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NIST, “Cryptographic Hash Algorithm Competition,”
http://csrc.nist.gov/groups/ST/hash/sha-3/index.html
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[2]
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S. Gueron and V. Krasnov, “Parallelizing Message Schedules to Accelerate the Computations of Hash Functions,” 2012. http://eprint.iacr.org/2012/067.pdf
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S. Gueron and V. Krasnov, “[PATCH] Efficient Implementations of SHA256 and SHA512, Using the Simultaneous Message Scheduling method,” 2012.
http://rt.openssl.org/Ticket/Display.html?id=2784&user=guest&pass=guest
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[4]
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The Chromium Project, “Verified Boot,”
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C. Y. Liu, Y. P. Lu, C. H. Shi, G. L. Lu, D. H. C. Du and D.-S. Wang, “ADMAD: Application-Driven Metadata Aware De-duplication Archival Storage System,” Fifth IEEE International Workshop on Storage Network Architecture and Parallel I/Os, 22 September 2008, pp. 29-35.
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O. Aciicmez, “Fast Hashing on Pentium SIMD Architecture,” M.S. Thesis, School of Electrical Engineering and Computer Science, Oregon State University, 2004.
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D. Gaudet, “SHA1 Using SIMD Techniques,”
http://arctic.org/~dean/crypto/sha1.html
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[8]
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M. Locktyukhin, “Improving the Performance of the Secure Hash Algorithm (SHA-1),” 2010.
http://software.intel.com/en-us/articles/improving-the-performance-of-the-secure-hash-algorithm-1/
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[9]
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“Federal Information Processing Standards Publication 180-2: Secure Hash Standard,”
http://csrc.nist.gov/publications/fips/fips180-2/fips180-2.pdf
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[10]
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Intel, “Intel Advanced Vector Extensions Programming Reference,” http://software.intel.com/file/36945
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[11]
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Intel (M. Buxton), “Haswell New Instruction Descriptions Now Available,” 2011.
http://software.intel.com/en-us/blogs/2011/06/13/haswell-new-instruction-descriptions-now-available/
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[12]
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Linux Manual, “Hdparm,”
http://linux.die.net/man/8/hdparm
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[13]
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Intel, “2nd Generation Intel? CoreTM Processor Family Desktop Datasheet,”
http://www.intel.com/content/www/us/en/processors/core/2nd-gen-core-desktop-vol-1-datasheet.html
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[14]
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OpenSSL, “The Open Source Toolkit for SSL/TLS,” http://openssl.org/
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[15]
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LinuxMM, “Drop Caches,”
http://linux-mm.org/Drop_Caches
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