Published: September 25, 2024
Author(s)
Rasheed Almawzan (University of Florida), Sudipta Paria (University of Florida), Aritra Dasgupta (University of Florida), Kostas Amberiadis (NIST), Swarup Bhunia (University of Florida)
Conference
Name: 2024 IEEE Computer Society Annual Symposium on VLSI (ISVLSI)
Dates: 07/01/2024 - 07/03/2024
Location: Knoxville, TN, USA
Citation: 2024 IEEE Computer Society Annual Symposium on VLSI (ISVLSI), pp. 397-402
With the globalization of hardware man-ufacturing and the growing demand for electronics, companies now heavily rely on offshore facilities for most of the design and manufacturing processes, in-cluding emerging technologies like Structured ASICs (Application Specific Integrated Circuits). This trend has prompted hardware designers to consider adopting a zero-trust model, acknowledging the possibility of malicious access to sensitive information at any stage of the design flow. Existing security solutions do not address these vulnerabilities for structured ASIC and are only designed to protect against limited attack surfaces. In this paper, we analyze the IP security issues in structured ASIC and discuss solutions to address them. We point to a layered approach for IP protection, where the unused resources in configurable logic blocks are utilized to minimize overhead costs.
With the globalization of hardware man-ufacturing and the growing demand for electronics, companies now heavily rely on offshore facilities for most of the design and manufacturing processes, in-cluding emerging technologies like Structured ASICs (Application Specific Integrated Circuits). This...
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With the globalization of hardware man-ufacturing and the growing demand for electronics, companies now heavily rely on offshore facilities for most of the design and manufacturing processes, in-cluding emerging technologies like Structured ASICs (Application Specific Integrated Circuits). This trend has prompted hardware designers to consider adopting a zero-trust model, acknowledging the possibility of malicious access to sensitive information at any stage of the design flow. Existing security solutions do not address these vulnerabilities for structured ASIC and are only designed to protect against limited attack surfaces. In this paper, we analyze the IP security issues in structured ASIC and discuss solutions to address them. We point to a layered approach for IP protection, where the unused resources in configurable logic blocks are utilized to minimize overhead costs.
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Keywords
Hardware IP protection; programmable logic; ASIC; FPGA; structured ASIC; via programmability; reverse engineering; hardware trojans; dark silicon
Control Families
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