltan. These may give a more accurate representation
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| of data dependencies (and communication requirements) for your
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| application.
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| <li>If you really want graph (not hypergraph) partitioning: 
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| Just change the <a href="ug_alg.html#LB_METHOD">
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| LB_METHOD</a> to "Graph".
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| Zoltan will then use PHG as a graph partitioner, which is slower than
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| ParMetis but often produces better partitions (lower cuts).
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| </ol>
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| 
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| Technical note: A hypergraph is constructed from the graph as follows:
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| The vertices are the same in the hypergraph as in the graph. For each vertex
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| <i>v</i>, create a hyperedge that consists of all neighbors in the graph 
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| and <i>v </i> itself.
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| 
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| <hr width="100%">[<a href="ug.html">Table of Contents</a>  | 
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| <a href="ug_alg_parmetis.html"> Next:  ParMETIS</a>  |
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|   <a href="ug_alg_graph.html">Previous: 
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| Graph Partitioning</a>  |  <a href="https://www.sandia.gov/general/privacy-security/index.html">Privacy and Security</a>]
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| </body>
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| </html>
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| 
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