internal.h 54.5 KB
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/* SPDX-License-Identifier: GPL-2.0-or-later */
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/* internal AFS stuff
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 *
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 * Copyright (C) 2002, 2007 Red Hat, Inc. All Rights Reserved.
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 * Written by David Howells (dhowells@redhat.com)
 */

#include <linux/compiler.h>
#include <linux/kernel.h>
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#include <linux/ktime.h>
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#include <linux/fs.h>
#include <linux/pagemap.h>
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#include <linux/rxrpc.h>
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#include <linux/key.h>
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#include <linux/workqueue.h>
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#include <linux/sched.h>
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#include <linux/fscache.h>
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#include <linux/backing-dev.h>
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#include <linux/uuid.h>
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#include <linux/mm_types.h>
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#include <linux/dns_resolver.h>
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#include <net/net_namespace.h>
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#include <net/netns/generic.h>
#include <net/sock.h>
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#include <net/af_rxrpc.h>
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#include "afs.h"
#include "afs_vl.h"

#define AFS_CELL_MAX_ADDRS 15

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struct pagevec;
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struct afs_call;

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/*
 * Partial file-locking emulation mode.  (The problem being that AFS3 only
 * allows whole-file locks and no upgrading/downgrading).
 */
enum afs_flock_mode {
	afs_flock_mode_unset,
	afs_flock_mode_local,	/* Local locking only */
	afs_flock_mode_openafs,	/* Don't get server lock for a partial lock */
	afs_flock_mode_strict,	/* Always get a server lock for a partial lock */
	afs_flock_mode_write,	/* Get an exclusive server lock for a partial lock */
};

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struct afs_fs_context {
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	bool			force;		/* T to force cell type */
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	bool			autocell;	/* T if set auto mount operation */
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	bool			dyn_root;	/* T if dynamic root */
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	bool			no_cell;	/* T if the source is "none" (for dynroot) */
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	enum afs_flock_mode	flock_mode;	/* Partial file-locking emulation mode */
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	afs_voltype_t		type;		/* type of volume requested */
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	unsigned int		volnamesz;	/* size of volume name */
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	const char		*volname;	/* name of volume to mount */
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	struct afs_net		*net;		/* the AFS net namespace stuff */
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	struct afs_cell		*cell;		/* cell in which to find volume */
	struct afs_volume	*volume;	/* volume record */
	struct key		*key;		/* key to use for secure mounting */
};

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enum afs_call_state {
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	AFS_CALL_CL_REQUESTING,		/* Client: Request is being sent */
	AFS_CALL_CL_AWAIT_REPLY,	/* Client: Awaiting reply */
	AFS_CALL_CL_PROC_REPLY,		/* Client: rxrpc call complete; processing reply */
	AFS_CALL_SV_AWAIT_OP_ID,	/* Server: Awaiting op ID */
	AFS_CALL_SV_AWAIT_REQUEST,	/* Server: Awaiting request data */
	AFS_CALL_SV_REPLYING,		/* Server: Replying */
	AFS_CALL_SV_AWAIT_ACK,		/* Server: Awaiting final ACK */
	AFS_CALL_COMPLETE,		/* Completed or failed */
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};
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/*
 * List of server addresses.
 */
struct afs_addr_list {
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	struct rcu_head		rcu;
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	refcount_t		usage;
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	u32			version;	/* Version */
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	unsigned char		max_addrs;
	unsigned char		nr_addrs;
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	unsigned char		preferred;	/* Preferred address */
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	unsigned char		nr_ipv4;	/* Number of IPv4 addresses */
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	enum dns_record_source	source:8;
	enum dns_lookup_status	status:8;
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	unsigned long		failed;		/* Mask of addrs that failed locally/ICMP */
	unsigned long		responded;	/* Mask of addrs that responded */
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	struct sockaddr_rxrpc	addrs[];
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#define AFS_MAX_ADDRESSES ((unsigned int)(sizeof(unsigned long) * 8))
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};

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/*
 * a record of an in-progress RxRPC call
 */
struct afs_call {
	const struct afs_call_type *type;	/* type of call */
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	struct afs_addr_list	*alist;		/* Address is alist[addr_ix] */
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	wait_queue_head_t	waitq;		/* processes awaiting completion */
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	struct work_struct	async_work;	/* async I/O processor */
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	struct work_struct	work;		/* actual work processor */
	struct rxrpc_call	*rxcall;	/* RxRPC call handle */
	struct key		*key;		/* security for this call */
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	struct afs_net		*net;		/* The network namespace */
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	struct afs_server	*server;	/* The fileserver record if fs op (pins ref) */
	struct afs_vlserver	*vlserver;	/* The vlserver record if vl op */
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	struct afs_cb_interest	*cbi;		/* Callback interest for server used */
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	void			*request;	/* request data (first part) */
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	struct iov_iter		def_iter;	/* Default buffer/data iterator */
	struct iov_iter		*iter;		/* Iterator currently in use */
	union {	/* Convenience for ->def_iter */
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		struct kvec	kvec[1];
		struct bio_vec	bvec[1];
	};
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	void			*buffer;	/* reply receive buffer */
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	union {
		long			ret0;	/* Value to reply with instead of 0 */
		struct afs_addr_list	*ret_alist;
		struct afs_vldb_entry	*ret_vldb;
	};
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	struct afs_operation	*op;
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	unsigned int		server_index;
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	atomic_t		usage;
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	enum afs_call_state	state;
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	spinlock_t		state_lock;
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	int			error;		/* error code */
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	u32			abort_code;	/* Remote abort ID or 0 */
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	u32			epoch;
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	unsigned int		max_lifespan;	/* Maximum lifespan to set if not 0 */
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	unsigned		request_size;	/* size of request data */
	unsigned		reply_max;	/* maximum size of reply */
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	unsigned		count2;		/* count used in unmarshalling */
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	unsigned char		unmarshall;	/* unmarshalling phase */
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	unsigned char		addr_ix;	/* Address in ->alist */
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	bool			drop_ref;	/* T if need to drop ref for incoming call */
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	bool			send_pages;	/* T if data from mapping should be sent */
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	bool			need_attention;	/* T if RxRPC poked us */
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	bool			async;		/* T if asynchronous */
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	bool			upgrade;	/* T to request service upgrade */
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	bool			have_reply_time; /* T if have got reply_time */
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	bool			intr;		/* T if interruptible */
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	bool			unmarshalling_error; /* T if an unmarshalling error occurred */
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	u16			service_id;	/* Actual service ID (after upgrade) */
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	unsigned int		debug_id;	/* Trace ID */
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	u32			operation_ID;	/* operation ID for an incoming call */
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	u32			count;		/* count for use in unmarshalling */
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	union {					/* place to extract temporary data */
		struct {
			__be32	tmp_u;
			__be32	tmp;
		} __attribute__((packed));
		__be64		tmp64;
	};
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	ktime_t			reply_time;	/* Time of first reply packet */
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};

struct afs_call_type {
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	const char *name;
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	unsigned int op; /* Really enum afs_fs_operation */
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	/* deliver request or reply data to an call
	 * - returning an error will cause the call to be aborted
	 */
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	int (*deliver)(struct afs_call *call);
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	/* clean up a call */
	void (*destructor)(struct afs_call *call);
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	/* Work function */
	void (*work)(struct work_struct *work);
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	/* Call done function (gets called immediately on success or failure) */
	void (*done)(struct afs_call *call);
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};

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/*
 * Key available for writeback on a file.
 */
struct afs_wb_key {
	refcount_t		usage;
	struct key		*key;
	struct list_head	vnode_link;	/* Link in vnode->wb_keys */
};

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/*
 * AFS open file information record.  Pointed to by file->private_data.
 */
struct afs_file {
	struct key		*key;		/* The key this file was opened with */
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	struct afs_wb_key	*wb;		/* Writeback key record for this file */
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};

static inline struct key *afs_file_key(struct file *file)
{
	struct afs_file *af = file->private_data;

	return af->key;
}

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/*
 * Record of an outstanding read operation on a vnode.
 */
struct afs_read {
	loff_t			pos;		/* Where to start reading */
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	loff_t			len;		/* How much we're asking for */
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	loff_t			actual_len;	/* How much we're actually getting */
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	loff_t			remain;		/* Amount remaining */
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	loff_t			file_size;	/* File size returned by server */
	afs_dataversion_t	data_version;	/* Version number returned by server */
	refcount_t		usage;
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	unsigned int		index;		/* Which page we're reading into */
	unsigned int		nr_pages;
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	unsigned int		offset;		/* offset into current page */
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	struct afs_vnode	*vnode;
	void (*page_done)(struct afs_read *);
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	struct page		**pages;
	struct page		*array[];
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};

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/*
 * AFS superblock private data
 * - there's one superblock per volume
 */
struct afs_super_info {
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	struct net		*net_ns;	/* Network namespace */
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	struct afs_cell		*cell;		/* The cell in which the volume resides */
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	struct afs_volume	*volume;	/* volume record */
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	enum afs_flock_mode	flock_mode:8;	/* File locking emulation mode */
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	bool			dyn_root;	/* True if dynamic root */
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};
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static inline struct afs_super_info *AFS_FS_S(struct super_block *sb)
{
	return sb->s_fs_info;
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}

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extern struct file_system_type afs_fs_type;

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/*
 * Set of substitutes for @sys.
 */
struct afs_sysnames {
#define AFS_NR_SYSNAME 16
	char			*subs[AFS_NR_SYSNAME];
	refcount_t		usage;
	unsigned short		nr;
	char			blank[1];
};

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/*
 * AFS network namespace record.
 */
struct afs_net {
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	struct net		*net;		/* Backpointer to the owning net namespace */
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	struct afs_uuid		uuid;
	bool			live;		/* F if this namespace is being removed */

	/* AF_RXRPC I/O stuff */
	struct socket		*socket;
	struct afs_call		*spare_incoming_call;
	struct work_struct	charge_preallocation_work;
	struct mutex		socket_mutex;
	atomic_t		nr_outstanding_calls;
	atomic_t		nr_superblocks;

	/* Cell database */
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	struct rb_root		cells;
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	struct afs_cell __rcu	*ws_cell;
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	struct work_struct	cells_manager;
	struct timer_list	cells_timer;
	atomic_t		cells_outstanding;
	seqlock_t		cells_lock;
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	struct mutex		proc_cells_lock;
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	struct hlist_head	proc_cells;
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	/* Known servers.  Theoretically each fileserver can only be in one
	 * cell, but in practice, people create aliases and subsets and there's
	 * no easy way to distinguish them.
	 */
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	seqlock_t		fs_lock;	/* For fs_servers, fs_probe_*, fs_proc */
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	struct rb_root		fs_servers;	/* afs_server (by server UUID or address) */
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	struct list_head	fs_probe_fast;	/* List of afs_server to probe at 30s intervals */
	struct list_head	fs_probe_slow;	/* List of afs_server to probe at 5m intervals */
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	struct hlist_head	fs_proc;	/* procfs servers list */
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	struct hlist_head	fs_addresses4;	/* afs_server (by lowest IPv4 addr) */
	struct hlist_head	fs_addresses6;	/* afs_server (by lowest IPv6 addr) */
	seqlock_t		fs_addr_lock;	/* For fs_addresses[46] */
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	struct work_struct	fs_manager;
	struct timer_list	fs_timer;
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	struct work_struct	fs_prober;
	struct timer_list	fs_probe_timer;
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	atomic_t		servers_outstanding;
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	/* File locking renewal management */
	struct mutex		lock_manager_mutex;

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	/* Misc */
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	struct super_block	*dynroot_sb;	/* Dynamic root mount superblock */
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	struct proc_dir_entry	*proc_afs;	/* /proc/net/afs directory */
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	struct afs_sysnames	*sysnames;
	rwlock_t		sysnames_lock;
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	/* Statistics counters */
	atomic_t		n_lookup;	/* Number of lookups done */
	atomic_t		n_reval;	/* Number of dentries needing revalidation */
	atomic_t		n_inval;	/* Number of invalidations by the server */
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	atomic_t		n_relpg;	/* Number of invalidations by releasepage */
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	atomic_t		n_read_dir;	/* Number of directory pages read */
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	atomic_t		n_dir_cr;	/* Number of directory entry creation edits */
	atomic_t		n_dir_rm;	/* Number of directory entry removal edits */
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	atomic_t		n_stores;	/* Number of store ops */
	atomic_long_t		n_store_bytes;	/* Number of bytes stored */
	atomic_long_t		n_fetch_bytes;	/* Number of bytes fetched */
	atomic_t		n_fetches;	/* Number of data fetch ops */
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};

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extern const char afs_init_sysname[];
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enum afs_cell_state {
	AFS_CELL_UNSET,
	AFS_CELL_ACTIVATING,
	AFS_CELL_ACTIVE,
	AFS_CELL_DEACTIVATING,
	AFS_CELL_INACTIVE,
	AFS_CELL_FAILED,
};

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/*
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 * AFS cell record.
 *
 * This is a tricky concept to get right as it is possible to create aliases
 * simply by pointing AFSDB/SRV records for two names at the same set of VL
 * servers; it is also possible to do things like setting up two sets of VL
 * servers, one of which provides a superset of the volumes provided by the
 * other (for internal/external division, for example).
 *
 * Cells only exist in the sense that (a) a cell's name maps to a set of VL
 * servers and (b) a cell's name is used by the client to select the key to use
 * for authentication and encryption.  The cell name is not typically used in
 * the protocol.
 *
 * There is no easy way to determine if two cells are aliases or one is a
 * subset of another.
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 */
struct afs_cell {
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	union {
		struct rcu_head	rcu;
		struct rb_node	net_node;	/* Node in net->cells */
	};
	struct afs_net		*net;
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	struct key		*anonymous_key;	/* anonymous user key for this cell */
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	struct work_struct	manager;	/* Manager for init/deinit/dns */
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	struct hlist_node	proc_link;	/* /proc cell list link */
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#ifdef CONFIG_AFS_FSCACHE
	struct fscache_cookie	*cache;		/* caching cookie */
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#endif
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	time64_t		dns_expiry;	/* Time AFSDB/SRV record expires */
	time64_t		last_inactive;	/* Time of last drop of usage count */
	atomic_t		usage;
	unsigned long		flags;
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#define AFS_CELL_FL_NO_GC	0		/* The cell was added manually, don't auto-gc */
#define AFS_CELL_FL_DO_LOOKUP	1		/* DNS lookup requested */
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	enum afs_cell_state	state;
	short			error;
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	enum dns_record_source	dns_source:8;	/* Latest source of data from lookup */
	enum dns_lookup_status	dns_status:8;	/* Latest status of data from lookup */
	unsigned int		dns_lookup_count; /* Counter of DNS lookups */
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	/* Active fileserver interaction state. */
	struct list_head	proc_volumes;	/* procfs volume list */
	rwlock_t		proc_lock;
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	/* VL server list. */
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	rwlock_t		vl_servers_lock; /* Lock on vl_servers */
	struct afs_vlserver_list __rcu *vl_servers;

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	u8			name_len;	/* Length of name */
	char			name[64 + 1];	/* Cell name, case-flattened and NUL-padded */
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};

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/*
 * Volume Location server record.
 */
struct afs_vlserver {
	struct rcu_head		rcu;
	struct afs_addr_list	__rcu *addresses; /* List of addresses for this VL server */
	unsigned long		flags;
#define AFS_VLSERVER_FL_PROBED	0		/* The VL server has been probed */
#define AFS_VLSERVER_FL_PROBING	1		/* VL server is being probed */
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#define AFS_VLSERVER_FL_IS_YFS	2		/* Server is YFS not AFS */
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	rwlock_t		lock;		/* Lock on addresses */
	atomic_t		usage;
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	/* Probe state */
	wait_queue_head_t	probe_wq;
	atomic_t		probe_outstanding;
	spinlock_t		probe_lock;
	struct {
		unsigned int	rtt;		/* RTT as ktime/64 */
		u32		abort_code;
		short		error;
		bool		have_result;
		bool		responded:1;
		bool		is_yfs:1;
		bool		not_yfs:1;
		bool		local_failure:1;
	} probe;

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	u16			port;
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	u16			name_len;	/* Length of name */
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	char			name[];		/* Server name, case-flattened */
};

/*
 * Weighted list of Volume Location servers.
 */
struct afs_vlserver_entry {
	u16			priority;	/* Preference (as SRV) */
	u16			weight;		/* Weight (as SRV) */
	enum dns_record_source	source:8;
	enum dns_lookup_status	status:8;
	struct afs_vlserver	*server;
};

struct afs_vlserver_list {
	struct rcu_head		rcu;
	atomic_t		usage;
	u8			nr_servers;
	u8			index;		/* Server currently in use */
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	u8			preferred;	/* Preferred server */
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	enum dns_record_source	source:8;
	enum dns_lookup_status	status:8;
	rwlock_t		lock;
	struct afs_vlserver_entry servers[];
};

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/*
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 * Cached VLDB entry.
 *
 * This is pointed to by cell->vldb_entries, indexed by name.
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 */
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struct afs_vldb_entry {
	afs_volid_t		vid[3];		/* Volume IDs for R/W, R/O and Bak volumes */
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	unsigned long		flags;
#define AFS_VLDB_HAS_RW		0		/* - R/W volume exists */
#define AFS_VLDB_HAS_RO		1		/* - R/O volume exists */
#define AFS_VLDB_HAS_BAK	2		/* - Backup volume exists */
#define AFS_VLDB_QUERY_VALID	3		/* - Record is valid */
#define AFS_VLDB_QUERY_ERROR	4		/* - VL server returned error */

	uuid_t			fs_server[AFS_NMAXNSERVERS];
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	u32			addr_version[AFS_NMAXNSERVERS]; /* Registration change counters */
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	u8			fs_mask[AFS_NMAXNSERVERS];
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#define AFS_VOL_VTM_RW	0x01 /* R/W version of the volume is available (on this server) */
#define AFS_VOL_VTM_RO	0x02 /* R/O version of the volume is available (on this server) */
#define AFS_VOL_VTM_BAK	0x04 /* backup version of the volume is available (on this server) */
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	short			error;
	u8			nr_servers;	/* Number of server records */
	u8			name_len;
	u8			name[AFS_MAXVOLNAME + 1]; /* NUL-padded volume name */
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};

/*
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 * Record of fileserver with which we're actively communicating.
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 */
struct afs_server {
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	struct rcu_head		rcu;
	union {
		uuid_t		uuid;		/* Server ID */
		struct afs_uuid	_uuid;
	};

	struct afs_addr_list	__rcu *addresses;
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	struct rb_node		uuid_rb;	/* Link in net->fs_servers */
	struct list_head	probe_link;	/* Link in net->fs_probe_list */
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	struct hlist_node	addr4_link;	/* Link in net->fs_addresses4 */
	struct hlist_node	addr6_link;	/* Link in net->fs_addresses6 */
	struct hlist_node	proc_link;	/* Link in net->fs_proc */
	struct afs_server	*gc_next;	/* Next server in manager's list */
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	time64_t		unuse_time;	/* Time at which last unused */
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	unsigned long		flags;
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#define AFS_SERVER_FL_NOT_READY	1		/* The record is not ready for use */
#define AFS_SERVER_FL_NOT_FOUND	2		/* VL server says no such server */
#define AFS_SERVER_FL_VL_FAIL	3		/* Failed to access VL server */
#define AFS_SERVER_FL_UPDATING	4
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#define AFS_SERVER_FL_NO_IBULK	7		/* Fileserver doesn't support FS.InlineBulkStatus */
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#define AFS_SERVER_FL_MAY_HAVE_CB 8		/* May have callbacks on this fileserver */
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#define AFS_SERVER_FL_IS_YFS	9		/* Server is YFS not AFS */
#define AFS_SERVER_FL_NO_RM2	10		/* Fileserver doesn't support YFS.RemoveFile2 */
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#define AFS_SERVER_FL_HAVE_EPOCH 11		/* ->epoch is valid */
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#define AFS_SERVER_FL_NEEDS_UPDATE 12		/* Fileserver address list is out of date */
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	atomic_t		ref;		/* Object refcount */
	atomic_t		active;		/* Active user count */
498
	u32			addr_version;	/* Address list version */
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	u32			cm_epoch;	/* Server RxRPC epoch */
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	unsigned int		debug_id;	/* Debugging ID for traces */
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	/* file service access */
503
	rwlock_t		fs_lock;	/* access lock */
504 505

	/* callback promise management */
506
	struct rb_root		cb_volumes;	/* List of volume interests on this server */
507
	unsigned		cb_s_break;	/* Break-everything counter. */
508
	seqlock_t		cb_break_lock;	/* Volume finding lock */
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	/* Probe state */
511
	unsigned long		probed_at;	/* Time last probe was dispatched (jiffies) */
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	wait_queue_head_t	probe_wq;
	atomic_t		probe_outstanding;
	spinlock_t		probe_lock;
	struct {
		unsigned int	rtt;		/* RTT as ktime/64 */
		u32		abort_code;
		u32		cm_epoch;
		short		error;
		bool		responded:1;
		bool		is_yfs:1;
		bool		not_yfs:1;
		bool		local_failure:1;
		bool		cm_probed:1;
		bool		said_rebooted:1;
		bool		said_inconsistent:1;
	} probe;
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};

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/*
 * Volume collation in the server's callback interest list.
 */
struct afs_vol_interest {
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	struct rb_node		srv_node;	/* Link in server->cb_volumes */
535
	struct hlist_head	cb_interests;	/* List of callback interests on the server */
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	union {
		struct rcu_head	rcu;
		afs_volid_t	vid;		/* Volume ID to match */
	};
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	unsigned int		usage;
};

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/*
 * Interest by a superblock on a server.
 */
struct afs_cb_interest {
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	struct hlist_node	cb_vlink;	/* Link in vol_interest->cb_interests */
	struct afs_vol_interest	*vol_interest;
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	struct afs_server	*server;	/* Server on which this interest resides */
	struct super_block	*sb;		/* Superblock on which inodes reside */
551
	struct rcu_head		rcu;
552
	refcount_t		usage;
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};

/*
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 * Replaceable server list.
 */
struct afs_server_entry {
	struct afs_server	*server;
	struct afs_cb_interest	*cb_interest;
};

struct afs_server_list {
	refcount_t		usage;
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	unsigned char		nr_servers;
	unsigned char		preferred;	/* Preferred server */
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	unsigned short		vnovol_mask;	/* Servers to be skipped due to VNOVOL */
	unsigned int		seq;		/* Set to ->servers_seq when installed */
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	rwlock_t		lock;
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	struct afs_server_entry	servers[];
};

/*
 * Live AFS volume management.
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 */
struct afs_volume {
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	afs_volid_t		vid;		/* volume ID */
578
	atomic_t		usage;
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	time64_t		update_at;	/* Time at which to next update */
	struct afs_cell		*cell;		/* Cell to which belongs (pins ref) */
	struct list_head	proc_link;	/* Link in cell->vl_proc */
	unsigned long		flags;
#define AFS_VOLUME_NEEDS_UPDATE	0	/* - T if an update needs performing */
#define AFS_VOLUME_UPDATING	1	/* - T if an update is in progress */
#define AFS_VOLUME_WAIT		2	/* - T if users must wait for update */
#define AFS_VOLUME_DELETED	3	/* - T if volume appears deleted */
#define AFS_VOLUME_OFFLINE	4	/* - T if volume offline notice given */
#define AFS_VOLUME_BUSY		5	/* - T if volume busy notice given */
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#ifdef CONFIG_AFS_FSCACHE
	struct fscache_cookie	*cache;		/* caching cookie */
591
#endif
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	struct afs_server_list	*servers;	/* List of servers on which volume resides */
	rwlock_t		servers_lock;	/* Lock for ->servers */
	unsigned int		servers_seq;	/* Incremented each time ->servers changes */

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	unsigned		cb_v_break;	/* Break-everything counter. */
597
	rwlock_t		cb_v_break_lock;
598

599
	afs_voltype_t		type;		/* type of volume */
600
	short			error;
601
	char			type_force;	/* force volume type (suppress R/O -> R/W) */
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	u8			name_len;
	u8			name[AFS_MAXVOLNAME + 1]; /* NUL-padded volume name */
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};

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enum afs_lock_state {
	AFS_VNODE_LOCK_NONE,		/* The vnode has no lock on the server */
	AFS_VNODE_LOCK_WAITING_FOR_CB,	/* We're waiting for the server to break the callback */
	AFS_VNODE_LOCK_SETTING,		/* We're asking the server for a lock */
	AFS_VNODE_LOCK_GRANTED,		/* We have a lock on the server */
	AFS_VNODE_LOCK_EXTENDING,	/* We're extending a lock on the server */
	AFS_VNODE_LOCK_NEED_UNLOCK,	/* We need to unlock on the server */
	AFS_VNODE_LOCK_UNLOCKING,	/* We're telling the server to unlock */
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	AFS_VNODE_LOCK_DELETED,		/* The vnode has been deleted whilst we have a lock */
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};

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/*
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 * AFS inode private data.
 *
 * Note that afs_alloc_inode() *must* reset anything that could incorrectly
 * leak from one inode to another.
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 */
struct afs_vnode {
	struct inode		vfs_inode;	/* the VFS's inode record */

	struct afs_volume	*volume;	/* volume on which vnode resides */
	struct afs_fid		fid;		/* the file identifier for this inode */
	struct afs_file_status	status;		/* AFS status info for this file */
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	afs_dataversion_t	invalid_before;	/* Child dentries are invalid before this */
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#ifdef CONFIG_AFS_FSCACHE
	struct fscache_cookie	*cache;		/* caching cookie */
632
#endif
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	struct afs_permits __rcu *permit_cache;	/* cache of permits so far obtained */
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	struct mutex		io_lock;	/* Lock for serialising I/O on this mutex */
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	struct rw_semaphore	validate_lock;	/* lock for validating this vnode */
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	struct rw_semaphore	rmdir_lock;	/* Lock for rmdir vs sillyrename */
	struct key		*silly_key;	/* Silly rename key */
638
	spinlock_t		wb_lock;	/* lock for wb_keys */
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	spinlock_t		lock;		/* waitqueue/flags lock */
	unsigned long		flags;
641
#define AFS_VNODE_CB_PROMISED	0		/* Set if vnode has a callback promise */
642
#define AFS_VNODE_UNSET		1		/* set if vnode attributes not yet set */
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#define AFS_VNODE_DIR_VALID	2		/* Set if dir contents are valid */
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#define AFS_VNODE_ZAP_DATA	3		/* set if vnode's data should be invalidated */
#define AFS_VNODE_DELETED	4		/* set if vnode deleted on server */
#define AFS_VNODE_MOUNTPOINT	5		/* set if vnode is a mountpoint symlink */
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#define AFS_VNODE_AUTOCELL	6		/* set if Vnode is an auto mount point */
#define AFS_VNODE_PSEUDODIR	7 		/* set if Vnode is a pseudo directory */
649
#define AFS_VNODE_NEW_CONTENT	8		/* Set if file has new content (create/trunc-0) */
650

651
	struct list_head	wb_keys;	/* List of keys available for writeback */
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	struct list_head	pending_locks;	/* locks waiting to be granted */
	struct list_head	granted_locks;	/* locks granted on this file */
	struct delayed_work	lock_work;	/* work to be done in locking */
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	struct key		*lock_key;	/* Key to be used in lock ops */
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	ktime_t			locked_at;	/* Time at which lock obtained */
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	enum afs_lock_state	lock_state : 8;
	afs_lock_type_t		lock_type : 8;
659

660
	/* outstanding callback notification on this file */
661
	struct afs_cb_interest __rcu *cb_interest; /* Server on which this resides */
662
	unsigned int		cb_s_break;	/* Mass break counter on ->server */
663
	unsigned int		cb_v_break;	/* Mass break counter on ->volume */
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	unsigned int		cb_break;	/* Break counter on vnode */
	seqlock_t		cb_lock;	/* Lock for ->cb_interest, ->status, ->cb_*break */

	time64_t		cb_expires_at;	/* time at which callback expires */
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};

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static inline struct fscache_cookie *afs_vnode_cache(struct afs_vnode *vnode)
{
#ifdef CONFIG_AFS_FSCACHE
	return vnode->cache;
#else
	return NULL;
#endif
}

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/*
 * cached security record for one user's attempt to access a vnode
 */
struct afs_permit {
	struct key		*key;		/* RxRPC ticket holding a security context */
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	afs_access_t		access;		/* CallerAccess value for this key */
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};

/*
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 * Immutable cache of CallerAccess records from attempts to access vnodes.
 * These may be shared between multiple vnodes.
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 */
struct afs_permits {
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	struct rcu_head		rcu;
	struct hlist_node	hash_node;	/* Link in hash */
	unsigned long		h;		/* Hash value for this permit list */
	refcount_t		usage;
	unsigned short		nr_permits;	/* Number of records */
	bool			invalidated;	/* Invalidated due to key change */
	struct afs_permit	permits[];	/* List of permits sorted by key pointer */
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};

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/*
 * Error prioritisation and accumulation.
 */
struct afs_error {
	short	error;			/* Accumulated error */
	bool	responded;		/* T if server responded */
};

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/*
 * Cursor for iterating over a server's address list.
 */
struct afs_addr_cursor {
	struct afs_addr_list	*alist;		/* Current address list (pins ref) */
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	unsigned long		tried;		/* Tried addresses */
	signed char		index;		/* Current address */
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	bool			responded;	/* T if the current address responded */
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	unsigned short		nr_iterations;	/* Number of address iterations */
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	short			error;
	u32			abort_code;
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};

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/*
 * Cursor for iterating over a set of volume location servers.
 */
struct afs_vl_cursor {
	struct afs_addr_cursor	ac;
	struct afs_cell		*cell;		/* The cell we're querying */
	struct afs_vlserver_list *server_list;	/* Current server list (pins ref) */
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	struct afs_vlserver	*server;	/* Server on which this resides */
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	struct key		*key;		/* Key for the server */
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	unsigned long		untried;	/* Bitmask of untried servers */
	short			index;		/* Current server */
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	short			error;
	unsigned short		flags;
#define AFS_VL_CURSOR_STOP	0x0001		/* Set to cease iteration */
#define AFS_VL_CURSOR_RETRY	0x0002		/* Set to do a retry */
#define AFS_VL_CURSOR_RETRIED	0x0004		/* Set if started a retry */
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	unsigned short		nr_iterations;	/* Number of server iterations */
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};

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/*
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 * Fileserver operation methods.
 */
struct afs_operation_ops {
	void (*issue_afs_rpc)(struct afs_operation *op);
	void (*issue_yfs_rpc)(struct afs_operation *op);
	void (*success)(struct afs_operation *op);
	void (*aborted)(struct afs_operation *op);
	void (*edit_dir)(struct afs_operation *op);
	void (*put)(struct afs_operation *op);
};

struct afs_vnode_param {
	struct afs_vnode	*vnode;
	struct afs_fid		fid;		/* Fid to access */
	struct afs_status_cb	scb;		/* Returned status and callback promise */
	afs_dataversion_t	dv_before;	/* Data version before the call */
	unsigned int		cb_break_before; /* cb_break + cb_s_break before the call */
	u8			dv_delta;	/* Expected change in data version */
	bool			put_vnode;	/* T if we have a ref on the vnode */
	bool			need_io_lock;	/* T if we need the I/O lock on this */
};

/*
 * Fileserver operation wrapper, handling server and address rotation
 * asynchronously.  May make simultaneous calls to multiple servers.
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 */
768
struct afs_operation {
769 770
	struct afs_net		*net;		/* Network namespace */
	struct key		*key;		/* Key for the cell */
771
	const struct afs_call_type *type;	/* Type of call done */
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	const struct afs_operation_ops *ops;

	/* Parameters/results for the operation */
	struct afs_volume	*volume;	/* Volume being accessed */
	struct afs_vnode_param	file[2];
	struct afs_vnode_param	*more_files;
	struct afs_volsync	volsync;
	struct dentry		*dentry;	/* Dentry to be altered */
	struct dentry		*dentry_2;	/* Second dentry to be altered */
	struct timespec64	mtime;		/* Modification time to record */
	short			nr_files;	/* Number of entries in file[], more_files */
	short			error;
	unsigned int		abort_code;
	unsigned int		debug_id;

	unsigned int		cb_v_break;	/* Volume break counter before op */
	unsigned int		cb_s_break;	/* Server break counter before op */

	union {
		struct {
			int	which;		/* Which ->file[] to fetch for */
		} fetch_status;
		struct {
			int	reason;		/* enum afs_edit_dir_reason */
			mode_t	mode;
			const char *symlink;
		} create;
		struct {
			bool	need_rehash;
		} unlink;
		struct {
			struct dentry *rehash;
			struct dentry *tmp;
			bool	new_negative;
		} rename;
		struct {
			struct afs_read *req;
		} fetch;
		struct {
			struct afs_vnode *lvnode;	/* vnode being locked */
			afs_lock_type_t type;
		} lock;
		struct {
			struct address_space *mapping;	/* Pages being written from */
			pgoff_t		first;		/* first page in mapping to deal with */
			pgoff_t		last;		/* last page in mapping to deal with */
			unsigned	first_offset;	/* offset into mapping[first] */
			unsigned	last_to;	/* amount of mapping[last] */
		} store;
		struct {
			struct iattr	*attr;
		} setattr;
		struct afs_acl	*acl;
		struct yfs_acl	*yacl;
		struct {
			struct afs_volume_status vs;
			struct kstatfs		*buf;
		} volstatus;
	};

	/* Fileserver iteration state */
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	struct afs_addr_cursor	ac;
834 835
	struct afs_server_list	*server_list;	/* Current server list (pins ref) */
	struct afs_cb_interest	*cbi;		/* Server on which this resides (pins ref) */
836
	struct afs_call		*call;
837 838
	unsigned long		untried;	/* Bitmask of untried servers */
	short			index;		/* Current server */
839 840 841
	unsigned short		nr_iterations;	/* Number of server iterations */

	unsigned int		flags;
842 843 844 845 846 847
#define AFS_OPERATION_STOP	0x0001		/* Set to cease iteration */
#define AFS_OPERATION_VBUSY	0x0002		/* Set if seen VBUSY */
#define AFS_OPERATION_VMOVED	0x0004		/* Set if seen VMOVED */
#define AFS_OPERATION_VNOVOL	0x0008		/* Set if seen VNOVOL */
#define AFS_OPERATION_CUR_ONLY	0x0010		/* Set if current server only (file lock held) */
#define AFS_OPERATION_NO_VSLEEP	0x0020		/* Set to prevent sleep on VBUSY, VOFFLINE, ... */
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#define AFS_OPERATION_UNINTR	0x0040		/* Set if op is uninterruptible */
#define AFS_OPERATION_DOWNGRADE	0x0080		/* Set to retry with downgraded opcode */
#define AFS_OPERATION_LOCK_0	0x0100		/* Set if have io_lock on file[0] */
#define AFS_OPERATION_LOCK_1	0x0200		/* Set if have io_lock on file[1] */
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};

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/*
 * Cache auxiliary data.
 */
struct afs_vnode_cache_aux {
	u64			data_version;
} __packed;

861 862
#include <trace/events/afs.h>

863
/*****************************************************************************/
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/*
 * addr_list.c
 */
static inline struct afs_addr_list *afs_get_addrlist(struct afs_addr_list *alist)
{
	if (alist)
		refcount_inc(&alist->usage);
	return alist;
}
extern struct afs_addr_list *afs_alloc_addrlist(unsigned int,
						unsigned short,
						unsigned short);
extern void afs_put_addrlist(struct afs_addr_list *);
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extern struct afs_vlserver_list *afs_parse_text_addrs(struct afs_net *,
						      const char *, size_t, char,
						      unsigned short, unsigned short);
extern struct afs_vlserver_list *afs_dns_query(struct afs_cell *, time64_t *);
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extern bool afs_iterate_addresses(struct afs_addr_cursor *);
extern int afs_end_cursor(struct afs_addr_cursor *);

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extern void afs_merge_fs_addr4(struct afs_addr_list *, __be32, u16);
extern void afs_merge_fs_addr6(struct afs_addr_list *, __be32 *, u16);
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/*
 * cache.c
 */
#ifdef CONFIG_AFS_FSCACHE
extern struct fscache_netfs afs_cache_netfs;
extern struct fscache_cookie_def afs_cell_cache_index_def;
extern struct fscache_cookie_def afs_volume_cache_index_def;
extern struct fscache_cookie_def afs_vnode_cache_index_def;
#else
#define afs_cell_cache_index_def	(*(struct fscache_cookie_def *) NULL)
#define afs_volume_cache_index_def	(*(struct fscache_cookie_def *) NULL)
#define afs_vnode_cache_index_def	(*(struct fscache_cookie_def *) NULL)
#endif

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/*
 * callback.c
 */
extern void afs_init_callback_state(struct afs_server *);
905 906 907
extern void __afs_break_callback(struct afs_vnode *, enum afs_cb_break_reason);
extern void afs_break_callback(struct afs_vnode *, enum afs_cb_break_reason);
extern void afs_break_callbacks(struct afs_server *, size_t, struct afs_callback_break *);
908

909 910
extern int afs_register_server_cb_interest(struct afs_vnode *,
					   struct afs_server_list *, unsigned int);
911
extern void afs_put_cb_interest(struct afs_net *, struct afs_cb_interest *);
912
extern void afs_clear_callback_interests(struct afs_net *, struct afs_server_list *);
913 914 915

static inline struct afs_cb_interest *afs_get_cb_interest(struct afs_cb_interest *cbi)
{
916 917
	if (cbi)
		refcount_inc(&cbi->usage);
918 919
	return cbi;
}
920

921 922
static inline unsigned int afs_calc_vnode_cb_break(struct afs_vnode *vnode)
{
923
	return vnode->cb_break + vnode->cb_v_break;
924 925
}

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static inline bool afs_cb_is_broken(unsigned int cb_break,
				    const struct afs_vnode *vnode,
				    const struct afs_cb_interest *cbi)
929
{
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	return !cbi || cb_break != (vnode->cb_break +
				    vnode->volume->cb_v_break);
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}

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/*
 * cell.c
 */
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extern int afs_cell_init(struct afs_net *, const char *);
extern struct afs_cell *afs_lookup_cell_rcu(struct afs_net *, const char *, unsigned);
extern struct afs_cell *afs_lookup_cell(struct afs_net *, const char *, unsigned,
					const char *, bool);
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extern struct afs_cell *afs_get_cell(struct afs_cell *);
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extern void afs_put_cell(struct afs_net *, struct afs_cell *);
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extern void afs_manage_cells(struct work_struct *);
extern void afs_cells_timer(struct timer_list *);
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extern void __net_exit afs_cell_purge(struct afs_net *);
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/*
 * cmservice.c
 */
extern bool afs_cm_incoming_call(struct afs_call *);

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/*
 * dir.c
 */
955
extern const struct file_operations afs_dir_file_operations;
956
extern const struct inode_operations afs_dir_inode_operations;
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extern const struct address_space_operations afs_dir_aops;
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extern const struct dentry_operations afs_fs_dentry_operations;
959

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extern void afs_d_release(struct dentry *);

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/*
 * dir_edit.c
 */
extern void afs_edit_dir_add(struct afs_vnode *, struct qstr *, struct afs_fid *,
			     enum afs_edit_dir_reason);
extern void afs_edit_dir_remove(struct afs_vnode *, struct qstr *, enum afs_edit_dir_reason);

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/*
 * dir_silly.c
 */
extern int afs_sillyrename(struct afs_vnode *, struct afs_vnode *,
			   struct dentry *, struct key *);
extern int afs_silly_iput(struct dentry *, struct inode *);

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/*
 * dynroot.c
 */
extern const struct inode_operations afs_dynroot_inode_operations;
extern const struct dentry_operations afs_dynroot_dentry_operations;

extern struct inode *afs_try_auto_mntpt(struct dentry *, struct inode *);
983 984 985 986
extern int afs_dynroot_mkdir(struct afs_net *, struct afs_cell *);
extern void afs_dynroot_rmdir(struct afs_net *, struct afs_cell *);
extern int afs_dynroot_populate(struct super_block *);
extern void afs_dynroot_depopulate(struct super_block *);
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Linus Torvalds 已提交
987 988 989 990

/*
 * file.c
 */
991
extern const struct address_space_operations afs_fs_aops;
992
extern const struct inode_operations afs_file_inode_operations;
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extern const struct file_operations afs_file_operations;

995 996
extern int afs_cache_wb_key(struct afs_vnode *, struct afs_file *);
extern void afs_put_wb_key(struct afs_wb_key *);
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extern int afs_open(struct inode *, struct file *);
extern int afs_release(struct inode *, struct file *);
999
extern int afs_fetch_data(struct afs_vnode *, struct key *, struct afs_read *);
1000
extern int afs_page_filler(void *, struct page *);
1001
extern void afs_put_read(struct afs_read *);
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1003 1004 1005 1006 1007 1008
static inline struct afs_read *afs_get_read(struct afs_read *req)
{
	refcount_inc(&req->usage);
	return req;
}

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/*
 * flock.c
 */
1012 1013
extern struct workqueue_struct *afs_lock_manager;

1014
extern void afs_lock_op_done(struct afs_call *);
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extern void afs_lock_work(struct work_struct *);
extern void afs_lock_may_be_available(struct afs_vnode *);
extern int afs_lock(struct file *, int, struct file_lock *);
extern int afs_flock(struct file *, int, struct file_lock *);

1020 1021 1022
/*
 * fsclient.c
 */
1023 1024 1025 1026 1027 1028 1029 1030 1031 1032 1033 1034 1035 1036 1037
extern void afs_fs_fetch_status(struct afs_operation *);
extern void afs_fs_fetch_data(struct afs_operation *);
extern void afs_fs_create_file(struct afs_operation *);
extern void afs_fs_make_dir(struct afs_operation *);
extern void afs_fs_remove_file(struct afs_operation *);
extern void afs_fs_remove_dir(struct afs_operation *);
extern void afs_fs_link(struct afs_operation *);
extern void afs_fs_symlink(struct afs_operation *);
extern void afs_fs_rename(struct afs_operation *);
extern void afs_fs_store_data(struct afs_operation *);
extern void afs_fs_setattr(struct afs_operation *);
extern void afs_fs_get_volume_status(struct afs_operation *);
extern void afs_fs_set_lock(struct afs_operation *);
extern void afs_fs_extend_lock(struct afs_operation *);
extern void afs_fs_release_lock(struct afs_operation *);
1038 1039
extern int afs_fs_give_up_all_callbacks(struct afs_net *, struct afs_server *,
					struct afs_addr_cursor *, struct key *);
1040 1041
extern bool afs_fs_get_capabilities(struct afs_net *, struct afs_server *,
				    struct afs_addr_cursor *, struct key *);
1042
extern void afs_fs_inline_bulk_status(struct afs_operation *);
1043

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1044 1045 1046 1047 1048
struct afs_acl {
	u32	size;
	u8	data[];
};

1049 1050 1051 1052 1053 1054 1055 1056 1057 1058 1059 1060 1061 1062 1063 1064 1065 1066 1067 1068 1069 1070 1071 1072 1073 1074 1075 1076 1077
extern void afs_fs_fetch_acl(struct afs_operation *);
extern void afs_fs_store_acl(struct afs_operation *);

/*
 * fs_operation.c
 */
extern struct afs_operation *afs_alloc_operation(struct key *, struct afs_volume *);
extern int afs_put_operation(struct afs_operation *);
extern bool afs_begin_vnode_operation(struct afs_operation *);
extern void afs_wait_for_operation(struct afs_operation *);
extern int afs_do_sync_operation(struct afs_operation *);

static inline void afs_op_nomem(struct afs_operation *op)
{
	op->error = -ENOMEM;
}

static inline void afs_op_set_vnode(struct afs_operation *op, unsigned int n,
				    struct afs_vnode *vnode)
{
	op->file[n].vnode = vnode;
	op->file[n].need_io_lock = true;
}

static inline void afs_op_set_fid(struct afs_operation *op, unsigned int n,
				  const struct afs_fid *fid)
{
	op->file[n].fid = *fid;
}
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1079 1080 1081 1082
/*
 * fs_probe.c
 */
extern void afs_fileserver_probe_result(struct afs_call *);
1083
extern void afs_fs_probe_fileserver(struct afs_net *, struct afs_server *, struct key *, bool);
1084
extern int afs_wait_for_fs_probes(struct afs_server_list *, unsigned long);
1085
extern void afs_fs_probe_dispatcher(struct work_struct *);
1086

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1087 1088 1089
/*
 * inode.c
 */
1090
extern void afs_vnode_commit_status(struct afs_operation *, struct afs_vnode_param *);
1091
extern int afs_fetch_status(struct afs_vnode *, struct key *, bool, afs_access_t *);
1092
extern int afs_ilookup5_test_by_fid(struct inode *, void *);
1093
extern struct inode *afs_iget_pseudo_dir(struct super_block *, bool);
1094 1095
extern struct inode *afs_iget(struct afs_operation *, struct afs_vnode_param *);
extern struct inode *afs_root_iget(struct super_block *, struct key *);
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1096
extern void afs_zap_data(struct afs_vnode *);
1097
extern bool afs_check_validity(struct afs_vnode *);
1098
extern int afs_validate(struct afs_vnode *, struct key *);
1099
extern int afs_getattr(const struct path *, struct kstat *, u32, unsigned int);
1100
extern int afs_setattr(struct dentry *, struct iattr *);
1101
extern void afs_evict_inode(struct inode *);
1102
extern int afs_drop_inode(struct inode *);
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Linus Torvalds 已提交
1103 1104 1105 1106

/*
 * main.c
 */
1107
extern struct workqueue_struct *afs_wq;
1108
extern int afs_net_id;
1109

1110
static inline struct afs_net *afs_net(struct net *net)
1111
{
1112
	return net_generic(net, afs_net_id);
1113 1114
}

1115
static inline struct afs_net *afs_sb2net(struct super_block *sb)
1116
{
1117
	return afs_net(AFS_FS_S(sb)->net_ns);
1118 1119
}

1120
static inline struct afs_net *afs_d2net(struct dentry *dentry)
1121
{
1122
	return afs_sb2net(dentry->d_sb);
1123 1124
}

1125
static inline struct afs_net *afs_i2net(struct inode *inode)
1126
{
1127
	return afs_sb2net(inode->i_sb);
1128 1129
}

1130
static inline struct afs_net *afs_v2net(struct afs_vnode *vnode)
1131
{
1132
	return afs_i2net(&vnode->vfs_inode);
1133 1134
}

1135
static inline struct afs_net *afs_sock2net(struct sock *sk)
1136
{
1137
	return net_generic(sock_net(sk), afs_net_id);
1138
}
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Linus Torvalds 已提交
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1140 1141 1142 1143 1144 1145 1146
static inline void __afs_stat(atomic_t *s)
{
	atomic_inc(s);
}

#define afs_stat_v(vnode, n) __afs_stat(&afs_v2net(vnode)->n)

1147 1148 1149 1150
/*
 * misc.c
 */
extern int afs_abort_to_error(u32);
1151
extern void afs_prioritise_error(struct afs_error *, int, u32);
1152

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Linus Torvalds 已提交
1153 1154 1155
/*
 * mntpt.c
 */
1156
extern const struct inode_operations afs_mntpt_inode_operations;
1157
extern const struct inode_operations afs_autocell_inode_operations;
1158
extern const struct file_operations afs_mntpt_file_operations;
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Linus Torvalds 已提交
1159

1160
extern struct vfsmount *afs_d_automount(struct path *);
1161
extern void afs_mntpt_kill_timer(void);
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Linus Torvalds 已提交
1162 1163 1164 1165

/*
 * proc.c
 */
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1166
#ifdef CONFIG_PROC_FS
1167 1168
extern int __net_init afs_proc_init(struct afs_net *);
extern void __net_exit afs_proc_cleanup(struct afs_net *);
1169 1170
extern int afs_proc_cell_setup(struct afs_cell *);
extern void afs_proc_cell_remove(struct afs_cell *);
1171
extern void afs_put_sysnames(struct afs_sysnames *);
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#else
static inline int afs_proc_init(struct afs_net *net) { return 0; }
static inline void afs_proc_cleanup(struct afs_net *net) {}
static inline int afs_proc_cell_setup(struct afs_cell *cell) { return 0; }
static inline void afs_proc_cell_remove(struct afs_cell *cell) {}
static inline void afs_put_sysnames(struct afs_sysnames *sysnames) {}
#endif
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Linus Torvalds 已提交
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1180 1181 1182
/*
 * rotate.c
 */
1183 1184
extern bool afs_select_fileserver(struct afs_operation *);
extern bool afs_select_current_fileserver(struct afs_operation *);
1185
extern void afs_dump_edestaddrreq(const struct afs_operation *);
1186

1187 1188 1189
/*
 * rxrpc.c
 */
1190
extern struct workqueue_struct *afs_async_calls;
1191

1192 1193 1194
extern int __net_init afs_open_socket(struct afs_net *);
extern void __net_exit afs_close_socket(struct afs_net *);
extern void afs_charge_preallocation(struct work_struct *);
1195
extern void afs_put_call(struct afs_call *);
1196 1197
extern void afs_make_call(struct afs_addr_cursor *, struct afs_call *, gfp_t);
extern long afs_wait_for_call_to_complete(struct afs_call *, struct afs_addr_cursor *);
1198 1199
extern struct afs_call *afs_alloc_flat_call(struct afs_net *,
					    const struct afs_call_type *,
1200 1201 1202
					    size_t, size_t);
extern void afs_flat_call_destructor(struct afs_call *);
extern void afs_send_empty_reply(struct afs_call *);
1203
extern void afs_send_simple_reply(struct afs_call *, const void *, size_t);
1204
extern int afs_extract_data(struct afs_call *, bool);
1205
extern int afs_protocol_error(struct afs_call *, enum afs_eproto_cause);
1206

1207 1208
static inline void afs_make_op_call(struct afs_operation *op, struct afs_call *call,
				    gfp_t gfp)
1209
{
1210
	op->call = call;
1211
	op->type = call->type;
1212 1213 1214 1215 1216
	call->op = op;
	call->key = op->key;
	call->cbi = afs_get_cb_interest(op->cbi);
	call->intr = !(op->flags & AFS_OPERATION_UNINTR);
	afs_make_call(&op->ac, call, gfp);
1217 1218
}

1219 1220 1221 1222
static inline void afs_extract_begin(struct afs_call *call, void *buf, size_t size)
{
	call->kvec[0].iov_base = buf;
	call->kvec[0].iov_len = size;
1223
	iov_iter_kvec(&call->def_iter, READ, call->kvec, 1, size);
1224 1225 1226 1227 1228 1229 1230 1231 1232 1233 1234 1235 1236 1237
}

static inline void afs_extract_to_tmp(struct afs_call *call)
{
	afs_extract_begin(call, &call->tmp, sizeof(call->tmp));
}

static inline void afs_extract_to_tmp64(struct afs_call *call)
{
	afs_extract_begin(call, &call->tmp64, sizeof(call->tmp64));
}

static inline void afs_extract_discard(struct afs_call *call, size_t size)
{
1238
	iov_iter_discard(&call->def_iter, READ, size);
1239 1240 1241 1242 1243 1244 1245
}

static inline void afs_extract_to_buf(struct afs_call *call, size_t size)
{
	afs_extract_begin(call, call->buffer, size);
}

1246
static inline int afs_transfer_reply(struct afs_call *call)
1247
{
1248
	return afs_extract_data(call, false);
1249 1250
}

1251 1252 1253 1254 1255 1256 1257 1258 1259 1260 1261 1262 1263 1264 1265 1266 1267 1268 1269 1270 1271 1272 1273 1274 1275 1276 1277 1278 1279 1280 1281 1282 1283 1284 1285 1286 1287 1288 1289
static inline bool afs_check_call_state(struct afs_call *call,
					enum afs_call_state state)
{
	return READ_ONCE(call->state) == state;
}

static inline bool afs_set_call_state(struct afs_call *call,
				      enum afs_call_state from,
				      enum afs_call_state to)
{
	bool ok = false;

	spin_lock_bh(&call->state_lock);
	if (call->state == from) {
		call->state = to;
		trace_afs_call_state(call, from, to, 0, 0);
		ok = true;
	}
	spin_unlock_bh(&call->state_lock);
	return ok;
}

static inline void afs_set_call_complete(struct afs_call *call,
					 int error, u32 remote_abort)
{
	enum afs_call_state state;
	bool ok = false;

	spin_lock_bh(&call->state_lock);
	state = call->state;
	if (state != AFS_CALL_COMPLETE) {
		call->abort_code = remote_abort;
		call->error = error;
		call->state = AFS_CALL_COMPLETE;
		trace_afs_call_state(call, state, AFS_CALL_COMPLETE,
				     error, remote_abort);
		ok = true;
	}
	spin_unlock_bh(&call->state_lock);
1290
	if (ok) {
1291
		trace_afs_call_done(call);
1292 1293 1294 1295 1296 1297 1298 1299

		/* Asynchronous calls have two refs to release - one from the alloc and
		 * one queued with the work item - and we can't just deallocate the
		 * call because the work item may be queued again.
		 */
		if (call->drop_ref)
			afs_put_call(call);
	}
1300 1301
}

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/*
 * security.c
 */
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1305
extern void afs_put_permits(struct afs_permits *);
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1306
extern void afs_clear_permits(struct afs_vnode *);
1307 1308
extern void afs_cache_permit(struct afs_vnode *, struct key *, unsigned int,
			     struct afs_status_cb *);
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David Howells 已提交
1309
extern void afs_zap_permits(struct rcu_head *);
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1310
extern struct key *afs_request_key(struct afs_cell *);
1311
extern struct key *afs_request_key_rcu(struct afs_cell *);
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1312
extern int afs_check_permit(struct afs_vnode *, struct key *, afs_access_t *);
1313
extern int afs_permission(struct inode *, int);
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David Howells 已提交
1314
extern void __exit afs_clean_up_permit_cache(void);
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David Howells 已提交
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1316 1317 1318 1319 1320
/*
 * server.c
 */
extern spinlock_t afs_server_peer_lock;

1321 1322
extern struct afs_server *afs_find_server(struct afs_net *,
					  const struct sockaddr_rxrpc *);
1323
extern struct afs_server *afs_find_server_by_uuid(struct afs_net *, const uuid_t *);
1324
extern struct afs_server *afs_lookup_server(struct afs_cell *, struct key *, const uuid_t *, u32);
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David Howells 已提交
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extern struct afs_server *afs_get_server(struct afs_server *, enum afs_server_trace);
1326 1327 1328
extern struct afs_server *afs_use_server(struct afs_server *, enum afs_server_trace);
extern void afs_unuse_server(struct afs_net *, struct afs_server *, enum afs_server_trace);
extern void afs_unuse_server_notime(struct afs_net *, struct afs_server *, enum afs_server_trace);
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David Howells 已提交
1329
extern void afs_put_server(struct afs_net *, struct afs_server *, enum afs_server_trace);
1330 1331
extern void afs_manage_servers(struct work_struct *);
extern void afs_servers_timer(struct timer_list *);
1332
extern void afs_fs_probe_timer(struct timer_list *);
1333
extern void __net_exit afs_purge_servers(struct afs_net *);
1334
extern bool afs_check_server_record(struct afs_operation *, struct afs_server *);
1335

1336 1337 1338 1339 1340 1341 1342 1343 1344 1345 1346 1347 1348 1349 1350 1351
static inline void afs_inc_servers_outstanding(struct afs_net *net)
{
	atomic_inc(&net->servers_outstanding);
}

static inline void afs_dec_servers_outstanding(struct afs_net *net)
{
	if (atomic_dec_and_test(&net->servers_outstanding))
		wake_up_var(&net->servers_outstanding);
}

static inline bool afs_is_probing_server(struct afs_server *server)
{
	return list_empty(&server->probe_link);
}

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David Howells 已提交
1352
/*
1353
 * server_list.c
D
David Howells 已提交
1354
 */
1355 1356 1357 1358 1359
static inline struct afs_server_list *afs_get_serverlist(struct afs_server_list *slist)
{
	refcount_inc(&slist->usage);
	return slist;
}
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David Howells 已提交
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1361 1362 1363 1364 1365
extern void afs_put_serverlist(struct afs_net *, struct afs_server_list *);
extern struct afs_server_list *afs_alloc_server_list(struct afs_cell *, struct key *,
						     struct afs_vldb_entry *,
						     u8);
extern bool afs_annotate_server_list(struct afs_server_list *, struct afs_server_list *);
1366 1367

/*
1368
 * super.c
1369
 */
1370
extern int __init afs_fs_init(void);
1371
extern void afs_fs_exit(void);
1372 1373

/*
1374
 * vlclient.c
1375
 */
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David Howells 已提交
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extern struct afs_vldb_entry *afs_vl_get_entry_by_name_u(struct afs_vl_cursor *,
							 const char *, int);
extern struct afs_addr_list *afs_vl_get_addrs_u(struct afs_vl_cursor *, const uuid_t *);
1379 1380
extern struct afs_call *afs_vl_get_capabilities(struct afs_net *, struct afs_addr_cursor *,
						struct key *, struct afs_vlserver *, unsigned int);
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David Howells 已提交
1381 1382
extern struct afs_addr_list *afs_yfsvl_get_endpoints(struct afs_vl_cursor *, const uuid_t *);

1383 1384 1385 1386 1387 1388 1389
/*
 * vl_probe.c
 */
extern void afs_vlserver_probe_result(struct afs_call *);
extern int afs_send_vl_probes(struct afs_net *, struct key *, struct afs_vlserver_list *);
extern int afs_wait_for_vl_probes(struct afs_vlserver_list *, unsigned long);

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David Howells 已提交
1390 1391 1392 1393 1394 1395 1396 1397 1398 1399 1400 1401 1402 1403 1404 1405 1406 1407 1408 1409 1410 1411 1412 1413 1414 1415 1416 1417 1418 1419 1420
/*
 * vl_rotate.c
 */
extern bool afs_begin_vlserver_operation(struct afs_vl_cursor *,
					 struct afs_cell *, struct key *);
extern bool afs_select_vlserver(struct afs_vl_cursor *);
extern bool afs_select_current_vlserver(struct afs_vl_cursor *);
extern int afs_end_vlserver_operation(struct afs_vl_cursor *);

/*
 * vlserver_list.c
 */
static inline struct afs_vlserver *afs_get_vlserver(struct afs_vlserver *vlserver)
{
	atomic_inc(&vlserver->usage);
	return vlserver;
}

static inline struct afs_vlserver_list *afs_get_vlserverlist(struct afs_vlserver_list *vllist)
{
	if (vllist)
		atomic_inc(&vllist->usage);
	return vllist;
}

extern struct afs_vlserver *afs_alloc_vlserver(const char *, size_t, unsigned short);
extern void afs_put_vlserver(struct afs_net *, struct afs_vlserver *);
extern struct afs_vlserver_list *afs_alloc_vlserver_list(unsigned int);
extern void afs_put_vlserverlist(struct afs_net *, struct afs_vlserver_list *);
extern struct afs_vlserver_list *afs_extract_vlserver_list(struct afs_cell *,
							   const void *, size_t);
1421 1422 1423 1424

/*
 * volume.c
 */
1425
static inline struct afs_volume *afs_get_volume(struct afs_volume *volume)
1426 1427 1428 1429 1430
{
	if (volume)
		atomic_inc(&volume->usage);
	return volume;
}
1431

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David Howells 已提交
1432
extern struct afs_volume *afs_create_volume(struct afs_fs_context *);
1433 1434
extern void afs_activate_volume(struct afs_volume *);
extern void afs_deactivate_volume(struct afs_volume *);
1435
extern void afs_put_volume(struct afs_net *, struct afs_volume *);
1436
extern int afs_check_volume_status(struct afs_volume *, struct afs_operation *);
1437

1438 1439 1440 1441
/*
 * write.c
 */
extern int afs_set_page_dirty(struct page *);
N
Nick Piggin 已提交
1442 1443 1444 1445 1446 1447
extern int afs_write_begin(struct file *file, struct address_space *mapping,
			loff_t pos, unsigned len, unsigned flags,
			struct page **pagep, void **fsdata);
extern int afs_write_end(struct file *file, struct address_space *mapping,
			loff_t pos, unsigned len, unsigned copied,
			struct page *page, void *fsdata);
1448 1449
extern int afs_writepage(struct page *, struct writeback_control *);
extern int afs_writepages(struct address_space *, struct writeback_control *);
A
Al Viro 已提交
1450
extern ssize_t afs_file_write(struct kiocb *, struct iov_iter *);
1451
extern int afs_fsync(struct file *, loff_t, loff_t, int);
1452
extern vm_fault_t afs_page_mkwrite(struct vm_fault *vmf);
1453 1454
extern void afs_prune_wb_keys(struct afs_vnode *);
extern int afs_launder_page(struct page *);
1455

D
David Howells 已提交
1456 1457 1458 1459 1460
/*
 * xattr.c
 */
extern const struct xattr_handler *afs_xattr_handlers[];
extern ssize_t afs_listxattr(struct dentry *, char *, size_t);
1461

1462 1463 1464
/*
 * yfsclient.c
 */
1465 1466 1467 1468 1469 1470 1471 1472 1473 1474 1475 1476 1477 1478 1479 1480 1481 1482
extern void yfs_fs_fetch_file_status(struct afs_operation *);
extern void yfs_fs_fetch_data(struct afs_operation *);
extern void yfs_fs_create_file(struct afs_operation *);
extern void yfs_fs_make_dir(struct afs_operation *);
extern void yfs_fs_remove_file2(struct afs_operation *);
extern void yfs_fs_remove_file(struct afs_operation *);
extern void yfs_fs_remove_dir(struct afs_operation *);
extern void yfs_fs_link(struct afs_operation *);
extern void yfs_fs_symlink(struct afs_operation *);
extern void yfs_fs_rename(struct afs_operation *);
extern void yfs_fs_store_data(struct afs_operation *);
extern void yfs_fs_setattr(struct afs_operation *);
extern void yfs_fs_get_volume_status(struct afs_operation *);
extern void yfs_fs_set_lock(struct afs_operation *);
extern void yfs_fs_extend_lock(struct afs_operation *);
extern void yfs_fs_release_lock(struct afs_operation *);
extern void yfs_fs_fetch_status(struct afs_operation *);
extern void yfs_fs_inline_bulk_status(struct afs_operation *);
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struct yfs_acl {
	struct afs_acl	*acl;		/* Dir/file/symlink ACL */
	struct afs_acl	*vol_acl;	/* Whole volume ACL */
	u32		inherit_flag;	/* True if ACL is inherited from parent dir */
	u32		num_cleaned;	/* Number of ACEs removed due to subject removal */
	unsigned int	flags;
#define YFS_ACL_WANT_ACL	0x01	/* Set if caller wants ->acl */
#define YFS_ACL_WANT_VOL_ACL	0x02	/* Set if caller wants ->vol_acl */
};

extern void yfs_free_opaque_acl(struct yfs_acl *);
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extern void yfs_fs_fetch_opaque_acl(struct afs_operation *);
extern void yfs_fs_store_opaque_acl2(struct afs_operation *);
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/*
 * Miscellaneous inline functions.
 */
static inline struct afs_vnode *AFS_FS_I(struct inode *inode)
{
	return container_of(inode, struct afs_vnode, vfs_inode);
}

static inline struct inode *AFS_VNODE_TO_I(struct afs_vnode *vnode)
{
	return &vnode->vfs_inode;
}

1511
static inline void afs_check_for_remote_deletion(struct afs_operation *op,
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						 struct afs_vnode *vnode)
{
1514
	if (op->error == -ENOENT) {
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		set_bit(AFS_VNODE_DELETED, &vnode->flags);
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		afs_break_callback(vnode, afs_cb_break_for_deleted);
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	}
}

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/*
 * Note that a dentry got changed.  We need to set d_fsdata to the data version
 * number derived from the result of the operation.  It doesn't matter if
 * d_fsdata goes backwards as we'll just revalidate.
 */
static inline void afs_update_dentry_version(struct afs_operation *op,
					     struct afs_vnode_param *dir_vp,
					     struct dentry *dentry)
{
	if (!op->error)
		dentry->d_fsdata =
			(void *)(unsigned long)dir_vp->scb.status.data_version;
}

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static inline int afs_io_error(struct afs_call *call, enum afs_io_error where)
{
	trace_afs_io_error(call->debug_id, -EIO, where);
	return -EIO;
}

static inline int afs_bad(struct afs_vnode *vnode, enum afs_file_error where)
{
	trace_afs_file_error(vnode, -EIO, where);
	return -EIO;
}
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/*****************************************************************************/
/*
 * debug tracing
 */
extern unsigned afs_debug;

#define dbgprintk(FMT,...) \
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	printk("[%-6.6s] "FMT"\n", current->comm ,##__VA_ARGS__)
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#define kenter(FMT,...)	dbgprintk("==> %s("FMT")",__func__ ,##__VA_ARGS__)
#define kleave(FMT,...)	dbgprintk("<== %s()"FMT"",__func__ ,##__VA_ARGS__)
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#define kdebug(FMT,...)	dbgprintk("    "FMT ,##__VA_ARGS__)


#if defined(__KDEBUG)
#define _enter(FMT,...)	kenter(FMT,##__VA_ARGS__)
#define _leave(FMT,...)	kleave(FMT,##__VA_ARGS__)
#define _debug(FMT,...)	kdebug(FMT,##__VA_ARGS__)

#elif defined(CONFIG_AFS_DEBUG)
#define AFS_DEBUG_KENTER	0x01
#define AFS_DEBUG_KLEAVE	0x02
#define AFS_DEBUG_KDEBUG	0x04

#define _enter(FMT,...)					\
do {							\
	if (unlikely(afs_debug & AFS_DEBUG_KENTER))	\
		kenter(FMT,##__VA_ARGS__);		\
} while (0)

#define _leave(FMT,...)					\
do {							\
	if (unlikely(afs_debug & AFS_DEBUG_KLEAVE))	\
		kleave(FMT,##__VA_ARGS__);		\
} while (0)

#define _debug(FMT,...)					\
do {							\
	if (unlikely(afs_debug & AFS_DEBUG_KDEBUG))	\
		kdebug(FMT,##__VA_ARGS__);		\
} while (0)

#else
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#define _enter(FMT,...)	no_printk("==> %s("FMT")",__func__ ,##__VA_ARGS__)
#define _leave(FMT,...)	no_printk("<== %s()"FMT"",__func__ ,##__VA_ARGS__)
#define _debug(FMT,...)	no_printk("    "FMT ,##__VA_ARGS__)
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#endif

/*
 * debug assertion checking
 */
#if 1 // defined(__KDEBUGALL)

#define ASSERT(X)						\
do {								\
	if (unlikely(!(X))) {					\
		printk(KERN_ERR "\n");				\
		printk(KERN_ERR "AFS: Assertion failed\n");	\
		BUG();						\
	}							\
} while(0)

#define ASSERTCMP(X, OP, Y)						\
do {									\
	if (unlikely(!((X) OP (Y)))) {					\
		printk(KERN_ERR "\n");					\
		printk(KERN_ERR "AFS: Assertion failed\n");		\
		printk(KERN_ERR "%lu " #OP " %lu is false\n",		\
		       (unsigned long)(X), (unsigned long)(Y));		\
		printk(KERN_ERR "0x%lx " #OP " 0x%lx is false\n",	\
		       (unsigned long)(X), (unsigned long)(Y));		\
		BUG();							\
	}								\
} while(0)

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David Howells 已提交
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#define ASSERTRANGE(L, OP1, N, OP2, H)					\
do {									\
	if (unlikely(!((L) OP1 (N)) || !((N) OP2 (H)))) {		\
		printk(KERN_ERR "\n");					\
		printk(KERN_ERR "AFS: Assertion failed\n");		\
		printk(KERN_ERR "%lu "#OP1" %lu "#OP2" %lu is false\n",	\
		       (unsigned long)(L), (unsigned long)(N),		\
		       (unsigned long)(H));				\
		printk(KERN_ERR "0x%lx "#OP1" 0x%lx "#OP2" 0x%lx is false\n", \
		       (unsigned long)(L), (unsigned long)(N),		\
		       (unsigned long)(H));				\
		BUG();							\
	}								\
} while(0)

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#define ASSERTIF(C, X)						\
do {								\
	if (unlikely((C) && !(X))) {				\
		printk(KERN_ERR "\n");				\
		printk(KERN_ERR "AFS: Assertion failed\n");	\
		BUG();						\
	}							\
} while(0)

#define ASSERTIFCMP(C, X, OP, Y)					\
do {									\
	if (unlikely((C) && !((X) OP (Y)))) {				\
		printk(KERN_ERR "\n");					\
		printk(KERN_ERR "AFS: Assertion failed\n");		\
		printk(KERN_ERR "%lu " #OP " %lu is false\n",		\
		       (unsigned long)(X), (unsigned long)(Y));		\
		printk(KERN_ERR "0x%lx " #OP " 0x%lx is false\n",	\
		       (unsigned long)(X), (unsigned long)(Y));		\
		BUG();							\
	}								\
} while(0)

#else

#define ASSERT(X)				\
do {						\
} while(0)

#define ASSERTCMP(X, OP, Y)			\
do {						\
} while(0)

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David Howells 已提交
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#define ASSERTRANGE(L, OP1, N, OP2, H)		\
do {						\
} while(0)

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#define ASSERTIF(C, X)				\
do {						\
} while(0)

#define ASSERTIFCMP(C, X, OP, Y)		\
do {						\
} while(0)

#endif /* __KDEBUGALL */