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Formal Modeling of Clock Glitch Attacks for Security Verification of Processors H/F

CEA
Frankreich  Grenoble, Frankreich
Sicherheit, Englisch
2
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Beschreibung:

Position description

Category

Mathematics, information, scientific, software

Contract

Fixed-term contract

Job title

Formal Modeling of Clock Glitch Attacks for Security Verification of Processors H/F

Socio-professional category

Executive

Contract duration (months)

12

Job description

Research context
Embedded processors are increasingly deployed in security-critical applications, making their protection against physical attacks a major challenge. Among these threats, clock glitch attacks remain a powerful and accessible fault injection technique, especially relevant for IoT and embedded systems due to their low-cost implementation.
Recent research at Inria Rennes led to the development of TRAITOR [1-2], an experimental platform capable of generating synchronous clock perturbations and characterizing their impact on processor microarchitectures. These experiments suggest that clock glitches induce sampling faults on sensitive sequential elements, but the corresponding fault models remain to be formally validated.
In parallel, CEA-List has developed µArchiFI [3-4], a formal framework enabling pre-silicon analysis of fault injection effects at RTL level, from hardware implementation details up to software execution. While µArchiFI currently supports fault models representative of laser-based attacks, formal modeling of clock glitch effects remains an open challenge.
Research objective and activities
The goal of this postdoctoral project is to develop the first formal methodology for analyzing processor robustness against clock glitch attacks by combining experimental characterization of clock glitches using the TRAITOR platform, and formal verification of their impact using the µArchiFI framework. The project will establish a bridge between physical fault injection experiments and formal security verification, enabling rigorous evaluation of hardware/software countermeasures.

The postdoctoral researcher will contribute to the following tasks:
* Formal modeling of clock glitch effects. Develop a discrete fault model suitable for formal verification, based on the Energy Threshold Fault Model (ETFM) and experimental observations. The objective is to represent the effects of clock-induced sampling faults while maintaining the scalability of formal analysis.
* Experimental validation of fault models. Conduct clock glitch injection campaigns using TRAITOR and compare experimental results with µArchiFI predictions. This iterative approach will refine and validate the formal models.
* Security analysis of protected processors. Apply the developed methodology to secure embedded processors such as RISC-V CV32E40S and OpenTitan Secure Ibex. The analysis will identify potential vulnerabilities and evaluate the effectiveness of hardware/software countermeasures against clock glitch attacks.
Research environment
The researcher will join a joint effort between CEA-List (Grenoble, Saclay) and Inria Rennes (PACAP team), combining expertise in: hardware security, fault injection attacks, processor microarchitecture analysis, formal verification, embedded systems, numerical systems designs. The project builds on complementary developments from both teams: TRAITOR for experimental fault injection and µArchiFI for formal securi

Applicant Profile

Applicants should hold a PhD in computer science, electrical engineering, embedded systems, or a related field.
Strong candidates will have experience in one or more of the following areas:
hardware security and fault injection attacks,
formal methods and verification,
RTL design and digital circuits,
processor architectures (RISC-V experience is a plus),
embedded software.
The position offers an opportunity to work at the intersection of hardware security, formal methods, and secure processor design, combining theoretical research with experimental validation.
Location: CEA-List (Grenoble or Paris-Saclay)
Duration: 12 months with possible extensions

Keywords: Hardware security · Clock glitch attacks · Fault injection · Formal verification · RISC-V · Secure processors · Embedded systems · RTL analysis

Position location

Site

Grenoble

Job location

France, Auvergne-Rhône-Alpes

Location

Grenoble

Candidate criteria

Recommended training

Master's or doctorate degree

Requester

Position start date

01/10/2026

Quelle: Website des Unternehmens
Datum: 12 Aug 2026
Stellenangebote: Job
Bereich: Regierung / NGO
Dauer: 12 Monate
Sprachkenntnisse: Englisch
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