101768b42SPeter Zijlstra /* 267a6de49SPeter Zijlstra * kernel/locking/mutex.c 301768b42SPeter Zijlstra * 401768b42SPeter Zijlstra * Mutexes: blocking mutual exclusion locks 501768b42SPeter Zijlstra * 601768b42SPeter Zijlstra * Started by Ingo Molnar: 701768b42SPeter Zijlstra * 801768b42SPeter Zijlstra * Copyright (C) 2004, 2005, 2006 Red Hat, Inc., Ingo Molnar <mingo@redhat.com> 901768b42SPeter Zijlstra * 1001768b42SPeter Zijlstra * Many thanks to Arjan van de Ven, Thomas Gleixner, Steven Rostedt and 1101768b42SPeter Zijlstra * David Howells for suggestions and improvements. 1201768b42SPeter Zijlstra * 1301768b42SPeter Zijlstra * - Adaptive spinning for mutexes by Peter Zijlstra. (Ported to mainline 1401768b42SPeter Zijlstra * from the -rt tree, where it was originally implemented for rtmutexes 1501768b42SPeter Zijlstra * by Steven Rostedt, based on work by Gregory Haskins, Peter Morreale 1601768b42SPeter Zijlstra * and Sven Dietrich. 1701768b42SPeter Zijlstra * 18214e0aedSDavidlohr Bueso * Also see Documentation/locking/mutex-design.txt. 1901768b42SPeter Zijlstra */ 2001768b42SPeter Zijlstra #include <linux/mutex.h> 2101768b42SPeter Zijlstra #include <linux/ww_mutex.h> 2201768b42SPeter Zijlstra #include <linux/sched.h> 2301768b42SPeter Zijlstra #include <linux/sched/rt.h> 2401768b42SPeter Zijlstra #include <linux/export.h> 2501768b42SPeter Zijlstra #include <linux/spinlock.h> 2601768b42SPeter Zijlstra #include <linux/interrupt.h> 2701768b42SPeter Zijlstra #include <linux/debug_locks.h> 287a215f89SDavidlohr Bueso #include <linux/osq_lock.h> 2901768b42SPeter Zijlstra 3001768b42SPeter Zijlstra #ifdef CONFIG_DEBUG_MUTEXES 3101768b42SPeter Zijlstra # include "mutex-debug.h" 3201768b42SPeter Zijlstra #else 3301768b42SPeter Zijlstra # include "mutex.h" 3401768b42SPeter Zijlstra #endif 3501768b42SPeter Zijlstra 3601768b42SPeter Zijlstra void 3701768b42SPeter Zijlstra __mutex_init(struct mutex *lock, const char *name, struct lock_class_key *key) 3801768b42SPeter Zijlstra { 393ca0ff57SPeter Zijlstra atomic_long_set(&lock->owner, 0); 4001768b42SPeter Zijlstra spin_lock_init(&lock->wait_lock); 4101768b42SPeter Zijlstra INIT_LIST_HEAD(&lock->wait_list); 4201768b42SPeter Zijlstra #ifdef CONFIG_MUTEX_SPIN_ON_OWNER 434d9d951eSJason Low osq_lock_init(&lock->osq); 4401768b42SPeter Zijlstra #endif 4501768b42SPeter Zijlstra 4601768b42SPeter Zijlstra debug_mutex_init(lock, name, key); 4701768b42SPeter Zijlstra } 4801768b42SPeter Zijlstra EXPORT_SYMBOL(__mutex_init); 4901768b42SPeter Zijlstra 503ca0ff57SPeter Zijlstra /* 513ca0ff57SPeter Zijlstra * @owner: contains: 'struct task_struct *' to the current lock owner, 523ca0ff57SPeter Zijlstra * NULL means not owned. Since task_struct pointers are aligned at 53e274795eSPeter Zijlstra * at least L1_CACHE_BYTES, we have low bits to store extra state. 543ca0ff57SPeter Zijlstra * 553ca0ff57SPeter Zijlstra * Bit0 indicates a non-empty waiter list; unlock must issue a wakeup. 569d659ae1SPeter Zijlstra * Bit1 indicates unlock needs to hand the lock to the top-waiter 57e274795eSPeter Zijlstra * Bit2 indicates handoff has been done and we're waiting for pickup. 583ca0ff57SPeter Zijlstra */ 593ca0ff57SPeter Zijlstra #define MUTEX_FLAG_WAITERS 0x01 609d659ae1SPeter Zijlstra #define MUTEX_FLAG_HANDOFF 0x02 61e274795eSPeter Zijlstra #define MUTEX_FLAG_PICKUP 0x04 623ca0ff57SPeter Zijlstra 63e274795eSPeter Zijlstra #define MUTEX_FLAGS 0x07 643ca0ff57SPeter Zijlstra 653ca0ff57SPeter Zijlstra static inline struct task_struct *__owner_task(unsigned long owner) 663ca0ff57SPeter Zijlstra { 673ca0ff57SPeter Zijlstra return (struct task_struct *)(owner & ~MUTEX_FLAGS); 683ca0ff57SPeter Zijlstra } 693ca0ff57SPeter Zijlstra 703ca0ff57SPeter Zijlstra static inline unsigned long __owner_flags(unsigned long owner) 713ca0ff57SPeter Zijlstra { 723ca0ff57SPeter Zijlstra return owner & MUTEX_FLAGS; 733ca0ff57SPeter Zijlstra } 743ca0ff57SPeter Zijlstra 753ca0ff57SPeter Zijlstra /* 76e274795eSPeter Zijlstra * Trylock variant that retuns the owning task on failure. 773ca0ff57SPeter Zijlstra */ 78e274795eSPeter Zijlstra static inline struct task_struct *__mutex_trylock_or_owner(struct mutex *lock) 793ca0ff57SPeter Zijlstra { 803ca0ff57SPeter Zijlstra unsigned long owner, curr = (unsigned long)current; 813ca0ff57SPeter Zijlstra 823ca0ff57SPeter Zijlstra owner = atomic_long_read(&lock->owner); 833ca0ff57SPeter Zijlstra for (;;) { /* must loop, can race against a flag */ 849d659ae1SPeter Zijlstra unsigned long old, flags = __owner_flags(owner); 85e274795eSPeter Zijlstra unsigned long task = owner & ~MUTEX_FLAGS; 863ca0ff57SPeter Zijlstra 87e274795eSPeter Zijlstra if (task) { 88e274795eSPeter Zijlstra if (likely(task != curr)) 89e274795eSPeter Zijlstra break; 909d659ae1SPeter Zijlstra 91e274795eSPeter Zijlstra if (likely(!(flags & MUTEX_FLAG_PICKUP))) 92e274795eSPeter Zijlstra break; 93e274795eSPeter Zijlstra 94e274795eSPeter Zijlstra flags &= ~MUTEX_FLAG_PICKUP; 95e274795eSPeter Zijlstra } else { 96e274795eSPeter Zijlstra #ifdef CONFIG_DEBUG_MUTEXES 97e274795eSPeter Zijlstra DEBUG_LOCKS_WARN_ON(flags & MUTEX_FLAG_PICKUP); 98e274795eSPeter Zijlstra #endif 999d659ae1SPeter Zijlstra } 1003ca0ff57SPeter Zijlstra 1019d659ae1SPeter Zijlstra /* 1029d659ae1SPeter Zijlstra * We set the HANDOFF bit, we must make sure it doesn't live 1039d659ae1SPeter Zijlstra * past the point where we acquire it. This would be possible 1049d659ae1SPeter Zijlstra * if we (accidentally) set the bit on an unlocked mutex. 1059d659ae1SPeter Zijlstra */ 1069d659ae1SPeter Zijlstra flags &= ~MUTEX_FLAG_HANDOFF; 1079d659ae1SPeter Zijlstra 1089d659ae1SPeter Zijlstra old = atomic_long_cmpxchg_acquire(&lock->owner, owner, curr | flags); 1093ca0ff57SPeter Zijlstra if (old == owner) 110e274795eSPeter Zijlstra return NULL; 1113ca0ff57SPeter Zijlstra 1123ca0ff57SPeter Zijlstra owner = old; 1133ca0ff57SPeter Zijlstra } 114e274795eSPeter Zijlstra 115e274795eSPeter Zijlstra return __owner_task(owner); 116e274795eSPeter Zijlstra } 117e274795eSPeter Zijlstra 118e274795eSPeter Zijlstra /* 119e274795eSPeter Zijlstra * Actual trylock that will work on any unlocked state. 120e274795eSPeter Zijlstra */ 121e274795eSPeter Zijlstra static inline bool __mutex_trylock(struct mutex *lock) 122e274795eSPeter Zijlstra { 123e274795eSPeter Zijlstra return !__mutex_trylock_or_owner(lock); 1243ca0ff57SPeter Zijlstra } 1253ca0ff57SPeter Zijlstra 1263ca0ff57SPeter Zijlstra #ifndef CONFIG_DEBUG_LOCK_ALLOC 1273ca0ff57SPeter Zijlstra /* 1283ca0ff57SPeter Zijlstra * Lockdep annotations are contained to the slow paths for simplicity. 1293ca0ff57SPeter Zijlstra * There is nothing that would stop spreading the lockdep annotations outwards 1303ca0ff57SPeter Zijlstra * except more code. 1313ca0ff57SPeter Zijlstra */ 1323ca0ff57SPeter Zijlstra 1333ca0ff57SPeter Zijlstra /* 1343ca0ff57SPeter Zijlstra * Optimistic trylock that only works in the uncontended case. Make sure to 1353ca0ff57SPeter Zijlstra * follow with a __mutex_trylock() before failing. 1363ca0ff57SPeter Zijlstra */ 1373ca0ff57SPeter Zijlstra static __always_inline bool __mutex_trylock_fast(struct mutex *lock) 1383ca0ff57SPeter Zijlstra { 1393ca0ff57SPeter Zijlstra unsigned long curr = (unsigned long)current; 1403ca0ff57SPeter Zijlstra 1413ca0ff57SPeter Zijlstra if (!atomic_long_cmpxchg_acquire(&lock->owner, 0UL, curr)) 1423ca0ff57SPeter Zijlstra return true; 1433ca0ff57SPeter Zijlstra 1443ca0ff57SPeter Zijlstra return false; 1453ca0ff57SPeter Zijlstra } 1463ca0ff57SPeter Zijlstra 1473ca0ff57SPeter Zijlstra static __always_inline bool __mutex_unlock_fast(struct mutex *lock) 1483ca0ff57SPeter Zijlstra { 1493ca0ff57SPeter Zijlstra unsigned long curr = (unsigned long)current; 1503ca0ff57SPeter Zijlstra 1513ca0ff57SPeter Zijlstra if (atomic_long_cmpxchg_release(&lock->owner, curr, 0UL) == curr) 1523ca0ff57SPeter Zijlstra return true; 1533ca0ff57SPeter Zijlstra 1543ca0ff57SPeter Zijlstra return false; 1553ca0ff57SPeter Zijlstra } 1563ca0ff57SPeter Zijlstra #endif 1573ca0ff57SPeter Zijlstra 1583ca0ff57SPeter Zijlstra static inline void __mutex_set_flag(struct mutex *lock, unsigned long flag) 1593ca0ff57SPeter Zijlstra { 1603ca0ff57SPeter Zijlstra atomic_long_or(flag, &lock->owner); 1613ca0ff57SPeter Zijlstra } 1623ca0ff57SPeter Zijlstra 1633ca0ff57SPeter Zijlstra static inline void __mutex_clear_flag(struct mutex *lock, unsigned long flag) 1643ca0ff57SPeter Zijlstra { 1653ca0ff57SPeter Zijlstra atomic_long_andnot(flag, &lock->owner); 1663ca0ff57SPeter Zijlstra } 1673ca0ff57SPeter Zijlstra 1689d659ae1SPeter Zijlstra static inline bool __mutex_waiter_is_first(struct mutex *lock, struct mutex_waiter *waiter) 1699d659ae1SPeter Zijlstra { 1709d659ae1SPeter Zijlstra return list_first_entry(&lock->wait_list, struct mutex_waiter, list) == waiter; 1719d659ae1SPeter Zijlstra } 1729d659ae1SPeter Zijlstra 1739d659ae1SPeter Zijlstra /* 1749d659ae1SPeter Zijlstra * Give up ownership to a specific task, when @task = NULL, this is equivalent 175e274795eSPeter Zijlstra * to a regular unlock. Sets PICKUP on a handoff, clears HANDOF, preserves 176e274795eSPeter Zijlstra * WAITERS. Provides RELEASE semantics like a regular unlock, the 177e274795eSPeter Zijlstra * __mutex_trylock() provides a matching ACQUIRE semantics for the handoff. 1789d659ae1SPeter Zijlstra */ 1799d659ae1SPeter Zijlstra static void __mutex_handoff(struct mutex *lock, struct task_struct *task) 1809d659ae1SPeter Zijlstra { 1819d659ae1SPeter Zijlstra unsigned long owner = atomic_long_read(&lock->owner); 1829d659ae1SPeter Zijlstra 1839d659ae1SPeter Zijlstra for (;;) { 1849d659ae1SPeter Zijlstra unsigned long old, new; 1859d659ae1SPeter Zijlstra 1869d659ae1SPeter Zijlstra #ifdef CONFIG_DEBUG_MUTEXES 1879d659ae1SPeter Zijlstra DEBUG_LOCKS_WARN_ON(__owner_task(owner) != current); 188e274795eSPeter Zijlstra DEBUG_LOCKS_WARN_ON(owner & MUTEX_FLAG_PICKUP); 1899d659ae1SPeter Zijlstra #endif 1909d659ae1SPeter Zijlstra 1919d659ae1SPeter Zijlstra new = (owner & MUTEX_FLAG_WAITERS); 1929d659ae1SPeter Zijlstra new |= (unsigned long)task; 193e274795eSPeter Zijlstra if (task) 194e274795eSPeter Zijlstra new |= MUTEX_FLAG_PICKUP; 1959d659ae1SPeter Zijlstra 1969d659ae1SPeter Zijlstra old = atomic_long_cmpxchg_release(&lock->owner, owner, new); 1979d659ae1SPeter Zijlstra if (old == owner) 1989d659ae1SPeter Zijlstra break; 1999d659ae1SPeter Zijlstra 2009d659ae1SPeter Zijlstra owner = old; 2019d659ae1SPeter Zijlstra } 2029d659ae1SPeter Zijlstra } 2039d659ae1SPeter Zijlstra 20401768b42SPeter Zijlstra #ifndef CONFIG_DEBUG_LOCK_ALLOC 20501768b42SPeter Zijlstra /* 20601768b42SPeter Zijlstra * We split the mutex lock/unlock logic into separate fastpath and 20701768b42SPeter Zijlstra * slowpath functions, to reduce the register pressure on the fastpath. 20801768b42SPeter Zijlstra * We also put the fastpath first in the kernel image, to make sure the 20901768b42SPeter Zijlstra * branch is predicted by the CPU as default-untaken. 21001768b42SPeter Zijlstra */ 2113ca0ff57SPeter Zijlstra static void __sched __mutex_lock_slowpath(struct mutex *lock); 21201768b42SPeter Zijlstra 21301768b42SPeter Zijlstra /** 21401768b42SPeter Zijlstra * mutex_lock - acquire the mutex 21501768b42SPeter Zijlstra * @lock: the mutex to be acquired 21601768b42SPeter Zijlstra * 21701768b42SPeter Zijlstra * Lock the mutex exclusively for this task. If the mutex is not 21801768b42SPeter Zijlstra * available right now, it will sleep until it can get it. 21901768b42SPeter Zijlstra * 22001768b42SPeter Zijlstra * The mutex must later on be released by the same task that 22101768b42SPeter Zijlstra * acquired it. Recursive locking is not allowed. The task 22201768b42SPeter Zijlstra * may not exit without first unlocking the mutex. Also, kernel 223139b6fd2SSharon Dvir * memory where the mutex resides must not be freed with 22401768b42SPeter Zijlstra * the mutex still locked. The mutex must first be initialized 22501768b42SPeter Zijlstra * (or statically defined) before it can be locked. memset()-ing 22601768b42SPeter Zijlstra * the mutex to 0 is not allowed. 22701768b42SPeter Zijlstra * 22801768b42SPeter Zijlstra * ( The CONFIG_DEBUG_MUTEXES .config option turns on debugging 22901768b42SPeter Zijlstra * checks that will enforce the restrictions and will also do 23001768b42SPeter Zijlstra * deadlock debugging. ) 23101768b42SPeter Zijlstra * 23201768b42SPeter Zijlstra * This function is similar to (but not equivalent to) down(). 23301768b42SPeter Zijlstra */ 23401768b42SPeter Zijlstra void __sched mutex_lock(struct mutex *lock) 23501768b42SPeter Zijlstra { 23601768b42SPeter Zijlstra might_sleep(); 23701768b42SPeter Zijlstra 2383ca0ff57SPeter Zijlstra if (!__mutex_trylock_fast(lock)) 2393ca0ff57SPeter Zijlstra __mutex_lock_slowpath(lock); 2403ca0ff57SPeter Zijlstra } 24101768b42SPeter Zijlstra EXPORT_SYMBOL(mutex_lock); 24201768b42SPeter Zijlstra #endif 24301768b42SPeter Zijlstra 24476916515SDavidlohr Bueso static __always_inline void ww_mutex_lock_acquired(struct ww_mutex *ww, 24576916515SDavidlohr Bueso struct ww_acquire_ctx *ww_ctx) 24676916515SDavidlohr Bueso { 24776916515SDavidlohr Bueso #ifdef CONFIG_DEBUG_MUTEXES 24876916515SDavidlohr Bueso /* 24976916515SDavidlohr Bueso * If this WARN_ON triggers, you used ww_mutex_lock to acquire, 25076916515SDavidlohr Bueso * but released with a normal mutex_unlock in this call. 25176916515SDavidlohr Bueso * 25276916515SDavidlohr Bueso * This should never happen, always use ww_mutex_unlock. 25376916515SDavidlohr Bueso */ 25476916515SDavidlohr Bueso DEBUG_LOCKS_WARN_ON(ww->ctx); 25576916515SDavidlohr Bueso 25676916515SDavidlohr Bueso /* 25776916515SDavidlohr Bueso * Not quite done after calling ww_acquire_done() ? 25876916515SDavidlohr Bueso */ 25976916515SDavidlohr Bueso DEBUG_LOCKS_WARN_ON(ww_ctx->done_acquire); 26076916515SDavidlohr Bueso 26176916515SDavidlohr Bueso if (ww_ctx->contending_lock) { 26276916515SDavidlohr Bueso /* 26376916515SDavidlohr Bueso * After -EDEADLK you tried to 26476916515SDavidlohr Bueso * acquire a different ww_mutex? Bad! 26576916515SDavidlohr Bueso */ 26676916515SDavidlohr Bueso DEBUG_LOCKS_WARN_ON(ww_ctx->contending_lock != ww); 26776916515SDavidlohr Bueso 26876916515SDavidlohr Bueso /* 26976916515SDavidlohr Bueso * You called ww_mutex_lock after receiving -EDEADLK, 27076916515SDavidlohr Bueso * but 'forgot' to unlock everything else first? 27176916515SDavidlohr Bueso */ 27276916515SDavidlohr Bueso DEBUG_LOCKS_WARN_ON(ww_ctx->acquired > 0); 27376916515SDavidlohr Bueso ww_ctx->contending_lock = NULL; 27476916515SDavidlohr Bueso } 27576916515SDavidlohr Bueso 27676916515SDavidlohr Bueso /* 27776916515SDavidlohr Bueso * Naughty, using a different class will lead to undefined behavior! 27876916515SDavidlohr Bueso */ 27976916515SDavidlohr Bueso DEBUG_LOCKS_WARN_ON(ww_ctx->ww_class != ww->ww_class); 28076916515SDavidlohr Bueso #endif 28176916515SDavidlohr Bueso ww_ctx->acquired++; 28276916515SDavidlohr Bueso } 28376916515SDavidlohr Bueso 2843822da3eSNicolai Hähnle static inline bool __sched 2853822da3eSNicolai Hähnle __ww_ctx_stamp_after(struct ww_acquire_ctx *a, struct ww_acquire_ctx *b) 2863822da3eSNicolai Hähnle { 2873822da3eSNicolai Hähnle return a->stamp - b->stamp <= LONG_MAX && 2883822da3eSNicolai Hähnle (a->stamp != b->stamp || a > b); 2893822da3eSNicolai Hähnle } 2903822da3eSNicolai Hähnle 29176916515SDavidlohr Bueso /* 2924bd19084SDavidlohr Bueso * After acquiring lock with fastpath or when we lost out in contested 29376916515SDavidlohr Bueso * slowpath, set ctx and wake up any waiters so they can recheck. 29476916515SDavidlohr Bueso */ 29576916515SDavidlohr Bueso static __always_inline void 29676916515SDavidlohr Bueso ww_mutex_set_context_fastpath(struct ww_mutex *lock, 29776916515SDavidlohr Bueso struct ww_acquire_ctx *ctx) 29876916515SDavidlohr Bueso { 29976916515SDavidlohr Bueso unsigned long flags; 30076916515SDavidlohr Bueso struct mutex_waiter *cur; 30176916515SDavidlohr Bueso 30276916515SDavidlohr Bueso ww_mutex_lock_acquired(lock, ctx); 30376916515SDavidlohr Bueso 30476916515SDavidlohr Bueso lock->ctx = ctx; 30576916515SDavidlohr Bueso 30676916515SDavidlohr Bueso /* 30776916515SDavidlohr Bueso * The lock->ctx update should be visible on all cores before 30876916515SDavidlohr Bueso * the atomic read is done, otherwise contended waiters might be 30976916515SDavidlohr Bueso * missed. The contended waiters will either see ww_ctx == NULL 31076916515SDavidlohr Bueso * and keep spinning, or it will acquire wait_lock, add itself 31176916515SDavidlohr Bueso * to waiter list and sleep. 31276916515SDavidlohr Bueso */ 31376916515SDavidlohr Bueso smp_mb(); /* ^^^ */ 31476916515SDavidlohr Bueso 31576916515SDavidlohr Bueso /* 31676916515SDavidlohr Bueso * Check if lock is contended, if not there is nobody to wake up 31776916515SDavidlohr Bueso */ 3183ca0ff57SPeter Zijlstra if (likely(!(atomic_long_read(&lock->base.owner) & MUTEX_FLAG_WAITERS))) 31976916515SDavidlohr Bueso return; 32076916515SDavidlohr Bueso 32176916515SDavidlohr Bueso /* 32276916515SDavidlohr Bueso * Uh oh, we raced in fastpath, wake up everyone in this case, 32376916515SDavidlohr Bueso * so they can see the new lock->ctx. 32476916515SDavidlohr Bueso */ 32576916515SDavidlohr Bueso spin_lock_mutex(&lock->base.wait_lock, flags); 32676916515SDavidlohr Bueso list_for_each_entry(cur, &lock->base.wait_list, list) { 32776916515SDavidlohr Bueso debug_mutex_wake_waiter(&lock->base, cur); 32876916515SDavidlohr Bueso wake_up_process(cur->task); 32976916515SDavidlohr Bueso } 33076916515SDavidlohr Bueso spin_unlock_mutex(&lock->base.wait_lock, flags); 33176916515SDavidlohr Bueso } 33276916515SDavidlohr Bueso 3334bd19084SDavidlohr Bueso /* 3344bd19084SDavidlohr Bueso * After acquiring lock in the slowpath set ctx and wake up any 3354bd19084SDavidlohr Bueso * waiters so they can recheck. 3364bd19084SDavidlohr Bueso * 3374bd19084SDavidlohr Bueso * Callers must hold the mutex wait_lock. 3384bd19084SDavidlohr Bueso */ 3394bd19084SDavidlohr Bueso static __always_inline void 3404bd19084SDavidlohr Bueso ww_mutex_set_context_slowpath(struct ww_mutex *lock, 3414bd19084SDavidlohr Bueso struct ww_acquire_ctx *ctx) 3424bd19084SDavidlohr Bueso { 3434bd19084SDavidlohr Bueso struct mutex_waiter *cur; 3444bd19084SDavidlohr Bueso 3454bd19084SDavidlohr Bueso ww_mutex_lock_acquired(lock, ctx); 3464bd19084SDavidlohr Bueso lock->ctx = ctx; 3474bd19084SDavidlohr Bueso 3484bd19084SDavidlohr Bueso /* 3494bd19084SDavidlohr Bueso * Give any possible sleeping processes the chance to wake up, 3504bd19084SDavidlohr Bueso * so they can recheck if they have to back off. 3514bd19084SDavidlohr Bueso */ 3524bd19084SDavidlohr Bueso list_for_each_entry(cur, &lock->base.wait_list, list) { 3534bd19084SDavidlohr Bueso debug_mutex_wake_waiter(&lock->base, cur); 3544bd19084SDavidlohr Bueso wake_up_process(cur->task); 3554bd19084SDavidlohr Bueso } 3564bd19084SDavidlohr Bueso } 35776916515SDavidlohr Bueso 35801768b42SPeter Zijlstra #ifdef CONFIG_MUTEX_SPIN_ON_OWNER 35901768b42SPeter Zijlstra /* 36001768b42SPeter Zijlstra * Look out! "owner" is an entirely speculative pointer 36101768b42SPeter Zijlstra * access and not reliable. 36201768b42SPeter Zijlstra */ 36301768b42SPeter Zijlstra static noinline 364be1f7bf2SJason Low bool mutex_spin_on_owner(struct mutex *lock, struct task_struct *owner) 36501768b42SPeter Zijlstra { 36601ac33c1SJason Low bool ret = true; 367be1f7bf2SJason Low 36801768b42SPeter Zijlstra rcu_read_lock(); 3693ca0ff57SPeter Zijlstra while (__mutex_owner(lock) == owner) { 370be1f7bf2SJason Low /* 371be1f7bf2SJason Low * Ensure we emit the owner->on_cpu, dereference _after_ 37201ac33c1SJason Low * checking lock->owner still matches owner. If that fails, 37301ac33c1SJason Low * owner might point to freed memory. If it still matches, 374be1f7bf2SJason Low * the rcu_read_lock() ensures the memory stays valid. 375be1f7bf2SJason Low */ 376be1f7bf2SJason Low barrier(); 377be1f7bf2SJason Low 37805ffc951SPan Xinhui /* 37905ffc951SPan Xinhui * Use vcpu_is_preempted to detect lock holder preemption issue. 38005ffc951SPan Xinhui */ 38105ffc951SPan Xinhui if (!owner->on_cpu || need_resched() || 38205ffc951SPan Xinhui vcpu_is_preempted(task_cpu(owner))) { 383be1f7bf2SJason Low ret = false; 384be1f7bf2SJason Low break; 385be1f7bf2SJason Low } 38601768b42SPeter Zijlstra 387f2f09a4cSChristian Borntraeger cpu_relax(); 38801768b42SPeter Zijlstra } 38901768b42SPeter Zijlstra rcu_read_unlock(); 39001768b42SPeter Zijlstra 391be1f7bf2SJason Low return ret; 39201768b42SPeter Zijlstra } 39301768b42SPeter Zijlstra 39401768b42SPeter Zijlstra /* 39501768b42SPeter Zijlstra * Initial check for entering the mutex spinning loop 39601768b42SPeter Zijlstra */ 39701768b42SPeter Zijlstra static inline int mutex_can_spin_on_owner(struct mutex *lock) 39801768b42SPeter Zijlstra { 39901768b42SPeter Zijlstra struct task_struct *owner; 40001768b42SPeter Zijlstra int retval = 1; 40101768b42SPeter Zijlstra 40246af29e4SJason Low if (need_resched()) 40346af29e4SJason Low return 0; 40446af29e4SJason Low 40501768b42SPeter Zijlstra rcu_read_lock(); 4063ca0ff57SPeter Zijlstra owner = __mutex_owner(lock); 40705ffc951SPan Xinhui 40805ffc951SPan Xinhui /* 40905ffc951SPan Xinhui * As lock holder preemption issue, we both skip spinning if task is not 41005ffc951SPan Xinhui * on cpu or its cpu is preempted 41105ffc951SPan Xinhui */ 41201768b42SPeter Zijlstra if (owner) 41305ffc951SPan Xinhui retval = owner->on_cpu && !vcpu_is_preempted(task_cpu(owner)); 41401768b42SPeter Zijlstra rcu_read_unlock(); 41576916515SDavidlohr Bueso 41676916515SDavidlohr Bueso /* 4173ca0ff57SPeter Zijlstra * If lock->owner is not set, the mutex has been released. Return true 4183ca0ff57SPeter Zijlstra * such that we'll trylock in the spin path, which is a faster option 4193ca0ff57SPeter Zijlstra * than the blocking slow path. 42076916515SDavidlohr Bueso */ 4213ca0ff57SPeter Zijlstra return retval; 42276916515SDavidlohr Bueso } 42376916515SDavidlohr Bueso 42476916515SDavidlohr Bueso /* 42576916515SDavidlohr Bueso * Optimistic spinning. 42676916515SDavidlohr Bueso * 42776916515SDavidlohr Bueso * We try to spin for acquisition when we find that the lock owner 42876916515SDavidlohr Bueso * is currently running on a (different) CPU and while we don't 42976916515SDavidlohr Bueso * need to reschedule. The rationale is that if the lock owner is 43076916515SDavidlohr Bueso * running, it is likely to release the lock soon. 43176916515SDavidlohr Bueso * 43276916515SDavidlohr Bueso * The mutex spinners are queued up using MCS lock so that only one 43376916515SDavidlohr Bueso * spinner can compete for the mutex. However, if mutex spinning isn't 43476916515SDavidlohr Bueso * going to happen, there is no point in going through the lock/unlock 43576916515SDavidlohr Bueso * overhead. 43676916515SDavidlohr Bueso * 43776916515SDavidlohr Bueso * Returns true when the lock was taken, otherwise false, indicating 43876916515SDavidlohr Bueso * that we need to jump to the slowpath and sleep. 439b341afb3SWaiman Long * 440b341afb3SWaiman Long * The waiter flag is set to true if the spinner is a waiter in the wait 441b341afb3SWaiman Long * queue. The waiter-spinner will spin on the lock directly and concurrently 442b341afb3SWaiman Long * with the spinner at the head of the OSQ, if present, until the owner is 443b341afb3SWaiman Long * changed to itself. 44476916515SDavidlohr Bueso */ 44576916515SDavidlohr Bueso static bool mutex_optimistic_spin(struct mutex *lock, 446b341afb3SWaiman Long struct ww_acquire_ctx *ww_ctx, 447b341afb3SWaiman Long const bool use_ww_ctx, const bool waiter) 44876916515SDavidlohr Bueso { 449b341afb3SWaiman Long if (!waiter) { 450b341afb3SWaiman Long /* 451b341afb3SWaiman Long * The purpose of the mutex_can_spin_on_owner() function is 452b341afb3SWaiman Long * to eliminate the overhead of osq_lock() and osq_unlock() 453b341afb3SWaiman Long * in case spinning isn't possible. As a waiter-spinner 454b341afb3SWaiman Long * is not going to take OSQ lock anyway, there is no need 455b341afb3SWaiman Long * to call mutex_can_spin_on_owner(). 456b341afb3SWaiman Long */ 45776916515SDavidlohr Bueso if (!mutex_can_spin_on_owner(lock)) 458b341afb3SWaiman Long goto fail; 45976916515SDavidlohr Bueso 460e42f678aSDavidlohr Bueso /* 461e42f678aSDavidlohr Bueso * In order to avoid a stampede of mutex spinners trying to 462e42f678aSDavidlohr Bueso * acquire the mutex all at once, the spinners need to take a 463e42f678aSDavidlohr Bueso * MCS (queued) lock first before spinning on the owner field. 464e42f678aSDavidlohr Bueso */ 46576916515SDavidlohr Bueso if (!osq_lock(&lock->osq)) 466b341afb3SWaiman Long goto fail; 467b341afb3SWaiman Long } 46876916515SDavidlohr Bueso 469b341afb3SWaiman Long for (;;) { 47076916515SDavidlohr Bueso struct task_struct *owner; 47176916515SDavidlohr Bueso 472ea9e0fb8SNicolai Hähnle if (use_ww_ctx && ww_ctx && ww_ctx->acquired > 0) { 47376916515SDavidlohr Bueso struct ww_mutex *ww; 47476916515SDavidlohr Bueso 47576916515SDavidlohr Bueso ww = container_of(lock, struct ww_mutex, base); 47676916515SDavidlohr Bueso /* 47776916515SDavidlohr Bueso * If ww->ctx is set the contents are undefined, only 47876916515SDavidlohr Bueso * by acquiring wait_lock there is a guarantee that 47976916515SDavidlohr Bueso * they are not invalid when reading. 48076916515SDavidlohr Bueso * 48176916515SDavidlohr Bueso * As such, when deadlock detection needs to be 48276916515SDavidlohr Bueso * performed the optimistic spinning cannot be done. 48376916515SDavidlohr Bueso */ 4844d3199e4SDavidlohr Bueso if (READ_ONCE(ww->ctx)) 485b341afb3SWaiman Long goto fail_unlock; 48676916515SDavidlohr Bueso } 48776916515SDavidlohr Bueso 488e274795eSPeter Zijlstra /* Try to acquire the mutex... */ 489e274795eSPeter Zijlstra owner = __mutex_trylock_or_owner(lock); 490e274795eSPeter Zijlstra if (!owner) 491e274795eSPeter Zijlstra break; 492e274795eSPeter Zijlstra 49376916515SDavidlohr Bueso /* 494e274795eSPeter Zijlstra * There's an owner, wait for it to either 49576916515SDavidlohr Bueso * release the lock or go to sleep. 49676916515SDavidlohr Bueso */ 497b341afb3SWaiman Long if (!mutex_spin_on_owner(lock, owner)) 498b341afb3SWaiman Long goto fail_unlock; 49976916515SDavidlohr Bueso 50076916515SDavidlohr Bueso /* 50176916515SDavidlohr Bueso * The cpu_relax() call is a compiler barrier which forces 50276916515SDavidlohr Bueso * everything in this loop to be re-loaded. We don't need 50376916515SDavidlohr Bueso * memory barriers as we'll eventually observe the right 50476916515SDavidlohr Bueso * values at the cost of a few extra spins. 50576916515SDavidlohr Bueso */ 506f2f09a4cSChristian Borntraeger cpu_relax(); 50776916515SDavidlohr Bueso } 50876916515SDavidlohr Bueso 509b341afb3SWaiman Long if (!waiter) 51076916515SDavidlohr Bueso osq_unlock(&lock->osq); 511b341afb3SWaiman Long 512b341afb3SWaiman Long return true; 513b341afb3SWaiman Long 514b341afb3SWaiman Long 515b341afb3SWaiman Long fail_unlock: 516b341afb3SWaiman Long if (!waiter) 517b341afb3SWaiman Long osq_unlock(&lock->osq); 518b341afb3SWaiman Long 519b341afb3SWaiman Long fail: 52076916515SDavidlohr Bueso /* 52176916515SDavidlohr Bueso * If we fell out of the spin path because of need_resched(), 52276916515SDavidlohr Bueso * reschedule now, before we try-lock the mutex. This avoids getting 52376916515SDavidlohr Bueso * scheduled out right after we obtained the mutex. 52476916515SDavidlohr Bueso */ 5256f942a1fSPeter Zijlstra if (need_resched()) { 5266f942a1fSPeter Zijlstra /* 5276f942a1fSPeter Zijlstra * We _should_ have TASK_RUNNING here, but just in case 5286f942a1fSPeter Zijlstra * we do not, make it so, otherwise we might get stuck. 5296f942a1fSPeter Zijlstra */ 5306f942a1fSPeter Zijlstra __set_current_state(TASK_RUNNING); 53176916515SDavidlohr Bueso schedule_preempt_disabled(); 5326f942a1fSPeter Zijlstra } 53376916515SDavidlohr Bueso 53476916515SDavidlohr Bueso return false; 53576916515SDavidlohr Bueso } 53676916515SDavidlohr Bueso #else 53776916515SDavidlohr Bueso static bool mutex_optimistic_spin(struct mutex *lock, 538b341afb3SWaiman Long struct ww_acquire_ctx *ww_ctx, 539b341afb3SWaiman Long const bool use_ww_ctx, const bool waiter) 54076916515SDavidlohr Bueso { 54176916515SDavidlohr Bueso return false; 54276916515SDavidlohr Bueso } 54301768b42SPeter Zijlstra #endif 54401768b42SPeter Zijlstra 5453ca0ff57SPeter Zijlstra static noinline void __sched __mutex_unlock_slowpath(struct mutex *lock, unsigned long ip); 54601768b42SPeter Zijlstra 54701768b42SPeter Zijlstra /** 54801768b42SPeter Zijlstra * mutex_unlock - release the mutex 54901768b42SPeter Zijlstra * @lock: the mutex to be released 55001768b42SPeter Zijlstra * 55101768b42SPeter Zijlstra * Unlock a mutex that has been locked by this task previously. 55201768b42SPeter Zijlstra * 55301768b42SPeter Zijlstra * This function must not be used in interrupt context. Unlocking 55401768b42SPeter Zijlstra * of a not locked mutex is not allowed. 55501768b42SPeter Zijlstra * 55601768b42SPeter Zijlstra * This function is similar to (but not equivalent to) up(). 55701768b42SPeter Zijlstra */ 55801768b42SPeter Zijlstra void __sched mutex_unlock(struct mutex *lock) 55901768b42SPeter Zijlstra { 5603ca0ff57SPeter Zijlstra #ifndef CONFIG_DEBUG_LOCK_ALLOC 5613ca0ff57SPeter Zijlstra if (__mutex_unlock_fast(lock)) 5623ca0ff57SPeter Zijlstra return; 56301768b42SPeter Zijlstra #endif 5643ca0ff57SPeter Zijlstra __mutex_unlock_slowpath(lock, _RET_IP_); 56501768b42SPeter Zijlstra } 56601768b42SPeter Zijlstra EXPORT_SYMBOL(mutex_unlock); 56701768b42SPeter Zijlstra 56801768b42SPeter Zijlstra /** 56901768b42SPeter Zijlstra * ww_mutex_unlock - release the w/w mutex 57001768b42SPeter Zijlstra * @lock: the mutex to be released 57101768b42SPeter Zijlstra * 57201768b42SPeter Zijlstra * Unlock a mutex that has been locked by this task previously with any of the 57301768b42SPeter Zijlstra * ww_mutex_lock* functions (with or without an acquire context). It is 57401768b42SPeter Zijlstra * forbidden to release the locks after releasing the acquire context. 57501768b42SPeter Zijlstra * 57601768b42SPeter Zijlstra * This function must not be used in interrupt context. Unlocking 57701768b42SPeter Zijlstra * of a unlocked mutex is not allowed. 57801768b42SPeter Zijlstra */ 57901768b42SPeter Zijlstra void __sched ww_mutex_unlock(struct ww_mutex *lock) 58001768b42SPeter Zijlstra { 58101768b42SPeter Zijlstra /* 58201768b42SPeter Zijlstra * The unlocking fastpath is the 0->1 transition from 'locked' 58301768b42SPeter Zijlstra * into 'unlocked' state: 58401768b42SPeter Zijlstra */ 58501768b42SPeter Zijlstra if (lock->ctx) { 58601768b42SPeter Zijlstra #ifdef CONFIG_DEBUG_MUTEXES 58701768b42SPeter Zijlstra DEBUG_LOCKS_WARN_ON(!lock->ctx->acquired); 58801768b42SPeter Zijlstra #endif 58901768b42SPeter Zijlstra if (lock->ctx->acquired > 0) 59001768b42SPeter Zijlstra lock->ctx->acquired--; 59101768b42SPeter Zijlstra lock->ctx = NULL; 59201768b42SPeter Zijlstra } 59301768b42SPeter Zijlstra 5943ca0ff57SPeter Zijlstra mutex_unlock(&lock->base); 59501768b42SPeter Zijlstra } 59601768b42SPeter Zijlstra EXPORT_SYMBOL(ww_mutex_unlock); 59701768b42SPeter Zijlstra 59801768b42SPeter Zijlstra static inline int __sched 59963dc47e9SDavidlohr Bueso __ww_mutex_lock_check_stamp(struct mutex *lock, struct ww_acquire_ctx *ctx) 60001768b42SPeter Zijlstra { 60101768b42SPeter Zijlstra struct ww_mutex *ww = container_of(lock, struct ww_mutex, base); 6024d3199e4SDavidlohr Bueso struct ww_acquire_ctx *hold_ctx = READ_ONCE(ww->ctx); 60301768b42SPeter Zijlstra 60401768b42SPeter Zijlstra if (!hold_ctx) 60501768b42SPeter Zijlstra return 0; 60601768b42SPeter Zijlstra 6073822da3eSNicolai Hähnle if (__ww_ctx_stamp_after(ctx, hold_ctx)) { 60801768b42SPeter Zijlstra #ifdef CONFIG_DEBUG_MUTEXES 60901768b42SPeter Zijlstra DEBUG_LOCKS_WARN_ON(ctx->contending_lock); 61001768b42SPeter Zijlstra ctx->contending_lock = ww; 61101768b42SPeter Zijlstra #endif 61201768b42SPeter Zijlstra return -EDEADLK; 61301768b42SPeter Zijlstra } 61401768b42SPeter Zijlstra 61501768b42SPeter Zijlstra return 0; 61601768b42SPeter Zijlstra } 61701768b42SPeter Zijlstra 61801768b42SPeter Zijlstra /* 61901768b42SPeter Zijlstra * Lock a mutex (possibly interruptible), slowpath: 62001768b42SPeter Zijlstra */ 62101768b42SPeter Zijlstra static __always_inline int __sched 62201768b42SPeter Zijlstra __mutex_lock_common(struct mutex *lock, long state, unsigned int subclass, 62301768b42SPeter Zijlstra struct lockdep_map *nest_lock, unsigned long ip, 62401768b42SPeter Zijlstra struct ww_acquire_ctx *ww_ctx, const bool use_ww_ctx) 62501768b42SPeter Zijlstra { 62601768b42SPeter Zijlstra struct mutex_waiter waiter; 62701768b42SPeter Zijlstra unsigned long flags; 6289d659ae1SPeter Zijlstra bool first = false; 629a40ca565SWaiman Long struct ww_mutex *ww; 63001768b42SPeter Zijlstra int ret; 63101768b42SPeter Zijlstra 632a40ca565SWaiman Long ww = container_of(lock, struct ww_mutex, base); 633ea9e0fb8SNicolai Hähnle 634ea9e0fb8SNicolai Hähnle if (use_ww_ctx && ww_ctx) { 6350422e83dSChris Wilson if (unlikely(ww_ctx == READ_ONCE(ww->ctx))) 6360422e83dSChris Wilson return -EALREADY; 6370422e83dSChris Wilson } 6380422e83dSChris Wilson 63901768b42SPeter Zijlstra preempt_disable(); 64001768b42SPeter Zijlstra mutex_acquire_nest(&lock->dep_map, subclass, 0, nest_lock, ip); 64101768b42SPeter Zijlstra 642e274795eSPeter Zijlstra if (__mutex_trylock(lock) || 643b341afb3SWaiman Long mutex_optimistic_spin(lock, ww_ctx, use_ww_ctx, false)) { 64476916515SDavidlohr Bueso /* got the lock, yay! */ 6453ca0ff57SPeter Zijlstra lock_acquired(&lock->dep_map, ip); 646ea9e0fb8SNicolai Hähnle if (use_ww_ctx && ww_ctx) 6473ca0ff57SPeter Zijlstra ww_mutex_set_context_fastpath(ww, ww_ctx); 64801768b42SPeter Zijlstra preempt_enable(); 64901768b42SPeter Zijlstra return 0; 65001768b42SPeter Zijlstra } 65101768b42SPeter Zijlstra 65201768b42SPeter Zijlstra spin_lock_mutex(&lock->wait_lock, flags); 6531e820c96SJason Low /* 6543ca0ff57SPeter Zijlstra * After waiting to acquire the wait_lock, try again. 6551e820c96SJason Low */ 656e274795eSPeter Zijlstra if (__mutex_trylock(lock)) 65701768b42SPeter Zijlstra goto skip_wait; 65801768b42SPeter Zijlstra 65901768b42SPeter Zijlstra debug_mutex_lock_common(lock, &waiter); 660d269a8b8SDavidlohr Bueso debug_mutex_add_waiter(lock, &waiter, current); 66101768b42SPeter Zijlstra 66201768b42SPeter Zijlstra /* add waiting tasks to the end of the waitqueue (FIFO): */ 66301768b42SPeter Zijlstra list_add_tail(&waiter.list, &lock->wait_list); 664d269a8b8SDavidlohr Bueso waiter.task = current; 66501768b42SPeter Zijlstra 6669d659ae1SPeter Zijlstra if (__mutex_waiter_is_first(lock, &waiter)) 6673ca0ff57SPeter Zijlstra __mutex_set_flag(lock, MUTEX_FLAG_WAITERS); 6683ca0ff57SPeter Zijlstra 66901768b42SPeter Zijlstra lock_contended(&lock->dep_map, ip); 67001768b42SPeter Zijlstra 671642fa448SDavidlohr Bueso set_current_state(state); 67201768b42SPeter Zijlstra for (;;) { 6735bbd7e64SPeter Zijlstra /* 6745bbd7e64SPeter Zijlstra * Once we hold wait_lock, we're serialized against 6755bbd7e64SPeter Zijlstra * mutex_unlock() handing the lock off to us, do a trylock 6765bbd7e64SPeter Zijlstra * before testing the error conditions to make sure we pick up 6775bbd7e64SPeter Zijlstra * the handoff. 6785bbd7e64SPeter Zijlstra */ 679e274795eSPeter Zijlstra if (__mutex_trylock(lock)) 6805bbd7e64SPeter Zijlstra goto acquired; 68101768b42SPeter Zijlstra 68201768b42SPeter Zijlstra /* 6835bbd7e64SPeter Zijlstra * Check for signals and wound conditions while holding 6845bbd7e64SPeter Zijlstra * wait_lock. This ensures the lock cancellation is ordered 6855bbd7e64SPeter Zijlstra * against mutex_unlock() and wake-ups do not go missing. 68601768b42SPeter Zijlstra */ 687d269a8b8SDavidlohr Bueso if (unlikely(signal_pending_state(state, current))) { 68801768b42SPeter Zijlstra ret = -EINTR; 68901768b42SPeter Zijlstra goto err; 69001768b42SPeter Zijlstra } 69101768b42SPeter Zijlstra 692ea9e0fb8SNicolai Hähnle if (use_ww_ctx && ww_ctx && ww_ctx->acquired > 0) { 69363dc47e9SDavidlohr Bueso ret = __ww_mutex_lock_check_stamp(lock, ww_ctx); 69401768b42SPeter Zijlstra if (ret) 69501768b42SPeter Zijlstra goto err; 69601768b42SPeter Zijlstra } 69701768b42SPeter Zijlstra 69801768b42SPeter Zijlstra spin_unlock_mutex(&lock->wait_lock, flags); 69901768b42SPeter Zijlstra schedule_preempt_disabled(); 7009d659ae1SPeter Zijlstra 7019d659ae1SPeter Zijlstra if (!first && __mutex_waiter_is_first(lock, &waiter)) { 7029d659ae1SPeter Zijlstra first = true; 7039d659ae1SPeter Zijlstra __mutex_set_flag(lock, MUTEX_FLAG_HANDOFF); 7049d659ae1SPeter Zijlstra } 7055bbd7e64SPeter Zijlstra 706642fa448SDavidlohr Bueso set_current_state(state); 7075bbd7e64SPeter Zijlstra /* 7085bbd7e64SPeter Zijlstra * Here we order against unlock; we must either see it change 7095bbd7e64SPeter Zijlstra * state back to RUNNING and fall through the next schedule(), 7105bbd7e64SPeter Zijlstra * or we must see its unlock and acquire. 7115bbd7e64SPeter Zijlstra */ 712e274795eSPeter Zijlstra if (__mutex_trylock(lock) || 713e274795eSPeter Zijlstra (first && mutex_optimistic_spin(lock, ww_ctx, use_ww_ctx, true))) 7145bbd7e64SPeter Zijlstra break; 7155bbd7e64SPeter Zijlstra 7165bbd7e64SPeter Zijlstra spin_lock_mutex(&lock->wait_lock, flags); 71701768b42SPeter Zijlstra } 7185bbd7e64SPeter Zijlstra spin_lock_mutex(&lock->wait_lock, flags); 7195bbd7e64SPeter Zijlstra acquired: 720642fa448SDavidlohr Bueso __set_current_state(TASK_RUNNING); 72151587bcfSDavidlohr Bueso 722d269a8b8SDavidlohr Bueso mutex_remove_waiter(lock, &waiter, current); 72301768b42SPeter Zijlstra if (likely(list_empty(&lock->wait_list))) 7249d659ae1SPeter Zijlstra __mutex_clear_flag(lock, MUTEX_FLAGS); 7253ca0ff57SPeter Zijlstra 72601768b42SPeter Zijlstra debug_mutex_free_waiter(&waiter); 72701768b42SPeter Zijlstra 72801768b42SPeter Zijlstra skip_wait: 72901768b42SPeter Zijlstra /* got the lock - cleanup and rejoice! */ 73001768b42SPeter Zijlstra lock_acquired(&lock->dep_map, ip); 73101768b42SPeter Zijlstra 732ea9e0fb8SNicolai Hähnle if (use_ww_ctx && ww_ctx) 7334bd19084SDavidlohr Bueso ww_mutex_set_context_slowpath(ww, ww_ctx); 73401768b42SPeter Zijlstra 73501768b42SPeter Zijlstra spin_unlock_mutex(&lock->wait_lock, flags); 73601768b42SPeter Zijlstra preempt_enable(); 73701768b42SPeter Zijlstra return 0; 73801768b42SPeter Zijlstra 73901768b42SPeter Zijlstra err: 740642fa448SDavidlohr Bueso __set_current_state(TASK_RUNNING); 741d269a8b8SDavidlohr Bueso mutex_remove_waiter(lock, &waiter, current); 74201768b42SPeter Zijlstra spin_unlock_mutex(&lock->wait_lock, flags); 74301768b42SPeter Zijlstra debug_mutex_free_waiter(&waiter); 74401768b42SPeter Zijlstra mutex_release(&lock->dep_map, 1, ip); 74501768b42SPeter Zijlstra preempt_enable(); 74601768b42SPeter Zijlstra return ret; 74701768b42SPeter Zijlstra } 74801768b42SPeter Zijlstra 74901768b42SPeter Zijlstra #ifdef CONFIG_DEBUG_LOCK_ALLOC 75001768b42SPeter Zijlstra void __sched 75101768b42SPeter Zijlstra mutex_lock_nested(struct mutex *lock, unsigned int subclass) 75201768b42SPeter Zijlstra { 75301768b42SPeter Zijlstra might_sleep(); 75401768b42SPeter Zijlstra __mutex_lock_common(lock, TASK_UNINTERRUPTIBLE, 75501768b42SPeter Zijlstra subclass, NULL, _RET_IP_, NULL, 0); 75601768b42SPeter Zijlstra } 75701768b42SPeter Zijlstra 75801768b42SPeter Zijlstra EXPORT_SYMBOL_GPL(mutex_lock_nested); 75901768b42SPeter Zijlstra 76001768b42SPeter Zijlstra void __sched 76101768b42SPeter Zijlstra _mutex_lock_nest_lock(struct mutex *lock, struct lockdep_map *nest) 76201768b42SPeter Zijlstra { 76301768b42SPeter Zijlstra might_sleep(); 76401768b42SPeter Zijlstra __mutex_lock_common(lock, TASK_UNINTERRUPTIBLE, 76501768b42SPeter Zijlstra 0, nest, _RET_IP_, NULL, 0); 76601768b42SPeter Zijlstra } 76701768b42SPeter Zijlstra EXPORT_SYMBOL_GPL(_mutex_lock_nest_lock); 76801768b42SPeter Zijlstra 76901768b42SPeter Zijlstra int __sched 77001768b42SPeter Zijlstra mutex_lock_killable_nested(struct mutex *lock, unsigned int subclass) 77101768b42SPeter Zijlstra { 77201768b42SPeter Zijlstra might_sleep(); 77301768b42SPeter Zijlstra return __mutex_lock_common(lock, TASK_KILLABLE, 77401768b42SPeter Zijlstra subclass, NULL, _RET_IP_, NULL, 0); 77501768b42SPeter Zijlstra } 77601768b42SPeter Zijlstra EXPORT_SYMBOL_GPL(mutex_lock_killable_nested); 77701768b42SPeter Zijlstra 77801768b42SPeter Zijlstra int __sched 77901768b42SPeter Zijlstra mutex_lock_interruptible_nested(struct mutex *lock, unsigned int subclass) 78001768b42SPeter Zijlstra { 78101768b42SPeter Zijlstra might_sleep(); 78201768b42SPeter Zijlstra return __mutex_lock_common(lock, TASK_INTERRUPTIBLE, 78301768b42SPeter Zijlstra subclass, NULL, _RET_IP_, NULL, 0); 78401768b42SPeter Zijlstra } 78501768b42SPeter Zijlstra EXPORT_SYMBOL_GPL(mutex_lock_interruptible_nested); 78601768b42SPeter Zijlstra 78701768b42SPeter Zijlstra static inline int 78801768b42SPeter Zijlstra ww_mutex_deadlock_injection(struct ww_mutex *lock, struct ww_acquire_ctx *ctx) 78901768b42SPeter Zijlstra { 79001768b42SPeter Zijlstra #ifdef CONFIG_DEBUG_WW_MUTEX_SLOWPATH 79101768b42SPeter Zijlstra unsigned tmp; 79201768b42SPeter Zijlstra 79301768b42SPeter Zijlstra if (ctx->deadlock_inject_countdown-- == 0) { 79401768b42SPeter Zijlstra tmp = ctx->deadlock_inject_interval; 79501768b42SPeter Zijlstra if (tmp > UINT_MAX/4) 79601768b42SPeter Zijlstra tmp = UINT_MAX; 79701768b42SPeter Zijlstra else 79801768b42SPeter Zijlstra tmp = tmp*2 + tmp + tmp/2; 79901768b42SPeter Zijlstra 80001768b42SPeter Zijlstra ctx->deadlock_inject_interval = tmp; 80101768b42SPeter Zijlstra ctx->deadlock_inject_countdown = tmp; 80201768b42SPeter Zijlstra ctx->contending_lock = lock; 80301768b42SPeter Zijlstra 80401768b42SPeter Zijlstra ww_mutex_unlock(lock); 80501768b42SPeter Zijlstra 80601768b42SPeter Zijlstra return -EDEADLK; 80701768b42SPeter Zijlstra } 80801768b42SPeter Zijlstra #endif 80901768b42SPeter Zijlstra 81001768b42SPeter Zijlstra return 0; 81101768b42SPeter Zijlstra } 81201768b42SPeter Zijlstra 81301768b42SPeter Zijlstra int __sched 814*c5470b22SNicolai Hähnle ww_mutex_lock(struct ww_mutex *lock, struct ww_acquire_ctx *ctx) 81501768b42SPeter Zijlstra { 81601768b42SPeter Zijlstra int ret; 81701768b42SPeter Zijlstra 81801768b42SPeter Zijlstra might_sleep(); 81901768b42SPeter Zijlstra ret = __mutex_lock_common(&lock->base, TASK_UNINTERRUPTIBLE, 820ea9e0fb8SNicolai Hähnle 0, ctx ? &ctx->dep_map : NULL, _RET_IP_, 821ea9e0fb8SNicolai Hähnle ctx, 1); 822ea9e0fb8SNicolai Hähnle if (!ret && ctx && ctx->acquired > 1) 82301768b42SPeter Zijlstra return ww_mutex_deadlock_injection(lock, ctx); 82401768b42SPeter Zijlstra 82501768b42SPeter Zijlstra return ret; 82601768b42SPeter Zijlstra } 827*c5470b22SNicolai Hähnle EXPORT_SYMBOL_GPL(ww_mutex_lock); 82801768b42SPeter Zijlstra 82901768b42SPeter Zijlstra int __sched 830*c5470b22SNicolai Hähnle ww_mutex_lock_interruptible(struct ww_mutex *lock, struct ww_acquire_ctx *ctx) 83101768b42SPeter Zijlstra { 83201768b42SPeter Zijlstra int ret; 83301768b42SPeter Zijlstra 83401768b42SPeter Zijlstra might_sleep(); 83501768b42SPeter Zijlstra ret = __mutex_lock_common(&lock->base, TASK_INTERRUPTIBLE, 836ea9e0fb8SNicolai Hähnle 0, ctx ? &ctx->dep_map : NULL, _RET_IP_, 837ea9e0fb8SNicolai Hähnle ctx, 1); 83801768b42SPeter Zijlstra 839ea9e0fb8SNicolai Hähnle if (!ret && ctx && ctx->acquired > 1) 84001768b42SPeter Zijlstra return ww_mutex_deadlock_injection(lock, ctx); 84101768b42SPeter Zijlstra 84201768b42SPeter Zijlstra return ret; 84301768b42SPeter Zijlstra } 844*c5470b22SNicolai Hähnle EXPORT_SYMBOL_GPL(ww_mutex_lock_interruptible); 84501768b42SPeter Zijlstra 84601768b42SPeter Zijlstra #endif 84701768b42SPeter Zijlstra 84801768b42SPeter Zijlstra /* 84901768b42SPeter Zijlstra * Release the lock, slowpath: 85001768b42SPeter Zijlstra */ 8513ca0ff57SPeter Zijlstra static noinline void __sched __mutex_unlock_slowpath(struct mutex *lock, unsigned long ip) 85201768b42SPeter Zijlstra { 8539d659ae1SPeter Zijlstra struct task_struct *next = NULL; 8543ca0ff57SPeter Zijlstra unsigned long owner, flags; 855194a6b5bSWaiman Long DEFINE_WAKE_Q(wake_q); 85601768b42SPeter Zijlstra 8573ca0ff57SPeter Zijlstra mutex_release(&lock->dep_map, 1, ip); 8583ca0ff57SPeter Zijlstra 85901768b42SPeter Zijlstra /* 8609d659ae1SPeter Zijlstra * Release the lock before (potentially) taking the spinlock such that 8619d659ae1SPeter Zijlstra * other contenders can get on with things ASAP. 8629d659ae1SPeter Zijlstra * 8639d659ae1SPeter Zijlstra * Except when HANDOFF, in that case we must not clear the owner field, 8649d659ae1SPeter Zijlstra * but instead set it to the top waiter. 86501768b42SPeter Zijlstra */ 8669d659ae1SPeter Zijlstra owner = atomic_long_read(&lock->owner); 8679d659ae1SPeter Zijlstra for (;;) { 8689d659ae1SPeter Zijlstra unsigned long old; 8699d659ae1SPeter Zijlstra 8709d659ae1SPeter Zijlstra #ifdef CONFIG_DEBUG_MUTEXES 8719d659ae1SPeter Zijlstra DEBUG_LOCKS_WARN_ON(__owner_task(owner) != current); 872e274795eSPeter Zijlstra DEBUG_LOCKS_WARN_ON(owner & MUTEX_FLAG_PICKUP); 8739d659ae1SPeter Zijlstra #endif 8749d659ae1SPeter Zijlstra 8759d659ae1SPeter Zijlstra if (owner & MUTEX_FLAG_HANDOFF) 8769d659ae1SPeter Zijlstra break; 8779d659ae1SPeter Zijlstra 8789d659ae1SPeter Zijlstra old = atomic_long_cmpxchg_release(&lock->owner, owner, 8799d659ae1SPeter Zijlstra __owner_flags(owner)); 8809d659ae1SPeter Zijlstra if (old == owner) { 8819d659ae1SPeter Zijlstra if (owner & MUTEX_FLAG_WAITERS) 8829d659ae1SPeter Zijlstra break; 8839d659ae1SPeter Zijlstra 8843ca0ff57SPeter Zijlstra return; 8859d659ae1SPeter Zijlstra } 8869d659ae1SPeter Zijlstra 8879d659ae1SPeter Zijlstra owner = old; 8889d659ae1SPeter Zijlstra } 88901768b42SPeter Zijlstra 8901d8fe7dcSJason Low spin_lock_mutex(&lock->wait_lock, flags); 8911d8fe7dcSJason Low debug_mutex_unlock(lock); 89201768b42SPeter Zijlstra if (!list_empty(&lock->wait_list)) { 89301768b42SPeter Zijlstra /* get the first entry from the wait-list: */ 89401768b42SPeter Zijlstra struct mutex_waiter *waiter = 8959d659ae1SPeter Zijlstra list_first_entry(&lock->wait_list, 89601768b42SPeter Zijlstra struct mutex_waiter, list); 89701768b42SPeter Zijlstra 8989d659ae1SPeter Zijlstra next = waiter->task; 8999d659ae1SPeter Zijlstra 90001768b42SPeter Zijlstra debug_mutex_wake_waiter(lock, waiter); 9019d659ae1SPeter Zijlstra wake_q_add(&wake_q, next); 90201768b42SPeter Zijlstra } 90301768b42SPeter Zijlstra 9049d659ae1SPeter Zijlstra if (owner & MUTEX_FLAG_HANDOFF) 9059d659ae1SPeter Zijlstra __mutex_handoff(lock, next); 9069d659ae1SPeter Zijlstra 90701768b42SPeter Zijlstra spin_unlock_mutex(&lock->wait_lock, flags); 9089d659ae1SPeter Zijlstra 9091329ce6fSDavidlohr Bueso wake_up_q(&wake_q); 91001768b42SPeter Zijlstra } 91101768b42SPeter Zijlstra 91201768b42SPeter Zijlstra #ifndef CONFIG_DEBUG_LOCK_ALLOC 91301768b42SPeter Zijlstra /* 91401768b42SPeter Zijlstra * Here come the less common (and hence less performance-critical) APIs: 91501768b42SPeter Zijlstra * mutex_lock_interruptible() and mutex_trylock(). 91601768b42SPeter Zijlstra */ 91701768b42SPeter Zijlstra static noinline int __sched 91801768b42SPeter Zijlstra __mutex_lock_killable_slowpath(struct mutex *lock); 91901768b42SPeter Zijlstra 92001768b42SPeter Zijlstra static noinline int __sched 92101768b42SPeter Zijlstra __mutex_lock_interruptible_slowpath(struct mutex *lock); 92201768b42SPeter Zijlstra 92301768b42SPeter Zijlstra /** 92401768b42SPeter Zijlstra * mutex_lock_interruptible - acquire the mutex, interruptible 92501768b42SPeter Zijlstra * @lock: the mutex to be acquired 92601768b42SPeter Zijlstra * 92701768b42SPeter Zijlstra * Lock the mutex like mutex_lock(), and return 0 if the mutex has 92801768b42SPeter Zijlstra * been acquired or sleep until the mutex becomes available. If a 92901768b42SPeter Zijlstra * signal arrives while waiting for the lock then this function 93001768b42SPeter Zijlstra * returns -EINTR. 93101768b42SPeter Zijlstra * 93201768b42SPeter Zijlstra * This function is similar to (but not equivalent to) down_interruptible(). 93301768b42SPeter Zijlstra */ 93401768b42SPeter Zijlstra int __sched mutex_lock_interruptible(struct mutex *lock) 93501768b42SPeter Zijlstra { 93601768b42SPeter Zijlstra might_sleep(); 9373ca0ff57SPeter Zijlstra 9383ca0ff57SPeter Zijlstra if (__mutex_trylock_fast(lock)) 93901768b42SPeter Zijlstra return 0; 9403ca0ff57SPeter Zijlstra 94101768b42SPeter Zijlstra return __mutex_lock_interruptible_slowpath(lock); 94201768b42SPeter Zijlstra } 94301768b42SPeter Zijlstra 94401768b42SPeter Zijlstra EXPORT_SYMBOL(mutex_lock_interruptible); 94501768b42SPeter Zijlstra 94601768b42SPeter Zijlstra int __sched mutex_lock_killable(struct mutex *lock) 94701768b42SPeter Zijlstra { 94801768b42SPeter Zijlstra might_sleep(); 9493ca0ff57SPeter Zijlstra 9503ca0ff57SPeter Zijlstra if (__mutex_trylock_fast(lock)) 95101768b42SPeter Zijlstra return 0; 9523ca0ff57SPeter Zijlstra 95301768b42SPeter Zijlstra return __mutex_lock_killable_slowpath(lock); 95401768b42SPeter Zijlstra } 95501768b42SPeter Zijlstra EXPORT_SYMBOL(mutex_lock_killable); 95601768b42SPeter Zijlstra 9573ca0ff57SPeter Zijlstra static noinline void __sched 9583ca0ff57SPeter Zijlstra __mutex_lock_slowpath(struct mutex *lock) 95901768b42SPeter Zijlstra { 96001768b42SPeter Zijlstra __mutex_lock_common(lock, TASK_UNINTERRUPTIBLE, 0, 96101768b42SPeter Zijlstra NULL, _RET_IP_, NULL, 0); 96201768b42SPeter Zijlstra } 96301768b42SPeter Zijlstra 96401768b42SPeter Zijlstra static noinline int __sched 96501768b42SPeter Zijlstra __mutex_lock_killable_slowpath(struct mutex *lock) 96601768b42SPeter Zijlstra { 96701768b42SPeter Zijlstra return __mutex_lock_common(lock, TASK_KILLABLE, 0, 96801768b42SPeter Zijlstra NULL, _RET_IP_, NULL, 0); 96901768b42SPeter Zijlstra } 97001768b42SPeter Zijlstra 97101768b42SPeter Zijlstra static noinline int __sched 97201768b42SPeter Zijlstra __mutex_lock_interruptible_slowpath(struct mutex *lock) 97301768b42SPeter Zijlstra { 97401768b42SPeter Zijlstra return __mutex_lock_common(lock, TASK_INTERRUPTIBLE, 0, 97501768b42SPeter Zijlstra NULL, _RET_IP_, NULL, 0); 97601768b42SPeter Zijlstra } 97701768b42SPeter Zijlstra 97801768b42SPeter Zijlstra static noinline int __sched 97901768b42SPeter Zijlstra __ww_mutex_lock_slowpath(struct ww_mutex *lock, struct ww_acquire_ctx *ctx) 98001768b42SPeter Zijlstra { 98101768b42SPeter Zijlstra return __mutex_lock_common(&lock->base, TASK_UNINTERRUPTIBLE, 0, 98201768b42SPeter Zijlstra NULL, _RET_IP_, ctx, 1); 98301768b42SPeter Zijlstra } 98401768b42SPeter Zijlstra 98501768b42SPeter Zijlstra static noinline int __sched 98601768b42SPeter Zijlstra __ww_mutex_lock_interruptible_slowpath(struct ww_mutex *lock, 98701768b42SPeter Zijlstra struct ww_acquire_ctx *ctx) 98801768b42SPeter Zijlstra { 98901768b42SPeter Zijlstra return __mutex_lock_common(&lock->base, TASK_INTERRUPTIBLE, 0, 99001768b42SPeter Zijlstra NULL, _RET_IP_, ctx, 1); 99101768b42SPeter Zijlstra } 99201768b42SPeter Zijlstra 99301768b42SPeter Zijlstra #endif 99401768b42SPeter Zijlstra 99501768b42SPeter Zijlstra /** 99601768b42SPeter Zijlstra * mutex_trylock - try to acquire the mutex, without waiting 99701768b42SPeter Zijlstra * @lock: the mutex to be acquired 99801768b42SPeter Zijlstra * 99901768b42SPeter Zijlstra * Try to acquire the mutex atomically. Returns 1 if the mutex 100001768b42SPeter Zijlstra * has been acquired successfully, and 0 on contention. 100101768b42SPeter Zijlstra * 100201768b42SPeter Zijlstra * NOTE: this function follows the spin_trylock() convention, so 100301768b42SPeter Zijlstra * it is negated from the down_trylock() return values! Be careful 100401768b42SPeter Zijlstra * about this when converting semaphore users to mutexes. 100501768b42SPeter Zijlstra * 100601768b42SPeter Zijlstra * This function must not be used in interrupt context. The 100701768b42SPeter Zijlstra * mutex must be released by the same task that acquired it. 100801768b42SPeter Zijlstra */ 100901768b42SPeter Zijlstra int __sched mutex_trylock(struct mutex *lock) 101001768b42SPeter Zijlstra { 1011e274795eSPeter Zijlstra bool locked = __mutex_trylock(lock); 101201768b42SPeter Zijlstra 10133ca0ff57SPeter Zijlstra if (locked) 10143ca0ff57SPeter Zijlstra mutex_acquire(&lock->dep_map, 0, 1, _RET_IP_); 101501768b42SPeter Zijlstra 10163ca0ff57SPeter Zijlstra return locked; 101701768b42SPeter Zijlstra } 101801768b42SPeter Zijlstra EXPORT_SYMBOL(mutex_trylock); 101901768b42SPeter Zijlstra 102001768b42SPeter Zijlstra #ifndef CONFIG_DEBUG_LOCK_ALLOC 102101768b42SPeter Zijlstra int __sched 1022*c5470b22SNicolai Hähnle ww_mutex_lock(struct ww_mutex *lock, struct ww_acquire_ctx *ctx) 102301768b42SPeter Zijlstra { 102401768b42SPeter Zijlstra might_sleep(); 102501768b42SPeter Zijlstra 10263ca0ff57SPeter Zijlstra if (__mutex_trylock_fast(&lock->base)) { 1027ea9e0fb8SNicolai Hähnle if (ctx) 102801768b42SPeter Zijlstra ww_mutex_set_context_fastpath(lock, ctx); 10293ca0ff57SPeter Zijlstra return 0; 10303ca0ff57SPeter Zijlstra } 10313ca0ff57SPeter Zijlstra 10323ca0ff57SPeter Zijlstra return __ww_mutex_lock_slowpath(lock, ctx); 103301768b42SPeter Zijlstra } 1034*c5470b22SNicolai Hähnle EXPORT_SYMBOL(ww_mutex_lock); 103501768b42SPeter Zijlstra 103601768b42SPeter Zijlstra int __sched 1037*c5470b22SNicolai Hähnle ww_mutex_lock_interruptible(struct ww_mutex *lock, struct ww_acquire_ctx *ctx) 103801768b42SPeter Zijlstra { 103901768b42SPeter Zijlstra might_sleep(); 104001768b42SPeter Zijlstra 10413ca0ff57SPeter Zijlstra if (__mutex_trylock_fast(&lock->base)) { 1042ea9e0fb8SNicolai Hähnle if (ctx) 104301768b42SPeter Zijlstra ww_mutex_set_context_fastpath(lock, ctx); 10443ca0ff57SPeter Zijlstra return 0; 10453ca0ff57SPeter Zijlstra } 10463ca0ff57SPeter Zijlstra 10473ca0ff57SPeter Zijlstra return __ww_mutex_lock_interruptible_slowpath(lock, ctx); 104801768b42SPeter Zijlstra } 1049*c5470b22SNicolai Hähnle EXPORT_SYMBOL(ww_mutex_lock_interruptible); 105001768b42SPeter Zijlstra 105101768b42SPeter Zijlstra #endif 105201768b42SPeter Zijlstra 105301768b42SPeter Zijlstra /** 105401768b42SPeter Zijlstra * atomic_dec_and_mutex_lock - return holding mutex if we dec to 0 105501768b42SPeter Zijlstra * @cnt: the atomic which we are to dec 105601768b42SPeter Zijlstra * @lock: the mutex to return holding if we dec to 0 105701768b42SPeter Zijlstra * 105801768b42SPeter Zijlstra * return true and hold lock if we dec to 0, return false otherwise 105901768b42SPeter Zijlstra */ 106001768b42SPeter Zijlstra int atomic_dec_and_mutex_lock(atomic_t *cnt, struct mutex *lock) 106101768b42SPeter Zijlstra { 106201768b42SPeter Zijlstra /* dec if we can't possibly hit 0 */ 106301768b42SPeter Zijlstra if (atomic_add_unless(cnt, -1, 1)) 106401768b42SPeter Zijlstra return 0; 106501768b42SPeter Zijlstra /* we might hit 0, so take the lock */ 106601768b42SPeter Zijlstra mutex_lock(lock); 106701768b42SPeter Zijlstra if (!atomic_dec_and_test(cnt)) { 106801768b42SPeter Zijlstra /* when we actually did the dec, we didn't hit 0 */ 106901768b42SPeter Zijlstra mutex_unlock(lock); 107001768b42SPeter Zijlstra return 0; 107101768b42SPeter Zijlstra } 107201768b42SPeter Zijlstra /* we hit 0, and we hold the lock */ 107301768b42SPeter Zijlstra return 1; 107401768b42SPeter Zijlstra } 107501768b42SPeter Zijlstra EXPORT_SYMBOL(atomic_dec_and_mutex_lock); 1076