An efficient and generic reversible debugger using the virtual machine based approach

Toshihiko Koju, Shingo Takada, Norihisa Doi · 2005

The reverse execution of programs is a function where pro-grams are executed backward in time. A reversible debugger is a debugger that provides such a functionality. In this pa-per, we propose a novel reversible debugger that enables reverse execution of programs written in the C language. Our approach takes the virtual machine based approach. In this approach, the target program is executed on a special virtual machine. Our contribution in this paper is two-fold. First, we propose an approach that can address problems of (1) compatibility and (2) efficiency that exist in previous works. By compatibility, we mean that previous debuggers are not generic, i.e., they support only a special language or special intermediate code. Second, our approach provides two execution modes: the native mode, where the debuggee is directly executed on a real CPU, and the virtual ma-chine mode, where the debuggee is executed on a virtual machine. Currently, our debugger provides four types of trade-off settings (designated by unit and optimization) to consider trade-offs between granularity, accuracy, overhead and memory requirement. The user can choose the appro-priate setting flexibly during debugging without finishing and restarting the debuggee.

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