xref: /linux/include/linux/sched.h (revision 4b7d248b3a1de483ffe9d05c1debbf32a544164d)
1b2441318SGreg Kroah-Hartman /* SPDX-License-Identifier: GPL-2.0 */
21da177e4SLinus Torvalds #ifndef _LINUX_SCHED_H
31da177e4SLinus Torvalds #define _LINUX_SCHED_H
41da177e4SLinus Torvalds 
55eca1c10SIngo Molnar /*
65eca1c10SIngo Molnar  * Define 'struct task_struct' and provide the main scheduler
75eca1c10SIngo Molnar  * APIs (schedule(), wakeup variants, etc.)
85eca1c10SIngo Molnar  */
95eca1c10SIngo Molnar 
10607ca46eSDavid Howells #include <uapi/linux/sched.h>
11b7b3c76aSDavid Woodhouse 
1270b8157eSIngo Molnar #include <asm/current.h>
1370b8157eSIngo Molnar 
145eca1c10SIngo Molnar #include <linux/pid.h>
155eca1c10SIngo Molnar #include <linux/sem.h>
165eca1c10SIngo Molnar #include <linux/shm.h>
175eca1c10SIngo Molnar #include <linux/kcov.h>
185eca1c10SIngo Molnar #include <linux/mutex.h>
195eca1c10SIngo Molnar #include <linux/plist.h>
205eca1c10SIngo Molnar #include <linux/hrtimer.h>
215eca1c10SIngo Molnar #include <linux/seccomp.h>
225eca1c10SIngo Molnar #include <linux/nodemask.h>
235eca1c10SIngo Molnar #include <linux/rcupdate.h>
245eca1c10SIngo Molnar #include <linux/resource.h>
255eca1c10SIngo Molnar #include <linux/latencytop.h>
265eca1c10SIngo Molnar #include <linux/sched/prio.h>
275eca1c10SIngo Molnar #include <linux/signal_types.h>
28eb414681SJohannes Weiner #include <linux/psi_types.h>
295eca1c10SIngo Molnar #include <linux/mm_types_task.h>
305eca1c10SIngo Molnar #include <linux/task_io_accounting.h>
31d7822b1eSMathieu Desnoyers #include <linux/rseq.h>
325eca1c10SIngo Molnar 
335eca1c10SIngo Molnar /* task_struct member predeclarations (sorted alphabetically): */
34c7af7877SIngo Molnar struct audit_context;
35c7af7877SIngo Molnar struct backing_dev_info;
36c7af7877SIngo Molnar struct bio_list;
37c7af7877SIngo Molnar struct blk_plug;
38c7af7877SIngo Molnar struct cfs_rq;
39c7af7877SIngo Molnar struct fs_struct;
40c7af7877SIngo Molnar struct futex_pi_state;
41c7af7877SIngo Molnar struct io_context;
42c7af7877SIngo Molnar struct mempolicy;
43c7af7877SIngo Molnar struct nameidata;
44c7af7877SIngo Molnar struct nsproxy;
45c7af7877SIngo Molnar struct perf_event_context;
46c7af7877SIngo Molnar struct pid_namespace;
47c7af7877SIngo Molnar struct pipe_inode_info;
48c7af7877SIngo Molnar struct rcu_node;
49c7af7877SIngo Molnar struct reclaim_state;
50c7af7877SIngo Molnar struct robust_list_head;
51e2d1e2aeSIngo Molnar struct sched_attr;
52e2d1e2aeSIngo Molnar struct sched_param;
5343ae34cbSIngo Molnar struct seq_file;
54c7af7877SIngo Molnar struct sighand_struct;
55c7af7877SIngo Molnar struct signal_struct;
56c7af7877SIngo Molnar struct task_delay_info;
574cf86d77SIngo Molnar struct task_group;
581da177e4SLinus Torvalds 
594a8342d2SLinus Torvalds /*
604a8342d2SLinus Torvalds  * Task state bitmask. NOTE! These bits are also
614a8342d2SLinus Torvalds  * encoded in fs/proc/array.c: get_task_state().
624a8342d2SLinus Torvalds  *
634a8342d2SLinus Torvalds  * We have two separate sets of flags: task->state
644a8342d2SLinus Torvalds  * is about runnability, while task->exit_state are
654a8342d2SLinus Torvalds  * about the task exiting. Confusing, but this way
664a8342d2SLinus Torvalds  * modifying one set can't modify the other one by
674a8342d2SLinus Torvalds  * mistake.
684a8342d2SLinus Torvalds  */
695eca1c10SIngo Molnar 
705eca1c10SIngo Molnar /* Used in tsk->state: */
7192c4bc9fSPeter Zijlstra #define TASK_RUNNING			0x0000
7292c4bc9fSPeter Zijlstra #define TASK_INTERRUPTIBLE		0x0001
7392c4bc9fSPeter Zijlstra #define TASK_UNINTERRUPTIBLE		0x0002
7492c4bc9fSPeter Zijlstra #define __TASK_STOPPED			0x0004
7592c4bc9fSPeter Zijlstra #define __TASK_TRACED			0x0008
765eca1c10SIngo Molnar /* Used in tsk->exit_state: */
7792c4bc9fSPeter Zijlstra #define EXIT_DEAD			0x0010
7892c4bc9fSPeter Zijlstra #define EXIT_ZOMBIE			0x0020
79abd50b39SOleg Nesterov #define EXIT_TRACE			(EXIT_ZOMBIE | EXIT_DEAD)
805eca1c10SIngo Molnar /* Used in tsk->state again: */
818ef9925bSPeter Zijlstra #define TASK_PARKED			0x0040
828ef9925bSPeter Zijlstra #define TASK_DEAD			0x0080
838ef9925bSPeter Zijlstra #define TASK_WAKEKILL			0x0100
848ef9925bSPeter Zijlstra #define TASK_WAKING			0x0200
8592c4bc9fSPeter Zijlstra #define TASK_NOLOAD			0x0400
8692c4bc9fSPeter Zijlstra #define TASK_NEW			0x0800
8792c4bc9fSPeter Zijlstra #define TASK_STATE_MAX			0x1000
88f021a3c2SMatthew Wilcox 
895eca1c10SIngo Molnar /* Convenience macros for the sake of set_current_state: */
90f021a3c2SMatthew Wilcox #define TASK_KILLABLE			(TASK_WAKEKILL | TASK_UNINTERRUPTIBLE)
91f021a3c2SMatthew Wilcox #define TASK_STOPPED			(TASK_WAKEKILL | __TASK_STOPPED)
92f021a3c2SMatthew Wilcox #define TASK_TRACED			(TASK_WAKEKILL | __TASK_TRACED)
931da177e4SLinus Torvalds 
9480ed87c8SPeter Zijlstra #define TASK_IDLE			(TASK_UNINTERRUPTIBLE | TASK_NOLOAD)
9580ed87c8SPeter Zijlstra 
965eca1c10SIngo Molnar /* Convenience macros for the sake of wake_up(): */
9792a1f4bcSMatthew Wilcox #define TASK_NORMAL			(TASK_INTERRUPTIBLE | TASK_UNINTERRUPTIBLE)
9892a1f4bcSMatthew Wilcox 
995eca1c10SIngo Molnar /* get_task_state(): */
10092a1f4bcSMatthew Wilcox #define TASK_REPORT			(TASK_RUNNING | TASK_INTERRUPTIBLE | \
101f021a3c2SMatthew Wilcox 					 TASK_UNINTERRUPTIBLE | __TASK_STOPPED | \
1028ef9925bSPeter Zijlstra 					 __TASK_TRACED | EXIT_DEAD | EXIT_ZOMBIE | \
1038ef9925bSPeter Zijlstra 					 TASK_PARKED)
10492a1f4bcSMatthew Wilcox 
105f021a3c2SMatthew Wilcox #define task_is_traced(task)		((task->state & __TASK_TRACED) != 0)
1065eca1c10SIngo Molnar 
107f021a3c2SMatthew Wilcox #define task_is_stopped(task)		((task->state & __TASK_STOPPED) != 0)
1085eca1c10SIngo Molnar 
1095eca1c10SIngo Molnar #define task_is_stopped_or_traced(task)	((task->state & (__TASK_STOPPED | __TASK_TRACED)) != 0)
1105eca1c10SIngo Molnar 
1115eca1c10SIngo Molnar #define task_contributes_to_load(task)	((task->state & TASK_UNINTERRUPTIBLE) != 0 && \
11280ed87c8SPeter Zijlstra 					 (task->flags & PF_FROZEN) == 0 && \
11380ed87c8SPeter Zijlstra 					 (task->state & TASK_NOLOAD) == 0)
1141da177e4SLinus Torvalds 
1158eb23b9fSPeter Zijlstra #ifdef CONFIG_DEBUG_ATOMIC_SLEEP
1168eb23b9fSPeter Zijlstra 
117b5bf9a90SPeter Zijlstra /*
118b5bf9a90SPeter Zijlstra  * Special states are those that do not use the normal wait-loop pattern. See
119b5bf9a90SPeter Zijlstra  * the comment with set_special_state().
120b5bf9a90SPeter Zijlstra  */
121b5bf9a90SPeter Zijlstra #define is_special_task_state(state)				\
1221cef1150SPeter Zijlstra 	((state) & (__TASK_STOPPED | __TASK_TRACED | TASK_PARKED | TASK_DEAD))
123b5bf9a90SPeter Zijlstra 
1248eb23b9fSPeter Zijlstra #define __set_current_state(state_value)			\
1258eb23b9fSPeter Zijlstra 	do {							\
126b5bf9a90SPeter Zijlstra 		WARN_ON_ONCE(is_special_task_state(state_value));\
1278eb23b9fSPeter Zijlstra 		current->task_state_change = _THIS_IP_;		\
1288eb23b9fSPeter Zijlstra 		current->state = (state_value);			\
1298eb23b9fSPeter Zijlstra 	} while (0)
130b5bf9a90SPeter Zijlstra 
1318eb23b9fSPeter Zijlstra #define set_current_state(state_value)				\
1328eb23b9fSPeter Zijlstra 	do {							\
133b5bf9a90SPeter Zijlstra 		WARN_ON_ONCE(is_special_task_state(state_value));\
1348eb23b9fSPeter Zijlstra 		current->task_state_change = _THIS_IP_;		\
135b92b8b35SPeter Zijlstra 		smp_store_mb(current->state, (state_value));	\
1368eb23b9fSPeter Zijlstra 	} while (0)
1378eb23b9fSPeter Zijlstra 
138b5bf9a90SPeter Zijlstra #define set_special_state(state_value)					\
139b5bf9a90SPeter Zijlstra 	do {								\
140b5bf9a90SPeter Zijlstra 		unsigned long flags; /* may shadow */			\
141b5bf9a90SPeter Zijlstra 		WARN_ON_ONCE(!is_special_task_state(state_value));	\
142b5bf9a90SPeter Zijlstra 		raw_spin_lock_irqsave(&current->pi_lock, flags);	\
143b5bf9a90SPeter Zijlstra 		current->task_state_change = _THIS_IP_;			\
144b5bf9a90SPeter Zijlstra 		current->state = (state_value);				\
145b5bf9a90SPeter Zijlstra 		raw_spin_unlock_irqrestore(&current->pi_lock, flags);	\
146b5bf9a90SPeter Zijlstra 	} while (0)
1478eb23b9fSPeter Zijlstra #else
148498d0c57SAndrew Morton /*
149498d0c57SAndrew Morton  * set_current_state() includes a barrier so that the write of current->state
150498d0c57SAndrew Morton  * is correctly serialised wrt the caller's subsequent test of whether to
151498d0c57SAndrew Morton  * actually sleep:
152498d0c57SAndrew Morton  *
153a2250238SPeter Zijlstra  *   for (;;) {
154498d0c57SAndrew Morton  *	set_current_state(TASK_UNINTERRUPTIBLE);
155a2250238SPeter Zijlstra  *	if (!need_sleep)
156a2250238SPeter Zijlstra  *		break;
157498d0c57SAndrew Morton  *
158a2250238SPeter Zijlstra  *	schedule();
159a2250238SPeter Zijlstra  *   }
160a2250238SPeter Zijlstra  *   __set_current_state(TASK_RUNNING);
161a2250238SPeter Zijlstra  *
162a2250238SPeter Zijlstra  * If the caller does not need such serialisation (because, for instance, the
163a2250238SPeter Zijlstra  * condition test and condition change and wakeup are under the same lock) then
164a2250238SPeter Zijlstra  * use __set_current_state().
165a2250238SPeter Zijlstra  *
166a2250238SPeter Zijlstra  * The above is typically ordered against the wakeup, which does:
167a2250238SPeter Zijlstra  *
168a2250238SPeter Zijlstra  *   need_sleep = false;
169a2250238SPeter Zijlstra  *   wake_up_state(p, TASK_UNINTERRUPTIBLE);
170a2250238SPeter Zijlstra  *
1717696f991SAndrea Parri  * where wake_up_state() executes a full memory barrier before accessing the
1727696f991SAndrea Parri  * task state.
173a2250238SPeter Zijlstra  *
174a2250238SPeter Zijlstra  * Wakeup will do: if (@state & p->state) p->state = TASK_RUNNING, that is,
175a2250238SPeter Zijlstra  * once it observes the TASK_UNINTERRUPTIBLE store the waking CPU can issue a
176a2250238SPeter Zijlstra  * TASK_RUNNING store which can collide with __set_current_state(TASK_RUNNING).
177a2250238SPeter Zijlstra  *
178b5bf9a90SPeter Zijlstra  * However, with slightly different timing the wakeup TASK_RUNNING store can
179dfcb245eSIngo Molnar  * also collide with the TASK_UNINTERRUPTIBLE store. Losing that store is not
180b5bf9a90SPeter Zijlstra  * a problem either because that will result in one extra go around the loop
181b5bf9a90SPeter Zijlstra  * and our @cond test will save the day.
182a2250238SPeter Zijlstra  *
183a2250238SPeter Zijlstra  * Also see the comments of try_to_wake_up().
184498d0c57SAndrew Morton  */
185b5bf9a90SPeter Zijlstra #define __set_current_state(state_value)				\
186b5bf9a90SPeter Zijlstra 	current->state = (state_value)
187b5bf9a90SPeter Zijlstra 
188b5bf9a90SPeter Zijlstra #define set_current_state(state_value)					\
189b5bf9a90SPeter Zijlstra 	smp_store_mb(current->state, (state_value))
190b5bf9a90SPeter Zijlstra 
191b5bf9a90SPeter Zijlstra /*
192b5bf9a90SPeter Zijlstra  * set_special_state() should be used for those states when the blocking task
193b5bf9a90SPeter Zijlstra  * can not use the regular condition based wait-loop. In that case we must
194b5bf9a90SPeter Zijlstra  * serialize against wakeups such that any possible in-flight TASK_RUNNING stores
195b5bf9a90SPeter Zijlstra  * will not collide with our state change.
196b5bf9a90SPeter Zijlstra  */
197b5bf9a90SPeter Zijlstra #define set_special_state(state_value)					\
198b5bf9a90SPeter Zijlstra 	do {								\
199b5bf9a90SPeter Zijlstra 		unsigned long flags; /* may shadow */			\
200b5bf9a90SPeter Zijlstra 		raw_spin_lock_irqsave(&current->pi_lock, flags);	\
201b5bf9a90SPeter Zijlstra 		current->state = (state_value);				\
202b5bf9a90SPeter Zijlstra 		raw_spin_unlock_irqrestore(&current->pi_lock, flags);	\
203b5bf9a90SPeter Zijlstra 	} while (0)
204b5bf9a90SPeter Zijlstra 
2058eb23b9fSPeter Zijlstra #endif
2068eb23b9fSPeter Zijlstra 
2075eca1c10SIngo Molnar /* Task command name length: */
2081da177e4SLinus Torvalds #define TASK_COMM_LEN			16
2091da177e4SLinus Torvalds 
2101da177e4SLinus Torvalds extern void scheduler_tick(void);
2111da177e4SLinus Torvalds 
2121da177e4SLinus Torvalds #define	MAX_SCHEDULE_TIMEOUT		LONG_MAX
2135eca1c10SIngo Molnar 
2145eca1c10SIngo Molnar extern long schedule_timeout(long timeout);
2155eca1c10SIngo Molnar extern long schedule_timeout_interruptible(long timeout);
2165eca1c10SIngo Molnar extern long schedule_timeout_killable(long timeout);
2175eca1c10SIngo Molnar extern long schedule_timeout_uninterruptible(long timeout);
2185eca1c10SIngo Molnar extern long schedule_timeout_idle(long timeout);
2191da177e4SLinus Torvalds asmlinkage void schedule(void);
220c5491ea7SThomas Gleixner extern void schedule_preempt_disabled(void);
2211da177e4SLinus Torvalds 
22210ab5643STejun Heo extern int __must_check io_schedule_prepare(void);
22310ab5643STejun Heo extern void io_schedule_finish(int token);
2249cff8adeSNeilBrown extern long io_schedule_timeout(long timeout);
22510ab5643STejun Heo extern void io_schedule(void);
2269cff8adeSNeilBrown 
227f06febc9SFrank Mayhar /**
2280ba42a59SMasanari Iida  * struct prev_cputime - snapshot of system and user cputime
229d37f761dSFrederic Weisbecker  * @utime: time spent in user mode
230d37f761dSFrederic Weisbecker  * @stime: time spent in system mode
2319d7fb042SPeter Zijlstra  * @lock: protects the above two fields
232d37f761dSFrederic Weisbecker  *
2339d7fb042SPeter Zijlstra  * Stores previous user/system time values such that we can guarantee
2349d7fb042SPeter Zijlstra  * monotonicity.
235d37f761dSFrederic Weisbecker  */
2369d7fb042SPeter Zijlstra struct prev_cputime {
2379d7fb042SPeter Zijlstra #ifndef CONFIG_VIRT_CPU_ACCOUNTING_NATIVE
2385613fda9SFrederic Weisbecker 	u64				utime;
2395613fda9SFrederic Weisbecker 	u64				stime;
2409d7fb042SPeter Zijlstra 	raw_spinlock_t			lock;
2419d7fb042SPeter Zijlstra #endif
242d37f761dSFrederic Weisbecker };
243d37f761dSFrederic Weisbecker 
244d37f761dSFrederic Weisbecker /**
245f06febc9SFrank Mayhar  * struct task_cputime - collected CPU time counts
2465613fda9SFrederic Weisbecker  * @utime:		time spent in user mode, in nanoseconds
2475613fda9SFrederic Weisbecker  * @stime:		time spent in kernel mode, in nanoseconds
248f06febc9SFrank Mayhar  * @sum_exec_runtime:	total time spent on the CPU, in nanoseconds
249f06febc9SFrank Mayhar  *
2509d7fb042SPeter Zijlstra  * This structure groups together three kinds of CPU time that are tracked for
2519d7fb042SPeter Zijlstra  * threads and thread groups.  Most things considering CPU time want to group
2529d7fb042SPeter Zijlstra  * these counts together and treat all three of them in parallel.
253f06febc9SFrank Mayhar  */
254f06febc9SFrank Mayhar struct task_cputime {
2555613fda9SFrederic Weisbecker 	u64				utime;
2565613fda9SFrederic Weisbecker 	u64				stime;
257f06febc9SFrank Mayhar 	unsigned long long		sum_exec_runtime;
258f06febc9SFrank Mayhar };
2599d7fb042SPeter Zijlstra 
2605eca1c10SIngo Molnar /* Alternate field names when used on cache expirations: */
261f06febc9SFrank Mayhar #define virt_exp			utime
2629d7fb042SPeter Zijlstra #define prof_exp			stime
263f06febc9SFrank Mayhar #define sched_exp			sum_exec_runtime
264f06febc9SFrank Mayhar 
265bac5b6b6SFrederic Weisbecker enum vtime_state {
266bac5b6b6SFrederic Weisbecker 	/* Task is sleeping or running in a CPU with VTIME inactive: */
267bac5b6b6SFrederic Weisbecker 	VTIME_INACTIVE = 0,
268bac5b6b6SFrederic Weisbecker 	/* Task runs in userspace in a CPU with VTIME active: */
269bac5b6b6SFrederic Weisbecker 	VTIME_USER,
270bac5b6b6SFrederic Weisbecker 	/* Task runs in kernelspace in a CPU with VTIME active: */
271bac5b6b6SFrederic Weisbecker 	VTIME_SYS,
272bac5b6b6SFrederic Weisbecker };
273bac5b6b6SFrederic Weisbecker 
274bac5b6b6SFrederic Weisbecker struct vtime {
275bac5b6b6SFrederic Weisbecker 	seqcount_t		seqcount;
276bac5b6b6SFrederic Weisbecker 	unsigned long long	starttime;
277bac5b6b6SFrederic Weisbecker 	enum vtime_state	state;
2782a42eb95SWanpeng Li 	u64			utime;
2792a42eb95SWanpeng Li 	u64			stime;
2802a42eb95SWanpeng Li 	u64			gtime;
281bac5b6b6SFrederic Weisbecker };
282bac5b6b6SFrederic Weisbecker 
2831da177e4SLinus Torvalds struct sched_info {
2847f5f8e8dSIngo Molnar #ifdef CONFIG_SCHED_INFO
2855eca1c10SIngo Molnar 	/* Cumulative counters: */
2861da177e4SLinus Torvalds 
2875eca1c10SIngo Molnar 	/* # of times we have run on this CPU: */
2885eca1c10SIngo Molnar 	unsigned long			pcount;
2895eca1c10SIngo Molnar 
2905eca1c10SIngo Molnar 	/* Time spent waiting on a runqueue: */
2915eca1c10SIngo Molnar 	unsigned long long		run_delay;
2925eca1c10SIngo Molnar 
2935eca1c10SIngo Molnar 	/* Timestamps: */
2945eca1c10SIngo Molnar 
2955eca1c10SIngo Molnar 	/* When did we last run on a CPU? */
2965eca1c10SIngo Molnar 	unsigned long long		last_arrival;
2975eca1c10SIngo Molnar 
2985eca1c10SIngo Molnar 	/* When were we last queued to run? */
2995eca1c10SIngo Molnar 	unsigned long long		last_queued;
3005eca1c10SIngo Molnar 
301f6db8347SNaveen N. Rao #endif /* CONFIG_SCHED_INFO */
3027f5f8e8dSIngo Molnar };
3031da177e4SLinus Torvalds 
3041da177e4SLinus Torvalds /*
3056ecdd749SYuyang Du  * Integer metrics need fixed point arithmetic, e.g., sched/fair
3066ecdd749SYuyang Du  * has a few: load, load_avg, util_avg, freq, and capacity.
3076ecdd749SYuyang Du  *
3086ecdd749SYuyang Du  * We define a basic fixed point arithmetic range, and then formalize
3096ecdd749SYuyang Du  * all these metrics based on that basic range.
3106ecdd749SYuyang Du  */
3116ecdd749SYuyang Du # define SCHED_FIXEDPOINT_SHIFT		10
3126ecdd749SYuyang Du # define SCHED_FIXEDPOINT_SCALE		(1L << SCHED_FIXEDPOINT_SHIFT)
3136ecdd749SYuyang Du 
31420b8a59fSIngo Molnar struct load_weight {
3159dbdb155SPeter Zijlstra 	unsigned long			weight;
3169dbdb155SPeter Zijlstra 	u32				inv_weight;
31720b8a59fSIngo Molnar };
31820b8a59fSIngo Molnar 
3197f65ea42SPatrick Bellasi /**
3207f65ea42SPatrick Bellasi  * struct util_est - Estimation utilization of FAIR tasks
3217f65ea42SPatrick Bellasi  * @enqueued: instantaneous estimated utilization of a task/cpu
3227f65ea42SPatrick Bellasi  * @ewma:     the Exponential Weighted Moving Average (EWMA)
3237f65ea42SPatrick Bellasi  *            utilization of a task
3247f65ea42SPatrick Bellasi  *
3257f65ea42SPatrick Bellasi  * Support data structure to track an Exponential Weighted Moving Average
3267f65ea42SPatrick Bellasi  * (EWMA) of a FAIR task's utilization. New samples are added to the moving
3277f65ea42SPatrick Bellasi  * average each time a task completes an activation. Sample's weight is chosen
3287f65ea42SPatrick Bellasi  * so that the EWMA will be relatively insensitive to transient changes to the
3297f65ea42SPatrick Bellasi  * task's workload.
3307f65ea42SPatrick Bellasi  *
3317f65ea42SPatrick Bellasi  * The enqueued attribute has a slightly different meaning for tasks and cpus:
3327f65ea42SPatrick Bellasi  * - task:   the task's util_avg at last task dequeue time
3337f65ea42SPatrick Bellasi  * - cfs_rq: the sum of util_est.enqueued for each RUNNABLE task on that CPU
3347f65ea42SPatrick Bellasi  * Thus, the util_est.enqueued of a task represents the contribution on the
3357f65ea42SPatrick Bellasi  * estimated utilization of the CPU where that task is currently enqueued.
3367f65ea42SPatrick Bellasi  *
3377f65ea42SPatrick Bellasi  * Only for tasks we track a moving average of the past instantaneous
3387f65ea42SPatrick Bellasi  * estimated utilization. This allows to absorb sporadic drops in utilization
3397f65ea42SPatrick Bellasi  * of an otherwise almost periodic task.
3407f65ea42SPatrick Bellasi  */
3417f65ea42SPatrick Bellasi struct util_est {
3427f65ea42SPatrick Bellasi 	unsigned int			enqueued;
3437f65ea42SPatrick Bellasi 	unsigned int			ewma;
3447f65ea42SPatrick Bellasi #define UTIL_EST_WEIGHT_SHIFT		2
345317d359dSPeter Zijlstra } __attribute__((__aligned__(sizeof(u64))));
3467f65ea42SPatrick Bellasi 
3479d89c257SYuyang Du /*
3487b595334SYuyang Du  * The load_avg/util_avg accumulates an infinite geometric series
3497b595334SYuyang Du  * (see __update_load_avg() in kernel/sched/fair.c).
3507b595334SYuyang Du  *
3517b595334SYuyang Du  * [load_avg definition]
3527b595334SYuyang Du  *
3537b595334SYuyang Du  *   load_avg = runnable% * scale_load_down(load)
3547b595334SYuyang Du  *
3557b595334SYuyang Du  * where runnable% is the time ratio that a sched_entity is runnable.
3567b595334SYuyang Du  * For cfs_rq, it is the aggregated load_avg of all runnable and
3579d89c257SYuyang Du  * blocked sched_entities.
3587b595334SYuyang Du  *
3597b595334SYuyang Du  * load_avg may also take frequency scaling into account:
3607b595334SYuyang Du  *
3617b595334SYuyang Du  *   load_avg = runnable% * scale_load_down(load) * freq%
3627b595334SYuyang Du  *
3637b595334SYuyang Du  * where freq% is the CPU frequency normalized to the highest frequency.
3647b595334SYuyang Du  *
3657b595334SYuyang Du  * [util_avg definition]
3667b595334SYuyang Du  *
3677b595334SYuyang Du  *   util_avg = running% * SCHED_CAPACITY_SCALE
3687b595334SYuyang Du  *
3697b595334SYuyang Du  * where running% is the time ratio that a sched_entity is running on
3707b595334SYuyang Du  * a CPU. For cfs_rq, it is the aggregated util_avg of all runnable
3717b595334SYuyang Du  * and blocked sched_entities.
3727b595334SYuyang Du  *
3737b595334SYuyang Du  * util_avg may also factor frequency scaling and CPU capacity scaling:
3747b595334SYuyang Du  *
3757b595334SYuyang Du  *   util_avg = running% * SCHED_CAPACITY_SCALE * freq% * capacity%
3767b595334SYuyang Du  *
3777b595334SYuyang Du  * where freq% is the same as above, and capacity% is the CPU capacity
3787b595334SYuyang Du  * normalized to the greatest capacity (due to uarch differences, etc).
3797b595334SYuyang Du  *
3807b595334SYuyang Du  * N.B., the above ratios (runnable%, running%, freq%, and capacity%)
3817b595334SYuyang Du  * themselves are in the range of [0, 1]. To do fixed point arithmetics,
3827b595334SYuyang Du  * we therefore scale them to as large a range as necessary. This is for
3837b595334SYuyang Du  * example reflected by util_avg's SCHED_CAPACITY_SCALE.
3847b595334SYuyang Du  *
3857b595334SYuyang Du  * [Overflow issue]
3867b595334SYuyang Du  *
3877b595334SYuyang Du  * The 64-bit load_sum can have 4353082796 (=2^64/47742/88761) entities
3887b595334SYuyang Du  * with the highest load (=88761), always runnable on a single cfs_rq,
3897b595334SYuyang Du  * and should not overflow as the number already hits PID_MAX_LIMIT.
3907b595334SYuyang Du  *
3917b595334SYuyang Du  * For all other cases (including 32-bit kernels), struct load_weight's
3927b595334SYuyang Du  * weight will overflow first before we do, because:
3937b595334SYuyang Du  *
3947b595334SYuyang Du  *    Max(load_avg) <= Max(load.weight)
3957b595334SYuyang Du  *
3967b595334SYuyang Du  * Then it is the load_weight's responsibility to consider overflow
3977b595334SYuyang Du  * issues.
3989d89c257SYuyang Du  */
3999d85f21cSPaul Turner struct sched_avg {
4005eca1c10SIngo Molnar 	u64				last_update_time;
4015eca1c10SIngo Molnar 	u64				load_sum;
4021ea6c46aSPeter Zijlstra 	u64				runnable_load_sum;
4035eca1c10SIngo Molnar 	u32				util_sum;
4045eca1c10SIngo Molnar 	u32				period_contrib;
4055eca1c10SIngo Molnar 	unsigned long			load_avg;
4061ea6c46aSPeter Zijlstra 	unsigned long			runnable_load_avg;
4075eca1c10SIngo Molnar 	unsigned long			util_avg;
4087f65ea42SPatrick Bellasi 	struct util_est			util_est;
409317d359dSPeter Zijlstra } ____cacheline_aligned;
4109d85f21cSPaul Turner 
41141acab88SLucas De Marchi struct sched_statistics {
4127f5f8e8dSIngo Molnar #ifdef CONFIG_SCHEDSTATS
41394c18227SIngo Molnar 	u64				wait_start;
41494c18227SIngo Molnar 	u64				wait_max;
4156d082592SArjan van de Ven 	u64				wait_count;
4166d082592SArjan van de Ven 	u64				wait_sum;
4178f0dfc34SArjan van de Ven 	u64				iowait_count;
4188f0dfc34SArjan van de Ven 	u64				iowait_sum;
41994c18227SIngo Molnar 
42094c18227SIngo Molnar 	u64				sleep_start;
42120b8a59fSIngo Molnar 	u64				sleep_max;
42294c18227SIngo Molnar 	s64				sum_sleep_runtime;
42394c18227SIngo Molnar 
42494c18227SIngo Molnar 	u64				block_start;
42520b8a59fSIngo Molnar 	u64				block_max;
42620b8a59fSIngo Molnar 	u64				exec_max;
427eba1ed4bSIngo Molnar 	u64				slice_max;
428cc367732SIngo Molnar 
429cc367732SIngo Molnar 	u64				nr_migrations_cold;
430cc367732SIngo Molnar 	u64				nr_failed_migrations_affine;
431cc367732SIngo Molnar 	u64				nr_failed_migrations_running;
432cc367732SIngo Molnar 	u64				nr_failed_migrations_hot;
433cc367732SIngo Molnar 	u64				nr_forced_migrations;
434cc367732SIngo Molnar 
435cc367732SIngo Molnar 	u64				nr_wakeups;
436cc367732SIngo Molnar 	u64				nr_wakeups_sync;
437cc367732SIngo Molnar 	u64				nr_wakeups_migrate;
438cc367732SIngo Molnar 	u64				nr_wakeups_local;
439cc367732SIngo Molnar 	u64				nr_wakeups_remote;
440cc367732SIngo Molnar 	u64				nr_wakeups_affine;
441cc367732SIngo Molnar 	u64				nr_wakeups_affine_attempts;
442cc367732SIngo Molnar 	u64				nr_wakeups_passive;
443cc367732SIngo Molnar 	u64				nr_wakeups_idle;
44441acab88SLucas De Marchi #endif
4457f5f8e8dSIngo Molnar };
44641acab88SLucas De Marchi 
44741acab88SLucas De Marchi struct sched_entity {
4485eca1c10SIngo Molnar 	/* For load-balancing: */
4495eca1c10SIngo Molnar 	struct load_weight		load;
4501ea6c46aSPeter Zijlstra 	unsigned long			runnable_weight;
45141acab88SLucas De Marchi 	struct rb_node			run_node;
45241acab88SLucas De Marchi 	struct list_head		group_node;
45341acab88SLucas De Marchi 	unsigned int			on_rq;
45441acab88SLucas De Marchi 
45541acab88SLucas De Marchi 	u64				exec_start;
45641acab88SLucas De Marchi 	u64				sum_exec_runtime;
45741acab88SLucas De Marchi 	u64				vruntime;
45841acab88SLucas De Marchi 	u64				prev_sum_exec_runtime;
45941acab88SLucas De Marchi 
46041acab88SLucas De Marchi 	u64				nr_migrations;
46141acab88SLucas De Marchi 
46241acab88SLucas De Marchi 	struct sched_statistics		statistics;
46394c18227SIngo Molnar 
46420b8a59fSIngo Molnar #ifdef CONFIG_FAIR_GROUP_SCHED
465fed14d45SPeter Zijlstra 	int				depth;
46620b8a59fSIngo Molnar 	struct sched_entity		*parent;
46720b8a59fSIngo Molnar 	/* rq on which this entity is (to be) queued: */
46820b8a59fSIngo Molnar 	struct cfs_rq			*cfs_rq;
46920b8a59fSIngo Molnar 	/* rq "owned" by this entity/group: */
47020b8a59fSIngo Molnar 	struct cfs_rq			*my_q;
47120b8a59fSIngo Molnar #endif
4728bd75c77SClark Williams 
473141965c7SAlex Shi #ifdef CONFIG_SMP
4745a107804SJiri Olsa 	/*
4755a107804SJiri Olsa 	 * Per entity load average tracking.
4765a107804SJiri Olsa 	 *
4775a107804SJiri Olsa 	 * Put into separate cache line so it does not
4785a107804SJiri Olsa 	 * collide with read-mostly values above.
4795a107804SJiri Olsa 	 */
480317d359dSPeter Zijlstra 	struct sched_avg		avg;
4819d85f21cSPaul Turner #endif
48220b8a59fSIngo Molnar };
48370b97a7fSIngo Molnar 
484fa717060SPeter Zijlstra struct sched_rt_entity {
485fa717060SPeter Zijlstra 	struct list_head		run_list;
48678f2c7dbSPeter Zijlstra 	unsigned long			timeout;
48757d2aa00SYing Xue 	unsigned long			watchdog_stamp;
488bee367edSRichard Kennedy 	unsigned int			time_slice;
489ff77e468SPeter Zijlstra 	unsigned short			on_rq;
490ff77e468SPeter Zijlstra 	unsigned short			on_list;
4916f505b16SPeter Zijlstra 
49258d6c2d7SPeter Zijlstra 	struct sched_rt_entity		*back;
493052f1dc7SPeter Zijlstra #ifdef CONFIG_RT_GROUP_SCHED
4946f505b16SPeter Zijlstra 	struct sched_rt_entity		*parent;
4956f505b16SPeter Zijlstra 	/* rq on which this entity is (to be) queued: */
4966f505b16SPeter Zijlstra 	struct rt_rq			*rt_rq;
4976f505b16SPeter Zijlstra 	/* rq "owned" by this entity/group: */
4986f505b16SPeter Zijlstra 	struct rt_rq			*my_q;
4996f505b16SPeter Zijlstra #endif
5003859a271SKees Cook } __randomize_layout;
501fa717060SPeter Zijlstra 
502aab03e05SDario Faggioli struct sched_dl_entity {
503aab03e05SDario Faggioli 	struct rb_node			rb_node;
504aab03e05SDario Faggioli 
505aab03e05SDario Faggioli 	/*
506aab03e05SDario Faggioli 	 * Original scheduling parameters. Copied here from sched_attr
5074027d080Sxiaofeng.yan 	 * during sched_setattr(), they will remain the same until
5084027d080Sxiaofeng.yan 	 * the next sched_setattr().
509aab03e05SDario Faggioli 	 */
5105eca1c10SIngo Molnar 	u64				dl_runtime;	/* Maximum runtime for each instance	*/
5115eca1c10SIngo Molnar 	u64				dl_deadline;	/* Relative deadline of each instance	*/
5125eca1c10SIngo Molnar 	u64				dl_period;	/* Separation of two instances (period) */
51354d6d303SDaniel Bristot de Oliveira 	u64				dl_bw;		/* dl_runtime / dl_period		*/
5143effcb42SDaniel Bristot de Oliveira 	u64				dl_density;	/* dl_runtime / dl_deadline		*/
515aab03e05SDario Faggioli 
516aab03e05SDario Faggioli 	/*
517aab03e05SDario Faggioli 	 * Actual scheduling parameters. Initialized with the values above,
518dfcb245eSIngo Molnar 	 * they are continuously updated during task execution. Note that
519aab03e05SDario Faggioli 	 * the remaining runtime could be < 0 in case we are in overrun.
520aab03e05SDario Faggioli 	 */
5215eca1c10SIngo Molnar 	s64				runtime;	/* Remaining runtime for this instance	*/
5225eca1c10SIngo Molnar 	u64				deadline;	/* Absolute deadline for this instance	*/
5235eca1c10SIngo Molnar 	unsigned int			flags;		/* Specifying the scheduler behaviour	*/
524aab03e05SDario Faggioli 
525aab03e05SDario Faggioli 	/*
526aab03e05SDario Faggioli 	 * Some bool flags:
527aab03e05SDario Faggioli 	 *
528aab03e05SDario Faggioli 	 * @dl_throttled tells if we exhausted the runtime. If so, the
529aab03e05SDario Faggioli 	 * task has to wait for a replenishment to be performed at the
530aab03e05SDario Faggioli 	 * next firing of dl_timer.
531aab03e05SDario Faggioli 	 *
5322d3d891dSDario Faggioli 	 * @dl_boosted tells if we are boosted due to DI. If so we are
5332d3d891dSDario Faggioli 	 * outside bandwidth enforcement mechanism (but only until we
5345bfd126eSJuri Lelli 	 * exit the critical section);
5355bfd126eSJuri Lelli 	 *
5365eca1c10SIngo Molnar 	 * @dl_yielded tells if task gave up the CPU before consuming
5375bfd126eSJuri Lelli 	 * all its available runtime during the last job.
538209a0cbdSLuca Abeni 	 *
539209a0cbdSLuca Abeni 	 * @dl_non_contending tells if the task is inactive while still
540209a0cbdSLuca Abeni 	 * contributing to the active utilization. In other words, it
541209a0cbdSLuca Abeni 	 * indicates if the inactive timer has been armed and its handler
542209a0cbdSLuca Abeni 	 * has not been executed yet. This flag is useful to avoid race
543209a0cbdSLuca Abeni 	 * conditions between the inactive timer handler and the wakeup
544209a0cbdSLuca Abeni 	 * code.
54534be3930SJuri Lelli 	 *
54634be3930SJuri Lelli 	 * @dl_overrun tells if the task asked to be informed about runtime
54734be3930SJuri Lelli 	 * overruns.
548aab03e05SDario Faggioli 	 */
549aa5222e9SDan Carpenter 	unsigned int			dl_throttled      : 1;
550aa5222e9SDan Carpenter 	unsigned int			dl_boosted        : 1;
551aa5222e9SDan Carpenter 	unsigned int			dl_yielded        : 1;
552aa5222e9SDan Carpenter 	unsigned int			dl_non_contending : 1;
55334be3930SJuri Lelli 	unsigned int			dl_overrun	  : 1;
554aab03e05SDario Faggioli 
555aab03e05SDario Faggioli 	/*
556aab03e05SDario Faggioli 	 * Bandwidth enforcement timer. Each -deadline task has its
557aab03e05SDario Faggioli 	 * own bandwidth to be enforced, thus we need one timer per task.
558aab03e05SDario Faggioli 	 */
559aab03e05SDario Faggioli 	struct hrtimer			dl_timer;
560209a0cbdSLuca Abeni 
561209a0cbdSLuca Abeni 	/*
562209a0cbdSLuca Abeni 	 * Inactive timer, responsible for decreasing the active utilization
563209a0cbdSLuca Abeni 	 * at the "0-lag time". When a -deadline task blocks, it contributes
564209a0cbdSLuca Abeni 	 * to GRUB's active utilization until the "0-lag time", hence a
565209a0cbdSLuca Abeni 	 * timer is needed to decrease the active utilization at the correct
566209a0cbdSLuca Abeni 	 * time.
567209a0cbdSLuca Abeni 	 */
568209a0cbdSLuca Abeni 	struct hrtimer inactive_timer;
569aab03e05SDario Faggioli };
5708bd75c77SClark Williams 
5711d082fd0SPaul E. McKenney union rcu_special {
5721d082fd0SPaul E. McKenney 	struct {
5738203d6d0SPaul E. McKenney 		u8			blocked;
5748203d6d0SPaul E. McKenney 		u8			need_qs;
57505f41571SPaul E. McKenney 		u8			exp_hint; /* Hint for performance. */
57605f41571SPaul E. McKenney 		u8			pad; /* No garbage from compiler! */
5778203d6d0SPaul E. McKenney 	} b; /* Bits. */
57805f41571SPaul E. McKenney 	u32 s; /* Set of bits. */
5791d082fd0SPaul E. McKenney };
58086848966SPaul E. McKenney 
5818dc85d54SPeter Zijlstra enum perf_event_task_context {
5828dc85d54SPeter Zijlstra 	perf_invalid_context = -1,
5838dc85d54SPeter Zijlstra 	perf_hw_context = 0,
58489a1e187SPeter Zijlstra 	perf_sw_context,
5858dc85d54SPeter Zijlstra 	perf_nr_task_contexts,
5868dc85d54SPeter Zijlstra };
5878dc85d54SPeter Zijlstra 
588eb61baf6SIngo Molnar struct wake_q_node {
589eb61baf6SIngo Molnar 	struct wake_q_node *next;
590eb61baf6SIngo Molnar };
591eb61baf6SIngo Molnar 
5921da177e4SLinus Torvalds struct task_struct {
593c65eacbeSAndy Lutomirski #ifdef CONFIG_THREAD_INFO_IN_TASK
594c65eacbeSAndy Lutomirski 	/*
595c65eacbeSAndy Lutomirski 	 * For reasons of header soup (see current_thread_info()), this
596c65eacbeSAndy Lutomirski 	 * must be the first element of task_struct.
597c65eacbeSAndy Lutomirski 	 */
598c65eacbeSAndy Lutomirski 	struct thread_info		thread_info;
599c65eacbeSAndy Lutomirski #endif
6005eca1c10SIngo Molnar 	/* -1 unrunnable, 0 runnable, >0 stopped: */
6015eca1c10SIngo Molnar 	volatile long			state;
60229e48ce8SKees Cook 
60329e48ce8SKees Cook 	/*
60429e48ce8SKees Cook 	 * This begins the randomizable portion of task_struct. Only
60529e48ce8SKees Cook 	 * scheduling-critical items should be added above here.
60629e48ce8SKees Cook 	 */
60729e48ce8SKees Cook 	randomized_struct_fields_start
60829e48ce8SKees Cook 
609f7e4217bSRoman Zippel 	void				*stack;
6101da177e4SLinus Torvalds 	atomic_t			usage;
6115eca1c10SIngo Molnar 	/* Per task flags (PF_*), defined further below: */
6125eca1c10SIngo Molnar 	unsigned int			flags;
61397dc32cdSWilliam Cohen 	unsigned int			ptrace;
6141da177e4SLinus Torvalds 
6152dd73a4fSPeter Williams #ifdef CONFIG_SMP
616fa14ff4aSPeter Zijlstra 	struct llist_node		wake_entry;
6173ca7a440SPeter Zijlstra 	int				on_cpu;
618c65eacbeSAndy Lutomirski #ifdef CONFIG_THREAD_INFO_IN_TASK
6195eca1c10SIngo Molnar 	/* Current CPU: */
6205eca1c10SIngo Molnar 	unsigned int			cpu;
621c65eacbeSAndy Lutomirski #endif
62263b0e9edSMike Galbraith 	unsigned int			wakee_flips;
62362470419SMichael Wang 	unsigned long			wakee_flip_decay_ts;
62463b0e9edSMike Galbraith 	struct task_struct		*last_wakee;
625ac66f547SPeter Zijlstra 
62632e839ddSMel Gorman 	/*
62732e839ddSMel Gorman 	 * recent_used_cpu is initially set as the last CPU used by a task
62832e839ddSMel Gorman 	 * that wakes affine another task. Waker/wakee relationships can
62932e839ddSMel Gorman 	 * push tasks around a CPU where each wakeup moves to the next one.
63032e839ddSMel Gorman 	 * Tracking a recently used CPU allows a quick search for a recently
63132e839ddSMel Gorman 	 * used CPU that may be idle.
63232e839ddSMel Gorman 	 */
63332e839ddSMel Gorman 	int				recent_used_cpu;
634ac66f547SPeter Zijlstra 	int				wake_cpu;
6354866cde0SNick Piggin #endif
636fd2f4419SPeter Zijlstra 	int				on_rq;
63750e645a8SIngo Molnar 
6385eca1c10SIngo Molnar 	int				prio;
6395eca1c10SIngo Molnar 	int				static_prio;
6405eca1c10SIngo Molnar 	int				normal_prio;
641c7aceabaSRichard Kennedy 	unsigned int			rt_priority;
6425eca1c10SIngo Molnar 
6435522d5d5SIngo Molnar 	const struct sched_class	*sched_class;
64420b8a59fSIngo Molnar 	struct sched_entity		se;
645fa717060SPeter Zijlstra 	struct sched_rt_entity		rt;
6468323f26cSPeter Zijlstra #ifdef CONFIG_CGROUP_SCHED
6478323f26cSPeter Zijlstra 	struct task_group		*sched_task_group;
6488323f26cSPeter Zijlstra #endif
649aab03e05SDario Faggioli 	struct sched_dl_entity		dl;
6501da177e4SLinus Torvalds 
651e107be36SAvi Kivity #ifdef CONFIG_PREEMPT_NOTIFIERS
6525eca1c10SIngo Molnar 	/* List of struct preempt_notifier: */
653e107be36SAvi Kivity 	struct hlist_head		preempt_notifiers;
654e107be36SAvi Kivity #endif
655e107be36SAvi Kivity 
6566c5c9341SAlexey Dobriyan #ifdef CONFIG_BLK_DEV_IO_TRACE
6572056a782SJens Axboe 	unsigned int			btrace_seq;
6586c5c9341SAlexey Dobriyan #endif
6591da177e4SLinus Torvalds 
66097dc32cdSWilliam Cohen 	unsigned int			policy;
66129baa747SPeter Zijlstra 	int				nr_cpus_allowed;
6621da177e4SLinus Torvalds 	cpumask_t			cpus_allowed;
6631da177e4SLinus Torvalds 
664a57eb940SPaul E. McKenney #ifdef CONFIG_PREEMPT_RCU
665e260be67SPaul E. McKenney 	int				rcu_read_lock_nesting;
6661d082fd0SPaul E. McKenney 	union rcu_special		rcu_read_unlock_special;
667f41d911fSPaul E. McKenney 	struct list_head		rcu_node_entry;
668a57eb940SPaul E. McKenney 	struct rcu_node			*rcu_blocked_node;
66928f6569aSPranith Kumar #endif /* #ifdef CONFIG_PREEMPT_RCU */
6705eca1c10SIngo Molnar 
6718315f422SPaul E. McKenney #ifdef CONFIG_TASKS_RCU
6728315f422SPaul E. McKenney 	unsigned long			rcu_tasks_nvcsw;
673ccdd29ffSPaul E. McKenney 	u8				rcu_tasks_holdout;
674ccdd29ffSPaul E. McKenney 	u8				rcu_tasks_idx;
675176f8f7aSPaul E. McKenney 	int				rcu_tasks_idle_cpu;
676ccdd29ffSPaul E. McKenney 	struct list_head		rcu_tasks_holdout_list;
6778315f422SPaul E. McKenney #endif /* #ifdef CONFIG_TASKS_RCU */
678e260be67SPaul E. McKenney 
6791da177e4SLinus Torvalds 	struct sched_info		sched_info;
6801da177e4SLinus Torvalds 
6811da177e4SLinus Torvalds 	struct list_head		tasks;
682806c09a7SDario Faggioli #ifdef CONFIG_SMP
683917b627dSGregory Haskins 	struct plist_node		pushable_tasks;
6841baca4ceSJuri Lelli 	struct rb_node			pushable_dl_tasks;
685806c09a7SDario Faggioli #endif
6861da177e4SLinus Torvalds 
6875eca1c10SIngo Molnar 	struct mm_struct		*mm;
6885eca1c10SIngo Molnar 	struct mm_struct		*active_mm;
689314ff785SIngo Molnar 
690314ff785SIngo Molnar 	/* Per-thread vma caching: */
691314ff785SIngo Molnar 	struct vmacache			vmacache;
692314ff785SIngo Molnar 
6935eca1c10SIngo Molnar #ifdef SPLIT_RSS_COUNTING
69434e55232SKAMEZAWA Hiroyuki 	struct task_rss_stat		rss_stat;
69534e55232SKAMEZAWA Hiroyuki #endif
69697dc32cdSWilliam Cohen 	int				exit_state;
6975eca1c10SIngo Molnar 	int				exit_code;
6985eca1c10SIngo Molnar 	int				exit_signal;
6995eca1c10SIngo Molnar 	/* The signal sent when the parent dies: */
7005eca1c10SIngo Molnar 	int				pdeath_signal;
7015eca1c10SIngo Molnar 	/* JOBCTL_*, siglock protected: */
7025eca1c10SIngo Molnar 	unsigned long			jobctl;
7039b89f6baSAndrei Epure 
7045eca1c10SIngo Molnar 	/* Used for emulating ABI behavior of previous Linux versions: */
70597dc32cdSWilliam Cohen 	unsigned int			personality;
7069b89f6baSAndrei Epure 
7075eca1c10SIngo Molnar 	/* Scheduler bits, serialized by scheduler locks: */
708ca94c442SLennart Poettering 	unsigned			sched_reset_on_fork:1;
709a8e4f2eaSPeter Zijlstra 	unsigned			sched_contributes_to_load:1;
710ff303e66SPeter Zijlstra 	unsigned			sched_migrated:1;
711b7e7ade3SPeter Zijlstra 	unsigned			sched_remote_wakeup:1;
712eb414681SJohannes Weiner #ifdef CONFIG_PSI
713eb414681SJohannes Weiner 	unsigned			sched_psi_wake_requeue:1;
714eb414681SJohannes Weiner #endif
715eb414681SJohannes Weiner 
7165eca1c10SIngo Molnar 	/* Force alignment to the next boundary: */
7175eca1c10SIngo Molnar 	unsigned			:0;
718be958bdcSPeter Zijlstra 
7195eca1c10SIngo Molnar 	/* Unserialized, strictly 'current' */
7205eca1c10SIngo Molnar 
7215eca1c10SIngo Molnar 	/* Bit to tell LSMs we're in execve(): */
7225eca1c10SIngo Molnar 	unsigned			in_execve:1;
723be958bdcSPeter Zijlstra 	unsigned			in_iowait:1;
7245eca1c10SIngo Molnar #ifndef TIF_RESTORE_SIGMASK
7257e781418SAndy Lutomirski 	unsigned			restore_sigmask:1;
7267e781418SAndy Lutomirski #endif
727626ebc41STejun Heo #ifdef CONFIG_MEMCG
72829ef680aSMichal Hocko 	unsigned			in_user_fault:1;
729127424c8SJohannes Weiner #endif
730ff303e66SPeter Zijlstra #ifdef CONFIG_COMPAT_BRK
731ff303e66SPeter Zijlstra 	unsigned			brk_randomized:1;
732ff303e66SPeter Zijlstra #endif
73377f88796STejun Heo #ifdef CONFIG_CGROUPS
73477f88796STejun Heo 	/* disallow userland-initiated cgroup migration */
73577f88796STejun Heo 	unsigned			no_cgroup_migration:1;
73677f88796STejun Heo #endif
737d09d8df3SJosef Bacik #ifdef CONFIG_BLK_CGROUP
738d09d8df3SJosef Bacik 	/* to be used once the psi infrastructure lands upstream. */
739d09d8df3SJosef Bacik 	unsigned			use_memdelay:1;
740d09d8df3SJosef Bacik #endif
7416f185c29SVladimir Davydov 
7429da3f2b7SJann Horn 	/*
7439da3f2b7SJann Horn 	 * May usercopy functions fault on kernel addresses?
7449da3f2b7SJann Horn 	 * This is not just a single bit because this can potentially nest.
7459da3f2b7SJann Horn 	 */
7469da3f2b7SJann Horn 	unsigned int			kernel_uaccess_faults_ok;
7479da3f2b7SJann Horn 
7485eca1c10SIngo Molnar 	unsigned long			atomic_flags; /* Flags requiring atomic access. */
7491d4457f9SKees Cook 
750f56141e3SAndy Lutomirski 	struct restart_block		restart_block;
751f56141e3SAndy Lutomirski 
7521da177e4SLinus Torvalds 	pid_t				pid;
7531da177e4SLinus Torvalds 	pid_t				tgid;
7540a425405SArjan van de Ven 
755050e9baaSLinus Torvalds #ifdef CONFIG_STACKPROTECTOR
7565eca1c10SIngo Molnar 	/* Canary value for the -fstack-protector GCC feature: */
7570a425405SArjan van de Ven 	unsigned long			stack_canary;
7581314562aSHiroshi Shimamoto #endif
7591da177e4SLinus Torvalds 	/*
7605eca1c10SIngo Molnar 	 * Pointers to the (original) parent process, youngest child, younger sibling,
7611da177e4SLinus Torvalds 	 * older sibling, respectively.  (p->father can be replaced with
762f470021aSRoland McGrath 	 * p->real_parent->pid)
7631da177e4SLinus Torvalds 	 */
7645eca1c10SIngo Molnar 
7655eca1c10SIngo Molnar 	/* Real parent process: */
7665eca1c10SIngo Molnar 	struct task_struct __rcu	*real_parent;
7675eca1c10SIngo Molnar 
7685eca1c10SIngo Molnar 	/* Recipient of SIGCHLD, wait4() reports: */
7695eca1c10SIngo Molnar 	struct task_struct __rcu	*parent;
7701da177e4SLinus Torvalds 
771f470021aSRoland McGrath 	/*
7725eca1c10SIngo Molnar 	 * Children/sibling form the list of natural children:
7735eca1c10SIngo Molnar 	 */
7745eca1c10SIngo Molnar 	struct list_head		children;
7755eca1c10SIngo Molnar 	struct list_head		sibling;
7765eca1c10SIngo Molnar 	struct task_struct		*group_leader;
7775eca1c10SIngo Molnar 
7785eca1c10SIngo Molnar 	/*
7795eca1c10SIngo Molnar 	 * 'ptraced' is the list of tasks this task is using ptrace() on.
7805eca1c10SIngo Molnar 	 *
781f470021aSRoland McGrath 	 * This includes both natural children and PTRACE_ATTACH targets.
7825eca1c10SIngo Molnar 	 * 'ptrace_entry' is this task's link on the p->parent->ptraced list.
783f470021aSRoland McGrath 	 */
784f470021aSRoland McGrath 	struct list_head		ptraced;
785f470021aSRoland McGrath 	struct list_head		ptrace_entry;
786f470021aSRoland McGrath 
7871da177e4SLinus Torvalds 	/* PID/PID hash table linkage. */
7882c470475SEric W. Biederman 	struct pid			*thread_pid;
7892c470475SEric W. Biederman 	struct hlist_node		pid_links[PIDTYPE_MAX];
79047e65328SOleg Nesterov 	struct list_head		thread_group;
7910c740d0aSOleg Nesterov 	struct list_head		thread_node;
7921da177e4SLinus Torvalds 
7935eca1c10SIngo Molnar 	struct completion		*vfork_done;
7941da177e4SLinus Torvalds 
7955eca1c10SIngo Molnar 	/* CLONE_CHILD_SETTID: */
7965eca1c10SIngo Molnar 	int __user			*set_child_tid;
7975eca1c10SIngo Molnar 
7985eca1c10SIngo Molnar 	/* CLONE_CHILD_CLEARTID: */
7995eca1c10SIngo Molnar 	int __user			*clear_child_tid;
8005eca1c10SIngo Molnar 
8015eca1c10SIngo Molnar 	u64				utime;
8025eca1c10SIngo Molnar 	u64				stime;
80340565b5aSStanislaw Gruszka #ifdef CONFIG_ARCH_HAS_SCALED_CPUTIME
8045eca1c10SIngo Molnar 	u64				utimescaled;
8055eca1c10SIngo Molnar 	u64				stimescaled;
80640565b5aSStanislaw Gruszka #endif
80716a6d9beSFrederic Weisbecker 	u64				gtime;
8089d7fb042SPeter Zijlstra 	struct prev_cputime		prev_cputime;
8096a61671bSFrederic Weisbecker #ifdef CONFIG_VIRT_CPU_ACCOUNTING_GEN
810bac5b6b6SFrederic Weisbecker 	struct vtime			vtime;
8116a61671bSFrederic Weisbecker #endif
812d027d45dSFrederic Weisbecker 
813d027d45dSFrederic Weisbecker #ifdef CONFIG_NO_HZ_FULL
814f009a7a7SFrederic Weisbecker 	atomic_t			tick_dep_mask;
815d027d45dSFrederic Weisbecker #endif
8165eca1c10SIngo Molnar 	/* Context switch counts: */
8175eca1c10SIngo Molnar 	unsigned long			nvcsw;
8185eca1c10SIngo Molnar 	unsigned long			nivcsw;
8195eca1c10SIngo Molnar 
8205eca1c10SIngo Molnar 	/* Monotonic time in nsecs: */
8215eca1c10SIngo Molnar 	u64				start_time;
8225eca1c10SIngo Molnar 
8235eca1c10SIngo Molnar 	/* Boot based time in nsecs: */
8245eca1c10SIngo Molnar 	u64				real_start_time;
8255eca1c10SIngo Molnar 
8265eca1c10SIngo Molnar 	/* MM fault and swap info: this can arguably be seen as either mm-specific or thread-specific: */
8275eca1c10SIngo Molnar 	unsigned long			min_flt;
8285eca1c10SIngo Molnar 	unsigned long			maj_flt;
8291da177e4SLinus Torvalds 
830b18b6a9cSNicolas Pitre #ifdef CONFIG_POSIX_TIMERS
831f06febc9SFrank Mayhar 	struct task_cputime		cputime_expires;
8321da177e4SLinus Torvalds 	struct list_head		cpu_timers[3];
833b18b6a9cSNicolas Pitre #endif
8341da177e4SLinus Torvalds 
8355eca1c10SIngo Molnar 	/* Process credentials: */
8365eca1c10SIngo Molnar 
8375eca1c10SIngo Molnar 	/* Tracer's credentials at attach: */
8385eca1c10SIngo Molnar 	const struct cred __rcu		*ptracer_cred;
8395eca1c10SIngo Molnar 
8405eca1c10SIngo Molnar 	/* Objective and real subjective task credentials (COW): */
8415eca1c10SIngo Molnar 	const struct cred __rcu		*real_cred;
8425eca1c10SIngo Molnar 
8435eca1c10SIngo Molnar 	/* Effective (overridable) subjective task credentials (COW): */
8445eca1c10SIngo Molnar 	const struct cred __rcu		*cred;
8455eca1c10SIngo Molnar 
8465eca1c10SIngo Molnar 	/*
8475eca1c10SIngo Molnar 	 * executable name, excluding path.
8485eca1c10SIngo Molnar 	 *
8495eca1c10SIngo Molnar 	 * - normally initialized setup_new_exec()
8505eca1c10SIngo Molnar 	 * - access it with [gs]et_task_comm()
8515eca1c10SIngo Molnar 	 * - lock it with task_lock()
8525eca1c10SIngo Molnar 	 */
8535eca1c10SIngo Molnar 	char				comm[TASK_COMM_LEN];
8545eca1c10SIngo Molnar 
855756daf26SNeilBrown 	struct nameidata		*nameidata;
8565eca1c10SIngo Molnar 
8573d5b6fccSAlexey Dobriyan #ifdef CONFIG_SYSVIPC
8581da177e4SLinus Torvalds 	struct sysv_sem			sysvsem;
859ab602f79SJack Miller 	struct sysv_shm			sysvshm;
8603d5b6fccSAlexey Dobriyan #endif
861e162b39aSMandeep Singh Baines #ifdef CONFIG_DETECT_HUNG_TASK
86282a1fcb9SIngo Molnar 	unsigned long			last_switch_count;
863a2e51445SDmitry Vyukov 	unsigned long			last_switch_time;
86482a1fcb9SIngo Molnar #endif
8655eca1c10SIngo Molnar 	/* Filesystem information: */
8661da177e4SLinus Torvalds 	struct fs_struct		*fs;
8675eca1c10SIngo Molnar 
8685eca1c10SIngo Molnar 	/* Open file information: */
8691da177e4SLinus Torvalds 	struct files_struct		*files;
8705eca1c10SIngo Molnar 
8715eca1c10SIngo Molnar 	/* Namespaces: */
872ab516013SSerge E. Hallyn 	struct nsproxy			*nsproxy;
8735eca1c10SIngo Molnar 
8745eca1c10SIngo Molnar 	/* Signal handlers: */
8751da177e4SLinus Torvalds 	struct signal_struct		*signal;
8761da177e4SLinus Torvalds 	struct sighand_struct		*sighand;
8775eca1c10SIngo Molnar 	sigset_t			blocked;
8785eca1c10SIngo Molnar 	sigset_t			real_blocked;
8795eca1c10SIngo Molnar 	/* Restored if set_restore_sigmask() was used: */
8805eca1c10SIngo Molnar 	sigset_t			saved_sigmask;
8811da177e4SLinus Torvalds 	struct sigpending		pending;
8821da177e4SLinus Torvalds 	unsigned long			sas_ss_sp;
8831da177e4SLinus Torvalds 	size_t				sas_ss_size;
8845eca1c10SIngo Molnar 	unsigned int			sas_ss_flags;
8852e01fabeSOleg Nesterov 
88667d12145SAl Viro 	struct callback_head		*task_works;
887e73f8959SOleg Nesterov 
8881da177e4SLinus Torvalds 	struct audit_context		*audit_context;
889*4b7d248bSRichard Guy Briggs #ifdef CONFIG_AUDIT
890e1760bd5SEric W. Biederman 	kuid_t				loginuid;
8914746ec5bSEric Paris 	unsigned int			sessionid;
892bfef93a5SAl Viro #endif
893932ecebbSWill Drewry 	struct seccomp			seccomp;
8941da177e4SLinus Torvalds 
8955eca1c10SIngo Molnar 	/* Thread group tracking: */
8961da177e4SLinus Torvalds 	u32				parent_exec_id;
8971da177e4SLinus Torvalds 	u32				self_exec_id;
8985eca1c10SIngo Molnar 
8995eca1c10SIngo Molnar 	/* Protection against (de-)allocation: mm, files, fs, tty, keyrings, mems_allowed, mempolicy: */
9001da177e4SLinus Torvalds 	spinlock_t			alloc_lock;
9011da177e4SLinus Torvalds 
902b29739f9SIngo Molnar 	/* Protection of the PI data structures: */
9031d615482SThomas Gleixner 	raw_spinlock_t			pi_lock;
904b29739f9SIngo Molnar 
90576751049SPeter Zijlstra 	struct wake_q_node		wake_q;
90676751049SPeter Zijlstra 
90723f78d4aSIngo Molnar #ifdef CONFIG_RT_MUTEXES
9085eca1c10SIngo Molnar 	/* PI waiters blocked on a rt_mutex held by this task: */
909a23ba907SDavidlohr Bueso 	struct rb_root_cached		pi_waiters;
910e96a7705SXunlei Pang 	/* Updated under owner's pi_lock and rq lock */
911e96a7705SXunlei Pang 	struct task_struct		*pi_top_task;
9125eca1c10SIngo Molnar 	/* Deadlock detection and priority inheritance handling: */
91323f78d4aSIngo Molnar 	struct rt_mutex_waiter		*pi_blocked_on;
91423f78d4aSIngo Molnar #endif
91523f78d4aSIngo Molnar 
916408894eeSIngo Molnar #ifdef CONFIG_DEBUG_MUTEXES
9175eca1c10SIngo Molnar 	/* Mutex deadlock detection: */
918408894eeSIngo Molnar 	struct mutex_waiter		*blocked_on;
919408894eeSIngo Molnar #endif
9205eca1c10SIngo Molnar 
921de30a2b3SIngo Molnar #ifdef CONFIG_TRACE_IRQFLAGS
922de30a2b3SIngo Molnar 	unsigned int			irq_events;
923de30a2b3SIngo Molnar 	unsigned long			hardirq_enable_ip;
924de30a2b3SIngo Molnar 	unsigned long			hardirq_disable_ip;
925fa1452e8SHiroshi Shimamoto 	unsigned int			hardirq_enable_event;
926de30a2b3SIngo Molnar 	unsigned int			hardirq_disable_event;
927fa1452e8SHiroshi Shimamoto 	int				hardirqs_enabled;
928de30a2b3SIngo Molnar 	int				hardirq_context;
929fa1452e8SHiroshi Shimamoto 	unsigned long			softirq_disable_ip;
930fa1452e8SHiroshi Shimamoto 	unsigned long			softirq_enable_ip;
931fa1452e8SHiroshi Shimamoto 	unsigned int			softirq_disable_event;
932fa1452e8SHiroshi Shimamoto 	unsigned int			softirq_enable_event;
933fa1452e8SHiroshi Shimamoto 	int				softirqs_enabled;
934de30a2b3SIngo Molnar 	int				softirq_context;
935de30a2b3SIngo Molnar #endif
9365eca1c10SIngo Molnar 
937fbb9ce95SIngo Molnar #ifdef CONFIG_LOCKDEP
938bdb9441eSPeter Zijlstra # define MAX_LOCK_DEPTH			48UL
939fbb9ce95SIngo Molnar 	u64				curr_chain_key;
940fbb9ce95SIngo Molnar 	int				lockdep_depth;
941fbb9ce95SIngo Molnar 	unsigned int			lockdep_recursion;
942c7aceabaSRichard Kennedy 	struct held_lock		held_locks[MAX_LOCK_DEPTH];
943fbb9ce95SIngo Molnar #endif
9445eca1c10SIngo Molnar 
945c6d30853SAndrey Ryabinin #ifdef CONFIG_UBSAN
946c6d30853SAndrey Ryabinin 	unsigned int			in_ubsan;
947c6d30853SAndrey Ryabinin #endif
948408894eeSIngo Molnar 
9495eca1c10SIngo Molnar 	/* Journalling filesystem info: */
9501da177e4SLinus Torvalds 	void				*journal_info;
9511da177e4SLinus Torvalds 
9525eca1c10SIngo Molnar 	/* Stacked block device info: */
953bddd87c7SAkinobu Mita 	struct bio_list			*bio_list;
954d89d8796SNeil Brown 
95573c10101SJens Axboe #ifdef CONFIG_BLOCK
9565eca1c10SIngo Molnar 	/* Stack plugging: */
95773c10101SJens Axboe 	struct blk_plug			*plug;
95873c10101SJens Axboe #endif
95973c10101SJens Axboe 
9605eca1c10SIngo Molnar 	/* VM state: */
9611da177e4SLinus Torvalds 	struct reclaim_state		*reclaim_state;
9621da177e4SLinus Torvalds 
9631da177e4SLinus Torvalds 	struct backing_dev_info		*backing_dev_info;
9641da177e4SLinus Torvalds 
9651da177e4SLinus Torvalds 	struct io_context		*io_context;
9661da177e4SLinus Torvalds 
9675eca1c10SIngo Molnar 	/* Ptrace state: */
9681da177e4SLinus Torvalds 	unsigned long			ptrace_message;
969ae7795bcSEric W. Biederman 	kernel_siginfo_t		*last_siginfo;
9705eca1c10SIngo Molnar 
9717c3ab738SAndrew Morton 	struct task_io_accounting	ioac;
972eb414681SJohannes Weiner #ifdef CONFIG_PSI
973eb414681SJohannes Weiner 	/* Pressure stall state */
974eb414681SJohannes Weiner 	unsigned int			psi_flags;
975eb414681SJohannes Weiner #endif
9765eca1c10SIngo Molnar #ifdef CONFIG_TASK_XACCT
9775eca1c10SIngo Molnar 	/* Accumulated RSS usage: */
9785eca1c10SIngo Molnar 	u64				acct_rss_mem1;
9795eca1c10SIngo Molnar 	/* Accumulated virtual memory usage: */
9805eca1c10SIngo Molnar 	u64				acct_vm_mem1;
9815eca1c10SIngo Molnar 	/* stime + utime since last update: */
9825eca1c10SIngo Molnar 	u64				acct_timexpd;
9831da177e4SLinus Torvalds #endif
9841da177e4SLinus Torvalds #ifdef CONFIG_CPUSETS
9855eca1c10SIngo Molnar 	/* Protected by ->alloc_lock: */
9865eca1c10SIngo Molnar 	nodemask_t			mems_allowed;
9875eca1c10SIngo Molnar 	/* Seqence number to catch updates: */
9885eca1c10SIngo Molnar 	seqcount_t			mems_allowed_seq;
989825a46afSPaul Jackson 	int				cpuset_mem_spread_rotor;
9906adef3ebSJack Steiner 	int				cpuset_slab_spread_rotor;
9911da177e4SLinus Torvalds #endif
992ddbcc7e8SPaul Menage #ifdef CONFIG_CGROUPS
9935eca1c10SIngo Molnar 	/* Control Group info protected by css_set_lock: */
9942c392b8cSArnd Bergmann 	struct css_set __rcu		*cgroups;
9955eca1c10SIngo Molnar 	/* cg_list protected by css_set_lock and tsk->alloc_lock: */
996817929ecSPaul Menage 	struct list_head		cg_list;
997ddbcc7e8SPaul Menage #endif
9986fe07ce3SBabu Moger #ifdef CONFIG_RESCTRL
9990734ded1SVikas Shivappa 	u32				closid;
1000d6aaba61SVikas Shivappa 	u32				rmid;
1001e02737d5SFenghua Yu #endif
100242b2dd0aSAlexey Dobriyan #ifdef CONFIG_FUTEX
10030771dfefSIngo Molnar 	struct robust_list_head __user	*robust_list;
100434f192c6SIngo Molnar #ifdef CONFIG_COMPAT
100534f192c6SIngo Molnar 	struct compat_robust_list_head __user *compat_robust_list;
100634f192c6SIngo Molnar #endif
1007c87e2837SIngo Molnar 	struct list_head		pi_state_list;
1008c87e2837SIngo Molnar 	struct futex_pi_state		*pi_state_cache;
100942b2dd0aSAlexey Dobriyan #endif
1010cdd6c482SIngo Molnar #ifdef CONFIG_PERF_EVENTS
10118dc85d54SPeter Zijlstra 	struct perf_event_context	*perf_event_ctxp[perf_nr_task_contexts];
1012cdd6c482SIngo Molnar 	struct mutex			perf_event_mutex;
1013cdd6c482SIngo Molnar 	struct list_head		perf_event_list;
1014a63eaf34SPaul Mackerras #endif
10158f47b187SThomas Gleixner #ifdef CONFIG_DEBUG_PREEMPT
10168f47b187SThomas Gleixner 	unsigned long			preempt_disable_ip;
10178f47b187SThomas Gleixner #endif
1018c7aceabaSRichard Kennedy #ifdef CONFIG_NUMA
10195eca1c10SIngo Molnar 	/* Protected by alloc_lock: */
10205eca1c10SIngo Molnar 	struct mempolicy		*mempolicy;
102145816682SVlastimil Babka 	short				il_prev;
1022207205a2SEric Dumazet 	short				pref_node_fork;
1023c7aceabaSRichard Kennedy #endif
1024cbee9f88SPeter Zijlstra #ifdef CONFIG_NUMA_BALANCING
1025cbee9f88SPeter Zijlstra 	int				numa_scan_seq;
1026cbee9f88SPeter Zijlstra 	unsigned int			numa_scan_period;
1027598f0ec0SMel Gorman 	unsigned int			numa_scan_period_max;
1028de1c9ce6SRik van Riel 	int				numa_preferred_nid;
10296b9a7460SMel Gorman 	unsigned long			numa_migrate_retry;
10305eca1c10SIngo Molnar 	/* Migration stamp: */
10315eca1c10SIngo Molnar 	u64				node_stamp;
10327e2703e6SRik van Riel 	u64				last_task_numa_placement;
10337e2703e6SRik van Riel 	u64				last_sum_exec_runtime;
1034cbee9f88SPeter Zijlstra 	struct callback_head		numa_work;
1035f809ca9aSMel Gorman 
10368c8a743cSPeter Zijlstra 	struct numa_group		*numa_group;
10378c8a743cSPeter Zijlstra 
1038745d6147SMel Gorman 	/*
103944dba3d5SIulia Manda 	 * numa_faults is an array split into four regions:
104044dba3d5SIulia Manda 	 * faults_memory, faults_cpu, faults_memory_buffer, faults_cpu_buffer
104144dba3d5SIulia Manda 	 * in this precise order.
104244dba3d5SIulia Manda 	 *
104344dba3d5SIulia Manda 	 * faults_memory: Exponential decaying average of faults on a per-node
104444dba3d5SIulia Manda 	 * basis. Scheduling placement decisions are made based on these
104544dba3d5SIulia Manda 	 * counts. The values remain static for the duration of a PTE scan.
104644dba3d5SIulia Manda 	 * faults_cpu: Track the nodes the process was running on when a NUMA
104744dba3d5SIulia Manda 	 * hinting fault was incurred.
104844dba3d5SIulia Manda 	 * faults_memory_buffer and faults_cpu_buffer: Record faults per node
104944dba3d5SIulia Manda 	 * during the current scan window. When the scan completes, the counts
105044dba3d5SIulia Manda 	 * in faults_memory and faults_cpu decay and these values are copied.
1051745d6147SMel Gorman 	 */
105244dba3d5SIulia Manda 	unsigned long			*numa_faults;
105383e1d2cdSMel Gorman 	unsigned long			total_numa_faults;
1054745d6147SMel Gorman 
1055745d6147SMel Gorman 	/*
105604bb2f94SRik van Riel 	 * numa_faults_locality tracks if faults recorded during the last
1057074c2381SMel Gorman 	 * scan window were remote/local or failed to migrate. The task scan
1058074c2381SMel Gorman 	 * period is adapted based on the locality of the faults with different
1059074c2381SMel Gorman 	 * weights depending on whether they were shared or private faults
106004bb2f94SRik van Riel 	 */
1061074c2381SMel Gorman 	unsigned long			numa_faults_locality[3];
106204bb2f94SRik van Riel 
1063b32e86b4SIngo Molnar 	unsigned long			numa_pages_migrated;
1064cbee9f88SPeter Zijlstra #endif /* CONFIG_NUMA_BALANCING */
1065cbee9f88SPeter Zijlstra 
1066d7822b1eSMathieu Desnoyers #ifdef CONFIG_RSEQ
1067d7822b1eSMathieu Desnoyers 	struct rseq __user *rseq;
1068d7822b1eSMathieu Desnoyers 	u32 rseq_len;
1069d7822b1eSMathieu Desnoyers 	u32 rseq_sig;
1070d7822b1eSMathieu Desnoyers 	/*
1071d7822b1eSMathieu Desnoyers 	 * RmW on rseq_event_mask must be performed atomically
1072d7822b1eSMathieu Desnoyers 	 * with respect to preemption.
1073d7822b1eSMathieu Desnoyers 	 */
1074d7822b1eSMathieu Desnoyers 	unsigned long rseq_event_mask;
1075d7822b1eSMathieu Desnoyers #endif
1076d7822b1eSMathieu Desnoyers 
107772b252aeSMel Gorman 	struct tlbflush_unmap_batch	tlb_ubc;
107872b252aeSMel Gorman 
1079e56d0903SIngo Molnar 	struct rcu_head			rcu;
1080b92ce558SJens Axboe 
10815eca1c10SIngo Molnar 	/* Cache last used pipe for splice(): */
1082b92ce558SJens Axboe 	struct pipe_inode_info		*splice_pipe;
10835640f768SEric Dumazet 
10845640f768SEric Dumazet 	struct page_frag		task_frag;
10855640f768SEric Dumazet 
1086ca74e92bSShailabh Nagar #ifdef CONFIG_TASK_DELAY_ACCT
1087ca74e92bSShailabh Nagar 	struct task_delay_info		*delays;
1088ca74e92bSShailabh Nagar #endif
108947913d4eSIngo Molnar 
1090f4f154fdSAkinobu Mita #ifdef CONFIG_FAULT_INJECTION
1091f4f154fdSAkinobu Mita 	int				make_it_fail;
10929049f2f6SAkinobu Mita 	unsigned int			fail_nth;
1093f4f154fdSAkinobu Mita #endif
10949d823e8fSWu Fengguang 	/*
10955eca1c10SIngo Molnar 	 * When (nr_dirtied >= nr_dirtied_pause), it's time to call
10965eca1c10SIngo Molnar 	 * balance_dirty_pages() for a dirty throttling pause:
10979d823e8fSWu Fengguang 	 */
10989d823e8fSWu Fengguang 	int				nr_dirtied;
10999d823e8fSWu Fengguang 	int				nr_dirtied_pause;
11005eca1c10SIngo Molnar 	/* Start of a write-and-pause period: */
11015eca1c10SIngo Molnar 	unsigned long			dirty_paused_when;
11029d823e8fSWu Fengguang 
11039745512cSArjan van de Ven #ifdef CONFIG_LATENCYTOP
11049745512cSArjan van de Ven 	int				latency_record_count;
11059745512cSArjan van de Ven 	struct latency_record		latency_record[LT_SAVECOUNT];
11069745512cSArjan van de Ven #endif
11076976675dSArjan van de Ven 	/*
11085eca1c10SIngo Molnar 	 * Time slack values; these are used to round up poll() and
11096976675dSArjan van de Ven 	 * select() etc timeout values. These are in nanoseconds.
11106976675dSArjan van de Ven 	 */
1111da8b44d5SJohn Stultz 	u64				timer_slack_ns;
1112da8b44d5SJohn Stultz 	u64				default_timer_slack_ns;
1113f8d570a4SDavid Miller 
11140b24beccSAndrey Ryabinin #ifdef CONFIG_KASAN
11150b24beccSAndrey Ryabinin 	unsigned int			kasan_depth;
11160b24beccSAndrey Ryabinin #endif
11175eca1c10SIngo Molnar 
1118fb52607aSFrederic Weisbecker #ifdef CONFIG_FUNCTION_GRAPH_TRACER
11195eca1c10SIngo Molnar 	/* Index of current stored address in ret_stack: */
1120f201ae23SFrederic Weisbecker 	int				curr_ret_stack;
112139eb456dSSteven Rostedt (VMware) 	int				curr_ret_depth;
11225eca1c10SIngo Molnar 
11235eca1c10SIngo Molnar 	/* Stack of return addresses for return function tracing: */
1124f201ae23SFrederic Weisbecker 	struct ftrace_ret_stack		*ret_stack;
11255eca1c10SIngo Molnar 
11265eca1c10SIngo Molnar 	/* Timestamp for last schedule: */
11278aef2d28SSteven Rostedt 	unsigned long long		ftrace_timestamp;
11285eca1c10SIngo Molnar 
1129f201ae23SFrederic Weisbecker 	/*
1130f201ae23SFrederic Weisbecker 	 * Number of functions that haven't been traced
11315eca1c10SIngo Molnar 	 * because of depth overrun:
1132f201ae23SFrederic Weisbecker 	 */
1133f201ae23SFrederic Weisbecker 	atomic_t			trace_overrun;
11345eca1c10SIngo Molnar 
11355eca1c10SIngo Molnar 	/* Pause tracing: */
1136380c4b14SFrederic Weisbecker 	atomic_t			tracing_graph_pause;
1137f201ae23SFrederic Weisbecker #endif
11385eca1c10SIngo Molnar 
1139ea4e2bc4SSteven Rostedt #ifdef CONFIG_TRACING
11405eca1c10SIngo Molnar 	/* State flags for use by tracers: */
1141ea4e2bc4SSteven Rostedt 	unsigned long			trace;
11425eca1c10SIngo Molnar 
11435eca1c10SIngo Molnar 	/* Bitmask and counter of trace recursion: */
1144261842b7SSteven Rostedt 	unsigned long			trace_recursion;
1145261842b7SSteven Rostedt #endif /* CONFIG_TRACING */
11465eca1c10SIngo Molnar 
11475c9a8750SDmitry Vyukov #ifdef CONFIG_KCOV
11485eca1c10SIngo Molnar 	/* Coverage collection mode enabled for this task (0 if disabled): */
11490ed557aaSMark Rutland 	unsigned int			kcov_mode;
11505eca1c10SIngo Molnar 
11515eca1c10SIngo Molnar 	/* Size of the kcov_area: */
11525eca1c10SIngo Molnar 	unsigned int			kcov_size;
11535eca1c10SIngo Molnar 
11545eca1c10SIngo Molnar 	/* Buffer for coverage collection: */
11555c9a8750SDmitry Vyukov 	void				*kcov_area;
11565eca1c10SIngo Molnar 
11575eca1c10SIngo Molnar 	/* KCOV descriptor wired with this task or NULL: */
11585c9a8750SDmitry Vyukov 	struct kcov			*kcov;
11595c9a8750SDmitry Vyukov #endif
11605eca1c10SIngo Molnar 
11616f185c29SVladimir Davydov #ifdef CONFIG_MEMCG
1162626ebc41STejun Heo 	struct mem_cgroup		*memcg_in_oom;
1163626ebc41STejun Heo 	gfp_t				memcg_oom_gfp_mask;
1164626ebc41STejun Heo 	int				memcg_oom_order;
1165b23afb93STejun Heo 
11665eca1c10SIngo Molnar 	/* Number of pages to reclaim on returning to userland: */
1167b23afb93STejun Heo 	unsigned int			memcg_nr_pages_over_high;
1168d46eb14bSShakeel Butt 
1169d46eb14bSShakeel Butt 	/* Used by memcontrol for targeted memcg charge: */
1170d46eb14bSShakeel Butt 	struct mem_cgroup		*active_memcg;
1171569b846dSKAMEZAWA Hiroyuki #endif
11725eca1c10SIngo Molnar 
1173d09d8df3SJosef Bacik #ifdef CONFIG_BLK_CGROUP
1174d09d8df3SJosef Bacik 	struct request_queue		*throttle_queue;
1175d09d8df3SJosef Bacik #endif
1176d09d8df3SJosef Bacik 
11770326f5a9SSrikar Dronamraju #ifdef CONFIG_UPROBES
11780326f5a9SSrikar Dronamraju 	struct uprobe_task		*utask;
11790326f5a9SSrikar Dronamraju #endif
1180cafe5635SKent Overstreet #if defined(CONFIG_BCACHE) || defined(CONFIG_BCACHE_MODULE)
1181cafe5635SKent Overstreet 	unsigned int			sequential_io;
1182cafe5635SKent Overstreet 	unsigned int			sequential_io_avg;
1183cafe5635SKent Overstreet #endif
11848eb23b9fSPeter Zijlstra #ifdef CONFIG_DEBUG_ATOMIC_SLEEP
11858eb23b9fSPeter Zijlstra 	unsigned long			task_state_change;
11868eb23b9fSPeter Zijlstra #endif
11878bcbde54SDavid Hildenbrand 	int				pagefault_disabled;
118803049269SMichal Hocko #ifdef CONFIG_MMU
118929c696e1SVladimir Davydov 	struct task_struct		*oom_reaper_list;
119003049269SMichal Hocko #endif
1191ba14a194SAndy Lutomirski #ifdef CONFIG_VMAP_STACK
1192ba14a194SAndy Lutomirski 	struct vm_struct		*stack_vm_area;
1193ba14a194SAndy Lutomirski #endif
119468f24b08SAndy Lutomirski #ifdef CONFIG_THREAD_INFO_IN_TASK
11955eca1c10SIngo Molnar 	/* A live task holds one reference: */
119668f24b08SAndy Lutomirski 	atomic_t			stack_refcount;
119768f24b08SAndy Lutomirski #endif
1198d83a7cb3SJosh Poimboeuf #ifdef CONFIG_LIVEPATCH
1199d83a7cb3SJosh Poimboeuf 	int patch_state;
1200d83a7cb3SJosh Poimboeuf #endif
1201e4e55b47STetsuo Handa #ifdef CONFIG_SECURITY
1202e4e55b47STetsuo Handa 	/* Used by LSM modules for access restriction: */
1203e4e55b47STetsuo Handa 	void				*security;
1204e4e55b47STetsuo Handa #endif
120529e48ce8SKees Cook 
1206afaef01cSAlexander Popov #ifdef CONFIG_GCC_PLUGIN_STACKLEAK
1207afaef01cSAlexander Popov 	unsigned long			lowest_stack;
1208c8d12627SAlexander Popov 	unsigned long			prev_lowest_stack;
1209afaef01cSAlexander Popov #endif
1210afaef01cSAlexander Popov 
121129e48ce8SKees Cook 	/*
121229e48ce8SKees Cook 	 * New fields for task_struct should be added above here, so that
121329e48ce8SKees Cook 	 * they are included in the randomized portion of task_struct.
121429e48ce8SKees Cook 	 */
121529e48ce8SKees Cook 	randomized_struct_fields_end
121629e48ce8SKees Cook 
12175eca1c10SIngo Molnar 	/* CPU-specific state of this task: */
12180c8c0f03SDave Hansen 	struct thread_struct		thread;
12195eca1c10SIngo Molnar 
12200c8c0f03SDave Hansen 	/*
12210c8c0f03SDave Hansen 	 * WARNING: on x86, 'thread_struct' contains a variable-sized
12220c8c0f03SDave Hansen 	 * structure.  It *MUST* be at the end of 'task_struct'.
12230c8c0f03SDave Hansen 	 *
12240c8c0f03SDave Hansen 	 * Do not put anything below here!
12250c8c0f03SDave Hansen 	 */
12261da177e4SLinus Torvalds };
12271da177e4SLinus Torvalds 
1228e868171aSAlexey Dobriyan static inline struct pid *task_pid(struct task_struct *task)
122922c935f4SEric W. Biederman {
12302c470475SEric W. Biederman 	return task->thread_pid;
123122c935f4SEric W. Biederman }
123222c935f4SEric W. Biederman 
12337af57294SPavel Emelyanov /*
12347af57294SPavel Emelyanov  * the helpers to get the task's different pids as they are seen
12357af57294SPavel Emelyanov  * from various namespaces
12367af57294SPavel Emelyanov  *
12377af57294SPavel Emelyanov  * task_xid_nr()     : global id, i.e. the id seen from the init namespace;
123844c4e1b2SEric W. Biederman  * task_xid_vnr()    : virtual id, i.e. the id seen from the pid namespace of
123944c4e1b2SEric W. Biederman  *                     current.
12407af57294SPavel Emelyanov  * task_xid_nr_ns()  : id seen from the ns specified;
12417af57294SPavel Emelyanov  *
12427af57294SPavel Emelyanov  * see also pid_nr() etc in include/linux/pid.h
12437af57294SPavel Emelyanov  */
12445eca1c10SIngo Molnar pid_t __task_pid_nr_ns(struct task_struct *task, enum pid_type type, struct pid_namespace *ns);
12457af57294SPavel Emelyanov 
1246e868171aSAlexey Dobriyan static inline pid_t task_pid_nr(struct task_struct *tsk)
12477af57294SPavel Emelyanov {
12487af57294SPavel Emelyanov 	return tsk->pid;
12497af57294SPavel Emelyanov }
12507af57294SPavel Emelyanov 
12515eca1c10SIngo Molnar static inline pid_t task_pid_nr_ns(struct task_struct *tsk, struct pid_namespace *ns)
125252ee2dfdSOleg Nesterov {
125352ee2dfdSOleg Nesterov 	return __task_pid_nr_ns(tsk, PIDTYPE_PID, ns);
125452ee2dfdSOleg Nesterov }
12557af57294SPavel Emelyanov 
12567af57294SPavel Emelyanov static inline pid_t task_pid_vnr(struct task_struct *tsk)
12577af57294SPavel Emelyanov {
125852ee2dfdSOleg Nesterov 	return __task_pid_nr_ns(tsk, PIDTYPE_PID, NULL);
12597af57294SPavel Emelyanov }
12607af57294SPavel Emelyanov 
12617af57294SPavel Emelyanov 
1262e868171aSAlexey Dobriyan static inline pid_t task_tgid_nr(struct task_struct *tsk)
12637af57294SPavel Emelyanov {
12647af57294SPavel Emelyanov 	return tsk->tgid;
12657af57294SPavel Emelyanov }
12667af57294SPavel Emelyanov 
12675eca1c10SIngo Molnar /**
12685eca1c10SIngo Molnar  * pid_alive - check that a task structure is not stale
12695eca1c10SIngo Molnar  * @p: Task structure to be checked.
12705eca1c10SIngo Molnar  *
12715eca1c10SIngo Molnar  * Test if a process is not yet dead (at most zombie state)
12725eca1c10SIngo Molnar  * If pid_alive fails, then pointers within the task structure
12735eca1c10SIngo Molnar  * can be stale and must not be dereferenced.
12745eca1c10SIngo Molnar  *
12755eca1c10SIngo Molnar  * Return: 1 if the process is alive. 0 otherwise.
12765eca1c10SIngo Molnar  */
12775eca1c10SIngo Molnar static inline int pid_alive(const struct task_struct *p)
12785eca1c10SIngo Molnar {
12792c470475SEric W. Biederman 	return p->thread_pid != NULL;
12805eca1c10SIngo Molnar }
12817af57294SPavel Emelyanov 
12825eca1c10SIngo Molnar static inline pid_t task_pgrp_nr_ns(struct task_struct *tsk, struct pid_namespace *ns)
12837af57294SPavel Emelyanov {
128452ee2dfdSOleg Nesterov 	return __task_pid_nr_ns(tsk, PIDTYPE_PGID, ns);
12857af57294SPavel Emelyanov }
12867af57294SPavel Emelyanov 
12877af57294SPavel Emelyanov static inline pid_t task_pgrp_vnr(struct task_struct *tsk)
12887af57294SPavel Emelyanov {
128952ee2dfdSOleg Nesterov 	return __task_pid_nr_ns(tsk, PIDTYPE_PGID, NULL);
12907af57294SPavel Emelyanov }
12917af57294SPavel Emelyanov 
12927af57294SPavel Emelyanov 
12935eca1c10SIngo Molnar static inline pid_t task_session_nr_ns(struct task_struct *tsk, struct pid_namespace *ns)
12947af57294SPavel Emelyanov {
129552ee2dfdSOleg Nesterov 	return __task_pid_nr_ns(tsk, PIDTYPE_SID, ns);
12967af57294SPavel Emelyanov }
12977af57294SPavel Emelyanov 
12987af57294SPavel Emelyanov static inline pid_t task_session_vnr(struct task_struct *tsk)
12997af57294SPavel Emelyanov {
130052ee2dfdSOleg Nesterov 	return __task_pid_nr_ns(tsk, PIDTYPE_SID, NULL);
13017af57294SPavel Emelyanov }
13027af57294SPavel Emelyanov 
1303dd1c1f2fSOleg Nesterov static inline pid_t task_tgid_nr_ns(struct task_struct *tsk, struct pid_namespace *ns)
1304dd1c1f2fSOleg Nesterov {
13056883f81aSEric W. Biederman 	return __task_pid_nr_ns(tsk, PIDTYPE_TGID, ns);
1306dd1c1f2fSOleg Nesterov }
1307dd1c1f2fSOleg Nesterov 
1308dd1c1f2fSOleg Nesterov static inline pid_t task_tgid_vnr(struct task_struct *tsk)
1309dd1c1f2fSOleg Nesterov {
13106883f81aSEric W. Biederman 	return __task_pid_nr_ns(tsk, PIDTYPE_TGID, NULL);
1311dd1c1f2fSOleg Nesterov }
1312dd1c1f2fSOleg Nesterov 
1313dd1c1f2fSOleg Nesterov static inline pid_t task_ppid_nr_ns(const struct task_struct *tsk, struct pid_namespace *ns)
1314dd1c1f2fSOleg Nesterov {
1315dd1c1f2fSOleg Nesterov 	pid_t pid = 0;
1316dd1c1f2fSOleg Nesterov 
1317dd1c1f2fSOleg Nesterov 	rcu_read_lock();
1318dd1c1f2fSOleg Nesterov 	if (pid_alive(tsk))
1319dd1c1f2fSOleg Nesterov 		pid = task_tgid_nr_ns(rcu_dereference(tsk->real_parent), ns);
1320dd1c1f2fSOleg Nesterov 	rcu_read_unlock();
1321dd1c1f2fSOleg Nesterov 
1322dd1c1f2fSOleg Nesterov 	return pid;
1323dd1c1f2fSOleg Nesterov }
1324dd1c1f2fSOleg Nesterov 
1325dd1c1f2fSOleg Nesterov static inline pid_t task_ppid_nr(const struct task_struct *tsk)
1326dd1c1f2fSOleg Nesterov {
1327dd1c1f2fSOleg Nesterov 	return task_ppid_nr_ns(tsk, &init_pid_ns);
1328dd1c1f2fSOleg Nesterov }
1329dd1c1f2fSOleg Nesterov 
13305eca1c10SIngo Molnar /* Obsolete, do not use: */
13311b0f7ffdSOleg Nesterov static inline pid_t task_pgrp_nr(struct task_struct *tsk)
13321b0f7ffdSOleg Nesterov {
13331b0f7ffdSOleg Nesterov 	return task_pgrp_nr_ns(tsk, &init_pid_ns);
13341b0f7ffdSOleg Nesterov }
13357af57294SPavel Emelyanov 
133606eb6184SPeter Zijlstra #define TASK_REPORT_IDLE	(TASK_REPORT + 1)
133706eb6184SPeter Zijlstra #define TASK_REPORT_MAX		(TASK_REPORT_IDLE << 1)
133806eb6184SPeter Zijlstra 
13391d48b080SPeter Zijlstra static inline unsigned int task_state_index(struct task_struct *tsk)
134020435d84SXie XiuQi {
13411593baabSPeter Zijlstra 	unsigned int tsk_state = READ_ONCE(tsk->state);
13421593baabSPeter Zijlstra 	unsigned int state = (tsk_state | tsk->exit_state) & TASK_REPORT;
134320435d84SXie XiuQi 
134406eb6184SPeter Zijlstra 	BUILD_BUG_ON_NOT_POWER_OF_2(TASK_REPORT_MAX);
134506eb6184SPeter Zijlstra 
134606eb6184SPeter Zijlstra 	if (tsk_state == TASK_IDLE)
134706eb6184SPeter Zijlstra 		state = TASK_REPORT_IDLE;
134806eb6184SPeter Zijlstra 
13491593baabSPeter Zijlstra 	return fls(state);
13501593baabSPeter Zijlstra }
135120435d84SXie XiuQi 
13521d48b080SPeter Zijlstra static inline char task_index_to_char(unsigned int state)
13531593baabSPeter Zijlstra {
13548ef9925bSPeter Zijlstra 	static const char state_char[] = "RSDTtXZPI";
13551593baabSPeter Zijlstra 
135606eb6184SPeter Zijlstra 	BUILD_BUG_ON(1 + ilog2(TASK_REPORT_MAX) != sizeof(state_char) - 1);
13571593baabSPeter Zijlstra 
13581593baabSPeter Zijlstra 	return state_char[state];
13591593baabSPeter Zijlstra }
13601593baabSPeter Zijlstra 
13611593baabSPeter Zijlstra static inline char task_state_to_char(struct task_struct *tsk)
13621593baabSPeter Zijlstra {
13631d48b080SPeter Zijlstra 	return task_index_to_char(task_state_index(tsk));
136420435d84SXie XiuQi }
136520435d84SXie XiuQi 
13661da177e4SLinus Torvalds /**
1367570f5241SSergey Senozhatsky  * is_global_init - check if a task structure is init. Since init
1368570f5241SSergey Senozhatsky  * is free to have sub-threads we need to check tgid.
13693260259fSHenne  * @tsk: Task structure to be checked.
13703260259fSHenne  *
13713260259fSHenne  * Check if a task structure is the first user space task the kernel created.
1372e69f6186SYacine Belkadi  *
1373e69f6186SYacine Belkadi  * Return: 1 if the task structure is init. 0 otherwise.
1374f400e198SSukadev Bhattiprolu  */
1375e868171aSAlexey Dobriyan static inline int is_global_init(struct task_struct *tsk)
1376b461cc03SPavel Emelyanov {
1377570f5241SSergey Senozhatsky 	return task_tgid_nr(tsk) == 1;
1378b461cc03SPavel Emelyanov }
1379b460cbc5SSerge E. Hallyn 
13809ec52099SCedric Le Goater extern struct pid *cad_pid;
13819ec52099SCedric Le Goater 
13821da177e4SLinus Torvalds /*
13831da177e4SLinus Torvalds  * Per process flags
13841da177e4SLinus Torvalds  */
1385c1de45caSPeter Zijlstra #define PF_IDLE			0x00000002	/* I am an IDLE thread */
13865eca1c10SIngo Molnar #define PF_EXITING		0x00000004	/* Getting shut down */
13875eca1c10SIngo Molnar #define PF_EXITPIDONE		0x00000008	/* PI exit done on shut down */
138894886b84SLaurent Vivier #define PF_VCPU			0x00000010	/* I'm a virtual CPU */
138921aa9af0STejun Heo #define PF_WQ_WORKER		0x00000020	/* I'm a workqueue worker */
13905eca1c10SIngo Molnar #define PF_FORKNOEXEC		0x00000040	/* Forked but didn't exec */
13915eca1c10SIngo Molnar #define PF_MCE_PROCESS		0x00000080      /* Process policy on mce errors */
13925eca1c10SIngo Molnar #define PF_SUPERPRIV		0x00000100	/* Used super-user privileges */
13935eca1c10SIngo Molnar #define PF_DUMPCORE		0x00000200	/* Dumped core */
13945eca1c10SIngo Molnar #define PF_SIGNALED		0x00000400	/* Killed by a signal */
13951da177e4SLinus Torvalds #define PF_MEMALLOC		0x00000800	/* Allocating memory */
13965eca1c10SIngo Molnar #define PF_NPROC_EXCEEDED	0x00001000	/* set_user() noticed that RLIMIT_NPROC was exceeded */
13975eca1c10SIngo Molnar #define PF_USED_MATH		0x00002000	/* If unset the fpu must be initialized before use */
13985eca1c10SIngo Molnar #define PF_USED_ASYNC		0x00004000	/* Used async_schedule*(), used by module init */
13995eca1c10SIngo Molnar #define PF_NOFREEZE		0x00008000	/* This thread should not be frozen */
14005eca1c10SIngo Molnar #define PF_FROZEN		0x00010000	/* Frozen for system suspend */
14017dea19f9SMichal Hocko #define PF_KSWAPD		0x00020000	/* I am kswapd */
14027dea19f9SMichal Hocko #define PF_MEMALLOC_NOFS	0x00040000	/* All allocation requests will inherit GFP_NOFS */
14037dea19f9SMichal Hocko #define PF_MEMALLOC_NOIO	0x00080000	/* All allocation requests will inherit GFP_NOIO */
14041da177e4SLinus Torvalds #define PF_LESS_THROTTLE	0x00100000	/* Throttle me less: I clean memory */
1405246bb0b1SOleg Nesterov #define PF_KTHREAD		0x00200000	/* I am a kernel thread */
14065eca1c10SIngo Molnar #define PF_RANDOMIZE		0x00400000	/* Randomize virtual address space */
1407b31dc66aSJens Axboe #define PF_SWAPWRITE		0x00800000	/* Allowed to write to swap */
1408eb414681SJohannes Weiner #define PF_MEMSTALL		0x01000000	/* Stalled due to lack of memory */
140914a40ffcSTejun Heo #define PF_NO_SETAFFINITY	0x04000000	/* Userland is not allowed to meddle with cpus_allowed */
14104db96cf0SAndi Kleen #define PF_MCE_EARLY		0x08000000      /* Early kill for mce process policy */
141161a87122SThomas Gleixner #define PF_MUTEX_TESTER		0x20000000	/* Thread belongs to the rt mutex tester */
141258a69cb4STejun Heo #define PF_FREEZER_SKIP		0x40000000	/* Freezer should not count it as freezable */
14135eca1c10SIngo Molnar #define PF_SUSPEND_TASK		0x80000000      /* This thread called freeze_processes() and should not be frozen */
14141da177e4SLinus Torvalds 
14151da177e4SLinus Torvalds /*
14161da177e4SLinus Torvalds  * Only the _current_ task can read/write to tsk->flags, but other
14171da177e4SLinus Torvalds  * tasks can access tsk->flags in readonly mode for example
14181da177e4SLinus Torvalds  * with tsk_used_math (like during threaded core dumping).
14191da177e4SLinus Torvalds  * There is however an exception to this rule during ptrace
14201da177e4SLinus Torvalds  * or during fork: the ptracer task is allowed to write to the
14211da177e4SLinus Torvalds  * child->flags of its traced child (same goes for fork, the parent
14221da177e4SLinus Torvalds  * can write to the child->flags), because we're guaranteed the
14231da177e4SLinus Torvalds  * child is not running and in turn not changing child->flags
14241da177e4SLinus Torvalds  * at the same time the parent does it.
14251da177e4SLinus Torvalds  */
14261da177e4SLinus Torvalds #define clear_stopped_child_used_math(child)	do { (child)->flags &= ~PF_USED_MATH; } while (0)
14271da177e4SLinus Torvalds #define set_stopped_child_used_math(child)	do { (child)->flags |= PF_USED_MATH; } while (0)
14281da177e4SLinus Torvalds #define clear_used_math()			clear_stopped_child_used_math(current)
14291da177e4SLinus Torvalds #define set_used_math()				set_stopped_child_used_math(current)
14305eca1c10SIngo Molnar 
14311da177e4SLinus Torvalds #define conditional_stopped_child_used_math(condition, child) \
14321da177e4SLinus Torvalds 	do { (child)->flags &= ~PF_USED_MATH, (child)->flags |= (condition) ? PF_USED_MATH : 0; } while (0)
14335eca1c10SIngo Molnar 
14345eca1c10SIngo Molnar #define conditional_used_math(condition)	conditional_stopped_child_used_math(condition, current)
14355eca1c10SIngo Molnar 
14361da177e4SLinus Torvalds #define copy_to_stopped_child_used_math(child) \
14371da177e4SLinus Torvalds 	do { (child)->flags &= ~PF_USED_MATH, (child)->flags |= current->flags & PF_USED_MATH; } while (0)
14385eca1c10SIngo Molnar 
14391da177e4SLinus Torvalds /* NOTE: this will return 0 or PF_USED_MATH, it will never return 1 */
14401da177e4SLinus Torvalds #define tsk_used_math(p)			((p)->flags & PF_USED_MATH)
14411da177e4SLinus Torvalds #define used_math()				tsk_used_math(current)
14421da177e4SLinus Torvalds 
144362ec05ddSThomas Gleixner static inline bool is_percpu_thread(void)
144462ec05ddSThomas Gleixner {
144562ec05ddSThomas Gleixner #ifdef CONFIG_SMP
144662ec05ddSThomas Gleixner 	return (current->flags & PF_NO_SETAFFINITY) &&
144762ec05ddSThomas Gleixner 		(current->nr_cpus_allowed  == 1);
144862ec05ddSThomas Gleixner #else
144962ec05ddSThomas Gleixner 	return true;
145062ec05ddSThomas Gleixner #endif
145162ec05ddSThomas Gleixner }
145262ec05ddSThomas Gleixner 
14531d4457f9SKees Cook /* Per-process atomic flags. */
1454a2b86f77SZefan Li #define PFA_NO_NEW_PRIVS		0	/* May not gain new privileges. */
14552ad654bcSZefan Li #define PFA_SPREAD_PAGE			1	/* Spread page cache over cpuset */
14562ad654bcSZefan Li #define PFA_SPREAD_SLAB			2	/* Spread some slab caches over cpuset */
1457356e4bffSThomas Gleixner #define PFA_SPEC_SSB_DISABLE		3	/* Speculative Store Bypass disabled */
1458356e4bffSThomas Gleixner #define PFA_SPEC_SSB_FORCE_DISABLE	4	/* Speculative Store Bypass force disabled*/
14599137bb27SThomas Gleixner #define PFA_SPEC_IB_DISABLE		5	/* Indirect branch speculation restricted */
14609137bb27SThomas Gleixner #define PFA_SPEC_IB_FORCE_DISABLE	6	/* Indirect branch speculation permanently restricted */
14611d4457f9SKees Cook 
1462e0e5070bSZefan Li #define TASK_PFA_TEST(name, func)					\
1463e0e5070bSZefan Li 	static inline bool task_##func(struct task_struct *p)		\
1464e0e5070bSZefan Li 	{ return test_bit(PFA_##name, &p->atomic_flags); }
14655eca1c10SIngo Molnar 
1466e0e5070bSZefan Li #define TASK_PFA_SET(name, func)					\
1467e0e5070bSZefan Li 	static inline void task_set_##func(struct task_struct *p)	\
1468e0e5070bSZefan Li 	{ set_bit(PFA_##name, &p->atomic_flags); }
14695eca1c10SIngo Molnar 
1470e0e5070bSZefan Li #define TASK_PFA_CLEAR(name, func)					\
1471e0e5070bSZefan Li 	static inline void task_clear_##func(struct task_struct *p)	\
1472e0e5070bSZefan Li 	{ clear_bit(PFA_##name, &p->atomic_flags); }
14731d4457f9SKees Cook 
1474e0e5070bSZefan Li TASK_PFA_TEST(NO_NEW_PRIVS, no_new_privs)
1475e0e5070bSZefan Li TASK_PFA_SET(NO_NEW_PRIVS, no_new_privs)
14761d4457f9SKees Cook 
14772ad654bcSZefan Li TASK_PFA_TEST(SPREAD_PAGE, spread_page)
14782ad654bcSZefan Li TASK_PFA_SET(SPREAD_PAGE, spread_page)
14792ad654bcSZefan Li TASK_PFA_CLEAR(SPREAD_PAGE, spread_page)
14802ad654bcSZefan Li 
14812ad654bcSZefan Li TASK_PFA_TEST(SPREAD_SLAB, spread_slab)
14822ad654bcSZefan Li TASK_PFA_SET(SPREAD_SLAB, spread_slab)
14832ad654bcSZefan Li TASK_PFA_CLEAR(SPREAD_SLAB, spread_slab)
1484544b2c91STejun Heo 
1485356e4bffSThomas Gleixner TASK_PFA_TEST(SPEC_SSB_DISABLE, spec_ssb_disable)
1486356e4bffSThomas Gleixner TASK_PFA_SET(SPEC_SSB_DISABLE, spec_ssb_disable)
1487356e4bffSThomas Gleixner TASK_PFA_CLEAR(SPEC_SSB_DISABLE, spec_ssb_disable)
1488356e4bffSThomas Gleixner 
1489356e4bffSThomas Gleixner TASK_PFA_TEST(SPEC_SSB_FORCE_DISABLE, spec_ssb_force_disable)
1490356e4bffSThomas Gleixner TASK_PFA_SET(SPEC_SSB_FORCE_DISABLE, spec_ssb_force_disable)
1491356e4bffSThomas Gleixner 
14929137bb27SThomas Gleixner TASK_PFA_TEST(SPEC_IB_DISABLE, spec_ib_disable)
14939137bb27SThomas Gleixner TASK_PFA_SET(SPEC_IB_DISABLE, spec_ib_disable)
14949137bb27SThomas Gleixner TASK_PFA_CLEAR(SPEC_IB_DISABLE, spec_ib_disable)
14959137bb27SThomas Gleixner 
14969137bb27SThomas Gleixner TASK_PFA_TEST(SPEC_IB_FORCE_DISABLE, spec_ib_force_disable)
14979137bb27SThomas Gleixner TASK_PFA_SET(SPEC_IB_FORCE_DISABLE, spec_ib_force_disable)
14989137bb27SThomas Gleixner 
14995eca1c10SIngo Molnar static inline void
1500717a94b5SNeilBrown current_restore_flags(unsigned long orig_flags, unsigned long flags)
1501907aed48SMel Gorman {
1502717a94b5SNeilBrown 	current->flags &= ~flags;
1503717a94b5SNeilBrown 	current->flags |= orig_flags & flags;
1504907aed48SMel Gorman }
1505907aed48SMel Gorman 
15065eca1c10SIngo Molnar extern int cpuset_cpumask_can_shrink(const struct cpumask *cur, const struct cpumask *trial);
15075eca1c10SIngo Molnar extern int task_can_attach(struct task_struct *p, const struct cpumask *cs_cpus_allowed);
15081da177e4SLinus Torvalds #ifdef CONFIG_SMP
15095eca1c10SIngo Molnar extern void do_set_cpus_allowed(struct task_struct *p, const struct cpumask *new_mask);
15105eca1c10SIngo Molnar extern int set_cpus_allowed_ptr(struct task_struct *p, const struct cpumask *new_mask);
15111da177e4SLinus Torvalds #else
15125eca1c10SIngo Molnar static inline void do_set_cpus_allowed(struct task_struct *p, const struct cpumask *new_mask)
15131e1b6c51SKOSAKI Motohiro {
15141e1b6c51SKOSAKI Motohiro }
15155eca1c10SIngo Molnar static inline int set_cpus_allowed_ptr(struct task_struct *p, const struct cpumask *new_mask)
15161da177e4SLinus Torvalds {
151796f874e2SRusty Russell 	if (!cpumask_test_cpu(0, new_mask))
15181da177e4SLinus Torvalds 		return -EINVAL;
15191da177e4SLinus Torvalds 	return 0;
15201da177e4SLinus Torvalds }
15211da177e4SLinus Torvalds #endif
1522e0ad9556SRusty Russell 
15236d0d2878SChristian Borntraeger #ifndef cpu_relax_yield
15246d0d2878SChristian Borntraeger #define cpu_relax_yield() cpu_relax()
15256d0d2878SChristian Borntraeger #endif
15266d0d2878SChristian Borntraeger 
1527fa93384fSDan Carpenter extern int yield_to(struct task_struct *p, bool preempt);
152836c8b586SIngo Molnar extern void set_user_nice(struct task_struct *p, long nice);
152936c8b586SIngo Molnar extern int task_prio(const struct task_struct *p);
15305eca1c10SIngo Molnar 
1531d0ea0268SDongsheng Yang /**
1532d0ea0268SDongsheng Yang  * task_nice - return the nice value of a given task.
1533d0ea0268SDongsheng Yang  * @p: the task in question.
1534d0ea0268SDongsheng Yang  *
1535d0ea0268SDongsheng Yang  * Return: The nice value [ -20 ... 0 ... 19 ].
1536d0ea0268SDongsheng Yang  */
1537d0ea0268SDongsheng Yang static inline int task_nice(const struct task_struct *p)
1538d0ea0268SDongsheng Yang {
1539d0ea0268SDongsheng Yang 	return PRIO_TO_NICE((p)->static_prio);
1540d0ea0268SDongsheng Yang }
15415eca1c10SIngo Molnar 
154236c8b586SIngo Molnar extern int can_nice(const struct task_struct *p, const int nice);
154336c8b586SIngo Molnar extern int task_curr(const struct task_struct *p);
15441da177e4SLinus Torvalds extern int idle_cpu(int cpu);
1545943d355dSRohit Jain extern int available_idle_cpu(int cpu);
15465eca1c10SIngo Molnar extern int sched_setscheduler(struct task_struct *, int, const struct sched_param *);
15475eca1c10SIngo Molnar extern int sched_setscheduler_nocheck(struct task_struct *, int, const struct sched_param *);
15485eca1c10SIngo Molnar extern int sched_setattr(struct task_struct *, const struct sched_attr *);
1549794a56ebSJuri Lelli extern int sched_setattr_nocheck(struct task_struct *, const struct sched_attr *);
155036c8b586SIngo Molnar extern struct task_struct *idle_task(int cpu);
15515eca1c10SIngo Molnar 
1552c4f30608SPaul E. McKenney /**
1553c4f30608SPaul E. McKenney  * is_idle_task - is the specified task an idle task?
1554fa757281SRandy Dunlap  * @p: the task in question.
1555e69f6186SYacine Belkadi  *
1556e69f6186SYacine Belkadi  * Return: 1 if @p is an idle task. 0 otherwise.
1557c4f30608SPaul E. McKenney  */
15587061ca3bSPaul E. McKenney static inline bool is_idle_task(const struct task_struct *p)
1559c4f30608SPaul E. McKenney {
1560c1de45caSPeter Zijlstra 	return !!(p->flags & PF_IDLE);
1561c4f30608SPaul E. McKenney }
15625eca1c10SIngo Molnar 
156336c8b586SIngo Molnar extern struct task_struct *curr_task(int cpu);
1564a458ae2eSPeter Zijlstra extern void ia64_set_curr_task(int cpu, struct task_struct *p);
15651da177e4SLinus Torvalds 
15661da177e4SLinus Torvalds void yield(void);
15671da177e4SLinus Torvalds 
15681da177e4SLinus Torvalds union thread_union {
15690500871fSDavid Howells #ifndef CONFIG_ARCH_TASK_STRUCT_ON_STACK
15700500871fSDavid Howells 	struct task_struct task;
15710500871fSDavid Howells #endif
1572c65eacbeSAndy Lutomirski #ifndef CONFIG_THREAD_INFO_IN_TASK
15731da177e4SLinus Torvalds 	struct thread_info thread_info;
1574c65eacbeSAndy Lutomirski #endif
15751da177e4SLinus Torvalds 	unsigned long stack[THREAD_SIZE/sizeof(long)];
15761da177e4SLinus Torvalds };
15771da177e4SLinus Torvalds 
15780500871fSDavid Howells #ifndef CONFIG_THREAD_INFO_IN_TASK
15790500871fSDavid Howells extern struct thread_info init_thread_info;
15800500871fSDavid Howells #endif
15810500871fSDavid Howells 
15820500871fSDavid Howells extern unsigned long init_stack[THREAD_SIZE / sizeof(unsigned long)];
15830500871fSDavid Howells 
1584f3ac6067SIngo Molnar #ifdef CONFIG_THREAD_INFO_IN_TASK
1585f3ac6067SIngo Molnar static inline struct thread_info *task_thread_info(struct task_struct *task)
1586f3ac6067SIngo Molnar {
1587f3ac6067SIngo Molnar 	return &task->thread_info;
1588f3ac6067SIngo Molnar }
1589f3ac6067SIngo Molnar #elif !defined(__HAVE_THREAD_FUNCTIONS)
1590f3ac6067SIngo Molnar # define task_thread_info(task)	((struct thread_info *)(task)->stack)
1591f3ac6067SIngo Molnar #endif
1592f3ac6067SIngo Molnar 
1593198fe21bSPavel Emelyanov /*
1594198fe21bSPavel Emelyanov  * find a task by one of its numerical ids
1595198fe21bSPavel Emelyanov  *
1596198fe21bSPavel Emelyanov  * find_task_by_pid_ns():
1597198fe21bSPavel Emelyanov  *      finds a task by its pid in the specified namespace
1598228ebcbeSPavel Emelyanov  * find_task_by_vpid():
1599228ebcbeSPavel Emelyanov  *      finds a task by its virtual pid
1600198fe21bSPavel Emelyanov  *
1601e49859e7SPavel Emelyanov  * see also find_vpid() etc in include/linux/pid.h
1602198fe21bSPavel Emelyanov  */
1603198fe21bSPavel Emelyanov 
1604228ebcbeSPavel Emelyanov extern struct task_struct *find_task_by_vpid(pid_t nr);
16055eca1c10SIngo Molnar extern struct task_struct *find_task_by_pid_ns(pid_t nr, struct pid_namespace *ns);
1606198fe21bSPavel Emelyanov 
16072ee08260SMike Rapoport /*
16082ee08260SMike Rapoport  * find a task by its virtual pid and get the task struct
16092ee08260SMike Rapoport  */
16102ee08260SMike Rapoport extern struct task_struct *find_get_task_by_vpid(pid_t nr);
16112ee08260SMike Rapoport 
1612b3c97528SHarvey Harrison extern int wake_up_state(struct task_struct *tsk, unsigned int state);
1613b3c97528SHarvey Harrison extern int wake_up_process(struct task_struct *tsk);
16143e51e3edSSamir Bellabes extern void wake_up_new_task(struct task_struct *tsk);
16155eca1c10SIngo Molnar 
16161da177e4SLinus Torvalds #ifdef CONFIG_SMP
16171da177e4SLinus Torvalds extern void kick_process(struct task_struct *tsk);
16181da177e4SLinus Torvalds #else
16191da177e4SLinus Torvalds static inline void kick_process(struct task_struct *tsk) { }
16201da177e4SLinus Torvalds #endif
16211da177e4SLinus Torvalds 
162282b89778SAdrian Hunter extern void __set_task_comm(struct task_struct *tsk, const char *from, bool exec);
16235eca1c10SIngo Molnar 
162482b89778SAdrian Hunter static inline void set_task_comm(struct task_struct *tsk, const char *from)
162582b89778SAdrian Hunter {
162682b89778SAdrian Hunter 	__set_task_comm(tsk, from, false);
162782b89778SAdrian Hunter }
16285eca1c10SIngo Molnar 
16293756f640SArnd Bergmann extern char *__get_task_comm(char *to, size_t len, struct task_struct *tsk);
16303756f640SArnd Bergmann #define get_task_comm(buf, tsk) ({			\
16313756f640SArnd Bergmann 	BUILD_BUG_ON(sizeof(buf) != TASK_COMM_LEN);	\
16323756f640SArnd Bergmann 	__get_task_comm(buf, sizeof(buf), tsk);		\
16333756f640SArnd Bergmann })
16341da177e4SLinus Torvalds 
16351da177e4SLinus Torvalds #ifdef CONFIG_SMP
1636317f3941SPeter Zijlstra void scheduler_ipi(void);
163785ba2d86SRoland McGrath extern unsigned long wait_task_inactive(struct task_struct *, long match_state);
16381da177e4SLinus Torvalds #else
1639184748ccSPeter Zijlstra static inline void scheduler_ipi(void) { }
16405eca1c10SIngo Molnar static inline unsigned long wait_task_inactive(struct task_struct *p, long match_state)
164185ba2d86SRoland McGrath {
164285ba2d86SRoland McGrath 	return 1;
164385ba2d86SRoland McGrath }
16441da177e4SLinus Torvalds #endif
16451da177e4SLinus Torvalds 
16465eca1c10SIngo Molnar /*
16475eca1c10SIngo Molnar  * Set thread flags in other task's structures.
16485eca1c10SIngo Molnar  * See asm/thread_info.h for TIF_xxxx flags available:
16491da177e4SLinus Torvalds  */
16501da177e4SLinus Torvalds static inline void set_tsk_thread_flag(struct task_struct *tsk, int flag)
16511da177e4SLinus Torvalds {
1652a1261f54SAl Viro 	set_ti_thread_flag(task_thread_info(tsk), flag);
16531da177e4SLinus Torvalds }
16541da177e4SLinus Torvalds 
16551da177e4SLinus Torvalds static inline void clear_tsk_thread_flag(struct task_struct *tsk, int flag)
16561da177e4SLinus Torvalds {
1657a1261f54SAl Viro 	clear_ti_thread_flag(task_thread_info(tsk), flag);
16581da177e4SLinus Torvalds }
16591da177e4SLinus Torvalds 
166093ee37c2SDave Martin static inline void update_tsk_thread_flag(struct task_struct *tsk, int flag,
166193ee37c2SDave Martin 					  bool value)
166293ee37c2SDave Martin {
166393ee37c2SDave Martin 	update_ti_thread_flag(task_thread_info(tsk), flag, value);
166493ee37c2SDave Martin }
166593ee37c2SDave Martin 
16661da177e4SLinus Torvalds static inline int test_and_set_tsk_thread_flag(struct task_struct *tsk, int flag)
16671da177e4SLinus Torvalds {
1668a1261f54SAl Viro 	return test_and_set_ti_thread_flag(task_thread_info(tsk), flag);
16691da177e4SLinus Torvalds }
16701da177e4SLinus Torvalds 
16711da177e4SLinus Torvalds static inline int test_and_clear_tsk_thread_flag(struct task_struct *tsk, int flag)
16721da177e4SLinus Torvalds {
1673a1261f54SAl Viro 	return test_and_clear_ti_thread_flag(task_thread_info(tsk), flag);
16741da177e4SLinus Torvalds }
16751da177e4SLinus Torvalds 
16761da177e4SLinus Torvalds static inline int test_tsk_thread_flag(struct task_struct *tsk, int flag)
16771da177e4SLinus Torvalds {
1678a1261f54SAl Viro 	return test_ti_thread_flag(task_thread_info(tsk), flag);
16791da177e4SLinus Torvalds }
16801da177e4SLinus Torvalds 
16811da177e4SLinus Torvalds static inline void set_tsk_need_resched(struct task_struct *tsk)
16821da177e4SLinus Torvalds {
16831da177e4SLinus Torvalds 	set_tsk_thread_flag(tsk,TIF_NEED_RESCHED);
16841da177e4SLinus Torvalds }
16851da177e4SLinus Torvalds 
16861da177e4SLinus Torvalds static inline void clear_tsk_need_resched(struct task_struct *tsk)
16871da177e4SLinus Torvalds {
16881da177e4SLinus Torvalds 	clear_tsk_thread_flag(tsk,TIF_NEED_RESCHED);
16891da177e4SLinus Torvalds }
16901da177e4SLinus Torvalds 
16918ae121acSGregory Haskins static inline int test_tsk_need_resched(struct task_struct *tsk)
16928ae121acSGregory Haskins {
16938ae121acSGregory Haskins 	return unlikely(test_tsk_thread_flag(tsk,TIF_NEED_RESCHED));
16948ae121acSGregory Haskins }
16958ae121acSGregory Haskins 
16961da177e4SLinus Torvalds /*
16971da177e4SLinus Torvalds  * cond_resched() and cond_resched_lock(): latency reduction via
16981da177e4SLinus Torvalds  * explicit rescheduling in places that are safe. The return
16991da177e4SLinus Torvalds  * value indicates whether a reschedule was done in fact.
17001da177e4SLinus Torvalds  * cond_resched_lock() will drop the spinlock before scheduling,
17011da177e4SLinus Torvalds  */
170235a773a0SPeter Zijlstra #ifndef CONFIG_PREEMPT
1703c3921ab7SLinus Torvalds extern int _cond_resched(void);
170435a773a0SPeter Zijlstra #else
170535a773a0SPeter Zijlstra static inline int _cond_resched(void) { return 0; }
170635a773a0SPeter Zijlstra #endif
17076f80bd98SFrederic Weisbecker 
1708613afbf8SFrederic Weisbecker #define cond_resched() ({			\
17093427445aSPeter Zijlstra 	___might_sleep(__FILE__, __LINE__, 0);	\
1710613afbf8SFrederic Weisbecker 	_cond_resched();			\
1711613afbf8SFrederic Weisbecker })
17126f80bd98SFrederic Weisbecker 
1713613afbf8SFrederic Weisbecker extern int __cond_resched_lock(spinlock_t *lock);
1714613afbf8SFrederic Weisbecker 
1715613afbf8SFrederic Weisbecker #define cond_resched_lock(lock) ({				\
17163427445aSPeter Zijlstra 	___might_sleep(__FILE__, __LINE__, PREEMPT_LOCK_OFFSET);\
1717613afbf8SFrederic Weisbecker 	__cond_resched_lock(lock);				\
1718613afbf8SFrederic Weisbecker })
1719613afbf8SFrederic Weisbecker 
1720f6f3c437SSimon Horman static inline void cond_resched_rcu(void)
1721f6f3c437SSimon Horman {
1722f6f3c437SSimon Horman #if defined(CONFIG_DEBUG_ATOMIC_SLEEP) || !defined(CONFIG_PREEMPT_RCU)
1723f6f3c437SSimon Horman 	rcu_read_unlock();
1724f6f3c437SSimon Horman 	cond_resched();
1725f6f3c437SSimon Horman 	rcu_read_lock();
1726f6f3c437SSimon Horman #endif
1727f6f3c437SSimon Horman }
1728f6f3c437SSimon Horman 
17291da177e4SLinus Torvalds /*
17301da177e4SLinus Torvalds  * Does a critical section need to be broken due to another
173195c354feSNick Piggin  * task waiting?: (technically does not depend on CONFIG_PREEMPT,
173295c354feSNick Piggin  * but a general need for low latency)
17331da177e4SLinus Torvalds  */
173495c354feSNick Piggin static inline int spin_needbreak(spinlock_t *lock)
17351da177e4SLinus Torvalds {
173695c354feSNick Piggin #ifdef CONFIG_PREEMPT
173795c354feSNick Piggin 	return spin_is_contended(lock);
173895c354feSNick Piggin #else
17391da177e4SLinus Torvalds 	return 0;
174095c354feSNick Piggin #endif
17411da177e4SLinus Torvalds }
17421da177e4SLinus Torvalds 
174375f93fedSPeter Zijlstra static __always_inline bool need_resched(void)
174475f93fedSPeter Zijlstra {
174575f93fedSPeter Zijlstra 	return unlikely(tif_need_resched());
174675f93fedSPeter Zijlstra }
174775f93fedSPeter Zijlstra 
1748ee761f62SThomas Gleixner /*
17491da177e4SLinus Torvalds  * Wrappers for p->thread_info->cpu access. No-op on UP.
17501da177e4SLinus Torvalds  */
17511da177e4SLinus Torvalds #ifdef CONFIG_SMP
17521da177e4SLinus Torvalds 
17531da177e4SLinus Torvalds static inline unsigned int task_cpu(const struct task_struct *p)
17541da177e4SLinus Torvalds {
1755c65eacbeSAndy Lutomirski #ifdef CONFIG_THREAD_INFO_IN_TASK
1756c65eacbeSAndy Lutomirski 	return p->cpu;
1757c65eacbeSAndy Lutomirski #else
1758a1261f54SAl Viro 	return task_thread_info(p)->cpu;
1759c65eacbeSAndy Lutomirski #endif
17601da177e4SLinus Torvalds }
17611da177e4SLinus Torvalds 
1762c65cc870SIngo Molnar extern void set_task_cpu(struct task_struct *p, unsigned int cpu);
17631da177e4SLinus Torvalds 
17641da177e4SLinus Torvalds #else
17651da177e4SLinus Torvalds 
17661da177e4SLinus Torvalds static inline unsigned int task_cpu(const struct task_struct *p)
17671da177e4SLinus Torvalds {
17681da177e4SLinus Torvalds 	return 0;
17691da177e4SLinus Torvalds }
17701da177e4SLinus Torvalds 
17711da177e4SLinus Torvalds static inline void set_task_cpu(struct task_struct *p, unsigned int cpu)
17721da177e4SLinus Torvalds {
17731da177e4SLinus Torvalds }
17741da177e4SLinus Torvalds 
17751da177e4SLinus Torvalds #endif /* CONFIG_SMP */
17761da177e4SLinus Torvalds 
1777d9345c65SPan Xinhui /*
1778d9345c65SPan Xinhui  * In order to reduce various lock holder preemption latencies provide an
1779d9345c65SPan Xinhui  * interface to see if a vCPU is currently running or not.
1780d9345c65SPan Xinhui  *
1781d9345c65SPan Xinhui  * This allows us to terminate optimistic spin loops and block, analogous to
1782d9345c65SPan Xinhui  * the native optimistic spin heuristic of testing if the lock owner task is
1783d9345c65SPan Xinhui  * running or not.
1784d9345c65SPan Xinhui  */
1785d9345c65SPan Xinhui #ifndef vcpu_is_preempted
1786d9345c65SPan Xinhui # define vcpu_is_preempted(cpu)	false
1787d9345c65SPan Xinhui #endif
1788d9345c65SPan Xinhui 
178996f874e2SRusty Russell extern long sched_setaffinity(pid_t pid, const struct cpumask *new_mask);
179096f874e2SRusty Russell extern long sched_getaffinity(pid_t pid, struct cpumask *mask);
17915c45bf27SSiddha, Suresh B 
179282455257SDave Hansen #ifndef TASK_SIZE_OF
179382455257SDave Hansen #define TASK_SIZE_OF(tsk)	TASK_SIZE
179482455257SDave Hansen #endif
179582455257SDave Hansen 
1796d7822b1eSMathieu Desnoyers #ifdef CONFIG_RSEQ
1797d7822b1eSMathieu Desnoyers 
1798d7822b1eSMathieu Desnoyers /*
1799d7822b1eSMathieu Desnoyers  * Map the event mask on the user-space ABI enum rseq_cs_flags
1800d7822b1eSMathieu Desnoyers  * for direct mask checks.
1801d7822b1eSMathieu Desnoyers  */
1802d7822b1eSMathieu Desnoyers enum rseq_event_mask_bits {
1803d7822b1eSMathieu Desnoyers 	RSEQ_EVENT_PREEMPT_BIT	= RSEQ_CS_FLAG_NO_RESTART_ON_PREEMPT_BIT,
1804d7822b1eSMathieu Desnoyers 	RSEQ_EVENT_SIGNAL_BIT	= RSEQ_CS_FLAG_NO_RESTART_ON_SIGNAL_BIT,
1805d7822b1eSMathieu Desnoyers 	RSEQ_EVENT_MIGRATE_BIT	= RSEQ_CS_FLAG_NO_RESTART_ON_MIGRATE_BIT,
1806d7822b1eSMathieu Desnoyers };
1807d7822b1eSMathieu Desnoyers 
1808d7822b1eSMathieu Desnoyers enum rseq_event_mask {
1809d7822b1eSMathieu Desnoyers 	RSEQ_EVENT_PREEMPT	= (1U << RSEQ_EVENT_PREEMPT_BIT),
1810d7822b1eSMathieu Desnoyers 	RSEQ_EVENT_SIGNAL	= (1U << RSEQ_EVENT_SIGNAL_BIT),
1811d7822b1eSMathieu Desnoyers 	RSEQ_EVENT_MIGRATE	= (1U << RSEQ_EVENT_MIGRATE_BIT),
1812d7822b1eSMathieu Desnoyers };
1813d7822b1eSMathieu Desnoyers 
1814d7822b1eSMathieu Desnoyers static inline void rseq_set_notify_resume(struct task_struct *t)
1815d7822b1eSMathieu Desnoyers {
1816d7822b1eSMathieu Desnoyers 	if (t->rseq)
1817d7822b1eSMathieu Desnoyers 		set_tsk_thread_flag(t, TIF_NOTIFY_RESUME);
1818d7822b1eSMathieu Desnoyers }
1819d7822b1eSMathieu Desnoyers 
1820784e0300SWill Deacon void __rseq_handle_notify_resume(struct ksignal *sig, struct pt_regs *regs);
1821d7822b1eSMathieu Desnoyers 
1822784e0300SWill Deacon static inline void rseq_handle_notify_resume(struct ksignal *ksig,
1823784e0300SWill Deacon 					     struct pt_regs *regs)
1824d7822b1eSMathieu Desnoyers {
1825d7822b1eSMathieu Desnoyers 	if (current->rseq)
1826784e0300SWill Deacon 		__rseq_handle_notify_resume(ksig, regs);
1827d7822b1eSMathieu Desnoyers }
1828d7822b1eSMathieu Desnoyers 
1829784e0300SWill Deacon static inline void rseq_signal_deliver(struct ksignal *ksig,
1830784e0300SWill Deacon 				       struct pt_regs *regs)
1831d7822b1eSMathieu Desnoyers {
1832d7822b1eSMathieu Desnoyers 	preempt_disable();
1833d7822b1eSMathieu Desnoyers 	__set_bit(RSEQ_EVENT_SIGNAL_BIT, &current->rseq_event_mask);
1834d7822b1eSMathieu Desnoyers 	preempt_enable();
1835784e0300SWill Deacon 	rseq_handle_notify_resume(ksig, regs);
1836d7822b1eSMathieu Desnoyers }
1837d7822b1eSMathieu Desnoyers 
1838d7822b1eSMathieu Desnoyers /* rseq_preempt() requires preemption to be disabled. */
1839d7822b1eSMathieu Desnoyers static inline void rseq_preempt(struct task_struct *t)
1840d7822b1eSMathieu Desnoyers {
1841d7822b1eSMathieu Desnoyers 	__set_bit(RSEQ_EVENT_PREEMPT_BIT, &t->rseq_event_mask);
1842d7822b1eSMathieu Desnoyers 	rseq_set_notify_resume(t);
1843d7822b1eSMathieu Desnoyers }
1844d7822b1eSMathieu Desnoyers 
1845d7822b1eSMathieu Desnoyers /* rseq_migrate() requires preemption to be disabled. */
1846d7822b1eSMathieu Desnoyers static inline void rseq_migrate(struct task_struct *t)
1847d7822b1eSMathieu Desnoyers {
1848d7822b1eSMathieu Desnoyers 	__set_bit(RSEQ_EVENT_MIGRATE_BIT, &t->rseq_event_mask);
1849d7822b1eSMathieu Desnoyers 	rseq_set_notify_resume(t);
1850d7822b1eSMathieu Desnoyers }
1851d7822b1eSMathieu Desnoyers 
1852d7822b1eSMathieu Desnoyers /*
1853d7822b1eSMathieu Desnoyers  * If parent process has a registered restartable sequences area, the
18549a789fcfSMathieu Desnoyers  * child inherits. Only applies when forking a process, not a thread.
1855d7822b1eSMathieu Desnoyers  */
1856d7822b1eSMathieu Desnoyers static inline void rseq_fork(struct task_struct *t, unsigned long clone_flags)
1857d7822b1eSMathieu Desnoyers {
1858d7822b1eSMathieu Desnoyers 	if (clone_flags & CLONE_THREAD) {
1859d7822b1eSMathieu Desnoyers 		t->rseq = NULL;
1860d7822b1eSMathieu Desnoyers 		t->rseq_len = 0;
1861d7822b1eSMathieu Desnoyers 		t->rseq_sig = 0;
1862d7822b1eSMathieu Desnoyers 		t->rseq_event_mask = 0;
1863d7822b1eSMathieu Desnoyers 	} else {
1864d7822b1eSMathieu Desnoyers 		t->rseq = current->rseq;
1865d7822b1eSMathieu Desnoyers 		t->rseq_len = current->rseq_len;
1866d7822b1eSMathieu Desnoyers 		t->rseq_sig = current->rseq_sig;
1867d7822b1eSMathieu Desnoyers 		t->rseq_event_mask = current->rseq_event_mask;
1868d7822b1eSMathieu Desnoyers 	}
1869d7822b1eSMathieu Desnoyers }
1870d7822b1eSMathieu Desnoyers 
1871d7822b1eSMathieu Desnoyers static inline void rseq_execve(struct task_struct *t)
1872d7822b1eSMathieu Desnoyers {
1873d7822b1eSMathieu Desnoyers 	t->rseq = NULL;
1874d7822b1eSMathieu Desnoyers 	t->rseq_len = 0;
1875d7822b1eSMathieu Desnoyers 	t->rseq_sig = 0;
1876d7822b1eSMathieu Desnoyers 	t->rseq_event_mask = 0;
1877d7822b1eSMathieu Desnoyers }
1878d7822b1eSMathieu Desnoyers 
1879d7822b1eSMathieu Desnoyers #else
1880d7822b1eSMathieu Desnoyers 
1881d7822b1eSMathieu Desnoyers static inline void rseq_set_notify_resume(struct task_struct *t)
1882d7822b1eSMathieu Desnoyers {
1883d7822b1eSMathieu Desnoyers }
1884784e0300SWill Deacon static inline void rseq_handle_notify_resume(struct ksignal *ksig,
1885784e0300SWill Deacon 					     struct pt_regs *regs)
1886d7822b1eSMathieu Desnoyers {
1887d7822b1eSMathieu Desnoyers }
1888784e0300SWill Deacon static inline void rseq_signal_deliver(struct ksignal *ksig,
1889784e0300SWill Deacon 				       struct pt_regs *regs)
1890d7822b1eSMathieu Desnoyers {
1891d7822b1eSMathieu Desnoyers }
1892d7822b1eSMathieu Desnoyers static inline void rseq_preempt(struct task_struct *t)
1893d7822b1eSMathieu Desnoyers {
1894d7822b1eSMathieu Desnoyers }
1895d7822b1eSMathieu Desnoyers static inline void rseq_migrate(struct task_struct *t)
1896d7822b1eSMathieu Desnoyers {
1897d7822b1eSMathieu Desnoyers }
1898d7822b1eSMathieu Desnoyers static inline void rseq_fork(struct task_struct *t, unsigned long clone_flags)
1899d7822b1eSMathieu Desnoyers {
1900d7822b1eSMathieu Desnoyers }
1901d7822b1eSMathieu Desnoyers static inline void rseq_execve(struct task_struct *t)
1902d7822b1eSMathieu Desnoyers {
1903d7822b1eSMathieu Desnoyers }
1904d7822b1eSMathieu Desnoyers 
1905d7822b1eSMathieu Desnoyers #endif
1906d7822b1eSMathieu Desnoyers 
1907d7822b1eSMathieu Desnoyers #ifdef CONFIG_DEBUG_RSEQ
1908d7822b1eSMathieu Desnoyers 
1909d7822b1eSMathieu Desnoyers void rseq_syscall(struct pt_regs *regs);
1910d7822b1eSMathieu Desnoyers 
1911d7822b1eSMathieu Desnoyers #else
1912d7822b1eSMathieu Desnoyers 
1913d7822b1eSMathieu Desnoyers static inline void rseq_syscall(struct pt_regs *regs)
1914d7822b1eSMathieu Desnoyers {
1915d7822b1eSMathieu Desnoyers }
1916d7822b1eSMathieu Desnoyers 
1917d7822b1eSMathieu Desnoyers #endif
1918d7822b1eSMathieu Desnoyers 
19191da177e4SLinus Torvalds #endif
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