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Improving Cryptographic Processing with Intel® Technology

White Paper: Examines options to improve cryptographic processing using Intel® technology, including algorithm performance results. (v.1, Jan. 2011)

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Improve IPSec Performance Using Intel® AES Instructions

White Paper: Demos IPSec performance capabilities in Linux* using Intel® AES New Instructions and Galois Counter Mode* algorithm combination.

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通信基础架构: 更高吞吐量的整合

执行多个工作负载的平台帮助满足通信基础架构不断增长的需求,并实现卓越的吞吐量和性能。

Pattern Matching Performance with HyperScan* Software: Brief

Solution Brief: Discusses pattern matching performance optimization of Sensory Networks HyperScan* software with Intel® Xeon® processors.

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Optimized Galois-Counter-Mode Implementation

White Paper: Optimized Galois-Counter-Mode execution combines stitching with polynomial multiplication, increasing performance on Intel® processors.

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Improve Linux* Secure Storage Performance with Intel® AES-NI

White Paper: Cipher algorithms optimized for Intel® AES-NI can deliver up to 6x performance gain in the Linux* storage subsystem (v.1, Feb. 2013).

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Processing Multiple Buffers in Parallel for Performance

White Paper: How processing multiple independent data buffers in parallel dramatically increases performance without SIMD on Intel® processors.

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联网安全和应用提供先进的数据安全性

支持加密算法、压缩和入侵检测的英特尔® 处理器提供最先进的联网安全解决方案。

Fast Cryptographic Computation Via Function Stitching

White Paper: Describes how stitching pairs of cryptographic computation functions together improves performance over sequential execution. (Apr. 2010)

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