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4a3e3af6e7
fa0074e2d82928016a43ca408717154a1c70a4db scripted-diff: Bump copyright headers (MarcoFalke) Pull request description: Needs to be done because no one has removed the years yet ACKs for top commit: practicalswift: ACK fa0074e2d82928016a43ca408717154a1c70a4db Tree-SHA512: 210e92acd7d400b556cf8259c3ec9967797420cfd19f0c2a4fa54cb2b3d32ad9ae27e771269201e7d554c0f4cd73a8b1c1a42c9f65d8685ca4d52e5134b071a3
85 lines
2.1 KiB
C++
85 lines
2.1 KiB
C++
// Copyright (c) 2013-2020 The Bitcoin Core developers
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// Distributed under the MIT software license, see the accompanying
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// file COPYING or http://www.opensource.org/licenses/mit-license.php.
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#include <hash.h>
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#include <span.h>
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#include <crypto/common.h>
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#include <crypto/hmac_sha512.h>
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inline uint32_t ROTL32(uint32_t x, int8_t r)
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{
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return (x << r) | (x >> (32 - r));
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}
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unsigned int MurmurHash3(unsigned int nHashSeed, Span<const unsigned char> vDataToHash)
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{
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// The following is MurmurHash3 (x86_32), see https://github.com/aappleby/smhasher/blob/master/src/MurmurHash3.cpp
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uint32_t h1 = nHashSeed;
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const uint32_t c1 = 0xcc9e2d51;
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const uint32_t c2 = 0x1b873593;
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const int nblocks = vDataToHash.size() / 4;
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//----------
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// body
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const uint8_t* blocks = vDataToHash.data();
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for (int i = 0; i < nblocks; ++i) {
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uint32_t k1 = ReadLE32(blocks + i*4);
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k1 *= c1;
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k1 = ROTL32(k1, 15);
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k1 *= c2;
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h1 ^= k1;
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h1 = ROTL32(h1, 13);
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h1 = h1 * 5 + 0xe6546b64;
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}
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//----------
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// tail
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const uint8_t* tail = vDataToHash.data() + nblocks * 4;
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uint32_t k1 = 0;
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switch (vDataToHash.size() & 3) {
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case 3:
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k1 ^= tail[2] << 16;
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case 2:
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k1 ^= tail[1] << 8;
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case 1:
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k1 ^= tail[0];
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k1 *= c1;
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k1 = ROTL32(k1, 15);
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k1 *= c2;
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h1 ^= k1;
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}
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//----------
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// finalization
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h1 ^= vDataToHash.size();
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h1 ^= h1 >> 16;
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h1 *= 0x85ebca6b;
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h1 ^= h1 >> 13;
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h1 *= 0xc2b2ae35;
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h1 ^= h1 >> 16;
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return h1;
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}
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void BIP32Hash(const ChainCode &chainCode, unsigned int nChild, unsigned char header, const unsigned char data[32], unsigned char output[64])
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{
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unsigned char num[4];
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WriteBE32(num, nChild);
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CHMAC_SHA512(chainCode.begin(), chainCode.size()).Write(&header, 1).Write(data, 32).Write(num, 4).Finalize(output);
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}
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uint256 SHA256Uint256(const uint256& input)
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{
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uint256 result;
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CSHA256().Write(input.begin(), 32).Finalize(result.begin());
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return result;
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}
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