_chunker.c 8.8 KB

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  1. #include <Python.h>
  2. #include <fcntl.h>
  3. /* Cyclic polynomial / buzhash: https://en.wikipedia.org/wiki/Rolling_hash */
  4. static uint32_t table_base[] =
  5. {
  6. 0xe7f831ec, 0xf4026465, 0xafb50cae, 0x6d553c7a, 0xd639efe3, 0x19a7b895, 0x9aba5b21, 0x5417d6d4,
  7. 0x35fd2b84, 0xd1f6a159, 0x3f8e323f, 0xb419551c, 0xf444cebf, 0x21dc3b80, 0xde8d1e36, 0x84a32436,
  8. 0xbeb35a9d, 0xa36f24aa, 0xa4e60186, 0x98d18ffe, 0x3f042f9e, 0xdb228bcd, 0x096474b7, 0x5c20c2f7,
  9. 0xf9eec872, 0xe8625275, 0xb9d38f80, 0xd48eb716, 0x22a950b4, 0x3cbaaeaa, 0xc37cddd3, 0x8fea6f6a,
  10. 0x1d55d526, 0x7fd6d3b3, 0xdaa072ee, 0x4345ac40, 0xa077c642, 0x8f2bd45b, 0x28509110, 0x55557613,
  11. 0xffc17311, 0xd961ffef, 0xe532c287, 0xaab95937, 0x46d38365, 0xb065c703, 0xf2d91d0f, 0x92cd4bb0,
  12. 0x4007c712, 0xf35509dd, 0x505b2f69, 0x557ead81, 0x310f4563, 0xbddc5be8, 0x9760f38c, 0x701e0205,
  13. 0x00157244, 0x14912826, 0xdc4ca32b, 0x67b196de, 0x5db292e8, 0x8c1b406b, 0x01f34075, 0xfa2520f7,
  14. 0x73bc37ab, 0x1e18bc30, 0xfe2c6cb3, 0x20c522d0, 0x5639e3db, 0x942bda35, 0x899af9d1, 0xced44035,
  15. 0x98cc025b, 0x255f5771, 0x70fefa24, 0xe928fa4d, 0x2c030405, 0xb9325590, 0x20cb63bd, 0xa166305d,
  16. 0x80e52c0a, 0xa8fafe2f, 0x1ad13f7d, 0xcfaf3685, 0x6c83a199, 0x7d26718a, 0xde5dfcd9, 0x79cf7355,
  17. 0x8979d7fb, 0xebf8c55e, 0xebe408e4, 0xcd2affba, 0xe483be6e, 0xe239d6de, 0x5dc1e9e0, 0x0473931f,
  18. 0x851b097c, 0xac5db249, 0x09c0f9f2, 0xd8d2f134, 0xe6f38e41, 0xb1c71bf1, 0x52b6e4db, 0x07224424,
  19. 0x6cf73e85, 0x4f25d89c, 0x782a7d74, 0x10a68dcd, 0x3a868189, 0xd570d2dc, 0x69630745, 0x9542ed86,
  20. 0x331cd6b2, 0xa84b5b28, 0x07879c9d, 0x38372f64, 0x7185db11, 0x25ba7c83, 0x01061523, 0xe6792f9f,
  21. 0xe5df07d1, 0x4321b47f, 0x7d2469d8, 0x1a3a4f90, 0x48be29a3, 0x669071af, 0x8ec8dd31, 0x0810bfbf,
  22. 0x813a06b4, 0x68538345, 0x65865ddc, 0x43a71b8e, 0x78619a56, 0x5a34451d, 0x5bdaa3ed, 0x71edc7e9,
  23. 0x17ac9a20, 0x78d10bfa, 0x6c1e7f35, 0xd51839d9, 0x240cbc51, 0x33513cc1, 0xd2b4f795, 0xccaa8186,
  24. 0x0babe682, 0xa33cf164, 0x18c643ea, 0xc1ca105f, 0x9959147a, 0x6d3d94de, 0x0b654fbe, 0xed902ca0,
  25. 0x7d835cb5, 0x99ba1509, 0x6445c922, 0x495e76c2, 0xf07194bc, 0xa1631d7e, 0x677076a5, 0x89fffe35,
  26. 0x1a49bcf3, 0x8e6c948a, 0x0144c917, 0x8d93aea1, 0x16f87ddf, 0xc8f25d49, 0x1fb11297, 0x27e750cd,
  27. 0x2f422da1, 0xdee89a77, 0x1534c643, 0x457b7b8b, 0xaf172f7a, 0x6b9b09d6, 0x33573f7f, 0xf14e15c4,
  28. 0x526467d5, 0xaf488241, 0x87c3ee0d, 0x33be490c, 0x95aa6e52, 0x43ec242e, 0xd77de99b, 0xd018334f,
  29. 0x5b78d407, 0x498eb66b, 0xb1279fa8, 0xb38b0ea6, 0x90718376, 0xe325dee2, 0x8e2f2cba, 0xcaa5bdec,
  30. 0x9d652c56, 0xad68f5cb, 0xa77591af, 0x88e37ee8, 0xf8faa221, 0xfcbbbe47, 0x4f407786, 0xaf393889,
  31. 0xf444a1d9, 0x15ae1a2f, 0x40aa7097, 0x6f9486ac, 0x29d232a3, 0xe47609e9, 0xe8b631ff, 0xba8565f4,
  32. 0x11288749, 0x46c9a838, 0xeb1b7cd8, 0xf516bbb1, 0xfb74fda0, 0x010996e6, 0x4c994653, 0x1d889512,
  33. 0x53dcd9a3, 0xdd074697, 0x1e78e17c, 0x637c98bf, 0x930bb219, 0xcf7f75b0, 0xcb9355fb, 0x9e623009,
  34. 0xe466d82c, 0x28f968d3, 0xfeb385d9, 0x238e026c, 0xb8ed0560, 0x0c6a027a, 0x3d6fec4b, 0xbb4b2ec2,
  35. 0xe715031c, 0xeded011d, 0xcdc4d3b9, 0xc456fc96, 0xdd0eea20, 0xb3df8ec9, 0x12351993, 0xd9cbb01c,
  36. 0x603147a2, 0xcf37d17d, 0xf7fcd9dc, 0xd8556fa3, 0x104c8131, 0x13152774, 0xb4715811, 0x6a72c2c9,
  37. 0xc5ae37bb, 0xa76ce12a, 0x8150d8f3, 0x2ec29218, 0xa35f0984, 0x48c0647e, 0x0b5ff98c, 0x71893f7b
  38. };
  39. #define BARREL_SHIFT(v, shift) ( ((v) << shift) | ((v) >> (32 - shift)) )
  40. static uint32_t *
  41. buzhash_init_table(uint32_t seed)
  42. {
  43. int i;
  44. uint32_t *table = malloc(1024);
  45. for(i = 0; i < 256; i++)
  46. {
  47. table[i] = table_base[i] ^ seed;
  48. }
  49. return table;
  50. }
  51. static uint32_t
  52. buzhash(const unsigned char *data, size_t len, const uint32_t *h)
  53. {
  54. uint32_t i;
  55. uint32_t sum = 0, imod;
  56. for(i = len - 1; i > 0; i--)
  57. {
  58. imod = i & 0x1f;
  59. sum ^= BARREL_SHIFT(h[*data], imod);
  60. data++;
  61. }
  62. return sum ^ h[*data];
  63. }
  64. static uint32_t
  65. buzhash_update(uint32_t sum, unsigned char remove, unsigned char add, size_t len, const uint32_t *h)
  66. {
  67. uint32_t lenmod = len & 0x1f;
  68. return BARREL_SHIFT(sum, 1) ^ BARREL_SHIFT(h[remove], lenmod) ^ h[add];
  69. }
  70. typedef struct {
  71. int window_size, chunk_mask, min_size;
  72. size_t buf_size;
  73. uint32_t *table;
  74. uint8_t *data, *read_buf;
  75. PyObject *fd;
  76. int fh;
  77. int done, eof;
  78. size_t remaining, bytes_read, bytes_yielded, position, last;
  79. } Chunker;
  80. static Chunker *
  81. chunker_init(int window_size, int chunk_mask, int min_size, int max_size, uint32_t seed)
  82. {
  83. Chunker *c = calloc(sizeof(Chunker), 1);
  84. c->window_size = window_size;
  85. c->chunk_mask = chunk_mask;
  86. c->min_size = min_size;
  87. c->table = buzhash_init_table(seed);
  88. c->buf_size = max_size;
  89. c->data = malloc(c->buf_size);
  90. c->read_buf = malloc(c->buf_size);
  91. return c;
  92. }
  93. static void
  94. chunker_set_fd(Chunker *c, PyObject *fd, int fh)
  95. {
  96. Py_XDECREF(c->fd);
  97. c->fd = fd;
  98. Py_INCREF(fd);
  99. c->fh = fh;
  100. c->done = 0;
  101. c->remaining = 0;
  102. c->bytes_read = 0;
  103. c->bytes_yielded = 0;
  104. c->position = 0;
  105. c->last = 0;
  106. c->eof = 0;
  107. }
  108. static void
  109. chunker_free(Chunker *c)
  110. {
  111. Py_XDECREF(c->fd);
  112. free(c->table);
  113. free(c->data);
  114. free(c->read_buf);
  115. free(c);
  116. }
  117. static int
  118. chunker_fill(Chunker *c)
  119. {
  120. size_t n;
  121. PyObject *data;
  122. memmove(c->data, c->data + c->last, c->position + c->remaining - c->last);
  123. c->position -= c->last;
  124. c->last = 0;
  125. n = c->buf_size - c->position - c->remaining;
  126. if(c->eof || n == 0) {
  127. return 1;
  128. }
  129. if(c->fh >= 0) {
  130. // if we have a os-level file descriptor, use os-level API
  131. n = read(c->fh, c->read_buf, n);
  132. if(n > 0) {
  133. memcpy(c->data + c->position + c->remaining, c->read_buf, n);
  134. c->remaining += n;
  135. c->bytes_read += n;
  136. }
  137. else
  138. if(n == 0) {
  139. c->eof = 1;
  140. }
  141. else {
  142. // some error happened
  143. return 0;
  144. }
  145. #if ( _XOPEN_SOURCE >= 600 || _POSIX_C_SOURCE >= 200112L )
  146. // We tell the OS that we do not need the data of this file any more
  147. // that it maybe has in the cache. This avoids that we spoil the
  148. // complete cache with data that we only read once and (due to cache
  149. // size limit) kick out data from the cache that might be still useful
  150. // for the OS or other processes.
  151. posix_fadvise(c->fh, (off_t) 0, (off_t) 0, POSIX_FADV_DONTNEED);
  152. #endif
  153. }
  154. else {
  155. // no os-level file descriptor, use Python file object API
  156. data = PyObject_CallMethod(c->fd, "read", "i", n);
  157. if(!data) {
  158. return 0;
  159. }
  160. n = PyBytes_Size(data);
  161. if(n) {
  162. memcpy(c->data + c->position + c->remaining, PyBytes_AsString(data), n);
  163. c->remaining += n;
  164. c->bytes_read += n;
  165. }
  166. else {
  167. c->eof = 1;
  168. }
  169. Py_DECREF(data);
  170. }
  171. return 1;
  172. }
  173. static PyObject *
  174. PyBuffer_FromMemory(void *data, Py_ssize_t len)
  175. {
  176. Py_buffer buffer;
  177. PyObject *mv;
  178. PyBuffer_FillInfo(&buffer, NULL, data, len, 1, PyBUF_CONTIG_RO);
  179. mv = PyMemoryView_FromBuffer(&buffer);
  180. PyBuffer_Release(&buffer);
  181. return mv;
  182. }
  183. static PyObject *
  184. chunker_process(Chunker *c)
  185. {
  186. uint32_t sum, chunk_mask = c->chunk_mask, min_size = c->min_size, window_size = c->window_size;
  187. int n = 0;
  188. int old_last;
  189. if(c->done) {
  190. if(c->bytes_read == c->bytes_yielded)
  191. PyErr_SetNone(PyExc_StopIteration);
  192. else
  193. PyErr_SetString(PyExc_Exception, "chunkifier byte count mismatch");
  194. return NULL;
  195. }
  196. if(c->remaining <= window_size) {
  197. if(!chunker_fill(c)) {
  198. return NULL;
  199. }
  200. }
  201. if(c->remaining < window_size) {
  202. c->done = 1;
  203. if(c->remaining) {
  204. c->bytes_yielded += c->remaining;
  205. return PyBuffer_FromMemory(c->data + c->position, c->remaining);
  206. }
  207. else {
  208. if(c->bytes_read == c->bytes_yielded)
  209. PyErr_SetNone(PyExc_StopIteration);
  210. else
  211. PyErr_SetString(PyExc_Exception, "chunkifier byte count mismatch");
  212. return NULL;
  213. }
  214. }
  215. sum = buzhash(c->data + c->position, window_size, c->table);
  216. while(c->remaining > c->window_size && ((sum & chunk_mask) || n < min_size)) {
  217. sum = buzhash_update(sum, c->data[c->position],
  218. c->data[c->position + window_size],
  219. window_size, c->table);
  220. c->position++;
  221. c->remaining--;
  222. n++;
  223. if(c->remaining <= window_size) {
  224. if(!chunker_fill(c)) {
  225. return NULL;
  226. }
  227. }
  228. }
  229. if(c->remaining <= window_size) {
  230. c->position += c->remaining;
  231. c->remaining = 0;
  232. }
  233. old_last = c->last;
  234. c->last = c->position;
  235. n = c->last - old_last;
  236. c->bytes_yielded += n;
  237. return PyBuffer_FromMemory(c->data + old_last, n);
  238. }