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99 lines
2.3 KiB
99 lines
2.3 KiB
#include "hash.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, const std::vector<unsigned char>& vDataToHash) |
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{ |
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// The following is MurmurHash3 (x86_32), see http://code.google.com/p/smhasher/source/browse/trunk/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 uint32_t * blocks = (const uint32_t *)(&vDataToHash[0] + nblocks*4); |
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for(int i = -nblocks; i; i++) |
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{ |
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uint32_t k1 = blocks[i]; |
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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 = (const uint8_t*)(&vDataToHash[0] + nblocks*4); |
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uint32_t k1 = 0; |
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switch(vDataToHash.size() & 3) |
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{ |
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case 3: k1 ^= tail[2] << 16; |
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case 2: k1 ^= tail[1] << 8; |
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case 1: k1 ^= tail[0]; |
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k1 *= c1; k1 = ROTL32(k1,15); k1 *= c2; 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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int HMAC_SHA512_Init(HMAC_SHA512_CTX *pctx, const void *pkey, size_t len) |
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{ |
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unsigned char key[128]; |
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if (len <= 128) |
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{ |
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memcpy(key, pkey, len); |
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memset(key + len, 0, 128-len); |
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} |
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else |
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{ |
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SHA512_CTX ctxKey; |
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SHA512_Init(&ctxKey); |
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SHA512_Update(&ctxKey, pkey, len); |
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SHA512_Final(key, &ctxKey); |
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memset(key + 64, 0, 64); |
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} |
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for (int n=0; n<128; n++) |
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key[n] ^= 0x5c; |
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SHA512_Init(&pctx->ctxOuter); |
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SHA512_Update(&pctx->ctxOuter, key, 128); |
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for (int n=0; n<128; n++) |
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key[n] ^= 0x5c ^ 0x36; |
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SHA512_Init(&pctx->ctxInner); |
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return SHA512_Update(&pctx->ctxInner, key, 128); |
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} |
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int HMAC_SHA512_Update(HMAC_SHA512_CTX *pctx, const void *pdata, size_t len) |
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{ |
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return SHA512_Update(&pctx->ctxInner, pdata, len); |
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} |
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int HMAC_SHA512_Final(unsigned char *pmd, HMAC_SHA512_CTX *pctx) |
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{ |
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unsigned char buf[64]; |
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SHA512_Final(buf, &pctx->ctxInner); |
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SHA512_Update(&pctx->ctxOuter, buf, 64); |
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return SHA512_Final(pmd, &pctx->ctxOuter); |
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}
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