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author | Will Deacon <will.deacon@arm.com> | 2017-10-12 14:20:49 +0200 |
---|---|---|
committer | Ingo Molnar <mingo@kernel.org> | 2017-10-25 10:57:24 +0200 |
commit | b519b56e378ee82caf9b079b04f5db87dedc3251 (patch) | |
tree | 82dddca8c324c5a32ef4a41945f625868ff7a03a /kernel/locking | |
parent | locking/atomic: Add atomic_cond_read_acquire() (diff) | |
download | linux-b519b56e378ee82caf9b079b04f5db87dedc3251.tar.xz linux-b519b56e378ee82caf9b079b04f5db87dedc3251.zip |
locking/qrwlock: Use atomic_cond_read_acquire() when spinning in qrwlock
The qrwlock slowpaths involve spinning when either a prospective reader
is waiting for a concurrent writer to drain, or a prospective writer is
waiting for concurrent readers to drain. In both of these situations,
atomic_cond_read_acquire() can be used to avoid busy-waiting and make use
of any backoff functionality provided by the architecture.
This patch replaces the open-code loops and rspin_until_writer_unlock()
implementation with atomic_cond_read_acquire(). The write mode transition
zero to _QW_WAITING is left alone, since (a) this doesn't need acquire
semantics and (b) should be fast.
Tested-by: Waiman Long <longman@redhat.com>
Tested-by: Jeremy Linton <jeremy.linton@arm.com>
Tested-by: Adam Wallis <awallis@codeaurora.org>
Tested-by: Jan Glauber <jglauber@cavium.com>
Signed-off-by: Will Deacon <will.deacon@arm.com>
Acked-by: Peter Zijlstra <peterz@infradead.org>
Cc: Boqun Feng <boqun.feng@gmail.com>
Cc: Jeremy.Linton@arm.com
Cc: Linus Torvalds <torvalds@linux-foundation.org>
Cc: Paul E. McKenney <paulmck@linux.vnet.ibm.com>
Cc: Thomas Gleixner <tglx@linutronix.de>
Cc: linux-arm-kernel@lists.infradead.org
Link: http://lkml.kernel.org/r/1507810851-306-4-git-send-email-will.deacon@arm.com
Signed-off-by: Ingo Molnar <mingo@kernel.org>
Diffstat (limited to 'kernel/locking')
-rw-r--r-- | kernel/locking/qrwlock.c | 50 |
1 files changed, 12 insertions, 38 deletions
diff --git a/kernel/locking/qrwlock.c b/kernel/locking/qrwlock.c index 1af791e37348..5825e0fc1a8e 100644 --- a/kernel/locking/qrwlock.c +++ b/kernel/locking/qrwlock.c @@ -24,28 +24,10 @@ #include <asm/qrwlock.h> /** - * rspin_until_writer_unlock - inc reader count & spin until writer is gone - * @lock : Pointer to queue rwlock structure - * @writer: Current queue rwlock writer status byte - * - * In interrupt context or at the head of the queue, the reader will just - * increment the reader count & wait until the writer releases the lock. - */ -static __always_inline void -rspin_until_writer_unlock(struct qrwlock *lock, u32 cnts) -{ - while ((cnts & _QW_WMASK) == _QW_LOCKED) { - cpu_relax(); - cnts = atomic_read_acquire(&lock->cnts); - } -} - -/** * queued_read_lock_slowpath - acquire read lock of a queue rwlock * @lock: Pointer to queue rwlock structure - * @cnts: Current qrwlock lock value */ -void queued_read_lock_slowpath(struct qrwlock *lock, u32 cnts) +void queued_read_lock_slowpath(struct qrwlock *lock) { /* * Readers come here when they cannot get the lock without waiting @@ -53,13 +35,12 @@ void queued_read_lock_slowpath(struct qrwlock *lock, u32 cnts) if (unlikely(in_interrupt())) { /* * Readers in interrupt context will get the lock immediately - * if the writer is just waiting (not holding the lock yet). - * The rspin_until_writer_unlock() function returns immediately - * in this case. Otherwise, they will spin (with ACQUIRE - * semantics) until the lock is available without waiting in - * the queue. + * if the writer is just waiting (not holding the lock yet), + * so spin with ACQUIRE semantics until the lock is available + * without waiting in the queue. */ - rspin_until_writer_unlock(lock, cnts); + atomic_cond_read_acquire(&lock->cnts, (VAL & _QW_WMASK) + != _QW_LOCKED); return; } atomic_sub(_QR_BIAS, &lock->cnts); @@ -68,14 +49,14 @@ void queued_read_lock_slowpath(struct qrwlock *lock, u32 cnts) * Put the reader into the wait queue */ arch_spin_lock(&lock->wait_lock); + atomic_add(_QR_BIAS, &lock->cnts); /* * The ACQUIRE semantics of the following spinning code ensure * that accesses can't leak upwards out of our subsequent critical * section in the case that the lock is currently held for write. */ - cnts = atomic_fetch_add_acquire(_QR_BIAS, &lock->cnts); - rspin_until_writer_unlock(lock, cnts); + atomic_cond_read_acquire(&lock->cnts, (VAL & _QW_WMASK) != _QW_LOCKED); /* * Signal the next one in queue to become queue head @@ -90,8 +71,6 @@ EXPORT_SYMBOL(queued_read_lock_slowpath); */ void queued_write_lock_slowpath(struct qrwlock *lock) { - u32 cnts; - /* Put the writer into the wait queue */ arch_spin_lock(&lock->wait_lock); @@ -113,15 +92,10 @@ void queued_write_lock_slowpath(struct qrwlock *lock) } /* When no more readers, set the locked flag */ - for (;;) { - cnts = atomic_read(&lock->cnts); - if ((cnts == _QW_WAITING) && - (atomic_cmpxchg_acquire(&lock->cnts, _QW_WAITING, - _QW_LOCKED) == _QW_WAITING)) - break; - - cpu_relax(); - } + do { + atomic_cond_read_acquire(&lock->cnts, VAL == _QW_WAITING); + } while (atomic_cmpxchg_relaxed(&lock->cnts, _QW_WAITING, + _QW_LOCKED) != _QW_WAITING); unlock: arch_spin_unlock(&lock->wait_lock); } |