Raccoon Attack: Finding and Exploiting Most-Significant-Bit-Oracles in TLS-DH(E)

R. Merget, M. Brinkmann, N. Aviram, J. Somorovsky, J. Mittmann, J. Schwenk, in: 30th {USENIX} Security Symposium ({USENIX} Security 21), {USENIX} Association, 2021, pp. 213–230.

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Conference Paper | English
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Merget, Robert; Brinkmann, Marcus; Aviram, Nimrod; Somorovsky, JurajLibreCat ; Mittmann, Johannes; Schwenk, Jörg
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30th {USENIX} Security Symposium ({USENIX} Security 21)
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213-230
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Merget R, Brinkmann M, Aviram N, Somorovsky J, Mittmann J, Schwenk J. Raccoon Attack: Finding and Exploiting Most-Significant-Bit-Oracles in TLS-DH(E). In: 30th {USENIX} Security Symposium ({USENIX} Security 21). {USENIX} Association; 2021:213-230.
Merget, R., Brinkmann, M., Aviram, N., Somorovsky, J., Mittmann, J., & Schwenk, J. (2021). Raccoon Attack: Finding and Exploiting Most-Significant-Bit-Oracles in TLS-DH(E). 30th {USENIX} Security Symposium ({USENIX} Security 21), 213–230.
@inproceedings{Merget_Brinkmann_Aviram_Somorovsky_Mittmann_Schwenk_2021, title={Raccoon Attack: Finding and Exploiting Most-Significant-Bit-Oracles in TLS-DH(E)}, booktitle={30th {USENIX} Security Symposium ({USENIX} Security 21)}, publisher={{USENIX} Association}, author={Merget, Robert and Brinkmann, Marcus and Aviram, Nimrod and Somorovsky, Juraj and Mittmann, Johannes and Schwenk, Jörg}, year={2021}, pages={213–230} }
Merget, Robert, Marcus Brinkmann, Nimrod Aviram, Juraj Somorovsky, Johannes Mittmann, and Jörg Schwenk. “Raccoon Attack: Finding and Exploiting Most-Significant-Bit-Oracles in TLS-DH(E).” In 30th {USENIX} Security Symposium ({USENIX} Security 21), 213–30. {USENIX} Association, 2021.
R. Merget, M. Brinkmann, N. Aviram, J. Somorovsky, J. Mittmann, and J. Schwenk, “Raccoon Attack: Finding and Exploiting Most-Significant-Bit-Oracles in TLS-DH(E),” in 30th {USENIX} Security Symposium ({USENIX} Security 21), 2021, pp. 213–230.
Merget, Robert, et al. “Raccoon Attack: Finding and Exploiting Most-Significant-Bit-Oracles in TLS-DH(E).” 30th {USENIX} Security Symposium ({USENIX} Security 21), {USENIX} Association, 2021, pp. 213–30.

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