ht.h 26 KB

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  1. /* Copyright 2002 Christopher Clark */
  2. /* Copyright 2005 Nick Mathewson */
  3. /* See license at end. */
  4. /* $Id$ */
  5. /* Based on ideas by Christopher Clark and interfaces from Niels Provos. */
  6. #ifndef __HT_H
  7. #define __HT_H
  8. #define HT_H_ID "$Id$"
  9. #define HT_HEAD(name, type) \
  10. struct name { \
  11. /* The hash table itself. */ \
  12. struct type **hth_table; \
  13. /* How long is the hash table? */ \
  14. unsigned hth_table_length; \
  15. /* How many elements does the table contain? */ \
  16. unsigned hth_n_entries; \
  17. /* How many elements will we allow in the table before resizing it? */ \
  18. unsigned hth_load_limit; \
  19. /* Position of hth_table_length in the primes table. */ \
  20. int hth_prime_idx; \
  21. }
  22. #define HT_INITIALIZER() \
  23. { NULL, 0, 0, 0, -1 }
  24. #define HT_INIT(root) do { \
  25. (root)->hth_table_length = 0; \
  26. (root)->hth_table = NULL; \
  27. (root)->hth_n_entries = 0; \
  28. (root)->hth_load_limit = 0; \
  29. (root)->hth_prime_idx = -1; \
  30. } while (0)
  31. #define HT_ENTRY(type) \
  32. struct { \
  33. struct type *hte_next; \
  34. unsigned hte_hash; \
  35. }
  36. #define HT_EMPTY(head) \
  37. ((head)->hth_n_entries == 0)
  38. /* Helper: alias for the bucket containing 'elm'. */
  39. #define _HT_BUCKET(head, field, elm) \
  40. ((head)->hth_table[elm->field.hte_hash % head->hth_table_length])
  41. /* How many elements in 'head'? */
  42. #define HT_SIZE(head) \
  43. ((head)->hth_n_entries)
  44. #define HT_FIND(name, head, elm) name##_HT_FIND((head), (elm))
  45. #define HT_INSERT(name, head, elm) name##_HT_INSERT((head), (elm))
  46. #define HT_REPLACE(name, head, elm) name##_HT_REPLACE((head), (elm))
  47. #define HT_REMOVE(name, head, elm) name##_HT_REMOVE((head), (elm))
  48. #define HT_START(name, head) name##_HT_START(head)
  49. #define HT_NEXT(name, head, elm) name##_HT_NEXT((head), (elm))
  50. #define HT_NEXT_RMV(name, head, elm) name##_HT_NEXT_RMV((head), (elm))
  51. #define HT_CLEAR(name, head) name##_HT_CLEAR(head)
  52. /* Helper: */
  53. static INLINE unsigned
  54. ht_improve_hash(unsigned h)
  55. {
  56. /* Aim to protect against poor hash functions by adding logic here
  57. * - logic taken from java 1.4 hashtable source */
  58. h += ~(h << 9);
  59. h ^= ((h >> 14) | (h << 18)); /* >>> */
  60. h += (h << 4);
  61. h ^= ((h >> 10) | (h << 22)); /* >>> */
  62. return h;
  63. }
  64. /** Basic string hash function, from Java standard String.hashCode(). */
  65. static INLINE unsigned
  66. ht_string_hash(const char *s)
  67. {
  68. unsigned h = 0;
  69. int m = 1;
  70. while (*s) {
  71. h += ((signed char)*s++)*m;
  72. m = (m<<5)-1; /* m *= 31 */
  73. }
  74. return h;
  75. }
  76. #define _HT_SET_HASH(elm, field, hashfn) \
  77. do { \
  78. elm->field.hte_hash = hashfn(elm); \
  79. } while (0)
  80. #define HT_FOREACH(x, name, head) \
  81. for ((x) = HT_START(name, head); \
  82. (x) != NULL; \
  83. (x) = HT_NEXT(name, head, x))
  84. #define HT_PROTOTYPE(name, type, field, hashfn, eqfn) \
  85. int name##_HT_GROW(struct name *ht, unsigned min_capacity); \
  86. void name##_HT_CLEAR(struct name *ht); \
  87. int _##name##_HT_REP_IS_BAD(struct name *ht); \
  88. /* Helper: returns a pointer to the right location in the table \
  89. * 'head' to find or insert the element 'elm'. */ \
  90. static INLINE struct type ** \
  91. _##name##_HT_FIND_P(struct name *head, struct type *elm) \
  92. { \
  93. struct type **p; \
  94. if (!head->hth_table) \
  95. return NULL; \
  96. p = &_HT_BUCKET(head, field, elm); \
  97. while (*p) { \
  98. if (eqfn(*p, elm)) \
  99. return p; \
  100. p = &(*p)->field.hte_next; \
  101. } \
  102. return p; \
  103. } \
  104. /* Return a pointer to the element in the table 'head' matching 'elm', \
  105. * or NULL if no such element exists */ \
  106. static INLINE struct type * \
  107. name##_HT_FIND(struct name *head, struct type *elm) \
  108. { \
  109. struct type **p; \
  110. _HT_SET_HASH(elm, field, hashfn); \
  111. p = _##name##_HT_FIND_P(head, elm); \
  112. return p ? *p : NULL; \
  113. } \
  114. /* Insert the element 'elm' into the table 'head'. Do not call this \
  115. * function if the table might already contain a matching element. */ \
  116. static INLINE void \
  117. name##_HT_INSERT(struct name *head, struct type *elm) \
  118. { \
  119. struct type **p; \
  120. if (!head->hth_table || head->hth_n_entries >= head->hth_load_limit) \
  121. name##_HT_GROW(head, head->hth_n_entries+1); \
  122. ++head->hth_n_entries; \
  123. _HT_SET_HASH(elm, field, hashfn); \
  124. p = &_HT_BUCKET(head, field, elm); \
  125. elm->field.hte_next = *p; \
  126. *p = elm; \
  127. } \
  128. /* Insert the element 'elm' into the table 'head'. If there already \
  129. * a matching element in the table, replace that element and return \
  130. * it. */ \
  131. static INLINE struct type * \
  132. name##_HT_REPLACE(struct name *head, struct type *elm) \
  133. { \
  134. struct type **p, *r; \
  135. if (!head->hth_table || head->hth_n_entries >= head->hth_load_limit) \
  136. name##_HT_GROW(head, head->hth_n_entries+1); \
  137. _HT_SET_HASH(elm, field, hashfn); \
  138. p = _##name##_HT_FIND_P(head, elm); \
  139. r = *p; \
  140. *p = elm; \
  141. if (r && (r!=elm)) { \
  142. elm->field.hte_next = r->field.hte_next; \
  143. r->field.hte_next = NULL; \
  144. return r; \
  145. } else { \
  146. ++head->hth_n_entries; \
  147. return NULL; \
  148. } \
  149. } \
  150. /* Remove any element matching 'elm' from the table 'head'. If such \
  151. * an element is found, return it; otherwise return NULL. */ \
  152. static INLINE struct type * \
  153. name##_HT_REMOVE(struct name *head, struct type *elm) \
  154. { \
  155. struct type **p, *r; \
  156. _HT_SET_HASH(elm, field, hashfn); \
  157. p = _##name##_HT_FIND_P(head,elm); \
  158. if (!p || !*p) \
  159. return NULL; \
  160. r = *p; \
  161. *p = r->field.hte_next; \
  162. r->field.hte_next = NULL; \
  163. --head->hth_n_entries; \
  164. return r; \
  165. } \
  166. /* Invoke the function 'fn' on every element of the table 'head', \
  167. * using 'data' as its second argument. If the function returns \
  168. * nonzero, remove the most recently examined element before invoking \
  169. * the function again. */ \
  170. static INLINE void \
  171. name##_HT_FOREACH_FN(struct name *head, \
  172. int (*fn)(struct type *, void *), \
  173. void *data) \
  174. { \
  175. unsigned idx; \
  176. int remove; \
  177. struct type **p, **nextp, *next; \
  178. if (!head->hth_table) \
  179. return; \
  180. for (idx=0; idx < head->hth_table_length; ++idx) { \
  181. p = &head->hth_table[idx]; \
  182. while (*p) { \
  183. nextp = &(*p)->field.hte_next; \
  184. next = *nextp; \
  185. remove = fn(*p, data); \
  186. if (remove) { \
  187. --head->hth_n_entries; \
  188. *p = next; \
  189. } else { \
  190. p = nextp; \
  191. } \
  192. } \
  193. } \
  194. } \
  195. /* Return a pointer to the first element in the table 'head', under \
  196. * an arbitrary order. This order is stable under remove operations, \
  197. * but not under others. If the table is empty, return NULL. */ \
  198. static INLINE struct type ** \
  199. name##_HT_START(struct name *head) \
  200. { \
  201. unsigned b = 0; \
  202. while (b < head->hth_table_length) { \
  203. if (head->hth_table[b]) \
  204. return &head->hth_table[b]; \
  205. ++b; \
  206. } \
  207. return NULL; \
  208. } \
  209. /* Return the next element in 'head' after 'elm', under the arbitrary \
  210. * order used by HT_START. If there are no more elements, return \
  211. * NULL. If 'elm' is to be removed from the table, you must call \
  212. * this function for the next value before you remove it. \
  213. */ \
  214. static INLINE struct type ** \
  215. name##_HT_NEXT(struct name *head, struct type **elm) \
  216. { \
  217. if ((*elm)->field.hte_next) { \
  218. return &(*elm)->field.hte_next; \
  219. } else { \
  220. unsigned b = ((*elm)->field.hte_hash % head->hth_table_length)+1; \
  221. while (b < head->hth_table_length) { \
  222. if (head->hth_table[b]) \
  223. return &head->hth_table[b]; \
  224. ++b; \
  225. } \
  226. return NULL; \
  227. } \
  228. } \
  229. static INLINE struct type ** \
  230. name##_HT_NEXT_RMV(struct name *head, struct type **elm) \
  231. { \
  232. unsigned h = (*elm)->field.hte_hash; \
  233. *elm = (*elm)->field.hte_next; \
  234. --head->hth_n_entries; \
  235. if (*elm) { \
  236. return elm; \
  237. } else { \
  238. unsigned b = (h % head->hth_table_length)+1; \
  239. while (b < head->hth_table_length) { \
  240. if (head->hth_table[b]) \
  241. return &head->hth_table[b]; \
  242. ++b; \
  243. } \
  244. return NULL; \
  245. } \
  246. }
  247. #define HT_GENERATE(name, type, field, hashfn, eqfn, load, mallocfn, \
  248. reallocfn, freefn) \
  249. static unsigned name##_PRIMES[] = { \
  250. 53, 97, 193, 389, \
  251. 769, 1543, 3079, 6151, \
  252. 12289, 24593, 49157, 98317, \
  253. 196613, 393241, 786433, 1572869, \
  254. 3145739, 6291469, 12582917, 25165843, \
  255. 50331653, 100663319, 201326611, 402653189, \
  256. 805306457, 1610612741 \
  257. }; \
  258. static unsigned name##_N_PRIMES = \
  259. sizeof(name##_PRIMES)/sizeof(name##_PRIMES[0]); \
  260. /* Expand the internal table of 'head' until it is large enough to \
  261. * hold 'size' elements. Return 0 on success, -1 on allocation \
  262. * failure. */ \
  263. int \
  264. name##_HT_GROW(struct name *head, unsigned size) \
  265. { \
  266. unsigned new_len, new_load_limit; \
  267. int prime_idx; \
  268. struct type **new_table; \
  269. if (head->hth_prime_idx == (int)name##_N_PRIMES - 1) \
  270. return 0; \
  271. if (head->hth_load_limit > size) \
  272. return 0; \
  273. prime_idx = head->hth_prime_idx; \
  274. do { \
  275. new_len = name##_PRIMES[++prime_idx]; \
  276. new_load_limit = (unsigned)(load*new_len); \
  277. } while (new_load_limit <= size && \
  278. prime_idx < (int)name##_N_PRIMES); \
  279. if ((new_table = mallocfn(new_len*sizeof(struct type*)))) { \
  280. unsigned b; \
  281. memset(new_table, 0, new_len*sizeof(struct type*)); \
  282. for (b = 0; b < head->hth_table_length; ++b) { \
  283. struct type *elm, *next; \
  284. unsigned b2; \
  285. elm = head->hth_table[b]; \
  286. while (elm) { \
  287. next = elm->field.hte_next; \
  288. b2 = elm->field.hte_hash % new_len; \
  289. elm->field.hte_next = new_table[b2]; \
  290. new_table[b2] = elm; \
  291. elm = next; \
  292. } \
  293. } \
  294. if (head->hth_table) \
  295. freefn(head->hth_table); \
  296. head->hth_table = new_table; \
  297. } else { \
  298. unsigned b, b2; \
  299. new_table = reallocfn(head->hth_table, new_len*sizeof(struct type*)); \
  300. if (!new_table) return -1; \
  301. memset(new_table + head->hth_table_length, 0, \
  302. (new_len - head->hth_table_length)*sizeof(struct type*)); \
  303. for (b=0; b < head->hth_table_length; ++b) { \
  304. struct type *e, **pE; \
  305. for (pE = &new_table[b], e = *pE; e != NULL; e = *pE) { \
  306. b2 = e->field.hte_hash % new_len; \
  307. if (b2 == b) { \
  308. pE = &e->field.hte_next; \
  309. } else { \
  310. *pE = e->field.hte_next; \
  311. e->field.hte_next = new_table[b2]; \
  312. new_table[b2] = e; \
  313. } \
  314. } \
  315. } \
  316. head->hth_table = new_table; \
  317. } \
  318. head->hth_table_length = new_len; \
  319. head->hth_prime_idx = prime_idx; \
  320. head->hth_load_limit = new_load_limit; \
  321. return 0; \
  322. } \
  323. /* Free all storage held by 'head'. Does not free 'head' itself, or \
  324. * individual elements. */ \
  325. void \
  326. name##_HT_CLEAR(struct name *head) \
  327. { \
  328. if (head->hth_table) \
  329. freefn(head->hth_table); \
  330. head->hth_table_length = 0; \
  331. HT_INIT(head); \
  332. } \
  333. /* Debugging helper: return false iff the representation of 'head' is \
  334. * internally consistent. */ \
  335. int \
  336. _##name##_HT_REP_IS_BAD(struct name *head) \
  337. { \
  338. unsigned n, i; \
  339. struct type *elm; \
  340. if (!head->hth_table_length) { \
  341. if (!head->hth_table && !head->hth_n_entries && \
  342. !head->hth_load_limit && head->hth_prime_idx == -1) \
  343. return 0; \
  344. else \
  345. return 1; \
  346. } \
  347. if (!head->hth_table || head->hth_prime_idx < 0 || \
  348. !head->hth_load_limit) \
  349. return 2; \
  350. if (head->hth_n_entries > head->hth_load_limit) \
  351. return 3; \
  352. if (head->hth_table_length != name##_PRIMES[head->hth_prime_idx]) \
  353. return 4; \
  354. if (head->hth_load_limit != (unsigned)(load*head->hth_table_length)) \
  355. return 5; \
  356. for (n = i = 0; i < head->hth_table_length; ++i) { \
  357. for (elm = head->hth_table[i]; elm; elm = elm->field.hte_next) { \
  358. if (elm->field.hte_hash != hashfn(elm)) \
  359. return 1000 + i; \
  360. if ((elm->field.hte_hash % head->hth_table_length) != i) \
  361. return 10000 + i; \
  362. ++n; \
  363. } \
  364. } \
  365. if (n != head->hth_n_entries) \
  366. return 6; \
  367. return 0; \
  368. }
  369. /*
  370. * Copyright 2005, Nick Mathewson. Implementation logic is adapted from code
  371. * by Cristopher Clark, retrofit to allow drop-in memory management, and to
  372. * use the same interface as Niels Provos's HT_H. I'm not sure whether this
  373. * is a derived work any more, but whether it is or not, the license below
  374. * applies.
  375. *
  376. * Copyright (c) 2002, Christopher Clark
  377. * All rights reserved.
  378. *
  379. * Redistribution and use in source and binary forms, with or without
  380. * modification, are permitted provided that the following conditions
  381. * are met:
  382. *
  383. * * Redistributions of source code must retain the above copyright
  384. * notice, this list of conditions and the following disclaimer.
  385. *
  386. * * Redistributions in binary form must reproduce the above copyright
  387. * notice, this list of conditions and the following disclaimer in the
  388. * documentation and/or other materials provided with the distribution.
  389. *
  390. * * Neither the name of the original author; nor the names of any contributors
  391. * may be used to endorse or promote products derived from this software
  392. * without specific prior written permission.
  393. *
  394. *
  395. * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
  396. * "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
  397. * LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
  398. * A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER
  399. * OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL,
  400. * EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO,
  401. * PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR
  402. * PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF
  403. * LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING
  404. * NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
  405. * SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
  406. */
  407. #endif