io_uring.c 249.9 KB
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// SPDX-License-Identifier: GPL-2.0
/*
 * Shared application/kernel submission and completion ring pairs, for
 * supporting fast/efficient IO.
 *
 * A note on the read/write ordering memory barriers that are matched between
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 * the application and kernel side.
 *
 * After the application reads the CQ ring tail, it must use an
 * appropriate smp_rmb() to pair with the smp_wmb() the kernel uses
 * before writing the tail (using smp_load_acquire to read the tail will
 * do). It also needs a smp_mb() before updating CQ head (ordering the
 * entry load(s) with the head store), pairing with an implicit barrier
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 * through a control-dependency in io_get_cqe (smp_store_release to
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 * store head will do). Failure to do so could lead to reading invalid
 * CQ entries.
 *
 * Likewise, the application must use an appropriate smp_wmb() before
 * writing the SQ tail (ordering SQ entry stores with the tail store),
 * which pairs with smp_load_acquire in io_get_sqring (smp_store_release
 * to store the tail will do). And it needs a barrier ordering the SQ
 * head load before writing new SQ entries (smp_load_acquire to read
 * head will do).
 *
 * When using the SQ poll thread (IORING_SETUP_SQPOLL), the application
 * needs to check the SQ flags for IORING_SQ_NEED_WAKEUP *after*
 * updating the SQ tail; a full memory barrier smp_mb() is needed
 * between.
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 *
 * Also see the examples in the liburing library:
 *
 *	git://git.kernel.dk/liburing
 *
 * io_uring also uses READ/WRITE_ONCE() for _any_ store or load that happens
 * from data shared between the kernel and application. This is done both
 * for ordering purposes, but also to ensure that once a value is loaded from
 * data that the application could potentially modify, it remains stable.
 *
 * Copyright (C) 2018-2019 Jens Axboe
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 * Copyright (c) 2018-2019 Christoph Hellwig
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 */
#include <linux/kernel.h>
#include <linux/init.h>
#include <linux/errno.h>
#include <linux/syscalls.h>
#include <linux/compat.h>
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#include <net/compat.h>
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#include <linux/refcount.h>
#include <linux/uio.h>
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#include <linux/bits.h>
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#include <linux/sched/signal.h>
#include <linux/fs.h>
#include <linux/file.h>
#include <linux/fdtable.h>
#include <linux/mm.h>
#include <linux/mman.h>
#include <linux/percpu.h>
#include <linux/slab.h>
#include <linux/blkdev.h>
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#include <linux/bvec.h>
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#include <linux/net.h>
#include <net/sock.h>
#include <net/af_unix.h>
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#include <net/scm.h>
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#include <linux/anon_inodes.h>
#include <linux/sched/mm.h>
#include <linux/uaccess.h>
#include <linux/nospec.h>
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#include <linux/sizes.h>
#include <linux/hugetlb.h>
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#include <linux/highmem.h>
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#include <linux/namei.h>
#include <linux/fsnotify.h>
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#include <linux/fadvise.h>
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#include <linux/eventpoll.h>
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#include <linux/splice.h>
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#include <linux/task_work.h>
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#include <linux/pagemap.h>
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#include <linux/io_uring.h>
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#define CREATE_TRACE_POINTS
#include <trace/events/io_uring.h>

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#include <uapi/linux/io_uring.h>

#include "internal.h"
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#include "io-wq.h"
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#define IORING_MAX_ENTRIES	32768
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#define IORING_MAX_CQ_ENTRIES	(2 * IORING_MAX_ENTRIES)
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/*
 * Shift of 9 is 512 entries, or exactly one page on 64-bit archs
 */
#define IORING_FILE_TABLE_SHIFT	9
#define IORING_MAX_FILES_TABLE	(1U << IORING_FILE_TABLE_SHIFT)
#define IORING_FILE_TABLE_MASK	(IORING_MAX_FILES_TABLE - 1)
#define IORING_MAX_FIXED_FILES	(64 * IORING_MAX_FILES_TABLE)
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#define IORING_MAX_RESTRICTIONS	(IORING_RESTRICTION_LAST + \
				 IORING_REGISTER_LAST + IORING_OP_LAST)
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#define IO_RSRC_TAG_TABLE_SHIFT	9
#define IO_RSRC_TAG_TABLE_MAX	(1U << IO_RSRC_TAG_TABLE_SHIFT)
#define IO_RSRC_TAG_TABLE_MASK	(IO_RSRC_TAG_TABLE_MAX - 1)

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#define IORING_MAX_REG_BUFFERS	(1U << 14)

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#define SQE_VALID_FLAGS	(IOSQE_FIXED_FILE|IOSQE_IO_DRAIN|IOSQE_IO_LINK|	\
				IOSQE_IO_HARDLINK | IOSQE_ASYNC | \
				IOSQE_BUFFER_SELECT)

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#define IO_TCTX_REFS_CACHE_NR	(1U << 10)

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struct io_uring {
	u32 head ____cacheline_aligned_in_smp;
	u32 tail ____cacheline_aligned_in_smp;
};

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/*
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 * This data is shared with the application through the mmap at offsets
 * IORING_OFF_SQ_RING and IORING_OFF_CQ_RING.
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 *
 * The offsets to the member fields are published through struct
 * io_sqring_offsets when calling io_uring_setup.
 */
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struct io_rings {
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	/*
	 * Head and tail offsets into the ring; the offsets need to be
	 * masked to get valid indices.
	 *
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	 * The kernel controls head of the sq ring and the tail of the cq ring,
	 * and the application controls tail of the sq ring and the head of the
	 * cq ring.
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	 */
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	struct io_uring		sq, cq;
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	/*
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	 * Bitmasks to apply to head and tail offsets (constant, equals
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	 * ring_entries - 1)
	 */
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	u32			sq_ring_mask, cq_ring_mask;
	/* Ring sizes (constant, power of 2) */
	u32			sq_ring_entries, cq_ring_entries;
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	/*
	 * Number of invalid entries dropped by the kernel due to
	 * invalid index stored in array
	 *
	 * Written by the kernel, shouldn't be modified by the
	 * application (i.e. get number of "new events" by comparing to
	 * cached value).
	 *
	 * After a new SQ head value was read by the application this
	 * counter includes all submissions that were dropped reaching
	 * the new SQ head (and possibly more).
	 */
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	u32			sq_dropped;
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	/*
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	 * Runtime SQ flags
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	 *
	 * Written by the kernel, shouldn't be modified by the
	 * application.
	 *
	 * The application needs a full memory barrier before checking
	 * for IORING_SQ_NEED_WAKEUP after updating the sq tail.
	 */
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	u32			sq_flags;
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	/*
	 * Runtime CQ flags
	 *
	 * Written by the application, shouldn't be modified by the
	 * kernel.
	 */
	u32                     cq_flags;
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	/*
	 * Number of completion events lost because the queue was full;
	 * this should be avoided by the application by making sure
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	 * there are not more requests pending than there is space in
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	 * the completion queue.
	 *
	 * Written by the kernel, shouldn't be modified by the
	 * application (i.e. get number of "new events" by comparing to
	 * cached value).
	 *
	 * As completion events come in out of order this counter is not
	 * ordered with any other data.
	 */
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	u32			cq_overflow;
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	/*
	 * Ring buffer of completion events.
	 *
	 * The kernel writes completion events fresh every time they are
	 * produced, so the application is allowed to modify pending
	 * entries.
	 */
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	struct io_uring_cqe	cqes[] ____cacheline_aligned_in_smp;
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};

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enum io_uring_cmd_flags {
	IO_URING_F_NONBLOCK		= 1,
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	IO_URING_F_COMPLETE_DEFER	= 2,
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};

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struct io_mapped_ubuf {
	u64		ubuf;
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	u64		ubuf_end;
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	unsigned int	nr_bvecs;
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	unsigned long	acct_pages;
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	struct bio_vec	bvec[];
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};

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struct io_ring_ctx;

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struct io_overflow_cqe {
	struct io_uring_cqe cqe;
	struct list_head list;
};

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struct io_fixed_file {
	/* file * with additional FFS_* flags */
	unsigned long file_ptr;
};

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struct io_rsrc_put {
	struct list_head list;
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	u64 tag;
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	union {
		void *rsrc;
		struct file *file;
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		struct io_mapped_ubuf *buf;
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	};
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};

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struct io_file_table {
	/* two level table */
	struct io_fixed_file **files;
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};

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struct io_rsrc_node {
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	struct percpu_ref		refs;
	struct list_head		node;
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	struct list_head		rsrc_list;
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	struct io_rsrc_data		*rsrc_data;
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	struct llist_node		llist;
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	bool				done;
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};

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typedef void (rsrc_put_fn)(struct io_ring_ctx *ctx, struct io_rsrc_put *prsrc);

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struct io_rsrc_data {
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	struct io_ring_ctx		*ctx;

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	u64				**tags;
	unsigned int			nr;
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	rsrc_put_fn			*do_put;
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	atomic_t			refs;
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	struct completion		done;
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	bool				quiesce;
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};

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struct io_buffer {
	struct list_head list;
	__u64 addr;
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	__u32 len;
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	__u16 bid;
};

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struct io_restriction {
	DECLARE_BITMAP(register_op, IORING_REGISTER_LAST);
	DECLARE_BITMAP(sqe_op, IORING_OP_LAST);
	u8 sqe_flags_allowed;
	u8 sqe_flags_required;
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	bool registered;
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};

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enum {
	IO_SQ_THREAD_SHOULD_STOP = 0,
	IO_SQ_THREAD_SHOULD_PARK,
};

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struct io_sq_data {
	refcount_t		refs;
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	atomic_t		park_pending;
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	struct mutex		lock;
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	/* ctx's that are using this sqd */
	struct list_head	ctx_list;

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	struct task_struct	*thread;
	struct wait_queue_head	wait;
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	unsigned		sq_thread_idle;
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	int			sq_cpu;
	pid_t			task_pid;
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	pid_t			task_tgid;
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	unsigned long		state;
	struct completion	exited;
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};

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#define IO_IOPOLL_BATCH			8
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#define IO_COMPL_BATCH			32
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#define IO_REQ_CACHE_SIZE		32
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#define IO_REQ_ALLOC_BATCH		8
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struct io_comp_state {
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	struct io_kiocb		*reqs[IO_COMPL_BATCH];
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	unsigned int		nr;
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	/* inline/task_work completion list, under ->uring_lock */
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	struct list_head	free_list;
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};

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struct io_submit_link {
	struct io_kiocb		*head;
	struct io_kiocb		*last;
};

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struct io_submit_state {
	struct blk_plug		plug;
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	struct io_submit_link	link;
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	/*
	 * io_kiocb alloc cache
	 */
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	void			*reqs[IO_REQ_CACHE_SIZE];
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	unsigned int		free_reqs;

	bool			plug_started;

	/*
	 * Batch completion logic
	 */
	struct io_comp_state	comp;

	/*
	 * File reference cache
	 */
	struct file		*file;
	unsigned int		fd;
	unsigned int		file_refs;
	unsigned int		ios_left;
};

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struct io_ring_ctx {
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	/* const or read-mostly hot data */
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	struct {
		struct percpu_ref	refs;

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		struct io_rings		*rings;
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		unsigned int		flags;
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		unsigned int		compat: 1;
		unsigned int		drain_next: 1;
		unsigned int		eventfd_async: 1;
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		unsigned int		restricted: 1;
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		unsigned int		off_timeout_used: 1;
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	} ____cacheline_aligned_in_smp;
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	/* submission data */
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	struct {
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		/*
		 * Ring buffer of indices into array of io_uring_sqe, which is
		 * mmapped by the application using the IORING_OFF_SQES offset.
		 *
		 * This indirection could e.g. be used to assign fixed
		 * io_uring_sqe entries to operations and only submit them to
		 * the queue when needed.
		 *
		 * The kernel modifies neither the indices array nor the entries
		 * array.
		 */
		u32			*sq_array;
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		struct io_uring_sqe	*sq_sqes;
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		unsigned		cached_sq_head;
		unsigned		sq_entries;
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		unsigned long		sq_check_overflow;
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		struct list_head	defer_list;
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		/*
		 * Fixed resources fast path, should be accessed only under
		 * uring_lock, and updated through io_uring_register(2)
		 */
		struct io_rsrc_node	*rsrc_node;
		struct io_file_table	file_table;
		unsigned		nr_user_files;
		unsigned		nr_user_bufs;
		struct io_mapped_ubuf	**user_bufs;

		struct io_submit_state	submit_state;
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		struct list_head	timeout_list;
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		struct list_head	cq_overflow_list;
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		struct xarray		io_buffers;
		struct xarray		personalities;
		u32			pers_next;
		unsigned		sq_thread_idle;
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	} ____cacheline_aligned_in_smp;

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	struct {
		struct mutex		uring_lock;
		wait_queue_head_t	wait;
	} ____cacheline_aligned_in_smp;

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	/* IRQ completion list, under ->completion_lock */
	struct list_head	locked_free_list;
	unsigned int		locked_free_nr;
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	const struct cred	*sq_creds;	/* cred used for __io_sq_thread() */
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	struct io_sq_data	*sq_data;	/* if using sq thread polling */

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	struct wait_queue_head	sqo_sq_wait;
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	struct list_head	sqd_list;
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	struct {
		unsigned		cached_cq_tail;
		unsigned		cq_entries;
		atomic_t		cq_timeouts;
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		unsigned		cq_last_tm_flush;
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		unsigned		cq_extra;
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		unsigned long		cq_check_overflow;
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		struct wait_queue_head	cq_wait;
		struct fasync_struct	*cq_fasync;
		struct eventfd_ctx	*cq_ev_fd;
	} ____cacheline_aligned_in_smp;
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	struct {
		spinlock_t		completion_lock;
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		/*
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		 * ->iopoll_list is protected by the ctx->uring_lock for
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		 * io_uring instances that don't use IORING_SETUP_SQPOLL.
		 * For SQPOLL, only the single threaded io_sq_thread() will
		 * manipulate the list, hence no extra locking is needed there.
		 */
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		struct list_head	iopoll_list;
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		struct hlist_head	*cancel_hash;
		unsigned		cancel_hash_bits;
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		bool			poll_multi_file;
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	} ____cacheline_aligned_in_smp;
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	struct io_restriction		restrictions;
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	/* slow path rsrc auxilary data, used by update/register */
	struct {
		struct io_rsrc_node		*rsrc_backup_node;
		struct io_mapped_ubuf		*dummy_ubuf;
		struct io_rsrc_data		*file_data;
		struct io_rsrc_data		*buf_data;

		struct delayed_work		rsrc_put_work;
		struct llist_head		rsrc_put_llist;
		struct list_head		rsrc_ref_list;
		spinlock_t			rsrc_ref_lock;
	};

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	/* Keep this last, we don't need it for the fast path */
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	struct {
		#if defined(CONFIG_UNIX)
			struct socket		*ring_sock;
		#endif
		/* hashed buffered write serialization */
		struct io_wq_hash		*hash_map;

		/* Only used for accounting purposes */
		struct user_struct		*user;
		struct mm_struct		*mm_account;

		/* ctx exit and cancelation */
		struct callback_head		*exit_task_work;
		struct work_struct		exit_work;
		struct list_head		tctx_list;
		struct completion		ref_comp;
	};
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};

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struct io_uring_task {
	/* submission side */
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	int			cached_refs;
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	struct xarray		xa;
	struct wait_queue_head	wait;
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	const struct io_ring_ctx *last;
	struct io_wq		*io_wq;
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	struct percpu_counter	inflight;
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	atomic_t		inflight_tracked;
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	atomic_t		in_idle;

	spinlock_t		task_lock;
	struct io_wq_work_list	task_list;
	unsigned long		task_state;
	struct callback_head	task_work;
};

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/*
 * First field must be the file pointer in all the
 * iocb unions! See also 'struct kiocb' in <linux/fs.h>
 */
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struct io_poll_iocb {
	struct file			*file;
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	struct wait_queue_head		*head;
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	__poll_t			events;
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	bool				done;
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	bool				canceled;
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	struct wait_queue_entry		wait;
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};

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struct io_poll_update {
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	struct file			*file;
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	u64				old_user_data;
	u64				new_user_data;
	__poll_t			events;
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	bool				update_events;
	bool				update_user_data;
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};

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struct io_close {
	struct file			*file;
	int				fd;
};

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struct io_timeout_data {
	struct io_kiocb			*req;
	struct hrtimer			timer;
	struct timespec64		ts;
	enum hrtimer_mode		mode;
};

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struct io_accept {
	struct file			*file;
	struct sockaddr __user		*addr;
	int __user			*addr_len;
	int				flags;
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	unsigned long			nofile;
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};

struct io_sync {
	struct file			*file;
	loff_t				len;
	loff_t				off;
	int				flags;
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	int				mode;
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};

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struct io_cancel {
	struct file			*file;
	u64				addr;
};

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struct io_timeout {
	struct file			*file;
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	u32				off;
	u32				target_seq;
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	struct list_head		list;
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	/* head of the link, used by linked timeouts only */
	struct io_kiocb			*head;
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};

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struct io_timeout_rem {
	struct file			*file;
	u64				addr;
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	/* timeout update */
	struct timespec64		ts;
	u32				flags;
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};

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struct io_rw {
	/* NOTE: kiocb has the file as the first member, so don't do it here */
	struct kiocb			kiocb;
	u64				addr;
	u64				len;
};

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struct io_connect {
	struct file			*file;
	struct sockaddr __user		*addr;
	int				addr_len;
};

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struct io_sr_msg {
	struct file			*file;
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	union {
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		struct compat_msghdr __user	*umsg_compat;
		struct user_msghdr __user	*umsg;
		void __user			*buf;
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	};
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	int				msg_flags;
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	int				bgid;
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	size_t				len;
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	struct io_buffer		*kbuf;
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};

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struct io_open {
	struct file			*file;
	int				dfd;
	struct filename			*filename;
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	struct open_how			how;
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	unsigned long			nofile;
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};

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struct io_rsrc_update {
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	struct file			*file;
	u64				arg;
	u32				nr_args;
	u32				offset;
};

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struct io_fadvise {
	struct file			*file;
	u64				offset;
	u32				len;
	u32				advice;
};

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struct io_madvise {
	struct file			*file;
	u64				addr;
	u32				len;
	u32				advice;
};

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struct io_epoll {
	struct file			*file;
	int				epfd;
	int				op;
	int				fd;
	struct epoll_event		event;
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};

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struct io_splice {
	struct file			*file_out;
	struct file			*file_in;
	loff_t				off_out;
	loff_t				off_in;
	u64				len;
	unsigned int			flags;
};

635 636 637
struct io_provide_buf {
	struct file			*file;
	__u64				addr;
638
	__u32				len;
639 640 641 642 643
	__u32				bgid;
	__u16				nbufs;
	__u16				bid;
};

644 645 646 647 648
struct io_statx {
	struct file			*file;
	int				dfd;
	unsigned int			mask;
	unsigned int			flags;
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	const char __user		*filename;
650 651 652
	struct statx __user		*buffer;
};

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struct io_shutdown {
	struct file			*file;
	int				how;
};

658 659 660 661 662 663 664 665 666
struct io_rename {
	struct file			*file;
	int				old_dfd;
	int				new_dfd;
	struct filename			*oldpath;
	struct filename			*newpath;
	int				flags;
};

667 668 669 670 671 672 673
struct io_unlink {
	struct file			*file;
	int				dfd;
	int				flags;
	struct filename			*filename;
};

674 675 676
struct io_completion {
	struct file			*file;
	struct list_head		list;
677
	u32				cflags;
678 679
};

680 681 682 683
struct io_async_connect {
	struct sockaddr_storage		address;
};

684 685
struct io_async_msghdr {
	struct iovec			fast_iov[UIO_FASTIOV];
686 687
	/* points to an allocated iov, if NULL we use fast_iov instead */
	struct iovec			*free_iov;
688 689
	struct sockaddr __user		*uaddr;
	struct msghdr			msg;
690
	struct sockaddr_storage		addr;
691 692
};

693 694
struct io_async_rw {
	struct iovec			fast_iov[UIO_FASTIOV];
695 696
	const struct iovec		*free_iovec;
	struct iov_iter			iter;
697
	size_t				bytes_done;
698
	struct wait_page_queue		wpq;
699 700
};

701 702 703 704 705 706
enum {
	REQ_F_FIXED_FILE_BIT	= IOSQE_FIXED_FILE_BIT,
	REQ_F_IO_DRAIN_BIT	= IOSQE_IO_DRAIN_BIT,
	REQ_F_LINK_BIT		= IOSQE_IO_LINK_BIT,
	REQ_F_HARDLINK_BIT	= IOSQE_IO_HARDLINK_BIT,
	REQ_F_FORCE_ASYNC_BIT	= IOSQE_ASYNC_BIT,
707
	REQ_F_BUFFER_SELECT_BIT	= IOSQE_BUFFER_SELECT_BIT,
708

709
	/* first byte is taken by user flags, shift it to not overlap */
710
	REQ_F_FAIL_BIT		= 8,
711 712 713 714
	REQ_F_INFLIGHT_BIT,
	REQ_F_CUR_POS_BIT,
	REQ_F_NOWAIT_BIT,
	REQ_F_LINK_TIMEOUT_BIT,
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	REQ_F_NEED_CLEANUP_BIT,
716
	REQ_F_POLLED_BIT,
717
	REQ_F_BUFFER_SELECTED_BIT,
718
	REQ_F_LTIMEOUT_ACTIVE_BIT,
719
	REQ_F_COMPLETE_INLINE_BIT,
720
	REQ_F_REISSUE_BIT,
721
	REQ_F_DONT_REISSUE_BIT,
722 723 724 725
	/* keep async read/write and isreg together and in order */
	REQ_F_ASYNC_READ_BIT,
	REQ_F_ASYNC_WRITE_BIT,
	REQ_F_ISREG_BIT,
726 727 728

	/* not a real bit, just to check we're not overflowing the space */
	__REQ_F_LAST_BIT,
729 730 731 732 733 734 735 736 737 738 739 740 741
};

enum {
	/* ctx owns file */
	REQ_F_FIXED_FILE	= BIT(REQ_F_FIXED_FILE_BIT),
	/* drain existing IO first */
	REQ_F_IO_DRAIN		= BIT(REQ_F_IO_DRAIN_BIT),
	/* linked sqes */
	REQ_F_LINK		= BIT(REQ_F_LINK_BIT),
	/* doesn't sever on completion < 0 */
	REQ_F_HARDLINK		= BIT(REQ_F_HARDLINK_BIT),
	/* IOSQE_ASYNC */
	REQ_F_FORCE_ASYNC	= BIT(REQ_F_FORCE_ASYNC_BIT),
742 743
	/* IOSQE_BUFFER_SELECT */
	REQ_F_BUFFER_SELECT	= BIT(REQ_F_BUFFER_SELECT_BIT),
744 745

	/* fail rest of links */
746
	REQ_F_FAIL		= BIT(REQ_F_FAIL_BIT),
747
	/* on inflight list, should be cancelled and waited on exit reliably */
748 749 750 751 752
	REQ_F_INFLIGHT		= BIT(REQ_F_INFLIGHT_BIT),
	/* read/write uses file position */
	REQ_F_CUR_POS		= BIT(REQ_F_CUR_POS_BIT),
	/* must not punt to workers */
	REQ_F_NOWAIT		= BIT(REQ_F_NOWAIT_BIT),
753
	/* has or had linked timeout */
754
	REQ_F_LINK_TIMEOUT	= BIT(REQ_F_LINK_TIMEOUT_BIT),
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	/* needs cleanup */
	REQ_F_NEED_CLEANUP	= BIT(REQ_F_NEED_CLEANUP_BIT),
757 758
	/* already went through poll handler */
	REQ_F_POLLED		= BIT(REQ_F_POLLED_BIT),
759 760
	/* buffer already selected */
	REQ_F_BUFFER_SELECTED	= BIT(REQ_F_BUFFER_SELECTED_BIT),
761 762
	/* linked timeout is active, i.e. prepared by link's head */
	REQ_F_LTIMEOUT_ACTIVE	= BIT(REQ_F_LTIMEOUT_ACTIVE_BIT),
763 764
	/* completion is deferred through io_comp_state */
	REQ_F_COMPLETE_INLINE	= BIT(REQ_F_COMPLETE_INLINE_BIT),
765 766
	/* caller should reissue async */
	REQ_F_REISSUE		= BIT(REQ_F_REISSUE_BIT),
767 768
	/* don't attempt request reissue, see io_rw_reissue() */
	REQ_F_DONT_REISSUE	= BIT(REQ_F_DONT_REISSUE_BIT),
769 770 771 772 773 774
	/* supports async reads */
	REQ_F_ASYNC_READ	= BIT(REQ_F_ASYNC_READ_BIT),
	/* supports async writes */
	REQ_F_ASYNC_WRITE	= BIT(REQ_F_ASYNC_WRITE_BIT),
	/* regular file */
	REQ_F_ISREG		= BIT(REQ_F_ISREG_BIT),
775 776 777 778
};

struct async_poll {
	struct io_poll_iocb	poll;
779
	struct io_poll_iocb	*double_poll;
780 781
};

782 783 784 785 786
struct io_task_work {
	struct io_wq_work_node	node;
	task_work_func_t	func;
};

787 788 789 790 791
enum {
	IORING_RSRC_FILE		= 0,
	IORING_RSRC_BUFFER		= 1,
};

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792 793 794 795 796 797
/*
 * NOTE! Each of the iocb union members has the file pointer
 * as the first entry in their struct definition. So you can
 * access the file pointer through any of the sub-structs,
 * or directly as just 'ki_filp' in this struct.
 */
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798
struct io_kiocb {
799
	union {
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800
		struct file		*file;
801
		struct io_rw		rw;
802
		struct io_poll_iocb	poll;
803
		struct io_poll_update	poll_update;
804 805
		struct io_accept	accept;
		struct io_sync		sync;
806
		struct io_cancel	cancel;
807
		struct io_timeout	timeout;
808
		struct io_timeout_rem	timeout_rem;
809
		struct io_connect	connect;
810
		struct io_sr_msg	sr_msg;
811
		struct io_open		open;
812
		struct io_close		close;
813
		struct io_rsrc_update	rsrc_update;
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		struct io_fadvise	fadvise;
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815
		struct io_madvise	madvise;
816
		struct io_epoll		epoll;
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		struct io_splice	splice;
818
		struct io_provide_buf	pbuf;
819
		struct io_statx		statx;
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		struct io_shutdown	shutdown;
821
		struct io_rename	rename;
822
		struct io_unlink	unlink;
823 824
		/* use only after cleaning per-op data, see io_clean_op() */
		struct io_completion	compl;
825
	};
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826

827 828
	/* opcode allocated if it needs to store data for async defer */
	void				*async_data;
829
	u8				opcode;
830 831
	/* polled IO has completed */
	u8				iopoll_completed;
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833
	u16				buf_index;
834
	u32				result;
835

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836 837
	struct io_ring_ctx		*ctx;
	unsigned int			flags;
838
	atomic_t			refs;
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839 840
	struct task_struct		*task;
	u64				user_data;
841

842
	struct io_kiocb			*link;
843
	struct percpu_ref		*fixed_rsrc_refs;
844

845
	/* used with ctx->iopoll_list with reads/writes */
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846
	struct list_head		inflight_entry;
847 848 849 850
	union {
		struct io_task_work	io_task_work;
		struct callback_head	task_work;
	};
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851 852 853 854
	/* for polled requests, i.e. IORING_OP_POLL_ADD and async armed poll */
	struct hlist_node		hash_node;
	struct async_poll		*apoll;
	struct io_wq_work		work;
855 856
	/* store used ubuf, so we can prevent reloading */
	struct io_mapped_ubuf		*imu;
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};
858

859 860 861 862 863 864
struct io_tctx_node {
	struct list_head	ctx_node;
	struct task_struct	*task;
	struct io_ring_ctx	*ctx;
};

865 866 867
struct io_defer_entry {
	struct list_head	list;
	struct io_kiocb		*req;
868
	u32			seq;
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};

871 872 873 874 875 876 877
struct io_op_def {
	/* needs req->file assigned */
	unsigned		needs_file : 1;
	/* hash wq insertion if file is a regular file */
	unsigned		hash_reg_file : 1;
	/* unbound wq insertion if file is a non-regular file */
	unsigned		unbound_nonreg_file : 1;
878 879
	/* opcode is not supported by this kernel */
	unsigned		not_supported : 1;
880 881 882
	/* set if opcode supports polled "wait" */
	unsigned		pollin : 1;
	unsigned		pollout : 1;
883 884
	/* op supports buffer selection */
	unsigned		buffer_select : 1;
885 886
	/* do prep async if is going to be punted */
	unsigned		needs_async_setup : 1;
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	/* should block plug */
	unsigned		plug : 1;
889 890
	/* size of async data needed, if any */
	unsigned short		async_size;
891 892
};

893
static const struct io_op_def io_op_defs[] = {
894 895
	[IORING_OP_NOP] = {},
	[IORING_OP_READV] = {
896 897
		.needs_file		= 1,
		.unbound_nonreg_file	= 1,
898
		.pollin			= 1,
899
		.buffer_select		= 1,
900
		.needs_async_setup	= 1,
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		.plug			= 1,
902
		.async_size		= sizeof(struct io_async_rw),
903
	},
904
	[IORING_OP_WRITEV] = {
905 906 907
		.needs_file		= 1,
		.hash_reg_file		= 1,
		.unbound_nonreg_file	= 1,
908
		.pollout		= 1,
909
		.needs_async_setup	= 1,
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		.plug			= 1,
911
		.async_size		= sizeof(struct io_async_rw),
912
	},
913
	[IORING_OP_FSYNC] = {
914 915
		.needs_file		= 1,
	},
916
	[IORING_OP_READ_FIXED] = {
917 918
		.needs_file		= 1,
		.unbound_nonreg_file	= 1,
919
		.pollin			= 1,
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		.plug			= 1,
921
		.async_size		= sizeof(struct io_async_rw),
922
	},
923
	[IORING_OP_WRITE_FIXED] = {
924 925 926
		.needs_file		= 1,
		.hash_reg_file		= 1,
		.unbound_nonreg_file	= 1,
927
		.pollout		= 1,
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928
		.plug			= 1,
929
		.async_size		= sizeof(struct io_async_rw),
930
	},
931
	[IORING_OP_POLL_ADD] = {
932 933 934
		.needs_file		= 1,
		.unbound_nonreg_file	= 1,
	},
935 936
	[IORING_OP_POLL_REMOVE] = {},
	[IORING_OP_SYNC_FILE_RANGE] = {
937 938
		.needs_file		= 1,
	},
939
	[IORING_OP_SENDMSG] = {
940 941
		.needs_file		= 1,
		.unbound_nonreg_file	= 1,
942
		.pollout		= 1,
943
		.needs_async_setup	= 1,
944
		.async_size		= sizeof(struct io_async_msghdr),
945
	},
946
	[IORING_OP_RECVMSG] = {
947 948
		.needs_file		= 1,
		.unbound_nonreg_file	= 1,
949
		.pollin			= 1,
950
		.buffer_select		= 1,
951
		.needs_async_setup	= 1,
952
		.async_size		= sizeof(struct io_async_msghdr),
953
	},
954
	[IORING_OP_TIMEOUT] = {
955
		.async_size		= sizeof(struct io_timeout_data),
956
	},
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957 958 959
	[IORING_OP_TIMEOUT_REMOVE] = {
		/* used by timeout updates' prep() */
	},
960
	[IORING_OP_ACCEPT] = {
961 962
		.needs_file		= 1,
		.unbound_nonreg_file	= 1,
963
		.pollin			= 1,
964
	},
965 966
	[IORING_OP_ASYNC_CANCEL] = {},
	[IORING_OP_LINK_TIMEOUT] = {
967
		.async_size		= sizeof(struct io_timeout_data),
968
	},
969
	[IORING_OP_CONNECT] = {
970 971
		.needs_file		= 1,
		.unbound_nonreg_file	= 1,
972
		.pollout		= 1,
973
		.needs_async_setup	= 1,
974
		.async_size		= sizeof(struct io_async_connect),
975
	},
976
	[IORING_OP_FALLOCATE] = {
977 978
		.needs_file		= 1,
	},
979 980 981 982
	[IORING_OP_OPENAT] = {},
	[IORING_OP_CLOSE] = {},
	[IORING_OP_FILES_UPDATE] = {},
	[IORING_OP_STATX] = {},
983
	[IORING_OP_READ] = {
984 985
		.needs_file		= 1,
		.unbound_nonreg_file	= 1,
986
		.pollin			= 1,
987
		.buffer_select		= 1,
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988
		.plug			= 1,
989
		.async_size		= sizeof(struct io_async_rw),
990
	},
991
	[IORING_OP_WRITE] = {
992 993
		.needs_file		= 1,
		.unbound_nonreg_file	= 1,
994
		.pollout		= 1,
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995
		.plug			= 1,
996
		.async_size		= sizeof(struct io_async_rw),
997
	},
998
	[IORING_OP_FADVISE] = {
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999
		.needs_file		= 1,
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1000
	},
1001
	[IORING_OP_MADVISE] = {},
1002
	[IORING_OP_SEND] = {
1003 1004
		.needs_file		= 1,
		.unbound_nonreg_file	= 1,
1005
		.pollout		= 1,
1006
	},
1007
	[IORING_OP_RECV] = {
1008 1009
		.needs_file		= 1,
		.unbound_nonreg_file	= 1,
1010
		.pollin			= 1,
1011
		.buffer_select		= 1,
1012
	},
1013
	[IORING_OP_OPENAT2] = {
1014
	},
1015 1016 1017
	[IORING_OP_EPOLL_CTL] = {
		.unbound_nonreg_file	= 1,
	},
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1018 1019 1020 1021
	[IORING_OP_SPLICE] = {
		.needs_file		= 1,
		.hash_reg_file		= 1,
		.unbound_nonreg_file	= 1,
1022 1023
	},
	[IORING_OP_PROVIDE_BUFFERS] = {},
1024
	[IORING_OP_REMOVE_BUFFERS] = {},
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1025 1026 1027 1028 1029
	[IORING_OP_TEE] = {
		.needs_file		= 1,
		.hash_reg_file		= 1,
		.unbound_nonreg_file	= 1,
	},
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1030 1031 1032
	[IORING_OP_SHUTDOWN] = {
		.needs_file		= 1,
	},
1033 1034
	[IORING_OP_RENAMEAT] = {},
	[IORING_OP_UNLINKAT] = {},
1035 1036
};

1037
static bool io_disarm_next(struct io_kiocb *req);
1038
static void io_uring_del_tctx_node(unsigned long index);
1039 1040
static void io_uring_try_cancel_requests(struct io_ring_ctx *ctx,
					 struct task_struct *task,
1041
					 bool cancel_all);
1042
static void io_uring_cancel_generic(bool cancel_all, struct io_sq_data *sqd);
1043
static struct io_rsrc_node *io_rsrc_node_alloc(struct io_ring_ctx *ctx);
1044

1045 1046
static bool io_cqring_fill_event(struct io_ring_ctx *ctx, u64 user_data,
				 long res, unsigned int cflags);
1047
static void io_put_req(struct io_kiocb *req);
1048
static void io_put_req_deferred(struct io_kiocb *req, int nr);
1049 1050
static void io_dismantle_req(struct io_kiocb *req);
static void io_put_task(struct task_struct *task, int nr);
1051 1052
static struct io_kiocb *io_prep_linked_timeout(struct io_kiocb *req);
static void io_queue_linked_timeout(struct io_kiocb *req);
1053
static int __io_register_rsrc_update(struct io_ring_ctx *ctx, unsigned type,
1054
				     struct io_uring_rsrc_update2 *up,
1055
				     unsigned nr_args);
1056
static void io_clean_op(struct io_kiocb *req);
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1057 1058
static struct file *io_file_get(struct io_submit_state *state,
				struct io_kiocb *req, int fd, bool fixed);
1059
static void __io_queue_sqe(struct io_kiocb *req);
1060
static void io_rsrc_put_work(struct work_struct *work);
1061

1062
static void io_req_task_queue(struct io_kiocb *req);
1063 1064
static void io_submit_flush_completions(struct io_comp_state *cs,
					struct io_ring_ctx *ctx);
1065
static bool io_poll_remove_waitqs(struct io_kiocb *req);
1066
static int io_req_prep_async(struct io_kiocb *req);
1067

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1068 1069
static struct kmem_cache *req_cachep;

1070
static const struct file_operations io_uring_fops;
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1071 1072 1073 1074 1075 1076 1077 1078 1079 1080 1081 1082 1083 1084

struct sock *io_uring_get_socket(struct file *file)
{
#if defined(CONFIG_UNIX)
	if (file->f_op == &io_uring_fops) {
		struct io_ring_ctx *ctx = file->private_data;

		return ctx->ring_sock->sk;
	}
#endif
	return NULL;
}
EXPORT_SYMBOL(io_uring_get_socket);

1085 1086 1087
#define io_for_each_link(pos, head) \
	for (pos = (head); pos; pos = pos->link)

1088
static inline void io_req_set_rsrc_node(struct io_kiocb *req)
1089 1090 1091
{
	struct io_ring_ctx *ctx = req->ctx;

1092
	if (!req->fixed_rsrc_refs) {
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Pavel Begunkov 已提交
1093
		req->fixed_rsrc_refs = &ctx->rsrc_node->refs;
1094
		percpu_ref_get(req->fixed_rsrc_refs);
1095 1096 1097
	}
}

1098 1099 1100 1101 1102 1103 1104 1105 1106 1107 1108 1109
static void io_refs_resurrect(struct percpu_ref *ref, struct completion *compl)
{
	bool got = percpu_ref_tryget(ref);

	/* already at zero, wait for ->release() */
	if (!got)
		wait_for_completion(compl);
	percpu_ref_resurrect(ref);
	if (got)
		percpu_ref_put(ref);
}

1110 1111
static bool io_match_task(struct io_kiocb *head, struct task_struct *task,
			  bool cancel_all)
1112 1113 1114
{
	struct io_kiocb *req;

1115
	if (task && head->task != task)
1116
		return false;
1117
	if (cancel_all)
1118 1119 1120
		return true;

	io_for_each_link(req, head) {
1121
		if (req->flags & REQ_F_INFLIGHT)
1122
			return true;
1123 1124 1125 1126
	}
	return false;
}

1127
static inline void req_set_fail(struct io_kiocb *req)
1128
{
1129
	req->flags |= REQ_F_FAIL;
1130
}
1131

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1132 1133 1134 1135
static void io_ring_ctx_ref_free(struct percpu_ref *ref)
{
	struct io_ring_ctx *ctx = container_of(ref, struct io_ring_ctx, refs);

1136
	complete(&ctx->ref_comp);
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}

1139 1140 1141 1142 1143
static inline bool io_is_timeout_noseq(struct io_kiocb *req)
{
	return !req->timeout.off;
}

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Jens Axboe 已提交
1144 1145 1146
static struct io_ring_ctx *io_ring_ctx_alloc(struct io_uring_params *p)
{
	struct io_ring_ctx *ctx;
1147
	int hash_bits;
J
Jens Axboe 已提交
1148 1149 1150 1151 1152

	ctx = kzalloc(sizeof(*ctx), GFP_KERNEL);
	if (!ctx)
		return NULL;

1153 1154 1155 1156 1157 1158 1159 1160 1161 1162 1163 1164 1165 1166 1167
	/*
	 * Use 5 bits less than the max cq entries, that should give us around
	 * 32 entries per hash list if totally full and uniformly spread.
	 */
	hash_bits = ilog2(p->cq_entries);
	hash_bits -= 5;
	if (hash_bits <= 0)
		hash_bits = 1;
	ctx->cancel_hash_bits = hash_bits;
	ctx->cancel_hash = kmalloc((1U << hash_bits) * sizeof(struct hlist_head),
					GFP_KERNEL);
	if (!ctx->cancel_hash)
		goto err;
	__hash_init(ctx->cancel_hash, 1U << hash_bits);

1168 1169 1170 1171 1172 1173
	ctx->dummy_ubuf = kzalloc(sizeof(*ctx->dummy_ubuf), GFP_KERNEL);
	if (!ctx->dummy_ubuf)
		goto err;
	/* set invalid range, so io_import_fixed() fails meeting it */
	ctx->dummy_ubuf->ubuf = -1UL;

1174
	if (percpu_ref_init(&ctx->refs, io_ring_ctx_ref_free,
1175 1176
			    PERCPU_REF_ALLOW_REINIT, GFP_KERNEL))
		goto err;
J
Jens Axboe 已提交
1177 1178

	ctx->flags = p->flags;
1179
	init_waitqueue_head(&ctx->sqo_sq_wait);
1180
	INIT_LIST_HEAD(&ctx->sqd_list);
J
Jens Axboe 已提交
1181
	init_waitqueue_head(&ctx->cq_wait);
1182
	INIT_LIST_HEAD(&ctx->cq_overflow_list);
1183
	init_completion(&ctx->ref_comp);
1184
	xa_init_flags(&ctx->io_buffers, XA_FLAGS_ALLOC1);
1185
	xa_init_flags(&ctx->personalities, XA_FLAGS_ALLOC1);
J
Jens Axboe 已提交
1186 1187 1188
	mutex_init(&ctx->uring_lock);
	init_waitqueue_head(&ctx->wait);
	spin_lock_init(&ctx->completion_lock);
1189
	INIT_LIST_HEAD(&ctx->iopoll_list);
1190
	INIT_LIST_HEAD(&ctx->defer_list);
J
Jens Axboe 已提交
1191
	INIT_LIST_HEAD(&ctx->timeout_list);
1192 1193
	spin_lock_init(&ctx->rsrc_ref_lock);
	INIT_LIST_HEAD(&ctx->rsrc_ref_list);
1194 1195
	INIT_DELAYED_WORK(&ctx->rsrc_put_work, io_rsrc_put_work);
	init_llist_head(&ctx->rsrc_put_llist);
1196
	INIT_LIST_HEAD(&ctx->tctx_list);
1197
	INIT_LIST_HEAD(&ctx->submit_state.comp.free_list);
1198
	INIT_LIST_HEAD(&ctx->locked_free_list);
J
Jens Axboe 已提交
1199
	return ctx;
1200
err:
1201
	kfree(ctx->dummy_ubuf);
1202
	kfree(ctx->cancel_hash);
1203 1204
	kfree(ctx);
	return NULL;
J
Jens Axboe 已提交
1205 1206
}

1207 1208 1209 1210 1211 1212 1213 1214
static void io_account_cq_overflow(struct io_ring_ctx *ctx)
{
	struct io_rings *r = ctx->rings;

	WRITE_ONCE(r->cq_overflow, READ_ONCE(r->cq_overflow) + 1);
	ctx->cq_extra--;
}

1215
static bool req_need_defer(struct io_kiocb *req, u32 seq)
1216
{
1217 1218
	if (unlikely(req->flags & REQ_F_IO_DRAIN)) {
		struct io_ring_ctx *ctx = req->ctx;
1219

1220
		return seq + READ_ONCE(ctx->cq_extra) != ctx->cached_cq_tail;
1221
	}
1222

B
Bob Liu 已提交
1223
	return false;
1224 1225
}

1226 1227 1228 1229
static void io_req_track_inflight(struct io_kiocb *req)
{
	if (!(req->flags & REQ_F_INFLIGHT)) {
		req->flags |= REQ_F_INFLIGHT;
1230
		atomic_inc(&current->io_uring->inflight_tracked);
1231 1232 1233
	}
}

J
Jens Axboe 已提交
1234 1235 1236 1237 1238
static void io_prep_async_work(struct io_kiocb *req)
{
	const struct io_op_def *def = &io_op_defs[req->opcode];
	struct io_ring_ctx *ctx = req->ctx;

1239 1240 1241
	if (!req->work.creds)
		req->work.creds = get_current_cred();

1242 1243
	req->work.list.next = NULL;
	req->work.flags = 0;
1244 1245 1246
	if (req->flags & REQ_F_FORCE_ASYNC)
		req->work.flags |= IO_WQ_WORK_CONCURRENT;

J
Jens Axboe 已提交
1247 1248 1249
	if (req->flags & REQ_F_ISREG) {
		if (def->hash_reg_file || (ctx->flags & IORING_SETUP_IOPOLL))
			io_wq_hash_work(&req->work, file_inode(req->file));
1250
	} else if (!req->file || !S_ISBLK(file_inode(req->file)->i_mode)) {
J
Jens Axboe 已提交
1251 1252 1253
		if (def->unbound_nonreg_file)
			req->work.flags |= IO_WQ_WORK_UNBOUND;
	}
1254 1255 1256 1257 1258 1259 1260 1261

	switch (req->opcode) {
	case IORING_OP_SPLICE:
	case IORING_OP_TEE:
		if (!S_ISREG(file_inode(req->splice.file_in)->i_mode))
			req->work.flags |= IO_WQ_WORK_UNBOUND;
		break;
	}
1262
}
1263

1264
static void io_prep_async_link(struct io_kiocb *req)
1265
{
1266
	struct io_kiocb *cur;
1267

1268 1269
	io_for_each_link(cur, req)
		io_prep_async_work(cur);
1270 1271
}

1272
static void io_queue_async_work(struct io_kiocb *req)
1273
{
1274
	struct io_ring_ctx *ctx = req->ctx;
1275
	struct io_kiocb *link = io_prep_linked_timeout(req);
1276
	struct io_uring_task *tctx = req->task->io_uring;
1277

1278 1279
	BUG_ON(!tctx);
	BUG_ON(!tctx->io_wq);
1280

1281 1282
	/* init ->work of the whole link before punting */
	io_prep_async_link(req);
1283 1284
	trace_io_uring_queue_async_work(ctx, io_wq_is_hashed(&req->work), req,
					&req->work, req->flags);
1285
	io_wq_enqueue(tctx->io_wq, &req->work);
1286 1287
	if (link)
		io_queue_linked_timeout(link);
1288 1289
}

1290
static void io_kill_timeout(struct io_kiocb *req, int status)
1291
	__must_hold(&req->ctx->completion_lock)
J
Jens Axboe 已提交
1292
{
1293
	struct io_timeout_data *io = req->async_data;
J
Jens Axboe 已提交
1294

1295
	if (hrtimer_try_to_cancel(&io->timer) != -1) {
1296 1297
		atomic_set(&req->ctx->cq_timeouts,
			atomic_read(&req->ctx->cq_timeouts) + 1);
P
Pavel Begunkov 已提交
1298
		list_del_init(&req->timeout.list);
1299
		io_cqring_fill_event(req->ctx, req->user_data, status, 0);
1300
		io_put_req_deferred(req, 1);
J
Jens Axboe 已提交
1301 1302 1303
	}
}

1304
static void __io_queue_deferred(struct io_ring_ctx *ctx)
1305
{
1306
	do {
1307 1308
		struct io_defer_entry *de = list_first_entry(&ctx->defer_list,
						struct io_defer_entry, list);
1309

1310
		if (req_need_defer(de->req, de->seq))
1311
			break;
1312
		list_del_init(&de->list);
1313
		io_req_task_queue(de->req);
1314
		kfree(de);
1315 1316 1317
	} while (!list_empty(&ctx->defer_list));
}

1318
static void io_flush_timeouts(struct io_ring_ctx *ctx)
1319
{
1320 1321
	u32 seq;

1322
	if (likely(!ctx->off_timeout_used))
1323 1324 1325 1326
		return;

	seq = ctx->cached_cq_tail - atomic_read(&ctx->cq_timeouts);

1327
	while (!list_empty(&ctx->timeout_list)) {
1328
		u32 events_needed, events_got;
1329
		struct io_kiocb *req = list_first_entry(&ctx->timeout_list,
P
Pavel Begunkov 已提交
1330
						struct io_kiocb, timeout.list);
1331

1332
		if (io_is_timeout_noseq(req))
1333
			break;
1334 1335 1336 1337 1338 1339 1340 1341 1342 1343 1344

		/*
		 * Since seq can easily wrap around over time, subtract
		 * the last seq at which timeouts were flushed before comparing.
		 * Assuming not more than 2^31-1 events have happened since,
		 * these subtractions won't have wrapped, so we can check if
		 * target is in [last_seq, current_seq] by comparing the two.
		 */
		events_needed = req->timeout.target_seq - ctx->cq_last_tm_flush;
		events_got = seq - ctx->cq_last_tm_flush;
		if (events_got < events_needed)
1345
			break;
1346

P
Pavel Begunkov 已提交
1347
		list_del_init(&req->timeout.list);
1348
		io_kill_timeout(req, 0);
1349
	}
1350
	ctx->cq_last_tm_flush = seq;
1351
}
J
Jens Axboe 已提交
1352

1353 1354 1355
static void io_commit_cqring(struct io_ring_ctx *ctx)
{
	io_flush_timeouts(ctx);
1356 1357 1358

	/* order cqe stores with ring update */
	smp_store_release(&ctx->rings->cq.tail, ctx->cached_cq_tail);
1359

1360 1361
	if (unlikely(!list_empty(&ctx->defer_list)))
		__io_queue_deferred(ctx);
1362 1363
}

1364 1365 1366 1367
static inline bool io_sqring_full(struct io_ring_ctx *ctx)
{
	struct io_rings *r = ctx->rings;

1368
	return READ_ONCE(r->sq.tail) - ctx->cached_sq_head == ctx->sq_entries;
1369 1370
}

1371 1372 1373 1374 1375
static inline unsigned int __io_cqring_events(struct io_ring_ctx *ctx)
{
	return ctx->cached_cq_tail - READ_ONCE(ctx->rings->cq.head);
}

P
Pavel Begunkov 已提交
1376
static inline struct io_uring_cqe *io_get_cqe(struct io_ring_ctx *ctx)
J
Jens Axboe 已提交
1377
{
1378
	struct io_rings *rings = ctx->rings;
1379
	unsigned tail, mask = ctx->cq_entries - 1;
J
Jens Axboe 已提交
1380

1381 1382 1383 1384 1385
	/*
	 * writes to the cq entry need to come after reading head; the
	 * control dependency is enough as we're using WRITE_ONCE to
	 * fill the cq entry
	 */
1386
	if (__io_cqring_events(ctx) == ctx->cq_entries)
J
Jens Axboe 已提交
1387 1388
		return NULL;

1389
	tail = ctx->cached_cq_tail++;
1390
	return &rings->cqes[tail & mask];
J
Jens Axboe 已提交
1391 1392
}

1393 1394
static inline bool io_should_trigger_evfd(struct io_ring_ctx *ctx)
{
1395
	if (likely(!ctx->cq_ev_fd))
1396
		return false;
1397 1398
	if (READ_ONCE(ctx->rings->cq_flags) & IORING_CQ_EVENTFD_DISABLED)
		return false;
1399
	return !ctx->eventfd_async || io_wq_current_is_worker();
1400 1401
}

1402
static void io_cqring_ev_posted(struct io_ring_ctx *ctx)
1403
{
1404 1405 1406
	/* see waitqueue_active() comment */
	smp_mb();

1407 1408
	if (waitqueue_active(&ctx->wait))
		wake_up(&ctx->wait);
1409 1410
	if (ctx->sq_data && waitqueue_active(&ctx->sq_data->wait))
		wake_up(&ctx->sq_data->wait);
1411
	if (io_should_trigger_evfd(ctx))
1412
		eventfd_signal(ctx->cq_ev_fd, 1);
1413
	if (waitqueue_active(&ctx->cq_wait)) {
1414 1415 1416
		wake_up_interruptible(&ctx->cq_wait);
		kill_fasync(&ctx->cq_fasync, SIGIO, POLL_IN);
	}
1417 1418
}

1419 1420
static void io_cqring_ev_posted_iopoll(struct io_ring_ctx *ctx)
{
1421 1422 1423
	/* see waitqueue_active() comment */
	smp_mb();

1424 1425 1426 1427 1428 1429
	if (ctx->flags & IORING_SETUP_SQPOLL) {
		if (waitqueue_active(&ctx->wait))
			wake_up(&ctx->wait);
	}
	if (io_should_trigger_evfd(ctx))
		eventfd_signal(ctx->cq_ev_fd, 1);
1430
	if (waitqueue_active(&ctx->cq_wait)) {
1431 1432 1433
		wake_up_interruptible(&ctx->cq_wait);
		kill_fasync(&ctx->cq_fasync, SIGIO, POLL_IN);
	}
1434 1435
}

1436
/* Returns true if there are no backlogged entries after the flush */
1437
static bool __io_cqring_overflow_flush(struct io_ring_ctx *ctx, bool force)
1438 1439
{
	unsigned long flags;
1440
	bool all_flushed, posted;
1441

1442
	if (!force && __io_cqring_events(ctx) == ctx->cq_entries)
1443
		return false;
1444

1445
	posted = false;
1446
	spin_lock_irqsave(&ctx->completion_lock, flags);
1447
	while (!list_empty(&ctx->cq_overflow_list)) {
P
Pavel Begunkov 已提交
1448
		struct io_uring_cqe *cqe = io_get_cqe(ctx);
1449
		struct io_overflow_cqe *ocqe;
1450

1451 1452
		if (!cqe && !force)
			break;
1453 1454 1455 1456 1457
		ocqe = list_first_entry(&ctx->cq_overflow_list,
					struct io_overflow_cqe, list);
		if (cqe)
			memcpy(cqe, &ocqe->cqe, sizeof(*cqe));
		else
1458 1459
			io_account_cq_overflow(ctx);

1460
		posted = true;
1461 1462
		list_del(&ocqe->list);
		kfree(ocqe);
1463 1464
	}

1465 1466 1467 1468 1469 1470
	all_flushed = list_empty(&ctx->cq_overflow_list);
	if (all_flushed) {
		clear_bit(0, &ctx->sq_check_overflow);
		clear_bit(0, &ctx->cq_check_overflow);
		ctx->rings->sq_flags &= ~IORING_SQ_CQ_OVERFLOW;
	}
1471

1472 1473
	if (posted)
		io_commit_cqring(ctx);
1474
	spin_unlock_irqrestore(&ctx->completion_lock, flags);
1475 1476
	if (posted)
		io_cqring_ev_posted(ctx);
1477
	return all_flushed;
1478 1479
}

1480
static bool io_cqring_overflow_flush(struct io_ring_ctx *ctx, bool force)
1481
{
1482 1483
	bool ret = true;

1484 1485 1486 1487
	if (test_bit(0, &ctx->cq_check_overflow)) {
		/* iopoll syncs against uring_lock, not completion_lock */
		if (ctx->flags & IORING_SETUP_IOPOLL)
			mutex_lock(&ctx->uring_lock);
1488
		ret = __io_cqring_overflow_flush(ctx, force);
1489 1490 1491
		if (ctx->flags & IORING_SETUP_IOPOLL)
			mutex_unlock(&ctx->uring_lock);
	}
1492 1493

	return ret;
1494 1495
}

1496 1497 1498 1499 1500 1501 1502
/*
 * Shamelessly stolen from the mm implementation of page reference checking,
 * see commit f958d7b528b1 for details.
 */
#define req_ref_zero_or_close_to_overflow(req)	\
	((unsigned int) atomic_read(&(req->refs)) + 127u <= 127u)

1503 1504
static inline bool req_ref_inc_not_zero(struct io_kiocb *req)
{
1505
	return atomic_inc_not_zero(&req->refs);
1506 1507 1508 1509
}

static inline bool req_ref_sub_and_test(struct io_kiocb *req, int refs)
{
1510 1511
	WARN_ON_ONCE(req_ref_zero_or_close_to_overflow(req));
	return atomic_sub_and_test(refs, &req->refs);
1512 1513 1514 1515
}

static inline bool req_ref_put_and_test(struct io_kiocb *req)
{
1516 1517
	WARN_ON_ONCE(req_ref_zero_or_close_to_overflow(req));
	return atomic_dec_and_test(&req->refs);
1518 1519 1520 1521
}

static inline void req_ref_put(struct io_kiocb *req)
{
1522
	WARN_ON_ONCE(req_ref_put_and_test(req));
1523 1524 1525 1526
}

static inline void req_ref_get(struct io_kiocb *req)
{
1527 1528
	WARN_ON_ONCE(req_ref_zero_or_close_to_overflow(req));
	atomic_inc(&req->refs);
1529 1530
}

1531 1532
static bool io_cqring_event_overflow(struct io_ring_ctx *ctx, u64 user_data,
				     long res, unsigned int cflags)
J
Jens Axboe 已提交
1533
{
1534
	struct io_overflow_cqe *ocqe;
J
Jens Axboe 已提交
1535

1536 1537 1538 1539 1540 1541 1542
	ocqe = kmalloc(sizeof(*ocqe), GFP_ATOMIC | __GFP_ACCOUNT);
	if (!ocqe) {
		/*
		 * If we're in ring overflow flush mode, or in task cancel mode,
		 * or cannot allocate an overflow entry, then we need to drop it
		 * on the floor.
		 */
1543
		io_account_cq_overflow(ctx);
1544
		return false;
J
Jens Axboe 已提交
1545
	}
1546 1547 1548 1549 1550
	if (list_empty(&ctx->cq_overflow_list)) {
		set_bit(0, &ctx->sq_check_overflow);
		set_bit(0, &ctx->cq_check_overflow);
		ctx->rings->sq_flags |= IORING_SQ_CQ_OVERFLOW;
	}
1551
	ocqe->cqe.user_data = user_data;
1552 1553 1554 1555
	ocqe->cqe.res = res;
	ocqe->cqe.flags = cflags;
	list_add_tail(&ocqe->list, &ctx->cq_overflow_list);
	return true;
J
Jens Axboe 已提交
1556 1557
}

1558 1559
static inline bool __io_cqring_fill_event(struct io_ring_ctx *ctx, u64 user_data,
					  long res, unsigned int cflags)
J
Jens Axboe 已提交
1560 1561 1562
{
	struct io_uring_cqe *cqe;

1563
	trace_io_uring_complete(ctx, user_data, res, cflags);
J
Jens Axboe 已提交
1564

J
Jens Axboe 已提交
1565 1566 1567 1568 1569
	/*
	 * If we can't get a cq entry, userspace overflowed the
	 * submission (by quite a lot). Increment the overflow count in
	 * the ring.
	 */
P
Pavel Begunkov 已提交
1570
	cqe = io_get_cqe(ctx);
1571
	if (likely(cqe)) {
1572
		WRITE_ONCE(cqe->user_data, user_data);
J
Jens Axboe 已提交
1573
		WRITE_ONCE(cqe->res, res);
1574
		WRITE_ONCE(cqe->flags, cflags);
1575
		return true;
J
Jens Axboe 已提交
1576
	}
1577
	return io_cqring_event_overflow(ctx, user_data, res, cflags);
J
Jens Axboe 已提交
1578 1579
}

1580
/* not as hot to bloat with inlining */
1581 1582
static noinline bool io_cqring_fill_event(struct io_ring_ctx *ctx, u64 user_data,
					  long res, unsigned int cflags)
1583
{
1584
	return __io_cqring_fill_event(ctx, user_data, res, cflags);
1585 1586
}

1587 1588
static void io_req_complete_post(struct io_kiocb *req, long res,
				 unsigned int cflags)
J
Jens Axboe 已提交
1589
{
1590
	struct io_ring_ctx *ctx = req->ctx;
J
Jens Axboe 已提交
1591 1592 1593
	unsigned long flags;

	spin_lock_irqsave(&ctx->completion_lock, flags);
1594
	__io_cqring_fill_event(ctx, req->user_data, res, cflags);
1595 1596 1597 1598
	/*
	 * If we're the last reference to this request, add to our locked
	 * free_list cache.
	 */
1599
	if (req_ref_put_and_test(req)) {
1600
		if (req->flags & (REQ_F_LINK | REQ_F_HARDLINK)) {
1601
			if (req->flags & (REQ_F_LINK_TIMEOUT | REQ_F_FAIL))
1602 1603 1604 1605 1606 1607
				io_disarm_next(req);
			if (req->link) {
				io_req_task_queue(req->link);
				req->link = NULL;
			}
		}
1608 1609
		io_dismantle_req(req);
		io_put_task(req->task, 1);
1610 1611
		list_add(&req->compl.list, &ctx->locked_free_list);
		ctx->locked_free_nr++;
1612 1613 1614 1615
	} else {
		if (!percpu_ref_tryget(&ctx->refs))
			req = NULL;
	}
1616
	io_commit_cqring(ctx);
J
Jens Axboe 已提交
1617
	spin_unlock_irqrestore(&ctx->completion_lock, flags);
1618

1619 1620
	if (req) {
		io_cqring_ev_posted(ctx);
1621
		percpu_ref_put(&ctx->refs);
1622
	}
1623 1624
}

1625 1626
static inline bool io_req_needs_clean(struct io_kiocb *req)
{
1627
	return req->flags & (REQ_F_BUFFER_SELECTED | REQ_F_NEED_CLEANUP |
1628
				REQ_F_POLLED | REQ_F_INFLIGHT);
1629 1630
}

1631
static void io_req_complete_state(struct io_kiocb *req, long res,
1632
				  unsigned int cflags)
1633
{
1634
	if (io_req_needs_clean(req))
1635
		io_clean_op(req);
1636 1637
	req->result = res;
	req->compl.cflags = cflags;
1638
	req->flags |= REQ_F_COMPLETE_INLINE;
1639 1640
}

1641 1642
static inline void __io_req_complete(struct io_kiocb *req, unsigned issue_flags,
				     long res, unsigned cflags)
1643
{
1644 1645
	if (issue_flags & IO_URING_F_COMPLETE_DEFER)
		io_req_complete_state(req, res, cflags);
1646
	else
1647
		io_req_complete_post(req, res, cflags);
1648 1649
}

1650
static inline void io_req_complete(struct io_kiocb *req, long res)
1651
{
1652
	__io_req_complete(req, 0, res, 0);
1653 1654
}

1655 1656
static void io_req_complete_failed(struct io_kiocb *req, long res)
{
1657
	req_set_fail(req);
1658 1659 1660 1661
	io_put_req(req);
	io_req_complete_post(req, res, 0);
}

1662 1663 1664 1665
static void io_flush_cached_locked_reqs(struct io_ring_ctx *ctx,
					struct io_comp_state *cs)
{
	spin_lock_irq(&ctx->completion_lock);
1666 1667
	list_splice_init(&ctx->locked_free_list, &cs->free_list);
	ctx->locked_free_nr = 0;
1668 1669 1670
	spin_unlock_irq(&ctx->completion_lock);
}

1671
/* Returns true IFF there are requests in the cache */
1672
static bool io_flush_cached_reqs(struct io_ring_ctx *ctx)
1673
{
1674 1675
	struct io_submit_state *state = &ctx->submit_state;
	struct io_comp_state *cs = &state->comp;
1676
	int nr;
1677

1678 1679 1680 1681 1682
	/*
	 * If we have more than a batch's worth of requests in our IRQ side
	 * locked cache, grab the lock and move them over to our submission
	 * side cache.
	 */
1683
	if (READ_ONCE(ctx->locked_free_nr) > IO_COMPL_BATCH)
1684
		io_flush_cached_locked_reqs(ctx, cs);
1685

1686
	nr = state->free_reqs;
1687
	while (!list_empty(&cs->free_list)) {
1688 1689 1690
		struct io_kiocb *req = list_first_entry(&cs->free_list,
						struct io_kiocb, compl.list);

1691
		list_del(&req->compl.list);
1692 1693
		state->reqs[nr++] = req;
		if (nr == ARRAY_SIZE(state->reqs))
1694
			break;
1695 1696
	}

1697 1698
	state->free_reqs = nr;
	return nr != 0;
1699 1700
}

1701
static struct io_kiocb *io_alloc_req(struct io_ring_ctx *ctx)
J
Jens Axboe 已提交
1702
{
1703 1704 1705 1706
	struct io_submit_state *state = &ctx->submit_state;

	BUILD_BUG_ON(IO_REQ_ALLOC_BATCH > ARRAY_SIZE(state->reqs));

1707
	if (!state->free_reqs) {
1708
		gfp_t gfp = GFP_KERNEL | __GFP_NOWARN;
J
Jens Axboe 已提交
1709 1710
		int ret;

1711
		if (io_flush_cached_reqs(ctx))
1712 1713
			goto got_req;

P
Pavel Begunkov 已提交
1714 1715
		ret = kmem_cache_alloc_bulk(req_cachep, gfp, IO_REQ_ALLOC_BATCH,
					    state->reqs);
1716 1717 1718 1719 1720 1721 1722 1723

		/*
		 * Bulk alloc is all-or-nothing. If we fail to get a batch,
		 * retry single alloc to be on the safe side.
		 */
		if (unlikely(ret <= 0)) {
			state->reqs[0] = kmem_cache_alloc(req_cachep, gfp);
			if (!state->reqs[0])
P
Pavel Begunkov 已提交
1724
				return NULL;
1725 1726
			ret = 1;
		}
1727
		state->free_reqs = ret;
J
Jens Axboe 已提交
1728
	}
1729
got_req:
1730 1731
	state->free_reqs--;
	return state->reqs[state->free_reqs];
J
Jens Axboe 已提交
1732 1733
}

1734
static inline void io_put_file(struct file *file)
1735
{
1736
	if (file)
1737 1738 1739
		fput(file);
}

1740
static void io_dismantle_req(struct io_kiocb *req)
J
Jens Axboe 已提交
1741
{
1742
	unsigned int flags = req->flags;
1743

1744 1745
	if (io_req_needs_clean(req))
		io_clean_op(req);
1746 1747
	if (!(flags & REQ_F_FIXED_FILE))
		io_put_file(req->file);
1748 1749
	if (req->fixed_rsrc_refs)
		percpu_ref_put(req->fixed_rsrc_refs);
1750 1751
	if (req->async_data)
		kfree(req->async_data);
1752 1753 1754 1755
	if (req->work.creds) {
		put_cred(req->work.creds);
		req->work.creds = NULL;
	}
1756 1757
}

1758
/* must to be called somewhat shortly after putting a request */
1759 1760 1761 1762 1763 1764 1765 1766 1767 1768
static inline void io_put_task(struct task_struct *task, int nr)
{
	struct io_uring_task *tctx = task->io_uring;

	percpu_counter_sub(&tctx->inflight, nr);
	if (unlikely(atomic_read(&tctx->in_idle)))
		wake_up(&tctx->wait);
	put_task_struct_many(task, nr);
}

1769
static void __io_free_req(struct io_kiocb *req)
1770
{
1771
	struct io_ring_ctx *ctx = req->ctx;
1772

1773
	io_dismantle_req(req);
1774
	io_put_task(req->task, 1);
1775

P
Pavel Begunkov 已提交
1776
	kmem_cache_free(req_cachep, req);
1777
	percpu_ref_put(&ctx->refs);
1778 1779
}

1780 1781 1782 1783 1784 1785 1786 1787
static inline void io_remove_next_linked(struct io_kiocb *req)
{
	struct io_kiocb *nxt = req->link;

	req->link = nxt->link;
	nxt->link = NULL;
}

1788 1789
static bool io_kill_linked_timeout(struct io_kiocb *req)
	__must_hold(&req->ctx->completion_lock)
1790
{
1791
	struct io_kiocb *link = req->link;
1792

1793 1794 1795 1796
	/*
	 * Can happen if a linked timeout fired and link had been like
	 * req -> link t-out -> link t-out [-> ...]
	 */
1797 1798
	if (link && (link->flags & REQ_F_LTIMEOUT_ACTIVE)) {
		struct io_timeout_data *io = link->async_data;
1799

1800
		io_remove_next_linked(req);
1801
		link->timeout.head = NULL;
1802
		if (hrtimer_try_to_cancel(&io->timer) != -1) {
1803 1804
			io_cqring_fill_event(link->ctx, link->user_data,
					     -ECANCELED, 0);
1805
			io_put_req_deferred(link, 1);
1806
			return true;
1807 1808
		}
	}
1809
	return false;
1810 1811
}

P
Pavel Begunkov 已提交
1812
static void io_fail_links(struct io_kiocb *req)
1813
	__must_hold(&req->ctx->completion_lock)
J
Jens Axboe 已提交
1814
{
1815
	struct io_kiocb *nxt, *link = req->link;
J
Jens Axboe 已提交
1816

1817 1818 1819 1820
	req->link = NULL;
	while (link) {
		nxt = link->link;
		link->link = NULL;
1821

1822
		trace_io_uring_fail_link(req, link);
1823
		io_cqring_fill_event(link->ctx, link->user_data, -ECANCELED, 0);
1824
		io_put_req_deferred(link, 2);
1825
		link = nxt;
J
Jens Axboe 已提交
1826
	}
1827
}
J
Jens Axboe 已提交
1828

1829 1830 1831 1832 1833 1834 1835
static bool io_disarm_next(struct io_kiocb *req)
	__must_hold(&req->ctx->completion_lock)
{
	bool posted = false;

	if (likely(req->flags & REQ_F_LINK_TIMEOUT))
		posted = io_kill_linked_timeout(req);
1836
	if (unlikely((req->flags & REQ_F_FAIL) &&
1837
		     !(req->flags & REQ_F_HARDLINK))) {
1838 1839 1840 1841
		posted |= (req->link != NULL);
		io_fail_links(req);
	}
	return posted;
J
Jens Axboe 已提交
1842 1843
}

1844
static struct io_kiocb *__io_req_find_next(struct io_kiocb *req)
1845
{
1846
	struct io_kiocb *nxt;
1847

J
Jens Axboe 已提交
1848 1849 1850 1851 1852 1853
	/*
	 * If LINK is set, we have dependent requests in this chain. If we
	 * didn't fail this request, queue the first one up, moving any other
	 * dependencies to the next request. In case of failure, fail the rest
	 * of the chain.
	 */
1854
	if (req->flags & (REQ_F_LINK_TIMEOUT | REQ_F_FAIL)) {
1855 1856 1857 1858 1859 1860 1861 1862 1863 1864 1865
		struct io_ring_ctx *ctx = req->ctx;
		unsigned long flags;
		bool posted;

		spin_lock_irqsave(&ctx->completion_lock, flags);
		posted = io_disarm_next(req);
		if (posted)
			io_commit_cqring(req->ctx);
		spin_unlock_irqrestore(&ctx->completion_lock, flags);
		if (posted)
			io_cqring_ev_posted(ctx);
1866
	}
1867 1868 1869
	nxt = req->link;
	req->link = NULL;
	return nxt;
1870
}
J
Jens Axboe 已提交
1871

1872
static inline struct io_kiocb *io_req_find_next(struct io_kiocb *req)
1873
{
1874
	if (likely(!(req->flags & (REQ_F_LINK|REQ_F_HARDLINK))))
1875 1876 1877 1878
		return NULL;
	return __io_req_find_next(req);
}

1879 1880 1881 1882 1883 1884 1885 1886 1887 1888 1889 1890
static void ctx_flush_and_put(struct io_ring_ctx *ctx)
{
	if (!ctx)
		return;
	if (ctx->submit_state.comp.nr) {
		mutex_lock(&ctx->uring_lock);
		io_submit_flush_completions(&ctx->submit_state.comp, ctx);
		mutex_unlock(&ctx->uring_lock);
	}
	percpu_ref_put(&ctx->refs);
}

1891
static bool __tctx_task_work(struct io_uring_task *tctx)
1892
{
1893
	struct io_ring_ctx *ctx = NULL;
1894 1895
	struct io_wq_work_list list;
	struct io_wq_work_node *node;
1896

1897 1898
	if (wq_list_empty(&tctx->task_list))
		return false;
1899

1900
	spin_lock_irq(&tctx->task_lock);
1901 1902
	list = tctx->task_list;
	INIT_WQ_LIST(&tctx->task_list);
1903
	spin_unlock_irq(&tctx->task_lock);
1904

1905 1906 1907 1908
	node = list.first;
	while (node) {
		struct io_wq_work_node *next = node->next;
		struct io_kiocb *req;
1909

1910
		req = container_of(node, struct io_kiocb, io_task_work.node);
1911 1912 1913 1914
		if (req->ctx != ctx) {
			ctx_flush_and_put(ctx);
			ctx = req->ctx;
			percpu_ref_get(&ctx->refs);
1915 1916
		}

1917 1918
		req->task_work.func(&req->task_work);
		node = next;
1919 1920
	}

1921
	ctx_flush_and_put(ctx);
1922
	return list.first != NULL;
1923 1924
}

1925
static void tctx_task_work(struct callback_head *cb)
1926
{
1927
	struct io_uring_task *tctx = container_of(cb, struct io_uring_task, task_work);
1928

1929 1930
	clear_bit(0, &tctx->task_state);

1931 1932 1933 1934
	while (__tctx_task_work(tctx))
		cond_resched();
}

1935
static int io_req_task_work_add(struct io_kiocb *req)
1936
{
1937
	struct task_struct *tsk = req->task;
1938
	struct io_uring_task *tctx = tsk->io_uring;
1939
	enum task_work_notify_mode notify;
1940
	struct io_wq_work_node *node, *prev;
1941
	unsigned long flags;
1942 1943 1944 1945
	int ret = 0;

	if (unlikely(tsk->flags & PF_EXITING))
		return -ESRCH;
1946 1947 1948

	WARN_ON_ONCE(!tctx);

1949
	spin_lock_irqsave(&tctx->task_lock, flags);
1950
	wq_list_add_tail(&req->io_task_work.node, &tctx->task_list);
1951
	spin_unlock_irqrestore(&tctx->task_lock, flags);
1952 1953 1954 1955 1956 1957

	/* task_work already pending, we're done */
	if (test_bit(0, &tctx->task_state) ||
	    test_and_set_bit(0, &tctx->task_state))
		return 0;

1958 1959 1960 1961 1962 1963 1964 1965 1966 1967
	/*
	 * SQPOLL kernel thread doesn't need notification, just a wakeup. For
	 * all other cases, use TWA_SIGNAL unconditionally to ensure we're
	 * processing task_work. There's no reliable way to tell if TWA_RESUME
	 * will do the job.
	 */
	notify = (req->ctx->flags & IORING_SETUP_SQPOLL) ? TWA_NONE : TWA_SIGNAL;

	if (!task_work_add(tsk, &tctx->task_work, notify)) {
		wake_up_process(tsk);
1968
		return 0;
1969
	}
1970 1971 1972 1973 1974

	/*
	 * Slow path - we failed, find and delete work. if the work is not
	 * in the list, it got run and we're fine.
	 */
1975
	spin_lock_irqsave(&tctx->task_lock, flags);
1976 1977 1978 1979 1980 1981 1982
	wq_list_for_each(node, prev, &tctx->task_list) {
		if (&req->io_task_work.node == node) {
			wq_list_del(&tctx->task_list, node, prev);
			ret = 1;
			break;
		}
	}
1983
	spin_unlock_irqrestore(&tctx->task_lock, flags);
1984 1985 1986 1987
	clear_bit(0, &tctx->task_state);
	return ret;
}

1988 1989 1990 1991 1992 1993 1994 1995 1996 1997 1998 1999 2000 2001 2002 2003 2004 2005 2006 2007 2008 2009 2010 2011
static bool io_run_task_work_head(struct callback_head **work_head)
{
	struct callback_head *work, *next;
	bool executed = false;

	do {
		work = xchg(work_head, NULL);
		if (!work)
			break;

		do {
			next = work->next;
			work->func(work);
			work = next;
			cond_resched();
		} while (work);
		executed = true;
	} while (1);

	return executed;
}

static void io_task_work_add_head(struct callback_head **work_head,
				  struct callback_head *task_work)
2012
{
2013
	struct callback_head *head;
2014

2015
	do {
2016 2017 2018 2019 2020 2021 2022 2023 2024 2025
		head = READ_ONCE(*work_head);
		task_work->next = head;
	} while (cmpxchg(work_head, head, task_work) != head);
}

static void io_req_task_work_add_fallback(struct io_kiocb *req,
					  task_work_func_t cb)
{
	init_task_work(&req->task_work, cb);
	io_task_work_add_head(&req->ctx->exit_task_work, &req->task_work);
2026 2027
}

2028 2029 2030
static void io_req_task_cancel(struct callback_head *cb)
{
	struct io_kiocb *req = container_of(cb, struct io_kiocb, task_work);
2031
	struct io_ring_ctx *ctx = req->ctx;
2032

2033
	/* ctx is guaranteed to stay alive while we hold uring_lock */
2034
	mutex_lock(&ctx->uring_lock);
2035
	io_req_complete_failed(req, req->result);
2036
	mutex_unlock(&ctx->uring_lock);
2037 2038 2039 2040 2041 2042
}

static void __io_req_task_submit(struct io_kiocb *req)
{
	struct io_ring_ctx *ctx = req->ctx;

2043
	/* ctx stays valid until unlock, even if we drop all ours ctx->refs */
2044
	mutex_lock(&ctx->uring_lock);
2045
	if (!(current->flags & PF_EXITING) && !current->in_execve)
2046
		__io_queue_sqe(req);
2047
	else
2048
		io_req_complete_failed(req, -EFAULT);
2049
	mutex_unlock(&ctx->uring_lock);
2050 2051 2052 2053 2054 2055 2056 2057 2058
}

static void io_req_task_submit(struct callback_head *cb)
{
	struct io_kiocb *req = container_of(cb, struct io_kiocb, task_work);

	__io_req_task_submit(req);
}

2059
static void io_req_task_queue_fail(struct io_kiocb *req, int ret)
2060
{
2061 2062
	req->result = ret;
	req->task_work.func = io_req_task_cancel;
2063

2064
	if (unlikely(io_req_task_work_add(req)))
2065
		io_req_task_work_add_fallback(req, io_req_task_cancel);
2066 2067
}

2068
static void io_req_task_queue(struct io_kiocb *req)
2069
{
2070
	req->task_work.func = io_req_task_submit;
2071 2072

	if (unlikely(io_req_task_work_add(req)))
2073
		io_req_task_queue_fail(req, -ECANCELED);
2074 2075
}

2076
static inline void io_queue_next(struct io_kiocb *req)
2077
{
2078
	struct io_kiocb *nxt = io_req_find_next(req);
2079 2080

	if (nxt)
2081
		io_req_task_queue(nxt);
2082 2083
}

2084
static void io_free_req(struct io_kiocb *req)
2085
{
2086 2087 2088
	io_queue_next(req);
	__io_free_req(req);
}
2089

2090
struct req_batch {
2091 2092
	struct task_struct	*task;
	int			task_refs;
2093
	int			ctx_refs;
2094 2095
};

2096 2097 2098
static inline void io_init_req_batch(struct req_batch *rb)
{
	rb->task_refs = 0;
2099
	rb->ctx_refs = 0;
2100 2101 2102
	rb->task = NULL;
}

2103 2104 2105
static void io_req_free_batch_finish(struct io_ring_ctx *ctx,
				     struct req_batch *rb)
{
2106
	if (rb->task)
2107
		io_put_task(rb->task, rb->task_refs);
2108 2109
	if (rb->ctx_refs)
		percpu_ref_put_many(&ctx->refs, rb->ctx_refs);
2110 2111
}

2112 2113
static void io_req_free_batch(struct req_batch *rb, struct io_kiocb *req,
			      struct io_submit_state *state)
2114
{
2115
	io_queue_next(req);
2116
	io_dismantle_req(req);
2117

2118
	if (req->task != rb->task) {
2119 2120
		if (rb->task)
			io_put_task(rb->task, rb->task_refs);
2121 2122
		rb->task = req->task;
		rb->task_refs = 0;
2123
	}
2124
	rb->task_refs++;
2125
	rb->ctx_refs++;
2126

2127
	if (state->free_reqs != ARRAY_SIZE(state->reqs))
2128
		state->reqs[state->free_reqs++] = req;
2129 2130
	else
		list_add(&req->compl.list, &state->comp.free_list);
2131 2132
}

2133 2134 2135 2136 2137 2138 2139 2140 2141 2142 2143
static void io_submit_flush_completions(struct io_comp_state *cs,
					struct io_ring_ctx *ctx)
{
	int i, nr = cs->nr;
	struct io_kiocb *req;
	struct req_batch rb;

	io_init_req_batch(&rb);
	spin_lock_irq(&ctx->completion_lock);
	for (i = 0; i < nr; i++) {
		req = cs->reqs[i];
2144 2145
		__io_cqring_fill_event(ctx, req->user_data, req->result,
					req->compl.cflags);
2146 2147 2148 2149 2150 2151 2152 2153 2154
	}
	io_commit_cqring(ctx);
	spin_unlock_irq(&ctx->completion_lock);

	io_cqring_ev_posted(ctx);
	for (i = 0; i < nr; i++) {
		req = cs->reqs[i];

		/* submission and completion refs */
2155
		if (req_ref_sub_and_test(req, 2))
2156
			io_req_free_batch(&rb, req, &ctx->submit_state);
2157 2158 2159 2160
	}

	io_req_free_batch_finish(ctx, &rb);
	cs->nr = 0;
2161 2162
}

2163 2164 2165 2166
/*
 * Drop reference to request, return next in chain (if there is one) if this
 * was the last reference to this request.
 */
2167
static inline struct io_kiocb *io_put_req_find_next(struct io_kiocb *req)
2168
{
2169 2170
	struct io_kiocb *nxt = NULL;

2171
	if (req_ref_put_and_test(req)) {
2172
		nxt = io_req_find_next(req);
2173
		__io_free_req(req);
2174
	}
2175
	return nxt;
J
Jens Axboe 已提交
2176 2177
}

2178
static inline void io_put_req(struct io_kiocb *req)
2179
{
2180
	if (req_ref_put_and_test(req))
2181
		io_free_req(req);
J
Jens Axboe 已提交
2182 2183
}

2184 2185 2186 2187 2188 2189 2190 2191 2192
static void io_put_req_deferred_cb(struct callback_head *cb)
{
	struct io_kiocb *req = container_of(cb, struct io_kiocb, task_work);

	io_free_req(req);
}

static void io_free_req_deferred(struct io_kiocb *req)
{
2193
	req->task_work.func = io_put_req_deferred_cb;
2194
	if (unlikely(io_req_task_work_add(req)))
2195
		io_req_task_work_add_fallback(req, io_put_req_deferred_cb);
2196 2197 2198 2199
}

static inline void io_put_req_deferred(struct io_kiocb *req, int refs)
{
2200
	if (req_ref_sub_and_test(req, refs))
2201 2202 2203
		io_free_req_deferred(req);
}

2204
static unsigned io_cqring_events(struct io_ring_ctx *ctx)
2205 2206 2207
{
	/* See comment at the top of this file */
	smp_rmb();
2208
	return __io_cqring_events(ctx);
2209 2210
}

2211 2212 2213 2214 2215 2216 2217 2218
static inline unsigned int io_sqring_entries(struct io_ring_ctx *ctx)
{
	struct io_rings *rings = ctx->rings;

	/* make sure SQ entry isn't read before tail */
	return smp_load_acquire(&rings->sq.tail) - ctx->cached_sq_head;
}

2219
static unsigned int io_put_kbuf(struct io_kiocb *req, struct io_buffer *kbuf)
2220
{
2221
	unsigned int cflags;
2222

2223 2224
	cflags = kbuf->bid << IORING_CQE_BUFFER_SHIFT;
	cflags |= IORING_CQE_F_BUFFER;
2225
	req->flags &= ~REQ_F_BUFFER_SELECTED;
2226 2227
	kfree(kbuf);
	return cflags;
2228 2229
}

2230
static inline unsigned int io_put_rw_kbuf(struct io_kiocb *req)
2231
{
2232
	struct io_buffer *kbuf;
2233

2234
	kbuf = (struct io_buffer *) (unsigned long) req->rw.addr;
2235 2236 2237
	return io_put_kbuf(req, kbuf);
}

2238 2239
static inline bool io_run_task_work(void)
{
2240 2241 2242 2243 2244 2245
	/*
	 * Not safe to run on exiting task, and the task_work handling will
	 * not add work to such a task.
	 */
	if (unlikely(current->flags & PF_EXITING))
		return false;
2246 2247 2248 2249 2250 2251 2252
	if (current->task_works) {
		__set_current_state(TASK_RUNNING);
		task_work_run();
		return true;
	}

	return false;
2253 2254
}

J
Jens Axboe 已提交
2255 2256 2257 2258 2259 2260
/*
 * Find and free completed poll iocbs
 */
static void io_iopoll_complete(struct io_ring_ctx *ctx, unsigned int *nr_events,
			       struct list_head *done)
{
2261
	struct req_batch rb;
J
Jens Axboe 已提交
2262
	struct io_kiocb *req;
2263 2264 2265

	/* order with ->result store in io_complete_rw_iopoll() */
	smp_rmb();
J
Jens Axboe 已提交
2266

2267
	io_init_req_batch(&rb);
J
Jens Axboe 已提交
2268
	while (!list_empty(done)) {
2269 2270
		int cflags = 0;

2271
		req = list_first_entry(done, struct io_kiocb, inflight_entry);
2272 2273
		list_del(&req->inflight_entry);

2274 2275
		if (READ_ONCE(req->result) == -EAGAIN &&
		    !(req->flags & REQ_F_DONT_REISSUE)) {
2276
			req->iopoll_completed = 0;
2277 2278 2279
			req_ref_get(req);
			io_queue_async_work(req);
			continue;
2280
		}
J
Jens Axboe 已提交
2281

2282
		if (req->flags & REQ_F_BUFFER_SELECTED)
2283
			cflags = io_put_rw_kbuf(req);
2284

2285
		__io_cqring_fill_event(ctx, req->user_data, req->result, cflags);
J
Jens Axboe 已提交
2286 2287
		(*nr_events)++;

2288
		if (req_ref_put_and_test(req))
2289
			io_req_free_batch(&rb, req, &ctx->submit_state);
J
Jens Axboe 已提交
2290 2291
	}

J
Jens Axboe 已提交
2292
	io_commit_cqring(ctx);
2293
	io_cqring_ev_posted_iopoll(ctx);
2294
	io_req_free_batch_finish(ctx, &rb);
2295 2296
}

J
Jens Axboe 已提交
2297 2298 2299 2300 2301 2302 2303 2304 2305 2306 2307 2308 2309 2310 2311
static int io_do_iopoll(struct io_ring_ctx *ctx, unsigned int *nr_events,
			long min)
{
	struct io_kiocb *req, *tmp;
	LIST_HEAD(done);
	bool spin;
	int ret;

	/*
	 * Only spin for completions if we don't have multiple devices hanging
	 * off our complete list, and we're under the requested amount.
	 */
	spin = !ctx->poll_multi_file && *nr_events < min;

	ret = 0;
2312
	list_for_each_entry_safe(req, tmp, &ctx->iopoll_list, inflight_entry) {
2313
		struct kiocb *kiocb = &req->rw.kiocb;
J
Jens Axboe 已提交
2314 2315

		/*
2316 2317 2318
		 * Move completed and retryable entries to our local lists.
		 * If we find a request that requires polling, break out
		 * and complete those lists first, if we have entries there.
J
Jens Axboe 已提交
2319
		 */
2320
		if (READ_ONCE(req->iopoll_completed)) {
2321
			list_move_tail(&req->inflight_entry, &done);
J
Jens Axboe 已提交
2322 2323 2324 2325 2326 2327 2328 2329 2330
			continue;
		}
		if (!list_empty(&done))
			break;

		ret = kiocb->ki_filp->f_op->iopoll(kiocb, spin);
		if (ret < 0)
			break;

2331 2332
		/* iopoll may have completed current req */
		if (READ_ONCE(req->iopoll_completed))
2333
			list_move_tail(&req->inflight_entry, &done);
2334

J
Jens Axboe 已提交
2335 2336 2337 2338 2339 2340 2341 2342 2343 2344 2345 2346 2347 2348 2349
		if (ret && spin)
			spin = false;
		ret = 0;
	}

	if (!list_empty(&done))
		io_iopoll_complete(ctx, nr_events, &done);

	return ret;
}

/*
 * We can't just wait for polled events to come to us, we have to actively
 * find and complete them.
 */
2350
static void io_iopoll_try_reap_events(struct io_ring_ctx *ctx)
J
Jens Axboe 已提交
2351 2352 2353 2354 2355
{
	if (!(ctx->flags & IORING_SETUP_IOPOLL))
		return;

	mutex_lock(&ctx->uring_lock);
2356
	while (!list_empty(&ctx->iopoll_list)) {
J
Jens Axboe 已提交
2357 2358
		unsigned int nr_events = 0;

2359
		io_do_iopoll(ctx, &nr_events, 0);
2360

2361 2362 2363
		/* let it sleep and repeat later if can't complete a request */
		if (nr_events == 0)
			break;
2364 2365 2366
		/*
		 * Ensure we allow local-to-the-cpu processing to take place,
		 * in this case we need to ensure that we reap all events.
2367
		 * Also let task_work, etc. to progress by releasing the mutex
2368
		 */
2369 2370 2371 2372 2373
		if (need_resched()) {
			mutex_unlock(&ctx->uring_lock);
			cond_resched();
			mutex_lock(&ctx->uring_lock);
		}
J
Jens Axboe 已提交
2374 2375 2376 2377
	}
	mutex_unlock(&ctx->uring_lock);
}

2378
static int io_iopoll_check(struct io_ring_ctx *ctx, long min)
J
Jens Axboe 已提交
2379
{
2380
	unsigned int nr_events = 0;
2381
	int ret = 0;
2382

2383 2384 2385 2386 2387 2388
	/*
	 * We disallow the app entering submit/complete with polling, but we
	 * still need to lock the ring to prevent racing with polled issue
	 * that got punted to a workqueue.
	 */
	mutex_lock(&ctx->uring_lock);
2389 2390 2391 2392 2393 2394 2395 2396 2397
	/*
	 * Don't enter poll loop if we already have events pending.
	 * If we do, we can potentially be spinning for commands that
	 * already triggered a CQE (eg in error).
	 */
	if (test_bit(0, &ctx->cq_check_overflow))
		__io_cqring_overflow_flush(ctx, false);
	if (io_cqring_events(ctx))
		goto out;
J
Jens Axboe 已提交
2398
	do {
2399 2400 2401 2402 2403 2404 2405 2406 2407 2408
		/*
		 * If a submit got punted to a workqueue, we can have the
		 * application entering polling for a command before it gets
		 * issued. That app will hold the uring_lock for the duration
		 * of the poll right here, so we need to take a breather every
		 * now and then to ensure that the issue has a chance to add
		 * the poll to the issued list. Otherwise we can spin here
		 * forever, while the workqueue is stuck trying to acquire the
		 * very same mutex.
		 */
2409
		if (list_empty(&ctx->iopoll_list)) {
2410
			mutex_unlock(&ctx->uring_lock);
2411
			io_run_task_work();
2412
			mutex_lock(&ctx->uring_lock);
J
Jens Axboe 已提交
2413

2414 2415
			if (list_empty(&ctx->iopoll_list))
				break;
2416
		}
2417 2418 2419
		ret = io_do_iopoll(ctx, &nr_events, min);
	} while (!ret && nr_events < min && !need_resched());
out:
2420
	mutex_unlock(&ctx->uring_lock);
J
Jens Axboe 已提交
2421 2422 2423
	return ret;
}

2424
static void kiocb_end_write(struct io_kiocb *req)
J
Jens Axboe 已提交
2425
{
2426 2427 2428 2429 2430
	/*
	 * Tell lockdep we inherited freeze protection from submission
	 * thread.
	 */
	if (req->flags & REQ_F_ISREG) {
2431
		struct super_block *sb = file_inode(req->file)->i_sb;
J
Jens Axboe 已提交
2432

2433 2434
		__sb_writers_acquired(sb, SB_FREEZE_WRITE);
		sb_end_write(sb);
J
Jens Axboe 已提交
2435 2436 2437
	}
}

2438
#ifdef CONFIG_BLOCK
2439
static bool io_resubmit_prep(struct io_kiocb *req)
2440
{
2441
	struct io_async_rw *rw = req->async_data;
2442

2443 2444 2445 2446 2447
	if (!rw)
		return !io_req_prep_async(req);
	/* may have left rw->iter inconsistent on -EIOCBQUEUED */
	iov_iter_revert(&rw->iter, req->result - iov_iter_count(&rw->iter));
	return true;
2448 2449
}

2450
static bool io_rw_should_reissue(struct io_kiocb *req)
2451
{
2452
	umode_t mode = file_inode(req->file)->i_mode;
2453
	struct io_ring_ctx *ctx = req->ctx;
2454

2455 2456
	if (!S_ISBLK(mode) && !S_ISREG(mode))
		return false;
2457 2458
	if ((req->flags & REQ_F_NOWAIT) || (io_wq_current_is_worker() &&
	    !(ctx->flags & IORING_SETUP_IOPOLL)))
2459
		return false;
2460 2461 2462 2463 2464
	/*
	 * If ref is dying, we might be running poll reap from the exit work.
	 * Don't attempt to reissue from that path, just let it fail with
	 * -EAGAIN.
	 */
2465 2466 2467 2468
	if (percpu_ref_is_dying(&ctx->refs))
		return false;
	return true;
}
2469
#else
2470
static bool io_resubmit_prep(struct io_kiocb *req)
2471 2472 2473 2474
{
	return false;
}
static bool io_rw_should_reissue(struct io_kiocb *req)
2475
{
2476 2477
	return false;
}
2478
#endif
2479

2480
static void __io_complete_rw(struct io_kiocb *req, long res, long res2,
2481
			     unsigned int issue_flags)
2482
{
2483 2484
	int cflags = 0;

2485 2486
	if (req->rw.kiocb.ki_flags & IOCB_WRITE)
		kiocb_end_write(req);
2487 2488 2489 2490 2491 2492
	if (res != req->result) {
		if ((res == -EAGAIN || res == -EOPNOTSUPP) &&
		    io_rw_should_reissue(req)) {
			req->flags |= REQ_F_REISSUE;
			return;
		}
2493
		req_set_fail(req);
2494
	}
2495 2496 2497
	if (req->flags & REQ_F_BUFFER_SELECTED)
		cflags = io_put_rw_kbuf(req);
	__io_req_complete(req, issue_flags, res, cflags);
2498 2499 2500 2501
}

static void io_complete_rw(struct kiocb *kiocb, long res, long res2)
{
2502
	struct io_kiocb *req = container_of(kiocb, struct io_kiocb, rw.kiocb);
2503

2504
	__io_complete_rw(req, res, res2, 0);
J
Jens Axboe 已提交
2505 2506
}

J
Jens Axboe 已提交
2507 2508
static void io_complete_rw_iopoll(struct kiocb *kiocb, long res, long res2)
{
2509
	struct io_kiocb *req = container_of(kiocb, struct io_kiocb, rw.kiocb);
J
Jens Axboe 已提交
2510

2511 2512
	if (kiocb->ki_flags & IOCB_WRITE)
		kiocb_end_write(req);
2513
	if (unlikely(res != req->result)) {
2514 2515
		if (!(res == -EAGAIN && io_rw_should_reissue(req) &&
		    io_resubmit_prep(req))) {
2516
			req_set_fail(req);
2517 2518
			req->flags |= REQ_F_DONT_REISSUE;
		}
2519
	}
2520 2521

	WRITE_ONCE(req->result, res);
2522
	/* order with io_iopoll_complete() checking ->result */
2523 2524
	smp_wmb();
	WRITE_ONCE(req->iopoll_completed, 1);
J
Jens Axboe 已提交
2525 2526 2527 2528 2529
}

/*
 * After the iocb has been issued, it's safe to be found on the poll list.
 * Adding the kiocb to the list AFTER submission ensures that we don't
2530
 * find it from a io_do_iopoll() thread before the issuer is done
J
Jens Axboe 已提交
2531 2532
 * accessing the kiocb cookie.
 */
2533
static void io_iopoll_req_issued(struct io_kiocb *req)
J
Jens Axboe 已提交
2534 2535
{
	struct io_ring_ctx *ctx = req->ctx;
2536 2537 2538 2539 2540
	const bool in_async = io_wq_current_is_worker();

	/* workqueue context doesn't hold uring_lock, grab it now */
	if (unlikely(in_async))
		mutex_lock(&ctx->uring_lock);
J
Jens Axboe 已提交
2541 2542 2543 2544 2545 2546

	/*
	 * Track whether we have multiple files in our lists. This will impact
	 * how we do polling eventually, not spinning if we're on potentially
	 * different devices.
	 */
2547
	if (list_empty(&ctx->iopoll_list)) {
J
Jens Axboe 已提交
2548 2549 2550 2551
		ctx->poll_multi_file = false;
	} else if (!ctx->poll_multi_file) {
		struct io_kiocb *list_req;

2552
		list_req = list_first_entry(&ctx->iopoll_list, struct io_kiocb,
2553
						inflight_entry);
2554
		if (list_req->file != req->file)
J
Jens Axboe 已提交
2555 2556 2557 2558 2559 2560 2561
			ctx->poll_multi_file = true;
	}

	/*
	 * For fast devices, IO may have already completed. If it has, add
	 * it to the front so we find it first.
	 */
2562
	if (READ_ONCE(req->iopoll_completed))
2563
		list_add(&req->inflight_entry, &ctx->iopoll_list);
J
Jens Axboe 已提交
2564
	else
2565
		list_add_tail(&req->inflight_entry, &ctx->iopoll_list);
2566

2567 2568 2569 2570 2571 2572 2573 2574 2575 2576 2577 2578 2579
	if (unlikely(in_async)) {
		/*
		 * If IORING_SETUP_SQPOLL is enabled, sqes are either handle
		 * in sq thread task context or in io worker task context. If
		 * current task context is sq thread, we don't need to check
		 * whether should wake up sq thread.
		 */
		if ((ctx->flags & IORING_SETUP_SQPOLL) &&
		    wq_has_sleeper(&ctx->sq_data->wait))
			wake_up(&ctx->sq_data->wait);

		mutex_unlock(&ctx->uring_lock);
	}
J
Jens Axboe 已提交
2580 2581
}

P
Pavel Begunkov 已提交
2582 2583
static inline void io_state_file_put(struct io_submit_state *state)
{
2584 2585 2586 2587
	if (state->file_refs) {
		fput_many(state->file, state->file_refs);
		state->file_refs = 0;
	}
2588 2589 2590 2591 2592 2593 2594
}

/*
 * Get as many references to a file as we have IOs left in this submission,
 * assuming most submissions are for one file, or at least that each file
 * has more than one submission.
 */
2595
static struct file *__io_file_get(struct io_submit_state *state, int fd)
2596 2597 2598 2599
{
	if (!state)
		return fget(fd);

2600
	if (state->file_refs) {
2601
		if (state->fd == fd) {
2602
			state->file_refs--;
2603 2604
			return state->file;
		}
2605
		io_state_file_put(state);
2606 2607
	}
	state->file = fget_many(fd, state->ios_left);
2608
	if (unlikely(!state->file))
2609 2610 2611
		return NULL;

	state->fd = fd;
2612
	state->file_refs = state->ios_left - 1;
2613 2614 2615
	return state->file;
}

2616 2617
static bool io_bdev_nowait(struct block_device *bdev)
{
2618
	return !bdev || blk_queue_nowait(bdev_get_queue(bdev));
2619 2620
}

J
Jens Axboe 已提交
2621 2622 2623 2624 2625
/*
 * If we tracked the file through the SCM inflight mechanism, we could support
 * any file. For now, just ensure that anything potentially problematic is done
 * inline.
 */
2626
static bool __io_file_supports_async(struct file *file, int rw)
J
Jens Axboe 已提交
2627 2628 2629
{
	umode_t mode = file_inode(file)->i_mode;

2630
	if (S_ISBLK(mode)) {
C
Christoph Hellwig 已提交
2631 2632
		if (IS_ENABLED(CONFIG_BLOCK) &&
		    io_bdev_nowait(I_BDEV(file->f_mapping->host)))
2633 2634 2635
			return true;
		return false;
	}
2636
	if (S_ISSOCK(mode))
J
Jens Axboe 已提交
2637
		return true;
2638
	if (S_ISREG(mode)) {
C
Christoph Hellwig 已提交
2639 2640
		if (IS_ENABLED(CONFIG_BLOCK) &&
		    io_bdev_nowait(file->f_inode->i_sb->s_bdev) &&
2641 2642 2643 2644
		    file->f_op != &io_uring_fops)
			return true;
		return false;
	}
J
Jens Axboe 已提交
2645

2646 2647 2648 2649
	/* any ->read/write should understand O_NONBLOCK */
	if (file->f_flags & O_NONBLOCK)
		return true;

2650 2651 2652 2653 2654 2655 2656
	if (!(file->f_mode & FMODE_NOWAIT))
		return false;

	if (rw == READ)
		return file->f_op->read_iter != NULL;

	return file->f_op->write_iter != NULL;
J
Jens Axboe 已提交
2657 2658
}

2659 2660 2661 2662 2663 2664 2665 2666 2667 2668
static bool io_file_supports_async(struct io_kiocb *req, int rw)
{
	if (rw == READ && (req->flags & REQ_F_ASYNC_READ))
		return true;
	else if (rw == WRITE && (req->flags & REQ_F_ASYNC_WRITE))
		return true;

	return __io_file_supports_async(req->file, rw);
}

2669
static int io_prep_rw(struct io_kiocb *req, const struct io_uring_sqe *sqe)
J
Jens Axboe 已提交
2670
{
J
Jens Axboe 已提交
2671
	struct io_ring_ctx *ctx = req->ctx;
2672
	struct kiocb *kiocb = &req->rw.kiocb;
2673
	struct file *file = req->file;
J
Jens Axboe 已提交
2674 2675
	unsigned ioprio;
	int ret;
J
Jens Axboe 已提交
2676

2677
	if (!(req->flags & REQ_F_ISREG) && S_ISREG(file_inode(file)->i_mode))
2678 2679
		req->flags |= REQ_F_ISREG;

J
Jens Axboe 已提交
2680
	kiocb->ki_pos = READ_ONCE(sqe->off);
2681
	if (kiocb->ki_pos == -1 && !(file->f_mode & FMODE_STREAM)) {
2682
		req->flags |= REQ_F_CUR_POS;
2683
		kiocb->ki_pos = file->f_pos;
2684
	}
J
Jens Axboe 已提交
2685
	kiocb->ki_hint = ki_hint_validate(file_write_hint(kiocb->ki_filp));
2686 2687 2688 2689
	kiocb->ki_flags = iocb_flags(kiocb->ki_filp);
	ret = kiocb_set_rw_flags(kiocb, READ_ONCE(sqe->rw_flags));
	if (unlikely(ret))
		return ret;
J
Jens Axboe 已提交
2690

2691 2692 2693 2694
	/* don't allow async punt for O_NONBLOCK or RWF_NOWAIT */
	if ((kiocb->ki_flags & IOCB_NOWAIT) || (file->f_flags & O_NONBLOCK))
		req->flags |= REQ_F_NOWAIT;

J
Jens Axboe 已提交
2695 2696 2697 2698
	ioprio = READ_ONCE(sqe->ioprio);
	if (ioprio) {
		ret = ioprio_check_cap(ioprio);
		if (ret)
J
Jens Axboe 已提交
2699
			return ret;
J
Jens Axboe 已提交
2700 2701 2702 2703 2704

		kiocb->ki_ioprio = ioprio;
	} else
		kiocb->ki_ioprio = get_current_ioprio();

J
Jens Axboe 已提交
2705 2706 2707
	if (ctx->flags & IORING_SETUP_IOPOLL) {
		if (!(kiocb->ki_flags & IOCB_DIRECT) ||
		    !kiocb->ki_filp->f_op->iopoll)
J
Jens Axboe 已提交
2708
			return -EOPNOTSUPP;
J
Jens Axboe 已提交
2709

J
Jens Axboe 已提交
2710 2711
		kiocb->ki_flags |= IOCB_HIPRI;
		kiocb->ki_complete = io_complete_rw_iopoll;
2712
		req->iopoll_completed = 0;
J
Jens Axboe 已提交
2713
	} else {
J
Jens Axboe 已提交
2714 2715
		if (kiocb->ki_flags & IOCB_HIPRI)
			return -EINVAL;
J
Jens Axboe 已提交
2716 2717
		kiocb->ki_complete = io_complete_rw;
	}
2718

2719 2720 2721 2722 2723 2724
	if (req->opcode == IORING_OP_READ_FIXED ||
	    req->opcode == IORING_OP_WRITE_FIXED) {
		req->imu = NULL;
		io_req_set_rsrc_node(req);
	}

2725 2726
	req->rw.addr = READ_ONCE(sqe->addr);
	req->rw.len = READ_ONCE(sqe->len);
2727
	req->buf_index = READ_ONCE(sqe->buf_index);
J
Jens Axboe 已提交
2728 2729 2730 2731 2732 2733 2734 2735 2736 2737 2738 2739 2740 2741 2742 2743 2744 2745
	return 0;
}

static inline void io_rw_done(struct kiocb *kiocb, ssize_t ret)
{
	switch (ret) {
	case -EIOCBQUEUED:
		break;
	case -ERESTARTSYS:
	case -ERESTARTNOINTR:
	case -ERESTARTNOHAND:
	case -ERESTART_RESTARTBLOCK:
		/*
		 * We can't just restart the syscall, since previously
		 * submitted sqes may already be in progress. Just fail this
		 * IO with EINTR.
		 */
		ret = -EINTR;
2746
		fallthrough;
J
Jens Axboe 已提交
2747 2748 2749 2750 2751
	default:
		kiocb->ki_complete(kiocb, ret, 0);
	}
}

2752
static void kiocb_done(struct kiocb *kiocb, ssize_t ret,
2753
		       unsigned int issue_flags)
2754
{
2755
	struct io_kiocb *req = container_of(kiocb, struct io_kiocb, rw.kiocb);
2756
	struct io_async_rw *io = req->async_data;
P
Pavel Begunkov 已提交
2757
	bool check_reissue = kiocb->ki_complete == io_complete_rw;
2758

2759
	/* add previously done IO, if any */
2760
	if (io && io->bytes_done > 0) {
2761
		if (ret < 0)
2762
			ret = io->bytes_done;
2763
		else
2764
			ret += io->bytes_done;
2765 2766
	}

2767 2768
	if (req->flags & REQ_F_CUR_POS)
		req->file->f_pos = kiocb->ki_pos;
P
Pavel Begunkov 已提交
2769
	if (ret >= 0 && kiocb->ki_complete == io_complete_rw)
2770
		__io_complete_rw(req, ret, 0, issue_flags);
2771 2772
	else
		io_rw_done(kiocb, ret);
P
Pavel Begunkov 已提交
2773 2774 2775

	if (check_reissue && req->flags & REQ_F_REISSUE) {
		req->flags &= ~REQ_F_REISSUE;
2776
		if (io_resubmit_prep(req)) {
2777 2778 2779
			req_ref_get(req);
			io_queue_async_work(req);
		} else {
P
Pavel Begunkov 已提交
2780 2781
			int cflags = 0;

2782
			req_set_fail(req);
P
Pavel Begunkov 已提交
2783 2784 2785 2786 2787
			if (req->flags & REQ_F_BUFFER_SELECTED)
				cflags = io_put_rw_kbuf(req);
			__io_req_complete(req, issue_flags, ret, cflags);
		}
	}
2788 2789
}

2790 2791
static int __io_import_fixed(struct io_kiocb *req, int rw, struct iov_iter *iter,
			     struct io_mapped_ubuf *imu)
2792
{
2793
	size_t len = req->rw.len;
2794
	u64 buf_end, buf_addr = req->rw.addr;
2795 2796
	size_t offset;

2797
	if (unlikely(check_add_overflow(buf_addr, (u64)len, &buf_end)))
2798 2799
		return -EFAULT;
	/* not inside the mapped region */
2800
	if (unlikely(buf_addr < imu->ubuf || buf_end > imu->ubuf_end))
2801 2802 2803 2804 2805 2806 2807 2808
		return -EFAULT;

	/*
	 * May not be a start of buffer, set size appropriately
	 * and advance us to the beginning.
	 */
	offset = buf_addr - imu->ubuf;
	iov_iter_bvec(iter, rw, imu->bvec, imu->nr_bvecs, offset + len);
2809 2810 2811 2812 2813 2814 2815 2816 2817 2818 2819 2820 2821 2822 2823 2824 2825 2826 2827 2828 2829 2830 2831 2832 2833 2834 2835 2836 2837 2838 2839

	if (offset) {
		/*
		 * Don't use iov_iter_advance() here, as it's really slow for
		 * using the latter parts of a big fixed buffer - it iterates
		 * over each segment manually. We can cheat a bit here, because
		 * we know that:
		 *
		 * 1) it's a BVEC iter, we set it up
		 * 2) all bvecs are PAGE_SIZE in size, except potentially the
		 *    first and last bvec
		 *
		 * So just find our index, and adjust the iterator afterwards.
		 * If the offset is within the first bvec (or the whole first
		 * bvec, just use iov_iter_advance(). This makes it easier
		 * since we can just skip the first segment, which may not
		 * be PAGE_SIZE aligned.
		 */
		const struct bio_vec *bvec = imu->bvec;

		if (offset <= bvec->bv_len) {
			iov_iter_advance(iter, offset);
		} else {
			unsigned long seg_skip;

			/* skip first vec */
			offset -= bvec->bv_len;
			seg_skip = 1 + (offset >> PAGE_SHIFT);

			iter->bvec = bvec + seg_skip;
			iter->nr_segs -= seg_skip;
2840
			iter->count -= bvec->bv_len + offset;
2841 2842 2843 2844
			iter->iov_offset = offset & ~PAGE_MASK;
		}
	}

2845
	return 0;
2846 2847
}

2848 2849 2850 2851 2852 2853 2854 2855 2856 2857 2858 2859 2860 2861 2862 2863
static int io_import_fixed(struct io_kiocb *req, int rw, struct iov_iter *iter)
{
	struct io_ring_ctx *ctx = req->ctx;
	struct io_mapped_ubuf *imu = req->imu;
	u16 index, buf_index = req->buf_index;

	if (likely(!imu)) {
		if (unlikely(buf_index >= ctx->nr_user_bufs))
			return -EFAULT;
		index = array_index_nospec(buf_index, ctx->nr_user_bufs);
		imu = READ_ONCE(ctx->user_bufs[index]);
		req->imu = imu;
	}
	return __io_import_fixed(req, rw, iter, imu);
}

2864 2865 2866 2867 2868 2869 2870 2871 2872 2873 2874 2875 2876 2877 2878 2879 2880 2881 2882 2883 2884 2885 2886 2887 2888 2889 2890 2891 2892 2893 2894
static void io_ring_submit_unlock(struct io_ring_ctx *ctx, bool needs_lock)
{
	if (needs_lock)
		mutex_unlock(&ctx->uring_lock);
}

static void io_ring_submit_lock(struct io_ring_ctx *ctx, bool needs_lock)
{
	/*
	 * "Normal" inline submissions always hold the uring_lock, since we
	 * grab it from the system call. Same is true for the SQPOLL offload.
	 * The only exception is when we've detached the request and issue it
	 * from an async worker thread, grab the lock for that case.
	 */
	if (needs_lock)
		mutex_lock(&ctx->uring_lock);
}

static struct io_buffer *io_buffer_select(struct io_kiocb *req, size_t *len,
					  int bgid, struct io_buffer *kbuf,
					  bool needs_lock)
{
	struct io_buffer *head;

	if (req->flags & REQ_F_BUFFER_SELECTED)
		return kbuf;

	io_ring_submit_lock(req->ctx, needs_lock);

	lockdep_assert_held(&req->ctx->uring_lock);

2895
	head = xa_load(&req->ctx->io_buffers, bgid);
2896 2897 2898 2899 2900 2901 2902
	if (head) {
		if (!list_empty(&head->list)) {
			kbuf = list_last_entry(&head->list, struct io_buffer,
							list);
			list_del(&kbuf->list);
		} else {
			kbuf = head;
2903
			xa_erase(&req->ctx->io_buffers, bgid);
2904 2905 2906 2907 2908 2909 2910 2911 2912 2913 2914 2915
		}
		if (*len > kbuf->len)
			*len = kbuf->len;
	} else {
		kbuf = ERR_PTR(-ENOBUFS);
	}

	io_ring_submit_unlock(req->ctx, needs_lock);

	return kbuf;
}

2916 2917 2918 2919
static void __user *io_rw_buffer_select(struct io_kiocb *req, size_t *len,
					bool needs_lock)
{
	struct io_buffer *kbuf;
2920
	u16 bgid;
2921 2922

	kbuf = (struct io_buffer *) (unsigned long) req->rw.addr;
2923
	bgid = req->buf_index;
2924 2925 2926 2927 2928 2929 2930 2931 2932 2933 2934 2935 2936 2937 2938 2939 2940 2941 2942 2943 2944 2945 2946 2947 2948 2949 2950 2951 2952 2953 2954 2955 2956 2957 2958 2959 2960 2961 2962 2963 2964 2965 2966 2967 2968 2969 2970 2971 2972 2973 2974 2975 2976 2977 2978 2979 2980 2981 2982
	kbuf = io_buffer_select(req, len, bgid, kbuf, needs_lock);
	if (IS_ERR(kbuf))
		return kbuf;
	req->rw.addr = (u64) (unsigned long) kbuf;
	req->flags |= REQ_F_BUFFER_SELECTED;
	return u64_to_user_ptr(kbuf->addr);
}

#ifdef CONFIG_COMPAT
static ssize_t io_compat_import(struct io_kiocb *req, struct iovec *iov,
				bool needs_lock)
{
	struct compat_iovec __user *uiov;
	compat_ssize_t clen;
	void __user *buf;
	ssize_t len;

	uiov = u64_to_user_ptr(req->rw.addr);
	if (!access_ok(uiov, sizeof(*uiov)))
		return -EFAULT;
	if (__get_user(clen, &uiov->iov_len))
		return -EFAULT;
	if (clen < 0)
		return -EINVAL;

	len = clen;
	buf = io_rw_buffer_select(req, &len, needs_lock);
	if (IS_ERR(buf))
		return PTR_ERR(buf);
	iov[0].iov_base = buf;
	iov[0].iov_len = (compat_size_t) len;
	return 0;
}
#endif

static ssize_t __io_iov_buffer_select(struct io_kiocb *req, struct iovec *iov,
				      bool needs_lock)
{
	struct iovec __user *uiov = u64_to_user_ptr(req->rw.addr);
	void __user *buf;
	ssize_t len;

	if (copy_from_user(iov, uiov, sizeof(*uiov)))
		return -EFAULT;

	len = iov[0].iov_len;
	if (len < 0)
		return -EINVAL;
	buf = io_rw_buffer_select(req, &len, needs_lock);
	if (IS_ERR(buf))
		return PTR_ERR(buf);
	iov[0].iov_base = buf;
	iov[0].iov_len = len;
	return 0;
}

static ssize_t io_iov_buffer_select(struct io_kiocb *req, struct iovec *iov,
				    bool needs_lock)
{
2983 2984 2985 2986 2987 2988
	if (req->flags & REQ_F_BUFFER_SELECTED) {
		struct io_buffer *kbuf;

		kbuf = (struct io_buffer *) (unsigned long) req->rw.addr;
		iov[0].iov_base = u64_to_user_ptr(kbuf->addr);
		iov[0].iov_len = kbuf->len;
2989
		return 0;
2990
	}
2991
	if (req->rw.len != 1)
2992 2993 2994 2995 2996 2997 2998 2999 3000 3001
		return -EINVAL;

#ifdef CONFIG_COMPAT
	if (req->ctx->compat)
		return io_compat_import(req, iov, needs_lock);
#endif

	return __io_iov_buffer_select(req, iov, needs_lock);
}

3002 3003
static int io_import_iovec(int rw, struct io_kiocb *req, struct iovec **iovec,
			   struct iov_iter *iter, bool needs_lock)
J
Jens Axboe 已提交
3004
{
3005 3006
	void __user *buf = u64_to_user_ptr(req->rw.addr);
	size_t sqe_len = req->rw.len;
3007
	u8 opcode = req->opcode;
3008
	ssize_t ret;
3009

3010
	if (opcode == IORING_OP_READ_FIXED || opcode == IORING_OP_WRITE_FIXED) {
3011
		*iovec = NULL;
3012
		return io_import_fixed(req, rw, iter);
3013
	}
J
Jens Axboe 已提交
3014

3015
	/* buffer index only valid with fixed read/write, or buffer select  */
3016
	if (req->buf_index && !(req->flags & REQ_F_BUFFER_SELECT))
3017 3018
		return -EINVAL;

3019
	if (opcode == IORING_OP_READ || opcode == IORING_OP_WRITE) {
3020
		if (req->flags & REQ_F_BUFFER_SELECT) {
3021
			buf = io_rw_buffer_select(req, &sqe_len, needs_lock);
3022
			if (IS_ERR(buf))
3023
				return PTR_ERR(buf);
3024
			req->rw.len = sqe_len;
3025 3026
		}

3027 3028
		ret = import_single_range(rw, buf, sqe_len, *iovec, iter);
		*iovec = NULL;
3029
		return ret;
3030 3031
	}

3032 3033
	if (req->flags & REQ_F_BUFFER_SELECT) {
		ret = io_iov_buffer_select(req, *iovec, needs_lock);
3034 3035
		if (!ret)
			iov_iter_init(iter, rw, *iovec, 1, (*iovec)->iov_len);
3036 3037 3038 3039
		*iovec = NULL;
		return ret;
	}

3040 3041
	return __import_iovec(rw, buf, sqe_len, UIO_FASTIOV, iovec, iter,
			      req->ctx->compat);
J
Jens Axboe 已提交
3042 3043
}

3044 3045
static inline loff_t *io_kiocb_ppos(struct kiocb *kiocb)
{
3046
	return (kiocb->ki_filp->f_mode & FMODE_STREAM) ? NULL : &kiocb->ki_pos;
3047 3048
}

3049
/*
3050 3051
 * For files that don't have ->read_iter() and ->write_iter(), handle them
 * by looping over ->read() or ->write() manually.
3052
 */
3053
static ssize_t loop_rw_iter(int rw, struct io_kiocb *req, struct iov_iter *iter)
3054
{
3055 3056
	struct kiocb *kiocb = &req->rw.kiocb;
	struct file *file = req->file;
3057 3058 3059 3060 3061 3062 3063 3064 3065 3066 3067 3068 3069
	ssize_t ret = 0;

	/*
	 * Don't support polled IO through this interface, and we can't
	 * support non-blocking either. For the latter, this just causes
	 * the kiocb to be handled from an async context.
	 */
	if (kiocb->ki_flags & IOCB_HIPRI)
		return -EOPNOTSUPP;
	if (kiocb->ki_flags & IOCB_NOWAIT)
		return -EAGAIN;

	while (iov_iter_count(iter)) {
3070
		struct iovec iovec;
3071 3072
		ssize_t nr;

3073 3074 3075
		if (!iov_iter_is_bvec(iter)) {
			iovec = iov_iter_iovec(iter);
		} else {
3076 3077
			iovec.iov_base = u64_to_user_ptr(req->rw.addr);
			iovec.iov_len = req->rw.len;
3078 3079
		}

3080 3081
		if (rw == READ) {
			nr = file->f_op->read(file, iovec.iov_base,
3082
					      iovec.iov_len, io_kiocb_ppos(kiocb));
3083 3084
		} else {
			nr = file->f_op->write(file, iovec.iov_base,
3085
					       iovec.iov_len, io_kiocb_ppos(kiocb));
3086 3087 3088 3089 3090 3091 3092 3093 3094 3095
		}

		if (nr < 0) {
			if (!ret)
				ret = nr;
			break;
		}
		ret += nr;
		if (nr != iovec.iov_len)
			break;
3096 3097
		req->rw.len -= nr;
		req->rw.addr += nr;
3098 3099 3100 3101 3102 3103
		iov_iter_advance(iter, nr);
	}

	return ret;
}

3104 3105
static void io_req_map_rw(struct io_kiocb *req, const struct iovec *iovec,
			  const struct iovec *fast_iov, struct iov_iter *iter)
3106
{
3107
	struct io_async_rw *rw = req->async_data;
3108

3109
	memcpy(&rw->iter, iter, sizeof(*iter));
3110
	rw->free_iovec = iovec;
3111
	rw->bytes_done = 0;
3112
	/* can only be fixed buffers, no need to do anything */
P
Pavel Begunkov 已提交
3113
	if (iov_iter_is_bvec(iter))
3114
		return;
3115
	if (!iovec) {
3116 3117 3118 3119 3120 3121 3122 3123 3124
		unsigned iov_off = 0;

		rw->iter.iov = rw->fast_iov;
		if (iter->iov != fast_iov) {
			iov_off = iter->iov - fast_iov;
			rw->iter.iov += iov_off;
		}
		if (rw->fast_iov != fast_iov)
			memcpy(rw->fast_iov + iov_off, fast_iov + iov_off,
3125
			       sizeof(struct iovec) * iter->nr_segs);
P
Pavel Begunkov 已提交
3126 3127
	} else {
		req->flags |= REQ_F_NEED_CLEANUP;
3128 3129 3130
	}
}

3131
static inline int io_alloc_async_data(struct io_kiocb *req)
3132
{
3133 3134 3135
	WARN_ON_ONCE(!io_op_defs[req->opcode].async_size);
	req->async_data = kmalloc(io_op_defs[req->opcode].async_size, GFP_KERNEL);
	return req->async_data == NULL;
3136 3137
}

3138 3139
static int io_setup_async_rw(struct io_kiocb *req, const struct iovec *iovec,
			     const struct iovec *fast_iov,
3140
			     struct iov_iter *iter, bool force)
3141
{
3142
	if (!force && !io_op_defs[req->opcode].needs_async_setup)
3143
		return 0;
3144
	if (!req->async_data) {
3145
		if (io_alloc_async_data(req)) {
3146
			kfree(iovec);
3147
			return -ENOMEM;
3148
		}
3149

3150
		io_req_map_rw(req, iovec, fast_iov, iter);
3151
	}
3152
	return 0;
3153 3154
}

3155
static inline int io_rw_prep_async(struct io_kiocb *req, int rw)
3156
{
3157
	struct io_async_rw *iorw = req->async_data;
3158
	struct iovec *iov = iorw->fast_iov;
3159
	int ret;
3160

3161
	ret = io_import_iovec(rw, req, &iov, &iorw->iter, false);
3162 3163 3164
	if (unlikely(ret < 0))
		return ret;

3165 3166 3167 3168
	iorw->bytes_done = 0;
	iorw->free_iovec = iov;
	if (iov)
		req->flags |= REQ_F_NEED_CLEANUP;
3169 3170 3171
	return 0;
}

3172
static int io_read_prep(struct io_kiocb *req, const struct io_uring_sqe *sqe)
3173
{
3174 3175
	if (unlikely(!(req->file->f_mode & FMODE_READ)))
		return -EBADF;
3176
	return io_prep_rw(req, sqe);
3177 3178
}

3179 3180 3181 3182 3183 3184 3185 3186 3187 3188
/*
 * This is our waitqueue callback handler, registered through lock_page_async()
 * when we initially tried to do the IO with the iocb armed our waitqueue.
 * This gets called when the page is unlocked, and we generally expect that to
 * happen when the page IO is completed and the page is now uptodate. This will
 * queue a task_work based retry of the operation, attempting to copy the data
 * again. If the latter fails because the page was NOT uptodate, then we will
 * do a thread based blocking retry of the operation. That's the unexpected
 * slow path.
 */
3189 3190 3191 3192 3193 3194 3195 3196 3197
static int io_async_buf_func(struct wait_queue_entry *wait, unsigned mode,
			     int sync, void *arg)
{
	struct wait_page_queue *wpq;
	struct io_kiocb *req = wait->private;
	struct wait_page_key *key = arg;

	wpq = container_of(wait, struct wait_page_queue, wait);

3198 3199 3200
	if (!wake_page_match(wpq, key))
		return 0;

3201
	req->rw.kiocb.ki_flags &= ~IOCB_WAITQ;
3202 3203 3204
	list_del_init(&wait->entry);

	/* submit ref gets dropped, acquire a new one */
3205
	req_ref_get(req);
3206
	io_req_task_queue(req);
3207 3208 3209
	return 1;
}

3210 3211 3212 3213 3214 3215 3216 3217 3218 3219 3220 3221
/*
 * This controls whether a given IO request should be armed for async page
 * based retry. If we return false here, the request is handed to the async
 * worker threads for retry. If we're doing buffered reads on a regular file,
 * we prepare a private wait_page_queue entry and retry the operation. This
 * will either succeed because the page is now uptodate and unlocked, or it
 * will register a callback when the page is unlocked at IO completion. Through
 * that callback, io_uring uses task_work to setup a retry of the operation.
 * That retry will attempt the buffered read again. The retry will generally
 * succeed, or in rare cases where it fails, we then fall back to using the
 * async worker threads for a blocking retry.
 */
3222
static bool io_rw_should_retry(struct io_kiocb *req)
3223
{
3224 3225
	struct io_async_rw *rw = req->async_data;
	struct wait_page_queue *wait = &rw->wpq;
3226
	struct kiocb *kiocb = &req->rw.kiocb;
3227

3228 3229 3230
	/* never retry for NOWAIT, we just complete with -EAGAIN */
	if (req->flags & REQ_F_NOWAIT)
		return false;
3231

3232
	/* Only for buffered IO */
3233
	if (kiocb->ki_flags & (IOCB_DIRECT | IOCB_HIPRI))
3234
		return false;
3235

3236 3237 3238 3239 3240 3241
	/*
	 * just use poll if we can, and don't attempt if the fs doesn't
	 * support callback based unlocks
	 */
	if (file_can_poll(req->file) || !(req->file->f_mode & FMODE_BUF_RASYNC))
		return false;
3242

3243 3244 3245 3246 3247
	wait->wait.func = io_async_buf_func;
	wait->wait.private = req;
	wait->wait.flags = 0;
	INIT_LIST_HEAD(&wait->wait.entry);
	kiocb->ki_flags |= IOCB_WAITQ;
3248
	kiocb->ki_flags &= ~IOCB_NOWAIT;
3249 3250
	kiocb->ki_waitq = wait;
	return true;
3251 3252
}

3253
static inline int io_iter_do_read(struct io_kiocb *req, struct iov_iter *iter)
3254 3255 3256
{
	if (req->file->f_op->read_iter)
		return call_read_iter(req->file, &req->rw.kiocb, iter);
3257
	else if (req->file->f_op->read)
3258
		return loop_rw_iter(READ, req, iter);
3259 3260
	else
		return -EINVAL;
3261 3262
}

3263
static int io_read(struct io_kiocb *req, unsigned int issue_flags)
J
Jens Axboe 已提交
3264 3265
{
	struct iovec inline_vecs[UIO_FASTIOV], *iovec = inline_vecs;
3266
	struct kiocb *kiocb = &req->rw.kiocb;
3267
	struct iov_iter __iter, *iter = &__iter;
3268
	struct io_async_rw *rw = req->async_data;
3269
	ssize_t io_size, ret, ret2;
3270
	bool force_nonblock = issue_flags & IO_URING_F_NONBLOCK;
3271

3272
	if (rw) {
3273
		iter = &rw->iter;
3274 3275 3276 3277 3278 3279
		iovec = NULL;
	} else {
		ret = io_import_iovec(READ, req, &iovec, iter, !force_nonblock);
		if (ret < 0)
			return ret;
	}
3280
	io_size = iov_iter_count(iter);
3281
	req->result = io_size;
J
Jens Axboe 已提交
3282

3283 3284
	/* Ensure we clear previously set non-block flag */
	if (!force_nonblock)
3285
		kiocb->ki_flags &= ~IOCB_NOWAIT;
3286 3287 3288
	else
		kiocb->ki_flags |= IOCB_NOWAIT;

3289
	/* If the file doesn't support async, just async punt */
3290
	if (force_nonblock && !io_file_supports_async(req, READ)) {
3291
		ret = io_setup_async_rw(req, iovec, inline_vecs, iter, true);
3292
		return ret ?: -EAGAIN;
3293
	}
J
Jens Axboe 已提交
3294

3295
	ret = rw_verify_area(READ, req->file, io_kiocb_ppos(kiocb), io_size);
3296 3297 3298 3299
	if (unlikely(ret)) {
		kfree(iovec);
		return ret;
	}
J
Jens Axboe 已提交
3300

3301
	ret = io_iter_do_read(req, iter);
3302

3303
	if (ret == -EAGAIN || (req->flags & REQ_F_REISSUE)) {
3304
		req->flags &= ~REQ_F_REISSUE;
3305 3306
		/* IOPOLL retry should happen for io-wq threads */
		if (!force_nonblock && !(req->ctx->flags & IORING_SETUP_IOPOLL))
3307
			goto done;
3308 3309
		/* no retry on NONBLOCK nor RWF_NOWAIT */
		if (req->flags & REQ_F_NOWAIT)
3310
			goto done;
3311
		/* some cases will consume bytes even on error returns */
3312
		iov_iter_revert(iter, io_size - iov_iter_count(iter));
3313
		ret = 0;
3314 3315
	} else if (ret == -EIOCBQUEUED) {
		goto out_free;
3316
	} else if (ret <= 0 || ret == io_size || !force_nonblock ||
3317
		   (req->flags & REQ_F_NOWAIT) || !(req->flags & REQ_F_ISREG)) {
3318
		/* read all, failed, already did sync or don't want to retry */
3319
		goto done;
3320 3321 3322
	}

	ret2 = io_setup_async_rw(req, iovec, inline_vecs, iter, true);
3323 3324 3325
	if (ret2)
		return ret2;

P
Pavel Begunkov 已提交
3326
	iovec = NULL;
3327
	rw = req->async_data;
3328
	/* now use our persistent iterator, if we aren't already */
3329
	iter = &rw->iter;
3330

3331 3332 3333 3334 3335 3336 3337 3338 3339 3340 3341 3342 3343 3344 3345 3346 3347 3348
	do {
		io_size -= ret;
		rw->bytes_done += ret;
		/* if we can retry, do so with the callbacks armed */
		if (!io_rw_should_retry(req)) {
			kiocb->ki_flags &= ~IOCB_WAITQ;
			return -EAGAIN;
		}

		/*
		 * Now retry read with the IOCB_WAITQ parts set in the iocb. If
		 * we get -EIOCBQUEUED, then we'll get a notification when the
		 * desired page gets unlocked. We can also get a partial read
		 * here, and if we do, then just retry at the new offset.
		 */
		ret = io_iter_do_read(req, iter);
		if (ret == -EIOCBQUEUED)
			return 0;
3349
		/* we got some bytes, but not all. retry. */
3350
		kiocb->ki_flags &= ~IOCB_WAITQ;
3351
	} while (ret > 0 && ret < io_size);
3352
done:
3353
	kiocb_done(kiocb, ret, issue_flags);
P
Pavel Begunkov 已提交
3354 3355 3356 3357
out_free:
	/* it's faster to check here then delegate to kfree */
	if (iovec)
		kfree(iovec);
3358
	return 0;
J
Jens Axboe 已提交
3359 3360
}

3361
static int io_write_prep(struct io_kiocb *req, const struct io_uring_sqe *sqe)
3362
{
3363 3364
	if (unlikely(!(req->file->f_mode & FMODE_WRITE)))
		return -EBADF;
3365
	return io_prep_rw(req, sqe);
3366 3367
}

3368
static int io_write(struct io_kiocb *req, unsigned int issue_flags)
J
Jens Axboe 已提交
3369 3370
{
	struct iovec inline_vecs[UIO_FASTIOV], *iovec = inline_vecs;
3371
	struct kiocb *kiocb = &req->rw.kiocb;
3372
	struct iov_iter __iter, *iter = &__iter;
3373
	struct io_async_rw *rw = req->async_data;
3374
	ssize_t ret, ret2, io_size;
3375
	bool force_nonblock = issue_flags & IO_URING_F_NONBLOCK;
J
Jens Axboe 已提交
3376

3377
	if (rw) {
3378
		iter = &rw->iter;
3379 3380 3381 3382 3383 3384
		iovec = NULL;
	} else {
		ret = io_import_iovec(WRITE, req, &iovec, iter, !force_nonblock);
		if (ret < 0)
			return ret;
	}
3385
	io_size = iov_iter_count(iter);
3386
	req->result = io_size;
J
Jens Axboe 已提交
3387

3388 3389
	/* Ensure we clear previously set non-block flag */
	if (!force_nonblock)
3390 3391 3392
		kiocb->ki_flags &= ~IOCB_NOWAIT;
	else
		kiocb->ki_flags |= IOCB_NOWAIT;
3393

3394
	/* If the file doesn't support async, just async punt */
3395
	if (force_nonblock && !io_file_supports_async(req, WRITE))
3396
		goto copy_iov;
3397

3398 3399 3400
	/* file path doesn't support NOWAIT for non-direct_IO */
	if (force_nonblock && !(kiocb->ki_flags & IOCB_DIRECT) &&
	    (req->flags & REQ_F_ISREG))
3401
		goto copy_iov;
3402

3403
	ret = rw_verify_area(WRITE, req->file, io_kiocb_ppos(kiocb), io_size);
3404 3405
	if (unlikely(ret))
		goto out_free;
3406

3407 3408 3409 3410 3411 3412 3413 3414
	/*
	 * Open-code file_start_write here to grab freeze protection,
	 * which will be released by another thread in
	 * io_complete_rw().  Fool lockdep by telling it the lock got
	 * released so that it doesn't complain about the held lock when
	 * we return to userspace.
	 */
	if (req->flags & REQ_F_ISREG) {
3415
		sb_start_write(file_inode(req->file)->i_sb);
3416 3417 3418 3419
		__sb_writers_release(file_inode(req->file)->i_sb,
					SB_FREEZE_WRITE);
	}
	kiocb->ki_flags |= IOCB_WRITE;
3420

3421
	if (req->file->f_op->write_iter)
3422
		ret2 = call_write_iter(req->file, kiocb, iter);
3423
	else if (req->file->f_op->write)
3424
		ret2 = loop_rw_iter(WRITE, req, iter);
3425 3426
	else
		ret2 = -EINVAL;
3427

3428 3429
	if (req->flags & REQ_F_REISSUE) {
		req->flags &= ~REQ_F_REISSUE;
3430
		ret2 = -EAGAIN;
3431
	}
3432

3433 3434 3435 3436 3437 3438
	/*
	 * Raw bdev writes will return -EOPNOTSUPP for IOCB_NOWAIT. Just
	 * retry them without IOCB_NOWAIT.
	 */
	if (ret2 == -EOPNOTSUPP && (kiocb->ki_flags & IOCB_NOWAIT))
		ret2 = -EAGAIN;
3439 3440
	/* no retry on NONBLOCK nor RWF_NOWAIT */
	if (ret2 == -EAGAIN && (req->flags & REQ_F_NOWAIT))
3441
		goto done;
3442
	if (!force_nonblock || ret2 != -EAGAIN) {
3443 3444 3445
		/* IOPOLL retry should happen for io-wq threads */
		if ((req->ctx->flags & IORING_SETUP_IOPOLL) && ret2 == -EAGAIN)
			goto copy_iov;
3446
done:
3447
		kiocb_done(kiocb, ret2, issue_flags);
3448
	} else {
3449
copy_iov:
3450
		/* some cases will consume bytes even on error returns */
3451
		iov_iter_revert(iter, io_size - iov_iter_count(iter));
3452
		ret = io_setup_async_rw(req, iovec, inline_vecs, iter, false);
3453
		return ret ?: -EAGAIN;
J
Jens Axboe 已提交
3454
	}
3455
out_free:
3456
	/* it's reportedly faster than delegating the null check to kfree() */
3457
	if (iovec)
3458
		kfree(iovec);
J
Jens Axboe 已提交
3459 3460 3461
	return ret;
}

3462 3463 3464 3465 3466 3467 3468 3469 3470 3471 3472 3473 3474 3475 3476 3477 3478 3479 3480 3481 3482 3483 3484 3485 3486 3487 3488 3489 3490
static int io_renameat_prep(struct io_kiocb *req,
			    const struct io_uring_sqe *sqe)
{
	struct io_rename *ren = &req->rename;
	const char __user *oldf, *newf;

	if (unlikely(req->flags & REQ_F_FIXED_FILE))
		return -EBADF;

	ren->old_dfd = READ_ONCE(sqe->fd);
	oldf = u64_to_user_ptr(READ_ONCE(sqe->addr));
	newf = u64_to_user_ptr(READ_ONCE(sqe->addr2));
	ren->new_dfd = READ_ONCE(sqe->len);
	ren->flags = READ_ONCE(sqe->rename_flags);

	ren->oldpath = getname(oldf);
	if (IS_ERR(ren->oldpath))
		return PTR_ERR(ren->oldpath);

	ren->newpath = getname(newf);
	if (IS_ERR(ren->newpath)) {
		putname(ren->oldpath);
		return PTR_ERR(ren->newpath);
	}

	req->flags |= REQ_F_NEED_CLEANUP;
	return 0;
}

3491
static int io_renameat(struct io_kiocb *req, unsigned int issue_flags)
3492 3493 3494 3495
{
	struct io_rename *ren = &req->rename;
	int ret;

3496
	if (issue_flags & IO_URING_F_NONBLOCK)
3497 3498 3499 3500 3501 3502 3503
		return -EAGAIN;

	ret = do_renameat2(ren->old_dfd, ren->oldpath, ren->new_dfd,
				ren->newpath, ren->flags);

	req->flags &= ~REQ_F_NEED_CLEANUP;
	if (ret < 0)
3504
		req_set_fail(req);
3505 3506 3507 3508
	io_req_complete(req, ret);
	return 0;
}

3509 3510 3511 3512 3513 3514 3515 3516 3517 3518 3519 3520 3521 3522 3523 3524 3525 3526 3527 3528 3529 3530 3531 3532
static int io_unlinkat_prep(struct io_kiocb *req,
			    const struct io_uring_sqe *sqe)
{
	struct io_unlink *un = &req->unlink;
	const char __user *fname;

	if (unlikely(req->flags & REQ_F_FIXED_FILE))
		return -EBADF;

	un->dfd = READ_ONCE(sqe->fd);

	un->flags = READ_ONCE(sqe->unlink_flags);
	if (un->flags & ~AT_REMOVEDIR)
		return -EINVAL;

	fname = u64_to_user_ptr(READ_ONCE(sqe->addr));
	un->filename = getname(fname);
	if (IS_ERR(un->filename))
		return PTR_ERR(un->filename);

	req->flags |= REQ_F_NEED_CLEANUP;
	return 0;
}

3533
static int io_unlinkat(struct io_kiocb *req, unsigned int issue_flags)
3534 3535 3536 3537
{
	struct io_unlink *un = &req->unlink;
	int ret;

3538
	if (issue_flags & IO_URING_F_NONBLOCK)
3539 3540 3541 3542 3543 3544 3545 3546 3547
		return -EAGAIN;

	if (un->flags & AT_REMOVEDIR)
		ret = do_rmdir(un->dfd, un->filename);
	else
		ret = do_unlinkat(un->dfd, un->filename);

	req->flags &= ~REQ_F_NEED_CLEANUP;
	if (ret < 0)
3548
		req_set_fail(req);
3549 3550 3551 3552
	io_req_complete(req, ret);
	return 0;
}

J
Jens Axboe 已提交
3553 3554 3555 3556 3557 3558 3559 3560 3561 3562 3563 3564 3565 3566 3567 3568 3569
static int io_shutdown_prep(struct io_kiocb *req,
			    const struct io_uring_sqe *sqe)
{
#if defined(CONFIG_NET)
	if (unlikely(req->ctx->flags & IORING_SETUP_IOPOLL))
		return -EINVAL;
	if (sqe->ioprio || sqe->off || sqe->addr || sqe->rw_flags ||
	    sqe->buf_index)
		return -EINVAL;

	req->shutdown.how = READ_ONCE(sqe->len);
	return 0;
#else
	return -EOPNOTSUPP;
#endif
}

3570
static int io_shutdown(struct io_kiocb *req, unsigned int issue_flags)
J
Jens Axboe 已提交
3571 3572 3573 3574 3575
{
#if defined(CONFIG_NET)
	struct socket *sock;
	int ret;

3576
	if (issue_flags & IO_URING_F_NONBLOCK)
J
Jens Axboe 已提交
3577 3578
		return -EAGAIN;

3579
	sock = sock_from_file(req->file);
J
Jens Axboe 已提交
3580
	if (unlikely(!sock))
3581
		return -ENOTSOCK;
J
Jens Axboe 已提交
3582 3583

	ret = __sys_shutdown_sock(sock, req->shutdown.how);
3584
	if (ret < 0)
3585
		req_set_fail(req);
J
Jens Axboe 已提交
3586 3587 3588 3589 3590 3591 3592
	io_req_complete(req, ret);
	return 0;
#else
	return -EOPNOTSUPP;
#endif
}

P
Pavel Begunkov 已提交
3593 3594
static int __io_splice_prep(struct io_kiocb *req,
			    const struct io_uring_sqe *sqe)
P
Pavel Begunkov 已提交
3595 3596 3597 3598
{
	struct io_splice* sp = &req->splice;
	unsigned int valid_flags = SPLICE_F_FD_IN_FIXED | SPLICE_F_ALL;

3599 3600
	if (unlikely(req->ctx->flags & IORING_SETUP_IOPOLL))
		return -EINVAL;
P
Pavel Begunkov 已提交
3601 3602 3603 3604 3605 3606 3607 3608

	sp->file_in = NULL;
	sp->len = READ_ONCE(sqe->len);
	sp->flags = READ_ONCE(sqe->splice_flags);

	if (unlikely(sp->flags & ~valid_flags))
		return -EINVAL;

P
Pavel Begunkov 已提交
3609 3610 3611 3612
	sp->file_in = io_file_get(NULL, req, READ_ONCE(sqe->splice_fd_in),
				  (sp->flags & SPLICE_F_FD_IN_FIXED));
	if (!sp->file_in)
		return -EBADF;
P
Pavel Begunkov 已提交
3613 3614 3615 3616
	req->flags |= REQ_F_NEED_CLEANUP;
	return 0;
}

P
Pavel Begunkov 已提交
3617 3618 3619 3620 3621 3622 3623 3624
static int io_tee_prep(struct io_kiocb *req,
		       const struct io_uring_sqe *sqe)
{
	if (READ_ONCE(sqe->splice_off_in) || READ_ONCE(sqe->off))
		return -EINVAL;
	return __io_splice_prep(req, sqe);
}

3625
static int io_tee(struct io_kiocb *req, unsigned int issue_flags)
P
Pavel Begunkov 已提交
3626 3627 3628 3629 3630 3631 3632
{
	struct io_splice *sp = &req->splice;
	struct file *in = sp->file_in;
	struct file *out = sp->file_out;
	unsigned int flags = sp->flags & ~SPLICE_F_FD_IN_FIXED;
	long ret = 0;

3633
	if (issue_flags & IO_URING_F_NONBLOCK)
P
Pavel Begunkov 已提交
3634 3635 3636 3637
		return -EAGAIN;
	if (sp->len)
		ret = do_tee(in, out, sp->len, flags);

3638 3639
	if (!(sp->flags & SPLICE_F_FD_IN_FIXED))
		io_put_file(in);
P
Pavel Begunkov 已提交
3640 3641 3642
	req->flags &= ~REQ_F_NEED_CLEANUP;

	if (ret != sp->len)
3643
		req_set_fail(req);
3644
	io_req_complete(req, ret);
P
Pavel Begunkov 已提交
3645 3646 3647 3648 3649 3650 3651 3652 3653 3654 3655 3656
	return 0;
}

static int io_splice_prep(struct io_kiocb *req, const struct io_uring_sqe *sqe)
{
	struct io_splice* sp = &req->splice;

	sp->off_in = READ_ONCE(sqe->splice_off_in);
	sp->off_out = READ_ONCE(sqe->off);
	return __io_splice_prep(req, sqe);
}

3657
static int io_splice(struct io_kiocb *req, unsigned int issue_flags)
P
Pavel Begunkov 已提交
3658 3659 3660 3661 3662 3663
{
	struct io_splice *sp = &req->splice;
	struct file *in = sp->file_in;
	struct file *out = sp->file_out;
	unsigned int flags = sp->flags & ~SPLICE_F_FD_IN_FIXED;
	loff_t *poff_in, *poff_out;
3664
	long ret = 0;
P
Pavel Begunkov 已提交
3665

3666
	if (issue_flags & IO_URING_F_NONBLOCK)
3667
		return -EAGAIN;
P
Pavel Begunkov 已提交
3668 3669 3670

	poff_in = (sp->off_in == -1) ? NULL : &sp->off_in;
	poff_out = (sp->off_out == -1) ? NULL : &sp->off_out;
3671

3672
	if (sp->len)
3673
		ret = do_splice(in, poff_in, out, poff_out, sp->len, flags);
P
Pavel Begunkov 已提交
3674

3675 3676
	if (!(sp->flags & SPLICE_F_FD_IN_FIXED))
		io_put_file(in);
P
Pavel Begunkov 已提交
3677 3678 3679
	req->flags &= ~REQ_F_NEED_CLEANUP;

	if (ret != sp->len)
3680
		req_set_fail(req);
3681
	io_req_complete(req, ret);
P
Pavel Begunkov 已提交
3682 3683 3684
	return 0;
}

J
Jens Axboe 已提交
3685 3686 3687
/*
 * IORING_OP_NOP just posts a completion event, nothing else.
 */
3688
static int io_nop(struct io_kiocb *req, unsigned int issue_flags)
J
Jens Axboe 已提交
3689 3690 3691
{
	struct io_ring_ctx *ctx = req->ctx;

J
Jens Axboe 已提交
3692 3693 3694
	if (unlikely(ctx->flags & IORING_SETUP_IOPOLL))
		return -EINVAL;

3695
	__io_req_complete(req, issue_flags, 0, 0);
J
Jens Axboe 已提交
3696 3697 3698
	return 0;
}

3699
static int io_fsync_prep(struct io_kiocb *req, const struct io_uring_sqe *sqe)
C
Christoph Hellwig 已提交
3700
{
J
Jens Axboe 已提交
3701
	struct io_ring_ctx *ctx = req->ctx;
C
Christoph Hellwig 已提交
3702

J
Jens Axboe 已提交
3703 3704
	if (!req->file)
		return -EBADF;
C
Christoph Hellwig 已提交
3705

J
Jens Axboe 已提交
3706
	if (unlikely(ctx->flags & IORING_SETUP_IOPOLL))
J
Jens Axboe 已提交
3707
		return -EINVAL;
3708
	if (unlikely(sqe->addr || sqe->ioprio || sqe->buf_index))
C
Christoph Hellwig 已提交
3709 3710
		return -EINVAL;

3711 3712 3713 3714 3715 3716
	req->sync.flags = READ_ONCE(sqe->fsync_flags);
	if (unlikely(req->sync.flags & ~IORING_FSYNC_DATASYNC))
		return -EINVAL;

	req->sync.off = READ_ONCE(sqe->off);
	req->sync.len = READ_ONCE(sqe->len);
C
Christoph Hellwig 已提交
3717 3718 3719
	return 0;
}

3720
static int io_fsync(struct io_kiocb *req, unsigned int issue_flags)
3721 3722 3723 3724
{
	loff_t end = req->sync.off + req->sync.len;
	int ret;

3725
	/* fsync always requires a blocking context */
3726
	if (issue_flags & IO_URING_F_NONBLOCK)
3727 3728
		return -EAGAIN;

3729
	ret = vfs_fsync_range(req->file, req->sync.off,
3730 3731 3732
				end > 0 ? end : LLONG_MAX,
				req->sync.flags & IORING_FSYNC_DATASYNC);
	if (ret < 0)
3733
		req_set_fail(req);
3734
	io_req_complete(req, ret);
C
Christoph Hellwig 已提交
3735 3736 3737
	return 0;
}

3738 3739 3740 3741 3742
static int io_fallocate_prep(struct io_kiocb *req,
			     const struct io_uring_sqe *sqe)
{
	if (sqe->ioprio || sqe->buf_index || sqe->rw_flags)
		return -EINVAL;
3743 3744
	if (unlikely(req->ctx->flags & IORING_SETUP_IOPOLL))
		return -EINVAL;
3745 3746 3747 3748 3749 3750 3751

	req->sync.off = READ_ONCE(sqe->off);
	req->sync.len = READ_ONCE(sqe->addr);
	req->sync.mode = READ_ONCE(sqe->len);
	return 0;
}

3752
static int io_fallocate(struct io_kiocb *req, unsigned int issue_flags)
3753
{
3754 3755
	int ret;

3756
	/* fallocate always requiring blocking context */
3757
	if (issue_flags & IO_URING_F_NONBLOCK)
3758
		return -EAGAIN;
3759 3760 3761
	ret = vfs_fallocate(req->file, req->sync.mode, req->sync.off,
				req->sync.len);
	if (ret < 0)
3762
		req_set_fail(req);
3763
	io_req_complete(req, ret);
3764 3765 3766
	return 0;
}

3767
static int __io_openat_prep(struct io_kiocb *req, const struct io_uring_sqe *sqe)
3768
{
3769
	const char __user *fname;
3770
	int ret;
3771

3772
	if (unlikely(sqe->ioprio || sqe->buf_index))
3773
		return -EINVAL;
3774
	if (unlikely(req->flags & REQ_F_FIXED_FILE))
3775
		return -EBADF;
3776

3777 3778
	/* open.how should be already initialised */
	if (!(req->open.how.flags & O_PATH) && force_o_largefile())
3779
		req->open.how.flags |= O_LARGEFILE;
3780

3781 3782
	req->open.dfd = READ_ONCE(sqe->fd);
	fname = u64_to_user_ptr(READ_ONCE(sqe->addr));
3783
	req->open.filename = getname(fname);
3784 3785 3786 3787 3788
	if (IS_ERR(req->open.filename)) {
		ret = PTR_ERR(req->open.filename);
		req->open.filename = NULL;
		return ret;
	}
3789
	req->open.nofile = rlimit(RLIMIT_NOFILE);
3790
	req->flags |= REQ_F_NEED_CLEANUP;
3791
	return 0;
3792 3793
}

3794 3795 3796 3797
static int io_openat_prep(struct io_kiocb *req, const struct io_uring_sqe *sqe)
{
	u64 flags, mode;

3798
	if (unlikely(req->ctx->flags & IORING_SETUP_IOPOLL))
3799
		return -EINVAL;
3800 3801 3802 3803 3804 3805
	mode = READ_ONCE(sqe->len);
	flags = READ_ONCE(sqe->open_flags);
	req->open.how = build_open_how(flags, mode);
	return __io_openat_prep(req, sqe);
}

3806
static int io_openat2_prep(struct io_kiocb *req, const struct io_uring_sqe *sqe)
J
Jens Axboe 已提交
3807
{
3808 3809
	struct open_how __user *how;
	size_t len;
J
Jens Axboe 已提交
3810 3811
	int ret;

3812
	if (unlikely(req->ctx->flags & IORING_SETUP_IOPOLL))
3813
		return -EINVAL;
3814 3815 3816 3817
	how = u64_to_user_ptr(READ_ONCE(sqe->addr2));
	len = READ_ONCE(sqe->len);
	if (len < OPEN_HOW_SIZE_VER0)
		return -EINVAL;
3818

3819 3820 3821 3822
	ret = copy_struct_from_user(&req->open.how, sizeof(req->open.how), how,
					len);
	if (ret)
		return ret;
3823

3824
	return __io_openat_prep(req, sqe);
3825 3826
}

3827
static int io_openat2(struct io_kiocb *req, unsigned int issue_flags)
3828 3829 3830
{
	struct open_flags op;
	struct file *file;
3831 3832
	bool nonblock_set;
	bool resolve_nonblock;
3833 3834
	int ret;

3835
	ret = build_open_flags(&req->open.how, &op);
3836 3837
	if (ret)
		goto err;
3838 3839
	nonblock_set = op.open_flag & O_NONBLOCK;
	resolve_nonblock = req->open.how.resolve & RESOLVE_CACHED;
3840
	if (issue_flags & IO_URING_F_NONBLOCK) {
3841 3842 3843 3844 3845 3846 3847 3848 3849
		/*
		 * Don't bother trying for O_TRUNC, O_CREAT, or O_TMPFILE open,
		 * it'll always -EAGAIN
		 */
		if (req->open.how.flags & (O_TRUNC | O_CREAT | O_TMPFILE))
			return -EAGAIN;
		op.lookup_flags |= LOOKUP_CACHED;
		op.open_flag |= O_NONBLOCK;
	}
3850

3851
	ret = __get_unused_fd_flags(req->open.how.flags, req->open.nofile);
3852 3853 3854 3855
	if (ret < 0)
		goto err;

	file = do_filp_open(req->open.dfd, req->open.filename, &op);
3856
	/* only retry if RESOLVE_CACHED wasn't already set by application */
3857 3858
	if ((!resolve_nonblock && (issue_flags & IO_URING_F_NONBLOCK)) &&
	    file == ERR_PTR(-EAGAIN)) {
3859
		/*
3860 3861 3862
		 * We could hang on to this 'fd', but seems like marginal
		 * gain for something that is now known to be a slower path.
		 * So just put it, and we'll get a new one when we retry.
3863
		 */
3864 3865 3866 3867
		put_unused_fd(ret);
		return -EAGAIN;
	}

3868 3869 3870 3871
	if (IS_ERR(file)) {
		put_unused_fd(ret);
		ret = PTR_ERR(file);
	} else {
3872
		if ((issue_flags & IO_URING_F_NONBLOCK) && !nonblock_set)
3873
			file->f_flags &= ~O_NONBLOCK;
3874 3875 3876 3877 3878
		fsnotify_open(file);
		fd_install(ret, file);
	}
err:
	putname(req->open.filename);
3879
	req->flags &= ~REQ_F_NEED_CLEANUP;
3880
	if (ret < 0)
3881
		req_set_fail(req);
3882
	__io_req_complete(req, issue_flags, ret, 0);
3883 3884 3885
	return 0;
}

3886
static int io_openat(struct io_kiocb *req, unsigned int issue_flags)
3887
{
3888
	return io_openat2(req, issue_flags);
3889 3890
}

3891 3892 3893 3894 3895 3896 3897 3898 3899 3900 3901 3902 3903 3904 3905 3906 3907 3908 3909 3910 3911 3912 3913 3914 3915 3916 3917 3918 3919 3920 3921 3922 3923 3924 3925 3926 3927 3928 3929 3930
static int io_remove_buffers_prep(struct io_kiocb *req,
				  const struct io_uring_sqe *sqe)
{
	struct io_provide_buf *p = &req->pbuf;
	u64 tmp;

	if (sqe->ioprio || sqe->rw_flags || sqe->addr || sqe->len || sqe->off)
		return -EINVAL;

	tmp = READ_ONCE(sqe->fd);
	if (!tmp || tmp > USHRT_MAX)
		return -EINVAL;

	memset(p, 0, sizeof(*p));
	p->nbufs = tmp;
	p->bgid = READ_ONCE(sqe->buf_group);
	return 0;
}

static int __io_remove_buffers(struct io_ring_ctx *ctx, struct io_buffer *buf,
			       int bgid, unsigned nbufs)
{
	unsigned i = 0;

	/* shouldn't happen */
	if (!nbufs)
		return 0;

	/* the head kbuf is the list itself */
	while (!list_empty(&buf->list)) {
		struct io_buffer *nxt;

		nxt = list_first_entry(&buf->list, struct io_buffer, list);
		list_del(&nxt->list);
		kfree(nxt);
		if (++i == nbufs)
			return i;
	}
	i++;
	kfree(buf);
3931
	xa_erase(&ctx->io_buffers, bgid);
3932 3933 3934 3935

	return i;
}

3936
static int io_remove_buffers(struct io_kiocb *req, unsigned int issue_flags)
3937 3938 3939 3940 3941
{
	struct io_provide_buf *p = &req->pbuf;
	struct io_ring_ctx *ctx = req->ctx;
	struct io_buffer *head;
	int ret = 0;
3942
	bool force_nonblock = issue_flags & IO_URING_F_NONBLOCK;
3943 3944 3945 3946 3947 3948

	io_ring_submit_lock(ctx, !force_nonblock);

	lockdep_assert_held(&ctx->uring_lock);

	ret = -ENOENT;
3949
	head = xa_load(&ctx->io_buffers, p->bgid);
3950 3951 3952
	if (head)
		ret = __io_remove_buffers(ctx, head, p->bgid, p->nbufs);
	if (ret < 0)
3953
		req_set_fail(req);
3954

3955 3956 3957
	/* complete before unlock, IOPOLL may need the lock */
	__io_req_complete(req, issue_flags, ret, 0);
	io_ring_submit_unlock(ctx, !force_nonblock);
3958 3959 3960
	return 0;
}

3961 3962 3963
static int io_provide_buffers_prep(struct io_kiocb *req,
				   const struct io_uring_sqe *sqe)
{
3964
	unsigned long size, tmp_check;
3965 3966 3967 3968 3969 3970 3971 3972 3973 3974 3975 3976 3977
	struct io_provide_buf *p = &req->pbuf;
	u64 tmp;

	if (sqe->ioprio || sqe->rw_flags)
		return -EINVAL;

	tmp = READ_ONCE(sqe->fd);
	if (!tmp || tmp > USHRT_MAX)
		return -E2BIG;
	p->nbufs = tmp;
	p->addr = READ_ONCE(sqe->addr);
	p->len = READ_ONCE(sqe->len);

3978 3979 3980 3981 3982 3983
	if (check_mul_overflow((unsigned long)p->len, (unsigned long)p->nbufs,
				&size))
		return -EOVERFLOW;
	if (check_add_overflow((unsigned long)p->addr, size, &tmp_check))
		return -EOVERFLOW;

3984 3985
	size = (unsigned long)p->len * p->nbufs;
	if (!access_ok(u64_to_user_ptr(p->addr), size))
3986 3987 3988 3989 3990 3991 3992 3993 3994 3995 3996 3997 3998 3999 4000 4001 4002 4003 4004 4005 4006 4007
		return -EFAULT;

	p->bgid = READ_ONCE(sqe->buf_group);
	tmp = READ_ONCE(sqe->off);
	if (tmp > USHRT_MAX)
		return -E2BIG;
	p->bid = tmp;
	return 0;
}

static int io_add_buffers(struct io_provide_buf *pbuf, struct io_buffer **head)
{
	struct io_buffer *buf;
	u64 addr = pbuf->addr;
	int i, bid = pbuf->bid;

	for (i = 0; i < pbuf->nbufs; i++) {
		buf = kmalloc(sizeof(*buf), GFP_KERNEL);
		if (!buf)
			break;

		buf->addr = addr;
4008
		buf->len = min_t(__u32, pbuf->len, MAX_RW_COUNT);
4009 4010 4011 4012 4013 4014 4015 4016 4017 4018 4019 4020 4021 4022
		buf->bid = bid;
		addr += pbuf->len;
		bid++;
		if (!*head) {
			INIT_LIST_HEAD(&buf->list);
			*head = buf;
		} else {
			list_add_tail(&buf->list, &(*head)->list);
		}
	}

	return i ? i : -ENOMEM;
}

4023
static int io_provide_buffers(struct io_kiocb *req, unsigned int issue_flags)
4024 4025 4026 4027 4028
{
	struct io_provide_buf *p = &req->pbuf;
	struct io_ring_ctx *ctx = req->ctx;
	struct io_buffer *head, *list;
	int ret = 0;
4029
	bool force_nonblock = issue_flags & IO_URING_F_NONBLOCK;
4030 4031 4032 4033 4034

	io_ring_submit_lock(ctx, !force_nonblock);

	lockdep_assert_held(&ctx->uring_lock);

4035
	list = head = xa_load(&ctx->io_buffers, p->bgid);
4036 4037

	ret = io_add_buffers(p, &head);
4038 4039 4040
	if (ret >= 0 && !list) {
		ret = xa_insert(&ctx->io_buffers, p->bgid, head, GFP_KERNEL);
		if (ret < 0)
4041
			__io_remove_buffers(ctx, head, p->bgid, -1U);
4042 4043
	}
	if (ret < 0)
4044
		req_set_fail(req);
4045 4046 4047
	/* complete before unlock, IOPOLL may need the lock */
	__io_req_complete(req, issue_flags, ret, 0);
	io_ring_submit_unlock(ctx, !force_nonblock);
4048
	return 0;
4049 4050
}

4051 4052 4053 4054 4055 4056
static int io_epoll_ctl_prep(struct io_kiocb *req,
			     const struct io_uring_sqe *sqe)
{
#if defined(CONFIG_EPOLL)
	if (sqe->ioprio || sqe->buf_index)
		return -EINVAL;
4057
	if (unlikely(req->ctx->flags & IORING_SETUP_IOPOLL))
4058
		return -EINVAL;
4059 4060 4061 4062 4063 4064 4065 4066 4067 4068 4069 4070 4071 4072 4073 4074 4075 4076 4077

	req->epoll.epfd = READ_ONCE(sqe->fd);
	req->epoll.op = READ_ONCE(sqe->len);
	req->epoll.fd = READ_ONCE(sqe->off);

	if (ep_op_has_event(req->epoll.op)) {
		struct epoll_event __user *ev;

		ev = u64_to_user_ptr(READ_ONCE(sqe->addr));
		if (copy_from_user(&req->epoll.event, ev, sizeof(*ev)))
			return -EFAULT;
	}

	return 0;
#else
	return -EOPNOTSUPP;
#endif
}

4078
static int io_epoll_ctl(struct io_kiocb *req, unsigned int issue_flags)
4079 4080 4081 4082
{
#if defined(CONFIG_EPOLL)
	struct io_epoll *ie = &req->epoll;
	int ret;
4083
	bool force_nonblock = issue_flags & IO_URING_F_NONBLOCK;
4084 4085 4086 4087 4088 4089

	ret = do_epoll_ctl(ie->epfd, ie->op, ie->fd, &ie->event, force_nonblock);
	if (force_nonblock && ret == -EAGAIN)
		return -EAGAIN;

	if (ret < 0)
4090
		req_set_fail(req);
4091
	__io_req_complete(req, issue_flags, ret, 0);
4092 4093 4094 4095 4096 4097
	return 0;
#else
	return -EOPNOTSUPP;
#endif
}

J
Jens Axboe 已提交
4098 4099 4100 4101 4102
static int io_madvise_prep(struct io_kiocb *req, const struct io_uring_sqe *sqe)
{
#if defined(CONFIG_ADVISE_SYSCALLS) && defined(CONFIG_MMU)
	if (sqe->ioprio || sqe->buf_index || sqe->off)
		return -EINVAL;
4103 4104
	if (unlikely(req->ctx->flags & IORING_SETUP_IOPOLL))
		return -EINVAL;
J
Jens Axboe 已提交
4105 4106 4107 4108 4109 4110 4111 4112 4113 4114

	req->madvise.addr = READ_ONCE(sqe->addr);
	req->madvise.len = READ_ONCE(sqe->len);
	req->madvise.advice = READ_ONCE(sqe->fadvise_advice);
	return 0;
#else
	return -EOPNOTSUPP;
#endif
}

4115
static int io_madvise(struct io_kiocb *req, unsigned int issue_flags)
J
Jens Axboe 已提交
4116 4117 4118 4119 4120
{
#if defined(CONFIG_ADVISE_SYSCALLS) && defined(CONFIG_MMU)
	struct io_madvise *ma = &req->madvise;
	int ret;

4121
	if (issue_flags & IO_URING_F_NONBLOCK)
J
Jens Axboe 已提交
4122 4123
		return -EAGAIN;

M
Minchan Kim 已提交
4124
	ret = do_madvise(current->mm, ma->addr, ma->len, ma->advice);
J
Jens Axboe 已提交
4125
	if (ret < 0)
4126
		req_set_fail(req);
4127
	io_req_complete(req, ret);
J
Jens Axboe 已提交
4128 4129 4130 4131 4132 4133
	return 0;
#else
	return -EOPNOTSUPP;
#endif
}

J
Jens Axboe 已提交
4134 4135 4136 4137
static int io_fadvise_prep(struct io_kiocb *req, const struct io_uring_sqe *sqe)
{
	if (sqe->ioprio || sqe->buf_index || sqe->addr)
		return -EINVAL;
4138 4139
	if (unlikely(req->ctx->flags & IORING_SETUP_IOPOLL))
		return -EINVAL;
J
Jens Axboe 已提交
4140 4141 4142 4143 4144 4145 4146

	req->fadvise.offset = READ_ONCE(sqe->off);
	req->fadvise.len = READ_ONCE(sqe->len);
	req->fadvise.advice = READ_ONCE(sqe->fadvise_advice);
	return 0;
}

4147
static int io_fadvise(struct io_kiocb *req, unsigned int issue_flags)
J
Jens Axboe 已提交
4148 4149 4150 4151
{
	struct io_fadvise *fa = &req->fadvise;
	int ret;

4152
	if (issue_flags & IO_URING_F_NONBLOCK) {
4153 4154 4155 4156 4157 4158 4159 4160 4161
		switch (fa->advice) {
		case POSIX_FADV_NORMAL:
		case POSIX_FADV_RANDOM:
		case POSIX_FADV_SEQUENTIAL:
			break;
		default:
			return -EAGAIN;
		}
	}
J
Jens Axboe 已提交
4162 4163 4164

	ret = vfs_fadvise(req->file, fa->offset, fa->len, fa->advice);
	if (ret < 0)
4165
		req_set_fail(req);
4166
	__io_req_complete(req, issue_flags, ret, 0);
J
Jens Axboe 已提交
4167 4168 4169
	return 0;
}

4170 4171
static int io_statx_prep(struct io_kiocb *req, const struct io_uring_sqe *sqe)
{
4172
	if (unlikely(req->ctx->flags & IORING_SETUP_IOPOLL))
4173
		return -EINVAL;
4174 4175
	if (sqe->ioprio || sqe->buf_index)
		return -EINVAL;
4176
	if (req->flags & REQ_F_FIXED_FILE)
4177
		return -EBADF;
4178

4179 4180
	req->statx.dfd = READ_ONCE(sqe->fd);
	req->statx.mask = READ_ONCE(sqe->len);
B
Bijan Mottahedeh 已提交
4181
	req->statx.filename = u64_to_user_ptr(READ_ONCE(sqe->addr));
4182 4183
	req->statx.buffer = u64_to_user_ptr(READ_ONCE(sqe->addr2));
	req->statx.flags = READ_ONCE(sqe->statx_flags);
4184 4185 4186 4187

	return 0;
}

4188
static int io_statx(struct io_kiocb *req, unsigned int issue_flags)
4189
{
4190
	struct io_statx *ctx = &req->statx;
4191 4192
	int ret;

4193
	if (issue_flags & IO_URING_F_NONBLOCK)
4194 4195
		return -EAGAIN;

B
Bijan Mottahedeh 已提交
4196 4197
	ret = do_statx(ctx->dfd, ctx->filename, ctx->flags, ctx->mask,
		       ctx->buffer);
4198 4199

	if (ret < 0)
4200
		req_set_fail(req);
4201
	io_req_complete(req, ret);
4202 4203 4204
	return 0;
}

4205 4206
static int io_close_prep(struct io_kiocb *req, const struct io_uring_sqe *sqe)
{
4207
	if (unlikely(req->ctx->flags & IORING_SETUP_IOPOLL))
4208
		return -EINVAL;
4209 4210 4211
	if (sqe->ioprio || sqe->off || sqe->addr || sqe->len ||
	    sqe->rw_flags || sqe->buf_index)
		return -EINVAL;
4212
	if (req->flags & REQ_F_FIXED_FILE)
4213
		return -EBADF;
4214 4215 4216 4217 4218

	req->close.fd = READ_ONCE(sqe->fd);
	return 0;
}

4219
static int io_close(struct io_kiocb *req, unsigned int issue_flags)
4220
{
4221
	struct files_struct *files = current->files;
4222
	struct io_close *close = &req->close;
4223
	struct fdtable *fdt;
P
Pavel Begunkov 已提交
4224 4225
	struct file *file = NULL;
	int ret = -EBADF;
4226

4227 4228 4229 4230 4231 4232 4233
	spin_lock(&files->file_lock);
	fdt = files_fdtable(files);
	if (close->fd >= fdt->max_fds) {
		spin_unlock(&files->file_lock);
		goto err;
	}
	file = fdt->fd[close->fd];
P
Pavel Begunkov 已提交
4234
	if (!file || file->f_op == &io_uring_fops) {
4235 4236 4237
		spin_unlock(&files->file_lock);
		file = NULL;
		goto err;
4238
	}
4239 4240

	/* if the file has a flush method, be safe and punt to async */
4241
	if (file->f_op->flush && (issue_flags & IO_URING_F_NONBLOCK)) {
4242
		spin_unlock(&files->file_lock);
4243
		return -EAGAIN;
P
Pavel Begunkov 已提交
4244
	}
4245

4246 4247 4248 4249 4250 4251 4252 4253
	ret = __close_fd_get_file(close->fd, &file);
	spin_unlock(&files->file_lock);
	if (ret < 0) {
		if (ret == -ENOENT)
			ret = -EBADF;
		goto err;
	}

4254
	/* No ->flush() or already async, safely close from here */
4255 4256
	ret = filp_close(file, current->files);
err:
4257
	if (ret < 0)
4258
		req_set_fail(req);
4259 4260
	if (file)
		fput(file);
4261
	__io_req_complete(req, issue_flags, ret, 0);
4262
	return 0;
4263 4264
}

4265
static int io_sfr_prep(struct io_kiocb *req, const struct io_uring_sqe *sqe)
4266 4267 4268 4269 4270 4271 4272 4273
{
	struct io_ring_ctx *ctx = req->ctx;

	if (unlikely(ctx->flags & IORING_SETUP_IOPOLL))
		return -EINVAL;
	if (unlikely(sqe->addr || sqe->ioprio || sqe->buf_index))
		return -EINVAL;

4274 4275 4276 4277 4278 4279
	req->sync.off = READ_ONCE(sqe->off);
	req->sync.len = READ_ONCE(sqe->len);
	req->sync.flags = READ_ONCE(sqe->sync_range_flags);
	return 0;
}

4280
static int io_sync_file_range(struct io_kiocb *req, unsigned int issue_flags)
4281 4282 4283
{
	int ret;

4284
	/* sync_file_range always requires a blocking context */
4285
	if (issue_flags & IO_URING_F_NONBLOCK)
4286 4287
		return -EAGAIN;

4288
	ret = sync_file_range(req->file, req->sync.off, req->sync.len,
4289 4290
				req->sync.flags);
	if (ret < 0)
4291
		req_set_fail(req);
4292
	io_req_complete(req, ret);
4293 4294 4295
	return 0;
}

4296
#if defined(CONFIG_NET)
4297 4298 4299
static int io_setup_async_msg(struct io_kiocb *req,
			      struct io_async_msghdr *kmsg)
{
4300 4301 4302
	struct io_async_msghdr *async_msg = req->async_data;

	if (async_msg)
4303
		return -EAGAIN;
4304
	if (io_alloc_async_data(req)) {
4305
		kfree(kmsg->free_iov);
4306 4307
		return -ENOMEM;
	}
4308
	async_msg = req->async_data;
4309
	req->flags |= REQ_F_NEED_CLEANUP;
4310
	memcpy(async_msg, kmsg, sizeof(*kmsg));
4311
	async_msg->msg.msg_name = &async_msg->addr;
4312 4313 4314 4315
	/* if were using fast_iov, set it to the new one */
	if (!async_msg->free_iov)
		async_msg->msg.msg_iter.iov = async_msg->fast_iov;

4316 4317 4318
	return -EAGAIN;
}

4319 4320 4321 4322
static int io_sendmsg_copy_hdr(struct io_kiocb *req,
			       struct io_async_msghdr *iomsg)
{
	iomsg->msg.msg_name = &iomsg->addr;
4323
	iomsg->free_iov = iomsg->fast_iov;
4324
	return sendmsg_copy_msghdr(&iomsg->msg, req->sr_msg.umsg,
4325
				   req->sr_msg.msg_flags, &iomsg->free_iov);
4326 4327
}

4328 4329 4330 4331 4332 4333 4334 4335 4336 4337
static int io_sendmsg_prep_async(struct io_kiocb *req)
{
	int ret;

	ret = io_sendmsg_copy_hdr(req, req->async_data);
	if (!ret)
		req->flags |= REQ_F_NEED_CLEANUP;
	return ret;
}

4338
static int io_sendmsg_prep(struct io_kiocb *req, const struct io_uring_sqe *sqe)
4339
{
4340
	struct io_sr_msg *sr = &req->sr_msg;
4341

4342 4343 4344
	if (unlikely(req->ctx->flags & IORING_SETUP_IOPOLL))
		return -EINVAL;

4345
	sr->umsg = u64_to_user_ptr(READ_ONCE(sqe->addr));
4346
	sr->len = READ_ONCE(sqe->len);
4347 4348 4349
	sr->msg_flags = READ_ONCE(sqe->msg_flags) | MSG_NOSIGNAL;
	if (sr->msg_flags & MSG_DONTWAIT)
		req->flags |= REQ_F_NOWAIT;
4350

4351 4352 4353 4354
#ifdef CONFIG_COMPAT
	if (req->ctx->compat)
		sr->msg_flags |= MSG_CMSG_COMPAT;
#endif
4355
	return 0;
4356 4357
}

4358
static int io_sendmsg(struct io_kiocb *req, unsigned int issue_flags)
J
Jens Axboe 已提交
4359
{
4360
	struct io_async_msghdr iomsg, *kmsg;
J
Jens Axboe 已提交
4361
	struct socket *sock;
4362
	unsigned flags;
4363
	int min_ret = 0;
J
Jens Axboe 已提交
4364 4365
	int ret;

4366
	sock = sock_from_file(req->file);
4367
	if (unlikely(!sock))
4368
		return -ENOTSOCK;
4369

4370 4371
	kmsg = req->async_data;
	if (!kmsg) {
4372 4373 4374 4375
		ret = io_sendmsg_copy_hdr(req, &iomsg);
		if (ret)
			return ret;
		kmsg = &iomsg;
J
Jens Axboe 已提交
4376 4377
	}

4378 4379
	flags = req->sr_msg.msg_flags;
	if (issue_flags & IO_URING_F_NONBLOCK)
4380
		flags |= MSG_DONTWAIT;
4381 4382 4383
	if (flags & MSG_WAITALL)
		min_ret = iov_iter_count(&kmsg->msg.msg_iter);

4384
	ret = __sys_sendmsg_sock(sock, &kmsg->msg, flags);
4385
	if ((issue_flags & IO_URING_F_NONBLOCK) && ret == -EAGAIN)
4386 4387 4388
		return io_setup_async_msg(req, kmsg);
	if (ret == -ERESTARTSYS)
		ret = -EINTR;
J
Jens Axboe 已提交
4389

4390 4391 4392
	/* fast path, check for non-NULL to avoid function call */
	if (kmsg->free_iov)
		kfree(kmsg->free_iov);
P
Pavel Begunkov 已提交
4393
	req->flags &= ~REQ_F_NEED_CLEANUP;
4394
	if (ret < min_ret)
4395
		req_set_fail(req);
4396
	__io_req_complete(req, issue_flags, ret, 0);
4397
	return 0;
4398
}
J
Jens Axboe 已提交
4399

4400
static int io_send(struct io_kiocb *req, unsigned int issue_flags)
4401
{
4402 4403 4404
	struct io_sr_msg *sr = &req->sr_msg;
	struct msghdr msg;
	struct iovec iov;
4405
	struct socket *sock;
4406
	unsigned flags;
4407
	int min_ret = 0;
4408 4409
	int ret;

4410
	sock = sock_from_file(req->file);
4411
	if (unlikely(!sock))
4412
		return -ENOTSOCK;
4413

4414 4415
	ret = import_single_range(WRITE, sr->buf, sr->len, &iov, &msg.msg_iter);
	if (unlikely(ret))
Z
Zheng Bin 已提交
4416
		return ret;
4417

4418 4419 4420 4421
	msg.msg_name = NULL;
	msg.msg_control = NULL;
	msg.msg_controllen = 0;
	msg.msg_namelen = 0;
4422

4423 4424
	flags = req->sr_msg.msg_flags;
	if (issue_flags & IO_URING_F_NONBLOCK)
4425
		flags |= MSG_DONTWAIT;
4426 4427 4428
	if (flags & MSG_WAITALL)
		min_ret = iov_iter_count(&msg.msg_iter);

4429 4430
	msg.msg_flags = flags;
	ret = sock_sendmsg(sock, &msg);
4431
	if ((issue_flags & IO_URING_F_NONBLOCK) && ret == -EAGAIN)
4432 4433 4434
		return -EAGAIN;
	if (ret == -ERESTARTSYS)
		ret = -EINTR;
4435

4436
	if (ret < min_ret)
4437
		req_set_fail(req);
4438
	__io_req_complete(req, issue_flags, ret, 0);
4439 4440 4441
	return 0;
}

4442 4443
static int __io_recvmsg_copy_hdr(struct io_kiocb *req,
				 struct io_async_msghdr *iomsg)
4444 4445 4446 4447 4448 4449
{
	struct io_sr_msg *sr = &req->sr_msg;
	struct iovec __user *uiov;
	size_t iov_len;
	int ret;

4450 4451
	ret = __copy_msghdr_from_user(&iomsg->msg, sr->umsg,
					&iomsg->uaddr, &uiov, &iov_len);
4452 4453 4454 4455 4456 4457
	if (ret)
		return ret;

	if (req->flags & REQ_F_BUFFER_SELECT) {
		if (iov_len > 1)
			return -EINVAL;
4458
		if (copy_from_user(iomsg->fast_iov, uiov, sizeof(*uiov)))
4459
			return -EFAULT;
4460
		sr->len = iomsg->fast_iov[0].iov_len;
4461
		iomsg->free_iov = NULL;
4462
	} else {
4463
		iomsg->free_iov = iomsg->fast_iov;
4464
		ret = __import_iovec(READ, uiov, iov_len, UIO_FASTIOV,
4465
				     &iomsg->free_iov, &iomsg->msg.msg_iter,
4466
				     false);
4467 4468 4469 4470 4471 4472 4473 4474 4475
		if (ret > 0)
			ret = 0;
	}

	return ret;
}

#ifdef CONFIG_COMPAT
static int __io_compat_recvmsg_copy_hdr(struct io_kiocb *req,
4476
					struct io_async_msghdr *iomsg)
4477 4478 4479 4480 4481 4482 4483
{
	struct io_sr_msg *sr = &req->sr_msg;
	struct compat_iovec __user *uiov;
	compat_uptr_t ptr;
	compat_size_t len;
	int ret;

4484 4485
	ret = __get_compat_msghdr(&iomsg->msg, sr->umsg_compat, &iomsg->uaddr,
				  &ptr, &len);
4486 4487 4488 4489 4490 4491 4492 4493 4494 4495 4496 4497 4498 4499 4500
	if (ret)
		return ret;

	uiov = compat_ptr(ptr);
	if (req->flags & REQ_F_BUFFER_SELECT) {
		compat_ssize_t clen;

		if (len > 1)
			return -EINVAL;
		if (!access_ok(uiov, sizeof(*uiov)))
			return -EFAULT;
		if (__get_user(clen, &uiov->iov_len))
			return -EFAULT;
		if (clen < 0)
			return -EINVAL;
4501
		sr->len = clen;
4502
		iomsg->free_iov = NULL;
4503
	} else {
4504
		iomsg->free_iov = iomsg->fast_iov;
4505
		ret = __import_iovec(READ, (struct iovec __user *)uiov, len,
4506
				   UIO_FASTIOV, &iomsg->free_iov,
4507
				   &iomsg->msg.msg_iter, true);
4508 4509 4510 4511 4512 4513 4514 4515
		if (ret < 0)
			return ret;
	}

	return 0;
}
#endif

4516 4517
static int io_recvmsg_copy_hdr(struct io_kiocb *req,
			       struct io_async_msghdr *iomsg)
4518
{
4519
	iomsg->msg.msg_name = &iomsg->addr;
4520 4521 4522

#ifdef CONFIG_COMPAT
	if (req->ctx->compat)
4523
		return __io_compat_recvmsg_copy_hdr(req, iomsg);
4524
#endif
4525

4526
	return __io_recvmsg_copy_hdr(req, iomsg);
4527 4528
}

4529
static struct io_buffer *io_recv_buffer_select(struct io_kiocb *req,
4530
					       bool needs_lock)
4531 4532 4533 4534 4535 4536 4537 4538 4539 4540 4541
{
	struct io_sr_msg *sr = &req->sr_msg;
	struct io_buffer *kbuf;

	kbuf = io_buffer_select(req, &sr->len, sr->bgid, sr->kbuf, needs_lock);
	if (IS_ERR(kbuf))
		return kbuf;

	sr->kbuf = kbuf;
	req->flags |= REQ_F_BUFFER_SELECTED;
	return kbuf;
4542 4543
}

4544 4545 4546 4547 4548
static inline unsigned int io_put_recv_kbuf(struct io_kiocb *req)
{
	return io_put_kbuf(req, req->sr_msg.kbuf);
}

4549
static int io_recvmsg_prep_async(struct io_kiocb *req)
J
Jens Axboe 已提交
4550
{
P
Pavel Begunkov 已提交
4551
	int ret;
4552

4553 4554 4555 4556 4557 4558 4559 4560 4561 4562
	ret = io_recvmsg_copy_hdr(req, req->async_data);
	if (!ret)
		req->flags |= REQ_F_NEED_CLEANUP;
	return ret;
}

static int io_recvmsg_prep(struct io_kiocb *req, const struct io_uring_sqe *sqe)
{
	struct io_sr_msg *sr = &req->sr_msg;

4563 4564 4565
	if (unlikely(req->ctx->flags & IORING_SETUP_IOPOLL))
		return -EINVAL;

4566
	sr->umsg = u64_to_user_ptr(READ_ONCE(sqe->addr));
4567
	sr->len = READ_ONCE(sqe->len);
4568
	sr->bgid = READ_ONCE(sqe->buf_group);
4569 4570 4571
	sr->msg_flags = READ_ONCE(sqe->msg_flags) | MSG_NOSIGNAL;
	if (sr->msg_flags & MSG_DONTWAIT)
		req->flags |= REQ_F_NOWAIT;
4572

4573 4574 4575 4576
#ifdef CONFIG_COMPAT
	if (req->ctx->compat)
		sr->msg_flags |= MSG_CMSG_COMPAT;
#endif
4577
	return 0;
J
Jens Axboe 已提交
4578 4579
}

4580
static int io_recvmsg(struct io_kiocb *req, unsigned int issue_flags)
J
Jens Axboe 已提交
4581
{
4582
	struct io_async_msghdr iomsg, *kmsg;
4583
	struct socket *sock;
4584
	struct io_buffer *kbuf;
4585
	unsigned flags;
4586
	int min_ret = 0;
4587
	int ret, cflags = 0;
4588
	bool force_nonblock = issue_flags & IO_URING_F_NONBLOCK;
4589

4590
	sock = sock_from_file(req->file);
4591
	if (unlikely(!sock))
4592
		return -ENOTSOCK;
4593

4594 4595
	kmsg = req->async_data;
	if (!kmsg) {
4596 4597
		ret = io_recvmsg_copy_hdr(req, &iomsg);
		if (ret)
4598
			return ret;
4599 4600
		kmsg = &iomsg;
	}
4601

4602
	if (req->flags & REQ_F_BUFFER_SELECT) {
4603
		kbuf = io_recv_buffer_select(req, !force_nonblock);
4604
		if (IS_ERR(kbuf))
4605
			return PTR_ERR(kbuf);
4606
		kmsg->fast_iov[0].iov_base = u64_to_user_ptr(kbuf->addr);
4607 4608
		kmsg->fast_iov[0].iov_len = req->sr_msg.len;
		iov_iter_init(&kmsg->msg.msg_iter, READ, kmsg->fast_iov,
4609 4610
				1, req->sr_msg.len);
	}
4611

4612 4613
	flags = req->sr_msg.msg_flags;
	if (force_nonblock)
4614
		flags |= MSG_DONTWAIT;
4615 4616 4617
	if (flags & MSG_WAITALL)
		min_ret = iov_iter_count(&kmsg->msg.msg_iter);

4618 4619
	ret = __sys_recvmsg_sock(sock, &kmsg->msg, req->sr_msg.umsg,
					kmsg->uaddr, flags);
4620 4621
	if (force_nonblock && ret == -EAGAIN)
		return io_setup_async_msg(req, kmsg);
4622 4623
	if (ret == -ERESTARTSYS)
		ret = -EINTR;
4624

4625 4626
	if (req->flags & REQ_F_BUFFER_SELECTED)
		cflags = io_put_recv_kbuf(req);
4627 4628 4629
	/* fast path, check for non-NULL to avoid function call */
	if (kmsg->free_iov)
		kfree(kmsg->free_iov);
P
Pavel Begunkov 已提交
4630
	req->flags &= ~REQ_F_NEED_CLEANUP;
4631
	if (ret < min_ret || ((flags & MSG_WAITALL) && (kmsg->msg.msg_flags & (MSG_TRUNC | MSG_CTRUNC))))
4632
		req_set_fail(req);
4633
	__io_req_complete(req, issue_flags, ret, cflags);
4634
	return 0;
J
Jens Axboe 已提交
4635
}
4636

4637
static int io_recv(struct io_kiocb *req, unsigned int issue_flags)
4638
{
4639
	struct io_buffer *kbuf;
4640 4641 4642
	struct io_sr_msg *sr = &req->sr_msg;
	struct msghdr msg;
	void __user *buf = sr->buf;
4643
	struct socket *sock;
4644 4645
	struct iovec iov;
	unsigned flags;
4646
	int min_ret = 0;
4647
	int ret, cflags = 0;
4648
	bool force_nonblock = issue_flags & IO_URING_F_NONBLOCK;
4649

4650
	sock = sock_from_file(req->file);
4651
	if (unlikely(!sock))
4652
		return -ENOTSOCK;
4653

4654
	if (req->flags & REQ_F_BUFFER_SELECT) {
4655
		kbuf = io_recv_buffer_select(req, !force_nonblock);
4656 4657
		if (IS_ERR(kbuf))
			return PTR_ERR(kbuf);
4658
		buf = u64_to_user_ptr(kbuf->addr);
4659
	}
4660

4661
	ret = import_single_range(READ, buf, sr->len, &iov, &msg.msg_iter);
4662 4663
	if (unlikely(ret))
		goto out_free;
4664

4665 4666 4667 4668 4669 4670
	msg.msg_name = NULL;
	msg.msg_control = NULL;
	msg.msg_controllen = 0;
	msg.msg_namelen = 0;
	msg.msg_iocb = NULL;
	msg.msg_flags = 0;
4671

4672 4673
	flags = req->sr_msg.msg_flags;
	if (force_nonblock)
4674
		flags |= MSG_DONTWAIT;
4675 4676 4677
	if (flags & MSG_WAITALL)
		min_ret = iov_iter_count(&msg.msg_iter);

4678 4679 4680 4681 4682
	ret = sock_recvmsg(sock, &msg, flags);
	if (force_nonblock && ret == -EAGAIN)
		return -EAGAIN;
	if (ret == -ERESTARTSYS)
		ret = -EINTR;
4683
out_free:
4684 4685
	if (req->flags & REQ_F_BUFFER_SELECTED)
		cflags = io_put_recv_kbuf(req);
4686
	if (ret < min_ret || ((flags & MSG_WAITALL) && (msg.msg_flags & (MSG_TRUNC | MSG_CTRUNC))))
4687
		req_set_fail(req);
4688
	__io_req_complete(req, issue_flags, ret, cflags);
4689 4690 4691
	return 0;
}

4692
static int io_accept_prep(struct io_kiocb *req, const struct io_uring_sqe *sqe)
4693
{
4694 4695
	struct io_accept *accept = &req->accept;

4696
	if (unlikely(req->ctx->flags & IORING_SETUP_IOPOLL))
4697
		return -EINVAL;
4698
	if (sqe->ioprio || sqe->len || sqe->buf_index)
4699 4700
		return -EINVAL;

4701 4702
	accept->addr = u64_to_user_ptr(READ_ONCE(sqe->addr));
	accept->addr_len = u64_to_user_ptr(READ_ONCE(sqe->addr2));
4703
	accept->flags = READ_ONCE(sqe->accept_flags);
4704
	accept->nofile = rlimit(RLIMIT_NOFILE);
4705 4706
	return 0;
}
4707

4708
static int io_accept(struct io_kiocb *req, unsigned int issue_flags)
4709 4710
{
	struct io_accept *accept = &req->accept;
4711
	bool force_nonblock = issue_flags & IO_URING_F_NONBLOCK;
4712
	unsigned int file_flags = force_nonblock ? O_NONBLOCK : 0;
4713 4714
	int ret;

4715 4716 4717
	if (req->file->f_flags & O_NONBLOCK)
		req->flags |= REQ_F_NOWAIT;

4718
	ret = __sys_accept4_file(req->file, file_flags, accept->addr,
4719 4720
					accept->addr_len, accept->flags,
					accept->nofile);
4721
	if (ret == -EAGAIN && force_nonblock)
4722
		return -EAGAIN;
4723 4724 4725
	if (ret < 0) {
		if (ret == -ERESTARTSYS)
			ret = -EINTR;
4726
		req_set_fail(req);
4727
	}
4728
	__io_req_complete(req, issue_flags, ret, 0);
4729
	return 0;
4730 4731
}

4732 4733 4734 4735 4736 4737 4738 4739
static int io_connect_prep_async(struct io_kiocb *req)
{
	struct io_async_connect *io = req->async_data;
	struct io_connect *conn = &req->connect;

	return move_addr_to_kernel(conn->addr, conn->addr_len, &io->address);
}

4740
static int io_connect_prep(struct io_kiocb *req, const struct io_uring_sqe *sqe)
4741
{
4742
	struct io_connect *conn = &req->connect;
4743

4744
	if (unlikely(req->ctx->flags & IORING_SETUP_IOPOLL))
4745 4746 4747 4748
		return -EINVAL;
	if (sqe->ioprio || sqe->len || sqe->buf_index || sqe->rw_flags)
		return -EINVAL;

4749 4750
	conn->addr = u64_to_user_ptr(READ_ONCE(sqe->addr));
	conn->addr_len =  READ_ONCE(sqe->addr2);
4751
	return 0;
4752 4753
}

4754
static int io_connect(struct io_kiocb *req, unsigned int issue_flags)
4755
{
4756
	struct io_async_connect __io, *io;
4757
	unsigned file_flags;
4758
	int ret;
4759
	bool force_nonblock = issue_flags & IO_URING_F_NONBLOCK;
4760

4761 4762
	if (req->async_data) {
		io = req->async_data;
4763
	} else {
4764 4765
		ret = move_addr_to_kernel(req->connect.addr,
						req->connect.addr_len,
4766
						&__io.address);
4767 4768 4769 4770 4771
		if (ret)
			goto out;
		io = &__io;
	}

4772 4773
	file_flags = force_nonblock ? O_NONBLOCK : 0;

4774
	ret = __sys_connect_file(req->file, &io->address,
4775
					req->connect.addr_len, file_flags);
4776
	if ((ret == -EAGAIN || ret == -EINPROGRESS) && force_nonblock) {
4777
		if (req->async_data)
4778
			return -EAGAIN;
4779
		if (io_alloc_async_data(req)) {
4780 4781 4782
			ret = -ENOMEM;
			goto out;
		}
4783
		memcpy(req->async_data, &__io, sizeof(__io));
4784
		return -EAGAIN;
4785
	}
4786 4787
	if (ret == -ERESTARTSYS)
		ret = -EINTR;
4788
out:
J
Jens Axboe 已提交
4789
	if (ret < 0)
4790
		req_set_fail(req);
4791
	__io_req_complete(req, issue_flags, ret, 0);
4792
	return 0;
4793 4794
}
#else /* !CONFIG_NET */
4795 4796 4797 4798 4799 4800 4801 4802 4803 4804 4805 4806 4807 4808 4809 4810 4811 4812 4813 4814 4815 4816 4817 4818 4819 4820
#define IO_NETOP_FN(op)							\
static int io_##op(struct io_kiocb *req, unsigned int issue_flags)	\
{									\
	return -EOPNOTSUPP;						\
}

#define IO_NETOP_PREP(op)						\
IO_NETOP_FN(op)								\
static int io_##op##_prep(struct io_kiocb *req, const struct io_uring_sqe *sqe) \
{									\
	return -EOPNOTSUPP;						\
}									\

#define IO_NETOP_PREP_ASYNC(op)						\
IO_NETOP_PREP(op)							\
static int io_##op##_prep_async(struct io_kiocb *req)			\
{									\
	return -EOPNOTSUPP;						\
}

IO_NETOP_PREP_ASYNC(sendmsg);
IO_NETOP_PREP_ASYNC(recvmsg);
IO_NETOP_PREP_ASYNC(connect);
IO_NETOP_PREP(accept);
IO_NETOP_FN(send);
IO_NETOP_FN(recv);
4821
#endif /* CONFIG_NET */
4822

4823 4824 4825 4826 4827
struct io_poll_table {
	struct poll_table_struct pt;
	struct io_kiocb *req;
	int error;
};
4828

4829 4830 4831
static int __io_async_wake(struct io_kiocb *req, struct io_poll_iocb *poll,
			   __poll_t mask, task_work_func_t func)
{
4832
	int ret;
4833 4834 4835 4836 4837 4838 4839 4840 4841 4842

	/* for instances that support it check for an event match first: */
	if (mask && !(mask & poll->events))
		return 0;

	trace_io_uring_task_add(req->ctx, req->opcode, req->user_data, mask);

	list_del_init(&poll->wait.entry);

	req->result = mask;
4843
	req->task_work.func = func;
4844

4845
	/*
4846 4847 4848 4849
	 * If this fails, then the task is exiting. When a task exits, the
	 * work gets canceled, so just cancel this request as well instead
	 * of executing it. We can't safely execute it anyway, as we may not
	 * have the needed state needed for it anyway.
4850
	 */
4851
	ret = io_req_task_work_add(req);
4852
	if (unlikely(ret)) {
4853
		WRITE_ONCE(poll->canceled, true);
4854
		io_req_task_work_add_fallback(req, func);
4855
	}
4856 4857 4858
	return 1;
}

4859 4860 4861 4862 4863 4864 4865 4866 4867 4868 4869 4870 4871 4872 4873 4874 4875 4876 4877 4878
static bool io_poll_rewait(struct io_kiocb *req, struct io_poll_iocb *poll)
	__acquires(&req->ctx->completion_lock)
{
	struct io_ring_ctx *ctx = req->ctx;

	if (!req->result && !READ_ONCE(poll->canceled)) {
		struct poll_table_struct pt = { ._key = poll->events };

		req->result = vfs_poll(req->file, &pt) & poll->events;
	}

	spin_lock_irq(&ctx->completion_lock);
	if (!req->result && !READ_ONCE(poll->canceled)) {
		add_wait_queue(poll->head, &poll->wait);
		return true;
	}

	return false;
}

4879
static struct io_poll_iocb *io_poll_get_double(struct io_kiocb *req)
4880
{
4881
	/* pure poll stashes this in ->async_data, poll driven retry elsewhere */
4882
	if (req->opcode == IORING_OP_POLL_ADD)
4883
		return req->async_data;
4884 4885 4886 4887 4888 4889 4890 4891 4892 4893 4894
	return req->apoll->double_poll;
}

static struct io_poll_iocb *io_poll_get_single(struct io_kiocb *req)
{
	if (req->opcode == IORING_OP_POLL_ADD)
		return &req->poll;
	return &req->apoll->poll;
}

static void io_poll_remove_double(struct io_kiocb *req)
4895
	__must_hold(&req->ctx->completion_lock)
4896 4897
{
	struct io_poll_iocb *poll = io_poll_get_double(req);
4898 4899 4900 4901 4902 4903 4904 4905 4906

	lockdep_assert_held(&req->ctx->completion_lock);

	if (poll && poll->head) {
		struct wait_queue_head *head = poll->head;

		spin_lock(&head->lock);
		list_del_init(&poll->wait.entry);
		if (poll->wait.private)
4907
			req_ref_put(req);
4908 4909 4910 4911 4912
		poll->head = NULL;
		spin_unlock(&head->lock);
	}
}

4913
static bool io_poll_complete(struct io_kiocb *req, __poll_t mask)
4914
	__must_hold(&req->ctx->completion_lock)
4915 4916
{
	struct io_ring_ctx *ctx = req->ctx;
4917
	unsigned flags = IORING_CQE_F_MORE;
4918
	int error;
4919

4920
	if (READ_ONCE(req->poll.canceled)) {
4921
		error = -ECANCELED;
4922
		req->poll.events |= EPOLLONESHOT;
4923
	} else {
4924
		error = mangle_poll(mask);
4925
	}
4926 4927
	if (req->poll.events & EPOLLONESHOT)
		flags = 0;
4928
	if (!io_cqring_fill_event(ctx, req->user_data, error, flags)) {
4929
		io_poll_remove_waitqs(req);
4930 4931 4932
		req->poll.done = true;
		flags = 0;
	}
4933 4934
	if (flags & IORING_CQE_F_MORE)
		ctx->cq_extra++;
4935 4936

	io_commit_cqring(ctx);
4937
	return !(flags & IORING_CQE_F_MORE);
4938 4939
}

4940
static void io_poll_task_func(struct callback_head *cb)
4941
{
4942
	struct io_kiocb *req = container_of(cb, struct io_kiocb, task_work);
4943
	struct io_ring_ctx *ctx = req->ctx;
4944
	struct io_kiocb *nxt;
4945 4946 4947

	if (io_poll_rewait(req, &req->poll)) {
		spin_unlock_irq(&ctx->completion_lock);
4948
	} else {
4949
		bool done;
4950

4951
		done = io_poll_complete(req, req->result);
4952 4953
		if (done) {
			hash_del(&req->hash_node);
4954
		} else {
4955 4956 4957
			req->result = 0;
			add_wait_queue(req->poll.head, &req->poll.wait);
		}
4958 4959
		spin_unlock_irq(&ctx->completion_lock);
		io_cqring_ev_posted(ctx);
4960

4961 4962 4963 4964 4965
		if (done) {
			nxt = io_put_req_find_next(req);
			if (nxt)
				__io_req_task_submit(nxt);
		}
4966
	}
4967 4968 4969 4970 4971 4972
}

static int io_poll_double_wake(struct wait_queue_entry *wait, unsigned mode,
			       int sync, void *key)
{
	struct io_kiocb *req = wait->private;
4973
	struct io_poll_iocb *poll = io_poll_get_single(req);
4974 4975 4976 4977 4978
	__poll_t mask = key_to_poll(key);

	/* for instances that support it check for an event match first: */
	if (mask && !(mask & poll->events))
		return 0;
4979 4980
	if (!(poll->events & EPOLLONESHOT))
		return poll->wait.func(&poll->wait, mode, sync, key);
4981

4982 4983
	list_del_init(&wait->entry);

4984
	if (poll && poll->head) {
4985 4986
		bool done;

4987 4988
		spin_lock(&poll->head->lock);
		done = list_empty(&poll->wait.entry);
4989
		if (!done)
4990
			list_del_init(&poll->wait.entry);
4991 4992
		/* make sure double remove sees this as being gone */
		wait->private = NULL;
4993
		spin_unlock(&poll->head->lock);
4994 4995 4996 4997
		if (!done) {
			/* use wait func handler, so it matches the rq type */
			poll->wait.func(&poll->wait, mode, sync, key);
		}
4998
	}
4999
	req_ref_put(req);
5000 5001 5002 5003 5004 5005 5006 5007 5008
	return 1;
}

static void io_init_poll_iocb(struct io_poll_iocb *poll, __poll_t events,
			      wait_queue_func_t wake_func)
{
	poll->head = NULL;
	poll->done = false;
	poll->canceled = false;
5009 5010 5011
#define IO_POLL_UNMASK	(EPOLLERR|EPOLLHUP|EPOLLNVAL|EPOLLRDHUP)
	/* mask in events that we always want/need */
	poll->events = events | IO_POLL_UNMASK;
5012 5013 5014 5015 5016
	INIT_LIST_HEAD(&poll->wait.entry);
	init_waitqueue_func_entry(&poll->wait, wake_func);
}

static void __io_queue_proc(struct io_poll_iocb *poll, struct io_poll_table *pt,
5017 5018
			    struct wait_queue_head *head,
			    struct io_poll_iocb **poll_ptr)
5019 5020 5021 5022 5023 5024 5025 5026 5027
{
	struct io_kiocb *req = pt->req;

	/*
	 * If poll->head is already set, it's because the file being polled
	 * uses multiple waitqueues for poll handling (eg one for read, one
	 * for write). Setup a separate io_poll_iocb if this happens.
	 */
	if (unlikely(poll->head)) {
5028 5029
		struct io_poll_iocb *poll_one = poll;

5030
		/* already have a 2nd entry, fail a third attempt */
5031
		if (*poll_ptr) {
5032 5033 5034
			pt->error = -EINVAL;
			return;
		}
5035 5036 5037 5038
		/*
		 * Can't handle multishot for double wait for now, turn it
		 * into one-shot mode.
		 */
5039 5040
		if (!(poll_one->events & EPOLLONESHOT))
			poll_one->events |= EPOLLONESHOT;
5041
		/* double add on the same waitqueue head, ignore */
5042
		if (poll_one->head == head)
5043
			return;
5044 5045 5046 5047 5048
		poll = kmalloc(sizeof(*poll), GFP_ATOMIC);
		if (!poll) {
			pt->error = -ENOMEM;
			return;
		}
5049
		io_init_poll_iocb(poll, poll_one->events, io_poll_double_wake);
5050
		req_ref_get(req);
5051
		poll->wait.private = req;
5052
		*poll_ptr = poll;
5053 5054 5055 5056
	}

	pt->error = 0;
	poll->head = head;
5057 5058 5059 5060 5061

	if (poll->events & EPOLLEXCLUSIVE)
		add_wait_queue_exclusive(head, &poll->wait);
	else
		add_wait_queue(head, &poll->wait);
5062 5063 5064 5065 5066 5067
}

static void io_async_queue_proc(struct file *file, struct wait_queue_head *head,
			       struct poll_table_struct *p)
{
	struct io_poll_table *pt = container_of(p, struct io_poll_table, pt);
5068
	struct async_poll *apoll = pt->req->apoll;
5069

5070
	__io_queue_proc(&apoll->poll, pt, head, &apoll->double_poll);
5071 5072
}

5073 5074 5075 5076 5077 5078 5079 5080
static void io_async_task_func(struct callback_head *cb)
{
	struct io_kiocb *req = container_of(cb, struct io_kiocb, task_work);
	struct async_poll *apoll = req->apoll;
	struct io_ring_ctx *ctx = req->ctx;

	trace_io_uring_task_run(req->ctx, req->opcode, req->user_data);

5081
	if (io_poll_rewait(req, &apoll->poll)) {
5082
		spin_unlock_irq(&ctx->completion_lock);
5083
		return;
5084 5085
	}

5086
	hash_del(&req->hash_node);
5087
	io_poll_remove_double(req);
5088 5089
	spin_unlock_irq(&ctx->completion_lock);

5090 5091 5092
	if (!READ_ONCE(apoll->poll.canceled))
		__io_req_task_submit(req);
	else
5093
		io_req_complete_failed(req, -ECANCELED);
5094 5095 5096 5097 5098 5099 5100 5101 5102 5103 5104 5105 5106 5107 5108 5109 5110 5111 5112 5113 5114 5115 5116 5117 5118 5119 5120 5121 5122 5123 5124 5125
}

static int io_async_wake(struct wait_queue_entry *wait, unsigned mode, int sync,
			void *key)
{
	struct io_kiocb *req = wait->private;
	struct io_poll_iocb *poll = &req->apoll->poll;

	trace_io_uring_poll_wake(req->ctx, req->opcode, req->user_data,
					key_to_poll(key));

	return __io_async_wake(req, poll, key_to_poll(key), io_async_task_func);
}

static void io_poll_req_insert(struct io_kiocb *req)
{
	struct io_ring_ctx *ctx = req->ctx;
	struct hlist_head *list;

	list = &ctx->cancel_hash[hash_long(req->user_data, ctx->cancel_hash_bits)];
	hlist_add_head(&req->hash_node, list);
}

static __poll_t __io_arm_poll_handler(struct io_kiocb *req,
				      struct io_poll_iocb *poll,
				      struct io_poll_table *ipt, __poll_t mask,
				      wait_queue_func_t wake_func)
	__acquires(&ctx->completion_lock)
{
	struct io_ring_ctx *ctx = req->ctx;
	bool cancel = false;

5126
	INIT_HLIST_NODE(&req->hash_node);
5127
	io_init_poll_iocb(poll, mask, wake_func);
5128
	poll->file = req->file;
5129
	poll->wait.private = req;
5130 5131 5132 5133 5134 5135 5136 5137 5138 5139 5140 5141 5142 5143 5144 5145

	ipt->pt._key = mask;
	ipt->req = req;
	ipt->error = -EINVAL;

	mask = vfs_poll(req->file, &ipt->pt) & poll->events;

	spin_lock_irq(&ctx->completion_lock);
	if (likely(poll->head)) {
		spin_lock(&poll->head->lock);
		if (unlikely(list_empty(&poll->wait.entry))) {
			if (ipt->error)
				cancel = true;
			ipt->error = 0;
			mask = 0;
		}
5146
		if ((mask && (poll->events & EPOLLONESHOT)) || ipt->error)
5147 5148 5149 5150 5151 5152 5153 5154 5155 5156 5157 5158 5159 5160 5161 5162 5163 5164
			list_del_init(&poll->wait.entry);
		else if (cancel)
			WRITE_ONCE(poll->canceled, true);
		else if (!poll->done) /* actually waiting for an event */
			io_poll_req_insert(req);
		spin_unlock(&poll->head->lock);
	}

	return mask;
}

static bool io_arm_poll_handler(struct io_kiocb *req)
{
	const struct io_op_def *def = &io_op_defs[req->opcode];
	struct io_ring_ctx *ctx = req->ctx;
	struct async_poll *apoll;
	struct io_poll_table ipt;
	__poll_t mask, ret;
5165
	int rw;
5166 5167 5168

	if (!req->file || !file_can_poll(req->file))
		return false;
5169
	if (req->flags & REQ_F_POLLED)
5170
		return false;
5171 5172 5173 5174 5175 5176 5177
	if (def->pollin)
		rw = READ;
	else if (def->pollout)
		rw = WRITE;
	else
		return false;
	/* if we can't nonblock try, then no point in arming a poll handler */
5178
	if (!io_file_supports_async(req, rw))
5179 5180 5181 5182 5183
		return false;

	apoll = kmalloc(sizeof(*apoll), GFP_ATOMIC);
	if (unlikely(!apoll))
		return false;
5184
	apoll->double_poll = NULL;
5185 5186 5187 5188

	req->flags |= REQ_F_POLLED;
	req->apoll = apoll;

5189
	mask = EPOLLONESHOT;
5190
	if (def->pollin)
5191
		mask |= POLLIN | POLLRDNORM;
5192 5193
	if (def->pollout)
		mask |= POLLOUT | POLLWRNORM;
5194 5195 5196 5197 5198 5199

	/* If reading from MSG_ERRQUEUE using recvmsg, ignore POLLIN */
	if ((req->opcode == IORING_OP_RECVMSG) &&
	    (req->sr_msg.msg_flags & MSG_ERRQUEUE))
		mask &= ~POLLIN;

5200 5201 5202 5203 5204 5205
	mask |= POLLERR | POLLPRI;

	ipt.pt._qproc = io_async_queue_proc;

	ret = __io_arm_poll_handler(req, &apoll->poll, &ipt, mask,
					io_async_wake);
5206
	if (ret || ipt.error) {
5207
		io_poll_remove_double(req);
5208 5209 5210 5211 5212 5213 5214 5215 5216 5217
		spin_unlock_irq(&ctx->completion_lock);
		return false;
	}
	spin_unlock_irq(&ctx->completion_lock);
	trace_io_uring_poll_arm(ctx, req->opcode, req->user_data, mask,
					apoll->poll.events);
	return true;
}

static bool __io_poll_remove_one(struct io_kiocb *req,
5218
				 struct io_poll_iocb *poll, bool do_cancel)
5219
	__must_hold(&req->ctx->completion_lock)
5220
{
5221
	bool do_complete = false;
5222

5223 5224
	if (!poll->head)
		return false;
5225
	spin_lock(&poll->head->lock);
5226 5227
	if (do_cancel)
		WRITE_ONCE(poll->canceled, true);
5228 5229
	if (!list_empty(&poll->wait.entry)) {
		list_del_init(&poll->wait.entry);
5230
		do_complete = true;
5231 5232
	}
	spin_unlock(&poll->head->lock);
5233
	hash_del(&req->hash_node);
5234 5235 5236
	return do_complete;
}

5237
static bool io_poll_remove_waitqs(struct io_kiocb *req)
5238
	__must_hold(&req->ctx->completion_lock)
5239 5240 5241
{
	bool do_complete;

5242
	io_poll_remove_double(req);
5243
	do_complete = __io_poll_remove_one(req, io_poll_get_single(req), true);
5244

5245
	if (req->opcode != IORING_OP_POLL_ADD && do_complete) {
5246
		/* non-poll requests have submit ref still */
5247
		req_ref_put(req);
5248
	}
5249 5250 5251 5252
	return do_complete;
}

static bool io_poll_remove_one(struct io_kiocb *req)
5253
	__must_hold(&req->ctx->completion_lock)
5254 5255
{
	bool do_complete;
5256

5257
	do_complete = io_poll_remove_waitqs(req);
5258
	if (do_complete) {
5259
		io_cqring_fill_event(req->ctx, req->user_data, -ECANCELED, 0);
5260
		io_commit_cqring(req->ctx);
5261
		req_set_fail(req);
5262
		io_put_req_deferred(req, 1);
5263 5264 5265
	}

	return do_complete;
5266 5267
}

5268 5269 5270
/*
 * Returns true if we found and killed one or more poll requests
 */
5271
static bool io_poll_remove_all(struct io_ring_ctx *ctx, struct task_struct *tsk,
5272
			       bool cancel_all)
5273
{
5274
	struct hlist_node *tmp;
5275
	struct io_kiocb *req;
5276
	int posted = 0, i;
5277 5278

	spin_lock_irq(&ctx->completion_lock);
5279 5280 5281 5282
	for (i = 0; i < (1U << ctx->cancel_hash_bits); i++) {
		struct hlist_head *list;

		list = &ctx->cancel_hash[i];
5283
		hlist_for_each_entry_safe(req, tmp, list, hash_node) {
5284
			if (io_match_task(req, tsk, cancel_all))
5285 5286
				posted += io_poll_remove_one(req);
		}
5287 5288
	}
	spin_unlock_irq(&ctx->completion_lock);
5289

5290 5291
	if (posted)
		io_cqring_ev_posted(ctx);
5292 5293

	return posted != 0;
5294 5295
}

5296 5297
static struct io_kiocb *io_poll_find(struct io_ring_ctx *ctx, __u64 sqe_addr,
				     bool poll_only)
5298
	__must_hold(&ctx->completion_lock)
5299
{
5300
	struct hlist_head *list;
5301 5302
	struct io_kiocb *req;

5303 5304
	list = &ctx->cancel_hash[hash_long(sqe_addr, ctx->cancel_hash_bits)];
	hlist_for_each_entry(req, list, hash_node) {
5305 5306
		if (sqe_addr != req->user_data)
			continue;
5307 5308
		if (poll_only && req->opcode != IORING_OP_POLL_ADD)
			continue;
5309
		return req;
5310
	}
5311 5312 5313
	return NULL;
}

5314 5315
static int io_poll_cancel(struct io_ring_ctx *ctx, __u64 sqe_addr,
			  bool poll_only)
5316
	__must_hold(&ctx->completion_lock)
5317 5318 5319
{
	struct io_kiocb *req;

5320
	req = io_poll_find(ctx, sqe_addr, poll_only);
5321 5322 5323 5324 5325 5326
	if (!req)
		return -ENOENT;
	if (io_poll_remove_one(req))
		return 0;

	return -EALREADY;
5327 5328
}

5329 5330 5331 5332
static __poll_t io_poll_parse_events(const struct io_uring_sqe *sqe,
				     unsigned int flags)
{
	u32 events;
5333

5334 5335 5336 5337 5338 5339 5340
	events = READ_ONCE(sqe->poll32_events);
#ifdef __BIG_ENDIAN
	events = swahw32(events);
#endif
	if (!(flags & IORING_POLL_ADD_MULTI))
		events |= EPOLLONESHOT;
	return demangle_poll(events) | (events & (EPOLLEXCLUSIVE|EPOLLONESHOT));
5341 5342
}

5343
static int io_poll_update_prep(struct io_kiocb *req,
5344
			       const struct io_uring_sqe *sqe)
5345
{
5346 5347 5348
	struct io_poll_update *upd = &req->poll_update;
	u32 flags;

5349 5350
	if (unlikely(req->ctx->flags & IORING_SETUP_IOPOLL))
		return -EINVAL;
5351 5352 5353 5354 5355 5356 5357 5358
	if (sqe->ioprio || sqe->buf_index)
		return -EINVAL;
	flags = READ_ONCE(sqe->len);
	if (flags & ~(IORING_POLL_UPDATE_EVENTS | IORING_POLL_UPDATE_USER_DATA |
		      IORING_POLL_ADD_MULTI))
		return -EINVAL;
	/* meaningless without update */
	if (flags == IORING_POLL_ADD_MULTI)
5359 5360
		return -EINVAL;

5361 5362 5363
	upd->old_user_data = READ_ONCE(sqe->addr);
	upd->update_events = flags & IORING_POLL_UPDATE_EVENTS;
	upd->update_user_data = flags & IORING_POLL_UPDATE_USER_DATA;
5364

5365 5366 5367 5368 5369 5370 5371
	upd->new_user_data = READ_ONCE(sqe->off);
	if (!upd->update_user_data && upd->new_user_data)
		return -EINVAL;
	if (upd->update_events)
		upd->events = io_poll_parse_events(sqe, flags);
	else if (sqe->poll32_events)
		return -EINVAL;
5372 5373 5374 5375 5376 5377 5378

	return 0;
}

static int io_poll_wake(struct wait_queue_entry *wait, unsigned mode, int sync,
			void *key)
{
5379 5380
	struct io_kiocb *req = wait->private;
	struct io_poll_iocb *poll = &req->poll;
5381

5382
	return __io_async_wake(req, poll, key_to_poll(key), io_poll_task_func);
5383 5384 5385 5386 5387 5388 5389
}

static void io_poll_queue_proc(struct file *file, struct wait_queue_head *head,
			       struct poll_table_struct *p)
{
	struct io_poll_table *pt = container_of(p, struct io_poll_table, pt);

5390
	__io_queue_proc(&pt->req->poll, pt, head, (struct io_poll_iocb **) &pt->req->async_data);
5391 5392
}

5393
static int io_poll_add_prep(struct io_kiocb *req, const struct io_uring_sqe *sqe)
5394 5395
{
	struct io_poll_iocb *poll = &req->poll;
5396
	u32 flags;
5397 5398 5399

	if (unlikely(req->ctx->flags & IORING_SETUP_IOPOLL))
		return -EINVAL;
5400
	if (sqe->ioprio || sqe->buf_index || sqe->off || sqe->addr)
5401 5402
		return -EINVAL;
	flags = READ_ONCE(sqe->len);
5403
	if (flags & ~IORING_POLL_ADD_MULTI)
5404 5405
		return -EINVAL;

5406
	poll->events = io_poll_parse_events(sqe, flags);
5407 5408 5409
	return 0;
}

5410
static int io_poll_add(struct io_kiocb *req, unsigned int issue_flags)
5411 5412 5413 5414 5415 5416
{
	struct io_poll_iocb *poll = &req->poll;
	struct io_ring_ctx *ctx = req->ctx;
	struct io_poll_table ipt;
	__poll_t mask;

5417
	ipt.pt._qproc = io_poll_queue_proc;
5418

5419 5420
	mask = __io_arm_poll_handler(req, &req->poll, &ipt, poll->events,
					io_poll_wake);
5421

J
Jens Axboe 已提交
5422
	if (mask) { /* no async, we'd stolen it */
5423
		ipt.error = 0;
5424
		io_poll_complete(req, mask);
5425 5426 5427
	}
	spin_unlock_irq(&ctx->completion_lock);

J
Jens Axboe 已提交
5428 5429
	if (mask) {
		io_cqring_ev_posted(ctx);
5430 5431
		if (poll->events & EPOLLONESHOT)
			io_put_req(req);
5432
	}
J
Jens Axboe 已提交
5433
	return ipt.error;
5434 5435
}

5436
static int io_poll_update(struct io_kiocb *req, unsigned int issue_flags)
5437 5438 5439
{
	struct io_ring_ctx *ctx = req->ctx;
	struct io_kiocb *preq;
5440
	bool completing;
5441 5442 5443
	int ret;

	spin_lock_irq(&ctx->completion_lock);
5444
	preq = io_poll_find(ctx, req->poll_update.old_user_data, true);
5445 5446 5447 5448
	if (!preq) {
		ret = -ENOENT;
		goto err;
	}
5449

5450 5451 5452 5453 5454 5455
	if (!req->poll_update.update_events && !req->poll_update.update_user_data) {
		completing = true;
		ret = io_poll_remove_one(preq) ? 0 : -EALREADY;
		goto err;
	}

5456 5457 5458 5459 5460 5461 5462 5463 5464
	/*
	 * Don't allow racy completion with singleshot, as we cannot safely
	 * update those. For multishot, if we're racing with completion, just
	 * let completion re-add it.
	 */
	completing = !__io_poll_remove_one(preq, &preq->poll, false);
	if (completing && (preq->poll.events & EPOLLONESHOT)) {
		ret = -EALREADY;
		goto err;
5465 5466 5467 5468 5469
	}
	/* we now have a detached poll request. reissue. */
	ret = 0;
err:
	if (ret < 0) {
5470
		spin_unlock_irq(&ctx->completion_lock);
5471
		req_set_fail(req);
5472 5473 5474 5475
		io_req_complete(req, ret);
		return 0;
	}
	/* only mask one event flags, keep behavior flags */
5476
	if (req->poll_update.update_events) {
5477
		preq->poll.events &= ~0xffff;
5478
		preq->poll.events |= req->poll_update.events & 0xffff;
5479 5480
		preq->poll.events |= IO_POLL_UNMASK;
	}
5481 5482
	if (req->poll_update.update_user_data)
		preq->user_data = req->poll_update.new_user_data;
5483 5484
	spin_unlock_irq(&ctx->completion_lock);

5485 5486 5487
	/* complete update request, we're done with it */
	io_req_complete(req, ret);

5488
	if (!completing) {
5489
		ret = io_poll_add(preq, issue_flags);
5490
		if (ret < 0) {
5491
			req_set_fail(preq);
5492 5493
			io_req_complete(preq, ret);
		}
5494 5495 5496 5497
	}
	return 0;
}

J
Jens Axboe 已提交
5498 5499
static enum hrtimer_restart io_timeout_fn(struct hrtimer *timer)
{
5500 5501 5502 5503
	struct io_timeout_data *data = container_of(timer,
						struct io_timeout_data, timer);
	struct io_kiocb *req = data->req;
	struct io_ring_ctx *ctx = req->ctx;
J
Jens Axboe 已提交
5504 5505 5506
	unsigned long flags;

	spin_lock_irqsave(&ctx->completion_lock, flags);
5507
	list_del_init(&req->timeout.list);
5508 5509 5510
	atomic_set(&req->ctx->cq_timeouts,
		atomic_read(&req->ctx->cq_timeouts) + 1);

5511
	io_cqring_fill_event(ctx, req->user_data, -ETIME, 0);
J
Jens Axboe 已提交
5512 5513 5514 5515
	io_commit_cqring(ctx);
	spin_unlock_irqrestore(&ctx->completion_lock, flags);

	io_cqring_ev_posted(ctx);
5516
	req_set_fail(req);
J
Jens Axboe 已提交
5517 5518 5519 5520
	io_put_req(req);
	return HRTIMER_NORESTART;
}

5521 5522
static struct io_kiocb *io_timeout_extract(struct io_ring_ctx *ctx,
					   __u64 user_data)
5523
	__must_hold(&ctx->completion_lock)
5524
{
5525
	struct io_timeout_data *io;
5526
	struct io_kiocb *req;
5527
	bool found = false;
5528

P
Pavel Begunkov 已提交
5529
	list_for_each_entry(req, &ctx->timeout_list, timeout.list) {
5530 5531
		found = user_data == req->user_data;
		if (found)
5532 5533
			break;
	}
5534 5535
	if (!found)
		return ERR_PTR(-ENOENT);
5536 5537

	io = req->async_data;
5538
	if (hrtimer_try_to_cancel(&io->timer) == -1)
5539
		return ERR_PTR(-EALREADY);
5540
	list_del_init(&req->timeout.list);
5541 5542
	return req;
}
5543

5544
static int io_timeout_cancel(struct io_ring_ctx *ctx, __u64 user_data)
5545
	__must_hold(&ctx->completion_lock)
5546 5547 5548 5549 5550
{
	struct io_kiocb *req = io_timeout_extract(ctx, user_data);

	if (IS_ERR(req))
		return PTR_ERR(req);
5551

5552
	req_set_fail(req);
5553
	io_cqring_fill_event(ctx, req->user_data, -ECANCELED, 0);
5554
	io_put_req_deferred(req, 1);
5555 5556 5557
	return 0;
}

P
Pavel Begunkov 已提交
5558 5559
static int io_timeout_update(struct io_ring_ctx *ctx, __u64 user_data,
			     struct timespec64 *ts, enum hrtimer_mode mode)
5560
	__must_hold(&ctx->completion_lock)
5561
{
P
Pavel Begunkov 已提交
5562 5563
	struct io_kiocb *req = io_timeout_extract(ctx, user_data);
	struct io_timeout_data *data;
5564

P
Pavel Begunkov 已提交
5565 5566
	if (IS_ERR(req))
		return PTR_ERR(req);
5567

P
Pavel Begunkov 已提交
5568 5569 5570 5571 5572 5573 5574
	req->timeout.off = 0; /* noseq */
	data = req->async_data;
	list_add_tail(&req->timeout.list, &ctx->timeout_list);
	hrtimer_init(&data->timer, CLOCK_MONOTONIC, mode);
	data->timer.function = io_timeout_fn;
	hrtimer_start(&data->timer, timespec64_to_ktime(*ts), mode);
	return 0;
5575 5576
}

5577 5578
static int io_timeout_remove_prep(struct io_kiocb *req,
				  const struct io_uring_sqe *sqe)
5579
{
P
Pavel Begunkov 已提交
5580 5581
	struct io_timeout_rem *tr = &req->timeout_rem;

5582 5583
	if (unlikely(req->ctx->flags & IORING_SETUP_IOPOLL))
		return -EINVAL;
5584 5585
	if (unlikely(req->flags & (REQ_F_FIXED_FILE | REQ_F_BUFFER_SELECT)))
		return -EINVAL;
P
Pavel Begunkov 已提交
5586
	if (sqe->ioprio || sqe->buf_index || sqe->len)
5587 5588
		return -EINVAL;

P
Pavel Begunkov 已提交
5589 5590 5591 5592 5593 5594 5595 5596 5597
	tr->addr = READ_ONCE(sqe->addr);
	tr->flags = READ_ONCE(sqe->timeout_flags);
	if (tr->flags & IORING_TIMEOUT_UPDATE) {
		if (tr->flags & ~(IORING_TIMEOUT_UPDATE|IORING_TIMEOUT_ABS))
			return -EINVAL;
		if (get_timespec64(&tr->ts, u64_to_user_ptr(sqe->addr2)))
			return -EFAULT;
	} else if (tr->flags) {
		/* timeout removal doesn't support flags */
5598
		return -EINVAL;
P
Pavel Begunkov 已提交
5599
	}
5600 5601 5602 5603

	return 0;
}

5604 5605 5606 5607 5608 5609
static inline enum hrtimer_mode io_translate_timeout_mode(unsigned int flags)
{
	return (flags & IORING_TIMEOUT_ABS) ? HRTIMER_MODE_ABS
					    : HRTIMER_MODE_REL;
}

5610 5611 5612
/*
 * Remove or update an existing timeout command
 */
5613
static int io_timeout_remove(struct io_kiocb *req, unsigned int issue_flags)
5614
{
P
Pavel Begunkov 已提交
5615
	struct io_timeout_rem *tr = &req->timeout_rem;
5616
	struct io_ring_ctx *ctx = req->ctx;
5617
	int ret;
5618 5619

	spin_lock_irq(&ctx->completion_lock);
5620
	if (!(req->timeout_rem.flags & IORING_TIMEOUT_UPDATE))
P
Pavel Begunkov 已提交
5621
		ret = io_timeout_cancel(ctx, tr->addr);
5622 5623 5624
	else
		ret = io_timeout_update(ctx, tr->addr, &tr->ts,
					io_translate_timeout_mode(tr->flags));
5625

5626
	io_cqring_fill_event(ctx, req->user_data, ret, 0);
5627 5628
	io_commit_cqring(ctx);
	spin_unlock_irq(&ctx->completion_lock);
J
Jens Axboe 已提交
5629
	io_cqring_ev_posted(ctx);
J
Jens Axboe 已提交
5630
	if (ret < 0)
5631
		req_set_fail(req);
5632
	io_put_req(req);
5633
	return 0;
J
Jens Axboe 已提交
5634 5635
}

5636
static int io_timeout_prep(struct io_kiocb *req, const struct io_uring_sqe *sqe,
5637
			   bool is_timeout_link)
J
Jens Axboe 已提交
5638
{
5639
	struct io_timeout_data *data;
5640
	unsigned flags;
5641
	u32 off = READ_ONCE(sqe->off);
J
Jens Axboe 已提交
5642

5643
	if (unlikely(req->ctx->flags & IORING_SETUP_IOPOLL))
J
Jens Axboe 已提交
5644
		return -EINVAL;
5645
	if (sqe->ioprio || sqe->buf_index || sqe->len != 1)
5646
		return -EINVAL;
5647
	if (off && is_timeout_link)
5648
		return -EINVAL;
5649 5650
	flags = READ_ONCE(sqe->timeout_flags);
	if (flags & ~IORING_TIMEOUT_ABS)
J
Jens Axboe 已提交
5651
		return -EINVAL;
5652

5653
	req->timeout.off = off;
5654 5655
	if (unlikely(off && !req->ctx->off_timeout_used))
		req->ctx->off_timeout_used = true;
5656

5657
	if (!req->async_data && io_alloc_async_data(req))
5658 5659
		return -ENOMEM;

5660
	data = req->async_data;
5661 5662 5663
	data->req = req;

	if (get_timespec64(&data->ts, u64_to_user_ptr(sqe->addr)))
J
Jens Axboe 已提交
5664 5665
		return -EFAULT;

5666
	data->mode = io_translate_timeout_mode(flags);
5667
	hrtimer_init(&data->timer, CLOCK_MONOTONIC, data->mode);
5668 5669
	if (is_timeout_link)
		io_req_track_inflight(req);
5670 5671 5672
	return 0;
}

5673
static int io_timeout(struct io_kiocb *req, unsigned int issue_flags)
5674 5675
{
	struct io_ring_ctx *ctx = req->ctx;
5676
	struct io_timeout_data *data = req->async_data;
5677
	struct list_head *entry;
5678
	u32 tail, off = req->timeout.off;
5679

5680
	spin_lock_irq(&ctx->completion_lock);
5681

J
Jens Axboe 已提交
5682 5683
	/*
	 * sqe->off holds how many events that need to occur for this
5684 5685
	 * timeout event to be satisfied. If it isn't set, then this is
	 * a pure timeout request, sequence isn't used.
J
Jens Axboe 已提交
5686
	 */
5687
	if (io_is_timeout_noseq(req)) {
5688 5689 5690
		entry = ctx->timeout_list.prev;
		goto add;
	}
J
Jens Axboe 已提交
5691

5692 5693
	tail = ctx->cached_cq_tail - atomic_read(&ctx->cq_timeouts);
	req->timeout.target_seq = tail + off;
J
Jens Axboe 已提交
5694

5695 5696 5697 5698 5699 5700
	/* Update the last seq here in case io_flush_timeouts() hasn't.
	 * This is safe because ->completion_lock is held, and submissions
	 * and completions are never mixed in the same ->completion_lock section.
	 */
	ctx->cq_last_tm_flush = tail;

J
Jens Axboe 已提交
5701 5702 5703 5704 5705
	/*
	 * Insertion sort, ensuring the first entry in the list is always
	 * the one we need first.
	 */
	list_for_each_prev(entry, &ctx->timeout_list) {
P
Pavel Begunkov 已提交
5706 5707
		struct io_kiocb *nxt = list_entry(entry, struct io_kiocb,
						  timeout.list);
J
Jens Axboe 已提交
5708

5709
		if (io_is_timeout_noseq(nxt))
5710
			continue;
5711 5712
		/* nxt.seq is behind @tail, otherwise would've been completed */
		if (off >= nxt->timeout.target_seq - tail)
J
Jens Axboe 已提交
5713 5714
			break;
	}
5715
add:
P
Pavel Begunkov 已提交
5716
	list_add(&req->timeout.list, entry);
5717 5718
	data->timer.function = io_timeout_fn;
	hrtimer_start(&data->timer, timespec64_to_ktime(data->ts), data->mode);
J
Jens Axboe 已提交
5719 5720 5721 5722
	spin_unlock_irq(&ctx->completion_lock);
	return 0;
}

5723 5724 5725 5726 5727
struct io_cancel_data {
	struct io_ring_ctx *ctx;
	u64 user_data;
};

5728 5729 5730
static bool io_cancel_cb(struct io_wq_work *work, void *data)
{
	struct io_kiocb *req = container_of(work, struct io_kiocb, work);
5731
	struct io_cancel_data *cd = data;
5732

5733
	return req->ctx == cd->ctx && req->user_data == cd->user_data;
5734 5735
}

5736 5737
static int io_async_cancel_one(struct io_uring_task *tctx, u64 user_data,
			       struct io_ring_ctx *ctx)
5738
{
5739
	struct io_cancel_data data = { .ctx = ctx, .user_data = user_data, };
5740 5741 5742
	enum io_wq_cancel cancel_ret;
	int ret = 0;

5743
	if (!tctx || !tctx->io_wq)
5744 5745
		return -ENOENT;

5746
	cancel_ret = io_wq_cancel_cb(tctx->io_wq, io_cancel_cb, &data, false);
5747 5748 5749 5750 5751 5752 5753 5754 5755 5756 5757 5758
	switch (cancel_ret) {
	case IO_WQ_CANCEL_OK:
		ret = 0;
		break;
	case IO_WQ_CANCEL_RUNNING:
		ret = -EALREADY;
		break;
	case IO_WQ_CANCEL_NOTFOUND:
		ret = -ENOENT;
		break;
	}

5759 5760 5761
	return ret;
}

5762 5763
static void io_async_find_and_cancel(struct io_ring_ctx *ctx,
				     struct io_kiocb *req, __u64 sqe_addr,
5764
				     int success_ret)
5765 5766 5767 5768
{
	unsigned long flags;
	int ret;

5769
	ret = io_async_cancel_one(req->task->io_uring, sqe_addr, ctx);
5770
	spin_lock_irqsave(&ctx->completion_lock, flags);
5771 5772
	if (ret != -ENOENT)
		goto done;
5773 5774 5775
	ret = io_timeout_cancel(ctx, sqe_addr);
	if (ret != -ENOENT)
		goto done;
5776
	ret = io_poll_cancel(ctx, sqe_addr, false);
5777
done:
5778 5779
	if (!ret)
		ret = success_ret;
5780
	io_cqring_fill_event(ctx, req->user_data, ret, 0);
5781 5782 5783 5784
	io_commit_cqring(ctx);
	spin_unlock_irqrestore(&ctx->completion_lock, flags);
	io_cqring_ev_posted(ctx);

J
Jens Axboe 已提交
5785
	if (ret < 0)
5786
		req_set_fail(req);
5787 5788
}

5789 5790
static int io_async_cancel_prep(struct io_kiocb *req,
				const struct io_uring_sqe *sqe)
5791
{
5792
	if (unlikely(req->ctx->flags & IORING_SETUP_IOPOLL))
5793
		return -EINVAL;
5794 5795 5796
	if (unlikely(req->flags & (REQ_F_FIXED_FILE | REQ_F_BUFFER_SELECT)))
		return -EINVAL;
	if (sqe->ioprio || sqe->off || sqe->len || sqe->cancel_flags)
5797 5798
		return -EINVAL;

5799 5800 5801 5802
	req->cancel.addr = READ_ONCE(sqe->addr);
	return 0;
}

5803
static int io_async_cancel(struct io_kiocb *req, unsigned int issue_flags)
5804 5805
{
	struct io_ring_ctx *ctx = req->ctx;
5806 5807 5808 5809 5810 5811 5812 5813 5814 5815 5816 5817
	u64 sqe_addr = req->cancel.addr;
	struct io_tctx_node *node;
	int ret;

	/* tasks should wait for their io-wq threads, so safe w/o sync */
	ret = io_async_cancel_one(req->task->io_uring, sqe_addr, ctx);
	spin_lock_irq(&ctx->completion_lock);
	if (ret != -ENOENT)
		goto done;
	ret = io_timeout_cancel(ctx, sqe_addr);
	if (ret != -ENOENT)
		goto done;
5818
	ret = io_poll_cancel(ctx, sqe_addr, false);
5819 5820 5821 5822 5823 5824 5825 5826 5827
	if (ret != -ENOENT)
		goto done;
	spin_unlock_irq(&ctx->completion_lock);

	/* slow path, try all io-wq's */
	io_ring_submit_lock(ctx, !(issue_flags & IO_URING_F_NONBLOCK));
	ret = -ENOENT;
	list_for_each_entry(node, &ctx->tctx_list, ctx_node) {
		struct io_uring_task *tctx = node->task->io_uring;
5828

5829 5830 5831 5832 5833 5834 5835 5836
		ret = io_async_cancel_one(tctx, req->cancel.addr, ctx);
		if (ret != -ENOENT)
			break;
	}
	io_ring_submit_unlock(ctx, !(issue_flags & IO_URING_F_NONBLOCK));

	spin_lock_irq(&ctx->completion_lock);
done:
5837
	io_cqring_fill_event(ctx, req->user_data, ret, 0);
5838 5839 5840 5841 5842
	io_commit_cqring(ctx);
	spin_unlock_irq(&ctx->completion_lock);
	io_cqring_ev_posted(ctx);

	if (ret < 0)
5843
		req_set_fail(req);
5844
	io_put_req(req);
J
Jens Axboe 已提交
5845 5846 5847
	return 0;
}

5848
static int io_rsrc_update_prep(struct io_kiocb *req,
5849 5850
				const struct io_uring_sqe *sqe)
{
5851 5852 5853
	if (unlikely(req->flags & (REQ_F_FIXED_FILE | REQ_F_BUFFER_SELECT)))
		return -EINVAL;
	if (sqe->ioprio || sqe->rw_flags)
5854 5855
		return -EINVAL;

5856 5857 5858
	req->rsrc_update.offset = READ_ONCE(sqe->off);
	req->rsrc_update.nr_args = READ_ONCE(sqe->len);
	if (!req->rsrc_update.nr_args)
5859
		return -EINVAL;
5860
	req->rsrc_update.arg = READ_ONCE(sqe->addr);
5861 5862 5863
	return 0;
}

5864
static int io_files_update(struct io_kiocb *req, unsigned int issue_flags)
5865 5866
{
	struct io_ring_ctx *ctx = req->ctx;
5867
	struct io_uring_rsrc_update2 up;
5868
	int ret;
5869

5870
	if (issue_flags & IO_URING_F_NONBLOCK)
5871 5872
		return -EAGAIN;

5873 5874
	up.offset = req->rsrc_update.offset;
	up.data = req->rsrc_update.arg;
5875 5876
	up.nr = 0;
	up.tags = 0;
5877
	up.resv = 0;
5878 5879

	mutex_lock(&ctx->uring_lock);
5880
	ret = __io_register_rsrc_update(ctx, IORING_RSRC_FILE,
5881
					&up, req->rsrc_update.nr_args);
5882 5883 5884
	mutex_unlock(&ctx->uring_lock);

	if (ret < 0)
5885
		req_set_fail(req);
5886
	__io_req_complete(req, issue_flags, ret, 0);
J
Jens Axboe 已提交
5887 5888 5889
	return 0;
}

5890
static int io_req_prep(struct io_kiocb *req, const struct io_uring_sqe *sqe)
5891
{
5892
	switch (req->opcode) {
J
Jens Axboe 已提交
5893
	case IORING_OP_NOP:
5894
		return 0;
5895 5896
	case IORING_OP_READV:
	case IORING_OP_READ_FIXED:
5897
	case IORING_OP_READ:
5898
		return io_read_prep(req, sqe);
5899 5900
	case IORING_OP_WRITEV:
	case IORING_OP_WRITE_FIXED:
5901
	case IORING_OP_WRITE:
5902
		return io_write_prep(req, sqe);
5903
	case IORING_OP_POLL_ADD:
5904
		return io_poll_add_prep(req, sqe);
5905
	case IORING_OP_POLL_REMOVE:
5906
		return io_poll_update_prep(req, sqe);
5907
	case IORING_OP_FSYNC:
5908
		return io_fsync_prep(req, sqe);
5909
	case IORING_OP_SYNC_FILE_RANGE:
5910
		return io_sfr_prep(req, sqe);
5911
	case IORING_OP_SENDMSG:
5912
	case IORING_OP_SEND:
5913
		return io_sendmsg_prep(req, sqe);
5914
	case IORING_OP_RECVMSG:
5915
	case IORING_OP_RECV:
5916
		return io_recvmsg_prep(req, sqe);
5917
	case IORING_OP_CONNECT:
5918
		return io_connect_prep(req, sqe);
5919
	case IORING_OP_TIMEOUT:
5920
		return io_timeout_prep(req, sqe, false);
5921
	case IORING_OP_TIMEOUT_REMOVE:
5922
		return io_timeout_remove_prep(req, sqe);
5923
	case IORING_OP_ASYNC_CANCEL:
5924
		return io_async_cancel_prep(req, sqe);
5925
	case IORING_OP_LINK_TIMEOUT:
5926
		return io_timeout_prep(req, sqe, true);
5927
	case IORING_OP_ACCEPT:
5928
		return io_accept_prep(req, sqe);
5929
	case IORING_OP_FALLOCATE:
5930
		return io_fallocate_prep(req, sqe);
5931
	case IORING_OP_OPENAT:
5932
		return io_openat_prep(req, sqe);
5933
	case IORING_OP_CLOSE:
5934
		return io_close_prep(req, sqe);
5935
	case IORING_OP_FILES_UPDATE:
5936
		return io_rsrc_update_prep(req, sqe);
5937
	case IORING_OP_STATX:
5938
		return io_statx_prep(req, sqe);
J
Jens Axboe 已提交
5939
	case IORING_OP_FADVISE:
5940
		return io_fadvise_prep(req, sqe);
J
Jens Axboe 已提交
5941
	case IORING_OP_MADVISE:
5942
		return io_madvise_prep(req, sqe);
5943
	case IORING_OP_OPENAT2:
5944
		return io_openat2_prep(req, sqe);
5945
	case IORING_OP_EPOLL_CTL:
5946
		return io_epoll_ctl_prep(req, sqe);
P
Pavel Begunkov 已提交
5947
	case IORING_OP_SPLICE:
5948
		return io_splice_prep(req, sqe);
5949
	case IORING_OP_PROVIDE_BUFFERS:
5950
		return io_provide_buffers_prep(req, sqe);
5951
	case IORING_OP_REMOVE_BUFFERS:
5952
		return io_remove_buffers_prep(req, sqe);
P
Pavel Begunkov 已提交
5953
	case IORING_OP_TEE:
5954
		return io_tee_prep(req, sqe);
J
Jens Axboe 已提交
5955 5956
	case IORING_OP_SHUTDOWN:
		return io_shutdown_prep(req, sqe);
5957 5958
	case IORING_OP_RENAMEAT:
		return io_renameat_prep(req, sqe);
5959 5960
	case IORING_OP_UNLINKAT:
		return io_unlinkat_prep(req, sqe);
5961 5962
	}

5963 5964
	printk_once(KERN_WARNING "io_uring: unhandled opcode %d\n",
			req->opcode);
5965
	return -EINVAL;
5966 5967
}

5968
static int io_req_prep_async(struct io_kiocb *req)
5969
{
5970 5971 5972 5973 5974 5975 5976
	if (!io_op_defs[req->opcode].needs_async_setup)
		return 0;
	if (WARN_ON_ONCE(req->async_data))
		return -EFAULT;
	if (io_alloc_async_data(req))
		return -EAGAIN;

5977 5978 5979 5980 5981 5982 5983 5984 5985 5986 5987 5988
	switch (req->opcode) {
	case IORING_OP_READV:
		return io_rw_prep_async(req, READ);
	case IORING_OP_WRITEV:
		return io_rw_prep_async(req, WRITE);
	case IORING_OP_SENDMSG:
		return io_sendmsg_prep_async(req);
	case IORING_OP_RECVMSG:
		return io_recvmsg_prep_async(req);
	case IORING_OP_CONNECT:
		return io_connect_prep_async(req);
	}
5989 5990 5991
	printk_once(KERN_WARNING "io_uring: prep_async() bad opcode %d\n",
		    req->opcode);
	return -EFAULT;
5992 5993
}

5994 5995 5996 5997
static u32 io_get_sequence(struct io_kiocb *req)
{
	struct io_kiocb *pos;
	struct io_ring_ctx *ctx = req->ctx;
5998
	u32 nr_reqs = 0;
5999

6000 6001
	io_for_each_link(pos, req)
		nr_reqs++;
6002
	return ctx->cached_sq_head - nr_reqs;
6003 6004
}

6005
static int io_req_defer(struct io_kiocb *req)
6006
{
6007
	struct io_ring_ctx *ctx = req->ctx;
6008
	struct io_defer_entry *de;
6009
	int ret;
6010
	u32 seq;
6011

B
Bob Liu 已提交
6012
	/* Still need defer if there is pending req in defer list. */
6013 6014 6015 6016 6017 6018 6019
	if (likely(list_empty_careful(&ctx->defer_list) &&
		!(req->flags & REQ_F_IO_DRAIN)))
		return 0;

	seq = io_get_sequence(req);
	/* Still a chance to pass the sequence check */
	if (!req_need_defer(req, seq) && list_empty_careful(&ctx->defer_list))
6020 6021
		return 0;

6022
	ret = io_req_prep_async(req);
6023 6024
	if (ret)
		return ret;
6025
	io_prep_async_link(req);
6026 6027 6028
	de = kmalloc(sizeof(*de), GFP_KERNEL);
	if (!de)
		return -ENOMEM;
6029

6030
	spin_lock_irq(&ctx->completion_lock);
6031
	if (!req_need_defer(req, seq) && list_empty(&ctx->defer_list)) {
6032
		spin_unlock_irq(&ctx->completion_lock);
6033
		kfree(de);
6034 6035
		io_queue_async_work(req);
		return -EIOCBQUEUED;
6036 6037
	}

6038
	trace_io_uring_defer(ctx, req, req->user_data);
6039
	de->req = req;
6040
	de->seq = seq;
6041
	list_add_tail(&de->list, &ctx->defer_list);
6042 6043 6044 6045
	spin_unlock_irq(&ctx->completion_lock);
	return -EIOCBQUEUED;
}

6046
static void io_clean_op(struct io_kiocb *req)
P
Pavel Begunkov 已提交
6047
{
6048 6049 6050 6051 6052
	if (req->flags & REQ_F_BUFFER_SELECTED) {
		switch (req->opcode) {
		case IORING_OP_READV:
		case IORING_OP_READ_FIXED:
		case IORING_OP_READ:
6053
			kfree((void *)(unsigned long)req->rw.addr);
6054 6055 6056
			break;
		case IORING_OP_RECVMSG:
		case IORING_OP_RECV:
6057
			kfree(req->sr_msg.kbuf);
6058 6059 6060
			break;
		}
		req->flags &= ~REQ_F_BUFFER_SELECTED;
P
Pavel Begunkov 已提交
6061 6062
	}

6063 6064 6065 6066 6067 6068 6069
	if (req->flags & REQ_F_NEED_CLEANUP) {
		switch (req->opcode) {
		case IORING_OP_READV:
		case IORING_OP_READ_FIXED:
		case IORING_OP_READ:
		case IORING_OP_WRITEV:
		case IORING_OP_WRITE_FIXED:
6070 6071 6072 6073
		case IORING_OP_WRITE: {
			struct io_async_rw *io = req->async_data;
			if (io->free_iovec)
				kfree(io->free_iovec);
6074
			break;
6075
			}
6076
		case IORING_OP_RECVMSG:
6077 6078
		case IORING_OP_SENDMSG: {
			struct io_async_msghdr *io = req->async_data;
6079 6080

			kfree(io->free_iov);
6081
			break;
6082
			}
6083 6084
		case IORING_OP_SPLICE:
		case IORING_OP_TEE:
6085 6086
			if (!(req->splice.flags & SPLICE_F_FD_IN_FIXED))
				io_put_file(req->splice.file_in);
6087
			break;
6088 6089 6090 6091 6092
		case IORING_OP_OPENAT:
		case IORING_OP_OPENAT2:
			if (req->open.filename)
				putname(req->open.filename);
			break;
6093 6094 6095 6096
		case IORING_OP_RENAMEAT:
			putname(req->rename.oldpath);
			putname(req->rename.newpath);
			break;
6097 6098 6099
		case IORING_OP_UNLINKAT:
			putname(req->unlink.filename);
			break;
6100 6101
		}
		req->flags &= ~REQ_F_NEED_CLEANUP;
P
Pavel Begunkov 已提交
6102
	}
6103 6104 6105 6106 6107
	if ((req->flags & REQ_F_POLLED) && req->apoll) {
		kfree(req->apoll->double_poll);
		kfree(req->apoll);
		req->apoll = NULL;
	}
6108 6109 6110 6111 6112 6113
	if (req->flags & REQ_F_INFLIGHT) {
		struct io_uring_task *tctx = req->task->io_uring;

		atomic_dec(&tctx->inflight_tracked);
		req->flags &= ~REQ_F_INFLIGHT;
	}
P
Pavel Begunkov 已提交
6114 6115
}

6116
static int io_issue_sqe(struct io_kiocb *req, unsigned int issue_flags)
J
Jens Axboe 已提交
6117
{
6118
	struct io_ring_ctx *ctx = req->ctx;
6119
	const struct cred *creds = NULL;
6120
	int ret;
J
Jens Axboe 已提交
6121

6122 6123
	if (req->work.creds && req->work.creds != current_cred())
		creds = override_creds(req->work.creds);
6124

6125
	switch (req->opcode) {
J
Jens Axboe 已提交
6126
	case IORING_OP_NOP:
6127
		ret = io_nop(req, issue_flags);
J
Jens Axboe 已提交
6128 6129
		break;
	case IORING_OP_READV:
6130
	case IORING_OP_READ_FIXED:
6131
	case IORING_OP_READ:
6132
		ret = io_read(req, issue_flags);
6133
		break;
6134
	case IORING_OP_WRITEV:
6135
	case IORING_OP_WRITE_FIXED:
6136
	case IORING_OP_WRITE:
6137
		ret = io_write(req, issue_flags);
J
Jens Axboe 已提交
6138
		break;
C
Christoph Hellwig 已提交
6139
	case IORING_OP_FSYNC:
6140
		ret = io_fsync(req, issue_flags);
C
Christoph Hellwig 已提交
6141
		break;
6142
	case IORING_OP_POLL_ADD:
6143
		ret = io_poll_add(req, issue_flags);
6144 6145
		break;
	case IORING_OP_POLL_REMOVE:
6146
		ret = io_poll_update(req, issue_flags);
6147
		break;
6148
	case IORING_OP_SYNC_FILE_RANGE:
6149
		ret = io_sync_file_range(req, issue_flags);
6150
		break;
J
Jens Axboe 已提交
6151
	case IORING_OP_SENDMSG:
6152
		ret = io_sendmsg(req, issue_flags);
6153
		break;
6154
	case IORING_OP_SEND:
6155
		ret = io_send(req, issue_flags);
J
Jens Axboe 已提交
6156
		break;
J
Jens Axboe 已提交
6157
	case IORING_OP_RECVMSG:
6158
		ret = io_recvmsg(req, issue_flags);
6159
		break;
6160
	case IORING_OP_RECV:
6161
		ret = io_recv(req, issue_flags);
J
Jens Axboe 已提交
6162
		break;
J
Jens Axboe 已提交
6163
	case IORING_OP_TIMEOUT:
6164
		ret = io_timeout(req, issue_flags);
J
Jens Axboe 已提交
6165
		break;
6166
	case IORING_OP_TIMEOUT_REMOVE:
6167
		ret = io_timeout_remove(req, issue_flags);
6168
		break;
6169
	case IORING_OP_ACCEPT:
6170
		ret = io_accept(req, issue_flags);
6171
		break;
6172
	case IORING_OP_CONNECT:
6173
		ret = io_connect(req, issue_flags);
6174
		break;
6175
	case IORING_OP_ASYNC_CANCEL:
6176
		ret = io_async_cancel(req, issue_flags);
6177
		break;
6178
	case IORING_OP_FALLOCATE:
6179
		ret = io_fallocate(req, issue_flags);
6180
		break;
6181
	case IORING_OP_OPENAT:
6182
		ret = io_openat(req, issue_flags);
6183
		break;
6184
	case IORING_OP_CLOSE:
6185
		ret = io_close(req, issue_flags);
6186
		break;
6187
	case IORING_OP_FILES_UPDATE:
6188
		ret = io_files_update(req, issue_flags);
6189
		break;
6190
	case IORING_OP_STATX:
6191
		ret = io_statx(req, issue_flags);
6192
		break;
J
Jens Axboe 已提交
6193
	case IORING_OP_FADVISE:
6194
		ret = io_fadvise(req, issue_flags);
J
Jens Axboe 已提交
6195
		break;
J
Jens Axboe 已提交
6196
	case IORING_OP_MADVISE:
6197
		ret = io_madvise(req, issue_flags);
J
Jens Axboe 已提交
6198
		break;
6199
	case IORING_OP_OPENAT2:
6200
		ret = io_openat2(req, issue_flags);
6201
		break;
6202
	case IORING_OP_EPOLL_CTL:
6203
		ret = io_epoll_ctl(req, issue_flags);
6204
		break;
P
Pavel Begunkov 已提交
6205
	case IORING_OP_SPLICE:
6206
		ret = io_splice(req, issue_flags);
P
Pavel Begunkov 已提交
6207
		break;
6208
	case IORING_OP_PROVIDE_BUFFERS:
6209
		ret = io_provide_buffers(req, issue_flags);
6210
		break;
6211
	case IORING_OP_REMOVE_BUFFERS:
6212
		ret = io_remove_buffers(req, issue_flags);
6213
		break;
P
Pavel Begunkov 已提交
6214
	case IORING_OP_TEE:
6215
		ret = io_tee(req, issue_flags);
P
Pavel Begunkov 已提交
6216
		break;
J
Jens Axboe 已提交
6217
	case IORING_OP_SHUTDOWN:
6218
		ret = io_shutdown(req, issue_flags);
J
Jens Axboe 已提交
6219
		break;
6220
	case IORING_OP_RENAMEAT:
6221
		ret = io_renameat(req, issue_flags);
6222
		break;
6223
	case IORING_OP_UNLINKAT:
6224
		ret = io_unlinkat(req, issue_flags);
6225
		break;
J
Jens Axboe 已提交
6226 6227 6228 6229 6230
	default:
		ret = -EINVAL;
		break;
	}

6231 6232
	if (creds)
		revert_creds(creds);
J
Jens Axboe 已提交
6233 6234
	if (ret)
		return ret;
6235
	/* If the op doesn't have a file, we're not polling for it */
6236 6237
	if ((ctx->flags & IORING_SETUP_IOPOLL) && req->file)
		io_iopoll_req_issued(req);
J
Jens Axboe 已提交
6238 6239

	return 0;
J
Jens Axboe 已提交
6240 6241
}

6242
static void io_wq_submit_work(struct io_wq_work *work)
J
Jens Axboe 已提交
6243 6244
{
	struct io_kiocb *req = container_of(work, struct io_kiocb, work);
6245
	struct io_kiocb *timeout;
6246
	int ret = 0;
J
Jens Axboe 已提交
6247

6248 6249 6250
	timeout = io_prep_linked_timeout(req);
	if (timeout)
		io_queue_linked_timeout(timeout);
6251

6252
	if (work->flags & IO_WQ_WORK_CANCEL)
6253
		ret = -ECANCELED;
6254

6255 6256
	if (!ret) {
		do {
6257
			ret = io_issue_sqe(req, 0);
6258 6259 6260 6261 6262 6263 6264 6265 6266 6267
			/*
			 * We can get EAGAIN for polled IO even though we're
			 * forcing a sync submission from here, since we can't
			 * wait for request slots on the block side.
			 */
			if (ret != -EAGAIN)
				break;
			cond_resched();
		} while (1);
	}
6268

6269
	/* avoid locking problems by failing it from a clean context */
6270
	if (ret) {
6271
		/* io-wq is going to take one down */
6272
		req_ref_get(req);
6273
		io_req_task_queue_fail(req, ret);
6274
	}
J
Jens Axboe 已提交
6275 6276
}

6277 6278 6279 6280 6281 6282 6283 6284 6285
#define FFS_ASYNC_READ		0x1UL
#define FFS_ASYNC_WRITE		0x2UL
#ifdef CONFIG_64BIT
#define FFS_ISREG		0x4UL
#else
#define FFS_ISREG		0x0UL
#endif
#define FFS_MASK		~(FFS_ASYNC_READ|FFS_ASYNC_WRITE|FFS_ISREG)

6286
static inline struct io_fixed_file *io_fixed_file_slot(struct io_file_table *table,
6287
						      unsigned i)
6288
{
6289
	struct io_fixed_file *table_l2;
6290

6291 6292
	table_l2 = table->files[i >> IORING_FILE_TABLE_SHIFT];
	return &table_l2[i & IORING_FILE_TABLE_MASK];
6293 6294
}

6295 6296 6297
static inline struct file *io_file_from_index(struct io_ring_ctx *ctx,
					      int index)
{
6298
	struct io_fixed_file *slot = io_fixed_file_slot(&ctx->file_table, index);
6299

6300
	return (struct file *) (slot->file_ptr & FFS_MASK);
6301 6302
}

6303
static void io_fixed_file_set(struct io_fixed_file *file_slot, struct file *file)
6304 6305 6306 6307 6308 6309 6310 6311 6312
{
	unsigned long file_ptr = (unsigned long) file;

	if (__io_file_supports_async(file, READ))
		file_ptr |= FFS_ASYNC_READ;
	if (__io_file_supports_async(file, WRITE))
		file_ptr |= FFS_ASYNC_WRITE;
	if (S_ISREG(file_inode(file)->i_mode))
		file_ptr |= FFS_ISREG;
6313
	file_slot->file_ptr = file_ptr;
6314 6315
}

P
Pavel Begunkov 已提交
6316 6317
static struct file *io_file_get(struct io_submit_state *state,
				struct io_kiocb *req, int fd, bool fixed)
J
Jens Axboe 已提交
6318
{
6319
	struct io_ring_ctx *ctx = req->ctx;
6320
	struct file *file;
J
Jens Axboe 已提交
6321

6322
	if (fixed) {
6323 6324
		unsigned long file_ptr;

6325
		if (unlikely((unsigned int)fd >= ctx->nr_user_files))
P
Pavel Begunkov 已提交
6326
			return NULL;
6327
		fd = array_index_nospec(fd, ctx->nr_user_files);
6328
		file_ptr = io_fixed_file_slot(&ctx->file_table, fd)->file_ptr;
6329 6330 6331 6332
		file = (struct file *) (file_ptr & FFS_MASK);
		file_ptr &= ~FFS_MASK;
		/* mask in overlapping REQ_F and FFS bits */
		req->flags |= (file_ptr << REQ_F_ASYNC_READ_BIT);
6333
		io_req_set_rsrc_node(req);
J
Jens Axboe 已提交
6334
	} else {
6335
		trace_io_uring_file_get(ctx, fd);
6336
		file = __io_file_get(state, fd);
6337 6338 6339 6340

		/* we don't allow fixed io_uring files */
		if (file && unlikely(file->f_op == &io_uring_fops))
			io_req_track_inflight(req);
J
Jens Axboe 已提交
6341 6342
	}

P
Pavel Begunkov 已提交
6343
	return file;
J
Jens Axboe 已提交
6344 6345
}

6346
static enum hrtimer_restart io_link_timeout_fn(struct hrtimer *timer)
J
Jens Axboe 已提交
6347
{
6348 6349
	struct io_timeout_data *data = container_of(timer,
						struct io_timeout_data, timer);
6350
	struct io_kiocb *prev, *req = data->req;
6351 6352 6353 6354
	struct io_ring_ctx *ctx = req->ctx;
	unsigned long flags;

	spin_lock_irqsave(&ctx->completion_lock, flags);
6355 6356
	prev = req->timeout.head;
	req->timeout.head = NULL;
6357 6358 6359 6360 6361

	/*
	 * We don't expect the list to be empty, that will only happen if we
	 * race with the completion of the linked work.
	 */
6362
	if (prev) {
6363
		io_remove_next_linked(prev);
6364 6365 6366
		if (!req_ref_inc_not_zero(prev))
			prev = NULL;
	}
6367 6368 6369
	spin_unlock_irqrestore(&ctx->completion_lock, flags);

	if (prev) {
6370
		io_async_find_and_cancel(ctx, req, prev->user_data, -ETIME);
6371
		io_put_req_deferred(prev, 1);
P
Pavel Begunkov 已提交
6372
		io_put_req_deferred(req, 1);
6373
	} else {
6374
		io_req_complete_post(req, -ETIME, 0);
6375 6376 6377 6378
	}
	return HRTIMER_NORESTART;
}

6379
static void io_queue_linked_timeout(struct io_kiocb *req)
6380
{
6381 6382 6383
	struct io_ring_ctx *ctx = req->ctx;

	spin_lock_irq(&ctx->completion_lock);
6384
	/*
6385 6386
	 * If the back reference is NULL, then our linked request finished
	 * before we got a chance to setup the timer
6387
	 */
6388
	if (req->timeout.head) {
6389
		struct io_timeout_data *data = req->async_data;
6390

6391 6392 6393
		data->timer.function = io_link_timeout_fn;
		hrtimer_start(&data->timer, timespec64_to_ktime(data->ts),
				data->mode);
6394
	}
6395
	spin_unlock_irq(&ctx->completion_lock);
6396
	/* drop submission reference */
6397 6398
	io_put_req(req);
}
6399

6400
static struct io_kiocb *io_prep_linked_timeout(struct io_kiocb *req)
6401
{
6402
	struct io_kiocb *nxt = req->link;
6403

6404 6405
	if (!nxt || (req->flags & REQ_F_LINK_TIMEOUT) ||
	    nxt->opcode != IORING_OP_LINK_TIMEOUT)
6406
		return NULL;
6407

6408
	nxt->timeout.head = req;
6409
	nxt->flags |= REQ_F_LTIMEOUT_ACTIVE;
6410 6411
	req->flags |= REQ_F_LINK_TIMEOUT;
	return nxt;
6412 6413
}

6414
static void __io_queue_sqe(struct io_kiocb *req)
J
Jens Axboe 已提交
6415
{
6416
	struct io_kiocb *linked_timeout = io_prep_linked_timeout(req);
6417
	int ret;
J
Jens Axboe 已提交
6418

6419
	ret = io_issue_sqe(req, IO_URING_F_NONBLOCK|IO_URING_F_COMPLETE_DEFER);
6420

6421 6422 6423 6424
	/*
	 * We async punt it if the file wasn't marked NOWAIT, or if the file
	 * doesn't support non-blocking read/write attempts
	 */
6425
	if (likely(!ret)) {
6426
		/* drop submission reference */
6427
		if (req->flags & REQ_F_COMPLETE_INLINE) {
6428 6429
			struct io_ring_ctx *ctx = req->ctx;
			struct io_comp_state *cs = &ctx->submit_state.comp;
6430

6431
			cs->reqs[cs->nr++] = req;
6432
			if (cs->nr == ARRAY_SIZE(cs->reqs))
6433
				io_submit_flush_completions(cs, ctx);
6434
		} else {
6435
			io_put_req(req);
6436
		}
6437 6438 6439 6440 6441 6442 6443 6444
	} else if (ret == -EAGAIN && !(req->flags & REQ_F_NOWAIT)) {
		if (!io_arm_poll_handler(req)) {
			/*
			 * Queued up for async execution, worker will release
			 * submit reference when the iocb is actually submitted.
			 */
			io_queue_async_work(req);
		}
6445
	} else {
6446
		io_req_complete_failed(req, ret);
J
Jens Axboe 已提交
6447
	}
6448 6449
	if (linked_timeout)
		io_queue_linked_timeout(linked_timeout);
J
Jens Axboe 已提交
6450 6451
}

6452
static void io_queue_sqe(struct io_kiocb *req)
6453 6454 6455
{
	int ret;

6456
	ret = io_req_defer(req);
6457 6458
	if (ret) {
		if (ret != -EIOCBQUEUED) {
6459
fail_req:
6460
			io_req_complete_failed(req, ret);
6461
		}
6462
	} else if (req->flags & REQ_F_FORCE_ASYNC) {
6463
		ret = io_req_prep_async(req);
6464 6465
		if (unlikely(ret))
			goto fail_req;
J
Jens Axboe 已提交
6466 6467
		io_queue_async_work(req);
	} else {
6468
		__io_queue_sqe(req);
J
Jens Axboe 已提交
6469
	}
6470 6471
}

6472 6473 6474 6475 6476 6477 6478 6479
/*
 * Check SQE restrictions (opcode and flags).
 *
 * Returns 'true' if SQE is allowed, 'false' otherwise.
 */
static inline bool io_check_restriction(struct io_ring_ctx *ctx,
					struct io_kiocb *req,
					unsigned int sqe_flags)
6480
{
6481 6482 6483 6484 6485 6486 6487 6488 6489 6490 6491 6492 6493 6494 6495
	if (!ctx->restricted)
		return true;

	if (!test_bit(req->opcode, ctx->restrictions.sqe_op))
		return false;

	if ((sqe_flags & ctx->restrictions.sqe_flags_required) !=
	    ctx->restrictions.sqe_flags_required)
		return false;

	if (sqe_flags & ~(ctx->restrictions.sqe_flags_allowed |
			  ctx->restrictions.sqe_flags_required))
		return false;

	return true;
6496 6497
}

6498 6499 6500 6501 6502
static int io_init_req(struct io_ring_ctx *ctx, struct io_kiocb *req,
		       const struct io_uring_sqe *sqe)
{
	struct io_submit_state *state;
	unsigned int sqe_flags;
6503
	int personality, ret = 0;
6504 6505 6506 6507 6508 6509 6510 6511 6512 6513 6514

	req->opcode = READ_ONCE(sqe->opcode);
	/* same numerical values with corresponding REQ_F_*, safe to copy */
	req->flags = sqe_flags = READ_ONCE(sqe->flags);
	req->user_data = READ_ONCE(sqe->user_data);
	req->async_data = NULL;
	req->file = NULL;
	req->ctx = ctx;
	req->link = NULL;
	req->fixed_rsrc_refs = NULL;
	/* one is dropped after submission, the other at completion */
6515
	atomic_set(&req->refs, 2);
6516 6517
	req->task = current;
	req->result = 0;
6518
	req->work.creds = NULL;
6519 6520

	/* enforce forwards compatibility on users */
6521
	if (unlikely(sqe_flags & ~SQE_VALID_FLAGS))
6522 6523 6524 6525 6526 6527 6528 6529 6530
		return -EINVAL;
	if (unlikely(req->opcode >= IORING_OP_LAST))
		return -EINVAL;
	if (unlikely(!io_check_restriction(ctx, req, sqe_flags)))
		return -EACCES;

	if ((sqe_flags & IOSQE_BUFFER_SELECT) &&
	    !io_op_defs[req->opcode].buffer_select)
		return -EOPNOTSUPP;
6531

6532 6533
	personality = READ_ONCE(sqe->personality);
	if (personality) {
6534
		req->work.creds = xa_load(&ctx->personalities, personality);
6535 6536 6537 6538
		if (!req->work.creds)
			return -EINVAL;
		get_cred(req->work.creds);
	}
6539 6540 6541 6542 6543 6544 6545 6546 6547 6548 6549 6550 6551 6552 6553 6554 6555 6556 6557 6558 6559 6560 6561 6562
	state = &ctx->submit_state;

	/*
	 * Plug now if we have more than 1 IO left after this, and the target
	 * is potentially a read/write to block based storage.
	 */
	if (!state->plug_started && state->ios_left > 1 &&
	    io_op_defs[req->opcode].plug) {
		blk_start_plug(&state->plug);
		state->plug_started = true;
	}

	if (io_op_defs[req->opcode].needs_file) {
		bool fixed = req->flags & REQ_F_FIXED_FILE;

		req->file = io_file_get(state, req, READ_ONCE(sqe->fd), fixed);
		if (unlikely(!req->file))
			ret = -EBADF;
	}

	state->ios_left--;
	return ret;
}

6563
static int io_submit_sqe(struct io_ring_ctx *ctx, struct io_kiocb *req,
6564
			 const struct io_uring_sqe *sqe)
J
Jens Axboe 已提交
6565
{
6566
	struct io_submit_link *link = &ctx->submit_state.link;
6567
	int ret;
J
Jens Axboe 已提交
6568

6569 6570 6571
	ret = io_init_req(ctx, req, sqe);
	if (unlikely(ret)) {
fail_req:
6572 6573
		if (link->head) {
			/* fail even hard links since we don't submit */
6574
			req_set_fail(link->head);
6575
			io_req_complete_failed(link->head, -ECANCELED);
6576 6577
			link->head = NULL;
		}
6578
		io_req_complete_failed(req, ret);
6579 6580
		return ret;
	}
6581 6582 6583
	ret = io_req_prep(req, sqe);
	if (unlikely(ret))
		goto fail_req;
6584

6585
	/* don't need @sqe from now on */
6586 6587 6588
	trace_io_uring_submit_sqe(ctx, req->opcode, req->user_data,
				true, ctx->flags & IORING_SETUP_SQPOLL);

J
Jens Axboe 已提交
6589 6590 6591 6592 6593 6594 6595
	/*
	 * If we already have a head request, queue this one for async
	 * submittal once the head completes. If we don't have a head but
	 * IOSQE_IO_LINK is set in the sqe, start a new head. This one will be
	 * submitted sync once the chain is complete. If none of those
	 * conditions are true (normal request), then just queue it.
	 */
6596 6597
	if (link->head) {
		struct io_kiocb *head = link->head;
J
Jens Axboe 已提交
6598

6599 6600 6601 6602 6603 6604 6605
		/*
		 * Taking sequential execution of a link, draining both sides
		 * of the link also fullfils IOSQE_IO_DRAIN semantics for all
		 * requests in the link. So, it drains the head and the
		 * next after the link request. The last one is done via
		 * drain_next flag to persist the effect across calls.
		 */
6606
		if (req->flags & REQ_F_IO_DRAIN) {
6607 6608 6609
			head->flags |= REQ_F_IO_DRAIN;
			ctx->drain_next = 1;
		}
6610
		ret = io_req_prep_async(req);
6611
		if (unlikely(ret))
6612
			goto fail_req;
P
Pavel Begunkov 已提交
6613
		trace_io_uring_link(ctx, req, head);
6614
		link->last->link = req;
6615
		link->last = req;
6616 6617

		/* last request of a link, enqueue the link */
6618
		if (!(req->flags & (REQ_F_LINK | REQ_F_HARDLINK))) {
6619
			io_queue_sqe(head);
6620
			link->head = NULL;
6621
		}
J
Jens Axboe 已提交
6622
	} else {
6623 6624
		if (unlikely(ctx->drain_next)) {
			req->flags |= REQ_F_IO_DRAIN;
6625
			ctx->drain_next = 0;
6626
		}
6627
		if (req->flags & (REQ_F_LINK | REQ_F_HARDLINK)) {
6628 6629
			link->head = req;
			link->last = req;
6630
		} else {
6631
			io_queue_sqe(req);
6632
		}
J
Jens Axboe 已提交
6633
	}
6634

6635
	return 0;
J
Jens Axboe 已提交
6636 6637
}

6638 6639 6640
/*
 * Batched submission is done, ensure local IO is flushed out.
 */
6641 6642
static void io_submit_state_end(struct io_submit_state *state,
				struct io_ring_ctx *ctx)
6643
{
6644
	if (state->link.head)
6645
		io_queue_sqe(state->link.head);
6646
	if (state->comp.nr)
6647
		io_submit_flush_completions(&state->comp, ctx);
J
Jens Axboe 已提交
6648 6649
	if (state->plug_started)
		blk_finish_plug(&state->plug);
P
Pavel Begunkov 已提交
6650
	io_state_file_put(state);
6651 6652 6653 6654 6655 6656
}

/*
 * Start submission side cache.
 */
static void io_submit_state_start(struct io_submit_state *state,
6657
				  unsigned int max_ios)
6658
{
J
Jens Axboe 已提交
6659
	state->plug_started = false;
6660
	state->ios_left = max_ios;
6661 6662
	/* set only head, no need to init link_last in advance */
	state->link.head = NULL;
6663 6664
}

J
Jens Axboe 已提交
6665 6666
static void io_commit_sqring(struct io_ring_ctx *ctx)
{
6667
	struct io_rings *rings = ctx->rings;
J
Jens Axboe 已提交
6668

6669 6670 6671 6672 6673 6674
	/*
	 * Ensure any loads from the SQEs are done at this point,
	 * since once we write the new head, the application could
	 * write new data to them.
	 */
	smp_store_release(&rings->sq.head, ctx->cached_sq_head);
J
Jens Axboe 已提交
6675 6676 6677
}

/*
6678
 * Fetch an sqe, if one is available. Note that sqe_ptr will point to memory
J
Jens Axboe 已提交
6679 6680 6681 6682 6683 6684
 * that is mapped by userspace. This means that care needs to be taken to
 * ensure that reads are stable, as we cannot rely on userspace always
 * being a good citizen. If members of the sqe are validated and then later
 * used, it's important that those reads are done through READ_ONCE() to
 * prevent a re-load down the line.
 */
6685
static const struct io_uring_sqe *io_get_sqe(struct io_ring_ctx *ctx)
J
Jens Axboe 已提交
6686
{
6687
	unsigned head, mask = ctx->sq_entries - 1;
P
Pavel Begunkov 已提交
6688
	unsigned sq_idx = ctx->cached_sq_head++ & mask;
J
Jens Axboe 已提交
6689 6690 6691 6692 6693 6694 6695 6696 6697

	/*
	 * The cached sq head (or cq tail) serves two purposes:
	 *
	 * 1) allows us to batch the cost of updating the user visible
	 *    head updates.
	 * 2) allows the kernel side to track the head on its own, even
	 *    though the application is the one updating it.
	 */
P
Pavel Begunkov 已提交
6698
	head = READ_ONCE(ctx->sq_array[sq_idx]);
6699 6700
	if (likely(head < ctx->sq_entries))
		return &ctx->sq_sqes[head];
J
Jens Axboe 已提交
6701 6702

	/* drop invalid entries */
6703 6704 6705
	ctx->cq_extra--;
	WRITE_ONCE(ctx->rings->sq_dropped,
		   READ_ONCE(ctx->rings->sq_dropped) + 1);
6706 6707 6708
	return NULL;
}

6709
static int io_submit_sqes(struct io_ring_ctx *ctx, unsigned int nr)
J
Jens Axboe 已提交
6710
{
6711
	struct io_uring_task *tctx;
6712
	int submitted = 0;
J
Jens Axboe 已提交
6713

6714 6715
	/* make sure SQ entry isn't read before tail */
	nr = min3(nr, ctx->sq_entries, io_sqring_entries(ctx));
6716 6717
	if (!percpu_ref_tryget_many(&ctx->refs, nr))
		return -EAGAIN;
J
Jens Axboe 已提交
6718

6719 6720 6721 6722 6723 6724 6725 6726 6727
	tctx = current->io_uring;
	tctx->cached_refs -= nr;
	if (unlikely(tctx->cached_refs < 0)) {
		unsigned int refill = -tctx->cached_refs + IO_TCTX_REFS_CACHE_NR;

		percpu_counter_add(&tctx->inflight, refill);
		refcount_add(refill, &current->usage);
		tctx->cached_refs += refill;
	}
6728
	io_submit_state_start(&ctx->submit_state, nr);
P
Pavel Begunkov 已提交
6729

6730
	while (submitted < nr) {
6731
		const struct io_uring_sqe *sqe;
6732
		struct io_kiocb *req;
6733

6734
		req = io_alloc_req(ctx);
6735 6736 6737
		if (unlikely(!req)) {
			if (!submitted)
				submitted = -EAGAIN;
6738
			break;
6739
		}
6740 6741 6742 6743 6744
		sqe = io_get_sqe(ctx);
		if (unlikely(!sqe)) {
			kmem_cache_free(req_cachep, req);
			break;
		}
6745 6746
		/* will complete beyond this point, count as submitted */
		submitted++;
6747
		if (io_submit_sqe(ctx, req, sqe))
6748
			break;
J
Jens Axboe 已提交
6749 6750
	}

6751 6752
	if (unlikely(submitted != nr)) {
		int ref_used = (submitted == -EAGAIN) ? 0 : submitted;
6753
		int unused = nr - ref_used;
6754

6755
		current->io_uring->cached_refs += unused;
6756
		percpu_ref_put_many(&ctx->refs, unused);
6757
	}
J
Jens Axboe 已提交
6758

6759
	io_submit_state_end(&ctx->submit_state, ctx);
6760 6761 6762
	 /* Commit SQ ring head once we've consumed and submitted all SQEs */
	io_commit_sqring(ctx);

J
Jens Axboe 已提交
6763 6764 6765
	return submitted;
}

6766 6767 6768 6769 6770
static inline bool io_sqd_events_pending(struct io_sq_data *sqd)
{
	return READ_ONCE(sqd->state);
}

6771 6772 6773 6774 6775 6776 6777 6778 6779 6780 6781 6782 6783 6784 6785
static inline void io_ring_set_wakeup_flag(struct io_ring_ctx *ctx)
{
	/* Tell userspace we may need a wakeup call */
	spin_lock_irq(&ctx->completion_lock);
	ctx->rings->sq_flags |= IORING_SQ_NEED_WAKEUP;
	spin_unlock_irq(&ctx->completion_lock);
}

static inline void io_ring_clear_wakeup_flag(struct io_ring_ctx *ctx)
{
	spin_lock_irq(&ctx->completion_lock);
	ctx->rings->sq_flags &= ~IORING_SQ_NEED_WAKEUP;
	spin_unlock_irq(&ctx->completion_lock);
}

6786
static int __io_sq_thread(struct io_ring_ctx *ctx, bool cap_entries)
J
Jens Axboe 已提交
6787
{
6788
	unsigned int to_submit;
6789
	int ret = 0;
J
Jens Axboe 已提交
6790

6791
	to_submit = io_sqring_entries(ctx);
6792 6793 6794 6795
	/* if we're handling multiple rings, cap submit size for fairness */
	if (cap_entries && to_submit > 8)
		to_submit = 8;

6796
	if (!list_empty(&ctx->iopoll_list) || to_submit) {
6797
		unsigned nr_events = 0;
6798

6799
		mutex_lock(&ctx->uring_lock);
6800
		if (!list_empty(&ctx->iopoll_list))
6801
			io_do_iopoll(ctx, &nr_events, 0);
6802

6803 6804 6805 6806
		/*
		 * Don't submit if refs are dying, good for io_uring_register(),
		 * but also it is relied upon by io_ring_exit_work()
		 */
6807 6808
		if (to_submit && likely(!percpu_ref_is_dying(&ctx->refs)) &&
		    !(ctx->flags & IORING_SETUP_R_DISABLED))
6809
			ret = io_submit_sqes(ctx, to_submit);
6810
		mutex_unlock(&ctx->uring_lock);
J
Jens Axboe 已提交
6811

6812 6813 6814
		if (to_submit && wq_has_sleeper(&ctx->sqo_sq_wait))
			wake_up(&ctx->sqo_sq_wait);
	}
J
Jens Axboe 已提交
6815

6816 6817
	return ret;
}
J
Jens Axboe 已提交
6818

6819 6820 6821 6822
static void io_sqd_update_thread_idle(struct io_sq_data *sqd)
{
	struct io_ring_ctx *ctx;
	unsigned sq_thread_idle = 0;
J
Jens Axboe 已提交
6823

6824 6825
	list_for_each_entry(ctx, &sqd->ctx_list, sqd_list)
		sq_thread_idle = max(sq_thread_idle, ctx->sq_thread_idle);
6826
	sqd->sq_thread_idle = sq_thread_idle;
6827
}
J
Jens Axboe 已提交
6828

6829 6830 6831 6832 6833 6834 6835 6836 6837 6838 6839 6840 6841 6842 6843 6844 6845
static bool io_sqd_handle_event(struct io_sq_data *sqd)
{
	bool did_sig = false;
	struct ksignal ksig;

	if (test_bit(IO_SQ_THREAD_SHOULD_PARK, &sqd->state) ||
	    signal_pending(current)) {
		mutex_unlock(&sqd->lock);
		if (signal_pending(current))
			did_sig = get_signal(&ksig);
		cond_resched();
		mutex_lock(&sqd->lock);
	}
	io_run_task_work();
	return did_sig || test_bit(IO_SQ_THREAD_SHOULD_STOP, &sqd->state);
}

6846 6847
static int io_sq_thread(void *data)
{
6848 6849
	struct io_sq_data *sqd = data;
	struct io_ring_ctx *ctx;
6850
	unsigned long timeout = 0;
6851
	char buf[TASK_COMM_LEN];
6852
	DEFINE_WAIT(wait);
J
Jens Axboe 已提交
6853

6854
	snprintf(buf, sizeof(buf), "iou-sqp-%d", sqd->task_pid);
6855 6856 6857 6858 6859 6860 6861 6862
	set_task_comm(current, buf);

	if (sqd->sq_cpu != -1)
		set_cpus_allowed_ptr(current, cpumask_of(sqd->sq_cpu));
	else
		set_cpus_allowed_ptr(current, cpu_online_mask);
	current->flags |= PF_NO_SETAFFINITY;

6863
	mutex_lock(&sqd->lock);
6864
	while (1) {
6865 6866
		int ret;
		bool cap_entries, sqt_spin, needs_sched;
6867

6868 6869
		if (io_sqd_events_pending(sqd) || signal_pending(current)) {
			if (io_sqd_handle_event(sqd))
6870
				break;
6871
			timeout = jiffies + sqd->sq_thread_idle;
6872
			continue;
6873
		}
6874

6875
		sqt_spin = false;
6876
		cap_entries = !list_is_singular(&sqd->ctx_list);
6877
		list_for_each_entry(ctx, &sqd->ctx_list, sqd_list) {
6878 6879 6880 6881
			const struct cred *creds = NULL;

			if (ctx->sq_creds != current_cred())
				creds = override_creds(ctx->sq_creds);
6882
			ret = __io_sq_thread(ctx, cap_entries);
6883 6884
			if (creds)
				revert_creds(creds);
6885 6886
			if (!sqt_spin && (ret > 0 || !list_empty(&ctx->iopoll_list)))
				sqt_spin = true;
6887
		}
J
Jens Axboe 已提交
6888

6889
		if (sqt_spin || !time_after(jiffies, timeout)) {
6890 6891
			io_run_task_work();
			cond_resched();
6892 6893 6894 6895 6896 6897
			if (sqt_spin)
				timeout = jiffies + sqd->sq_thread_idle;
			continue;
		}

		prepare_to_wait(&sqd->wait, &wait, TASK_INTERRUPTIBLE);
6898
		if (!io_sqd_events_pending(sqd)) {
6899 6900
			needs_sched = true;
			list_for_each_entry(ctx, &sqd->ctx_list, sqd_list) {
6901 6902
				io_ring_set_wakeup_flag(ctx);

6903 6904 6905 6906 6907 6908 6909 6910 6911 6912 6913 6914 6915 6916 6917 6918
				if ((ctx->flags & IORING_SETUP_IOPOLL) &&
				    !list_empty_careful(&ctx->iopoll_list)) {
					needs_sched = false;
					break;
				}
				if (io_sqring_entries(ctx)) {
					needs_sched = false;
					break;
				}
			}

			if (needs_sched) {
				mutex_unlock(&sqd->lock);
				schedule();
				mutex_lock(&sqd->lock);
			}
6919 6920
			list_for_each_entry(ctx, &sqd->ctx_list, sqd_list)
				io_ring_clear_wakeup_flag(ctx);
J
Jens Axboe 已提交
6921
		}
6922 6923 6924

		finish_wait(&sqd->wait, &wait);
		timeout = jiffies + sqd->sq_thread_idle;
J
Jens Axboe 已提交
6925
	}
6926

6927
	io_uring_cancel_generic(true, sqd);
6928
	sqd->thread = NULL;
J
Jens Axboe 已提交
6929
	list_for_each_entry(ctx, &sqd->ctx_list, sqd_list)
6930
		io_ring_set_wakeup_flag(ctx);
6931
	io_run_task_work();
6932 6933
	mutex_unlock(&sqd->lock);

6934 6935
	complete(&sqd->exited);
	do_exit(0);
J
Jens Axboe 已提交
6936 6937
}

6938 6939 6940 6941 6942 6943 6944
struct io_wait_queue {
	struct wait_queue_entry wq;
	struct io_ring_ctx *ctx;
	unsigned to_wait;
	unsigned nr_timeouts;
};

6945
static inline bool io_should_wake(struct io_wait_queue *iowq)
6946 6947 6948 6949
{
	struct io_ring_ctx *ctx = iowq->ctx;

	/*
6950
	 * Wake up if we have enough events, or if a timeout occurred since we
6951 6952 6953
	 * started waiting. For timeouts, we always want to return to userspace,
	 * regardless of event count.
	 */
6954
	return io_cqring_events(ctx) >= iowq->to_wait ||
6955 6956 6957 6958 6959 6960 6961 6962 6963
			atomic_read(&ctx->cq_timeouts) != iowq->nr_timeouts;
}

static int io_wake_function(struct wait_queue_entry *curr, unsigned int mode,
			    int wake_flags, void *key)
{
	struct io_wait_queue *iowq = container_of(curr, struct io_wait_queue,
							wq);

6964 6965 6966 6967 6968 6969 6970
	/*
	 * Cannot safely flush overflowed CQEs from here, ensure we wake up
	 * the task, and the next invocation will do it.
	 */
	if (io_should_wake(iowq) || test_bit(0, &iowq->ctx->cq_check_overflow))
		return autoremove_wake_function(curr, mode, wake_flags, key);
	return -1;
6971 6972
}

6973 6974 6975 6976 6977 6978
static int io_run_task_work_sig(void)
{
	if (io_run_task_work())
		return 1;
	if (!signal_pending(current))
		return 0;
6979
	if (test_thread_flag(TIF_NOTIFY_SIGNAL))
6980
		return -ERESTARTSYS;
6981 6982 6983
	return -EINTR;
}

6984 6985 6986 6987 6988 6989 6990 6991 6992 6993 6994 6995 6996 6997 6998 6999 7000 7001 7002
/* when returns >0, the caller should retry */
static inline int io_cqring_wait_schedule(struct io_ring_ctx *ctx,
					  struct io_wait_queue *iowq,
					  signed long *timeout)
{
	int ret;

	/* make sure we run task_work before checking for signals */
	ret = io_run_task_work_sig();
	if (ret || io_should_wake(iowq))
		return ret;
	/* let the caller flush overflows, retry */
	if (test_bit(0, &ctx->cq_check_overflow))
		return 1;

	*timeout = schedule_timeout(*timeout);
	return !*timeout ? -ETIME : 1;
}

J
Jens Axboe 已提交
7003 7004 7005 7006 7007
/*
 * Wait until events become available, if we don't already have some. The
 * application must reap them itself, as they reside on the shared cq ring.
 */
static int io_cqring_wait(struct io_ring_ctx *ctx, int min_events,
7008 7009
			  const sigset_t __user *sig, size_t sigsz,
			  struct __kernel_timespec __user *uts)
J
Jens Axboe 已提交
7010
{
7011 7012 7013 7014 7015 7016 7017 7018 7019
	struct io_wait_queue iowq = {
		.wq = {
			.private	= current,
			.func		= io_wake_function,
			.entry		= LIST_HEAD_INIT(iowq.wq.entry),
		},
		.ctx		= ctx,
		.to_wait	= min_events,
	};
7020
	struct io_rings *rings = ctx->rings;
7021 7022
	signed long timeout = MAX_SCHEDULE_TIMEOUT;
	int ret;
J
Jens Axboe 已提交
7023

7024
	do {
7025
		io_cqring_overflow_flush(ctx, false);
7026
		if (io_cqring_events(ctx) >= min_events)
7027
			return 0;
7028
		if (!io_run_task_work())
7029 7030
			break;
	} while (1);
J
Jens Axboe 已提交
7031 7032

	if (sig) {
7033 7034 7035
#ifdef CONFIG_COMPAT
		if (in_compat_syscall())
			ret = set_compat_user_sigmask((const compat_sigset_t __user *)sig,
7036
						      sigsz);
7037 7038
		else
#endif
7039
			ret = set_user_sigmask(sig, sigsz);
7040

J
Jens Axboe 已提交
7041 7042 7043 7044
		if (ret)
			return ret;
	}

7045
	if (uts) {
7046 7047
		struct timespec64 ts;

7048 7049 7050 7051 7052
		if (get_timespec64(&ts, uts))
			return -EFAULT;
		timeout = timespec64_to_jiffies(&ts);
	}

7053
	iowq.nr_timeouts = atomic_read(&ctx->cq_timeouts);
7054
	trace_io_uring_cqring_wait(ctx, min_events);
7055
	do {
7056
		/* if we can't even flush overflow, don't wait for more */
7057
		if (!io_cqring_overflow_flush(ctx, false)) {
7058 7059 7060
			ret = -EBUSY;
			break;
		}
7061 7062
		prepare_to_wait_exclusive(&ctx->wait, &iowq.wq,
						TASK_INTERRUPTIBLE);
7063 7064
		ret = io_cqring_wait_schedule(ctx, &iowq, &timeout);
		finish_wait(&ctx->wait, &iowq.wq);
7065
		cond_resched();
7066
	} while (ret > 0);
7067

7068
	restore_saved_sigmask_unless(ret == -EINTR);
J
Jens Axboe 已提交
7069

7070
	return READ_ONCE(rings->cq.head) == READ_ONCE(rings->cq.tail) ? ret : 0;
J
Jens Axboe 已提交
7071 7072
}

7073
static void io_free_page_table(void **table, size_t size)
7074
{
7075
	unsigned i, nr_tables = DIV_ROUND_UP(size, PAGE_SIZE);
7076

7077
	for (i = 0; i < nr_tables; i++)
7078 7079 7080 7081 7082 7083 7084 7085 7086 7087 7088 7089 7090 7091 7092 7093 7094 7095 7096 7097 7098 7099 7100 7101 7102
		kfree(table[i]);
	kfree(table);
}

static void **io_alloc_page_table(size_t size)
{
	unsigned i, nr_tables = DIV_ROUND_UP(size, PAGE_SIZE);
	size_t init_size = size;
	void **table;

	table = kcalloc(nr_tables, sizeof(*table), GFP_KERNEL);
	if (!table)
		return NULL;

	for (i = 0; i < nr_tables; i++) {
		unsigned int this_size = min(size, PAGE_SIZE);

		table[i] = kzalloc(this_size, GFP_KERNEL);
		if (!table[i]) {
			io_free_page_table(table, init_size);
			return NULL;
		}
		size -= this_size;
	}
	return table;
7103 7104
}

7105
static inline void io_rsrc_ref_lock(struct io_ring_ctx *ctx)
7106
{
7107
	spin_lock_bh(&ctx->rsrc_ref_lock);
7108 7109
}

7110
static inline void io_rsrc_ref_unlock(struct io_ring_ctx *ctx)
J
Jens Axboe 已提交
7111
{
7112 7113
	spin_unlock_bh(&ctx->rsrc_ref_lock);
}
7114

7115
static void io_rsrc_node_destroy(struct io_rsrc_node *ref_node)
7116
{
7117 7118
	percpu_ref_exit(&ref_node->refs);
	kfree(ref_node);
7119 7120
}

P
Pavel Begunkov 已提交
7121 7122
static void io_rsrc_node_switch(struct io_ring_ctx *ctx,
				struct io_rsrc_data *data_to_kill)
J
Jens Axboe 已提交
7123
{
P
Pavel Begunkov 已提交
7124 7125
	WARN_ON_ONCE(!ctx->rsrc_backup_node);
	WARN_ON_ONCE(data_to_kill && !ctx->rsrc_node);
J
Jens Axboe 已提交
7126

P
Pavel Begunkov 已提交
7127 7128
	if (data_to_kill) {
		struct io_rsrc_node *rsrc_node = ctx->rsrc_node;
7129

P
Pavel Begunkov 已提交
7130 7131 7132 7133
		rsrc_node->rsrc_data = data_to_kill;
		io_rsrc_ref_lock(ctx);
		list_add_tail(&rsrc_node->node, &ctx->rsrc_ref_list);
		io_rsrc_ref_unlock(ctx);
7134

7135
		atomic_inc(&data_to_kill->refs);
P
Pavel Begunkov 已提交
7136 7137 7138
		percpu_ref_kill(&rsrc_node->refs);
		ctx->rsrc_node = NULL;
	}
J
Jens Axboe 已提交
7139

P
Pavel Begunkov 已提交
7140 7141 7142 7143
	if (!ctx->rsrc_node) {
		ctx->rsrc_node = ctx->rsrc_backup_node;
		ctx->rsrc_backup_node = NULL;
	}
7144 7145
}

P
Pavel Begunkov 已提交
7146
static int io_rsrc_node_switch_start(struct io_ring_ctx *ctx)
7147 7148 7149
{
	if (ctx->rsrc_backup_node)
		return 0;
7150
	ctx->rsrc_backup_node = io_rsrc_node_alloc(ctx);
7151
	return ctx->rsrc_backup_node ? 0 : -ENOMEM;
7152 7153
}

7154
static int io_rsrc_ref_quiesce(struct io_rsrc_data *data, struct io_ring_ctx *ctx)
7155 7156
{
	int ret;
7157

7158
	/* As we may drop ->uring_lock, other task may have started quiesce */
7159 7160
	if (data->quiesce)
		return -ENXIO;
7161

7162
	data->quiesce = true;
7163
	do {
P
Pavel Begunkov 已提交
7164
		ret = io_rsrc_node_switch_start(ctx);
7165
		if (ret)
7166
			break;
P
Pavel Begunkov 已提交
7167
		io_rsrc_node_switch(ctx, data);
7168

7169 7170 7171
		/* kill initial ref, already quiesced if zero */
		if (atomic_dec_and_test(&data->refs))
			break;
7172
		flush_delayed_work(&ctx->rsrc_put_work);
7173 7174 7175
		ret = wait_for_completion_interruptible(&data->done);
		if (!ret)
			break;
7176

7177 7178 7179
		atomic_inc(&data->refs);
		/* wait for all works potentially completing data->done */
		flush_delayed_work(&ctx->rsrc_put_work);
7180
		reinit_completion(&data->done);
7181

7182
		mutex_unlock(&ctx->uring_lock);
7183
		ret = io_run_task_work_sig();
7184
		mutex_lock(&ctx->uring_lock);
7185
	} while (ret >= 0);
7186
	data->quiesce = false;
7187

7188
	return ret;
7189 7190
}

7191 7192 7193 7194 7195 7196 7197 7198
static u64 *io_get_tag_slot(struct io_rsrc_data *data, unsigned int idx)
{
	unsigned int off = idx & IO_RSRC_TAG_TABLE_MASK;
	unsigned int table_idx = idx >> IO_RSRC_TAG_TABLE_SHIFT;

	return &data->tags[table_idx][off];
}

7199
static void io_rsrc_data_free(struct io_rsrc_data *data)
7200
{
7201 7202 7203 7204
	size_t size = data->nr * sizeof(data->tags[0][0]);

	if (data->tags)
		io_free_page_table((void **)data->tags, size);
7205 7206 7207
	kfree(data);
}

7208 7209 7210
static int io_rsrc_data_alloc(struct io_ring_ctx *ctx, rsrc_put_fn *do_put,
			      u64 __user *utags, unsigned nr,
			      struct io_rsrc_data **pdata)
7211
{
7212
	struct io_rsrc_data *data;
7213
	int ret = -ENOMEM;
7214
	unsigned i;
7215 7216 7217

	data = kzalloc(sizeof(*data), GFP_KERNEL);
	if (!data)
7218
		return -ENOMEM;
7219
	data->tags = (u64 **)io_alloc_page_table(nr * sizeof(data->tags[0][0]));
7220
	if (!data->tags) {
7221
		kfree(data);
7222 7223
		return -ENOMEM;
	}
7224 7225 7226 7227

	data->nr = nr;
	data->ctx = ctx;
	data->do_put = do_put;
7228
	if (utags) {
7229
		ret = -EFAULT;
7230
		for (i = 0; i < nr; i++) {
7231 7232 7233 7234
			u64 *tag_slot = io_get_tag_slot(data, i);

			if (copy_from_user(tag_slot, &utags[i],
					   sizeof(*tag_slot)))
7235
				goto fail;
7236
		}
7237
	}
7238

7239
	atomic_set(&data->refs, 1);
7240
	init_completion(&data->done);
7241 7242
	*pdata = data;
	return 0;
7243 7244 7245
fail:
	io_rsrc_data_free(data);
	return ret;
7246 7247
}

7248 7249 7250 7251 7252 7253 7254 7255 7256 7257 7258 7259 7260 7261 7262 7263
static bool io_alloc_file_tables(struct io_file_table *table, unsigned nr_files)
{
	size_t size = nr_files * sizeof(struct io_fixed_file);

	table->files = (struct io_fixed_file **)io_alloc_page_table(size);
	return !!table->files;
}

static void io_free_file_tables(struct io_file_table *table, unsigned nr_files)
{
	size_t size = nr_files * sizeof(struct io_fixed_file);

	io_free_page_table((void **)table->files, size);
	table->files = NULL;
}

7264
static void __io_sqe_files_unregister(struct io_ring_ctx *ctx)
7265
{
7266 7267 7268 7269 7270 7271 7272 7273 7274 7275 7276 7277 7278 7279 7280 7281 7282 7283 7284 7285
#if defined(CONFIG_UNIX)
	if (ctx->ring_sock) {
		struct sock *sock = ctx->ring_sock->sk;
		struct sk_buff *skb;

		while ((skb = skb_dequeue(&sock->sk_receive_queue)) != NULL)
			kfree_skb(skb);
	}
#else
	int i;

	for (i = 0; i < ctx->nr_user_files; i++) {
		struct file *file;

		file = io_file_from_index(ctx, i);
		if (file)
			fput(file);
	}
#endif
	io_free_file_tables(&ctx->file_table, ctx->nr_user_files);
7286
	io_rsrc_data_free(ctx->file_data);
7287 7288
	ctx->file_data = NULL;
	ctx->nr_user_files = 0;
7289 7290
}

7291 7292 7293 7294
static int io_sqe_files_unregister(struct io_ring_ctx *ctx)
{
	int ret;

7295
	if (!ctx->file_data)
7296
		return -ENXIO;
7297 7298 7299 7300
	ret = io_rsrc_ref_quiesce(ctx->file_data, ctx);
	if (!ret)
		__io_sqe_files_unregister(ctx);
	return ret;
J
Jens Axboe 已提交
7301 7302
}

7303
static void io_sq_thread_unpark(struct io_sq_data *sqd)
7304
	__releases(&sqd->lock)
7305
{
7306 7307
	WARN_ON_ONCE(sqd->thread == current);

7308 7309 7310 7311
	/*
	 * Do the dance but not conditional clear_bit() because it'd race with
	 * other threads incrementing park_pending and setting the bit.
	 */
7312
	clear_bit(IO_SQ_THREAD_SHOULD_PARK, &sqd->state);
7313 7314
	if (atomic_dec_return(&sqd->park_pending))
		set_bit(IO_SQ_THREAD_SHOULD_PARK, &sqd->state);
7315
	mutex_unlock(&sqd->lock);
7316 7317
}

7318
static void io_sq_thread_park(struct io_sq_data *sqd)
7319
	__acquires(&sqd->lock)
7320
{
7321 7322
	WARN_ON_ONCE(sqd->thread == current);

7323
	atomic_inc(&sqd->park_pending);
7324
	set_bit(IO_SQ_THREAD_SHOULD_PARK, &sqd->state);
7325
	mutex_lock(&sqd->lock);
J
Jens Axboe 已提交
7326
	if (sqd->thread)
7327
		wake_up_process(sqd->thread);
7328 7329 7330 7331
}

static void io_sq_thread_stop(struct io_sq_data *sqd)
{
7332
	WARN_ON_ONCE(sqd->thread == current);
P
Pavel Begunkov 已提交
7333
	WARN_ON_ONCE(test_bit(IO_SQ_THREAD_SHOULD_STOP, &sqd->state));
7334

J
Jens Axboe 已提交
7335
	set_bit(IO_SQ_THREAD_SHOULD_STOP, &sqd->state);
P
Pavel Begunkov 已提交
7336
	mutex_lock(&sqd->lock);
7337 7338
	if (sqd->thread)
		wake_up_process(sqd->thread);
7339
	mutex_unlock(&sqd->lock);
J
Jens Axboe 已提交
7340
	wait_for_completion(&sqd->exited);
7341 7342
}

7343
static void io_put_sq_data(struct io_sq_data *sqd)
J
Jens Axboe 已提交
7344
{
7345
	if (refcount_dec_and_test(&sqd->refs)) {
7346 7347
		WARN_ON_ONCE(atomic_read(&sqd->park_pending));

7348 7349 7350 7351 7352 7353 7354 7355 7356 7357
		io_sq_thread_stop(sqd);
		kfree(sqd);
	}
}

static void io_sq_thread_finish(struct io_ring_ctx *ctx)
{
	struct io_sq_data *sqd = ctx->sq_data;

	if (sqd) {
J
Jens Axboe 已提交
7358
		io_sq_thread_park(sqd);
7359
		list_del_init(&ctx->sqd_list);
7360
		io_sqd_update_thread_idle(sqd);
J
Jens Axboe 已提交
7361
		io_sq_thread_unpark(sqd);
7362 7363 7364

		io_put_sq_data(sqd);
		ctx->sq_data = NULL;
7365 7366 7367
	}
}

7368 7369 7370 7371 7372 7373 7374 7375 7376 7377 7378 7379 7380 7381 7382 7383 7384 7385 7386 7387
static struct io_sq_data *io_attach_sq_data(struct io_uring_params *p)
{
	struct io_ring_ctx *ctx_attach;
	struct io_sq_data *sqd;
	struct fd f;

	f = fdget(p->wq_fd);
	if (!f.file)
		return ERR_PTR(-ENXIO);
	if (f.file->f_op != &io_uring_fops) {
		fdput(f);
		return ERR_PTR(-EINVAL);
	}

	ctx_attach = f.file->private_data;
	sqd = ctx_attach->sq_data;
	if (!sqd) {
		fdput(f);
		return ERR_PTR(-EINVAL);
	}
7388 7389 7390 7391
	if (sqd->task_tgid != current->tgid) {
		fdput(f);
		return ERR_PTR(-EPERM);
	}
7392 7393 7394 7395 7396 7397

	refcount_inc(&sqd->refs);
	fdput(f);
	return sqd;
}

7398 7399
static struct io_sq_data *io_get_sq_data(struct io_uring_params *p,
					 bool *attached)
7400 7401 7402
{
	struct io_sq_data *sqd;

7403
	*attached = false;
7404 7405
	if (p->flags & IORING_SETUP_ATTACH_WQ) {
		sqd = io_attach_sq_data(p);
7406 7407
		if (!IS_ERR(sqd)) {
			*attached = true;
7408
			return sqd;
7409
		}
7410 7411 7412 7413
		/* fall through for EPERM case, setup new sqd/task */
		if (PTR_ERR(sqd) != -EPERM)
			return sqd;
	}
7414

7415 7416 7417 7418
	sqd = kzalloc(sizeof(*sqd), GFP_KERNEL);
	if (!sqd)
		return ERR_PTR(-ENOMEM);

7419
	atomic_set(&sqd->park_pending, 0);
7420
	refcount_set(&sqd->refs, 1);
7421
	INIT_LIST_HEAD(&sqd->ctx_list);
7422
	mutex_init(&sqd->lock);
7423
	init_waitqueue_head(&sqd->wait);
7424
	init_completion(&sqd->exited);
7425 7426 7427
	return sqd;
}

J
Jens Axboe 已提交
7428 7429 7430 7431 7432 7433 7434 7435 7436 7437 7438
#if defined(CONFIG_UNIX)
/*
 * Ensure the UNIX gc is aware of our file set, so we are certain that
 * the io_uring can be safely unregistered on process exit, even if we have
 * loops in the file referencing.
 */
static int __io_sqe_files_scm(struct io_ring_ctx *ctx, int nr, int offset)
{
	struct sock *sk = ctx->ring_sock->sk;
	struct scm_fp_list *fpl;
	struct sk_buff *skb;
7439
	int i, nr_files;
J
Jens Axboe 已提交
7440 7441 7442 7443 7444 7445 7446 7447 7448 7449 7450 7451 7452

	fpl = kzalloc(sizeof(*fpl), GFP_KERNEL);
	if (!fpl)
		return -ENOMEM;

	skb = alloc_skb(0, GFP_KERNEL);
	if (!skb) {
		kfree(fpl);
		return -ENOMEM;
	}

	skb->sk = sk;

7453
	nr_files = 0;
J
Jens Axboe 已提交
7454
	fpl->user = get_uid(current_user());
J
Jens Axboe 已提交
7455
	for (i = 0; i < nr; i++) {
7456 7457 7458
		struct file *file = io_file_from_index(ctx, i + offset);

		if (!file)
7459
			continue;
7460
		fpl->fp[nr_files] = get_file(file);
7461 7462
		unix_inflight(fpl->user, fpl->fp[nr_files]);
		nr_files++;
J
Jens Axboe 已提交
7463 7464
	}

7465 7466 7467 7468
	if (nr_files) {
		fpl->max = SCM_MAX_FD;
		fpl->count = nr_files;
		UNIXCB(skb).fp = fpl;
7469
		skb->destructor = unix_destruct_scm;
7470 7471
		refcount_add(skb->truesize, &sk->sk_wmem_alloc);
		skb_queue_head(&sk->sk_receive_queue, skb);
J
Jens Axboe 已提交
7472

7473 7474 7475 7476 7477 7478
		for (i = 0; i < nr_files; i++)
			fput(fpl->fp[i]);
	} else {
		kfree_skb(skb);
		kfree(fpl);
	}
J
Jens Axboe 已提交
7479 7480 7481 7482 7483 7484 7485 7486 7487 7488 7489 7490 7491 7492 7493 7494 7495 7496 7497 7498 7499 7500 7501 7502 7503 7504 7505 7506 7507 7508

	return 0;
}

/*
 * If UNIX sockets are enabled, fd passing can cause a reference cycle which
 * causes regular reference counting to break down. We rely on the UNIX
 * garbage collection to take care of this problem for us.
 */
static int io_sqe_files_scm(struct io_ring_ctx *ctx)
{
	unsigned left, total;
	int ret = 0;

	total = 0;
	left = ctx->nr_user_files;
	while (left) {
		unsigned this_files = min_t(unsigned, left, SCM_MAX_FD);

		ret = __io_sqe_files_scm(ctx, this_files, total);
		if (ret)
			break;
		left -= this_files;
		total += this_files;
	}

	if (!ret)
		return 0;

	while (total < ctx->nr_user_files) {
7509 7510 7511 7512
		struct file *file = io_file_from_index(ctx, total);

		if (file)
			fput(file);
J
Jens Axboe 已提交
7513 7514 7515 7516 7517 7518 7519 7520 7521 7522 7523 7524
		total++;
	}

	return ret;
}
#else
static int io_sqe_files_scm(struct io_ring_ctx *ctx)
{
	return 0;
}
#endif

7525
static void io_rsrc_file_put(struct io_ring_ctx *ctx, struct io_rsrc_put *prsrc)
7526
{
7527
	struct file *file = prsrc->file;
7528 7529 7530 7531 7532 7533 7534 7535 7536 7537 7538 7539 7540 7541 7542 7543 7544 7545 7546 7547 7548 7549 7550 7551 7552 7553 7554 7555 7556 7557 7558 7559 7560 7561 7562 7563 7564 7565 7566 7567 7568 7569 7570 7571 7572 7573 7574 7575 7576 7577 7578 7579 7580 7581 7582 7583 7584 7585 7586 7587
#if defined(CONFIG_UNIX)
	struct sock *sock = ctx->ring_sock->sk;
	struct sk_buff_head list, *head = &sock->sk_receive_queue;
	struct sk_buff *skb;
	int i;

	__skb_queue_head_init(&list);

	/*
	 * Find the skb that holds this file in its SCM_RIGHTS. When found,
	 * remove this entry and rearrange the file array.
	 */
	skb = skb_dequeue(head);
	while (skb) {
		struct scm_fp_list *fp;

		fp = UNIXCB(skb).fp;
		for (i = 0; i < fp->count; i++) {
			int left;

			if (fp->fp[i] != file)
				continue;

			unix_notinflight(fp->user, fp->fp[i]);
			left = fp->count - 1 - i;
			if (left) {
				memmove(&fp->fp[i], &fp->fp[i + 1],
						left * sizeof(struct file *));
			}
			fp->count--;
			if (!fp->count) {
				kfree_skb(skb);
				skb = NULL;
			} else {
				__skb_queue_tail(&list, skb);
			}
			fput(file);
			file = NULL;
			break;
		}

		if (!file)
			break;

		__skb_queue_tail(&list, skb);

		skb = skb_dequeue(head);
	}

	if (skb_peek(&list)) {
		spin_lock_irq(&head->lock);
		while ((skb = __skb_dequeue(&list)) != NULL)
			__skb_queue_tail(head, skb);
		spin_unlock_irq(&head->lock);
	}
#else
	fput(file);
#endif
}

7588
static void __io_rsrc_put_work(struct io_rsrc_node *ref_node)
7589
{
7590
	struct io_rsrc_data *rsrc_data = ref_node->rsrc_data;
7591 7592
	struct io_ring_ctx *ctx = rsrc_data->ctx;
	struct io_rsrc_put *prsrc, *tmp;
7593

7594 7595
	list_for_each_entry_safe(prsrc, tmp, &ref_node->rsrc_list, list) {
		list_del(&prsrc->list);
7596 7597 7598 7599 7600

		if (prsrc->tag) {
			bool lock_ring = ctx->flags & IORING_SETUP_IOPOLL;

			io_ring_submit_lock(ctx, lock_ring);
7601
			spin_lock_irq(&ctx->completion_lock);
7602
			io_cqring_fill_event(ctx, prsrc->tag, 0, 0);
7603
			ctx->cq_extra++;
7604
			io_commit_cqring(ctx);
7605
			spin_unlock_irq(&ctx->completion_lock);
7606 7607 7608 7609
			io_cqring_ev_posted(ctx);
			io_ring_submit_unlock(ctx, lock_ring);
		}

7610
		rsrc_data->do_put(ctx, prsrc);
7611
		kfree(prsrc);
7612
	}
7613

7614
	io_rsrc_node_destroy(ref_node);
7615 7616
	if (atomic_dec_and_test(&rsrc_data->refs))
		complete(&rsrc_data->done);
7617
}
7618

7619
static void io_rsrc_put_work(struct work_struct *work)
7620 7621 7622 7623
{
	struct io_ring_ctx *ctx;
	struct llist_node *node;

7624 7625
	ctx = container_of(work, struct io_ring_ctx, rsrc_put_work.work);
	node = llist_del_all(&ctx->rsrc_put_llist);
7626 7627

	while (node) {
7628
		struct io_rsrc_node *ref_node;
7629 7630
		struct llist_node *next = node->next;

7631
		ref_node = llist_entry(node, struct io_rsrc_node, llist);
7632
		__io_rsrc_put_work(ref_node);
7633 7634 7635 7636
		node = next;
	}
}

7637
static void io_rsrc_node_ref_zero(struct percpu_ref *ref)
7638
{
7639
	struct io_rsrc_node *node = container_of(ref, struct io_rsrc_node, refs);
7640
	struct io_ring_ctx *ctx = node->rsrc_data->ctx;
P
Pavel Begunkov 已提交
7641 7642
	bool first_add = false;

7643
	io_rsrc_ref_lock(ctx);
7644
	node->done = true;
P
Pavel Begunkov 已提交
7645

7646
	while (!list_empty(&ctx->rsrc_ref_list)) {
7647 7648
		node = list_first_entry(&ctx->rsrc_ref_list,
					    struct io_rsrc_node, node);
P
Pavel Begunkov 已提交
7649
		/* recycle ref nodes in order */
7650
		if (!node->done)
P
Pavel Begunkov 已提交
7651
			break;
7652 7653
		list_del(&node->node);
		first_add |= llist_add(&node->llist, &ctx->rsrc_put_llist);
P
Pavel Begunkov 已提交
7654
	}
7655
	io_rsrc_ref_unlock(ctx);
7656

7657 7658
	if (first_add)
		mod_delayed_work(system_wq, &ctx->rsrc_put_work, HZ);
7659
}
7660

7661
static struct io_rsrc_node *io_rsrc_node_alloc(struct io_ring_ctx *ctx)
7662
{
7663
	struct io_rsrc_node *ref_node;
7664

7665 7666
	ref_node = kzalloc(sizeof(*ref_node), GFP_KERNEL);
	if (!ref_node)
7667
		return NULL;
7668

7669
	if (percpu_ref_init(&ref_node->refs, io_rsrc_node_ref_zero,
7670 7671
			    0, GFP_KERNEL)) {
		kfree(ref_node);
7672
		return NULL;
7673 7674
	}
	INIT_LIST_HEAD(&ref_node->node);
7675
	INIT_LIST_HEAD(&ref_node->rsrc_list);
P
Pavel Begunkov 已提交
7676
	ref_node->done = false;
7677 7678 7679
	return ref_node;
}

J
Jens Axboe 已提交
7680
static int io_sqe_files_register(struct io_ring_ctx *ctx, void __user *arg,
7681
				 unsigned nr_args, u64 __user *tags)
J
Jens Axboe 已提交
7682 7683
{
	__s32 __user *fds = (__s32 __user *) arg;
7684
	struct file *file;
7685
	int fd, ret;
7686
	unsigned i;
J
Jens Axboe 已提交
7687

7688
	if (ctx->file_data)
J
Jens Axboe 已提交
7689 7690 7691 7692 7693
		return -EBUSY;
	if (!nr_args)
		return -EINVAL;
	if (nr_args > IORING_MAX_FIXED_FILES)
		return -EMFILE;
P
Pavel Begunkov 已提交
7694
	ret = io_rsrc_node_switch_start(ctx);
7695 7696
	if (ret)
		return ret;
7697 7698 7699 7700
	ret = io_rsrc_data_alloc(ctx, io_rsrc_file_put, tags, nr_args,
				 &ctx->file_data);
	if (ret)
		return ret;
J
Jens Axboe 已提交
7701

7702
	ret = -ENOMEM;
7703
	if (!io_alloc_file_tables(&ctx->file_table, nr_args))
7704
		goto out_free;
7705

7706
	for (i = 0; i < nr_args; i++, ctx->nr_user_files++) {
7707
		if (copy_from_user(&fd, &fds[i], sizeof(fd))) {
7708 7709 7710
			ret = -EFAULT;
			goto out_fput;
		}
7711
		/* allow sparse sets */
7712 7713
		if (fd == -1) {
			ret = -EINVAL;
7714
			if (unlikely(*io_get_tag_slot(ctx->file_data, i)))
7715
				goto out_fput;
7716
			continue;
7717
		}
J
Jens Axboe 已提交
7718

7719
		file = fget(fd);
J
Jens Axboe 已提交
7720
		ret = -EBADF;
7721
		if (unlikely(!file))
7722
			goto out_fput;
7723

J
Jens Axboe 已提交
7724 7725 7726 7727 7728 7729 7730
		/*
		 * Don't allow io_uring instances to be registered. If UNIX
		 * isn't enabled, then this causes a reference cycle and this
		 * instance can never get freed. If UNIX is enabled we'll
		 * handle it just fine, but there's still no point in allowing
		 * a ring fd as it doesn't support regular read/write anyway.
		 */
7731 7732
		if (file->f_op == &io_uring_fops) {
			fput(file);
7733
			goto out_fput;
J
Jens Axboe 已提交
7734
		}
7735
		io_fixed_file_set(io_fixed_file_slot(&ctx->file_table, i), file);
J
Jens Axboe 已提交
7736 7737 7738
	}

	ret = io_sqe_files_scm(ctx);
7739
	if (ret) {
7740
		__io_sqe_files_unregister(ctx);
7741 7742
		return ret;
	}
J
Jens Axboe 已提交
7743

P
Pavel Begunkov 已提交
7744
	io_rsrc_node_switch(ctx, NULL);
J
Jens Axboe 已提交
7745
	return ret;
7746 7747 7748 7749 7750 7751
out_fput:
	for (i = 0; i < ctx->nr_user_files; i++) {
		file = io_file_from_index(ctx, i);
		if (file)
			fput(file);
	}
7752
	io_free_file_tables(&ctx->file_table, nr_args);
7753 7754
	ctx->nr_user_files = 0;
out_free:
7755
	io_rsrc_data_free(ctx->file_data);
7756
	ctx->file_data = NULL;
J
Jens Axboe 已提交
7757 7758 7759
	return ret;
}

7760 7761 7762 7763 7764 7765 7766 7767 7768 7769 7770 7771 7772 7773 7774 7775 7776 7777 7778 7779 7780 7781 7782 7783 7784 7785 7786 7787 7788 7789 7790 7791 7792 7793 7794 7795 7796 7797 7798 7799 7800 7801 7802
static int io_sqe_file_register(struct io_ring_ctx *ctx, struct file *file,
				int index)
{
#if defined(CONFIG_UNIX)
	struct sock *sock = ctx->ring_sock->sk;
	struct sk_buff_head *head = &sock->sk_receive_queue;
	struct sk_buff *skb;

	/*
	 * See if we can merge this file into an existing skb SCM_RIGHTS
	 * file set. If there's no room, fall back to allocating a new skb
	 * and filling it in.
	 */
	spin_lock_irq(&head->lock);
	skb = skb_peek(head);
	if (skb) {
		struct scm_fp_list *fpl = UNIXCB(skb).fp;

		if (fpl->count < SCM_MAX_FD) {
			__skb_unlink(skb, head);
			spin_unlock_irq(&head->lock);
			fpl->fp[fpl->count] = get_file(file);
			unix_inflight(fpl->user, fpl->fp[fpl->count]);
			fpl->count++;
			spin_lock_irq(&head->lock);
			__skb_queue_head(head, skb);
		} else {
			skb = NULL;
		}
	}
	spin_unlock_irq(&head->lock);

	if (skb) {
		fput(file);
		return 0;
	}

	return __io_sqe_files_scm(ctx, 1, index);
#else
	return 0;
#endif
}

7803
static int io_queue_rsrc_removal(struct io_rsrc_data *data, unsigned idx,
7804
				 struct io_rsrc_node *node, void *rsrc)
7805
{
7806
	struct io_rsrc_put *prsrc;
7807

7808 7809
	prsrc = kzalloc(sizeof(*prsrc), GFP_KERNEL);
	if (!prsrc)
7810
		return -ENOMEM;
7811

7812
	prsrc->tag = *io_get_tag_slot(data, idx);
7813
	prsrc->rsrc = rsrc;
7814
	list_add(&prsrc->list, &node->rsrc_list);
7815
	return 0;
7816 7817 7818
}

static int __io_sqe_files_update(struct io_ring_ctx *ctx,
7819
				 struct io_uring_rsrc_update2 *up,
7820 7821
				 unsigned nr_args)
{
7822
	u64 __user *tags = u64_to_user_ptr(up->tags);
7823
	__s32 __user *fds = u64_to_user_ptr(up->data);
7824
	struct io_rsrc_data *data = ctx->file_data;
7825 7826
	struct io_fixed_file *file_slot;
	struct file *file;
7827 7828
	int fd, i, err = 0;
	unsigned int done;
7829
	bool needs_switch = false;
7830

7831 7832 7833
	if (!ctx->file_data)
		return -ENXIO;
	if (up->offset + nr_args > ctx->nr_user_files)
7834 7835
		return -EINVAL;

7836
	for (done = 0; done < nr_args; done++) {
7837 7838 7839 7840
		u64 tag = 0;

		if ((tags && copy_from_user(&tag, &tags[done], sizeof(tag))) ||
		    copy_from_user(&fd, &fds[done], sizeof(fd))) {
7841 7842 7843
			err = -EFAULT;
			break;
		}
7844 7845 7846 7847
		if ((fd == IORING_REGISTER_FILES_SKIP || fd == -1) && tag) {
			err = -EINVAL;
			break;
		}
7848 7849 7850
		if (fd == IORING_REGISTER_FILES_SKIP)
			continue;

7851
		i = array_index_nospec(up->offset + done, ctx->nr_user_files);
7852
		file_slot = io_fixed_file_slot(&ctx->file_table, i);
7853

7854 7855
		if (file_slot->file_ptr) {
			file = (struct file *)(file_slot->file_ptr & FFS_MASK);
7856 7857
			err = io_queue_rsrc_removal(data, up->offset + done,
						    ctx->rsrc_node, file);
7858 7859
			if (err)
				break;
7860
			file_slot->file_ptr = 0;
7861
			needs_switch = true;
7862 7863 7864 7865 7866 7867 7868 7869 7870 7871 7872 7873 7874 7875 7876 7877 7878 7879 7880 7881
		}
		if (fd != -1) {
			file = fget(fd);
			if (!file) {
				err = -EBADF;
				break;
			}
			/*
			 * Don't allow io_uring instances to be registered. If
			 * UNIX isn't enabled, then this causes a reference
			 * cycle and this instance can never get freed. If UNIX
			 * is enabled we'll handle it just fine, but there's
			 * still no point in allowing a ring fd as it doesn't
			 * support regular read/write anyway.
			 */
			if (file->f_op == &io_uring_fops) {
				fput(file);
				err = -EBADF;
				break;
			}
7882
			*io_get_tag_slot(data, up->offset + done) = tag;
7883
			io_fixed_file_set(file_slot, file);
7884
			err = io_sqe_file_register(ctx, file, i);
7885
			if (err) {
7886
				file_slot->file_ptr = 0;
7887
				fput(file);
7888
				break;
7889
			}
7890
		}
7891 7892
	}

P
Pavel Begunkov 已提交
7893 7894
	if (needs_switch)
		io_rsrc_node_switch(ctx, data);
7895 7896
	return done ? done : err;
}
7897

7898
static struct io_wq_work *io_free_work(struct io_wq_work *work)
7899 7900 7901
{
	struct io_kiocb *req = container_of(work, struct io_kiocb, work);

7902 7903
	req = io_put_req_find_next(req);
	return req ? &req->work : NULL;
7904 7905
}

7906 7907
static struct io_wq *io_init_wq_offload(struct io_ring_ctx *ctx,
					struct task_struct *task)
7908
{
7909
	struct io_wq_hash *hash;
7910 7911 7912
	struct io_wq_data data;
	unsigned int concurrency;

7913 7914 7915 7916 7917 7918 7919 7920
	hash = ctx->hash_map;
	if (!hash) {
		hash = kzalloc(sizeof(*hash), GFP_KERNEL);
		if (!hash)
			return ERR_PTR(-ENOMEM);
		refcount_set(&hash->refs, 1);
		init_waitqueue_head(&hash->wait);
		ctx->hash_map = hash;
7921 7922
	}

7923
	data.hash = hash;
7924
	data.task = task;
7925
	data.free_work = io_free_work;
7926
	data.do_work = io_wq_submit_work;
7927

J
Jens Axboe 已提交
7928 7929
	/* Do QD, or 4 * CPUS, whatever is smallest */
	concurrency = min(ctx->sq_entries, 4 * num_online_cpus());
7930

7931
	return io_wq_create(concurrency, &data);
7932 7933
}

7934 7935
static int io_uring_alloc_task_context(struct task_struct *task,
				       struct io_ring_ctx *ctx)
7936 7937
{
	struct io_uring_task *tctx;
7938
	int ret;
7939

7940
	tctx = kzalloc(sizeof(*tctx), GFP_KERNEL);
7941 7942 7943
	if (unlikely(!tctx))
		return -ENOMEM;

7944 7945 7946 7947 7948 7949
	ret = percpu_counter_init(&tctx->inflight, 0, GFP_KERNEL);
	if (unlikely(ret)) {
		kfree(tctx);
		return ret;
	}

7950
	tctx->io_wq = io_init_wq_offload(ctx, task);
7951 7952 7953 7954 7955 7956 7957
	if (IS_ERR(tctx->io_wq)) {
		ret = PTR_ERR(tctx->io_wq);
		percpu_counter_destroy(&tctx->inflight);
		kfree(tctx);
		return ret;
	}

7958 7959
	xa_init(&tctx->xa);
	init_waitqueue_head(&tctx->wait);
7960
	atomic_set(&tctx->in_idle, 0);
7961
	atomic_set(&tctx->inflight_tracked, 0);
7962
	task->io_uring = tctx;
7963 7964 7965
	spin_lock_init(&tctx->task_lock);
	INIT_WQ_LIST(&tctx->task_list);
	init_task_work(&tctx->task_work, tctx_task_work);
7966 7967 7968 7969 7970 7971 7972 7973
	return 0;
}

void __io_uring_free(struct task_struct *tsk)
{
	struct io_uring_task *tctx = tsk->io_uring;

	WARN_ON_ONCE(!xa_empty(&tctx->xa));
7974
	WARN_ON_ONCE(tctx->io_wq);
7975
	WARN_ON_ONCE(tctx->cached_refs);
7976

7977
	percpu_counter_destroy(&tctx->inflight);
7978 7979 7980 7981
	kfree(tctx);
	tsk->io_uring = NULL;
}

7982 7983
static int io_sq_offload_create(struct io_ring_ctx *ctx,
				struct io_uring_params *p)
J
Jens Axboe 已提交
7984 7985 7986
{
	int ret;

J
Jens Axboe 已提交
7987 7988 7989 7990 7991 7992 7993 7994 7995
	/* Retain compatibility with failing for an invalid attach attempt */
	if ((ctx->flags & (IORING_SETUP_ATTACH_WQ | IORING_SETUP_SQPOLL)) ==
				IORING_SETUP_ATTACH_WQ) {
		struct fd f;

		f = fdget(p->wq_fd);
		if (!f.file)
			return -ENXIO;
		fdput(f);
7996 7997
		if (f.file->f_op != &io_uring_fops)
			return -EINVAL;
J
Jens Axboe 已提交
7998
	}
J
Jens Axboe 已提交
7999
	if (ctx->flags & IORING_SETUP_SQPOLL) {
8000
		struct task_struct *tsk;
8001
		struct io_sq_data *sqd;
8002
		bool attached;
8003

8004
		sqd = io_get_sq_data(p, &attached);
8005 8006 8007 8008
		if (IS_ERR(sqd)) {
			ret = PTR_ERR(sqd);
			goto err;
		}
8009

8010
		ctx->sq_creds = get_current_cred();
8011
		ctx->sq_data = sqd;
8012 8013 8014 8015
		ctx->sq_thread_idle = msecs_to_jiffies(p->sq_thread_idle);
		if (!ctx->sq_thread_idle)
			ctx->sq_thread_idle = HZ;

8016
		io_sq_thread_park(sqd);
8017 8018
		list_add(&ctx->sqd_list, &sqd->ctx_list);
		io_sqd_update_thread_idle(sqd);
8019
		/* don't attach to a dying SQPOLL thread, would be racy */
8020
		ret = (attached && !sqd->thread) ? -ENXIO : 0;
8021 8022
		io_sq_thread_unpark(sqd);

8023 8024 8025
		if (ret < 0)
			goto err;
		if (attached)
8026
			return 0;
8027

J
Jens Axboe 已提交
8028
		if (p->flags & IORING_SETUP_SQ_AFF) {
8029
			int cpu = p->sq_thread_cpu;
J
Jens Axboe 已提交
8030

8031
			ret = -EINVAL;
8032
			if (cpu >= nr_cpu_ids || !cpu_online(cpu))
8033
				goto err_sqpoll;
8034
			sqd->sq_cpu = cpu;
J
Jens Axboe 已提交
8035
		} else {
8036
			sqd->sq_cpu = -1;
J
Jens Axboe 已提交
8037
		}
8038 8039

		sqd->task_pid = current->pid;
8040
		sqd->task_tgid = current->tgid;
8041 8042 8043
		tsk = create_io_thread(io_sq_thread, sqd, NUMA_NO_NODE);
		if (IS_ERR(tsk)) {
			ret = PTR_ERR(tsk);
8044
			goto err_sqpoll;
J
Jens Axboe 已提交
8045
		}
8046

8047
		sqd->thread = tsk;
8048
		ret = io_uring_alloc_task_context(tsk, ctx);
8049
		wake_up_new_task(tsk);
8050 8051
		if (ret)
			goto err;
J
Jens Axboe 已提交
8052 8053 8054 8055 8056 8057
	} else if (p->flags & IORING_SETUP_SQ_AFF) {
		/* Can't have SQ_AFF without SQPOLL */
		ret = -EINVAL;
		goto err;
	}

J
Jens Axboe 已提交
8058
	return 0;
8059 8060
err_sqpoll:
	complete(&ctx->sq_data->exited);
J
Jens Axboe 已提交
8061
err:
8062
	io_sq_thread_finish(ctx);
J
Jens Axboe 已提交
8063 8064 8065
	return ret;
}

8066 8067
static inline void __io_unaccount_mem(struct user_struct *user,
				      unsigned long nr_pages)
J
Jens Axboe 已提交
8068 8069 8070 8071
{
	atomic_long_sub(nr_pages, &user->locked_vm);
}

8072 8073
static inline int __io_account_mem(struct user_struct *user,
				   unsigned long nr_pages)
J
Jens Axboe 已提交
8074 8075 8076 8077 8078 8079 8080 8081 8082 8083 8084 8085 8086 8087 8088 8089 8090
{
	unsigned long page_limit, cur_pages, new_pages;

	/* Don't allow more pages than we can safely lock */
	page_limit = rlimit(RLIMIT_MEMLOCK) >> PAGE_SHIFT;

	do {
		cur_pages = atomic_long_read(&user->locked_vm);
		new_pages = cur_pages + nr_pages;
		if (new_pages > page_limit)
			return -ENOMEM;
	} while (atomic_long_cmpxchg(&user->locked_vm, cur_pages,
					new_pages) != cur_pages);

	return 0;
}

8091
static void io_unaccount_mem(struct io_ring_ctx *ctx, unsigned long nr_pages)
8092
{
J
Jens Axboe 已提交
8093
	if (ctx->user)
8094
		__io_unaccount_mem(ctx->user, nr_pages);
8095

8096 8097
	if (ctx->mm_account)
		atomic64_sub(nr_pages, &ctx->mm_account->pinned_vm);
8098 8099
}

8100
static int io_account_mem(struct io_ring_ctx *ctx, unsigned long nr_pages)
8101
{
8102 8103
	int ret;

J
Jens Axboe 已提交
8104
	if (ctx->user) {
8105 8106 8107 8108 8109
		ret = __io_account_mem(ctx->user, nr_pages);
		if (ret)
			return ret;
	}

8110 8111
	if (ctx->mm_account)
		atomic64_add(nr_pages, &ctx->mm_account->pinned_vm);
8112 8113 8114 8115

	return 0;
}

J
Jens Axboe 已提交
8116 8117
static void io_mem_free(void *ptr)
{
8118 8119 8120 8121
	struct page *page;

	if (!ptr)
		return;
J
Jens Axboe 已提交
8122

8123
	page = virt_to_head_page(ptr);
J
Jens Axboe 已提交
8124 8125 8126 8127 8128 8129 8130
	if (put_page_testzero(page))
		free_compound_page(page);
}

static void *io_mem_alloc(size_t size)
{
	gfp_t gfp_flags = GFP_KERNEL | __GFP_ZERO | __GFP_NOWARN | __GFP_COMP |
8131
				__GFP_NORETRY | __GFP_ACCOUNT;
J
Jens Axboe 已提交
8132 8133 8134 8135

	return (void *) __get_free_pages(gfp_flags, get_order(size));
}

8136 8137 8138 8139 8140 8141 8142 8143 8144 8145 8146 8147 8148 8149 8150 8151
static unsigned long rings_size(unsigned sq_entries, unsigned cq_entries,
				size_t *sq_offset)
{
	struct io_rings *rings;
	size_t off, sq_array_size;

	off = struct_size(rings, cqes, cq_entries);
	if (off == SIZE_MAX)
		return SIZE_MAX;

#ifdef CONFIG_SMP
	off = ALIGN(off, SMP_CACHE_BYTES);
	if (off == 0)
		return SIZE_MAX;
#endif

8152 8153 8154
	if (sq_offset)
		*sq_offset = off;

8155 8156 8157 8158 8159 8160 8161 8162 8163 8164
	sq_array_size = array_size(sizeof(u32), sq_entries);
	if (sq_array_size == SIZE_MAX)
		return SIZE_MAX;

	if (check_add_overflow(off, sq_array_size, &off))
		return SIZE_MAX;

	return off;
}

8165
static void io_buffer_unmap(struct io_ring_ctx *ctx, struct io_mapped_ubuf **slot)
8166
{
8167
	struct io_mapped_ubuf *imu = *slot;
8168 8169
	unsigned int i;

8170 8171 8172 8173 8174 8175 8176
	if (imu != ctx->dummy_ubuf) {
		for (i = 0; i < imu->nr_bvecs; i++)
			unpin_user_page(imu->bvec[i].bv_page);
		if (imu->acct_pages)
			io_unaccount_mem(ctx, imu->acct_pages);
		kvfree(imu);
	}
8177
	*slot = NULL;
8178 8179
}

8180
static void io_rsrc_buf_put(struct io_ring_ctx *ctx, struct io_rsrc_put *prsrc)
8181
{
8182 8183
	io_buffer_unmap(ctx, &prsrc->buf);
	prsrc->buf = NULL;
8184
}
8185

8186 8187 8188
static void __io_sqe_buffers_unregister(struct io_ring_ctx *ctx)
{
	unsigned int i;
8189

8190 8191
	for (i = 0; i < ctx->nr_user_bufs; i++)
		io_buffer_unmap(ctx, &ctx->user_bufs[i]);
8192
	kfree(ctx->user_bufs);
8193
	io_rsrc_data_free(ctx->buf_data);
8194
	ctx->user_bufs = NULL;
8195
	ctx->buf_data = NULL;
8196
	ctx->nr_user_bufs = 0;
8197 8198
}

8199
static int io_sqe_buffers_unregister(struct io_ring_ctx *ctx)
8200
{
8201
	int ret;
8202

8203
	if (!ctx->buf_data)
8204 8205
		return -ENXIO;

8206 8207 8208 8209
	ret = io_rsrc_ref_quiesce(ctx->buf_data, ctx);
	if (!ret)
		__io_sqe_buffers_unregister(ctx);
	return ret;
8210 8211 8212 8213 8214 8215 8216 8217 8218 8219 8220 8221 8222 8223 8224 8225
}

static int io_copy_iov(struct io_ring_ctx *ctx, struct iovec *dst,
		       void __user *arg, unsigned index)
{
	struct iovec __user *src;

#ifdef CONFIG_COMPAT
	if (ctx->compat) {
		struct compat_iovec __user *ciovs;
		struct compat_iovec ciov;

		ciovs = (struct compat_iovec __user *) arg;
		if (copy_from_user(&ciov, &ciovs[index], sizeof(ciov)))
			return -EFAULT;

8226
		dst->iov_base = u64_to_user_ptr((u64)ciov.iov_base);
8227 8228 8229 8230 8231 8232 8233 8234 8235 8236
		dst->iov_len = ciov.iov_len;
		return 0;
	}
#endif
	src = (struct iovec __user *) arg;
	if (copy_from_user(dst, &src[index], sizeof(*dst)))
		return -EFAULT;
	return 0;
}

8237 8238 8239 8240 8241 8242 8243 8244 8245 8246 8247 8248 8249 8250 8251 8252 8253 8254 8255 8256 8257 8258 8259 8260
/*
 * Not super efficient, but this is just a registration time. And we do cache
 * the last compound head, so generally we'll only do a full search if we don't
 * match that one.
 *
 * We check if the given compound head page has already been accounted, to
 * avoid double accounting it. This allows us to account the full size of the
 * page, not just the constituent pages of a huge page.
 */
static bool headpage_already_acct(struct io_ring_ctx *ctx, struct page **pages,
				  int nr_pages, struct page *hpage)
{
	int i, j;

	/* check current page array */
	for (i = 0; i < nr_pages; i++) {
		if (!PageCompound(pages[i]))
			continue;
		if (compound_head(pages[i]) == hpage)
			return true;
	}

	/* check previously registered pages */
	for (i = 0; i < ctx->nr_user_bufs; i++) {
8261
		struct io_mapped_ubuf *imu = ctx->user_bufs[i];
8262 8263 8264 8265 8266 8267 8268 8269 8270 8271 8272 8273 8274 8275 8276 8277 8278 8279

		for (j = 0; j < imu->nr_bvecs; j++) {
			if (!PageCompound(imu->bvec[j].bv_page))
				continue;
			if (compound_head(imu->bvec[j].bv_page) == hpage)
				return true;
		}
	}

	return false;
}

static int io_buffer_account_pin(struct io_ring_ctx *ctx, struct page **pages,
				 int nr_pages, struct io_mapped_ubuf *imu,
				 struct page **last_hpage)
{
	int i, ret;

8280
	imu->acct_pages = 0;
8281 8282 8283 8284 8285 8286 8287 8288 8289 8290 8291 8292 8293 8294 8295 8296 8297 8298 8299
	for (i = 0; i < nr_pages; i++) {
		if (!PageCompound(pages[i])) {
			imu->acct_pages++;
		} else {
			struct page *hpage;

			hpage = compound_head(pages[i]);
			if (hpage == *last_hpage)
				continue;
			*last_hpage = hpage;
			if (headpage_already_acct(ctx, pages, i, hpage))
				continue;
			imu->acct_pages += page_size(hpage) >> PAGE_SHIFT;
		}
	}

	if (!imu->acct_pages)
		return 0;

8300
	ret = io_account_mem(ctx, imu->acct_pages);
8301 8302 8303 8304 8305
	if (ret)
		imu->acct_pages = 0;
	return ret;
}

8306
static int io_sqe_buffer_register(struct io_ring_ctx *ctx, struct iovec *iov,
8307
				  struct io_mapped_ubuf **pimu,
8308
				  struct page **last_hpage)
8309
{
8310
	struct io_mapped_ubuf *imu = NULL;
8311 8312
	struct vm_area_struct **vmas = NULL;
	struct page **pages = NULL;
8313 8314 8315 8316
	unsigned long off, start, end, ubuf;
	size_t size;
	int ret, pret, nr_pages, i;

8317 8318 8319 8320 8321
	if (!iov->iov_base) {
		*pimu = ctx->dummy_ubuf;
		return 0;
	}

8322 8323 8324 8325 8326
	ubuf = (unsigned long) iov->iov_base;
	end = (ubuf + iov->iov_len + PAGE_SIZE - 1) >> PAGE_SHIFT;
	start = ubuf >> PAGE_SHIFT;
	nr_pages = end - start;

8327
	*pimu = NULL;
8328 8329 8330 8331 8332 8333 8334 8335 8336 8337
	ret = -ENOMEM;

	pages = kvmalloc_array(nr_pages, sizeof(struct page *), GFP_KERNEL);
	if (!pages)
		goto done;

	vmas = kvmalloc_array(nr_pages, sizeof(struct vm_area_struct *),
			      GFP_KERNEL);
	if (!vmas)
		goto done;
8338

8339
	imu = kvmalloc(struct_size(imu, bvec, nr_pages), GFP_KERNEL);
8340
	if (!imu)
8341 8342 8343 8344 8345 8346 8347 8348 8349 8350 8351
		goto done;

	ret = 0;
	mmap_read_lock(current->mm);
	pret = pin_user_pages(ubuf, nr_pages, FOLL_WRITE | FOLL_LONGTERM,
			      pages, vmas);
	if (pret == nr_pages) {
		/* don't support file backed memory */
		for (i = 0; i < nr_pages; i++) {
			struct vm_area_struct *vma = vmas[i];

8352 8353
			if (vma_is_shmem(vma))
				continue;
8354 8355 8356 8357 8358 8359 8360 8361 8362 8363 8364 8365 8366 8367 8368 8369 8370 8371 8372 8373 8374 8375 8376 8377 8378 8379 8380 8381 8382 8383 8384 8385 8386 8387 8388 8389 8390 8391 8392 8393
			if (vma->vm_file &&
			    !is_file_hugepages(vma->vm_file)) {
				ret = -EOPNOTSUPP;
				break;
			}
		}
	} else {
		ret = pret < 0 ? pret : -EFAULT;
	}
	mmap_read_unlock(current->mm);
	if (ret) {
		/*
		 * if we did partial map, or found file backed vmas,
		 * release any pages we did get
		 */
		if (pret > 0)
			unpin_user_pages(pages, pret);
		goto done;
	}

	ret = io_buffer_account_pin(ctx, pages, pret, imu, last_hpage);
	if (ret) {
		unpin_user_pages(pages, pret);
		goto done;
	}

	off = ubuf & ~PAGE_MASK;
	size = iov->iov_len;
	for (i = 0; i < nr_pages; i++) {
		size_t vec_len;

		vec_len = min_t(size_t, size, PAGE_SIZE - off);
		imu->bvec[i].bv_page = pages[i];
		imu->bvec[i].bv_len = vec_len;
		imu->bvec[i].bv_offset = off;
		off = 0;
		size -= vec_len;
	}
	/* store original address for later verification */
	imu->ubuf = ubuf;
8394
	imu->ubuf_end = ubuf + iov->iov_len;
8395
	imu->nr_bvecs = nr_pages;
8396
	*pimu = imu;
8397 8398
	ret = 0;
done:
8399 8400
	if (ret)
		kvfree(imu);
8401 8402 8403 8404 8405
	kvfree(pages);
	kvfree(vmas);
	return ret;
}

8406
static int io_buffers_map_alloc(struct io_ring_ctx *ctx, unsigned int nr_args)
8407
{
8408 8409
	ctx->user_bufs = kcalloc(nr_args, sizeof(*ctx->user_bufs), GFP_KERNEL);
	return ctx->user_bufs ? 0 : -ENOMEM;
8410
}
8411

8412 8413
static int io_buffer_validate(struct iovec *iov)
{
8414 8415
	unsigned long tmp, acct_len = iov->iov_len + (PAGE_SIZE - 1);

8416 8417 8418 8419 8420
	/*
	 * Don't impose further limits on the size and buffer
	 * constraints here, we'll -EINVAL later when IO is
	 * submitted if they are wrong.
	 */
8421 8422 8423
	if (!iov->iov_base)
		return iov->iov_len ? -EFAULT : 0;
	if (!iov->iov_len)
8424
		return -EFAULT;
8425

8426 8427 8428
	/* arbitrary limit, but we need something */
	if (iov->iov_len > SZ_1G)
		return -EFAULT;
8429

8430 8431 8432
	if (check_add_overflow((unsigned long)iov->iov_base, acct_len, &tmp))
		return -EOVERFLOW;

8433 8434
	return 0;
}
8435

8436
static int io_sqe_buffers_register(struct io_ring_ctx *ctx, void __user *arg,
8437
				   unsigned int nr_args, u64 __user *tags)
8438
{
8439 8440
	struct page *last_hpage = NULL;
	struct io_rsrc_data *data;
8441 8442
	int i, ret;
	struct iovec iov;
8443

8444 8445
	if (ctx->user_bufs)
		return -EBUSY;
8446
	if (!nr_args || nr_args > IORING_MAX_REG_BUFFERS)
8447
		return -EINVAL;
8448
	ret = io_rsrc_node_switch_start(ctx);
8449 8450
	if (ret)
		return ret;
8451 8452 8453
	ret = io_rsrc_data_alloc(ctx, io_rsrc_buf_put, tags, nr_args, &data);
	if (ret)
		return ret;
8454 8455
	ret = io_buffers_map_alloc(ctx, nr_args);
	if (ret) {
8456
		io_rsrc_data_free(data);
8457 8458
		return ret;
	}
8459

8460
	for (i = 0; i < nr_args; i++, ctx->nr_user_bufs++) {
8461 8462
		ret = io_copy_iov(ctx, &iov, arg, i);
		if (ret)
8463
			break;
8464 8465
		ret = io_buffer_validate(&iov);
		if (ret)
8466
			break;
8467
		if (!iov.iov_base && *io_get_tag_slot(data, i)) {
8468 8469 8470
			ret = -EINVAL;
			break;
		}
8471

8472 8473
		ret = io_sqe_buffer_register(ctx, &iov, &ctx->user_bufs[i],
					     &last_hpage);
8474 8475
		if (ret)
			break;
8476
	}
8477

8478
	WARN_ON_ONCE(ctx->buf_data);
8479

8480 8481 8482 8483 8484
	ctx->buf_data = data;
	if (ret)
		__io_sqe_buffers_unregister(ctx);
	else
		io_rsrc_node_switch(ctx, NULL);
8485 8486 8487
	return ret;
}

8488 8489 8490 8491 8492 8493 8494 8495 8496 8497 8498 8499 8500 8501 8502 8503 8504
static int __io_sqe_buffers_update(struct io_ring_ctx *ctx,
				   struct io_uring_rsrc_update2 *up,
				   unsigned int nr_args)
{
	u64 __user *tags = u64_to_user_ptr(up->tags);
	struct iovec iov, __user *iovs = u64_to_user_ptr(up->data);
	struct page *last_hpage = NULL;
	bool needs_switch = false;
	__u32 done;
	int i, err;

	if (!ctx->buf_data)
		return -ENXIO;
	if (up->offset + nr_args > ctx->nr_user_bufs)
		return -EINVAL;

	for (done = 0; done < nr_args; done++) {
P
Pavel Begunkov 已提交
8505 8506
		struct io_mapped_ubuf *imu;
		int offset = up->offset + done;
8507 8508 8509 8510 8511 8512 8513 8514 8515
		u64 tag = 0;

		err = io_copy_iov(ctx, &iov, iovs, done);
		if (err)
			break;
		if (tags && copy_from_user(&tag, &tags[done], sizeof(tag))) {
			err = -EFAULT;
			break;
		}
P
Pavel Begunkov 已提交
8516 8517 8518
		err = io_buffer_validate(&iov);
		if (err)
			break;
8519 8520 8521 8522
		if (!iov.iov_base && tag) {
			err = -EINVAL;
			break;
		}
P
Pavel Begunkov 已提交
8523 8524 8525
		err = io_sqe_buffer_register(ctx, &iov, &imu, &last_hpage);
		if (err)
			break;
8526

P
Pavel Begunkov 已提交
8527
		i = array_index_nospec(offset, ctx->nr_user_bufs);
8528
		if (ctx->user_bufs[i] != ctx->dummy_ubuf) {
P
Pavel Begunkov 已提交
8529 8530 8531 8532
			err = io_queue_rsrc_removal(ctx->buf_data, offset,
						    ctx->rsrc_node, ctx->user_bufs[i]);
			if (unlikely(err)) {
				io_buffer_unmap(ctx, &imu);
8533
				break;
P
Pavel Begunkov 已提交
8534
			}
8535 8536 8537 8538
			ctx->user_bufs[i] = NULL;
			needs_switch = true;
		}

P
Pavel Begunkov 已提交
8539
		ctx->user_bufs[i] = imu;
8540
		*io_get_tag_slot(ctx->buf_data, offset) = tag;
8541 8542 8543 8544 8545 8546 8547
	}

	if (needs_switch)
		io_rsrc_node_switch(ctx, ctx->buf_data);
	return done ? done : err;
}

8548 8549 8550 8551 8552 8553 8554 8555 8556 8557 8558 8559 8560 8561 8562 8563 8564 8565 8566 8567 8568 8569 8570 8571 8572 8573 8574 8575 8576 8577 8578 8579
static int io_eventfd_register(struct io_ring_ctx *ctx, void __user *arg)
{
	__s32 __user *fds = arg;
	int fd;

	if (ctx->cq_ev_fd)
		return -EBUSY;

	if (copy_from_user(&fd, fds, sizeof(*fds)))
		return -EFAULT;

	ctx->cq_ev_fd = eventfd_ctx_fdget(fd);
	if (IS_ERR(ctx->cq_ev_fd)) {
		int ret = PTR_ERR(ctx->cq_ev_fd);
		ctx->cq_ev_fd = NULL;
		return ret;
	}

	return 0;
}

static int io_eventfd_unregister(struct io_ring_ctx *ctx)
{
	if (ctx->cq_ev_fd) {
		eventfd_ctx_put(ctx->cq_ev_fd);
		ctx->cq_ev_fd = NULL;
		return 0;
	}

	return -ENXIO;
}

8580 8581
static void io_destroy_buffers(struct io_ring_ctx *ctx)
{
8582 8583 8584 8585 8586
	struct io_buffer *buf;
	unsigned long index;

	xa_for_each(&ctx->io_buffers, index, buf)
		__io_remove_buffers(ctx, buf, index, -1U);
8587 8588
}

8589
static void io_req_cache_free(struct list_head *list, struct task_struct *tsk)
8590
{
8591
	struct io_kiocb *req, *nxt;
8592

8593 8594 8595
	list_for_each_entry_safe(req, nxt, list, compl.list) {
		if (tsk && req->task != tsk)
			continue;
8596 8597 8598 8599 8600
		list_del(&req->compl.list);
		kmem_cache_free(req_cachep, req);
	}
}

8601
static void io_req_caches_free(struct io_ring_ctx *ctx)
J
Jens Axboe 已提交
8602
{
P
Pavel Begunkov 已提交
8603
	struct io_submit_state *submit_state = &ctx->submit_state;
8604
	struct io_comp_state *cs = &ctx->submit_state.comp;
P
Pavel Begunkov 已提交
8605

8606 8607
	mutex_lock(&ctx->uring_lock);

8608
	if (submit_state->free_reqs) {
8609 8610
		kmem_cache_free_bulk(req_cachep, submit_state->free_reqs,
				     submit_state->reqs);
8611 8612
		submit_state->free_reqs = 0;
	}
8613

8614
	io_flush_cached_locked_reqs(ctx, cs);
8615
	io_req_cache_free(&cs->free_list, NULL);
8616 8617 8618
	mutex_unlock(&ctx->uring_lock);
}

8619
static bool io_wait_rsrc_data(struct io_rsrc_data *data)
J
Jens Axboe 已提交
8620
{
8621 8622 8623 8624 8625 8626
	if (!data)
		return false;
	if (!atomic_dec_and_test(&data->refs))
		wait_for_completion(&data->done);
	return true;
}
8627

J
Jens Axboe 已提交
8628 8629
static void io_ring_ctx_free(struct io_ring_ctx *ctx)
{
8630
	io_sq_thread_finish(ctx);
8631

8632
	if (ctx->mm_account) {
8633 8634
		mmdrop(ctx->mm_account);
		ctx->mm_account = NULL;
8635
	}
J
Jens Axboe 已提交
8636

8637
	mutex_lock(&ctx->uring_lock);
8638 8639 8640
	if (io_wait_rsrc_data(ctx->buf_data))
		__io_sqe_buffers_unregister(ctx);
	if (io_wait_rsrc_data(ctx->file_data))
8641
		__io_sqe_files_unregister(ctx);
8642 8643
	if (ctx->rings)
		__io_cqring_overflow_flush(ctx, true);
8644
	mutex_unlock(&ctx->uring_lock);
8645
	io_eventfd_unregister(ctx);
8646
	io_destroy_buffers(ctx);
8647 8648
	if (ctx->sq_creds)
		put_cred(ctx->sq_creds);
J
Jens Axboe 已提交
8649

P
Pavel Begunkov 已提交
8650 8651 8652
	/* there are no registered resources left, nobody uses it */
	if (ctx->rsrc_node)
		io_rsrc_node_destroy(ctx->rsrc_node);
8653
	if (ctx->rsrc_backup_node)
8654
		io_rsrc_node_destroy(ctx->rsrc_backup_node);
P
Pavel Begunkov 已提交
8655 8656 8657 8658
	flush_delayed_work(&ctx->rsrc_put_work);

	WARN_ON_ONCE(!list_empty(&ctx->rsrc_ref_list));
	WARN_ON_ONCE(!llist_empty(&ctx->rsrc_put_llist));
J
Jens Axboe 已提交
8659

J
Jens Axboe 已提交
8660
#if defined(CONFIG_UNIX)
8661 8662
	if (ctx->ring_sock) {
		ctx->ring_sock->file = NULL; /* so that iput() is called */
J
Jens Axboe 已提交
8663
		sock_release(ctx->ring_sock);
8664
	}
J
Jens Axboe 已提交
8665 8666
#endif

8667
	io_mem_free(ctx->rings);
J
Jens Axboe 已提交
8668 8669 8670 8671
	io_mem_free(ctx->sq_sqes);

	percpu_ref_exit(&ctx->refs);
	free_uid(ctx->user);
8672
	io_req_caches_free(ctx);
8673 8674
	if (ctx->hash_map)
		io_wq_put_hash(ctx->hash_map);
8675
	kfree(ctx->cancel_hash);
8676
	kfree(ctx->dummy_ubuf);
J
Jens Axboe 已提交
8677 8678 8679 8680 8681 8682 8683 8684 8685
	kfree(ctx);
}

static __poll_t io_uring_poll(struct file *file, poll_table *wait)
{
	struct io_ring_ctx *ctx = file->private_data;
	__poll_t mask = 0;

	poll_wait(file, &ctx->cq_wait, wait);
8686 8687 8688 8689
	/*
	 * synchronizes with barrier from wq_has_sleeper call in
	 * io_commit_cqring
	 */
J
Jens Axboe 已提交
8690
	smp_rmb();
8691
	if (!io_sqring_full(ctx))
J
Jens Axboe 已提交
8692
		mask |= EPOLLOUT | EPOLLWRNORM;
8693 8694 8695 8696 8697 8698 8699 8700 8701 8702 8703 8704 8705 8706 8707

	/*
	 * Don't flush cqring overflow list here, just do a simple check.
	 * Otherwise there could possible be ABBA deadlock:
	 *      CPU0                    CPU1
	 *      ----                    ----
	 * lock(&ctx->uring_lock);
	 *                              lock(&ep->mtx);
	 *                              lock(&ctx->uring_lock);
	 * lock(&ep->mtx);
	 *
	 * Users may get EPOLLIN meanwhile seeing nothing in cqring, this
	 * pushs them to do the flush.
	 */
	if (io_cqring_events(ctx) || test_bit(0, &ctx->cq_check_overflow))
J
Jens Axboe 已提交
8708 8709 8710 8711 8712 8713 8714 8715 8716 8717 8718 8719
		mask |= EPOLLIN | EPOLLRDNORM;

	return mask;
}

static int io_uring_fasync(int fd, struct file *file, int on)
{
	struct io_ring_ctx *ctx = file->private_data;

	return fasync_helper(fd, file, on, &ctx->cq_fasync);
}

8720
static int io_unregister_personality(struct io_ring_ctx *ctx, unsigned id)
8721
{
J
Jens Axboe 已提交
8722
	const struct cred *creds;
8723

8724
	creds = xa_erase(&ctx->personalities, id);
J
Jens Axboe 已提交
8725 8726
	if (creds) {
		put_cred(creds);
8727
		return 0;
J
Jens Axboe 已提交
8728
	}
8729 8730 8731 8732

	return -EINVAL;
}

8733
static inline bool io_run_ctx_fallback(struct io_ring_ctx *ctx)
8734
{
8735
	return io_run_task_work_head(&ctx->exit_task_work);
8736 8737
}

8738 8739 8740
struct io_tctx_exit {
	struct callback_head		task_work;
	struct completion		completion;
8741
	struct io_ring_ctx		*ctx;
8742 8743 8744 8745 8746 8747 8748 8749 8750 8751 8752 8753 8754
};

static void io_tctx_exit_cb(struct callback_head *cb)
{
	struct io_uring_task *tctx = current->io_uring;
	struct io_tctx_exit *work;

	work = container_of(cb, struct io_tctx_exit, task_work);
	/*
	 * When @in_idle, we're in cancellation and it's racy to remove the
	 * node. It'll be removed by the end of cancellation, just ignore it.
	 */
	if (!atomic_read(&tctx->in_idle))
8755
		io_uring_del_tctx_node((unsigned long)work->ctx);
8756 8757 8758
	complete(&work->completion);
}

8759 8760 8761 8762 8763 8764 8765
static bool io_cancel_ctx_cb(struct io_wq_work *work, void *data)
{
	struct io_kiocb *req = container_of(work, struct io_kiocb, work);

	return req->ctx == data;
}

8766 8767
static void io_ring_exit_work(struct work_struct *work)
{
8768
	struct io_ring_ctx *ctx = container_of(work, struct io_ring_ctx, exit_work);
8769
	unsigned long timeout = jiffies + HZ * 60 * 5;
8770 8771 8772
	struct io_tctx_exit exit;
	struct io_tctx_node *node;
	int ret;
8773

8774 8775 8776 8777 8778 8779
	/*
	 * If we're doing polled IO and end up having requests being
	 * submitted async (out-of-line), then completions can come in while
	 * we're waiting for refs to drop. We need to reap these manually,
	 * as nobody else will be looking for them.
	 */
8780
	do {
8781
		io_uring_try_cancel_requests(ctx, NULL, true);
8782 8783 8784 8785 8786 8787 8788 8789 8790 8791 8792
		if (ctx->sq_data) {
			struct io_sq_data *sqd = ctx->sq_data;
			struct task_struct *tsk;

			io_sq_thread_park(sqd);
			tsk = sqd->thread;
			if (tsk && tsk->io_uring && tsk->io_uring->io_wq)
				io_wq_cancel_cb(tsk->io_uring->io_wq,
						io_cancel_ctx_cb, ctx, true);
			io_sq_thread_unpark(sqd);
		}
8793 8794

		WARN_ON_ONCE(time_after(jiffies, timeout));
8795
	} while (!wait_for_completion_timeout(&ctx->ref_comp, HZ/20));
8796

8797 8798 8799
	init_completion(&exit.completion);
	init_task_work(&exit.task_work, io_tctx_exit_cb);
	exit.ctx = ctx;
8800 8801 8802 8803 8804 8805
	/*
	 * Some may use context even when all refs and requests have been put,
	 * and they are free to do so while still holding uring_lock or
	 * completion_lock, see __io_req_task_submit(). Apart from other work,
	 * this lock/unlock section also waits them to finish.
	 */
8806 8807
	mutex_lock(&ctx->uring_lock);
	while (!list_empty(&ctx->tctx_list)) {
8808 8809
		WARN_ON_ONCE(time_after(jiffies, timeout));

8810 8811
		node = list_first_entry(&ctx->tctx_list, struct io_tctx_node,
					ctx_node);
8812 8813
		/* don't spin on a single task if cancellation failed */
		list_rotate_left(&ctx->tctx_list);
8814 8815 8816 8817 8818 8819 8820 8821 8822 8823
		ret = task_work_add(node->task, &exit.task_work, TWA_SIGNAL);
		if (WARN_ON_ONCE(ret))
			continue;
		wake_up_process(node->task);

		mutex_unlock(&ctx->uring_lock);
		wait_for_completion(&exit.completion);
		mutex_lock(&ctx->uring_lock);
	}
	mutex_unlock(&ctx->uring_lock);
8824 8825
	spin_lock_irq(&ctx->completion_lock);
	spin_unlock_irq(&ctx->completion_lock);
8826

8827 8828 8829
	io_ring_ctx_free(ctx);
}

8830 8831
/* Returns true if we found and killed one or more timeouts */
static bool io_kill_timeouts(struct io_ring_ctx *ctx, struct task_struct *tsk,
8832
			     bool cancel_all)
8833 8834 8835 8836 8837 8838
{
	struct io_kiocb *req, *tmp;
	int canceled = 0;

	spin_lock_irq(&ctx->completion_lock);
	list_for_each_entry_safe(req, tmp, &ctx->timeout_list, timeout.list) {
8839
		if (io_match_task(req, tsk, cancel_all)) {
8840 8841 8842 8843
			io_kill_timeout(req, -ECANCELED);
			canceled++;
		}
	}
8844 8845
	if (canceled != 0)
		io_commit_cqring(ctx);
8846 8847 8848 8849 8850 8851
	spin_unlock_irq(&ctx->completion_lock);
	if (canceled != 0)
		io_cqring_ev_posted(ctx);
	return canceled != 0;
}

J
Jens Axboe 已提交
8852 8853
static void io_ring_ctx_wait_and_kill(struct io_ring_ctx *ctx)
{
8854 8855 8856
	unsigned long index;
	struct creds *creds;

J
Jens Axboe 已提交
8857 8858
	mutex_lock(&ctx->uring_lock);
	percpu_ref_kill(&ctx->refs);
8859
	if (ctx->rings)
8860
		__io_cqring_overflow_flush(ctx, true);
8861 8862
	xa_for_each(&ctx->personalities, index, creds)
		io_unregister_personality(ctx, index);
J
Jens Axboe 已提交
8863 8864
	mutex_unlock(&ctx->uring_lock);

8865 8866
	io_kill_timeouts(ctx, NULL, true);
	io_poll_remove_all(ctx, NULL, true);
8867

8868
	/* if we failed setting up the ctx, we might not have any rings */
8869
	io_iopoll_try_reap_events(ctx);
8870

8871
	INIT_WORK(&ctx->exit_work, io_ring_exit_work);
8872 8873 8874 8875 8876 8877 8878
	/*
	 * Use system_unbound_wq to avoid spawning tons of event kworkers
	 * if we're exiting a ton of rings at the same time. It just adds
	 * noise and overhead, there's no discernable change in runtime
	 * over using system_wq.
	 */
	queue_work(system_unbound_wq, &ctx->exit_work);
J
Jens Axboe 已提交
8879 8880 8881 8882 8883 8884 8885 8886 8887 8888 8889
}

static int io_uring_release(struct inode *inode, struct file *file)
{
	struct io_ring_ctx *ctx = file->private_data;

	file->private_data = NULL;
	io_ring_ctx_wait_and_kill(ctx);
	return 0;
}

8890 8891
struct io_task_cancel {
	struct task_struct *task;
8892
	bool all;
8893
};
8894

8895
static bool io_cancel_task_cb(struct io_wq_work *work, void *data)
8896
{
8897
	struct io_kiocb *req = container_of(work, struct io_kiocb, work);
8898
	struct io_task_cancel *cancel = data;
8899 8900
	bool ret;

8901
	if (!cancel->all && (req->flags & REQ_F_LINK_TIMEOUT)) {
8902 8903 8904 8905 8906
		unsigned long flags;
		struct io_ring_ctx *ctx = req->ctx;

		/* protect against races with linked timeouts */
		spin_lock_irqsave(&ctx->completion_lock, flags);
8907
		ret = io_match_task(req, cancel->task, cancel->all);
8908 8909
		spin_unlock_irqrestore(&ctx->completion_lock, flags);
	} else {
8910
		ret = io_match_task(req, cancel->task, cancel->all);
8911 8912
	}
	return ret;
8913 8914
}

8915
static bool io_cancel_defer_files(struct io_ring_ctx *ctx,
8916
				  struct task_struct *task, bool cancel_all)
8917
{
8918
	struct io_defer_entry *de;
8919 8920 8921 8922
	LIST_HEAD(list);

	spin_lock_irq(&ctx->completion_lock);
	list_for_each_entry_reverse(de, &ctx->defer_list, list) {
8923
		if (io_match_task(de->req, task, cancel_all)) {
8924 8925 8926 8927 8928
			list_cut_position(&list, &ctx->defer_list, &de->list);
			break;
		}
	}
	spin_unlock_irq(&ctx->completion_lock);
8929 8930
	if (list_empty(&list))
		return false;
8931 8932 8933 8934

	while (!list_empty(&list)) {
		de = list_first_entry(&list, struct io_defer_entry, list);
		list_del_init(&de->list);
8935
		io_req_complete_failed(de->req, -ECANCELED);
8936 8937
		kfree(de);
	}
8938
	return true;
8939 8940
}

8941 8942 8943 8944 8945 8946 8947 8948 8949 8950 8951 8952 8953 8954 8955 8956 8957 8958 8959 8960 8961 8962 8963 8964
static bool io_uring_try_cancel_iowq(struct io_ring_ctx *ctx)
{
	struct io_tctx_node *node;
	enum io_wq_cancel cret;
	bool ret = false;

	mutex_lock(&ctx->uring_lock);
	list_for_each_entry(node, &ctx->tctx_list, ctx_node) {
		struct io_uring_task *tctx = node->task->io_uring;

		/*
		 * io_wq will stay alive while we hold uring_lock, because it's
		 * killed after ctx nodes, which requires to take the lock.
		 */
		if (!tctx || !tctx->io_wq)
			continue;
		cret = io_wq_cancel_cb(tctx->io_wq, io_cancel_ctx_cb, ctx, true);
		ret |= (cret != IO_WQ_CANCEL_NOTFOUND);
	}
	mutex_unlock(&ctx->uring_lock);

	return ret;
}

8965 8966
static void io_uring_try_cancel_requests(struct io_ring_ctx *ctx,
					 struct task_struct *task,
8967
					 bool cancel_all)
8968
{
8969
	struct io_task_cancel cancel = { .task = task, .all = cancel_all, };
8970
	struct io_uring_task *tctx = task ? task->io_uring : NULL;
8971 8972 8973 8974 8975

	while (1) {
		enum io_wq_cancel cret;
		bool ret = false;

8976 8977 8978 8979 8980 8981 8982
		if (!task) {
			ret |= io_uring_try_cancel_iowq(ctx);
		} else if (tctx && tctx->io_wq) {
			/*
			 * Cancels requests of all rings, not only @ctx, but
			 * it's fine as the task is in exit/exec.
			 */
8983
			cret = io_wq_cancel_cb(tctx->io_wq, io_cancel_task_cb,
8984 8985 8986 8987 8988
					       &cancel, true);
			ret |= (cret != IO_WQ_CANCEL_NOTFOUND);
		}

		/* SQPOLL thread does its own polling */
8989
		if ((!(ctx->flags & IORING_SETUP_SQPOLL) && cancel_all) ||
8990
		    (ctx->sq_data && ctx->sq_data->thread == current)) {
8991 8992 8993 8994 8995 8996
			while (!list_empty_careful(&ctx->iopoll_list)) {
				io_iopoll_try_reap_events(ctx);
				ret = true;
			}
		}

8997 8998 8999
		ret |= io_cancel_defer_files(ctx, task, cancel_all);
		ret |= io_poll_remove_all(ctx, task, cancel_all);
		ret |= io_kill_timeouts(ctx, task, cancel_all);
9000
		ret |= io_run_task_work();
9001
		ret |= io_run_ctx_fallback(ctx);
9002 9003 9004 9005 9006 9007
		if (!ret)
			break;
		cond_resched();
	}
}

9008
static int __io_uring_add_tctx_node(struct io_ring_ctx *ctx)
9009
{
9010
	struct io_uring_task *tctx = current->io_uring;
9011
	struct io_tctx_node *node;
9012
	int ret;
9013 9014

	if (unlikely(!tctx)) {
9015
		ret = io_uring_alloc_task_context(current, ctx);
9016 9017
		if (unlikely(ret))
			return ret;
9018
		tctx = current->io_uring;
9019
	}
9020 9021 9022 9023 9024 9025
	if (!xa_load(&tctx->xa, (unsigned long)ctx)) {
		node = kmalloc(sizeof(*node), GFP_KERNEL);
		if (!node)
			return -ENOMEM;
		node->ctx = ctx;
		node->task = current;
9026

9027 9028 9029 9030 9031
		ret = xa_err(xa_store(&tctx->xa, (unsigned long)ctx,
					node, GFP_KERNEL));
		if (ret) {
			kfree(node);
			return ret;
9032
		}
9033 9034 9035 9036

		mutex_lock(&ctx->uring_lock);
		list_add(&node->ctx_node, &ctx->tctx_list);
		mutex_unlock(&ctx->uring_lock);
9037
	}
9038
	tctx->last = ctx;
9039 9040 9041
	return 0;
}

9042 9043 9044
/*
 * Note that this task has used io_uring. We use it for cancelation purposes.
 */
9045
static inline int io_uring_add_tctx_node(struct io_ring_ctx *ctx)
9046 9047 9048 9049 9050
{
	struct io_uring_task *tctx = current->io_uring;

	if (likely(tctx && tctx->last == ctx))
		return 0;
9051
	return __io_uring_add_tctx_node(ctx);
9052 9053
}

9054 9055 9056
/*
 * Remove this io_uring_file -> task mapping.
 */
9057
static void io_uring_del_tctx_node(unsigned long index)
9058 9059
{
	struct io_uring_task *tctx = current->io_uring;
9060
	struct io_tctx_node *node;
9061

9062 9063
	if (!tctx)
		return;
9064 9065
	node = xa_erase(&tctx->xa, index);
	if (!node)
9066
		return;
9067

9068 9069 9070 9071 9072 9073 9074
	WARN_ON_ONCE(current != node->task);
	WARN_ON_ONCE(list_empty(&node->ctx_node));

	mutex_lock(&node->ctx->uring_lock);
	list_del(&node->ctx_node);
	mutex_unlock(&node->ctx->uring_lock);

9075
	if (tctx->last == node->ctx)
9076
		tctx->last = NULL;
9077
	kfree(node);
9078 9079
}

P
Pavel Begunkov 已提交
9080
static void io_uring_clean_tctx(struct io_uring_task *tctx)
9081
{
9082
	struct io_wq *wq = tctx->io_wq;
9083
	struct io_tctx_node *node;
9084 9085
	unsigned long index;

9086
	xa_for_each(&tctx->xa, index, node)
9087
		io_uring_del_tctx_node(index);
9088 9089 9090 9091 9092 9093
	if (wq) {
		/*
		 * Must be after io_uring_del_task_file() (removes nodes under
		 * uring_lock) to avoid race with io_uring_try_cancel_iowq().
		 */
		tctx->io_wq = NULL;
9094
		io_wq_put_and_exit(wq);
9095
	}
9096 9097
}

9098
static s64 tctx_inflight(struct io_uring_task *tctx, bool tracked)
9099
{
9100 9101
	if (tracked)
		return atomic_read(&tctx->inflight_tracked);
9102 9103 9104
	return percpu_counter_sum(&tctx->inflight);
}

9105 9106 9107 9108 9109 9110 9111 9112 9113 9114
static void io_uring_drop_tctx_refs(struct task_struct *task)
{
	struct io_uring_task *tctx = task->io_uring;
	unsigned int refs = tctx->cached_refs;

	tctx->cached_refs = 0;
	percpu_counter_sub(&tctx->inflight, refs);
	put_task_struct_many(task, refs);
}

9115 9116 9117 9118 9119
/*
 * Find any io_uring ctx that this task has registered or done IO on, and cancel
 * requests. @sqd should be not-null IIF it's an SQPOLL thread cancellation.
 */
static void io_uring_cancel_generic(bool cancel_all, struct io_sq_data *sqd)
9120
{
9121
	struct io_uring_task *tctx = current->io_uring;
9122
	struct io_ring_ctx *ctx;
9123 9124
	s64 inflight;
	DEFINE_WAIT(wait);
9125

9126 9127
	WARN_ON_ONCE(sqd && sqd->thread != current);

9128 9129
	if (!current->io_uring)
		return;
9130 9131 9132
	if (tctx->io_wq)
		io_wq_exit_start(tctx->io_wq);

9133
	io_uring_drop_tctx_refs(current);
9134 9135 9136
	atomic_inc(&tctx->in_idle);
	do {
		/* read completions before cancelations */
9137
		inflight = tctx_inflight(tctx, !cancel_all);
9138 9139
		if (!inflight)
			break;
9140

9141 9142 9143
		if (!sqd) {
			struct io_tctx_node *node;
			unsigned long index;
9144

9145 9146 9147 9148 9149 9150 9151 9152 9153 9154 9155 9156
			xa_for_each(&tctx->xa, index, node) {
				/* sqpoll task will cancel all its requests */
				if (node->ctx->sq_data)
					continue;
				io_uring_try_cancel_requests(node->ctx, current,
							     cancel_all);
			}
		} else {
			list_for_each_entry(ctx, &sqd->ctx_list, sqd_list)
				io_uring_try_cancel_requests(ctx, current,
							     cancel_all);
		}
9157

9158 9159
		prepare_to_wait(&tctx->wait, &wait, TASK_UNINTERRUPTIBLE);
		/*
9160 9161 9162
		 * If we've seen completions, retry without waiting. This
		 * avoids a race where a completion comes in before we did
		 * prepare_to_wait().
9163
		 */
9164
		if (inflight == tctx_inflight(tctx, !cancel_all))
9165
			schedule();
9166
		finish_wait(&tctx->wait, &wait);
9167
	} while (1);
9168
	atomic_dec(&tctx->in_idle);
9169

P
Pavel Begunkov 已提交
9170
	io_uring_clean_tctx(tctx);
9171
	if (cancel_all) {
9172 9173 9174
		/* for exec all current's requests should be gone, kill tctx */
		__io_uring_free(current);
	}
9175 9176
}

9177 9178 9179 9180 9181
void __io_uring_cancel(struct files_struct *files)
{
	io_uring_cancel_generic(!files, NULL);
}

9182 9183
static void *io_uring_validate_mmap_request(struct file *file,
					    loff_t pgoff, size_t sz)
J
Jens Axboe 已提交
9184 9185
{
	struct io_ring_ctx *ctx = file->private_data;
9186
	loff_t offset = pgoff << PAGE_SHIFT;
J
Jens Axboe 已提交
9187 9188 9189 9190 9191
	struct page *page;
	void *ptr;

	switch (offset) {
	case IORING_OFF_SQ_RING:
9192 9193
	case IORING_OFF_CQ_RING:
		ptr = ctx->rings;
J
Jens Axboe 已提交
9194 9195 9196 9197 9198
		break;
	case IORING_OFF_SQES:
		ptr = ctx->sq_sqes;
		break;
	default:
9199
		return ERR_PTR(-EINVAL);
J
Jens Axboe 已提交
9200 9201 9202
	}

	page = virt_to_head_page(ptr);
9203
	if (sz > page_size(page))
9204 9205 9206 9207 9208 9209 9210 9211 9212 9213 9214 9215 9216 9217 9218 9219
		return ERR_PTR(-EINVAL);

	return ptr;
}

#ifdef CONFIG_MMU

static int io_uring_mmap(struct file *file, struct vm_area_struct *vma)
{
	size_t sz = vma->vm_end - vma->vm_start;
	unsigned long pfn;
	void *ptr;

	ptr = io_uring_validate_mmap_request(file, vma->vm_pgoff, sz);
	if (IS_ERR(ptr))
		return PTR_ERR(ptr);
J
Jens Axboe 已提交
9220 9221 9222 9223 9224

	pfn = virt_to_phys(ptr) >> PAGE_SHIFT;
	return remap_pfn_range(vma, vma->vm_start, pfn, sz, vma->vm_page_prot);
}

9225 9226 9227 9228 9229 9230 9231 9232 9233 9234 9235 9236 9237 9238 9239 9240 9241 9242 9243 9244 9245 9246 9247 9248 9249 9250 9251
#else /* !CONFIG_MMU */

static int io_uring_mmap(struct file *file, struct vm_area_struct *vma)
{
	return vma->vm_flags & (VM_SHARED | VM_MAYSHARE) ? 0 : -EINVAL;
}

static unsigned int io_uring_nommu_mmap_capabilities(struct file *file)
{
	return NOMMU_MAP_DIRECT | NOMMU_MAP_READ | NOMMU_MAP_WRITE;
}

static unsigned long io_uring_nommu_get_unmapped_area(struct file *file,
	unsigned long addr, unsigned long len,
	unsigned long pgoff, unsigned long flags)
{
	void *ptr;

	ptr = io_uring_validate_mmap_request(file, pgoff, len);
	if (IS_ERR(ptr))
		return PTR_ERR(ptr);

	return (unsigned long) ptr;
}

#endif /* !CONFIG_MMU */

9252
static int io_sqpoll_wait_sq(struct io_ring_ctx *ctx)
9253 9254 9255 9256 9257 9258 9259 9260 9261 9262 9263 9264 9265 9266
{
	DEFINE_WAIT(wait);

	do {
		if (!io_sqring_full(ctx))
			break;
		prepare_to_wait(&ctx->sqo_sq_wait, &wait, TASK_INTERRUPTIBLE);

		if (!io_sqring_full(ctx))
			break;
		schedule();
	} while (!signal_pending(current));

	finish_wait(&ctx->sqo_sq_wait, &wait);
9267
	return 0;
9268 9269
}

9270 9271 9272 9273 9274 9275 9276 9277 9278 9279 9280 9281 9282 9283 9284 9285 9286 9287 9288 9289 9290 9291 9292 9293 9294 9295 9296 9297 9298 9299
static int io_get_ext_arg(unsigned flags, const void __user *argp, size_t *argsz,
			  struct __kernel_timespec __user **ts,
			  const sigset_t __user **sig)
{
	struct io_uring_getevents_arg arg;

	/*
	 * If EXT_ARG isn't set, then we have no timespec and the argp pointer
	 * is just a pointer to the sigset_t.
	 */
	if (!(flags & IORING_ENTER_EXT_ARG)) {
		*sig = (const sigset_t __user *) argp;
		*ts = NULL;
		return 0;
	}

	/*
	 * EXT_ARG is set - ensure we agree on the size of it and copy in our
	 * timespec and sigset_t pointers if good.
	 */
	if (*argsz != sizeof(arg))
		return -EINVAL;
	if (copy_from_user(&arg, argp, sizeof(arg)))
		return -EFAULT;
	*sig = u64_to_user_ptr(arg.sigmask);
	*argsz = arg.sigmask_sz;
	*ts = u64_to_user_ptr(arg.ts);
	return 0;
}

J
Jens Axboe 已提交
9300
SYSCALL_DEFINE6(io_uring_enter, unsigned int, fd, u32, to_submit,
9301 9302
		u32, min_complete, u32, flags, const void __user *, argp,
		size_t, argsz)
J
Jens Axboe 已提交
9303 9304 9305 9306
{
	struct io_ring_ctx *ctx;
	int submitted = 0;
	struct fd f;
9307
	long ret;
J
Jens Axboe 已提交
9308

9309
	io_run_task_work();
9310

9311 9312
	if (unlikely(flags & ~(IORING_ENTER_GETEVENTS | IORING_ENTER_SQ_WAKEUP |
			       IORING_ENTER_SQ_WAIT | IORING_ENTER_EXT_ARG)))
J
Jens Axboe 已提交
9313 9314 9315
		return -EINVAL;

	f = fdget(fd);
9316
	if (unlikely(!f.file))
J
Jens Axboe 已提交
9317 9318 9319
		return -EBADF;

	ret = -EOPNOTSUPP;
9320
	if (unlikely(f.file->f_op != &io_uring_fops))
J
Jens Axboe 已提交
9321 9322 9323 9324
		goto out_fput;

	ret = -ENXIO;
	ctx = f.file->private_data;
9325
	if (unlikely(!percpu_ref_tryget(&ctx->refs)))
J
Jens Axboe 已提交
9326 9327
		goto out_fput;

9328
	ret = -EBADFD;
9329
	if (unlikely(ctx->flags & IORING_SETUP_R_DISABLED))
9330 9331
		goto out;

J
Jens Axboe 已提交
9332 9333 9334 9335 9336
	/*
	 * For SQ polling, the thread will do all submissions and completions.
	 * Just return the requested submit count, and wake the thread if
	 * we were asked to.
	 */
9337
	ret = 0;
J
Jens Axboe 已提交
9338
	if (ctx->flags & IORING_SETUP_SQPOLL) {
9339
		io_cqring_overflow_flush(ctx, false);
9340

9341
		ret = -EOWNERDEAD;
9342 9343 9344
		if (unlikely(ctx->sq_data->thread == NULL)) {
			goto out;
		}
J
Jens Axboe 已提交
9345
		if (flags & IORING_ENTER_SQ_WAKEUP)
9346
			wake_up(&ctx->sq_data->wait);
9347 9348 9349 9350 9351
		if (flags & IORING_ENTER_SQ_WAIT) {
			ret = io_sqpoll_wait_sq(ctx);
			if (ret)
				goto out;
		}
J
Jens Axboe 已提交
9352
		submitted = to_submit;
9353
	} else if (to_submit) {
9354
		ret = io_uring_add_tctx_node(ctx);
9355 9356
		if (unlikely(ret))
			goto out;
J
Jens Axboe 已提交
9357
		mutex_lock(&ctx->uring_lock);
9358
		submitted = io_submit_sqes(ctx, to_submit);
J
Jens Axboe 已提交
9359
		mutex_unlock(&ctx->uring_lock);
9360 9361 9362

		if (submitted != to_submit)
			goto out;
J
Jens Axboe 已提交
9363 9364
	}
	if (flags & IORING_ENTER_GETEVENTS) {
9365 9366 9367 9368 9369 9370 9371
		const sigset_t __user *sig;
		struct __kernel_timespec __user *ts;

		ret = io_get_ext_arg(flags, argp, &argsz, &ts, &sig);
		if (unlikely(ret))
			goto out;

J
Jens Axboe 已提交
9372 9373
		min_complete = min(min_complete, ctx->cq_entries);

9374 9375 9376 9377 9378 9379 9380 9381
		/*
		 * When SETUP_IOPOLL and SETUP_SQPOLL are both enabled, user
		 * space applications don't need to do io completion events
		 * polling again, they can rely on io_sq_thread to do polling
		 * work, which can reduce cpu usage and uring_lock contention.
		 */
		if (ctx->flags & IORING_SETUP_IOPOLL &&
		    !(ctx->flags & IORING_SETUP_SQPOLL)) {
9382
			ret = io_iopoll_check(ctx, min_complete);
J
Jens Axboe 已提交
9383
		} else {
9384
			ret = io_cqring_wait(ctx, min_complete, sig, argsz, ts);
J
Jens Axboe 已提交
9385
		}
J
Jens Axboe 已提交
9386 9387
	}

9388
out:
9389
	percpu_ref_put(&ctx->refs);
J
Jens Axboe 已提交
9390 9391 9392 9393 9394
out_fput:
	fdput(f);
	return submitted ? submitted : ret;
}

9395
#ifdef CONFIG_PROC_FS
9396 9397
static int io_uring_show_cred(struct seq_file *m, unsigned int id,
		const struct cred *cred)
9398 9399 9400 9401 9402 9403 9404 9405 9406 9407 9408 9409 9410 9411 9412 9413 9414 9415 9416 9417 9418 9419 9420 9421 9422 9423 9424 9425 9426 9427 9428 9429
{
	struct user_namespace *uns = seq_user_ns(m);
	struct group_info *gi;
	kernel_cap_t cap;
	unsigned __capi;
	int g;

	seq_printf(m, "%5d\n", id);
	seq_put_decimal_ull(m, "\tUid:\t", from_kuid_munged(uns, cred->uid));
	seq_put_decimal_ull(m, "\t\t", from_kuid_munged(uns, cred->euid));
	seq_put_decimal_ull(m, "\t\t", from_kuid_munged(uns, cred->suid));
	seq_put_decimal_ull(m, "\t\t", from_kuid_munged(uns, cred->fsuid));
	seq_put_decimal_ull(m, "\n\tGid:\t", from_kgid_munged(uns, cred->gid));
	seq_put_decimal_ull(m, "\t\t", from_kgid_munged(uns, cred->egid));
	seq_put_decimal_ull(m, "\t\t", from_kgid_munged(uns, cred->sgid));
	seq_put_decimal_ull(m, "\t\t", from_kgid_munged(uns, cred->fsgid));
	seq_puts(m, "\n\tGroups:\t");
	gi = cred->group_info;
	for (g = 0; g < gi->ngroups; g++) {
		seq_put_decimal_ull(m, g ? " " : "",
					from_kgid_munged(uns, gi->gid[g]));
	}
	seq_puts(m, "\n\tCapEff:\t");
	cap = cred->cap_effective;
	CAP_FOR_EACH_U32(__capi)
		seq_put_hex_ll(m, NULL, cap.cap[CAP_LAST_U32 - __capi], 8);
	seq_putc(m, '\n');
	return 0;
}

static void __io_uring_show_fdinfo(struct io_ring_ctx *ctx, struct seq_file *m)
{
9430
	struct io_sq_data *sq = NULL;
9431
	bool has_lock;
9432 9433
	int i;

9434 9435 9436 9437 9438 9439 9440 9441
	/*
	 * Avoid ABBA deadlock between the seq lock and the io_uring mutex,
	 * since fdinfo case grabs it in the opposite direction of normal use
	 * cases. If we fail to get the lock, we just don't iterate any
	 * structures that could be going away outside the io_uring mutex.
	 */
	has_lock = mutex_trylock(&ctx->uring_lock);

9442
	if (has_lock && (ctx->flags & IORING_SETUP_SQPOLL)) {
9443
		sq = ctx->sq_data;
9444 9445 9446
		if (!sq->thread)
			sq = NULL;
	}
9447 9448 9449

	seq_printf(m, "SqThread:\t%d\n", sq ? task_pid_nr(sq->thread) : -1);
	seq_printf(m, "SqThreadCpu:\t%d\n", sq ? task_cpu(sq->thread) : -1);
9450
	seq_printf(m, "UserFiles:\t%u\n", ctx->nr_user_files);
9451
	for (i = 0; has_lock && i < ctx->nr_user_files; i++) {
9452
		struct file *f = io_file_from_index(ctx, i);
9453 9454 9455 9456 9457 9458 9459

		if (f)
			seq_printf(m, "%5u: %s\n", i, file_dentry(f)->d_iname);
		else
			seq_printf(m, "%5u: <none>\n", i);
	}
	seq_printf(m, "UserBufs:\t%u\n", ctx->nr_user_bufs);
9460
	for (i = 0; has_lock && i < ctx->nr_user_bufs; i++) {
9461
		struct io_mapped_ubuf *buf = ctx->user_bufs[i];
9462
		unsigned int len = buf->ubuf_end - buf->ubuf;
9463

9464
		seq_printf(m, "%5u: 0x%llx/%u\n", i, buf->ubuf, len);
9465
	}
9466 9467 9468 9469
	if (has_lock && !xa_empty(&ctx->personalities)) {
		unsigned long index;
		const struct cred *cred;

9470
		seq_printf(m, "Personalities:\n");
9471 9472
		xa_for_each(&ctx->personalities, index, cred)
			io_uring_show_cred(m, index, cred);
9473
	}
9474 9475 9476 9477 9478 9479 9480 9481 9482 9483 9484
	seq_printf(m, "PollList:\n");
	spin_lock_irq(&ctx->completion_lock);
	for (i = 0; i < (1U << ctx->cancel_hash_bits); i++) {
		struct hlist_head *list = &ctx->cancel_hash[i];
		struct io_kiocb *req;

		hlist_for_each_entry(req, list, hash_node)
			seq_printf(m, "  op=%d, task_works=%d\n", req->opcode,
					req->task->task_works != NULL);
	}
	spin_unlock_irq(&ctx->completion_lock);
9485 9486
	if (has_lock)
		mutex_unlock(&ctx->uring_lock);
9487 9488 9489 9490 9491 9492 9493 9494 9495 9496 9497
}

static void io_uring_show_fdinfo(struct seq_file *m, struct file *f)
{
	struct io_ring_ctx *ctx = f->private_data;

	if (percpu_ref_tryget(&ctx->refs)) {
		__io_uring_show_fdinfo(ctx, m);
		percpu_ref_put(&ctx->refs);
	}
}
9498
#endif
9499

J
Jens Axboe 已提交
9500 9501 9502
static const struct file_operations io_uring_fops = {
	.release	= io_uring_release,
	.mmap		= io_uring_mmap,
9503 9504 9505 9506
#ifndef CONFIG_MMU
	.get_unmapped_area = io_uring_nommu_get_unmapped_area,
	.mmap_capabilities = io_uring_nommu_mmap_capabilities,
#endif
J
Jens Axboe 已提交
9507 9508
	.poll		= io_uring_poll,
	.fasync		= io_uring_fasync,
9509
#ifdef CONFIG_PROC_FS
9510
	.show_fdinfo	= io_uring_show_fdinfo,
9511
#endif
J
Jens Axboe 已提交
9512 9513 9514 9515 9516
};

static int io_allocate_scq_urings(struct io_ring_ctx *ctx,
				  struct io_uring_params *p)
{
9517 9518
	struct io_rings *rings;
	size_t size, sq_array_offset;
J
Jens Axboe 已提交
9519

9520 9521 9522 9523
	/* make sure these are sane, as we already accounted them */
	ctx->sq_entries = p->sq_entries;
	ctx->cq_entries = p->cq_entries;

9524 9525 9526 9527 9528 9529
	size = rings_size(p->sq_entries, p->cq_entries, &sq_array_offset);
	if (size == SIZE_MAX)
		return -EOVERFLOW;

	rings = io_mem_alloc(size);
	if (!rings)
J
Jens Axboe 已提交
9530 9531
		return -ENOMEM;

9532 9533 9534 9535 9536 9537
	ctx->rings = rings;
	ctx->sq_array = (u32 *)((char *)rings + sq_array_offset);
	rings->sq_ring_mask = p->sq_entries - 1;
	rings->cq_ring_mask = p->cq_entries - 1;
	rings->sq_ring_entries = p->sq_entries;
	rings->cq_ring_entries = p->cq_entries;
J
Jens Axboe 已提交
9538 9539

	size = array_size(sizeof(struct io_uring_sqe), p->sq_entries);
9540 9541 9542
	if (size == SIZE_MAX) {
		io_mem_free(ctx->rings);
		ctx->rings = NULL;
J
Jens Axboe 已提交
9543
		return -EOVERFLOW;
9544
	}
J
Jens Axboe 已提交
9545 9546

	ctx->sq_sqes = io_mem_alloc(size);
9547 9548 9549
	if (!ctx->sq_sqes) {
		io_mem_free(ctx->rings);
		ctx->rings = NULL;
J
Jens Axboe 已提交
9550
		return -ENOMEM;
9551
	}
J
Jens Axboe 已提交
9552 9553 9554 9555

	return 0;
}

9556 9557 9558 9559 9560 9561 9562 9563
static int io_uring_install_fd(struct io_ring_ctx *ctx, struct file *file)
{
	int ret, fd;

	fd = get_unused_fd_flags(O_RDWR | O_CLOEXEC);
	if (fd < 0)
		return fd;

9564
	ret = io_uring_add_tctx_node(ctx);
9565 9566 9567 9568 9569 9570 9571 9572
	if (ret) {
		put_unused_fd(fd);
		return ret;
	}
	fd_install(fd, file);
	return fd;
}

J
Jens Axboe 已提交
9573 9574 9575 9576 9577 9578
/*
 * Allocate an anonymous fd, this is what constitutes the application
 * visible backing of an io_uring instance. The application mmaps this
 * fd to gain access to the SQ/CQ ring details. If UNIX sockets are enabled,
 * we have to tie this fd to a socket for file garbage collection purposes.
 */
9579
static struct file *io_uring_get_file(struct io_ring_ctx *ctx)
J
Jens Axboe 已提交
9580 9581
{
	struct file *file;
9582
#if defined(CONFIG_UNIX)
J
Jens Axboe 已提交
9583 9584 9585 9586 9587
	int ret;

	ret = sock_create_kern(&init_net, PF_UNIX, SOCK_RAW, IPPROTO_IP,
				&ctx->ring_sock);
	if (ret)
9588
		return ERR_PTR(ret);
J
Jens Axboe 已提交
9589 9590 9591 9592 9593
#endif

	file = anon_inode_getfile("[io_uring]", &io_uring_fops, ctx,
					O_RDWR | O_CLOEXEC);
#if defined(CONFIG_UNIX)
9594 9595 9596 9597 9598
	if (IS_ERR(file)) {
		sock_release(ctx->ring_sock);
		ctx->ring_sock = NULL;
	} else {
		ctx->ring_sock->file = file;
9599
	}
J
Jens Axboe 已提交
9600
#endif
9601
	return file;
J
Jens Axboe 已提交
9602 9603
}

9604 9605
static int io_uring_create(unsigned entries, struct io_uring_params *p,
			   struct io_uring_params __user *params)
J
Jens Axboe 已提交
9606 9607
{
	struct io_ring_ctx *ctx;
9608
	struct file *file;
J
Jens Axboe 已提交
9609 9610
	int ret;

9611
	if (!entries)
J
Jens Axboe 已提交
9612
		return -EINVAL;
9613 9614 9615 9616 9617
	if (entries > IORING_MAX_ENTRIES) {
		if (!(p->flags & IORING_SETUP_CLAMP))
			return -EINVAL;
		entries = IORING_MAX_ENTRIES;
	}
J
Jens Axboe 已提交
9618 9619 9620 9621 9622

	/*
	 * Use twice as many entries for the CQ ring. It's possible for the
	 * application to drive a higher depth than the size of the SQ ring,
	 * since the sqes are only used at submission time. This allows for
9623 9624 9625
	 * some flexibility in overcommitting a bit. If the application has
	 * set IORING_SETUP_CQSIZE, it will have passed in the desired number
	 * of CQ ring entries manually.
J
Jens Axboe 已提交
9626 9627
	 */
	p->sq_entries = roundup_pow_of_two(entries);
9628 9629 9630 9631 9632 9633
	if (p->flags & IORING_SETUP_CQSIZE) {
		/*
		 * If IORING_SETUP_CQSIZE is set, we do the same roundup
		 * to a power-of-two, if it isn't already. We do NOT impose
		 * any cq vs sq ring sizing.
		 */
9634
		if (!p->cq_entries)
9635
			return -EINVAL;
9636 9637 9638 9639 9640
		if (p->cq_entries > IORING_MAX_CQ_ENTRIES) {
			if (!(p->flags & IORING_SETUP_CLAMP))
				return -EINVAL;
			p->cq_entries = IORING_MAX_CQ_ENTRIES;
		}
9641 9642 9643
		p->cq_entries = roundup_pow_of_two(p->cq_entries);
		if (p->cq_entries < p->sq_entries)
			return -EINVAL;
9644 9645 9646
	} else {
		p->cq_entries = 2 * p->sq_entries;
	}
J
Jens Axboe 已提交
9647 9648

	ctx = io_ring_ctx_alloc(p);
J
Jens Axboe 已提交
9649
	if (!ctx)
J
Jens Axboe 已提交
9650 9651
		return -ENOMEM;
	ctx->compat = in_compat_syscall();
J
Jens Axboe 已提交
9652 9653
	if (!capable(CAP_IPC_LOCK))
		ctx->user = get_uid(current_user());
9654 9655 9656 9657 9658 9659 9660

	/*
	 * This is just grabbed for accounting purposes. When a process exits,
	 * the mm is exited and dropped before the files, hence we need to hang
	 * on to this mm purely for the purposes of being able to unaccount
	 * memory (locked/pinned vm). It's not used for anything else.
	 */
9661
	mmgrab(current->mm);
9662
	ctx->mm_account = current->mm;
9663

J
Jens Axboe 已提交
9664 9665 9666 9667
	ret = io_allocate_scq_urings(ctx, p);
	if (ret)
		goto err;

9668
	ret = io_sq_offload_create(ctx, p);
J
Jens Axboe 已提交
9669 9670
	if (ret)
		goto err;
9671
	/* always set a rsrc node */
9672 9673 9674
	ret = io_rsrc_node_switch_start(ctx);
	if (ret)
		goto err;
9675
	io_rsrc_node_switch(ctx, NULL);
J
Jens Axboe 已提交
9676 9677

	memset(&p->sq_off, 0, sizeof(p->sq_off));
9678 9679 9680 9681 9682 9683 9684
	p->sq_off.head = offsetof(struct io_rings, sq.head);
	p->sq_off.tail = offsetof(struct io_rings, sq.tail);
	p->sq_off.ring_mask = offsetof(struct io_rings, sq_ring_mask);
	p->sq_off.ring_entries = offsetof(struct io_rings, sq_ring_entries);
	p->sq_off.flags = offsetof(struct io_rings, sq_flags);
	p->sq_off.dropped = offsetof(struct io_rings, sq_dropped);
	p->sq_off.array = (char *)ctx->sq_array - (char *)ctx->rings;
J
Jens Axboe 已提交
9685 9686

	memset(&p->cq_off, 0, sizeof(p->cq_off));
9687 9688 9689 9690 9691 9692
	p->cq_off.head = offsetof(struct io_rings, cq.head);
	p->cq_off.tail = offsetof(struct io_rings, cq.tail);
	p->cq_off.ring_mask = offsetof(struct io_rings, cq_ring_mask);
	p->cq_off.ring_entries = offsetof(struct io_rings, cq_ring_entries);
	p->cq_off.overflow = offsetof(struct io_rings, cq_overflow);
	p->cq_off.cqes = offsetof(struct io_rings, cqes);
9693
	p->cq_off.flags = offsetof(struct io_rings, cq_flags);
9694

9695 9696
	p->features = IORING_FEAT_SINGLE_MMAP | IORING_FEAT_NODROP |
			IORING_FEAT_SUBMIT_STABLE | IORING_FEAT_RW_CUR_POS |
9697
			IORING_FEAT_CUR_PERSONALITY | IORING_FEAT_FAST_POLL |
9698
			IORING_FEAT_POLL_32BITS | IORING_FEAT_SQPOLL_NONFIXED |
9699 9700
			IORING_FEAT_EXT_ARG | IORING_FEAT_NATIVE_WORKERS |
			IORING_FEAT_RSRC_TAGS;
9701 9702 9703 9704 9705

	if (copy_to_user(params, p, sizeof(*p))) {
		ret = -EFAULT;
		goto err;
	}
9706

9707 9708 9709 9710 9711 9712
	file = io_uring_get_file(ctx);
	if (IS_ERR(file)) {
		ret = PTR_ERR(file);
		goto err;
	}

9713 9714 9715 9716
	/*
	 * Install ring fd as the very last thing, so we don't risk someone
	 * having closed it before we finish setup
	 */
9717 9718 9719 9720 9721 9722
	ret = io_uring_install_fd(ctx, file);
	if (ret < 0) {
		/* fput will clean it up */
		fput(file);
		return ret;
	}
9723

9724
	trace_io_uring_create(ret, ctx, p->sq_entries, p->cq_entries, p->flags);
J
Jens Axboe 已提交
9725 9726 9727 9728 9729 9730 9731 9732 9733 9734 9735 9736 9737 9738 9739 9740 9741 9742 9743 9744 9745 9746 9747
	return ret;
err:
	io_ring_ctx_wait_and_kill(ctx);
	return ret;
}

/*
 * Sets up an aio uring context, and returns the fd. Applications asks for a
 * ring size, we return the actual sq/cq ring sizes (among other things) in the
 * params structure passed in.
 */
static long io_uring_setup(u32 entries, struct io_uring_params __user *params)
{
	struct io_uring_params p;
	int i;

	if (copy_from_user(&p, params, sizeof(p)))
		return -EFAULT;
	for (i = 0; i < ARRAY_SIZE(p.resv); i++) {
		if (p.resv[i])
			return -EINVAL;
	}

J
Jens Axboe 已提交
9748
	if (p.flags & ~(IORING_SETUP_IOPOLL | IORING_SETUP_SQPOLL |
9749
			IORING_SETUP_SQ_AFF | IORING_SETUP_CQSIZE |
9750 9751
			IORING_SETUP_CLAMP | IORING_SETUP_ATTACH_WQ |
			IORING_SETUP_R_DISABLED))
J
Jens Axboe 已提交
9752 9753
		return -EINVAL;

9754
	return  io_uring_create(entries, &p, params);
J
Jens Axboe 已提交
9755 9756 9757 9758 9759 9760 9761 9762
}

SYSCALL_DEFINE2(io_uring_setup, u32, entries,
		struct io_uring_params __user *, params)
{
	return io_uring_setup(entries, params);
}

9763 9764 9765 9766 9767 9768 9769 9770 9771 9772 9773 9774 9775 9776 9777 9778 9779 9780 9781 9782 9783 9784 9785 9786 9787 9788 9789 9790 9791 9792 9793 9794 9795 9796 9797 9798 9799 9800 9801
static int io_probe(struct io_ring_ctx *ctx, void __user *arg, unsigned nr_args)
{
	struct io_uring_probe *p;
	size_t size;
	int i, ret;

	size = struct_size(p, ops, nr_args);
	if (size == SIZE_MAX)
		return -EOVERFLOW;
	p = kzalloc(size, GFP_KERNEL);
	if (!p)
		return -ENOMEM;

	ret = -EFAULT;
	if (copy_from_user(p, arg, size))
		goto out;
	ret = -EINVAL;
	if (memchr_inv(p, 0, size))
		goto out;

	p->last_op = IORING_OP_LAST - 1;
	if (nr_args > IORING_OP_LAST)
		nr_args = IORING_OP_LAST;

	for (i = 0; i < nr_args; i++) {
		p->ops[i].op = i;
		if (!io_op_defs[i].not_supported)
			p->ops[i].flags = IO_URING_OP_SUPPORTED;
	}
	p->ops_len = i;

	ret = 0;
	if (copy_to_user(arg, p, size))
		ret = -EFAULT;
out:
	kfree(p);
	return ret;
}

9802 9803
static int io_register_personality(struct io_ring_ctx *ctx)
{
J
Jens Axboe 已提交
9804
	const struct cred *creds;
9805
	u32 id;
J
Jens Axboe 已提交
9806
	int ret;
9807

J
Jens Axboe 已提交
9808
	creds = get_current_cred();
J
Jens Axboe 已提交
9809

9810 9811 9812 9813 9814
	ret = xa_alloc_cyclic(&ctx->personalities, &id, (void *)creds,
			XA_LIMIT(0, USHRT_MAX), &ctx->pers_next, GFP_KERNEL);
	if (!ret)
		return id;
	put_cred(creds);
J
Jens Axboe 已提交
9815
	return ret;
9816 9817
}

9818 9819 9820 9821 9822 9823 9824
static int io_register_restrictions(struct io_ring_ctx *ctx, void __user *arg,
				    unsigned int nr_args)
{
	struct io_uring_restriction *res;
	size_t size;
	int i, ret;

9825 9826 9827 9828
	/* Restrictions allowed only if rings started disabled */
	if (!(ctx->flags & IORING_SETUP_R_DISABLED))
		return -EBADFD;

9829
	/* We allow only a single restrictions registration */
9830
	if (ctx->restrictions.registered)
9831 9832 9833 9834 9835 9836 9837 9838 9839 9840 9841 9842 9843 9844 9845 9846 9847 9848 9849 9850 9851 9852 9853 9854 9855 9856 9857 9858 9859 9860 9861 9862 9863 9864 9865 9866 9867 9868 9869 9870 9871 9872 9873 9874 9875 9876 9877 9878 9879 9880 9881
		return -EBUSY;

	if (!arg || nr_args > IORING_MAX_RESTRICTIONS)
		return -EINVAL;

	size = array_size(nr_args, sizeof(*res));
	if (size == SIZE_MAX)
		return -EOVERFLOW;

	res = memdup_user(arg, size);
	if (IS_ERR(res))
		return PTR_ERR(res);

	ret = 0;

	for (i = 0; i < nr_args; i++) {
		switch (res[i].opcode) {
		case IORING_RESTRICTION_REGISTER_OP:
			if (res[i].register_op >= IORING_REGISTER_LAST) {
				ret = -EINVAL;
				goto out;
			}

			__set_bit(res[i].register_op,
				  ctx->restrictions.register_op);
			break;
		case IORING_RESTRICTION_SQE_OP:
			if (res[i].sqe_op >= IORING_OP_LAST) {
				ret = -EINVAL;
				goto out;
			}

			__set_bit(res[i].sqe_op, ctx->restrictions.sqe_op);
			break;
		case IORING_RESTRICTION_SQE_FLAGS_ALLOWED:
			ctx->restrictions.sqe_flags_allowed = res[i].sqe_flags;
			break;
		case IORING_RESTRICTION_SQE_FLAGS_REQUIRED:
			ctx->restrictions.sqe_flags_required = res[i].sqe_flags;
			break;
		default:
			ret = -EINVAL;
			goto out;
		}
	}

out:
	/* Reset all restrictions if an error happened */
	if (ret != 0)
		memset(&ctx->restrictions, 0, sizeof(ctx->restrictions));
	else
9882
		ctx->restrictions.registered = true;
9883 9884 9885 9886 9887

	kfree(res);
	return ret;
}

9888 9889 9890 9891 9892 9893 9894 9895
static int io_register_enable_rings(struct io_ring_ctx *ctx)
{
	if (!(ctx->flags & IORING_SETUP_R_DISABLED))
		return -EBADFD;

	if (ctx->restrictions.registered)
		ctx->restricted = 1;

9896 9897 9898
	ctx->flags &= ~IORING_SETUP_R_DISABLED;
	if (ctx->sq_data && wq_has_sleeper(&ctx->sq_data->wait))
		wake_up(&ctx->sq_data->wait);
9899 9900 9901
	return 0;
}

9902
static int __io_register_rsrc_update(struct io_ring_ctx *ctx, unsigned type,
9903
				     struct io_uring_rsrc_update2 *up,
9904 9905 9906 9907 9908
				     unsigned nr_args)
{
	__u32 tmp;
	int err;

9909 9910
	if (up->resv)
		return -EINVAL;
9911 9912 9913 9914 9915 9916
	if (check_add_overflow(up->offset, nr_args, &tmp))
		return -EOVERFLOW;
	err = io_rsrc_node_switch_start(ctx);
	if (err)
		return err;

9917 9918
	switch (type) {
	case IORING_RSRC_FILE:
9919
		return __io_sqe_files_update(ctx, up, nr_args);
9920 9921
	case IORING_RSRC_BUFFER:
		return __io_sqe_buffers_update(ctx, up, nr_args);
9922 9923 9924 9925
	}
	return -EINVAL;
}

9926 9927
static int io_register_files_update(struct io_ring_ctx *ctx, void __user *arg,
				    unsigned nr_args)
9928
{
9929
	struct io_uring_rsrc_update2 up;
9930 9931 9932

	if (!nr_args)
		return -EINVAL;
9933 9934 9935 9936 9937 9938 9939
	memset(&up, 0, sizeof(up));
	if (copy_from_user(&up, arg, sizeof(struct io_uring_rsrc_update)))
		return -EFAULT;
	return __io_register_rsrc_update(ctx, IORING_RSRC_FILE, &up, nr_args);
}

static int io_register_rsrc_update(struct io_ring_ctx *ctx, void __user *arg,
9940
				   unsigned size, unsigned type)
9941 9942 9943 9944 9945
{
	struct io_uring_rsrc_update2 up;

	if (size != sizeof(up))
		return -EINVAL;
9946 9947
	if (copy_from_user(&up, arg, sizeof(up)))
		return -EFAULT;
9948
	if (!up.nr || up.resv)
9949
		return -EINVAL;
9950
	return __io_register_rsrc_update(ctx, type, &up, up.nr);
9951 9952
}

9953
static int io_register_rsrc(struct io_ring_ctx *ctx, void __user *arg,
9954
			    unsigned int size, unsigned int type)
9955 9956 9957 9958 9959 9960 9961 9962 9963 9964
{
	struct io_uring_rsrc_register rr;

	/* keep it extendible */
	if (size != sizeof(rr))
		return -EINVAL;

	memset(&rr, 0, sizeof(rr));
	if (copy_from_user(&rr, arg, size))
		return -EFAULT;
9965
	if (!rr.nr || rr.resv || rr.resv2)
9966 9967
		return -EINVAL;

9968
	switch (type) {
9969 9970 9971
	case IORING_RSRC_FILE:
		return io_sqe_files_register(ctx, u64_to_user_ptr(rr.data),
					     rr.nr, u64_to_user_ptr(rr.tags));
9972 9973 9974
	case IORING_RSRC_BUFFER:
		return io_sqe_buffers_register(ctx, u64_to_user_ptr(rr.data),
					       rr.nr, u64_to_user_ptr(rr.tags));
9975 9976 9977 9978
	}
	return -EINVAL;
}

9979 9980 9981
static bool io_register_op_must_quiesce(int op)
{
	switch (op) {
9982 9983
	case IORING_REGISTER_BUFFERS:
	case IORING_UNREGISTER_BUFFERS:
9984
	case IORING_REGISTER_FILES:
9985 9986 9987 9988 9989
	case IORING_UNREGISTER_FILES:
	case IORING_REGISTER_FILES_UPDATE:
	case IORING_REGISTER_PROBE:
	case IORING_REGISTER_PERSONALITY:
	case IORING_UNREGISTER_PERSONALITY:
9990 9991 9992 9993
	case IORING_REGISTER_FILES2:
	case IORING_REGISTER_FILES_UPDATE2:
	case IORING_REGISTER_BUFFERS2:
	case IORING_REGISTER_BUFFERS_UPDATE:
9994 9995 9996 9997 9998 9999
		return false;
	default:
		return true;
	}
}

10000 10001
static int __io_uring_register(struct io_ring_ctx *ctx, unsigned opcode,
			       void __user *arg, unsigned nr_args)
10002 10003
	__releases(ctx->uring_lock)
	__acquires(ctx->uring_lock)
10004 10005 10006
{
	int ret;

10007 10008 10009 10010 10011 10012 10013 10014
	/*
	 * We're inside the ring mutex, if the ref is already dying, then
	 * someone else killed the ctx or is already going through
	 * io_uring_register().
	 */
	if (percpu_ref_is_dying(&ctx->refs))
		return -ENXIO;

10015 10016 10017 10018 10019 10020 10021 10022
	if (ctx->restricted) {
		if (opcode >= IORING_REGISTER_LAST)
			return -EINVAL;
		opcode = array_index_nospec(opcode, IORING_REGISTER_LAST);
		if (!test_bit(opcode, ctx->restrictions.register_op))
			return -EACCES;
	}

10023
	if (io_register_op_must_quiesce(opcode)) {
10024
		percpu_ref_kill(&ctx->refs);
10025

10026 10027 10028 10029 10030 10031 10032 10033 10034
		/*
		 * Drop uring mutex before waiting for references to exit. If
		 * another thread is currently inside io_uring_enter() it might
		 * need to grab the uring_lock to make progress. If we hold it
		 * here across the drain wait, then we can deadlock. It's safe
		 * to drop the mutex here, since no new references will come in
		 * after we've killed the percpu ref.
		 */
		mutex_unlock(&ctx->uring_lock);
10035 10036 10037 10038
		do {
			ret = wait_for_completion_interruptible(&ctx->ref_comp);
			if (!ret)
				break;
10039 10040 10041
			ret = io_run_task_work_sig();
			if (ret < 0)
				break;
10042
		} while (1);
10043
		mutex_lock(&ctx->uring_lock);
10044

10045
		if (ret) {
10046 10047
			io_refs_resurrect(&ctx->refs, &ctx->ref_comp);
			return ret;
10048
		}
10049
	}
10050 10051 10052

	switch (opcode) {
	case IORING_REGISTER_BUFFERS:
10053
		ret = io_sqe_buffers_register(ctx, arg, nr_args, NULL);
10054 10055 10056 10057 10058
		break;
	case IORING_UNREGISTER_BUFFERS:
		ret = -EINVAL;
		if (arg || nr_args)
			break;
10059
		ret = io_sqe_buffers_unregister(ctx);
10060
		break;
J
Jens Axboe 已提交
10061
	case IORING_REGISTER_FILES:
10062
		ret = io_sqe_files_register(ctx, arg, nr_args, NULL);
J
Jens Axboe 已提交
10063 10064 10065 10066 10067 10068 10069
		break;
	case IORING_UNREGISTER_FILES:
		ret = -EINVAL;
		if (arg || nr_args)
			break;
		ret = io_sqe_files_unregister(ctx);
		break;
10070
	case IORING_REGISTER_FILES_UPDATE:
10071
		ret = io_register_files_update(ctx, arg, nr_args);
10072
		break;
10073
	case IORING_REGISTER_EVENTFD:
10074
	case IORING_REGISTER_EVENTFD_ASYNC:
10075 10076 10077 10078
		ret = -EINVAL;
		if (nr_args != 1)
			break;
		ret = io_eventfd_register(ctx, arg);
10079 10080 10081 10082 10083 10084
		if (ret)
			break;
		if (opcode == IORING_REGISTER_EVENTFD_ASYNC)
			ctx->eventfd_async = 1;
		else
			ctx->eventfd_async = 0;
10085 10086 10087 10088 10089 10090 10091
		break;
	case IORING_UNREGISTER_EVENTFD:
		ret = -EINVAL;
		if (arg || nr_args)
			break;
		ret = io_eventfd_unregister(ctx);
		break;
10092 10093 10094 10095 10096 10097
	case IORING_REGISTER_PROBE:
		ret = -EINVAL;
		if (!arg || nr_args > 256)
			break;
		ret = io_probe(ctx, arg, nr_args);
		break;
10098 10099 10100 10101 10102 10103 10104 10105 10106 10107 10108 10109
	case IORING_REGISTER_PERSONALITY:
		ret = -EINVAL;
		if (arg || nr_args)
			break;
		ret = io_register_personality(ctx);
		break;
	case IORING_UNREGISTER_PERSONALITY:
		ret = -EINVAL;
		if (arg)
			break;
		ret = io_unregister_personality(ctx, nr_args);
		break;
10110 10111 10112 10113 10114 10115
	case IORING_REGISTER_ENABLE_RINGS:
		ret = -EINVAL;
		if (arg || nr_args)
			break;
		ret = io_register_enable_rings(ctx);
		break;
10116 10117 10118
	case IORING_REGISTER_RESTRICTIONS:
		ret = io_register_restrictions(ctx, arg, nr_args);
		break;
10119 10120 10121 10122 10123 10124 10125 10126 10127
	case IORING_REGISTER_FILES2:
		ret = io_register_rsrc(ctx, arg, nr_args, IORING_RSRC_FILE);
		break;
	case IORING_REGISTER_FILES_UPDATE2:
		ret = io_register_rsrc_update(ctx, arg, nr_args,
					      IORING_RSRC_FILE);
		break;
	case IORING_REGISTER_BUFFERS2:
		ret = io_register_rsrc(ctx, arg, nr_args, IORING_RSRC_BUFFER);
10128
		break;
10129 10130 10131
	case IORING_REGISTER_BUFFERS_UPDATE:
		ret = io_register_rsrc_update(ctx, arg, nr_args,
					      IORING_RSRC_BUFFER);
10132
		break;
10133 10134 10135 10136 10137
	default:
		ret = -EINVAL;
		break;
	}

10138
	if (io_register_op_must_quiesce(opcode)) {
10139 10140
		/* bring the ctx back to life */
		percpu_ref_reinit(&ctx->refs);
10141
		reinit_completion(&ctx->ref_comp);
10142
	}
10143 10144 10145 10146 10147 10148 10149 10150 10151 10152 10153 10154 10155 10156 10157 10158 10159 10160 10161 10162
	return ret;
}

SYSCALL_DEFINE4(io_uring_register, unsigned int, fd, unsigned int, opcode,
		void __user *, arg, unsigned int, nr_args)
{
	struct io_ring_ctx *ctx;
	long ret = -EBADF;
	struct fd f;

	f = fdget(fd);
	if (!f.file)
		return -EBADF;

	ret = -EOPNOTSUPP;
	if (f.file->f_op != &io_uring_fops)
		goto out_fput;

	ctx = f.file->private_data;

10163 10164
	io_run_task_work();

10165 10166 10167
	mutex_lock(&ctx->uring_lock);
	ret = __io_uring_register(ctx, opcode, arg, nr_args);
	mutex_unlock(&ctx->uring_lock);
10168 10169
	trace_io_uring_register(ctx, opcode, ctx->nr_user_files, ctx->nr_user_bufs,
							ctx->cq_ev_fd != NULL, ret);
10170 10171 10172 10173 10174
out_fput:
	fdput(f);
	return ret;
}

J
Jens Axboe 已提交
10175 10176
static int __init io_uring_init(void)
{
10177 10178 10179 10180 10181 10182 10183 10184 10185 10186 10187 10188 10189 10190 10191
#define __BUILD_BUG_VERIFY_ELEMENT(stype, eoffset, etype, ename) do { \
	BUILD_BUG_ON(offsetof(stype, ename) != eoffset); \
	BUILD_BUG_ON(sizeof(etype) != sizeof_field(stype, ename)); \
} while (0)

#define BUILD_BUG_SQE_ELEM(eoffset, etype, ename) \
	__BUILD_BUG_VERIFY_ELEMENT(struct io_uring_sqe, eoffset, etype, ename)
	BUILD_BUG_ON(sizeof(struct io_uring_sqe) != 64);
	BUILD_BUG_SQE_ELEM(0,  __u8,   opcode);
	BUILD_BUG_SQE_ELEM(1,  __u8,   flags);
	BUILD_BUG_SQE_ELEM(2,  __u16,  ioprio);
	BUILD_BUG_SQE_ELEM(4,  __s32,  fd);
	BUILD_BUG_SQE_ELEM(8,  __u64,  off);
	BUILD_BUG_SQE_ELEM(8,  __u64,  addr2);
	BUILD_BUG_SQE_ELEM(16, __u64,  addr);
P
Pavel Begunkov 已提交
10192
	BUILD_BUG_SQE_ELEM(16, __u64,  splice_off_in);
10193 10194 10195 10196 10197
	BUILD_BUG_SQE_ELEM(24, __u32,  len);
	BUILD_BUG_SQE_ELEM(28,     __kernel_rwf_t, rw_flags);
	BUILD_BUG_SQE_ELEM(28, /* compat */   int, rw_flags);
	BUILD_BUG_SQE_ELEM(28, /* compat */ __u32, rw_flags);
	BUILD_BUG_SQE_ELEM(28, __u32,  fsync_flags);
10198 10199
	BUILD_BUG_SQE_ELEM(28, /* compat */ __u16,  poll_events);
	BUILD_BUG_SQE_ELEM(28, __u32,  poll32_events);
10200 10201 10202 10203 10204 10205 10206 10207
	BUILD_BUG_SQE_ELEM(28, __u32,  sync_range_flags);
	BUILD_BUG_SQE_ELEM(28, __u32,  msg_flags);
	BUILD_BUG_SQE_ELEM(28, __u32,  timeout_flags);
	BUILD_BUG_SQE_ELEM(28, __u32,  accept_flags);
	BUILD_BUG_SQE_ELEM(28, __u32,  cancel_flags);
	BUILD_BUG_SQE_ELEM(28, __u32,  open_flags);
	BUILD_BUG_SQE_ELEM(28, __u32,  statx_flags);
	BUILD_BUG_SQE_ELEM(28, __u32,  fadvise_advice);
P
Pavel Begunkov 已提交
10208
	BUILD_BUG_SQE_ELEM(28, __u32,  splice_flags);
10209 10210 10211
	BUILD_BUG_SQE_ELEM(32, __u64,  user_data);
	BUILD_BUG_SQE_ELEM(40, __u16,  buf_index);
	BUILD_BUG_SQE_ELEM(42, __u16,  personality);
P
Pavel Begunkov 已提交
10212
	BUILD_BUG_SQE_ELEM(44, __s32,  splice_fd_in);
10213

10214 10215 10216 10217 10218 10219 10220
	BUILD_BUG_ON(sizeof(struct io_uring_files_update) !=
		     sizeof(struct io_uring_rsrc_update));
	BUILD_BUG_ON(sizeof(struct io_uring_rsrc_update) >
		     sizeof(struct io_uring_rsrc_update2));
	/* should fit into one byte */
	BUILD_BUG_ON(SQE_VALID_FLAGS >= (1 << 8));

10221
	BUILD_BUG_ON(ARRAY_SIZE(io_op_defs) != IORING_OP_LAST);
10222
	BUILD_BUG_ON(__REQ_F_LAST_BIT >= 8 * sizeof(int));
10223 10224
	req_cachep = KMEM_CACHE(io_kiocb, SLAB_HWCACHE_ALIGN | SLAB_PANIC |
				SLAB_ACCOUNT);
J
Jens Axboe 已提交
10225 10226 10227
	return 0;
};
__initcall(io_uring_init);