BIAS: Bluetooth Impersonation AttackS
Daniele Antonioli, Nils Ole Tippenhauer, Kasper Rasmussen
摘要
Bluetooth (BR/EDR) is a pervasive technology for wireless communication used by billions of devices. The Bluetooth standard includes a legacy authentication procedure and a secure authentication procedure, allowing devices to authenticate to each other using a long term key. Those procedures are used during pairing and secure connection establishment to prevent impersonation attacks. In this paper, we show that the Bluetooth specification contains vulnerabilities enabling to perform impersonation attacks during secure connection establishment. Such vulnerabilities include the lack of mandatory mutual authentication, overly permissive role switching, and an authentication procedure downgrade. We describe each vulnerability in detail, and we exploit them to design, implement, and evaluate master and slave impersonation attacks on both the legacy authentication procedure and the secure authentication procedure. We refer to our attacks as Bluetooth Impersonation AttackS (BIAS).Our attacks are standard compliant, and are therefore effective against any standard compliant Bluetooth device regardless the Bluetooth version, the security mode (e.g., Secure Connections), the device manufacturer, and the implementation details. Our attacks are stealthy because the Bluetooth standard does not require to notify end users about the outcome of an authentication procedure, or the lack of mutual authentication. To confirm that the BIAS attacks are practical, we successfully conduct them against 31 Bluetooth devices (28 unique Bluetooth chips) from major hardware and software vendors, implementing all the major Bluetooth versions, including Apple, Qualcomm, Intel, Cypress, Broadcom, Samsung, and CSR.
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引用它的顶会 Paper25
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- Every Byte Matters: Traffic Analysis of Bluetooth Wearable DevicesLudovic Barman, Alexandre Dumur, Apostolos Pyrgelis, Jean-Pierre HubauxUbiComp 2021 · 被引用 15 次
- Protego: securing wireless communication via programmable metasurfaceXinyi Li, Chao Feng, Fengyi Song, Chenghan Jiang 等MobiCom 2022 · 被引用 15 次
它引用的顶会 Paper2
- The KNOB is Broken: Exploiting Low Entropy in the Encryption Key Negotiation Of Bluetooth BR/EDRDaniele Antonioli, Nils Ole Tippenhauer, Kasper Bonne RasmussenUSENIX Security 2019 · 被引用 89 次
- Nearby Threats: Reversing, Analyzing, and Attacking Google's 'Nearby Connections' on AndroidDaniele Antonioli, Nils Ole Tippenhauer, Kasper Bonne RasmussenNDSS 2019 · 被引用 28 次
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