Skip to main content
Back to USENIX
  • Conferences
  • Students
Sign in
  • Home
  • Attend
    • Registration
    • Discounts
    • Venue, Hotel, and Travel
    • Why Attend?
    • Students and Grants
  • Program
    • Program at a Glance
    • Conference Program
    • Training Program
      • Training Program - Details
    • Workshops
    • Conference Topics
      • Systems and Network Engineering
      • Monitoring and Metrics
      • SRE and Software Engineering
      • Culture
    • UCMS '15
    • URES '15
    • Puppet Camp DC
  • Activities
    • Birds-of-a-Feather
    • LISA Build
    • LISA Lab
  • Sponsors and Expo
    • LISA15 Expo
    • Sponsor and Exhibitor List
    • Exhibitor Services
  • Participate
    • Call for Participation
    • Call for Research Papers and Posters
      • Submitting Papers and Posters
    • Speaker Resources
  • About
    • Conference Organizers
    • Help Promote
    • Services
    • Code of Conduct
    • Past Conferences
  • Home
  • Attend
    • Venue, Hotel, and Travel
    • Students and Grants
    • Co-Located Workshops
  • Program
  • Activities
  • Participate
    • Call for Papers
    • Instructions for Participants
  • Sponsorship
  • About
    • Symposium Organizers
    • Services
    • Questions
    • Help Promote!
    • Past Symposia

sponsors

Platinum Sponsor
Gold Sponsor
Gold Sponsor
Silver Sponsor
Silver Sponsor
Silver Sponsor
Bronze Sponsor
Bronze Sponsor
General Sponsor
Media Sponsor
Media Sponsor
Media Sponsor
Media Sponsor
Media Sponsor
Media Sponsor
Media Sponsor
Media Sponsor
Media Sponsor
Media Sponsor
Industry Partner
Industry Partner

help promote

USENIX Security '16 button

Get more
Help Promote graphics!

USENIX Conference Policies

  • Event Code of Conduct
  • Conference Network Policy
  • Statement on Environmental Responsibility Policy

Thermal Covert Channels on Multi-core Platforms

Ramya Jayaram Masti, Devendra Rai, Aanjhan Ranganathan, Christian Müller, Lothar Thiele, and Srdjan Capkun, ETH Zürich

Side channels remain a challenge to information flow control and security in modern computing platforms. Resource partitioning techniques that minimise the number of shared resources among processes are often used to address this challenge. In this work, we focus on multicore platforms and we demonstrate that even seemingly strong isolation techniques based on dedicated cores can be circumvented through the use of thermal channels. Specifically, we show that the processor core temperature can be used both as a side channel as well as a covert communication channel even when the system implements strong spatial and temporal partitioning. Our experiments on an Intel Xeon server platform demonstrate covert thermal channels that achieve up to 12.5 bps and weak thermal side channels that can detect processes executed on neighbouring cores. This work therefore shows a limitation in the isolation that can be achieved on existing multi-core systems.

Ramya Jayaram Masti, ETH Zürich

Devendra Rai, ETH Zürich

Aanjhan Ranganathan, ETH Zürich

Christian Müller, ETH Zürich

Lothar Thiele, ETH Zürich

Srdjan Capkun, ETH Zürich

Open Access Media

USENIX is committed to Open Access to the research presented at our events. Papers and proceedings are freely available to everyone once the event begins. Any video, audio, and/or slides that are posted after the event are also free and open to everyone. Support USENIX and our commitment to Open Access.

BibTeX
@inproceedings {190938,
author = {Ramya Jayaram Masti and Devendra Rai and Aanjhan Ranganathan and Christian M{\"u}ller and Lothar Thiele and Srdjan Capkun},
title = {Thermal Covert Channels on Multi-core Platforms},
booktitle = {24th USENIX Security Symposium (USENIX Security 15)},
year = {2015},
isbn = {978-1-939133-11-3},
address = {Washington, D.C.},
pages = {865--880},
url = {https://www.usenix.org/conference/usenixsecurity15/technical-sessions/presentation/masti},
publisher = {USENIX Association},
month = aug
}
Download
Masti PDF
View the slides

Presentation Video 

Presentation Audio

MP3 Download

Download Audio

  • Log in or register to post comments

Gold Sponsors

Silver Sponsors

Bronze Sponsors

General Sponsors

Media Sponsors & Industry Partners

Open Access Publishing Partners

© USENIX
EIN 13-3055038

  • Privacy Policy
  • Contact Us