Goyal et al., 2020 - Google Patents
On perfect correctness in (lockable) obfuscationGoyal et al., 2020
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- 12118452686498905477
- Author
- Goyal R
- Koppula V
- Vusirikala S
- Waters B
- Publication year
- Publication venue
- Theory of Cryptography Conference
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Snippet
In a lockable obfuscation scheme 28, 39 a party takes as input a program P, a lock value α α, a message msg msg and produces an obfuscated program ̃ PP~. The obfuscated program can be evaluated on an input x to learn the message msg msg if P (x)= α P (x)= α. The …
- 238000010276 construction 0 abstract description 56
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- H04L9/30—Public key, i.e. encryption algorithm being computationally infeasible to invert or user's encryption keys not requiring secrecy
- H04L9/3066—Public key, i.e. encryption algorithm being computationally infeasible to invert or user's encryption keys not requiring secrecy involving algebraic varieties, e.g. elliptic or hyper-elliptic curves
- H04L9/3073—Public key, i.e. encryption algorithm being computationally infeasible to invert or user's encryption keys not requiring secrecy involving algebraic varieties, e.g. elliptic or hyper-elliptic curves involving pairings, e.g. identity based encryption [IBE], bilinear mappings or bilinear pairings, e.g. Weil or Tate pairing
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- H04L9/0819—Key transport or distribution, i.e. key establishment techniques where one party creates or otherwise obtains a secret value, and securely transfers it to the other(s)
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