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Access-Pattern-Aware On-Chip Memory Allocation for SIMD Processors

机译:SIMD处理器的访问模式感知片上内存分配

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The number of cycles for each external memory access in Single Instruction Multiple Data (SIMD) processors is heavily affected by the access pattern, such as aligned, unaligned, or stride. We developed a high-performance dynamic on-chip memory-allocation method for SIMD processors by considering the memory access pattern as well as the access frequency. The access pattern and the access count for an array of a loop are determined by both code analysis and profiling, which are performed on a developed compiler framework. This framework not only conducts dynamic on-chip memory allocation but also generates optimized codes for a target processor. The proposed allocation method has been tested with several multimedia benchmarks including motion estimation, 2-D discrete cosine transform, and MPEG2 encoder programs.
机译:单指令多数据(SIMD)处理器中每个外部存储器访问的周期数受访问模式(例如对齐,不对齐或跨步)的影响很大。考虑到存储器访问模式以及访问频率,我们为SIMD处理器开发了一种高性能的动态片上存储器分配方法。循环数组的访问模式和访问计数由代码分析和性能分析确定,这些分析和性能分析是在开发的编译器框架上执行的。该框架不仅可以进行动态片上存储器分配,还可以为目标处理器生成优化的代码。所提出的分配方法已通过几种多媒体基准测试,包括运动估计,2-D离散余弦变换和MPEG2编码器程序。

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