Title :
Towards resilient multicore architectures for real-time controls
Author :
Bradetich, Ryan ; Oman, Paul ; Alves-Foss, Jim ; Smith, Jessica
Author_Institution :
Center for Secure & Dependable Syst., Univ. of Idaho, Moscow, ID, USA
Abstract :
The DOD community is interested in multicore system-on-a-chip architectures to host Multi-Level Secure (MLS) command and control systems. These systems must be secure and resilient, not unlike hardened real-time control systems used in critical infrastructures. In this paper we discuss how Smart Grid features will fundamentally change our power grid and communication infrastructures, and suggest that resilient multicore systems-on-a-chip may offer a solution to the increased complexity of our critical infrastructure control systems, if those architectures can be suitably hardened. We showcase two vulnerabilities in the Cell Broadband Engine and show how those vulnerabilities can be mitigated using changes to the Linux kernel. Similar problems can been found in the Intel Nehalem architecture and the Freescale P4080 architecture. We conclude that multicore architectures are only suitable for MLS and resilient real-time controls if, and only if, designers pay close attention to mitigating the inherent firmware and software vulnerabilities.
Keywords :
Linux; firmware; microprocessor chips; multiprocessing systems; real-time systems; security of data; smart power grids; system-on-chip; DOD community; Intel Nehalem architecture; Linux kernel; cell broadband engine; critical infrastructure control system; firmware vulnerability; freescale P4080 architecture; multicore system-on-a-chip architecture; multilevel secure command; power grid; real time control; resilient multicore architecture; smart grid feature; software vulnerability; Kernel; Linux; Microprocessors; Multicore processing; Program processors; System-on-a-chip; Multi-Level Security; Multicore Architecture; Resilient Systems;
Conference_Titel :
Resilient Control Systems (ISRCS), 2010 3rd International Symposium on
Conference_Location :
Idaho Falls, ID
Print_ISBN :
978-1-4244-5955-1
DOI :
10.1109/ISRCS.2010.5603488