DocumentCode
1279693
Title
High-throughput, low-memory applications on the Pica architecture
Author
Wills, D. Scott ; Cat, Huy H. ; Cruz-Rivera, José ; Lacy, W. Stephen ; Baker, James M., Jr. ; Eble, John C. ; López-Lagunas, Abelardo ; Hopper, Michael
Author_Institution
Sch. of Electr. Eng., Georgia Inst. of Technol., Atlanta, GA, USA
Volume
8
Issue
10
fYear
1997
fDate
10/1/1997 12:00:00 AM
Firstpage
1055
Lastpage
1067
Abstract
This paper describes Pica, a fine-grain, message-passing architecture designed to efficiently support high-throughput, low-memory parallel applications, such as image processing, object recognition, and data compression. By specializing the processor and reducing local memory (4,096 36-bit words), multiple nodes can be implemented on a single chip. This allows high-performance systems for high-throughput applications to be realized at lower cost. The architecture minimizes overhead for basic parallel operations. An operand-addressed context cache and round-robin task manager support fast task swapping. Fixed-sized activation contexts simplify storage management. Word-tag synchronization bits provide low-cost synchronization. Several applications have been developed for this architecture, including thermal relaxation, matrix multiplication, JPEG image compression, and Positron Emission Tomography image reconstruction. These applications have been executed using an instrumented instruction-level simulator. The results of these experiments and an evaluation of Pica´s architectural features are presented
Keywords
data compression; image processing; image reconstruction; matrix multiplication; object recognition; parallel architectures; positron emission tomography; storage management; synchronisation; JPEG image compression; Pica architecture; Positron Emission Tomography image reconstruction; data compression; high-performance systems; high-throughput applications; image processing; low-memory applications; low-memory parallel applications; matrix multiplication; message-passing architecture; object recognition; operand-addressed context cache; round-robin task manager; storage management; synchronization; thermal relaxation; Application software; Computer architecture; Concurrent computing; Costs; Data compression; High performance computing; Image processing; Image reconstruction; Microprocessors; Object recognition;
fLanguage
English
Journal_Title
Parallel and Distributed Systems, IEEE Transactions on
Publisher
ieee
ISSN
1045-9219
Type
jour
DOI
10.1109/71.629488
Filename
629488
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