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Titlebook: Domain Specific High-Level Synthesis for Cryptographic Workloads; Ayesha Khalid,Goutam Paul,Anupam Chattopadhyay Book 2019 Springer Nature

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书目名称Domain Specific High-Level Synthesis for Cryptographic Workloads
编辑Ayesha Khalid,Goutam Paul,Anupam Chattopadhyay
视频video
概述Includes case studies that illustrate step-by-step undertaking of cryptographic functions for mapping using the cryptographic kernels toolkit (CRYKET).Enables cryptographers working with any class of
丛书名称Computer Architecture and Design Methodologies
图书封面Titlebook: Domain Specific High-Level Synthesis for Cryptographic Workloads;  Ayesha Khalid,Goutam Paul,Anupam Chattopadhyay Book 2019 Springer Nature
描述.This book offers an in-depth study of the design and challenges addressed by a high-level synthesis tool targeting a specific class of cryptographic kernels, i.e. symmetric key cryptography. With the aid of detailed case studies, it also discusses optimization strategies that cannot be automatically undertaken by CRYKET (Cryptographic kernels toolkit. The dynamic nature of cryptography, where newer cryptographic functions and attacks frequently surface, means that such a tool can help cryptographers expedite the very large scale integration (VLSI) design cycle by rapidly exploring various design alternatives before reaching an optimal design option. Features include flexibility in cryptographic processors to support emerging cryptanalytic schemes; area-efficient multinational designs supporting various cryptographic functions; and design scalability on modern graphics processing units (GPUs). These case studies serve as a guide to cryptographers exploring the design of efficient cryptographic implementations... .
出版日期Book 2019
关键词Symmetric Key Cryptography; Block Ciphers; Stream Ciphers; Hash Function; Cryptographic Primitives; Rapid
版次1
doihttps://doi.org/10.1007/978-981-10-1070-5
isbn_ebook978-981-10-1070-5Series ISSN 2367-3478 Series E-ISSN 2367-3486
issn_series 2367-3478
copyrightSpringer Nature Singapore Pte Ltd 2019
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Upper Urinary Tract Carcinoma In Situnce and lower power budgets from these devices. The mutually conflicting requirements of these increasingly complex systems, coupled with the continuous downscaling of fabrication technology [.], has welcomed the design trend of . [.]. Security is one of the increasingly important application requir
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Architectural Modeling in a Fab Labday’s heterogeneous System-on-Chips (SoCs). Efficient accelerator design, however, needs a deep understanding of the cipher structure as well as hardware optimization principles. In this chapter, we discuss two such custom optimizations, which have been applied to the symmetric-key cryptographic pri
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https://doi.org/10.1007/978-3-319-51804-6es. Successful cryptanalytic attacks can be launched with the help of custom-built high-performance computing platforms, cryptanalytic weaknesses can aid it further. COPACOBANA is one such custom hardware optimized for executing cryptanalytical Algorithms [.]. Other reported works include General Pu
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