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Update documentation
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@ -254,6 +254,7 @@ size_t Scrypt::DeriveKey(byte*derived, size_t derivedLen, const byte*secret, siz
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// http://stackoverflow.com/q/49604260/608639
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#pragma omp parallel
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{
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// Each thread gets its own copy
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AlignedSecByteBlock XY(static_cast<size_t>(blockSize * 256U));
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AlignedSecByteBlock V(static_cast<size_t>(blockSize * cost * 128U));
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@ -267,7 +268,6 @@ size_t Scrypt::DeriveKey(byte*derived, size_t derivedLen, const byte*secret, siz
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}
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}
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// 5: DK <-- PBKDF2(P, B, 1, dkLen)
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PBKDF2_SHA256(derived, derivedLen, secret, secretLen, B, B.size(), 1);
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8
scrypt.h
8
scrypt.h
@ -19,6 +19,11 @@
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NAMESPACE_BEGIN(CryptoPP)
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/// \brief Scrypt key derivation function
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/// \details The Crypto++ implementation uses OpenMP to accelerate the derivation when
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/// available.
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/// \details The Crypto++ implementation of Scrypt is limited by C++ datatypes. For
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/// example, the library is limited to a derived key length of <tt>SIZE_MAX</tt>,
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/// and not <tt>(2^32 - 1) * 32</tt>.
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/// \sa <A HREF="https://www.tarsnap.com/scrypt/scrypt.pdf">Stronger Key Derivation via
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/// Sequential Memory-Hard Functions</a>,
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/// <A HREF="https://www.tarsnap.com/scrypt.html">The scrypt key derivation function</A>
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@ -74,6 +79,9 @@ public:
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/// integer less than or equal to <tt>((2^32-1) * 32) / (128 * r)</tt>.
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/// \details Scrypt always returns 1 because it only performs 1 iteration. Other
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/// derivation functions, like PBKDF's, will return more interesting values.
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/// \details The Crypto++ implementation of Scrypt is limited by C++ datatypes. For
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/// example, the library is limited to a derived key length of <tt>SIZE_MAX</tt>,
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/// and not <tt>(2^32 - 1) * 32</tt>.
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size_t DeriveKey(byte *derived, size_t derivedLen, const byte *secret, size_t secretLen,
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const byte *salt, size_t saltLen, word64 cost=2, word64 blockSize=8, word64 parallelization=1) const;
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