Title :
JTS-based static branch prediction
Author :
Taisong Jin ; Jinseok Lee ; Minwook Ahn ; Yoonseo Choi ; Do-Hyung Kim ; Shihwa Lee
Abstract :
VLIW architectures are popular design choices in embedded computing market because of its capability of delivering performance with low power. Branch prediction plays a key role for minimizing pipeline stalls due to control hazard. Though a hardware branch predictor can result in good predictions, its HW cost often hinders it from being used in low-power VLIW architectures. On the other hand, a software branch prediction by the compiler can achieve comparable prediction quality utilizing delay slots intelligently without HW cost. In this paper, we propose a novel static branch prediction technique using jump target setting (JTS) instructions. The JTS-enabled VLIW architecture is successfully shipped in several commercial consumer electronic devices from Samsung. In our experiment using multimedia applications, the proposed branch prediction scheme outperforms the conventional static branch prediction with delay slots by 9%.
Keywords :
multiprocessing systems; parallel architectures; HW cost; JTS based static branch prediction; Samsung; VLIW architectures; commercial consumer electronic devices; embedded computing market; hardware branch predictor; jump target setting; multimedia applications; software branch prediction; Computer architecture; Consumer electronics; Delays; Filling; Hardware; Pipelines; VLIW;
Conference_Titel :
Consumer Electronics (ICCE), 2014 IEEE International Conference on
Conference_Location :
Las Vegas, NV
Print_ISBN :
978-1-4799-1290-2
DOI :
10.1109/ICCE.2014.6776101