IDeSyDe: Systematic Design Space Exploration via Design Space Identification

被引:1
作者
Jordao, Rodolfo [1 ]
Becker, Matthias [1 ]
Sander, Ingo [1 ]
机构
[1] KTH Royal Inst Technol, Isafjordsgatan 26, Kista, Stockholm, Sweden
关键词
Design space exploration; design space identification; embedded system design;
D O I
10.1145/3647640
中图分类号
TP3 [计算技术、计算机技术];
学科分类号
0812 ;
摘要
Design space exploration (DSE) is a key activity in embedded design processes, where a mapping between applications and platforms that meets the process design requirements must be found. Finding such mappings is very challenging due to the complexity of modern embedded platforms and applications. DSE tools aid in this challenge by potentially covering sections of the design space that could be unintuitive to designers, leading to more optimised designs. Despite this potential benefit, DSE tools remain relatively niche in the embedded industry. A significant obstacle hindering their wider adoption is integrating such tools into embedded design processes. We present two contributions that address this integration issue. First, we present the design space identification (DSI) approach for systematically constructing DSE solutions that are modular and tuneable. Modularity means that DSE solutions can be reused to construct other DSE solutions, while tuneability means that the most specific DSE solution is chosen for the target DSE problem. Moreover, DSI enables transparent cooperation between exploration algorithms. Second, we present IDeSyDe, an extensible DSE framework for DSE solutions based on DSI. IDeSyDe allows extensions to be developed in different programming languages in a manner compliant with the DSI approach. We showcase the relevance of these contributions through five different case studies. The case study evaluations showed that non-exploration DSI procedures create overheads, which are marginal compared to the exploration algorithms. Empirically, most evaluations average 2% of the total DSE request. More importantly, the case studies have shown that IDeSyDe indeed provides a modular and incremental framework for constructing DSE solutions. In particular, the last case study required minimal extensions over the previous case studies so that support for a new application type was added to IDeSyDe.
引用
收藏
页数:45
相关论文
共 37 条
[1]  
Andre C., 2009, Research Report RR-6925
[2]  
[Anonymous], 2006, 2006 6 INT C APPL CO, DOI [DOI 10.1109/ACSD.2006.23, 10.1109/ACSD.2006.23]
[3]  
Attarzadeh-Niaki SH, 2017, DES AUT TEST EUROPE, P670, DOI 10.23919/DATE.2017.7927074
[4]   MILAN: A model based integrated simulation framework for design of embedded systems [J].
Bakshi, A ;
Prasanna, VK ;
Ledeczi, A .
ACM SIGPLAN NOTICES, 2001, 36 (08) :82-87
[5]  
Benavides David, 2007, FAMA: Tooling a Framework for the Automated Analysis of Feature Models
[6]  
Forget Julien, 2010, Proceedings of the 16th IEEE Real-Time and Embedded Technology and Applications Symposium (RTAS 2010), P301, DOI 10.1109/RTAS.2010.26
[7]   Performance Analysis of Weakly-Consistent Scenario-Aware Dataflow Graphs [J].
Geilen, Marc ;
Falk, Joachim ;
Haubelt, Christian ;
Basten, Twan ;
Theelen, Bart ;
Stuijk, Sander .
JOURNAL OF SIGNAL PROCESSING SYSTEMS FOR SIGNAL IMAGE AND VIDEO TECHNOLOGY, 2017, 87 (01) :157-175
[8]   Electronic System-Level Synthesis Methodologies [J].
Gerstlauer, Andreas ;
Haubelt, Christian ;
Pimentel, Andy D. ;
Stefanov, Todor P. ;
Gajski, Daniel D. ;
Teich, Juergen .
IEEE TRANSACTIONS ON COMPUTER-AIDED DESIGN OF INTEGRATED CIRCUITS AND SYSTEMS, 2009, 28 (10) :1517-1530
[9]   The COMPLEX methodology for UML/MARTE Modeling and design space exploration of embedded systems [J].
Herrera, Fernando ;
Posadas, Hector ;
Penil, Pablo ;
Villar, Eugenio ;
Ferrero, Francisco ;
Valencia, Raul ;
Palermo, Gianluca .
JOURNAL OF SYSTEMS ARCHITECTURE, 2014, 60 (01) :55-78
[10]   A multi-view and programming language agnostic framework for model-driven engineering [J].
Jordao, Rodolfo ;
Bahrami, Fahimeh ;
Chen, Rui ;
Sander, Ingo .
PROCEEDINGS OF THE 2022 FORUM ON SPECIFICATION & DESIGN LANGUAGES (FDL), 2022,