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Add specialization of SipHash for 256 + 32 bit data
We'll need a version of SipHash for tuples of 256 bits and 32 bits data, when CCoinsViewCache switches from using txids to COutPoints as keys.
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41
src/hash.cpp
41
src/hash.cpp
@ -208,3 +208,44 @@ uint64_t SipHashUint256(uint64_t k0, uint64_t k1, const uint256& val)
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SIPROUND;
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return v0 ^ v1 ^ v2 ^ v3;
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}
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uint64_t SipHashUint256Extra(uint64_t k0, uint64_t k1, const uint256& val, uint32_t extra)
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{
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/* Specialized implementation for efficiency */
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uint64_t d = val.GetUint64(0);
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uint64_t v0 = 0x736f6d6570736575ULL ^ k0;
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uint64_t v1 = 0x646f72616e646f6dULL ^ k1;
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uint64_t v2 = 0x6c7967656e657261ULL ^ k0;
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uint64_t v3 = 0x7465646279746573ULL ^ k1 ^ d;
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SIPROUND;
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SIPROUND;
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v0 ^= d;
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d = val.GetUint64(1);
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v3 ^= d;
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SIPROUND;
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SIPROUND;
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v0 ^= d;
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d = val.GetUint64(2);
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v3 ^= d;
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SIPROUND;
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SIPROUND;
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v0 ^= d;
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d = val.GetUint64(3);
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v3 ^= d;
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SIPROUND;
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SIPROUND;
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v0 ^= d;
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d = (((uint64_t)36) << 56) | extra;
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v3 ^= d;
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SIPROUND;
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SIPROUND;
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v0 ^= d;
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v2 ^= 0xFF;
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SIPROUND;
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SIPROUND;
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SIPROUND;
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SIPROUND;
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return v0 ^ v1 ^ v2 ^ v3;
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}
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@ -241,5 +241,6 @@ public:
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* .Finalize()
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*/
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uint64_t SipHashUint256(uint64_t k0, uint64_t k1, const uint256& val);
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uint64_t SipHashUint256Extra(uint64_t k0, uint64_t k1, const uint256& val, uint32_t extra);
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#endif // BITCOIN_HASH_H
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@ -128,6 +128,23 @@ BOOST_AUTO_TEST_CASE(siphash)
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tx.nVersion = 1;
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ss << tx;
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BOOST_CHECK_EQUAL(SipHashUint256(1, 2, ss.GetHash()), 0x79751e980c2a0a35ULL);
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// Check consistency between CSipHasher and SipHashUint256[Extra].
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FastRandomContext ctx;
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for (int i = 0; i < 16; ++i) {
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uint64_t k1 = ctx.rand64();
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uint64_t k2 = ctx.rand64();
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uint256 x = GetRandHash();
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uint32_t n = ctx.rand32();
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uint8_t nb[4];
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WriteLE32(nb, n);
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CSipHasher sip256(k1, k2);
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sip256.Write(x.begin(), 32);
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CSipHasher sip288 = sip256;
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sip288.Write(nb, 4);
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BOOST_CHECK_EQUAL(SipHashUint256(k1, k2, x), sip256.Finalize());
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BOOST_CHECK_EQUAL(SipHashUint256Extra(k1, k2, x, n), sip288.Finalize());
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}
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}
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BOOST_AUTO_TEST_SUITE_END()
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