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[/] [or1k/] [tags/] [LINUX_2_4_26_OR32/] [linux/] [linux-2.4/] [fs/] [autofs4/] [autofs_i.h] - Blame information for rev 1765

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1 1275 phoenix
/* -*- c -*- ------------------------------------------------------------- *
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 *
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 * linux/fs/autofs/autofs_i.h
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 *
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 *   Copyright 1997-1998 Transmeta Corporation - All Rights Reserved
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 *
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 * This file is part of the Linux kernel and is made available under
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 * the terms of the GNU General Public License, version 2, or at your
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 * option, any later version, incorporated herein by reference.
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 *
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 * ----------------------------------------------------------------------- */
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/* Internal header file for autofs */
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#include <linux/auto_fs4.h>
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#include <linux/list.h>
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/* This is the range of ioctl() numbers we claim as ours */
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#define AUTOFS_IOC_FIRST     AUTOFS_IOC_READY
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#define AUTOFS_IOC_COUNT     32
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#include <linux/kernel.h>
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#include <linux/slab.h>
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#include <linux/sched.h>
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#include <linux/string.h>
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#include <linux/wait.h>
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#include <asm/uaccess.h>
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/* #define DEBUG */
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#ifdef DEBUG
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#define DPRINTK(D) do{ printk("pid %d: ", current->pid); printk D; } while(0)
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#else
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#define DPRINTK(D) do {} while(0)
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#endif
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#define AUTOFS_SUPER_MAGIC 0x0187
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/*
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 * If the daemon returns a negative response (AUTOFS_IOC_FAIL) then the
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 * kernel will keep the negative response cached for up to the time given
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 * here, although the time can be shorter if the kernel throws the dcache
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 * entry away.  This probably should be settable from user space.
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 */
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#define AUTOFS_NEGATIVE_TIMEOUT (60*HZ) /* 1 minute */
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/* Unified info structure.  This is pointed to by both the dentry and
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   inode structures.  Each file in the filesystem has an instance of this
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   structure.  It holds a reference to the dentry, so dentries are never
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   flushed while the file exists.  All name lookups are dealt with at the
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   dentry level, although the filesystem can interfere in the validation
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   process.  Readdir is implemented by traversing the dentry lists. */
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struct autofs_info {
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        struct dentry   *dentry;
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        struct inode    *inode;
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        int             flags;
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        struct autofs_sb_info *sbi;
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        unsigned long last_used;
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        mode_t  mode;
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        size_t  size;
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        void (*free)(struct autofs_info *);
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        union {
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                const char *symlink;
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        } u;
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};
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#define AUTOFS_INF_EXPIRING     (1<<0) /* dentry is in the process of expiring */
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struct autofs_wait_queue {
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        wait_queue_head_t queue;
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        struct autofs_wait_queue *next;
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        autofs_wqt_t wait_queue_token;
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        /* We use the following to see what we are waiting for */
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        int hash;
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        int len;
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        char *name;
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        /* This is for status reporting upon return */
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        int status;
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        int wait_ctr;
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};
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#define AUTOFS_SBI_MAGIC 0x6d4a556d
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struct autofs_sb_info {
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        u32 magic;
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        struct file *pipe;
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        pid_t oz_pgrp;
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        int catatonic;
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        int version;
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        unsigned long exp_timeout;
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        struct super_block *sb;
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        struct autofs_wait_queue *queues; /* Wait queue pointer */
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};
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static inline struct autofs_sb_info *autofs4_sbi(struct super_block *sb)
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{
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        return (struct autofs_sb_info *)(sb->u.generic_sbp);
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}
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static inline struct autofs_info *autofs4_dentry_ino(struct dentry *dentry)
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{
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        return (struct autofs_info *)(dentry->d_fsdata);
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}
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/* autofs4_oz_mode(): do we see the man behind the curtain?  (The
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   processes which do manipulations for us in user space sees the raw
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   filesystem without "magic".) */
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static inline int autofs4_oz_mode(struct autofs_sb_info *sbi) {
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        return sbi->catatonic || current->pgrp == sbi->oz_pgrp;
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}
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/* Does a dentry have some pending activity? */
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static inline int autofs4_ispending(struct dentry *dentry)
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{
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        struct autofs_info *inf = autofs4_dentry_ino(dentry);
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        return (dentry->d_flags & DCACHE_AUTOFS_PENDING) ||
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                (inf != NULL && inf->flags & AUTOFS_INF_EXPIRING);
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}
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struct inode *autofs4_get_inode(struct super_block *, struct autofs_info *);
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struct autofs_info *autofs4_init_inf(struct autofs_sb_info *, mode_t mode);
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void autofs4_free_ino(struct autofs_info *);
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/* Expiration */
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int is_autofs4_dentry(struct dentry *);
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int autofs4_expire_run(struct super_block *, struct vfsmount *,
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                        struct autofs_sb_info *, struct autofs_packet_expire *);
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int autofs4_expire_multi(struct super_block *, struct vfsmount *,
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                        struct autofs_sb_info *, int *);
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/* Operations structures */
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extern struct inode_operations autofs4_symlink_inode_operations;
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extern struct inode_operations autofs4_dir_inode_operations;
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extern struct inode_operations autofs4_root_inode_operations;
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extern struct file_operations autofs4_root_operations;
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/* Initializing function */
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struct super_block *autofs4_read_super(struct super_block *, void *,int);
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struct autofs_info *autofs4_init_ino(struct autofs_info *, struct autofs_sb_info *sbi, mode_t mode);
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/* Queue management functions */
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enum autofs_notify
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{
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        NFY_NONE,
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        NFY_MOUNT,
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        NFY_EXPIRE
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};
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int autofs4_wait(struct autofs_sb_info *,struct qstr *, enum autofs_notify);
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int autofs4_wait_release(struct autofs_sb_info *,autofs_wqt_t,int);
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void autofs4_catatonic_mode(struct autofs_sb_info *);

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