rcupdate.c 8.2 KB

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  1. /*
  2. * Read-Copy Update mechanism for mutual exclusion
  3. *
  4. * This program is free software; you can redistribute it and/or modify
  5. * it under the terms of the GNU General Public License as published by
  6. * the Free Software Foundation; either version 2 of the License, or
  7. * (at your option) any later version.
  8. *
  9. * This program is distributed in the hope that it will be useful,
  10. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  11. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  12. * GNU General Public License for more details.
  13. *
  14. * You should have received a copy of the GNU General Public License
  15. * along with this program; if not, write to the Free Software
  16. * Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA.
  17. *
  18. * Copyright IBM Corporation, 2001
  19. *
  20. * Authors: Dipankar Sarma <dipankar@in.ibm.com>
  21. * Manfred Spraul <manfred@colorfullife.com>
  22. *
  23. * Based on the original work by Paul McKenney <paulmck@us.ibm.com>
  24. * and inputs from Rusty Russell, Andrea Arcangeli and Andi Kleen.
  25. * Papers:
  26. * http://www.rdrop.com/users/paulmck/paper/rclockpdcsproof.pdf
  27. * http://lse.sourceforge.net/locking/rclock_OLS.2001.05.01c.sc.pdf (OLS2001)
  28. *
  29. * For detailed explanation of Read-Copy Update mechanism see -
  30. * http://lse.sourceforge.net/locking/rcupdate.html
  31. *
  32. */
  33. #include <linux/types.h>
  34. #include <linux/kernel.h>
  35. #include <linux/init.h>
  36. #include <linux/spinlock.h>
  37. #include <linux/smp.h>
  38. #include <linux/interrupt.h>
  39. #include <linux/sched.h>
  40. #include <asm/atomic.h>
  41. #include <linux/bitops.h>
  42. #include <linux/percpu.h>
  43. #include <linux/notifier.h>
  44. #include <linux/cpu.h>
  45. #include <linux/mutex.h>
  46. #include <linux/module.h>
  47. #include <linux/hardirq.h>
  48. #ifdef CONFIG_DEBUG_LOCK_ALLOC
  49. static struct lock_class_key rcu_lock_key;
  50. struct lockdep_map rcu_lock_map =
  51. STATIC_LOCKDEP_MAP_INIT("rcu_read_lock", &rcu_lock_key);
  52. EXPORT_SYMBOL_GPL(rcu_lock_map);
  53. static struct lock_class_key rcu_bh_lock_key;
  54. struct lockdep_map rcu_bh_lock_map =
  55. STATIC_LOCKDEP_MAP_INIT("rcu_read_lock_bh", &rcu_bh_lock_key);
  56. EXPORT_SYMBOL_GPL(rcu_bh_lock_map);
  57. static struct lock_class_key rcu_sched_lock_key;
  58. struct lockdep_map rcu_sched_lock_map =
  59. STATIC_LOCKDEP_MAP_INIT("rcu_read_lock_sched", &rcu_sched_lock_key);
  60. EXPORT_SYMBOL_GPL(rcu_sched_lock_map);
  61. #endif
  62. #ifdef CONFIG_DEBUG_LOCK_ALLOC
  63. int debug_lockdep_rcu_enabled(void)
  64. {
  65. return rcu_scheduler_active && debug_locks &&
  66. current->lockdep_recursion == 0;
  67. }
  68. EXPORT_SYMBOL_GPL(debug_lockdep_rcu_enabled);
  69. /**
  70. * rcu_read_lock_bh_held() - might we be in RCU-bh read-side critical section?
  71. *
  72. * Check for bottom half being disabled, which covers both the
  73. * CONFIG_PROVE_RCU and not cases. Note that if someone uses
  74. * rcu_read_lock_bh(), but then later enables BH, lockdep (if enabled)
  75. * will show the situation. This is useful for debug checks in functions
  76. * that require that they be called within an RCU read-side critical
  77. * section.
  78. *
  79. * Check debug_lockdep_rcu_enabled() to prevent false positives during boot.
  80. */
  81. int rcu_read_lock_bh_held(void)
  82. {
  83. if (!debug_lockdep_rcu_enabled())
  84. return 1;
  85. return in_softirq() || irqs_disabled();
  86. }
  87. EXPORT_SYMBOL_GPL(rcu_read_lock_bh_held);
  88. #endif /* #ifdef CONFIG_DEBUG_LOCK_ALLOC */
  89. /*
  90. * Awaken the corresponding synchronize_rcu() instance now that a
  91. * grace period has elapsed.
  92. */
  93. void wakeme_after_rcu(struct rcu_head *head)
  94. {
  95. struct rcu_synchronize *rcu;
  96. rcu = container_of(head, struct rcu_synchronize, head);
  97. complete(&rcu->completion);
  98. }
  99. #ifdef CONFIG_PROVE_RCU
  100. /*
  101. * wrapper function to avoid #include problems.
  102. */
  103. int rcu_my_thread_group_empty(void)
  104. {
  105. return thread_group_empty(current);
  106. }
  107. EXPORT_SYMBOL_GPL(rcu_my_thread_group_empty);
  108. #endif /* #ifdef CONFIG_PROVE_RCU */
  109. #ifdef CONFIG_DEBUG_OBJECTS_RCU_HEAD
  110. static inline void debug_init_rcu_head(struct rcu_head *head)
  111. {
  112. debug_object_init(head, &rcuhead_debug_descr);
  113. }
  114. static inline void debug_rcu_head_free(struct rcu_head *head)
  115. {
  116. debug_object_free(head, &rcuhead_debug_descr);
  117. }
  118. /*
  119. * fixup_init is called when:
  120. * - an active object is initialized
  121. */
  122. static int rcuhead_fixup_init(void *addr, enum debug_obj_state state)
  123. {
  124. struct rcu_head *head = addr;
  125. switch (state) {
  126. case ODEBUG_STATE_ACTIVE:
  127. /*
  128. * Ensure that queued callbacks are all executed.
  129. * If we detect that we are nested in a RCU read-side critical
  130. * section, we should simply fail, otherwise we would deadlock.
  131. */
  132. if (rcu_preempt_depth() != 0 || preempt_count() != 0 ||
  133. irqs_disabled()) {
  134. WARN_ON(1);
  135. return 0;
  136. }
  137. rcu_barrier();
  138. rcu_barrier_sched();
  139. rcu_barrier_bh();
  140. debug_object_init(head, &rcuhead_debug_descr);
  141. return 1;
  142. default:
  143. return 0;
  144. }
  145. }
  146. /*
  147. * fixup_activate is called when:
  148. * - an active object is activated
  149. * - an unknown object is activated (might be a statically initialized object)
  150. * Activation is performed internally by call_rcu().
  151. */
  152. static int rcuhead_fixup_activate(void *addr, enum debug_obj_state state)
  153. {
  154. struct rcu_head *head = addr;
  155. switch (state) {
  156. case ODEBUG_STATE_NOTAVAILABLE:
  157. /*
  158. * This is not really a fixup. We just make sure that it is
  159. * tracked in the object tracker.
  160. */
  161. debug_object_init(head, &rcuhead_debug_descr);
  162. debug_object_activate(head, &rcuhead_debug_descr);
  163. return 0;
  164. case ODEBUG_STATE_ACTIVE:
  165. /*
  166. * Ensure that queued callbacks are all executed.
  167. * If we detect that we are nested in a RCU read-side critical
  168. * section, we should simply fail, otherwise we would deadlock.
  169. */
  170. if (rcu_preempt_depth() != 0 || preempt_count() != 0 ||
  171. irqs_disabled()) {
  172. WARN_ON(1);
  173. return 0;
  174. }
  175. rcu_barrier();
  176. rcu_barrier_sched();
  177. rcu_barrier_bh();
  178. debug_object_activate(head, &rcuhead_debug_descr);
  179. return 1;
  180. default:
  181. return 0;
  182. }
  183. }
  184. /*
  185. * fixup_free is called when:
  186. * - an active object is freed
  187. */
  188. static int rcuhead_fixup_free(void *addr, enum debug_obj_state state)
  189. {
  190. struct rcu_head *head = addr;
  191. switch (state) {
  192. case ODEBUG_STATE_ACTIVE:
  193. /*
  194. * Ensure that queued callbacks are all executed.
  195. * If we detect that we are nested in a RCU read-side critical
  196. * section, we should simply fail, otherwise we would deadlock.
  197. * Note that the machinery to reliably determine whether
  198. * or not we are in an RCU read-side critical section
  199. * exists only in the preemptible RCU implementations
  200. * (TINY_PREEMPT_RCU and TREE_PREEMPT_RCU), which is why
  201. * DEBUG_OBJECTS_RCU_HEAD is disallowed if !PREEMPT.
  202. */
  203. if (rcu_preempt_depth() != 0 || preempt_count() != 0 ||
  204. irqs_disabled()) {
  205. WARN_ON(1);
  206. return 0;
  207. }
  208. rcu_barrier();
  209. rcu_barrier_sched();
  210. rcu_barrier_bh();
  211. debug_object_free(head, &rcuhead_debug_descr);
  212. return 1;
  213. default:
  214. return 0;
  215. }
  216. }
  217. /**
  218. * init_rcu_head_on_stack() - initialize on-stack rcu_head for debugobjects
  219. * @head: pointer to rcu_head structure to be initialized
  220. *
  221. * This function informs debugobjects of a new rcu_head structure that
  222. * has been allocated as an auto variable on the stack. This function
  223. * is not required for rcu_head structures that are statically defined or
  224. * that are dynamically allocated on the heap. This function has no
  225. * effect for !CONFIG_DEBUG_OBJECTS_RCU_HEAD kernel builds.
  226. */
  227. void init_rcu_head_on_stack(struct rcu_head *head)
  228. {
  229. debug_object_init_on_stack(head, &rcuhead_debug_descr);
  230. }
  231. EXPORT_SYMBOL_GPL(init_rcu_head_on_stack);
  232. /**
  233. * destroy_rcu_head_on_stack() - destroy on-stack rcu_head for debugobjects
  234. * @head: pointer to rcu_head structure to be initialized
  235. *
  236. * This function informs debugobjects that an on-stack rcu_head structure
  237. * is about to go out of scope. As with init_rcu_head_on_stack(), this
  238. * function is not required for rcu_head structures that are statically
  239. * defined or that are dynamically allocated on the heap. Also as with
  240. * init_rcu_head_on_stack(), this function has no effect for
  241. * !CONFIG_DEBUG_OBJECTS_RCU_HEAD kernel builds.
  242. */
  243. void destroy_rcu_head_on_stack(struct rcu_head *head)
  244. {
  245. debug_object_free(head, &rcuhead_debug_descr);
  246. }
  247. EXPORT_SYMBOL_GPL(destroy_rcu_head_on_stack);
  248. struct debug_obj_descr rcuhead_debug_descr = {
  249. .name = "rcu_head",
  250. .fixup_init = rcuhead_fixup_init,
  251. .fixup_activate = rcuhead_fixup_activate,
  252. .fixup_free = rcuhead_fixup_free,
  253. };
  254. EXPORT_SYMBOL_GPL(rcuhead_debug_descr);
  255. #endif /* #ifdef CONFIG_DEBUG_OBJECTS_RCU_HEAD */