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Adaptive Parallel Approaches for GPU-Based Reencryption Applied in Scalable Proxy Servers for Protected Video Distribution

机译:基于GPU的重新加密的自适应并行方法在可伸缩代理服务器中用于受保护的视频分发

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摘要

Proxy servers of video distribution systems must provide efficient memory management and also have to adopt protection mechanisms so that only allowed clients would have access to restricted video content. This article extends previous work in which the usage of a GPU-based reencryption digital rights management module using a parallel version of AES cipher was proposed and evaluated, based on the idea that different adaptive parallel approaches would provide higher throughput depending on the GPU architecture. Three mix-grained approaches are proposed, implemented (CUDA, Pthreads and OpenMP) and evaluated on multicore CPU and GPU systems. An empirical analysis is conducted based on a multicore server with a 448-cores state-of-the-art GPU in contrast to a multicore desktop with a low-cost 128 cores graphical unit. Preliminary results demonstrate that the adaptive parallel approach impacts significantly, up to 33%, throughput provided by the reencryption module.
机译:视频分发系统的代理服务器必须提供有效的内存管理,还必须采用保护机制,以便只有允许的客户端才能访问受限制的视频内容。本文扩展了先前的工作,其中提出并评估了使用基于并行版本的AES密码的基于GPU的重新加密数字版权管理模块的使用,其依据是不同的自适应并行方法将根据GPU架构提供更高的吞吐量。提出,实施了三种混合粒度方法(CUDA,Pthreads和OpenMP),并在多核CPU和GPU系统上进行了评估。基于具有448核最新GPU的多核服务器进行实证分析,与具有低成本128核图形单元的多核台式机形成对比。初步结果表明,自适应并行方法会显着影响重新加密模块提供的吞吐量,最高可达33%。

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