Title :
Effects of Nondeterminism in Hardware and Software Simulation with Thread Mapping
Author :
Salvador, G. ; Nilakantan, S. ; Taskin, B. ; Hempstead, M. ; More, A.
Author_Institution :
Univ. of Pennsylvania, Philadelphia, PA, USA
Abstract :
In this paper, we explore the simulation performance trade-off under the lens of Monte Carlo design space exploration for multi-threaded programs and thread mapping. The vehicle used for this exploration will be a recent study, whose novel Google Page Rank-based thread mapping approach is compared to hundreds of random mappings, as well as a Round-Robin-based thread mapping approach proposed in this paper used in similar comparisons. The modern simulator landscape presents a choice between cycle-accurate but slow, and fast but inaccurate program simulation. We find that the use of a fast, inaccurate multi-threaded simulator, such as Sniper 5.3, suffers from large nondeterminism in the reported performance of the program. We perform cycle-accurate simulation which demonstrates that the static thread mapping approach does provide benefits in reaching near-optimal design points. Furthermore, the runtime of static thread mapping is significantly reduced using a cycle-accurate simulator compared to the full Monte Carlo exploration of mapping design points.
Keywords :
Monte Carlo methods; multi-threading; search engines; Google PageRank; Monte Carlo design space exploration; Sniper 5.3; cycle-accurate simulation; cycle-accurate simulator; hardware simulation; multithreaded programs; multithreaded simulator; program simulation; simulation performance trade-off; software simulation; static thread mapping approach; Aggregates; Benchmark testing; Hardware; Instruction sets; Monte Carlo methods; Space exploration;
Conference_Titel :
VLSI Design (VLSID), 2015 28th International Conference on
Conference_Location :
Bangalore
DOI :
10.1109/VLSID.2015.27