Title :
Abstracting runtime heaps for program understanding
Author :
Marron, M. ; Sanchez, Cesar ; Zhendong Su ; Fahndrich, M.
Author_Institution :
Fac. Inf., Imdea Software Inst., Madrid, Spain
Abstract :
Modern programming environments provide extensive support for inspecting, analyzing, and testing programs based on the algorithmic structure of a program. Unfortunately, support for inspecting and understanding runtime data structures during execution is typically much more limited. This paper provides a general purpose technique for abstracting and summarizing entire runtime heaps. We describe the abstract heap model and the associated algorithms for transforming a concrete heap dump into the corresponding abstract model as well as algorithms for merging, comparing, and computing changes between abstract models. The abstract model is designed to emphasize high-level concepts about heap-based data structures, such as shape and size, as well as relationships between heap structures, such as sharing and connectivity. We demonstrate the utility and computational tractability of the abstract heap model by building a memory profiler. We use this tool to identify, pinpoint, and correct sources of memory bloat for programs from DaCapo.
Keywords :
data structures; merging; program diagnostics; program testing; DaCapo; abstract heap model computational tractability; abstract heap model utility; concrete heap dump; heap structure connectivity; heap structure sharing; high-level concepts; memory bloat; memory profiler; program algorithmic structure; program analysis; program comparison; program computing; program inspection; program merging; program testing; runtime data structure relationships; runtime heap abstracting; runtime heap summarization; Abstracts; Arrays; Computational modeling; Concrete; Runtime; Shape; Heap structure; memory profiling; program understanding; runtime analysis;
Journal_Title :
Software Engineering, IEEE Transactions on
DOI :
10.1109/TSE.2012.69