tree.h 28 KB

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  1. /*
  2. * Read-Copy Update mechanism for mutual exclusion (tree-based version)
  3. * Internal non-public definitions.
  4. *
  5. * This program is free software; you can redistribute it and/or modify
  6. * it under the terms of the GNU General Public License as published by
  7. * the Free Software Foundation; either version 2 of the License, or
  8. * (at your option) any later version.
  9. *
  10. * This program is distributed in the hope that it will be useful,
  11. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  12. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  13. * GNU General Public License for more details.
  14. *
  15. * You should have received a copy of the GNU General Public License
  16. * along with this program; if not, you can access it online at
  17. * http://www.gnu.org/licenses/gpl-2.0.html.
  18. *
  19. * Copyright IBM Corporation, 2008
  20. *
  21. * Author: Ingo Molnar <mingo@elte.hu>
  22. * Paul E. McKenney <paulmck@linux.vnet.ibm.com>
  23. */
  24. #include <linux/cache.h>
  25. #include <linux/spinlock.h>
  26. #include <linux/threads.h>
  27. #include <linux/cpumask.h>
  28. #include <linux/seqlock.h>
  29. #include <linux/stop_machine.h>
  30. /*
  31. * Define shape of hierarchy based on NR_CPUS, CONFIG_RCU_FANOUT, and
  32. * CONFIG_RCU_FANOUT_LEAF.
  33. * In theory, it should be possible to add more levels straightforwardly.
  34. * In practice, this did work well going from three levels to four.
  35. * Of course, your mileage may vary.
  36. */
  37. #ifdef CONFIG_RCU_FANOUT
  38. #define RCU_FANOUT CONFIG_RCU_FANOUT
  39. #else /* #ifdef CONFIG_RCU_FANOUT */
  40. # ifdef CONFIG_64BIT
  41. # define RCU_FANOUT 64
  42. # else
  43. # define RCU_FANOUT 32
  44. # endif
  45. #endif /* #else #ifdef CONFIG_RCU_FANOUT */
  46. #ifdef CONFIG_RCU_FANOUT_LEAF
  47. #define RCU_FANOUT_LEAF CONFIG_RCU_FANOUT_LEAF
  48. #else /* #ifdef CONFIG_RCU_FANOUT_LEAF */
  49. # ifdef CONFIG_64BIT
  50. # define RCU_FANOUT_LEAF 64
  51. # else
  52. # define RCU_FANOUT_LEAF 32
  53. # endif
  54. #endif /* #else #ifdef CONFIG_RCU_FANOUT_LEAF */
  55. #define RCU_FANOUT_1 (RCU_FANOUT_LEAF)
  56. #define RCU_FANOUT_2 (RCU_FANOUT_1 * RCU_FANOUT)
  57. #define RCU_FANOUT_3 (RCU_FANOUT_2 * RCU_FANOUT)
  58. #define RCU_FANOUT_4 (RCU_FANOUT_3 * RCU_FANOUT)
  59. #if NR_CPUS <= RCU_FANOUT_1
  60. # define RCU_NUM_LVLS 1
  61. # define NUM_RCU_LVL_0 1
  62. # define NUM_RCU_NODES NUM_RCU_LVL_0
  63. # define NUM_RCU_LVL_INIT { NUM_RCU_LVL_0 }
  64. # define RCU_NODE_NAME_INIT { "rcu_node_0" }
  65. # define RCU_FQS_NAME_INIT { "rcu_node_fqs_0" }
  66. # define RCU_EXP_NAME_INIT { "rcu_node_exp_0" }
  67. #elif NR_CPUS <= RCU_FANOUT_2
  68. # define RCU_NUM_LVLS 2
  69. # define NUM_RCU_LVL_0 1
  70. # define NUM_RCU_LVL_1 DIV_ROUND_UP(NR_CPUS, RCU_FANOUT_1)
  71. # define NUM_RCU_NODES (NUM_RCU_LVL_0 + NUM_RCU_LVL_1)
  72. # define NUM_RCU_LVL_INIT { NUM_RCU_LVL_0, NUM_RCU_LVL_1 }
  73. # define RCU_NODE_NAME_INIT { "rcu_node_0", "rcu_node_1" }
  74. # define RCU_FQS_NAME_INIT { "rcu_node_fqs_0", "rcu_node_fqs_1" }
  75. # define RCU_EXP_NAME_INIT { "rcu_node_exp_0", "rcu_node_exp_1" }
  76. #elif NR_CPUS <= RCU_FANOUT_3
  77. # define RCU_NUM_LVLS 3
  78. # define NUM_RCU_LVL_0 1
  79. # define NUM_RCU_LVL_1 DIV_ROUND_UP(NR_CPUS, RCU_FANOUT_2)
  80. # define NUM_RCU_LVL_2 DIV_ROUND_UP(NR_CPUS, RCU_FANOUT_1)
  81. # define NUM_RCU_NODES (NUM_RCU_LVL_0 + NUM_RCU_LVL_1 + NUM_RCU_LVL_2)
  82. # define NUM_RCU_LVL_INIT { NUM_RCU_LVL_0, NUM_RCU_LVL_1, NUM_RCU_LVL_2 }
  83. # define RCU_NODE_NAME_INIT { "rcu_node_0", "rcu_node_1", "rcu_node_2" }
  84. # define RCU_FQS_NAME_INIT { "rcu_node_fqs_0", "rcu_node_fqs_1", "rcu_node_fqs_2" }
  85. # define RCU_EXP_NAME_INIT { "rcu_node_exp_0", "rcu_node_exp_1", "rcu_node_exp_2" }
  86. #elif NR_CPUS <= RCU_FANOUT_4
  87. # define RCU_NUM_LVLS 4
  88. # define NUM_RCU_LVL_0 1
  89. # define NUM_RCU_LVL_1 DIV_ROUND_UP(NR_CPUS, RCU_FANOUT_3)
  90. # define NUM_RCU_LVL_2 DIV_ROUND_UP(NR_CPUS, RCU_FANOUT_2)
  91. # define NUM_RCU_LVL_3 DIV_ROUND_UP(NR_CPUS, RCU_FANOUT_1)
  92. # define NUM_RCU_NODES (NUM_RCU_LVL_0 + NUM_RCU_LVL_1 + NUM_RCU_LVL_2 + NUM_RCU_LVL_3)
  93. # define NUM_RCU_LVL_INIT { NUM_RCU_LVL_0, NUM_RCU_LVL_1, NUM_RCU_LVL_2, NUM_RCU_LVL_3 }
  94. # define RCU_NODE_NAME_INIT { "rcu_node_0", "rcu_node_1", "rcu_node_2", "rcu_node_3" }
  95. # define RCU_FQS_NAME_INIT { "rcu_node_fqs_0", "rcu_node_fqs_1", "rcu_node_fqs_2", "rcu_node_fqs_3" }
  96. # define RCU_EXP_NAME_INIT { "rcu_node_exp_0", "rcu_node_exp_1", "rcu_node_exp_2", "rcu_node_exp_3" }
  97. #else
  98. # error "CONFIG_RCU_FANOUT insufficient for NR_CPUS"
  99. #endif /* #if (NR_CPUS) <= RCU_FANOUT_1 */
  100. extern int rcu_num_lvls;
  101. extern int rcu_num_nodes;
  102. /*
  103. * Dynticks per-CPU state.
  104. */
  105. struct rcu_dynticks {
  106. long long dynticks_nesting; /* Track irq/process nesting level. */
  107. /* Process level is worth LLONG_MAX/2. */
  108. int dynticks_nmi_nesting; /* Track NMI nesting level. */
  109. atomic_t dynticks; /* Even value for idle, else odd. */
  110. #ifdef CONFIG_NO_HZ_FULL_SYSIDLE
  111. long long dynticks_idle_nesting;
  112. /* irq/process nesting level from idle. */
  113. atomic_t dynticks_idle; /* Even value for idle, else odd. */
  114. /* "Idle" excludes userspace execution. */
  115. unsigned long dynticks_idle_jiffies;
  116. /* End of last non-NMI non-idle period. */
  117. #endif /* #ifdef CONFIG_NO_HZ_FULL_SYSIDLE */
  118. #ifdef CONFIG_RCU_FAST_NO_HZ
  119. bool all_lazy; /* Are all CPU's CBs lazy? */
  120. unsigned long nonlazy_posted;
  121. /* # times non-lazy CBs posted to CPU. */
  122. unsigned long nonlazy_posted_snap;
  123. /* idle-period nonlazy_posted snapshot. */
  124. unsigned long last_accelerate;
  125. /* Last jiffy CBs were accelerated. */
  126. unsigned long last_advance_all;
  127. /* Last jiffy CBs were all advanced. */
  128. int tick_nohz_enabled_snap; /* Previously seen value from sysfs. */
  129. #endif /* #ifdef CONFIG_RCU_FAST_NO_HZ */
  130. };
  131. /* RCU's kthread states for tracing. */
  132. #define RCU_KTHREAD_STOPPED 0
  133. #define RCU_KTHREAD_RUNNING 1
  134. #define RCU_KTHREAD_WAITING 2
  135. #define RCU_KTHREAD_OFFCPU 3
  136. #define RCU_KTHREAD_YIELDING 4
  137. #define RCU_KTHREAD_MAX 4
  138. /*
  139. * Definition for node within the RCU grace-period-detection hierarchy.
  140. */
  141. struct rcu_node {
  142. raw_spinlock_t lock; /* Root rcu_node's lock protects some */
  143. /* rcu_state fields as well as following. */
  144. unsigned long gpnum; /* Current grace period for this node. */
  145. /* This will either be equal to or one */
  146. /* behind the root rcu_node's gpnum. */
  147. unsigned long completed; /* Last GP completed for this node. */
  148. /* This will either be equal to or one */
  149. /* behind the root rcu_node's gpnum. */
  150. unsigned long qsmask; /* CPUs or groups that need to switch in */
  151. /* order for current grace period to proceed.*/
  152. /* In leaf rcu_node, each bit corresponds to */
  153. /* an rcu_data structure, otherwise, each */
  154. /* bit corresponds to a child rcu_node */
  155. /* structure. */
  156. unsigned long qsmaskinit;
  157. /* Per-GP initial value for qsmask. */
  158. /* Initialized from ->qsmaskinitnext at the */
  159. /* beginning of each grace period. */
  160. unsigned long qsmaskinitnext;
  161. /* Online CPUs for next grace period. */
  162. unsigned long expmask; /* CPUs or groups that need to check in */
  163. /* to allow the current expedited GP */
  164. /* to complete. */
  165. unsigned long expmaskinit;
  166. /* Per-GP initial values for expmask. */
  167. /* Initialized from ->expmaskinitnext at the */
  168. /* beginning of each expedited GP. */
  169. unsigned long expmaskinitnext;
  170. /* Online CPUs for next expedited GP. */
  171. /* Any CPU that has ever been online will */
  172. /* have its bit set. */
  173. unsigned long grpmask; /* Mask to apply to parent qsmask. */
  174. /* Only one bit will be set in this mask. */
  175. int grplo; /* lowest-numbered CPU or group here. */
  176. int grphi; /* highest-numbered CPU or group here. */
  177. u8 grpnum; /* CPU/group number for next level up. */
  178. u8 level; /* root is at level 0. */
  179. bool wait_blkd_tasks;/* Necessary to wait for blocked tasks to */
  180. /* exit RCU read-side critical sections */
  181. /* before propagating offline up the */
  182. /* rcu_node tree? */
  183. struct rcu_node *parent;
  184. struct list_head blkd_tasks;
  185. /* Tasks blocked in RCU read-side critical */
  186. /* section. Tasks are placed at the head */
  187. /* of this list and age towards the tail. */
  188. struct list_head *gp_tasks;
  189. /* Pointer to the first task blocking the */
  190. /* current grace period, or NULL if there */
  191. /* is no such task. */
  192. struct list_head *exp_tasks;
  193. /* Pointer to the first task blocking the */
  194. /* current expedited grace period, or NULL */
  195. /* if there is no such task. If there */
  196. /* is no current expedited grace period, */
  197. /* then there can cannot be any such task. */
  198. struct list_head *boost_tasks;
  199. /* Pointer to first task that needs to be */
  200. /* priority boosted, or NULL if no priority */
  201. /* boosting is needed for this rcu_node */
  202. /* structure. If there are no tasks */
  203. /* queued on this rcu_node structure that */
  204. /* are blocking the current grace period, */
  205. /* there can be no such task. */
  206. struct rt_mutex boost_mtx;
  207. /* Used only for the priority-boosting */
  208. /* side effect, not as a lock. */
  209. unsigned long boost_time;
  210. /* When to start boosting (jiffies). */
  211. struct task_struct *boost_kthread_task;
  212. /* kthread that takes care of priority */
  213. /* boosting for this rcu_node structure. */
  214. unsigned int boost_kthread_status;
  215. /* State of boost_kthread_task for tracing. */
  216. unsigned long n_tasks_boosted;
  217. /* Total number of tasks boosted. */
  218. unsigned long n_exp_boosts;
  219. /* Number of tasks boosted for expedited GP. */
  220. unsigned long n_normal_boosts;
  221. /* Number of tasks boosted for normal GP. */
  222. unsigned long n_balk_blkd_tasks;
  223. /* Refused to boost: no blocked tasks. */
  224. unsigned long n_balk_exp_gp_tasks;
  225. /* Refused to boost: nothing blocking GP. */
  226. unsigned long n_balk_boost_tasks;
  227. /* Refused to boost: already boosting. */
  228. unsigned long n_balk_notblocked;
  229. /* Refused to boost: RCU RS CS still running. */
  230. unsigned long n_balk_notyet;
  231. /* Refused to boost: not yet time. */
  232. unsigned long n_balk_nos;
  233. /* Refused to boost: not sure why, though. */
  234. /* This can happen due to race conditions. */
  235. #ifdef CONFIG_RCU_NOCB_CPU
  236. wait_queue_head_t nocb_gp_wq[2];
  237. /* Place for rcu_nocb_kthread() to wait GP. */
  238. #endif /* #ifdef CONFIG_RCU_NOCB_CPU */
  239. int need_future_gp[2];
  240. /* Counts of upcoming no-CB GP requests. */
  241. raw_spinlock_t fqslock ____cacheline_internodealigned_in_smp;
  242. struct mutex exp_funnel_mutex ____cacheline_internodealigned_in_smp;
  243. } ____cacheline_internodealigned_in_smp;
  244. /*
  245. * Do a full breadth-first scan of the rcu_node structures for the
  246. * specified rcu_state structure.
  247. */
  248. #define rcu_for_each_node_breadth_first(rsp, rnp) \
  249. for ((rnp) = &(rsp)->node[0]; \
  250. (rnp) < &(rsp)->node[rcu_num_nodes]; (rnp)++)
  251. /*
  252. * Do a breadth-first scan of the non-leaf rcu_node structures for the
  253. * specified rcu_state structure. Note that if there is a singleton
  254. * rcu_node tree with but one rcu_node structure, this loop is a no-op.
  255. */
  256. #define rcu_for_each_nonleaf_node_breadth_first(rsp, rnp) \
  257. for ((rnp) = &(rsp)->node[0]; \
  258. (rnp) < (rsp)->level[rcu_num_lvls - 1]; (rnp)++)
  259. /*
  260. * Scan the leaves of the rcu_node hierarchy for the specified rcu_state
  261. * structure. Note that if there is a singleton rcu_node tree with but
  262. * one rcu_node structure, this loop -will- visit the rcu_node structure.
  263. * It is still a leaf node, even if it is also the root node.
  264. */
  265. #define rcu_for_each_leaf_node(rsp, rnp) \
  266. for ((rnp) = (rsp)->level[rcu_num_lvls - 1]; \
  267. (rnp) < &(rsp)->node[rcu_num_nodes]; (rnp)++)
  268. /*
  269. * Union to allow "aggregate OR" operation on the need for a quiescent
  270. * state by the normal and expedited grace periods.
  271. */
  272. union rcu_noqs {
  273. struct {
  274. u8 norm;
  275. u8 exp;
  276. } b; /* Bits. */
  277. u16 s; /* Set of bits, aggregate OR here. */
  278. };
  279. /* Index values for nxttail array in struct rcu_data. */
  280. #define RCU_DONE_TAIL 0 /* Also RCU_WAIT head. */
  281. #define RCU_WAIT_TAIL 1 /* Also RCU_NEXT_READY head. */
  282. #define RCU_NEXT_READY_TAIL 2 /* Also RCU_NEXT head. */
  283. #define RCU_NEXT_TAIL 3
  284. #define RCU_NEXT_SIZE 4
  285. /* Per-CPU data for read-copy update. */
  286. struct rcu_data {
  287. /* 1) quiescent-state and grace-period handling : */
  288. unsigned long completed; /* Track rsp->completed gp number */
  289. /* in order to detect GP end. */
  290. unsigned long gpnum; /* Highest gp number that this CPU */
  291. /* is aware of having started. */
  292. unsigned long rcu_qs_ctr_snap;/* Snapshot of rcu_qs_ctr to check */
  293. /* for rcu_all_qs() invocations. */
  294. union rcu_noqs cpu_no_qs; /* No QSes yet for this CPU. */
  295. bool core_needs_qs; /* Core waits for quiesc state. */
  296. bool beenonline; /* CPU online at least once. */
  297. bool gpwrap; /* Possible gpnum/completed wrap. */
  298. struct rcu_node *mynode; /* This CPU's leaf of hierarchy */
  299. unsigned long grpmask; /* Mask to apply to leaf qsmask. */
  300. unsigned long ticks_this_gp; /* The number of scheduling-clock */
  301. /* ticks this CPU has handled */
  302. /* during and after the last grace */
  303. /* period it is aware of. */
  304. /* 2) batch handling */
  305. /*
  306. * If nxtlist is not NULL, it is partitioned as follows.
  307. * Any of the partitions might be empty, in which case the
  308. * pointer to that partition will be equal to the pointer for
  309. * the following partition. When the list is empty, all of
  310. * the nxttail elements point to the ->nxtlist pointer itself,
  311. * which in that case is NULL.
  312. *
  313. * [nxtlist, *nxttail[RCU_DONE_TAIL]):
  314. * Entries that batch # <= ->completed
  315. * The grace period for these entries has completed, and
  316. * the other grace-period-completed entries may be moved
  317. * here temporarily in rcu_process_callbacks().
  318. * [*nxttail[RCU_DONE_TAIL], *nxttail[RCU_WAIT_TAIL]):
  319. * Entries that batch # <= ->completed - 1: waiting for current GP
  320. * [*nxttail[RCU_WAIT_TAIL], *nxttail[RCU_NEXT_READY_TAIL]):
  321. * Entries known to have arrived before current GP ended
  322. * [*nxttail[RCU_NEXT_READY_TAIL], *nxttail[RCU_NEXT_TAIL]):
  323. * Entries that might have arrived after current GP ended
  324. * Note that the value of *nxttail[RCU_NEXT_TAIL] will
  325. * always be NULL, as this is the end of the list.
  326. */
  327. struct rcu_head *nxtlist;
  328. struct rcu_head **nxttail[RCU_NEXT_SIZE];
  329. unsigned long nxtcompleted[RCU_NEXT_SIZE];
  330. /* grace periods for sublists. */
  331. long qlen_lazy; /* # of lazy queued callbacks */
  332. long qlen; /* # of queued callbacks, incl lazy */
  333. long qlen_last_fqs_check;
  334. /* qlen at last check for QS forcing */
  335. unsigned long n_cbs_invoked; /* count of RCU cbs invoked. */
  336. unsigned long n_nocbs_invoked; /* count of no-CBs RCU cbs invoked. */
  337. unsigned long n_cbs_orphaned; /* RCU cbs orphaned by dying CPU */
  338. unsigned long n_cbs_adopted; /* RCU cbs adopted from dying CPU */
  339. unsigned long n_force_qs_snap;
  340. /* did other CPU force QS recently? */
  341. long blimit; /* Upper limit on a processed batch */
  342. /* 3) dynticks interface. */
  343. struct rcu_dynticks *dynticks; /* Shared per-CPU dynticks state. */
  344. int dynticks_snap; /* Per-GP tracking for dynticks. */
  345. /* 4) reasons this CPU needed to be kicked by force_quiescent_state */
  346. unsigned long dynticks_fqs; /* Kicked due to dynticks idle. */
  347. unsigned long offline_fqs; /* Kicked due to being offline. */
  348. unsigned long cond_resched_completed;
  349. /* Grace period that needs help */
  350. /* from cond_resched(). */
  351. /* 5) __rcu_pending() statistics. */
  352. unsigned long n_rcu_pending; /* rcu_pending() calls since boot. */
  353. unsigned long n_rp_core_needs_qs;
  354. unsigned long n_rp_report_qs;
  355. unsigned long n_rp_cb_ready;
  356. unsigned long n_rp_cpu_needs_gp;
  357. unsigned long n_rp_gp_completed;
  358. unsigned long n_rp_gp_started;
  359. unsigned long n_rp_nocb_defer_wakeup;
  360. unsigned long n_rp_need_nothing;
  361. /* 6) _rcu_barrier(), OOM callbacks, and expediting. */
  362. struct rcu_head barrier_head;
  363. #ifdef CONFIG_RCU_FAST_NO_HZ
  364. struct rcu_head oom_head;
  365. #endif /* #ifdef CONFIG_RCU_FAST_NO_HZ */
  366. struct mutex exp_funnel_mutex;
  367. atomic_long_t expedited_workdone0; /* # done by others #0. */
  368. atomic_long_t expedited_workdone1; /* # done by others #1. */
  369. atomic_long_t expedited_workdone2; /* # done by others #2. */
  370. atomic_long_t expedited_workdone3; /* # done by others #3. */
  371. /* 7) Callback offloading. */
  372. #ifdef CONFIG_RCU_NOCB_CPU
  373. struct rcu_head *nocb_head; /* CBs waiting for kthread. */
  374. struct rcu_head **nocb_tail;
  375. atomic_long_t nocb_q_count; /* # CBs waiting for nocb */
  376. atomic_long_t nocb_q_count_lazy; /* invocation (all stages). */
  377. struct rcu_head *nocb_follower_head; /* CBs ready to invoke. */
  378. struct rcu_head **nocb_follower_tail;
  379. wait_queue_head_t nocb_wq; /* For nocb kthreads to sleep on. */
  380. struct task_struct *nocb_kthread;
  381. int nocb_defer_wakeup; /* Defer wakeup of nocb_kthread. */
  382. /* The following fields are used by the leader, hence own cacheline. */
  383. struct rcu_head *nocb_gp_head ____cacheline_internodealigned_in_smp;
  384. /* CBs waiting for GP. */
  385. struct rcu_head **nocb_gp_tail;
  386. bool nocb_leader_sleep; /* Is the nocb leader thread asleep? */
  387. struct rcu_data *nocb_next_follower;
  388. /* Next follower in wakeup chain. */
  389. /* The following fields are used by the follower, hence new cachline. */
  390. struct rcu_data *nocb_leader ____cacheline_internodealigned_in_smp;
  391. /* Leader CPU takes GP-end wakeups. */
  392. #endif /* #ifdef CONFIG_RCU_NOCB_CPU */
  393. /* 8) RCU CPU stall data. */
  394. unsigned int softirq_snap; /* Snapshot of softirq activity. */
  395. int cpu;
  396. struct rcu_state *rsp;
  397. };
  398. /* Values for nocb_defer_wakeup field in struct rcu_data. */
  399. #define RCU_NOGP_WAKE_NOT 0
  400. #define RCU_NOGP_WAKE 1
  401. #define RCU_NOGP_WAKE_FORCE 2
  402. #define RCU_JIFFIES_TILL_FORCE_QS (1 + (HZ > 250) + (HZ > 500))
  403. /* For jiffies_till_first_fqs and */
  404. /* and jiffies_till_next_fqs. */
  405. #define RCU_JIFFIES_FQS_DIV 256 /* Very large systems need more */
  406. /* delay between bouts of */
  407. /* quiescent-state forcing. */
  408. #define RCU_STALL_RAT_DELAY 2 /* Allow other CPUs time to take */
  409. /* at least one scheduling clock */
  410. /* irq before ratting on them. */
  411. #define rcu_wait(cond) \
  412. do { \
  413. for (;;) { \
  414. set_current_state(TASK_INTERRUPTIBLE); \
  415. if (cond) \
  416. break; \
  417. schedule(); \
  418. } \
  419. __set_current_state(TASK_RUNNING); \
  420. } while (0)
  421. /*
  422. * RCU global state, including node hierarchy. This hierarchy is
  423. * represented in "heap" form in a dense array. The root (first level)
  424. * of the hierarchy is in ->node[0] (referenced by ->level[0]), the second
  425. * level in ->node[1] through ->node[m] (->node[1] referenced by ->level[1]),
  426. * and the third level in ->node[m+1] and following (->node[m+1] referenced
  427. * by ->level[2]). The number of levels is determined by the number of
  428. * CPUs and by CONFIG_RCU_FANOUT. Small systems will have a "hierarchy"
  429. * consisting of a single rcu_node.
  430. */
  431. struct rcu_state {
  432. struct rcu_node node[NUM_RCU_NODES]; /* Hierarchy. */
  433. struct rcu_node *level[RCU_NUM_LVLS + 1];
  434. /* Hierarchy levels (+1 to */
  435. /* shut bogus gcc warning) */
  436. u8 flavor_mask; /* bit in flavor mask. */
  437. struct rcu_data __percpu *rda; /* pointer of percu rcu_data. */
  438. call_rcu_func_t call; /* call_rcu() flavor. */
  439. int ncpus; /* # CPUs seen so far. */
  440. /* The following fields are guarded by the root rcu_node's lock. */
  441. u8 boost ____cacheline_internodealigned_in_smp;
  442. /* Subject to priority boost. */
  443. unsigned long gpnum; /* Current gp number. */
  444. unsigned long completed; /* # of last completed gp. */
  445. struct task_struct *gp_kthread; /* Task for grace periods. */
  446. wait_queue_head_t gp_wq; /* Where GP task waits. */
  447. short gp_flags; /* Commands for GP task. */
  448. short gp_state; /* GP kthread sleep state. */
  449. /* End of fields guarded by root rcu_node's lock. */
  450. raw_spinlock_t orphan_lock ____cacheline_internodealigned_in_smp;
  451. /* Protect following fields. */
  452. struct rcu_head *orphan_nxtlist; /* Orphaned callbacks that */
  453. /* need a grace period. */
  454. struct rcu_head **orphan_nxttail; /* Tail of above. */
  455. struct rcu_head *orphan_donelist; /* Orphaned callbacks that */
  456. /* are ready to invoke. */
  457. struct rcu_head **orphan_donetail; /* Tail of above. */
  458. long qlen_lazy; /* Number of lazy callbacks. */
  459. long qlen; /* Total number of callbacks. */
  460. /* End of fields guarded by orphan_lock. */
  461. struct mutex barrier_mutex; /* Guards barrier fields. */
  462. atomic_t barrier_cpu_count; /* # CPUs waiting on. */
  463. struct completion barrier_completion; /* Wake at barrier end. */
  464. unsigned long barrier_sequence; /* ++ at start and end of */
  465. /* _rcu_barrier(). */
  466. /* End of fields guarded by barrier_mutex. */
  467. unsigned long expedited_sequence; /* Take a ticket. */
  468. atomic_long_t expedited_normal; /* # fallbacks to normal. */
  469. atomic_t expedited_need_qs; /* # CPUs left to check in. */
  470. wait_queue_head_t expedited_wq; /* Wait for check-ins. */
  471. int ncpus_snap; /* # CPUs seen last time. */
  472. unsigned long jiffies_force_qs; /* Time at which to invoke */
  473. /* force_quiescent_state(). */
  474. unsigned long n_force_qs; /* Number of calls to */
  475. /* force_quiescent_state(). */
  476. unsigned long n_force_qs_lh; /* ~Number of calls leaving */
  477. /* due to lock unavailable. */
  478. unsigned long n_force_qs_ngp; /* Number of calls leaving */
  479. /* due to no GP active. */
  480. unsigned long gp_start; /* Time at which GP started, */
  481. /* but in jiffies. */
  482. unsigned long gp_activity; /* Time of last GP kthread */
  483. /* activity in jiffies. */
  484. unsigned long jiffies_stall; /* Time at which to check */
  485. /* for CPU stalls. */
  486. unsigned long jiffies_resched; /* Time at which to resched */
  487. /* a reluctant CPU. */
  488. unsigned long n_force_qs_gpstart; /* Snapshot of n_force_qs at */
  489. /* GP start. */
  490. unsigned long gp_max; /* Maximum GP duration in */
  491. /* jiffies. */
  492. const char *name; /* Name of structure. */
  493. char abbr; /* Abbreviated name. */
  494. struct list_head flavors; /* List of RCU flavors. */
  495. };
  496. /* Values for rcu_state structure's gp_flags field. */
  497. #define RCU_GP_FLAG_INIT 0x1 /* Need grace-period initialization. */
  498. #define RCU_GP_FLAG_FQS 0x2 /* Need grace-period quiescent-state forcing. */
  499. /* Values for rcu_state structure's gp_state field. */
  500. #define RCU_GP_IDLE 0 /* Initial state and no GP in progress. */
  501. #define RCU_GP_WAIT_GPS 1 /* Wait for grace-period start. */
  502. #define RCU_GP_DONE_GPS 2 /* Wait done for grace-period start. */
  503. #define RCU_GP_WAIT_FQS 3 /* Wait for force-quiescent-state time. */
  504. #define RCU_GP_DOING_FQS 4 /* Wait done for force-quiescent-state time. */
  505. #define RCU_GP_CLEANUP 5 /* Grace-period cleanup started. */
  506. #define RCU_GP_CLEANED 6 /* Grace-period cleanup complete. */
  507. #ifndef RCU_TREE_NONCORE
  508. static const char * const gp_state_names[] = {
  509. "RCU_GP_IDLE",
  510. "RCU_GP_WAIT_GPS",
  511. "RCU_GP_DONE_GPS",
  512. "RCU_GP_WAIT_FQS",
  513. "RCU_GP_DOING_FQS",
  514. "RCU_GP_CLEANUP",
  515. "RCU_GP_CLEANED",
  516. };
  517. #endif /* #ifndef RCU_TREE_NONCORE */
  518. extern struct list_head rcu_struct_flavors;
  519. /* Sequence through rcu_state structures for each RCU flavor. */
  520. #define for_each_rcu_flavor(rsp) \
  521. list_for_each_entry((rsp), &rcu_struct_flavors, flavors)
  522. /*
  523. * RCU implementation internal declarations:
  524. */
  525. extern struct rcu_state rcu_sched_state;
  526. extern struct rcu_state rcu_bh_state;
  527. #ifdef CONFIG_PREEMPT_RCU
  528. extern struct rcu_state rcu_preempt_state;
  529. #endif /* #ifdef CONFIG_PREEMPT_RCU */
  530. #ifdef CONFIG_RCU_BOOST
  531. DECLARE_PER_CPU(unsigned int, rcu_cpu_kthread_status);
  532. DECLARE_PER_CPU(int, rcu_cpu_kthread_cpu);
  533. DECLARE_PER_CPU(unsigned int, rcu_cpu_kthread_loops);
  534. DECLARE_PER_CPU(char, rcu_cpu_has_work);
  535. #endif /* #ifdef CONFIG_RCU_BOOST */
  536. #ifndef RCU_TREE_NONCORE
  537. /* Forward declarations for rcutree_plugin.h */
  538. static void rcu_bootup_announce(void);
  539. static void rcu_preempt_note_context_switch(void);
  540. static int rcu_preempt_blocked_readers_cgp(struct rcu_node *rnp);
  541. #ifdef CONFIG_HOTPLUG_CPU
  542. static bool rcu_preempt_has_tasks(struct rcu_node *rnp);
  543. #endif /* #ifdef CONFIG_HOTPLUG_CPU */
  544. static void rcu_print_detail_task_stall(struct rcu_state *rsp);
  545. static int rcu_print_task_stall(struct rcu_node *rnp);
  546. static int rcu_print_task_exp_stall(struct rcu_node *rnp);
  547. static void rcu_preempt_check_blocked_tasks(struct rcu_node *rnp);
  548. static void rcu_preempt_check_callbacks(void);
  549. void call_rcu(struct rcu_head *head, rcu_callback_t func);
  550. static void __init __rcu_init_preempt(void);
  551. static void rcu_initiate_boost(struct rcu_node *rnp, unsigned long flags);
  552. static void rcu_preempt_boost_start_gp(struct rcu_node *rnp);
  553. static void invoke_rcu_callbacks_kthread(void);
  554. static bool rcu_is_callbacks_kthread(void);
  555. #ifdef CONFIG_RCU_BOOST
  556. static void rcu_preempt_do_callbacks(void);
  557. static int rcu_spawn_one_boost_kthread(struct rcu_state *rsp,
  558. struct rcu_node *rnp);
  559. #endif /* #ifdef CONFIG_RCU_BOOST */
  560. static void __init rcu_spawn_boost_kthreads(void);
  561. static void rcu_prepare_kthreads(int cpu);
  562. static void rcu_cleanup_after_idle(void);
  563. static void rcu_prepare_for_idle(void);
  564. static void rcu_idle_count_callbacks_posted(void);
  565. static bool rcu_preempt_has_tasks(struct rcu_node *rnp);
  566. static void print_cpu_stall_info_begin(void);
  567. static void print_cpu_stall_info(struct rcu_state *rsp, int cpu);
  568. static void print_cpu_stall_info_end(void);
  569. static void zero_cpu_stall_ticks(struct rcu_data *rdp);
  570. static void increment_cpu_stall_ticks(void);
  571. static bool rcu_nocb_cpu_needs_barrier(struct rcu_state *rsp, int cpu);
  572. static void rcu_nocb_gp_set(struct rcu_node *rnp, int nrq);
  573. static void rcu_nocb_gp_cleanup(struct rcu_state *rsp, struct rcu_node *rnp);
  574. static void rcu_init_one_nocb(struct rcu_node *rnp);
  575. static bool __call_rcu_nocb(struct rcu_data *rdp, struct rcu_head *rhp,
  576. bool lazy, unsigned long flags);
  577. static bool rcu_nocb_adopt_orphan_cbs(struct rcu_state *rsp,
  578. struct rcu_data *rdp,
  579. unsigned long flags);
  580. static int rcu_nocb_need_deferred_wakeup(struct rcu_data *rdp);
  581. static void do_nocb_deferred_wakeup(struct rcu_data *rdp);
  582. static void rcu_boot_init_nocb_percpu_data(struct rcu_data *rdp);
  583. static void rcu_spawn_all_nocb_kthreads(int cpu);
  584. static void __init rcu_spawn_nocb_kthreads(void);
  585. #ifdef CONFIG_RCU_NOCB_CPU
  586. static void __init rcu_organize_nocb_kthreads(struct rcu_state *rsp);
  587. #endif /* #ifdef CONFIG_RCU_NOCB_CPU */
  588. static void __maybe_unused rcu_kick_nohz_cpu(int cpu);
  589. static bool init_nocb_callback_list(struct rcu_data *rdp);
  590. static void rcu_sysidle_enter(int irq);
  591. static void rcu_sysidle_exit(int irq);
  592. static void rcu_sysidle_check_cpu(struct rcu_data *rdp, bool *isidle,
  593. unsigned long *maxj);
  594. static bool is_sysidle_rcu_state(struct rcu_state *rsp);
  595. static void rcu_sysidle_report_gp(struct rcu_state *rsp, int isidle,
  596. unsigned long maxj);
  597. static void rcu_bind_gp_kthread(void);
  598. static void rcu_sysidle_init_percpu_data(struct rcu_dynticks *rdtp);
  599. static bool rcu_nohz_full_cpu(struct rcu_state *rsp);
  600. static void rcu_dynticks_task_enter(void);
  601. static void rcu_dynticks_task_exit(void);
  602. #endif /* #ifndef RCU_TREE_NONCORE */
  603. #ifdef CONFIG_RCU_TRACE
  604. /* Read out queue lengths for tracing. */
  605. static inline void rcu_nocb_q_lengths(struct rcu_data *rdp, long *ql, long *qll)
  606. {
  607. #ifdef CONFIG_RCU_NOCB_CPU
  608. *ql = atomic_long_read(&rdp->nocb_q_count);
  609. *qll = atomic_long_read(&rdp->nocb_q_count_lazy);
  610. #else /* #ifdef CONFIG_RCU_NOCB_CPU */
  611. *ql = 0;
  612. *qll = 0;
  613. #endif /* #else #ifdef CONFIG_RCU_NOCB_CPU */
  614. }
  615. #endif /* #ifdef CONFIG_RCU_TRACE */
  616. /*
  617. * Place this after a lock-acquisition primitive to guarantee that
  618. * an UNLOCK+LOCK pair act as a full barrier. This guarantee applies
  619. * if the UNLOCK and LOCK are executed by the same CPU or if the
  620. * UNLOCK and LOCK operate on the same lock variable.
  621. */
  622. #ifdef CONFIG_PPC
  623. #define smp_mb__after_unlock_lock() smp_mb() /* Full ordering for lock. */
  624. #else /* #ifdef CONFIG_PPC */
  625. #define smp_mb__after_unlock_lock() do { } while (0)
  626. #endif /* #else #ifdef CONFIG_PPC */
  627. /*
  628. * Wrappers for the rcu_node::lock acquire.
  629. *
  630. * Because the rcu_nodes form a tree, the tree traversal locking will observe
  631. * different lock values, this in turn means that an UNLOCK of one level
  632. * followed by a LOCK of another level does not imply a full memory barrier;
  633. * and most importantly transitivity is lost.
  634. *
  635. * In order to restore full ordering between tree levels, augment the regular
  636. * lock acquire functions with smp_mb__after_unlock_lock().
  637. */
  638. static inline void raw_spin_lock_rcu_node(struct rcu_node *rnp)
  639. {
  640. raw_spin_lock(&rnp->lock);
  641. smp_mb__after_unlock_lock();
  642. }
  643. static inline void raw_spin_lock_irq_rcu_node(struct rcu_node *rnp)
  644. {
  645. raw_spin_lock_irq(&rnp->lock);
  646. smp_mb__after_unlock_lock();
  647. }
  648. #define raw_spin_lock_irqsave_rcu_node(rnp, flags) \
  649. do { \
  650. typecheck(unsigned long, flags); \
  651. raw_spin_lock_irqsave(&(rnp)->lock, flags); \
  652. smp_mb__after_unlock_lock(); \
  653. } while (0)
  654. static inline bool raw_spin_trylock_rcu_node(struct rcu_node *rnp)
  655. {
  656. bool locked = raw_spin_trylock(&rnp->lock);
  657. if (locked)
  658. smp_mb__after_unlock_lock();
  659. return locked;
  660. }