Title :
Token relabeling in a tagged token data-flow architecture
Author :
Gaudiot, Jean-Luc ; Wei, Yi-hsiu
Author_Institution :
Dept. of Electr. Eng.-Syst. Univ. of Southern California, Los Angeles, CA, USA
fDate :
9/1/1989 12:00:00 AM
Abstract :
A direct structure access approach called token relabeling scheme is presented in which all array operations can be performed without the use of any intermediary structure memory. The graph constructs for both approaches are described. Four numerical algorithms including fast Fourier transform, bitonic sort, LU decomposition, and matrix multiplication are implemented in both approaches. Token relabeling is directly applicable to arrays which are entirely consumed. Graph constructs which allow partial consumption are also designed. The effectiveness and efficiency of this parallel random access construct verifies the feasibility and applicability of the token relabeling scheme. A deterministic simulation of Arvind and K.P. Gostelow´s tagged-token data-flow architecture (1982) is undertaken to validate the graph designs and evaluate the performance of the graphs. It is shown that the direct access graphs present better performance with regard to execution time, speedup, and resource utilization
Keywords :
fast Fourier transforms; graph theory; parallel architectures; LU decomposition; array operations; bitonic sort; deterministic simulation; direct structure access; execution time; fast Fourier transform; graph constructs; matrix multiplication; numerical algorithms; resource utilization; speedup; tagged token data-flow architecture; token relabeling; Availability; Centralized control; Computational modeling; Computer architecture; Data structures; Fast Fourier transforms; Helium; Large-scale systems; Matrix decomposition; Resource management;
Journal_Title :
Computers, IEEE Transactions on