Abstract
The continuous growth in both capability and capacity for FPGA now requires significant resources invested in the hardware design, which results in two classes of main security issues: 1) the unauthorized use and piracy attacks including cloning, reverse engineering, tampering etc. 2) the licensing issue. Binding hardware IPs (HW-IPs) to specific FPGA devices can efficiently resolve these problems. However, previous binding techniques are all based on encryption and hence have three main drawbacks: 1) encryption-based proposals in commercial are limited to protect the single large FPGA configuration, 2) many encryption-based proposals depend on a trusted third party to involve the licensing protocol, and 3) the encryption-based binding methods use costly mechanisms such as secure ROM or flash memory to store FPGA specific cryptographic keys, which is not only expensive but also vulnerable to side-channel attacks, and the management and transport of secret keys became a practical issue. In this work, we propose a PUF-FSM binding technique completely different from the traditional encryption-based methods to address these shortcomings. © 2013 IEEE.
| Original language | English |
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| Title of host publication | Proceedings - 21st Annual International IEEE Symposium on Field-Programmable Custom Computing Machines, FCCM 2013 |
| DOIs | |
| Publication status | Published - 2013 |
| Event | 21st Annual International IEEE Symposium on Field-Programmable Custom Computing Machines, FCCM 2013 - Seattle, WA, United States Duration: 28 Apr 2013 → 30 Apr 2013 |
Conference
| Conference | 21st Annual International IEEE Symposium on Field-Programmable Custom Computing Machines, FCCM 2013 |
|---|---|
| Place | United States |
| City | Seattle, WA |
| Period | 28/04/13 → 30/04/13 |
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