Title :
Taming heterogeneity - the Ptolemy approach
Author :
Eker, Johan ; Janneck, Jörn W. ; Lee, Edward A. ; Liu, Jie ; Liu, Xiaojun ; Ludvig, Jozsef ; Neuendorffer, Stephen ; Sachs, Sonia ; Xiong, Yuhong
Author_Institution :
Dept. of Electr. Eng. & Comput. Sci., California Univ., Berkeley, CA, USA
fDate :
1/1/2003 12:00:00 AM
Abstract :
Modern embedded computing systems tend to be heterogeneous in the sense of being composed of subsystems with very different characteristics, which communicate and interact in a variety of ways-synchronous or asynchronous, buffered or unbuffered, etc. Obviously, when designing such systems, a modeling language needs to reflect this heterogeneity. Today´s modeling environments usually offer a variant of what we call amorphous heterogeneity to address this problem. This paper argues that modeling systems in this manner leads to unexpected and hard-to-analyze interactions between the communication mechanisms and proposes a more structured approach to heterogeneity, called hierarchical heterogeneity, to solve this problem. It proposes a model structure and semantic framework that support this form of heterogeneity, and discusses the issues arising from heterogeneous component interaction and the desire for component reuse. It introduces the notion of domain polymorphism as a way to address these issues.
Keywords :
embedded systems; object-oriented programming; programming environments; software architecture; software reusability; Ptolemy; Ptolemy II; component reuse; component-based design; domain polymorphism; embedded computing systems; heterogeneous modeling; hierarchical heterogeneity; modeling environments; models of computation; software environment; Amorphous materials; Computational modeling; Design methodology; Electronic switching systems; Embedded computing; Embedded software; Embedded system; Microelectronics; Software systems; Yarn;
Journal_Title :
Proceedings of the IEEE
DOI :
10.1109/JPROC.2002.805829