DocumentCode :
3548394
Title :
Improving the scalability of SAMBA bus architecture
Author :
Lu, Ruibing ; Cao, Aiqun ; Koh, Cheng-Kok
Author_Institution :
Synopsys Inc., Mountain View, CA, USA
Volume :
2
fYear :
2005
fDate :
18-21 Jan. 2005
Firstpage :
1164
Abstract :
SAMBA bus (Lu and Koh, 2003) is a high performance bus architecture that can deliver multiple transactions in one bus cycle under single-winner bus arbitration. The bus architecture displays several advantages such as, high bandwidth, low latency, and low performance penalty from arbitration delay, all of which make it more scalable than traditional buses. However, its scalability may be limited by the bus access logic delay. As a module is connected to the bus through its interface unit, which is connected in series on the bus, the bus logic delay increases linearly as the bus size increases. In this paper, we propose to increase the scalability of SAMBA buses through two methods: control signal lookahead and module clustering. The control signal lookahead technique can determine the bus access control signal in advance, thereby reducing the effective delay of each interface unit. Module clustering, on the other hand, can reduce the number of interface units attached to a bus. Experimental results show that combining these two methods can effectively reduce the bus logic delay, and thus increase the scalability of SAMBA buses.
Keywords :
delays; integrated circuit design; system buses; system-on-chip; SAMBA bus; bus access control signal; bus access logic delay; bus architecture; bus scalability; bus size; control signal lookahead; module clustering; multiple transactions; single-winner bus arbitration; Access control; Bandwidth; Circuit testing; Delay effects; Delay lines; Displays; Logic; Multiplexing; Scalability; System-on-a-chip;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Design Automation Conference, 2005. Proceedings of the ASP-DAC 2005. Asia and South Pacific
Print_ISBN :
0-7803-8736-8
Type :
conf
DOI :
10.1109/ASPDAC.2005.1466548
Filename :
1466548
Link To Document :
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