Eraser
Stefan Savage, Michael T. Burrows, Greg Nelson, Patrick Sobalvarro, Thomas E. Anderson
Abstract
Open-access reader
Stefan Savage, Michael T. Burrows, Greg Nelson, Patrick Sobalvarro, Thomas E. Anderson
Abstract
Open-access reader
Multithreaded programming is difficult and error prone. It is easy to make a mistake in synchronization that produces a data race, yet it can be extremely hard to locate this mistake during debugging. This article describes a new tool, called Eraser, for dynamically detecting data races in lock-based multithreaded programs. Eraser uses binary rewriting techniques to monitor every shared-monory reference and verify that consistent locking behavior is observed. We present several case studies, including undergraduate coursework and a multithreaded Web search engine, that demonstrate the effectiveness of this approach.
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Multithreaded programming is difficult and error prone. It is easy to make a mistake in synchronization that produces a data race, yet it can be extremely hard to locate this mistake during debugging. This article describes a new tool, called Eraser, for dynamically detecting data races in lock-based multithreaded programs. Eraser uses binary rewriting techniques to monitor every shared-monory reference and verify that consistent locking behavior is observed. We present several case studies, including undergraduate coursework and a multithreaded Web search engine, that demonstrate the effectiveness of this approach.
Key concepts: Computer science, Mistake, Debugging, Synchronization (alternating current), Multithreading, Thread (computing), Programming language, Channel (broadcasting)