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	<title>Carbon Research Group</title>
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	<link>http://groups.csail.mit.edu/carbon</link>
	<description>Parallel Research for Next Generation Manycore</description>
	<pubDate>Tue, 17 Nov 2009 16:44:42 +0000</pubDate>
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		<title>Welcome</title>
		<link>http://groups.csail.mit.edu/carbon/?p=26</link>
		<comments>http://groups.csail.mit.edu/carbon/?p=26#comments</comments>
		<pubDate>Sat, 21 Mar 2009 21:41:30 +0000</pubDate>
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		<description><![CDATA[Current Projects:
Carbon Sim is designed to simulate an application on up to 1000s of cores by using dynamic binary translation on a given binary and uses hot-swappable modules each part of the chip.
Factored Operating System (fos) is a new operating system targeting multicore, manycore, and cloud computing systems with scalability as the primary design constraint, where space [...]]]></description>
			<content:encoded><![CDATA[<p><strong>Current Projects:</strong></p>
<p><span style="color: #800000;"><strong>Carbon Sim</strong></span> is designed to simulate an application on up to 1000s of cores by using dynamic binary translation on a given binary and uses hot-swappable modules each part of the chip.<br />
<strong><span style="color: #800000;"><a href="http://groups.csail.mit.edu/carbon/?page_id=39">Factored Operating System</a></span><a href="http://groups.csail.mit.edu/carbon/?page_id=39"> </a></strong><a href="http://groups.csail.mit.edu/carbon/?page_id=39">(fos)</a> is a new operating system targeting multicore, manycore, and cloud computing systems with scalability as the primary design constraint, where space sharing replaces time sharing to increase scalability.<br />
<span style="color: #800000;"><strong><a href="http://groups.csail.mit.edu/carbon/?page_id=62">ATAC</a></strong></span> is an All-to-All optical on-chip interconnect designed to improve bandwidth on future manycore chips.<br />
<strong><span style="color: #800000;">TAPI</span> </strong>is an api for parallel programming. It is designed to support many different parallel programming approaches.<br />
<span style="color: #800000;"><strong>SOS</strong></span> is an adaptive system for dynamic parallel environments. By using introspection, locks and other synchronization primitives can adapt at run-time to match and optimize for the underlying environment.</p>
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