sched.h 60 KB

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  1. #ifndef _LINUX_SCHED_H
  2. #define _LINUX_SCHED_H
  3. /*
  4. * cloning flags:
  5. */
  6. #define CSIGNAL 0x000000ff /* signal mask to be sent at exit */
  7. #define CLONE_VM 0x00000100 /* set if VM shared between processes */
  8. #define CLONE_FS 0x00000200 /* set if fs info shared between processes */
  9. #define CLONE_FILES 0x00000400 /* set if open files shared between processes */
  10. #define CLONE_SIGHAND 0x00000800 /* set if signal handlers and blocked signals shared */
  11. #define CLONE_PTRACE 0x00002000 /* set if we want to let tracing continue on the child too */
  12. #define CLONE_VFORK 0x00004000 /* set if the parent wants the child to wake it up on mm_release */
  13. #define CLONE_PARENT 0x00008000 /* set if we want to have the same parent as the cloner */
  14. #define CLONE_THREAD 0x00010000 /* Same thread group? */
  15. #define CLONE_NEWNS 0x00020000 /* New namespace group? */
  16. #define CLONE_SYSVSEM 0x00040000 /* share system V SEM_UNDO semantics */
  17. #define CLONE_SETTLS 0x00080000 /* create a new TLS for the child */
  18. #define CLONE_PARENT_SETTID 0x00100000 /* set the TID in the parent */
  19. #define CLONE_CHILD_CLEARTID 0x00200000 /* clear the TID in the child */
  20. #define CLONE_DETACHED 0x00400000 /* Unused, ignored */
  21. #define CLONE_UNTRACED 0x00800000 /* set if the tracing process can't force CLONE_PTRACE on this clone */
  22. #define CLONE_CHILD_SETTID 0x01000000 /* set the TID in the child */
  23. #define CLONE_STOPPED 0x02000000 /* Start in stopped state */
  24. #define CLONE_NEWUTS 0x04000000 /* New utsname group? */
  25. #define CLONE_NEWIPC 0x08000000 /* New ipcs */
  26. #define CLONE_NEWUSER 0x10000000 /* New user namespace */
  27. #define CLONE_NEWPID 0x20000000 /* New pid namespace */
  28. #define CLONE_NEWNET 0x40000000 /* New network namespace */
  29. #define CLONE_IO 0x80000000 /* Clone io context */
  30. /*
  31. * Scheduling policies
  32. */
  33. #define SCHED_NORMAL 0
  34. #define SCHED_FIFO 1
  35. #define SCHED_RR 2
  36. #define SCHED_BATCH 3
  37. /* SCHED_ISO: reserved but not implemented yet */
  38. #define SCHED_IDLE 5
  39. #ifdef __KERNEL__
  40. struct sched_param {
  41. int sched_priority;
  42. };
  43. #include <asm/param.h> /* for HZ */
  44. #include <linux/capability.h>
  45. #include <linux/threads.h>
  46. #include <linux/kernel.h>
  47. #include <linux/types.h>
  48. #include <linux/timex.h>
  49. #include <linux/jiffies.h>
  50. #include <linux/rbtree.h>
  51. #include <linux/thread_info.h>
  52. #include <linux/cpumask.h>
  53. #include <linux/errno.h>
  54. #include <linux/nodemask.h>
  55. #include <linux/mm_types.h>
  56. #include <asm/system.h>
  57. #include <asm/semaphore.h>
  58. #include <asm/page.h>
  59. #include <asm/ptrace.h>
  60. #include <asm/cputime.h>
  61. #include <linux/smp.h>
  62. #include <linux/sem.h>
  63. #include <linux/signal.h>
  64. #include <linux/securebits.h>
  65. #include <linux/fs_struct.h>
  66. #include <linux/compiler.h>
  67. #include <linux/completion.h>
  68. #include <linux/pid.h>
  69. #include <linux/percpu.h>
  70. #include <linux/topology.h>
  71. #include <linux/proportions.h>
  72. #include <linux/seccomp.h>
  73. #include <linux/rcupdate.h>
  74. #include <linux/rtmutex.h>
  75. #include <linux/time.h>
  76. #include <linux/param.h>
  77. #include <linux/resource.h>
  78. #include <linux/timer.h>
  79. #include <linux/hrtimer.h>
  80. #include <linux/task_io_accounting.h>
  81. #include <linux/kobject.h>
  82. #include <linux/latencytop.h>
  83. #include <asm/processor.h>
  84. struct exec_domain;
  85. struct futex_pi_state;
  86. struct robust_list_head;
  87. struct bio;
  88. /*
  89. * List of flags we want to share for kernel threads,
  90. * if only because they are not used by them anyway.
  91. */
  92. #define CLONE_KERNEL (CLONE_FS | CLONE_FILES | CLONE_SIGHAND)
  93. /*
  94. * These are the constant used to fake the fixed-point load-average
  95. * counting. Some notes:
  96. * - 11 bit fractions expand to 22 bits by the multiplies: this gives
  97. * a load-average precision of 10 bits integer + 11 bits fractional
  98. * - if you want to count load-averages more often, you need more
  99. * precision, or rounding will get you. With 2-second counting freq,
  100. * the EXP_n values would be 1981, 2034 and 2043 if still using only
  101. * 11 bit fractions.
  102. */
  103. extern unsigned long avenrun[]; /* Load averages */
  104. #define FSHIFT 11 /* nr of bits of precision */
  105. #define FIXED_1 (1<<FSHIFT) /* 1.0 as fixed-point */
  106. #define LOAD_FREQ (5*HZ+1) /* 5 sec intervals */
  107. #define EXP_1 1884 /* 1/exp(5sec/1min) as fixed-point */
  108. #define EXP_5 2014 /* 1/exp(5sec/5min) */
  109. #define EXP_15 2037 /* 1/exp(5sec/15min) */
  110. #define CALC_LOAD(load,exp,n) \
  111. load *= exp; \
  112. load += n*(FIXED_1-exp); \
  113. load >>= FSHIFT;
  114. extern unsigned long total_forks;
  115. extern int nr_threads;
  116. DECLARE_PER_CPU(unsigned long, process_counts);
  117. extern int nr_processes(void);
  118. extern unsigned long nr_running(void);
  119. extern unsigned long nr_uninterruptible(void);
  120. extern unsigned long nr_active(void);
  121. extern unsigned long nr_iowait(void);
  122. extern unsigned long weighted_cpuload(const int cpu);
  123. struct seq_file;
  124. struct cfs_rq;
  125. struct task_group;
  126. #ifdef CONFIG_SCHED_DEBUG
  127. extern void proc_sched_show_task(struct task_struct *p, struct seq_file *m);
  128. extern void proc_sched_set_task(struct task_struct *p);
  129. extern void
  130. print_cfs_rq(struct seq_file *m, int cpu, struct cfs_rq *cfs_rq);
  131. #else
  132. static inline void
  133. proc_sched_show_task(struct task_struct *p, struct seq_file *m)
  134. {
  135. }
  136. static inline void proc_sched_set_task(struct task_struct *p)
  137. {
  138. }
  139. static inline void
  140. print_cfs_rq(struct seq_file *m, int cpu, struct cfs_rq *cfs_rq)
  141. {
  142. }
  143. #endif
  144. /*
  145. * Task state bitmask. NOTE! These bits are also
  146. * encoded in fs/proc/array.c: get_task_state().
  147. *
  148. * We have two separate sets of flags: task->state
  149. * is about runnability, while task->exit_state are
  150. * about the task exiting. Confusing, but this way
  151. * modifying one set can't modify the other one by
  152. * mistake.
  153. */
  154. #define TASK_RUNNING 0
  155. #define TASK_INTERRUPTIBLE 1
  156. #define TASK_UNINTERRUPTIBLE 2
  157. #define TASK_STOPPED 4
  158. #define TASK_TRACED 8
  159. /* in tsk->exit_state */
  160. #define EXIT_ZOMBIE 16
  161. #define EXIT_DEAD 32
  162. /* in tsk->state again */
  163. #define TASK_DEAD 64
  164. #define __set_task_state(tsk, state_value) \
  165. do { (tsk)->state = (state_value); } while (0)
  166. #define set_task_state(tsk, state_value) \
  167. set_mb((tsk)->state, (state_value))
  168. /*
  169. * set_current_state() includes a barrier so that the write of current->state
  170. * is correctly serialised wrt the caller's subsequent test of whether to
  171. * actually sleep:
  172. *
  173. * set_current_state(TASK_UNINTERRUPTIBLE);
  174. * if (do_i_need_to_sleep())
  175. * schedule();
  176. *
  177. * If the caller does not need such serialisation then use __set_current_state()
  178. */
  179. #define __set_current_state(state_value) \
  180. do { current->state = (state_value); } while (0)
  181. #define set_current_state(state_value) \
  182. set_mb(current->state, (state_value))
  183. /* Task command name length */
  184. #define TASK_COMM_LEN 16
  185. #include <linux/spinlock.h>
  186. /*
  187. * This serializes "schedule()" and also protects
  188. * the run-queue from deletions/modifications (but
  189. * _adding_ to the beginning of the run-queue has
  190. * a separate lock).
  191. */
  192. extern rwlock_t tasklist_lock;
  193. extern spinlock_t mmlist_lock;
  194. struct task_struct;
  195. extern void sched_init(void);
  196. extern void sched_init_smp(void);
  197. extern void init_idle(struct task_struct *idle, int cpu);
  198. extern void init_idle_bootup_task(struct task_struct *idle);
  199. extern cpumask_t nohz_cpu_mask;
  200. #if defined(CONFIG_SMP) && defined(CONFIG_NO_HZ)
  201. extern int select_nohz_load_balancer(int cpu);
  202. #else
  203. static inline int select_nohz_load_balancer(int cpu)
  204. {
  205. return 0;
  206. }
  207. #endif
  208. extern unsigned long rt_needs_cpu(int cpu);
  209. /*
  210. * Only dump TASK_* tasks. (0 for all tasks)
  211. */
  212. extern void show_state_filter(unsigned long state_filter);
  213. static inline void show_state(void)
  214. {
  215. show_state_filter(0);
  216. }
  217. extern void show_regs(struct pt_regs *);
  218. /*
  219. * TASK is a pointer to the task whose backtrace we want to see (or NULL for current
  220. * task), SP is the stack pointer of the first frame that should be shown in the back
  221. * trace (or NULL if the entire call-chain of the task should be shown).
  222. */
  223. extern void show_stack(struct task_struct *task, unsigned long *sp);
  224. void io_schedule(void);
  225. long io_schedule_timeout(long timeout);
  226. extern void cpu_init (void);
  227. extern void trap_init(void);
  228. extern void account_process_tick(struct task_struct *task, int user);
  229. extern void update_process_times(int user);
  230. extern void scheduler_tick(void);
  231. extern void hrtick_resched(void);
  232. extern void sched_show_task(struct task_struct *p);
  233. #ifdef CONFIG_DETECT_SOFTLOCKUP
  234. extern void softlockup_tick(void);
  235. extern void spawn_softlockup_task(void);
  236. extern void touch_softlockup_watchdog(void);
  237. extern void touch_all_softlockup_watchdogs(void);
  238. extern unsigned long softlockup_thresh;
  239. extern unsigned long sysctl_hung_task_check_count;
  240. extern unsigned long sysctl_hung_task_timeout_secs;
  241. extern unsigned long sysctl_hung_task_warnings;
  242. #else
  243. static inline void softlockup_tick(void)
  244. {
  245. }
  246. static inline void spawn_softlockup_task(void)
  247. {
  248. }
  249. static inline void touch_softlockup_watchdog(void)
  250. {
  251. }
  252. static inline void touch_all_softlockup_watchdogs(void)
  253. {
  254. }
  255. #endif
  256. /* Attach to any functions which should be ignored in wchan output. */
  257. #define __sched __attribute__((__section__(".sched.text")))
  258. /* Linker adds these: start and end of __sched functions */
  259. extern char __sched_text_start[], __sched_text_end[];
  260. /* Is this address in the __sched functions? */
  261. extern int in_sched_functions(unsigned long addr);
  262. #define MAX_SCHEDULE_TIMEOUT LONG_MAX
  263. extern signed long FASTCALL(schedule_timeout(signed long timeout));
  264. extern signed long schedule_timeout_interruptible(signed long timeout);
  265. extern signed long schedule_timeout_uninterruptible(signed long timeout);
  266. asmlinkage void schedule(void);
  267. struct nsproxy;
  268. struct user_namespace;
  269. /* Maximum number of active map areas.. This is a random (large) number */
  270. #define DEFAULT_MAX_MAP_COUNT 65536
  271. extern int sysctl_max_map_count;
  272. #include <linux/aio.h>
  273. extern unsigned long
  274. arch_get_unmapped_area(struct file *, unsigned long, unsigned long,
  275. unsigned long, unsigned long);
  276. extern unsigned long
  277. arch_get_unmapped_area_topdown(struct file *filp, unsigned long addr,
  278. unsigned long len, unsigned long pgoff,
  279. unsigned long flags);
  280. extern void arch_unmap_area(struct mm_struct *, unsigned long);
  281. extern void arch_unmap_area_topdown(struct mm_struct *, unsigned long);
  282. #if NR_CPUS >= CONFIG_SPLIT_PTLOCK_CPUS
  283. /*
  284. * The mm counters are not protected by its page_table_lock,
  285. * so must be incremented atomically.
  286. */
  287. #define set_mm_counter(mm, member, value) atomic_long_set(&(mm)->_##member, value)
  288. #define get_mm_counter(mm, member) ((unsigned long)atomic_long_read(&(mm)->_##member))
  289. #define add_mm_counter(mm, member, value) atomic_long_add(value, &(mm)->_##member)
  290. #define inc_mm_counter(mm, member) atomic_long_inc(&(mm)->_##member)
  291. #define dec_mm_counter(mm, member) atomic_long_dec(&(mm)->_##member)
  292. #else /* NR_CPUS < CONFIG_SPLIT_PTLOCK_CPUS */
  293. /*
  294. * The mm counters are protected by its page_table_lock,
  295. * so can be incremented directly.
  296. */
  297. #define set_mm_counter(mm, member, value) (mm)->_##member = (value)
  298. #define get_mm_counter(mm, member) ((mm)->_##member)
  299. #define add_mm_counter(mm, member, value) (mm)->_##member += (value)
  300. #define inc_mm_counter(mm, member) (mm)->_##member++
  301. #define dec_mm_counter(mm, member) (mm)->_##member--
  302. #endif /* NR_CPUS < CONFIG_SPLIT_PTLOCK_CPUS */
  303. #define get_mm_rss(mm) \
  304. (get_mm_counter(mm, file_rss) + get_mm_counter(mm, anon_rss))
  305. #define update_hiwater_rss(mm) do { \
  306. unsigned long _rss = get_mm_rss(mm); \
  307. if ((mm)->hiwater_rss < _rss) \
  308. (mm)->hiwater_rss = _rss; \
  309. } while (0)
  310. #define update_hiwater_vm(mm) do { \
  311. if ((mm)->hiwater_vm < (mm)->total_vm) \
  312. (mm)->hiwater_vm = (mm)->total_vm; \
  313. } while (0)
  314. extern void set_dumpable(struct mm_struct *mm, int value);
  315. extern int get_dumpable(struct mm_struct *mm);
  316. /* mm flags */
  317. /* dumpable bits */
  318. #define MMF_DUMPABLE 0 /* core dump is permitted */
  319. #define MMF_DUMP_SECURELY 1 /* core file is readable only by root */
  320. #define MMF_DUMPABLE_BITS 2
  321. /* coredump filter bits */
  322. #define MMF_DUMP_ANON_PRIVATE 2
  323. #define MMF_DUMP_ANON_SHARED 3
  324. #define MMF_DUMP_MAPPED_PRIVATE 4
  325. #define MMF_DUMP_MAPPED_SHARED 5
  326. #define MMF_DUMP_ELF_HEADERS 6
  327. #define MMF_DUMP_FILTER_SHIFT MMF_DUMPABLE_BITS
  328. #define MMF_DUMP_FILTER_BITS 5
  329. #define MMF_DUMP_FILTER_MASK \
  330. (((1 << MMF_DUMP_FILTER_BITS) - 1) << MMF_DUMP_FILTER_SHIFT)
  331. #define MMF_DUMP_FILTER_DEFAULT \
  332. ((1 << MMF_DUMP_ANON_PRIVATE) | (1 << MMF_DUMP_ANON_SHARED))
  333. struct sighand_struct {
  334. atomic_t count;
  335. struct k_sigaction action[_NSIG];
  336. spinlock_t siglock;
  337. wait_queue_head_t signalfd_wqh;
  338. };
  339. struct pacct_struct {
  340. int ac_flag;
  341. long ac_exitcode;
  342. unsigned long ac_mem;
  343. cputime_t ac_utime, ac_stime;
  344. unsigned long ac_minflt, ac_majflt;
  345. };
  346. /*
  347. * NOTE! "signal_struct" does not have it's own
  348. * locking, because a shared signal_struct always
  349. * implies a shared sighand_struct, so locking
  350. * sighand_struct is always a proper superset of
  351. * the locking of signal_struct.
  352. */
  353. struct signal_struct {
  354. atomic_t count;
  355. atomic_t live;
  356. wait_queue_head_t wait_chldexit; /* for wait4() */
  357. /* current thread group signal load-balancing target: */
  358. struct task_struct *curr_target;
  359. /* shared signal handling: */
  360. struct sigpending shared_pending;
  361. /* thread group exit support */
  362. int group_exit_code;
  363. /* overloaded:
  364. * - notify group_exit_task when ->count is equal to notify_count
  365. * - everyone except group_exit_task is stopped during signal delivery
  366. * of fatal signals, group_exit_task processes the signal.
  367. */
  368. struct task_struct *group_exit_task;
  369. int notify_count;
  370. /* thread group stop support, overloads group_exit_code too */
  371. int group_stop_count;
  372. unsigned int flags; /* see SIGNAL_* flags below */
  373. /* POSIX.1b Interval Timers */
  374. struct list_head posix_timers;
  375. /* ITIMER_REAL timer for the process */
  376. struct hrtimer real_timer;
  377. struct task_struct *tsk;
  378. ktime_t it_real_incr;
  379. /* ITIMER_PROF and ITIMER_VIRTUAL timers for the process */
  380. cputime_t it_prof_expires, it_virt_expires;
  381. cputime_t it_prof_incr, it_virt_incr;
  382. /* job control IDs */
  383. /*
  384. * pgrp and session fields are deprecated.
  385. * use the task_session_Xnr and task_pgrp_Xnr routines below
  386. */
  387. union {
  388. pid_t pgrp __deprecated;
  389. pid_t __pgrp;
  390. };
  391. struct pid *tty_old_pgrp;
  392. union {
  393. pid_t session __deprecated;
  394. pid_t __session;
  395. };
  396. /* boolean value for session group leader */
  397. int leader;
  398. struct tty_struct *tty; /* NULL if no tty */
  399. /*
  400. * Cumulative resource counters for dead threads in the group,
  401. * and for reaped dead child processes forked by this group.
  402. * Live threads maintain their own counters and add to these
  403. * in __exit_signal, except for the group leader.
  404. */
  405. cputime_t utime, stime, cutime, cstime;
  406. cputime_t gtime;
  407. cputime_t cgtime;
  408. unsigned long nvcsw, nivcsw, cnvcsw, cnivcsw;
  409. unsigned long min_flt, maj_flt, cmin_flt, cmaj_flt;
  410. unsigned long inblock, oublock, cinblock, coublock;
  411. /*
  412. * Cumulative ns of scheduled CPU time for dead threads in the
  413. * group, not including a zombie group leader. (This only differs
  414. * from jiffies_to_ns(utime + stime) if sched_clock uses something
  415. * other than jiffies.)
  416. */
  417. unsigned long long sum_sched_runtime;
  418. /*
  419. * We don't bother to synchronize most readers of this at all,
  420. * because there is no reader checking a limit that actually needs
  421. * to get both rlim_cur and rlim_max atomically, and either one
  422. * alone is a single word that can safely be read normally.
  423. * getrlimit/setrlimit use task_lock(current->group_leader) to
  424. * protect this instead of the siglock, because they really
  425. * have no need to disable irqs.
  426. */
  427. struct rlimit rlim[RLIM_NLIMITS];
  428. struct list_head cpu_timers[3];
  429. /* keep the process-shared keyrings here so that they do the right
  430. * thing in threads created with CLONE_THREAD */
  431. #ifdef CONFIG_KEYS
  432. struct key *session_keyring; /* keyring inherited over fork */
  433. struct key *process_keyring; /* keyring private to this process */
  434. #endif
  435. #ifdef CONFIG_BSD_PROCESS_ACCT
  436. struct pacct_struct pacct; /* per-process accounting information */
  437. #endif
  438. #ifdef CONFIG_TASKSTATS
  439. struct taskstats *stats;
  440. #endif
  441. #ifdef CONFIG_AUDIT
  442. unsigned audit_tty;
  443. struct tty_audit_buf *tty_audit_buf;
  444. #endif
  445. };
  446. /* Context switch must be unlocked if interrupts are to be enabled */
  447. #ifdef __ARCH_WANT_INTERRUPTS_ON_CTXSW
  448. # define __ARCH_WANT_UNLOCKED_CTXSW
  449. #endif
  450. /*
  451. * Bits in flags field of signal_struct.
  452. */
  453. #define SIGNAL_STOP_STOPPED 0x00000001 /* job control stop in effect */
  454. #define SIGNAL_STOP_DEQUEUED 0x00000002 /* stop signal dequeued */
  455. #define SIGNAL_STOP_CONTINUED 0x00000004 /* SIGCONT since WCONTINUED reap */
  456. #define SIGNAL_GROUP_EXIT 0x00000008 /* group exit in progress */
  457. /*
  458. * Some day this will be a full-fledged user tracking system..
  459. */
  460. struct user_struct {
  461. atomic_t __count; /* reference count */
  462. atomic_t processes; /* How many processes does this user have? */
  463. atomic_t files; /* How many open files does this user have? */
  464. atomic_t sigpending; /* How many pending signals does this user have? */
  465. #ifdef CONFIG_INOTIFY_USER
  466. atomic_t inotify_watches; /* How many inotify watches does this user have? */
  467. atomic_t inotify_devs; /* How many inotify devs does this user have opened? */
  468. #endif
  469. #ifdef CONFIG_POSIX_MQUEUE
  470. /* protected by mq_lock */
  471. unsigned long mq_bytes; /* How many bytes can be allocated to mqueue? */
  472. #endif
  473. unsigned long locked_shm; /* How many pages of mlocked shm ? */
  474. #ifdef CONFIG_KEYS
  475. struct key *uid_keyring; /* UID specific keyring */
  476. struct key *session_keyring; /* UID's default session keyring */
  477. #endif
  478. /* Hash table maintenance information */
  479. struct hlist_node uidhash_node;
  480. uid_t uid;
  481. #ifdef CONFIG_FAIR_USER_SCHED
  482. struct task_group *tg;
  483. #ifdef CONFIG_SYSFS
  484. struct kobject kobj;
  485. struct work_struct work;
  486. #endif
  487. #endif
  488. };
  489. extern int uids_sysfs_init(void);
  490. extern struct user_struct *find_user(uid_t);
  491. extern struct user_struct root_user;
  492. #define INIT_USER (&root_user)
  493. struct backing_dev_info;
  494. struct reclaim_state;
  495. #if defined(CONFIG_SCHEDSTATS) || defined(CONFIG_TASK_DELAY_ACCT)
  496. struct sched_info {
  497. /* cumulative counters */
  498. unsigned long pcount; /* # of times run on this cpu */
  499. unsigned long long cpu_time, /* time spent on the cpu */
  500. run_delay; /* time spent waiting on a runqueue */
  501. /* timestamps */
  502. unsigned long long last_arrival,/* when we last ran on a cpu */
  503. last_queued; /* when we were last queued to run */
  504. #ifdef CONFIG_SCHEDSTATS
  505. /* BKL stats */
  506. unsigned int bkl_count;
  507. #endif
  508. };
  509. #endif /* defined(CONFIG_SCHEDSTATS) || defined(CONFIG_TASK_DELAY_ACCT) */
  510. #ifdef CONFIG_SCHEDSTATS
  511. extern const struct file_operations proc_schedstat_operations;
  512. #endif /* CONFIG_SCHEDSTATS */
  513. #ifdef CONFIG_TASK_DELAY_ACCT
  514. struct task_delay_info {
  515. spinlock_t lock;
  516. unsigned int flags; /* Private per-task flags */
  517. /* For each stat XXX, add following, aligned appropriately
  518. *
  519. * struct timespec XXX_start, XXX_end;
  520. * u64 XXX_delay;
  521. * u32 XXX_count;
  522. *
  523. * Atomicity of updates to XXX_delay, XXX_count protected by
  524. * single lock above (split into XXX_lock if contention is an issue).
  525. */
  526. /*
  527. * XXX_count is incremented on every XXX operation, the delay
  528. * associated with the operation is added to XXX_delay.
  529. * XXX_delay contains the accumulated delay time in nanoseconds.
  530. */
  531. struct timespec blkio_start, blkio_end; /* Shared by blkio, swapin */
  532. u64 blkio_delay; /* wait for sync block io completion */
  533. u64 swapin_delay; /* wait for swapin block io completion */
  534. u32 blkio_count; /* total count of the number of sync block */
  535. /* io operations performed */
  536. u32 swapin_count; /* total count of the number of swapin block */
  537. /* io operations performed */
  538. };
  539. #endif /* CONFIG_TASK_DELAY_ACCT */
  540. static inline int sched_info_on(void)
  541. {
  542. #ifdef CONFIG_SCHEDSTATS
  543. return 1;
  544. #elif defined(CONFIG_TASK_DELAY_ACCT)
  545. extern int delayacct_on;
  546. return delayacct_on;
  547. #else
  548. return 0;
  549. #endif
  550. }
  551. enum cpu_idle_type {
  552. CPU_IDLE,
  553. CPU_NOT_IDLE,
  554. CPU_NEWLY_IDLE,
  555. CPU_MAX_IDLE_TYPES
  556. };
  557. /*
  558. * sched-domains (multiprocessor balancing) declarations:
  559. */
  560. /*
  561. * Increase resolution of nice-level calculations:
  562. */
  563. #define SCHED_LOAD_SHIFT 10
  564. #define SCHED_LOAD_SCALE (1L << SCHED_LOAD_SHIFT)
  565. #define SCHED_LOAD_SCALE_FUZZ SCHED_LOAD_SCALE
  566. #ifdef CONFIG_SMP
  567. #define SD_LOAD_BALANCE 1 /* Do load balancing on this domain. */
  568. #define SD_BALANCE_NEWIDLE 2 /* Balance when about to become idle */
  569. #define SD_BALANCE_EXEC 4 /* Balance on exec */
  570. #define SD_BALANCE_FORK 8 /* Balance on fork, clone */
  571. #define SD_WAKE_IDLE 16 /* Wake to idle CPU on task wakeup */
  572. #define SD_WAKE_AFFINE 32 /* Wake task to waking CPU */
  573. #define SD_WAKE_BALANCE 64 /* Perform balancing at task wakeup */
  574. #define SD_SHARE_CPUPOWER 128 /* Domain members share cpu power */
  575. #define SD_POWERSAVINGS_BALANCE 256 /* Balance for power savings */
  576. #define SD_SHARE_PKG_RESOURCES 512 /* Domain members share cpu pkg resources */
  577. #define SD_SERIALIZE 1024 /* Only a single load balancing instance */
  578. #define BALANCE_FOR_MC_POWER \
  579. (sched_smt_power_savings ? SD_POWERSAVINGS_BALANCE : 0)
  580. #define BALANCE_FOR_PKG_POWER \
  581. ((sched_mc_power_savings || sched_smt_power_savings) ? \
  582. SD_POWERSAVINGS_BALANCE : 0)
  583. #define test_sd_parent(sd, flag) ((sd->parent && \
  584. (sd->parent->flags & flag)) ? 1 : 0)
  585. struct sched_group {
  586. struct sched_group *next; /* Must be a circular list */
  587. cpumask_t cpumask;
  588. /*
  589. * CPU power of this group, SCHED_LOAD_SCALE being max power for a
  590. * single CPU. This is read only (except for setup, hotplug CPU).
  591. * Note : Never change cpu_power without recompute its reciprocal
  592. */
  593. unsigned int __cpu_power;
  594. /*
  595. * reciprocal value of cpu_power to avoid expensive divides
  596. * (see include/linux/reciprocal_div.h)
  597. */
  598. u32 reciprocal_cpu_power;
  599. };
  600. struct sched_domain {
  601. /* These fields must be setup */
  602. struct sched_domain *parent; /* top domain must be null terminated */
  603. struct sched_domain *child; /* bottom domain must be null terminated */
  604. struct sched_group *groups; /* the balancing groups of the domain */
  605. cpumask_t span; /* span of all CPUs in this domain */
  606. unsigned long min_interval; /* Minimum balance interval ms */
  607. unsigned long max_interval; /* Maximum balance interval ms */
  608. unsigned int busy_factor; /* less balancing by factor if busy */
  609. unsigned int imbalance_pct; /* No balance until over watermark */
  610. unsigned int cache_nice_tries; /* Leave cache hot tasks for # tries */
  611. unsigned int busy_idx;
  612. unsigned int idle_idx;
  613. unsigned int newidle_idx;
  614. unsigned int wake_idx;
  615. unsigned int forkexec_idx;
  616. int flags; /* See SD_* */
  617. /* Runtime fields. */
  618. unsigned long last_balance; /* init to jiffies. units in jiffies */
  619. unsigned int balance_interval; /* initialise to 1. units in ms. */
  620. unsigned int nr_balance_failed; /* initialise to 0 */
  621. #ifdef CONFIG_SCHEDSTATS
  622. /* load_balance() stats */
  623. unsigned int lb_count[CPU_MAX_IDLE_TYPES];
  624. unsigned int lb_failed[CPU_MAX_IDLE_TYPES];
  625. unsigned int lb_balanced[CPU_MAX_IDLE_TYPES];
  626. unsigned int lb_imbalance[CPU_MAX_IDLE_TYPES];
  627. unsigned int lb_gained[CPU_MAX_IDLE_TYPES];
  628. unsigned int lb_hot_gained[CPU_MAX_IDLE_TYPES];
  629. unsigned int lb_nobusyg[CPU_MAX_IDLE_TYPES];
  630. unsigned int lb_nobusyq[CPU_MAX_IDLE_TYPES];
  631. /* Active load balancing */
  632. unsigned int alb_count;
  633. unsigned int alb_failed;
  634. unsigned int alb_pushed;
  635. /* SD_BALANCE_EXEC stats */
  636. unsigned int sbe_count;
  637. unsigned int sbe_balanced;
  638. unsigned int sbe_pushed;
  639. /* SD_BALANCE_FORK stats */
  640. unsigned int sbf_count;
  641. unsigned int sbf_balanced;
  642. unsigned int sbf_pushed;
  643. /* try_to_wake_up() stats */
  644. unsigned int ttwu_wake_remote;
  645. unsigned int ttwu_move_affine;
  646. unsigned int ttwu_move_balance;
  647. #endif
  648. };
  649. extern void partition_sched_domains(int ndoms_new, cpumask_t *doms_new);
  650. #endif /* CONFIG_SMP */
  651. /*
  652. * A runqueue laden with a single nice 0 task scores a weighted_cpuload of
  653. * SCHED_LOAD_SCALE. This function returns 1 if any cpu is laden with a
  654. * task of nice 0 or enough lower priority tasks to bring up the
  655. * weighted_cpuload
  656. */
  657. static inline int above_background_load(void)
  658. {
  659. unsigned long cpu;
  660. for_each_online_cpu(cpu) {
  661. if (weighted_cpuload(cpu) >= SCHED_LOAD_SCALE)
  662. return 1;
  663. }
  664. return 0;
  665. }
  666. struct io_context; /* See blkdev.h */
  667. #define NGROUPS_SMALL 32
  668. #define NGROUPS_PER_BLOCK ((int)(PAGE_SIZE / sizeof(gid_t)))
  669. struct group_info {
  670. int ngroups;
  671. atomic_t usage;
  672. gid_t small_block[NGROUPS_SMALL];
  673. int nblocks;
  674. gid_t *blocks[0];
  675. };
  676. /*
  677. * get_group_info() must be called with the owning task locked (via task_lock())
  678. * when task != current. The reason being that the vast majority of callers are
  679. * looking at current->group_info, which can not be changed except by the
  680. * current task. Changing current->group_info requires the task lock, too.
  681. */
  682. #define get_group_info(group_info) do { \
  683. atomic_inc(&(group_info)->usage); \
  684. } while (0)
  685. #define put_group_info(group_info) do { \
  686. if (atomic_dec_and_test(&(group_info)->usage)) \
  687. groups_free(group_info); \
  688. } while (0)
  689. extern struct group_info *groups_alloc(int gidsetsize);
  690. extern void groups_free(struct group_info *group_info);
  691. extern int set_current_groups(struct group_info *group_info);
  692. extern int groups_search(struct group_info *group_info, gid_t grp);
  693. /* access the groups "array" with this macro */
  694. #define GROUP_AT(gi, i) \
  695. ((gi)->blocks[(i)/NGROUPS_PER_BLOCK][(i)%NGROUPS_PER_BLOCK])
  696. #ifdef ARCH_HAS_PREFETCH_SWITCH_STACK
  697. extern void prefetch_stack(struct task_struct *t);
  698. #else
  699. static inline void prefetch_stack(struct task_struct *t) { }
  700. #endif
  701. struct audit_context; /* See audit.c */
  702. struct mempolicy;
  703. struct pipe_inode_info;
  704. struct uts_namespace;
  705. struct rq;
  706. struct sched_domain;
  707. struct sched_class {
  708. const struct sched_class *next;
  709. void (*enqueue_task) (struct rq *rq, struct task_struct *p, int wakeup);
  710. void (*dequeue_task) (struct rq *rq, struct task_struct *p, int sleep);
  711. void (*yield_task) (struct rq *rq);
  712. int (*select_task_rq)(struct task_struct *p, int sync);
  713. void (*check_preempt_curr) (struct rq *rq, struct task_struct *p);
  714. struct task_struct * (*pick_next_task) (struct rq *rq);
  715. void (*put_prev_task) (struct rq *rq, struct task_struct *p);
  716. #ifdef CONFIG_SMP
  717. unsigned long (*load_balance) (struct rq *this_rq, int this_cpu,
  718. struct rq *busiest, unsigned long max_load_move,
  719. struct sched_domain *sd, enum cpu_idle_type idle,
  720. int *all_pinned, int *this_best_prio);
  721. int (*move_one_task) (struct rq *this_rq, int this_cpu,
  722. struct rq *busiest, struct sched_domain *sd,
  723. enum cpu_idle_type idle);
  724. void (*pre_schedule) (struct rq *this_rq, struct task_struct *task);
  725. void (*post_schedule) (struct rq *this_rq);
  726. void (*task_wake_up) (struct rq *this_rq, struct task_struct *task);
  727. #endif
  728. void (*set_curr_task) (struct rq *rq);
  729. void (*task_tick) (struct rq *rq, struct task_struct *p, int queued);
  730. void (*task_new) (struct rq *rq, struct task_struct *p);
  731. void (*set_cpus_allowed)(struct task_struct *p, cpumask_t *newmask);
  732. void (*join_domain)(struct rq *rq);
  733. void (*leave_domain)(struct rq *rq);
  734. void (*switched_from) (struct rq *this_rq, struct task_struct *task,
  735. int running);
  736. void (*switched_to) (struct rq *this_rq, struct task_struct *task,
  737. int running);
  738. void (*prio_changed) (struct rq *this_rq, struct task_struct *task,
  739. int oldprio, int running);
  740. };
  741. struct load_weight {
  742. unsigned long weight, inv_weight;
  743. };
  744. /*
  745. * CFS stats for a schedulable entity (task, task-group etc)
  746. *
  747. * Current field usage histogram:
  748. *
  749. * 4 se->block_start
  750. * 4 se->run_node
  751. * 4 se->sleep_start
  752. * 6 se->load.weight
  753. */
  754. struct sched_entity {
  755. struct load_weight load; /* for load-balancing */
  756. struct rb_node run_node;
  757. unsigned int on_rq;
  758. u64 exec_start;
  759. u64 sum_exec_runtime;
  760. u64 vruntime;
  761. u64 prev_sum_exec_runtime;
  762. #ifdef CONFIG_SCHEDSTATS
  763. u64 wait_start;
  764. u64 wait_max;
  765. u64 wait_count;
  766. u64 wait_sum;
  767. u64 sleep_start;
  768. u64 sleep_max;
  769. s64 sum_sleep_runtime;
  770. u64 block_start;
  771. u64 block_max;
  772. u64 exec_max;
  773. u64 slice_max;
  774. u64 nr_migrations;
  775. u64 nr_migrations_cold;
  776. u64 nr_failed_migrations_affine;
  777. u64 nr_failed_migrations_running;
  778. u64 nr_failed_migrations_hot;
  779. u64 nr_forced_migrations;
  780. u64 nr_forced2_migrations;
  781. u64 nr_wakeups;
  782. u64 nr_wakeups_sync;
  783. u64 nr_wakeups_migrate;
  784. u64 nr_wakeups_local;
  785. u64 nr_wakeups_remote;
  786. u64 nr_wakeups_affine;
  787. u64 nr_wakeups_affine_attempts;
  788. u64 nr_wakeups_passive;
  789. u64 nr_wakeups_idle;
  790. #endif
  791. #ifdef CONFIG_FAIR_GROUP_SCHED
  792. struct sched_entity *parent;
  793. /* rq on which this entity is (to be) queued: */
  794. struct cfs_rq *cfs_rq;
  795. /* rq "owned" by this entity/group: */
  796. struct cfs_rq *my_q;
  797. #endif
  798. };
  799. struct sched_rt_entity {
  800. struct list_head run_list;
  801. unsigned int time_slice;
  802. unsigned long timeout;
  803. int nr_cpus_allowed;
  804. #ifdef CONFIG_FAIR_GROUP_SCHED
  805. struct sched_rt_entity *parent;
  806. /* rq on which this entity is (to be) queued: */
  807. struct rt_rq *rt_rq;
  808. /* rq "owned" by this entity/group: */
  809. struct rt_rq *my_q;
  810. #endif
  811. };
  812. struct task_struct {
  813. volatile long state; /* -1 unrunnable, 0 runnable, >0 stopped */
  814. void *stack;
  815. atomic_t usage;
  816. unsigned int flags; /* per process flags, defined below */
  817. unsigned int ptrace;
  818. int lock_depth; /* BKL lock depth */
  819. #ifdef CONFIG_SMP
  820. #ifdef __ARCH_WANT_UNLOCKED_CTXSW
  821. int oncpu;
  822. #endif
  823. #endif
  824. int prio, static_prio, normal_prio;
  825. const struct sched_class *sched_class;
  826. struct sched_entity se;
  827. struct sched_rt_entity rt;
  828. #ifdef CONFIG_PREEMPT_NOTIFIERS
  829. /* list of struct preempt_notifier: */
  830. struct hlist_head preempt_notifiers;
  831. #endif
  832. /*
  833. * fpu_counter contains the number of consecutive context switches
  834. * that the FPU is used. If this is over a threshold, the lazy fpu
  835. * saving becomes unlazy to save the trap. This is an unsigned char
  836. * so that after 256 times the counter wraps and the behavior turns
  837. * lazy again; this to deal with bursty apps that only use FPU for
  838. * a short time
  839. */
  840. unsigned char fpu_counter;
  841. s8 oomkilladj; /* OOM kill score adjustment (bit shift). */
  842. #ifdef CONFIG_BLK_DEV_IO_TRACE
  843. unsigned int btrace_seq;
  844. #endif
  845. unsigned int policy;
  846. cpumask_t cpus_allowed;
  847. #ifdef CONFIG_PREEMPT_RCU
  848. int rcu_read_lock_nesting;
  849. int rcu_flipctr_idx;
  850. #endif /* #ifdef CONFIG_PREEMPT_RCU */
  851. #if defined(CONFIG_SCHEDSTATS) || defined(CONFIG_TASK_DELAY_ACCT)
  852. struct sched_info sched_info;
  853. #endif
  854. struct list_head tasks;
  855. /*
  856. * ptrace_list/ptrace_children forms the list of my children
  857. * that were stolen by a ptracer.
  858. */
  859. struct list_head ptrace_children;
  860. struct list_head ptrace_list;
  861. struct mm_struct *mm, *active_mm;
  862. /* task state */
  863. struct linux_binfmt *binfmt;
  864. int exit_state;
  865. int exit_code, exit_signal;
  866. int pdeath_signal; /* The signal sent when the parent dies */
  867. /* ??? */
  868. unsigned int personality;
  869. unsigned did_exec:1;
  870. pid_t pid;
  871. pid_t tgid;
  872. #ifdef CONFIG_CC_STACKPROTECTOR
  873. /* Canary value for the -fstack-protector gcc feature */
  874. unsigned long stack_canary;
  875. #endif
  876. /*
  877. * pointers to (original) parent process, youngest child, younger sibling,
  878. * older sibling, respectively. (p->father can be replaced with
  879. * p->parent->pid)
  880. */
  881. struct task_struct *real_parent; /* real parent process (when being debugged) */
  882. struct task_struct *parent; /* parent process */
  883. /*
  884. * children/sibling forms the list of my children plus the
  885. * tasks I'm ptracing.
  886. */
  887. struct list_head children; /* list of my children */
  888. struct list_head sibling; /* linkage in my parent's children list */
  889. struct task_struct *group_leader; /* threadgroup leader */
  890. /* PID/PID hash table linkage. */
  891. struct pid_link pids[PIDTYPE_MAX];
  892. struct list_head thread_group;
  893. struct completion *vfork_done; /* for vfork() */
  894. int __user *set_child_tid; /* CLONE_CHILD_SETTID */
  895. int __user *clear_child_tid; /* CLONE_CHILD_CLEARTID */
  896. unsigned int rt_priority;
  897. cputime_t utime, stime, utimescaled, stimescaled;
  898. cputime_t gtime;
  899. cputime_t prev_utime, prev_stime;
  900. unsigned long nvcsw, nivcsw; /* context switch counts */
  901. struct timespec start_time; /* monotonic time */
  902. struct timespec real_start_time; /* boot based time */
  903. /* mm fault and swap info: this can arguably be seen as either mm-specific or thread-specific */
  904. unsigned long min_flt, maj_flt;
  905. cputime_t it_prof_expires, it_virt_expires;
  906. unsigned long long it_sched_expires;
  907. struct list_head cpu_timers[3];
  908. /* process credentials */
  909. uid_t uid,euid,suid,fsuid;
  910. gid_t gid,egid,sgid,fsgid;
  911. struct group_info *group_info;
  912. kernel_cap_t cap_effective, cap_inheritable, cap_permitted;
  913. unsigned keep_capabilities:1;
  914. struct user_struct *user;
  915. #ifdef CONFIG_KEYS
  916. struct key *request_key_auth; /* assumed request_key authority */
  917. struct key *thread_keyring; /* keyring private to this thread */
  918. unsigned char jit_keyring; /* default keyring to attach requested keys to */
  919. #endif
  920. char comm[TASK_COMM_LEN]; /* executable name excluding path
  921. - access with [gs]et_task_comm (which lock
  922. it with task_lock())
  923. - initialized normally by flush_old_exec */
  924. /* file system info */
  925. int link_count, total_link_count;
  926. #ifdef CONFIG_SYSVIPC
  927. /* ipc stuff */
  928. struct sysv_sem sysvsem;
  929. #endif
  930. #ifdef CONFIG_DETECT_SOFTLOCKUP
  931. /* hung task detection */
  932. unsigned long last_switch_timestamp;
  933. unsigned long last_switch_count;
  934. #endif
  935. /* CPU-specific state of this task */
  936. struct thread_struct thread;
  937. /* filesystem information */
  938. struct fs_struct *fs;
  939. /* open file information */
  940. struct files_struct *files;
  941. /* namespaces */
  942. struct nsproxy *nsproxy;
  943. /* signal handlers */
  944. struct signal_struct *signal;
  945. struct sighand_struct *sighand;
  946. sigset_t blocked, real_blocked;
  947. sigset_t saved_sigmask; /* To be restored with TIF_RESTORE_SIGMASK */
  948. struct sigpending pending;
  949. unsigned long sas_ss_sp;
  950. size_t sas_ss_size;
  951. int (*notifier)(void *priv);
  952. void *notifier_data;
  953. sigset_t *notifier_mask;
  954. #ifdef CONFIG_SECURITY
  955. void *security;
  956. #endif
  957. struct audit_context *audit_context;
  958. seccomp_t seccomp;
  959. /* Thread group tracking */
  960. u32 parent_exec_id;
  961. u32 self_exec_id;
  962. /* Protection of (de-)allocation: mm, files, fs, tty, keyrings */
  963. spinlock_t alloc_lock;
  964. /* Protection of the PI data structures: */
  965. spinlock_t pi_lock;
  966. #ifdef CONFIG_RT_MUTEXES
  967. /* PI waiters blocked on a rt_mutex held by this task */
  968. struct plist_head pi_waiters;
  969. /* Deadlock detection and priority inheritance handling */
  970. struct rt_mutex_waiter *pi_blocked_on;
  971. #endif
  972. #ifdef CONFIG_DEBUG_MUTEXES
  973. /* mutex deadlock detection */
  974. struct mutex_waiter *blocked_on;
  975. #endif
  976. #ifdef CONFIG_TRACE_IRQFLAGS
  977. unsigned int irq_events;
  978. int hardirqs_enabled;
  979. unsigned long hardirq_enable_ip;
  980. unsigned int hardirq_enable_event;
  981. unsigned long hardirq_disable_ip;
  982. unsigned int hardirq_disable_event;
  983. int softirqs_enabled;
  984. unsigned long softirq_disable_ip;
  985. unsigned int softirq_disable_event;
  986. unsigned long softirq_enable_ip;
  987. unsigned int softirq_enable_event;
  988. int hardirq_context;
  989. int softirq_context;
  990. #endif
  991. #ifdef CONFIG_LOCKDEP
  992. # define MAX_LOCK_DEPTH 30UL
  993. u64 curr_chain_key;
  994. int lockdep_depth;
  995. struct held_lock held_locks[MAX_LOCK_DEPTH];
  996. unsigned int lockdep_recursion;
  997. #endif
  998. /* journalling filesystem info */
  999. void *journal_info;
  1000. /* stacked block device info */
  1001. struct bio *bio_list, **bio_tail;
  1002. /* VM state */
  1003. struct reclaim_state *reclaim_state;
  1004. struct backing_dev_info *backing_dev_info;
  1005. struct io_context *io_context;
  1006. unsigned long ptrace_message;
  1007. siginfo_t *last_siginfo; /* For ptrace use. */
  1008. #ifdef CONFIG_TASK_XACCT
  1009. /* i/o counters(bytes read/written, #syscalls */
  1010. u64 rchar, wchar, syscr, syscw;
  1011. #endif
  1012. struct task_io_accounting ioac;
  1013. #if defined(CONFIG_TASK_XACCT)
  1014. u64 acct_rss_mem1; /* accumulated rss usage */
  1015. u64 acct_vm_mem1; /* accumulated virtual memory usage */
  1016. cputime_t acct_stimexpd;/* stime since last update */
  1017. #endif
  1018. #ifdef CONFIG_NUMA
  1019. struct mempolicy *mempolicy;
  1020. short il_next;
  1021. #endif
  1022. #ifdef CONFIG_CPUSETS
  1023. nodemask_t mems_allowed;
  1024. int cpuset_mems_generation;
  1025. int cpuset_mem_spread_rotor;
  1026. #endif
  1027. #ifdef CONFIG_CGROUPS
  1028. /* Control Group info protected by css_set_lock */
  1029. struct css_set *cgroups;
  1030. /* cg_list protected by css_set_lock and tsk->alloc_lock */
  1031. struct list_head cg_list;
  1032. #endif
  1033. #ifdef CONFIG_FUTEX
  1034. struct robust_list_head __user *robust_list;
  1035. #ifdef CONFIG_COMPAT
  1036. struct compat_robust_list_head __user *compat_robust_list;
  1037. #endif
  1038. struct list_head pi_state_list;
  1039. struct futex_pi_state *pi_state_cache;
  1040. #endif
  1041. atomic_t fs_excl; /* holding fs exclusive resources */
  1042. struct rcu_head rcu;
  1043. /*
  1044. * cache last used pipe for splice
  1045. */
  1046. struct pipe_inode_info *splice_pipe;
  1047. #ifdef CONFIG_TASK_DELAY_ACCT
  1048. struct task_delay_info *delays;
  1049. #endif
  1050. #ifdef CONFIG_FAULT_INJECTION
  1051. int make_it_fail;
  1052. #endif
  1053. struct prop_local_single dirties;
  1054. #ifdef CONFIG_LATENCYTOP
  1055. int latency_record_count;
  1056. struct latency_record latency_record[LT_SAVECOUNT];
  1057. #endif
  1058. };
  1059. /*
  1060. * Priority of a process goes from 0..MAX_PRIO-1, valid RT
  1061. * priority is 0..MAX_RT_PRIO-1, and SCHED_NORMAL/SCHED_BATCH
  1062. * tasks are in the range MAX_RT_PRIO..MAX_PRIO-1. Priority
  1063. * values are inverted: lower p->prio value means higher priority.
  1064. *
  1065. * The MAX_USER_RT_PRIO value allows the actual maximum
  1066. * RT priority to be separate from the value exported to
  1067. * user-space. This allows kernel threads to set their
  1068. * priority to a value higher than any user task. Note:
  1069. * MAX_RT_PRIO must not be smaller than MAX_USER_RT_PRIO.
  1070. */
  1071. #define MAX_USER_RT_PRIO 100
  1072. #define MAX_RT_PRIO MAX_USER_RT_PRIO
  1073. #define MAX_PRIO (MAX_RT_PRIO + 40)
  1074. #define DEFAULT_PRIO (MAX_RT_PRIO + 20)
  1075. static inline int rt_prio(int prio)
  1076. {
  1077. if (unlikely(prio < MAX_RT_PRIO))
  1078. return 1;
  1079. return 0;
  1080. }
  1081. static inline int rt_task(struct task_struct *p)
  1082. {
  1083. return rt_prio(p->prio);
  1084. }
  1085. static inline void set_task_session(struct task_struct *tsk, pid_t session)
  1086. {
  1087. tsk->signal->__session = session;
  1088. }
  1089. static inline void set_task_pgrp(struct task_struct *tsk, pid_t pgrp)
  1090. {
  1091. tsk->signal->__pgrp = pgrp;
  1092. }
  1093. static inline struct pid *task_pid(struct task_struct *task)
  1094. {
  1095. return task->pids[PIDTYPE_PID].pid;
  1096. }
  1097. static inline struct pid *task_tgid(struct task_struct *task)
  1098. {
  1099. return task->group_leader->pids[PIDTYPE_PID].pid;
  1100. }
  1101. static inline struct pid *task_pgrp(struct task_struct *task)
  1102. {
  1103. return task->group_leader->pids[PIDTYPE_PGID].pid;
  1104. }
  1105. static inline struct pid *task_session(struct task_struct *task)
  1106. {
  1107. return task->group_leader->pids[PIDTYPE_SID].pid;
  1108. }
  1109. struct pid_namespace;
  1110. /*
  1111. * the helpers to get the task's different pids as they are seen
  1112. * from various namespaces
  1113. *
  1114. * task_xid_nr() : global id, i.e. the id seen from the init namespace;
  1115. * task_xid_vnr() : virtual id, i.e. the id seen from the namespace the task
  1116. * belongs to. this only makes sence when called in the
  1117. * context of the task that belongs to the same namespace;
  1118. * task_xid_nr_ns() : id seen from the ns specified;
  1119. *
  1120. * set_task_vxid() : assigns a virtual id to a task;
  1121. *
  1122. * see also pid_nr() etc in include/linux/pid.h
  1123. */
  1124. static inline pid_t task_pid_nr(struct task_struct *tsk)
  1125. {
  1126. return tsk->pid;
  1127. }
  1128. pid_t task_pid_nr_ns(struct task_struct *tsk, struct pid_namespace *ns);
  1129. static inline pid_t task_pid_vnr(struct task_struct *tsk)
  1130. {
  1131. return pid_vnr(task_pid(tsk));
  1132. }
  1133. static inline pid_t task_tgid_nr(struct task_struct *tsk)
  1134. {
  1135. return tsk->tgid;
  1136. }
  1137. pid_t task_tgid_nr_ns(struct task_struct *tsk, struct pid_namespace *ns);
  1138. static inline pid_t task_tgid_vnr(struct task_struct *tsk)
  1139. {
  1140. return pid_vnr(task_tgid(tsk));
  1141. }
  1142. static inline pid_t task_pgrp_nr(struct task_struct *tsk)
  1143. {
  1144. return tsk->signal->__pgrp;
  1145. }
  1146. pid_t task_pgrp_nr_ns(struct task_struct *tsk, struct pid_namespace *ns);
  1147. static inline pid_t task_pgrp_vnr(struct task_struct *tsk)
  1148. {
  1149. return pid_vnr(task_pgrp(tsk));
  1150. }
  1151. static inline pid_t task_session_nr(struct task_struct *tsk)
  1152. {
  1153. return tsk->signal->__session;
  1154. }
  1155. pid_t task_session_nr_ns(struct task_struct *tsk, struct pid_namespace *ns);
  1156. static inline pid_t task_session_vnr(struct task_struct *tsk)
  1157. {
  1158. return pid_vnr(task_session(tsk));
  1159. }
  1160. /**
  1161. * pid_alive - check that a task structure is not stale
  1162. * @p: Task structure to be checked.
  1163. *
  1164. * Test if a process is not yet dead (at most zombie state)
  1165. * If pid_alive fails, then pointers within the task structure
  1166. * can be stale and must not be dereferenced.
  1167. */
  1168. static inline int pid_alive(struct task_struct *p)
  1169. {
  1170. return p->pids[PIDTYPE_PID].pid != NULL;
  1171. }
  1172. /**
  1173. * is_global_init - check if a task structure is init
  1174. * @tsk: Task structure to be checked.
  1175. *
  1176. * Check if a task structure is the first user space task the kernel created.
  1177. */
  1178. static inline int is_global_init(struct task_struct *tsk)
  1179. {
  1180. return tsk->pid == 1;
  1181. }
  1182. /*
  1183. * is_container_init:
  1184. * check whether in the task is init in its own pid namespace.
  1185. */
  1186. extern int is_container_init(struct task_struct *tsk);
  1187. extern struct pid *cad_pid;
  1188. extern void free_task(struct task_struct *tsk);
  1189. #define get_task_struct(tsk) do { atomic_inc(&(tsk)->usage); } while(0)
  1190. extern void __put_task_struct(struct task_struct *t);
  1191. static inline void put_task_struct(struct task_struct *t)
  1192. {
  1193. if (atomic_dec_and_test(&t->usage))
  1194. __put_task_struct(t);
  1195. }
  1196. /*
  1197. * Per process flags
  1198. */
  1199. #define PF_ALIGNWARN 0x00000001 /* Print alignment warning msgs */
  1200. /* Not implemented yet, only for 486*/
  1201. #define PF_STARTING 0x00000002 /* being created */
  1202. #define PF_EXITING 0x00000004 /* getting shut down */
  1203. #define PF_EXITPIDONE 0x00000008 /* pi exit done on shut down */
  1204. #define PF_VCPU 0x00000010 /* I'm a virtual CPU */
  1205. #define PF_FORKNOEXEC 0x00000040 /* forked but didn't exec */
  1206. #define PF_SUPERPRIV 0x00000100 /* used super-user privileges */
  1207. #define PF_DUMPCORE 0x00000200 /* dumped core */
  1208. #define PF_SIGNALED 0x00000400 /* killed by a signal */
  1209. #define PF_MEMALLOC 0x00000800 /* Allocating memory */
  1210. #define PF_FLUSHER 0x00001000 /* responsible for disk writeback */
  1211. #define PF_USED_MATH 0x00002000 /* if unset the fpu must be initialized before use */
  1212. #define PF_NOFREEZE 0x00008000 /* this thread should not be frozen */
  1213. #define PF_FROZEN 0x00010000 /* frozen for system suspend */
  1214. #define PF_FSTRANS 0x00020000 /* inside a filesystem transaction */
  1215. #define PF_KSWAPD 0x00040000 /* I am kswapd */
  1216. #define PF_SWAPOFF 0x00080000 /* I am in swapoff */
  1217. #define PF_LESS_THROTTLE 0x00100000 /* Throttle me less: I clean memory */
  1218. #define PF_BORROWED_MM 0x00200000 /* I am a kthread doing use_mm */
  1219. #define PF_RANDOMIZE 0x00400000 /* randomize virtual address space */
  1220. #define PF_SWAPWRITE 0x00800000 /* Allowed to write to swap */
  1221. #define PF_SPREAD_PAGE 0x01000000 /* Spread page cache over cpuset */
  1222. #define PF_SPREAD_SLAB 0x02000000 /* Spread some slab caches over cpuset */
  1223. #define PF_MEMPOLICY 0x10000000 /* Non-default NUMA mempolicy */
  1224. #define PF_MUTEX_TESTER 0x20000000 /* Thread belongs to the rt mutex tester */
  1225. #define PF_FREEZER_SKIP 0x40000000 /* Freezer should not count it as freezeable */
  1226. /*
  1227. * Only the _current_ task can read/write to tsk->flags, but other
  1228. * tasks can access tsk->flags in readonly mode for example
  1229. * with tsk_used_math (like during threaded core dumping).
  1230. * There is however an exception to this rule during ptrace
  1231. * or during fork: the ptracer task is allowed to write to the
  1232. * child->flags of its traced child (same goes for fork, the parent
  1233. * can write to the child->flags), because we're guaranteed the
  1234. * child is not running and in turn not changing child->flags
  1235. * at the same time the parent does it.
  1236. */
  1237. #define clear_stopped_child_used_math(child) do { (child)->flags &= ~PF_USED_MATH; } while (0)
  1238. #define set_stopped_child_used_math(child) do { (child)->flags |= PF_USED_MATH; } while (0)
  1239. #define clear_used_math() clear_stopped_child_used_math(current)
  1240. #define set_used_math() set_stopped_child_used_math(current)
  1241. #define conditional_stopped_child_used_math(condition, child) \
  1242. do { (child)->flags &= ~PF_USED_MATH, (child)->flags |= (condition) ? PF_USED_MATH : 0; } while (0)
  1243. #define conditional_used_math(condition) \
  1244. conditional_stopped_child_used_math(condition, current)
  1245. #define copy_to_stopped_child_used_math(child) \
  1246. do { (child)->flags &= ~PF_USED_MATH, (child)->flags |= current->flags & PF_USED_MATH; } while (0)
  1247. /* NOTE: this will return 0 or PF_USED_MATH, it will never return 1 */
  1248. #define tsk_used_math(p) ((p)->flags & PF_USED_MATH)
  1249. #define used_math() tsk_used_math(current)
  1250. #ifdef CONFIG_SMP
  1251. extern int set_cpus_allowed(struct task_struct *p, cpumask_t new_mask);
  1252. #else
  1253. static inline int set_cpus_allowed(struct task_struct *p, cpumask_t new_mask)
  1254. {
  1255. if (!cpu_isset(0, new_mask))
  1256. return -EINVAL;
  1257. return 0;
  1258. }
  1259. #endif
  1260. extern unsigned long long sched_clock(void);
  1261. /*
  1262. * For kernel-internal use: high-speed (but slightly incorrect) per-cpu
  1263. * clock constructed from sched_clock():
  1264. */
  1265. extern unsigned long long cpu_clock(int cpu);
  1266. extern unsigned long long
  1267. task_sched_runtime(struct task_struct *task);
  1268. /* sched_exec is called by processes performing an exec */
  1269. #ifdef CONFIG_SMP
  1270. extern void sched_exec(void);
  1271. #else
  1272. #define sched_exec() {}
  1273. #endif
  1274. extern void sched_clock_idle_sleep_event(void);
  1275. extern void sched_clock_idle_wakeup_event(u64 delta_ns);
  1276. #ifdef CONFIG_HOTPLUG_CPU
  1277. extern void idle_task_exit(void);
  1278. #else
  1279. static inline void idle_task_exit(void) {}
  1280. #endif
  1281. extern void sched_idle_next(void);
  1282. #ifdef CONFIG_SCHED_DEBUG
  1283. extern unsigned int sysctl_sched_latency;
  1284. extern unsigned int sysctl_sched_min_granularity;
  1285. extern unsigned int sysctl_sched_wakeup_granularity;
  1286. extern unsigned int sysctl_sched_batch_wakeup_granularity;
  1287. extern unsigned int sysctl_sched_child_runs_first;
  1288. extern unsigned int sysctl_sched_features;
  1289. extern unsigned int sysctl_sched_migration_cost;
  1290. extern unsigned int sysctl_sched_nr_migrate;
  1291. extern unsigned int sysctl_sched_rt_period;
  1292. extern unsigned int sysctl_sched_rt_ratio;
  1293. #if defined(CONFIG_FAIR_GROUP_SCHED) && defined(CONFIG_SMP)
  1294. extern unsigned int sysctl_sched_min_bal_int_shares;
  1295. extern unsigned int sysctl_sched_max_bal_int_shares;
  1296. #endif
  1297. int sched_nr_latency_handler(struct ctl_table *table, int write,
  1298. struct file *file, void __user *buffer, size_t *length,
  1299. loff_t *ppos);
  1300. #endif
  1301. extern unsigned int sysctl_sched_compat_yield;
  1302. #ifdef CONFIG_RT_MUTEXES
  1303. extern int rt_mutex_getprio(struct task_struct *p);
  1304. extern void rt_mutex_setprio(struct task_struct *p, int prio);
  1305. extern void rt_mutex_adjust_pi(struct task_struct *p);
  1306. #else
  1307. static inline int rt_mutex_getprio(struct task_struct *p)
  1308. {
  1309. return p->normal_prio;
  1310. }
  1311. # define rt_mutex_adjust_pi(p) do { } while (0)
  1312. #endif
  1313. extern void set_user_nice(struct task_struct *p, long nice);
  1314. extern int task_prio(const struct task_struct *p);
  1315. extern int task_nice(const struct task_struct *p);
  1316. extern int can_nice(const struct task_struct *p, const int nice);
  1317. extern int task_curr(const struct task_struct *p);
  1318. extern int idle_cpu(int cpu);
  1319. extern int sched_setscheduler(struct task_struct *, int, struct sched_param *);
  1320. extern struct task_struct *idle_task(int cpu);
  1321. extern struct task_struct *curr_task(int cpu);
  1322. extern void set_curr_task(int cpu, struct task_struct *p);
  1323. void yield(void);
  1324. /*
  1325. * The default (Linux) execution domain.
  1326. */
  1327. extern struct exec_domain default_exec_domain;
  1328. union thread_union {
  1329. struct thread_info thread_info;
  1330. unsigned long stack[THREAD_SIZE/sizeof(long)];
  1331. };
  1332. #ifndef __HAVE_ARCH_KSTACK_END
  1333. static inline int kstack_end(void *addr)
  1334. {
  1335. /* Reliable end of stack detection:
  1336. * Some APM bios versions misalign the stack
  1337. */
  1338. return !(((unsigned long)addr+sizeof(void*)-1) & (THREAD_SIZE-sizeof(void*)));
  1339. }
  1340. #endif
  1341. extern union thread_union init_thread_union;
  1342. extern struct task_struct init_task;
  1343. extern struct mm_struct init_mm;
  1344. extern struct pid_namespace init_pid_ns;
  1345. /*
  1346. * find a task by one of its numerical ids
  1347. *
  1348. * find_task_by_pid_type_ns():
  1349. * it is the most generic call - it finds a task by all id,
  1350. * type and namespace specified
  1351. * find_task_by_pid_ns():
  1352. * finds a task by its pid in the specified namespace
  1353. * find_task_by_vpid():
  1354. * finds a task by its virtual pid
  1355. * find_task_by_pid():
  1356. * finds a task by its global pid
  1357. *
  1358. * see also find_pid() etc in include/linux/pid.h
  1359. */
  1360. extern struct task_struct *find_task_by_pid_type_ns(int type, int pid,
  1361. struct pid_namespace *ns);
  1362. extern struct task_struct *find_task_by_pid(pid_t nr);
  1363. extern struct task_struct *find_task_by_vpid(pid_t nr);
  1364. extern struct task_struct *find_task_by_pid_ns(pid_t nr,
  1365. struct pid_namespace *ns);
  1366. extern void __set_special_pids(pid_t session, pid_t pgrp);
  1367. /* per-UID process charging. */
  1368. extern struct user_struct * alloc_uid(struct user_namespace *, uid_t);
  1369. static inline struct user_struct *get_uid(struct user_struct *u)
  1370. {
  1371. atomic_inc(&u->__count);
  1372. return u;
  1373. }
  1374. extern void free_uid(struct user_struct *);
  1375. extern void switch_uid(struct user_struct *);
  1376. extern void release_uids(struct user_namespace *ns);
  1377. #include <asm/current.h>
  1378. extern void do_timer(unsigned long ticks);
  1379. extern int FASTCALL(wake_up_state(struct task_struct * tsk, unsigned int state));
  1380. extern int FASTCALL(wake_up_process(struct task_struct * tsk));
  1381. extern void FASTCALL(wake_up_new_task(struct task_struct * tsk,
  1382. unsigned long clone_flags));
  1383. #ifdef CONFIG_SMP
  1384. extern void kick_process(struct task_struct *tsk);
  1385. #else
  1386. static inline void kick_process(struct task_struct *tsk) { }
  1387. #endif
  1388. extern void sched_fork(struct task_struct *p, int clone_flags);
  1389. extern void sched_dead(struct task_struct *p);
  1390. extern int in_group_p(gid_t);
  1391. extern int in_egroup_p(gid_t);
  1392. extern void proc_caches_init(void);
  1393. extern void flush_signals(struct task_struct *);
  1394. extern void ignore_signals(struct task_struct *);
  1395. extern void flush_signal_handlers(struct task_struct *, int force_default);
  1396. extern int dequeue_signal(struct task_struct *tsk, sigset_t *mask, siginfo_t *info);
  1397. static inline int dequeue_signal_lock(struct task_struct *tsk, sigset_t *mask, siginfo_t *info)
  1398. {
  1399. unsigned long flags;
  1400. int ret;
  1401. spin_lock_irqsave(&tsk->sighand->siglock, flags);
  1402. ret = dequeue_signal(tsk, mask, info);
  1403. spin_unlock_irqrestore(&tsk->sighand->siglock, flags);
  1404. return ret;
  1405. }
  1406. extern void block_all_signals(int (*notifier)(void *priv), void *priv,
  1407. sigset_t *mask);
  1408. extern void unblock_all_signals(void);
  1409. extern void release_task(struct task_struct * p);
  1410. extern int send_sig_info(int, struct siginfo *, struct task_struct *);
  1411. extern int send_group_sig_info(int, struct siginfo *, struct task_struct *);
  1412. extern int force_sigsegv(int, struct task_struct *);
  1413. extern int force_sig_info(int, struct siginfo *, struct task_struct *);
  1414. extern int __kill_pgrp_info(int sig, struct siginfo *info, struct pid *pgrp);
  1415. extern int kill_pgrp_info(int sig, struct siginfo *info, struct pid *pgrp);
  1416. extern int kill_pid_info(int sig, struct siginfo *info, struct pid *pid);
  1417. extern int kill_pid_info_as_uid(int, struct siginfo *, struct pid *, uid_t, uid_t, u32);
  1418. extern int kill_pgrp(struct pid *pid, int sig, int priv);
  1419. extern int kill_pid(struct pid *pid, int sig, int priv);
  1420. extern int kill_proc_info(int, struct siginfo *, pid_t);
  1421. extern void do_notify_parent(struct task_struct *, int);
  1422. extern void force_sig(int, struct task_struct *);
  1423. extern void force_sig_specific(int, struct task_struct *);
  1424. extern int send_sig(int, struct task_struct *, int);
  1425. extern void zap_other_threads(struct task_struct *p);
  1426. extern int kill_proc(pid_t, int, int);
  1427. extern struct sigqueue *sigqueue_alloc(void);
  1428. extern void sigqueue_free(struct sigqueue *);
  1429. extern int send_sigqueue(int, struct sigqueue *, struct task_struct *);
  1430. extern int send_group_sigqueue(int, struct sigqueue *, struct task_struct *);
  1431. extern int do_sigaction(int, struct k_sigaction *, struct k_sigaction *);
  1432. extern int do_sigaltstack(const stack_t __user *, stack_t __user *, unsigned long);
  1433. static inline int kill_cad_pid(int sig, int priv)
  1434. {
  1435. return kill_pid(cad_pid, sig, priv);
  1436. }
  1437. /* These can be the second arg to send_sig_info/send_group_sig_info. */
  1438. #define SEND_SIG_NOINFO ((struct siginfo *) 0)
  1439. #define SEND_SIG_PRIV ((struct siginfo *) 1)
  1440. #define SEND_SIG_FORCED ((struct siginfo *) 2)
  1441. static inline int is_si_special(const struct siginfo *info)
  1442. {
  1443. return info <= SEND_SIG_FORCED;
  1444. }
  1445. /* True if we are on the alternate signal stack. */
  1446. static inline int on_sig_stack(unsigned long sp)
  1447. {
  1448. return (sp - current->sas_ss_sp < current->sas_ss_size);
  1449. }
  1450. static inline int sas_ss_flags(unsigned long sp)
  1451. {
  1452. return (current->sas_ss_size == 0 ? SS_DISABLE
  1453. : on_sig_stack(sp) ? SS_ONSTACK : 0);
  1454. }
  1455. /*
  1456. * Routines for handling mm_structs
  1457. */
  1458. extern struct mm_struct * mm_alloc(void);
  1459. /* mmdrop drops the mm and the page tables */
  1460. extern void FASTCALL(__mmdrop(struct mm_struct *));
  1461. static inline void mmdrop(struct mm_struct * mm)
  1462. {
  1463. if (unlikely(atomic_dec_and_test(&mm->mm_count)))
  1464. __mmdrop(mm);
  1465. }
  1466. /* mmput gets rid of the mappings and all user-space */
  1467. extern void mmput(struct mm_struct *);
  1468. /* Grab a reference to a task's mm, if it is not already going away */
  1469. extern struct mm_struct *get_task_mm(struct task_struct *task);
  1470. /* Remove the current tasks stale references to the old mm_struct */
  1471. extern void mm_release(struct task_struct *, struct mm_struct *);
  1472. extern int copy_thread(int, unsigned long, unsigned long, unsigned long, struct task_struct *, struct pt_regs *);
  1473. extern void flush_thread(void);
  1474. extern void exit_thread(void);
  1475. extern void exit_files(struct task_struct *);
  1476. extern void __cleanup_signal(struct signal_struct *);
  1477. extern void __cleanup_sighand(struct sighand_struct *);
  1478. extern void exit_itimers(struct signal_struct *);
  1479. extern NORET_TYPE void do_group_exit(int);
  1480. extern void daemonize(const char *, ...);
  1481. extern int allow_signal(int);
  1482. extern int disallow_signal(int);
  1483. extern int do_execve(char *, char __user * __user *, char __user * __user *, struct pt_regs *);
  1484. extern long do_fork(unsigned long, unsigned long, struct pt_regs *, unsigned long, int __user *, int __user *);
  1485. struct task_struct *fork_idle(int);
  1486. extern void set_task_comm(struct task_struct *tsk, char *from);
  1487. extern void get_task_comm(char *to, struct task_struct *tsk);
  1488. #ifdef CONFIG_SMP
  1489. extern void wait_task_inactive(struct task_struct * p);
  1490. #else
  1491. #define wait_task_inactive(p) do { } while (0)
  1492. #endif
  1493. #define remove_parent(p) list_del_init(&(p)->sibling)
  1494. #define add_parent(p) list_add_tail(&(p)->sibling,&(p)->parent->children)
  1495. #define next_task(p) list_entry(rcu_dereference((p)->tasks.next), struct task_struct, tasks)
  1496. #define for_each_process(p) \
  1497. for (p = &init_task ; (p = next_task(p)) != &init_task ; )
  1498. /*
  1499. * Careful: do_each_thread/while_each_thread is a double loop so
  1500. * 'break' will not work as expected - use goto instead.
  1501. */
  1502. #define do_each_thread(g, t) \
  1503. for (g = t = &init_task ; (g = t = next_task(g)) != &init_task ; ) do
  1504. #define while_each_thread(g, t) \
  1505. while ((t = next_thread(t)) != g)
  1506. /* de_thread depends on thread_group_leader not being a pid based check */
  1507. #define thread_group_leader(p) (p == p->group_leader)
  1508. /* Do to the insanities of de_thread it is possible for a process
  1509. * to have the pid of the thread group leader without actually being
  1510. * the thread group leader. For iteration through the pids in proc
  1511. * all we care about is that we have a task with the appropriate
  1512. * pid, we don't actually care if we have the right task.
  1513. */
  1514. static inline int has_group_leader_pid(struct task_struct *p)
  1515. {
  1516. return p->pid == p->tgid;
  1517. }
  1518. static inline
  1519. int same_thread_group(struct task_struct *p1, struct task_struct *p2)
  1520. {
  1521. return p1->tgid == p2->tgid;
  1522. }
  1523. static inline struct task_struct *next_thread(const struct task_struct *p)
  1524. {
  1525. return list_entry(rcu_dereference(p->thread_group.next),
  1526. struct task_struct, thread_group);
  1527. }
  1528. static inline int thread_group_empty(struct task_struct *p)
  1529. {
  1530. return list_empty(&p->thread_group);
  1531. }
  1532. #define delay_group_leader(p) \
  1533. (thread_group_leader(p) && !thread_group_empty(p))
  1534. /*
  1535. * Protects ->fs, ->files, ->mm, ->group_info, ->comm, keyring
  1536. * subscriptions and synchronises with wait4(). Also used in procfs. Also
  1537. * pins the final release of task.io_context. Also protects ->cpuset and
  1538. * ->cgroup.subsys[].
  1539. *
  1540. * Nests both inside and outside of read_lock(&tasklist_lock).
  1541. * It must not be nested with write_lock_irq(&tasklist_lock),
  1542. * neither inside nor outside.
  1543. */
  1544. static inline void task_lock(struct task_struct *p)
  1545. {
  1546. spin_lock(&p->alloc_lock);
  1547. }
  1548. static inline void task_unlock(struct task_struct *p)
  1549. {
  1550. spin_unlock(&p->alloc_lock);
  1551. }
  1552. extern struct sighand_struct *lock_task_sighand(struct task_struct *tsk,
  1553. unsigned long *flags);
  1554. static inline void unlock_task_sighand(struct task_struct *tsk,
  1555. unsigned long *flags)
  1556. {
  1557. spin_unlock_irqrestore(&tsk->sighand->siglock, *flags);
  1558. }
  1559. #ifndef __HAVE_THREAD_FUNCTIONS
  1560. #define task_thread_info(task) ((struct thread_info *)(task)->stack)
  1561. #define task_stack_page(task) ((task)->stack)
  1562. static inline void setup_thread_stack(struct task_struct *p, struct task_struct *org)
  1563. {
  1564. *task_thread_info(p) = *task_thread_info(org);
  1565. task_thread_info(p)->task = p;
  1566. }
  1567. static inline unsigned long *end_of_stack(struct task_struct *p)
  1568. {
  1569. return (unsigned long *)(task_thread_info(p) + 1);
  1570. }
  1571. #endif
  1572. /* set thread flags in other task's structures
  1573. * - see asm/thread_info.h for TIF_xxxx flags available
  1574. */
  1575. static inline void set_tsk_thread_flag(struct task_struct *tsk, int flag)
  1576. {
  1577. set_ti_thread_flag(task_thread_info(tsk), flag);
  1578. }
  1579. static inline void clear_tsk_thread_flag(struct task_struct *tsk, int flag)
  1580. {
  1581. clear_ti_thread_flag(task_thread_info(tsk), flag);
  1582. }
  1583. static inline int test_and_set_tsk_thread_flag(struct task_struct *tsk, int flag)
  1584. {
  1585. return test_and_set_ti_thread_flag(task_thread_info(tsk), flag);
  1586. }
  1587. static inline int test_and_clear_tsk_thread_flag(struct task_struct *tsk, int flag)
  1588. {
  1589. return test_and_clear_ti_thread_flag(task_thread_info(tsk), flag);
  1590. }
  1591. static inline int test_tsk_thread_flag(struct task_struct *tsk, int flag)
  1592. {
  1593. return test_ti_thread_flag(task_thread_info(tsk), flag);
  1594. }
  1595. static inline void set_tsk_need_resched(struct task_struct *tsk)
  1596. {
  1597. set_tsk_thread_flag(tsk,TIF_NEED_RESCHED);
  1598. }
  1599. static inline void clear_tsk_need_resched(struct task_struct *tsk)
  1600. {
  1601. clear_tsk_thread_flag(tsk,TIF_NEED_RESCHED);
  1602. }
  1603. static inline int signal_pending(struct task_struct *p)
  1604. {
  1605. return unlikely(test_tsk_thread_flag(p,TIF_SIGPENDING));
  1606. }
  1607. static inline int need_resched(void)
  1608. {
  1609. return unlikely(test_thread_flag(TIF_NEED_RESCHED));
  1610. }
  1611. /*
  1612. * cond_resched() and cond_resched_lock(): latency reduction via
  1613. * explicit rescheduling in places that are safe. The return
  1614. * value indicates whether a reschedule was done in fact.
  1615. * cond_resched_lock() will drop the spinlock before scheduling,
  1616. * cond_resched_softirq() will enable bhs before scheduling.
  1617. */
  1618. #ifdef CONFIG_PREEMPT
  1619. static inline int cond_resched(void)
  1620. {
  1621. return 0;
  1622. }
  1623. #else
  1624. extern int _cond_resched(void);
  1625. static inline int cond_resched(void)
  1626. {
  1627. return _cond_resched();
  1628. }
  1629. #endif
  1630. extern int cond_resched_lock(spinlock_t * lock);
  1631. extern int cond_resched_softirq(void);
  1632. /*
  1633. * Does a critical section need to be broken due to another
  1634. * task waiting?:
  1635. */
  1636. #if defined(CONFIG_PREEMPT) && defined(CONFIG_SMP)
  1637. # define need_lockbreak(lock) ((lock)->break_lock)
  1638. #else
  1639. # define need_lockbreak(lock) 0
  1640. #endif
  1641. /*
  1642. * Does a critical section need to be broken due to another
  1643. * task waiting or preemption being signalled:
  1644. */
  1645. static inline int lock_need_resched(spinlock_t *lock)
  1646. {
  1647. if (need_lockbreak(lock) || need_resched())
  1648. return 1;
  1649. return 0;
  1650. }
  1651. /*
  1652. * Reevaluate whether the task has signals pending delivery.
  1653. * Wake the task if so.
  1654. * This is required every time the blocked sigset_t changes.
  1655. * callers must hold sighand->siglock.
  1656. */
  1657. extern void recalc_sigpending_and_wake(struct task_struct *t);
  1658. extern void recalc_sigpending(void);
  1659. extern void signal_wake_up(struct task_struct *t, int resume_stopped);
  1660. /*
  1661. * Wrappers for p->thread_info->cpu access. No-op on UP.
  1662. */
  1663. #ifdef CONFIG_SMP
  1664. static inline unsigned int task_cpu(const struct task_struct *p)
  1665. {
  1666. return task_thread_info(p)->cpu;
  1667. }
  1668. extern void set_task_cpu(struct task_struct *p, unsigned int cpu);
  1669. #else
  1670. static inline unsigned int task_cpu(const struct task_struct *p)
  1671. {
  1672. return 0;
  1673. }
  1674. static inline void set_task_cpu(struct task_struct *p, unsigned int cpu)
  1675. {
  1676. }
  1677. #endif /* CONFIG_SMP */
  1678. #ifdef HAVE_ARCH_PICK_MMAP_LAYOUT
  1679. extern void arch_pick_mmap_layout(struct mm_struct *mm);
  1680. #else
  1681. static inline void arch_pick_mmap_layout(struct mm_struct *mm)
  1682. {
  1683. mm->mmap_base = TASK_UNMAPPED_BASE;
  1684. mm->get_unmapped_area = arch_get_unmapped_area;
  1685. mm->unmap_area = arch_unmap_area;
  1686. }
  1687. #endif
  1688. extern long sched_setaffinity(pid_t pid, cpumask_t new_mask);
  1689. extern long sched_getaffinity(pid_t pid, cpumask_t *mask);
  1690. extern int sched_mc_power_savings, sched_smt_power_savings;
  1691. extern void normalize_rt_tasks(void);
  1692. #ifdef CONFIG_FAIR_GROUP_SCHED
  1693. extern struct task_group init_task_group;
  1694. extern struct task_group *sched_create_group(void);
  1695. extern void sched_destroy_group(struct task_group *tg);
  1696. extern void sched_move_task(struct task_struct *tsk);
  1697. extern int sched_group_set_shares(struct task_group *tg, unsigned long shares);
  1698. extern unsigned long sched_group_shares(struct task_group *tg);
  1699. #endif
  1700. #ifdef CONFIG_TASK_XACCT
  1701. static inline void add_rchar(struct task_struct *tsk, ssize_t amt)
  1702. {
  1703. tsk->rchar += amt;
  1704. }
  1705. static inline void add_wchar(struct task_struct *tsk, ssize_t amt)
  1706. {
  1707. tsk->wchar += amt;
  1708. }
  1709. static inline void inc_syscr(struct task_struct *tsk)
  1710. {
  1711. tsk->syscr++;
  1712. }
  1713. static inline void inc_syscw(struct task_struct *tsk)
  1714. {
  1715. tsk->syscw++;
  1716. }
  1717. #else
  1718. static inline void add_rchar(struct task_struct *tsk, ssize_t amt)
  1719. {
  1720. }
  1721. static inline void add_wchar(struct task_struct *tsk, ssize_t amt)
  1722. {
  1723. }
  1724. static inline void inc_syscr(struct task_struct *tsk)
  1725. {
  1726. }
  1727. static inline void inc_syscw(struct task_struct *tsk)
  1728. {
  1729. }
  1730. #endif
  1731. #ifdef CONFIG_SMP
  1732. void migration_init(void);
  1733. #else
  1734. static inline void migration_init(void)
  1735. {
  1736. }
  1737. #endif
  1738. #endif /* __KERNEL__ */
  1739. #endif