Title
ReDEEM: A heterogeneous distributed microarchitecture for energy-efficient reliability
Abstract
Diminishing energy-efficiency returns and decreasing transistor reliability are casting shadows on semiconductor scaling. Prior research has been addressing processors' energy-efficiency and transistor reliability as orthogonal problems. However, as embedded processors become more powerful and find their way into more diverse applications, both high reliability and energy-efficiency become critical. In this work, we propose ReDEEM, a novel approach to design energy-efficient and reliable microarchitectures. Our proposed solution composes processor pipelines at runtime from redundant but heterogeneous pipeline components. Our pipeline components are loosely coupled and the control logic is decentralized so as to enable fault isolation and thereby eliminate single points of failure. We equip the microarchitecture with the ability to adapt dynamically to varying application phases by constructing energy-efficient pipelines best suited for each phase. In addition, pipeline components have power management capabilities that allow for greater energy efficiency and flexibility. Our experimental evaluation shows that our solution offers up to 60% in energy savings and can operate about 1.8x longer, when subjected to the same fault rate as a state-of-the-art reliable microarchitecture.
Year
DOI
Venue
2015
10.1109/ISLPED.2015.7273530
2015 IEEE/ACM International Symposium on Low Power Electronics and Design (ISLPED)
Keywords
Field
DocType
power management,fault isolation,control logic,loosely coupled,heterogeneous pipeline components,processor pipelines,embedded processors,orthogonal problems,processors energy-efficiency,semiconductor scaling,transistor reliability,energy-efficiency returns,ReDEEM,energy-efficient reliability,heterogeneous distributed microarchitecture
Power management,Single point of failure,Pipeline transport,Efficient energy use,Computer science,Fault detection and isolation,Real-time computing,Electronic engineering,Control logic,Multi-core processor,Microarchitecture,Embedded system
Conference
Citations 
PageRank 
References 
0
0.34
17
Authors
3
Name
Order
Citations
PageRank
Biruk Mammo172.13
Ritesh Parikh2875.56
Valeria Bertacco3136586.93