A novel list-scheduling algorithm for the low-energy program execution
Giannis Sinevriotis, Thanos Stouraitis · 2003
This paper presents a novel list-scheduling algorithm for low-energy software execution. The aim of the instruction scheduling is the minimization of the inter-instruction energy costs that are due to the switching activity of the processor circuit. The input of the scheduling algorithm is the original code sequence. Its output is a re-arranged sequence of the same instructions that minimizes the total inter-instruction effect cost and that has no impact on the program functionality. The inter-instruction effect cost is determined by means of physical measurements. The target architecture has been the ARM7TDMI processor core. The results of the optimization algorithm have been validated upon the implementation of the IEEE 802.11 protocol microcode for wireless local area networks.