Suvradip Chakraborty

dblp:161/6294 · DBLP profile ↗
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22ranked-venue papers
17as first author
16since 2021 · last 2026
0000-0002-5352-4946ORCID · corroborated

Domains — the database's venue-derived domains; a paper can count in several

Security and privacy · 21 · 17 first-author · 15 since 2021Theory of computation · 3 · 1 first-author · 3 since 2021
YearPublicationVenuePosition
2026 Non-trivial Zero-Knowledge Implies One-Way Functions
Suvradip Chakraborty, James Hulett, Dakshita Khurana, Kabir Tomer
CRYPTO (1)1
2025 On Weak NIZKs, One-Way Functions and Amplification
Suvradip Chakraborty, James Hulett, Dakshita Khurana
CRYPTO (7)1
2025 TERRA: Trojan-Resilient Reverse-Firewall for Cryptographic Applications
Chandan Kumar Chaudhary, Nimish Mishra, Suvradip Chakraborty, Satrajit Ghosh, Debdeep Mukhopadhyay
ESORICS (2)3
2025 Malleable SNARKs and Their Applications
Suvradip Chakraborty, Dennis Hofheinz, Roman Langrehr, Jesper Buus Nielsen, Christoph Striecks, Daniele Venturi 0001
EUROCRYPT (4)1
2025 Non-interactive Key Exchange: New Notions, New Constructions, and Forward Security
Suvradip Chakraborty, Dennis Hofheinz, Roman Langrehr
PKC (2)1
2024 Key Exchange in the Post-snowden Era: Universally Composable Subversion-Resilient PAKE
Suvradip Chakraborty, Lorenzo Magliocco, Bernardo Magri, Daniele Venturi 0001
ASIACRYPT (5)1
2023 Forward Security Under Leakage Resilience, Revisited
Suvradip Chakraborty, Harish Karthikeyan, Adam O'Neill, C. Pandu Rangan
CANS1
2023 Reverse Firewalls for Oblivious Transfer Extension and Applications to Zero-Knowledge
Suvradip Chakraborty, Chaya Ganesh, Pratik Sarkar
EUROCRYPT (1)1
2023 Deniable Authentication When Signing Keys Leak
Suvradip Chakraborty, Dennis Hofheinz, Ueli Maurer, Guilherme Rito
EUROCRYPT (3)1
2023 Efficiently Testable Circuits
Mirza Ahad Baig, Suvradip Chakraborty, Stefan Dziembowski, Malgorzata Galazka, Tomasz Lizurej, Krzysztof Pietrzak
ITCS2
2023 Efficiently Testable Circuits Without Conductivity
Mirza Ahad Baig, Suvradip Chakraborty, Stefan Dziembowski, Malgorzata Galazka, Tomasz Lizurej, Krzysztof Pietrzak
TCC (3)2
2022 COA-Secure Obfuscation and Applications
Ran Canetti, Suvradip Chakraborty, Dakshita Khurana, Nishant Kumar 0001, Oxana Poburinnaya, Manoj Prabhakaran 0001
EUROCRYPT (1)2
2022 Universally Composable Subversion-Resilient Cryptography
Suvradip Chakraborty, Bernardo Magri, Jesper Buus Nielsen, Daniele Venturi 0001
EUROCRYPT (1)1
2021 Reverse Firewalls for Adaptively Secure MPC Without Setup
abstract
We study Multi-party computation (MPC) in the setting of subversion, where the adversary tampers with the machines of honest parties. Our goal is to construct actively secure MPC protocols where parties are corrupted adaptively by an adversary (as in the standard adaptive security setting), and in addition, honest parties’ machines are compromised.The idea of reverse firewalls (RF) was introduced at EUROCRYPT’15 by Mironov and Stephens-Davidowitz as an approach to protecting protocols against corruption of honest parties’ devices. Intuitively, an RF for a party \(\mathcal {P}\) is an external entity that sits between \(\mathcal {P}\) and the outside world and whose scope is to sanitize \(\mathcal {P}\)’s incoming and outgoing messages in the face of subversion of their computer. Mironov and Stephens-Davidowitz constructed a protocol for passively-secure two-party computation. At CRYPTO’20, Chakraborty, Dziembowski and Nielsen constructed a protocol for secure computation with firewalls that improved on this result, both by extending it to multi-party computation protocol, and considering active security in the presence of static corruptions.In this paper, we initiate the study of RF for MPC in the adaptive setting. We put forward a definition for adaptively secure MPC in the reverse firewall setting, explore relationships among the security notions, and then construct reverse firewalls for MPC in this stronger setting of adaptive security. We also resolve the open question of Chakraborty, Dziembowski and Nielsen by removing the need for a trusted setup in constructing RF for MPC.Towards this end, we construct reverse firewalls for adaptively secure augmented coin tossing and adaptively secure zero-knowledge protocols and obtain a constant round adaptively secure MPC protocol in the reverse firewall setting without setup. Along the way, we propose a new multi-party adaptively secure coin tossing protocol in the plain model, that is of independent interest.
Suvradip Chakraborty, Chaya Ganesh, Mahak Pancholi, Pratik Sarkar
ASIACRYPT (2)1
2021 Inverse-Sybil Attacks in Automated Contact Tracing
Benedikt Auerbach, Suvradip Chakraborty, Karen Azari, Guillermo Pascual-Perez, Krzysztof Pietrzak, Michael Walter 0001, Michelle Yeo
CT-RSA2
2021 Trojan-Resilience Without Cryptography
Suvradip Chakraborty, Stefan Dziembowski, Malgorzata Galazka, Tomasz Lizurej, Krzysztof Pietrzak, Michelle Yeo
TCC (2)1
2020 Reverse Firewalls for Actively Secure MPCs
Suvradip Chakraborty, Stefan Dziembowski, Jesper Buus Nielsen
CRYPTO (2)1
2019 Public Key Encryption Resilient to Post-challenge Leakage and Tampering Attacks
Suvradip Chakraborty, C. Pandu Rangan
CT-RSA1
2017 Efficient Compilers for After-the-Fact Leakage: From CPA to CCA-2 Secure PKE to AKE
Suvradip Chakraborty, Goutam Paul 0001, C. Pandu Rangan
ACISP (1)1
2017 An Efficient Attribute-Based Authenticated Key Exchange Protocol
Suvradip Chakraborty, Y. Sreenivasa Rao, C. Pandu Rangan
CANS1
2017 Leakage-Resilient Non-interactive Key Exchange in the Continuous-Memory Leakage Setting
Suvradip Chakraborty, Janaka Alawatugoda 0001, C. Pandu Rangan
ProvSec1
2015 Forward-Secure Authenticated Symmetric Key Exchange Protocol: New Security Model and Secure Construction
Suvradip Chakraborty, Goutam Paul 0001, C. Pandu Rangan
ProvSec1