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sched/wake_q: Rename WAKE_Q to DEFINE_WAKE_Q
Currently the wake_q data structure is defined by the WAKE_Q() macro. This macro, however, looks like a function doing something as "wake" is a verb. Even checkpatch.pl was confused as it reported warnings like WARNING: Missing a blank line after declarations #548: FILE: kernel/futex.c:3665: + int ret; + WAKE_Q(wake_q); This patch renames the WAKE_Q() macro to DEFINE_WAKE_Q() which clarifies what the macro is doing and eliminates the checkpatch.pl warnings. Signed-off-by: Waiman Long <longman@redhat.com> Acked-by: Davidlohr Bueso <dave@stgolabs.net> Cc: Linus Torvalds <torvalds@linux-foundation.org> Cc: Paul E. McKenney <paulmck@linux.vnet.ibm.com> Cc: Peter Zijlstra <peterz@infradead.org> Cc: Thomas Gleixner <tglx@linutronix.de> Link: http://lkml.kernel.org/r/1479401198-1765-1-git-send-email-longman@redhat.com [ Resolved conflict and added missing rename. ] Signed-off-by: Ingo Molnar <mingo@kernel.org>
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@ -989,7 +989,7 @@ enum cpu_idle_type {
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* already in a wake queue, the wakeup will happen soon and the second
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* waker can just skip it.
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*
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* The WAKE_Q macro declares and initializes the list head.
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* The DEFINE_WAKE_Q macro declares and initializes the list head.
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* wake_up_q() does NOT reinitialize the list; it's expected to be
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* called near the end of a function, where the fact that the queue is
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* not used again will be easy to see by inspection.
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@ -1009,7 +1009,7 @@ struct wake_q_head {
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#define WAKE_Q_TAIL ((struct wake_q_node *) 0x01)
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#define WAKE_Q(name) \
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#define DEFINE_WAKE_Q(name) \
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struct wake_q_head name = { WAKE_Q_TAIL, &name.first }
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extern void wake_q_add(struct wake_q_head *head,
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@ -967,7 +967,7 @@ SYSCALL_DEFINE5(mq_timedsend, mqd_t, mqdes, const char __user *, u_msg_ptr,
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struct timespec ts;
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struct posix_msg_tree_node *new_leaf = NULL;
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int ret = 0;
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WAKE_Q(wake_q);
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DEFINE_WAKE_Q(wake_q);
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if (u_abs_timeout) {
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int res = prepare_timeout(u_abs_timeout, &expires, &ts);
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@ -1151,7 +1151,7 @@ SYSCALL_DEFINE5(mq_timedreceive, mqd_t, mqdes, char __user *, u_msg_ptr,
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msg_ptr = wait.msg;
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}
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} else {
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WAKE_Q(wake_q);
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DEFINE_WAKE_Q(wake_q);
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msg_ptr = msg_get(info);
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@ -235,7 +235,7 @@ static void freeque(struct ipc_namespace *ns, struct kern_ipc_perm *ipcp)
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{
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struct msg_msg *msg, *t;
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struct msg_queue *msq = container_of(ipcp, struct msg_queue, q_perm);
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WAKE_Q(wake_q);
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DEFINE_WAKE_Q(wake_q);
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expunge_all(msq, -EIDRM, &wake_q);
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ss_wakeup(msq, &wake_q, true);
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@ -397,7 +397,7 @@ static int msgctl_down(struct ipc_namespace *ns, int msqid, int cmd,
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goto out_up;
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case IPC_SET:
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{
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WAKE_Q(wake_q);
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DEFINE_WAKE_Q(wake_q);
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if (msqid64.msg_qbytes > ns->msg_ctlmnb &&
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!capable(CAP_SYS_RESOURCE)) {
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@ -634,7 +634,7 @@ long do_msgsnd(int msqid, long mtype, void __user *mtext,
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struct msg_msg *msg;
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int err;
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struct ipc_namespace *ns;
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WAKE_Q(wake_q);
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DEFINE_WAKE_Q(wake_q);
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ns = current->nsproxy->ipc_ns;
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@ -850,7 +850,7 @@ long do_msgrcv(int msqid, void __user *buf, size_t bufsz, long msgtyp, int msgfl
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struct msg_queue *msq;
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struct ipc_namespace *ns;
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struct msg_msg *msg, *copy = NULL;
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WAKE_Q(wake_q);
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DEFINE_WAKE_Q(wake_q);
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ns = current->nsproxy->ipc_ns;
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@ -1298,7 +1298,7 @@ static int wake_futex_pi(u32 __user *uaddr, u32 uval, struct futex_q *this,
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struct task_struct *new_owner;
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struct futex_pi_state *pi_state = this->pi_state;
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u32 uninitialized_var(curval), newval;
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WAKE_Q(wake_q);
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DEFINE_WAKE_Q(wake_q);
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bool deboost;
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int ret = 0;
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@ -1415,7 +1415,7 @@ futex_wake(u32 __user *uaddr, unsigned int flags, int nr_wake, u32 bitset)
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struct futex_q *this, *next;
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union futex_key key = FUTEX_KEY_INIT;
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int ret;
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WAKE_Q(wake_q);
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DEFINE_WAKE_Q(wake_q);
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if (!bitset)
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return -EINVAL;
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@ -1469,7 +1469,7 @@ futex_wake_op(u32 __user *uaddr1, unsigned int flags, u32 __user *uaddr2,
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struct futex_hash_bucket *hb1, *hb2;
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struct futex_q *this, *next;
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int ret, op_ret;
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WAKE_Q(wake_q);
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DEFINE_WAKE_Q(wake_q);
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retry:
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ret = get_futex_key(uaddr1, flags & FLAGS_SHARED, &key1, VERIFY_READ);
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@ -1708,7 +1708,7 @@ static int futex_requeue(u32 __user *uaddr1, unsigned int flags,
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struct futex_pi_state *pi_state = NULL;
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struct futex_hash_bucket *hb1, *hb2;
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struct futex_q *this, *next;
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WAKE_Q(wake_q);
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DEFINE_WAKE_Q(wake_q);
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if (requeue_pi) {
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/*
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@ -840,7 +840,7 @@ static noinline void __sched __mutex_unlock_slowpath(struct mutex *lock, unsigne
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{
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struct task_struct *next = NULL;
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unsigned long owner, flags;
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WAKE_Q(wake_q);
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DEFINE_WAKE_Q(wake_q);
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mutex_release(&lock->dep_map, 1, ip);
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@ -1382,7 +1382,7 @@ rt_mutex_fastunlock(struct rt_mutex *lock,
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bool (*slowfn)(struct rt_mutex *lock,
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struct wake_q_head *wqh))
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{
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WAKE_Q(wake_q);
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DEFINE_WAKE_Q(wake_q);
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if (likely(rt_mutex_cmpxchg_release(lock, current, NULL))) {
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rt_mutex_deadlock_account_unlock(current);
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@ -225,7 +225,7 @@ struct rw_semaphore __sched *rwsem_down_read_failed(struct rw_semaphore *sem)
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long count, adjustment = -RWSEM_ACTIVE_READ_BIAS;
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struct rwsem_waiter waiter;
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struct task_struct *tsk = current;
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WAKE_Q(wake_q);
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DEFINE_WAKE_Q(wake_q);
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waiter.task = tsk;
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waiter.type = RWSEM_WAITING_FOR_READ;
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@ -461,7 +461,7 @@ __rwsem_down_write_failed_common(struct rw_semaphore *sem, int state)
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bool waiting = true; /* any queued threads before us */
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struct rwsem_waiter waiter;
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struct rw_semaphore *ret = sem;
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WAKE_Q(wake_q);
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DEFINE_WAKE_Q(wake_q);
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/* undo write bias from down_write operation, stop active locking */
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count = atomic_long_sub_return(RWSEM_ACTIVE_WRITE_BIAS, &sem->count);
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@ -495,7 +495,7 @@ __rwsem_down_write_failed_common(struct rw_semaphore *sem, int state)
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* wake any read locks that were queued ahead of us.
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*/
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if (count > RWSEM_WAITING_BIAS) {
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WAKE_Q(wake_q);
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DEFINE_WAKE_Q(wake_q);
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__rwsem_mark_wake(sem, RWSEM_WAKE_READERS, &wake_q);
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/*
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@ -571,7 +571,7 @@ __visible
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struct rw_semaphore *rwsem_wake(struct rw_semaphore *sem)
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{
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unsigned long flags;
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WAKE_Q(wake_q);
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DEFINE_WAKE_Q(wake_q);
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/*
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* If a spinner is present, it is not necessary to do the wakeup.
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@ -625,7 +625,7 @@ __visible
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struct rw_semaphore *rwsem_downgrade_wake(struct rw_semaphore *sem)
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{
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unsigned long flags;
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WAKE_Q(wake_q);
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DEFINE_WAKE_Q(wake_q);
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raw_spin_lock_irqsave(&sem->wait_lock, flags);
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