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ocaml-ocamlgraph-doc-1.1-1mdv2010.0.i586.rpm

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<center><h1>Functor <a href="type_Md.I.html">Md.I</a></h1></center>
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<pre><span class="keyword">module</span> I: <div class="sig_block"><code class="code">functor (</code><code class="code">G</code><code class="code"> : </code><code class="type"><a href="Sig.I.html">Sig.I</a></code><code class="code">) -&gt; </code><code class="code">sig</code> <a href="Md.I.html">..</a> <code class="code">end</code></div></pre><table border="0" cellpadding="3" width="100%">
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<td align="left" valign="top" width="1%%"><b>Parameters: </b></td>
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<code>G</code></td>
<td align="center" valign="top">:</td>
<td><code class="type"><a href="Sig.I.html">Sig.I</a></code>
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<pre><span class="keyword">type</span> <a name="TYPEedgeset"></a><code class="type"></code>edgeset = <code class="type">(G.V.t * G.V.t) list</code> </pre>

<pre><span class="keyword">val</span> <a name="VALmd"></a>md : <code class="type">G.t -> G.t * <a href="Md.I.html#TYPEedgeset">edgeset</a> * G.V.t list</code></pre><div class="info">
<code class="code">md g</code> return a tuple <code class="code">(g', e, o)</code> where <code class="code">g'</code> is 
      a triangulated graph, <code class="code">e</code> is the triangulation of <code class="code">g</code> and
      <code class="code">o</code> is a perfect elimination order of <code class="code">g'</code><br>
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<pre><span class="keyword">val</span> <a name="VALtriangulate"></a>triangulate : <code class="type">G.t -> G.t</code></pre><div class="info">
<code class="code">triangulate g</code> return the graph <code class="code">g'</code> produced by applying 
      miminum degree to <code class="code">g</code>.<br>
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