Incremental global optimization for faster recompilations

L. Pollock, M. Soffa
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引用次数: 3

Abstract

Although modular programming with separate compilation aids in eliminating unnecessary recompilation and reoptimization, recent studies have discovered that more efficient code can be generated by collapsing a modular program through procedure inlining. To avoid having to reoptimize the resultant large procedures, techniques for incrementally incorporating changes into globally optimized code are presented. The algorithm determines which optimizations are no longer safe after a program change, and also discovers which new optimizations can be performed in order to maintain a high level of optimization. An intermediate representation is incrementally updated to reflect the current optimizations in the program. The techniques developed in this paper have been exploited to improve on the current techniques for symbolic debugging of optimized code.<>
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增量全局优化以实现更快的重新编译
尽管使用单独编译的模块化编程有助于消除不必要的重新编译和重新优化,但最近的研究发现,通过过程内联折叠模块化程序可以生成更高效的代码。为了避免不得不重新优化生成的大型过程,提出了将更改增量地合并到全局优化代码中的技术。该算法确定在程序更改后哪些优化不再安全,并且还发现可以执行哪些新的优化以保持高水平的优化。一个中间表示被增量更新以反映程序中的当前优化。本文开发的技术已被用于改进现有的优化代码的符号调试技术。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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