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> 24ec1d2819SElena Reshetova #include <linux/refcount.h> 255eca1c10SIngo Molnar #include <linux/resource.h> 265eca1c10SIngo Molnar #include <linux/latencytop.h> 275eca1c10SIngo Molnar #include <linux/sched/prio.h> 289eacb5c7SThomas Gleixner #include <linux/sched/types.h> 295eca1c10SIngo Molnar #include <linux/signal_types.h> 305eca1c10SIngo Molnar #include <linux/mm_types_task.h> 315eca1c10SIngo Molnar #include <linux/task_io_accounting.h> 322b69942fSThomas Gleixner #include <linux/posix-timers.h> 33d7822b1eSMathieu Desnoyers #include <linux/rseq.h> 34dfd402a4SMarco Elver #include <linux/kcsan.h> 355eca1c10SIngo Molnar 365eca1c10SIngo Molnar /* task_struct member predeclarations (sorted alphabetically): */ 37c7af7877SIngo Molnar struct audit_context; 38c7af7877SIngo Molnar struct backing_dev_info; 39c7af7877SIngo Molnar struct bio_list; 40c7af7877SIngo Molnar struct blk_plug; 413c93a0c0SQais Yousef struct capture_control; 42c7af7877SIngo Molnar struct cfs_rq; 43c7af7877SIngo Molnar struct fs_struct; 44c7af7877SIngo Molnar struct futex_pi_state; 45c7af7877SIngo Molnar struct io_context; 46c7af7877SIngo Molnar struct mempolicy; 47c7af7877SIngo Molnar struct nameidata; 48c7af7877SIngo Molnar struct nsproxy; 49c7af7877SIngo Molnar struct perf_event_context; 50c7af7877SIngo Molnar struct pid_namespace; 51c7af7877SIngo Molnar struct pipe_inode_info; 52c7af7877SIngo Molnar struct rcu_node; 53c7af7877SIngo Molnar struct reclaim_state; 54c7af7877SIngo Molnar struct robust_list_head; 553c93a0c0SQais Yousef struct root_domain; 563c93a0c0SQais Yousef struct rq; 57e2d1e2aeSIngo Molnar struct sched_attr; 58e2d1e2aeSIngo Molnar struct sched_param; 5943ae34cbSIngo Molnar struct seq_file; 60c7af7877SIngo Molnar struct sighand_struct; 61c7af7877SIngo Molnar struct signal_struct; 62c7af7877SIngo Molnar struct task_delay_info; 634cf86d77SIngo Molnar struct task_group; 641da177e4SLinus Torvalds 654a8342d2SLinus Torvalds /* 664a8342d2SLinus Torvalds * Task state bitmask. NOTE! These bits are also 674a8342d2SLinus Torvalds * encoded in fs/proc/array.c: get_task_state(). 684a8342d2SLinus Torvalds * 694a8342d2SLinus Torvalds * We have two separate sets of flags: task->state 704a8342d2SLinus Torvalds * is about runnability, while task->exit_state are 714a8342d2SLinus Torvalds * about the task exiting. Confusing, but this way 724a8342d2SLinus Torvalds * modifying one set can't modify the other one by 734a8342d2SLinus Torvalds * mistake. 744a8342d2SLinus Torvalds */ 755eca1c10SIngo Molnar 765eca1c10SIngo Molnar /* Used in tsk->state: */ 7792c4bc9fSPeter Zijlstra #define TASK_RUNNING 0x0000 7892c4bc9fSPeter Zijlstra #define TASK_INTERRUPTIBLE 0x0001 7992c4bc9fSPeter Zijlstra #define TASK_UNINTERRUPTIBLE 0x0002 8092c4bc9fSPeter Zijlstra #define __TASK_STOPPED 0x0004 8192c4bc9fSPeter Zijlstra #define __TASK_TRACED 0x0008 825eca1c10SIngo Molnar /* Used in tsk->exit_state: */ 8392c4bc9fSPeter Zijlstra #define EXIT_DEAD 0x0010 8492c4bc9fSPeter Zijlstra #define EXIT_ZOMBIE 0x0020 85abd50b39SOleg Nesterov #define EXIT_TRACE (EXIT_ZOMBIE | EXIT_DEAD) 865eca1c10SIngo Molnar /* Used in tsk->state again: */ 878ef9925bSPeter Zijlstra #define TASK_PARKED 0x0040 888ef9925bSPeter Zijlstra #define TASK_DEAD 0x0080 898ef9925bSPeter Zijlstra #define TASK_WAKEKILL 0x0100 908ef9925bSPeter Zijlstra #define TASK_WAKING 0x0200 9192c4bc9fSPeter Zijlstra #define TASK_NOLOAD 0x0400 9292c4bc9fSPeter Zijlstra #define TASK_NEW 0x0800 9392c4bc9fSPeter Zijlstra #define TASK_STATE_MAX 0x1000 94f021a3c2SMatthew Wilcox 955eca1c10SIngo Molnar /* Convenience macros for the sake of set_current_state: */ 96f021a3c2SMatthew Wilcox #define TASK_KILLABLE (TASK_WAKEKILL | TASK_UNINTERRUPTIBLE) 97f021a3c2SMatthew Wilcox #define TASK_STOPPED (TASK_WAKEKILL | __TASK_STOPPED) 98f021a3c2SMatthew Wilcox #define TASK_TRACED (TASK_WAKEKILL | __TASK_TRACED) 991da177e4SLinus Torvalds 10080ed87c8SPeter Zijlstra #define TASK_IDLE (TASK_UNINTERRUPTIBLE | TASK_NOLOAD) 10180ed87c8SPeter Zijlstra 1025eca1c10SIngo Molnar /* Convenience macros for the sake of wake_up(): */ 10392a1f4bcSMatthew Wilcox #define TASK_NORMAL (TASK_INTERRUPTIBLE | TASK_UNINTERRUPTIBLE) 10492a1f4bcSMatthew Wilcox 1055eca1c10SIngo Molnar /* get_task_state(): */ 10692a1f4bcSMatthew Wilcox #define TASK_REPORT (TASK_RUNNING | TASK_INTERRUPTIBLE | \ 107f021a3c2SMatthew Wilcox TASK_UNINTERRUPTIBLE | __TASK_STOPPED | \ 1088ef9925bSPeter Zijlstra __TASK_TRACED | EXIT_DEAD | EXIT_ZOMBIE | \ 1098ef9925bSPeter Zijlstra TASK_PARKED) 11092a1f4bcSMatthew Wilcox 111f021a3c2SMatthew Wilcox #define task_is_traced(task) ((task->state & __TASK_TRACED) != 0) 1125eca1c10SIngo Molnar 113f021a3c2SMatthew Wilcox #define task_is_stopped(task) ((task->state & __TASK_STOPPED) != 0) 1145eca1c10SIngo Molnar 1155eca1c10SIngo Molnar #define task_is_stopped_or_traced(task) ((task->state & (__TASK_STOPPED | __TASK_TRACED)) != 0) 1165eca1c10SIngo Molnar 1178eb23b9fSPeter Zijlstra #ifdef CONFIG_DEBUG_ATOMIC_SLEEP 1188eb23b9fSPeter Zijlstra 119b5bf9a90SPeter Zijlstra /* 120b5bf9a90SPeter Zijlstra * Special states are those that do not use the normal wait-loop pattern. See 121b5bf9a90SPeter Zijlstra * the comment with set_special_state(). 122b5bf9a90SPeter Zijlstra */ 123b5bf9a90SPeter Zijlstra #define is_special_task_state(state) \ 1241cef1150SPeter Zijlstra ((state) & (__TASK_STOPPED | __TASK_TRACED | TASK_PARKED | TASK_DEAD)) 125b5bf9a90SPeter Zijlstra 1268eb23b9fSPeter Zijlstra #define __set_current_state(state_value) \ 1278eb23b9fSPeter Zijlstra do { \ 128b5bf9a90SPeter Zijlstra WARN_ON_ONCE(is_special_task_state(state_value));\ 1298eb23b9fSPeter Zijlstra current->task_state_change = _THIS_IP_; \ 1308eb23b9fSPeter Zijlstra current->state = (state_value); \ 1318eb23b9fSPeter Zijlstra } while (0) 132b5bf9a90SPeter Zijlstra 1338eb23b9fSPeter Zijlstra #define set_current_state(state_value) \ 1348eb23b9fSPeter Zijlstra do { \ 135b5bf9a90SPeter Zijlstra WARN_ON_ONCE(is_special_task_state(state_value));\ 1368eb23b9fSPeter Zijlstra current->task_state_change = _THIS_IP_; \ 137b92b8b35SPeter Zijlstra smp_store_mb(current->state, (state_value)); \ 1388eb23b9fSPeter Zijlstra } while (0) 1398eb23b9fSPeter Zijlstra 140b5bf9a90SPeter Zijlstra #define set_special_state(state_value) \ 141b5bf9a90SPeter Zijlstra do { \ 142b5bf9a90SPeter Zijlstra unsigned long flags; /* may shadow */ \ 143b5bf9a90SPeter Zijlstra WARN_ON_ONCE(!is_special_task_state(state_value)); \ 144b5bf9a90SPeter Zijlstra raw_spin_lock_irqsave(¤t->pi_lock, flags); \ 145b5bf9a90SPeter Zijlstra current->task_state_change = _THIS_IP_; \ 146b5bf9a90SPeter Zijlstra current->state = (state_value); \ 147b5bf9a90SPeter Zijlstra raw_spin_unlock_irqrestore(¤t->pi_lock, flags); \ 148b5bf9a90SPeter Zijlstra } while (0) 1498eb23b9fSPeter Zijlstra #else 150498d0c57SAndrew Morton /* 151498d0c57SAndrew Morton * set_current_state() includes a barrier so that the write of current->state 152498d0c57SAndrew Morton * is correctly serialised wrt the caller's subsequent test of whether to 153498d0c57SAndrew Morton * actually sleep: 154498d0c57SAndrew Morton * 155a2250238SPeter Zijlstra * for (;;) { 156498d0c57SAndrew Morton * set_current_state(TASK_UNINTERRUPTIBLE); 15758877d34SPeter Zijlstra * if (CONDITION) 158a2250238SPeter Zijlstra * break; 159498d0c57SAndrew Morton * 160a2250238SPeter Zijlstra * schedule(); 161a2250238SPeter Zijlstra * } 162a2250238SPeter Zijlstra * __set_current_state(TASK_RUNNING); 163a2250238SPeter Zijlstra * 164a2250238SPeter Zijlstra * If the caller does not need such serialisation (because, for instance, the 16558877d34SPeter Zijlstra * CONDITION test and condition change and wakeup are under the same lock) then 166a2250238SPeter Zijlstra * use __set_current_state(). 167a2250238SPeter Zijlstra * 168a2250238SPeter Zijlstra * The above is typically ordered against the wakeup, which does: 169a2250238SPeter Zijlstra * 17058877d34SPeter Zijlstra * CONDITION = 1; 171a2250238SPeter Zijlstra * wake_up_state(p, TASK_UNINTERRUPTIBLE); 172a2250238SPeter Zijlstra * 17358877d34SPeter Zijlstra * where wake_up_state()/try_to_wake_up() executes a full memory barrier before 17458877d34SPeter Zijlstra * accessing p->state. 175a2250238SPeter Zijlstra * 176a2250238SPeter Zijlstra * Wakeup will do: if (@state & p->state) p->state = TASK_RUNNING, that is, 177a2250238SPeter Zijlstra * once it observes the TASK_UNINTERRUPTIBLE store the waking CPU can issue a 178a2250238SPeter Zijlstra * TASK_RUNNING store which can collide with __set_current_state(TASK_RUNNING). 179a2250238SPeter Zijlstra * 180b5bf9a90SPeter Zijlstra * However, with slightly different timing the wakeup TASK_RUNNING store can 181dfcb245eSIngo Molnar * also collide with the TASK_UNINTERRUPTIBLE store. Losing that store is not 182b5bf9a90SPeter Zijlstra * a problem either because that will result in one extra go around the loop 183b5bf9a90SPeter Zijlstra * and our @cond test will save the day. 184a2250238SPeter Zijlstra * 185a2250238SPeter Zijlstra * Also see the comments of try_to_wake_up(). 186498d0c57SAndrew Morton */ 187b5bf9a90SPeter Zijlstra #define __set_current_state(state_value) \ 188b5bf9a90SPeter Zijlstra current->state = (state_value) 189b5bf9a90SPeter Zijlstra 190b5bf9a90SPeter Zijlstra #define set_current_state(state_value) \ 191b5bf9a90SPeter Zijlstra smp_store_mb(current->state, (state_value)) 192b5bf9a90SPeter Zijlstra 193b5bf9a90SPeter Zijlstra /* 194b5bf9a90SPeter Zijlstra * set_special_state() should be used for those states when the blocking task 195b5bf9a90SPeter Zijlstra * can not use the regular condition based wait-loop. In that case we must 196b5bf9a90SPeter Zijlstra * serialize against wakeups such that any possible in-flight TASK_RUNNING stores 197b5bf9a90SPeter Zijlstra * will not collide with our state change. 198b5bf9a90SPeter Zijlstra */ 199b5bf9a90SPeter Zijlstra #define set_special_state(state_value) \ 200b5bf9a90SPeter Zijlstra do { \ 201b5bf9a90SPeter Zijlstra unsigned long flags; /* may shadow */ \ 202b5bf9a90SPeter Zijlstra raw_spin_lock_irqsave(¤t->pi_lock, flags); \ 203b5bf9a90SPeter Zijlstra current->state = (state_value); \ 204b5bf9a90SPeter Zijlstra raw_spin_unlock_irqrestore(¤t->pi_lock, flags); \ 205b5bf9a90SPeter Zijlstra } while (0) 206b5bf9a90SPeter Zijlstra 2078eb23b9fSPeter Zijlstra #endif 2088eb23b9fSPeter Zijlstra 2095eca1c10SIngo Molnar /* Task command name length: */ 2101da177e4SLinus Torvalds #define TASK_COMM_LEN 16 2111da177e4SLinus Torvalds 2121da177e4SLinus Torvalds extern void scheduler_tick(void); 2131da177e4SLinus Torvalds 2141da177e4SLinus Torvalds #define MAX_SCHEDULE_TIMEOUT LONG_MAX 2155eca1c10SIngo Molnar 2165eca1c10SIngo Molnar extern long schedule_timeout(long timeout); 2175eca1c10SIngo Molnar extern long schedule_timeout_interruptible(long timeout); 2185eca1c10SIngo Molnar extern long schedule_timeout_killable(long timeout); 2195eca1c10SIngo Molnar extern long schedule_timeout_uninterruptible(long timeout); 2205eca1c10SIngo Molnar extern long schedule_timeout_idle(long timeout); 2211da177e4SLinus Torvalds asmlinkage void schedule(void); 222c5491ea7SThomas Gleixner extern void schedule_preempt_disabled(void); 22319c95f26SJulien Thierry asmlinkage void preempt_schedule_irq(void); 2241da177e4SLinus Torvalds 22510ab5643STejun Heo extern int __must_check io_schedule_prepare(void); 22610ab5643STejun Heo extern void io_schedule_finish(int token); 2279cff8adeSNeilBrown extern long io_schedule_timeout(long timeout); 22810ab5643STejun Heo extern void io_schedule(void); 2299cff8adeSNeilBrown 230f06febc9SFrank Mayhar /** 2310ba42a59SMasanari Iida * struct prev_cputime - snapshot of system and user cputime 232d37f761dSFrederic Weisbecker * @utime: time spent in user mode 233d37f761dSFrederic Weisbecker * @stime: time spent in system mode 2349d7fb042SPeter Zijlstra * @lock: protects the above two fields 235d37f761dSFrederic Weisbecker * 2369d7fb042SPeter Zijlstra * Stores previous user/system time values such that we can guarantee 2379d7fb042SPeter Zijlstra * monotonicity. 238d37f761dSFrederic Weisbecker */ 2399d7fb042SPeter Zijlstra struct prev_cputime { 2409d7fb042SPeter Zijlstra #ifndef CONFIG_VIRT_CPU_ACCOUNTING_NATIVE 2415613fda9SFrederic Weisbecker u64 utime; 2425613fda9SFrederic Weisbecker u64 stime; 2439d7fb042SPeter Zijlstra raw_spinlock_t lock; 2449d7fb042SPeter Zijlstra #endif 245d37f761dSFrederic Weisbecker }; 246d37f761dSFrederic Weisbecker 247bac5b6b6SFrederic Weisbecker enum vtime_state { 248bac5b6b6SFrederic Weisbecker /* Task is sleeping or running in a CPU with VTIME inactive: */ 249bac5b6b6SFrederic Weisbecker VTIME_INACTIVE = 0, 25014faf6fcSFrederic Weisbecker /* Task is idle */ 25114faf6fcSFrederic Weisbecker VTIME_IDLE, 252bac5b6b6SFrederic Weisbecker /* Task runs in kernelspace in a CPU with VTIME active: */ 253bac5b6b6SFrederic Weisbecker VTIME_SYS, 25414faf6fcSFrederic Weisbecker /* Task runs in userspace in a CPU with VTIME active: */ 25514faf6fcSFrederic Weisbecker VTIME_USER, 256e6d5bf3eSFrederic Weisbecker /* Task runs as guests in a CPU with VTIME active: */ 257e6d5bf3eSFrederic Weisbecker VTIME_GUEST, 258bac5b6b6SFrederic Weisbecker }; 259bac5b6b6SFrederic Weisbecker 260bac5b6b6SFrederic Weisbecker struct vtime { 261bac5b6b6SFrederic Weisbecker seqcount_t seqcount; 262bac5b6b6SFrederic Weisbecker unsigned long long starttime; 263bac5b6b6SFrederic Weisbecker enum vtime_state state; 264802f4a82SFrederic Weisbecker unsigned int cpu; 2652a42eb95SWanpeng Li u64 utime; 2662a42eb95SWanpeng Li u64 stime; 2672a42eb95SWanpeng Li u64 gtime; 268bac5b6b6SFrederic Weisbecker }; 269bac5b6b6SFrederic Weisbecker 27069842cbaSPatrick Bellasi /* 27169842cbaSPatrick Bellasi * Utilization clamp constraints. 27269842cbaSPatrick Bellasi * @UCLAMP_MIN: Minimum utilization 27369842cbaSPatrick Bellasi * @UCLAMP_MAX: Maximum utilization 27469842cbaSPatrick Bellasi * @UCLAMP_CNT: Utilization clamp constraints count 27569842cbaSPatrick Bellasi */ 27669842cbaSPatrick Bellasi enum uclamp_id { 27769842cbaSPatrick Bellasi UCLAMP_MIN = 0, 27869842cbaSPatrick Bellasi UCLAMP_MAX, 27969842cbaSPatrick Bellasi UCLAMP_CNT 28069842cbaSPatrick Bellasi }; 28169842cbaSPatrick Bellasi 282f9a25f77SMathieu Poirier #ifdef CONFIG_SMP 283f9a25f77SMathieu Poirier extern struct root_domain def_root_domain; 284f9a25f77SMathieu Poirier extern struct mutex sched_domains_mutex; 285f9a25f77SMathieu Poirier #endif 286f9a25f77SMathieu Poirier 2871da177e4SLinus Torvalds struct sched_info { 2887f5f8e8dSIngo Molnar #ifdef CONFIG_SCHED_INFO 2895eca1c10SIngo Molnar /* Cumulative counters: */ 2901da177e4SLinus Torvalds 2915eca1c10SIngo Molnar /* # of times we have run on this CPU: */ 2925eca1c10SIngo Molnar unsigned long pcount; 2935eca1c10SIngo Molnar 2945eca1c10SIngo Molnar /* Time spent waiting on a runqueue: */ 2955eca1c10SIngo Molnar unsigned long long run_delay; 2965eca1c10SIngo Molnar 2975eca1c10SIngo Molnar /* Timestamps: */ 2985eca1c10SIngo Molnar 2995eca1c10SIngo Molnar /* When did we last run on a CPU? */ 3005eca1c10SIngo Molnar unsigned long long last_arrival; 3015eca1c10SIngo Molnar 3025eca1c10SIngo Molnar /* When were we last queued to run? */ 3035eca1c10SIngo Molnar unsigned long long last_queued; 3045eca1c10SIngo Molnar 305f6db8347SNaveen N. Rao #endif /* CONFIG_SCHED_INFO */ 3067f5f8e8dSIngo Molnar }; 3071da177e4SLinus Torvalds 3081da177e4SLinus Torvalds /* 3096ecdd749SYuyang Du * Integer metrics need fixed point arithmetic, e.g., sched/fair 3106ecdd749SYuyang Du * has a few: load, load_avg, util_avg, freq, and capacity. 3116ecdd749SYuyang Du * 3126ecdd749SYuyang Du * We define a basic fixed point arithmetic range, and then formalize 3136ecdd749SYuyang Du * all these metrics based on that basic range. 3146ecdd749SYuyang Du */ 3156ecdd749SYuyang Du # define SCHED_FIXEDPOINT_SHIFT 10 3166ecdd749SYuyang Du # define SCHED_FIXEDPOINT_SCALE (1L << SCHED_FIXEDPOINT_SHIFT) 3176ecdd749SYuyang Du 31869842cbaSPatrick Bellasi /* Increase resolution of cpu_capacity calculations */ 31969842cbaSPatrick Bellasi # define SCHED_CAPACITY_SHIFT SCHED_FIXEDPOINT_SHIFT 32069842cbaSPatrick Bellasi # define SCHED_CAPACITY_SCALE (1L << SCHED_CAPACITY_SHIFT) 32169842cbaSPatrick Bellasi 32220b8a59fSIngo Molnar struct load_weight { 3239dbdb155SPeter Zijlstra unsigned long weight; 3249dbdb155SPeter Zijlstra u32 inv_weight; 32520b8a59fSIngo Molnar }; 32620b8a59fSIngo Molnar 3277f65ea42SPatrick Bellasi /** 3287f65ea42SPatrick Bellasi * struct util_est - Estimation utilization of FAIR tasks 3297f65ea42SPatrick Bellasi * @enqueued: instantaneous estimated utilization of a task/cpu 3307f65ea42SPatrick Bellasi * @ewma: the Exponential Weighted Moving Average (EWMA) 3317f65ea42SPatrick Bellasi * utilization of a task 3327f65ea42SPatrick Bellasi * 3337f65ea42SPatrick Bellasi * Support data structure to track an Exponential Weighted Moving Average 3347f65ea42SPatrick Bellasi * (EWMA) of a FAIR task's utilization. New samples are added to the moving 3357f65ea42SPatrick Bellasi * average each time a task completes an activation. Sample's weight is chosen 3367f65ea42SPatrick Bellasi * so that the EWMA will be relatively insensitive to transient changes to the 3377f65ea42SPatrick Bellasi * task's workload. 3387f65ea42SPatrick Bellasi * 3397f65ea42SPatrick Bellasi * The enqueued attribute has a slightly different meaning for tasks and cpus: 3407f65ea42SPatrick Bellasi * - task: the task's util_avg at last task dequeue time 3417f65ea42SPatrick Bellasi * - cfs_rq: the sum of util_est.enqueued for each RUNNABLE task on that CPU 3427f65ea42SPatrick Bellasi * Thus, the util_est.enqueued of a task represents the contribution on the 3437f65ea42SPatrick Bellasi * estimated utilization of the CPU where that task is currently enqueued. 3447f65ea42SPatrick Bellasi * 3457f65ea42SPatrick Bellasi * Only for tasks we track a moving average of the past instantaneous 3467f65ea42SPatrick Bellasi * estimated utilization. This allows to absorb sporadic drops in utilization 3477f65ea42SPatrick Bellasi * of an otherwise almost periodic task. 3487f65ea42SPatrick Bellasi */ 3497f65ea42SPatrick Bellasi struct util_est { 3507f65ea42SPatrick Bellasi unsigned int enqueued; 3517f65ea42SPatrick Bellasi unsigned int ewma; 3527f65ea42SPatrick Bellasi #define UTIL_EST_WEIGHT_SHIFT 2 353317d359dSPeter Zijlstra } __attribute__((__aligned__(sizeof(u64)))); 3547f65ea42SPatrick Bellasi 3559d89c257SYuyang Du /* 3569f683953SVincent Guittot * The load/runnable/util_avg accumulates an infinite geometric series 3570dacee1bSVincent Guittot * (see __update_load_avg_cfs_rq() in kernel/sched/pelt.c). 3587b595334SYuyang Du * 3597b595334SYuyang Du * [load_avg definition] 3607b595334SYuyang Du * 3617b595334SYuyang Du * load_avg = runnable% * scale_load_down(load) 3627b595334SYuyang Du * 3639f683953SVincent Guittot * [runnable_avg definition] 3649f683953SVincent Guittot * 3659f683953SVincent Guittot * runnable_avg = runnable% * SCHED_CAPACITY_SCALE 3667b595334SYuyang Du * 3677b595334SYuyang Du * [util_avg definition] 3687b595334SYuyang Du * 3697b595334SYuyang Du * util_avg = running% * SCHED_CAPACITY_SCALE 3707b595334SYuyang Du * 3719f683953SVincent Guittot * where runnable% is the time ratio that a sched_entity is runnable and 3729f683953SVincent Guittot * running% the time ratio that a sched_entity is running. 3737b595334SYuyang Du * 3749f683953SVincent Guittot * For cfs_rq, they are the aggregated values of all runnable and blocked 3759f683953SVincent Guittot * sched_entities. 3769f683953SVincent Guittot * 377*c1b7b8d4S王文虎 * The load/runnable/util_avg doesn't directly factor frequency scaling and CPU 3789f683953SVincent Guittot * capacity scaling. The scaling is done through the rq_clock_pelt that is used 3799f683953SVincent Guittot * for computing those signals (see update_rq_clock_pelt()) 3807b595334SYuyang Du * 38123127296SVincent Guittot * N.B., the above ratios (runnable% and running%) themselves are in the 38223127296SVincent Guittot * range of [0, 1]. To do fixed point arithmetics, we therefore scale them 38323127296SVincent Guittot * to as large a range as necessary. This is for example reflected by 38423127296SVincent Guittot * util_avg's SCHED_CAPACITY_SCALE. 3857b595334SYuyang Du * 3867b595334SYuyang Du * [Overflow issue] 3877b595334SYuyang Du * 3887b595334SYuyang Du * The 64-bit load_sum can have 4353082796 (=2^64/47742/88761) entities 3897b595334SYuyang Du * with the highest load (=88761), always runnable on a single cfs_rq, 3907b595334SYuyang Du * and should not overflow as the number already hits PID_MAX_LIMIT. 3917b595334SYuyang Du * 3927b595334SYuyang Du * For all other cases (including 32-bit kernels), struct load_weight's 3937b595334SYuyang Du * weight will overflow first before we do, because: 3947b595334SYuyang Du * 3957b595334SYuyang Du * Max(load_avg) <= Max(load.weight) 3967b595334SYuyang Du * 3977b595334SYuyang Du * Then it is the load_weight's responsibility to consider overflow 3987b595334SYuyang Du * issues. 3999d89c257SYuyang Du */ 4009d85f21cSPaul Turner struct sched_avg { 4015eca1c10SIngo Molnar u64 last_update_time; 4025eca1c10SIngo Molnar u64 load_sum; 4039f683953SVincent Guittot u64 runnable_sum; 4045eca1c10SIngo Molnar u32 util_sum; 4055eca1c10SIngo Molnar u32 period_contrib; 4065eca1c10SIngo Molnar unsigned long load_avg; 4079f683953SVincent Guittot unsigned long runnable_avg; 4085eca1c10SIngo Molnar unsigned long util_avg; 4097f65ea42SPatrick Bellasi struct util_est util_est; 410317d359dSPeter Zijlstra } ____cacheline_aligned; 4119d85f21cSPaul Turner 41241acab88SLucas De Marchi struct sched_statistics { 4137f5f8e8dSIngo Molnar #ifdef CONFIG_SCHEDSTATS 41494c18227SIngo Molnar u64 wait_start; 41594c18227SIngo Molnar u64 wait_max; 4166d082592SArjan van de Ven u64 wait_count; 4176d082592SArjan van de Ven u64 wait_sum; 4188f0dfc34SArjan van de Ven u64 iowait_count; 4198f0dfc34SArjan van de Ven u64 iowait_sum; 42094c18227SIngo Molnar 42194c18227SIngo Molnar u64 sleep_start; 42220b8a59fSIngo Molnar u64 sleep_max; 42394c18227SIngo Molnar s64 sum_sleep_runtime; 42494c18227SIngo Molnar 42594c18227SIngo Molnar u64 block_start; 42620b8a59fSIngo Molnar u64 block_max; 42720b8a59fSIngo Molnar u64 exec_max; 428eba1ed4bSIngo Molnar u64 slice_max; 429cc367732SIngo Molnar 430cc367732SIngo Molnar u64 nr_migrations_cold; 431cc367732SIngo Molnar u64 nr_failed_migrations_affine; 432cc367732SIngo Molnar u64 nr_failed_migrations_running; 433cc367732SIngo Molnar u64 nr_failed_migrations_hot; 434cc367732SIngo Molnar u64 nr_forced_migrations; 435cc367732SIngo Molnar 436cc367732SIngo Molnar u64 nr_wakeups; 437cc367732SIngo Molnar u64 nr_wakeups_sync; 438cc367732SIngo Molnar u64 nr_wakeups_migrate; 439cc367732SIngo Molnar u64 nr_wakeups_local; 440cc367732SIngo Molnar u64 nr_wakeups_remote; 441cc367732SIngo Molnar u64 nr_wakeups_affine; 442cc367732SIngo Molnar u64 nr_wakeups_affine_attempts; 443cc367732SIngo Molnar u64 nr_wakeups_passive; 444cc367732SIngo Molnar u64 nr_wakeups_idle; 44541acab88SLucas De Marchi #endif 4467f5f8e8dSIngo Molnar }; 44741acab88SLucas De Marchi 44841acab88SLucas De Marchi struct sched_entity { 4495eca1c10SIngo Molnar /* For load-balancing: */ 4505eca1c10SIngo Molnar struct load_weight load; 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; 4719f683953SVincent Guittot /* cached value of my_q->h_nr_running */ 4729f683953SVincent Guittot unsigned long runnable_weight; 47320b8a59fSIngo Molnar #endif 4748bd75c77SClark Williams 475141965c7SAlex Shi #ifdef CONFIG_SMP 4765a107804SJiri Olsa /* 4775a107804SJiri Olsa * Per entity load average tracking. 4785a107804SJiri Olsa * 4795a107804SJiri Olsa * Put into separate cache line so it does not 4805a107804SJiri Olsa * collide with read-mostly values above. 4815a107804SJiri Olsa */ 482317d359dSPeter Zijlstra struct sched_avg avg; 4839d85f21cSPaul Turner #endif 48420b8a59fSIngo Molnar }; 48570b97a7fSIngo Molnar 486fa717060SPeter Zijlstra struct sched_rt_entity { 487fa717060SPeter Zijlstra struct list_head run_list; 48878f2c7dbSPeter Zijlstra unsigned long timeout; 48957d2aa00SYing Xue unsigned long watchdog_stamp; 490bee367edSRichard Kennedy unsigned int time_slice; 491ff77e468SPeter Zijlstra unsigned short on_rq; 492ff77e468SPeter Zijlstra unsigned short on_list; 4936f505b16SPeter Zijlstra 49458d6c2d7SPeter Zijlstra struct sched_rt_entity *back; 495052f1dc7SPeter Zijlstra #ifdef CONFIG_RT_GROUP_SCHED 4966f505b16SPeter Zijlstra struct sched_rt_entity *parent; 4976f505b16SPeter Zijlstra /* rq on which this entity is (to be) queued: */ 4986f505b16SPeter Zijlstra struct rt_rq *rt_rq; 4996f505b16SPeter Zijlstra /* rq "owned" by this entity/group: */ 5006f505b16SPeter Zijlstra struct rt_rq *my_q; 5016f505b16SPeter Zijlstra #endif 5023859a271SKees Cook } __randomize_layout; 503fa717060SPeter Zijlstra 504aab03e05SDario Faggioli struct sched_dl_entity { 505aab03e05SDario Faggioli struct rb_node rb_node; 506aab03e05SDario Faggioli 507aab03e05SDario Faggioli /* 508aab03e05SDario Faggioli * Original scheduling parameters. Copied here from sched_attr 5094027d080Sxiaofeng.yan * during sched_setattr(), they will remain the same until 5104027d080Sxiaofeng.yan * the next sched_setattr(). 511aab03e05SDario Faggioli */ 5125eca1c10SIngo Molnar u64 dl_runtime; /* Maximum runtime for each instance */ 5135eca1c10SIngo Molnar u64 dl_deadline; /* Relative deadline of each instance */ 5145eca1c10SIngo Molnar u64 dl_period; /* Separation of two instances (period) */ 51554d6d303SDaniel Bristot de Oliveira u64 dl_bw; /* dl_runtime / dl_period */ 5163effcb42SDaniel Bristot de Oliveira u64 dl_density; /* dl_runtime / dl_deadline */ 517aab03e05SDario Faggioli 518aab03e05SDario Faggioli /* 519aab03e05SDario Faggioli * Actual scheduling parameters. Initialized with the values above, 520dfcb245eSIngo Molnar * they are continuously updated during task execution. Note that 521aab03e05SDario Faggioli * the remaining runtime could be < 0 in case we are in overrun. 522aab03e05SDario Faggioli */ 5235eca1c10SIngo Molnar s64 runtime; /* Remaining runtime for this instance */ 5245eca1c10SIngo Molnar u64 deadline; /* Absolute deadline for this instance */ 5255eca1c10SIngo Molnar unsigned int flags; /* Specifying the scheduler behaviour */ 526aab03e05SDario Faggioli 527aab03e05SDario Faggioli /* 528aab03e05SDario Faggioli * Some bool flags: 529aab03e05SDario Faggioli * 530aab03e05SDario Faggioli * @dl_throttled tells if we exhausted the runtime. If so, the 531aab03e05SDario Faggioli * task has to wait for a replenishment to be performed at the 532aab03e05SDario Faggioli * next firing of dl_timer. 533aab03e05SDario Faggioli * 5342d3d891dSDario Faggioli * @dl_boosted tells if we are boosted due to DI. If so we are 5352d3d891dSDario Faggioli * outside bandwidth enforcement mechanism (but only until we 5365bfd126eSJuri Lelli * exit the critical section); 5375bfd126eSJuri Lelli * 5385eca1c10SIngo Molnar * @dl_yielded tells if task gave up the CPU before consuming 5395bfd126eSJuri Lelli * all its available runtime during the last job. 540209a0cbdSLuca Abeni * 541209a0cbdSLuca Abeni * @dl_non_contending tells if the task is inactive while still 542209a0cbdSLuca Abeni * contributing to the active utilization. In other words, it 543209a0cbdSLuca Abeni * indicates if the inactive timer has been armed and its handler 544209a0cbdSLuca Abeni * has not been executed yet. This flag is useful to avoid race 545209a0cbdSLuca Abeni * conditions between the inactive timer handler and the wakeup 546209a0cbdSLuca Abeni * code. 54734be3930SJuri Lelli * 54834be3930SJuri Lelli * @dl_overrun tells if the task asked to be informed about runtime 54934be3930SJuri Lelli * overruns. 550aab03e05SDario Faggioli */ 551aa5222e9SDan Carpenter unsigned int dl_throttled : 1; 552aa5222e9SDan Carpenter unsigned int dl_boosted : 1; 553aa5222e9SDan Carpenter unsigned int dl_yielded : 1; 554aa5222e9SDan Carpenter unsigned int dl_non_contending : 1; 55534be3930SJuri Lelli unsigned int dl_overrun : 1; 556aab03e05SDario Faggioli 557aab03e05SDario Faggioli /* 558aab03e05SDario Faggioli * Bandwidth enforcement timer. Each -deadline task has its 559aab03e05SDario Faggioli * own bandwidth to be enforced, thus we need one timer per task. 560aab03e05SDario Faggioli */ 561aab03e05SDario Faggioli struct hrtimer dl_timer; 562209a0cbdSLuca Abeni 563209a0cbdSLuca Abeni /* 564209a0cbdSLuca Abeni * Inactive timer, responsible for decreasing the active utilization 565209a0cbdSLuca Abeni * at the "0-lag time". When a -deadline task blocks, it contributes 566209a0cbdSLuca Abeni * to GRUB's active utilization until the "0-lag time", hence a 567209a0cbdSLuca Abeni * timer is needed to decrease the active utilization at the correct 568209a0cbdSLuca Abeni * time. 569209a0cbdSLuca Abeni */ 570209a0cbdSLuca Abeni struct hrtimer inactive_timer; 571aab03e05SDario Faggioli }; 5728bd75c77SClark Williams 57369842cbaSPatrick Bellasi #ifdef CONFIG_UCLAMP_TASK 57469842cbaSPatrick Bellasi /* Number of utilization clamp buckets (shorter alias) */ 57569842cbaSPatrick Bellasi #define UCLAMP_BUCKETS CONFIG_UCLAMP_BUCKETS_COUNT 57669842cbaSPatrick Bellasi 57769842cbaSPatrick Bellasi /* 57869842cbaSPatrick Bellasi * Utilization clamp for a scheduling entity 57969842cbaSPatrick Bellasi * @value: clamp value "assigned" to a se 58069842cbaSPatrick Bellasi * @bucket_id: bucket index corresponding to the "assigned" value 581e8f14172SPatrick Bellasi * @active: the se is currently refcounted in a rq's bucket 582a509a7cdSPatrick Bellasi * @user_defined: the requested clamp value comes from user-space 58369842cbaSPatrick Bellasi * 58469842cbaSPatrick Bellasi * The bucket_id is the index of the clamp bucket matching the clamp value 58569842cbaSPatrick Bellasi * which is pre-computed and stored to avoid expensive integer divisions from 58669842cbaSPatrick Bellasi * the fast path. 587e8f14172SPatrick Bellasi * 588e8f14172SPatrick Bellasi * The active bit is set whenever a task has got an "effective" value assigned, 589e8f14172SPatrick Bellasi * which can be different from the clamp value "requested" from user-space. 590e8f14172SPatrick Bellasi * This allows to know a task is refcounted in the rq's bucket corresponding 591e8f14172SPatrick Bellasi * to the "effective" bucket_id. 592a509a7cdSPatrick Bellasi * 593a509a7cdSPatrick Bellasi * The user_defined bit is set whenever a task has got a task-specific clamp 594a509a7cdSPatrick Bellasi * value requested from userspace, i.e. the system defaults apply to this task 595a509a7cdSPatrick Bellasi * just as a restriction. This allows to relax default clamps when a less 596a509a7cdSPatrick Bellasi * restrictive task-specific value has been requested, thus allowing to 597a509a7cdSPatrick Bellasi * implement a "nice" semantic. For example, a task running with a 20% 598a509a7cdSPatrick Bellasi * default boost can still drop its own boosting to 0%. 59969842cbaSPatrick Bellasi */ 60069842cbaSPatrick Bellasi struct uclamp_se { 60169842cbaSPatrick Bellasi unsigned int value : bits_per(SCHED_CAPACITY_SCALE); 60269842cbaSPatrick Bellasi unsigned int bucket_id : bits_per(UCLAMP_BUCKETS); 603e8f14172SPatrick Bellasi unsigned int active : 1; 604a509a7cdSPatrick Bellasi unsigned int user_defined : 1; 60569842cbaSPatrick Bellasi }; 60669842cbaSPatrick Bellasi #endif /* CONFIG_UCLAMP_TASK */ 60769842cbaSPatrick Bellasi 6081d082fd0SPaul E. McKenney union rcu_special { 6091d082fd0SPaul E. McKenney struct { 6108203d6d0SPaul E. McKenney u8 blocked; 6118203d6d0SPaul E. McKenney u8 need_qs; 61205f41571SPaul E. McKenney u8 exp_hint; /* Hint for performance. */ 613276c4104SPaul E. McKenney u8 need_mb; /* Readers need smp_mb(). */ 6148203d6d0SPaul E. McKenney } b; /* Bits. */ 61505f41571SPaul E. McKenney u32 s; /* Set of bits. */ 6161d082fd0SPaul E. McKenney }; 61786848966SPaul E. McKenney 6188dc85d54SPeter Zijlstra enum perf_event_task_context { 6198dc85d54SPeter Zijlstra perf_invalid_context = -1, 6208dc85d54SPeter Zijlstra perf_hw_context = 0, 62189a1e187SPeter Zijlstra perf_sw_context, 6228dc85d54SPeter Zijlstra perf_nr_task_contexts, 6238dc85d54SPeter Zijlstra }; 6248dc85d54SPeter Zijlstra 625eb61baf6SIngo Molnar struct wake_q_node { 626eb61baf6SIngo Molnar struct wake_q_node *next; 627eb61baf6SIngo Molnar }; 628eb61baf6SIngo Molnar 6291da177e4SLinus Torvalds struct task_struct { 630c65eacbeSAndy Lutomirski #ifdef CONFIG_THREAD_INFO_IN_TASK 631c65eacbeSAndy Lutomirski /* 632c65eacbeSAndy Lutomirski * For reasons of header soup (see current_thread_info()), this 633c65eacbeSAndy Lutomirski * must be the first element of task_struct. 634c65eacbeSAndy Lutomirski */ 635c65eacbeSAndy Lutomirski struct thread_info thread_info; 636c65eacbeSAndy Lutomirski #endif 6375eca1c10SIngo Molnar /* -1 unrunnable, 0 runnable, >0 stopped: */ 6385eca1c10SIngo Molnar volatile long state; 63929e48ce8SKees Cook 64029e48ce8SKees Cook /* 64129e48ce8SKees Cook * This begins the randomizable portion of task_struct. Only 64229e48ce8SKees Cook * scheduling-critical items should be added above here. 64329e48ce8SKees Cook */ 64429e48ce8SKees Cook randomized_struct_fields_start 64529e48ce8SKees Cook 646f7e4217bSRoman Zippel void *stack; 647ec1d2819SElena Reshetova refcount_t usage; 6485eca1c10SIngo Molnar /* Per task flags (PF_*), defined further below: */ 6495eca1c10SIngo Molnar unsigned int flags; 65097dc32cdSWilliam Cohen unsigned int ptrace; 6511da177e4SLinus Torvalds 6522dd73a4fSPeter Williams #ifdef CONFIG_SMP 6533ca7a440SPeter Zijlstra int on_cpu; 6548c4890d1SPeter Zijlstra struct __call_single_node wake_entry; 655c65eacbeSAndy Lutomirski #ifdef CONFIG_THREAD_INFO_IN_TASK 6565eca1c10SIngo Molnar /* Current CPU: */ 6575eca1c10SIngo Molnar unsigned int cpu; 658c65eacbeSAndy Lutomirski #endif 65963b0e9edSMike Galbraith unsigned int wakee_flips; 66062470419SMichael Wang unsigned long wakee_flip_decay_ts; 66163b0e9edSMike Galbraith struct task_struct *last_wakee; 662ac66f547SPeter Zijlstra 66332e839ddSMel Gorman /* 66432e839ddSMel Gorman * recent_used_cpu is initially set as the last CPU used by a task 66532e839ddSMel Gorman * that wakes affine another task. Waker/wakee relationships can 66632e839ddSMel Gorman * push tasks around a CPU where each wakeup moves to the next one. 66732e839ddSMel Gorman * Tracking a recently used CPU allows a quick search for a recently 66832e839ddSMel Gorman * used CPU that may be idle. 66932e839ddSMel Gorman */ 67032e839ddSMel Gorman int recent_used_cpu; 671ac66f547SPeter Zijlstra int wake_cpu; 6724866cde0SNick Piggin #endif 673fd2f4419SPeter Zijlstra int on_rq; 67450e645a8SIngo Molnar 6755eca1c10SIngo Molnar int prio; 6765eca1c10SIngo Molnar int static_prio; 6775eca1c10SIngo Molnar int normal_prio; 678c7aceabaSRichard Kennedy unsigned int rt_priority; 6795eca1c10SIngo Molnar 6805522d5d5SIngo Molnar const struct sched_class *sched_class; 68120b8a59fSIngo Molnar struct sched_entity se; 682fa717060SPeter Zijlstra struct sched_rt_entity rt; 6838323f26cSPeter Zijlstra #ifdef CONFIG_CGROUP_SCHED 6848323f26cSPeter Zijlstra struct task_group *sched_task_group; 6858323f26cSPeter Zijlstra #endif 686aab03e05SDario Faggioli struct sched_dl_entity dl; 6871da177e4SLinus Torvalds 68869842cbaSPatrick Bellasi #ifdef CONFIG_UCLAMP_TASK 689e8f14172SPatrick Bellasi /* Clamp values requested for a scheduling entity */ 690e8f14172SPatrick Bellasi struct uclamp_se uclamp_req[UCLAMP_CNT]; 691e8f14172SPatrick Bellasi /* Effective clamp values used for a scheduling entity */ 69269842cbaSPatrick Bellasi struct uclamp_se uclamp[UCLAMP_CNT]; 69369842cbaSPatrick Bellasi #endif 69469842cbaSPatrick Bellasi 695e107be36SAvi Kivity #ifdef CONFIG_PREEMPT_NOTIFIERS 6965eca1c10SIngo Molnar /* List of struct preempt_notifier: */ 697e107be36SAvi Kivity struct hlist_head preempt_notifiers; 698e107be36SAvi Kivity #endif 699e107be36SAvi Kivity 7006c5c9341SAlexey Dobriyan #ifdef CONFIG_BLK_DEV_IO_TRACE 7012056a782SJens Axboe unsigned int btrace_seq; 7026c5c9341SAlexey Dobriyan #endif 7031da177e4SLinus Torvalds 70497dc32cdSWilliam Cohen unsigned int policy; 70529baa747SPeter Zijlstra int nr_cpus_allowed; 7063bd37062SSebastian Andrzej Siewior const cpumask_t *cpus_ptr; 7073bd37062SSebastian Andrzej Siewior cpumask_t cpus_mask; 7081da177e4SLinus Torvalds 709a57eb940SPaul E. McKenney #ifdef CONFIG_PREEMPT_RCU 710e260be67SPaul E. McKenney int rcu_read_lock_nesting; 7111d082fd0SPaul E. McKenney union rcu_special rcu_read_unlock_special; 712f41d911fSPaul E. McKenney struct list_head rcu_node_entry; 713a57eb940SPaul E. McKenney struct rcu_node *rcu_blocked_node; 71428f6569aSPranith Kumar #endif /* #ifdef CONFIG_PREEMPT_RCU */ 7155eca1c10SIngo Molnar 7168315f422SPaul E. McKenney #ifdef CONFIG_TASKS_RCU 7178315f422SPaul E. McKenney unsigned long rcu_tasks_nvcsw; 718ccdd29ffSPaul E. McKenney u8 rcu_tasks_holdout; 719ccdd29ffSPaul E. McKenney u8 rcu_tasks_idx; 720176f8f7aSPaul E. McKenney int rcu_tasks_idle_cpu; 721ccdd29ffSPaul E. McKenney struct list_head rcu_tasks_holdout_list; 7228315f422SPaul E. McKenney #endif /* #ifdef CONFIG_TASKS_RCU */ 723e260be67SPaul E. McKenney 724d5f177d3SPaul E. McKenney #ifdef CONFIG_TASKS_TRACE_RCU 725d5f177d3SPaul E. McKenney int trc_reader_nesting; 726d5f177d3SPaul E. McKenney int trc_ipi_to_cpu; 727276c4104SPaul E. McKenney union rcu_special trc_reader_special; 728d5f177d3SPaul E. McKenney bool trc_reader_checked; 729d5f177d3SPaul E. McKenney struct list_head trc_holdout_list; 730d5f177d3SPaul E. McKenney #endif /* #ifdef CONFIG_TASKS_TRACE_RCU */ 731d5f177d3SPaul E. McKenney 7321da177e4SLinus Torvalds struct sched_info sched_info; 7331da177e4SLinus Torvalds 7341da177e4SLinus Torvalds struct list_head tasks; 735806c09a7SDario Faggioli #ifdef CONFIG_SMP 736917b627dSGregory Haskins struct plist_node pushable_tasks; 7371baca4ceSJuri Lelli struct rb_node pushable_dl_tasks; 738806c09a7SDario Faggioli #endif 7391da177e4SLinus Torvalds 7405eca1c10SIngo Molnar struct mm_struct *mm; 7415eca1c10SIngo Molnar struct mm_struct *active_mm; 742314ff785SIngo Molnar 743314ff785SIngo Molnar /* Per-thread vma caching: */ 744314ff785SIngo Molnar struct vmacache vmacache; 745314ff785SIngo Molnar 7465eca1c10SIngo Molnar #ifdef SPLIT_RSS_COUNTING 74734e55232SKAMEZAWA Hiroyuki struct task_rss_stat rss_stat; 74834e55232SKAMEZAWA Hiroyuki #endif 74997dc32cdSWilliam Cohen int exit_state; 7505eca1c10SIngo Molnar int exit_code; 7515eca1c10SIngo Molnar int exit_signal; 7525eca1c10SIngo Molnar /* The signal sent when the parent dies: */ 7535eca1c10SIngo Molnar int pdeath_signal; 7545eca1c10SIngo Molnar /* JOBCTL_*, siglock protected: */ 7555eca1c10SIngo Molnar unsigned long jobctl; 7569b89f6baSAndrei Epure 7575eca1c10SIngo Molnar /* Used for emulating ABI behavior of previous Linux versions: */ 75897dc32cdSWilliam Cohen unsigned int personality; 7599b89f6baSAndrei Epure 7605eca1c10SIngo Molnar /* Scheduler bits, serialized by scheduler locks: */ 761ca94c442SLennart Poettering unsigned sched_reset_on_fork:1; 762a8e4f2eaSPeter Zijlstra unsigned sched_contributes_to_load:1; 763ff303e66SPeter Zijlstra unsigned sched_migrated:1; 764b7e7ade3SPeter Zijlstra unsigned sched_remote_wakeup:1; 765eb414681SJohannes Weiner #ifdef CONFIG_PSI 766eb414681SJohannes Weiner unsigned sched_psi_wake_requeue:1; 767eb414681SJohannes Weiner #endif 768eb414681SJohannes Weiner 7695eca1c10SIngo Molnar /* Force alignment to the next boundary: */ 7705eca1c10SIngo Molnar unsigned :0; 771be958bdcSPeter Zijlstra 7725eca1c10SIngo Molnar /* Unserialized, strictly 'current' */ 7735eca1c10SIngo Molnar 7745eca1c10SIngo Molnar /* Bit to tell LSMs we're in execve(): */ 7755eca1c10SIngo Molnar unsigned in_execve:1; 776be958bdcSPeter Zijlstra unsigned in_iowait:1; 7775eca1c10SIngo Molnar #ifndef TIF_RESTORE_SIGMASK 7787e781418SAndy Lutomirski unsigned restore_sigmask:1; 7797e781418SAndy Lutomirski #endif 780626ebc41STejun Heo #ifdef CONFIG_MEMCG 78129ef680aSMichal Hocko unsigned in_user_fault:1; 782127424c8SJohannes Weiner #endif 783ff303e66SPeter Zijlstra #ifdef CONFIG_COMPAT_BRK 784ff303e66SPeter Zijlstra unsigned brk_randomized:1; 785ff303e66SPeter Zijlstra #endif 78677f88796STejun Heo #ifdef CONFIG_CGROUPS 78777f88796STejun Heo /* disallow userland-initiated cgroup migration */ 78877f88796STejun Heo unsigned no_cgroup_migration:1; 78976f969e8SRoman Gushchin /* task is frozen/stopped (used by the cgroup freezer) */ 79076f969e8SRoman Gushchin unsigned frozen:1; 79177f88796STejun Heo #endif 792d09d8df3SJosef Bacik #ifdef CONFIG_BLK_CGROUP 793d09d8df3SJosef Bacik unsigned use_memdelay:1; 794d09d8df3SJosef Bacik #endif 7951066d1b6SYafang Shao #ifdef CONFIG_PSI 7961066d1b6SYafang Shao /* Stalled due to lack of memory */ 7971066d1b6SYafang Shao unsigned in_memstall:1; 7981066d1b6SYafang Shao #endif 7996f185c29SVladimir Davydov 8005eca1c10SIngo Molnar unsigned long atomic_flags; /* Flags requiring atomic access. */ 8011d4457f9SKees Cook 802f56141e3SAndy Lutomirski struct restart_block restart_block; 803f56141e3SAndy Lutomirski 8041da177e4SLinus Torvalds pid_t pid; 8051da177e4SLinus Torvalds pid_t tgid; 8060a425405SArjan van de Ven 807050e9baaSLinus Torvalds #ifdef CONFIG_STACKPROTECTOR 8085eca1c10SIngo Molnar /* Canary value for the -fstack-protector GCC feature: */ 8090a425405SArjan van de Ven unsigned long stack_canary; 8101314562aSHiroshi Shimamoto #endif 8111da177e4SLinus Torvalds /* 8125eca1c10SIngo Molnar * Pointers to the (original) parent process, youngest child, younger sibling, 8131da177e4SLinus Torvalds * older sibling, respectively. (p->father can be replaced with 814f470021aSRoland McGrath * p->real_parent->pid) 8151da177e4SLinus Torvalds */ 8165eca1c10SIngo Molnar 8175eca1c10SIngo Molnar /* Real parent process: */ 8185eca1c10SIngo Molnar struct task_struct __rcu *real_parent; 8195eca1c10SIngo Molnar 8205eca1c10SIngo Molnar /* Recipient of SIGCHLD, wait4() reports: */ 8215eca1c10SIngo Molnar struct task_struct __rcu *parent; 8221da177e4SLinus Torvalds 823f470021aSRoland McGrath /* 8245eca1c10SIngo Molnar * Children/sibling form the list of natural children: 8255eca1c10SIngo Molnar */ 8265eca1c10SIngo Molnar struct list_head children; 8275eca1c10SIngo Molnar struct list_head sibling; 8285eca1c10SIngo Molnar struct task_struct *group_leader; 8295eca1c10SIngo Molnar 8305eca1c10SIngo Molnar /* 8315eca1c10SIngo Molnar * 'ptraced' is the list of tasks this task is using ptrace() on. 8325eca1c10SIngo Molnar * 833f470021aSRoland McGrath * This includes both natural children and PTRACE_ATTACH targets. 8345eca1c10SIngo Molnar * 'ptrace_entry' is this task's link on the p->parent->ptraced list. 835f470021aSRoland McGrath */ 836f470021aSRoland McGrath struct list_head ptraced; 837f470021aSRoland McGrath struct list_head ptrace_entry; 838f470021aSRoland McGrath 8391da177e4SLinus Torvalds /* PID/PID hash table linkage. */ 8402c470475SEric W. Biederman struct pid *thread_pid; 8412c470475SEric W. Biederman struct hlist_node pid_links[PIDTYPE_MAX]; 84247e65328SOleg Nesterov struct list_head thread_group; 8430c740d0aSOleg Nesterov struct list_head thread_node; 8441da177e4SLinus Torvalds 8455eca1c10SIngo Molnar struct completion *vfork_done; 8461da177e4SLinus Torvalds 8475eca1c10SIngo Molnar /* CLONE_CHILD_SETTID: */ 8485eca1c10SIngo Molnar int __user *set_child_tid; 8495eca1c10SIngo Molnar 8505eca1c10SIngo Molnar /* CLONE_CHILD_CLEARTID: */ 8515eca1c10SIngo Molnar int __user *clear_child_tid; 8525eca1c10SIngo Molnar 8535eca1c10SIngo Molnar u64 utime; 8545eca1c10SIngo Molnar u64 stime; 85540565b5aSStanislaw Gruszka #ifdef CONFIG_ARCH_HAS_SCALED_CPUTIME 8565eca1c10SIngo Molnar u64 utimescaled; 8575eca1c10SIngo Molnar u64 stimescaled; 85840565b5aSStanislaw Gruszka #endif 85916a6d9beSFrederic Weisbecker u64 gtime; 8609d7fb042SPeter Zijlstra struct prev_cputime prev_cputime; 8616a61671bSFrederic Weisbecker #ifdef CONFIG_VIRT_CPU_ACCOUNTING_GEN 862bac5b6b6SFrederic Weisbecker struct vtime vtime; 8636a61671bSFrederic Weisbecker #endif 864d027d45dSFrederic Weisbecker 865d027d45dSFrederic Weisbecker #ifdef CONFIG_NO_HZ_FULL 866f009a7a7SFrederic Weisbecker atomic_t tick_dep_mask; 867d027d45dSFrederic Weisbecker #endif 8685eca1c10SIngo Molnar /* Context switch counts: */ 8695eca1c10SIngo Molnar unsigned long nvcsw; 8705eca1c10SIngo Molnar unsigned long nivcsw; 8715eca1c10SIngo Molnar 8725eca1c10SIngo Molnar /* Monotonic time in nsecs: */ 8735eca1c10SIngo Molnar u64 start_time; 8745eca1c10SIngo Molnar 8755eca1c10SIngo Molnar /* Boot based time in nsecs: */ 876cf25e24dSPeter Zijlstra u64 start_boottime; 8775eca1c10SIngo Molnar 8785eca1c10SIngo Molnar /* MM fault and swap info: this can arguably be seen as either mm-specific or thread-specific: */ 8795eca1c10SIngo Molnar unsigned long min_flt; 8805eca1c10SIngo Molnar unsigned long maj_flt; 8811da177e4SLinus Torvalds 8822b69942fSThomas Gleixner /* Empty if CONFIG_POSIX_CPUTIMERS=n */ 8832b69942fSThomas Gleixner struct posix_cputimers posix_cputimers; 8841da177e4SLinus Torvalds 8855eca1c10SIngo Molnar /* Process credentials: */ 8865eca1c10SIngo Molnar 8875eca1c10SIngo Molnar /* Tracer's credentials at attach: */ 8885eca1c10SIngo Molnar const struct cred __rcu *ptracer_cred; 8895eca1c10SIngo Molnar 8905eca1c10SIngo Molnar /* Objective and real subjective task credentials (COW): */ 8915eca1c10SIngo Molnar const struct cred __rcu *real_cred; 8925eca1c10SIngo Molnar 8935eca1c10SIngo Molnar /* Effective (overridable) subjective task credentials (COW): */ 8945eca1c10SIngo Molnar const struct cred __rcu *cred; 8955eca1c10SIngo Molnar 8967743c48eSDavid Howells #ifdef CONFIG_KEYS 8977743c48eSDavid Howells /* Cached requested key. */ 8987743c48eSDavid Howells struct key *cached_requested_key; 8997743c48eSDavid Howells #endif 9007743c48eSDavid Howells 9015eca1c10SIngo Molnar /* 9025eca1c10SIngo Molnar * executable name, excluding path. 9035eca1c10SIngo Molnar * 9045eca1c10SIngo Molnar * - normally initialized setup_new_exec() 9055eca1c10SIngo Molnar * - access it with [gs]et_task_comm() 9065eca1c10SIngo Molnar * - lock it with task_lock() 9075eca1c10SIngo Molnar */ 9085eca1c10SIngo Molnar char comm[TASK_COMM_LEN]; 9095eca1c10SIngo Molnar 910756daf26SNeilBrown struct nameidata *nameidata; 9115eca1c10SIngo Molnar 9123d5b6fccSAlexey Dobriyan #ifdef CONFIG_SYSVIPC 9131da177e4SLinus Torvalds struct sysv_sem sysvsem; 914ab602f79SJack Miller struct sysv_shm sysvshm; 9153d5b6fccSAlexey Dobriyan #endif 916e162b39aSMandeep Singh Baines #ifdef CONFIG_DETECT_HUNG_TASK 91782a1fcb9SIngo Molnar unsigned long last_switch_count; 918a2e51445SDmitry Vyukov unsigned long last_switch_time; 91982a1fcb9SIngo Molnar #endif 9205eca1c10SIngo Molnar /* Filesystem information: */ 9211da177e4SLinus Torvalds struct fs_struct *fs; 9225eca1c10SIngo Molnar 9235eca1c10SIngo Molnar /* Open file information: */ 9241da177e4SLinus Torvalds struct files_struct *files; 9255eca1c10SIngo Molnar 9265eca1c10SIngo Molnar /* Namespaces: */ 927ab516013SSerge E. Hallyn struct nsproxy *nsproxy; 9285eca1c10SIngo Molnar 9295eca1c10SIngo Molnar /* Signal handlers: */ 9301da177e4SLinus Torvalds struct signal_struct *signal; 931913292c9SMadhuparna Bhowmik struct sighand_struct __rcu *sighand; 9325eca1c10SIngo Molnar sigset_t blocked; 9335eca1c10SIngo Molnar sigset_t real_blocked; 9345eca1c10SIngo Molnar /* Restored if set_restore_sigmask() was used: */ 9355eca1c10SIngo Molnar sigset_t saved_sigmask; 9361da177e4SLinus Torvalds struct sigpending pending; 9371da177e4SLinus Torvalds unsigned long sas_ss_sp; 9381da177e4SLinus Torvalds size_t sas_ss_size; 9395eca1c10SIngo Molnar unsigned int sas_ss_flags; 9402e01fabeSOleg Nesterov 94167d12145SAl Viro struct callback_head *task_works; 942e73f8959SOleg Nesterov 9434b7d248bSRichard Guy Briggs #ifdef CONFIG_AUDIT 944bfef93a5SAl Viro #ifdef CONFIG_AUDITSYSCALL 9455f3d544fSRichard Guy Briggs struct audit_context *audit_context; 9465f3d544fSRichard Guy Briggs #endif 947e1760bd5SEric W. Biederman kuid_t loginuid; 9484746ec5bSEric Paris unsigned int sessionid; 949bfef93a5SAl Viro #endif 950932ecebbSWill Drewry struct seccomp seccomp; 9511da177e4SLinus Torvalds 9525eca1c10SIngo Molnar /* Thread group tracking: */ 953d1e7fd64SEric W. Biederman u64 parent_exec_id; 954d1e7fd64SEric W. Biederman u64 self_exec_id; 9555eca1c10SIngo Molnar 9565eca1c10SIngo Molnar /* Protection against (de-)allocation: mm, files, fs, tty, keyrings, mems_allowed, mempolicy: */ 9571da177e4SLinus Torvalds spinlock_t alloc_lock; 9581da177e4SLinus Torvalds 959b29739f9SIngo Molnar /* Protection of the PI data structures: */ 9601d615482SThomas Gleixner raw_spinlock_t pi_lock; 961b29739f9SIngo Molnar 96276751049SPeter Zijlstra struct wake_q_node wake_q; 96376751049SPeter Zijlstra 96423f78d4aSIngo Molnar #ifdef CONFIG_RT_MUTEXES 9655eca1c10SIngo Molnar /* PI waiters blocked on a rt_mutex held by this task: */ 966a23ba907SDavidlohr Bueso struct rb_root_cached pi_waiters; 967e96a7705SXunlei Pang /* Updated under owner's pi_lock and rq lock */ 968e96a7705SXunlei Pang struct task_struct *pi_top_task; 9695eca1c10SIngo Molnar /* Deadlock detection and priority inheritance handling: */ 97023f78d4aSIngo Molnar struct rt_mutex_waiter *pi_blocked_on; 97123f78d4aSIngo Molnar #endif 97223f78d4aSIngo Molnar 973408894eeSIngo Molnar #ifdef CONFIG_DEBUG_MUTEXES 9745eca1c10SIngo Molnar /* Mutex deadlock detection: */ 975408894eeSIngo Molnar struct mutex_waiter *blocked_on; 976408894eeSIngo Molnar #endif 9775eca1c10SIngo Molnar 978312364f3SDaniel Vetter #ifdef CONFIG_DEBUG_ATOMIC_SLEEP 979312364f3SDaniel Vetter int non_block_count; 980312364f3SDaniel Vetter #endif 981312364f3SDaniel Vetter 982de30a2b3SIngo Molnar #ifdef CONFIG_TRACE_IRQFLAGS 983de30a2b3SIngo Molnar unsigned int irq_events; 984de8f5e4fSPeter Zijlstra unsigned int hardirq_threaded; 985de30a2b3SIngo Molnar unsigned long hardirq_enable_ip; 986de30a2b3SIngo Molnar unsigned long hardirq_disable_ip; 987fa1452e8SHiroshi Shimamoto unsigned int hardirq_enable_event; 988de30a2b3SIngo Molnar unsigned int hardirq_disable_event; 989fa1452e8SHiroshi Shimamoto int hardirqs_enabled; 990de30a2b3SIngo Molnar int hardirq_context; 991c86e9b98SPeter Zijlstra u64 hardirq_chain_key; 992fa1452e8SHiroshi Shimamoto unsigned long softirq_disable_ip; 993fa1452e8SHiroshi Shimamoto unsigned long softirq_enable_ip; 994fa1452e8SHiroshi Shimamoto unsigned int softirq_disable_event; 995fa1452e8SHiroshi Shimamoto unsigned int softirq_enable_event; 996fa1452e8SHiroshi Shimamoto int softirqs_enabled; 997de30a2b3SIngo Molnar int softirq_context; 99840db1739SSebastian Andrzej Siewior int irq_config; 999de30a2b3SIngo Molnar #endif 10005eca1c10SIngo Molnar 1001fbb9ce95SIngo Molnar #ifdef CONFIG_LOCKDEP 1002bdb9441eSPeter Zijlstra # define MAX_LOCK_DEPTH 48UL 1003fbb9ce95SIngo Molnar u64 curr_chain_key; 1004fbb9ce95SIngo Molnar int lockdep_depth; 1005fbb9ce95SIngo Molnar unsigned int lockdep_recursion; 1006c7aceabaSRichard Kennedy struct held_lock held_locks[MAX_LOCK_DEPTH]; 1007fbb9ce95SIngo Molnar #endif 10085eca1c10SIngo Molnar 1009c6d30853SAndrey Ryabinin #ifdef CONFIG_UBSAN 1010c6d30853SAndrey Ryabinin unsigned int in_ubsan; 1011c6d30853SAndrey Ryabinin #endif 1012408894eeSIngo Molnar 10135eca1c10SIngo Molnar /* Journalling filesystem info: */ 10141da177e4SLinus Torvalds void *journal_info; 10151da177e4SLinus Torvalds 10165eca1c10SIngo Molnar /* Stacked block device info: */ 1017bddd87c7SAkinobu Mita struct bio_list *bio_list; 1018d89d8796SNeil Brown 101973c10101SJens Axboe #ifdef CONFIG_BLOCK 10205eca1c10SIngo Molnar /* Stack plugging: */ 102173c10101SJens Axboe struct blk_plug *plug; 102273c10101SJens Axboe #endif 102373c10101SJens Axboe 10245eca1c10SIngo Molnar /* VM state: */ 10251da177e4SLinus Torvalds struct reclaim_state *reclaim_state; 10261da177e4SLinus Torvalds 10271da177e4SLinus Torvalds struct backing_dev_info *backing_dev_info; 10281da177e4SLinus Torvalds 10291da177e4SLinus Torvalds struct io_context *io_context; 10301da177e4SLinus Torvalds 10315e1f0f09SMel Gorman #ifdef CONFIG_COMPACTION 10325e1f0f09SMel Gorman struct capture_control *capture_control; 10335e1f0f09SMel Gorman #endif 10345eca1c10SIngo Molnar /* Ptrace state: */ 10351da177e4SLinus Torvalds unsigned long ptrace_message; 1036ae7795bcSEric W. Biederman kernel_siginfo_t *last_siginfo; 10375eca1c10SIngo Molnar 10387c3ab738SAndrew Morton struct task_io_accounting ioac; 1039eb414681SJohannes Weiner #ifdef CONFIG_PSI 1040eb414681SJohannes Weiner /* Pressure stall state */ 1041eb414681SJohannes Weiner unsigned int psi_flags; 1042eb414681SJohannes Weiner #endif 10435eca1c10SIngo Molnar #ifdef CONFIG_TASK_XACCT 10445eca1c10SIngo Molnar /* Accumulated RSS usage: */ 10455eca1c10SIngo Molnar u64 acct_rss_mem1; 10465eca1c10SIngo Molnar /* Accumulated virtual memory usage: */ 10475eca1c10SIngo Molnar u64 acct_vm_mem1; 10485eca1c10SIngo Molnar /* stime + utime since last update: */ 10495eca1c10SIngo Molnar u64 acct_timexpd; 10501da177e4SLinus Torvalds #endif 10511da177e4SLinus Torvalds #ifdef CONFIG_CPUSETS 10525eca1c10SIngo Molnar /* Protected by ->alloc_lock: */ 10535eca1c10SIngo Molnar nodemask_t mems_allowed; 10545eca1c10SIngo Molnar /* Seqence number to catch updates: */ 10555eca1c10SIngo Molnar seqcount_t mems_allowed_seq; 1056825a46afSPaul Jackson int cpuset_mem_spread_rotor; 10576adef3ebSJack Steiner int cpuset_slab_spread_rotor; 10581da177e4SLinus Torvalds #endif 1059ddbcc7e8SPaul Menage #ifdef CONFIG_CGROUPS 10605eca1c10SIngo Molnar /* Control Group info protected by css_set_lock: */ 10612c392b8cSArnd Bergmann struct css_set __rcu *cgroups; 10625eca1c10SIngo Molnar /* cg_list protected by css_set_lock and tsk->alloc_lock: */ 1063817929ecSPaul Menage struct list_head cg_list; 1064ddbcc7e8SPaul Menage #endif 1065e6d42931SJohannes Weiner #ifdef CONFIG_X86_CPU_RESCTRL 10660734ded1SVikas Shivappa u32 closid; 1067d6aaba61SVikas Shivappa u32 rmid; 1068e02737d5SFenghua Yu #endif 106942b2dd0aSAlexey Dobriyan #ifdef CONFIG_FUTEX 10700771dfefSIngo Molnar struct robust_list_head __user *robust_list; 107134f192c6SIngo Molnar #ifdef CONFIG_COMPAT 107234f192c6SIngo Molnar struct compat_robust_list_head __user *compat_robust_list; 107334f192c6SIngo Molnar #endif 1074c87e2837SIngo Molnar struct list_head pi_state_list; 1075c87e2837SIngo Molnar struct futex_pi_state *pi_state_cache; 10763f186d97SThomas Gleixner struct mutex futex_exit_mutex; 10773d4775dfSThomas Gleixner unsigned int futex_state; 107842b2dd0aSAlexey Dobriyan #endif 1079cdd6c482SIngo Molnar #ifdef CONFIG_PERF_EVENTS 10808dc85d54SPeter Zijlstra struct perf_event_context *perf_event_ctxp[perf_nr_task_contexts]; 1081cdd6c482SIngo Molnar struct mutex perf_event_mutex; 1082cdd6c482SIngo Molnar struct list_head perf_event_list; 1083a63eaf34SPaul Mackerras #endif 10848f47b187SThomas Gleixner #ifdef CONFIG_DEBUG_PREEMPT 10858f47b187SThomas Gleixner unsigned long preempt_disable_ip; 10868f47b187SThomas Gleixner #endif 1087c7aceabaSRichard Kennedy #ifdef CONFIG_NUMA 10885eca1c10SIngo Molnar /* Protected by alloc_lock: */ 10895eca1c10SIngo Molnar struct mempolicy *mempolicy; 109045816682SVlastimil Babka short il_prev; 1091207205a2SEric Dumazet short pref_node_fork; 1092c7aceabaSRichard Kennedy #endif 1093cbee9f88SPeter Zijlstra #ifdef CONFIG_NUMA_BALANCING 1094cbee9f88SPeter Zijlstra int numa_scan_seq; 1095cbee9f88SPeter Zijlstra unsigned int numa_scan_period; 1096598f0ec0SMel Gorman unsigned int numa_scan_period_max; 1097de1c9ce6SRik van Riel int numa_preferred_nid; 10986b9a7460SMel Gorman unsigned long numa_migrate_retry; 10995eca1c10SIngo Molnar /* Migration stamp: */ 11005eca1c10SIngo Molnar u64 node_stamp; 11017e2703e6SRik van Riel u64 last_task_numa_placement; 11027e2703e6SRik van Riel u64 last_sum_exec_runtime; 1103cbee9f88SPeter Zijlstra struct callback_head numa_work; 1104f809ca9aSMel Gorman 1105cb361d8cSJann Horn /* 1106cb361d8cSJann Horn * This pointer is only modified for current in syscall and 1107cb361d8cSJann Horn * pagefault context (and for tasks being destroyed), so it can be read 1108cb361d8cSJann Horn * from any of the following contexts: 1109cb361d8cSJann Horn * - RCU read-side critical section 1110cb361d8cSJann Horn * - current->numa_group from everywhere 1111cb361d8cSJann Horn * - task's runqueue locked, task not running 1112cb361d8cSJann Horn */ 1113cb361d8cSJann Horn struct numa_group __rcu *numa_group; 11148c8a743cSPeter Zijlstra 1115745d6147SMel Gorman /* 111644dba3d5SIulia Manda * numa_faults is an array split into four regions: 111744dba3d5SIulia Manda * faults_memory, faults_cpu, faults_memory_buffer, faults_cpu_buffer 111844dba3d5SIulia Manda * in this precise order. 111944dba3d5SIulia Manda * 112044dba3d5SIulia Manda * faults_memory: Exponential decaying average of faults on a per-node 112144dba3d5SIulia Manda * basis. Scheduling placement decisions are made based on these 112244dba3d5SIulia Manda * counts. The values remain static for the duration of a PTE scan. 112344dba3d5SIulia Manda * faults_cpu: Track the nodes the process was running on when a NUMA 112444dba3d5SIulia Manda * hinting fault was incurred. 112544dba3d5SIulia Manda * faults_memory_buffer and faults_cpu_buffer: Record faults per node 112644dba3d5SIulia Manda * during the current scan window. When the scan completes, the counts 112744dba3d5SIulia Manda * in faults_memory and faults_cpu decay and these values are copied. 1128745d6147SMel Gorman */ 112944dba3d5SIulia Manda unsigned long *numa_faults; 113083e1d2cdSMel Gorman unsigned long total_numa_faults; 1131745d6147SMel Gorman 1132745d6147SMel Gorman /* 113304bb2f94SRik van Riel * numa_faults_locality tracks if faults recorded during the last 1134074c2381SMel Gorman * scan window were remote/local or failed to migrate. The task scan 1135074c2381SMel Gorman * period is adapted based on the locality of the faults with different 1136074c2381SMel Gorman * weights depending on whether they were shared or private faults 113704bb2f94SRik van Riel */ 1138074c2381SMel Gorman unsigned long numa_faults_locality[3]; 113904bb2f94SRik van Riel 1140b32e86b4SIngo Molnar unsigned long numa_pages_migrated; 1141cbee9f88SPeter Zijlstra #endif /* CONFIG_NUMA_BALANCING */ 1142cbee9f88SPeter Zijlstra 1143d7822b1eSMathieu Desnoyers #ifdef CONFIG_RSEQ 1144d7822b1eSMathieu Desnoyers struct rseq __user *rseq; 1145d7822b1eSMathieu Desnoyers u32 rseq_sig; 1146d7822b1eSMathieu Desnoyers /* 1147d7822b1eSMathieu Desnoyers * RmW on rseq_event_mask must be performed atomically 1148d7822b1eSMathieu Desnoyers * with respect to preemption. 1149d7822b1eSMathieu Desnoyers */ 1150d7822b1eSMathieu Desnoyers unsigned long rseq_event_mask; 1151d7822b1eSMathieu Desnoyers #endif 1152d7822b1eSMathieu Desnoyers 115372b252aeSMel Gorman struct tlbflush_unmap_batch tlb_ubc; 115472b252aeSMel Gorman 11553fbd7ee2SEric W. Biederman union { 11563fbd7ee2SEric W. Biederman refcount_t rcu_users; 1157e56d0903SIngo Molnar struct rcu_head rcu; 11583fbd7ee2SEric W. Biederman }; 1159b92ce558SJens Axboe 11605eca1c10SIngo Molnar /* Cache last used pipe for splice(): */ 1161b92ce558SJens Axboe struct pipe_inode_info *splice_pipe; 11625640f768SEric Dumazet 11635640f768SEric Dumazet struct page_frag task_frag; 11645640f768SEric Dumazet 1165ca74e92bSShailabh Nagar #ifdef CONFIG_TASK_DELAY_ACCT 1166ca74e92bSShailabh Nagar struct task_delay_info *delays; 1167ca74e92bSShailabh Nagar #endif 116847913d4eSIngo Molnar 1169f4f154fdSAkinobu Mita #ifdef CONFIG_FAULT_INJECTION 1170f4f154fdSAkinobu Mita int make_it_fail; 11719049f2f6SAkinobu Mita unsigned int fail_nth; 1172f4f154fdSAkinobu Mita #endif 11739d823e8fSWu Fengguang /* 11745eca1c10SIngo Molnar * When (nr_dirtied >= nr_dirtied_pause), it's time to call 11755eca1c10SIngo Molnar * balance_dirty_pages() for a dirty throttling pause: 11769d823e8fSWu Fengguang */ 11779d823e8fSWu Fengguang int nr_dirtied; 11789d823e8fSWu Fengguang int nr_dirtied_pause; 11795eca1c10SIngo Molnar /* Start of a write-and-pause period: */ 11805eca1c10SIngo Molnar unsigned long dirty_paused_when; 11819d823e8fSWu Fengguang 11829745512cSArjan van de Ven #ifdef CONFIG_LATENCYTOP 11839745512cSArjan van de Ven int latency_record_count; 11849745512cSArjan van de Ven struct latency_record latency_record[LT_SAVECOUNT]; 11859745512cSArjan van de Ven #endif 11866976675dSArjan van de Ven /* 11875eca1c10SIngo Molnar * Time slack values; these are used to round up poll() and 11886976675dSArjan van de Ven * select() etc timeout values. These are in nanoseconds. 11896976675dSArjan van de Ven */ 1190da8b44d5SJohn Stultz u64 timer_slack_ns; 1191da8b44d5SJohn Stultz u64 default_timer_slack_ns; 1192f8d570a4SDavid Miller 11930b24beccSAndrey Ryabinin #ifdef CONFIG_KASAN 11940b24beccSAndrey Ryabinin unsigned int kasan_depth; 11950b24beccSAndrey Ryabinin #endif 1196dfd402a4SMarco Elver #ifdef CONFIG_KCSAN 1197dfd402a4SMarco Elver struct kcsan_ctx kcsan_ctx; 1198dfd402a4SMarco Elver #endif 11995eca1c10SIngo Molnar 1200fb52607aSFrederic Weisbecker #ifdef CONFIG_FUNCTION_GRAPH_TRACER 12015eca1c10SIngo Molnar /* Index of current stored address in ret_stack: */ 1202f201ae23SFrederic Weisbecker int curr_ret_stack; 120339eb456dSSteven Rostedt (VMware) int curr_ret_depth; 12045eca1c10SIngo Molnar 12055eca1c10SIngo Molnar /* Stack of return addresses for return function tracing: */ 1206f201ae23SFrederic Weisbecker struct ftrace_ret_stack *ret_stack; 12075eca1c10SIngo Molnar 12085eca1c10SIngo Molnar /* Timestamp for last schedule: */ 12098aef2d28SSteven Rostedt unsigned long long ftrace_timestamp; 12105eca1c10SIngo Molnar 1211f201ae23SFrederic Weisbecker /* 1212f201ae23SFrederic Weisbecker * Number of functions that haven't been traced 12135eca1c10SIngo Molnar * because of depth overrun: 1214f201ae23SFrederic Weisbecker */ 1215f201ae23SFrederic Weisbecker atomic_t trace_overrun; 12165eca1c10SIngo Molnar 12175eca1c10SIngo Molnar /* Pause tracing: */ 1218380c4b14SFrederic Weisbecker atomic_t tracing_graph_pause; 1219f201ae23SFrederic Weisbecker #endif 12205eca1c10SIngo Molnar 1221ea4e2bc4SSteven Rostedt #ifdef CONFIG_TRACING 12225eca1c10SIngo Molnar /* State flags for use by tracers: */ 1223ea4e2bc4SSteven Rostedt unsigned long trace; 12245eca1c10SIngo Molnar 12255eca1c10SIngo Molnar /* Bitmask and counter of trace recursion: */ 1226261842b7SSteven Rostedt unsigned long trace_recursion; 1227261842b7SSteven Rostedt #endif /* CONFIG_TRACING */ 12285eca1c10SIngo Molnar 12295c9a8750SDmitry Vyukov #ifdef CONFIG_KCOV 1230eec028c9SAndrey Konovalov /* See kernel/kcov.c for more details. */ 1231eec028c9SAndrey Konovalov 12325eca1c10SIngo Molnar /* Coverage collection mode enabled for this task (0 if disabled): */ 12330ed557aaSMark Rutland unsigned int kcov_mode; 12345eca1c10SIngo Molnar 12355eca1c10SIngo Molnar /* Size of the kcov_area: */ 12365eca1c10SIngo Molnar unsigned int kcov_size; 12375eca1c10SIngo Molnar 12385eca1c10SIngo Molnar /* Buffer for coverage collection: */ 12395c9a8750SDmitry Vyukov void *kcov_area; 12405eca1c10SIngo Molnar 12415eca1c10SIngo Molnar /* KCOV descriptor wired with this task or NULL: */ 12425c9a8750SDmitry Vyukov struct kcov *kcov; 1243eec028c9SAndrey Konovalov 1244eec028c9SAndrey Konovalov /* KCOV common handle for remote coverage collection: */ 1245eec028c9SAndrey Konovalov u64 kcov_handle; 1246eec028c9SAndrey Konovalov 1247eec028c9SAndrey Konovalov /* KCOV sequence number: */ 1248eec028c9SAndrey Konovalov int kcov_sequence; 12495ff3b30aSAndrey Konovalov 12505ff3b30aSAndrey Konovalov /* Collect coverage from softirq context: */ 12515ff3b30aSAndrey Konovalov unsigned int kcov_softirq; 12525c9a8750SDmitry Vyukov #endif 12535eca1c10SIngo Molnar 12546f185c29SVladimir Davydov #ifdef CONFIG_MEMCG 1255626ebc41STejun Heo struct mem_cgroup *memcg_in_oom; 1256626ebc41STejun Heo gfp_t memcg_oom_gfp_mask; 1257626ebc41STejun Heo int memcg_oom_order; 1258b23afb93STejun Heo 12595eca1c10SIngo Molnar /* Number of pages to reclaim on returning to userland: */ 1260b23afb93STejun Heo unsigned int memcg_nr_pages_over_high; 1261d46eb14bSShakeel Butt 1262d46eb14bSShakeel Butt /* Used by memcontrol for targeted memcg charge: */ 1263d46eb14bSShakeel Butt struct mem_cgroup *active_memcg; 1264569b846dSKAMEZAWA Hiroyuki #endif 12655eca1c10SIngo Molnar 1266d09d8df3SJosef Bacik #ifdef CONFIG_BLK_CGROUP 1267d09d8df3SJosef Bacik struct request_queue *throttle_queue; 1268d09d8df3SJosef Bacik #endif 1269d09d8df3SJosef Bacik 12700326f5a9SSrikar Dronamraju #ifdef CONFIG_UPROBES 12710326f5a9SSrikar Dronamraju struct uprobe_task *utask; 12720326f5a9SSrikar Dronamraju #endif 1273cafe5635SKent Overstreet #if defined(CONFIG_BCACHE) || defined(CONFIG_BCACHE_MODULE) 1274cafe5635SKent Overstreet unsigned int sequential_io; 1275cafe5635SKent Overstreet unsigned int sequential_io_avg; 1276cafe5635SKent Overstreet #endif 12778eb23b9fSPeter Zijlstra #ifdef CONFIG_DEBUG_ATOMIC_SLEEP 12788eb23b9fSPeter Zijlstra unsigned long task_state_change; 12798eb23b9fSPeter Zijlstra #endif 12808bcbde54SDavid Hildenbrand int pagefault_disabled; 128103049269SMichal Hocko #ifdef CONFIG_MMU 128229c696e1SVladimir Davydov struct task_struct *oom_reaper_list; 128303049269SMichal Hocko #endif 1284ba14a194SAndy Lutomirski #ifdef CONFIG_VMAP_STACK 1285ba14a194SAndy Lutomirski struct vm_struct *stack_vm_area; 1286ba14a194SAndy Lutomirski #endif 128768f24b08SAndy Lutomirski #ifdef CONFIG_THREAD_INFO_IN_TASK 12885eca1c10SIngo Molnar /* A live task holds one reference: */ 1289f0b89d39SElena Reshetova refcount_t stack_refcount; 129068f24b08SAndy Lutomirski #endif 1291d83a7cb3SJosh Poimboeuf #ifdef CONFIG_LIVEPATCH 1292d83a7cb3SJosh Poimboeuf int patch_state; 1293d83a7cb3SJosh Poimboeuf #endif 1294e4e55b47STetsuo Handa #ifdef CONFIG_SECURITY 1295e4e55b47STetsuo Handa /* Used by LSM modules for access restriction: */ 1296e4e55b47STetsuo Handa void *security; 1297e4e55b47STetsuo Handa #endif 129829e48ce8SKees Cook 1299afaef01cSAlexander Popov #ifdef CONFIG_GCC_PLUGIN_STACKLEAK 1300afaef01cSAlexander Popov unsigned long lowest_stack; 1301c8d12627SAlexander Popov unsigned long prev_lowest_stack; 1302afaef01cSAlexander Popov #endif 1303afaef01cSAlexander Popov 13045567d11cSPeter Zijlstra #ifdef CONFIG_X86_MCE 13055567d11cSPeter Zijlstra u64 mce_addr; 130617fae129STony Luck __u64 mce_ripv : 1, 130717fae129STony Luck mce_whole_page : 1, 130817fae129STony Luck __mce_reserved : 62; 13095567d11cSPeter Zijlstra struct callback_head mce_kill_me; 13105567d11cSPeter Zijlstra #endif 13115567d11cSPeter Zijlstra 131229e48ce8SKees Cook /* 131329e48ce8SKees Cook * New fields for task_struct should be added above here, so that 131429e48ce8SKees Cook * they are included in the randomized portion of task_struct. 131529e48ce8SKees Cook */ 131629e48ce8SKees Cook randomized_struct_fields_end 131729e48ce8SKees Cook 13185eca1c10SIngo Molnar /* CPU-specific state of this task: */ 13190c8c0f03SDave Hansen struct thread_struct thread; 13205eca1c10SIngo Molnar 13210c8c0f03SDave Hansen /* 13220c8c0f03SDave Hansen * WARNING: on x86, 'thread_struct' contains a variable-sized 13230c8c0f03SDave Hansen * structure. It *MUST* be at the end of 'task_struct'. 13240c8c0f03SDave Hansen * 13250c8c0f03SDave Hansen * Do not put anything below here! 13260c8c0f03SDave Hansen */ 13271da177e4SLinus Torvalds }; 13281da177e4SLinus Torvalds 1329e868171aSAlexey Dobriyan static inline struct pid *task_pid(struct task_struct *task) 133022c935f4SEric W. Biederman { 13312c470475SEric W. Biederman return task->thread_pid; 133222c935f4SEric W. Biederman } 133322c935f4SEric W. Biederman 13347af57294SPavel Emelyanov /* 13357af57294SPavel Emelyanov * the helpers to get the task's different pids as they are seen 13367af57294SPavel Emelyanov * from various namespaces 13377af57294SPavel Emelyanov * 13387af57294SPavel Emelyanov * task_xid_nr() : global id, i.e. the id seen from the init namespace; 133944c4e1b2SEric W. Biederman * task_xid_vnr() : virtual id, i.e. the id seen from the pid namespace of 134044c4e1b2SEric W. Biederman * current. 13417af57294SPavel Emelyanov * task_xid_nr_ns() : id seen from the ns specified; 13427af57294SPavel Emelyanov * 13437af57294SPavel Emelyanov * see also pid_nr() etc in include/linux/pid.h 13447af57294SPavel Emelyanov */ 13455eca1c10SIngo Molnar pid_t __task_pid_nr_ns(struct task_struct *task, enum pid_type type, struct pid_namespace *ns); 13467af57294SPavel Emelyanov 1347e868171aSAlexey Dobriyan static inline pid_t task_pid_nr(struct task_struct *tsk) 13487af57294SPavel Emelyanov { 13497af57294SPavel Emelyanov return tsk->pid; 13507af57294SPavel Emelyanov } 13517af57294SPavel Emelyanov 13525eca1c10SIngo Molnar static inline pid_t task_pid_nr_ns(struct task_struct *tsk, struct pid_namespace *ns) 135352ee2dfdSOleg Nesterov { 135452ee2dfdSOleg Nesterov return __task_pid_nr_ns(tsk, PIDTYPE_PID, ns); 135552ee2dfdSOleg Nesterov } 13567af57294SPavel Emelyanov 13577af57294SPavel Emelyanov static inline pid_t task_pid_vnr(struct task_struct *tsk) 13587af57294SPavel Emelyanov { 135952ee2dfdSOleg Nesterov return __task_pid_nr_ns(tsk, PIDTYPE_PID, NULL); 13607af57294SPavel Emelyanov } 13617af57294SPavel Emelyanov 13627af57294SPavel Emelyanov 1363e868171aSAlexey Dobriyan static inline pid_t task_tgid_nr(struct task_struct *tsk) 13647af57294SPavel Emelyanov { 13657af57294SPavel Emelyanov return tsk->tgid; 13667af57294SPavel Emelyanov } 13677af57294SPavel Emelyanov 13685eca1c10SIngo Molnar /** 13695eca1c10SIngo Molnar * pid_alive - check that a task structure is not stale 13705eca1c10SIngo Molnar * @p: Task structure to be checked. 13715eca1c10SIngo Molnar * 13725eca1c10SIngo Molnar * Test if a process is not yet dead (at most zombie state) 13735eca1c10SIngo Molnar * If pid_alive fails, then pointers within the task structure 13745eca1c10SIngo Molnar * can be stale and must not be dereferenced. 13755eca1c10SIngo Molnar * 13765eca1c10SIngo Molnar * Return: 1 if the process is alive. 0 otherwise. 13775eca1c10SIngo Molnar */ 13785eca1c10SIngo Molnar static inline int pid_alive(const struct task_struct *p) 13795eca1c10SIngo Molnar { 13802c470475SEric W. Biederman return p->thread_pid != NULL; 13815eca1c10SIngo Molnar } 13827af57294SPavel Emelyanov 13835eca1c10SIngo Molnar static inline pid_t task_pgrp_nr_ns(struct task_struct *tsk, struct pid_namespace *ns) 13847af57294SPavel Emelyanov { 138552ee2dfdSOleg Nesterov return __task_pid_nr_ns(tsk, PIDTYPE_PGID, ns); 13867af57294SPavel Emelyanov } 13877af57294SPavel Emelyanov 13887af57294SPavel Emelyanov static inline pid_t task_pgrp_vnr(struct task_struct *tsk) 13897af57294SPavel Emelyanov { 139052ee2dfdSOleg Nesterov return __task_pid_nr_ns(tsk, PIDTYPE_PGID, NULL); 13917af57294SPavel Emelyanov } 13927af57294SPavel Emelyanov 13937af57294SPavel Emelyanov 13945eca1c10SIngo Molnar static inline pid_t task_session_nr_ns(struct task_struct *tsk, struct pid_namespace *ns) 13957af57294SPavel Emelyanov { 139652ee2dfdSOleg Nesterov return __task_pid_nr_ns(tsk, PIDTYPE_SID, ns); 13977af57294SPavel Emelyanov } 13987af57294SPavel Emelyanov 13997af57294SPavel Emelyanov static inline pid_t task_session_vnr(struct task_struct *tsk) 14007af57294SPavel Emelyanov { 140152ee2dfdSOleg Nesterov return __task_pid_nr_ns(tsk, PIDTYPE_SID, NULL); 14027af57294SPavel Emelyanov } 14037af57294SPavel Emelyanov 1404dd1c1f2fSOleg Nesterov static inline pid_t task_tgid_nr_ns(struct task_struct *tsk, struct pid_namespace *ns) 1405dd1c1f2fSOleg Nesterov { 14066883f81aSEric W. Biederman return __task_pid_nr_ns(tsk, PIDTYPE_TGID, ns); 1407dd1c1f2fSOleg Nesterov } 1408dd1c1f2fSOleg Nesterov 1409dd1c1f2fSOleg Nesterov static inline pid_t task_tgid_vnr(struct task_struct *tsk) 1410dd1c1f2fSOleg Nesterov { 14116883f81aSEric W. Biederman return __task_pid_nr_ns(tsk, PIDTYPE_TGID, NULL); 1412dd1c1f2fSOleg Nesterov } 1413dd1c1f2fSOleg Nesterov 1414dd1c1f2fSOleg Nesterov static inline pid_t task_ppid_nr_ns(const struct task_struct *tsk, struct pid_namespace *ns) 1415dd1c1f2fSOleg Nesterov { 1416dd1c1f2fSOleg Nesterov pid_t pid = 0; 1417dd1c1f2fSOleg Nesterov 1418dd1c1f2fSOleg Nesterov rcu_read_lock(); 1419dd1c1f2fSOleg Nesterov if (pid_alive(tsk)) 1420dd1c1f2fSOleg Nesterov pid = task_tgid_nr_ns(rcu_dereference(tsk->real_parent), ns); 1421dd1c1f2fSOleg Nesterov rcu_read_unlock(); 1422dd1c1f2fSOleg Nesterov 1423dd1c1f2fSOleg Nesterov return pid; 1424dd1c1f2fSOleg Nesterov } 1425dd1c1f2fSOleg Nesterov 1426dd1c1f2fSOleg Nesterov static inline pid_t task_ppid_nr(const struct task_struct *tsk) 1427dd1c1f2fSOleg Nesterov { 1428dd1c1f2fSOleg Nesterov return task_ppid_nr_ns(tsk, &init_pid_ns); 1429dd1c1f2fSOleg Nesterov } 1430dd1c1f2fSOleg Nesterov 14315eca1c10SIngo Molnar /* Obsolete, do not use: */ 14321b0f7ffdSOleg Nesterov static inline pid_t task_pgrp_nr(struct task_struct *tsk) 14331b0f7ffdSOleg Nesterov { 14341b0f7ffdSOleg Nesterov return task_pgrp_nr_ns(tsk, &init_pid_ns); 14351b0f7ffdSOleg Nesterov } 14367af57294SPavel Emelyanov 143706eb6184SPeter Zijlstra #define TASK_REPORT_IDLE (TASK_REPORT + 1) 143806eb6184SPeter Zijlstra #define TASK_REPORT_MAX (TASK_REPORT_IDLE << 1) 143906eb6184SPeter Zijlstra 14401d48b080SPeter Zijlstra static inline unsigned int task_state_index(struct task_struct *tsk) 144120435d84SXie XiuQi { 14421593baabSPeter Zijlstra unsigned int tsk_state = READ_ONCE(tsk->state); 14431593baabSPeter Zijlstra unsigned int state = (tsk_state | tsk->exit_state) & TASK_REPORT; 144420435d84SXie XiuQi 144506eb6184SPeter Zijlstra BUILD_BUG_ON_NOT_POWER_OF_2(TASK_REPORT_MAX); 144606eb6184SPeter Zijlstra 144706eb6184SPeter Zijlstra if (tsk_state == TASK_IDLE) 144806eb6184SPeter Zijlstra state = TASK_REPORT_IDLE; 144906eb6184SPeter Zijlstra 14501593baabSPeter Zijlstra return fls(state); 14511593baabSPeter Zijlstra } 145220435d84SXie XiuQi 14531d48b080SPeter Zijlstra static inline char task_index_to_char(unsigned int state) 14541593baabSPeter Zijlstra { 14558ef9925bSPeter Zijlstra static const char state_char[] = "RSDTtXZPI"; 14561593baabSPeter Zijlstra 145706eb6184SPeter Zijlstra BUILD_BUG_ON(1 + ilog2(TASK_REPORT_MAX) != sizeof(state_char) - 1); 14581593baabSPeter Zijlstra 14591593baabSPeter Zijlstra return state_char[state]; 14601593baabSPeter Zijlstra } 14611593baabSPeter Zijlstra 14621593baabSPeter Zijlstra static inline char task_state_to_char(struct task_struct *tsk) 14631593baabSPeter Zijlstra { 14641d48b080SPeter Zijlstra return task_index_to_char(task_state_index(tsk)); 146520435d84SXie XiuQi } 146620435d84SXie XiuQi 14671da177e4SLinus Torvalds /** 1468570f5241SSergey Senozhatsky * is_global_init - check if a task structure is init. Since init 1469570f5241SSergey Senozhatsky * is free to have sub-threads we need to check tgid. 14703260259fSHenne * @tsk: Task structure to be checked. 14713260259fSHenne * 14723260259fSHenne * Check if a task structure is the first user space task the kernel created. 1473e69f6186SYacine Belkadi * 1474e69f6186SYacine Belkadi * Return: 1 if the task structure is init. 0 otherwise. 1475f400e198SSukadev Bhattiprolu */ 1476e868171aSAlexey Dobriyan static inline int is_global_init(struct task_struct *tsk) 1477b461cc03SPavel Emelyanov { 1478570f5241SSergey Senozhatsky return task_tgid_nr(tsk) == 1; 1479b461cc03SPavel Emelyanov } 1480b460cbc5SSerge E. Hallyn 14819ec52099SCedric Le Goater extern struct pid *cad_pid; 14829ec52099SCedric Le Goater 14831da177e4SLinus Torvalds /* 14841da177e4SLinus Torvalds * Per process flags 14851da177e4SLinus Torvalds */ 1486c1de45caSPeter Zijlstra #define PF_IDLE 0x00000002 /* I am an IDLE thread */ 14875eca1c10SIngo Molnar #define PF_EXITING 0x00000004 /* Getting shut down */ 148894886b84SLaurent Vivier #define PF_VCPU 0x00000010 /* I'm a virtual CPU */ 148921aa9af0STejun Heo #define PF_WQ_WORKER 0x00000020 /* I'm a workqueue worker */ 14905eca1c10SIngo Molnar #define PF_FORKNOEXEC 0x00000040 /* Forked but didn't exec */ 14915eca1c10SIngo Molnar #define PF_MCE_PROCESS 0x00000080 /* Process policy on mce errors */ 14925eca1c10SIngo Molnar #define PF_SUPERPRIV 0x00000100 /* Used super-user privileges */ 14935eca1c10SIngo Molnar #define PF_DUMPCORE 0x00000200 /* Dumped core */ 14945eca1c10SIngo Molnar #define PF_SIGNALED 0x00000400 /* Killed by a signal */ 14951da177e4SLinus Torvalds #define PF_MEMALLOC 0x00000800 /* Allocating memory */ 14965eca1c10SIngo Molnar #define PF_NPROC_EXCEEDED 0x00001000 /* set_user() noticed that RLIMIT_NPROC was exceeded */ 14975eca1c10SIngo Molnar #define PF_USED_MATH 0x00002000 /* If unset the fpu must be initialized before use */ 14985eca1c10SIngo Molnar #define PF_USED_ASYNC 0x00004000 /* Used async_schedule*(), used by module init */ 14995eca1c10SIngo Molnar #define PF_NOFREEZE 0x00008000 /* This thread should not be frozen */ 15005eca1c10SIngo Molnar #define PF_FROZEN 0x00010000 /* Frozen for system suspend */ 15017dea19f9SMichal Hocko #define PF_KSWAPD 0x00020000 /* I am kswapd */ 15027dea19f9SMichal Hocko #define PF_MEMALLOC_NOFS 0x00040000 /* All allocation requests will inherit GFP_NOFS */ 15037dea19f9SMichal Hocko #define PF_MEMALLOC_NOIO 0x00080000 /* All allocation requests will inherit GFP_NOIO */ 1504a37b0715SNeilBrown #define PF_LOCAL_THROTTLE 0x00100000 /* Throttle writes only against the bdi I write to, 1505a37b0715SNeilBrown * I am cleaning dirty pages from some other bdi. */ 1506246bb0b1SOleg Nesterov #define PF_KTHREAD 0x00200000 /* I am a kernel thread */ 15075eca1c10SIngo Molnar #define PF_RANDOMIZE 0x00400000 /* Randomize virtual address space */ 1508b31dc66aSJens Axboe #define PF_SWAPWRITE 0x00800000 /* Allowed to write to swap */ 150973ab1cb2STaehee Yoo #define PF_UMH 0x02000000 /* I'm an Usermodehelper process */ 15103bd37062SSebastian Andrzej Siewior #define PF_NO_SETAFFINITY 0x04000000 /* Userland is not allowed to meddle with cpus_mask */ 15114db96cf0SAndi Kleen #define PF_MCE_EARLY 0x08000000 /* Early kill for mce process policy */ 1512d7fefcc8SAneesh Kumar K.V #define PF_MEMALLOC_NOCMA 0x10000000 /* All allocation request will have _GFP_MOVABLE cleared */ 1513771b53d0SJens Axboe #define PF_IO_WORKER 0x20000000 /* Task is an IO worker */ 151458a69cb4STejun Heo #define PF_FREEZER_SKIP 0x40000000 /* Freezer should not count it as freezable */ 15155eca1c10SIngo Molnar #define PF_SUSPEND_TASK 0x80000000 /* This thread called freeze_processes() and should not be frozen */ 15161da177e4SLinus Torvalds 15171da177e4SLinus Torvalds /* 15181da177e4SLinus Torvalds * Only the _current_ task can read/write to tsk->flags, but other 15191da177e4SLinus Torvalds * tasks can access tsk->flags in readonly mode for example 15201da177e4SLinus Torvalds * with tsk_used_math (like during threaded core dumping). 15211da177e4SLinus Torvalds * There is however an exception to this rule during ptrace 15221da177e4SLinus Torvalds * or during fork: the ptracer task is allowed to write to the 15231da177e4SLinus Torvalds * child->flags of its traced child (same goes for fork, the parent 15241da177e4SLinus Torvalds * can write to the child->flags), because we're guaranteed the 15251da177e4SLinus Torvalds * child is not running and in turn not changing child->flags 15261da177e4SLinus Torvalds * at the same time the parent does it. 15271da177e4SLinus Torvalds */ 15281da177e4SLinus Torvalds #define clear_stopped_child_used_math(child) do { (child)->flags &= ~PF_USED_MATH; } while (0) 15291da177e4SLinus Torvalds #define set_stopped_child_used_math(child) do { (child)->flags |= PF_USED_MATH; } while (0) 15301da177e4SLinus Torvalds #define clear_used_math() clear_stopped_child_used_math(current) 15311da177e4SLinus Torvalds #define set_used_math() set_stopped_child_used_math(current) 15325eca1c10SIngo Molnar 15331da177e4SLinus Torvalds #define conditional_stopped_child_used_math(condition, child) \ 15341da177e4SLinus Torvalds do { (child)->flags &= ~PF_USED_MATH, (child)->flags |= (condition) ? PF_USED_MATH : 0; } while (0) 15355eca1c10SIngo Molnar 15365eca1c10SIngo Molnar #define conditional_used_math(condition) conditional_stopped_child_used_math(condition, current) 15375eca1c10SIngo Molnar 15381da177e4SLinus Torvalds #define copy_to_stopped_child_used_math(child) \ 15391da177e4SLinus Torvalds do { (child)->flags &= ~PF_USED_MATH, (child)->flags |= current->flags & PF_USED_MATH; } while (0) 15405eca1c10SIngo Molnar 15411da177e4SLinus Torvalds /* NOTE: this will return 0 or PF_USED_MATH, it will never return 1 */ 15421da177e4SLinus Torvalds #define tsk_used_math(p) ((p)->flags & PF_USED_MATH) 15431da177e4SLinus Torvalds #define used_math() tsk_used_math(current) 15441da177e4SLinus Torvalds 154562ec05ddSThomas Gleixner static inline bool is_percpu_thread(void) 154662ec05ddSThomas Gleixner { 154762ec05ddSThomas Gleixner #ifdef CONFIG_SMP 154862ec05ddSThomas Gleixner return (current->flags & PF_NO_SETAFFINITY) && 154962ec05ddSThomas Gleixner (current->nr_cpus_allowed == 1); 155062ec05ddSThomas Gleixner #else 155162ec05ddSThomas Gleixner return true; 155262ec05ddSThomas Gleixner #endif 155362ec05ddSThomas Gleixner } 155462ec05ddSThomas Gleixner 15551d4457f9SKees Cook /* Per-process atomic flags. */ 1556a2b86f77SZefan Li #define PFA_NO_NEW_PRIVS 0 /* May not gain new privileges. */ 15572ad654bcSZefan Li #define PFA_SPREAD_PAGE 1 /* Spread page cache over cpuset */ 15582ad654bcSZefan Li #define PFA_SPREAD_SLAB 2 /* Spread some slab caches over cpuset */ 1559356e4bffSThomas Gleixner #define PFA_SPEC_SSB_DISABLE 3 /* Speculative Store Bypass disabled */ 1560356e4bffSThomas Gleixner #define PFA_SPEC_SSB_FORCE_DISABLE 4 /* Speculative Store Bypass force disabled*/ 15619137bb27SThomas Gleixner #define PFA_SPEC_IB_DISABLE 5 /* Indirect branch speculation restricted */ 15629137bb27SThomas Gleixner #define PFA_SPEC_IB_FORCE_DISABLE 6 /* Indirect branch speculation permanently restricted */ 156371368af9SWaiman Long #define PFA_SPEC_SSB_NOEXEC 7 /* Speculative Store Bypass clear on execve() */ 15641d4457f9SKees Cook 1565e0e5070bSZefan Li #define TASK_PFA_TEST(name, func) \ 1566e0e5070bSZefan Li static inline bool task_##func(struct task_struct *p) \ 1567e0e5070bSZefan Li { return test_bit(PFA_##name, &p->atomic_flags); } 15685eca1c10SIngo Molnar 1569e0e5070bSZefan Li #define TASK_PFA_SET(name, func) \ 1570e0e5070bSZefan Li static inline void task_set_##func(struct task_struct *p) \ 1571e0e5070bSZefan Li { set_bit(PFA_##name, &p->atomic_flags); } 15725eca1c10SIngo Molnar 1573e0e5070bSZefan Li #define TASK_PFA_CLEAR(name, func) \ 1574e0e5070bSZefan Li static inline void task_clear_##func(struct task_struct *p) \ 1575e0e5070bSZefan Li { clear_bit(PFA_##name, &p->atomic_flags); } 15761d4457f9SKees Cook 1577e0e5070bSZefan Li TASK_PFA_TEST(NO_NEW_PRIVS, no_new_privs) 1578e0e5070bSZefan Li TASK_PFA_SET(NO_NEW_PRIVS, no_new_privs) 15791d4457f9SKees Cook 15802ad654bcSZefan Li TASK_PFA_TEST(SPREAD_PAGE, spread_page) 15812ad654bcSZefan Li TASK_PFA_SET(SPREAD_PAGE, spread_page) 15822ad654bcSZefan Li TASK_PFA_CLEAR(SPREAD_PAGE, spread_page) 15832ad654bcSZefan Li 15842ad654bcSZefan Li TASK_PFA_TEST(SPREAD_SLAB, spread_slab) 15852ad654bcSZefan Li TASK_PFA_SET(SPREAD_SLAB, spread_slab) 15862ad654bcSZefan Li TASK_PFA_CLEAR(SPREAD_SLAB, spread_slab) 1587544b2c91STejun Heo 1588356e4bffSThomas Gleixner TASK_PFA_TEST(SPEC_SSB_DISABLE, spec_ssb_disable) 1589356e4bffSThomas Gleixner TASK_PFA_SET(SPEC_SSB_DISABLE, spec_ssb_disable) 1590356e4bffSThomas Gleixner TASK_PFA_CLEAR(SPEC_SSB_DISABLE, spec_ssb_disable) 1591356e4bffSThomas Gleixner 159271368af9SWaiman Long TASK_PFA_TEST(SPEC_SSB_NOEXEC, spec_ssb_noexec) 159371368af9SWaiman Long TASK_PFA_SET(SPEC_SSB_NOEXEC, spec_ssb_noexec) 159471368af9SWaiman Long TASK_PFA_CLEAR(SPEC_SSB_NOEXEC, spec_ssb_noexec) 159571368af9SWaiman Long 1596356e4bffSThomas Gleixner TASK_PFA_TEST(SPEC_SSB_FORCE_DISABLE, spec_ssb_force_disable) 1597356e4bffSThomas Gleixner TASK_PFA_SET(SPEC_SSB_FORCE_DISABLE, spec_ssb_force_disable) 1598356e4bffSThomas Gleixner 15999137bb27SThomas Gleixner TASK_PFA_TEST(SPEC_IB_DISABLE, spec_ib_disable) 16009137bb27SThomas Gleixner TASK_PFA_SET(SPEC_IB_DISABLE, spec_ib_disable) 16019137bb27SThomas Gleixner TASK_PFA_CLEAR(SPEC_IB_DISABLE, spec_ib_disable) 16029137bb27SThomas Gleixner 16039137bb27SThomas Gleixner TASK_PFA_TEST(SPEC_IB_FORCE_DISABLE, spec_ib_force_disable) 16049137bb27SThomas Gleixner TASK_PFA_SET(SPEC_IB_FORCE_DISABLE, spec_ib_force_disable) 16059137bb27SThomas Gleixner 16065eca1c10SIngo Molnar static inline void 1607717a94b5SNeilBrown current_restore_flags(unsigned long orig_flags, unsigned long flags) 1608907aed48SMel Gorman { 1609717a94b5SNeilBrown current->flags &= ~flags; 1610717a94b5SNeilBrown current->flags |= orig_flags & flags; 1611907aed48SMel Gorman } 1612907aed48SMel Gorman 16135eca1c10SIngo Molnar extern int cpuset_cpumask_can_shrink(const struct cpumask *cur, const struct cpumask *trial); 16145eca1c10SIngo Molnar extern int task_can_attach(struct task_struct *p, const struct cpumask *cs_cpus_allowed); 16151da177e4SLinus Torvalds #ifdef CONFIG_SMP 16165eca1c10SIngo Molnar extern void do_set_cpus_allowed(struct task_struct *p, const struct cpumask *new_mask); 16175eca1c10SIngo Molnar extern int set_cpus_allowed_ptr(struct task_struct *p, const struct cpumask *new_mask); 16181da177e4SLinus Torvalds #else 16195eca1c10SIngo Molnar static inline void do_set_cpus_allowed(struct task_struct *p, const struct cpumask *new_mask) 16201e1b6c51SKOSAKI Motohiro { 16211e1b6c51SKOSAKI Motohiro } 16225eca1c10SIngo Molnar static inline int set_cpus_allowed_ptr(struct task_struct *p, const struct cpumask *new_mask) 16231da177e4SLinus Torvalds { 162496f874e2SRusty Russell if (!cpumask_test_cpu(0, new_mask)) 16251da177e4SLinus Torvalds return -EINVAL; 16261da177e4SLinus Torvalds return 0; 16271da177e4SLinus Torvalds } 16281da177e4SLinus Torvalds #endif 1629e0ad9556SRusty Russell 1630fa93384fSDan Carpenter extern int yield_to(struct task_struct *p, bool preempt); 163136c8b586SIngo Molnar extern void set_user_nice(struct task_struct *p, long nice); 163236c8b586SIngo Molnar extern int task_prio(const struct task_struct *p); 16335eca1c10SIngo Molnar 1634d0ea0268SDongsheng Yang /** 1635d0ea0268SDongsheng Yang * task_nice - return the nice value of a given task. 1636d0ea0268SDongsheng Yang * @p: the task in question. 1637d0ea0268SDongsheng Yang * 1638d0ea0268SDongsheng Yang * Return: The nice value [ -20 ... 0 ... 19 ]. 1639d0ea0268SDongsheng Yang */ 1640d0ea0268SDongsheng Yang static inline int task_nice(const struct task_struct *p) 1641d0ea0268SDongsheng Yang { 1642d0ea0268SDongsheng Yang return PRIO_TO_NICE((p)->static_prio); 1643d0ea0268SDongsheng Yang } 16445eca1c10SIngo Molnar 164536c8b586SIngo Molnar extern int can_nice(const struct task_struct *p, const int nice); 164636c8b586SIngo Molnar extern int task_curr(const struct task_struct *p); 16471da177e4SLinus Torvalds extern int idle_cpu(int cpu); 1648943d355dSRohit Jain extern int available_idle_cpu(int cpu); 16495eca1c10SIngo Molnar extern int sched_setscheduler(struct task_struct *, int, const struct sched_param *); 16505eca1c10SIngo Molnar extern int sched_setscheduler_nocheck(struct task_struct *, int, const struct sched_param *); 16515eca1c10SIngo Molnar extern int sched_setattr(struct task_struct *, const struct sched_attr *); 1652794a56ebSJuri Lelli extern int sched_setattr_nocheck(struct task_struct *, const struct sched_attr *); 165336c8b586SIngo Molnar extern struct task_struct *idle_task(int cpu); 16545eca1c10SIngo Molnar 1655c4f30608SPaul E. McKenney /** 1656c4f30608SPaul E. McKenney * is_idle_task - is the specified task an idle task? 1657fa757281SRandy Dunlap * @p: the task in question. 1658e69f6186SYacine Belkadi * 1659e69f6186SYacine Belkadi * Return: 1 if @p is an idle task. 0 otherwise. 1660c4f30608SPaul E. McKenney */ 16617061ca3bSPaul E. McKenney static inline bool is_idle_task(const struct task_struct *p) 1662c4f30608SPaul E. McKenney { 1663c1de45caSPeter Zijlstra return !!(p->flags & PF_IDLE); 1664c4f30608SPaul E. McKenney } 16655eca1c10SIngo Molnar 166636c8b586SIngo Molnar extern struct task_struct *curr_task(int cpu); 1667a458ae2eSPeter Zijlstra extern void ia64_set_curr_task(int cpu, struct task_struct *p); 16681da177e4SLinus Torvalds 16691da177e4SLinus Torvalds void yield(void); 16701da177e4SLinus Torvalds 16711da177e4SLinus Torvalds union thread_union { 16720500871fSDavid Howells #ifndef CONFIG_ARCH_TASK_STRUCT_ON_STACK 16730500871fSDavid Howells struct task_struct task; 16740500871fSDavid Howells #endif 1675c65eacbeSAndy Lutomirski #ifndef CONFIG_THREAD_INFO_IN_TASK 16761da177e4SLinus Torvalds struct thread_info thread_info; 1677c65eacbeSAndy Lutomirski #endif 16781da177e4SLinus Torvalds unsigned long stack[THREAD_SIZE/sizeof(long)]; 16791da177e4SLinus Torvalds }; 16801da177e4SLinus Torvalds 16810500871fSDavid Howells #ifndef CONFIG_THREAD_INFO_IN_TASK 16820500871fSDavid Howells extern struct thread_info init_thread_info; 16830500871fSDavid Howells #endif 16840500871fSDavid Howells 16850500871fSDavid Howells extern unsigned long init_stack[THREAD_SIZE / sizeof(unsigned long)]; 16860500871fSDavid Howells 1687f3ac6067SIngo Molnar #ifdef CONFIG_THREAD_INFO_IN_TASK 1688f3ac6067SIngo Molnar static inline struct thread_info *task_thread_info(struct task_struct *task) 1689f3ac6067SIngo Molnar { 1690f3ac6067SIngo Molnar return &task->thread_info; 1691f3ac6067SIngo Molnar } 1692f3ac6067SIngo Molnar #elif !defined(__HAVE_THREAD_FUNCTIONS) 1693f3ac6067SIngo Molnar # define task_thread_info(task) ((struct thread_info *)(task)->stack) 1694f3ac6067SIngo Molnar #endif 1695f3ac6067SIngo Molnar 1696198fe21bSPavel Emelyanov /* 1697198fe21bSPavel Emelyanov * find a task by one of its numerical ids 1698198fe21bSPavel Emelyanov * 1699198fe21bSPavel Emelyanov * find_task_by_pid_ns(): 1700198fe21bSPavel Emelyanov * finds a task by its pid in the specified namespace 1701228ebcbeSPavel Emelyanov * find_task_by_vpid(): 1702228ebcbeSPavel Emelyanov * finds a task by its virtual pid 1703198fe21bSPavel Emelyanov * 1704e49859e7SPavel Emelyanov * see also find_vpid() etc in include/linux/pid.h 1705198fe21bSPavel Emelyanov */ 1706198fe21bSPavel Emelyanov 1707228ebcbeSPavel Emelyanov extern struct task_struct *find_task_by_vpid(pid_t nr); 17085eca1c10SIngo Molnar extern struct task_struct *find_task_by_pid_ns(pid_t nr, struct pid_namespace *ns); 1709198fe21bSPavel Emelyanov 17102ee08260SMike Rapoport /* 17112ee08260SMike Rapoport * find a task by its virtual pid and get the task struct 17122ee08260SMike Rapoport */ 17132ee08260SMike Rapoport extern struct task_struct *find_get_task_by_vpid(pid_t nr); 17142ee08260SMike Rapoport 1715b3c97528SHarvey Harrison extern int wake_up_state(struct task_struct *tsk, unsigned int state); 1716b3c97528SHarvey Harrison extern int wake_up_process(struct task_struct *tsk); 17173e51e3edSSamir Bellabes extern void wake_up_new_task(struct task_struct *tsk); 17185eca1c10SIngo Molnar 17191da177e4SLinus Torvalds #ifdef CONFIG_SMP 17201da177e4SLinus Torvalds extern void kick_process(struct task_struct *tsk); 17211da177e4SLinus Torvalds #else 17221da177e4SLinus Torvalds static inline void kick_process(struct task_struct *tsk) { } 17231da177e4SLinus Torvalds #endif 17241da177e4SLinus Torvalds 172582b89778SAdrian Hunter extern void __set_task_comm(struct task_struct *tsk, const char *from, bool exec); 17265eca1c10SIngo Molnar 172782b89778SAdrian Hunter static inline void set_task_comm(struct task_struct *tsk, const char *from) 172882b89778SAdrian Hunter { 172982b89778SAdrian Hunter __set_task_comm(tsk, from, false); 173082b89778SAdrian Hunter } 17315eca1c10SIngo Molnar 17323756f640SArnd Bergmann extern char *__get_task_comm(char *to, size_t len, struct task_struct *tsk); 17333756f640SArnd Bergmann #define get_task_comm(buf, tsk) ({ \ 17343756f640SArnd Bergmann BUILD_BUG_ON(sizeof(buf) != TASK_COMM_LEN); \ 17353756f640SArnd Bergmann __get_task_comm(buf, sizeof(buf), tsk); \ 17363756f640SArnd Bergmann }) 17371da177e4SLinus Torvalds 17381da177e4SLinus Torvalds #ifdef CONFIG_SMP 17392a0a24ebSThomas Gleixner static __always_inline void scheduler_ipi(void) 17402a0a24ebSThomas Gleixner { 17412a0a24ebSThomas Gleixner /* 17422a0a24ebSThomas Gleixner * Fold TIF_NEED_RESCHED into the preempt_count; anybody setting 17432a0a24ebSThomas Gleixner * TIF_NEED_RESCHED remotely (for the first time) will also send 17442a0a24ebSThomas Gleixner * this IPI. 17452a0a24ebSThomas Gleixner */ 17462a0a24ebSThomas Gleixner preempt_fold_need_resched(); 17472a0a24ebSThomas Gleixner } 174885ba2d86SRoland McGrath extern unsigned long wait_task_inactive(struct task_struct *, long match_state); 17491da177e4SLinus Torvalds #else 1750184748ccSPeter Zijlstra static inline void scheduler_ipi(void) { } 17515eca1c10SIngo Molnar static inline unsigned long wait_task_inactive(struct task_struct *p, long match_state) 175285ba2d86SRoland McGrath { 175385ba2d86SRoland McGrath return 1; 175485ba2d86SRoland McGrath } 17551da177e4SLinus Torvalds #endif 17561da177e4SLinus Torvalds 17575eca1c10SIngo Molnar /* 17585eca1c10SIngo Molnar * Set thread flags in other task's structures. 17595eca1c10SIngo Molnar * See asm/thread_info.h for TIF_xxxx flags available: 17601da177e4SLinus Torvalds */ 17611da177e4SLinus Torvalds static inline void set_tsk_thread_flag(struct task_struct *tsk, int flag) 17621da177e4SLinus Torvalds { 1763a1261f54SAl Viro set_ti_thread_flag(task_thread_info(tsk), flag); 17641da177e4SLinus Torvalds } 17651da177e4SLinus Torvalds 17661da177e4SLinus Torvalds static inline void clear_tsk_thread_flag(struct task_struct *tsk, int flag) 17671da177e4SLinus Torvalds { 1768a1261f54SAl Viro clear_ti_thread_flag(task_thread_info(tsk), flag); 17691da177e4SLinus Torvalds } 17701da177e4SLinus Torvalds 177193ee37c2SDave Martin static inline void update_tsk_thread_flag(struct task_struct *tsk, int flag, 177293ee37c2SDave Martin bool value) 177393ee37c2SDave Martin { 177493ee37c2SDave Martin update_ti_thread_flag(task_thread_info(tsk), flag, value); 177593ee37c2SDave Martin } 177693ee37c2SDave Martin 17771da177e4SLinus Torvalds static inline int test_and_set_tsk_thread_flag(struct task_struct *tsk, int flag) 17781da177e4SLinus Torvalds { 1779a1261f54SAl Viro return test_and_set_ti_thread_flag(task_thread_info(tsk), flag); 17801da177e4SLinus Torvalds } 17811da177e4SLinus Torvalds 17821da177e4SLinus Torvalds static inline int test_and_clear_tsk_thread_flag(struct task_struct *tsk, int flag) 17831da177e4SLinus Torvalds { 1784a1261f54SAl Viro return test_and_clear_ti_thread_flag(task_thread_info(tsk), flag); 17851da177e4SLinus Torvalds } 17861da177e4SLinus Torvalds 17871da177e4SLinus Torvalds static inline int test_tsk_thread_flag(struct task_struct *tsk, int flag) 17881da177e4SLinus Torvalds { 1789a1261f54SAl Viro return test_ti_thread_flag(task_thread_info(tsk), flag); 17901da177e4SLinus Torvalds } 17911da177e4SLinus Torvalds 17921da177e4SLinus Torvalds static inline void set_tsk_need_resched(struct task_struct *tsk) 17931da177e4SLinus Torvalds { 17941da177e4SLinus Torvalds set_tsk_thread_flag(tsk,TIF_NEED_RESCHED); 17951da177e4SLinus Torvalds } 17961da177e4SLinus Torvalds 17971da177e4SLinus Torvalds static inline void clear_tsk_need_resched(struct task_struct *tsk) 17981da177e4SLinus Torvalds { 17991da177e4SLinus Torvalds clear_tsk_thread_flag(tsk,TIF_NEED_RESCHED); 18001da177e4SLinus Torvalds } 18011da177e4SLinus Torvalds 18028ae121acSGregory Haskins static inline int test_tsk_need_resched(struct task_struct *tsk) 18038ae121acSGregory Haskins { 18048ae121acSGregory Haskins return unlikely(test_tsk_thread_flag(tsk,TIF_NEED_RESCHED)); 18058ae121acSGregory Haskins } 18068ae121acSGregory Haskins 18071da177e4SLinus Torvalds /* 18081da177e4SLinus Torvalds * cond_resched() and cond_resched_lock(): latency reduction via 18091da177e4SLinus Torvalds * explicit rescheduling in places that are safe. The return 18101da177e4SLinus Torvalds * value indicates whether a reschedule was done in fact. 18111da177e4SLinus Torvalds * cond_resched_lock() will drop the spinlock before scheduling, 18121da177e4SLinus Torvalds */ 1813c1a280b6SThomas Gleixner #ifndef CONFIG_PREEMPTION 1814c3921ab7SLinus Torvalds extern int _cond_resched(void); 181535a773a0SPeter Zijlstra #else 181635a773a0SPeter Zijlstra static inline int _cond_resched(void) { return 0; } 181735a773a0SPeter Zijlstra #endif 18186f80bd98SFrederic Weisbecker 1819613afbf8SFrederic Weisbecker #define cond_resched() ({ \ 18203427445aSPeter Zijlstra ___might_sleep(__FILE__, __LINE__, 0); \ 1821613afbf8SFrederic Weisbecker _cond_resched(); \ 1822613afbf8SFrederic Weisbecker }) 18236f80bd98SFrederic Weisbecker 1824613afbf8SFrederic Weisbecker extern int __cond_resched_lock(spinlock_t *lock); 1825613afbf8SFrederic Weisbecker 1826613afbf8SFrederic Weisbecker #define cond_resched_lock(lock) ({ \ 18273427445aSPeter Zijlstra ___might_sleep(__FILE__, __LINE__, PREEMPT_LOCK_OFFSET);\ 1828613afbf8SFrederic Weisbecker __cond_resched_lock(lock); \ 1829613afbf8SFrederic Weisbecker }) 1830613afbf8SFrederic Weisbecker 1831f6f3c437SSimon Horman static inline void cond_resched_rcu(void) 1832f6f3c437SSimon Horman { 1833f6f3c437SSimon Horman #if defined(CONFIG_DEBUG_ATOMIC_SLEEP) || !defined(CONFIG_PREEMPT_RCU) 1834f6f3c437SSimon Horman rcu_read_unlock(); 1835f6f3c437SSimon Horman cond_resched(); 1836f6f3c437SSimon Horman rcu_read_lock(); 1837f6f3c437SSimon Horman #endif 1838f6f3c437SSimon Horman } 1839f6f3c437SSimon Horman 18401da177e4SLinus Torvalds /* 18411da177e4SLinus Torvalds * Does a critical section need to be broken due to another 1842c1a280b6SThomas Gleixner * task waiting?: (technically does not depend on CONFIG_PREEMPTION, 184395c354feSNick Piggin * but a general need for low latency) 18441da177e4SLinus Torvalds */ 184595c354feSNick Piggin static inline int spin_needbreak(spinlock_t *lock) 18461da177e4SLinus Torvalds { 1847c1a280b6SThomas Gleixner #ifdef CONFIG_PREEMPTION 184895c354feSNick Piggin return spin_is_contended(lock); 184995c354feSNick Piggin #else 18501da177e4SLinus Torvalds return 0; 185195c354feSNick Piggin #endif 18521da177e4SLinus Torvalds } 18531da177e4SLinus Torvalds 185475f93fedSPeter Zijlstra static __always_inline bool need_resched(void) 185575f93fedSPeter Zijlstra { 185675f93fedSPeter Zijlstra return unlikely(tif_need_resched()); 185775f93fedSPeter Zijlstra } 185875f93fedSPeter Zijlstra 1859ee761f62SThomas Gleixner /* 18601da177e4SLinus Torvalds * Wrappers for p->thread_info->cpu access. No-op on UP. 18611da177e4SLinus Torvalds */ 18621da177e4SLinus Torvalds #ifdef CONFIG_SMP 18631da177e4SLinus Torvalds 18641da177e4SLinus Torvalds static inline unsigned int task_cpu(const struct task_struct *p) 18651da177e4SLinus Torvalds { 1866c65eacbeSAndy Lutomirski #ifdef CONFIG_THREAD_INFO_IN_TASK 1867c546951dSAndrea Parri return READ_ONCE(p->cpu); 1868c65eacbeSAndy Lutomirski #else 1869c546951dSAndrea Parri return READ_ONCE(task_thread_info(p)->cpu); 1870c65eacbeSAndy Lutomirski #endif 18711da177e4SLinus Torvalds } 18721da177e4SLinus Torvalds 1873c65cc870SIngo Molnar extern void set_task_cpu(struct task_struct *p, unsigned int cpu); 18741da177e4SLinus Torvalds 18751da177e4SLinus Torvalds #else 18761da177e4SLinus Torvalds 18771da177e4SLinus Torvalds static inline unsigned int task_cpu(const struct task_struct *p) 18781da177e4SLinus Torvalds { 18791da177e4SLinus Torvalds return 0; 18801da177e4SLinus Torvalds } 18811da177e4SLinus Torvalds 18821da177e4SLinus Torvalds static inline void set_task_cpu(struct task_struct *p, unsigned int cpu) 18831da177e4SLinus Torvalds { 18841da177e4SLinus Torvalds } 18851da177e4SLinus Torvalds 18861da177e4SLinus Torvalds #endif /* CONFIG_SMP */ 18871da177e4SLinus Torvalds 1888d9345c65SPan Xinhui /* 1889d9345c65SPan Xinhui * In order to reduce various lock holder preemption latencies provide an 1890d9345c65SPan Xinhui * interface to see if a vCPU is currently running or not. 1891d9345c65SPan Xinhui * 1892d9345c65SPan Xinhui * This allows us to terminate optimistic spin loops and block, analogous to 1893d9345c65SPan Xinhui * the native optimistic spin heuristic of testing if the lock owner task is 1894d9345c65SPan Xinhui * running or not. 1895d9345c65SPan Xinhui */ 1896d9345c65SPan Xinhui #ifndef vcpu_is_preempted 189742fd8baaSQian Cai static inline bool vcpu_is_preempted(int cpu) 189842fd8baaSQian Cai { 189942fd8baaSQian Cai return false; 190042fd8baaSQian Cai } 1901d9345c65SPan Xinhui #endif 1902d9345c65SPan Xinhui 190396f874e2SRusty Russell extern long sched_setaffinity(pid_t pid, const struct cpumask *new_mask); 190496f874e2SRusty Russell extern long sched_getaffinity(pid_t pid, struct cpumask *mask); 19055c45bf27SSiddha, Suresh B 190682455257SDave Hansen #ifndef TASK_SIZE_OF 190782455257SDave Hansen #define TASK_SIZE_OF(tsk) TASK_SIZE 190882455257SDave Hansen #endif 190982455257SDave Hansen 1910d7822b1eSMathieu Desnoyers #ifdef CONFIG_RSEQ 1911d7822b1eSMathieu Desnoyers 1912d7822b1eSMathieu Desnoyers /* 1913d7822b1eSMathieu Desnoyers * Map the event mask on the user-space ABI enum rseq_cs_flags 1914d7822b1eSMathieu Desnoyers * for direct mask checks. 1915d7822b1eSMathieu Desnoyers */ 1916d7822b1eSMathieu Desnoyers enum rseq_event_mask_bits { 1917d7822b1eSMathieu Desnoyers RSEQ_EVENT_PREEMPT_BIT = RSEQ_CS_FLAG_NO_RESTART_ON_PREEMPT_BIT, 1918d7822b1eSMathieu Desnoyers RSEQ_EVENT_SIGNAL_BIT = RSEQ_CS_FLAG_NO_RESTART_ON_SIGNAL_BIT, 1919d7822b1eSMathieu Desnoyers RSEQ_EVENT_MIGRATE_BIT = RSEQ_CS_FLAG_NO_RESTART_ON_MIGRATE_BIT, 1920d7822b1eSMathieu Desnoyers }; 1921d7822b1eSMathieu Desnoyers 1922d7822b1eSMathieu Desnoyers enum rseq_event_mask { 1923d7822b1eSMathieu Desnoyers RSEQ_EVENT_PREEMPT = (1U << RSEQ_EVENT_PREEMPT_BIT), 1924d7822b1eSMathieu Desnoyers RSEQ_EVENT_SIGNAL = (1U << RSEQ_EVENT_SIGNAL_BIT), 1925d7822b1eSMathieu Desnoyers RSEQ_EVENT_MIGRATE = (1U << RSEQ_EVENT_MIGRATE_BIT), 1926d7822b1eSMathieu Desnoyers }; 1927d7822b1eSMathieu Desnoyers 1928d7822b1eSMathieu Desnoyers static inline void rseq_set_notify_resume(struct task_struct *t) 1929d7822b1eSMathieu Desnoyers { 1930d7822b1eSMathieu Desnoyers if (t->rseq) 1931d7822b1eSMathieu Desnoyers set_tsk_thread_flag(t, TIF_NOTIFY_RESUME); 1932d7822b1eSMathieu Desnoyers } 1933d7822b1eSMathieu Desnoyers 1934784e0300SWill Deacon void __rseq_handle_notify_resume(struct ksignal *sig, struct pt_regs *regs); 1935d7822b1eSMathieu Desnoyers 1936784e0300SWill Deacon static inline void rseq_handle_notify_resume(struct ksignal *ksig, 1937784e0300SWill Deacon struct pt_regs *regs) 1938d7822b1eSMathieu Desnoyers { 1939d7822b1eSMathieu Desnoyers if (current->rseq) 1940784e0300SWill Deacon __rseq_handle_notify_resume(ksig, regs); 1941d7822b1eSMathieu Desnoyers } 1942d7822b1eSMathieu Desnoyers 1943784e0300SWill Deacon static inline void rseq_signal_deliver(struct ksignal *ksig, 1944784e0300SWill Deacon struct pt_regs *regs) 1945d7822b1eSMathieu Desnoyers { 1946d7822b1eSMathieu Desnoyers preempt_disable(); 1947d7822b1eSMathieu Desnoyers __set_bit(RSEQ_EVENT_SIGNAL_BIT, ¤t->rseq_event_mask); 1948d7822b1eSMathieu Desnoyers preempt_enable(); 1949784e0300SWill Deacon rseq_handle_notify_resume(ksig, regs); 1950d7822b1eSMathieu Desnoyers } 1951d7822b1eSMathieu Desnoyers 1952d7822b1eSMathieu Desnoyers /* rseq_preempt() requires preemption to be disabled. */ 1953d7822b1eSMathieu Desnoyers static inline void rseq_preempt(struct task_struct *t) 1954d7822b1eSMathieu Desnoyers { 1955d7822b1eSMathieu Desnoyers __set_bit(RSEQ_EVENT_PREEMPT_BIT, &t->rseq_event_mask); 1956d7822b1eSMathieu Desnoyers rseq_set_notify_resume(t); 1957d7822b1eSMathieu Desnoyers } 1958d7822b1eSMathieu Desnoyers 1959d7822b1eSMathieu Desnoyers /* rseq_migrate() requires preemption to be disabled. */ 1960d7822b1eSMathieu Desnoyers static inline void rseq_migrate(struct task_struct *t) 1961d7822b1eSMathieu Desnoyers { 1962d7822b1eSMathieu Desnoyers __set_bit(RSEQ_EVENT_MIGRATE_BIT, &t->rseq_event_mask); 1963d7822b1eSMathieu Desnoyers rseq_set_notify_resume(t); 1964d7822b1eSMathieu Desnoyers } 1965d7822b1eSMathieu Desnoyers 1966d7822b1eSMathieu Desnoyers /* 1967d7822b1eSMathieu Desnoyers * If parent process has a registered restartable sequences area, the 1968463f550fSMathieu Desnoyers * child inherits. Unregister rseq for a clone with CLONE_VM set. 1969d7822b1eSMathieu Desnoyers */ 1970d7822b1eSMathieu Desnoyers static inline void rseq_fork(struct task_struct *t, unsigned long clone_flags) 1971d7822b1eSMathieu Desnoyers { 1972463f550fSMathieu Desnoyers if (clone_flags & CLONE_VM) { 1973d7822b1eSMathieu Desnoyers t->rseq = NULL; 1974d7822b1eSMathieu Desnoyers t->rseq_sig = 0; 1975d7822b1eSMathieu Desnoyers t->rseq_event_mask = 0; 1976d7822b1eSMathieu Desnoyers } else { 1977d7822b1eSMathieu Desnoyers t->rseq = current->rseq; 1978d7822b1eSMathieu Desnoyers t->rseq_sig = current->rseq_sig; 1979d7822b1eSMathieu Desnoyers t->rseq_event_mask = current->rseq_event_mask; 1980d7822b1eSMathieu Desnoyers } 1981d7822b1eSMathieu Desnoyers } 1982d7822b1eSMathieu Desnoyers 1983d7822b1eSMathieu Desnoyers static inline void rseq_execve(struct task_struct *t) 1984d7822b1eSMathieu Desnoyers { 1985d7822b1eSMathieu Desnoyers t->rseq = NULL; 1986d7822b1eSMathieu Desnoyers t->rseq_sig = 0; 1987d7822b1eSMathieu Desnoyers t->rseq_event_mask = 0; 1988d7822b1eSMathieu Desnoyers } 1989d7822b1eSMathieu Desnoyers 1990d7822b1eSMathieu Desnoyers #else 1991d7822b1eSMathieu Desnoyers 1992d7822b1eSMathieu Desnoyers static inline void rseq_set_notify_resume(struct task_struct *t) 1993d7822b1eSMathieu Desnoyers { 1994d7822b1eSMathieu Desnoyers } 1995784e0300SWill Deacon static inline void rseq_handle_notify_resume(struct ksignal *ksig, 1996784e0300SWill Deacon struct pt_regs *regs) 1997d7822b1eSMathieu Desnoyers { 1998d7822b1eSMathieu Desnoyers } 1999784e0300SWill Deacon static inline void rseq_signal_deliver(struct ksignal *ksig, 2000784e0300SWill Deacon struct pt_regs *regs) 2001d7822b1eSMathieu Desnoyers { 2002d7822b1eSMathieu Desnoyers } 2003d7822b1eSMathieu Desnoyers static inline void rseq_preempt(struct task_struct *t) 2004d7822b1eSMathieu Desnoyers { 2005d7822b1eSMathieu Desnoyers } 2006d7822b1eSMathieu Desnoyers static inline void rseq_migrate(struct task_struct *t) 2007d7822b1eSMathieu Desnoyers { 2008d7822b1eSMathieu Desnoyers } 2009d7822b1eSMathieu Desnoyers static inline void rseq_fork(struct task_struct *t, unsigned long clone_flags) 2010d7822b1eSMathieu Desnoyers { 2011d7822b1eSMathieu Desnoyers } 2012d7822b1eSMathieu Desnoyers static inline void rseq_execve(struct task_struct *t) 2013d7822b1eSMathieu Desnoyers { 2014d7822b1eSMathieu Desnoyers } 2015d7822b1eSMathieu Desnoyers 2016d7822b1eSMathieu Desnoyers #endif 2017d7822b1eSMathieu Desnoyers 201873ab1cb2STaehee Yoo void __exit_umh(struct task_struct *tsk); 201973ab1cb2STaehee Yoo 202073ab1cb2STaehee Yoo static inline void exit_umh(struct task_struct *tsk) 202173ab1cb2STaehee Yoo { 202273ab1cb2STaehee Yoo if (unlikely(tsk->flags & PF_UMH)) 202373ab1cb2STaehee Yoo __exit_umh(tsk); 202473ab1cb2STaehee Yoo } 202573ab1cb2STaehee Yoo 2026d7822b1eSMathieu Desnoyers #ifdef CONFIG_DEBUG_RSEQ 2027d7822b1eSMathieu Desnoyers 2028d7822b1eSMathieu Desnoyers void rseq_syscall(struct pt_regs *regs); 2029d7822b1eSMathieu Desnoyers 2030d7822b1eSMathieu Desnoyers #else 2031d7822b1eSMathieu Desnoyers 2032d7822b1eSMathieu Desnoyers static inline void rseq_syscall(struct pt_regs *regs) 2033d7822b1eSMathieu Desnoyers { 2034d7822b1eSMathieu Desnoyers } 2035d7822b1eSMathieu Desnoyers 2036d7822b1eSMathieu Desnoyers #endif 2037d7822b1eSMathieu Desnoyers 20383c93a0c0SQais Yousef const struct sched_avg *sched_trace_cfs_rq_avg(struct cfs_rq *cfs_rq); 20393c93a0c0SQais Yousef char *sched_trace_cfs_rq_path(struct cfs_rq *cfs_rq, char *str, int len); 20403c93a0c0SQais Yousef int sched_trace_cfs_rq_cpu(struct cfs_rq *cfs_rq); 20413c93a0c0SQais Yousef 20423c93a0c0SQais Yousef const struct sched_avg *sched_trace_rq_avg_rt(struct rq *rq); 20433c93a0c0SQais Yousef const struct sched_avg *sched_trace_rq_avg_dl(struct rq *rq); 20443c93a0c0SQais Yousef const struct sched_avg *sched_trace_rq_avg_irq(struct rq *rq); 20453c93a0c0SQais Yousef 20463c93a0c0SQais Yousef int sched_trace_rq_cpu(struct rq *rq); 20479d246053SPhil Auld int sched_trace_rq_nr_running(struct rq *rq); 20483c93a0c0SQais Yousef 20493c93a0c0SQais Yousef const struct cpumask *sched_trace_rd_span(struct root_domain *rd); 20503c93a0c0SQais Yousef 20511da177e4SLinus Torvalds #endif 2052