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Titlebook: Constructive Side-Channel Analysis and Secure Design; 9th International Wo Junfeng Fan,Benedikt Gierlichs Conference proceedings 2018 Sprin

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书目名称Constructive Side-Channel Analysis and Secure Design
副标题9th International Wo
编辑Junfeng Fan,Benedikt Gierlichs
视频video
丛书名称Lecture Notes in Computer Science
图书封面Titlebook: Constructive Side-Channel Analysis and Secure Design; 9th International Wo Junfeng Fan,Benedikt Gierlichs Conference proceedings 2018 Sprin
描述This book constitutes revised selected papers from the 9th International Workshop on Constructive Side-Channel Analysis and Secure Design, COSADE 2018, held in Singapore, in April 2018..The 14 papers presented in this volume were carefully reviewed and selected from 31 submissions. They were organized in topical sections named: countermeasures against side-channel attacks; tools for side-channel analysis; fault attacks and hardware trojans; and side-channel analysis attacks..
出版日期Conference proceedings 2018
关键词Tamper-proof and tamper-resistant designs; Embedded systems security; Hardware security implementation
版次1
doihttps://doi.org/10.1007/978-3-319-89641-0
isbn_softcover978-3-319-89640-3
isbn_ebook978-3-319-89641-0Series ISSN 0302-9743 Series E-ISSN 1611-3349
issn_series 0302-9743
copyrightSpringer International Publishing AG, part of Springer Nature 2018
The information of publication is updating

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Federico Cirett Galán,Carole R. Bealefforts. Furthermore, we show that at least a 32-bit chunk of the SPHINCS secret key can be recovered using a differential power analysis attack due to its stateless construction. We present novel differential power analyses on a SHA-2-based pseudorandom number generator for XMSS and a BLAKE-256-bas
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Vectorizing Higher-Order Maskingtion algorithms that are proven to be secure in the bounded moment leakage model and to be strongly non-interfering. Additionally, we perform a concrete side-channel evaluation on a BeagleBone Black, using a combination of test vector leakage assessment (TVLA), leakage certification tools and inform
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Lattice-Based Fault Attacks Against ECMQVces. The validity of the attacks is proven by experimental simulations, which show our attacks pose real threats to the unprotected ECMQV implementations since only one permanent fault is sufficient to retrieve half bits of the secret key.
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