io-wq.c 26.1 KB
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// SPDX-License-Identifier: GPL-2.0
/*
 * Basic worker thread pool for io_uring
 *
 * Copyright (C) 2019 Jens Axboe
 *
 */
#include <linux/kernel.h>
#include <linux/init.h>
#include <linux/errno.h>
#include <linux/sched/signal.h>
#include <linux/mm.h>
#include <linux/sched/mm.h>
#include <linux/percpu.h>
#include <linux/slab.h>
#include <linux/rculist_nulls.h>
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#include <linux/cpu.h>
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#include <linux/tracehook.h>
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#include <linux/freezer.h>
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#include "../kernel/sched/sched.h"
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#include "io-wq.h"

#define WORKER_IDLE_TIMEOUT	(5 * HZ)

enum {
	IO_WORKER_F_UP		= 1,	/* up and active */
	IO_WORKER_F_RUNNING	= 2,	/* account as running */
	IO_WORKER_F_FREE	= 4,	/* worker on free list */
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	IO_WORKER_F_FIXED	= 8,	/* static idle worker */
	IO_WORKER_F_BOUND	= 16,	/* is doing bounded work */
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};

enum {
	IO_WQ_BIT_EXIT		= 0,	/* wq exiting */
};

enum {
	IO_WQE_FLAG_STALLED	= 1,	/* stalled on hash */
};

/*
 * One for each thread in a wqe pool
 */
struct io_worker {
	refcount_t ref;
	unsigned flags;
	struct hlist_nulls_node nulls_node;
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	struct list_head all_list;
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	struct task_struct *task;
	struct io_wqe *wqe;
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	struct io_wq_work *cur_work;
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	spinlock_t lock;
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	struct completion ref_done;

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	struct rcu_head rcu;
};

#if BITS_PER_LONG == 64
#define IO_WQ_HASH_ORDER	6
#else
#define IO_WQ_HASH_ORDER	5
#endif

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#define IO_WQ_NR_HASH_BUCKETS	(1u << IO_WQ_HASH_ORDER)

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struct io_wqe_acct {
	unsigned nr_workers;
	unsigned max_workers;
	atomic_t nr_running;
};

enum {
	IO_WQ_ACCT_BOUND,
	IO_WQ_ACCT_UNBOUND,
};

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/*
 * Per-node worker thread pool
 */
struct io_wqe {
	struct {
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		raw_spinlock_t lock;
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		struct io_wq_work_list work_list;
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		unsigned flags;
	} ____cacheline_aligned_in_smp;

	int node;
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	struct io_wqe_acct acct[2];
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	struct hlist_nulls_head free_list;
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	struct list_head all_list;
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	struct wait_queue_entry wait;

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	struct io_wq *wq;
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	struct io_wq_work *hash_tail[IO_WQ_NR_HASH_BUCKETS];
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};

/*
 * Per io_wq state
  */
struct io_wq {
	struct io_wqe **wqes;
	unsigned long state;

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	free_work_fn *free_work;
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	io_wq_work_fn *do_work;
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	struct task_struct *manager;
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	struct user_struct *user;
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	struct io_wq_hash *hash;

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	refcount_t refs;
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	struct completion exited;
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	atomic_t worker_refs;
	struct completion worker_done;

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	struct hlist_node cpuhp_node;
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	pid_t task_pid;
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};

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static enum cpuhp_state io_wq_online;

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struct io_cb_cancel_data {
	work_cancel_fn *fn;
	void *data;
	int nr_running;
	int nr_pending;
	bool cancel_all;
};

static void io_wqe_cancel_pending_work(struct io_wqe *wqe,
				       struct io_cb_cancel_data *match);

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static bool io_worker_get(struct io_worker *worker)
{
	return refcount_inc_not_zero(&worker->ref);
}

static void io_worker_release(struct io_worker *worker)
{
	if (refcount_dec_and_test(&worker->ref))
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		complete(&worker->ref_done);
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}

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static inline struct io_wqe_acct *io_work_get_acct(struct io_wqe *wqe,
						   struct io_wq_work *work)
{
	if (work->flags & IO_WQ_WORK_UNBOUND)
		return &wqe->acct[IO_WQ_ACCT_UNBOUND];

	return &wqe->acct[IO_WQ_ACCT_BOUND];
}

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static inline struct io_wqe_acct *io_wqe_get_acct(struct io_worker *worker)
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{
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	struct io_wqe *wqe = worker->wqe;

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	if (worker->flags & IO_WORKER_F_BOUND)
		return &wqe->acct[IO_WQ_ACCT_BOUND];

	return &wqe->acct[IO_WQ_ACCT_UNBOUND];
}

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static void io_worker_exit(struct io_worker *worker)
{
	struct io_wqe *wqe = worker->wqe;
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	struct io_wqe_acct *acct = io_wqe_get_acct(worker);
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	unsigned flags;
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	if (refcount_dec_and_test(&worker->ref))
		complete(&worker->ref_done);
	wait_for_completion(&worker->ref_done);
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	preempt_disable();
	current->flags &= ~PF_IO_WORKER;
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	flags = worker->flags;
	worker->flags = 0;
	if (flags & IO_WORKER_F_RUNNING)
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		atomic_dec(&acct->nr_running);
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	worker->flags = 0;
	preempt_enable();

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	raw_spin_lock_irq(&wqe->lock);
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	if (flags & IO_WORKER_F_FREE)
		hlist_nulls_del_rcu(&worker->nulls_node);
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	list_del_rcu(&worker->all_list);
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	acct->nr_workers--;
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	raw_spin_unlock_irq(&wqe->lock);
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	kfree_rcu(worker, rcu);
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	if (atomic_dec_and_test(&wqe->wq->worker_refs))
		complete(&wqe->wq->worker_done);
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	do_exit(0);
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}

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static inline bool io_wqe_run_queue(struct io_wqe *wqe)
	__must_hold(wqe->lock)
{
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	if (!wq_list_empty(&wqe->work_list) &&
	    !(wqe->flags & IO_WQE_FLAG_STALLED))
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		return true;
	return false;
}

/*
 * Check head of free list for an available worker. If one isn't available,
 * caller must wake up the wq manager to create one.
 */
static bool io_wqe_activate_free_worker(struct io_wqe *wqe)
	__must_hold(RCU)
{
	struct hlist_nulls_node *n;
	struct io_worker *worker;

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	n = rcu_dereference(hlist_nulls_first_rcu(&wqe->free_list));
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	if (is_a_nulls(n))
		return false;

	worker = hlist_nulls_entry(n, struct io_worker, nulls_node);
	if (io_worker_get(worker)) {
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		wake_up_process(worker->task);
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		io_worker_release(worker);
		return true;
	}

	return false;
}

/*
 * We need a worker. If we find a free one, we're good. If not, and we're
 * below the max number of workers, wake up the manager to create one.
 */
static void io_wqe_wake_worker(struct io_wqe *wqe, struct io_wqe_acct *acct)
{
	bool ret;

	/*
	 * Most likely an attempt to queue unbounded work on an io_wq that
	 * wasn't setup with any unbounded workers.
	 */
	WARN_ON_ONCE(!acct->max_workers);

	rcu_read_lock();
	ret = io_wqe_activate_free_worker(wqe);
	rcu_read_unlock();

	if (!ret && acct->nr_workers < acct->max_workers)
		wake_up_process(wqe->wq->manager);
}

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static void io_wqe_inc_running(struct io_worker *worker)
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{
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	struct io_wqe_acct *acct = io_wqe_get_acct(worker);
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	atomic_inc(&acct->nr_running);
}

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static void io_wqe_dec_running(struct io_worker *worker)
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	__must_hold(wqe->lock)
{
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	struct io_wqe_acct *acct = io_wqe_get_acct(worker);
	struct io_wqe *wqe = worker->wqe;
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	if (atomic_dec_and_test(&acct->nr_running) && io_wqe_run_queue(wqe))
		io_wqe_wake_worker(wqe, acct);
}

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/*
 * Worker will start processing some work. Move it to the busy list, if
 * it's currently on the freelist
 */
static void __io_worker_busy(struct io_wqe *wqe, struct io_worker *worker,
			     struct io_wq_work *work)
	__must_hold(wqe->lock)
{
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	bool worker_bound, work_bound;

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	if (worker->flags & IO_WORKER_F_FREE) {
		worker->flags &= ~IO_WORKER_F_FREE;
		hlist_nulls_del_init_rcu(&worker->nulls_node);
	}
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	/*
	 * If worker is moving from bound to unbound (or vice versa), then
	 * ensure we update the running accounting.
	 */
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	worker_bound = (worker->flags & IO_WORKER_F_BOUND) != 0;
	work_bound = (work->flags & IO_WQ_WORK_UNBOUND) == 0;
	if (worker_bound != work_bound) {
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		io_wqe_dec_running(worker);
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		if (work_bound) {
			worker->flags |= IO_WORKER_F_BOUND;
			wqe->acct[IO_WQ_ACCT_UNBOUND].nr_workers--;
			wqe->acct[IO_WQ_ACCT_BOUND].nr_workers++;
		} else {
			worker->flags &= ~IO_WORKER_F_BOUND;
			wqe->acct[IO_WQ_ACCT_UNBOUND].nr_workers++;
			wqe->acct[IO_WQ_ACCT_BOUND].nr_workers--;
		}
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		io_wqe_inc_running(worker);
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	 }
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}

/*
 * No work, worker going to sleep. Move to freelist, and unuse mm if we
 * have one attached. Dropping the mm may potentially sleep, so we drop
 * the lock in that case and return success. Since the caller has to
 * retry the loop in that case (we changed task state), we don't regrab
 * the lock if we return success.
 */
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static void __io_worker_idle(struct io_wqe *wqe, struct io_worker *worker)
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	__must_hold(wqe->lock)
{
	if (!(worker->flags & IO_WORKER_F_FREE)) {
		worker->flags |= IO_WORKER_F_FREE;
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		hlist_nulls_add_head_rcu(&worker->nulls_node, &wqe->free_list);
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	}
}

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static inline unsigned int io_get_work_hash(struct io_wq_work *work)
{
	return work->flags >> IO_WQ_HASH_SHIFT;
}

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static void io_wait_on_hash(struct io_wqe *wqe, unsigned int hash)
{
	struct io_wq *wq = wqe->wq;

	spin_lock(&wq->hash->wait.lock);
	if (list_empty(&wqe->wait.entry)) {
		__add_wait_queue(&wq->hash->wait, &wqe->wait);
		if (!test_bit(hash, &wq->hash->map)) {
			__set_current_state(TASK_RUNNING);
			list_del_init(&wqe->wait.entry);
		}
	}
	spin_unlock(&wq->hash->wait.lock);
}

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static struct io_wq_work *io_get_next_work(struct io_wqe *wqe)
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	__must_hold(wqe->lock)
{
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	struct io_wq_work_node *node, *prev;
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	struct io_wq_work *work, *tail;
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	unsigned int stall_hash = -1U;
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	wq_list_for_each(node, prev, &wqe->work_list) {
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		unsigned int hash;

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		work = container_of(node, struct io_wq_work, list);

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		/* not hashed, can run anytime */
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		if (!io_wq_is_hashed(work)) {
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			wq_list_del(&wqe->work_list, node, prev);
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			return work;
		}

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		hash = io_get_work_hash(work);
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		/* all items with this hash lie in [work, tail] */
		tail = wqe->hash_tail[hash];

		/* hashed, can run if not already running */
		if (!test_and_set_bit(hash, &wqe->wq->hash->map)) {
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			wqe->hash_tail[hash] = NULL;
			wq_list_cut(&wqe->work_list, &tail->list, prev);
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			return work;
		}
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		if (stall_hash == -1U)
			stall_hash = hash;
		/* fast forward to a next hash, for-each will fix up @prev */
		node = &tail->list;
	}

	if (stall_hash != -1U) {
		raw_spin_unlock(&wqe->lock);
		io_wait_on_hash(wqe, stall_hash);
		raw_spin_lock(&wqe->lock);
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	}

	return NULL;
}

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static void io_flush_signals(void)
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{
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	if (unlikely(test_tsk_thread_flag(current, TIF_NOTIFY_SIGNAL))) {
		if (current->task_works)
			task_work_run();
		clear_tsk_thread_flag(current, TIF_NOTIFY_SIGNAL);
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	}
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}

static void io_assign_current_work(struct io_worker *worker,
				   struct io_wq_work *work)
{
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	if (work) {
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		io_flush_signals();
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		cond_resched();
	}
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	spin_lock_irq(&worker->lock);
	worker->cur_work = work;
	spin_unlock_irq(&worker->lock);
}

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static void io_wqe_enqueue(struct io_wqe *wqe, struct io_wq_work *work);

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static void io_worker_handle_work(struct io_worker *worker)
	__releases(wqe->lock)
{
	struct io_wqe *wqe = worker->wqe;
	struct io_wq *wq = wqe->wq;

	do {
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		struct io_wq_work *work;
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get_next:
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		/*
		 * If we got some work, mark us as busy. If we didn't, but
		 * the list isn't empty, it means we stalled on hashed work.
		 * Mark us stalled so we don't keep looking for work when we
		 * can't make progress, any work completion or insertion will
		 * clear the stalled flag.
		 */
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		work = io_get_next_work(wqe);
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		if (work)
			__io_worker_busy(wqe, worker, work);
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		else if (!wq_list_empty(&wqe->work_list))
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			wqe->flags |= IO_WQE_FLAG_STALLED;

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		raw_spin_unlock_irq(&wqe->lock);
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		if (!work)
			break;
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		io_assign_current_work(worker, work);
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		__set_current_state(TASK_RUNNING);
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		/* handle a whole dependent link */
		do {
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			struct io_wq_work *next_hashed, *linked;
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			unsigned int hash = io_get_work_hash(work);
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			next_hashed = wq_next_work(work);
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			wq->do_work(work);
			io_assign_current_work(worker, NULL);
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			linked = wq->free_work(work);
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			work = next_hashed;
			if (!work && linked && !io_wq_is_hashed(linked)) {
				work = linked;
				linked = NULL;
			}
			io_assign_current_work(worker, work);
			if (linked)
				io_wqe_enqueue(wqe, linked);

			if (hash != -1U && !next_hashed) {
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				clear_bit(hash, &wq->hash->map);
				if (wq_has_sleeper(&wq->hash->wait))
					wake_up(&wq->hash->wait);
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				raw_spin_lock_irq(&wqe->lock);
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				wqe->flags &= ~IO_WQE_FLAG_STALLED;
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				/* skip unnecessary unlock-lock wqe->lock */
				if (!work)
					goto get_next;
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				raw_spin_unlock_irq(&wqe->lock);
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			}
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		} while (work);
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		raw_spin_lock_irq(&wqe->lock);
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	} while (1);
}

static int io_wqe_worker(void *data)
{
	struct io_worker *worker = data;
	struct io_wqe *wqe = worker->wqe;
	struct io_wq *wq = wqe->wq;
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	char buf[TASK_COMM_LEN];
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	worker->flags |= (IO_WORKER_F_UP | IO_WORKER_F_RUNNING);
	io_wqe_inc_running(worker);

	sprintf(buf, "iou-wrk-%d", wq->task_pid);
	set_task_comm(current, buf);
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	while (!test_bit(IO_WQ_BIT_EXIT, &wq->state)) {
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		set_current_state(TASK_INTERRUPTIBLE);
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loop:
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		raw_spin_lock_irq(&wqe->lock);
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		if (io_wqe_run_queue(wqe)) {
			io_worker_handle_work(worker);
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			goto loop;
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		}
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		__io_worker_idle(wqe, worker);
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		raw_spin_unlock_irq(&wqe->lock);
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		io_flush_signals();
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		if (schedule_timeout(WORKER_IDLE_TIMEOUT))
			continue;
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		if (fatal_signal_pending(current))
			break;
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		/* timed out, exit unless we're the fixed worker */
		if (test_bit(IO_WQ_BIT_EXIT, &wq->state) ||
		    !(worker->flags & IO_WORKER_F_FIXED))
			break;
	}

	if (test_bit(IO_WQ_BIT_EXIT, &wq->state)) {
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		raw_spin_lock_irq(&wqe->lock);
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		if (!wq_list_empty(&wqe->work_list))
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			io_worker_handle_work(worker);
		else
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			raw_spin_unlock_irq(&wqe->lock);
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	}

	io_worker_exit(worker);
	return 0;
}

/*
 * Called when a worker is scheduled in. Mark us as currently running.
 */
void io_wq_worker_running(struct task_struct *tsk)
{
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	struct io_worker *worker = tsk->pf_io_worker;
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	if (!worker)
		return;
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	if (!(worker->flags & IO_WORKER_F_UP))
		return;
	if (worker->flags & IO_WORKER_F_RUNNING)
		return;
	worker->flags |= IO_WORKER_F_RUNNING;
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	io_wqe_inc_running(worker);
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}

/*
 * Called when worker is going to sleep. If there are no workers currently
 * running and we have work pending, wake up a free one or have the manager
 * set one up.
 */
void io_wq_worker_sleeping(struct task_struct *tsk)
{
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	struct io_worker *worker = tsk->pf_io_worker;
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	if (!worker)
		return;
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	if (!(worker->flags & IO_WORKER_F_UP))
		return;
	if (!(worker->flags & IO_WORKER_F_RUNNING))
		return;

	worker->flags &= ~IO_WORKER_F_RUNNING;

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	raw_spin_lock_irq(&worker->wqe->lock);
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	io_wqe_dec_running(worker);
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	raw_spin_unlock_irq(&worker->wqe->lock);
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}

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static bool create_io_worker(struct io_wq *wq, struct io_wqe *wqe, int index)
{
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	struct io_wqe_acct *acct = &wqe->acct[index];
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	struct io_worker *worker;
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	struct task_struct *tsk;
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	__set_current_state(TASK_RUNNING);

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	worker = kzalloc_node(sizeof(*worker), GFP_KERNEL, wqe->node);
	if (!worker)
		return false;

	refcount_set(&worker->ref, 1);
	worker->nulls_node.pprev = NULL;
	worker->wqe = wqe;
	spin_lock_init(&worker->lock);
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	init_completion(&worker->ref_done);
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	atomic_inc(&wq->worker_refs);
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	tsk = create_io_thread(io_wqe_worker, worker, wqe->node);
	if (IS_ERR(tsk)) {
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		if (atomic_dec_and_test(&wq->worker_refs))
			complete(&wq->worker_done);
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		kfree(worker);
		return false;
	}
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	tsk->pf_io_worker = worker;
	worker->task = tsk;
	set_cpus_allowed_ptr(tsk, cpumask_of_node(wqe->node));
	tsk->flags |= PF_NOFREEZE | PF_NO_SETAFFINITY;

	raw_spin_lock_irq(&wqe->lock);
	hlist_nulls_add_head_rcu(&worker->nulls_node, &wqe->free_list);
	list_add_tail_rcu(&worker->all_list, &wqe->all_list);
	worker->flags |= IO_WORKER_F_FREE;
	if (index == IO_WQ_ACCT_BOUND)
		worker->flags |= IO_WORKER_F_BOUND;
	if (!acct->nr_workers && (worker->flags & IO_WORKER_F_BOUND))
		worker->flags |= IO_WORKER_F_FIXED;
	acct->nr_workers++;
	raw_spin_unlock_irq(&wqe->lock);
	wake_up_new_task(tsk);
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	return true;
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}

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static inline bool io_wqe_need_worker(struct io_wqe *wqe, int index)
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	__must_hold(wqe->lock)
{
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	struct io_wqe_acct *acct = &wqe->acct[index];
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	if (acct->nr_workers && test_bit(IO_WQ_BIT_EXIT, &wqe->wq->state))
		return false;
618
	/* if we have available workers or no work, no need */
619
	if (!hlist_nulls_empty(&wqe->free_list) || !io_wqe_run_queue(wqe))
620 621
		return false;
	return acct->nr_workers < acct->max_workers;
622 623
}

624 625 626 627 628 629 630 631 632 633 634 635 636 637 638 639 640 641 642 643 644 645 646 647 648 649 650
/*
 * Iterate the passed in list and call the specific function for each
 * worker that isn't exiting
 */
static bool io_wq_for_each_worker(struct io_wqe *wqe,
				  bool (*func)(struct io_worker *, void *),
				  void *data)
{
	struct io_worker *worker;
	bool ret = false;

	list_for_each_entry_rcu(worker, &wqe->all_list, all_list) {
		if (io_worker_get(worker)) {
			/* no task if node is/was offline */
			if (worker->task)
				ret = func(worker, data);
			io_worker_release(worker);
			if (ret)
				break;
		}
	}

	return ret;
}

static bool io_wq_worker_wake(struct io_worker *worker, void *data)
{
651
	set_notify_signal(worker->task);
652 653 654 655
	wake_up_process(worker->task);
	return false;
}

656 657 658 659 660 661 662 663 664 665 666 667 668 669 670 671 672 673 674 675 676 677 678 679
static void io_wq_check_workers(struct io_wq *wq)
{
	int node;

	for_each_node(node) {
		struct io_wqe *wqe = wq->wqes[node];
		bool fork_worker[2] = { false, false };

		if (!node_online(node))
			continue;

		raw_spin_lock_irq(&wqe->lock);
		if (io_wqe_need_worker(wqe, IO_WQ_ACCT_BOUND))
			fork_worker[IO_WQ_ACCT_BOUND] = true;
		if (io_wqe_need_worker(wqe, IO_WQ_ACCT_UNBOUND))
			fork_worker[IO_WQ_ACCT_UNBOUND] = true;
		raw_spin_unlock_irq(&wqe->lock);
		if (fork_worker[IO_WQ_ACCT_BOUND])
			create_io_worker(wq, wqe, IO_WQ_ACCT_BOUND);
		if (fork_worker[IO_WQ_ACCT_UNBOUND])
			create_io_worker(wq, wqe, IO_WQ_ACCT_UNBOUND);
	}
}

680 681 682 683 684 685 686 687 688 689 690 691 692 693 694 695 696
static bool io_wq_work_match_all(struct io_wq_work *work, void *data)
{
	return true;
}

static void io_wq_cancel_pending(struct io_wq *wq)
{
	struct io_cb_cancel_data match = {
		.fn		= io_wq_work_match_all,
		.cancel_all	= true,
	};
	int node;

	for_each_node(node)
		io_wqe_cancel_pending_work(wq->wqes[node], &match);
}

697 698 699 700 701 702
/*
 * Manager thread. Tasked with creating new workers, if we need them.
 */
static int io_wq_manager(void *data)
{
	struct io_wq *wq = data;
703
	char buf[TASK_COMM_LEN];
704
	int node;
705

706 707
	sprintf(buf, "iou-mgr-%d", wq->task_pid);
	set_task_comm(current, buf);
708

709
	do {
710
		set_current_state(TASK_INTERRUPTIBLE);
711
		io_wq_check_workers(wq);
712
		schedule_timeout(HZ);
713
		try_to_freeze();
714 715
		if (fatal_signal_pending(current))
			set_bit(IO_WQ_BIT_EXIT, &wq->state);
716 717 718
	} while (!test_bit(IO_WQ_BIT_EXIT, &wq->state));

	io_wq_check_workers(wq);
719 720 721 722 723 724

	rcu_read_lock();
	for_each_node(node)
		io_wq_for_each_worker(wq->wqes[node], io_wq_worker_wake, NULL);
	rcu_read_unlock();

725 726 727
	if (atomic_dec_and_test(&wq->worker_refs))
		complete(&wq->worker_done);
	wait_for_completion(&wq->worker_done);
728

729 730 731 732 733
	spin_lock_irq(&wq->hash->wait.lock);
	for_each_node(node)
		list_del_init(&wq->wqes[node]->wait.entry);
	spin_unlock_irq(&wq->hash->wait.lock);

734
	io_wq_cancel_pending(wq);
735
	complete(&wq->exited);
736
	do_exit(0);
737 738
}

739
static void io_run_cancel(struct io_wq_work *work, struct io_wqe *wqe)
740
{
741 742
	struct io_wq *wq = wqe->wq;

743 744
	do {
		work->flags |= IO_WQ_WORK_CANCEL;
745 746
		wq->do_work(work);
		work = wq->free_work(work);
747 748 749
	} while (work);
}

750 751 752 753 754 755 756 757 758 759 760 761 762 763 764 765 766 767 768 769
static void io_wqe_insert_work(struct io_wqe *wqe, struct io_wq_work *work)
{
	unsigned int hash;
	struct io_wq_work *tail;

	if (!io_wq_is_hashed(work)) {
append:
		wq_list_add_tail(&work->list, &wqe->work_list);
		return;
	}

	hash = io_get_work_hash(work);
	tail = wqe->hash_tail[hash];
	wqe->hash_tail[hash] = work;
	if (!tail)
		goto append;

	wq_list_add_after(&work->list, &tail->list, &wqe->work_list);
}

770 771
static int io_wq_fork_manager(struct io_wq *wq)
{
772
	struct task_struct *tsk;
773 774 775 776

	if (wq->manager)
		return 0;

777 778
	init_completion(&wq->worker_done);
	atomic_set(&wq->worker_refs, 1);
779 780 781 782
	tsk = create_io_thread(io_wq_manager, wq, NUMA_NO_NODE);
	if (!IS_ERR(tsk)) {
		wq->manager = get_task_struct(tsk);
		wake_up_new_task(tsk);
783 784 785
		return 0;
	}

786 787 788
	if (atomic_dec_and_test(&wq->worker_refs))
		complete(&wq->worker_done);

789
	return PTR_ERR(tsk);
790 791
}

792 793
static void io_wqe_enqueue(struct io_wqe *wqe, struct io_wq_work *work)
{
794
	struct io_wqe_acct *acct = io_work_get_acct(wqe, work);
795
	int work_flags;
796 797
	unsigned long flags;

798
	/* Can only happen if manager creation fails after exec */
799 800
	if (io_wq_fork_manager(wqe->wq) ||
	    test_bit(IO_WQ_BIT_EXIT, &wqe->wq->state)) {
801 802 803 804 805
		work->flags |= IO_WQ_WORK_CANCEL;
		wqe->wq->do_work(work);
		return;
	}

806
	work_flags = work->flags;
807
	raw_spin_lock_irqsave(&wqe->lock, flags);
808
	io_wqe_insert_work(wqe, work);
809
	wqe->flags &= ~IO_WQE_FLAG_STALLED;
810
	raw_spin_unlock_irqrestore(&wqe->lock, flags);
811

812 813
	if ((work_flags & IO_WQ_WORK_CONCURRENT) ||
	    !atomic_read(&acct->nr_running))
814
		io_wqe_wake_worker(wqe, acct);
815 816 817 818 819 820 821 822 823 824
}

void io_wq_enqueue(struct io_wq *wq, struct io_wq_work *work)
{
	struct io_wqe *wqe = wq->wqes[numa_node_id()];

	io_wqe_enqueue(wqe, work);
}

/*
825 826
 * Work items that hash to the same value will not be done in parallel.
 * Used to limit concurrent writes, generally hashed by inode.
827
 */
828
void io_wq_hash_work(struct io_wq_work *work, void *val)
829
{
830
	unsigned int bit;
831 832 833 834 835

	bit = hash_ptr(val, IO_WQ_HASH_ORDER);
	work->flags |= (IO_WQ_WORK_HASHED | (bit << IO_WQ_HASH_SHIFT));
}

836
static bool io_wq_worker_cancel(struct io_worker *worker, void *data)
837
{
838
	struct io_cb_cancel_data *match = data;
839
	unsigned long flags;
840 841 842

	/*
	 * Hold the lock to avoid ->cur_work going out of scope, caller
843
	 * may dereference the passed in work.
844
	 */
845
	spin_lock_irqsave(&worker->lock, flags);
846
	if (worker->cur_work &&
847
	    match->fn(worker->cur_work, match->data)) {
848
		set_notify_signal(worker->task);
849
		match->nr_running++;
850
	}
851
	spin_unlock_irqrestore(&worker->lock, flags);
852

853
	return match->nr_running && !match->cancel_all;
854 855
}

856 857 858 859 860 861 862 863 864 865 866 867 868 869 870 871 872 873
static inline void io_wqe_remove_pending(struct io_wqe *wqe,
					 struct io_wq_work *work,
					 struct io_wq_work_node *prev)
{
	unsigned int hash = io_get_work_hash(work);
	struct io_wq_work *prev_work = NULL;

	if (io_wq_is_hashed(work) && work == wqe->hash_tail[hash]) {
		if (prev)
			prev_work = container_of(prev, struct io_wq_work, list);
		if (prev_work && io_get_work_hash(prev_work) == hash)
			wqe->hash_tail[hash] = prev_work;
		else
			wqe->hash_tail[hash] = NULL;
	}
	wq_list_del(&wqe->work_list, &work->list, prev);
}

874
static void io_wqe_cancel_pending_work(struct io_wqe *wqe,
875
				       struct io_cb_cancel_data *match)
876
{
J
Jens Axboe 已提交
877
	struct io_wq_work_node *node, *prev;
878
	struct io_wq_work *work;
879
	unsigned long flags;
880

881
retry:
882
	raw_spin_lock_irqsave(&wqe->lock, flags);
J
Jens Axboe 已提交
883 884
	wq_list_for_each(node, prev, &wqe->work_list) {
		work = container_of(node, struct io_wq_work, list);
885 886
		if (!match->fn(work, match->data))
			continue;
887
		io_wqe_remove_pending(wqe, work, prev);
888
		raw_spin_unlock_irqrestore(&wqe->lock, flags);
889 890 891 892 893 894 895
		io_run_cancel(work, wqe);
		match->nr_pending++;
		if (!match->cancel_all)
			return;

		/* not safe to continue after unlock */
		goto retry;
896
	}
897
	raw_spin_unlock_irqrestore(&wqe->lock, flags);
898 899
}

900
static void io_wqe_cancel_running_work(struct io_wqe *wqe,
901 902
				       struct io_cb_cancel_data *match)
{
903
	rcu_read_lock();
904
	io_wq_for_each_worker(wqe, io_wq_worker_cancel, match);
905 906 907
	rcu_read_unlock();
}

908
enum io_wq_cancel io_wq_cancel_cb(struct io_wq *wq, work_cancel_fn *cancel,
909
				  void *data, bool cancel_all)
910
{
911
	struct io_cb_cancel_data match = {
912 913 914
		.fn		= cancel,
		.data		= data,
		.cancel_all	= cancel_all,
915
	};
J
Jann Horn 已提交
916
	int node;
917

918 919 920 921 922
	/*
	 * First check pending list, if we're lucky we can just remove it
	 * from there. CANCEL_OK means that the work is returned as-new,
	 * no completion will be posted for it.
	 */
J
Jann Horn 已提交
923 924
	for_each_node(node) {
		struct io_wqe *wqe = wq->wqes[node];
925

926 927
		io_wqe_cancel_pending_work(wqe, &match);
		if (match.nr_pending && !match.cancel_all)
928
			return IO_WQ_CANCEL_OK;
929 930
	}

931 932 933 934 935 936 937 938 939
	/*
	 * Now check if a free (going busy) or busy worker has the work
	 * currently running. If we find it there, we'll return CANCEL_RUNNING
	 * as an indication that we attempt to signal cancellation. The
	 * completion will run normally in this case.
	 */
	for_each_node(node) {
		struct io_wqe *wqe = wq->wqes[node];

940 941
		io_wqe_cancel_running_work(wqe, &match);
		if (match.nr_running && !match.cancel_all)
942 943 944
			return IO_WQ_CANCEL_RUNNING;
	}

945 946 947 948
	if (match.nr_running)
		return IO_WQ_CANCEL_RUNNING;
	if (match.nr_pending)
		return IO_WQ_CANCEL_OK;
949
	return IO_WQ_CANCEL_NOTFOUND;
950 951
}

952 953 954 955 956 957 958 959 960 961 962 963 964 965 966 967 968 969
static int io_wqe_hash_wake(struct wait_queue_entry *wait, unsigned mode,
			    int sync, void *key)
{
	struct io_wqe *wqe = container_of(wait, struct io_wqe, wait);
	int ret;

	list_del_init(&wait->entry);

	rcu_read_lock();
	ret = io_wqe_activate_free_worker(wqe);
	rcu_read_unlock();

	if (!ret)
		wake_up_process(wqe->wq->manager);

	return 1;
}

970
struct io_wq *io_wq_create(unsigned bounded, struct io_wq_data *data)
971
{
J
Jann Horn 已提交
972
	int ret = -ENOMEM, node;
973 974
	struct io_wq *wq;

975
	if (WARN_ON_ONCE(!data->free_work || !data->do_work))
976 977
		return ERR_PTR(-EINVAL);

978
	wq = kzalloc(sizeof(*wq), GFP_KERNEL);
979 980 981
	if (!wq)
		return ERR_PTR(-ENOMEM);

J
Jann Horn 已提交
982
	wq->wqes = kcalloc(nr_node_ids, sizeof(struct io_wqe *), GFP_KERNEL);
983 984 985 986 987 988
	if (!wq->wqes)
		goto err_wq;

	ret = cpuhp_state_add_instance_nocalls(io_wq_online, &wq->cpuhp_node);
	if (ret)
		goto err_wqes;
989

990 991
	refcount_inc(&data->hash->refs);
	wq->hash = data->hash;
992
	wq->free_work = data->free_work;
993
	wq->do_work = data->do_work;
994

995
	ret = -ENOMEM;
J
Jann Horn 已提交
996
	for_each_node(node) {
997
		struct io_wqe *wqe;
998
		int alloc_node = node;
999

1000 1001 1002
		if (!node_online(alloc_node))
			alloc_node = NUMA_NO_NODE;
		wqe = kzalloc_node(sizeof(struct io_wqe), GFP_KERNEL, alloc_node);
1003
		if (!wqe)
J
Jann Horn 已提交
1004 1005
			goto err;
		wq->wqes[node] = wqe;
1006
		wqe->node = alloc_node;
1007 1008
		wqe->acct[IO_WQ_ACCT_BOUND].max_workers = bounded;
		atomic_set(&wqe->acct[IO_WQ_ACCT_BOUND].nr_running, 0);
J
Jens Axboe 已提交
1009
		wqe->acct[IO_WQ_ACCT_UNBOUND].max_workers =
1010 1011
					task_rlimit(current, RLIMIT_NPROC);
		atomic_set(&wqe->acct[IO_WQ_ACCT_UNBOUND].nr_running, 0);
1012 1013
		wqe->wait.func = io_wqe_hash_wake;
		INIT_LIST_HEAD(&wqe->wait.entry);
1014
		wqe->wq = wq;
1015
		raw_spin_lock_init(&wqe->lock);
J
Jens Axboe 已提交
1016
		INIT_WQ_LIST(&wqe->work_list);
1017
		INIT_HLIST_NULLS_HEAD(&wqe->free_list, 0);
1018
		INIT_LIST_HEAD(&wqe->all_list);
1019 1020
	}

1021
	wq->task_pid = current->pid;
1022
	init_completion(&wq->exited);
1023
	refcount_set(&wq->refs, 1);
1024

1025 1026
	ret = io_wq_fork_manager(wq);
	if (!ret)
1027
		return wq;
1028
err:
1029
	io_wq_put_hash(data->hash);
1030
	cpuhp_state_remove_instance_nocalls(io_wq_online, &wq->cpuhp_node);
J
Jann Horn 已提交
1031 1032
	for_each_node(node)
		kfree(wq->wqes[node]);
1033
err_wqes:
1034
	kfree(wq->wqes);
1035
err_wq:
1036
	kfree(wq);
1037 1038 1039
	return ERR_PTR(ret);
}

1040 1041 1042 1043 1044 1045 1046 1047 1048 1049
static void io_wq_destroy_manager(struct io_wq *wq)
{
	if (wq->manager) {
		wake_up_process(wq->manager);
		wait_for_completion(&wq->exited);
		put_task_struct(wq->manager);
		wq->manager = NULL;
	}
}

1050
static void io_wq_destroy(struct io_wq *wq)
1051
{
J
Jann Horn 已提交
1052
	int node;
1053

1054 1055
	cpuhp_state_remove_instance_nocalls(io_wq_online, &wq->cpuhp_node);

1056
	set_bit(IO_WQ_BIT_EXIT, &wq->state);
1057
	io_wq_destroy_manager(wq);
1058

1059 1060
	for_each_node(node) {
		struct io_wqe *wqe = wq->wqes[node];
1061
		WARN_ON_ONCE(!wq_list_empty(&wqe->work_list));
1062 1063 1064
		kfree(wqe);
	}
	io_wq_put_hash(wq->hash);
1065 1066
	kfree(wq->wqes);
	kfree(wq);
1067 1068 1069 1070 1071 1072
}

void io_wq_put(struct io_wq *wq)
{
	if (refcount_dec_and_test(&wq->refs))
		io_wq_destroy(wq);
1073
}
J
Jens Axboe 已提交
1074

1075 1076 1077 1078 1079 1080 1081
void io_wq_put_and_exit(struct io_wq *wq)
{
	set_bit(IO_WQ_BIT_EXIT, &wq->state);
	io_wq_destroy_manager(wq);
	io_wq_put(wq);
}

1082 1083 1084 1085 1086 1087 1088 1089 1090 1091 1092 1093 1094 1095 1096 1097 1098 1099 1100 1101 1102 1103 1104 1105 1106 1107 1108 1109 1110 1111 1112 1113 1114 1115 1116 1117 1118
static bool io_wq_worker_affinity(struct io_worker *worker, void *data)
{
	struct task_struct *task = worker->task;
	struct rq_flags rf;
	struct rq *rq;

	rq = task_rq_lock(task, &rf);
	do_set_cpus_allowed(task, cpumask_of_node(worker->wqe->node));
	task->flags |= PF_NO_SETAFFINITY;
	task_rq_unlock(rq, task, &rf);
	return false;
}

static int io_wq_cpu_online(unsigned int cpu, struct hlist_node *node)
{
	struct io_wq *wq = hlist_entry_safe(node, struct io_wq, cpuhp_node);
	int i;

	rcu_read_lock();
	for_each_node(i)
		io_wq_for_each_worker(wq->wqes[i], io_wq_worker_affinity, NULL);
	rcu_read_unlock();
	return 0;
}

static __init int io_wq_init(void)
{
	int ret;

	ret = cpuhp_setup_state_multi(CPUHP_AP_ONLINE_DYN, "io-wq/online",
					io_wq_cpu_online, NULL);
	if (ret < 0)
		return ret;
	io_wq_online = ret;
	return 0;
}
subsys_initcall(io_wq_init);