8c1d0d9ce5
The default uid/gid for NFSv4 are set by the nfsuserd(8) daemon. However, they were 0 until the nfsuserd(8) was run. Since it is possible to use NFSv4 without running the nfsuserd(8) daemon, set them to nobody/nogroup initially. Without this patch, the values would be set by the nfsuserd(8) daemon and left changed even if the nfsuserd(8) daemon was killed. The default values of 0 meant that setting a group to "wheel" would fail even when done by root. It also adds a definition of GID_NOGROUP to sys/conf.h. Discussed on: freebsd-current@ MFC after: 2 weeks
357 lines
12 KiB
C
357 lines
12 KiB
C
/*-
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* Copyright (c) 1990, 1993
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* The Regents of the University of California. All rights reserved.
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* Copyright (c) 2000
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* Poul-Henning Kamp. All rights reserved.
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* (c) UNIX System Laboratories, Inc.
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* All or some portions of this file are derived from material licensed
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* to the University of California by American Telephone and Telegraph
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* Co. or Unix System Laboratories, Inc. and are reproduced herein with
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* the permission of UNIX System Laboratories, Inc.
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*
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* Redistribution and use in source and binary forms, with or without
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* modification, are permitted provided that the following conditions
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* are met:
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* 1. Redistributions of source code must retain the above copyright
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* notice, this list of conditions and the following disclaimer.
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* 2. Redistributions in binary form must reproduce the above copyright
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* notice, this list of conditions and the following disclaimer in the
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* documentation and/or other materials provided with the distribution.
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* 3. Neither the name of the University nor the names of its contributors
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* may be used to endorse or promote products derived from this software
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* without specific prior written permission.
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*
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* THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
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* ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
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* IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
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* ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
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* FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
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* DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
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* OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
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* HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
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* LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
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* OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
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* SUCH DAMAGE.
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*
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* @(#)conf.h 8.5 (Berkeley) 1/9/95
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* $FreeBSD$
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*/
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#ifndef _SYS_CONF_H_
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#define _SYS_CONF_H_
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#ifdef _KERNEL
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#include <sys/eventhandler.h>
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#else
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#include <sys/queue.h>
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#endif
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struct snapdata;
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struct devfs_dirent;
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struct cdevsw;
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struct file;
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struct cdev {
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void *si_spare0;
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u_int si_flags;
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#define SI_ETERNAL 0x0001 /* never destroyed */
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#define SI_ALIAS 0x0002 /* carrier of alias name */
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#define SI_NAMED 0x0004 /* make_dev{_alias} has been called */
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#define SI_CHEAPCLONE 0x0008 /* can be removed_dev'ed when vnode reclaims */
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#define SI_CHILD 0x0010 /* child of another struct cdev **/
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#define SI_DUMPDEV 0x0080 /* is kernel dumpdev */
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#define SI_CLONELIST 0x0200 /* on a clone list */
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#define SI_UNMAPPED 0x0400 /* can handle unmapped I/O */
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#define SI_NOSPLIT 0x0800 /* I/O should not be split up */
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struct timespec si_atime;
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struct timespec si_ctime;
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struct timespec si_mtime;
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uid_t si_uid;
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gid_t si_gid;
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mode_t si_mode;
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struct ucred *si_cred; /* cached clone-time credential */
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int si_drv0;
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int si_refcount;
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LIST_ENTRY(cdev) si_list;
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LIST_ENTRY(cdev) si_clone;
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LIST_HEAD(, cdev) si_children;
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LIST_ENTRY(cdev) si_siblings;
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struct cdev *si_parent;
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struct mount *si_mountpt;
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void *si_drv1, *si_drv2;
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struct cdevsw *si_devsw;
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int si_iosize_max; /* maximum I/O size (for physio &al) */
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u_long si_usecount;
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u_long si_threadcount;
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union {
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struct snapdata *__sid_snapdata;
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} __si_u;
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char si_name[SPECNAMELEN + 1];
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};
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#define si_snapdata __si_u.__sid_snapdata
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#ifdef _KERNEL
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/*
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* Definitions of device driver entry switches
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*/
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struct bio;
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struct buf;
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struct thread;
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struct uio;
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struct knote;
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struct clonedevs;
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struct vm_object;
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struct vnode;
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typedef int d_open_t(struct cdev *dev, int oflags, int devtype, struct thread *td);
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typedef int d_fdopen_t(struct cdev *dev, int oflags, struct thread *td, struct file *fp);
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typedef int d_close_t(struct cdev *dev, int fflag, int devtype, struct thread *td);
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typedef void d_strategy_t(struct bio *bp);
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typedef int d_ioctl_t(struct cdev *dev, u_long cmd, caddr_t data,
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int fflag, struct thread *td);
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typedef int d_read_t(struct cdev *dev, struct uio *uio, int ioflag);
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typedef int d_write_t(struct cdev *dev, struct uio *uio, int ioflag);
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typedef int d_poll_t(struct cdev *dev, int events, struct thread *td);
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typedef int d_kqfilter_t(struct cdev *dev, struct knote *kn);
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typedef int d_mmap_t(struct cdev *dev, vm_ooffset_t offset, vm_paddr_t *paddr,
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int nprot, vm_memattr_t *memattr);
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typedef int d_mmap_single_t(struct cdev *cdev, vm_ooffset_t *offset,
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vm_size_t size, struct vm_object **object, int nprot);
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typedef void d_purge_t(struct cdev *dev);
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typedef int dumper_t(
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void *_priv, /* Private to the driver. */
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void *_virtual, /* Virtual (mapped) address. */
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vm_offset_t _physical, /* Physical address of virtual. */
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off_t _offset, /* Byte-offset to write at. */
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size_t _length); /* Number of bytes to dump. */
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#endif /* _KERNEL */
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/*
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* Types for d_flags.
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*/
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#define D_TAPE 0x0001
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#define D_DISK 0x0002
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#define D_TTY 0x0004
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#define D_MEM 0x0008 /* /dev/(k)mem */
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#ifdef _KERNEL
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#define D_TYPEMASK 0xffff
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/*
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* Flags for d_flags which the drivers can set.
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*/
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#define D_TRACKCLOSE 0x00080000 /* track all closes */
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#define D_MMAP_ANON 0x00100000 /* special treatment in vm_mmap.c */
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#define D_NEEDGIANT 0x00400000 /* driver want Giant */
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#define D_NEEDMINOR 0x00800000 /* driver uses clone_create() */
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/*
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* Version numbers.
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*/
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#define D_VERSION_00 0x20011966
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#define D_VERSION_01 0x17032005 /* Add d_uid,gid,mode & kind */
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#define D_VERSION_02 0x28042009 /* Add d_mmap_single */
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#define D_VERSION_03 0x17122009 /* d_mmap takes memattr,vm_ooffset_t */
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#define D_VERSION D_VERSION_03
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/*
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* Flags used for internal housekeeping
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*/
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#define D_INIT 0x80000000 /* cdevsw initialized */
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/*
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* Character device switch table
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*/
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struct cdevsw {
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int d_version;
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u_int d_flags;
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const char *d_name;
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d_open_t *d_open;
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d_fdopen_t *d_fdopen;
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d_close_t *d_close;
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d_read_t *d_read;
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d_write_t *d_write;
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d_ioctl_t *d_ioctl;
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d_poll_t *d_poll;
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d_mmap_t *d_mmap;
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d_strategy_t *d_strategy;
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dumper_t *d_dump;
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d_kqfilter_t *d_kqfilter;
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d_purge_t *d_purge;
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d_mmap_single_t *d_mmap_single;
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int32_t d_spare0[3];
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void *d_spare1[3];
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/* These fields should not be messed with by drivers */
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LIST_HEAD(, cdev) d_devs;
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int d_spare2;
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union {
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struct cdevsw *gianttrick;
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SLIST_ENTRY(cdevsw) postfree_list;
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} __d_giant;
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};
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#define d_gianttrick __d_giant.gianttrick
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#define d_postfree_list __d_giant.postfree_list
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struct module;
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struct devsw_module_data {
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int (*chainevh)(struct module *, int, void *); /* next handler */
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void *chainarg; /* arg for next event handler */
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/* Do not initialize fields hereafter */
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};
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#define DEV_MODULE_ORDERED(name, evh, arg, ord) \
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static moduledata_t name##_mod = { \
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#name, \
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evh, \
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arg \
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}; \
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DECLARE_MODULE(name, name##_mod, SI_SUB_DRIVERS, ord)
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#define DEV_MODULE(name, evh, arg) \
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DEV_MODULE_ORDERED(name, evh, arg, SI_ORDER_MIDDLE)
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void clone_setup(struct clonedevs **cdp);
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void clone_cleanup(struct clonedevs **);
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#define CLONE_UNITMASK 0xfffff
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#define CLONE_FLAG0 (CLONE_UNITMASK + 1)
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int clone_create(struct clonedevs **, struct cdevsw *, int *unit, struct cdev **dev, int extra);
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#define MAKEDEV_REF 0x01
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#define MAKEDEV_WHTOUT 0x02
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#define MAKEDEV_NOWAIT 0x04
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#define MAKEDEV_WAITOK 0x08
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#define MAKEDEV_ETERNAL 0x10
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#define MAKEDEV_CHECKNAME 0x20
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struct make_dev_args {
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size_t mda_size;
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int mda_flags;
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struct cdevsw *mda_devsw;
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struct ucred *mda_cr;
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uid_t mda_uid;
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gid_t mda_gid;
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int mda_mode;
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int mda_unit;
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void *mda_si_drv1;
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void *mda_si_drv2;
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};
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void make_dev_args_init_impl(struct make_dev_args *_args, size_t _sz);
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#define make_dev_args_init(a) \
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make_dev_args_init_impl((a), sizeof(struct make_dev_args))
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int count_dev(struct cdev *_dev);
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void delist_dev(struct cdev *_dev);
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void destroy_dev(struct cdev *_dev);
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int destroy_dev_sched(struct cdev *dev);
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int destroy_dev_sched_cb(struct cdev *dev, void (*cb)(void *), void *arg);
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void destroy_dev_drain(struct cdevsw *csw);
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void drain_dev_clone_events(void);
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struct cdevsw *dev_refthread(struct cdev *_dev, int *_ref);
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struct cdevsw *devvn_refthread(struct vnode *vp, struct cdev **devp, int *_ref);
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void dev_relthread(struct cdev *_dev, int _ref);
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void dev_depends(struct cdev *_pdev, struct cdev *_cdev);
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void dev_ref(struct cdev *dev);
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void dev_refl(struct cdev *dev);
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void dev_rel(struct cdev *dev);
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struct cdev *make_dev(struct cdevsw *_devsw, int _unit, uid_t _uid, gid_t _gid,
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int _perms, const char *_fmt, ...) __printflike(6, 7);
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struct cdev *make_dev_cred(struct cdevsw *_devsw, int _unit,
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struct ucred *_cr, uid_t _uid, gid_t _gid, int _perms,
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const char *_fmt, ...) __printflike(7, 8);
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struct cdev *make_dev_credf(int _flags,
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struct cdevsw *_devsw, int _unit,
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struct ucred *_cr, uid_t _uid, gid_t _gid, int _mode,
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const char *_fmt, ...) __printflike(8, 9);
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int make_dev_p(int _flags, struct cdev **_cdev, struct cdevsw *_devsw,
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struct ucred *_cr, uid_t _uid, gid_t _gid, int _mode,
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const char *_fmt, ...) __printflike(8, 9);
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int make_dev_s(struct make_dev_args *_args, struct cdev **_cdev,
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const char *_fmt, ...) __printflike(3, 4);
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struct cdev *make_dev_alias(struct cdev *_pdev, const char *_fmt, ...)
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__printflike(2, 3);
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int make_dev_alias_p(int _flags, struct cdev **_cdev, struct cdev *_pdev,
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const char *_fmt, ...) __printflike(4, 5);
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int make_dev_physpath_alias(int _flags, struct cdev **_cdev,
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struct cdev *_pdev, struct cdev *_old_alias,
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const char *_physpath);
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void dev_lock(void);
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void dev_unlock(void);
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#ifdef KLD_MODULE
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#define MAKEDEV_ETERNAL_KLD 0
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#else
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#define MAKEDEV_ETERNAL_KLD MAKEDEV_ETERNAL
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#endif
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#define dev2unit(d) ((d)->si_drv0)
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typedef void d_priv_dtor_t(void *data);
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int devfs_get_cdevpriv(void **datap);
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int devfs_set_cdevpriv(void *priv, d_priv_dtor_t *dtr);
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void devfs_clear_cdevpriv(void);
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ino_t devfs_alloc_cdp_inode(void);
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void devfs_free_cdp_inode(ino_t ino);
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#define UID_ROOT 0
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#define UID_BIN 3
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#define UID_UUCP 66
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#define UID_NOBODY 65534
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#define GID_WHEEL 0
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#define GID_KMEM 2
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#define GID_TTY 4
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#define GID_OPERATOR 5
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#define GID_BIN 7
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#define GID_GAMES 13
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#define GID_VIDEO 44
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#define GID_DIALER 68
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#define GID_NOGROUP 65533
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#define GID_NOBODY 65534
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typedef void (*dev_clone_fn)(void *arg, struct ucred *cred, char *name,
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int namelen, struct cdev **result);
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int dev_stdclone(char *_name, char **_namep, const char *_stem, int *_unit);
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EVENTHANDLER_DECLARE(dev_clone, dev_clone_fn);
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/* Stuff relating to kernel-dump */
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struct kerneldumpcrypto;
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struct kerneldumpheader;
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struct dumperinfo {
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dumper_t *dumper; /* Dumping function. */
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void *priv; /* Private parts. */
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u_int blocksize; /* Size of block in bytes. */
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u_int maxiosize; /* Max size allowed for an individual I/O */
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off_t mediaoffset; /* Initial offset in bytes. */
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off_t mediasize; /* Space available in bytes. */
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void *blockbuf; /* Buffer for padding shorter dump blocks */
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struct kerneldumpcrypto *kdc; /* Kernel dump crypto. */
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};
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int set_dumper(struct dumperinfo *di, const char *devname, struct thread *td,
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uint8_t encrypt, const uint8_t *key, uint32_t encryptedkeysize,
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const uint8_t *encryptedkey);
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int dump_write(struct dumperinfo *, void *, vm_offset_t, off_t, size_t);
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int dump_write_pad(struct dumperinfo *, void *, vm_offset_t, off_t, size_t,
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size_t *);
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int dump_write_header(struct dumperinfo *di, struct kerneldumpheader *kdh,
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vm_offset_t physical, off_t offset);
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int dump_write_key(struct dumperinfo *di, vm_offset_t physical, off_t offset);
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int doadump(boolean_t);
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extern int dumping; /* system is dumping */
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#endif /* _KERNEL */
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#endif /* !_SYS_CONF_H_ */
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