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Computation-intensive image processing algorithm parallelization on multiple hardware architectures

机译:多种硬件架构上的计算密集型图像处理算法并行化

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Image processing hardware found in workstations and server-like computers varies from single processor units to SMP or SMP/SMT configurations and sometimes DMP or massively parallel environments. Image processing can often benefit from introducing parallelism, thus improving owner's return on investment. However, the cost of sharing data between execution resources-and gathering results-can be prohibitively high when speed of simple convolution or arithmetic operation is taken into account. Often a single processor is much faster than available memory, bandwidth, making workload decomposition pointless. Non-logarithmic block matching is an algorithm that can be challenging even for the fastest processors, while being useful in high quality compression and picture enhancement or image recognition algorithms. Thanks to high granularity of operations and very few shared resources, careful implementation of the block matching algorithm is ideal for parallel execution.
机译:在工作站和类似服务器的计算机中发现的图像处理硬件,从单个处理器单元到SMP或SMP / SMT配置,有时甚至是DMP或大规模并行环境,都有所不同。图像处理通常可以从引入并行性中受益,从而提高所有者的投资回报率。但是,当考虑到简单卷积或算术运算的速度时,在执行资源之间共享数据以及收集结果的成本可能会过高。通常,单个处理器比可用内存和带宽快得多,这使得工作负载分解毫无意义。非对数块匹配是一种算法,即使对于最快的处理器也可能具有挑战性,同时在高质量压缩和图片增强或图像识别算法中很有用。由于操作的粒度很高,共享资源很少,因此仔细执行块匹配算法非常适合并行执行。

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