2005-04-17 06:20:36 +08:00
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/*
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* include/asm-s390/spinlock.h
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*
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* S390 version
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* Copyright (C) 1999 IBM Deutschland Entwicklung GmbH, IBM Corporation
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* Author(s): Martin Schwidefsky (schwidefsky@de.ibm.com)
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*
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* Derived from "include/asm-i386/spinlock.h"
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*/
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#ifndef __ASM_SPINLOCK_H
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#define __ASM_SPINLOCK_H
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2006-10-01 14:27:45 +08:00
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#include <linux/smp.h>
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2006-09-28 22:56:43 +08:00
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static inline int
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_raw_compare_and_swap(volatile unsigned int *lock,
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unsigned int old, unsigned int new)
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{
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asm volatile(
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" cs %0,%3,%1"
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: "=d" (old), "=Q" (*lock)
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: "0" (old), "d" (new), "Q" (*lock)
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: "cc", "memory" );
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return old;
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}
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2005-04-17 06:20:36 +08:00
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/*
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* Simple spin lock operations. There are two variants, one clears IRQ's
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* on the local processor, one does not.
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*
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* We make no fairness assumptions. They have a cost.
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[PATCH] spinlock consolidation
This patch (written by me and also containing many suggestions of Arjan van
de Ven) does a major cleanup of the spinlock code. It does the following
things:
- consolidates and enhances the spinlock/rwlock debugging code
- simplifies the asm/spinlock.h files
- encapsulates the raw spinlock type and moves generic spinlock
features (such as ->break_lock) into the generic code.
- cleans up the spinlock code hierarchy to get rid of the spaghetti.
Most notably there's now only a single variant of the debugging code,
located in lib/spinlock_debug.c. (previously we had one SMP debugging
variant per architecture, plus a separate generic one for UP builds)
Also, i've enhanced the rwlock debugging facility, it will now track
write-owners. There is new spinlock-owner/CPU-tracking on SMP builds too.
All locks have lockup detection now, which will work for both soft and hard
spin/rwlock lockups.
The arch-level include files now only contain the minimally necessary
subset of the spinlock code - all the rest that can be generalized now
lives in the generic headers:
include/asm-i386/spinlock_types.h | 16
include/asm-x86_64/spinlock_types.h | 16
I have also split up the various spinlock variants into separate files,
making it easier to see which does what. The new layout is:
SMP | UP
----------------------------|-----------------------------------
asm/spinlock_types_smp.h | linux/spinlock_types_up.h
linux/spinlock_types.h | linux/spinlock_types.h
asm/spinlock_smp.h | linux/spinlock_up.h
linux/spinlock_api_smp.h | linux/spinlock_api_up.h
linux/spinlock.h | linux/spinlock.h
/*
* here's the role of the various spinlock/rwlock related include files:
*
* on SMP builds:
*
* asm/spinlock_types.h: contains the raw_spinlock_t/raw_rwlock_t and the
* initializers
*
* linux/spinlock_types.h:
* defines the generic type and initializers
*
* asm/spinlock.h: contains the __raw_spin_*()/etc. lowlevel
* implementations, mostly inline assembly code
*
* (also included on UP-debug builds:)
*
* linux/spinlock_api_smp.h:
* contains the prototypes for the _spin_*() APIs.
*
* linux/spinlock.h: builds the final spin_*() APIs.
*
* on UP builds:
*
* linux/spinlock_type_up.h:
* contains the generic, simplified UP spinlock type.
* (which is an empty structure on non-debug builds)
*
* linux/spinlock_types.h:
* defines the generic type and initializers
*
* linux/spinlock_up.h:
* contains the __raw_spin_*()/etc. version of UP
* builds. (which are NOPs on non-debug, non-preempt
* builds)
*
* (included on UP-non-debug builds:)
*
* linux/spinlock_api_up.h:
* builds the _spin_*() APIs.
*
* linux/spinlock.h: builds the final spin_*() APIs.
*/
All SMP and UP architectures are converted by this patch.
arm, i386, ia64, ppc, ppc64, s390/s390x, x64 was build-tested via
crosscompilers. m32r, mips, sh, sparc, have not been tested yet, but should
be mostly fine.
From: Grant Grundler <grundler@parisc-linux.org>
Booted and lightly tested on a500-44 (64-bit, SMP kernel, dual CPU).
Builds 32-bit SMP kernel (not booted or tested). I did not try to build
non-SMP kernels. That should be trivial to fix up later if necessary.
I converted bit ops atomic_hash lock to raw_spinlock_t. Doing so avoids
some ugly nesting of linux/*.h and asm/*.h files. Those particular locks
are well tested and contained entirely inside arch specific code. I do NOT
expect any new issues to arise with them.
If someone does ever need to use debug/metrics with them, then they will
need to unravel this hairball between spinlocks, atomic ops, and bit ops
that exist only because parisc has exactly one atomic instruction: LDCW
(load and clear word).
From: "Luck, Tony" <tony.luck@intel.com>
ia64 fix
Signed-off-by: Ingo Molnar <mingo@elte.hu>
Signed-off-by: Arjan van de Ven <arjanv@infradead.org>
Signed-off-by: Grant Grundler <grundler@parisc-linux.org>
Cc: Matthew Wilcox <willy@debian.org>
Signed-off-by: Hirokazu Takata <takata@linux-m32r.org>
Signed-off-by: Mikael Pettersson <mikpe@csd.uu.se>
Signed-off-by: Benoit Boissinot <benoit.boissinot@ens-lyon.org>
Signed-off-by: Andrew Morton <akpm@osdl.org>
Signed-off-by: Linus Torvalds <torvalds@osdl.org>
2005-09-10 15:25:56 +08:00
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*
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* (the type definitions are in asm/spinlock_types.h)
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2005-04-17 06:20:36 +08:00
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*/
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2009-12-03 03:01:25 +08:00
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#define arch_spin_is_locked(x) ((x)->owner_cpu != 0)
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#define arch_spin_unlock_wait(lock) \
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do { while (arch_spin_is_locked(lock)) \
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arch_spin_relax(lock); } while (0)
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2005-04-17 06:20:36 +08:00
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2009-12-03 03:01:25 +08:00
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extern void arch_spin_lock_wait(arch_spinlock_t *);
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extern void arch_spin_lock_wait_flags(arch_spinlock_t *, unsigned long flags);
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extern int arch_spin_trylock_retry(arch_spinlock_t *);
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extern void arch_spin_relax(arch_spinlock_t *lock);
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2005-07-28 02:44:57 +08:00
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2009-12-03 03:01:25 +08:00
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static inline void arch_spin_lock(arch_spinlock_t *lp)
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2005-04-17 06:20:36 +08:00
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{
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2006-10-01 14:27:45 +08:00
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int old;
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old = _raw_compare_and_swap(&lp->owner_cpu, 0, ~smp_processor_id());
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2008-01-26 21:11:03 +08:00
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if (likely(old == 0))
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2006-10-01 14:27:45 +08:00
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return;
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2009-12-03 03:01:25 +08:00
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arch_spin_lock_wait(lp);
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2005-04-17 06:20:36 +08:00
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}
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2009-12-03 03:01:25 +08:00
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static inline void arch_spin_lock_flags(arch_spinlock_t *lp,
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2008-01-26 21:11:28 +08:00
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unsigned long flags)
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{
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int old;
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old = _raw_compare_and_swap(&lp->owner_cpu, 0, ~smp_processor_id());
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if (likely(old == 0))
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return;
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2009-12-03 03:01:25 +08:00
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arch_spin_lock_wait_flags(lp, flags);
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2008-01-26 21:11:28 +08:00
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}
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2009-12-03 03:01:25 +08:00
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static inline int arch_spin_trylock(arch_spinlock_t *lp)
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2005-04-17 06:20:36 +08:00
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{
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2006-10-01 14:27:45 +08:00
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int old;
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2005-07-28 02:44:57 +08:00
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2006-10-01 14:27:45 +08:00
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old = _raw_compare_and_swap(&lp->owner_cpu, 0, ~smp_processor_id());
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2008-01-26 21:11:03 +08:00
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if (likely(old == 0))
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2005-07-28 02:44:57 +08:00
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return 1;
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2009-12-03 03:01:25 +08:00
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return arch_spin_trylock_retry(lp);
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2005-04-17 06:20:36 +08:00
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}
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2009-12-03 03:01:25 +08:00
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static inline void arch_spin_unlock(arch_spinlock_t *lp)
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2005-04-17 06:20:36 +08:00
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{
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2006-10-01 14:27:45 +08:00
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_raw_compare_and_swap(&lp->owner_cpu, lp->owner_cpu, 0);
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2005-04-17 06:20:36 +08:00
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}
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/*
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* Read-write spinlocks, allowing multiple readers
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* but only one writer.
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*
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* NOTE! it is quite common to have readers in interrupts
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* but no interrupt writers. For those circumstances we
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* can "mix" irq-safe locks - any writer needs to get a
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* irq-safe write-lock, but readers can get non-irqsafe
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* read-locks.
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*/
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/**
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* read_can_lock - would read_trylock() succeed?
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* @lock: the rwlock in question.
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*/
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2009-12-04 03:08:46 +08:00
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#define arch_read_can_lock(x) ((int)(x)->lock >= 0)
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2005-04-17 06:20:36 +08:00
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/**
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* write_can_lock - would write_trylock() succeed?
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* @lock: the rwlock in question.
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*/
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2009-12-04 03:08:46 +08:00
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#define arch_write_can_lock(x) ((x)->lock == 0)
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2005-04-17 06:20:36 +08:00
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2009-12-04 03:01:19 +08:00
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extern void _raw_read_lock_wait(arch_rwlock_t *lp);
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extern void _raw_read_lock_wait_flags(arch_rwlock_t *lp, unsigned long flags);
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extern int _raw_read_trylock_retry(arch_rwlock_t *lp);
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extern void _raw_write_lock_wait(arch_rwlock_t *lp);
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extern void _raw_write_lock_wait_flags(arch_rwlock_t *lp, unsigned long flags);
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extern int _raw_write_trylock_retry(arch_rwlock_t *lp);
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2009-12-04 03:08:46 +08:00
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static inline void arch_read_lock(arch_rwlock_t *rw)
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2005-07-28 02:44:57 +08:00
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{
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unsigned int old;
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old = rw->lock & 0x7fffffffU;
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if (_raw_compare_and_swap(&rw->lock, old, old + 1) != old)
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_raw_read_lock_wait(rw);
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}
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2009-12-04 03:08:46 +08:00
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static inline void arch_read_lock_flags(arch_rwlock_t *rw, unsigned long flags)
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2009-06-12 16:26:22 +08:00
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{
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unsigned int old;
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old = rw->lock & 0x7fffffffU;
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if (_raw_compare_and_swap(&rw->lock, old, old + 1) != old)
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_raw_read_lock_wait_flags(rw, flags);
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}
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2009-12-04 03:08:46 +08:00
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static inline void arch_read_unlock(arch_rwlock_t *rw)
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2005-07-28 02:44:57 +08:00
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{
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unsigned int old, cmp;
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old = rw->lock;
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do {
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cmp = old;
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old = _raw_compare_and_swap(&rw->lock, old, old - 1);
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} while (cmp != old);
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}
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2009-12-04 03:08:46 +08:00
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static inline void arch_write_lock(arch_rwlock_t *rw)
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2005-07-28 02:44:57 +08:00
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{
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if (unlikely(_raw_compare_and_swap(&rw->lock, 0, 0x80000000) != 0))
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_raw_write_lock_wait(rw);
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}
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2009-12-04 03:08:46 +08:00
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static inline void arch_write_lock_flags(arch_rwlock_t *rw, unsigned long flags)
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2009-06-12 16:26:22 +08:00
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{
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if (unlikely(_raw_compare_and_swap(&rw->lock, 0, 0x80000000) != 0))
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_raw_write_lock_wait_flags(rw, flags);
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}
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2009-12-04 03:08:46 +08:00
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static inline void arch_write_unlock(arch_rwlock_t *rw)
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2005-07-28 02:44:57 +08:00
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{
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_raw_compare_and_swap(&rw->lock, 0x80000000, 0);
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}
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2009-12-04 03:08:46 +08:00
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static inline int arch_read_trylock(arch_rwlock_t *rw)
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2005-07-28 02:44:57 +08:00
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{
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unsigned int old;
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old = rw->lock & 0x7fffffffU;
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if (likely(_raw_compare_and_swap(&rw->lock, old, old + 1) == old))
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return 1;
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return _raw_read_trylock_retry(rw);
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}
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2009-12-04 03:08:46 +08:00
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static inline int arch_write_trylock(arch_rwlock_t *rw)
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2005-04-17 06:20:36 +08:00
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{
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2005-07-28 02:44:57 +08:00
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if (likely(_raw_compare_and_swap(&rw->lock, 0, 0x80000000) == 0))
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return 1;
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return _raw_write_trylock_retry(rw);
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2005-04-17 06:20:36 +08:00
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}
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2009-12-03 03:01:25 +08:00
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#define arch_read_relax(lock) cpu_relax()
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#define arch_write_relax(lock) cpu_relax()
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2006-10-01 14:27:43 +08:00
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2005-04-17 06:20:36 +08:00
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#endif /* __ASM_SPINLOCK_H */
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