Session
Breaking & Securing the Future: Advances in System & Hardware Security
Session Chairs
DescriptionAs cyber threats evolve and hardware vulnerabilities emerge, pioneering solutions are reshaping the landscape of security. Join this session for a deep dive into groundbreaking research at the crossroads of system security and hardware resilience. This session explores cutting-edge research at the intersection of system security and hardware resilience. We will examine novel defenses against control flow attacks on Intel SGX and AMD SEV, optimized data packing for homomorphic encryption to accelerate secure computation, and the discovery of a covert timing channel in cloud FPGAs. Additionally, we will uncover advanced fuzzing techniques for IoT protocol security, reverse engineering methods for extracting intelligence from vehicular CAN bus traffic, and a high-performance approach to control flow attestation in commodity MCUs. Attendees will gain insights into both emerging threats and innovative countermeasures shaping the future of secure computing.
Event Type
Research Manuscript
TimeTuesday, June 2410:30am - 12:00pm PDT
Location3008, Level 3
Security
SEC4: Embedded and Cross-Layer Security
Presentations
| 10:30am - 10:45am PDT | On Bit-level Reverse Engineering of Vehicular CAN Bus | |
| 10:45am - 11:00am PDT | HoBBy: Hardening Unbalanced Branches against Control Flow Attacks on Intel SGX and AMD SEV | |
| 11:00am - 11:15am PDT | CMFuzz: Parallel Fuzzing of IoT Protocols by Configuration Model Identification and Scheduling | |
| 11:15am - 11:30am PDT | A Novel Covert Timing Channel for Cloud FPGAs | |
| 11:30am - 11:45am PDT | RAP-Track: Efficient Control Flow Attestation via Parallel Tracking in Commodity MCUs | |
| 11:45am - 12:00pm PDT | An Enhanced Data Packing Method for General Matrix Multiplication in Brakerski/Fan-Vercauteren Scheme |


