10 #include "MurmurHash3.hpp" 
   18 #define FORCE_INLINE    __forceinline 
   22 #define ROTL32(x,y)     _rotl(x,y) 
   23 #define ROTL64(x,y)     _rotl64(x,y) 
   25 #define BIG_CONSTANT(x) (x) 
   29 #else   // not defined(_MSC_VER) 
   33 inline uint32_t rotl32 ( uint32_t x, int8_t r )
 
   35   return (x << r) | (x >> (32 - r));
 
   38 inline uint64_t rotl64 ( uint64_t x, int8_t r )
 
   40   return (x << r) | (x >> (64 - r));
 
   45 #define ROTL32(x,y)     rotl32(x,y) 
   46 #define ROTL64(x,y)     rotl64(x,y) 
   48 #define BIG_CONSTANT(x) (x##LLU) 
   50 #endif // !defined(_MSC_VER) 
   56 #define GETBLOCK(lhs, p, i ) \ 
   65 #define FMIX_32( h ) \ 
   82   t_k *= BIG_CONSTANT(0xff51afd7ed558ccd);\ 
   84   t_k *= BIG_CONSTANT(0xc4ceb9fe1a85ec53);\ 
   94 void MurmurHash3_x86_32 ( 
const void * key, 
int len,
 
   95                           uint32_t seed, 
void * out )
 
   97   const uint8_t * data = (
const uint8_t*)key;
 
   98   const int nblocks = len / 4;
 
  102   const uint32_t c1 = 0xcc9e2d51;
 
  103   const uint32_t c2 = 0x1b873593;
 
  108   const uint32_t * blocks = (
const uint32_t *)(data + nblocks*4);
 
  110   for(
int i = -nblocks; i; i++)
 
  113     GETBLOCK(k1, blocks,i);
 
  121     h1 = h1*5+0xe6546b64;
 
  127   const uint8_t * tail = (
const uint8_t*)(data + nblocks*4);
 
  133   case 3: k1 ^= tail[2] << 16;
 
  134   case 2: k1 ^= tail[1] << 8;
 
  135   case 1: k1 ^= tail[0];
 
  136           k1 *= c1; k1 = ROTL32(k1,15); k1 *= c2; h1 ^= k1;
 
  146   *(uint32_t*)out = h1;
 
  151 void MurmurHash3_x86_128 ( 
const void * key, 
const int len,
 
  152                            uint32_t seed, 
void * out )
 
  154   const uint8_t * data = (
const uint8_t*)key;
 
  155   const int nblocks = len / 16;
 
  162   const uint32_t c1 = 0x239b961b;
 
  163   const uint32_t c2 = 0xab0e9789;
 
  164   const uint32_t c3 = 0x38b34ae5;
 
  165   const uint32_t c4 = 0xa1e38b93;
 
  170   const uint32_t * blocks = (
const uint32_t *)(data + nblocks*16);
 
  172   for(
int i = -nblocks; i; i++)
 
  174     uint32_t k1, k2, k3, k4;
 
  175     GETBLOCK(k1, blocks,i*4+0);
 
  176     GETBLOCK(k2, blocks,i*4+1);
 
  177     GETBLOCK(k3, blocks,i*4+2);
 
  178     GETBLOCK(k4, blocks,i*4+3);
 
  180     k1 *= c1; k1  = ROTL32(k1,15); k1 *= c2; h1 ^= k1;
 
  182     h1 = ROTL32(h1,19); h1 += h2; h1 = h1*5+0x561ccd1b;
 
  184     k2 *= c2; k2  = ROTL32(k2,16); k2 *= c3; h2 ^= k2;
 
  186     h2 = ROTL32(h2,17); h2 += h3; h2 = h2*5+0x0bcaa747;
 
  188     k3 *= c3; k3  = ROTL32(k3,17); k3 *= c4; h3 ^= k3;
 
  190     h3 = ROTL32(h3,15); h3 += h4; h3 = h3*5+0x96cd1c35;
 
  192     k4 *= c4; k4  = ROTL32(k4,18); k4 *= c1; h4 ^= k4;
 
  194     h4 = ROTL32(h4,13); h4 += h1; h4 = h4*5+0x32ac3b17;
 
  200   const uint8_t * tail = (
const uint8_t*)(data + nblocks*16);
 
  209   case 15: k4 ^= tail[14] << 16;
 
  210   case 14: k4 ^= tail[13] << 8;
 
  211   case 13: k4 ^= tail[12] << 0;
 
  212            k4 *= c4; k4  = ROTL32(k4,18); k4 *= c1; h4 ^= k4;
 
  214   case 12: k3 ^= tail[11] << 24;
 
  215   case 11: k3 ^= tail[10] << 16;
 
  216   case 10: k3 ^= tail[ 9] << 8;
 
  217   case  9: k3 ^= tail[ 8] << 0;
 
  218            k3 *= c3; k3  = ROTL32(k3,17); k3 *= c4; h3 ^= k3;
 
  220   case  8: k2 ^= tail[ 7] << 24;
 
  221   case  7: k2 ^= tail[ 6] << 16;
 
  222   case  6: k2 ^= tail[ 5] << 8;
 
  223   case  5: k2 ^= tail[ 4] << 0;
 
  224            k2 *= c2; k2  = ROTL32(k2,16); k2 *= c3; h2 ^= k2;
 
  226   case  4: k1 ^= tail[ 3] << 24;
 
  227   case  3: k1 ^= tail[ 2] << 16;
 
  228   case  2: k1 ^= tail[ 1] << 8;
 
  229   case  1: k1 ^= tail[ 0] << 0;
 
  230            k1 *= c1; k1  = ROTL32(k1,15); k1 *= c2; h1 ^= k1;
 
  236   h1 ^= len; h2 ^= len; h3 ^= len; h4 ^= len;
 
  238   h1 += h2; h1 += h3; h1 += h4;
 
  239   h2 += h1; h3 += h1; h4 += h1;
 
  246   h1 += h2; h1 += h3; h1 += h4;
 
  247   h2 += h1; h3 += h1; h4 += h1;
 
  249   ((uint32_t*)out)[0] = h1;
 
  250   ((uint32_t*)out)[1] = h2;
 
  251   ((uint32_t*)out)[2] = h3;
 
  252   ((uint32_t*)out)[3] = h4;
 
  257 void MurmurHash3_x64_128 ( 
const void * key, 
const int len,
 
  258                            const uint32_t seed, 
void * out )
 
  260   const uint8_t * data = (
const uint8_t*)key;
 
  261   const int nblocks = len / 16;
 
  266   const uint64_t c1 = BIG_CONSTANT(0x87c37b91114253d5);
 
  267   const uint64_t c2 = BIG_CONSTANT(0x4cf5ad432745937f);
 
  272   const uint64_t * blocks = (
const uint64_t *)(data);
 
  274   for(
int i = 0; i < nblocks; i++)
 
  277     GETBLOCK(k1, blocks,i*2+0);
 
  278     GETBLOCK(k2, blocks,i*2+1);
 
  280     k1 *= c1; k1  = ROTL64(k1,31); k1 *= c2; h1 ^= k1;
 
  282     h1 = ROTL64(h1,27); h1 += h2; h1 = h1*5+0x52dce729;
 
  284     k2 *= c2; k2  = ROTL64(k2,33); k2 *= c1; h2 ^= k2;
 
  286     h2 = ROTL64(h2,31); h2 += h1; h2 = h2*5+0x38495ab5;
 
  292   const uint8_t * tail = (
const uint8_t*)(data + nblocks*16);
 
  299   case 15: k2 ^= uint64_t(tail[14]) << 48;
 
  300   case 14: k2 ^= uint64_t(tail[13]) << 40;
 
  301   case 13: k2 ^= uint64_t(tail[12]) << 32;
 
  302   case 12: k2 ^= uint64_t(tail[11]) << 24;
 
  303   case 11: k2 ^= uint64_t(tail[10]) << 16;
 
  304   case 10: k2 ^= uint64_t(tail[ 9]) << 8;
 
  305   case  9: k2 ^= uint64_t(tail[ 8]) << 0;
 
  306            k2 *= c2; k2  = ROTL64(k2,33); k2 *= c1; h2 ^= k2;
 
  308   case  8: k1 ^= uint64_t(tail[ 7]) << 56;
 
  309   case  7: k1 ^= uint64_t(tail[ 6]) << 48;
 
  310   case  6: k1 ^= uint64_t(tail[ 5]) << 40;
 
  311   case  5: k1 ^= uint64_t(tail[ 4]) << 32;
 
  312   case  4: k1 ^= uint64_t(tail[ 3]) << 24;
 
  313   case  3: k1 ^= uint64_t(tail[ 2]) << 16;
 
  314   case  2: k1 ^= uint64_t(tail[ 1]) << 8;
 
  315   case  1: k1 ^= uint64_t(tail[ 0]) << 0;
 
  316            k1 *= c1; k1  = ROTL64(k1,31); k1 *= c2; h1 ^= k1;
 
  322   h1 ^= len; h2 ^= len;
 
  333   ((uint64_t*)out)[0] = h1;
 
  334   ((uint64_t*)out)[1] = h2;