2005 · 230 citations · 21 references
Chip MultiprocessorManycore ProcessorInterconnect ArchitecturesEngineeringEdge ComputingMulti-core ArchitecturesHigh-performance ArchitectureDesignMany-core ArchitectureComputer EngineeringComputer ArchitectureNetwork On ChipInterconnection Network ArchitectureParallel ComputingMicroelectronics
This paper examines the area, power, performance, and design issues for the on-chip interconnects on a chip multiprocessor, attempting to present a comprehensive view of a class of interconnect architectures. It shows that the design choices for the interconnect have significant effect on the rest of the chip, potentially consuming a significant fraction of the real estate and power budget. This research shows that designs that treat interconnect as an entity that can be independently architected and optimized would not arrive at the best multi-core design. Several examples are presented showing the need for careful co-design. For instance, increasing interconnect bandwidth requires area that then constrains the number of cores or cache sizes, and does not necessarily increase performance. Also, shared level-2 caches become significantly less attractive when the overhead of the resulting crossbar is accounted for. A hierarchical bus structure is examined which negates some of the performance costs of the assumed base-line architecture.
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William J. Dally, Brian Towles · 2001 · 3.2K citations
Engineering, Network Routing, On-chip Interconnection Networks +20
Charles L. Seitz · Communications of the ACM · 1985 · 1.2K citations · Full text
Engineering, Computer Architecture, Interconnection Network Architecture +16
The Stanford Dash multiprocessor
Daniel Lenoski, James Laudon, Kourosh Gharachorloo et al. · Computer · 1992 · 968 citations