DocumentCode :
2237275
Title :
IP-XACT and marte based approach for partially reconfigurable systems-on-chip
Author :
Ochoa, Gilberto ; Bourennane, El-Bay ; Labbani, Ouassila ; Messaoudi, Kamel
Author_Institution :
LE2I Lab., Burgundy Univ., Dijon, France
fYear :
2011
fDate :
13-15 Sept. 2011
Firstpage :
1
Lastpage :
8
Abstract :
Dynamic Partial Reconfiguration (DPR) has been introduced in recent years as a method to increase the flexibility of FPGA designs. However, using DPR for building complex systems remains a daunting task. Recently, approaches based on MDE and UML MARTE standard have emerged which aim to simplify the design of complex SoCs. Moreover, with the recent standardization of the IP-XACT specification, there is an increasing interest to use it in MDE methodologies to ease system integration and to enable design flow automation. In this paper we propose an MARTE/MDE approach which exploits the capabilities of IP-XACT to model and automatically generate DPR SoC designs. In particular, our goal is the creation of the top level description of the system and to exploit IP reuse in order to generate the netlists used by the Xilinx DPR design flow. The methodology is demonstrated by the integration of Deblocking filter IP used in H.264 CODECs into a MicroBlaze based DPR SoC.
Keywords :
field programmable gate arrays; system-on-chip; DPR SoC designs; FPGA designs; H.264 CODEC; IP reuse; IP-XACT specification; MDE; MicroBlaze based DPR SoC; UML MARTE standard; Xilinx DPR design flow; building complex systems; complex SoC design; deblocking filter IP; design flow automation; dynamic partial reconfiguration; netlists; partially reconfigurable systems-on-chip; Field programmable gate arrays; Generators; Hardware design languages; IP networks; Libraries; System-on-a-chip; Unified modeling language; Dynamic Partial Reconfiguration; ESL Design; IP-XACT; MDE; UML MARTE;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Specification and Design Languages (FDL), 2011 Forum on
Conference_Location :
Oldenburg
ISSN :
1636-9874
Print_ISBN :
978-1-4577-0763-6
Electronic_ISBN :
1636-9874
Type :
conf
Filename :
6069483
Link To Document :
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