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lfs_vnops.c revision 1.263
      1  1.263  dholland /*	$NetBSD: lfs_vnops.c,v 1.263 2014/05/16 09:34:03 dholland Exp $	*/
      2    1.2       cgd 
      3   1.22  perseant /*-
      4   1.84  perseant  * Copyright (c) 1999, 2000, 2001, 2002, 2003 The NetBSD Foundation, Inc.
      5   1.22  perseant  * All rights reserved.
      6   1.22  perseant  *
      7   1.22  perseant  * This code is derived from software contributed to The NetBSD Foundation
      8   1.22  perseant  * by Konrad E. Schroder <perseant (at) hhhh.org>.
      9   1.22  perseant  *
     10   1.22  perseant  * Redistribution and use in source and binary forms, with or without
     11   1.22  perseant  * modification, are permitted provided that the following conditions
     12   1.22  perseant  * are met:
     13   1.22  perseant  * 1. Redistributions of source code must retain the above copyright
     14   1.22  perseant  *    notice, this list of conditions and the following disclaimer.
     15   1.22  perseant  * 2. Redistributions in binary form must reproduce the above copyright
     16   1.22  perseant  *    notice, this list of conditions and the following disclaimer in the
     17   1.22  perseant  *    documentation and/or other materials provided with the distribution.
     18   1.22  perseant  *
     19   1.22  perseant  * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
     20   1.22  perseant  * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
     21   1.22  perseant  * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
     22   1.22  perseant  * PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
     23   1.22  perseant  * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
     24   1.22  perseant  * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
     25   1.22  perseant  * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
     26   1.22  perseant  * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
     27   1.22  perseant  * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
     28   1.22  perseant  * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
     29   1.22  perseant  * POSSIBILITY OF SUCH DAMAGE.
     30   1.22  perseant  */
     31    1.1   mycroft /*
     32   1.15      fvdl  * Copyright (c) 1986, 1989, 1991, 1993, 1995
     33    1.1   mycroft  *	The Regents of the University of California.  All rights reserved.
     34    1.1   mycroft  *
     35    1.1   mycroft  * Redistribution and use in source and binary forms, with or without
     36    1.1   mycroft  * modification, are permitted provided that the following conditions
     37    1.1   mycroft  * are met:
     38    1.1   mycroft  * 1. Redistributions of source code must retain the above copyright
     39    1.1   mycroft  *    notice, this list of conditions and the following disclaimer.
     40    1.1   mycroft  * 2. Redistributions in binary form must reproduce the above copyright
     41    1.1   mycroft  *    notice, this list of conditions and the following disclaimer in the
     42    1.1   mycroft  *    documentation and/or other materials provided with the distribution.
     43  1.114       agc  * 3. Neither the name of the University nor the names of its contributors
     44    1.1   mycroft  *    may be used to endorse or promote products derived from this software
     45    1.1   mycroft  *    without specific prior written permission.
     46    1.1   mycroft  *
     47    1.1   mycroft  * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
     48    1.1   mycroft  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
     49    1.1   mycroft  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
     50    1.1   mycroft  * ARE DISCLAIMED.  IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
     51    1.1   mycroft  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
     52    1.1   mycroft  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
     53    1.1   mycroft  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
     54    1.1   mycroft  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
     55    1.1   mycroft  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
     56    1.1   mycroft  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
     57    1.1   mycroft  * SUCH DAMAGE.
     58    1.1   mycroft  *
     59   1.15      fvdl  *	@(#)lfs_vnops.c	8.13 (Berkeley) 6/10/95
     60    1.1   mycroft  */
     61   1.58     lukem 
     62   1.58     lukem #include <sys/cdefs.h>
     63  1.263  dholland __KERNEL_RCSID(0, "$NetBSD: lfs_vnops.c,v 1.263 2014/05/16 09:34:03 dholland Exp $");
     64  1.182    martin 
     65  1.183    martin #ifdef _KERNEL_OPT
     66  1.182    martin #include "opt_compat_netbsd.h"
     67  1.238       chs #include "opt_uvm_page_trkown.h"
     68  1.183    martin #endif
     69   1.17  sommerfe 
     70    1.1   mycroft #include <sys/param.h>
     71    1.1   mycroft #include <sys/systm.h>
     72    1.1   mycroft #include <sys/namei.h>
     73    1.1   mycroft #include <sys/resourcevar.h>
     74    1.1   mycroft #include <sys/kernel.h>
     75    1.1   mycroft #include <sys/file.h>
     76    1.1   mycroft #include <sys/stat.h>
     77    1.1   mycroft #include <sys/buf.h>
     78    1.1   mycroft #include <sys/proc.h>
     79    1.1   mycroft #include <sys/mount.h>
     80    1.1   mycroft #include <sys/vnode.h>
     81   1.19   thorpej #include <sys/pool.h>
     82   1.10  christos #include <sys/signalvar.h>
     83  1.176      elad #include <sys/kauth.h>
     84  1.179  perseant #include <sys/syslog.h>
     85  1.197   hannken #include <sys/fstrans.h>
     86    1.1   mycroft 
     87   1.12   mycroft #include <miscfs/fifofs/fifo.h>
     88   1.12   mycroft #include <miscfs/genfs/genfs.h>
     89    1.1   mycroft #include <miscfs/specfs/specdev.h>
     90    1.1   mycroft 
     91  1.244  dholland #include <ufs/lfs/ulfs_inode.h>
     92  1.244  dholland #include <ufs/lfs/ulfsmount.h>
     93  1.244  dholland #include <ufs/lfs/ulfs_bswap.h>
     94  1.244  dholland #include <ufs/lfs/ulfs_extern.h>
     95    1.1   mycroft 
     96   1.84  perseant #include <uvm/uvm.h>
     97   1.95  perseant #include <uvm/uvm_pmap.h>
     98   1.95  perseant #include <uvm/uvm_stat.h>
     99   1.95  perseant #include <uvm/uvm_pager.h>
    100   1.84  perseant 
    101    1.1   mycroft #include <ufs/lfs/lfs.h>
    102  1.252  dholland #include <ufs/lfs/lfs_kernel.h>
    103    1.1   mycroft #include <ufs/lfs/lfs_extern.h>
    104    1.1   mycroft 
    105   1.91      yamt extern pid_t lfs_writer_daemon;
    106  1.203  perseant int lfs_ignore_lazy_sync = 1;
    107  1.203  perseant 
    108  1.254  dholland static int lfs_openextattr(void *v);
    109  1.254  dholland static int lfs_closeextattr(void *v);
    110  1.254  dholland static int lfs_getextattr(void *v);
    111  1.254  dholland static int lfs_setextattr(void *v);
    112  1.254  dholland static int lfs_listextattr(void *v);
    113  1.254  dholland static int lfs_deleteextattr(void *v);
    114  1.254  dholland 
    115    1.1   mycroft /* Global vfs data structures for lfs. */
    116   1.51  perseant int (**lfs_vnodeop_p)(void *);
    117   1.50  jdolecek const struct vnodeopv_entry_desc lfs_vnodeop_entries[] = {
    118    1.1   mycroft 	{ &vop_default_desc, vn_default_error },
    119  1.245  dholland 	{ &vop_lookup_desc, ulfs_lookup },		/* lookup */
    120   1.22  perseant 	{ &vop_create_desc, lfs_create },		/* create */
    121  1.245  dholland 	{ &vop_whiteout_desc, ulfs_whiteout },		/* whiteout */
    122   1.22  perseant 	{ &vop_mknod_desc, lfs_mknod },			/* mknod */
    123  1.245  dholland 	{ &vop_open_desc, ulfs_open },			/* open */
    124    1.1   mycroft 	{ &vop_close_desc, lfs_close },			/* close */
    125  1.245  dholland 	{ &vop_access_desc, ulfs_access },		/* access */
    126    1.1   mycroft 	{ &vop_getattr_desc, lfs_getattr },		/* getattr */
    127   1.61  perseant 	{ &vop_setattr_desc, lfs_setattr },		/* setattr */
    128    1.1   mycroft 	{ &vop_read_desc, lfs_read },			/* read */
    129    1.1   mycroft 	{ &vop_write_desc, lfs_write },			/* write */
    130  1.245  dholland 	{ &vop_ioctl_desc, ulfs_ioctl },		/* ioctl */
    131   1.90  perseant 	{ &vop_fcntl_desc, lfs_fcntl },			/* fcntl */
    132  1.245  dholland 	{ &vop_poll_desc, ulfs_poll },			/* poll */
    133   1.68  jdolecek 	{ &vop_kqfilter_desc, genfs_kqfilter },		/* kqfilter */
    134  1.245  dholland 	{ &vop_revoke_desc, ulfs_revoke },		/* revoke */
    135   1.84  perseant 	{ &vop_mmap_desc, lfs_mmap },			/* mmap */
    136    1.1   mycroft 	{ &vop_fsync_desc, lfs_fsync },			/* fsync */
    137  1.245  dholland 	{ &vop_seek_desc, ulfs_seek },			/* seek */
    138   1.22  perseant 	{ &vop_remove_desc, lfs_remove },		/* remove */
    139   1.22  perseant 	{ &vop_link_desc, lfs_link },			/* link */
    140   1.22  perseant 	{ &vop_rename_desc, lfs_rename },		/* rename */
    141   1.22  perseant 	{ &vop_mkdir_desc, lfs_mkdir },			/* mkdir */
    142   1.22  perseant 	{ &vop_rmdir_desc, lfs_rmdir },			/* rmdir */
    143   1.22  perseant 	{ &vop_symlink_desc, lfs_symlink },		/* symlink */
    144  1.245  dholland 	{ &vop_readdir_desc, ulfs_readdir },		/* readdir */
    145  1.245  dholland 	{ &vop_readlink_desc, ulfs_readlink },		/* readlink */
    146  1.245  dholland 	{ &vop_abortop_desc, ulfs_abortop },		/* abortop */
    147   1.40  perseant 	{ &vop_inactive_desc, lfs_inactive },		/* inactive */
    148    1.1   mycroft 	{ &vop_reclaim_desc, lfs_reclaim },		/* reclaim */
    149  1.245  dholland 	{ &vop_lock_desc, ulfs_lock },			/* lock */
    150  1.245  dholland 	{ &vop_unlock_desc, ulfs_unlock },		/* unlock */
    151  1.245  dholland 	{ &vop_bmap_desc, ulfs_bmap },			/* bmap */
    152   1.94  perseant 	{ &vop_strategy_desc, lfs_strategy },		/* strategy */
    153  1.245  dholland 	{ &vop_print_desc, ulfs_print },		/* print */
    154  1.245  dholland 	{ &vop_islocked_desc, ulfs_islocked },		/* islocked */
    155  1.245  dholland 	{ &vop_pathconf_desc, ulfs_pathconf },		/* pathconf */
    156  1.245  dholland 	{ &vop_advlock_desc, ulfs_advlock },		/* advlock */
    157    1.1   mycroft 	{ &vop_bwrite_desc, lfs_bwrite },		/* bwrite */
    158   1.60       chs 	{ &vop_getpages_desc, lfs_getpages },		/* getpages */
    159   1.60       chs 	{ &vop_putpages_desc, lfs_putpages },		/* putpages */
    160  1.254  dholland 	{ &vop_openextattr_desc, lfs_openextattr },	/* openextattr */
    161  1.254  dholland 	{ &vop_closeextattr_desc, lfs_closeextattr },	/* closeextattr */
    162  1.254  dholland 	{ &vop_getextattr_desc, lfs_getextattr },	/* getextattr */
    163  1.254  dholland 	{ &vop_setextattr_desc, lfs_setextattr },	/* setextattr */
    164  1.254  dholland 	{ &vop_listextattr_desc, lfs_listextattr },	/* listextattr */
    165  1.254  dholland 	{ &vop_deleteextattr_desc, lfs_deleteextattr },	/* deleteextattr */
    166   1.53       chs 	{ NULL, NULL }
    167    1.1   mycroft };
    168   1.50  jdolecek const struct vnodeopv_desc lfs_vnodeop_opv_desc =
    169    1.1   mycroft 	{ &lfs_vnodeop_p, lfs_vnodeop_entries };
    170    1.1   mycroft 
    171   1.51  perseant int (**lfs_specop_p)(void *);
    172   1.50  jdolecek const struct vnodeopv_entry_desc lfs_specop_entries[] = {
    173    1.1   mycroft 	{ &vop_default_desc, vn_default_error },
    174    1.1   mycroft 	{ &vop_lookup_desc, spec_lookup },		/* lookup */
    175    1.1   mycroft 	{ &vop_create_desc, spec_create },		/* create */
    176    1.1   mycroft 	{ &vop_mknod_desc, spec_mknod },		/* mknod */
    177    1.1   mycroft 	{ &vop_open_desc, spec_open },			/* open */
    178   1.65  perseant 	{ &vop_close_desc, lfsspec_close },		/* close */
    179  1.245  dholland 	{ &vop_access_desc, ulfs_access },		/* access */
    180    1.1   mycroft 	{ &vop_getattr_desc, lfs_getattr },		/* getattr */
    181   1.61  perseant 	{ &vop_setattr_desc, lfs_setattr },		/* setattr */
    182  1.245  dholland 	{ &vop_read_desc, ulfsspec_read },		/* read */
    183  1.245  dholland 	{ &vop_write_desc, ulfsspec_write },		/* write */
    184    1.1   mycroft 	{ &vop_ioctl_desc, spec_ioctl },		/* ioctl */
    185  1.245  dholland 	{ &vop_fcntl_desc, ulfs_fcntl },		/* fcntl */
    186   1.13   mycroft 	{ &vop_poll_desc, spec_poll },			/* poll */
    187   1.68  jdolecek 	{ &vop_kqfilter_desc, spec_kqfilter },		/* kqfilter */
    188   1.15      fvdl 	{ &vop_revoke_desc, spec_revoke },		/* revoke */
    189    1.1   mycroft 	{ &vop_mmap_desc, spec_mmap },			/* mmap */
    190    1.1   mycroft 	{ &vop_fsync_desc, spec_fsync },		/* fsync */
    191    1.1   mycroft 	{ &vop_seek_desc, spec_seek },			/* seek */
    192    1.1   mycroft 	{ &vop_remove_desc, spec_remove },		/* remove */
    193    1.1   mycroft 	{ &vop_link_desc, spec_link },			/* link */
    194    1.1   mycroft 	{ &vop_rename_desc, spec_rename },		/* rename */
    195    1.1   mycroft 	{ &vop_mkdir_desc, spec_mkdir },		/* mkdir */
    196    1.1   mycroft 	{ &vop_rmdir_desc, spec_rmdir },		/* rmdir */
    197    1.1   mycroft 	{ &vop_symlink_desc, spec_symlink },		/* symlink */
    198    1.1   mycroft 	{ &vop_readdir_desc, spec_readdir },		/* readdir */
    199    1.1   mycroft 	{ &vop_readlink_desc, spec_readlink },		/* readlink */
    200    1.1   mycroft 	{ &vop_abortop_desc, spec_abortop },		/* abortop */
    201   1.40  perseant 	{ &vop_inactive_desc, lfs_inactive },		/* inactive */
    202    1.1   mycroft 	{ &vop_reclaim_desc, lfs_reclaim },		/* reclaim */
    203  1.245  dholland 	{ &vop_lock_desc, ulfs_lock },			/* lock */
    204  1.245  dholland 	{ &vop_unlock_desc, ulfs_unlock },		/* unlock */
    205    1.1   mycroft 	{ &vop_bmap_desc, spec_bmap },			/* bmap */
    206    1.1   mycroft 	{ &vop_strategy_desc, spec_strategy },		/* strategy */
    207  1.245  dholland 	{ &vop_print_desc, ulfs_print },		/* print */
    208  1.245  dholland 	{ &vop_islocked_desc, ulfs_islocked },		/* islocked */
    209    1.1   mycroft 	{ &vop_pathconf_desc, spec_pathconf },		/* pathconf */
    210    1.1   mycroft 	{ &vop_advlock_desc, spec_advlock },		/* advlock */
    211   1.28  perseant 	{ &vop_bwrite_desc, vn_bwrite },		/* bwrite */
    212   1.53       chs 	{ &vop_getpages_desc, spec_getpages },		/* getpages */
    213   1.53       chs 	{ &vop_putpages_desc, spec_putpages },		/* putpages */
    214  1.254  dholland 	{ &vop_openextattr_desc, lfs_openextattr },	/* openextattr */
    215  1.254  dholland 	{ &vop_closeextattr_desc, lfs_closeextattr },	/* closeextattr */
    216  1.254  dholland 	{ &vop_getextattr_desc, lfs_getextattr },	/* getextattr */
    217  1.254  dholland 	{ &vop_setextattr_desc, lfs_setextattr },	/* setextattr */
    218  1.254  dholland 	{ &vop_listextattr_desc, lfs_listextattr },	/* listextattr */
    219  1.254  dholland 	{ &vop_deleteextattr_desc, lfs_deleteextattr },	/* deleteextattr */
    220   1.53       chs 	{ NULL, NULL }
    221    1.1   mycroft };
    222   1.50  jdolecek const struct vnodeopv_desc lfs_specop_opv_desc =
    223    1.1   mycroft 	{ &lfs_specop_p, lfs_specop_entries };
    224    1.1   mycroft 
    225   1.51  perseant int (**lfs_fifoop_p)(void *);
    226   1.50  jdolecek const struct vnodeopv_entry_desc lfs_fifoop_entries[] = {
    227    1.1   mycroft 	{ &vop_default_desc, vn_default_error },
    228  1.227     pooka 	{ &vop_lookup_desc, vn_fifo_bypass },		/* lookup */
    229  1.227     pooka 	{ &vop_create_desc, vn_fifo_bypass },		/* create */
    230  1.227     pooka 	{ &vop_mknod_desc, vn_fifo_bypass },		/* mknod */
    231  1.227     pooka 	{ &vop_open_desc, vn_fifo_bypass },		/* open */
    232   1.65  perseant 	{ &vop_close_desc, lfsfifo_close },		/* close */
    233  1.245  dholland 	{ &vop_access_desc, ulfs_access },		/* access */
    234    1.1   mycroft 	{ &vop_getattr_desc, lfs_getattr },		/* getattr */
    235   1.61  perseant 	{ &vop_setattr_desc, lfs_setattr },		/* setattr */
    236  1.245  dholland 	{ &vop_read_desc, ulfsfifo_read },		/* read */
    237  1.245  dholland 	{ &vop_write_desc, ulfsfifo_write },		/* write */
    238  1.227     pooka 	{ &vop_ioctl_desc, vn_fifo_bypass },		/* ioctl */
    239  1.245  dholland 	{ &vop_fcntl_desc, ulfs_fcntl },		/* fcntl */
    240  1.227     pooka 	{ &vop_poll_desc, vn_fifo_bypass },		/* poll */
    241  1.227     pooka 	{ &vop_kqfilter_desc, vn_fifo_bypass },		/* kqfilter */
    242  1.227     pooka 	{ &vop_revoke_desc, vn_fifo_bypass },		/* revoke */
    243  1.227     pooka 	{ &vop_mmap_desc, vn_fifo_bypass },		/* mmap */
    244  1.227     pooka 	{ &vop_fsync_desc, vn_fifo_bypass },		/* fsync */
    245  1.227     pooka 	{ &vop_seek_desc, vn_fifo_bypass },		/* seek */
    246  1.227     pooka 	{ &vop_remove_desc, vn_fifo_bypass },		/* remove */
    247  1.227     pooka 	{ &vop_link_desc, vn_fifo_bypass },		/* link */
    248  1.227     pooka 	{ &vop_rename_desc, vn_fifo_bypass },		/* rename */
    249  1.227     pooka 	{ &vop_mkdir_desc, vn_fifo_bypass },		/* mkdir */
    250  1.227     pooka 	{ &vop_rmdir_desc, vn_fifo_bypass },		/* rmdir */
    251  1.227     pooka 	{ &vop_symlink_desc, vn_fifo_bypass },		/* symlink */
    252  1.227     pooka 	{ &vop_readdir_desc, vn_fifo_bypass },		/* readdir */
    253  1.227     pooka 	{ &vop_readlink_desc, vn_fifo_bypass },		/* readlink */
    254  1.227     pooka 	{ &vop_abortop_desc, vn_fifo_bypass },		/* abortop */
    255   1.40  perseant 	{ &vop_inactive_desc, lfs_inactive },		/* inactive */
    256    1.1   mycroft 	{ &vop_reclaim_desc, lfs_reclaim },		/* reclaim */
    257  1.245  dholland 	{ &vop_lock_desc, ulfs_lock },			/* lock */
    258  1.245  dholland 	{ &vop_unlock_desc, ulfs_unlock },		/* unlock */
    259  1.227     pooka 	{ &vop_bmap_desc, vn_fifo_bypass },		/* bmap */
    260  1.227     pooka 	{ &vop_strategy_desc, vn_fifo_bypass },		/* strategy */
    261  1.245  dholland 	{ &vop_print_desc, ulfs_print },		/* print */
    262  1.245  dholland 	{ &vop_islocked_desc, ulfs_islocked },		/* islocked */
    263  1.227     pooka 	{ &vop_pathconf_desc, vn_fifo_bypass },		/* pathconf */
    264  1.227     pooka 	{ &vop_advlock_desc, vn_fifo_bypass },		/* advlock */
    265    1.1   mycroft 	{ &vop_bwrite_desc, lfs_bwrite },		/* bwrite */
    266  1.227     pooka 	{ &vop_putpages_desc, vn_fifo_bypass },		/* putpages */
    267  1.254  dholland 	{ &vop_openextattr_desc, lfs_openextattr },	/* openextattr */
    268  1.254  dholland 	{ &vop_closeextattr_desc, lfs_closeextattr },	/* closeextattr */
    269  1.254  dholland 	{ &vop_getextattr_desc, lfs_getextattr },	/* getextattr */
    270  1.254  dholland 	{ &vop_setextattr_desc, lfs_setextattr },	/* setextattr */
    271  1.254  dholland 	{ &vop_listextattr_desc, lfs_listextattr },	/* listextattr */
    272  1.254  dholland 	{ &vop_deleteextattr_desc, lfs_deleteextattr },	/* deleteextattr */
    273   1.53       chs 	{ NULL, NULL }
    274    1.1   mycroft };
    275   1.50  jdolecek const struct vnodeopv_desc lfs_fifoop_opv_desc =
    276    1.1   mycroft 	{ &lfs_fifoop_p, lfs_fifoop_entries };
    277    1.1   mycroft 
    278    1.1   mycroft #define	LFS_READWRITE
    279  1.244  dholland #include <ufs/lfs/ulfs_readwrite.c>
    280    1.1   mycroft #undef	LFS_READWRITE
    281    1.1   mycroft 
    282    1.1   mycroft /*
    283    1.1   mycroft  * Synch an open file.
    284    1.1   mycroft  */
    285    1.1   mycroft /* ARGSUSED */
    286   1.10  christos int
    287   1.51  perseant lfs_fsync(void *v)
    288   1.10  christos {
    289    1.1   mycroft 	struct vop_fsync_args /* {
    290    1.1   mycroft 		struct vnode *a_vp;
    291  1.176      elad 		kauth_cred_t a_cred;
    292   1.22  perseant 		int a_flags;
    293   1.49    toshii 		off_t offlo;
    294   1.49    toshii 		off_t offhi;
    295   1.10  christos 	} */ *ap = v;
    296   1.60       chs 	struct vnode *vp = ap->a_vp;
    297   1.84  perseant 	int error, wait;
    298  1.203  perseant 	struct inode *ip = VTOI(vp);
    299  1.203  perseant 	struct lfs *fs = ip->i_lfs;
    300   1.84  perseant 
    301  1.161  perseant 	/* If we're mounted read-only, don't try to sync. */
    302  1.203  perseant 	if (fs->lfs_ronly)
    303  1.161  perseant 		return 0;
    304  1.161  perseant 
    305  1.231   hannken 	/* If a removed vnode is being cleaned, no need to sync here. */
    306  1.231   hannken 	if ((ap->a_flags & FSYNC_RECLAIM) != 0 && ip->i_mode == 0)
    307  1.231   hannken 		return 0;
    308  1.231   hannken 
    309   1.86  perseant 	/*
    310  1.203  perseant 	 * Trickle sync simply adds this vnode to the pager list, as if
    311  1.203  perseant 	 * the pagedaemon had requested a pageout.
    312   1.86  perseant 	 */
    313   1.84  perseant 	if (ap->a_flags & FSYNC_LAZY) {
    314  1.203  perseant 		if (lfs_ignore_lazy_sync == 0) {
    315  1.214        ad 			mutex_enter(&lfs_lock);
    316  1.203  perseant 			if (!(ip->i_flags & IN_PAGING)) {
    317  1.203  perseant 				ip->i_flags |= IN_PAGING;
    318  1.203  perseant 				TAILQ_INSERT_TAIL(&fs->lfs_pchainhd, ip,
    319  1.203  perseant 						  i_lfs_pchain);
    320  1.203  perseant 			}
    321  1.203  perseant 			wakeup(&lfs_writer_daemon);
    322  1.214        ad 			mutex_exit(&lfs_lock);
    323  1.203  perseant 		}
    324   1.47  perseant 		return 0;
    325   1.84  perseant 	}
    326   1.47  perseant 
    327  1.175  perseant 	/*
    328  1.188  perseant 	 * If a vnode is bring cleaned, flush it out before we try to
    329  1.188  perseant 	 * reuse it.  This prevents the cleaner from writing files twice
    330  1.188  perseant 	 * in the same partial segment, causing an accounting underflow.
    331  1.188  perseant 	 */
    332  1.203  perseant 	if (ap->a_flags & FSYNC_RECLAIM && ip->i_flags & IN_CLEANING) {
    333  1.188  perseant 		lfs_vflush(vp);
    334  1.175  perseant 	}
    335  1.175  perseant 
    336   1.84  perseant 	wait = (ap->a_flags & FSYNC_WAIT);
    337  1.203  perseant 	do {
    338  1.235     rmind 		mutex_enter(vp->v_interlock);
    339  1.203  perseant 		error = VOP_PUTPAGES(vp, trunc_page(ap->a_offlo),
    340  1.203  perseant 				     round_page(ap->a_offhi),
    341  1.203  perseant 				     PGO_CLEANIT | (wait ? PGO_SYNCIO : 0));
    342  1.205  perseant 		if (error == EAGAIN) {
    343  1.214        ad 			mutex_enter(&lfs_lock);
    344  1.214        ad 			mtsleep(&fs->lfs_avail, PCATCH | PUSER, "lfs_fsync",
    345  1.214        ad 				hz / 100 + 1, &lfs_lock);
    346  1.214        ad 			mutex_exit(&lfs_lock);
    347  1.205  perseant 		}
    348  1.203  perseant 	} while (error == EAGAIN);
    349  1.103  perseant 	if (error)
    350  1.103  perseant 		return error;
    351  1.203  perseant 
    352  1.203  perseant 	if ((ap->a_flags & FSYNC_DATAONLY) == 0)
    353  1.203  perseant 		error = lfs_update(vp, NULL, NULL, wait ? UPDATE_WAIT : 0);
    354  1.203  perseant 
    355  1.133  wrstuden 	if (error == 0 && ap->a_flags & FSYNC_CACHE) {
    356  1.133  wrstuden 		int l = 0;
    357  1.203  perseant 		error = VOP_IOCTL(ip->i_devvp, DIOCCACHESYNC, &l, FWRITE,
    358  1.213     pooka 				  curlwp->l_cred);
    359  1.133  wrstuden 	}
    360  1.103  perseant 	if (wait && !VPISEMPTY(vp))
    361  1.203  perseant 		LFS_SET_UINO(ip, IN_MODIFIED);
    362   1.84  perseant 
    363   1.63  perseant 	return error;
    364    1.1   mycroft }
    365    1.1   mycroft 
    366    1.1   mycroft /*
    367  1.245  dholland  * Take IN_ADIROP off, then call ulfs_inactive.
    368   1.40  perseant  */
    369   1.40  perseant int
    370   1.51  perseant lfs_inactive(void *v)
    371   1.40  perseant {
    372   1.40  perseant 	struct vop_inactive_args /* {
    373   1.40  perseant 		struct vnode *a_vp;
    374   1.40  perseant 	} */ *ap = v;
    375   1.72      yamt 
    376   1.76      yamt 	lfs_unmark_vnode(ap->a_vp);
    377   1.76      yamt 
    378   1.97  perseant 	/*
    379   1.97  perseant 	 * The Ifile is only ever inactivated on unmount.
    380   1.97  perseant 	 * Streamline this process by not giving it more dirty blocks.
    381   1.97  perseant 	 */
    382   1.97  perseant 	if (VTOI(ap->a_vp)->i_number == LFS_IFILE_INUM) {
    383  1.214        ad 		mutex_enter(&lfs_lock);
    384   1.97  perseant 		LFS_CLR_UINO(VTOI(ap->a_vp), IN_ALLMOD);
    385  1.214        ad 		mutex_exit(&lfs_lock);
    386  1.229   hannken 		VOP_UNLOCK(ap->a_vp);
    387   1.97  perseant 		return 0;
    388   1.97  perseant 	}
    389   1.97  perseant 
    390  1.239  perseant #ifdef DEBUG
    391  1.239  perseant 	/*
    392  1.239  perseant 	 * This might happen on unmount.
    393  1.239  perseant 	 * XXX If it happens at any other time, it should be a panic.
    394  1.239  perseant 	 */
    395  1.239  perseant 	if (ap->a_vp->v_uflag & VU_DIROP) {
    396  1.239  perseant 		struct inode *ip = VTOI(ap->a_vp);
    397  1.239  perseant 		printf("lfs_inactive: inactivating VU_DIROP? ino = %d\n", (int)ip->i_number);
    398  1.239  perseant 	}
    399  1.239  perseant #endif /* DIAGNOSTIC */
    400  1.239  perseant 
    401  1.245  dholland 	return ulfs_inactive(v);
    402   1.40  perseant }
    403   1.40  perseant 
    404  1.249  dholland int
    405  1.138  perseant lfs_set_dirop(struct vnode *dvp, struct vnode *vp)
    406   1.40  perseant {
    407   1.24  perseant 	struct lfs *fs;
    408   1.24  perseant 	int error;
    409   1.24  perseant 
    410  1.138  perseant 	KASSERT(VOP_ISLOCKED(dvp));
    411  1.138  perseant 	KASSERT(vp == NULL || VOP_ISLOCKED(vp));
    412   1.71      yamt 
    413  1.138  perseant 	fs = VTOI(dvp)->i_lfs;
    414  1.141  perseant 
    415  1.141  perseant 	ASSERT_NO_SEGLOCK(fs);
    416   1.44  perseant 	/*
    417  1.134  perseant 	 * LFS_NRESERVE calculates direct and indirect blocks as well
    418  1.134  perseant 	 * as an inode block; an overestimate in most cases.
    419   1.44  perseant 	 */
    420  1.138  perseant 	if ((error = lfs_reserve(fs, dvp, vp, LFS_NRESERVE(fs))) != 0)
    421   1.44  perseant 		return (error);
    422   1.70      yamt 
    423  1.214        ad     restart:
    424  1.214        ad 	mutex_enter(&lfs_lock);
    425  1.141  perseant 	if (fs->lfs_dirops == 0) {
    426  1.214        ad 		mutex_exit(&lfs_lock);
    427  1.138  perseant 		lfs_check(dvp, LFS_UNUSED_LBN, 0);
    428  1.214        ad 		mutex_enter(&lfs_lock);
    429  1.113      yamt 	}
    430  1.190  perseant 	while (fs->lfs_writer) {
    431  1.214        ad 		error = mtsleep(&fs->lfs_dirops, (PRIBIO + 1) | PCATCH,
    432  1.214        ad 		    "lfs_sdirop", 0, &lfs_lock);
    433  1.190  perseant 		if (error == EINTR) {
    434  1.214        ad 			mutex_exit(&lfs_lock);
    435  1.190  perseant 			goto unreserve;
    436  1.190  perseant 		}
    437  1.190  perseant 	}
    438  1.113      yamt 	if (lfs_dirvcount > LFS_MAX_DIROP && fs->lfs_dirops == 0) {
    439  1.113      yamt 		wakeup(&lfs_writer_daemon);
    440  1.214        ad 		mutex_exit(&lfs_lock);
    441  1.198        ad 		preempt();
    442  1.113      yamt 		goto restart;
    443  1.113      yamt 	}
    444   1.33  perseant 
    445  1.113      yamt 	if (lfs_dirvcount > LFS_MAX_DIROP) {
    446  1.136  perseant 		DLOG((DLOG_DIROP, "lfs_set_dirop: sleeping with dirops=%d, "
    447  1.136  perseant 		      "dirvcount=%d\n", fs->lfs_dirops, lfs_dirvcount));
    448  1.214        ad 		if ((error = mtsleep(&lfs_dirvcount,
    449  1.214        ad 		    PCATCH | PUSER | PNORELOCK, "lfs_maxdirop", 0,
    450  1.214        ad 		    &lfs_lock)) != 0) {
    451  1.113      yamt 			goto unreserve;
    452  1.113      yamt 		}
    453  1.113      yamt 		goto restart;
    454  1.135     perry 	}
    455  1.113      yamt 
    456  1.135     perry 	++fs->lfs_dirops;
    457  1.239  perseant 	/* fs->lfs_doifile = 1; */ /* XXX why? --ks */
    458  1.214        ad 	mutex_exit(&lfs_lock);
    459   1.24  perseant 
    460   1.46  perseant 	/* Hold a reference so SET_ENDOP will be happy */
    461  1.138  perseant 	vref(dvp);
    462  1.138  perseant 	if (vp) {
    463  1.138  perseant 		vref(vp);
    464  1.138  perseant 		MARK_VNODE(vp);
    465  1.138  perseant 	}
    466   1.46  perseant 
    467  1.138  perseant 	MARK_VNODE(dvp);
    468   1.24  perseant 	return 0;
    469   1.70      yamt 
    470  1.203  perseant   unreserve:
    471  1.138  perseant 	lfs_reserve(fs, dvp, vp, -LFS_NRESERVE(fs));
    472   1.70      yamt 	return error;
    473    1.1   mycroft }
    474    1.1   mycroft 
    475  1.138  perseant /*
    476  1.138  perseant  * Get a new vnode *before* adjusting the dirop count, to avoid a deadlock
    477  1.138  perseant  * in getnewvnode(), if we have a stacked filesystem mounted on top
    478  1.138  perseant  * of us.
    479  1.138  perseant  *
    480  1.138  perseant  * NB: this means we have to clear the new vnodes on error.  Fortunately
    481  1.138  perseant  * SET_ENDOP is there to do that for us.
    482  1.138  perseant  */
    483  1.249  dholland int
    484  1.138  perseant lfs_set_dirop_create(struct vnode *dvp, struct vnode **vpp)
    485  1.138  perseant {
    486  1.138  perseant 	int error;
    487  1.138  perseant 	struct lfs *fs;
    488  1.138  perseant 
    489  1.245  dholland 	fs = VFSTOULFS(dvp->v_mount)->um_lfs;
    490  1.141  perseant 	ASSERT_NO_SEGLOCK(fs);
    491  1.138  perseant 	if (fs->lfs_ronly)
    492  1.138  perseant 		return EROFS;
    493  1.235     rmind 	if (vpp == NULL) {
    494  1.235     rmind 		return lfs_set_dirop(dvp, NULL);
    495  1.235     rmind 	}
    496  1.235     rmind 	error = getnewvnode(VT_LFS, dvp->v_mount, lfs_vnodeop_p, NULL, vpp);
    497  1.235     rmind 	if (error) {
    498  1.138  perseant 		DLOG((DLOG_ALLOC, "lfs_set_dirop_create: dvp %p error %d\n",
    499  1.138  perseant 		      dvp, error));
    500  1.138  perseant 		return error;
    501  1.138  perseant 	}
    502  1.138  perseant 	if ((error = lfs_set_dirop(dvp, NULL)) != 0) {
    503  1.235     rmind 		ungetnewvnode(*vpp);
    504  1.235     rmind 		*vpp = NULL;
    505  1.138  perseant 		return error;
    506  1.138  perseant 	}
    507  1.138  perseant 	return 0;
    508    1.1   mycroft }
    509    1.1   mycroft 
    510  1.117      yamt void
    511  1.117      yamt lfs_mark_vnode(struct vnode *vp)
    512  1.117      yamt {
    513  1.117      yamt 	struct inode *ip = VTOI(vp);
    514  1.117      yamt 	struct lfs *fs = ip->i_lfs;
    515   1.37  perseant 
    516  1.214        ad 	mutex_enter(&lfs_lock);
    517  1.117      yamt 	if (!(ip->i_flag & IN_ADIROP)) {
    518  1.212        ad 		if (!(vp->v_uflag & VU_DIROP)) {
    519  1.240  perseant 			mutex_exit(&lfs_lock);
    520  1.235     rmind 			mutex_enter(vp->v_interlock);
    521  1.239  perseant 			if (lfs_vref(vp) != 0)
    522  1.239  perseant 				panic("lfs_mark_vnode: could not vref");
    523  1.240  perseant 			mutex_enter(&lfs_lock);
    524  1.117      yamt 			++lfs_dirvcount;
    525  1.173  perseant 			++fs->lfs_dirvcount;
    526  1.117      yamt 			TAILQ_INSERT_TAIL(&fs->lfs_dchainhd, ip, i_lfs_dchain);
    527  1.212        ad 			vp->v_uflag |= VU_DIROP;
    528  1.117      yamt 		}
    529  1.117      yamt 		++fs->lfs_nadirop;
    530  1.239  perseant 		ip->i_flag &= ~IN_CDIROP;
    531  1.117      yamt 		ip->i_flag |= IN_ADIROP;
    532  1.117      yamt 	} else
    533  1.212        ad 		KASSERT(vp->v_uflag & VU_DIROP);
    534  1.214        ad 	mutex_exit(&lfs_lock);
    535  1.117      yamt }
    536   1.40  perseant 
    537  1.117      yamt void
    538  1.117      yamt lfs_unmark_vnode(struct vnode *vp)
    539   1.40  perseant {
    540  1.117      yamt 	struct inode *ip = VTOI(vp);
    541   1.40  perseant 
    542  1.240  perseant 	mutex_enter(&lfs_lock);
    543  1.146  perseant 	if (ip && (ip->i_flag & IN_ADIROP)) {
    544  1.212        ad 		KASSERT(vp->v_uflag & VU_DIROP);
    545   1.40  perseant 		--ip->i_lfs->lfs_nadirop;
    546  1.117      yamt 		ip->i_flag &= ~IN_ADIROP;
    547  1.117      yamt 	}
    548  1.240  perseant 	mutex_exit(&lfs_lock);
    549   1.40  perseant }
    550   1.15      fvdl 
    551    1.1   mycroft int
    552   1.51  perseant lfs_symlink(void *v)
    553   1.10  christos {
    554  1.261   hannken 	struct vop_symlink_v3_args /* {
    555    1.1   mycroft 		struct vnode *a_dvp;
    556    1.1   mycroft 		struct vnode **a_vpp;
    557    1.1   mycroft 		struct componentname *a_cnp;
    558    1.1   mycroft 		struct vattr *a_vap;
    559    1.1   mycroft 		char *a_target;
    560   1.10  christos 	} */ *ap = v;
    561   1.37  perseant 	int error;
    562    1.1   mycroft 
    563  1.138  perseant 	if ((error = SET_DIROP_CREATE(ap->a_dvp, ap->a_vpp)) != 0) {
    564   1.37  perseant 		return error;
    565   1.34  perseant 	}
    566  1.245  dholland 	error = ulfs_symlink(ap);
    567  1.138  perseant 	SET_ENDOP_CREATE_AP(ap, "symlink");
    568   1.37  perseant 	return (error);
    569    1.1   mycroft }
    570    1.1   mycroft 
    571    1.1   mycroft int
    572   1.51  perseant lfs_mknod(void *v)
    573   1.10  christos {
    574  1.261   hannken 	struct vop_mknod_v3_args	/* {
    575    1.1   mycroft 		struct vnode *a_dvp;
    576    1.1   mycroft 		struct vnode **a_vpp;
    577    1.1   mycroft 		struct componentname *a_cnp;
    578    1.1   mycroft 		struct vattr *a_vap;
    579  1.203  perseant 	} */ *ap = v;
    580  1.250  dholland 	struct vattr *vap;
    581  1.250  dholland 	struct vnode **vpp;
    582   1.86  perseant 	struct inode *ip;
    583   1.86  perseant 	int error;
    584  1.135     perry 	struct mount	*mp;
    585   1.52     assar 	ino_t		ino;
    586  1.245  dholland 	struct ulfs_lookup_results *ulr;
    587  1.237  dholland 
    588  1.250  dholland 	vap = ap->a_vap;
    589  1.250  dholland 	vpp = ap->a_vpp;
    590  1.250  dholland 
    591  1.237  dholland 	/* XXX should handle this material another way */
    592  1.237  dholland 	ulr = &VTOI(ap->a_dvp)->i_crap;
    593  1.245  dholland 	ULFS_CHECK_CRAPCOUNTER(VTOI(ap->a_dvp));
    594    1.1   mycroft 
    595  1.138  perseant 	if ((error = SET_DIROP_CREATE(ap->a_dvp, ap->a_vpp)) != 0) {
    596   1.28  perseant 		return error;
    597   1.34  perseant 	}
    598  1.250  dholland 
    599  1.250  dholland 	fstrans_start(ap->a_dvp->v_mount, FSTRANS_SHARED);
    600  1.245  dholland 	error = ulfs_makeinode(MAKEIMODE(vap->va_type, vap->va_mode),
    601  1.237  dholland 			      ap->a_dvp, ulr, vpp, ap->a_cnp);
    602   1.28  perseant 
    603   1.28  perseant 	/* Either way we're done with the dirop at this point */
    604  1.138  perseant 	SET_ENDOP_CREATE_AP(ap, "mknod");
    605   1.28  perseant 
    606  1.250  dholland 	if (error) {
    607  1.250  dholland 		fstrans_done(ap->a_dvp->v_mount);
    608  1.250  dholland 		*vpp = NULL;
    609   1.28  perseant 		return (error);
    610  1.250  dholland 	}
    611   1.28  perseant 
    612  1.250  dholland 	VN_KNOTE(ap->a_dvp, NOTE_WRITE);
    613   1.86  perseant 	ip = VTOI(*vpp);
    614   1.52     assar 	mp  = (*vpp)->v_mount;
    615   1.52     assar 	ino = ip->i_number;
    616   1.86  perseant 	ip->i_flag |= IN_ACCESS | IN_CHANGE | IN_UPDATE;
    617   1.86  perseant 	if (vap->va_rdev != VNOVAL) {
    618  1.250  dholland 		struct ulfsmount *ump = ip->i_ump;
    619  1.256  dholland 		struct lfs *fs = ip->i_lfs;
    620   1.86  perseant 		/*
    621   1.86  perseant 		 * Want to be able to use this to make badblock
    622   1.86  perseant 		 * inodes, so don't truncate the dev number.
    623   1.86  perseant 		 */
    624  1.250  dholland 		if (ump->um_fstype == ULFS1)
    625  1.250  dholland 			ip->i_ffs1_rdev = ulfs_rw32(vap->va_rdev,
    626  1.253  dholland 			    ULFS_MPNEEDSWAP(fs));
    627  1.250  dholland 		else
    628  1.250  dholland 			ip->i_ffs2_rdev = ulfs_rw64(vap->va_rdev,
    629  1.253  dholland 			    ULFS_MPNEEDSWAP(fs));
    630   1.86  perseant 	}
    631  1.134  perseant 
    632   1.28  perseant 	/*
    633   1.28  perseant 	 * Call fsync to write the vnode so that we don't have to deal with
    634  1.262   hannken 	 * flushing it when it's marked VU_DIROP or reclaiming.
    635   1.28  perseant 	 *
    636   1.28  perseant 	 * XXX KS - If we can't flush we also can't call vgone(), so must
    637   1.28  perseant 	 * return.  But, that leaves this vnode in limbo, also not good.
    638   1.28  perseant 	 * Can this ever happen (barring hardware failure)?
    639   1.28  perseant 	 */
    640  1.213     pooka 	if ((error = VOP_FSYNC(*vpp, NOCRED, FSYNC_WAIT, 0, 0)) != 0) {
    641  1.153  christos 		panic("lfs_mknod: couldn't fsync (ino %llu)",
    642  1.203  perseant 		      (unsigned long long)ino);
    643  1.136  perseant 		/* return (error); */
    644   1.40  perseant 	}
    645   1.86  perseant 	/*
    646   1.86  perseant 	 * Remove vnode so that it will be reloaded by VFS_VGET and
    647   1.86  perseant 	 * checked to see if it is an alias of an existing entry in
    648   1.86  perseant 	 * the inode cache.
    649   1.86  perseant 	 */
    650   1.28  perseant 	/* Used to be vput, but that causes us to call VOP_INACTIVE twice. */
    651  1.134  perseant 
    652  1.250  dholland 	(*vpp)->v_type = VNON;
    653  1.229   hannken 	VOP_UNLOCK(*vpp);
    654   1.86  perseant 	vgone(*vpp);
    655  1.108   thorpej 	error = VFS_VGET(mp, ino, vpp);
    656  1.134  perseant 
    657  1.250  dholland 	fstrans_done(ap->a_dvp->v_mount);
    658   1.52     assar 	if (error != 0) {
    659   1.52     assar 		*vpp = NULL;
    660   1.52     assar 		return (error);
    661   1.52     assar 	}
    662  1.261   hannken 	VOP_UNLOCK(*vpp);
    663   1.86  perseant 	return (0);
    664    1.1   mycroft }
    665    1.1   mycroft 
    666    1.1   mycroft int
    667   1.51  perseant lfs_create(void *v)
    668   1.10  christos {
    669  1.261   hannken 	struct vop_create_v3_args	/* {
    670    1.1   mycroft 		struct vnode *a_dvp;
    671    1.1   mycroft 		struct vnode **a_vpp;
    672    1.1   mycroft 		struct componentname *a_cnp;
    673    1.1   mycroft 		struct vattr *a_vap;
    674   1.10  christos 	} */ *ap = v;
    675   1.37  perseant 	int error;
    676    1.1   mycroft 
    677  1.138  perseant 	if ((error = SET_DIROP_CREATE(ap->a_dvp, ap->a_vpp)) != 0) {
    678   1.37  perseant 		return error;
    679   1.34  perseant 	}
    680  1.245  dholland 	error = ulfs_create(ap);
    681  1.138  perseant 	SET_ENDOP_CREATE_AP(ap, "create");
    682   1.37  perseant 	return (error);
    683   1.22  perseant }
    684   1.22  perseant 
    685   1.22  perseant int
    686   1.51  perseant lfs_mkdir(void *v)
    687   1.10  christos {
    688  1.261   hannken 	struct vop_mkdir_v3_args	/* {
    689    1.1   mycroft 		struct vnode *a_dvp;
    690    1.1   mycroft 		struct vnode **a_vpp;
    691    1.1   mycroft 		struct componentname *a_cnp;
    692    1.1   mycroft 		struct vattr *a_vap;
    693   1.10  christos 	} */ *ap = v;
    694   1.37  perseant 	int error;
    695    1.1   mycroft 
    696  1.138  perseant 	if ((error = SET_DIROP_CREATE(ap->a_dvp, ap->a_vpp)) != 0) {
    697   1.37  perseant 		return error;
    698   1.34  perseant 	}
    699  1.245  dholland 	error = ulfs_mkdir(ap);
    700  1.138  perseant 	SET_ENDOP_CREATE_AP(ap, "mkdir");
    701   1.37  perseant 	return (error);
    702    1.1   mycroft }
    703    1.1   mycroft 
    704    1.1   mycroft int
    705   1.51  perseant lfs_remove(void *v)
    706   1.10  christos {
    707   1.22  perseant 	struct vop_remove_args	/* {
    708    1.1   mycroft 		struct vnode *a_dvp;
    709    1.1   mycroft 		struct vnode *a_vp;
    710    1.1   mycroft 		struct componentname *a_cnp;
    711   1.10  christos 	} */ *ap = v;
    712   1.34  perseant 	struct vnode *dvp, *vp;
    713  1.188  perseant 	struct inode *ip;
    714   1.37  perseant 	int error;
    715   1.34  perseant 
    716   1.34  perseant 	dvp = ap->a_dvp;
    717   1.34  perseant 	vp = ap->a_vp;
    718  1.188  perseant 	ip = VTOI(vp);
    719  1.138  perseant 	if ((error = SET_DIROP_REMOVE(dvp, vp)) != 0) {
    720   1.34  perseant 		if (dvp == vp)
    721   1.34  perseant 			vrele(vp);
    722   1.34  perseant 		else
    723   1.34  perseant 			vput(vp);
    724   1.34  perseant 		vput(dvp);
    725   1.37  perseant 		return error;
    726   1.34  perseant 	}
    727  1.245  dholland 	error = ulfs_remove(ap);
    728  1.188  perseant 	if (ip->i_nlink == 0)
    729  1.188  perseant 		lfs_orphan(ip->i_lfs, ip->i_number);
    730  1.188  perseant 	SET_ENDOP_REMOVE(ip->i_lfs, dvp, ap->a_vp, "remove");
    731   1.37  perseant 	return (error);
    732    1.1   mycroft }
    733    1.1   mycroft 
    734    1.1   mycroft int
    735   1.51  perseant lfs_rmdir(void *v)
    736   1.10  christos {
    737   1.22  perseant 	struct vop_rmdir_args	/* {
    738    1.1   mycroft 		struct vnodeop_desc *a_desc;
    739    1.1   mycroft 		struct vnode *a_dvp;
    740    1.1   mycroft 		struct vnode *a_vp;
    741    1.1   mycroft 		struct componentname *a_cnp;
    742   1.10  christos 	} */ *ap = v;
    743   1.84  perseant 	struct vnode *vp;
    744  1.188  perseant 	struct inode *ip;
    745   1.37  perseant 	int error;
    746    1.1   mycroft 
    747   1.84  perseant 	vp = ap->a_vp;
    748  1.188  perseant 	ip = VTOI(vp);
    749  1.138  perseant 	if ((error = SET_DIROP_REMOVE(ap->a_dvp, ap->a_vp)) != 0) {
    750  1.194       chs 		if (ap->a_dvp == vp)
    751  1.194       chs 			vrele(ap->a_dvp);
    752  1.194       chs 		else
    753  1.194       chs 			vput(ap->a_dvp);
    754   1.84  perseant 		vput(vp);
    755   1.37  perseant 		return error;
    756   1.34  perseant 	}
    757  1.245  dholland 	error = ulfs_rmdir(ap);
    758  1.188  perseant 	if (ip->i_nlink == 0)
    759  1.188  perseant 		lfs_orphan(ip->i_lfs, ip->i_number);
    760  1.188  perseant 	SET_ENDOP_REMOVE(ip->i_lfs, ap->a_dvp, ap->a_vp, "rmdir");
    761   1.37  perseant 	return (error);
    762    1.1   mycroft }
    763    1.1   mycroft 
    764    1.1   mycroft int
    765   1.51  perseant lfs_link(void *v)
    766   1.10  christos {
    767   1.22  perseant 	struct vop_link_args	/* {
    768    1.9   mycroft 		struct vnode *a_dvp;
    769    1.1   mycroft 		struct vnode *a_vp;
    770    1.1   mycroft 		struct componentname *a_cnp;
    771   1.10  christos 	} */ *ap = v;
    772   1.37  perseant 	int error;
    773  1.138  perseant 	struct vnode **vpp = NULL;
    774    1.1   mycroft 
    775  1.138  perseant 	if ((error = SET_DIROP_CREATE(ap->a_dvp, vpp)) != 0) {
    776   1.34  perseant 		vput(ap->a_dvp);
    777   1.37  perseant 		return error;
    778   1.34  perseant 	}
    779  1.245  dholland 	error = ulfs_link(ap);
    780  1.138  perseant 	SET_ENDOP_CREATE(VTOI(ap->a_dvp)->i_lfs, ap->a_dvp, vpp, "link");
    781   1.37  perseant 	return (error);
    782    1.1   mycroft }
    783   1.22  perseant 
    784    1.1   mycroft /* XXX hack to avoid calling ITIMES in getattr */
    785    1.1   mycroft int
    786   1.51  perseant lfs_getattr(void *v)
    787   1.10  christos {
    788    1.1   mycroft 	struct vop_getattr_args /* {
    789    1.1   mycroft 		struct vnode *a_vp;
    790    1.1   mycroft 		struct vattr *a_vap;
    791  1.176      elad 		kauth_cred_t a_cred;
    792   1.10  christos 	} */ *ap = v;
    793   1.35  augustss 	struct vnode *vp = ap->a_vp;
    794   1.35  augustss 	struct inode *ip = VTOI(vp);
    795   1.35  augustss 	struct vattr *vap = ap->a_vap;
    796   1.51  perseant 	struct lfs *fs = ip->i_lfs;
    797  1.251  dholland 
    798  1.251  dholland 	fstrans_start(vp->v_mount, FSTRANS_SHARED);
    799    1.1   mycroft 	/*
    800    1.1   mycroft 	 * Copy from inode table
    801    1.1   mycroft 	 */
    802    1.1   mycroft 	vap->va_fsid = ip->i_dev;
    803    1.1   mycroft 	vap->va_fileid = ip->i_number;
    804  1.246  dholland 	vap->va_mode = ip->i_mode & ~LFS_IFMT;
    805  1.102      fvdl 	vap->va_nlink = ip->i_nlink;
    806  1.102      fvdl 	vap->va_uid = ip->i_uid;
    807  1.102      fvdl 	vap->va_gid = ip->i_gid;
    808  1.102      fvdl 	vap->va_rdev = (dev_t)ip->i_ffs1_rdev;
    809   1.55       chs 	vap->va_size = vp->v_size;
    810  1.102      fvdl 	vap->va_atime.tv_sec = ip->i_ffs1_atime;
    811  1.102      fvdl 	vap->va_atime.tv_nsec = ip->i_ffs1_atimensec;
    812  1.102      fvdl 	vap->va_mtime.tv_sec = ip->i_ffs1_mtime;
    813  1.102      fvdl 	vap->va_mtime.tv_nsec = ip->i_ffs1_mtimensec;
    814  1.102      fvdl 	vap->va_ctime.tv_sec = ip->i_ffs1_ctime;
    815  1.102      fvdl 	vap->va_ctime.tv_nsec = ip->i_ffs1_ctimensec;
    816  1.102      fvdl 	vap->va_flags = ip->i_flags;
    817  1.102      fvdl 	vap->va_gen = ip->i_gen;
    818    1.1   mycroft 	/* this doesn't belong here */
    819    1.1   mycroft 	if (vp->v_type == VBLK)
    820    1.1   mycroft 		vap->va_blocksize = BLKDEV_IOSIZE;
    821    1.1   mycroft 	else if (vp->v_type == VCHR)
    822    1.1   mycroft 		vap->va_blocksize = MAXBSIZE;
    823    1.1   mycroft 	else
    824    1.1   mycroft 		vap->va_blocksize = vp->v_mount->mnt_stat.f_iosize;
    825  1.248  christos 	vap->va_bytes = lfs_fsbtob(fs, (u_quad_t)ip->i_lfs_effnblks);
    826    1.1   mycroft 	vap->va_type = vp->v_type;
    827    1.1   mycroft 	vap->va_filerev = ip->i_modrev;
    828  1.251  dholland 	fstrans_done(vp->v_mount);
    829    1.1   mycroft 	return (0);
    830   1.61  perseant }
    831   1.61  perseant 
    832   1.61  perseant /*
    833   1.61  perseant  * Check to make sure the inode blocks won't choke the buffer
    834  1.245  dholland  * cache, then call ulfs_setattr as usual.
    835   1.61  perseant  */
    836   1.61  perseant int
    837   1.61  perseant lfs_setattr(void *v)
    838   1.61  perseant {
    839  1.149     skrll 	struct vop_setattr_args /* {
    840   1.61  perseant 		struct vnode *a_vp;
    841   1.61  perseant 		struct vattr *a_vap;
    842  1.176      elad 		kauth_cred_t a_cred;
    843   1.61  perseant 	} */ *ap = v;
    844   1.61  perseant 	struct vnode *vp = ap->a_vp;
    845   1.61  perseant 
    846   1.61  perseant 	lfs_check(vp, LFS_UNUSED_LBN, 0);
    847  1.245  dholland 	return ulfs_setattr(v);
    848    1.1   mycroft }
    849   1.22  perseant 
    850    1.1   mycroft /*
    851  1.179  perseant  * Release the block we hold on lfs_newseg wrapping.  Called on file close,
    852  1.188  perseant  * or explicitly from LFCNWRAPGO.  Called with the interlock held.
    853  1.179  perseant  */
    854  1.179  perseant static int
    855  1.193  christos lfs_wrapgo(struct lfs *fs, struct inode *ip, int waitfor)
    856  1.179  perseant {
    857  1.214        ad 	if (fs->lfs_stoplwp != curlwp)
    858  1.179  perseant 		return EBUSY;
    859  1.179  perseant 
    860  1.214        ad 	fs->lfs_stoplwp = NULL;
    861  1.214        ad 	cv_signal(&fs->lfs_stopcv);
    862  1.179  perseant 
    863  1.179  perseant 	KASSERT(fs->lfs_nowrap > 0);
    864  1.179  perseant 	if (fs->lfs_nowrap <= 0) {
    865  1.179  perseant 		return 0;
    866  1.179  perseant 	}
    867  1.179  perseant 
    868  1.179  perseant 	if (--fs->lfs_nowrap == 0) {
    869  1.179  perseant 		log(LOG_NOTICE, "%s: re-enabled log wrap\n", fs->lfs_fsmnt);
    870  1.188  perseant 		wakeup(&fs->lfs_wrappass);
    871  1.180  perseant 		lfs_wakeup_cleaner(fs);
    872  1.179  perseant 	}
    873  1.179  perseant 	if (waitfor) {
    874  1.214        ad 		mtsleep(&fs->lfs_nextseg, PCATCH | PUSER, "segment",
    875  1.214        ad 		    0, &lfs_lock);
    876  1.179  perseant 	}
    877  1.179  perseant 
    878  1.179  perseant 	return 0;
    879  1.179  perseant }
    880  1.179  perseant 
    881  1.179  perseant /*
    882  1.251  dholland  * Close called.
    883  1.251  dholland  *
    884  1.251  dholland  * Update the times on the inode.
    885    1.1   mycroft  */
    886    1.1   mycroft /* ARGSUSED */
    887    1.1   mycroft int
    888   1.51  perseant lfs_close(void *v)
    889   1.10  christos {
    890    1.1   mycroft 	struct vop_close_args /* {
    891    1.1   mycroft 		struct vnode *a_vp;
    892    1.1   mycroft 		int  a_fflag;
    893  1.176      elad 		kauth_cred_t a_cred;
    894   1.10  christos 	} */ *ap = v;
    895   1.35  augustss 	struct vnode *vp = ap->a_vp;
    896   1.35  augustss 	struct inode *ip = VTOI(vp);
    897  1.180  perseant 	struct lfs *fs = ip->i_lfs;
    898    1.1   mycroft 
    899  1.245  dholland 	if ((ip->i_number == ULFS_ROOTINO || ip->i_number == LFS_IFILE_INUM) &&
    900  1.214        ad 	    fs->lfs_stoplwp == curlwp) {
    901  1.214        ad 		mutex_enter(&lfs_lock);
    902  1.188  perseant 		log(LOG_NOTICE, "lfs_close: releasing log wrap control\n");
    903  1.180  perseant 		lfs_wrapgo(fs, ip, 0);
    904  1.214        ad 		mutex_exit(&lfs_lock);
    905  1.179  perseant 	}
    906  1.179  perseant 
    907   1.97  perseant 	if (vp == ip->i_lfs->lfs_ivnode &&
    908  1.119       dbj 	    vp->v_mount->mnt_iflag & IMNT_UNMOUNT)
    909   1.97  perseant 		return 0;
    910   1.97  perseant 
    911  1.251  dholland 	fstrans_start(vp->v_mount, FSTRANS_SHARED);
    912   1.97  perseant 	if (vp->v_usecount > 1 && vp != ip->i_lfs->lfs_ivnode) {
    913  1.154  christos 		LFS_ITIMES(ip, NULL, NULL, NULL);
    914    1.1   mycroft 	}
    915  1.251  dholland 	fstrans_done(vp->v_mount);
    916    1.1   mycroft 	return (0);
    917   1.65  perseant }
    918   1.65  perseant 
    919   1.65  perseant /*
    920   1.65  perseant  * Close wrapper for special devices.
    921   1.65  perseant  *
    922   1.65  perseant  * Update the times on the inode then do device close.
    923   1.65  perseant  */
    924   1.65  perseant int
    925   1.65  perseant lfsspec_close(void *v)
    926   1.65  perseant {
    927   1.65  perseant 	struct vop_close_args /* {
    928   1.65  perseant 		struct vnode	*a_vp;
    929   1.65  perseant 		int		a_fflag;
    930  1.176      elad 		kauth_cred_t	a_cred;
    931   1.65  perseant 	} */ *ap = v;
    932   1.65  perseant 	struct vnode	*vp;
    933   1.65  perseant 	struct inode	*ip;
    934   1.65  perseant 
    935   1.65  perseant 	vp = ap->a_vp;
    936   1.65  perseant 	ip = VTOI(vp);
    937   1.65  perseant 	if (vp->v_usecount > 1) {
    938  1.154  christos 		LFS_ITIMES(ip, NULL, NULL, NULL);
    939   1.65  perseant 	}
    940   1.65  perseant 	return (VOCALL (spec_vnodeop_p, VOFFSET(vop_close), ap));
    941   1.65  perseant }
    942   1.65  perseant 
    943   1.65  perseant /*
    944   1.65  perseant  * Close wrapper for fifo's.
    945   1.65  perseant  *
    946   1.65  perseant  * Update the times on the inode then do device close.
    947   1.65  perseant  */
    948   1.65  perseant int
    949   1.65  perseant lfsfifo_close(void *v)
    950   1.65  perseant {
    951   1.65  perseant 	struct vop_close_args /* {
    952   1.65  perseant 		struct vnode	*a_vp;
    953   1.65  perseant 		int		a_fflag;
    954  1.176      elad 		kauth_cred_	a_cred;
    955   1.65  perseant 	} */ *ap = v;
    956   1.65  perseant 	struct vnode	*vp;
    957   1.65  perseant 	struct inode	*ip;
    958   1.65  perseant 
    959   1.65  perseant 	vp = ap->a_vp;
    960   1.65  perseant 	ip = VTOI(vp);
    961   1.65  perseant 	if (ap->a_vp->v_usecount > 1) {
    962  1.154  christos 		LFS_ITIMES(ip, NULL, NULL, NULL);
    963   1.65  perseant 	}
    964   1.65  perseant 	return (VOCALL (fifo_vnodeop_p, VOFFSET(vop_close), ap));
    965    1.1   mycroft }
    966    1.1   mycroft 
    967    1.1   mycroft /*
    968   1.15      fvdl  * Reclaim an inode so that it can be used for other purposes.
    969    1.1   mycroft  */
    970    1.1   mycroft 
    971    1.1   mycroft int
    972   1.51  perseant lfs_reclaim(void *v)
    973   1.10  christos {
    974    1.1   mycroft 	struct vop_reclaim_args /* {
    975    1.1   mycroft 		struct vnode *a_vp;
    976   1.10  christos 	} */ *ap = v;
    977   1.15      fvdl 	struct vnode *vp = ap->a_vp;
    978   1.84  perseant 	struct inode *ip = VTOI(vp);
    979  1.203  perseant 	struct lfs *fs = ip->i_lfs;
    980    1.1   mycroft 	int error;
    981   1.77      yamt 
    982  1.231   hannken 	/*
    983  1.231   hannken 	 * The inode must be freed and updated before being removed
    984  1.231   hannken 	 * from its hash chain.  Other threads trying to gain a hold
    985  1.262   hannken 	 * or lock on the inode will be stalled.
    986  1.231   hannken 	 */
    987  1.231   hannken 	if (ip->i_nlink <= 0 && (vp->v_mount->mnt_flag & MNT_RDONLY) == 0)
    988  1.231   hannken 		lfs_vfree(vp, ip->i_number, ip->i_omode);
    989  1.231   hannken 
    990  1.214        ad 	mutex_enter(&lfs_lock);
    991   1.84  perseant 	LFS_CLR_UINO(ip, IN_ALLMOD);
    992  1.214        ad 	mutex_exit(&lfs_lock);
    993  1.245  dholland 	if ((error = ulfs_reclaim(vp)))
    994    1.1   mycroft 		return (error);
    995  1.203  perseant 
    996  1.203  perseant 	/*
    997  1.203  perseant 	 * Take us off the paging and/or dirop queues if we were on them.
    998  1.203  perseant 	 * We shouldn't be on them.
    999  1.203  perseant 	 */
   1000  1.214        ad 	mutex_enter(&lfs_lock);
   1001  1.203  perseant 	if (ip->i_flags & IN_PAGING) {
   1002  1.203  perseant 		log(LOG_WARNING, "%s: reclaimed vnode is IN_PAGING\n",
   1003  1.203  perseant 		    fs->lfs_fsmnt);
   1004  1.203  perseant 		ip->i_flags &= ~IN_PAGING;
   1005  1.203  perseant 		TAILQ_REMOVE(&fs->lfs_pchainhd, ip, i_lfs_pchain);
   1006  1.203  perseant 	}
   1007  1.212        ad 	if (vp->v_uflag & VU_DIROP) {
   1008  1.212        ad 		panic("reclaimed vnode is VU_DIROP");
   1009  1.212        ad 		vp->v_uflag &= ~VU_DIROP;
   1010  1.203  perseant 		TAILQ_REMOVE(&fs->lfs_dchainhd, ip, i_lfs_dchain);
   1011  1.203  perseant 	}
   1012  1.214        ad 	mutex_exit(&lfs_lock);
   1013  1.203  perseant 
   1014  1.142  perseant 	pool_put(&lfs_dinode_pool, ip->i_din.ffs1_din);
   1015  1.145  perseant 	lfs_deregister_all(vp);
   1016   1.84  perseant 	pool_put(&lfs_inoext_pool, ip->inode_ext.lfs);
   1017   1.84  perseant 	ip->inode_ext.lfs = NULL;
   1018  1.199        ad 	genfs_node_destroy(vp);
   1019   1.19   thorpej 	pool_put(&lfs_inode_pool, vp->v_data);
   1020    1.1   mycroft 	vp->v_data = NULL;
   1021   1.94  perseant 	return (0);
   1022   1.94  perseant }
   1023   1.94  perseant 
   1024   1.94  perseant /*
   1025  1.101      yamt  * Read a block from a storage device.
   1026  1.251  dholland  *
   1027  1.251  dholland  * Calculate the logical to physical mapping if not done already,
   1028  1.251  dholland  * then call the device strategy routine.
   1029  1.251  dholland  *
   1030   1.94  perseant  * In order to avoid reading blocks that are in the process of being
   1031   1.94  perseant  * written by the cleaner---and hence are not mutexed by the normal
   1032   1.94  perseant  * buffer cache / page cache mechanisms---check for collisions before
   1033   1.94  perseant  * reading.
   1034   1.94  perseant  *
   1035  1.245  dholland  * We inline ulfs_strategy to make sure that the VOP_BMAP occurs *before*
   1036   1.94  perseant  * the active cleaner test.
   1037   1.94  perseant  *
   1038   1.94  perseant  * XXX This code assumes that lfs_markv makes synchronous checkpoints.
   1039   1.94  perseant  */
   1040   1.94  perseant int
   1041   1.94  perseant lfs_strategy(void *v)
   1042   1.94  perseant {
   1043   1.94  perseant 	struct vop_strategy_args /* {
   1044  1.128   hannken 		struct vnode *a_vp;
   1045   1.94  perseant 		struct buf *a_bp;
   1046   1.94  perseant 	} */ *ap = v;
   1047   1.94  perseant 	struct buf	*bp;
   1048   1.94  perseant 	struct lfs	*fs;
   1049   1.94  perseant 	struct vnode	*vp;
   1050   1.94  perseant 	struct inode	*ip;
   1051   1.94  perseant 	daddr_t		tbn;
   1052  1.239  perseant #define MAXLOOP 25
   1053  1.239  perseant 	int		i, sn, error, slept, loopcount;
   1054   1.94  perseant 
   1055   1.94  perseant 	bp = ap->a_bp;
   1056  1.128   hannken 	vp = ap->a_vp;
   1057   1.94  perseant 	ip = VTOI(vp);
   1058   1.94  perseant 	fs = ip->i_lfs;
   1059   1.94  perseant 
   1060  1.101      yamt 	/* lfs uses its strategy routine only for read */
   1061  1.101      yamt 	KASSERT(bp->b_flags & B_READ);
   1062  1.101      yamt 
   1063   1.94  perseant 	if (vp->v_type == VBLK || vp->v_type == VCHR)
   1064   1.94  perseant 		panic("lfs_strategy: spec");
   1065   1.94  perseant 	KASSERT(bp->b_bcount != 0);
   1066   1.94  perseant 	if (bp->b_blkno == bp->b_lblkno) {
   1067   1.94  perseant 		error = VOP_BMAP(vp, bp->b_lblkno, NULL, &bp->b_blkno,
   1068   1.94  perseant 				 NULL);
   1069   1.94  perseant 		if (error) {
   1070   1.94  perseant 			bp->b_error = error;
   1071  1.214        ad 			bp->b_resid = bp->b_bcount;
   1072   1.94  perseant 			biodone(bp);
   1073   1.94  perseant 			return (error);
   1074   1.94  perseant 		}
   1075   1.94  perseant 		if ((long)bp->b_blkno == -1) /* no valid data */
   1076   1.94  perseant 			clrbuf(bp);
   1077   1.94  perseant 	}
   1078   1.94  perseant 	if ((long)bp->b_blkno < 0) { /* block is not on disk */
   1079  1.214        ad 		bp->b_resid = bp->b_bcount;
   1080   1.94  perseant 		biodone(bp);
   1081   1.94  perseant 		return (0);
   1082   1.94  perseant 	}
   1083   1.94  perseant 
   1084   1.94  perseant 	slept = 1;
   1085  1.239  perseant 	loopcount = 0;
   1086  1.214        ad 	mutex_enter(&lfs_lock);
   1087  1.101      yamt 	while (slept && fs->lfs_seglock) {
   1088  1.214        ad 		mutex_exit(&lfs_lock);
   1089   1.94  perseant 		/*
   1090   1.94  perseant 		 * Look through list of intervals.
   1091   1.94  perseant 		 * There will only be intervals to look through
   1092   1.94  perseant 		 * if the cleaner holds the seglock.
   1093   1.94  perseant 		 * Since the cleaner is synchronous, we can trust
   1094   1.94  perseant 		 * the list of intervals to be current.
   1095   1.94  perseant 		 */
   1096  1.248  christos 		tbn = LFS_DBTOFSB(fs, bp->b_blkno);
   1097  1.248  christos 		sn = lfs_dtosn(fs, tbn);
   1098   1.94  perseant 		slept = 0;
   1099   1.94  perseant 		for (i = 0; i < fs->lfs_cleanind; i++) {
   1100  1.248  christos 			if (sn == lfs_dtosn(fs, fs->lfs_cleanint[i]) &&
   1101   1.94  perseant 			    tbn >= fs->lfs_cleanint[i]) {
   1102  1.136  perseant 				DLOG((DLOG_CLEAN,
   1103  1.136  perseant 				      "lfs_strategy: ino %d lbn %" PRId64
   1104  1.203  perseant 				      " ind %d sn %d fsb %" PRIx32
   1105  1.203  perseant 				      " given sn %d fsb %" PRIx64 "\n",
   1106  1.203  perseant 				      ip->i_number, bp->b_lblkno, i,
   1107  1.248  christos 				      lfs_dtosn(fs, fs->lfs_cleanint[i]),
   1108  1.203  perseant 				      fs->lfs_cleanint[i], sn, tbn));
   1109  1.136  perseant 				DLOG((DLOG_CLEAN,
   1110  1.136  perseant 				      "lfs_strategy: sleeping on ino %d lbn %"
   1111  1.136  perseant 				      PRId64 "\n", ip->i_number, bp->b_lblkno));
   1112  1.214        ad 				mutex_enter(&lfs_lock);
   1113  1.170  perseant 				if (LFS_SEGLOCK_HELD(fs) && fs->lfs_iocount) {
   1114  1.239  perseant 					/*
   1115  1.239  perseant 					 * Cleaner can't wait for itself.
   1116  1.239  perseant 					 * Instead, wait for the blocks
   1117  1.239  perseant 					 * to be written to disk.
   1118  1.239  perseant 					 * XXX we need pribio in the test
   1119  1.239  perseant 					 * XXX here.
   1120  1.239  perseant 					 */
   1121  1.239  perseant  					mtsleep(&fs->lfs_iocount,
   1122  1.239  perseant  						(PRIBIO + 1) | PNORELOCK,
   1123  1.239  perseant 						"clean2", hz/10 + 1,
   1124  1.239  perseant  						&lfs_lock);
   1125  1.170  perseant 					slept = 1;
   1126  1.239  perseant 					++loopcount;
   1127  1.170  perseant 					break;
   1128  1.170  perseant 				} else if (fs->lfs_seglock) {
   1129  1.214        ad 					mtsleep(&fs->lfs_seglock,
   1130  1.141  perseant 						(PRIBIO + 1) | PNORELOCK,
   1131  1.170  perseant 						"clean1", 0,
   1132  1.214        ad 						&lfs_lock);
   1133  1.167  perseant 					slept = 1;
   1134  1.167  perseant 					break;
   1135  1.167  perseant 				}
   1136  1.214        ad 				mutex_exit(&lfs_lock);
   1137   1.94  perseant 			}
   1138   1.94  perseant 		}
   1139  1.214        ad 		mutex_enter(&lfs_lock);
   1140  1.239  perseant 		if (loopcount > MAXLOOP) {
   1141  1.239  perseant 			printf("lfs_strategy: breaking out of clean2 loop\n");
   1142  1.239  perseant 			break;
   1143  1.239  perseant 		}
   1144   1.94  perseant 	}
   1145  1.214        ad 	mutex_exit(&lfs_lock);
   1146   1.94  perseant 
   1147   1.94  perseant 	vp = ip->i_devvp;
   1148  1.251  dholland 	return VOP_STRATEGY(vp, bp);
   1149   1.89  perseant }
   1150   1.89  perseant 
   1151  1.239  perseant /*
   1152  1.239  perseant  * Inline lfs_segwrite/lfs_writevnodes, but just for dirops.
   1153  1.239  perseant  * Technically this is a checkpoint (the on-disk state is valid)
   1154  1.239  perseant  * even though we are leaving out all the file data.
   1155  1.239  perseant  */
   1156  1.239  perseant int
   1157   1.92  perseant lfs_flush_dirops(struct lfs *fs)
   1158   1.92  perseant {
   1159   1.92  perseant 	struct inode *ip, *nip;
   1160   1.92  perseant 	struct vnode *vp;
   1161   1.92  perseant 	extern int lfs_dostats;
   1162   1.92  perseant 	struct segment *sp;
   1163  1.239  perseant 	int flags = 0;
   1164  1.239  perseant 	int error = 0;
   1165   1.92  perseant 
   1166  1.163  perseant 	ASSERT_MAYBE_SEGLOCK(fs);
   1167  1.171  perseant 	KASSERT(fs->lfs_nadirop == 0);
   1168  1.141  perseant 
   1169   1.92  perseant 	if (fs->lfs_ronly)
   1170  1.239  perseant 		return EROFS;
   1171   1.92  perseant 
   1172  1.214        ad 	mutex_enter(&lfs_lock);
   1173  1.141  perseant 	if (TAILQ_FIRST(&fs->lfs_dchainhd) == NULL) {
   1174  1.214        ad 		mutex_exit(&lfs_lock);
   1175  1.239  perseant 		return 0;
   1176  1.141  perseant 	} else
   1177  1.214        ad 		mutex_exit(&lfs_lock);
   1178   1.92  perseant 
   1179   1.92  perseant 	if (lfs_dostats)
   1180   1.92  perseant 		++lfs_stats.flush_invoked;
   1181   1.92  perseant 
   1182   1.92  perseant 	lfs_imtime(fs);
   1183  1.239  perseant 	lfs_seglock(fs, flags);
   1184   1.92  perseant 	sp = fs->lfs_sp;
   1185   1.92  perseant 
   1186   1.92  perseant 	/*
   1187   1.92  perseant 	 * lfs_writevnodes, optimized to get dirops out of the way.
   1188   1.92  perseant 	 * Only write dirops, and don't flush files' pages, only
   1189   1.92  perseant 	 * blocks from the directories.
   1190   1.92  perseant 	 *
   1191   1.92  perseant 	 * We don't need to vref these files because they are
   1192   1.92  perseant 	 * dirops and so hold an extra reference until the
   1193   1.92  perseant 	 * segunlock clears them of that status.
   1194   1.92  perseant 	 *
   1195   1.92  perseant 	 * We don't need to check for IN_ADIROP because we know that
   1196   1.92  perseant 	 * no dirops are active.
   1197   1.92  perseant 	 *
   1198   1.92  perseant 	 */
   1199  1.214        ad 	mutex_enter(&lfs_lock);
   1200   1.92  perseant 	for (ip = TAILQ_FIRST(&fs->lfs_dchainhd); ip != NULL; ip = nip) {
   1201   1.92  perseant 		nip = TAILQ_NEXT(ip, i_lfs_dchain);
   1202  1.214        ad 		mutex_exit(&lfs_lock);
   1203   1.92  perseant 		vp = ITOV(ip);
   1204  1.262   hannken 		mutex_enter(vp->v_interlock);
   1205   1.92  perseant 
   1206  1.171  perseant 		KASSERT((ip->i_flag & IN_ADIROP) == 0);
   1207  1.239  perseant 		KASSERT(vp->v_uflag & VU_DIROP);
   1208  1.262   hannken 		KASSERT(vdead_check(vp, VDEAD_NOWAIT) == 0);
   1209  1.171  perseant 
   1210   1.92  perseant 		/*
   1211   1.92  perseant 		 * All writes to directories come from dirops; all
   1212   1.92  perseant 		 * writes to files' direct blocks go through the page
   1213   1.92  perseant 		 * cache, which we're not touching.  Reads to files
   1214   1.92  perseant 		 * and/or directories will not be affected by writing
   1215   1.92  perseant 		 * directory blocks inodes and file inodes.  So we don't
   1216  1.239  perseant 		 * really need to lock.
   1217   1.92  perseant 		 */
   1218  1.262   hannken 		if (vdead_check(vp, VDEAD_NOWAIT) != 0) {
   1219  1.262   hannken 			mutex_exit(vp->v_interlock);
   1220  1.214        ad 			mutex_enter(&lfs_lock);
   1221   1.92  perseant 			continue;
   1222  1.167  perseant 		}
   1223  1.262   hannken 		mutex_exit(vp->v_interlock);
   1224  1.228   hannken 		/* XXX see below
   1225  1.228   hannken 		 * waslocked = VOP_ISLOCKED(vp);
   1226  1.228   hannken 		 */
   1227   1.92  perseant 		if (vp->v_type != VREG &&
   1228   1.92  perseant 		    ((ip->i_flag & IN_ALLMOD) || !VPISEMPTY(vp))) {
   1229  1.239  perseant 			error = lfs_writefile(fs, sp, vp);
   1230   1.92  perseant 			if (!VPISEMPTY(vp) && !WRITEINPROG(vp) &&
   1231   1.92  perseant 			    !(ip->i_flag & IN_ALLMOD)) {
   1232  1.214        ad 			    	mutex_enter(&lfs_lock);
   1233   1.92  perseant 				LFS_SET_UINO(ip, IN_MODIFIED);
   1234  1.214        ad 			    	mutex_exit(&lfs_lock);
   1235   1.92  perseant 			}
   1236  1.239  perseant 			if (error && (sp->seg_flags & SEGM_SINGLE)) {
   1237  1.239  perseant 				mutex_enter(&lfs_lock);
   1238  1.239  perseant 				error = EAGAIN;
   1239  1.239  perseant 				break;
   1240  1.239  perseant 			}
   1241   1.92  perseant 		}
   1242  1.188  perseant 		KDASSERT(ip->i_number != LFS_IFILE_INUM);
   1243  1.239  perseant 		error = lfs_writeinode(fs, sp, ip);
   1244  1.214        ad 		mutex_enter(&lfs_lock);
   1245  1.239  perseant 		if (error && (sp->seg_flags & SEGM_SINGLE)) {
   1246  1.239  perseant 			error = EAGAIN;
   1247  1.239  perseant 			break;
   1248  1.239  perseant 		}
   1249  1.239  perseant 
   1250  1.228   hannken 		/*
   1251  1.239  perseant 		 * We might need to update these inodes again,
   1252  1.239  perseant 		 * for example, if they have data blocks to write.
   1253  1.239  perseant 		 * Make sure that after this flush, they are still
   1254  1.239  perseant 		 * marked IN_MODIFIED so that we don't forget to
   1255  1.239  perseant 		 * write them.
   1256  1.228   hannken 		 */
   1257  1.239  perseant 		/* XXX only for non-directories? --KS */
   1258  1.239  perseant 		LFS_SET_UINO(ip, IN_MODIFIED);
   1259   1.92  perseant 	}
   1260  1.214        ad 	mutex_exit(&lfs_lock);
   1261   1.92  perseant 	/* We've written all the dirops there are */
   1262   1.92  perseant 	((SEGSUM *)(sp->segsum))->ss_flags &= ~(SS_CONT);
   1263  1.170  perseant 	lfs_finalize_fs_seguse(fs);
   1264   1.92  perseant 	(void) lfs_writeseg(fs, sp);
   1265   1.92  perseant 	lfs_segunlock(fs);
   1266  1.239  perseant 
   1267  1.239  perseant 	return error;
   1268   1.92  perseant }
   1269   1.92  perseant 
   1270   1.89  perseant /*
   1271  1.164  perseant  * Flush all vnodes for which the pagedaemon has requested pageouts.
   1272  1.212        ad  * Skip over any files that are marked VU_DIROP (since lfs_flush_dirop()
   1273  1.164  perseant  * has just run, this would be an error).  If we have to skip a vnode
   1274  1.164  perseant  * for any reason, just skip it; if we have to wait for the cleaner,
   1275  1.164  perseant  * abort.  The writer daemon will call us again later.
   1276  1.164  perseant  */
   1277  1.239  perseant int
   1278  1.164  perseant lfs_flush_pchain(struct lfs *fs)
   1279  1.164  perseant {
   1280  1.164  perseant 	struct inode *ip, *nip;
   1281  1.164  perseant 	struct vnode *vp;
   1282  1.164  perseant 	extern int lfs_dostats;
   1283  1.164  perseant 	struct segment *sp;
   1284  1.239  perseant 	int error, error2;
   1285  1.164  perseant 
   1286  1.164  perseant 	ASSERT_NO_SEGLOCK(fs);
   1287  1.164  perseant 
   1288  1.164  perseant 	if (fs->lfs_ronly)
   1289  1.239  perseant 		return EROFS;
   1290  1.164  perseant 
   1291  1.214        ad 	mutex_enter(&lfs_lock);
   1292  1.164  perseant 	if (TAILQ_FIRST(&fs->lfs_pchainhd) == NULL) {
   1293  1.214        ad 		mutex_exit(&lfs_lock);
   1294  1.239  perseant 		return 0;
   1295  1.164  perseant 	} else
   1296  1.214        ad 		mutex_exit(&lfs_lock);
   1297  1.164  perseant 
   1298  1.164  perseant 	/* Get dirops out of the way */
   1299  1.239  perseant 	if ((error = lfs_flush_dirops(fs)) != 0)
   1300  1.239  perseant 		return error;
   1301  1.164  perseant 
   1302  1.164  perseant 	if (lfs_dostats)
   1303  1.164  perseant 		++lfs_stats.flush_invoked;
   1304  1.164  perseant 
   1305  1.164  perseant 	/*
   1306  1.164  perseant 	 * Inline lfs_segwrite/lfs_writevnodes, but just for pageouts.
   1307  1.164  perseant 	 */
   1308  1.164  perseant 	lfs_imtime(fs);
   1309  1.164  perseant 	lfs_seglock(fs, 0);
   1310  1.164  perseant 	sp = fs->lfs_sp;
   1311  1.164  perseant 
   1312  1.164  perseant 	/*
   1313  1.164  perseant 	 * lfs_writevnodes, optimized to clear pageout requests.
   1314  1.164  perseant 	 * Only write non-dirop files that are in the pageout queue.
   1315  1.164  perseant 	 * We're very conservative about what we write; we want to be
   1316  1.164  perseant 	 * fast and async.
   1317  1.164  perseant 	 */
   1318  1.214        ad 	mutex_enter(&lfs_lock);
   1319  1.214        ad     top:
   1320  1.164  perseant 	for (ip = TAILQ_FIRST(&fs->lfs_pchainhd); ip != NULL; ip = nip) {
   1321  1.164  perseant 		nip = TAILQ_NEXT(ip, i_lfs_pchain);
   1322  1.164  perseant 		vp = ITOV(ip);
   1323  1.164  perseant 
   1324  1.164  perseant 		if (!(ip->i_flags & IN_PAGING))
   1325  1.164  perseant 			goto top;
   1326  1.164  perseant 
   1327  1.235     rmind 		mutex_enter(vp->v_interlock);
   1328  1.262   hannken 		if (vdead_check(vp, VDEAD_NOWAIT) != 0 ||
   1329  1.262   hannken 		    (vp->v_uflag & VU_DIROP) != 0) {
   1330  1.235     rmind 			mutex_exit(vp->v_interlock);
   1331  1.164  perseant 			continue;
   1332  1.214        ad 		}
   1333  1.214        ad 		if (vp->v_type != VREG) {
   1334  1.235     rmind 			mutex_exit(vp->v_interlock);
   1335  1.164  perseant 			continue;
   1336  1.214        ad 		}
   1337  1.164  perseant 		if (lfs_vref(vp))
   1338  1.164  perseant 			continue;
   1339  1.214        ad 		mutex_exit(&lfs_lock);
   1340  1.169  perseant 
   1341  1.228   hannken 		if (vn_lock(vp, LK_EXCLUSIVE | LK_NOWAIT | LK_RETRY) != 0) {
   1342  1.165  perseant 			lfs_vunref(vp);
   1343  1.214        ad 			mutex_enter(&lfs_lock);
   1344  1.164  perseant 			continue;
   1345  1.165  perseant 		}
   1346  1.164  perseant 
   1347  1.164  perseant 		error = lfs_writefile(fs, sp, vp);
   1348  1.164  perseant 		if (!VPISEMPTY(vp) && !WRITEINPROG(vp) &&
   1349  1.164  perseant 		    !(ip->i_flag & IN_ALLMOD)) {
   1350  1.214        ad 		    	mutex_enter(&lfs_lock);
   1351  1.164  perseant 			LFS_SET_UINO(ip, IN_MODIFIED);
   1352  1.214        ad 		    	mutex_exit(&lfs_lock);
   1353  1.164  perseant 		}
   1354  1.188  perseant 		KDASSERT(ip->i_number != LFS_IFILE_INUM);
   1355  1.239  perseant 		error2 = lfs_writeinode(fs, sp, ip);
   1356  1.164  perseant 
   1357  1.229   hannken 		VOP_UNLOCK(vp);
   1358  1.164  perseant 		lfs_vunref(vp);
   1359  1.164  perseant 
   1360  1.239  perseant 		if (error == EAGAIN || error2 == EAGAIN) {
   1361  1.164  perseant 			lfs_writeseg(fs, sp);
   1362  1.214        ad 			mutex_enter(&lfs_lock);
   1363  1.164  perseant 			break;
   1364  1.164  perseant 		}
   1365  1.214        ad 		mutex_enter(&lfs_lock);
   1366  1.164  perseant 	}
   1367  1.214        ad 	mutex_exit(&lfs_lock);
   1368  1.164  perseant 	(void) lfs_writeseg(fs, sp);
   1369  1.164  perseant 	lfs_segunlock(fs);
   1370  1.239  perseant 
   1371  1.239  perseant 	return 0;
   1372  1.164  perseant }
   1373  1.164  perseant 
   1374  1.164  perseant /*
   1375   1.90  perseant  * Provide a fcntl interface to sys_lfs_{segwait,bmapv,markv}.
   1376   1.89  perseant  */
   1377   1.89  perseant int
   1378   1.90  perseant lfs_fcntl(void *v)
   1379   1.89  perseant {
   1380  1.137    simonb 	struct vop_fcntl_args /* {
   1381  1.137    simonb 		struct vnode *a_vp;
   1382  1.218  gmcgarry 		u_int a_command;
   1383  1.201  christos 		void * a_data;
   1384  1.137    simonb 		int  a_fflag;
   1385  1.176      elad 		kauth_cred_t a_cred;
   1386  1.137    simonb 	} */ *ap = v;
   1387  1.222  christos 	struct timeval tv;
   1388   1.89  perseant 	struct timeval *tvp;
   1389   1.89  perseant 	BLOCK_INFO *blkiov;
   1390   1.92  perseant 	CLEANERINFO *cip;
   1391  1.148  perseant 	SEGUSE *sup;
   1392  1.258  christos 	int blkcnt, error;
   1393  1.181    martin 	size_t fh_size;
   1394   1.90  perseant 	struct lfs_fcntl_markv blkvp;
   1395  1.185        ad 	struct lwp *l;
   1396   1.89  perseant 	fsid_t *fsidp;
   1397   1.92  perseant 	struct lfs *fs;
   1398   1.92  perseant 	struct buf *bp;
   1399  1.134  perseant 	fhandle_t *fhp;
   1400   1.92  perseant 	daddr_t off;
   1401  1.258  christos 	int oclean;
   1402   1.89  perseant 
   1403   1.90  perseant 	/* Only respect LFS fcntls on fs root or Ifile */
   1404  1.245  dholland 	if (VTOI(ap->a_vp)->i_number != ULFS_ROOTINO &&
   1405   1.89  perseant 	    VTOI(ap->a_vp)->i_number != LFS_IFILE_INUM) {
   1406  1.245  dholland 		return ulfs_fcntl(v);
   1407   1.89  perseant 	}
   1408   1.89  perseant 
   1409  1.100  perseant 	/* Avoid locking a draining lock */
   1410  1.119       dbj 	if (ap->a_vp->v_mount->mnt_iflag & IMNT_UNMOUNT) {
   1411  1.100  perseant 		return ESHUTDOWN;
   1412  1.100  perseant 	}
   1413  1.100  perseant 
   1414  1.184  perseant 	/* LFS control and monitoring fcntls are available only to root */
   1415  1.213     pooka 	l = curlwp;
   1416  1.184  perseant 	if (((ap->a_command & 0xff00) >> 8) == 'L' &&
   1417  1.241      elad 	    (error = kauth_authorize_system(l->l_cred, KAUTH_SYSTEM_LFS,
   1418  1.241      elad 	     KAUTH_REQ_SYSTEM_LFS_FCNTL, NULL, NULL, NULL)) != 0)
   1419  1.184  perseant 		return (error);
   1420  1.184  perseant 
   1421  1.100  perseant 	fs = VTOI(ap->a_vp)->i_lfs;
   1422  1.131  christos 	fsidp = &ap->a_vp->v_mount->mnt_stat.f_fsidx;
   1423   1.89  perseant 
   1424  1.188  perseant 	error = 0;
   1425  1.218  gmcgarry 	switch ((int)ap->a_command) {
   1426  1.222  christos 	    case LFCNSEGWAITALL_COMPAT_50:
   1427  1.222  christos 	    case LFCNSEGWAITALL_COMPAT:
   1428  1.222  christos 		fsidp = NULL;
   1429  1.222  christos 		/* FALLSTHROUGH */
   1430  1.222  christos 	    case LFCNSEGWAIT_COMPAT_50:
   1431  1.222  christos 	    case LFCNSEGWAIT_COMPAT:
   1432  1.222  christos 		{
   1433  1.222  christos 			struct timeval50 *tvp50
   1434  1.222  christos 				= (struct timeval50 *)ap->a_data;
   1435  1.222  christos 			timeval50_to_timeval(tvp50, &tv);
   1436  1.222  christos 			tvp = &tv;
   1437  1.222  christos 		}
   1438  1.222  christos 		goto segwait_common;
   1439   1.90  perseant 	    case LFCNSEGWAITALL:
   1440  1.214        ad 		fsidp = NULL;
   1441  1.214        ad 		/* FALLSTHROUGH */
   1442   1.90  perseant 	    case LFCNSEGWAIT:
   1443  1.214        ad 		tvp = (struct timeval *)ap->a_data;
   1444  1.222  christos segwait_common:
   1445  1.214        ad 		mutex_enter(&lfs_lock);
   1446  1.214        ad 		++fs->lfs_sleepers;
   1447  1.214        ad 		mutex_exit(&lfs_lock);
   1448  1.214        ad 
   1449  1.214        ad 		error = lfs_segwait(fsidp, tvp);
   1450  1.214        ad 
   1451  1.214        ad 		mutex_enter(&lfs_lock);
   1452  1.214        ad 		if (--fs->lfs_sleepers == 0)
   1453  1.214        ad 			wakeup(&fs->lfs_sleepers);
   1454  1.214        ad 		mutex_exit(&lfs_lock);
   1455  1.214        ad 		return error;
   1456   1.89  perseant 
   1457   1.90  perseant 	    case LFCNBMAPV:
   1458   1.90  perseant 	    case LFCNMARKV:
   1459  1.214        ad 		blkvp = *(struct lfs_fcntl_markv *)ap->a_data;
   1460   1.89  perseant 
   1461  1.214        ad 		blkcnt = blkvp.blkcnt;
   1462  1.214        ad 		if ((u_int) blkcnt > LFS_MARKV_MAXBLKCNT)
   1463  1.214        ad 			return (EINVAL);
   1464  1.214        ad 		blkiov = lfs_malloc(fs, blkcnt * sizeof(BLOCK_INFO), LFS_NB_BLKIOV);
   1465  1.214        ad 		if ((error = copyin(blkvp.blkiov, blkiov,
   1466  1.214        ad 		     blkcnt * sizeof(BLOCK_INFO))) != 0) {
   1467  1.214        ad 			lfs_free(fs, blkiov, LFS_NB_BLKIOV);
   1468  1.214        ad 			return error;
   1469  1.214        ad 		}
   1470  1.214        ad 
   1471  1.214        ad 		mutex_enter(&lfs_lock);
   1472  1.214        ad 		++fs->lfs_sleepers;
   1473  1.214        ad 		mutex_exit(&lfs_lock);
   1474  1.214        ad 		if (ap->a_command == LFCNBMAPV)
   1475  1.214        ad 			error = lfs_bmapv(l->l_proc, fsidp, blkiov, blkcnt);
   1476  1.214        ad 		else /* LFCNMARKV */
   1477  1.214        ad 			error = lfs_markv(l->l_proc, fsidp, blkiov, blkcnt);
   1478  1.214        ad 		if (error == 0)
   1479  1.214        ad 			error = copyout(blkiov, blkvp.blkiov,
   1480  1.214        ad 					blkcnt * sizeof(BLOCK_INFO));
   1481  1.214        ad 		mutex_enter(&lfs_lock);
   1482  1.214        ad 		if (--fs->lfs_sleepers == 0)
   1483  1.214        ad 			wakeup(&fs->lfs_sleepers);
   1484  1.214        ad 		mutex_exit(&lfs_lock);
   1485  1.214        ad 		lfs_free(fs, blkiov, LFS_NB_BLKIOV);
   1486  1.214        ad 		return error;
   1487   1.92  perseant 
   1488   1.92  perseant 	    case LFCNRECLAIM:
   1489  1.214        ad 		/*
   1490  1.214        ad 		 * Flush dirops and write Ifile, allowing empty segments
   1491  1.214        ad 		 * to be immediately reclaimed.
   1492  1.214        ad 		 */
   1493  1.214        ad 		lfs_writer_enter(fs, "pndirop");
   1494  1.214        ad 		off = fs->lfs_offset;
   1495  1.214        ad 		lfs_seglock(fs, SEGM_FORCE_CKP | SEGM_CKP);
   1496  1.214        ad 		lfs_flush_dirops(fs);
   1497  1.214        ad 		LFS_CLEANERINFO(cip, fs, bp);
   1498  1.214        ad 		oclean = cip->clean;
   1499  1.214        ad 		LFS_SYNC_CLEANERINFO(cip, fs, bp, 1);
   1500  1.214        ad 		lfs_segwrite(ap->a_vp->v_mount, SEGM_FORCE_CKP);
   1501  1.214        ad 		fs->lfs_sp->seg_flags |= SEGM_PROT;
   1502  1.214        ad 		lfs_segunlock(fs);
   1503  1.214        ad 		lfs_writer_leave(fs);
   1504   1.92  perseant 
   1505  1.136  perseant #ifdef DEBUG
   1506  1.214        ad 		LFS_CLEANERINFO(cip, fs, bp);
   1507  1.214        ad 		DLOG((DLOG_CLEAN, "lfs_fcntl: reclaim wrote %" PRId64
   1508  1.214        ad 		      " blocks, cleaned %" PRId32 " segments (activesb %d)\n",
   1509  1.214        ad 		      fs->lfs_offset - off, cip->clean - oclean,
   1510  1.214        ad 		      fs->lfs_activesb));
   1511  1.214        ad 		LFS_SYNC_CLEANERINFO(cip, fs, bp, 0);
   1512  1.258  christos #else
   1513  1.258  christos 		__USE(oclean);
   1514  1.258  christos 		__USE(off);
   1515   1.92  perseant #endif
   1516   1.92  perseant 
   1517  1.214        ad 		return 0;
   1518   1.89  perseant 
   1519  1.182    martin 	    case LFCNIFILEFH_COMPAT:
   1520  1.214        ad 		/* Return the filehandle of the Ifile */
   1521  1.221      elad 		if ((error = kauth_authorize_system(l->l_cred,
   1522  1.221      elad 		    KAUTH_SYSTEM_FILEHANDLE, 0, NULL, NULL, NULL)) != 0)
   1523  1.214        ad 			return (error);
   1524  1.214        ad 		fhp = (struct fhandle *)ap->a_data;
   1525  1.214        ad 		fhp->fh_fsid = *fsidp;
   1526  1.214        ad 		fh_size = 16;	/* former VFS_MAXFIDSIZ */
   1527  1.214        ad 		return lfs_vptofh(fs->lfs_ivnode, &(fhp->fh_fid), &fh_size);
   1528  1.182    martin 
   1529  1.187    martin 	    case LFCNIFILEFH_COMPAT2:
   1530  1.134  perseant 	    case LFCNIFILEFH:
   1531  1.214        ad 		/* Return the filehandle of the Ifile */
   1532  1.214        ad 		fhp = (struct fhandle *)ap->a_data;
   1533  1.214        ad 		fhp->fh_fsid = *fsidp;
   1534  1.214        ad 		fh_size = sizeof(struct lfs_fhandle) -
   1535  1.214        ad 		    offsetof(fhandle_t, fh_fid);
   1536  1.214        ad 		return lfs_vptofh(fs->lfs_ivnode, &(fhp->fh_fid), &fh_size);
   1537  1.134  perseant 
   1538  1.148  perseant 	    case LFCNREWIND:
   1539  1.214        ad 		/* Move lfs_offset to the lowest-numbered segment */
   1540  1.214        ad 		return lfs_rewind(fs, *(int *)ap->a_data);
   1541  1.148  perseant 
   1542  1.148  perseant 	    case LFCNINVAL:
   1543  1.214        ad 		/* Mark a segment SEGUSE_INVAL */
   1544  1.214        ad 		LFS_SEGENTRY(sup, fs, *(int *)ap->a_data, bp);
   1545  1.214        ad 		if (sup->su_nbytes > 0) {
   1546  1.214        ad 			brelse(bp, 0);
   1547  1.214        ad 			lfs_unset_inval_all(fs);
   1548  1.214        ad 			return EBUSY;
   1549  1.214        ad 		}
   1550  1.214        ad 		sup->su_flags |= SEGUSE_INVAL;
   1551  1.236   hannken 		VOP_BWRITE(bp->b_vp, bp);
   1552  1.214        ad 		return 0;
   1553  1.148  perseant 
   1554  1.148  perseant 	    case LFCNRESIZE:
   1555  1.214        ad 		/* Resize the filesystem */
   1556  1.214        ad 		return lfs_resize_fs(fs, *(int *)ap->a_data);
   1557  1.148  perseant 
   1558  1.168  perseant 	    case LFCNWRAPSTOP:
   1559  1.179  perseant 	    case LFCNWRAPSTOP_COMPAT:
   1560  1.214        ad 		/*
   1561  1.214        ad 		 * Hold lfs_newseg at segment 0; if requested, sleep until
   1562  1.214        ad 		 * the filesystem wraps around.  To support external agents
   1563  1.214        ad 		 * (dump, fsck-based regression test) that need to look at
   1564  1.214        ad 		 * a snapshot of the filesystem, without necessarily
   1565  1.214        ad 		 * requiring that all fs activity stops.
   1566  1.214        ad 		 */
   1567  1.214        ad 		if (fs->lfs_stoplwp == curlwp)
   1568  1.214        ad 			return EALREADY;
   1569  1.214        ad 
   1570  1.214        ad 		mutex_enter(&lfs_lock);
   1571  1.214        ad 		while (fs->lfs_stoplwp != NULL)
   1572  1.214        ad 			cv_wait(&fs->lfs_stopcv, &lfs_lock);
   1573  1.214        ad 		fs->lfs_stoplwp = curlwp;
   1574  1.214        ad 		if (fs->lfs_nowrap == 0)
   1575  1.214        ad 			log(LOG_NOTICE, "%s: disabled log wrap\n", fs->lfs_fsmnt);
   1576  1.214        ad 		++fs->lfs_nowrap;
   1577  1.222  christos 		if (*(int *)ap->a_data == 1
   1578  1.224     pooka 		    || ap->a_command == LFCNWRAPSTOP_COMPAT) {
   1579  1.214        ad 			log(LOG_NOTICE, "LFCNSTOPWRAP waiting for log wrap\n");
   1580  1.214        ad 			error = mtsleep(&fs->lfs_nowrap, PCATCH | PUSER,
   1581  1.214        ad 				"segwrap", 0, &lfs_lock);
   1582  1.214        ad 			log(LOG_NOTICE, "LFCNSTOPWRAP done waiting\n");
   1583  1.214        ad 			if (error) {
   1584  1.214        ad 				lfs_wrapgo(fs, VTOI(ap->a_vp), 0);
   1585  1.214        ad 			}
   1586  1.214        ad 		}
   1587  1.214        ad 		mutex_exit(&lfs_lock);
   1588  1.214        ad 		return 0;
   1589  1.168  perseant 
   1590  1.168  perseant 	    case LFCNWRAPGO:
   1591  1.179  perseant 	    case LFCNWRAPGO_COMPAT:
   1592  1.214        ad 		/*
   1593  1.214        ad 		 * Having done its work, the agent wakes up the writer.
   1594  1.214        ad 		 * If the argument is 1, it sleeps until a new segment
   1595  1.214        ad 		 * is selected.
   1596  1.214        ad 		 */
   1597  1.214        ad 		mutex_enter(&lfs_lock);
   1598  1.214        ad 		error = lfs_wrapgo(fs, VTOI(ap->a_vp),
   1599  1.222  christos 				   ap->a_command == LFCNWRAPGO_COMPAT ? 1 :
   1600  1.222  christos 				    *((int *)ap->a_data));
   1601  1.214        ad 		mutex_exit(&lfs_lock);
   1602  1.214        ad 		return error;
   1603  1.168  perseant 
   1604  1.188  perseant 	    case LFCNWRAPPASS:
   1605  1.214        ad 		if ((VTOI(ap->a_vp)->i_lfs_iflags & LFSI_WRAPWAIT))
   1606  1.214        ad 			return EALREADY;
   1607  1.214        ad 		mutex_enter(&lfs_lock);
   1608  1.214        ad 		if (fs->lfs_stoplwp != curlwp) {
   1609  1.214        ad 			mutex_exit(&lfs_lock);
   1610  1.214        ad 			return EALREADY;
   1611  1.214        ad 		}
   1612  1.214        ad 		if (fs->lfs_nowrap == 0) {
   1613  1.214        ad 			mutex_exit(&lfs_lock);
   1614  1.214        ad 			return EBUSY;
   1615  1.214        ad 		}
   1616  1.214        ad 		fs->lfs_wrappass = 1;
   1617  1.214        ad 		wakeup(&fs->lfs_wrappass);
   1618  1.214        ad 		/* Wait for the log to wrap, if asked */
   1619  1.214        ad 		if (*(int *)ap->a_data) {
   1620  1.235     rmind 			mutex_enter(ap->a_vp->v_interlock);
   1621  1.239  perseant 			if (lfs_vref(ap->a_vp) != 0)
   1622  1.239  perseant 				panic("LFCNWRAPPASS: lfs_vref failed");
   1623  1.214        ad 			VTOI(ap->a_vp)->i_lfs_iflags |= LFSI_WRAPWAIT;
   1624  1.214        ad 			log(LOG_NOTICE, "LFCNPASS waiting for log wrap\n");
   1625  1.214        ad 			error = mtsleep(&fs->lfs_nowrap, PCATCH | PUSER,
   1626  1.214        ad 				"segwrap", 0, &lfs_lock);
   1627  1.214        ad 			log(LOG_NOTICE, "LFCNPASS done waiting\n");
   1628  1.214        ad 			VTOI(ap->a_vp)->i_lfs_iflags &= ~LFSI_WRAPWAIT;
   1629  1.214        ad 			lfs_vunref(ap->a_vp);
   1630  1.214        ad 		}
   1631  1.214        ad 		mutex_exit(&lfs_lock);
   1632  1.214        ad 		return error;
   1633  1.188  perseant 
   1634  1.188  perseant 	    case LFCNWRAPSTATUS:
   1635  1.214        ad 		mutex_enter(&lfs_lock);
   1636  1.214        ad 		*(int *)ap->a_data = fs->lfs_wrapstatus;
   1637  1.214        ad 		mutex_exit(&lfs_lock);
   1638  1.214        ad 		return 0;
   1639  1.188  perseant 
   1640   1.89  perseant 	    default:
   1641  1.245  dholland 		return ulfs_fcntl(v);
   1642   1.89  perseant 	}
   1643   1.89  perseant 	return 0;
   1644   1.60       chs }
   1645   1.60       chs 
   1646   1.84  perseant /*
   1647   1.84  perseant  * Return the last logical file offset that should be written for this file
   1648   1.86  perseant  * if we're doing a write that ends at "size".	If writing, we need to know
   1649   1.84  perseant  * about sizes on disk, i.e. fragments if there are any; if reading, we need
   1650   1.84  perseant  * to know about entire blocks.
   1651   1.84  perseant  */
   1652   1.84  perseant void
   1653   1.84  perseant lfs_gop_size(struct vnode *vp, off_t size, off_t *eobp, int flags)
   1654   1.84  perseant {
   1655   1.84  perseant 	struct inode *ip = VTOI(vp);
   1656  1.135     perry 	struct lfs *fs = ip->i_lfs;
   1657   1.84  perseant 	daddr_t olbn, nlbn;
   1658   1.84  perseant 
   1659  1.248  christos 	olbn = lfs_lblkno(fs, ip->i_size);
   1660  1.248  christos 	nlbn = lfs_lblkno(fs, size);
   1661  1.245  dholland 	if (!(flags & GOP_SIZE_MEM) && nlbn < ULFS_NDADDR && olbn <= nlbn) {
   1662  1.248  christos 		*eobp = lfs_fragroundup(fs, size);
   1663   1.86  perseant 	} else {
   1664  1.248  christos 		*eobp = lfs_blkroundup(fs, size);
   1665   1.86  perseant 	}
   1666   1.84  perseant }
   1667   1.84  perseant 
   1668   1.84  perseant #ifdef DEBUG
   1669   1.84  perseant void lfs_dump_vop(void *);
   1670   1.84  perseant 
   1671   1.84  perseant void
   1672   1.84  perseant lfs_dump_vop(void *v)
   1673   1.84  perseant {
   1674   1.86  perseant 	struct vop_putpages_args /* {
   1675   1.86  perseant 		struct vnode *a_vp;
   1676   1.86  perseant 		voff_t a_offlo;
   1677   1.86  perseant 		voff_t a_offhi;
   1678   1.86  perseant 		int a_flags;
   1679   1.86  perseant 	} */ *ap = v;
   1680   1.84  perseant 
   1681  1.106     ragge #ifdef DDB
   1682   1.84  perseant 	vfs_vnode_print(ap->a_vp, 0, printf);
   1683  1.106     ragge #endif
   1684  1.102      fvdl 	lfs_dump_dinode(VTOI(ap->a_vp)->i_din.ffs1_din);
   1685   1.84  perseant }
   1686   1.84  perseant #endif
   1687   1.84  perseant 
   1688   1.84  perseant int
   1689   1.84  perseant lfs_mmap(void *v)
   1690   1.84  perseant {
   1691   1.84  perseant 	struct vop_mmap_args /* {
   1692   1.86  perseant 		const struct vnodeop_desc *a_desc;
   1693   1.86  perseant 		struct vnode *a_vp;
   1694  1.209     pooka 		vm_prot_t a_prot;
   1695  1.176      elad 		kauth_cred_t a_cred;
   1696   1.84  perseant 	} */ *ap = v;
   1697   1.84  perseant 
   1698   1.84  perseant 	if (VTOI(ap->a_vp)->i_number == LFS_IFILE_INUM)
   1699   1.84  perseant 		return EOPNOTSUPP;
   1700  1.245  dholland 	return ulfs_mmap(v);
   1701   1.84  perseant }
   1702  1.254  dholland 
   1703  1.254  dholland static int
   1704  1.254  dholland lfs_openextattr(void *v)
   1705  1.254  dholland {
   1706  1.254  dholland 	struct vop_openextattr_args /* {
   1707  1.254  dholland 		struct vnode *a_vp;
   1708  1.254  dholland 		kauth_cred_t a_cred;
   1709  1.254  dholland 		struct proc *a_p;
   1710  1.254  dholland 	} */ *ap = v;
   1711  1.254  dholland 	struct inode *ip = VTOI(ap->a_vp);
   1712  1.254  dholland 	struct ulfsmount *ump = ip->i_ump;
   1713  1.254  dholland 	//struct lfs *fs = ip->i_lfs;
   1714  1.254  dholland 
   1715  1.254  dholland 	/* Not supported for ULFS1 file systems. */
   1716  1.254  dholland 	if (ump->um_fstype == ULFS1)
   1717  1.254  dholland 		return (EOPNOTSUPP);
   1718  1.254  dholland 
   1719  1.254  dholland 	/* XXX Not implemented for ULFS2 file systems. */
   1720  1.254  dholland 	return (EOPNOTSUPP);
   1721  1.254  dholland }
   1722  1.254  dholland 
   1723  1.254  dholland static int
   1724  1.254  dholland lfs_closeextattr(void *v)
   1725  1.254  dholland {
   1726  1.254  dholland 	struct vop_closeextattr_args /* {
   1727  1.254  dholland 		struct vnode *a_vp;
   1728  1.254  dholland 		int a_commit;
   1729  1.254  dholland 		kauth_cred_t a_cred;
   1730  1.254  dholland 		struct proc *a_p;
   1731  1.254  dholland 	} */ *ap = v;
   1732  1.254  dholland 	struct inode *ip = VTOI(ap->a_vp);
   1733  1.254  dholland 	struct ulfsmount *ump = ip->i_ump;
   1734  1.254  dholland 	//struct lfs *fs = ip->i_lfs;
   1735  1.254  dholland 
   1736  1.254  dholland 	/* Not supported for ULFS1 file systems. */
   1737  1.254  dholland 	if (ump->um_fstype == ULFS1)
   1738  1.254  dholland 		return (EOPNOTSUPP);
   1739  1.254  dholland 
   1740  1.254  dholland 	/* XXX Not implemented for ULFS2 file systems. */
   1741  1.254  dholland 	return (EOPNOTSUPP);
   1742  1.254  dholland }
   1743  1.254  dholland 
   1744  1.254  dholland static int
   1745  1.254  dholland lfs_getextattr(void *v)
   1746  1.254  dholland {
   1747  1.254  dholland 	struct vop_getextattr_args /* {
   1748  1.254  dholland 		struct vnode *a_vp;
   1749  1.254  dholland 		int a_attrnamespace;
   1750  1.254  dholland 		const char *a_name;
   1751  1.254  dholland 		struct uio *a_uio;
   1752  1.254  dholland 		size_t *a_size;
   1753  1.254  dholland 		kauth_cred_t a_cred;
   1754  1.254  dholland 		struct proc *a_p;
   1755  1.254  dholland 	} */ *ap = v;
   1756  1.254  dholland 	struct vnode *vp = ap->a_vp;
   1757  1.254  dholland 	struct inode *ip = VTOI(vp);
   1758  1.254  dholland 	struct ulfsmount *ump = ip->i_ump;
   1759  1.254  dholland 	//struct lfs *fs = ip->i_lfs;
   1760  1.254  dholland 	int error;
   1761  1.254  dholland 
   1762  1.254  dholland 	if (ump->um_fstype == ULFS1) {
   1763  1.254  dholland #ifdef LFS_EXTATTR
   1764  1.254  dholland 		fstrans_start(vp->v_mount, FSTRANS_SHARED);
   1765  1.254  dholland 		error = ulfs_getextattr(ap);
   1766  1.254  dholland 		fstrans_done(vp->v_mount);
   1767  1.254  dholland #else
   1768  1.254  dholland 		error = EOPNOTSUPP;
   1769  1.254  dholland #endif
   1770  1.254  dholland 		return error;
   1771  1.254  dholland 	}
   1772  1.254  dholland 
   1773  1.254  dholland 	/* XXX Not implemented for ULFS2 file systems. */
   1774  1.254  dholland 	return (EOPNOTSUPP);
   1775  1.254  dholland }
   1776  1.254  dholland 
   1777  1.254  dholland static int
   1778  1.254  dholland lfs_setextattr(void *v)
   1779  1.254  dholland {
   1780  1.254  dholland 	struct vop_setextattr_args /* {
   1781  1.254  dholland 		struct vnode *a_vp;
   1782  1.254  dholland 		int a_attrnamespace;
   1783  1.254  dholland 		const char *a_name;
   1784  1.254  dholland 		struct uio *a_uio;
   1785  1.254  dholland 		kauth_cred_t a_cred;
   1786  1.254  dholland 		struct proc *a_p;
   1787  1.254  dholland 	} */ *ap = v;
   1788  1.254  dholland 	struct vnode *vp = ap->a_vp;
   1789  1.254  dholland 	struct inode *ip = VTOI(vp);
   1790  1.254  dholland 	struct ulfsmount *ump = ip->i_ump;
   1791  1.254  dholland 	//struct lfs *fs = ip->i_lfs;
   1792  1.254  dholland 	int error;
   1793  1.254  dholland 
   1794  1.254  dholland 	if (ump->um_fstype == ULFS1) {
   1795  1.254  dholland #ifdef LFS_EXTATTR
   1796  1.254  dholland 		fstrans_start(vp->v_mount, FSTRANS_SHARED);
   1797  1.254  dholland 		error = ulfs_setextattr(ap);
   1798  1.254  dholland 		fstrans_done(vp->v_mount);
   1799  1.254  dholland #else
   1800  1.254  dholland 		error = EOPNOTSUPP;
   1801  1.254  dholland #endif
   1802  1.254  dholland 		return error;
   1803  1.254  dholland 	}
   1804  1.254  dholland 
   1805  1.254  dholland 	/* XXX Not implemented for ULFS2 file systems. */
   1806  1.254  dholland 	return (EOPNOTSUPP);
   1807  1.254  dholland }
   1808  1.254  dholland 
   1809  1.254  dholland static int
   1810  1.254  dholland lfs_listextattr(void *v)
   1811  1.254  dholland {
   1812  1.254  dholland 	struct vop_listextattr_args /* {
   1813  1.254  dholland 		struct vnode *a_vp;
   1814  1.254  dholland 		int a_attrnamespace;
   1815  1.254  dholland 		struct uio *a_uio;
   1816  1.254  dholland 		size_t *a_size;
   1817  1.254  dholland 		kauth_cred_t a_cred;
   1818  1.254  dholland 		struct proc *a_p;
   1819  1.254  dholland 	} */ *ap = v;
   1820  1.254  dholland 	struct vnode *vp = ap->a_vp;
   1821  1.254  dholland 	struct inode *ip = VTOI(vp);
   1822  1.254  dholland 	struct ulfsmount *ump = ip->i_ump;
   1823  1.254  dholland 	//struct lfs *fs = ip->i_lfs;
   1824  1.254  dholland 	int error;
   1825  1.254  dholland 
   1826  1.254  dholland 	if (ump->um_fstype == ULFS1) {
   1827  1.254  dholland #ifdef LFS_EXTATTR
   1828  1.254  dholland 		fstrans_start(vp->v_mount, FSTRANS_SHARED);
   1829  1.254  dholland 		error = ulfs_listextattr(ap);
   1830  1.254  dholland 		fstrans_done(vp->v_mount);
   1831  1.254  dholland #else
   1832  1.254  dholland 		error = EOPNOTSUPP;
   1833  1.254  dholland #endif
   1834  1.254  dholland 		return error;
   1835  1.254  dholland 	}
   1836  1.254  dholland 
   1837  1.254  dholland 	/* XXX Not implemented for ULFS2 file systems. */
   1838  1.254  dholland 	return (EOPNOTSUPP);
   1839  1.254  dholland }
   1840  1.254  dholland 
   1841  1.254  dholland static int
   1842  1.254  dholland lfs_deleteextattr(void *v)
   1843  1.254  dholland {
   1844  1.254  dholland 	struct vop_deleteextattr_args /* {
   1845  1.254  dholland 		struct vnode *a_vp;
   1846  1.254  dholland 		int a_attrnamespace;
   1847  1.254  dholland 		kauth_cred_t a_cred;
   1848  1.254  dholland 		struct proc *a_p;
   1849  1.254  dholland 	} */ *ap = v;
   1850  1.254  dholland 	struct vnode *vp = ap->a_vp;
   1851  1.254  dholland 	struct inode *ip = VTOI(vp);
   1852  1.254  dholland 	struct ulfsmount *ump = ip->i_ump;
   1853  1.254  dholland 	//struct fs *fs = ip->i_lfs;
   1854  1.254  dholland 	int error;
   1855  1.254  dholland 
   1856  1.254  dholland 	if (ump->um_fstype == ULFS1) {
   1857  1.254  dholland #ifdef LFS_EXTATTR
   1858  1.254  dholland 		fstrans_start(vp->v_mount, FSTRANS_SHARED);
   1859  1.254  dholland 		error = ulfs_deleteextattr(ap);
   1860  1.254  dholland 		fstrans_done(vp->v_mount);
   1861  1.254  dholland #else
   1862  1.254  dholland 		error = EOPNOTSUPP;
   1863  1.254  dholland #endif
   1864  1.254  dholland 		return error;
   1865  1.254  dholland 	}
   1866  1.254  dholland 
   1867  1.254  dholland 	/* XXX Not implemented for ULFS2 file systems. */
   1868  1.254  dholland 	return (EOPNOTSUPP);
   1869  1.254  dholland }
   1870