Cycuity Radix-M
Overview
Extend security across the development lifecycle
Radix-M extends the security verification performed with Radix-S to SoC system-level hardware security verification by leveraging commercial emulators for firmware and hardware security validation. By running firmware and software on the SoC, Radix-M simultaneously analyzes the entire system, which greatly increases the detection and prevention of security vulnerabilities that may be lurking in the system’s Root of Trust or processing system.
Uncover Critical Vulnerabilities Before Production
The same Radix security rules created for Radix- S can be run on Radix-M, enabling hardware security verification that scales from block level testing through hardware/software integration testing. Radix-M integrates seamlessly into your existing verification workflows, and is compatible with emulation solutions from Cadence, Siemens and Synopsys.
Advantages
The Radix-M Advantage
Find firmware-triggered security weaknesses
Analyze the full system while firmware and software run on the SoC to expose Root of Trust or processing-system risks before production.
Make full-SoC validation practical
Use commercial emulation to support firmware and hardware security validation for complex SoCs.
Reuse rules from simulation to emulation
Carry Radix security rules from Radix-S into system-level emulation and hardware/software integration testing.
Workflow
Radix-M workflow
The inputs to Radix-M include the IP or SoC’s RTL files, a set of security rules, along with the block or system level test bench files that verification teams are already developing. Radix-M then creates and adds a hardware Security Monitor to the design. The Security Monitor is used to check the validity of the security rules while running in a commercially available emulator.
Use Cases
Radix-M use cases
As the complexity of chip design grows, so do threats that can undermine customer trust—and your bottom line. See how Cycuity can give your business end-to-end hardware security throughout the product life cycle.
Firmware security verification
Ensure firmware and low-level software are secure.
Secure hardware-software interactions
Analyzes and ensures secure configuration and interactions across the hardware and software stack.
Secure system-level boot sequence verification
Verifies secure boot process and secure switch to normal operation.
Third-party and vendor IP security
Verifies IP is secure across the design supply chain.
SoC access control verification
Prevents unauthorized access.
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