2012•Unpublished venueRequires access

Binary stirring

Richard Wartell, Vishwath Mohan, Kevin W. Hamlen, Zhiqiang Lin

Open publisher page 326 citations

Abstract

Unlike library code, whose instruction addresses can be randomized by address space layout randomization (ASLR), application binary code often has static instruction addresses. Attackers can exploit this limitation to craft robust shell codes for such applications, as demonstrated by a recent attack that reuses instruction gadgets from the static binary code of victim applications.

About this research paper

What this paper is about

Unlike library code, whose instruction addresses can be randomized by address space layout randomization (ASLR), application binary code often has static instruction addresses. Attackers can exploit this limitation to craft robust shell codes for such applications, as demonstrated by a recent attack that reuses instruction gadgets from the static binary code of victim applications.

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OpenAlex reports 326 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

Unlike library code, whose instruction addresses can be randomized by address space layout randomization (ASLR), application binary code often has static instruction addresses. Attackers can exploit this limitation to craft robust shell codes for such applications, as demonstrated by a recent attack that reuses instruction gadgets from the static binary code of victim applications.

Key concepts: Computer science, Exploit, Code (set theory), Binary number, Static analysis, Programming language, Address space, Parallel computing

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