DocumentCode :
1956543
Title :
Using Trace Scratchpads to Reduce Execution Times in Predictable Real-Time Architectures
Author :
Whitham, Jack ; Audsley, Neil
Author_Institution :
Dept. of Comput. Sci., Univ. of York, York
fYear :
2008
fDate :
22-24 April 2008
Firstpage :
305
Lastpage :
316
Abstract :
Instruction scratchpads have been previously suggested as a way to reduce the worst case execution time (WCET) of hard real-time programs without introducing the analysis issues posed by caches. Trace scratchpads extend this paradigm with support for instruction level parallelism (ILP) while preserving simplicity of WCET analysis. In this paper, we demonstrate trace scratchpads using the MCGREP-2 CPU architecture. We provide a sample algorithm to automatically reduce the WCET of a program using a trace scratchpad, and compare the results with the use of an instruction scratchpad. We find that the two types of scratchpad are best used together. Instruction scratchpads provide excellent WCET improvements at low cost, but trace scratchpads reduce WCET further by optimizing worst case (WC) paths and exploiting ILP across basic block boundaries. Using our experimental implementation, we have observed WCET improvements over an instruction scratchpad of up to 149% with some Malardalen WCET benchmarks.
Keywords :
cache storage; MCGREP-2 CPU architecture; hard real-time program; instruction level parallelism; instruction scratchpad; memory architecture; predictable real-time architecture; trace scratchpad; worst case execution time; Application software; Computer aided instruction; Computer architecture; Computer science; Cost function; Lifting equipment; Optical wavelength conversion; Parallel processing; Real time systems; Timing; hard real-time; reduction; scratchpads; trace; wcet;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Real-Time and Embedded Technology and Applications Symposium, 2008. RTAS '08. IEEE
Conference_Location :
St. Louis, MO
ISSN :
1545-3421
Print_ISBN :
978-0-7695-3146-5
Type :
conf
DOI :
10.1109/RTAS.2008.11
Filename :
4550802
Link To Document :
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