Title :
Accelerate Cache Simulation with Generic GPU
Author :
Han, Wan ; Xiaopeng, Gao ; Zhiqiang, Wang
Author_Institution :
State Key Lab. of Virtual Reality Technol. & Syst., Beihang Univ. Beijing, Beijing, China
Abstract :
Trace-driven cache simulation is the most widely used method to evaluate different cache structures. Several techniques have been proposed to reduce the simulation time of sequential trace-driven simulation. An obvious way to achieve fast parallel simulation is to simulate the individual independent sets of a cache concurrently on different compute resources. We propose improvements to current trace-driven simulation methods to make them faster and more economical. This paper considers the use of generic GPU to accelerate cache simulation which exploits set-partitioning as the main source of parallelism. We develop more efficient parallel simulation techniques by introducing more knowledge into the compute unified device architecture (CUDA) on the GPU. Our experimental result shows that the new algorithm can produce performance results for a number of set-associative caches in just a single simulation run and still produce the exact results.
Keywords :
cache storage; parallel algorithms; parallel architectures; CUDA; compute unified device architecture; fast parallel simulation; generic GPU; sequential trace-driven simulation; set partitioning; trace-driven cache simulation; Acceleration; Analytical models; Computational modeling; Computer architecture; Computer simulation; Concurrent computing; Graphics; Kernel; Parallel processing; Partitioning algorithms; CUDA; GPGPU; caches; parallel algorithms; trace-driven simulation;
Conference_Titel :
Computer and Information Technology, 2009. CIT '09. Ninth IEEE International Conference on
Conference_Location :
Xiamen
Print_ISBN :
978-0-7695-3836-5
DOI :
10.1109/CIT.2009.121