DocumentCode :
342678
Title :
Exact memory size estimation for array computations without loop unrolling
Author :
Zhao, Ying ; Malik, Sharad
Author_Institution :
Dept. of Electr. Eng., Princeton Univ., NJ, USA
fYear :
1999
fDate :
1999
Firstpage :
811
Lastpage :
816
Abstract :
This paper presents a new algorithm for exact estimation of the minimum memory size required by programs dealing with array computations. Memory size is an important factor affecting area and power cost of memory units. For programs dealing mostly with array computations, memory cost is a dominant factor in the overall system cost. Thus, exact estimation of memory size required by a program is necessary to provide quantitative information for making high-level design decisions. Based on formulated live variables analysis, our algorithm transforms the minimum memory size estimation into an equivalent problem: integer point counting for intersection/union of mappings of parametrized polytopes. Then, a heuristic was proposed to solve the counting problem. Experimental results show that the algorithm achieves the exactness traditionally associated with totally-unrolling loops while exploiting the reduced computation complexity by preserving original loop structure
Keywords :
cache storage; computational complexity; estimation theory; parallel processing; semiconductor storage; signal processing; array computations; computation complexity reduction; counting heuristic; exact estimation algorithm; high-level design decisions; integer point counting; live variables analysis; loop structure; memory size estimation; memory unit power cost; memory unit size; minimum memory size; parametrized polytopes; Algorithm design and analysis; Computational efficiency; Cost function; Design optimization; Digital signal processing; Energy consumption; Permission; Power engineering computing; Processor scheduling; Signal processing algorithms;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Design Automation Conference, 1999. Proceedings. 36th
Conference_Location :
New Orleans, LA
Print_ISBN :
1-58113-092-9
Type :
conf
DOI :
10.1109/DAC.1999.782142
Filename :
782142
Link To Document :
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