DocumentCode
2378975
Title
Applying speculation techniques to implement functional units
Author
Barrio, Alberto A Del ; Molina, Maria C. ; Mendias, Jose M. ; Andres, Esther ; Hermida, Roman ; Tirado, Francisco
Author_Institution
Dipt. Arquitectura de Comput. y Autom., Univ. Complutense de Madrid, Madrid
fYear
2008
fDate
12-15 Oct. 2008
Firstpage
74
Lastpage
80
Abstract
This paper justifies the use of estimation and prediction of carries to increase the performance of functional units built with the replication of full adders while keeping a low area penalization. Adders and multipliers are the most representative modules in this group of functional units. The use of these design techniques allows the implementation of modules with performance improvements ranging from 20% to 50% with only an area overheads around 5%. These functional units are suitable for asynchronous circuits but they could also be introduced in synchronous circuits with speculative techniques. The basic idea consists in estimating the carry out from some parts of the functional units, allowing every part to operate independently and in parallel. These modules are connected to build bigger ones. Results from simulations show that for some applications it is possible to make predictions even more accurate that the bit-based estimation. Predictions have also the advantage they can be introduced in the multipliers design, whether estimators cannot. These predictions are similar to the ones used in the branch prediction in a processor.
Keywords
adders; asynchronous circuits; carry logic; logic design; multiplying circuits; asynchronous circuit; carry out estimation; full adder replication; functional unit; multiplier; speculation technique; Adders; Application specific integrated circuits; Asynchronous circuits; Circuit simulation; Delay estimation; Digital arithmetic; Digital circuits; Logic; Predictive models; Proposals; functional units design; high-performance; prediction techniques;
fLanguage
English
Publisher
ieee
Conference_Titel
Computer Design, 2008. ICCD 2008. IEEE International Conference on
Conference_Location
Lake Tahoe, CA
ISSN
1063-6404
Print_ISBN
978-1-4244-2657-7
Electronic_ISBN
1063-6404
Type
conf
DOI
10.1109/ICCD.2008.4751843
Filename
4751843
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