DocumentCode
602895
Title
On the selection of adder unit in energy efficient vector processing
Author
Ratkovic, I. ; Palomar, Oscar ; Stanic, M. ; Unsal, Osman S. ; Cristal, Adrian ; Valero, M.R.
Author_Institution
Barcelona Supercomput. Center, Barcelona, Spain
fYear
2013
fDate
4-6 March 2013
Firstpage
143
Lastpage
150
Abstract
Vector processors are a very promising solution for mobile devices and servers due to their inherently energy-efficient way of exploiting data-level parallelism. Previous research on vector architectures predominantly focused on performance, so vector processors require a new design space exploration to achieve low power. In this paper, we present a design space exploration of adder unit for vector processors (VA), as it is one of the crucial components in the core design with a non-negligible impact in overall performance and power. For this interrelated circuit-architecture exploration, we developed a novel framework with both architectural- and circuit-level tools. Our framework includes both design- (e.g. adder´s family type) and vector architecture-related parameters (e.g. vector length). Finally, we present guidelines on the selection of the most appropriate VA for different types of vector processors according to different sets of metrics of interest. For example, we found that 2-lane configurations are more EDP (Energy×Delay)-efficient than single lane configurations for low-end mobile processors.
Keywords
adders; logic design; microprocessor chips; adder unit; architectural-level tools; circuit-level tools; data-level parallelism; design space exploration; energy efficient vector processing; energy-efficient way; interrelated circuit-architecture; mobile devices; mobile processors; vector processors; Clocks; Logic gates; Parallel processing;
fLanguage
English
Publisher
ieee
Conference_Titel
Quality Electronic Design (ISQED), 2013 14th International Symposium on
Conference_Location
Santa Clara, CA
ISSN
1948-3287
Print_ISBN
978-1-4673-4951-2
Type
conf
DOI
10.1109/ISQED.2013.6523602
Filename
6523602
Link To Document