queue.h 28 KB

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  1. /*-
  2. * Copyright (c) 1991, 1993
  3. * The Regents of the University of California. All rights reserved.
  4. *
  5. * Redistribution and use in source and binary forms, with or without
  6. * modification, are permitted provided that the following conditions
  7. * are met:
  8. * 1. Redistributions of source code must retain the above copyright
  9. * notice, this list of conditions and the following disclaimer.
  10. * 2. Redistributions in binary form must reproduce the above copyright
  11. * notice, this list of conditions and the following disclaimer in the
  12. * documentation and/or other materials provided with the distribution.
  13. * 4. Neither the name of the University nor the names of its contributors
  14. * may be used to endorse or promote products derived from this software
  15. * without specific prior written permission.
  16. *
  17. * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
  18. * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
  19. * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
  20. * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
  21. * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
  22. * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
  23. * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
  24. * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
  25. * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
  26. * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
  27. * SUCH DAMAGE.
  28. *
  29. * @(#)queue.h 8.5 (Berkeley) 8/20/94
  30. * $FreeBSD$
  31. */
  32. #ifndef _SYS_QUEUE_H_
  33. #define _SYS_QUEUE_H_
  34. #ifdef __cplusplus
  35. extern "C" {
  36. #endif
  37. #include "../ext4_config.h"
  38. /*
  39. * This file defines four types of data structures: singly-linked lists,
  40. * singly-linked tail queues, lists and tail queues.
  41. *
  42. * A singly-linked list is headed by a single forward pointer. The elements
  43. * are singly linked for minimum space and pointer manipulation overhead at
  44. * the expense of O(n) removal for arbitrary elements. New elements can be
  45. * added to the list after an existing element or at the head of the list.
  46. * Elements being removed from the head of the list should use the explicit
  47. * macro for this purpose for optimum efficiency. A singly-linked list may
  48. * only be traversed in the forward direction. Singly-linked lists are ideal
  49. * for applications with large datasets and few or no removals or for
  50. * implementing a LIFO queue.
  51. *
  52. * A singly-linked tail queue is headed by a pair of pointers, one to the
  53. * head of the list and the other to the tail of the list. The elements are
  54. * singly linked for minimum space and pointer manipulation overhead at the
  55. * expense of O(n) removal for arbitrary elements. New elements can be added
  56. * to the list after an existing element, at the head of the list, or at the
  57. * end of the list. Elements being removed from the head of the tail queue
  58. * should use the explicit macro for this purpose for optimum efficiency.
  59. * A singly-linked tail queue may only be traversed in the forward direction.
  60. * Singly-linked tail queues are ideal for applications with large datasets
  61. * and few or no removals or for implementing a FIFO queue.
  62. *
  63. * A list is headed by a single forward pointer (or an array of forward
  64. * pointers for a hash table header). The elements are doubly linked
  65. * so that an arbitrary element can be removed without a need to
  66. * traverse the list. New elements can be added to the list before
  67. * or after an existing element or at the head of the list. A list
  68. * may be traversed in either direction.
  69. *
  70. * A tail queue is headed by a pair of pointers, one to the head of the
  71. * list and the other to the tail of the list. The elements are doubly
  72. * linked so that an arbitrary element can be removed without a need to
  73. * traverse the list. New elements can be added to the list before or
  74. * after an existing element, at the head of the list, or at the end of
  75. * the list. A tail queue may be traversed in either direction.
  76. *
  77. * For details on the use of these macros, see the queue(3) manual page.
  78. *
  79. *
  80. * SLIST LIST STAILQ TAILQ
  81. * _HEAD + + + +
  82. * _HEAD_INITIALIZER + + + +
  83. * _ENTRY + + + +
  84. * _INIT + + + +
  85. * _EMPTY + + + +
  86. * _FIRST + + + +
  87. * _NEXT + + + +
  88. * _PREV - + - +
  89. * _LAST - - + +
  90. * _FOREACH + + + +
  91. * _FOREACH_FROM + + + +
  92. * _FOREACH_SAFE + + + +
  93. * _FOREACH_FROM_SAFE + + + +
  94. * _FOREACH_REVERSE - - - +
  95. * _FOREACH_REVERSE_FROM - - - +
  96. * _FOREACH_REVERSE_SAFE - - - +
  97. * _FOREACH_REVERSE_FROM_SAFE - - - +
  98. * _INSERT_HEAD + + + +
  99. * _INSERT_BEFORE - + - +
  100. * _INSERT_AFTER + + + +
  101. * _INSERT_TAIL - - + +
  102. * _CONCAT - - + +
  103. * _REMOVE_AFTER + - + -
  104. * _REMOVE_HEAD + - + -
  105. * _REMOVE + + + +
  106. * _SWAP + + + +
  107. *
  108. */
  109. #ifdef QUEUE_MACRO_DEBUG
  110. /* Store the last 2 places the queue element or head was altered */
  111. struct qm_trace {
  112. unsigned long lastline;
  113. unsigned long prevline;
  114. const char *lastfile;
  115. const char *prevfile;
  116. };
  117. #define TRACEBUF struct qm_trace trace;
  118. #define TRACEBUF_INITIALIZER { __LINE__, 0, __FILE__, NULL } ,
  119. #define TRASHIT(x) do {(x) = (void *)-1;} while (0)
  120. #define QMD_SAVELINK(name, link) void **name = (void *)&(link)
  121. #define QMD_TRACE_HEAD(head) do { \
  122. (head)->trace.prevline = (head)->trace.lastline; \
  123. (head)->trace.prevfile = (head)->trace.lastfile; \
  124. (head)->trace.lastline = __LINE__; \
  125. (head)->trace.lastfile = __FILE__; \
  126. } while (0)
  127. #define QMD_TRACE_ELEM(elem) do { \
  128. (elem)->trace.prevline = (elem)->trace.lastline; \
  129. (elem)->trace.prevfile = (elem)->trace.lastfile; \
  130. (elem)->trace.lastline = __LINE__; \
  131. (elem)->trace.lastfile = __FILE__; \
  132. } while (0)
  133. #else
  134. #define QMD_TRACE_ELEM(elem)
  135. #define QMD_TRACE_HEAD(head)
  136. #define QMD_SAVELINK(name, link)
  137. #define TRACEBUF
  138. #define TRACEBUF_INITIALIZER
  139. #define TRASHIT(x)
  140. #endif /* QUEUE_MACRO_DEBUG */
  141. /*
  142. * Singly-linked List declarations.
  143. */
  144. #define SLIST_HEAD(name, type) \
  145. struct name { \
  146. struct type *slh_first; /* first element */ \
  147. }
  148. #define SLIST_HEAD_INITIALIZER(head) \
  149. { NULL }
  150. #define SLIST_ENTRY(type) \
  151. struct { \
  152. struct type *sle_next; /* next element */ \
  153. }
  154. /*
  155. * Singly-linked List functions.
  156. */
  157. #define SLIST_EMPTY(head) ((head)->slh_first == NULL)
  158. #define SLIST_FIRST(head) ((head)->slh_first)
  159. #define SLIST_FOREACH(var, head, field) \
  160. for ((var) = SLIST_FIRST((head)); \
  161. (var); \
  162. (var) = SLIST_NEXT((var), field))
  163. #define SLIST_FOREACH_FROM(var, head, field) \
  164. for ((var) = ((var) ? (var) : SLIST_FIRST((head))); \
  165. (var); \
  166. (var) = SLIST_NEXT((var), field))
  167. #define SLIST_FOREACH_SAFE(var, head, field, tvar) \
  168. for ((var) = SLIST_FIRST((head)); \
  169. (var) && ((tvar) = SLIST_NEXT((var), field), 1); \
  170. (var) = (tvar))
  171. #define SLIST_FOREACH_FROM_SAFE(var, head, field, tvar) \
  172. for ((var) = ((var) ? (var) : SLIST_FIRST((head))); \
  173. (var) && ((tvar) = SLIST_NEXT((var), field), 1); \
  174. (var) = (tvar))
  175. #define SLIST_FOREACH_PREVPTR(var, varp, head, field) \
  176. for ((varp) = &SLIST_FIRST((head)); \
  177. ((var) = *(varp)) != NULL; \
  178. (varp) = &SLIST_NEXT((var), field))
  179. #define SLIST_INIT(head) do { \
  180. SLIST_FIRST((head)) = NULL; \
  181. } while (0)
  182. #define SLIST_INSERT_AFTER(slistelm, elm, field) do { \
  183. SLIST_NEXT((elm), field) = SLIST_NEXT((slistelm), field); \
  184. SLIST_NEXT((slistelm), field) = (elm); \
  185. } while (0)
  186. #define SLIST_INSERT_HEAD(head, elm, field) do { \
  187. SLIST_NEXT((elm), field) = SLIST_FIRST((head)); \
  188. SLIST_FIRST((head)) = (elm); \
  189. } while (0)
  190. #define SLIST_NEXT(elm, field) ((elm)->field.sle_next)
  191. #define SLIST_REMOVE(head, elm, type, field) do { \
  192. QMD_SAVELINK(oldnext, (elm)->field.sle_next); \
  193. if (SLIST_FIRST((head)) == (elm)) { \
  194. SLIST_REMOVE_HEAD((head), field); \
  195. } \
  196. else { \
  197. struct type *curelm = SLIST_FIRST((head)); \
  198. while (SLIST_NEXT(curelm, field) != (elm)) \
  199. curelm = SLIST_NEXT(curelm, field); \
  200. SLIST_REMOVE_AFTER(curelm, field); \
  201. } \
  202. TRASHIT(*oldnext); \
  203. } while (0)
  204. #define SLIST_REMOVE_AFTER(elm, field) do { \
  205. SLIST_NEXT(elm, field) = \
  206. SLIST_NEXT(SLIST_NEXT(elm, field), field); \
  207. } while (0)
  208. #define SLIST_REMOVE_HEAD(head, field) do { \
  209. SLIST_FIRST((head)) = SLIST_NEXT(SLIST_FIRST((head)), field); \
  210. } while (0)
  211. #define SLIST_SWAP(head1, head2, type) do { \
  212. struct type *swap_first = SLIST_FIRST(head1); \
  213. SLIST_FIRST(head1) = SLIST_FIRST(head2); \
  214. SLIST_FIRST(head2) = swap_first; \
  215. } while (0)
  216. /*
  217. * Singly-linked Tail queue declarations.
  218. */
  219. #define STAILQ_HEAD(name, type) \
  220. struct name { \
  221. struct type *stqh_first;/* first element */ \
  222. struct type **stqh_last;/* addr of last next element */ \
  223. }
  224. #define STAILQ_HEAD_INITIALIZER(head) \
  225. { NULL, &(head).stqh_first }
  226. #define STAILQ_ENTRY(type) \
  227. struct { \
  228. struct type *stqe_next; /* next element */ \
  229. }
  230. /*
  231. * Singly-linked Tail queue functions.
  232. */
  233. #define STAILQ_CONCAT(head1, head2) do { \
  234. if (!STAILQ_EMPTY((head2))) { \
  235. *(head1)->stqh_last = (head2)->stqh_first; \
  236. (head1)->stqh_last = (head2)->stqh_last; \
  237. STAILQ_INIT((head2)); \
  238. } \
  239. } while (0)
  240. #define STAILQ_EMPTY(head) ((head)->stqh_first == NULL)
  241. #define STAILQ_FIRST(head) ((head)->stqh_first)
  242. #define STAILQ_FOREACH(var, head, field) \
  243. for((var) = STAILQ_FIRST((head)); \
  244. (var); \
  245. (var) = STAILQ_NEXT((var), field))
  246. #define STAILQ_FOREACH_FROM(var, head, field) \
  247. for ((var) = ((var) ? (var) : STAILQ_FIRST((head))); \
  248. (var); \
  249. (var) = STAILQ_NEXT((var), field))
  250. #define STAILQ_FOREACH_SAFE(var, head, field, tvar) \
  251. for ((var) = STAILQ_FIRST((head)); \
  252. (var) && ((tvar) = STAILQ_NEXT((var), field), 1); \
  253. (var) = (tvar))
  254. #define STAILQ_FOREACH_FROM_SAFE(var, head, field, tvar) \
  255. for ((var) = ((var) ? (var) : STAILQ_FIRST((head))); \
  256. (var) && ((tvar) = STAILQ_NEXT((var), field), 1); \
  257. (var) = (tvar))
  258. #define STAILQ_INIT(head) do { \
  259. STAILQ_FIRST((head)) = NULL; \
  260. (head)->stqh_last = &STAILQ_FIRST((head)); \
  261. } while (0)
  262. #define STAILQ_INSERT_AFTER(head, tqelm, elm, field) do { \
  263. if ((STAILQ_NEXT((elm), field) = STAILQ_NEXT((tqelm), field)) == NULL)\
  264. (head)->stqh_last = &STAILQ_NEXT((elm), field); \
  265. STAILQ_NEXT((tqelm), field) = (elm); \
  266. } while (0)
  267. #define STAILQ_INSERT_HEAD(head, elm, field) do { \
  268. if ((STAILQ_NEXT((elm), field) = STAILQ_FIRST((head))) == NULL) \
  269. (head)->stqh_last = &STAILQ_NEXT((elm), field); \
  270. STAILQ_FIRST((head)) = (elm); \
  271. } while (0)
  272. #define STAILQ_INSERT_TAIL(head, elm, field) do { \
  273. STAILQ_NEXT((elm), field) = NULL; \
  274. *(head)->stqh_last = (elm); \
  275. (head)->stqh_last = &STAILQ_NEXT((elm), field); \
  276. } while (0)
  277. #define STAILQ_LAST(head, type, field) \
  278. (STAILQ_EMPTY((head)) ? NULL : \
  279. __containerof((head)->stqh_last, struct type, field.stqe_next))
  280. #define STAILQ_NEXT(elm, field) ((elm)->field.stqe_next)
  281. #define STAILQ_REMOVE(head, elm, type, field) do { \
  282. QMD_SAVELINK(oldnext, (elm)->field.stqe_next); \
  283. if (STAILQ_FIRST((head)) == (elm)) { \
  284. STAILQ_REMOVE_HEAD((head), field); \
  285. } \
  286. else { \
  287. struct type *curelm = STAILQ_FIRST((head)); \
  288. while (STAILQ_NEXT(curelm, field) != (elm)) \
  289. curelm = STAILQ_NEXT(curelm, field); \
  290. STAILQ_REMOVE_AFTER(head, curelm, field); \
  291. } \
  292. TRASHIT(*oldnext); \
  293. } while (0)
  294. #define STAILQ_REMOVE_AFTER(head, elm, field) do { \
  295. if ((STAILQ_NEXT(elm, field) = \
  296. STAILQ_NEXT(STAILQ_NEXT(elm, field), field)) == NULL) \
  297. (head)->stqh_last = &STAILQ_NEXT((elm), field); \
  298. } while (0)
  299. #define STAILQ_REMOVE_HEAD(head, field) do { \
  300. if ((STAILQ_FIRST((head)) = \
  301. STAILQ_NEXT(STAILQ_FIRST((head)), field)) == NULL) \
  302. (head)->stqh_last = &STAILQ_FIRST((head)); \
  303. } while (0)
  304. #define STAILQ_SWAP(head1, head2, type) do { \
  305. struct type *swap_first = STAILQ_FIRST(head1); \
  306. struct type **swap_last = (head1)->stqh_last; \
  307. STAILQ_FIRST(head1) = STAILQ_FIRST(head2); \
  308. (head1)->stqh_last = (head2)->stqh_last; \
  309. STAILQ_FIRST(head2) = swap_first; \
  310. (head2)->stqh_last = swap_last; \
  311. if (STAILQ_EMPTY(head1)) \
  312. (head1)->stqh_last = &STAILQ_FIRST(head1); \
  313. if (STAILQ_EMPTY(head2)) \
  314. (head2)->stqh_last = &STAILQ_FIRST(head2); \
  315. } while (0)
  316. /*
  317. * List declarations.
  318. */
  319. #define LIST_HEAD(name, type) \
  320. struct name { \
  321. struct type *lh_first; /* first element */ \
  322. }
  323. #define LIST_HEAD_INITIALIZER(head) \
  324. { NULL }
  325. #define LIST_ENTRY(type) \
  326. struct { \
  327. struct type *le_next; /* next element */ \
  328. struct type **le_prev; /* address of previous next element */ \
  329. }
  330. /*
  331. * List functions.
  332. */
  333. #if (defined(_KERNEL) && defined(INVARIANTS))
  334. #define QMD_LIST_CHECK_HEAD(head, field) do { \
  335. if (LIST_FIRST((head)) != NULL && \
  336. LIST_FIRST((head))->field.le_prev != \
  337. &LIST_FIRST((head))) \
  338. panic("Bad list head %p first->prev != head", (head)); \
  339. } while (0)
  340. #define QMD_LIST_CHECK_NEXT(elm, field) do { \
  341. if (LIST_NEXT((elm), field) != NULL && \
  342. LIST_NEXT((elm), field)->field.le_prev != \
  343. &((elm)->field.le_next)) \
  344. panic("Bad link elm %p next->prev != elm", (elm)); \
  345. } while (0)
  346. #define QMD_LIST_CHECK_PREV(elm, field) do { \
  347. if (*(elm)->field.le_prev != (elm)) \
  348. panic("Bad link elm %p prev->next != elm", (elm)); \
  349. } while (0)
  350. #else
  351. #define QMD_LIST_CHECK_HEAD(head, field)
  352. #define QMD_LIST_CHECK_NEXT(elm, field)
  353. #define QMD_LIST_CHECK_PREV(elm, field)
  354. #endif /* (_KERNEL && INVARIANTS) */
  355. #define LIST_EMPTY(head) ((head)->lh_first == NULL)
  356. #define LIST_FIRST(head) ((head)->lh_first)
  357. #define LIST_FOREACH(var, head, field) \
  358. for ((var) = LIST_FIRST((head)); \
  359. (var); \
  360. (var) = LIST_NEXT((var), field))
  361. #define LIST_FOREACH_FROM(var, head, field) \
  362. for ((var) = ((var) ? (var) : LIST_FIRST((head))); \
  363. (var); \
  364. (var) = LIST_NEXT((var), field))
  365. #define LIST_FOREACH_SAFE(var, head, field, tvar) \
  366. for ((var) = LIST_FIRST((head)); \
  367. (var) && ((tvar) = LIST_NEXT((var), field), 1); \
  368. (var) = (tvar))
  369. #define LIST_FOREACH_FROM_SAFE(var, head, field, tvar) \
  370. for ((var) = ((var) ? (var) : LIST_FIRST((head))); \
  371. (var) && ((tvar) = LIST_NEXT((var), field), 1); \
  372. (var) = (tvar))
  373. #define LIST_INIT(head) do { \
  374. LIST_FIRST((head)) = NULL; \
  375. } while (0)
  376. #define LIST_INSERT_AFTER(listelm, elm, field) do { \
  377. QMD_LIST_CHECK_NEXT(listelm, field); \
  378. if ((LIST_NEXT((elm), field) = LIST_NEXT((listelm), field)) != NULL)\
  379. LIST_NEXT((listelm), field)->field.le_prev = \
  380. &LIST_NEXT((elm), field); \
  381. LIST_NEXT((listelm), field) = (elm); \
  382. (elm)->field.le_prev = &LIST_NEXT((listelm), field); \
  383. } while (0)
  384. #define LIST_INSERT_BEFORE(listelm, elm, field) do { \
  385. QMD_LIST_CHECK_PREV(listelm, field); \
  386. (elm)->field.le_prev = (listelm)->field.le_prev; \
  387. LIST_NEXT((elm), field) = (listelm); \
  388. *(listelm)->field.le_prev = (elm); \
  389. (listelm)->field.le_prev = &LIST_NEXT((elm), field); \
  390. } while (0)
  391. #define LIST_INSERT_HEAD(head, elm, field) do { \
  392. QMD_LIST_CHECK_HEAD((head), field); \
  393. if ((LIST_NEXT((elm), field) = LIST_FIRST((head))) != NULL) \
  394. LIST_FIRST((head))->field.le_prev = &LIST_NEXT((elm), field);\
  395. LIST_FIRST((head)) = (elm); \
  396. (elm)->field.le_prev = &LIST_FIRST((head)); \
  397. } while (0)
  398. #define LIST_NEXT(elm, field) ((elm)->field.le_next)
  399. #define LIST_PREV(elm, head, type, field) \
  400. ((elm)->field.le_prev == &LIST_FIRST((head)) ? NULL : \
  401. __containerof((elm)->field.le_prev, struct type, field.le_next))
  402. #define LIST_REMOVE(elm, field) do { \
  403. QMD_SAVELINK(oldnext, (elm)->field.le_next); \
  404. QMD_SAVELINK(oldprev, (elm)->field.le_prev); \
  405. QMD_LIST_CHECK_NEXT(elm, field); \
  406. QMD_LIST_CHECK_PREV(elm, field); \
  407. if (LIST_NEXT((elm), field) != NULL) \
  408. LIST_NEXT((elm), field)->field.le_prev = \
  409. (elm)->field.le_prev; \
  410. *(elm)->field.le_prev = LIST_NEXT((elm), field); \
  411. TRASHIT(*oldnext); \
  412. TRASHIT(*oldprev); \
  413. } while (0)
  414. #define LIST_SWAP(head1, head2, type, field) do { \
  415. struct type *swap_tmp = LIST_FIRST((head1)); \
  416. LIST_FIRST((head1)) = LIST_FIRST((head2)); \
  417. LIST_FIRST((head2)) = swap_tmp; \
  418. if ((swap_tmp = LIST_FIRST((head1))) != NULL) \
  419. swap_tmp->field.le_prev = &LIST_FIRST((head1)); \
  420. if ((swap_tmp = LIST_FIRST((head2))) != NULL) \
  421. swap_tmp->field.le_prev = &LIST_FIRST((head2)); \
  422. } while (0)
  423. /*
  424. * Tail queue declarations.
  425. */
  426. #define TAILQ_HEAD(name, type) \
  427. struct name { \
  428. struct type *tqh_first; /* first element */ \
  429. struct type **tqh_last; /* addr of last next element */ \
  430. TRACEBUF \
  431. }
  432. #define TAILQ_HEAD_INITIALIZER(head) \
  433. { NULL, &(head).tqh_first, TRACEBUF_INITIALIZER }
  434. #define TAILQ_ENTRY(type) \
  435. struct { \
  436. struct type *tqe_next; /* next element */ \
  437. struct type **tqe_prev; /* address of previous next element */ \
  438. TRACEBUF \
  439. }
  440. /*
  441. * Tail queue functions.
  442. */
  443. #if (defined(_KERNEL) && defined(INVARIANTS))
  444. #define QMD_TAILQ_CHECK_HEAD(head, field) do { \
  445. if (!TAILQ_EMPTY(head) && \
  446. TAILQ_FIRST((head))->field.tqe_prev != \
  447. &TAILQ_FIRST((head))) \
  448. panic("Bad tailq head %p first->prev != head", (head)); \
  449. } while (0)
  450. #define QMD_TAILQ_CHECK_TAIL(head, field) do { \
  451. if (*(head)->tqh_last != NULL) \
  452. panic("Bad tailq NEXT(%p->tqh_last) != NULL", (head)); \
  453. } while (0)
  454. #define QMD_TAILQ_CHECK_NEXT(elm, field) do { \
  455. if (TAILQ_NEXT((elm), field) != NULL && \
  456. TAILQ_NEXT((elm), field)->field.tqe_prev != \
  457. &((elm)->field.tqe_next)) \
  458. panic("Bad link elm %p next->prev != elm", (elm)); \
  459. } while (0)
  460. #define QMD_TAILQ_CHECK_PREV(elm, field) do { \
  461. if (*(elm)->field.tqe_prev != (elm)) \
  462. panic("Bad link elm %p prev->next != elm", (elm)); \
  463. } while (0)
  464. #else
  465. #define QMD_TAILQ_CHECK_HEAD(head, field)
  466. #define QMD_TAILQ_CHECK_TAIL(head, headname)
  467. #define QMD_TAILQ_CHECK_NEXT(elm, field)
  468. #define QMD_TAILQ_CHECK_PREV(elm, field)
  469. #endif /* (_KERNEL && INVARIANTS) */
  470. #define TAILQ_CONCAT(head1, head2, field) do { \
  471. if (!TAILQ_EMPTY(head2)) { \
  472. *(head1)->tqh_last = (head2)->tqh_first; \
  473. (head2)->tqh_first->field.tqe_prev = (head1)->tqh_last; \
  474. (head1)->tqh_last = (head2)->tqh_last; \
  475. TAILQ_INIT((head2)); \
  476. QMD_TRACE_HEAD(head1); \
  477. QMD_TRACE_HEAD(head2); \
  478. } \
  479. } while (0)
  480. #define TAILQ_EMPTY(head) ((head)->tqh_first == NULL)
  481. #define TAILQ_FIRST(head) ((head)->tqh_first)
  482. #define TAILQ_FOREACH(var, head, field) \
  483. for ((var) = TAILQ_FIRST((head)); \
  484. (var); \
  485. (var) = TAILQ_NEXT((var), field))
  486. #define TAILQ_FOREACH_FROM(var, head, field) \
  487. for ((var) = ((var) ? (var) : TAILQ_FIRST((head))); \
  488. (var); \
  489. (var) = TAILQ_NEXT((var), field))
  490. #define TAILQ_FOREACH_SAFE(var, head, field, tvar) \
  491. for ((var) = TAILQ_FIRST((head)); \
  492. (var) && ((tvar) = TAILQ_NEXT((var), field), 1); \
  493. (var) = (tvar))
  494. #define TAILQ_FOREACH_FROM_SAFE(var, head, field, tvar) \
  495. for ((var) = ((var) ? (var) : TAILQ_FIRST((head))); \
  496. (var) && ((tvar) = TAILQ_NEXT((var), field), 1); \
  497. (var) = (tvar))
  498. #define TAILQ_FOREACH_REVERSE(var, head, headname, field) \
  499. for ((var) = TAILQ_LAST((head), headname); \
  500. (var); \
  501. (var) = TAILQ_PREV((var), headname, field))
  502. #define TAILQ_FOREACH_REVERSE_FROM(var, head, headname, field) \
  503. for ((var) = ((var) ? (var) : TAILQ_LAST((head), headname)); \
  504. (var); \
  505. (var) = TAILQ_PREV((var), headname, field))
  506. #define TAILQ_FOREACH_REVERSE_SAFE(var, head, headname, field, tvar) \
  507. for ((var) = TAILQ_LAST((head), headname); \
  508. (var) && ((tvar) = TAILQ_PREV((var), headname, field), 1); \
  509. (var) = (tvar))
  510. #define TAILQ_FOREACH_REVERSE_FROM_SAFE(var, head, headname, field, tvar) \
  511. for ((var) = ((var) ? (var) : TAILQ_LAST((head), headname)); \
  512. (var) && ((tvar) = TAILQ_PREV((var), headname, field), 1); \
  513. (var) = (tvar))
  514. #define TAILQ_INIT(head) do { \
  515. TAILQ_FIRST((head)) = NULL; \
  516. (head)->tqh_last = &TAILQ_FIRST((head)); \
  517. QMD_TRACE_HEAD(head); \
  518. } while (0)
  519. #define TAILQ_INSERT_AFTER(head, listelm, elm, field) do { \
  520. QMD_TAILQ_CHECK_NEXT(listelm, field); \
  521. if ((TAILQ_NEXT((elm), field) = TAILQ_NEXT((listelm), field)) != NULL)\
  522. TAILQ_NEXT((elm), field)->field.tqe_prev = \
  523. &TAILQ_NEXT((elm), field); \
  524. else { \
  525. (head)->tqh_last = &TAILQ_NEXT((elm), field); \
  526. QMD_TRACE_HEAD(head); \
  527. } \
  528. TAILQ_NEXT((listelm), field) = (elm); \
  529. (elm)->field.tqe_prev = &TAILQ_NEXT((listelm), field); \
  530. QMD_TRACE_ELEM(&(elm)->field); \
  531. QMD_TRACE_ELEM(&(listelm)->field); \
  532. } while (0)
  533. #define TAILQ_INSERT_BEFORE(listelm, elm, field) do { \
  534. QMD_TAILQ_CHECK_PREV(listelm, field); \
  535. (elm)->field.tqe_prev = (listelm)->field.tqe_prev; \
  536. TAILQ_NEXT((elm), field) = (listelm); \
  537. *(listelm)->field.tqe_prev = (elm); \
  538. (listelm)->field.tqe_prev = &TAILQ_NEXT((elm), field); \
  539. QMD_TRACE_ELEM(&(elm)->field); \
  540. QMD_TRACE_ELEM(&(listelm)->field); \
  541. } while (0)
  542. #define TAILQ_INSERT_HEAD(head, elm, field) do { \
  543. QMD_TAILQ_CHECK_HEAD(head, field); \
  544. if ((TAILQ_NEXT((elm), field) = TAILQ_FIRST((head))) != NULL) \
  545. TAILQ_FIRST((head))->field.tqe_prev = \
  546. &TAILQ_NEXT((elm), field); \
  547. else \
  548. (head)->tqh_last = &TAILQ_NEXT((elm), field); \
  549. TAILQ_FIRST((head)) = (elm); \
  550. (elm)->field.tqe_prev = &TAILQ_FIRST((head)); \
  551. QMD_TRACE_HEAD(head); \
  552. QMD_TRACE_ELEM(&(elm)->field); \
  553. } while (0)
  554. #define TAILQ_INSERT_TAIL(head, elm, field) do { \
  555. QMD_TAILQ_CHECK_TAIL(head, field); \
  556. TAILQ_NEXT((elm), field) = NULL; \
  557. (elm)->field.tqe_prev = (head)->tqh_last; \
  558. *(head)->tqh_last = (elm); \
  559. (head)->tqh_last = &TAILQ_NEXT((elm), field); \
  560. QMD_TRACE_HEAD(head); \
  561. QMD_TRACE_ELEM(&(elm)->field); \
  562. } while (0)
  563. #define TAILQ_LAST(head, headname) \
  564. (*(((struct headname *)((head)->tqh_last))->tqh_last))
  565. #define TAILQ_NEXT(elm, field) ((elm)->field.tqe_next)
  566. #define TAILQ_PREV(elm, headname, field) \
  567. (*(((struct headname *)((elm)->field.tqe_prev))->tqh_last))
  568. #define TAILQ_REMOVE(head, elm, field) do { \
  569. QMD_SAVELINK(oldnext, (elm)->field.tqe_next); \
  570. QMD_SAVELINK(oldprev, (elm)->field.tqe_prev); \
  571. QMD_TAILQ_CHECK_NEXT(elm, field); \
  572. QMD_TAILQ_CHECK_PREV(elm, field); \
  573. if ((TAILQ_NEXT((elm), field)) != NULL) \
  574. TAILQ_NEXT((elm), field)->field.tqe_prev = \
  575. (elm)->field.tqe_prev; \
  576. else { \
  577. (head)->tqh_last = (elm)->field.tqe_prev; \
  578. QMD_TRACE_HEAD(head); \
  579. } \
  580. *(elm)->field.tqe_prev = TAILQ_NEXT((elm), field); \
  581. TRASHIT(*oldnext); \
  582. TRASHIT(*oldprev); \
  583. QMD_TRACE_ELEM(&(elm)->field); \
  584. } while (0)
  585. #define TAILQ_SWAP(head1, head2, type, field) do { \
  586. struct type *swap_first = (head1)->tqh_first; \
  587. struct type **swap_last = (head1)->tqh_last; \
  588. (head1)->tqh_first = (head2)->tqh_first; \
  589. (head1)->tqh_last = (head2)->tqh_last; \
  590. (head2)->tqh_first = swap_first; \
  591. (head2)->tqh_last = swap_last; \
  592. if ((swap_first = (head1)->tqh_first) != NULL) \
  593. swap_first->field.tqe_prev = &(head1)->tqh_first; \
  594. else \
  595. (head1)->tqh_last = &(head1)->tqh_first; \
  596. if ((swap_first = (head2)->tqh_first) != NULL) \
  597. swap_first->field.tqe_prev = &(head2)->tqh_first; \
  598. else \
  599. (head2)->tqh_last = &(head2)->tqh_first; \
  600. } while (0)
  601. #ifdef __cplusplus
  602. }
  603. #endif
  604. #endif /* !_SYS_QUEUE_H_ */