Title :
Xetal-Pro: An ultra-low energy and high throughput SIMD processor
Author :
Yifan He ; Yu Pu ; Zhenyu Ye ; Londono, S.M. ; Kleihorst, R. ; Abbo, A.A. ; Corporaal, Henk
Author_Institution :
Eindhoven Univ. of Technol., Eindhoven, Netherlands
Abstract :
This paper presents Xetal-Pro SIMD processor, which is based on Xetal-II, one of the most computational-efficient (in terms of GOPS/Watt) processors available today. Xetal-Pro supports ultra wide VDD scaling from nominal supply to the sub-threshold region. Although aggressive VDD scaling causes severe throughput degradation, this can be compensated by the nature of massive parallelism in the Xetal family. The predecessor of Xetal-Pro, Xetal-II, includes a large on-chip frame memory (FM), which cannot operate reliably at ultra low voltage. Therefore we investigate both different FM realizations and memory organization alternatives. We propose a hybrid memory architecture which reduces the non-local memory traffic and enables further VDD scaling. Compared to Xetal-II operating at nominal voltage, we could gain more than 10× energy reduction while still delivering a sufficiently high throughput of 0.69 GOPS (counting multiply and add operations only). This work gives a new insight to the design of ultra-low energy SIMD processors, which are suitable for portable streaming applications.
Keywords :
memory architecture; microprocessor chips; parallel processing; Xetal-II; Xetal-Pro; aggressive VDD scaling; high throughput SIMD processor; memory architecture; nonlocal memory traffic; on-chip frame memory; subthreshold region; throughput degradation; ultra wide VDD scaling; ultra-low energy SIMD processor; Computer architecture; Degradation; Energy efficiency; Memory architecture; Parallel processing; Permission; Random access memory; Samarium; Streaming media; Throughput; Hybrid Memory System; Low-Energy; SIMD; Xetal-Pro;
Conference_Titel :
Design Automation Conference (DAC), 2010 47th ACM/IEEE
Conference_Location :
Anaheim, CA
Print_ISBN :
978-1-4244-6677-1