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vfs_vnode.c revision 1.35
      1  1.35   hannken /*	$NetBSD: vfs_vnode.c,v 1.35 2014/03/24 13:42:40 hannken Exp $	*/
      2   1.1     rmind 
      3   1.1     rmind /*-
      4   1.2     rmind  * Copyright (c) 1997-2011 The NetBSD Foundation, Inc.
      5   1.1     rmind  * All rights reserved.
      6   1.1     rmind  *
      7   1.1     rmind  * This code is derived from software contributed to The NetBSD Foundation
      8   1.1     rmind  * by Jason R. Thorpe of the Numerical Aerospace Simulation Facility,
      9   1.1     rmind  * NASA Ames Research Center, by Charles M. Hannum, and by Andrew Doran.
     10   1.1     rmind  *
     11   1.1     rmind  * Redistribution and use in source and binary forms, with or without
     12   1.1     rmind  * modification, are permitted provided that the following conditions
     13   1.1     rmind  * are met:
     14   1.1     rmind  * 1. Redistributions of source code must retain the above copyright
     15   1.1     rmind  *    notice, this list of conditions and the following disclaimer.
     16   1.1     rmind  * 2. Redistributions in binary form must reproduce the above copyright
     17   1.1     rmind  *    notice, this list of conditions and the following disclaimer in the
     18   1.1     rmind  *    documentation and/or other materials provided with the distribution.
     19   1.1     rmind  *
     20   1.1     rmind  * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
     21   1.1     rmind  * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
     22   1.1     rmind  * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
     23   1.1     rmind  * PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
     24   1.1     rmind  * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
     25   1.1     rmind  * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
     26   1.1     rmind  * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
     27   1.1     rmind  * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
     28   1.1     rmind  * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
     29   1.1     rmind  * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
     30   1.1     rmind  * POSSIBILITY OF SUCH DAMAGE.
     31   1.1     rmind  */
     32   1.1     rmind 
     33   1.1     rmind /*
     34   1.1     rmind  * Copyright (c) 1989, 1993
     35   1.1     rmind  *	The Regents of the University of California.  All rights reserved.
     36   1.1     rmind  * (c) UNIX System Laboratories, Inc.
     37   1.1     rmind  * All or some portions of this file are derived from material licensed
     38   1.1     rmind  * to the University of California by American Telephone and Telegraph
     39   1.1     rmind  * Co. or Unix System Laboratories, Inc. and are reproduced herein with
     40   1.1     rmind  * the permission of UNIX System Laboratories, Inc.
     41   1.1     rmind  *
     42   1.1     rmind  * Redistribution and use in source and binary forms, with or without
     43   1.1     rmind  * modification, are permitted provided that the following conditions
     44   1.1     rmind  * are met:
     45   1.1     rmind  * 1. Redistributions of source code must retain the above copyright
     46   1.1     rmind  *    notice, this list of conditions and the following disclaimer.
     47   1.1     rmind  * 2. Redistributions in binary form must reproduce the above copyright
     48   1.1     rmind  *    notice, this list of conditions and the following disclaimer in the
     49   1.1     rmind  *    documentation and/or other materials provided with the distribution.
     50   1.1     rmind  * 3. Neither the name of the University nor the names of its contributors
     51   1.1     rmind  *    may be used to endorse or promote products derived from this software
     52   1.1     rmind  *    without specific prior written permission.
     53   1.1     rmind  *
     54   1.1     rmind  * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
     55   1.1     rmind  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
     56   1.1     rmind  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
     57   1.1     rmind  * ARE DISCLAIMED.  IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
     58   1.1     rmind  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
     59   1.1     rmind  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
     60   1.1     rmind  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
     61   1.1     rmind  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
     62   1.1     rmind  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
     63   1.1     rmind  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
     64   1.1     rmind  * SUCH DAMAGE.
     65   1.1     rmind  *
     66   1.1     rmind  *	@(#)vfs_subr.c	8.13 (Berkeley) 4/18/94
     67   1.1     rmind  */
     68   1.1     rmind 
     69   1.1     rmind /*
     70   1.8     rmind  * The vnode cache subsystem.
     71   1.1     rmind  *
     72   1.8     rmind  * Life-cycle
     73   1.1     rmind  *
     74   1.8     rmind  *	Normally, there are two points where new vnodes are created:
     75   1.8     rmind  *	VOP_CREATE(9) and VOP_LOOKUP(9).  The life-cycle of a vnode
     76   1.8     rmind  *	starts in one of the following ways:
     77   1.8     rmind  *
     78   1.8     rmind  *	- Allocation, via getnewvnode(9) and/or vnalloc(9).
     79   1.8     rmind  *	- Reclamation of inactive vnode, via vget(9).
     80   1.8     rmind  *
     81  1.16     rmind  *	Recycle from a free list, via getnewvnode(9) -> getcleanvnode(9)
     82  1.16     rmind  *	was another, traditional way.  Currently, only the draining thread
     83  1.16     rmind  *	recycles the vnodes.  This behaviour might be revisited.
     84  1.16     rmind  *
     85   1.8     rmind  *	The life-cycle ends when the last reference is dropped, usually
     86   1.8     rmind  *	in VOP_REMOVE(9).  In such case, VOP_INACTIVE(9) is called to inform
     87   1.8     rmind  *	the file system that vnode is inactive.  Via this call, file system
     88  1.16     rmind  *	indicates whether vnode can be recycled (usually, it checks its own
     89  1.16     rmind  *	references, e.g. count of links, whether the file was removed).
     90   1.8     rmind  *
     91   1.8     rmind  *	Depending on indication, vnode can be put into a free list (cache),
     92   1.8     rmind  *	or cleaned via vclean(9), which calls VOP_RECLAIM(9) to disassociate
     93   1.8     rmind  *	underlying file system from the vnode, and finally destroyed.
     94   1.8     rmind  *
     95   1.8     rmind  * Reference counting
     96   1.8     rmind  *
     97   1.8     rmind  *	Vnode is considered active, if reference count (vnode_t::v_usecount)
     98   1.8     rmind  *	is non-zero.  It is maintained using: vref(9) and vrele(9), as well
     99   1.8     rmind  *	as vput(9), routines.  Common points holding references are e.g.
    100   1.8     rmind  *	file openings, current working directory, mount points, etc.
    101   1.8     rmind  *
    102   1.8     rmind  * Note on v_usecount and its locking
    103   1.8     rmind  *
    104   1.8     rmind  *	At nearly all points it is known that v_usecount could be zero,
    105   1.8     rmind  *	the vnode_t::v_interlock will be held.  To change v_usecount away
    106   1.8     rmind  *	from zero, the interlock must be held.  To change from a non-zero
    107   1.8     rmind  *	value to zero, again the interlock must be held.
    108   1.8     rmind  *
    109  1.24   hannken  *	Changing the usecount from a non-zero value to a non-zero value can
    110  1.24   hannken  *	safely be done using atomic operations, without the interlock held.
    111   1.8     rmind  *
    112   1.8     rmind  *	Note: if VI_CLEAN is set, vnode_t::v_interlock will be released while
    113   1.8     rmind  *	mntvnode_lock is still held.
    114  1.20  dholland  *
    115  1.20  dholland  *	See PR 41374.
    116   1.1     rmind  */
    117   1.1     rmind 
    118   1.1     rmind #include <sys/cdefs.h>
    119  1.35   hannken __KERNEL_RCSID(0, "$NetBSD: vfs_vnode.c,v 1.35 2014/03/24 13:42:40 hannken Exp $");
    120  1.23   hannken 
    121  1.23   hannken #define _VFS_VNODE_PRIVATE
    122   1.1     rmind 
    123   1.1     rmind #include <sys/param.h>
    124   1.1     rmind #include <sys/kernel.h>
    125   1.1     rmind 
    126   1.1     rmind #include <sys/atomic.h>
    127   1.1     rmind #include <sys/buf.h>
    128   1.1     rmind #include <sys/conf.h>
    129   1.1     rmind #include <sys/device.h>
    130   1.1     rmind #include <sys/kauth.h>
    131   1.1     rmind #include <sys/kmem.h>
    132   1.1     rmind #include <sys/kthread.h>
    133   1.1     rmind #include <sys/module.h>
    134   1.1     rmind #include <sys/mount.h>
    135   1.1     rmind #include <sys/namei.h>
    136   1.1     rmind #include <sys/syscallargs.h>
    137   1.1     rmind #include <sys/sysctl.h>
    138   1.1     rmind #include <sys/systm.h>
    139   1.1     rmind #include <sys/vnode.h>
    140   1.1     rmind #include <sys/wapbl.h>
    141  1.24   hannken #include <sys/fstrans.h>
    142   1.1     rmind 
    143   1.1     rmind #include <uvm/uvm.h>
    144   1.1     rmind #include <uvm/uvm_readahead.h>
    145   1.1     rmind 
    146  1.23   hannken /* Flags to vrelel. */
    147  1.23   hannken #define	VRELEL_ASYNC_RELE	0x0001	/* Always defer to vrele thread. */
    148  1.29  christos #define	VRELEL_CHANGING_SET	0x0002	/* VI_CHANGING set by caller. */
    149  1.23   hannken 
    150   1.6     rmind u_int			numvnodes		__cacheline_aligned;
    151   1.1     rmind 
    152   1.6     rmind static pool_cache_t	vnode_cache		__read_mostly;
    153  1.31   hannken static struct mount	*dead_mount;
    154  1.16     rmind 
    155  1.16     rmind /*
    156  1.16     rmind  * There are two free lists: one is for vnodes which have no buffer/page
    157  1.16     rmind  * references and one for those which do (i.e. v_holdcnt is non-zero).
    158  1.16     rmind  * Vnode recycling mechanism first attempts to look into the former list.
    159  1.16     rmind  */
    160   1.6     rmind static kmutex_t		vnode_free_list_lock	__cacheline_aligned;
    161   1.6     rmind static vnodelst_t	vnode_free_list		__cacheline_aligned;
    162   1.6     rmind static vnodelst_t	vnode_hold_list		__cacheline_aligned;
    163  1.16     rmind static kcondvar_t	vdrain_cv		__cacheline_aligned;
    164  1.16     rmind 
    165   1.6     rmind static vnodelst_t	vrele_list		__cacheline_aligned;
    166   1.6     rmind static kmutex_t		vrele_lock		__cacheline_aligned;
    167   1.6     rmind static kcondvar_t	vrele_cv		__cacheline_aligned;
    168   1.6     rmind static lwp_t *		vrele_lwp		__cacheline_aligned;
    169   1.6     rmind static int		vrele_pending		__cacheline_aligned;
    170   1.6     rmind static int		vrele_gen		__cacheline_aligned;
    171   1.1     rmind 
    172  1.12   hannken static int		cleanvnode(void);
    173  1.25   hannken static void		vclean(vnode_t *);
    174  1.23   hannken static void		vrelel(vnode_t *, int);
    175  1.12   hannken static void		vdrain_thread(void *);
    176   1.1     rmind static void		vrele_thread(void *);
    177  1.11  christos static void		vnpanic(vnode_t *, const char *, ...)
    178  1.18  christos     __printflike(2, 3);
    179  1.35   hannken static void		vwait(vnode_t *, int);
    180   1.1     rmind 
    181   1.1     rmind /* Routines having to do with the management of the vnode table. */
    182   1.1     rmind extern int		(**dead_vnodeop_p)(void *);
    183  1.31   hannken extern struct vfsops	dead_vfsops;
    184   1.1     rmind 
    185   1.1     rmind void
    186   1.1     rmind vfs_vnode_sysinit(void)
    187   1.1     rmind {
    188  1.22    martin 	int error __diagused;
    189   1.1     rmind 
    190   1.1     rmind 	vnode_cache = pool_cache_init(sizeof(vnode_t), 0, 0, 0, "vnodepl",
    191   1.1     rmind 	    NULL, IPL_NONE, NULL, NULL, NULL);
    192   1.1     rmind 	KASSERT(vnode_cache != NULL);
    193   1.1     rmind 
    194  1.31   hannken 	dead_mount = vfs_mountalloc(&dead_vfsops, NULL);
    195  1.31   hannken 	KASSERT(dead_mount != NULL);
    196  1.31   hannken 	dead_mount->mnt_iflag = IMNT_MPSAFE;
    197  1.31   hannken 
    198   1.1     rmind 	mutex_init(&vnode_free_list_lock, MUTEX_DEFAULT, IPL_NONE);
    199   1.1     rmind 	TAILQ_INIT(&vnode_free_list);
    200   1.1     rmind 	TAILQ_INIT(&vnode_hold_list);
    201   1.1     rmind 	TAILQ_INIT(&vrele_list);
    202   1.1     rmind 
    203   1.1     rmind 	mutex_init(&vrele_lock, MUTEX_DEFAULT, IPL_NONE);
    204  1.12   hannken 	cv_init(&vdrain_cv, "vdrain");
    205   1.1     rmind 	cv_init(&vrele_cv, "vrele");
    206  1.12   hannken 	error = kthread_create(PRI_VM, KTHREAD_MPSAFE, NULL, vdrain_thread,
    207  1.12   hannken 	    NULL, NULL, "vdrain");
    208  1.12   hannken 	KASSERT(error == 0);
    209   1.1     rmind 	error = kthread_create(PRI_VM, KTHREAD_MPSAFE, NULL, vrele_thread,
    210   1.1     rmind 	    NULL, &vrele_lwp, "vrele");
    211   1.1     rmind 	KASSERT(error == 0);
    212   1.1     rmind }
    213   1.1     rmind 
    214   1.1     rmind /*
    215   1.1     rmind  * Allocate a new, uninitialized vnode.  If 'mp' is non-NULL, this is a
    216  1.13   hannken  * marker vnode.
    217   1.1     rmind  */
    218   1.1     rmind vnode_t *
    219   1.1     rmind vnalloc(struct mount *mp)
    220   1.1     rmind {
    221   1.1     rmind 	vnode_t *vp;
    222   1.1     rmind 
    223  1.13   hannken 	vp = pool_cache_get(vnode_cache, PR_WAITOK);
    224  1.13   hannken 	KASSERT(vp != NULL);
    225   1.1     rmind 
    226   1.1     rmind 	memset(vp, 0, sizeof(*vp));
    227   1.9     rmind 	uvm_obj_init(&vp->v_uobj, &uvm_vnodeops, true, 0);
    228   1.1     rmind 	cv_init(&vp->v_cv, "vnode");
    229   1.1     rmind 	/*
    230   1.1     rmind 	 * Done by memset() above.
    231   1.1     rmind 	 *	LIST_INIT(&vp->v_nclist);
    232   1.1     rmind 	 *	LIST_INIT(&vp->v_dnclist);
    233   1.1     rmind 	 */
    234   1.1     rmind 
    235   1.1     rmind 	if (mp != NULL) {
    236   1.1     rmind 		vp->v_mount = mp;
    237   1.1     rmind 		vp->v_type = VBAD;
    238   1.1     rmind 		vp->v_iflag = VI_MARKER;
    239   1.1     rmind 	} else {
    240   1.1     rmind 		rw_init(&vp->v_lock);
    241   1.1     rmind 	}
    242   1.1     rmind 
    243   1.1     rmind 	return vp;
    244   1.1     rmind }
    245   1.1     rmind 
    246   1.1     rmind /*
    247   1.1     rmind  * Free an unused, unreferenced vnode.
    248   1.1     rmind  */
    249   1.1     rmind void
    250   1.1     rmind vnfree(vnode_t *vp)
    251   1.1     rmind {
    252   1.1     rmind 
    253   1.1     rmind 	KASSERT(vp->v_usecount == 0);
    254   1.1     rmind 
    255   1.1     rmind 	if ((vp->v_iflag & VI_MARKER) == 0) {
    256   1.1     rmind 		rw_destroy(&vp->v_lock);
    257   1.1     rmind 		mutex_enter(&vnode_free_list_lock);
    258   1.1     rmind 		numvnodes--;
    259   1.1     rmind 		mutex_exit(&vnode_free_list_lock);
    260   1.1     rmind 	}
    261   1.1     rmind 
    262   1.9     rmind 	/*
    263   1.9     rmind 	 * Note: the vnode interlock will either be freed, of reference
    264   1.9     rmind 	 * dropped (if VI_LOCKSHARE was in use).
    265   1.9     rmind 	 */
    266   1.9     rmind 	uvm_obj_destroy(&vp->v_uobj, true);
    267   1.1     rmind 	cv_destroy(&vp->v_cv);
    268   1.1     rmind 	pool_cache_put(vnode_cache, vp);
    269   1.1     rmind }
    270   1.1     rmind 
    271   1.1     rmind /*
    272  1.12   hannken  * cleanvnode: grab a vnode from freelist, clean and free it.
    273   1.5     rmind  *
    274   1.5     rmind  * => Releases vnode_free_list_lock.
    275   1.1     rmind  */
    276  1.12   hannken static int
    277  1.12   hannken cleanvnode(void)
    278   1.1     rmind {
    279   1.1     rmind 	vnode_t *vp;
    280   1.1     rmind 	vnodelst_t *listhd;
    281  1.24   hannken 	struct mount *mp;
    282   1.1     rmind 
    283   1.1     rmind 	KASSERT(mutex_owned(&vnode_free_list_lock));
    284  1.24   hannken 
    285   1.1     rmind 	listhd = &vnode_free_list;
    286   1.1     rmind try_nextlist:
    287   1.1     rmind 	TAILQ_FOREACH(vp, listhd, v_freelist) {
    288   1.1     rmind 		/*
    289   1.1     rmind 		 * It's safe to test v_usecount and v_iflag
    290   1.1     rmind 		 * without holding the interlock here, since
    291   1.1     rmind 		 * these vnodes should never appear on the
    292   1.1     rmind 		 * lists.
    293   1.1     rmind 		 */
    294   1.5     rmind 		KASSERT(vp->v_usecount == 0);
    295   1.5     rmind 		KASSERT((vp->v_iflag & VI_CLEAN) == 0);
    296   1.5     rmind 		KASSERT(vp->v_freelisthd == listhd);
    297   1.5     rmind 
    298   1.9     rmind 		if (!mutex_tryenter(vp->v_interlock))
    299   1.1     rmind 			continue;
    300  1.24   hannken 		if ((vp->v_iflag & VI_XLOCK) != 0) {
    301  1.24   hannken 			mutex_exit(vp->v_interlock);
    302  1.24   hannken 			continue;
    303  1.24   hannken 		}
    304  1.24   hannken 		mp = vp->v_mount;
    305  1.24   hannken 		if (fstrans_start_nowait(mp, FSTRANS_SHARED) != 0) {
    306  1.24   hannken 			mutex_exit(vp->v_interlock);
    307  1.24   hannken 			continue;
    308  1.24   hannken 		}
    309  1.24   hannken 		break;
    310   1.1     rmind 	}
    311   1.1     rmind 
    312   1.1     rmind 	if (vp == NULL) {
    313   1.1     rmind 		if (listhd == &vnode_free_list) {
    314   1.1     rmind 			listhd = &vnode_hold_list;
    315   1.1     rmind 			goto try_nextlist;
    316   1.1     rmind 		}
    317   1.1     rmind 		mutex_exit(&vnode_free_list_lock);
    318  1.12   hannken 		return EBUSY;
    319   1.1     rmind 	}
    320   1.1     rmind 
    321   1.1     rmind 	/* Remove it from the freelist. */
    322   1.1     rmind 	TAILQ_REMOVE(listhd, vp, v_freelist);
    323   1.1     rmind 	vp->v_freelisthd = NULL;
    324   1.1     rmind 	mutex_exit(&vnode_free_list_lock);
    325   1.1     rmind 
    326   1.1     rmind 	KASSERT(vp->v_usecount == 0);
    327   1.1     rmind 
    328   1.1     rmind 	/*
    329   1.1     rmind 	 * The vnode is still associated with a file system, so we must
    330  1.12   hannken 	 * clean it out before freeing it.  We need to add a reference
    331  1.24   hannken 	 * before doing this.
    332   1.1     rmind 	 */
    333  1.24   hannken 	vp->v_usecount = 1;
    334  1.29  christos 	KASSERT((vp->v_iflag & VI_CHANGING) == 0);
    335  1.29  christos 	vp->v_iflag |= VI_CHANGING;
    336  1.25   hannken 	vclean(vp);
    337  1.29  christos 	vrelel(vp, VRELEL_CHANGING_SET);
    338  1.24   hannken 	fstrans_done(mp);
    339  1.12   hannken 
    340  1.12   hannken 	return 0;
    341   1.1     rmind }
    342   1.1     rmind 
    343   1.1     rmind /*
    344  1.12   hannken  * getnewvnode: return a fresh vnode.
    345   1.5     rmind  *
    346   1.5     rmind  * => Returns referenced vnode, moved into the mount queue.
    347   1.9     rmind  * => Shares the interlock specified by 'slock', if it is not NULL.
    348   1.1     rmind  */
    349   1.1     rmind int
    350   1.1     rmind getnewvnode(enum vtagtype tag, struct mount *mp, int (**vops)(void *),
    351   1.9     rmind     kmutex_t *slock, vnode_t **vpp)
    352   1.1     rmind {
    353  1.22    martin 	struct uvm_object *uobj __diagused;
    354   1.1     rmind 	vnode_t *vp;
    355  1.12   hannken 	int error = 0;
    356   1.1     rmind 
    357   1.1     rmind 	if (mp != NULL) {
    358   1.1     rmind 		/*
    359   1.4     rmind 		 * Mark filesystem busy while we are creating a vnode.
    360   1.4     rmind 		 * If unmount is in progress, this will fail.
    361   1.1     rmind 		 */
    362   1.1     rmind 		error = vfs_busy(mp, NULL);
    363   1.1     rmind 		if (error)
    364   1.1     rmind 			return error;
    365   1.1     rmind 	}
    366   1.1     rmind 
    367   1.1     rmind 	vp = NULL;
    368   1.1     rmind 
    369  1.12   hannken 	/* Allocate a new vnode. */
    370   1.1     rmind 	mutex_enter(&vnode_free_list_lock);
    371  1.12   hannken 	numvnodes++;
    372  1.12   hannken 	if (numvnodes > desiredvnodes + desiredvnodes / 10)
    373  1.12   hannken 		cv_signal(&vdrain_cv);
    374  1.12   hannken 	mutex_exit(&vnode_free_list_lock);
    375  1.14   hannken 	vp = vnalloc(NULL);
    376   1.1     rmind 
    377   1.1     rmind 	KASSERT(vp->v_freelisthd == NULL);
    378   1.1     rmind 	KASSERT(LIST_EMPTY(&vp->v_nclist));
    379   1.1     rmind 	KASSERT(LIST_EMPTY(&vp->v_dnclist));
    380   1.1     rmind 
    381   1.5     rmind 	/* Initialize vnode. */
    382  1.14   hannken 	vp->v_usecount = 1;
    383   1.1     rmind 	vp->v_type = VNON;
    384   1.1     rmind 	vp->v_tag = tag;
    385   1.1     rmind 	vp->v_op = vops;
    386   1.1     rmind 	vp->v_data = NULL;
    387   1.1     rmind 
    388   1.1     rmind 	uobj = &vp->v_uobj;
    389   1.1     rmind 	KASSERT(uobj->pgops == &uvm_vnodeops);
    390   1.1     rmind 	KASSERT(uobj->uo_npages == 0);
    391   1.1     rmind 	KASSERT(TAILQ_FIRST(&uobj->memq) == NULL);
    392   1.1     rmind 	vp->v_size = vp->v_writesize = VSIZENOTSET;
    393   1.1     rmind 
    394   1.9     rmind 	/* Share the vnode_t::v_interlock, if requested. */
    395   1.9     rmind 	if (slock) {
    396   1.9     rmind 		/* Set the interlock and mark that it is shared. */
    397   1.9     rmind 		KASSERT(vp->v_mount == NULL);
    398   1.9     rmind 		mutex_obj_hold(slock);
    399   1.9     rmind 		uvm_obj_setlock(&vp->v_uobj, slock);
    400   1.9     rmind 		KASSERT(vp->v_interlock == slock);
    401   1.9     rmind 		vp->v_iflag |= VI_LOCKSHARE;
    402   1.9     rmind 	}
    403   1.9     rmind 
    404   1.5     rmind 	/* Finally, move vnode into the mount queue. */
    405   1.5     rmind 	vfs_insmntque(vp, mp);
    406   1.5     rmind 
    407   1.1     rmind 	if (mp != NULL) {
    408   1.1     rmind 		if ((mp->mnt_iflag & IMNT_MPSAFE) != 0)
    409   1.1     rmind 			vp->v_vflag |= VV_MPSAFE;
    410   1.1     rmind 		vfs_unbusy(mp, true, NULL);
    411   1.1     rmind 	}
    412   1.1     rmind 
    413   1.5     rmind 	*vpp = vp;
    414   1.4     rmind 	return 0;
    415   1.1     rmind }
    416   1.1     rmind 
    417   1.1     rmind /*
    418   1.1     rmind  * This is really just the reverse of getnewvnode(). Needed for
    419   1.1     rmind  * VFS_VGET functions who may need to push back a vnode in case
    420   1.1     rmind  * of a locking race.
    421   1.1     rmind  */
    422   1.1     rmind void
    423   1.1     rmind ungetnewvnode(vnode_t *vp)
    424   1.1     rmind {
    425   1.1     rmind 
    426   1.1     rmind 	KASSERT(vp->v_usecount == 1);
    427   1.1     rmind 	KASSERT(vp->v_data == NULL);
    428   1.1     rmind 	KASSERT(vp->v_freelisthd == NULL);
    429   1.1     rmind 
    430   1.9     rmind 	mutex_enter(vp->v_interlock);
    431   1.1     rmind 	vp->v_iflag |= VI_CLEAN;
    432   1.1     rmind 	vrelel(vp, 0);
    433   1.1     rmind }
    434   1.1     rmind 
    435   1.1     rmind /*
    436  1.12   hannken  * Helper thread to keep the number of vnodes below desiredvnodes.
    437  1.12   hannken  */
    438  1.12   hannken static void
    439  1.12   hannken vdrain_thread(void *cookie)
    440  1.12   hannken {
    441  1.12   hannken 	int error;
    442  1.12   hannken 
    443  1.12   hannken 	mutex_enter(&vnode_free_list_lock);
    444  1.12   hannken 
    445  1.12   hannken 	for (;;) {
    446  1.12   hannken 		cv_timedwait(&vdrain_cv, &vnode_free_list_lock, hz);
    447  1.12   hannken 		while (numvnodes > desiredvnodes) {
    448  1.12   hannken 			error = cleanvnode();
    449  1.12   hannken 			if (error)
    450  1.12   hannken 				kpause("vndsbusy", false, hz, NULL);
    451  1.12   hannken 			mutex_enter(&vnode_free_list_lock);
    452  1.12   hannken 			if (error)
    453  1.12   hannken 				break;
    454  1.12   hannken 		}
    455  1.12   hannken 	}
    456  1.12   hannken }
    457  1.12   hannken 
    458  1.12   hannken /*
    459   1.1     rmind  * Remove a vnode from its freelist.
    460   1.1     rmind  */
    461   1.1     rmind void
    462   1.1     rmind vremfree(vnode_t *vp)
    463   1.1     rmind {
    464   1.1     rmind 
    465   1.9     rmind 	KASSERT(mutex_owned(vp->v_interlock));
    466   1.1     rmind 	KASSERT(vp->v_usecount == 0);
    467   1.1     rmind 
    468   1.1     rmind 	/*
    469   1.1     rmind 	 * Note that the reference count must not change until
    470   1.1     rmind 	 * the vnode is removed.
    471   1.1     rmind 	 */
    472   1.1     rmind 	mutex_enter(&vnode_free_list_lock);
    473   1.1     rmind 	if (vp->v_holdcnt > 0) {
    474   1.1     rmind 		KASSERT(vp->v_freelisthd == &vnode_hold_list);
    475   1.1     rmind 	} else {
    476   1.1     rmind 		KASSERT(vp->v_freelisthd == &vnode_free_list);
    477   1.1     rmind 	}
    478   1.1     rmind 	TAILQ_REMOVE(vp->v_freelisthd, vp, v_freelist);
    479   1.1     rmind 	vp->v_freelisthd = NULL;
    480   1.1     rmind 	mutex_exit(&vnode_free_list_lock);
    481   1.1     rmind }
    482   1.1     rmind 
    483   1.1     rmind /*
    484   1.4     rmind  * vget: get a particular vnode from the free list, increment its reference
    485   1.4     rmind  * count and lock it.
    486   1.4     rmind  *
    487   1.4     rmind  * => Should be called with v_interlock held.
    488   1.4     rmind  *
    489  1.29  christos  * If VI_CHANGING is set, the vnode may be eliminated in vgone()/vclean().
    490   1.4     rmind  * In that case, we cannot grab the vnode, so the process is awakened when
    491   1.4     rmind  * the transition is completed, and an error returned to indicate that the
    492  1.29  christos  * vnode is no longer usable.
    493   1.1     rmind  */
    494   1.1     rmind int
    495   1.1     rmind vget(vnode_t *vp, int flags)
    496   1.1     rmind {
    497   1.1     rmind 	int error = 0;
    498   1.1     rmind 
    499   1.1     rmind 	KASSERT((vp->v_iflag & VI_MARKER) == 0);
    500   1.9     rmind 	KASSERT(mutex_owned(vp->v_interlock));
    501   1.1     rmind 	KASSERT((flags & ~(LK_SHARED|LK_EXCLUSIVE|LK_NOWAIT)) == 0);
    502   1.1     rmind 
    503   1.1     rmind 	/*
    504   1.1     rmind 	 * Before adding a reference, we must remove the vnode
    505   1.1     rmind 	 * from its freelist.
    506   1.1     rmind 	 */
    507   1.1     rmind 	if (vp->v_usecount == 0) {
    508   1.1     rmind 		vremfree(vp);
    509   1.1     rmind 		vp->v_usecount = 1;
    510   1.1     rmind 	} else {
    511   1.1     rmind 		atomic_inc_uint(&vp->v_usecount);
    512   1.1     rmind 	}
    513   1.1     rmind 
    514   1.1     rmind 	/*
    515  1.29  christos 	 * If the vnode is in the process of changing state we wait
    516  1.29  christos 	 * for the change to complete and take care not to return
    517  1.29  christos 	 * a clean vnode.
    518   1.1     rmind 	 */
    519  1.29  christos 	if ((vp->v_iflag & VI_CHANGING) != 0) {
    520   1.1     rmind 		if ((flags & LK_NOWAIT) != 0) {
    521   1.1     rmind 			vrelel(vp, 0);
    522   1.1     rmind 			return EBUSY;
    523   1.1     rmind 		}
    524  1.29  christos 		vwait(vp, VI_CHANGING);
    525  1.17   hannken 		if ((vp->v_iflag & VI_CLEAN) != 0) {
    526  1.17   hannken 			vrelel(vp, 0);
    527  1.17   hannken 			return ENOENT;
    528  1.17   hannken 		}
    529  1.17   hannken 	}
    530  1.17   hannken 
    531   1.1     rmind 	/*
    532   1.1     rmind 	 * Ok, we got it in good shape.  Just locking left.
    533   1.1     rmind 	 */
    534   1.1     rmind 	KASSERT((vp->v_iflag & VI_CLEAN) == 0);
    535   1.9     rmind 	mutex_exit(vp->v_interlock);
    536   1.1     rmind 	if (flags & (LK_EXCLUSIVE | LK_SHARED)) {
    537   1.1     rmind 		error = vn_lock(vp, flags);
    538   1.1     rmind 		if (error != 0) {
    539   1.1     rmind 			vrele(vp);
    540   1.1     rmind 		}
    541   1.1     rmind 	}
    542   1.1     rmind 	return error;
    543   1.1     rmind }
    544   1.1     rmind 
    545   1.1     rmind /*
    546   1.4     rmind  * vput: unlock and release the reference.
    547   1.1     rmind  */
    548   1.1     rmind void
    549   1.1     rmind vput(vnode_t *vp)
    550   1.1     rmind {
    551   1.1     rmind 
    552   1.1     rmind 	KASSERT((vp->v_iflag & VI_MARKER) == 0);
    553   1.1     rmind 
    554   1.1     rmind 	VOP_UNLOCK(vp);
    555   1.1     rmind 	vrele(vp);
    556   1.1     rmind }
    557   1.1     rmind 
    558   1.1     rmind /*
    559   1.1     rmind  * Try to drop reference on a vnode.  Abort if we are releasing the
    560   1.1     rmind  * last reference.  Note: this _must_ succeed if not the last reference.
    561   1.1     rmind  */
    562   1.1     rmind static inline bool
    563   1.1     rmind vtryrele(vnode_t *vp)
    564   1.1     rmind {
    565   1.1     rmind 	u_int use, next;
    566   1.1     rmind 
    567   1.1     rmind 	for (use = vp->v_usecount;; use = next) {
    568   1.1     rmind 		if (use == 1) {
    569   1.1     rmind 			return false;
    570   1.1     rmind 		}
    571  1.24   hannken 		KASSERT(use > 1);
    572   1.1     rmind 		next = atomic_cas_uint(&vp->v_usecount, use, use - 1);
    573   1.1     rmind 		if (__predict_true(next == use)) {
    574   1.1     rmind 			return true;
    575   1.1     rmind 		}
    576   1.1     rmind 	}
    577   1.1     rmind }
    578   1.1     rmind 
    579   1.1     rmind /*
    580   1.1     rmind  * Vnode release.  If reference count drops to zero, call inactive
    581   1.1     rmind  * routine and either return to freelist or free to the pool.
    582   1.1     rmind  */
    583  1.23   hannken static void
    584   1.1     rmind vrelel(vnode_t *vp, int flags)
    585   1.1     rmind {
    586   1.1     rmind 	bool recycle, defer;
    587   1.1     rmind 	int error;
    588   1.1     rmind 
    589   1.9     rmind 	KASSERT(mutex_owned(vp->v_interlock));
    590   1.1     rmind 	KASSERT((vp->v_iflag & VI_MARKER) == 0);
    591   1.1     rmind 	KASSERT(vp->v_freelisthd == NULL);
    592   1.1     rmind 
    593   1.1     rmind 	if (__predict_false(vp->v_op == dead_vnodeop_p &&
    594   1.1     rmind 	    (vp->v_iflag & (VI_CLEAN|VI_XLOCK)) == 0)) {
    595  1.11  christos 		vnpanic(vp, "dead but not clean");
    596   1.1     rmind 	}
    597   1.1     rmind 
    598   1.1     rmind 	/*
    599   1.1     rmind 	 * If not the last reference, just drop the reference count
    600   1.1     rmind 	 * and unlock.
    601   1.1     rmind 	 */
    602   1.1     rmind 	if (vtryrele(vp)) {
    603  1.29  christos 		if ((flags & VRELEL_CHANGING_SET) != 0) {
    604  1.29  christos 			KASSERT((vp->v_iflag & VI_CHANGING) != 0);
    605  1.29  christos 			vp->v_iflag &= ~VI_CHANGING;
    606  1.29  christos 			cv_broadcast(&vp->v_cv);
    607  1.29  christos 		}
    608   1.9     rmind 		mutex_exit(vp->v_interlock);
    609   1.1     rmind 		return;
    610   1.1     rmind 	}
    611   1.1     rmind 	if (vp->v_usecount <= 0 || vp->v_writecount != 0) {
    612  1.11  christos 		vnpanic(vp, "%s: bad ref count", __func__);
    613   1.1     rmind 	}
    614   1.1     rmind 
    615   1.1     rmind 	KASSERT((vp->v_iflag & VI_XLOCK) == 0);
    616   1.1     rmind 
    617  1.15   hannken #ifdef DIAGNOSTIC
    618  1.15   hannken 	if ((vp->v_type == VBLK || vp->v_type == VCHR) &&
    619  1.15   hannken 	    vp->v_specnode != NULL && vp->v_specnode->sn_opencnt != 0) {
    620  1.15   hannken 		vprint("vrelel: missing VOP_CLOSE()", vp);
    621  1.15   hannken 	}
    622  1.15   hannken #endif
    623  1.15   hannken 
    624   1.1     rmind 	/*
    625   1.1     rmind 	 * If not clean, deactivate the vnode, but preserve
    626   1.1     rmind 	 * our reference across the call to VOP_INACTIVE().
    627   1.1     rmind 	 */
    628   1.1     rmind 	if ((vp->v_iflag & VI_CLEAN) == 0) {
    629   1.1     rmind 		recycle = false;
    630   1.1     rmind 
    631   1.1     rmind 		/*
    632   1.1     rmind 		 * XXX This ugly block can be largely eliminated if
    633   1.1     rmind 		 * locking is pushed down into the file systems.
    634   1.1     rmind 		 *
    635   1.1     rmind 		 * Defer vnode release to vrele_thread if caller
    636  1.30   hannken 		 * requests it explicitly or is the pagedaemon.
    637   1.1     rmind 		 */
    638   1.1     rmind 		if ((curlwp == uvm.pagedaemon_lwp) ||
    639   1.1     rmind 		    (flags & VRELEL_ASYNC_RELE) != 0) {
    640   1.1     rmind 			defer = true;
    641   1.1     rmind 		} else if (curlwp == vrele_lwp) {
    642  1.17   hannken 			/*
    643  1.29  christos 			 * We have to try harder.
    644  1.17   hannken 			 */
    645   1.9     rmind 			mutex_exit(vp->v_interlock);
    646  1.32   hannken 			error = vn_lock(vp, LK_EXCLUSIVE | LK_RETRY);
    647  1.30   hannken 			KASSERT(error == 0);
    648  1.17   hannken 			mutex_enter(vp->v_interlock);
    649   1.1     rmind 			defer = false;
    650   1.4     rmind 		} else {
    651   1.1     rmind 			/* If we can't acquire the lock, then defer. */
    652  1.32   hannken 			mutex_exit(vp->v_interlock);
    653  1.32   hannken 			error = vn_lock(vp,
    654  1.32   hannken 			    LK_EXCLUSIVE | LK_RETRY | LK_NOWAIT);
    655  1.30   hannken 			defer = (error != 0);
    656  1.32   hannken 			mutex_enter(vp->v_interlock);
    657   1.1     rmind 		}
    658   1.1     rmind 
    659  1.30   hannken 		KASSERT(mutex_owned(vp->v_interlock));
    660  1.30   hannken 		KASSERT(! (curlwp == vrele_lwp && defer));
    661  1.30   hannken 
    662   1.1     rmind 		if (defer) {
    663   1.1     rmind 			/*
    664   1.1     rmind 			 * Defer reclaim to the kthread; it's not safe to
    665   1.1     rmind 			 * clean it here.  We donate it our last reference.
    666   1.1     rmind 			 */
    667  1.29  christos 			if ((flags & VRELEL_CHANGING_SET) != 0) {
    668  1.29  christos 				KASSERT((vp->v_iflag & VI_CHANGING) != 0);
    669  1.29  christos 				vp->v_iflag &= ~VI_CHANGING;
    670  1.29  christos 				cv_broadcast(&vp->v_cv);
    671  1.29  christos 			}
    672   1.1     rmind 			mutex_enter(&vrele_lock);
    673   1.1     rmind 			TAILQ_INSERT_TAIL(&vrele_list, vp, v_freelist);
    674   1.1     rmind 			if (++vrele_pending > (desiredvnodes >> 8))
    675   1.1     rmind 				cv_signal(&vrele_cv);
    676   1.1     rmind 			mutex_exit(&vrele_lock);
    677   1.9     rmind 			mutex_exit(vp->v_interlock);
    678   1.1     rmind 			return;
    679   1.1     rmind 		}
    680   1.1     rmind 
    681  1.32   hannken 		/*
    682  1.32   hannken 		 * If the node got another reference while we
    683  1.32   hannken 		 * released the interlock, don't try to inactivate it yet.
    684  1.32   hannken 		 */
    685  1.32   hannken 		if (__predict_false(vtryrele(vp))) {
    686  1.32   hannken 			VOP_UNLOCK(vp);
    687  1.32   hannken 			if ((flags & VRELEL_CHANGING_SET) != 0) {
    688  1.32   hannken 				KASSERT((vp->v_iflag & VI_CHANGING) != 0);
    689  1.32   hannken 				vp->v_iflag &= ~VI_CHANGING;
    690  1.32   hannken 				cv_broadcast(&vp->v_cv);
    691  1.32   hannken 			}
    692  1.32   hannken 			mutex_exit(vp->v_interlock);
    693  1.32   hannken 			return;
    694  1.32   hannken 		}
    695  1.32   hannken 
    696  1.29  christos 		if ((flags & VRELEL_CHANGING_SET) == 0) {
    697  1.29  christos 			KASSERT((vp->v_iflag & VI_CHANGING) == 0);
    698  1.29  christos 			vp->v_iflag |= VI_CHANGING;
    699  1.29  christos 		}
    700  1.29  christos 		mutex_exit(vp->v_interlock);
    701  1.29  christos 
    702   1.1     rmind 		/*
    703   1.1     rmind 		 * The vnode can gain another reference while being
    704   1.1     rmind 		 * deactivated.  If VOP_INACTIVE() indicates that
    705   1.1     rmind 		 * the described file has been deleted, then recycle
    706   1.1     rmind 		 * the vnode irrespective of additional references.
    707   1.1     rmind 		 * Another thread may be waiting to re-use the on-disk
    708   1.1     rmind 		 * inode.
    709   1.1     rmind 		 *
    710   1.1     rmind 		 * Note that VOP_INACTIVE() will drop the vnode lock.
    711   1.1     rmind 		 */
    712   1.1     rmind 		VOP_INACTIVE(vp, &recycle);
    713   1.9     rmind 		mutex_enter(vp->v_interlock);
    714   1.1     rmind 		if (!recycle) {
    715   1.1     rmind 			if (vtryrele(vp)) {
    716  1.29  christos 				KASSERT((vp->v_iflag & VI_CHANGING) != 0);
    717  1.29  christos 				vp->v_iflag &= ~VI_CHANGING;
    718  1.29  christos 				cv_broadcast(&vp->v_cv);
    719   1.9     rmind 				mutex_exit(vp->v_interlock);
    720   1.1     rmind 				return;
    721   1.1     rmind 			}
    722   1.1     rmind 		}
    723   1.1     rmind 
    724   1.1     rmind 		/* Take care of space accounting. */
    725   1.1     rmind 		if (vp->v_iflag & VI_EXECMAP) {
    726   1.1     rmind 			atomic_add_int(&uvmexp.execpages,
    727   1.1     rmind 			    -vp->v_uobj.uo_npages);
    728   1.1     rmind 			atomic_add_int(&uvmexp.filepages,
    729   1.1     rmind 			    vp->v_uobj.uo_npages);
    730   1.1     rmind 		}
    731   1.1     rmind 		vp->v_iflag &= ~(VI_TEXT|VI_EXECMAP|VI_WRMAP);
    732   1.1     rmind 		vp->v_vflag &= ~VV_MAPPED;
    733   1.1     rmind 
    734   1.1     rmind 		/*
    735   1.1     rmind 		 * Recycle the vnode if the file is now unused (unlinked),
    736   1.1     rmind 		 * otherwise just free it.
    737   1.1     rmind 		 */
    738   1.1     rmind 		if (recycle) {
    739  1.25   hannken 			vclean(vp);
    740   1.1     rmind 		}
    741   1.1     rmind 		KASSERT(vp->v_usecount > 0);
    742  1.29  christos 	} else { /* vnode was already clean */
    743  1.29  christos 		if ((flags & VRELEL_CHANGING_SET) == 0) {
    744  1.29  christos 			KASSERT((vp->v_iflag & VI_CHANGING) == 0);
    745  1.29  christos 			vp->v_iflag |= VI_CHANGING;
    746  1.29  christos 		}
    747   1.1     rmind 	}
    748   1.1     rmind 
    749   1.1     rmind 	if (atomic_dec_uint_nv(&vp->v_usecount) != 0) {
    750   1.1     rmind 		/* Gained another reference while being reclaimed. */
    751  1.29  christos 		KASSERT((vp->v_iflag & VI_CHANGING) != 0);
    752  1.29  christos 		vp->v_iflag &= ~VI_CHANGING;
    753  1.29  christos 		cv_broadcast(&vp->v_cv);
    754   1.9     rmind 		mutex_exit(vp->v_interlock);
    755   1.1     rmind 		return;
    756   1.1     rmind 	}
    757   1.1     rmind 
    758   1.1     rmind 	if ((vp->v_iflag & VI_CLEAN) != 0) {
    759   1.1     rmind 		/*
    760   1.1     rmind 		 * It's clean so destroy it.  It isn't referenced
    761   1.1     rmind 		 * anywhere since it has been reclaimed.
    762   1.1     rmind 		 */
    763   1.1     rmind 		KASSERT(vp->v_holdcnt == 0);
    764   1.1     rmind 		KASSERT(vp->v_writecount == 0);
    765   1.9     rmind 		mutex_exit(vp->v_interlock);
    766   1.1     rmind 		vfs_insmntque(vp, NULL);
    767   1.1     rmind 		if (vp->v_type == VBLK || vp->v_type == VCHR) {
    768   1.1     rmind 			spec_node_destroy(vp);
    769   1.1     rmind 		}
    770   1.1     rmind 		vnfree(vp);
    771   1.1     rmind 	} else {
    772   1.1     rmind 		/*
    773   1.1     rmind 		 * Otherwise, put it back onto the freelist.  It
    774   1.1     rmind 		 * can't be destroyed while still associated with
    775   1.1     rmind 		 * a file system.
    776   1.1     rmind 		 */
    777   1.1     rmind 		mutex_enter(&vnode_free_list_lock);
    778   1.1     rmind 		if (vp->v_holdcnt > 0) {
    779   1.1     rmind 			vp->v_freelisthd = &vnode_hold_list;
    780   1.1     rmind 		} else {
    781   1.1     rmind 			vp->v_freelisthd = &vnode_free_list;
    782   1.1     rmind 		}
    783   1.1     rmind 		TAILQ_INSERT_TAIL(vp->v_freelisthd, vp, v_freelist);
    784   1.1     rmind 		mutex_exit(&vnode_free_list_lock);
    785  1.29  christos 		KASSERT((vp->v_iflag & VI_CHANGING) != 0);
    786  1.29  christos 		vp->v_iflag &= ~VI_CHANGING;
    787  1.29  christos 		cv_broadcast(&vp->v_cv);
    788   1.9     rmind 		mutex_exit(vp->v_interlock);
    789   1.1     rmind 	}
    790   1.1     rmind }
    791   1.1     rmind 
    792   1.1     rmind void
    793   1.1     rmind vrele(vnode_t *vp)
    794   1.1     rmind {
    795   1.1     rmind 
    796   1.1     rmind 	KASSERT((vp->v_iflag & VI_MARKER) == 0);
    797   1.1     rmind 
    798  1.29  christos 	if (vtryrele(vp)) {
    799   1.1     rmind 		return;
    800   1.1     rmind 	}
    801   1.9     rmind 	mutex_enter(vp->v_interlock);
    802   1.1     rmind 	vrelel(vp, 0);
    803   1.1     rmind }
    804   1.1     rmind 
    805   1.1     rmind /*
    806   1.1     rmind  * Asynchronous vnode release, vnode is released in different context.
    807   1.1     rmind  */
    808   1.1     rmind void
    809   1.1     rmind vrele_async(vnode_t *vp)
    810   1.1     rmind {
    811   1.1     rmind 
    812   1.1     rmind 	KASSERT((vp->v_iflag & VI_MARKER) == 0);
    813   1.1     rmind 
    814  1.29  christos 	if (vtryrele(vp)) {
    815   1.1     rmind 		return;
    816   1.1     rmind 	}
    817   1.9     rmind 	mutex_enter(vp->v_interlock);
    818   1.1     rmind 	vrelel(vp, VRELEL_ASYNC_RELE);
    819   1.1     rmind }
    820   1.1     rmind 
    821   1.1     rmind static void
    822   1.1     rmind vrele_thread(void *cookie)
    823   1.1     rmind {
    824  1.34   hannken 	vnodelst_t skip_list;
    825   1.1     rmind 	vnode_t *vp;
    826  1.34   hannken 	struct mount *mp;
    827  1.34   hannken 
    828  1.34   hannken 	TAILQ_INIT(&skip_list);
    829   1.1     rmind 
    830  1.34   hannken 	mutex_enter(&vrele_lock);
    831   1.1     rmind 	for (;;) {
    832   1.1     rmind 		while (TAILQ_EMPTY(&vrele_list)) {
    833   1.1     rmind 			vrele_gen++;
    834   1.1     rmind 			cv_broadcast(&vrele_cv);
    835   1.1     rmind 			cv_timedwait(&vrele_cv, &vrele_lock, hz);
    836  1.34   hannken 			TAILQ_CONCAT(&vrele_list, &skip_list, v_freelist);
    837   1.1     rmind 		}
    838   1.1     rmind 		vp = TAILQ_FIRST(&vrele_list);
    839  1.34   hannken 		mp = vp->v_mount;
    840   1.1     rmind 		TAILQ_REMOVE(&vrele_list, vp, v_freelist);
    841  1.34   hannken 		if (fstrans_start_nowait(mp, FSTRANS_LAZY) != 0) {
    842  1.34   hannken 			TAILQ_INSERT_TAIL(&skip_list, vp, v_freelist);
    843  1.34   hannken 			continue;
    844  1.34   hannken 		}
    845   1.1     rmind 		vrele_pending--;
    846   1.1     rmind 		mutex_exit(&vrele_lock);
    847   1.1     rmind 
    848   1.1     rmind 		/*
    849   1.1     rmind 		 * If not the last reference, then ignore the vnode
    850   1.1     rmind 		 * and look for more work.
    851   1.1     rmind 		 */
    852   1.9     rmind 		mutex_enter(vp->v_interlock);
    853   1.1     rmind 		vrelel(vp, 0);
    854  1.34   hannken 		fstrans_done(mp);
    855  1.34   hannken 		mutex_enter(&vrele_lock);
    856   1.1     rmind 	}
    857   1.1     rmind }
    858   1.1     rmind 
    859   1.2     rmind void
    860   1.2     rmind vrele_flush(void)
    861   1.2     rmind {
    862   1.2     rmind 	int gen;
    863   1.2     rmind 
    864   1.2     rmind 	mutex_enter(&vrele_lock);
    865   1.2     rmind 	gen = vrele_gen;
    866   1.2     rmind 	while (vrele_pending && gen == vrele_gen) {
    867   1.2     rmind 		cv_broadcast(&vrele_cv);
    868   1.2     rmind 		cv_wait(&vrele_cv, &vrele_lock);
    869   1.2     rmind 	}
    870   1.2     rmind 	mutex_exit(&vrele_lock);
    871   1.2     rmind }
    872   1.2     rmind 
    873   1.1     rmind /*
    874   1.1     rmind  * Vnode reference, where a reference is already held by some other
    875   1.1     rmind  * object (for example, a file structure).
    876   1.1     rmind  */
    877   1.1     rmind void
    878   1.1     rmind vref(vnode_t *vp)
    879   1.1     rmind {
    880   1.1     rmind 
    881   1.1     rmind 	KASSERT((vp->v_iflag & VI_MARKER) == 0);
    882   1.1     rmind 	KASSERT(vp->v_usecount != 0);
    883   1.1     rmind 
    884   1.1     rmind 	atomic_inc_uint(&vp->v_usecount);
    885   1.1     rmind }
    886   1.1     rmind 
    887   1.1     rmind /*
    888   1.1     rmind  * Page or buffer structure gets a reference.
    889   1.1     rmind  * Called with v_interlock held.
    890   1.1     rmind  */
    891   1.1     rmind void
    892   1.1     rmind vholdl(vnode_t *vp)
    893   1.1     rmind {
    894   1.1     rmind 
    895   1.9     rmind 	KASSERT(mutex_owned(vp->v_interlock));
    896   1.1     rmind 	KASSERT((vp->v_iflag & VI_MARKER) == 0);
    897   1.1     rmind 
    898   1.1     rmind 	if (vp->v_holdcnt++ == 0 && vp->v_usecount == 0) {
    899   1.1     rmind 		mutex_enter(&vnode_free_list_lock);
    900   1.1     rmind 		KASSERT(vp->v_freelisthd == &vnode_free_list);
    901   1.1     rmind 		TAILQ_REMOVE(vp->v_freelisthd, vp, v_freelist);
    902   1.1     rmind 		vp->v_freelisthd = &vnode_hold_list;
    903   1.1     rmind 		TAILQ_INSERT_TAIL(vp->v_freelisthd, vp, v_freelist);
    904   1.1     rmind 		mutex_exit(&vnode_free_list_lock);
    905   1.1     rmind 	}
    906   1.1     rmind }
    907   1.1     rmind 
    908   1.1     rmind /*
    909   1.1     rmind  * Page or buffer structure frees a reference.
    910   1.1     rmind  * Called with v_interlock held.
    911   1.1     rmind  */
    912   1.1     rmind void
    913   1.1     rmind holdrelel(vnode_t *vp)
    914   1.1     rmind {
    915   1.1     rmind 
    916   1.9     rmind 	KASSERT(mutex_owned(vp->v_interlock));
    917   1.1     rmind 	KASSERT((vp->v_iflag & VI_MARKER) == 0);
    918   1.1     rmind 
    919   1.1     rmind 	if (vp->v_holdcnt <= 0) {
    920  1.11  christos 		vnpanic(vp, "%s: holdcnt vp %p", __func__, vp);
    921   1.1     rmind 	}
    922   1.1     rmind 
    923   1.1     rmind 	vp->v_holdcnt--;
    924   1.1     rmind 	if (vp->v_holdcnt == 0 && vp->v_usecount == 0) {
    925   1.1     rmind 		mutex_enter(&vnode_free_list_lock);
    926   1.1     rmind 		KASSERT(vp->v_freelisthd == &vnode_hold_list);
    927   1.1     rmind 		TAILQ_REMOVE(vp->v_freelisthd, vp, v_freelist);
    928   1.1     rmind 		vp->v_freelisthd = &vnode_free_list;
    929   1.1     rmind 		TAILQ_INSERT_TAIL(vp->v_freelisthd, vp, v_freelist);
    930   1.1     rmind 		mutex_exit(&vnode_free_list_lock);
    931   1.1     rmind 	}
    932   1.1     rmind }
    933   1.1     rmind 
    934   1.1     rmind /*
    935   1.1     rmind  * Disassociate the underlying file system from a vnode.
    936   1.1     rmind  *
    937   1.1     rmind  * Must be called with the interlock held, and will return with it held.
    938   1.1     rmind  */
    939  1.25   hannken static void
    940  1.25   hannken vclean(vnode_t *vp)
    941   1.1     rmind {
    942   1.1     rmind 	lwp_t *l = curlwp;
    943  1.25   hannken 	bool recycle, active, doclose;
    944   1.1     rmind 	int error;
    945   1.1     rmind 
    946   1.9     rmind 	KASSERT(mutex_owned(vp->v_interlock));
    947   1.1     rmind 	KASSERT((vp->v_iflag & VI_MARKER) == 0);
    948   1.1     rmind 	KASSERT(vp->v_usecount != 0);
    949   1.1     rmind 
    950   1.1     rmind 	/* If already clean, nothing to do. */
    951   1.1     rmind 	if ((vp->v_iflag & VI_CLEAN) != 0) {
    952   1.1     rmind 		return;
    953   1.1     rmind 	}
    954   1.1     rmind 
    955  1.32   hannken 	active = (vp->v_usecount > 1);
    956  1.32   hannken 	doclose = ! (active && vp->v_type == VBLK &&
    957  1.32   hannken 	    spec_node_getmountedfs(vp) != NULL);
    958  1.32   hannken 	mutex_exit(vp->v_interlock);
    959  1.32   hannken 
    960  1.32   hannken 	vn_lock(vp, LK_EXCLUSIVE | LK_RETRY);
    961  1.32   hannken 
    962   1.1     rmind 	/*
    963   1.1     rmind 	 * Prevent the vnode from being recycled or brought into use
    964   1.1     rmind 	 * while we clean it out.
    965   1.1     rmind 	 */
    966  1.32   hannken 	mutex_enter(vp->v_interlock);
    967  1.32   hannken 	KASSERT((vp->v_iflag & (VI_XLOCK | VI_CLEAN)) == 0);
    968   1.1     rmind 	vp->v_iflag |= VI_XLOCK;
    969   1.1     rmind 	if (vp->v_iflag & VI_EXECMAP) {
    970   1.1     rmind 		atomic_add_int(&uvmexp.execpages, -vp->v_uobj.uo_npages);
    971   1.1     rmind 		atomic_add_int(&uvmexp.filepages, vp->v_uobj.uo_npages);
    972   1.1     rmind 	}
    973   1.1     rmind 	vp->v_iflag &= ~(VI_TEXT|VI_EXECMAP);
    974   1.9     rmind 	mutex_exit(vp->v_interlock);
    975  1.23   hannken 
    976   1.1     rmind 	/*
    977   1.1     rmind 	 * Clean out any cached data associated with the vnode.
    978   1.1     rmind 	 * If purging an active vnode, it must be closed and
    979   1.1     rmind 	 * deactivated before being reclaimed. Note that the
    980   1.1     rmind 	 * VOP_INACTIVE will unlock the vnode.
    981   1.1     rmind 	 */
    982  1.25   hannken 	if (doclose) {
    983   1.1     rmind 		error = vinvalbuf(vp, V_SAVE, NOCRED, l, 0, 0);
    984   1.1     rmind 		if (error != 0) {
    985   1.1     rmind 			if (wapbl_vphaswapbl(vp))
    986   1.1     rmind 				WAPBL_DISCARD(wapbl_vptomp(vp));
    987   1.1     rmind 			error = vinvalbuf(vp, 0, NOCRED, l, 0, 0);
    988   1.1     rmind 		}
    989   1.1     rmind 		KASSERT(error == 0);
    990   1.1     rmind 		KASSERT((vp->v_iflag & VI_ONWORKLST) == 0);
    991   1.1     rmind 		if (active && (vp->v_type == VBLK || vp->v_type == VCHR)) {
    992   1.1     rmind 			 spec_node_revoke(vp);
    993   1.1     rmind 		}
    994   1.1     rmind 	}
    995   1.1     rmind 	if (active) {
    996   1.1     rmind 		VOP_INACTIVE(vp, &recycle);
    997   1.1     rmind 	} else {
    998   1.1     rmind 		/*
    999   1.1     rmind 		 * Any other processes trying to obtain this lock must first
   1000   1.1     rmind 		 * wait for VI_XLOCK to clear, then call the new lock operation.
   1001   1.1     rmind 		 */
   1002   1.1     rmind 		VOP_UNLOCK(vp);
   1003   1.1     rmind 	}
   1004   1.1     rmind 
   1005   1.1     rmind 	/* Disassociate the underlying file system from the vnode. */
   1006   1.1     rmind 	if (VOP_RECLAIM(vp)) {
   1007  1.11  christos 		vnpanic(vp, "%s: cannot reclaim", __func__);
   1008   1.1     rmind 	}
   1009   1.1     rmind 
   1010   1.7     rmind 	KASSERT(vp->v_data == NULL);
   1011   1.1     rmind 	KASSERT(vp->v_uobj.uo_npages == 0);
   1012   1.7     rmind 
   1013   1.1     rmind 	if (vp->v_type == VREG && vp->v_ractx != NULL) {
   1014   1.1     rmind 		uvm_ra_freectx(vp->v_ractx);
   1015   1.1     rmind 		vp->v_ractx = NULL;
   1016   1.1     rmind 	}
   1017   1.7     rmind 
   1018   1.7     rmind 	/* Purge name cache. */
   1019   1.1     rmind 	cache_purge(vp);
   1020   1.1     rmind 
   1021  1.31   hannken 	/* Move to dead mount. */
   1022  1.31   hannken 	vp->v_vflag &= ~VV_ROOT;
   1023  1.31   hannken 	atomic_inc_uint(&dead_mount->mnt_refcnt);
   1024  1.31   hannken 	vfs_insmntque(vp, dead_mount);
   1025  1.23   hannken 
   1026   1.1     rmind 	/* Done with purge, notify sleepers of the grim news. */
   1027   1.9     rmind 	mutex_enter(vp->v_interlock);
   1028  1.25   hannken 	if (doclose) {
   1029  1.25   hannken 		vp->v_op = dead_vnodeop_p;
   1030  1.25   hannken 		vp->v_vflag |= VV_LOCKSWORK;
   1031  1.25   hannken 		vp->v_iflag |= VI_CLEAN;
   1032  1.25   hannken 	} else {
   1033  1.23   hannken 		vp->v_op = spec_vnodeop_p;
   1034  1.25   hannken 		vp->v_vflag &= ~VV_LOCKSWORK;
   1035  1.23   hannken 	}
   1036   1.1     rmind 	vp->v_tag = VT_NON;
   1037   1.1     rmind 	KNOTE(&vp->v_klist, NOTE_REVOKE);
   1038   1.1     rmind 	vp->v_iflag &= ~VI_XLOCK;
   1039   1.1     rmind 	cv_broadcast(&vp->v_cv);
   1040   1.1     rmind 
   1041   1.1     rmind 	KASSERT((vp->v_iflag & VI_ONWORKLST) == 0);
   1042   1.1     rmind }
   1043   1.1     rmind 
   1044   1.1     rmind /*
   1045  1.33   hannken  * Recycle an unused vnode if caller holds the last reference.
   1046   1.1     rmind  */
   1047  1.33   hannken bool
   1048  1.33   hannken vrecycle(vnode_t *vp)
   1049   1.1     rmind {
   1050   1.1     rmind 
   1051  1.33   hannken 	mutex_enter(vp->v_interlock);
   1052  1.33   hannken 
   1053   1.1     rmind 	KASSERT((vp->v_iflag & VI_MARKER) == 0);
   1054   1.1     rmind 
   1055  1.33   hannken 	if (vp->v_usecount != 1) {
   1056   1.9     rmind 		mutex_exit(vp->v_interlock);
   1057  1.33   hannken 		return false;
   1058   1.1     rmind 	}
   1059  1.33   hannken 	if ((vp->v_iflag & VI_CHANGING) != 0)
   1060  1.33   hannken 		vwait(vp, VI_CHANGING);
   1061  1.33   hannken 	if (vp->v_usecount != 1) {
   1062  1.33   hannken 		mutex_exit(vp->v_interlock);
   1063  1.33   hannken 		return false;
   1064  1.33   hannken 	} else if ((vp->v_iflag & VI_CLEAN) != 0) {
   1065  1.33   hannken 		mutex_exit(vp->v_interlock);
   1066  1.33   hannken 		return true;
   1067   1.1     rmind 	}
   1068  1.29  christos 	vp->v_iflag |= VI_CHANGING;
   1069  1.25   hannken 	vclean(vp);
   1070  1.29  christos 	vrelel(vp, VRELEL_CHANGING_SET);
   1071  1.33   hannken 	return true;
   1072   1.1     rmind }
   1073   1.1     rmind 
   1074   1.1     rmind /*
   1075   1.1     rmind  * Eliminate all activity associated with the requested vnode
   1076   1.1     rmind  * and with all vnodes aliased to the requested vnode.
   1077   1.1     rmind  */
   1078   1.1     rmind void
   1079   1.1     rmind vrevoke(vnode_t *vp)
   1080   1.1     rmind {
   1081  1.19   hannken 	vnode_t *vq;
   1082   1.1     rmind 	enum vtype type;
   1083   1.1     rmind 	dev_t dev;
   1084   1.1     rmind 
   1085   1.1     rmind 	KASSERT(vp->v_usecount > 0);
   1086   1.1     rmind 
   1087   1.9     rmind 	mutex_enter(vp->v_interlock);
   1088   1.1     rmind 	if ((vp->v_iflag & VI_CLEAN) != 0) {
   1089   1.9     rmind 		mutex_exit(vp->v_interlock);
   1090   1.1     rmind 		return;
   1091   1.1     rmind 	} else if (vp->v_type != VBLK && vp->v_type != VCHR) {
   1092   1.1     rmind 		atomic_inc_uint(&vp->v_usecount);
   1093  1.29  christos 		mutex_exit(vp->v_interlock);
   1094  1.29  christos 		vgone(vp);
   1095   1.1     rmind 		return;
   1096   1.1     rmind 	} else {
   1097   1.1     rmind 		dev = vp->v_rdev;
   1098   1.1     rmind 		type = vp->v_type;
   1099   1.9     rmind 		mutex_exit(vp->v_interlock);
   1100   1.1     rmind 	}
   1101   1.1     rmind 
   1102  1.19   hannken 	while (spec_node_lookup_by_dev(type, dev, &vq) == 0) {
   1103  1.29  christos 		vgone(vq);
   1104   1.1     rmind 	}
   1105   1.1     rmind }
   1106   1.1     rmind 
   1107   1.1     rmind /*
   1108   1.1     rmind  * Eliminate all activity associated with a vnode in preparation for
   1109   1.1     rmind  * reuse.  Drops a reference from the vnode.
   1110   1.1     rmind  */
   1111   1.1     rmind void
   1112   1.1     rmind vgone(vnode_t *vp)
   1113   1.1     rmind {
   1114   1.1     rmind 
   1115   1.9     rmind 	mutex_enter(vp->v_interlock);
   1116  1.29  christos 	if ((vp->v_iflag & VI_CHANGING) != 0)
   1117  1.29  christos 		vwait(vp, VI_CHANGING);
   1118  1.29  christos 	vp->v_iflag |= VI_CHANGING;
   1119  1.25   hannken 	vclean(vp);
   1120  1.29  christos 	vrelel(vp, VRELEL_CHANGING_SET);
   1121   1.1     rmind }
   1122   1.1     rmind 
   1123   1.1     rmind /*
   1124   1.1     rmind  * Update outstanding I/O count and do wakeup if requested.
   1125   1.1     rmind  */
   1126   1.1     rmind void
   1127   1.1     rmind vwakeup(struct buf *bp)
   1128   1.1     rmind {
   1129   1.1     rmind 	vnode_t *vp;
   1130   1.1     rmind 
   1131   1.1     rmind 	if ((vp = bp->b_vp) == NULL)
   1132   1.1     rmind 		return;
   1133   1.1     rmind 
   1134   1.9     rmind 	KASSERT(bp->b_objlock == vp->v_interlock);
   1135   1.1     rmind 	KASSERT(mutex_owned(bp->b_objlock));
   1136   1.1     rmind 
   1137   1.1     rmind 	if (--vp->v_numoutput < 0)
   1138  1.11  christos 		vnpanic(vp, "%s: neg numoutput, vp %p", __func__, vp);
   1139   1.1     rmind 	if (vp->v_numoutput == 0)
   1140   1.1     rmind 		cv_broadcast(&vp->v_cv);
   1141   1.1     rmind }
   1142   1.1     rmind 
   1143   1.1     rmind /*
   1144  1.35   hannken  * Test a vnode for being or becoming dead.  Returns one of:
   1145  1.35   hannken  * EBUSY:  vnode is becoming dead, with "flags == VDEAD_NOWAIT" only.
   1146  1.35   hannken  * ENOENT: vnode is dead.
   1147  1.35   hannken  * 0:      otherwise.
   1148  1.35   hannken  *
   1149  1.35   hannken  * Whenever this function returns a non-zero value all future
   1150  1.35   hannken  * calls will also return a non-zero value.
   1151  1.35   hannken  */
   1152  1.35   hannken int
   1153  1.35   hannken vdead_check(struct vnode *vp, int flags)
   1154  1.35   hannken {
   1155  1.35   hannken 
   1156  1.35   hannken 	KASSERT(mutex_owned(vp->v_interlock));
   1157  1.35   hannken 	if (ISSET(vp->v_iflag, VI_XLOCK)) {
   1158  1.35   hannken 		if (ISSET(flags, VDEAD_NOWAIT))
   1159  1.35   hannken 			return EBUSY;
   1160  1.35   hannken 		vwait(vp, VI_XLOCK);
   1161  1.35   hannken 		KASSERT(ISSET(vp->v_iflag, VI_CLEAN));
   1162  1.35   hannken 	}
   1163  1.35   hannken 	if (ISSET(vp->v_iflag, VI_CLEAN))
   1164  1.35   hannken 		return ENOENT;
   1165  1.35   hannken 	return 0;
   1166  1.35   hannken }
   1167  1.35   hannken 
   1168  1.35   hannken /*
   1169   1.1     rmind  * Wait for a vnode (typically with VI_XLOCK set) to be cleaned or
   1170   1.1     rmind  * recycled.
   1171   1.1     rmind  */
   1172  1.35   hannken static void
   1173   1.1     rmind vwait(vnode_t *vp, int flags)
   1174   1.1     rmind {
   1175   1.1     rmind 
   1176   1.9     rmind 	KASSERT(mutex_owned(vp->v_interlock));
   1177   1.1     rmind 	KASSERT(vp->v_usecount != 0);
   1178   1.1     rmind 
   1179   1.1     rmind 	while ((vp->v_iflag & flags) != 0)
   1180   1.9     rmind 		cv_wait(&vp->v_cv, vp->v_interlock);
   1181   1.1     rmind }
   1182   1.1     rmind 
   1183   1.1     rmind int
   1184   1.3     rmind vfs_drainvnodes(long target)
   1185   1.1     rmind {
   1186  1.12   hannken 	int error;
   1187  1.12   hannken 
   1188  1.12   hannken 	mutex_enter(&vnode_free_list_lock);
   1189   1.1     rmind 
   1190   1.1     rmind 	while (numvnodes > target) {
   1191  1.12   hannken 		error = cleanvnode();
   1192  1.12   hannken 		if (error != 0)
   1193  1.12   hannken 			return error;
   1194   1.1     rmind 		mutex_enter(&vnode_free_list_lock);
   1195   1.1     rmind 	}
   1196  1.12   hannken 
   1197  1.12   hannken 	mutex_exit(&vnode_free_list_lock);
   1198  1.12   hannken 
   1199   1.1     rmind 	return 0;
   1200   1.1     rmind }
   1201   1.1     rmind 
   1202   1.1     rmind void
   1203  1.11  christos vnpanic(vnode_t *vp, const char *fmt, ...)
   1204   1.1     rmind {
   1205  1.11  christos 	va_list ap;
   1206  1.11  christos 
   1207   1.1     rmind #ifdef DIAGNOSTIC
   1208   1.1     rmind 	vprint(NULL, vp);
   1209   1.1     rmind #endif
   1210  1.11  christos 	va_start(ap, fmt);
   1211  1.11  christos 	vpanic(fmt, ap);
   1212  1.11  christos 	va_end(ap);
   1213   1.1     rmind }
   1214