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Change some "/**" to "/*" since they are not kernel-doc comments: Warning: fs/fuse/fuse_dev_i.h:25 This comment starts with '/**', but isn't a kernel-doc comment. Refer to Documentation/doc-guide/kernel-doc.rst * Request flags Warning: fs/fuse/fuse_dev_i.h:58 This comment starts with '/**', but isn't a kernel-doc comment. Refer to Documentation/doc-guide/kernel-doc.rst * A request to the client Warning: fs/fuse/fuse_dev_i.h:117 This comment starts with '/**', but isn't a kernel-doc comment. Refer to Documentation/doc-guide/kernel-doc.rst * Input queue callbacks Warning: fs/fuse/fuse_dev_i.h:289 This comment starts with '/**', but isn't a kernel-doc comment. Refer to Documentation/doc-guide/kernel-doc.rst * Fuse device instance and more like this. Convert enum fuse_req_flag to kernel-doc format. Convert struct fuse_req, struct fuse_iqueue_ops, and struct fuse_dev to kernel-doc format. These warnings remain: Warning: fs/fuse/fuse_dev_i.h:115 struct member 'ring_entry' not described in 'fuse_req' Warning: fs/fuse/fuse_dev_i.h:115 struct member 'ring_queue' not described in 'fuse_req' Binary build output is the same before and after these changes. Signed-off-by: Randy Dunlap <rdunlap@infradead.org> Signed-off-by: Miklos Szeredi <mszeredi@redhat.com>
423 lines
10 KiB
C
423 lines
10 KiB
C
/* SPDX-License-Identifier: GPL-2.0
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*
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* FUSE: Filesystem in Userspace
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* Copyright (C) 2001-2008 Miklos Szeredi <miklos@szeredi.hu>
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*/
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#ifndef _FS_FUSE_DEV_I_H
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#define _FS_FUSE_DEV_I_H
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#include <linux/fuse.h>
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#include <linux/types.h>
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#include <linux/refcount.h>
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#include <linux/wait.h>
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#include <linux/workqueue.h>
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#include <linux/fs.h>
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/* Ordinary requests have even IDs, while interrupts IDs are odd */
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#define FUSE_INT_REQ_BIT (1ULL << 0)
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#define FUSE_REQ_ID_STEP (1ULL << 1)
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struct fuse_arg;
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struct fuse_args;
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struct fuse_pqueue;
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struct fuse_iqueue;
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/**
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* enum fuse_req_flag - Request flags
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*
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* @FR_ISREPLY: set if the request has reply
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* @FR_FORCE: force sending of the request even if interrupted
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* @FR_BACKGROUND: request is sent in the background
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* @FR_WAITING: request is counted as "waiting"
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* @FR_ABORTED: the request was aborted
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* @FR_INTERRUPTED: the request has been interrupted
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* @FR_LOCKED: data is being copied to/from the request
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* @FR_PENDING: request is not yet in userspace
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* @FR_SENT: request is in userspace, waiting for an answer
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* @FR_FINISHED: request is finished
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* @FR_PRIVATE: request is on private list
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* @FR_ASYNC: request is asynchronous
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* @FR_URING: request is handled through fuse-io-uring
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*/
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enum fuse_req_flag {
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FR_ISREPLY,
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FR_FORCE,
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FR_BACKGROUND,
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FR_WAITING,
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FR_ABORTED,
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FR_INTERRUPTED,
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FR_LOCKED,
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FR_PENDING,
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FR_SENT,
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FR_FINISHED,
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FR_PRIVATE,
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FR_ASYNC,
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FR_URING,
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};
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/**
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* struct fuse_req - A request to the client
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*
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* .waitq.lock protects the following fields:
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* - FR_ABORTED
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* - FR_LOCKED (may also be modified under fpq->lock, tested under both)
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*/
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struct fuse_req {
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/**
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* @list: This can be on either pending processing or io lists in
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* fuse_conn
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*/
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struct list_head list;
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/** @intr_entry: Entry on the interrupts list */
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struct list_head intr_entry;
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/** @args: Input/output arguments */
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struct fuse_args *args;
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/** @count: refcount */
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refcount_t count;
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/** @flags: Request flags, updated with test/set/clear_bit() */
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unsigned long flags;
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/** @in: The request input header */
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struct {
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/** @in.h: The request input header */
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struct fuse_in_header h;
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} in;
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/** @out: The request output header */
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struct {
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/** @out.h: The request output header */
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struct fuse_out_header h;
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} out;
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/** @waitq: Used to wake up the task waiting for completion of request */
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wait_queue_head_t waitq;
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#if IS_ENABLED(CONFIG_VIRTIO_FS)
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/**
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* @argbuf: virtio-fs's physically contiguous buffer for in and out
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* args
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*/
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void *argbuf;
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#endif
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/** @chan: fuse_chan this request belongs to */
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struct fuse_chan *chan;
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#ifdef CONFIG_FUSE_IO_URING
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void *ring_entry;
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void *ring_queue;
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#endif
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/** @create_time: When (in jiffies) the request was created */
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unsigned long create_time;
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};
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/* One forget request */
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struct fuse_forget_link {
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struct fuse_forget_one forget_one;
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struct fuse_forget_link *next;
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};
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/**
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* struct fuse_iqueue_ops - Input queue callbacks
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*
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* Input queue signalling is device-specific. For example, the /dev/fuse file
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* uses fiq->waitq and fasync to wake processes that are waiting on queue
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* readiness. These callbacks allow other device types to respond to input
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* queue activity.
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*/
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struct fuse_iqueue_ops {
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/**
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* @send_forget: Send one forget
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*/
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void (*send_forget)(struct fuse_iqueue *fiq, struct fuse_forget_link *link);
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/**
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* @send_interrupt: Send interrupt for request
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*/
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void (*send_interrupt)(struct fuse_iqueue *fiq, struct fuse_req *req);
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/**
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* @send_req: Send one request
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*/
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void (*send_req)(struct fuse_iqueue *fiq, struct fuse_req *req);
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/**
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* @release: Clean up when fuse_iqueue is destroyed
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*/
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void (*release)(struct fuse_iqueue *fiq);
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};
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struct fuse_iqueue {
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/** Connection established */
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unsigned connected;
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/** Lock protecting accesses to members of this structure */
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spinlock_t lock;
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/** Readers of the connection are waiting on this */
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wait_queue_head_t waitq;
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/** The next unique request id */
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u64 reqctr;
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/** The list of pending requests */
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struct list_head pending;
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/** Pending interrupts */
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struct list_head interrupts;
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/** Queue of pending forgets */
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struct fuse_forget_link forget_list_head;
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struct fuse_forget_link *forget_list_tail;
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/** Batching of FORGET requests (positive indicates FORGET batch) */
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int forget_batch;
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/** O_ASYNC requests */
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struct fasync_struct *fasync;
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/** Device-specific callbacks */
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const struct fuse_iqueue_ops *ops;
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/** Device-specific state */
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void *priv;
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};
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struct fuse_chan {
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/** Lock protecting:
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- devices
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- connected
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- ring
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- ring->queues[qid]
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*/
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spinlock_t lock;
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/* back pointer: fc->chan->conn == fc */
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struct fuse_conn *conn;
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/** Input queue */
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struct fuse_iqueue iq;
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/** List of device instances belonging to this connection */
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struct list_head devices;
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/** Maximum number of outstanding background requests */
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unsigned max_background;
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/** Number of requests currently in the background */
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unsigned num_background;
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/** Number of background requests currently queued for userspace */
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unsigned active_background;
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/** The list of background requests set aside for later queuing */
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struct list_head bg_queue;
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/** Protects: max_background, num_background, active_background, bg_queue, blocked */
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spinlock_t bg_lock;
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/** Flag indicating that INIT reply has been received. Allocating
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* any fuse request will be suspended until the flag is set */
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int initialized;
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/** Flag indicating if connection is blocked. This will be
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the case before the INIT reply is received, and if there
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are too many outstading backgrounds requests */
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int blocked;
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/** waitq for blocked connection */
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wait_queue_head_t blocked_waitq;
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/** Connection established, cleared on umount, connection
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abort and device release */
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unsigned connected;
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/** The number of requests waiting for completion */
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atomic_t num_waiting;
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/** Is interrupt not implemented by fs? */
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bool no_interrupt;
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/* Use io_uring for communication */
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unsigned int io_uring;
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/* Negotiated minor version */
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unsigned int minor;
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/* Maximum write size */
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unsigned int max_write;
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/* Maximum number of pages that can be used in a single request */
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unsigned int max_pages;
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/* Before being installed into fud, contains the preallocated pq array*/
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struct list_head *pq_prealloc;
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/** Connection aborted via sysfs, respond with ECONNABORTED on device I/O */
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bool abort_with_err;
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#ifdef CONFIG_FUSE_IO_URING
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/** uring connection information*/
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struct fuse_ring *ring;
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#endif
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/** Only used if the connection opts into request timeouts */
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struct {
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/* Worker for checking if any requests have timed out */
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struct delayed_work work;
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/* Request timeout (in jiffies). 0 = no timeout */
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unsigned int req_timeout;
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} timeout;
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};
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#define FUSE_PQ_HASH_BITS 8
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#define FUSE_PQ_HASH_SIZE (1 << FUSE_PQ_HASH_BITS)
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struct fuse_pqueue {
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/** Connection established */
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unsigned connected;
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/** Lock protecting accessess to members of this structure */
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spinlock_t lock;
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/** Hash table of requests being processed */
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struct list_head *processing;
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/** The list of requests under I/O */
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struct list_head io;
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};
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/**
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* struct fuse_dev - Fuse device instance
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*/
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struct fuse_dev {
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/** @ref: Reference count of this object */
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refcount_t ref;
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/** @sync_init: Issue FUSE_INIT synchronously */
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bool sync_init;
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/** @chan: Fuse channel for this device */
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struct fuse_chan *chan;
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/** @pq: Processing queue */
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struct fuse_pqueue pq;
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/** @entry: list entry on fch->devices */
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struct list_head entry;
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};
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struct fuse_copy_state {
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struct fuse_req *req;
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struct iov_iter *iter;
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struct pipe_buffer *pipebufs;
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struct pipe_buffer *currbuf;
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struct pipe_inode_info *pipe;
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unsigned long nr_segs;
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struct page *pg;
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unsigned int len;
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unsigned int offset;
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bool write:1;
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bool move_folios:1;
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bool is_uring:1;
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struct {
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unsigned int copied_sz; /* copied size into the user buffer */
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} ring;
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};
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/* fud->chan gets assigned to this value when /dev/fuse is closed */
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#define FUSE_DEV_CHAN_DISCONNECTED ((struct fuse_chan *) 1)
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/*
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* Lockless access is OK, because fud->chan is set once during mount and is valid
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* until the file is released.
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*
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* fud->chan is set to FUSE_DEV_CHAN_DISCONNECTED only after the containing file is
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* released, so result is safe to dereference in most cases. Exceptions are:
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* fuse_dev_put() and fuse_fill_super_common().
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*/
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static inline struct fuse_chan *fuse_dev_chan_get(struct fuse_dev *fud)
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{
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/* Pairs with xchg() in fuse_dev_install() */
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return smp_load_acquire(&fud->chan);
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}
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static inline struct fuse_dev *fuse_file_to_fud(struct file *file)
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{
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return file->private_data;
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}
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static inline struct fuse_dev *__fuse_get_dev(struct file *file)
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{
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struct fuse_dev *fud = fuse_file_to_fud(file);
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if (!fuse_dev_chan_get(fud))
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return NULL;
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return fud;
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}
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void fuse_iqueue_init(struct fuse_iqueue *fiq, const struct fuse_iqueue_ops *ops, void *priv);
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struct fuse_dev *fuse_get_dev(struct file *file);
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unsigned int fuse_req_hash(u64 unique);
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struct fuse_req *fuse_request_find(struct fuse_pqueue *fpq, u64 unique);
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void fuse_dev_end_requests(struct list_head *head);
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void fuse_request_bg_finish(struct fuse_chan *fch, struct fuse_req *req);
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void fuse_copy_init(struct fuse_copy_state *cs, bool write,
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struct iov_iter *iter);
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/*
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* Return the number of bytes in an arguments list
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*/
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unsigned int fuse_len_args(unsigned int numargs, struct fuse_arg *args);
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int fuse_copy_args(struct fuse_copy_state *cs, unsigned int numargs,
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unsigned int argpages, struct fuse_arg *args,
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int zeroing);
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int fuse_copy_out_args(struct fuse_copy_state *cs, struct fuse_args *args,
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unsigned int nbytes);
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void fuse_dev_queue_forget(struct fuse_iqueue *fiq,
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struct fuse_forget_link *forget);
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void fuse_dev_queue_interrupt(struct fuse_iqueue *fiq, struct fuse_req *req);
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bool fuse_remove_pending_req(struct fuse_req *req, spinlock_t *lock);
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bool fuse_request_expired(struct fuse_chan *fch, struct list_head *list);
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/*
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* Assign a unique id to a fuse request
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*/
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void fuse_request_assign_unique(struct fuse_iqueue *fiq, struct fuse_req *req);
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/*
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* Get the next unique ID for a request
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*/
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u64 fuse_get_unique(struct fuse_iqueue *fiq);
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struct fuse_dev *fuse_dev_alloc_install(struct fuse_chan *fch);
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struct fuse_dev *fuse_dev_alloc(void);
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int fuse_dev_release(struct inode *inode, struct file *file);
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struct list_head *fuse_pqueue_alloc(void);
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/*
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* Initialize the fuse processing queue
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*/
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void fuse_pqueue_init(struct fuse_pqueue *fpq);
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/*
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* End a finished request
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*/
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void fuse_request_end(struct fuse_req *req);
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#endif
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