DocumentCode
2581687
Title
The design of the Amalgam reconfigurable cluster
Author
Walstrom, Joshua D. ; Cook, Jeffrey J. ; Gottlieb, Derek B. ; Ferrera, Steve ; Wang, Chi-Wei ; Carter, Nicholas P.
Author_Institution
Center for Reliable & High Performance Comput., Illinois Univ., Urbana, IL, USA
fYear
2002
fDate
2002
Firstpage
309
Lastpage
310
Abstract
Amalgam is a novel architecture for multifunction embedded systems. It integrates multiple reconfigurable and programmable processing resources (known as clusters) to achieve high-performance with low design effort on a variety of multimedia applications. The reconfigurable cluster (RClust) enables Amalgam to exploit the natural parallelism and operator granularities of a target application. The RClust contains a ring of reconfigurable logic interleaved with a banked register file to support Amalgam´s register-based inter-cluster communication mechanism. This low-latency mechanism allows the RClust to coordinate with a programmable cluster (PClust) as a special purpose junctional unit implementing small custom operations. The relatively large size of the cluster, however, allows it to implement larger, more independent computational kernels. In this extended abstract, we describe the initial design of the RClust and present results from mapping several benchmarks to Amalgam architectures with and without RClust elements.
Keywords
embedded systems; reconfigurable architectures; workstation clusters; Amalgam reconfigurable cluster; multifunction embedded systems; natural parallelism; operator granularities; programmable cluster; programmable processing resources; Cellular phones; Computer architecture; Embedded system; High performance computing; Kernel; Logic arrays; Parallel processing; Programmable logic arrays; Reconfigurable logic; Registers;
fLanguage
English
Publisher
ieee
Conference_Titel
Field-Programmable Custom Computing Machines, 2002. Proceedings. 10th Annual IEEE Symposium on
Print_ISBN
0-7695-1801-X
Type
conf
DOI
10.1109/FPGA.2002.1106696
Filename
1106696
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