2008•Unpublished venueRequires access

Identifying the root causes of memory bugs using corrupted memory location suppression

Dennis Jeffrey, Neelam Gupta, Rajiv Gupta

Open publisher page 14 citations

Abstract

We present a general approach for automatically isolating the root causes of memory-related bugs in software. Our approach is based on the observation that most memory bugs involve uses of corrupted memory locations. By iteratively suppressing (nullifying) the effects of these corrupted memory locations during program execution, our approach gradually isolates the root cause of a memory bug. Our approach can work for common memory bugs such as buffer overflows, uninitialized reads, and double frees. However, our approach is particularly effective in finding root causes for memory bugs in which memory corruption propagates during execution until an observable failure such as a program crash occurs.

About this research paper

What this paper is about

We present a general approach for automatically isolating the root causes of memory-related bugs in software. Our approach is based on the observation that most memory bugs involve uses of corrupted memory locations. By iteratively suppressing (nullifying) the effects of these corrupted memory locations during program execution, our approach gradually isolates the root cause of a memory bug. Our approach can work for common memory bugs such as buffer overflows, uninitialized reads, and double frees. However, our approach is particularly effective in finding root causes for memory bugs in which memory corruption propagates during execution until an observable failure such as a program crash occurs.

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OpenAlex reports 14 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

We present a general approach for automatically isolating the root causes of memory-related bugs in software. Our approach is based on the observation that most memory bugs involve uses of corrupted memory locations. By iteratively suppressing (nullifying) the effects of these corrupted memory locations during program execution, our approach gradually isolates the root cause of a memory bug. Our approach can work for common memory bugs such as buffer overflows, uninitialized reads, and double frees. However, our approach is particularly effective in finding root causes for memory bugs in which memory corruption propagates during execution until an observable failure such as a program crash occurs.

Key concepts: Computer science, Root cause, Memory leak, Root (linguistics), Software bug, Memory management, Crash, Memory safety

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