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Memory management for dataflow programming of multirate signal processing algorithms

机译:用于多速率信号处理算法的数据流编程的内存管理

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Managing the buffering of data along arcs is a critical part of compiling a synchronous dataflow (SDF) program. This paper shows how dataflow properties can be analyzed at compile-time to make buffering more efficient. Since the target code corresponding to each node of an SDF graph is normally obtained from a hand-optimized library of predefined blocks, the efficiency of data transfer between blocks is often the limiting factor in how closely an SDF compiler can approximate meticulous manual coding. Furthermore, in the presence of large sample-rate changes, straightforward buffering techniques ran quickly exhaust limited on-chip data memory, necessitating the use of slower external memory. The techniques presented in this paper address both of these problems in a unified manner.
机译:管理沿弧的数据缓冲是编译同步数据流(SDF)程序的关键部分。本文说明如何在编译时分析数据流属性,以使缓冲效率更高。由于通常从手动优化的预定义块库中获得与SDF图的每个节点相对应的目标代码,因此,块之间的数据传输效率通常是SDF编译器可以近似地进行精细手动编码的限制因素。此外,在存在大的采样率变化的情况下,直接的缓冲技术会迅速耗尽有限的片上数据存储器,从而需要使用速度较慢的外部存储器。本文介绍的技术以统一的方式解决了这两个问题。

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