Defending Data from SRAM-Based Attacks.

The accompanying paper "SRAM has no chill: exploiting power domain separation to steal on-chip secrets," by Mahmod and Hicks, reveals a new class of physical memory attacks that challenge long-held assumptions about system-on-chip (SoC) security. While traditional cold boot attacks targeted DRAM's a...

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Bibliographic Details
Published in:Communications of the ACM Vol. 68; no. 8; pp. 81 - 82
Main Author: Saroiu, Stefan
Format: Article
Published: Association for Computing Machinery Aug2025
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Online Access:View this record in EBSCOhost
Description
Summary:The accompanying paper "SRAM has no chill: exploiting power domain separation to steal on-chip secrets," by Mahmod and Hicks, reveals a new class of physical memory attacks that challenge long-held assumptions about system-on-chip (SoC) security. While traditional cold boot attacks targeted DRAM's ability to retain data briefly after power loss, this work shows that SRAM can also preserve data—if its power domain is intentionally kept on during a system reboot. By attaching a voltage probe and rebooting the SoC while keeping SRAM powered, attackers can retrieve sensitive data previously thought to be safe. This finding could reshape how hardware and software systems defend against physical memory attacks, prompting new research in both areas.