Sophie

Sophie

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

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<link title="Strat" rel="Chapter" href="Strat.html"><title>Strat</title>
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<center><h1>Module <a href="type_Strat.html">Strat</a></h1></center>
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<pre><span class="keyword">module</span> Strat: <code class="code">sig</code> <a href="Strat.html">..</a> <code class="code">end</code></pre>Strategies 
<p>

    Implementation of a winning strategy of a graph: the graph
    represents a two players game, each vertex belongs to either player
    (whose turn it is to play) and describes a configuration of the
    game. The algorithm computes the winning strategy of a player, if any; 
    i.e. the moves to play (which vertex to go to) so that for all
    possible moves of the other player, the game goes through a final
    state.<br>
<b>Author(s):</b> Nicolas Ayache<br>
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<pre><span class="keyword">module type</span> <a href="Strat.G.html">G</a> = <code class="code">sig</code> <a href="Strat.G.html">..</a> <code class="code">end</code></pre><div class="info">
Signature for graphs
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<pre><span class="keyword">module type</span> <a href="Strat.PLAYER.html">PLAYER</a> = <code class="code">sig</code> <a href="Strat.PLAYER.html">..</a> <code class="code">end</code></pre><div class="info">
Signature for graph add-ons: an initial vertex, final vertices
    and membership of vertices to either true or false,
    i.e.
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<pre><span class="keyword">module type</span> <a href="Strat.STRAT.html">STRAT</a> = <code class="code">sig</code> <a href="Strat.STRAT.html">..</a> <code class="code">end</code></pre><div class="info">
Signature for strategies: for a given state, the strategy tells
    which state to go to
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<pre><span class="keyword">module</span> <a href="Strat.Algo.html">Algo</a>: <div class="sig_block"><code class="code">functor (</code><code class="code">G</code><code class="code"> : </code><code class="type"><a href="Strat.G.html">G</a></code><code class="code">) -&gt; </code><div class="sig_block"><code class="code">functor (</code><code class="code">P</code><code class="code"> : </code><code class="type"><a href="Strat.PLAYER.html">PLAYER</a></code><code class="type">  with type vertex = G.vertex</code><code class="code">) -&gt; </code><div class="sig_block"><code class="code">functor (</code><code class="code">S</code><code class="code"> : </code><code class="type"><a href="Strat.STRAT.html">STRAT</a></code><code class="type">  with type vertex = G.vertex</code><code class="code">) -&gt; </code><code class="code">sig</code> <a href="Strat.Algo.html">..</a> <code class="code">end</code></div></div></div></pre><div class="info">
Implements strategy algorithms on graphs
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