A scalable symbolic simulation tool for low power embedded systems
Subhash Sethumurugan, Shashank Hegde, Hari Cherupalli, John Sartori
Abstract
Recent work has demonstrated the effectiveness of using symbolic simulation to perform hardware software co-analysis on an application-processor pair and developed a variety of hardware and software design techniques and optimizations, ranging from providing system security guarantees to automated generation of application-specific bespoke processors. Despite their potential benefits, current state-of-the-art symbolic simulation tools for hardware-software co-analysis are restricted in their applicability, since prior work relies on a costly process of building a custom simulation tool for each processor design to be simulated. Furthermore, prior work does not describe how to extend the symbolic analysis technique to other processor designs.
Ask about this paper
Ask your agent about it.
Lune has read the top-tier papers around this one, so every answer names the papers it rests on.
Related papers
- FireGuard: A Generalized Microarchitecture for Fine-Grained Security Analysis on OoO Superscalar CoresZhe Jiang, Sam Ainsworth, Timothy M. JonesDAC 2025
- A System Framework to Symbolically Explore Intel TDX Module ExecutionPansilu Pitigalaarachchi, Xuhua DingCCS 2025
- Modeling, Derivation, and Automated Analysis of Branch Predictor Security VulnerabilitiesQuancheng Wang, Ming Tang, Ke Xu, Han WangHPCA 2024 · 5 citations
- Hardware-Software Contracts for Secure SpeculationMarco Guarnieri, Boris Köpf, Jan Reineke, Pepe VilaS&P 2021 · 111 citations
- VeriSketch: Synthesizing Secure Hardware Designs with Timing-Sensitive Information Flow PropertiesArmaiti Ardeshiricham, Yoshiki Takashima, Sicun Gao, Ryan KastnerCCS 2019 · 19 citations
