DocumentCode
572411
Title
A case for heterogeneous on-chip interconnects for CMPs
Author
Mishra, Asit K. ; Vijaykrishnan, N. ; Das, Chita R.
Author_Institution
Dept. of Comput. Sci. & Eng., Pennsylvania State Univ., University Park, PA, USA
fYear
2011
fDate
4-8 June 2011
Firstpage
389
Lastpage
399
Abstract
Network-on-chip (NoC) has become a critical shared resource in the emerging Chip Multiprocessor (CMP) era. Most prior NoC designs have used the same type of router across the entire network. While this homogeneous network design eases the burden on a network designer, partitioning the resources equally among all routers across the network does not lead to optimal resource usage, and hence, affects the performance-power envelope. In this work, we propose to apportion the resources in an NoC to leverage the non-uniformity in network resource demand. Our proposal includes partitioning the network resources, specifically buffers and links, in an optimal manner. This approach results in redistributing resources such that routers that require more resources are allocated more buffers and wider links compared to routers demanding fewer resources. This results in a novel heterogeneous network, called HeteroNoC, which is composed of two types of routers - small power efficient routers, and big high performance routers. We evaluate a number of heterogeneous network configurations, composed of big and small routers, and show that giving more resources to routers along the diagonals in a mesh network provides maximum benefits in terms of performance and power. We also show the potential benefits of the HeteroNoC design by co-evaluating it with memory-controllers and configuring it with an asymmetric CMP consisting of heterogeneous cores.
Keywords
microprocessor chips; network-on-chip; power aware computing; CMP; Network-on-chip; NoC; chip multiprocessor; heterogeneous onchip interconnect; mesh network; network designer; optimal resource usage; power efficient routers; power performance; Layout; Mesh networks; Multicore processing; Power demand; Silicon compounds; System-on-a-chip;
fLanguage
English
Publisher
ieee
Conference_Titel
Computer Architecture (ISCA), 2011 38th Annual International Symposium on
Conference_Location
San Jose, CA
ISSN
1063-6897
Print_ISBN
978-1-4503-0472-6
Type
conf
Filename
6307774
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