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H. Peter Anvin1965aae2008-10-22 22:26:29 -07001#ifndef _ASM_X86_SPINLOCK_H
2#define _ASM_X86_SPINLOCK_H
Glauber de Oliveira Costa2fed0c52008-01-30 13:30:33 +01003
Arun Sharma600634972011-07-26 16:09:06 -07004#include <linux/atomic.h>
Thomas Gleixner1075cf72008-01-30 13:30:34 +01005#include <asm/page.h>
6#include <asm/processor.h>
Nick Piggin314cdbe2008-01-30 13:31:21 +01007#include <linux/compiler.h>
Jeremy Fitzhardinge74d4aff2008-07-07 12:07:50 -07008#include <asm/paravirt.h>
Thomas Gleixner1075cf72008-01-30 13:30:34 +01009/*
10 * Your basic SMP spinlocks, allowing only a single CPU anywhere
11 *
12 * Simple spin lock operations. There are two variants, one clears IRQ's
13 * on the local processor, one does not.
14 *
Richard Weinberger83be4ff2012-08-14 14:47:37 -070015 * These are fair FIFO ticket locks, which support up to 2^16 CPUs.
Thomas Gleixner1075cf72008-01-30 13:30:34 +010016 *
17 * (the type definitions are in asm/spinlock_types.h)
18 */
19
Thomas Gleixner96a388d2007-10-11 11:20:03 +020020#ifdef CONFIG_X86_32
Thomas Gleixner1075cf72008-01-30 13:30:34 +010021# define LOCK_PTR_REG "a"
Thomas Gleixner96a388d2007-10-11 11:20:03 +020022#else
Thomas Gleixner1075cf72008-01-30 13:30:34 +010023# define LOCK_PTR_REG "D"
Thomas Gleixner96a388d2007-10-11 11:20:03 +020024#endif
Glauber de Oliveira Costa2fed0c52008-01-30 13:30:33 +010025
Nick Piggin3a556b22008-01-30 13:33:00 +010026#if defined(CONFIG_X86_32) && \
27 (defined(CONFIG_X86_OOSTORE) || defined(CONFIG_X86_PPRO_FENCE))
28/*
29 * On PPro SMP or if we are using OOSTORE, we use a locked operation to unlock
30 * (PPro errata 66, 92)
31 */
32# define UNLOCK_LOCK_PREFIX LOCK_PREFIX
33#else
34# define UNLOCK_LOCK_PREFIX
Nick Piggin314cdbe2008-01-30 13:31:21 +010035#endif
36
Nick Piggin3a556b22008-01-30 13:33:00 +010037/*
38 * Ticket locks are conceptually two parts, one indicating the current head of
39 * the queue, and the other indicating the current tail. The lock is acquired
40 * by atomically noting the tail and incrementing it by one (thus adding
41 * ourself to the queue and noting our position), then waiting until the head
42 * becomes equal to the the initial value of the tail.
43 *
44 * We use an xadd covering *both* parts of the lock, to increment the tail and
45 * also load the position of the head, which takes care of memory ordering
46 * issues and should be optimal for the uncontended case. Note the tail must be
47 * in the high part, because a wide xadd increment of the low part would carry
48 * up and contaminate the high part.
Nick Piggin3a556b22008-01-30 13:33:00 +010049 */
Thomas Gleixner445c8952009-12-02 19:49:50 +010050static __always_inline void __ticket_spin_lock(arch_spinlock_t *lock)
Thomas Gleixner1075cf72008-01-30 13:30:34 +010051{
Jeremy Fitzhardinge29944882010-07-13 14:07:45 -070052 register struct __raw_tickets inc = { .tail = 1 };
Nick Piggin314cdbe2008-01-30 13:31:21 +010053
Jeremy Fitzhardinge29944882010-07-13 14:07:45 -070054 inc = xadd(&lock->tickets, inc);
Jeremy Fitzhardingec576a3e2010-07-03 01:06:04 +010055
56 for (;;) {
Jeremy Fitzhardinge29944882010-07-13 14:07:45 -070057 if (inc.head == inc.tail)
Jeremy Fitzhardingec576a3e2010-07-03 01:06:04 +010058 break;
59 cpu_relax();
Jeremy Fitzhardinge29944882010-07-13 14:07:45 -070060 inc.head = ACCESS_ONCE(lock->tickets.head);
Jeremy Fitzhardingec576a3e2010-07-03 01:06:04 +010061 }
62 barrier(); /* make sure nothing creeps before the lock is taken */
Thomas Gleixner1075cf72008-01-30 13:30:34 +010063}
64
Thomas Gleixner445c8952009-12-02 19:49:50 +010065static __always_inline int __ticket_spin_trylock(arch_spinlock_t *lock)
Thomas Gleixner1075cf72008-01-30 13:30:34 +010066{
Jeremy Fitzhardinge229855d2010-07-13 15:14:26 -070067 arch_spinlock_t old, new;
Thomas Gleixner1075cf72008-01-30 13:30:34 +010068
Jeremy Fitzhardinge229855d2010-07-13 15:14:26 -070069 old.tickets = ACCESS_ONCE(lock->tickets);
70 if (old.tickets.head != old.tickets.tail)
71 return 0;
Thomas Gleixner1075cf72008-01-30 13:30:34 +010072
Jeremy Fitzhardinge229855d2010-07-13 15:14:26 -070073 new.head_tail = old.head_tail + (1 << TICKET_SHIFT);
74
75 /* cmpxchg is a full barrier, so nothing can move before it */
76 return cmpxchg(&lock->head_tail, old.head_tail, new.head_tail) == old.head_tail;
Thomas Gleixner1075cf72008-01-30 13:30:34 +010077}
78
Thomas Gleixner445c8952009-12-02 19:49:50 +010079static __always_inline void __ticket_spin_unlock(arch_spinlock_t *lock)
Thomas Gleixner1075cf72008-01-30 13:30:34 +010080{
Jeremy Fitzhardinge3d94ae02011-09-28 11:49:28 -070081 __add(&lock->tickets.head, 1, UNLOCK_LOCK_PREFIX);
Thomas Gleixner1075cf72008-01-30 13:30:34 +010082}
83
Thomas Gleixner445c8952009-12-02 19:49:50 +010084static inline int __ticket_spin_is_locked(arch_spinlock_t *lock)
Jan Beulich08f5fcb2008-09-05 13:26:39 +010085{
Jeremy Fitzhardinge84eb9502010-07-02 23:26:36 +010086 struct __raw_tickets tmp = ACCESS_ONCE(lock->tickets);
Jan Beulich08f5fcb2008-09-05 13:26:39 +010087
Jan Beulich7931d492012-02-03 15:06:26 +000088 return tmp.tail != tmp.head;
Jan Beulich08f5fcb2008-09-05 13:26:39 +010089}
90
Thomas Gleixner445c8952009-12-02 19:49:50 +010091static inline int __ticket_spin_is_contended(arch_spinlock_t *lock)
Jan Beulich08f5fcb2008-09-05 13:26:39 +010092{
Jeremy Fitzhardinge84eb9502010-07-02 23:26:36 +010093 struct __raw_tickets tmp = ACCESS_ONCE(lock->tickets);
Jan Beulich08f5fcb2008-09-05 13:26:39 +010094
Jan Beulich7931d492012-02-03 15:06:26 +000095 return (__ticket_t)(tmp.tail - tmp.head) > 1;
Jan Beulich08f5fcb2008-09-05 13:26:39 +010096}
Jeremy Fitzhardinge74d4aff2008-07-07 12:07:50 -070097
Jeremy Fitzhardingeb4ecc122009-05-13 17:16:55 -070098#ifndef CONFIG_PARAVIRT_SPINLOCKS
Jeremy Fitzhardinge8efcbab2008-07-07 12:07:51 -070099
Thomas Gleixner0199c4e2009-12-02 20:01:25 +0100100static inline int arch_spin_is_locked(arch_spinlock_t *lock)
Jeremy Fitzhardinge74d4aff2008-07-07 12:07:50 -0700101{
102 return __ticket_spin_is_locked(lock);
103}
104
Thomas Gleixner0199c4e2009-12-02 20:01:25 +0100105static inline int arch_spin_is_contended(arch_spinlock_t *lock)
Jeremy Fitzhardinge74d4aff2008-07-07 12:07:50 -0700106{
107 return __ticket_spin_is_contended(lock);
108}
Thomas Gleixner0199c4e2009-12-02 20:01:25 +0100109#define arch_spin_is_contended arch_spin_is_contended
Jeremy Fitzhardinge74d4aff2008-07-07 12:07:50 -0700110
Thomas Gleixner0199c4e2009-12-02 20:01:25 +0100111static __always_inline void arch_spin_lock(arch_spinlock_t *lock)
Jeremy Fitzhardinge74d4aff2008-07-07 12:07:50 -0700112{
113 __ticket_spin_lock(lock);
114}
115
Thomas Gleixner0199c4e2009-12-02 20:01:25 +0100116static __always_inline int arch_spin_trylock(arch_spinlock_t *lock)
Jeremy Fitzhardinge74d4aff2008-07-07 12:07:50 -0700117{
118 return __ticket_spin_trylock(lock);
119}
120
Thomas Gleixner0199c4e2009-12-02 20:01:25 +0100121static __always_inline void arch_spin_unlock(arch_spinlock_t *lock)
Jeremy Fitzhardinge74d4aff2008-07-07 12:07:50 -0700122{
123 __ticket_spin_unlock(lock);
124}
Jeremy Fitzhardinge63d3a752008-08-19 13:19:36 -0700125
Thomas Gleixner0199c4e2009-12-02 20:01:25 +0100126static __always_inline void arch_spin_lock_flags(arch_spinlock_t *lock,
Jeremy Fitzhardinge63d3a752008-08-19 13:19:36 -0700127 unsigned long flags)
128{
Thomas Gleixner0199c4e2009-12-02 20:01:25 +0100129 arch_spin_lock(lock);
Jeremy Fitzhardinge63d3a752008-08-19 13:19:36 -0700130}
131
Jeremy Fitzhardingeb4ecc122009-05-13 17:16:55 -0700132#endif /* CONFIG_PARAVIRT_SPINLOCKS */
Jeremy Fitzhardinge74d4aff2008-07-07 12:07:50 -0700133
Thomas Gleixner0199c4e2009-12-02 20:01:25 +0100134static inline void arch_spin_unlock_wait(arch_spinlock_t *lock)
Thomas Gleixner1075cf72008-01-30 13:30:34 +0100135{
Thomas Gleixner0199c4e2009-12-02 20:01:25 +0100136 while (arch_spin_is_locked(lock))
Thomas Gleixner1075cf72008-01-30 13:30:34 +0100137 cpu_relax();
138}
139
140/*
141 * Read-write spinlocks, allowing multiple readers
142 * but only one writer.
143 *
144 * NOTE! it is quite common to have readers in interrupts
145 * but no interrupt writers. For those circumstances we
146 * can "mix" irq-safe locks - any writer needs to get a
147 * irq-safe write-lock, but readers can get non-irqsafe
148 * read-locks.
149 *
150 * On x86, we implement read-write locks as a 32-bit counter
151 * with the high bit (sign) being the "contended" bit.
152 */
153
Nick Piggin314cdbe2008-01-30 13:31:21 +0100154/**
155 * read_can_lock - would read_trylock() succeed?
156 * @lock: the rwlock in question.
157 */
Thomas Gleixnere5931942009-12-03 20:08:46 +0100158static inline int arch_read_can_lock(arch_rwlock_t *lock)
Thomas Gleixner1075cf72008-01-30 13:30:34 +0100159{
Jan Beulicha7500362011-07-19 13:00:45 +0100160 return lock->lock > 0;
Thomas Gleixner1075cf72008-01-30 13:30:34 +0100161}
162
Nick Piggin314cdbe2008-01-30 13:31:21 +0100163/**
164 * write_can_lock - would write_trylock() succeed?
165 * @lock: the rwlock in question.
166 */
Thomas Gleixnere5931942009-12-03 20:08:46 +0100167static inline int arch_write_can_lock(arch_rwlock_t *lock)
Thomas Gleixner1075cf72008-01-30 13:30:34 +0100168{
Jan Beulicha7500362011-07-19 13:00:45 +0100169 return lock->write == WRITE_LOCK_CMP;
Thomas Gleixner1075cf72008-01-30 13:30:34 +0100170}
171
Thomas Gleixnere5931942009-12-03 20:08:46 +0100172static inline void arch_read_lock(arch_rwlock_t *rw)
Thomas Gleixner1075cf72008-01-30 13:30:34 +0100173{
Jan Beulicha7500362011-07-19 13:00:45 +0100174 asm volatile(LOCK_PREFIX READ_LOCK_SIZE(dec) " (%0)\n\t"
Thomas Gleixner1075cf72008-01-30 13:30:34 +0100175 "jns 1f\n"
176 "call __read_lock_failed\n\t"
177 "1:\n"
178 ::LOCK_PTR_REG (rw) : "memory");
179}
180
Thomas Gleixnere5931942009-12-03 20:08:46 +0100181static inline void arch_write_lock(arch_rwlock_t *rw)
Thomas Gleixner1075cf72008-01-30 13:30:34 +0100182{
Jan Beulicha7500362011-07-19 13:00:45 +0100183 asm volatile(LOCK_PREFIX WRITE_LOCK_SUB(%1) "(%0)\n\t"
Thomas Gleixner1075cf72008-01-30 13:30:34 +0100184 "jz 1f\n"
185 "call __write_lock_failed\n\t"
186 "1:\n"
Jan Beulicha7500362011-07-19 13:00:45 +0100187 ::LOCK_PTR_REG (&rw->write), "i" (RW_LOCK_BIAS)
188 : "memory");
Thomas Gleixner1075cf72008-01-30 13:30:34 +0100189}
190
Thomas Gleixnere5931942009-12-03 20:08:46 +0100191static inline int arch_read_trylock(arch_rwlock_t *lock)
Thomas Gleixner1075cf72008-01-30 13:30:34 +0100192{
Jan Beulicha7500362011-07-19 13:00:45 +0100193 READ_LOCK_ATOMIC(t) *count = (READ_LOCK_ATOMIC(t) *)lock;
Thomas Gleixner1075cf72008-01-30 13:30:34 +0100194
Jan Beulicha7500362011-07-19 13:00:45 +0100195 if (READ_LOCK_ATOMIC(dec_return)(count) >= 0)
Thomas Gleixner1075cf72008-01-30 13:30:34 +0100196 return 1;
Jan Beulicha7500362011-07-19 13:00:45 +0100197 READ_LOCK_ATOMIC(inc)(count);
Thomas Gleixner1075cf72008-01-30 13:30:34 +0100198 return 0;
199}
200
Thomas Gleixnere5931942009-12-03 20:08:46 +0100201static inline int arch_write_trylock(arch_rwlock_t *lock)
Thomas Gleixner1075cf72008-01-30 13:30:34 +0100202{
Jan Beulicha7500362011-07-19 13:00:45 +0100203 atomic_t *count = (atomic_t *)&lock->write;
Thomas Gleixner1075cf72008-01-30 13:30:34 +0100204
Jan Beulicha7500362011-07-19 13:00:45 +0100205 if (atomic_sub_and_test(WRITE_LOCK_CMP, count))
Thomas Gleixner1075cf72008-01-30 13:30:34 +0100206 return 1;
Jan Beulicha7500362011-07-19 13:00:45 +0100207 atomic_add(WRITE_LOCK_CMP, count);
Thomas Gleixner1075cf72008-01-30 13:30:34 +0100208 return 0;
209}
210
Thomas Gleixnere5931942009-12-03 20:08:46 +0100211static inline void arch_read_unlock(arch_rwlock_t *rw)
Thomas Gleixner1075cf72008-01-30 13:30:34 +0100212{
Jan Beulicha7500362011-07-19 13:00:45 +0100213 asm volatile(LOCK_PREFIX READ_LOCK_SIZE(inc) " %0"
214 :"+m" (rw->lock) : : "memory");
Thomas Gleixner1075cf72008-01-30 13:30:34 +0100215}
216
Thomas Gleixnere5931942009-12-03 20:08:46 +0100217static inline void arch_write_unlock(arch_rwlock_t *rw)
Thomas Gleixner1075cf72008-01-30 13:30:34 +0100218{
Jan Beulicha7500362011-07-19 13:00:45 +0100219 asm volatile(LOCK_PREFIX WRITE_LOCK_ADD(%1) "%0"
220 : "+m" (rw->write) : "i" (RW_LOCK_BIAS) : "memory");
Thomas Gleixner1075cf72008-01-30 13:30:34 +0100221}
222
Thomas Gleixnere5931942009-12-03 20:08:46 +0100223#define arch_read_lock_flags(lock, flags) arch_read_lock(lock)
224#define arch_write_lock_flags(lock, flags) arch_write_lock(lock)
Robin Holtf5f7eac2009-04-02 16:59:46 -0700225
Jan Beulicha7500362011-07-19 13:00:45 +0100226#undef READ_LOCK_SIZE
227#undef READ_LOCK_ATOMIC
228#undef WRITE_LOCK_ADD
229#undef WRITE_LOCK_SUB
230#undef WRITE_LOCK_CMP
231
Thomas Gleixner0199c4e2009-12-02 20:01:25 +0100232#define arch_spin_relax(lock) cpu_relax()
233#define arch_read_relax(lock) cpu_relax()
234#define arch_write_relax(lock) cpu_relax()
Thomas Gleixner1075cf72008-01-30 13:30:34 +0100235
H. Peter Anvin1965aae2008-10-22 22:26:29 -0700236#endif /* _ASM_X86_SPINLOCK_H */