Title :
Efficiency of Concurrent Processing of Sort Using CSP
Author :
Shiono, Yasunori ; Noguchi, Shohei ; Mochida, Mitsumasa ; Sumida, Tomoo ; Mori, Hideki ; Ohmaki, Kazuhito ; Tsuchida, Kensei
Author_Institution :
Dept. of Inf. Sci. & Arts, Toyo Univ., Kawagoe, Japan
Abstract :
Embedded systems have become an essential technology in fields that require electronic control. These technologies must work in real time and have high reliability and low cost. Among them, safety verification of embedded systems is very important in fields related to human life. In addition, as multi-core and multiprocessors have spread, the processing power of the hardware has been improved. As a result, concurrent processing has become necessary. In developing concurrent embedded systems, Communicating Sequential Processes (CSP) is regarded as useful. The purpose of this study is to verify, implement, and evaluate the concurrent sorting algorithm using the characteristics of CSP. In this study, we use two characteristics of CSP: synchronous communication and verification based on the formal method. In addition, we describe the extended improvement concurrent sorting algorithm.
Keywords :
communicating sequential processes; concurrency control; embedded systems; formal verification; multiprocessing systems; sorting; CSP; communicating sequential processes; concurrent embedded systems; concurrent processing; electronic control; extended improvement concurrent sorting algorithm; formal method; multicore processor; multiprocessors; processing power; safety verification; synchronous communication; synchronous verification; Algorithm design and analysis; Art; Data models; Educational institutions; Embedded systems; Reliability; Sorting; CSP; bitonic sort; concurrent embedded system; concurrent sorting algorithm;
Conference_Titel :
Software Engineering, Artificial Intelligence, Networking and Parallel & Distributed Computing (SNPD), 2012 13th ACIS International Conference on
Conference_Location :
Kyoto
Print_ISBN :
978-1-4673-2120-4
DOI :
10.1109/SNPD.2012.108