Repository logo

Infoscience

  • English
  • French
Log In
Logo EPFL, École polytechnique fédérale de Lausanne

Infoscience

  • English
  • French
Log In
  1. Home
  2. Academic and Research Output
  3. Journal articles
  4. Spatial Locality Speculation to Reduce Energy in Chip-Multiprocessor Networks-on-Chip
 
research article

Spatial Locality Speculation to Reduce Energy in Chip-Multiprocessor Networks-on-Chip

Kim, Hyungjun
•
Grot, Boris  
•
Gratz, Paul V.
Show more
2014
IEEE Transactions on Computers

As processor chips become increasingly parallel, an efficient communication substrate is critical for meeting performance and energy targets. In this work, we target the root cause of network energy consumption through techniques that reduce link and router-level switching activity. We specifically focus on memory subsystem traffic, as it comprises the bulk of NoC load in a CMP. By transmitting only the flits that contain words predicted useful using a novel spatial locality predictor, our scheme seeks to reduce network activity. We aim to further lower NoC energy through microarchitectural mechanisms that inhibit datapath switching activity for unused words in individual flits. Using simulation-based performance studies and detailed energy models based on synthesized router designs and different link wire types, we show that 1) the prediction mechanism achieves very high accuracy, with an average rate of false-unused prediction of just 2.5 percent; 2) the combined NoC energy savings enabled by the predictor and microarchitectural support is 36 percent, on average, and up to 57 percent in the best case; and 3) there is no system performance penalty as a result of this technique.

  • Files
  • Details
  • Metrics
Type
research article
DOI
10.1109/Tc.2012.238
Web of Science ID

WOS:000333471800003

Author(s)
Kim, Hyungjun
Grot, Boris  
Gratz, Paul V.
Jimenez, Daniel A.
Date Issued

2014

Publisher

Institute of Electrical and Electronics Engineers

Published in
IEEE Transactions on Computers
Volume

63

Issue

3

Start page

543

End page

556

Subjects

Power management

•

cache memory

•

spatial locality

•

interconnections

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
PARSA  
Available on Infoscience
May 2, 2014
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/103158
Logo EPFL, École polytechnique fédérale de Lausanne
  • Contact
  • infoscience@epfl.ch

  • Follow us on Facebook
  • Follow us on Instagram
  • Follow us on LinkedIn
  • Follow us on X
  • Follow us on Youtube
AccessibilityLegal noticePrivacy policyCookie settingsEnd User AgreementGet helpFeedback

Infoscience is a service managed and provided by the Library and IT Services of EPFL. © EPFL, tous droits réservés