可重入应用程序的组合安全性

Ethan Cecchetti, Siqiu Yao, Haobin Ni, A. Myers
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引用次数: 22

摘要

智能合约中的灾难性漏洞尖锐地提醒我们自己的无知:我们不知道如何编写与恶意代码组合在一起的安全代码。信息流控制一直被认为是实现组合安全性的一种方法,即使在组合来自不同信任域的软件时也能提供强有力的保证。不幸的是,这个吸引人的故事在可重入攻击的存在下崩溃了。我们形式化了可重入的一般定义,并引入了一种安全条件,允许像智能合约这样的软件模块保护其关键不变量,同时保留安全形式的可重入的表达能力。我们提出了一个安全类型的系统,可证明地加强安全的信息流;与运行时机制相结合,即使在存在未知代码的情况下,它也可以强制执行安全的重入;它还有助于定位和纠正最近引人注目的漏洞。
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Compositional Security for Reentrant Applications
The disastrous vulnerabilities in smart contracts sharply remind us of our ignorance: we do not know how to write code that is secure in composition with malicious code. Information flow control has long been proposed as a way to achieve compositional security, offering strong guarantees even when combining software from different trust domains. Unfortunately, this appealing story breaks down in the presence of reentrancy attacks. We formalize a general definition of reentrancy and introduce a security condition that allows software modules like smart contracts to protect their key invariants while retaining the expressive power of safe forms of reentrancy. We present a security type system that provably enforces secure information flow; in conjunction with run-time mechanisms, it enforces secure reentrancy even in the presence of unknown code; and it helps locate and correct recent high-profile vulnerabilities.
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