基于ISO/IEC标准DTR 18037的Atmel AVR微控制器定点库

W. Elmenreich, Maximilian Rosenblattl, Andreas Wolf
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引用次数: 5

摘要

ISO/IEC标准DTR 18037定义了c语言嵌入式硬件编程的定点操作的语法和语义。然而,目前只有少数编译器支持该标准。因此,我们根据标准实现了一个可以用标准C编译器编译的独立库。该库是开源的,用纯C编写,因此只要有C编译器,就可以在各种目标体系结构中使用。本文简要介绍了ISO/IEC标准和库的实现,然后对Atmel AVR架构上的定点操作的代码大小和性能进行了评估。与标准浮点库(针对目标体系结构进行了机器代码优化)的比较表明,简单的定点函数(如加法、减法和乘法)效率更高,而更复杂的函数只能在最坏的情况下竞争。对于只使用一小部分功能的典型应用程序,定点方法提供了更小的内存占用。这对于只有几kb程序内存的嵌入式微控制器的大市场尤其感兴趣。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Fixed Point Library Based on ISO/IEC Standard DTR 18037 for Atmel AVR Microcontrollers
The ISO/IEC Standard DTR 18037 defines the syntax and semantics for fixed point operations for programming embedded hardware in C. However, there are currently only few compilers available that support this standard. Therefore, we have implemented a stand-alone library according to the standard that can be compiled with standard C compilers. The library is available as open source and written in plain C, thus can be used in various target architectures as long as a C compiler is available. This paper presents a brief description of the ISO/IEC standard and the library implementation followed by an evaluation of code size and performance of the fixed point operations on the Atmel AVR architecture. A comparison with the standard floating point library (which is machine code-optimized to the target architecture) shows that simple fixed point functions such as addition, subtraction and multiplication are more efficient, while more complicate functions can only compete in the worst case behavior. The fixed point approach provides a smaller memory foot print, for typical applications where only a small subset of functions is used. This is especially of interest for the big market of embedded microcontrollers with only a few Kbytes of program memory.
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