形状分析驱动的内存图形可视化

Jan H. Boockmann, Gerald Lüttgen
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引用次数: 1

摘要

在调试现代软件系统时,分析包含复杂动态数据结构的堆转储是必不可少的。然而,用于可视化内存图的现有工具既不能处理显示循环的二叉树等损坏的结构,也不能在面对大堆时提供足够的抽象。MGE (Memory Graph Explorer)是一种内存分析和可视化工具,它结合了一种新颖的内存图抽象和交互式可视化。MGE借用分离逻辑和形状分析的思想来揭示存储节点之间的关系,命名可识别的结构,如双链表和二叉树,并总结复杂的结构。此摘要也适用于损坏的数据结构,并且由于支持交互式(非)折叠,因此对于大型嵌套结构尤其强大。MGE用于帮助程序理解的实用程序通过现实世界和教科书中的例子进行了说明,并与现有的调试器进行了对比。
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Shape-Analysis Driven Memory Graph Visualization
Analyzing heap dumps containing complex dynamic data structures is essential when debugging modern software systems. However, existing tools for visualizing memory graphs can neither deal with corrupt structures such as binary trees exhibiting cycles, nor do they offer adequate abstractions when being confronted with large heaps. This paper presents MGE (Memory Graph Explorer), a memory analyzer and visualizer that combines a novel memory graph abstraction with an interactive visualization. MGE borrows ideas from separation logic and shape analysis to reveal relationships between memory nodes, name recognized structures such as doubly-linked lists and binary trees, and summarize complex structures. This summarization works for corrupt data structures, too, and is particularly powerful for large, nested structures due to its support for interactive (un)folding. MGE's utility for aiding program comprehension is illustrated by real-world and textbook examples and contrasted with existing debuggers.
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