USENIX Security2023Top-tier venue
ACFA: Secure Runtime Auditing & Guaranteed Device Healing via Active Control Flow Attestation
Adam Caulfield, Norrathep Rattanavipanon, Ivan De Oliveira Nunes
Abstract
Low-end embedded devices are increasingly used in various smart applications and spaces. They are implemented under strict cost and energy budgets, using microcontroller units (MCUs) that lack security features available in general-purpose processors. In this context, Remote Attestation (RA) was proposed as an inexpensive security service to enable a verifier (Vrf) to remotely detect illegal modifications to a software binary installed on a low-end prover MCU (Prv). Since attacks that hijack the software's control flow can evade RA, Control Flow Attestation (CFA) augments RA with information about the exact order in which instructions in the binary are executed, enabling detection of control flow attacks. We observe that current CFA architectures can not guarantee that Vrf ever receives control flow reports in case of attacks. In turn, while they support exploit detection, they provide no means to pinpoint the exploit origin. Furthermore, existing CFA requires either binary instrumentation, incurring significant runtime overhead and code size increase, or relatively expensive hardware support, such as hash engines. In addition, current techniques are neither continuous (only meant to attest self-contained operations) nor active (offer no secure means to remotely remediate detected compromises). To jointly address these challenges, we propose ACFA: a hybrid (hardware/software) architecture for Active CFA. ACFA enables continuous monitoring of all control flow transfers in the MCU and does not require binary instrumentation. It also leverages the recently proposed concept of Active Roots-of-Trust to enable secure auditing of vulnerability sources and guaranteed remediation when a compromise is detected. We provide an open-source reference implementation of ACFA on top of a commodity low-end MCU (TI MSP430) and evaluate it to demonstrate its security and cost-effectiveness.
Ask about this paper
Your agent reads all of it.
Lune indexed this paper to the last equation, along with the top-tier papers that cite it. Ask a question and the answer quotes them.
Your agent calls
Luneget_paper_fulltext
Free to start. No credit card required.
Terminal
Install the CLIlune papers fulltext 92f5e6ca-93b7-4f9a-a450-f7b014a48ba0Cited by top-tier papers2
- On Bridging the Gap between Control Flow Integrity and Attestation SchemesMahmoud Ammar, Ahmed Abdelraoof, Silviu VlasceanuUSENIX Security 2024 · 9 citations
- SoK: Integrity, Attestation, and Auditing of Program ExecutionMahmoud Ammar, Adam Caulfield, Ivan De Oliveira NunesS&P 2025
Builds on15
- C-FLAT: Control-Flow Attestation for Embedded Systems SoftwareTigist Abera, N. Asokan, Lucas Davi, Jan-Erik Ekberg et al.CCS 2016 · 311 citations
- SoK: Shining Light on Shadow StacksNathan Burow, Xinping Zhang, Mathias PayerS&P 2019 · 170 citations
- VRASED: A Verified Hardware/Software Co-Design for Remote AttestationIvan De Oliveira Nunes, Karim Eldefrawy, Norrathep Rattanavipanon, Michael Steiner et al.USENIX Security 2019 · 135 citations
- OAT: Attesting Operation Integrity of Embedded DevicesZhichuang Sun, Bo Feng, Long Lu, Somesh JhaS&P 2020 · 89 citations
- ACES: Automatic Compartments for Embedded SystemsAbraham A. Clements, Naif Saleh Almakhdhub, Saurabh Bagchi, Mathias PayerUSENIX Security 2018 · 89 citations
Related papers
- DIALED: Data Integrity Attestation for Low-end Embedded DevicesIvan De Oliveira Nunes, Sashidhar Jakkamsetti, Gene TsudikDAC 2021 · 27 citations
- RAP-Track: Efficient Control Flow Attestation via Parallel Tracking in Commodity MCUsAntonio Joia Neto, Adam Caulfield, Ivan De Oliveira NunesDAC 2025 · 1 citation
- GAROTA: Generalized Active Root-Of-Trust Architecture (for Tiny Embedded Devices)Esmerald Aliaj, Ivan De Oliveira Nunes, Gene TsudikUSENIX Security 2022
- On the TOCTOU Problem in Remote AttestationIvan De Oliveira Nunes, Sashidhar Jakkamsetti, Norrathep Rattanavipanon, Gene TsudikCCS 2021 · 2 citations
- ARTO: Efficient Execution Integrity Attestation for Real-Time Operation of Cyber-Physical SystemsRuizhe Zhao, Cong Sun, Zongzhen Li, Tiantian Wang et al.USENIX Security 2026
