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Customized Nios II multi-cycle instructions to accelerate block-matching techniques

机译:定制的Nios II多周期指令以加速块匹配技术

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摘要

This study focuses on accelerating the optimization of motion estimation algorithms, which are widely used in video coding standards, by using both the paradigm based on Altera Custom Instructions as well as the efficient combination of SDRAM and On-Chip memory of Nios II processor. Firstly, a complete code profiling is carried out before the optimization in order to detect time leaking affecting the motion compensation algorithms. Then, a multi-cycle Custom Instruction which will be added to the specific embedded design is implemented. The approach deployed is based on optimizing SOC performance by using an efficient combination of On-Chip memory and SDRAM with regards to the reset vector, exception vector, stack, heap, read/write data (.rwdata), read only data (.rodata), and program text (.text) in the design. Furthermore, this approach aims to enhance the said algorithms by incorporating Custom Instructions in the Nios II ISA. Finally, the efficient combination of both methods is then developed to build the final embedded system. The present contribution thus facilitates motion coding for low-cost Soft-Core microprocessors, particularly the RISC architecture of Nios II implemented in FPGA. It enables us to construct an SOC which processes 50×50 @ 180 fps.
机译:这项研究的重点是通过使用基于Altera自定义指令的范例以及SDRAM和Nios II处理器的片内存储器的有效组合,来加速在视频编码标准中广泛使用的运动估计算法的优化。首先,在优化之前执行完整的代码分析,以检测影响运动补偿算法的时间泄漏。然后,实现了将添加到特定嵌入式设计中的多周期自定义指令。所部署的方法基于对复位向量,异常向量,堆栈,堆,读/写数据(.rwdata),只读数据(.rodata)使用片上内存和SDRAM的有效组合来优化SOC性能。 ),并在设计中编写程序文本(.text)。此外,该方法旨在通过在Nios II ISA中合并自定义指令来增强所述算法。最后,然后开发两种方法的有效组合以构建最终的嵌入式系统。因此,本发明有助于低成本的软核微处理器的运动编码,特别是在FPGA中实现的Nios II的RISC架构。它使我们能够构建处理50×50 @ 180 fps的SOC。

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