Title :
The metamodeling approach to system level synthesis
Author :
Ecker, Wolfgang ; Velten, Michael ; Zafari, Leily ; Goyal, Ankur
Author_Institution :
Syst.-Level & Verification, Infineon Technol., Munich, Germany
Abstract :
This paper presents an industry proven Metamodeling based approach to System-Level-Synthesis which is seen as generic design automation strategy above today´s implementation levels RTL (for digital) and Schematic Entry (for analog). The approach follows a new synthesis paradigm: The designer develops a simple domain and/or design specific language and a smart tool synthesizing implementation level models according to its needs. The overhead of making both a tool and a model pays off since the tool building is automated by code generation and reuse, both based on Metamodeling techniques. Also the focus on owns demand keeps development costs low. Finally, specification data is utilized. I.e. the domain specific language simplifies to a document structure as a table. This keeps also modeling effort low since specification content is used and no model need to be built. Furthermore, increases design consistency and thus decreases debug time. Using these concepts, single design steps have been speed up to a factor of 20x and implementations of chips (specification-to-tapeout) have been speed up to a factor of 3x.
Keywords :
electronic design automation; program compilers; specification languages; RTL levels; code generation; design specific language; generic design automation strategy; metamodeling approach; schematic entry; smart tool; system level synthesis; Automation; Buildings; Data models; Engines; Generators; Metamodeling; Synthesizers; code generation; metamodeling; system level synthesis;
Conference_Titel :
Design, Automation and Test in Europe Conference and Exhibition (DATE), 2014
Conference_Location :
Dresden
DOI :
10.7873/DATE.2014.324