#ifndef DIAGNOSTIC
#define DIAGNOSTIC
#endif
#ifndef DEBUG
#define DEBUG
#endif
#include <sys/param.h>
#include <sys/kernel.h>
#include <sys/systm.h>
#include <sys/buf.h>
#include <sys/malloc.h>
#include <sys/mount.h>
#include <sys/proc.h>
#include <sys/spinlock2.h>
#include <sys/syslog.h>
#include <sys/vnode.h>
#include <sys/conf.h>
#include <machine/inttypes.h>
#include "dir.h"
#include "quota.h"
#include "inode.h"
#include "ufsmount.h"
#include "fs.h"
#include "softdep.h"
#include "ffs_extern.h"
#include "ufs_extern.h"
#include <sys/buf2.h>
#include <sys/lock.h>
MALLOC_DEFINE(M_PAGEDEP, "pagedep","File page dependencies");
MALLOC_DEFINE(M_INODEDEP, "inodedep","Inode dependencies");
MALLOC_DEFINE(M_NEWBLK, "newblk","New block allocation");
MALLOC_DEFINE(M_BMSAFEMAP, "bmsafemap","Block or frag allocated from cyl group map");
MALLOC_DEFINE(M_ALLOCDIRECT, "allocdirect","Block or frag dependency for an inode");
MALLOC_DEFINE(M_INDIRDEP, "indirdep","Indirect block dependencies");
MALLOC_DEFINE(M_ALLOCINDIR, "allocindir","Block dependency for an indirect block");
MALLOC_DEFINE(M_FREEFRAG, "freefrag","Previously used frag for an inode");
MALLOC_DEFINE(M_FREEBLKS, "freeblks","Blocks freed from an inode");
MALLOC_DEFINE(M_FREEFILE, "freefile","Inode deallocated");
MALLOC_DEFINE(M_DIRADD, "diradd","New directory entry");
MALLOC_DEFINE(M_MKDIR, "mkdir","New directory");
MALLOC_DEFINE(M_DIRREM, "dirrem","Directory entry deleted");
#define M_SOFTDEP_FLAGS (M_WAITOK | M_USE_RESERVE)
#define D_PAGEDEP 0
#define D_INODEDEP 1
#define D_NEWBLK 2
#define D_BMSAFEMAP 3
#define D_ALLOCDIRECT 4
#define D_INDIRDEP 5
#define D_ALLOCINDIR 6
#define D_FREEFRAG 7
#define D_FREEBLKS 8
#define D_FREEFILE 9
#define D_DIRADD 10
#define D_MKDIR 11
#define D_DIRREM 12
#define D_LAST D_DIRREM
static struct malloc_type *memtype[] = {
M_PAGEDEP,
M_INODEDEP,
M_NEWBLK,
M_BMSAFEMAP,
M_ALLOCDIRECT,
M_INDIRDEP,
M_ALLOCINDIR,
M_FREEFRAG,
M_FREEBLKS,
M_FREEFILE,
M_DIRADD,
M_MKDIR,
M_DIRREM
};
#define DtoM(type) (memtype[type])
#define TYPENAME(type) \
((unsigned)(type) < D_LAST ? memtype[type]->ks_shortdesc : "???")
static void softdep_error(char *, int);
static void drain_output(struct vnode *, int);
static int getdirtybuf(struct buf **, int);
static void clear_remove(struct thread *);
static void clear_inodedeps(struct thread *);
static int flush_pagedep_deps(struct vnode *, struct mount *,
struct diraddhd *);
static int flush_inodedep_deps(struct fs *, ino_t);
static int handle_written_filepage(struct pagedep *, struct buf *);
static void diradd_inode_written(struct diradd *, struct inodedep *);
static int handle_written_inodeblock(struct inodedep *, struct buf *);
static void handle_allocdirect_partdone(struct allocdirect *);
static void handle_allocindir_partdone(struct allocindir *);
static void initiate_write_filepage(struct pagedep *, struct buf *);
static void handle_written_mkdir(struct mkdir *, int);
static void initiate_write_inodeblock(struct inodedep *, struct buf *);
static void handle_workitem_freefile(struct freefile *);
static void handle_workitem_remove(struct dirrem *);
static struct dirrem *newdirrem(struct buf *, struct inode *,
struct inode *, int, struct dirrem **);
static void free_diradd(struct diradd *);
static void free_allocindir(struct allocindir *, struct inodedep *);
static int indir_trunc (struct inode *, off_t, int, ufs_lbn_t, long *);
static void deallocate_dependencies(struct buf *, struct inodedep *);
static void free_allocdirect(struct allocdirectlst *,
struct allocdirect *, int);
static int check_inode_unwritten(struct inodedep *);
static int free_inodedep(struct inodedep *);
static void handle_workitem_freeblocks(struct freeblks *);
static void merge_inode_lists(struct inodedep *);
static void setup_allocindir_phase2(struct buf *, struct inode *,
struct allocindir *);
static struct allocindir *newallocindir(struct inode *, int, ufs_daddr_t,
ufs_daddr_t);
static void handle_workitem_freefrag(struct freefrag *);
static struct freefrag *newfreefrag(struct inode *, ufs_daddr_t, long);
static void allocdirect_merge(struct allocdirectlst *,
struct allocdirect *, struct allocdirect *);
static struct bmsafemap *bmsafemap_lookup(struct buf *);
static int newblk_lookup(struct fs *, ufs_daddr_t, int,
struct newblk **);
static int inodedep_lookup(struct fs *, ino_t, int, struct inodedep **);
static int pagedep_lookup(struct inode *, ufs_lbn_t, int,
struct pagedep **);
static int request_cleanup(int);
static int process_worklist_item(struct mount *, int);
static void add_to_worklist(struct worklist *);
static void softdep_disk_io_initiation(struct buf *);
static void softdep_disk_write_complete(struct buf *);
static void softdep_deallocate_dependencies(struct buf *);
static int softdep_fsync(struct vnode *);
static int softdep_process_worklist(struct mount *);
static void softdep_move_dependencies(struct buf *, struct buf *);
static int softdep_count_dependencies(struct buf *bp, int);
static int softdep_checkread(struct buf *bp);
static int softdep_checkwrite(struct buf *bp);
static struct bio_ops softdep_bioops = {
.io_start = softdep_disk_io_initiation,
.io_complete = softdep_disk_write_complete,
.io_deallocate = softdep_deallocate_dependencies,
.io_fsync = softdep_fsync,
.io_sync = softdep_process_worklist,
.io_movedeps = softdep_move_dependencies,
.io_countdeps = softdep_count_dependencies,
.io_checkread = softdep_checkread,
.io_checkwrite = softdep_checkwrite
};
static void acquire_lock(struct lock *);
static void free_lock(struct lock *);
#ifdef INVARIANTS
static int lock_held(struct lock *);
#endif
static struct lock lk;
#define ACQUIRE_LOCK(lkp) acquire_lock(lkp)
#define FREE_LOCK(lkp) free_lock(lkp)
static void
acquire_lock(struct lock *lkp)
{
lockmgr(lkp, LK_EXCLUSIVE);
}
static void
free_lock(struct lock *lkp)
{
lockmgr(lkp, LK_RELEASE);
}
#ifdef INVARIANTS
static int
lock_held(struct lock *lkp)
{
return lockinuse(lkp);
}
#endif
struct sema {
int value;
thread_t holder;
char *name;
int timo;
struct spinlock spin;
};
static void sema_init(struct sema *, char *, int);
static int sema_get(struct sema *, struct lock *);
static void sema_release(struct sema *, struct lock *);
#define NOHOLDER ((struct thread *) -1)
static void
sema_init(struct sema *semap, char *name, int timo)
{
semap->holder = NOHOLDER;
semap->value = 0;
semap->name = name;
semap->timo = timo;
spin_init(&semap->spin, "ufssema");
}
static int
sema_get(struct sema *semap, struct lock *interlock)
{
int rv;
if (interlock) {
if (semap->value > 0) {
++semap->value;
lksleep(semap, interlock, 0,
semap->name, semap->timo);
rv = 0;
} else {
semap->value = 1;
semap->holder = curthread;
rv = 1;
}
} else {
spin_lock(&semap->spin);
if (semap->value > 0) {
++semap->value;
ssleep(semap, &semap->spin, 0,
semap->name, semap->timo);
spin_unlock(&semap->spin);
rv = 0;
} else {
semap->value = 1;
semap->holder = curthread;
spin_unlock(&semap->spin);
rv = 1;
}
}
return (rv);
}
static void
sema_release(struct sema *semap, struct lock *lk)
{
if (semap->value <= 0 || semap->holder != curthread)
panic("sema_release: not held");
if (lk) {
semap->holder = NOHOLDER;
if (--semap->value > 0) {
semap->value = 0;
wakeup(semap);
}
} else {
spin_lock(&semap->spin);
semap->holder = NOHOLDER;
if (--semap->value > 0) {
semap->value = 0;
spin_unlock(&semap->spin);
wakeup(semap);
} else {
spin_unlock(&semap->spin);
}
}
}
static void worklist_insert(struct workhead *, struct worklist *);
static void worklist_remove(struct worklist *);
static void workitem_free(struct worklist *, int);
#define WORKLIST_INSERT_BP(bp, item) do { \
(bp)->b_ops = &softdep_bioops; \
worklist_insert(&(bp)->b_dep, item); \
} while (0)
#define WORKLIST_INSERT(head, item) worklist_insert(head, item)
#define WORKLIST_REMOVE(item) worklist_remove(item)
#define WORKITEM_FREE(item, type) workitem_free((struct worklist *)item, type)
static void
worklist_insert(struct workhead *head, struct worklist *item)
{
KKASSERT(lock_held(&lk));
if (item->wk_state & ONWORKLIST) {
panic("worklist_insert: already on list");
}
item->wk_state |= ONWORKLIST;
LIST_INSERT_HEAD(head, item, wk_list);
}
static void
worklist_remove(struct worklist *item)
{
KKASSERT(lock_held(&lk));
if ((item->wk_state & ONWORKLIST) == 0)
panic("worklist_remove: not on list");
item->wk_state &= ~ONWORKLIST;
LIST_REMOVE(item, wk_list);
}
static void
workitem_free(struct worklist *item, int type)
{
if (item->wk_state & ONWORKLIST)
panic("workitem_free: still on list");
if (item->wk_type != type)
panic("workitem_free: type mismatch");
kfree(item, DtoM(type));
}
static struct workhead softdep_workitem_pending;
static int num_on_worklist;
static int softdep_worklist_busy;
static int softdep_worklist_req;
static int max_softdeps;
static int tickdelay = 2;
static int *stat_countp;
static int proc_waiting;
static struct thread *filesys_syncer;
static int req_clear_inodedeps;
#define FLUSH_INODES 1
static int req_clear_remove;
#define FLUSH_REMOVE 2
static int stat_worklist_push;
static int stat_blk_limit_push;
static int stat_ino_limit_push;
static int stat_blk_limit_hit;
static int stat_ino_limit_hit;
static int stat_sync_limit_hit;
static int stat_indir_blk_ptrs;
static int stat_inode_bitmap;
static int stat_direct_blk_ptrs;
static int stat_dir_entry;
#ifdef DEBUG
#include <vm/vm.h>
#include <sys/sysctl.h>
SYSCTL_INT(_debug, OID_AUTO, max_softdeps, CTLFLAG_RW, &max_softdeps, 0,
"Maximum soft dependencies before slowdown occurs");
SYSCTL_INT(_debug, OID_AUTO, tickdelay, CTLFLAG_RW, &tickdelay, 0,
"Ticks to delay before allocating during slowdown");
SYSCTL_INT(_debug, OID_AUTO, worklist_push, CTLFLAG_RW, &stat_worklist_push, 0,
"Number of worklist cleanups");
SYSCTL_INT(_debug, OID_AUTO, blk_limit_push, CTLFLAG_RW, &stat_blk_limit_push, 0,
"Number of times block limit neared");
SYSCTL_INT(_debug, OID_AUTO, ino_limit_push, CTLFLAG_RW, &stat_ino_limit_push, 0,
"Number of times inode limit neared");
SYSCTL_INT(_debug, OID_AUTO, blk_limit_hit, CTLFLAG_RW, &stat_blk_limit_hit, 0,
"Number of times block slowdown imposed");
SYSCTL_INT(_debug, OID_AUTO, ino_limit_hit, CTLFLAG_RW, &stat_ino_limit_hit, 0,
"Number of times inode slowdown imposed ");
SYSCTL_INT(_debug, OID_AUTO, sync_limit_hit, CTLFLAG_RW, &stat_sync_limit_hit, 0,
"Number of synchronous slowdowns imposed");
SYSCTL_INT(_debug, OID_AUTO, indir_blk_ptrs, CTLFLAG_RW, &stat_indir_blk_ptrs, 0,
"Bufs redirtied as indir ptrs not written");
SYSCTL_INT(_debug, OID_AUTO, inode_bitmap, CTLFLAG_RW, &stat_inode_bitmap, 0,
"Bufs redirtied as inode bitmap not written");
SYSCTL_INT(_debug, OID_AUTO, direct_blk_ptrs, CTLFLAG_RW, &stat_direct_blk_ptrs, 0,
"Bufs redirtied as direct ptrs not written");
SYSCTL_INT(_debug, OID_AUTO, dir_entry, CTLFLAG_RW, &stat_dir_entry, 0,
"Bufs redirtied as dir entry cannot write");
#endif
static void
add_to_worklist(struct worklist *wk)
{
static struct worklist *worklist_tail;
if (wk->wk_state & ONWORKLIST) {
panic("add_to_worklist: already on list");
}
wk->wk_state |= ONWORKLIST;
if (LIST_FIRST(&softdep_workitem_pending) == NULL)
LIST_INSERT_HEAD(&softdep_workitem_pending, wk, wk_list);
else
LIST_INSERT_AFTER(worklist_tail, wk, wk_list);
worklist_tail = wk;
num_on_worklist += 1;
}
static int
softdep_process_worklist(struct mount *matchmnt)
{
thread_t td = curthread;
int matchcnt, loopcount;
int starttime;
ACQUIRE_LOCK(&lk);
filesys_syncer = td;
matchcnt = 0;
if (matchmnt == NULL) {
if (softdep_worklist_busy < 0) {
matchcnt = -1;
goto done;
}
softdep_worklist_busy += 1;
}
if (req_clear_inodedeps) {
clear_inodedeps(td);
req_clear_inodedeps -= 1;
wakeup_one(&proc_waiting);
}
if (req_clear_remove) {
clear_remove(td);
req_clear_remove -= 1;
wakeup_one(&proc_waiting);
}
loopcount = 1;
starttime = ticks;
while (num_on_worklist > 0) {
matchcnt += process_worklist_item(matchmnt, 0);
if (softdep_worklist_req && matchmnt == NULL) {
matchcnt = -1;
break;
}
if (req_clear_inodedeps) {
clear_inodedeps(td);
req_clear_inodedeps -= 1;
wakeup_one(&proc_waiting);
}
if (req_clear_remove) {
clear_remove(td);
req_clear_remove -= 1;
wakeup_one(&proc_waiting);
}
if (loopcount++ % 128 == 0) {
FREE_LOCK(&lk);
bwillinode(1);
ACQUIRE_LOCK(&lk);
}
if ((ticks - starttime) > hz && matchmnt == NULL) {
matchcnt = -1;
break;
}
}
if (matchmnt == NULL) {
--softdep_worklist_busy;
if (softdep_worklist_req && softdep_worklist_busy == 0)
wakeup(&softdep_worklist_req);
}
done:
FREE_LOCK(&lk);
return (matchcnt);
}
static int
process_worklist_item(struct mount *matchmnt, int flags)
{
struct ufsmount *ump;
struct worklist *wk;
struct dirrem *dirrem;
struct fs *matchfs;
struct vnode *vp;
int matchcnt = 0;
KKASSERT(lock_held(&lk));
matchfs = NULL;
if (matchmnt != NULL)
matchfs = VFSTOUFS(matchmnt)->um_fs;
LIST_FOREACH(wk, &softdep_workitem_pending, wk_list) {
if ((flags & LK_NOWAIT) == 0 || wk->wk_type != D_DIRREM)
break;
dirrem = WK_DIRREM(wk);
ump = VFSTOUFS(dirrem->dm_mnt);
lwkt_gettoken(&ump->um_mountp->mnt_token);
vp = ufs_ihashlookup(ump, ump->um_dev, dirrem->dm_oldinum);
lwkt_reltoken(&ump->um_mountp->mnt_token);
if (vp == NULL || !vn_islocked(vp))
break;
}
if (wk == NULL) {
return (0);
}
WORKLIST_REMOVE(wk);
num_on_worklist -= 1;
FREE_LOCK(&lk);
switch (wk->wk_type) {
case D_DIRREM:
if (WK_DIRREM(wk)->dm_mnt == matchmnt)
matchcnt += 1;
handle_workitem_remove(WK_DIRREM(wk));
break;
case D_FREEBLKS:
if (WK_FREEBLKS(wk)->fb_fs == matchfs)
matchcnt += 1;
handle_workitem_freeblocks(WK_FREEBLKS(wk));
break;
case D_FREEFRAG:
if (WK_FREEFRAG(wk)->ff_fs == matchfs)
matchcnt += 1;
handle_workitem_freefrag(WK_FREEFRAG(wk));
break;
case D_FREEFILE:
if (WK_FREEFILE(wk)->fx_fs == matchfs)
matchcnt += 1;
handle_workitem_freefile(WK_FREEFILE(wk));
break;
default:
panic("%s_process_worklist: Unknown type %s",
"softdep", TYPENAME(wk->wk_type));
}
ACQUIRE_LOCK(&lk);
return (matchcnt);
}
static void
softdep_move_dependencies(struct buf *oldbp, struct buf *newbp)
{
struct worklist *wk, *wktail;
if (LIST_FIRST(&newbp->b_dep) != NULL)
panic("softdep_move_dependencies: need merge code");
wktail = NULL;
ACQUIRE_LOCK(&lk);
while ((wk = LIST_FIRST(&oldbp->b_dep)) != NULL) {
LIST_REMOVE(wk, wk_list);
if (wktail == NULL)
LIST_INSERT_HEAD(&newbp->b_dep, wk, wk_list);
else
LIST_INSERT_AFTER(wktail, wk, wk_list);
wktail = wk;
newbp->b_ops = &softdep_bioops;
}
FREE_LOCK(&lk);
}
int
softdep_flushfiles(struct mount *oldmnt, int flags)
{
struct vnode *devvp;
int error, loopcnt;
ACQUIRE_LOCK(&lk);
while (softdep_worklist_busy != 0) {
softdep_worklist_req += 1;
lksleep(&softdep_worklist_req, &lk, 0, "softflush", 0);
softdep_worklist_req -= 1;
}
softdep_worklist_busy = -1;
FREE_LOCK(&lk);
if ((error = ffs_flushfiles(oldmnt, flags)) != 0) {
softdep_worklist_busy = 0;
if (softdep_worklist_req)
wakeup(&softdep_worklist_req);
return (error);
}
devvp = VFSTOUFS(oldmnt)->um_devvp;
for (loopcnt = 10; loopcnt > 0; ) {
if (softdep_process_worklist(oldmnt) == 0) {
loopcnt--;
if ((error = ffs_flushfiles(oldmnt, flags)) != 0)
break;
if (softdep_process_worklist(oldmnt) == 0)
break;
}
vn_lock(devvp, LK_EXCLUSIVE | LK_RETRY);
error = VOP_FSYNC(devvp, MNT_WAIT, 0);
vn_unlock(devvp);
if (error)
break;
}
ACQUIRE_LOCK(&lk);
softdep_worklist_busy = 0;
if (softdep_worklist_req)
wakeup(&softdep_worklist_req);
FREE_LOCK(&lk);
if (loopcnt == 0) {
if (oldmnt->mnt_kern_flag & MNTK_UNMOUNT)
panic("softdep_flushfiles: looping");
error = EBUSY;
}
return (error);
}
#define DEPALLOC 0x0001
#define NODELAY 0x0002
LIST_HEAD(pagedep_hashhead, pagedep) *pagedep_hashtbl;
u_long pagedep_hash;
#define PAGEDEP_HASH(mp, inum, lbn) \
(&pagedep_hashtbl[((((register_t)(mp)) >> 13) + (inum) + (lbn)) & \
pagedep_hash])
static struct sema pagedep_in_progress;
static __inline
struct pagedep *
pagedep_find(struct pagedep_hashhead *pagedephd, ino_t ino, ufs_lbn_t lbn,
struct mount *mp)
{
struct pagedep *pagedep;
LIST_FOREACH(pagedep, pagedephd, pd_hash) {
if (ino == pagedep->pd_ino &&
lbn == pagedep->pd_lbn &&
mp == pagedep->pd_mnt) {
return (pagedep);
}
}
return(NULL);
}
static int
pagedep_lookup(struct inode *ip, ufs_lbn_t lbn, int flags,
struct pagedep **pagedeppp)
{
struct pagedep *pagedep;
struct pagedep_hashhead *pagedephd;
struct mount *mp;
int i;
KKASSERT(lock_held(&lk));
mp = ITOV(ip)->v_mount;
pagedephd = PAGEDEP_HASH(mp, ip->i_number, lbn);
top:
*pagedeppp = pagedep_find(pagedephd, ip->i_number, lbn, mp);
if (*pagedeppp)
return(1);
if ((flags & DEPALLOC) == 0)
return (0);
if (sema_get(&pagedep_in_progress, &lk) == 0)
goto top;
FREE_LOCK(&lk);
pagedep = kmalloc(sizeof(struct pagedep), M_PAGEDEP,
M_SOFTDEP_FLAGS | M_ZERO);
ACQUIRE_LOCK(&lk);
if (pagedep_find(pagedephd, ip->i_number, lbn, mp)) {
kprintf("pagedep_lookup: blocking race avoided\n");
sema_release(&pagedep_in_progress, &lk);
kfree(pagedep, M_PAGEDEP);
goto top;
}
pagedep->pd_list.wk_type = D_PAGEDEP;
pagedep->pd_mnt = mp;
pagedep->pd_ino = ip->i_number;
pagedep->pd_lbn = lbn;
LIST_INIT(&pagedep->pd_dirremhd);
LIST_INIT(&pagedep->pd_pendinghd);
for (i = 0; i < DAHASHSZ; i++)
LIST_INIT(&pagedep->pd_diraddhd[i]);
LIST_INSERT_HEAD(pagedephd, pagedep, pd_hash);
sema_release(&pagedep_in_progress, &lk);
*pagedeppp = pagedep;
return (0);
}
LIST_HEAD(inodedep_hashhead, inodedep) *inodedep_hashtbl;
static u_long inodedep_hash;
static long num_inodedep;
#define INODEDEP_HASH(fs, inum) \
(&inodedep_hashtbl[((((register_t)(fs)) >> 13) + (inum)) & inodedep_hash])
static struct sema inodedep_in_progress;
static __inline
struct inodedep *
inodedep_find(struct inodedep_hashhead *inodedephd, struct fs *fs, ino_t inum)
{
struct inodedep *inodedep;
LIST_FOREACH(inodedep, inodedephd, id_hash) {
if (inum == inodedep->id_ino && fs == inodedep->id_fs)
return(inodedep);
}
return (NULL);
}
static int
inodedep_lookup(struct fs *fs, ino_t inum, int flags,
struct inodedep **inodedeppp)
{
struct inodedep *inodedep;
struct inodedep_hashhead *inodedephd;
KKASSERT(lock_held(&lk));
inodedephd = INODEDEP_HASH(fs, inum);
top:
*inodedeppp = inodedep_find(inodedephd, fs, inum);
if (*inodedeppp)
return (1);
if ((flags & DEPALLOC) == 0)
return (0);
if (num_inodedep > max_softdeps / 2)
speedup_syncer(NULL);
if (num_inodedep > max_softdeps &&
(flags & NODELAY) == 0 &&
request_cleanup(FLUSH_INODES)) {
goto top;
}
if (sema_get(&inodedep_in_progress, &lk) == 0)
goto top;
FREE_LOCK(&lk);
inodedep = kmalloc(sizeof(struct inodedep), M_INODEDEP,
M_SOFTDEP_FLAGS | M_ZERO);
ACQUIRE_LOCK(&lk);
if (inodedep_find(inodedephd, fs, inum)) {
kprintf("inodedep_lookup: blocking race avoided\n");
sema_release(&inodedep_in_progress, &lk);
kfree(inodedep, M_INODEDEP);
goto top;
}
inodedep->id_list.wk_type = D_INODEDEP;
inodedep->id_fs = fs;
inodedep->id_ino = inum;
inodedep->id_state = ALLCOMPLETE;
inodedep->id_nlinkdelta = 0;
inodedep->id_savedino = NULL;
inodedep->id_savedsize = -1;
inodedep->id_buf = NULL;
LIST_INIT(&inodedep->id_pendinghd);
LIST_INIT(&inodedep->id_inowait);
LIST_INIT(&inodedep->id_bufwait);
TAILQ_INIT(&inodedep->id_inoupdt);
TAILQ_INIT(&inodedep->id_newinoupdt);
num_inodedep += 1;
LIST_INSERT_HEAD(inodedephd, inodedep, id_hash);
sema_release(&inodedep_in_progress, &lk);
*inodedeppp = inodedep;
return (0);
}
LIST_HEAD(newblk_hashhead, newblk) *newblk_hashtbl;
u_long newblk_hash;
#define NEWBLK_HASH(fs, inum) \
(&newblk_hashtbl[((((register_t)(fs)) >> 13) + (inum)) & newblk_hash])
static struct sema newblk_in_progress;
static __inline
struct newblk *
newblk_find(struct newblk_hashhead *newblkhd, struct fs *fs,
ufs_daddr_t newblkno)
{
struct newblk *newblk;
LIST_FOREACH(newblk, newblkhd, nb_hash) {
if (newblkno == newblk->nb_newblkno && fs == newblk->nb_fs)
return (newblk);
}
return(NULL);
}
static int
newblk_lookup(struct fs *fs, ufs_daddr_t newblkno, int flags,
struct newblk **newblkpp)
{
struct newblk *newblk;
struct newblk_hashhead *newblkhd;
newblkhd = NEWBLK_HASH(fs, newblkno);
top:
*newblkpp = newblk_find(newblkhd, fs, newblkno);
if (*newblkpp)
return(1);
if ((flags & DEPALLOC) == 0)
return (0);
if (sema_get(&newblk_in_progress, NULL) == 0)
goto top;
newblk = kmalloc(sizeof(struct newblk), M_NEWBLK,
M_SOFTDEP_FLAGS | M_ZERO);
if (newblk_find(newblkhd, fs, newblkno)) {
kprintf("newblk_lookup: blocking race avoided\n");
sema_release(&pagedep_in_progress, NULL);
kfree(newblk, M_NEWBLK);
goto top;
}
newblk->nb_state = 0;
newblk->nb_fs = fs;
newblk->nb_newblkno = newblkno;
LIST_INSERT_HEAD(newblkhd, newblk, nb_hash);
sema_release(&newblk_in_progress, NULL);
*newblkpp = newblk;
return (0);
}
void
softdep_initialize(void)
{
size_t idsize = sizeof(struct inodedep);
int hsize = vfs_inodehashsize();
LIST_INIT(&mkdirlisthd);
LIST_INIT(&softdep_workitem_pending);
max_softdeps = min(maxvnodes * 8, M_INODEDEP->ks_limit / (2 * idsize));
max_softdeps = min(max_softdeps, 100000);
pagedep_hashtbl = hashinit(hsize / 4, M_PAGEDEP, &pagedep_hash);
lockinit(&lk, "ffs_softdep", 0, LK_CANRECURSE);
sema_init(&pagedep_in_progress, "pagedep", 0);
inodedep_hashtbl = hashinit(hsize, M_INODEDEP, &inodedep_hash);
sema_init(&inodedep_in_progress, "inodedep", 0);
newblk_hashtbl = hashinit(64, M_NEWBLK, &newblk_hash);
sema_init(&newblk_in_progress, "newblk", 0);
add_bio_ops(&softdep_bioops);
}
int
softdep_mount(struct vnode *devvp, struct mount *mp, struct fs *fs)
{
struct csum cstotal;
struct cg *cgp;
struct buf *bp;
int error, cyl;
mp->mnt_flag &= ~MNT_ASYNC;
mp->mnt_flag |= MNT_SOFTDEP;
mp->mnt_bioops = &softdep_bioops;
if (fs->fs_clean != 0)
return (0);
bzero(&cstotal, sizeof cstotal);
for (cyl = 0; cyl < fs->fs_ncg; cyl++) {
if ((error = bread(devvp, fsbtodoff(fs, cgtod(fs, cyl)),
fs->fs_cgsize, &bp)) != 0) {
brelse(bp);
return (error);
}
cgp = (struct cg *)bp->b_data;
cstotal.cs_nffree += cgp->cg_cs.cs_nffree;
cstotal.cs_nbfree += cgp->cg_cs.cs_nbfree;
cstotal.cs_nifree += cgp->cg_cs.cs_nifree;
cstotal.cs_ndir += cgp->cg_cs.cs_ndir;
fs->fs_cs(fs, cyl) = cgp->cg_cs;
brelse(bp);
}
#ifdef DEBUG
if (bcmp(&cstotal, &fs->fs_cstotal, sizeof cstotal))
kprintf("ffs_mountfs: superblock updated for soft updates\n");
#endif
bcopy(&cstotal, &fs->fs_cstotal, sizeof cstotal);
return (0);
}
void
softdep_setup_inomapdep(struct buf *bp, struct inode *ip, ino_t newinum)
{
struct inodedep *inodedep;
struct bmsafemap *bmsafemap;
ACQUIRE_LOCK(&lk);
if ((inodedep_lookup(ip->i_fs, newinum, DEPALLOC|NODELAY, &inodedep))) {
panic("softdep_setup_inomapdep: found inode");
}
inodedep->id_buf = bp;
inodedep->id_state &= ~DEPCOMPLETE;
bmsafemap = bmsafemap_lookup(bp);
LIST_INSERT_HEAD(&bmsafemap->sm_inodedephd, inodedep, id_deps);
FREE_LOCK(&lk);
}
void
softdep_setup_blkmapdep(struct buf *bp, struct fs *fs,
ufs_daddr_t newblkno)
{
struct newblk *newblk;
struct bmsafemap *bmsafemap;
if (newblk_lookup(fs, newblkno, DEPALLOC, &newblk) != 0)
panic("softdep_setup_blkmapdep: found block");
ACQUIRE_LOCK(&lk);
newblk->nb_bmsafemap = bmsafemap = bmsafemap_lookup(bp);
LIST_INSERT_HEAD(&bmsafemap->sm_newblkhd, newblk, nb_deps);
FREE_LOCK(&lk);
}
static struct bmsafemap *
bmsafemap_lookup(struct buf *bp)
{
struct bmsafemap *bmsafemap;
struct worklist *wk;
KKASSERT(lock_held(&lk));
LIST_FOREACH(wk, &bp->b_dep, wk_list) {
if (wk->wk_type == D_BMSAFEMAP)
return (WK_BMSAFEMAP(wk));
}
FREE_LOCK(&lk);
bmsafemap = kmalloc(sizeof(struct bmsafemap), M_BMSAFEMAP,
M_SOFTDEP_FLAGS);
bmsafemap->sm_list.wk_type = D_BMSAFEMAP;
bmsafemap->sm_list.wk_state = 0;
bmsafemap->sm_buf = bp;
LIST_INIT(&bmsafemap->sm_allocdirecthd);
LIST_INIT(&bmsafemap->sm_allocindirhd);
LIST_INIT(&bmsafemap->sm_inodedephd);
LIST_INIT(&bmsafemap->sm_newblkhd);
ACQUIRE_LOCK(&lk);
WORKLIST_INSERT_BP(bp, &bmsafemap->sm_list);
return (bmsafemap);
}
void
softdep_setup_allocdirect(struct inode *ip, ufs_lbn_t lbn, ufs_daddr_t newblkno,
ufs_daddr_t oldblkno, long newsize, long oldsize,
struct buf *bp)
{
struct allocdirect *adp, *oldadp;
struct allocdirectlst *adphead;
struct bmsafemap *bmsafemap;
struct inodedep *inodedep;
struct pagedep *pagedep;
struct newblk *newblk;
adp = kmalloc(sizeof(struct allocdirect), M_ALLOCDIRECT,
M_SOFTDEP_FLAGS | M_ZERO);
adp->ad_list.wk_type = D_ALLOCDIRECT;
adp->ad_lbn = lbn;
adp->ad_newblkno = newblkno;
adp->ad_oldblkno = oldblkno;
adp->ad_newsize = newsize;
adp->ad_oldsize = oldsize;
adp->ad_state = ATTACHED;
if (newblkno == oldblkno)
adp->ad_freefrag = NULL;
else
adp->ad_freefrag = newfreefrag(ip, oldblkno, oldsize);
if (newblk_lookup(ip->i_fs, newblkno, 0, &newblk) == 0)
panic("softdep_setup_allocdirect: lost block");
ACQUIRE_LOCK(&lk);
inodedep_lookup(ip->i_fs, ip->i_number, DEPALLOC | NODELAY, &inodedep);
adp->ad_inodedep = inodedep;
if (newblk->nb_state == DEPCOMPLETE) {
adp->ad_state |= DEPCOMPLETE;
adp->ad_buf = NULL;
} else {
bmsafemap = newblk->nb_bmsafemap;
adp->ad_buf = bmsafemap->sm_buf;
LIST_REMOVE(newblk, nb_deps);
LIST_INSERT_HEAD(&bmsafemap->sm_allocdirecthd, adp, ad_deps);
}
LIST_REMOVE(newblk, nb_hash);
kfree(newblk, M_NEWBLK);
WORKLIST_INSERT_BP(bp, &adp->ad_list);
if (lbn >= UFS_NDADDR) {
if (oldblkno != 0) {
panic("softdep_setup_allocdirect: non-zero indir");
}
} else {
if ((ip->i_mode & IFMT) == IFDIR &&
pagedep_lookup(ip, lbn, DEPALLOC, &pagedep) == 0) {
WORKLIST_INSERT_BP(bp, &pagedep->pd_list);
}
}
adphead = &inodedep->id_newinoupdt;
oldadp = TAILQ_LAST(adphead, allocdirectlst);
if (oldadp == NULL || oldadp->ad_lbn <= lbn) {
TAILQ_INSERT_TAIL(adphead, adp, ad_next);
if (oldadp != NULL && oldadp->ad_lbn == lbn)
allocdirect_merge(adphead, adp, oldadp);
FREE_LOCK(&lk);
return;
}
TAILQ_FOREACH(oldadp, adphead, ad_next) {
if (oldadp->ad_lbn >= lbn)
break;
}
if (oldadp == NULL) {
panic("softdep_setup_allocdirect: lost entry");
}
TAILQ_INSERT_BEFORE(oldadp, adp, ad_next);
if (oldadp->ad_lbn == lbn)
allocdirect_merge(adphead, adp, oldadp);
FREE_LOCK(&lk);
}
static void
allocdirect_merge(struct allocdirectlst *adphead,
struct allocdirect *newadp,
struct allocdirect *oldadp)
{
struct freefrag *freefrag;
KKASSERT(lock_held(&lk));
if (newadp->ad_oldblkno != oldadp->ad_newblkno ||
newadp->ad_oldsize != oldadp->ad_newsize ||
newadp->ad_lbn >= UFS_NDADDR) {
panic("allocdirect_check: old %d != new %d || lbn %ld >= %d",
newadp->ad_oldblkno, oldadp->ad_newblkno, newadp->ad_lbn,
UFS_NDADDR);
}
newadp->ad_oldblkno = oldadp->ad_oldblkno;
newadp->ad_oldsize = oldadp->ad_oldsize;
if (oldadp->ad_freefrag != NULL || oldadp->ad_oldblkno == 0) {
freefrag = newadp->ad_freefrag;
newadp->ad_freefrag = oldadp->ad_freefrag;
oldadp->ad_freefrag = freefrag;
}
free_allocdirect(adphead, oldadp, 0);
}
static struct freefrag *
newfreefrag(struct inode *ip, ufs_daddr_t blkno, long size)
{
struct freefrag *freefrag;
struct fs *fs;
if (blkno == 0)
return (NULL);
fs = ip->i_fs;
if (fragnum(fs, blkno) + numfrags(fs, size) > fs->fs_frag)
panic("newfreefrag: frag size");
freefrag = kmalloc(sizeof(struct freefrag), M_FREEFRAG,
M_SOFTDEP_FLAGS);
freefrag->ff_list.wk_type = D_FREEFRAG;
freefrag->ff_state = ip->i_uid & ~ONWORKLIST;
freefrag->ff_inum = ip->i_number;
freefrag->ff_fs = fs;
freefrag->ff_devvp = ip->i_devvp;
freefrag->ff_blkno = blkno;
freefrag->ff_fragsize = size;
return (freefrag);
}
static void
handle_workitem_freefrag(struct freefrag *freefrag)
{
struct inode tip;
tip.i_fs = freefrag->ff_fs;
tip.i_devvp = freefrag->ff_devvp;
tip.i_dev = freefrag->ff_devvp->v_rdev;
tip.i_number = freefrag->ff_inum;
tip.i_uid = freefrag->ff_state & ~ONWORKLIST;
ffs_blkfree(&tip, freefrag->ff_blkno, freefrag->ff_fragsize);
kfree(freefrag, M_FREEFRAG);
}
static struct allocindir *
newallocindir(struct inode *ip, int ptrno, ufs_daddr_t newblkno,
ufs_daddr_t oldblkno)
{
struct allocindir *aip;
aip = kmalloc(sizeof(struct allocindir), M_ALLOCINDIR,
M_SOFTDEP_FLAGS | M_ZERO);
aip->ai_list.wk_type = D_ALLOCINDIR;
aip->ai_state = ATTACHED;
aip->ai_offset = ptrno;
aip->ai_newblkno = newblkno;
aip->ai_oldblkno = oldblkno;
aip->ai_freefrag = newfreefrag(ip, oldblkno, ip->i_fs->fs_bsize);
return (aip);
}
void
softdep_setup_allocindir_page(struct inode *ip, ufs_lbn_t lbn,
struct buf *bp, int ptrno,
ufs_daddr_t newblkno, ufs_daddr_t oldblkno,
struct buf *nbp)
{
struct allocindir *aip;
struct pagedep *pagedep;
aip = newallocindir(ip, ptrno, newblkno, oldblkno);
ACQUIRE_LOCK(&lk);
if ((ip->i_mode & IFMT) == IFDIR &&
pagedep_lookup(ip, lbn, DEPALLOC, &pagedep) == 0)
WORKLIST_INSERT_BP(nbp, &pagedep->pd_list);
WORKLIST_INSERT_BP(nbp, &aip->ai_list);
FREE_LOCK(&lk);
setup_allocindir_phase2(bp, ip, aip);
}
void
softdep_setup_allocindir_meta(struct buf *nbp, struct inode *ip,
struct buf *bp, int ptrno,
ufs_daddr_t newblkno)
{
struct allocindir *aip;
aip = newallocindir(ip, ptrno, newblkno, 0);
ACQUIRE_LOCK(&lk);
WORKLIST_INSERT_BP(nbp, &aip->ai_list);
FREE_LOCK(&lk);
setup_allocindir_phase2(bp, ip, aip);
}
static void
setup_allocindir_phase2(struct buf *bp, struct inode *ip,
struct allocindir *aip)
{
struct worklist *wk;
struct indirdep *indirdep, *newindirdep;
struct bmsafemap *bmsafemap;
struct allocindir *oldaip;
struct freefrag *freefrag;
struct newblk *newblk;
if (bp->b_loffset >= 0)
panic("setup_allocindir_phase2: not indir blk");
for (indirdep = NULL, newindirdep = NULL; ; ) {
ACQUIRE_LOCK(&lk);
LIST_FOREACH(wk, &bp->b_dep, wk_list) {
if (wk->wk_type != D_INDIRDEP)
continue;
indirdep = WK_INDIRDEP(wk);
break;
}
if (indirdep == NULL && newindirdep) {
indirdep = newindirdep;
WORKLIST_INSERT_BP(bp, &indirdep->ir_list);
newindirdep = NULL;
}
FREE_LOCK(&lk);
if (indirdep) {
if (newblk_lookup(ip->i_fs, aip->ai_newblkno, 0,
&newblk) == 0)
panic("setup_allocindir: lost block");
ACQUIRE_LOCK(&lk);
if (newblk->nb_state == DEPCOMPLETE) {
aip->ai_state |= DEPCOMPLETE;
aip->ai_buf = NULL;
} else {
bmsafemap = newblk->nb_bmsafemap;
aip->ai_buf = bmsafemap->sm_buf;
LIST_REMOVE(newblk, nb_deps);
LIST_INSERT_HEAD(&bmsafemap->sm_allocindirhd,
aip, ai_deps);
}
LIST_REMOVE(newblk, nb_hash);
kfree(newblk, M_NEWBLK);
aip->ai_indirdep = indirdep;
if (aip->ai_oldblkno == 0)
oldaip = NULL;
else
LIST_FOREACH(oldaip, &indirdep->ir_deplisthd, ai_next)
if (oldaip->ai_offset == aip->ai_offset)
break;
if (oldaip != NULL) {
if (oldaip->ai_newblkno != aip->ai_oldblkno) {
panic("setup_allocindir_phase2: blkno");
}
aip->ai_oldblkno = oldaip->ai_oldblkno;
freefrag = oldaip->ai_freefrag;
oldaip->ai_freefrag = aip->ai_freefrag;
aip->ai_freefrag = freefrag;
free_allocindir(oldaip, NULL);
}
LIST_INSERT_HEAD(&indirdep->ir_deplisthd, aip, ai_next);
((ufs_daddr_t *)indirdep->ir_savebp->b_data)
[aip->ai_offset] = aip->ai_oldblkno;
FREE_LOCK(&lk);
}
if (newindirdep) {
newindirdep->ir_savebp->b_flags |= B_INVAL | B_NOCACHE;
brelse(newindirdep->ir_savebp);
WORKITEM_FREE((caddr_t)newindirdep, D_INDIRDEP);
}
if (indirdep)
break;
newindirdep = kmalloc(sizeof(struct indirdep), M_INDIRDEP,
M_SOFTDEP_FLAGS);
newindirdep->ir_list.wk_type = D_INDIRDEP;
newindirdep->ir_state = ATTACHED;
LIST_INIT(&newindirdep->ir_deplisthd);
LIST_INIT(&newindirdep->ir_donehd);
if (bp->b_bio2.bio_offset == NOOFFSET) {
VOP_BMAP(bp->b_vp, bp->b_bio1.bio_offset,
&bp->b_bio2.bio_offset, NULL, NULL,
BUF_CMD_WRITE);
}
KKASSERT(bp->b_bio2.bio_offset != NOOFFSET);
newindirdep->ir_savebp = getblk(ip->i_devvp,
bp->b_bio2.bio_offset,
bp->b_bcount, 0, 0);
BUF_KERNPROC(newindirdep->ir_savebp);
bcopy(bp->b_data, newindirdep->ir_savebp->b_data, bp->b_bcount);
}
}
struct softdep_setup_freeblocks_info {
struct fs *fs;
struct inode *ip;
};
static int softdep_setup_freeblocks_bp(struct buf *bp, void *data);
void
softdep_setup_freeblocks(struct inode *ip, off_t length)
{
struct softdep_setup_freeblocks_info info;
struct freeblks *freeblks;
struct inodedep *inodedep;
struct allocdirect *adp;
struct vnode *vp;
struct buf *bp;
struct fs *fs;
int i, error, delay;
int count;
fs = ip->i_fs;
if (length != 0)
panic("softde_setup_freeblocks: non-zero length");
freeblks = kmalloc(sizeof(struct freeblks), M_FREEBLKS,
M_SOFTDEP_FLAGS | M_ZERO);
freeblks->fb_list.wk_type = D_FREEBLKS;
freeblks->fb_state = ATTACHED;
freeblks->fb_uid = ip->i_uid;
freeblks->fb_previousinum = ip->i_number;
freeblks->fb_devvp = ip->i_devvp;
freeblks->fb_fs = fs;
freeblks->fb_oldsize = ip->i_size;
freeblks->fb_newsize = length;
freeblks->fb_chkcnt = ip->i_blocks;
for (i = 0; i < UFS_NDADDR; i++) {
freeblks->fb_dblks[i] = ip->i_db[i];
ip->i_db[i] = 0;
}
for (i = 0; i < UFS_NIADDR; i++) {
freeblks->fb_iblks[i] = ip->i_ib[i];
ip->i_ib[i] = 0;
}
ip->i_blocks = 0;
ip->i_size = 0;
if ((error = bread(ip->i_devvp,
fsbtodoff(fs, ino_to_fsba(fs, ip->i_number)),
(int)fs->fs_bsize, &bp)) != 0)
softdep_error("softdep_setup_freeblocks", error);
*((struct ufs1_dinode *)bp->b_data + ino_to_fsbo(fs, ip->i_number)) =
ip->i_din;
ACQUIRE_LOCK(&lk);
(void) inodedep_lookup(fs, ip->i_number, DEPALLOC, &inodedep);
if ((inodedep->id_state & IOSTARTED) != 0) {
panic("softdep_setup_freeblocks: inode busy");
}
delay = (inodedep->id_state & DEPCOMPLETE);
if (delay)
WORKLIST_INSERT(&inodedep->id_bufwait, &freeblks->fb_list);
merge_inode_lists(inodedep);
while ((adp = TAILQ_FIRST(&inodedep->id_inoupdt)) != NULL)
free_allocdirect(&inodedep->id_inoupdt, adp, 1);
FREE_LOCK(&lk);
bdwrite(bp);
vp = ITOV(ip);
ACQUIRE_LOCK(&lk);
drain_output(vp, 1);
info.fs = fs;
info.ip = ip;
lwkt_gettoken(&vp->v_token);
do {
count = RB_SCAN(buf_rb_tree, &vp->v_rbdirty_tree, NULL,
softdep_setup_freeblocks_bp, &info);
} while (count != 0);
lwkt_reltoken(&vp->v_token);
if (inodedep_lookup(fs, ip->i_number, 0, &inodedep) != 0)
(void)free_inodedep(inodedep);
if (delay) {
freeblks->fb_state |= DEPCOMPLETE;
if ((freeblks->fb_state & ALLCOMPLETE) == ALLCOMPLETE)
add_to_worklist(&freeblks->fb_list);
}
FREE_LOCK(&lk);
if (!delay)
handle_workitem_freeblocks(freeblks);
}
static int
softdep_setup_freeblocks_bp(struct buf *bp, void *data)
{
struct softdep_setup_freeblocks_info *info = data;
struct inodedep *inodedep;
if (getdirtybuf(&bp, MNT_WAIT) == 0) {
kprintf("softdep_setup_freeblocks_bp(1): caught bp %p going away\n", bp);
return(-1);
}
if (bp->b_vp != ITOV(info->ip) || (bp->b_flags & B_DELWRI) == 0) {
kprintf("softdep_setup_freeblocks_bp(2): caught bp %p going away\n", bp);
BUF_UNLOCK(bp);
return(-1);
}
(void) inodedep_lookup(info->fs, info->ip->i_number, 0, &inodedep);
deallocate_dependencies(bp, inodedep);
bp->b_flags |= B_INVAL | B_NOCACHE;
FREE_LOCK(&lk);
brelse(bp);
ACQUIRE_LOCK(&lk);
return(1);
}
static void
deallocate_dependencies(struct buf *bp, struct inodedep *inodedep)
{
struct worklist *wk;
struct indirdep *indirdep;
struct allocindir *aip;
struct pagedep *pagedep;
struct dirrem *dirrem;
struct diradd *dap;
int i;
while ((wk = LIST_FIRST(&bp->b_dep)) != NULL) {
switch (wk->wk_type) {
case D_INDIRDEP:
indirdep = WK_INDIRDEP(wk);
if (indirdep->ir_state & GOINGAWAY) {
panic("deallocate_dependencies: already gone");
}
indirdep->ir_state |= GOINGAWAY;
while ((aip = LIST_FIRST(&indirdep->ir_deplisthd)) != NULL)
free_allocindir(aip, inodedep);
if (bp->b_bio1.bio_offset >= 0 ||
bp->b_bio2.bio_offset != indirdep->ir_savebp->b_bio1.bio_offset) {
panic("deallocate_dependencies: not indir");
}
bcopy(bp->b_data, indirdep->ir_savebp->b_data,
bp->b_bcount);
WORKLIST_REMOVE(wk);
WORKLIST_INSERT_BP(indirdep->ir_savebp, wk);
continue;
case D_PAGEDEP:
pagedep = WK_PAGEDEP(wk);
for (i = 0; i < DAHASHSZ; i++)
while ((dap =
LIST_FIRST(&pagedep->pd_diraddhd[i])))
free_diradd(dap);
while ((dap = LIST_FIRST(&pagedep->pd_pendinghd)) != NULL)
free_diradd(dap);
LIST_FOREACH(dirrem, &pagedep->pd_dirremhd, dm_next) {
LIST_REMOVE(dirrem, dm_next);
dirrem->dm_dirinum = pagedep->pd_ino;
if (inodedep == NULL ||
(inodedep->id_state & ALLCOMPLETE) ==
ALLCOMPLETE)
add_to_worklist(&dirrem->dm_list);
else
WORKLIST_INSERT(&inodedep->id_bufwait,
&dirrem->dm_list);
}
WORKLIST_REMOVE(&pagedep->pd_list);
LIST_REMOVE(pagedep, pd_hash);
WORKITEM_FREE(pagedep, D_PAGEDEP);
continue;
case D_ALLOCINDIR:
free_allocindir(WK_ALLOCINDIR(wk), inodedep);
continue;
case D_ALLOCDIRECT:
case D_INODEDEP:
panic("deallocate_dependencies: Unexpected type %s",
TYPENAME(wk->wk_type));
default:
panic("deallocate_dependencies: Unknown type %s",
TYPENAME(wk->wk_type));
}
}
}
static void
free_allocdirect(struct allocdirectlst *adphead,
struct allocdirect *adp, int delay)
{
KKASSERT(lock_held(&lk));
if ((adp->ad_state & DEPCOMPLETE) == 0)
LIST_REMOVE(adp, ad_deps);
TAILQ_REMOVE(adphead, adp, ad_next);
if ((adp->ad_state & COMPLETE) == 0)
WORKLIST_REMOVE(&adp->ad_list);
if (adp->ad_freefrag != NULL) {
if (delay)
WORKLIST_INSERT(&adp->ad_inodedep->id_bufwait,
&adp->ad_freefrag->ff_list);
else
add_to_worklist(&adp->ad_freefrag->ff_list);
}
WORKITEM_FREE(adp, D_ALLOCDIRECT);
}
void
softdep_freefile(struct vnode *pvp, ino_t ino, int mode)
{
struct inode *ip = VTOI(pvp);
struct inodedep *inodedep;
struct freefile *freefile;
freefile = kmalloc(sizeof(struct freefile), M_FREEFILE,
M_SOFTDEP_FLAGS);
freefile->fx_list.wk_type = D_FREEFILE;
freefile->fx_list.wk_state = 0;
freefile->fx_mode = mode;
freefile->fx_oldinum = ino;
freefile->fx_devvp = ip->i_devvp;
freefile->fx_fs = ip->i_fs;
ACQUIRE_LOCK(&lk);
if (inodedep_lookup(ip->i_fs, ino, 0, &inodedep) == 0 ||
check_inode_unwritten(inodedep)) {
FREE_LOCK(&lk);
handle_workitem_freefile(freefile);
return;
}
WORKLIST_INSERT(&inodedep->id_inowait, &freefile->fx_list);
FREE_LOCK(&lk);
}
static int
check_inode_unwritten(struct inodedep *inodedep)
{
if ((inodedep->id_state & DEPCOMPLETE) != 0 ||
LIST_FIRST(&inodedep->id_pendinghd) != NULL ||
LIST_FIRST(&inodedep->id_bufwait) != NULL ||
LIST_FIRST(&inodedep->id_inowait) != NULL ||
TAILQ_FIRST(&inodedep->id_inoupdt) != NULL ||
TAILQ_FIRST(&inodedep->id_newinoupdt) != NULL ||
inodedep->id_nlinkdelta != 0)
return (0);
if ((inodedep->id_state & IOSTARTED) != 0 &&
inodedep->id_savedino == NULL)
return(0);
inodedep->id_state |= ALLCOMPLETE;
LIST_REMOVE(inodedep, id_deps);
inodedep->id_buf = NULL;
if (inodedep->id_state & ONWORKLIST)
WORKLIST_REMOVE(&inodedep->id_list);
if (inodedep->id_savedino != NULL) {
kfree(inodedep->id_savedino, M_INODEDEP);
inodedep->id_savedino = NULL;
}
if (free_inodedep(inodedep) == 0) {
panic("check_inode_unwritten: busy inode");
}
return (1);
}
static int
free_inodedep(struct inodedep *inodedep)
{
if ((inodedep->id_state & ONWORKLIST) != 0 ||
(inodedep->id_state & ALLCOMPLETE) != ALLCOMPLETE ||
LIST_FIRST(&inodedep->id_pendinghd) != NULL ||
LIST_FIRST(&inodedep->id_bufwait) != NULL ||
LIST_FIRST(&inodedep->id_inowait) != NULL ||
TAILQ_FIRST(&inodedep->id_inoupdt) != NULL ||
TAILQ_FIRST(&inodedep->id_newinoupdt) != NULL ||
inodedep->id_nlinkdelta != 0 || inodedep->id_savedino != NULL)
return (0);
LIST_REMOVE(inodedep, id_hash);
WORKITEM_FREE(inodedep, D_INODEDEP);
num_inodedep -= 1;
return (1);
}
static void
handle_workitem_freeblocks(struct freeblks *freeblks)
{
struct inode tip;
ufs_daddr_t bn;
struct fs *fs;
int i, level, bsize;
long nblocks, blocksreleased = 0;
int error, allerror = 0;
ufs_lbn_t baselbns[UFS_NIADDR], tmpval;
tip.i_number = freeblks->fb_previousinum;
tip.i_devvp = freeblks->fb_devvp;
tip.i_dev = freeblks->fb_devvp->v_rdev;
tip.i_fs = freeblks->fb_fs;
tip.i_size = freeblks->fb_oldsize;
tip.i_uid = freeblks->fb_uid;
fs = freeblks->fb_fs;
tmpval = 1;
baselbns[0] = UFS_NDADDR;
for (i = 1; i < UFS_NIADDR; i++) {
tmpval *= NINDIR(fs);
baselbns[i] = baselbns[i - 1] + tmpval;
}
nblocks = btodb(fs->fs_bsize);
blocksreleased = 0;
for (level = (UFS_NIADDR - 1); level >= 0; level--) {
if ((bn = freeblks->fb_iblks[level]) == 0)
continue;
if ((error = indir_trunc(&tip, fsbtodoff(fs, bn), level,
baselbns[level], &blocksreleased)) == 0)
allerror = error;
ffs_blkfree(&tip, bn, fs->fs_bsize);
blocksreleased += nblocks;
}
for (i = (UFS_NDADDR - 1); i >= 0; i--) {
if ((bn = freeblks->fb_dblks[i]) == 0)
continue;
bsize = blksize(fs, &tip, i);
ffs_blkfree(&tip, bn, bsize);
blocksreleased += btodb(bsize);
}
#ifdef DIAGNOSTIC
if (freeblks->fb_chkcnt != blocksreleased)
kprintf("handle_workitem_freeblocks: block count\n");
if (allerror)
softdep_error("handle_workitem_freeblks", allerror);
#endif
WORKITEM_FREE(freeblks, D_FREEBLKS);
}
static int
indir_trunc(struct inode *ip, off_t doffset, int level, ufs_lbn_t lbn,
long *countp)
{
struct buf *bp;
ufs_daddr_t *bap;
ufs_daddr_t nb;
struct fs *fs;
struct worklist *wk;
struct indirdep *indirdep;
int i, lbnadd, nblocks;
int error, allerror = 0;
fs = ip->i_fs;
lbnadd = 1;
for (i = level; i > 0; i--)
lbnadd *= NINDIR(fs);
ACQUIRE_LOCK(&lk);
if ((bp = findblk(ip->i_devvp, doffset, FINDBLK_TEST)) != NULL &&
(wk = LIST_FIRST(&bp->b_dep)) != NULL) {
if (wk->wk_type != D_INDIRDEP ||
(indirdep = WK_INDIRDEP(wk))->ir_savebp != bp ||
(indirdep->ir_state & GOINGAWAY) == 0) {
panic("indir_trunc: lost indirdep");
}
WORKLIST_REMOVE(wk);
WORKITEM_FREE(indirdep, D_INDIRDEP);
if (LIST_FIRST(&bp->b_dep) != NULL) {
panic("indir_trunc: dangling dep");
}
FREE_LOCK(&lk);
} else {
FREE_LOCK(&lk);
error = bread(ip->i_devvp, doffset, (int)fs->fs_bsize, &bp);
if (error)
return (error);
}
bap = (ufs_daddr_t *)bp->b_data;
nblocks = btodb(fs->fs_bsize);
for (i = NINDIR(fs) - 1; i >= 0; i--) {
if ((nb = bap[i]) == 0)
continue;
if (level != 0) {
if ((error = indir_trunc(ip, fsbtodoff(fs, nb),
level - 1, lbn + (i * lbnadd), countp)) != 0)
allerror = error;
}
ffs_blkfree(ip, nb, fs->fs_bsize);
*countp += nblocks;
}
bp->b_flags |= B_INVAL | B_NOCACHE;
brelse(bp);
return (allerror);
}
static void
free_allocindir(struct allocindir *aip, struct inodedep *inodedep)
{
struct freefrag *freefrag;
KKASSERT(lock_held(&lk));
if ((aip->ai_state & DEPCOMPLETE) == 0)
LIST_REMOVE(aip, ai_deps);
if (aip->ai_state & ONWORKLIST)
WORKLIST_REMOVE(&aip->ai_list);
LIST_REMOVE(aip, ai_next);
if ((freefrag = aip->ai_freefrag) != NULL) {
if (inodedep == NULL)
add_to_worklist(&freefrag->ff_list);
else
WORKLIST_INSERT(&inodedep->id_bufwait,
&freefrag->ff_list);
}
WORKITEM_FREE(aip, D_ALLOCINDIR);
}
void
softdep_setup_directory_add(struct buf *bp, struct inode *dp, off_t diroffset,
ino_t newinum, struct buf *newdirbp)
{
int offset;
ufs_lbn_t lbn;
struct fs *fs;
struct diradd *dap;
struct pagedep *pagedep;
struct inodedep *inodedep;
struct mkdir *mkdir1, *mkdir2;
if (newinum == UFS_WINO) {
if (newdirbp != NULL)
bdwrite(newdirbp);
return;
}
fs = dp->i_fs;
lbn = lblkno(fs, diroffset);
offset = blkoff(fs, diroffset);
dap = kmalloc(sizeof(struct diradd), M_DIRADD,
M_SOFTDEP_FLAGS | M_ZERO);
dap->da_list.wk_type = D_DIRADD;
dap->da_offset = offset;
dap->da_newinum = newinum;
dap->da_state = ATTACHED;
if (newdirbp == NULL) {
dap->da_state |= DEPCOMPLETE;
ACQUIRE_LOCK(&lk);
} else {
dap->da_state |= MKDIR_BODY | MKDIR_PARENT;
mkdir1 = kmalloc(sizeof(struct mkdir), M_MKDIR,
M_SOFTDEP_FLAGS);
mkdir1->md_list.wk_type = D_MKDIR;
mkdir1->md_state = MKDIR_BODY;
mkdir1->md_diradd = dap;
mkdir2 = kmalloc(sizeof(struct mkdir), M_MKDIR,
M_SOFTDEP_FLAGS);
mkdir2->md_list.wk_type = D_MKDIR;
mkdir2->md_state = MKDIR_PARENT;
mkdir2->md_diradd = dap;
mkdir1->md_buf = newdirbp;
ACQUIRE_LOCK(&lk);
LIST_INSERT_HEAD(&mkdirlisthd, mkdir1, md_mkdirs);
WORKLIST_INSERT_BP(newdirbp, &mkdir1->md_list);
FREE_LOCK(&lk);
bdwrite(newdirbp);
ACQUIRE_LOCK(&lk);
if (inodedep_lookup(dp->i_fs, dp->i_number, 0, &inodedep) == 0
|| (inodedep->id_state & ALLCOMPLETE) == ALLCOMPLETE) {
dap->da_state &= ~MKDIR_PARENT;
WORKITEM_FREE(mkdir2, D_MKDIR);
} else {
LIST_INSERT_HEAD(&mkdirlisthd, mkdir2, md_mkdirs);
WORKLIST_INSERT(&inodedep->id_bufwait,&mkdir2->md_list);
}
}
if (pagedep_lookup(dp, lbn, DEPALLOC, &pagedep) == 0)
WORKLIST_INSERT_BP(bp, &pagedep->pd_list);
dap->da_pagedep = pagedep;
LIST_INSERT_HEAD(&pagedep->pd_diraddhd[DIRADDHASH(offset)], dap,
da_pdlist);
(void) inodedep_lookup(fs, newinum, DEPALLOC, &inodedep);
if ((inodedep->id_state & ALLCOMPLETE) == ALLCOMPLETE)
diradd_inode_written(dap, inodedep);
else
WORKLIST_INSERT(&inodedep->id_bufwait, &dap->da_list);
FREE_LOCK(&lk);
}
void
softdep_change_directoryentry_offset(struct inode *dp, caddr_t base,
caddr_t oldloc, caddr_t newloc,
int entrysize)
{
int offset, oldoffset, newoffset;
struct pagedep *pagedep;
struct diradd *dap;
ufs_lbn_t lbn;
ACQUIRE_LOCK(&lk);
lbn = lblkno(dp->i_fs, dp->i_offset);
offset = blkoff(dp->i_fs, dp->i_offset);
if (pagedep_lookup(dp, lbn, 0, &pagedep) == 0)
goto done;
oldoffset = offset + (oldloc - base);
newoffset = offset + (newloc - base);
LIST_FOREACH(dap, &pagedep->pd_diraddhd[DIRADDHASH(oldoffset)], da_pdlist) {
if (dap->da_offset != oldoffset)
continue;
dap->da_offset = newoffset;
if (DIRADDHASH(newoffset) == DIRADDHASH(oldoffset))
break;
LIST_REMOVE(dap, da_pdlist);
LIST_INSERT_HEAD(&pagedep->pd_diraddhd[DIRADDHASH(newoffset)],
dap, da_pdlist);
break;
}
if (dap == NULL) {
LIST_FOREACH(dap, &pagedep->pd_pendinghd, da_pdlist) {
if (dap->da_offset == oldoffset) {
dap->da_offset = newoffset;
break;
}
}
}
done:
bcopy(oldloc, newloc, entrysize);
FREE_LOCK(&lk);
}
static void
free_diradd(struct diradd *dap)
{
struct dirrem *dirrem;
struct pagedep *pagedep;
struct inodedep *inodedep;
struct mkdir *mkdir, *nextmd;
KKASSERT(lock_held(&lk));
WORKLIST_REMOVE(&dap->da_list);
LIST_REMOVE(dap, da_pdlist);
if ((dap->da_state & DIRCHG) == 0) {
pagedep = dap->da_pagedep;
} else {
dirrem = dap->da_previous;
pagedep = dirrem->dm_pagedep;
dirrem->dm_dirinum = pagedep->pd_ino;
add_to_worklist(&dirrem->dm_list);
}
if (inodedep_lookup(VFSTOUFS(pagedep->pd_mnt)->um_fs, dap->da_newinum,
0, &inodedep) != 0)
(void) free_inodedep(inodedep);
if ((dap->da_state & (MKDIR_PARENT | MKDIR_BODY)) != 0) {
for (mkdir = LIST_FIRST(&mkdirlisthd); mkdir; mkdir = nextmd) {
nextmd = LIST_NEXT(mkdir, md_mkdirs);
if (mkdir->md_diradd != dap)
continue;
dap->da_state &= ~mkdir->md_state;
WORKLIST_REMOVE(&mkdir->md_list);
LIST_REMOVE(mkdir, md_mkdirs);
WORKITEM_FREE(mkdir, D_MKDIR);
}
if ((dap->da_state & (MKDIR_PARENT | MKDIR_BODY)) != 0) {
panic("free_diradd: unfound ref");
}
}
WORKITEM_FREE(dap, D_DIRADD);
}
void
softdep_setup_remove(struct buf *bp, struct inode *dp, struct inode *ip,
int isrmdir)
{
struct dirrem *dirrem, *prevdirrem;
dirrem = newdirrem(bp, dp, ip, isrmdir, &prevdirrem);
if ((dirrem->dm_state & COMPLETE) == 0) {
LIST_INSERT_HEAD(&dirrem->dm_pagedep->pd_dirremhd, dirrem,
dm_next);
FREE_LOCK(&lk);
} else {
if (prevdirrem != NULL)
LIST_INSERT_HEAD(&dirrem->dm_pagedep->pd_dirremhd,
prevdirrem, dm_next);
dirrem->dm_dirinum = dirrem->dm_pagedep->pd_ino;
FREE_LOCK(&lk);
handle_workitem_remove(dirrem);
}
}
static long num_dirrem;
static struct dirrem *
newdirrem(struct buf *bp, struct inode *dp, struct inode *ip,
int isrmdir, struct dirrem **prevdirremp)
{
int offset;
ufs_lbn_t lbn;
struct diradd *dap;
struct dirrem *dirrem;
struct pagedep *pagedep;
if (ip == NULL)
panic("newdirrem: whiteout");
if (num_dirrem > max_softdeps / 4)
speedup_syncer(NULL);
if (num_dirrem > max_softdeps / 2) {
ACQUIRE_LOCK(&lk);
request_cleanup(FLUSH_REMOVE);
FREE_LOCK(&lk);
}
num_dirrem += 1;
dirrem = kmalloc(sizeof(struct dirrem), M_DIRREM,
M_SOFTDEP_FLAGS | M_ZERO);
dirrem->dm_list.wk_type = D_DIRREM;
dirrem->dm_state = isrmdir ? RMDIR : 0;
dirrem->dm_mnt = ITOV(ip)->v_mount;
dirrem->dm_oldinum = ip->i_number;
*prevdirremp = NULL;
ACQUIRE_LOCK(&lk);
lbn = lblkno(dp->i_fs, dp->i_offset);
offset = blkoff(dp->i_fs, dp->i_offset);
if (pagedep_lookup(dp, lbn, DEPALLOC, &pagedep) == 0)
WORKLIST_INSERT_BP(bp, &pagedep->pd_list);
dirrem->dm_pagedep = pagedep;
LIST_FOREACH(dap, &pagedep->pd_diraddhd[DIRADDHASH(offset)], da_pdlist)
if (dap->da_offset == offset)
break;
if (dap == NULL) {
LIST_FOREACH(dap, &pagedep->pd_pendinghd, da_pdlist)
if (dap->da_offset == offset)
break;
if (dap == NULL)
return (dirrem);
}
if ((dap->da_state & ATTACHED) == 0) {
panic("newdirrem: not ATTACHED");
}
if (dap->da_newinum != ip->i_number) {
panic("newdirrem: inum %"PRId64" should be %"PRId64,
ip->i_number, dap->da_newinum);
}
if ((dap->da_state & DIRCHG) != 0) {
*prevdirremp = dap->da_previous;
dap->da_state &= ~DIRCHG;
dap->da_pagedep = pagedep;
}
dirrem->dm_state |= COMPLETE;
free_diradd(dap);
return (dirrem);
}
void
softdep_setup_directory_change(struct buf *bp, struct inode *dp,
struct inode *ip, ino_t newinum,
int isrmdir)
{
int offset;
struct diradd *dap = NULL;
struct dirrem *dirrem, *prevdirrem;
struct pagedep *pagedep;
struct inodedep *inodedep;
offset = blkoff(dp->i_fs, dp->i_offset);
if (newinum != UFS_WINO) {
dap = kmalloc(sizeof(struct diradd), M_DIRADD,
M_SOFTDEP_FLAGS | M_ZERO);
dap->da_list.wk_type = D_DIRADD;
dap->da_state = DIRCHG | ATTACHED | DEPCOMPLETE;
dap->da_offset = offset;
dap->da_newinum = newinum;
}
dirrem = newdirrem(bp, dp, ip, isrmdir, &prevdirrem);
pagedep = dirrem->dm_pagedep;
if (isrmdir > 1)
dirrem->dm_state |= DIRCHG;
if (newinum == UFS_WINO) {
if ((dirrem->dm_state & COMPLETE) == 0) {
LIST_INSERT_HEAD(&pagedep->pd_dirremhd, dirrem,
dm_next);
} else {
dirrem->dm_dirinum = pagedep->pd_ino;
add_to_worklist(&dirrem->dm_list);
}
FREE_LOCK(&lk);
return;
}
if ((dirrem->dm_state & COMPLETE) == 0) {
dap->da_previous = dirrem;
} else {
if (prevdirrem != NULL) {
dap->da_previous = prevdirrem;
} else {
dap->da_state &= ~DIRCHG;
dap->da_pagedep = pagedep;
}
dirrem->dm_dirinum = pagedep->pd_ino;
add_to_worklist(&dirrem->dm_list);
}
if (inodedep_lookup(dp->i_fs, newinum, DEPALLOC, &inodedep) == 0 ||
(inodedep->id_state & ALLCOMPLETE) == ALLCOMPLETE) {
dap->da_state |= COMPLETE;
LIST_INSERT_HEAD(&pagedep->pd_pendinghd, dap, da_pdlist);
WORKLIST_INSERT(&inodedep->id_pendinghd, &dap->da_list);
} else {
LIST_INSERT_HEAD(&pagedep->pd_diraddhd[DIRADDHASH(offset)],
dap, da_pdlist);
WORKLIST_INSERT(&inodedep->id_bufwait, &dap->da_list);
}
FREE_LOCK(&lk);
}
void
softdep_change_linkcnt(struct inode *ip)
{
struct inodedep *inodedep;
ACQUIRE_LOCK(&lk);
(void) inodedep_lookup(ip->i_fs, ip->i_number, DEPALLOC, &inodedep);
if (ip->i_nlink < ip->i_effnlink) {
panic("softdep_change_linkcnt: bad delta");
}
inodedep->id_nlinkdelta = ip->i_nlink - ip->i_effnlink;
FREE_LOCK(&lk);
}
static void
handle_workitem_remove(struct dirrem *dirrem)
{
struct inodedep *inodedep;
struct vnode *vp;
struct inode *ip;
ino_t oldinum;
int error;
error = VFS_VGET(dirrem->dm_mnt, NULL, dirrem->dm_oldinum, &vp);
if (error) {
softdep_error("handle_workitem_remove: vget", error);
return;
}
ip = VTOI(vp);
ACQUIRE_LOCK(&lk);
if ((inodedep_lookup(ip->i_fs, dirrem->dm_oldinum, 0, &inodedep)) == 0){
panic("handle_workitem_remove: lost inodedep");
}
if ((dirrem->dm_state & RMDIR) == 0) {
ip->i_nlink--;
ip->i_flag |= IN_CHANGE;
if (ip->i_nlink < ip->i_effnlink) {
panic("handle_workitem_remove: bad file delta");
}
inodedep->id_nlinkdelta = ip->i_nlink - ip->i_effnlink;
FREE_LOCK(&lk);
vput(vp);
num_dirrem -= 1;
WORKITEM_FREE(dirrem, D_DIRREM);
return;
}
ip->i_nlink -= 2;
ip->i_flag |= IN_CHANGE;
if (ip->i_nlink < ip->i_effnlink) {
panic("handle_workitem_remove: bad dir delta");
}
inodedep->id_nlinkdelta = ip->i_nlink - ip->i_effnlink;
FREE_LOCK(&lk);
if ((error = ffs_truncate(vp, (off_t)0, 0, proc0.p_ucred)) != 0)
softdep_error("handle_workitem_remove: truncate", error);
if (dirrem->dm_state & DIRCHG) {
vput(vp);
num_dirrem -= 1;
WORKITEM_FREE(dirrem, D_DIRREM);
return;
}
ACQUIRE_LOCK(&lk);
dirrem->dm_state = 0;
oldinum = dirrem->dm_oldinum;
dirrem->dm_oldinum = dirrem->dm_dirinum;
if (inodedep_lookup(ip->i_fs, oldinum, 0, &inodedep) == 0 ||
check_inode_unwritten(inodedep)) {
FREE_LOCK(&lk);
vput(vp);
handle_workitem_remove(dirrem);
return;
}
WORKLIST_INSERT(&inodedep->id_inowait, &dirrem->dm_list);
FREE_LOCK(&lk);
ip->i_flag |= IN_CHANGE;
ffs_update(vp, 0);
vput(vp);
}
static void
handle_workitem_freefile(struct freefile *freefile)
{
struct vnode vp;
struct inode tip;
struct inodedep *idp;
int error;
#ifdef DEBUG
ACQUIRE_LOCK(&lk);
error = inodedep_lookup(freefile->fx_fs, freefile->fx_oldinum, 0, &idp);
FREE_LOCK(&lk);
if (error)
panic("handle_workitem_freefile: inodedep survived");
#endif
tip.i_devvp = freefile->fx_devvp;
tip.i_dev = freefile->fx_devvp->v_rdev;
tip.i_fs = freefile->fx_fs;
vp.v_data = &tip;
if ((error = ffs_freefile(&vp, freefile->fx_oldinum, freefile->fx_mode)) != 0)
softdep_error("handle_workitem_freefile", error);
WORKITEM_FREE(freefile, D_FREEFILE);
}
static __inline struct worklist *
markernext(struct worklist *marker)
{
struct worklist *next;
next = LIST_NEXT(marker, wk_list);
LIST_REMOVE(marker, wk_list);
return next;
}
static int
softdep_checkread(struct buf *bp)
{
return(0);
}
static int
softdep_checkwrite(struct buf *bp)
{
return(0);
}
static void
softdep_disk_io_initiation(struct buf *bp)
{
struct worklist *wk;
struct worklist marker;
struct indirdep *indirdep;
if (bp->b_cmd == BUF_CMD_READ)
panic("softdep_disk_io_initiation: read");
ACQUIRE_LOCK(&lk);
marker.wk_type = D_LAST + 1;
for (wk = LIST_FIRST(&bp->b_dep); wk; wk = markernext(&marker)) {
LIST_INSERT_AFTER(wk, &marker, wk_list);
switch (wk->wk_type) {
case D_PAGEDEP:
initiate_write_filepage(WK_PAGEDEP(wk), bp);
continue;
case D_INODEDEP:
initiate_write_inodeblock(WK_INODEDEP(wk), bp);
continue;
case D_INDIRDEP:
indirdep = WK_INDIRDEP(wk);
if (indirdep->ir_state & GOINGAWAY)
panic("disk_io_initiation: indirdep gone");
if (LIST_FIRST(&indirdep->ir_deplisthd) == NULL) {
indirdep->ir_savebp->b_flags |= B_INVAL | B_NOCACHE;
brelse(indirdep->ir_savebp);
wk->wk_state &= ~ONWORKLIST;
LIST_REMOVE(wk, wk_list);
WORKITEM_FREE(indirdep, D_INDIRDEP);
continue;
}
indirdep->ir_saveddata = kmalloc(bp->b_bcount,
M_INDIRDEP,
M_SOFTDEP_FLAGS);
ACQUIRE_LOCK(&lk);
indirdep->ir_state &= ~ATTACHED;
indirdep->ir_state |= UNDONE;
bcopy(bp->b_data, indirdep->ir_saveddata, bp->b_bcount);
bcopy(indirdep->ir_savebp->b_data, bp->b_data,
bp->b_bcount);
FREE_LOCK(&lk);
continue;
case D_MKDIR:
case D_BMSAFEMAP:
case D_ALLOCDIRECT:
case D_ALLOCINDIR:
continue;
default:
panic("handle_disk_io_initiation: Unexpected type %s",
TYPENAME(wk->wk_type));
}
}
FREE_LOCK(&lk);
}
static void
initiate_write_filepage(struct pagedep *pagedep, struct buf *bp)
{
struct diradd *dap;
struct direct *ep;
int i;
if (pagedep->pd_state & IOSTARTED) {
kprintf("initiate_write_filepage: already started\n");
return;
}
pagedep->pd_state |= IOSTARTED;
ACQUIRE_LOCK(&lk);
for (i = 0; i < DAHASHSZ; i++) {
LIST_FOREACH(dap, &pagedep->pd_diraddhd[i], da_pdlist) {
ep = (struct direct *)
((char *)bp->b_data + dap->da_offset);
if (ep->d_ino != dap->da_newinum) {
panic("%s: dir inum %d != new %"PRId64,
"initiate_write_filepage",
ep->d_ino, dap->da_newinum);
}
if (dap->da_state & DIRCHG)
ep->d_ino = dap->da_previous->dm_oldinum;
else
ep->d_ino = 0;
dap->da_state &= ~ATTACHED;
dap->da_state |= UNDONE;
}
}
FREE_LOCK(&lk);
}
static void
initiate_write_inodeblock(struct inodedep *inodedep, struct buf *bp)
{
struct allocdirect *adp, *lastadp;
struct ufs1_dinode *dp;
struct ufs1_dinode *sip;
struct fs *fs;
ufs_lbn_t prevlbn = 0;
int i, deplist;
if (inodedep->id_state & IOSTARTED)
panic("initiate_write_inodeblock: already started");
inodedep->id_state |= IOSTARTED;
fs = inodedep->id_fs;
dp = (struct ufs1_dinode *)bp->b_data +
ino_to_fsbo(fs, inodedep->id_ino);
if ((inodedep->id_state & DEPCOMPLETE) == 0) {
if (inodedep->id_savedino != NULL)
panic("initiate_write_inodeblock: already doing I/O");
sip = kmalloc(sizeof(struct ufs1_dinode), M_INODEDEP,
M_SOFTDEP_FLAGS);
inodedep->id_savedino = sip;
*inodedep->id_savedino = *dp;
bzero((caddr_t)dp, sizeof(struct ufs1_dinode));
dp->di_gen = inodedep->id_savedino->di_gen;
return;
}
inodedep->id_savedsize = dp->di_size;
if (TAILQ_FIRST(&inodedep->id_inoupdt) == NULL)
return;
ACQUIRE_LOCK(&lk);
for (deplist = 0, adp = TAILQ_FIRST(&inodedep->id_inoupdt); adp;
adp = TAILQ_NEXT(adp, ad_next)) {
#ifdef DIAGNOSTIC
if (deplist != 0 && prevlbn >= adp->ad_lbn) {
panic("softdep_write_inodeblock: lbn order");
}
prevlbn = adp->ad_lbn;
if (adp->ad_lbn < UFS_NDADDR &&
dp->di_db[adp->ad_lbn] != adp->ad_newblkno) {
panic("%s: direct pointer #%ld mismatch %d != %d",
"softdep_write_inodeblock", adp->ad_lbn,
dp->di_db[adp->ad_lbn], adp->ad_newblkno);
}
if (adp->ad_lbn >= UFS_NDADDR &&
dp->di_ib[adp->ad_lbn - UFS_NDADDR] != adp->ad_newblkno) {
panic("%s: indirect pointer #%ld mismatch %d != %d",
"softdep_write_inodeblock",
adp->ad_lbn - UFS_NDADDR,
dp->di_ib[adp->ad_lbn - UFS_NDADDR],
adp->ad_newblkno);
}
deplist |= 1 << adp->ad_lbn;
if ((adp->ad_state & ATTACHED) == 0) {
panic("softdep_write_inodeblock: Unknown state 0x%x",
adp->ad_state);
}
#endif
adp->ad_state &= ~ATTACHED;
adp->ad_state |= UNDONE;
}
for (lastadp = NULL, adp = TAILQ_FIRST(&inodedep->id_inoupdt); adp;
lastadp = adp, adp = TAILQ_NEXT(adp, ad_next)) {
if (adp->ad_lbn >= UFS_NDADDR)
break;
dp->di_db[adp->ad_lbn] = adp->ad_oldblkno;
if (adp->ad_oldsize == 0 || adp->ad_oldsize == fs->fs_bsize)
continue;
dp->di_size = fs->fs_bsize * adp->ad_lbn + adp->ad_oldsize;
for (i = adp->ad_lbn + 1; i < UFS_NDADDR; i++) {
#ifdef DIAGNOSTIC
if (dp->di_db[i] != 0 && (deplist & (1 << i)) == 0) {
panic("softdep_write_inodeblock: lost dep1");
}
#endif
dp->di_db[i] = 0;
}
for (i = 0; i < UFS_NIADDR; i++) {
#ifdef DIAGNOSTIC
if (dp->di_ib[i] != 0 &&
(deplist & ((1 << UFS_NDADDR) << i)) == 0) {
panic("softdep_write_inodeblock: lost dep2");
}
#endif
dp->di_ib[i] = 0;
}
FREE_LOCK(&lk);
return;
}
if (lastadp != NULL &&
dp->di_size <= (lastadp->ad_lbn + 1) * fs->fs_bsize) {
for (i = lastadp->ad_lbn; i >= 0; i--)
if (dp->di_db[i] != 0)
break;
dp->di_size = (i + 1) * fs->fs_bsize;
}
for (; adp; adp = TAILQ_NEXT(adp, ad_next))
dp->di_ib[adp->ad_lbn - UFS_NDADDR] = 0;
FREE_LOCK(&lk);
}
static void
softdep_disk_write_complete(struct buf *bp)
{
struct worklist *wk;
struct workhead reattach;
struct newblk *newblk;
struct allocindir *aip;
struct allocdirect *adp;
struct indirdep *indirdep;
struct inodedep *inodedep;
struct bmsafemap *bmsafemap;
ACQUIRE_LOCK(&lk);
LIST_INIT(&reattach);
while ((wk = LIST_FIRST(&bp->b_dep)) != NULL) {
WORKLIST_REMOVE(wk);
switch (wk->wk_type) {
case D_PAGEDEP:
if (handle_written_filepage(WK_PAGEDEP(wk), bp))
WORKLIST_INSERT(&reattach, wk);
continue;
case D_INODEDEP:
if (handle_written_inodeblock(WK_INODEDEP(wk), bp))
WORKLIST_INSERT(&reattach, wk);
continue;
case D_BMSAFEMAP:
bmsafemap = WK_BMSAFEMAP(wk);
while ((newblk = LIST_FIRST(&bmsafemap->sm_newblkhd))) {
newblk->nb_state |= DEPCOMPLETE;
newblk->nb_bmsafemap = NULL;
LIST_REMOVE(newblk, nb_deps);
}
while ((adp =
LIST_FIRST(&bmsafemap->sm_allocdirecthd))) {
adp->ad_state |= DEPCOMPLETE;
adp->ad_buf = NULL;
LIST_REMOVE(adp, ad_deps);
handle_allocdirect_partdone(adp);
}
while ((aip =
LIST_FIRST(&bmsafemap->sm_allocindirhd))) {
aip->ai_state |= DEPCOMPLETE;
aip->ai_buf = NULL;
LIST_REMOVE(aip, ai_deps);
handle_allocindir_partdone(aip);
}
while ((inodedep =
LIST_FIRST(&bmsafemap->sm_inodedephd)) != NULL) {
inodedep->id_state |= DEPCOMPLETE;
LIST_REMOVE(inodedep, id_deps);
inodedep->id_buf = NULL;
}
WORKITEM_FREE(bmsafemap, D_BMSAFEMAP);
continue;
case D_MKDIR:
handle_written_mkdir(WK_MKDIR(wk), MKDIR_BODY);
continue;
case D_ALLOCDIRECT:
adp = WK_ALLOCDIRECT(wk);
adp->ad_state |= COMPLETE;
handle_allocdirect_partdone(adp);
continue;
case D_ALLOCINDIR:
aip = WK_ALLOCINDIR(wk);
aip->ai_state |= COMPLETE;
handle_allocindir_partdone(aip);
continue;
case D_INDIRDEP:
indirdep = WK_INDIRDEP(wk);
if (indirdep->ir_state & GOINGAWAY) {
panic("disk_write_complete: indirdep gone");
}
bcopy(indirdep->ir_saveddata, bp->b_data, bp->b_bcount);
kfree(indirdep->ir_saveddata, M_INDIRDEP);
indirdep->ir_saveddata = NULL;
indirdep->ir_state &= ~UNDONE;
indirdep->ir_state |= ATTACHED;
while ((aip = LIST_FIRST(&indirdep->ir_donehd)) != NULL) {
handle_allocindir_partdone(aip);
if (aip == LIST_FIRST(&indirdep->ir_donehd)) {
panic("disk_write_complete: not gone");
}
}
WORKLIST_INSERT(&reattach, wk);
if ((bp->b_flags & B_DELWRI) == 0)
stat_indir_blk_ptrs++;
bdirty(bp);
continue;
default:
panic("handle_disk_write_complete: Unknown type %s",
TYPENAME(wk->wk_type));
}
}
while ((wk = LIST_FIRST(&reattach)) != NULL) {
WORKLIST_REMOVE(wk);
WORKLIST_INSERT_BP(bp, wk);
}
FREE_LOCK(&lk);
}
static void
handle_allocdirect_partdone(struct allocdirect *adp)
{
struct allocdirect *listadp;
struct inodedep *inodedep;
long bsize;
if ((adp->ad_state & ALLCOMPLETE) != ALLCOMPLETE)
return;
if (adp->ad_buf != NULL)
panic("handle_allocdirect_partdone: dangling dep");
inodedep = adp->ad_inodedep;
bsize = inodedep->id_fs->fs_bsize;
TAILQ_FOREACH(listadp, &inodedep->id_inoupdt, ad_next) {
if (listadp == adp)
break;
if (listadp->ad_oldsize == 0 ||
listadp->ad_oldsize == bsize)
continue;
return;
}
if (listadp == NULL) {
#ifdef DEBUG
TAILQ_FOREACH(listadp, &inodedep->id_newinoupdt, ad_next)
if (listadp == adp)
break;
if (listadp == NULL)
panic("handle_allocdirect_partdone: lost dep");
#endif
return;
}
for (; adp; adp = listadp) {
listadp = TAILQ_NEXT(adp, ad_next);
if ((adp->ad_state & ALLCOMPLETE) != ALLCOMPLETE)
return;
free_allocdirect(&inodedep->id_inoupdt, adp, 1);
}
}
static void
handle_allocindir_partdone(struct allocindir *aip)
{
struct indirdep *indirdep;
if ((aip->ai_state & ALLCOMPLETE) != ALLCOMPLETE)
return;
if (aip->ai_buf != NULL)
panic("handle_allocindir_partdone: dangling dependency");
indirdep = aip->ai_indirdep;
if (indirdep->ir_state & UNDONE) {
LIST_REMOVE(aip, ai_next);
LIST_INSERT_HEAD(&indirdep->ir_donehd, aip, ai_next);
return;
}
((ufs_daddr_t *)indirdep->ir_savebp->b_data)[aip->ai_offset] =
aip->ai_newblkno;
LIST_REMOVE(aip, ai_next);
if (aip->ai_freefrag != NULL)
add_to_worklist(&aip->ai_freefrag->ff_list);
WORKITEM_FREE(aip, D_ALLOCINDIR);
}
static int
handle_written_inodeblock(struct inodedep *inodedep, struct buf *bp)
{
struct worklist *wk, *filefree;
struct allocdirect *adp, *nextadp;
struct ufs1_dinode *dp;
int hadchanges;
if ((inodedep->id_state & IOSTARTED) == 0)
panic("handle_written_inodeblock: not started");
inodedep->id_state &= ~IOSTARTED;
dp = (struct ufs1_dinode *)bp->b_data +
ino_to_fsbo(inodedep->id_fs, inodedep->id_ino);
if (inodedep->id_savedino != NULL) {
*dp = *inodedep->id_savedino;
kfree(inodedep->id_savedino, M_INODEDEP);
inodedep->id_savedino = NULL;
if ((bp->b_flags & B_DELWRI) == 0)
stat_inode_bitmap++;
bdirty(bp);
return (1);
}
inodedep->id_state |= COMPLETE;
hadchanges = 0;
for (adp = TAILQ_FIRST(&inodedep->id_inoupdt); adp; adp = nextadp) {
nextadp = TAILQ_NEXT(adp, ad_next);
if (adp->ad_state & ATTACHED)
panic("handle_written_inodeblock: new entry");
if (adp->ad_lbn < UFS_NDADDR) {
if (dp->di_db[adp->ad_lbn] != adp->ad_oldblkno) {
panic("%s: %s #%ld mismatch %d != %d",
"handle_written_inodeblock",
"direct pointer", adp->ad_lbn,
dp->di_db[adp->ad_lbn], adp->ad_oldblkno);
}
dp->di_db[adp->ad_lbn] = adp->ad_newblkno;
} else {
if (dp->di_ib[adp->ad_lbn - UFS_NDADDR] != 0) {
panic("%s: %s #%ld allocated as %d",
"handle_written_inodeblock",
"indirect pointer",
adp->ad_lbn - UFS_NDADDR,
dp->di_ib[adp->ad_lbn - UFS_NDADDR]);
}
dp->di_ib[adp->ad_lbn - UFS_NDADDR] = adp->ad_newblkno;
}
adp->ad_state &= ~UNDONE;
adp->ad_state |= ATTACHED;
hadchanges = 1;
}
if (hadchanges && (bp->b_flags & B_DELWRI) == 0)
stat_direct_blk_ptrs++;
if (inodedep->id_savedsize == -1) {
panic("handle_written_inodeblock: bad size");
}
if (dp->di_size != inodedep->id_savedsize) {
dp->di_size = inodedep->id_savedsize;
hadchanges = 1;
}
inodedep->id_savedsize = -1;
if (hadchanges)
bdirty(bp);
if ((adp = TAILQ_FIRST(&inodedep->id_inoupdt)) != NULL)
handle_allocdirect_partdone(adp);
filefree = NULL;
while ((wk = LIST_FIRST(&inodedep->id_bufwait)) != NULL) {
WORKLIST_REMOVE(wk);
switch (wk->wk_type) {
case D_FREEFILE:
if (filefree != NULL) {
panic("handle_written_inodeblock: filefree");
}
filefree = wk;
continue;
case D_MKDIR:
handle_written_mkdir(WK_MKDIR(wk), MKDIR_PARENT);
continue;
case D_DIRADD:
diradd_inode_written(WK_DIRADD(wk), inodedep);
continue;
case D_FREEBLKS:
wk->wk_state |= COMPLETE;
if ((wk->wk_state & ALLCOMPLETE) != ALLCOMPLETE)
continue;
case D_FREEFRAG:
case D_DIRREM:
add_to_worklist(wk);
continue;
default:
panic("handle_written_inodeblock: Unknown type %s",
TYPENAME(wk->wk_type));
}
}
if (filefree != NULL) {
if (free_inodedep(inodedep) == 0) {
panic("handle_written_inodeblock: live inodedep");
}
add_to_worklist(filefree);
return (0);
}
if (free_inodedep(inodedep) || TAILQ_FIRST(&inodedep->id_inoupdt) == NULL)
return (0);
return (hadchanges);
}
static void
diradd_inode_written(struct diradd *dap, struct inodedep *inodedep)
{
struct pagedep *pagedep;
dap->da_state |= COMPLETE;
if ((dap->da_state & ALLCOMPLETE) == ALLCOMPLETE) {
if (dap->da_state & DIRCHG)
pagedep = dap->da_previous->dm_pagedep;
else
pagedep = dap->da_pagedep;
LIST_REMOVE(dap, da_pdlist);
LIST_INSERT_HEAD(&pagedep->pd_pendinghd, dap, da_pdlist);
}
WORKLIST_INSERT(&inodedep->id_pendinghd, &dap->da_list);
}
static void
handle_written_mkdir(struct mkdir *mkdir, int type)
{
struct diradd *dap;
struct pagedep *pagedep;
if (mkdir->md_state != type) {
panic("handle_written_mkdir: bad type");
}
dap = mkdir->md_diradd;
dap->da_state &= ~type;
if ((dap->da_state & (MKDIR_PARENT | MKDIR_BODY)) == 0)
dap->da_state |= DEPCOMPLETE;
if ((dap->da_state & ALLCOMPLETE) == ALLCOMPLETE) {
if (dap->da_state & DIRCHG)
pagedep = dap->da_previous->dm_pagedep;
else
pagedep = dap->da_pagedep;
LIST_REMOVE(dap, da_pdlist);
LIST_INSERT_HEAD(&pagedep->pd_pendinghd, dap, da_pdlist);
}
LIST_REMOVE(mkdir, md_mkdirs);
WORKITEM_FREE(mkdir, D_MKDIR);
}
static int
handle_written_filepage(struct pagedep *pagedep, struct buf *bp)
{
struct dirrem *dirrem;
struct diradd *dap, *nextdap;
struct direct *ep;
int i, chgs;
if ((pagedep->pd_state & IOSTARTED) == 0) {
panic("handle_written_filepage: not started");
}
pagedep->pd_state &= ~IOSTARTED;
while ((dirrem = LIST_FIRST(&pagedep->pd_dirremhd)) != NULL) {
LIST_REMOVE(dirrem, dm_next);
dirrem->dm_dirinum = pagedep->pd_ino;
add_to_worklist(&dirrem->dm_list);
}
while ((dap = LIST_FIRST(&pagedep->pd_pendinghd)) != NULL)
free_diradd(dap);
for (chgs = 0, i = 0; i < DAHASHSZ; i++) {
for (dap = LIST_FIRST(&pagedep->pd_diraddhd[i]); dap;
dap = nextdap) {
nextdap = LIST_NEXT(dap, da_pdlist);
if (dap->da_state & ATTACHED) {
panic("handle_written_filepage: attached");
}
ep = (struct direct *)
((char *)bp->b_data + dap->da_offset);
ep->d_ino = dap->da_newinum;
dap->da_state &= ~UNDONE;
dap->da_state |= ATTACHED;
chgs = 1;
if ((dap->da_state & ALLCOMPLETE) == ALLCOMPLETE) {
LIST_REMOVE(dap, da_pdlist);
LIST_INSERT_HEAD(&pagedep->pd_pendinghd, dap,
da_pdlist);
}
}
}
if (chgs) {
if ((bp->b_flags & B_DELWRI) == 0)
stat_dir_entry++;
bdirty(bp);
}
if (LIST_FIRST(&pagedep->pd_pendinghd) == NULL) {
for (i = 0; i < DAHASHSZ; i++)
if (LIST_FIRST(&pagedep->pd_diraddhd[i]) != NULL)
break;
if (i == DAHASHSZ) {
LIST_REMOVE(pagedep, pd_hash);
WORKITEM_FREE(pagedep, D_PAGEDEP);
return (0);
}
}
return (1);
}
void
softdep_load_inodeblock(struct inode *ip)
{
struct inodedep *inodedep;
ip->i_effnlink = ip->i_nlink;
ACQUIRE_LOCK(&lk);
if (inodedep_lookup(ip->i_fs, ip->i_number, 0, &inodedep) == 0) {
FREE_LOCK(&lk);
return;
}
ip->i_effnlink -= inodedep->id_nlinkdelta;
FREE_LOCK(&lk);
}
void
softdep_update_inodeblock(struct inode *ip, struct buf *bp,
int waitfor)
{
struct inodedep *inodedep;
struct worklist *wk;
struct buf *ibp;
int error, gotit;
ACQUIRE_LOCK(&lk);
if (inodedep_lookup(ip->i_fs, ip->i_number, 0, &inodedep) == 0) {
FREE_LOCK(&lk);
if (ip->i_effnlink != ip->i_nlink)
panic("softdep_update_inodeblock: bad link count");
return;
}
if (inodedep->id_nlinkdelta != ip->i_nlink - ip->i_effnlink) {
panic("softdep_update_inodeblock: bad delta");
}
inodedep->id_state &= ~COMPLETE;
if ((inodedep->id_state & ONWORKLIST) == 0)
WORKLIST_INSERT_BP(bp, &inodedep->id_list);
merge_inode_lists(inodedep);
if (TAILQ_FIRST(&inodedep->id_inoupdt) != NULL)
handle_allocdirect_partdone(TAILQ_FIRST(&inodedep->id_inoupdt));
while ((wk = LIST_FIRST(&inodedep->id_inowait)) != NULL) {
WORKLIST_REMOVE(wk);
WORKLIST_INSERT(&inodedep->id_bufwait, wk);
}
if (waitfor == 0) {
FREE_LOCK(&lk);
return;
}
retry:
if ((inodedep->id_state & DEPCOMPLETE) != 0) {
FREE_LOCK(&lk);
return;
}
gotit = getdirtybuf(&inodedep->id_buf, MNT_WAIT);
if (gotit == 0) {
if (inodedep_lookup(ip->i_fs, ip->i_number, 0, &inodedep) != 0)
goto retry;
FREE_LOCK(&lk);
return;
}
ibp = inodedep->id_buf;
FREE_LOCK(&lk);
if ((error = bwrite(ibp)) != 0)
softdep_error("softdep_update_inodeblock: bwrite", error);
}
static void
merge_inode_lists(struct inodedep *inodedep)
{
struct allocdirect *listadp, *newadp;
newadp = TAILQ_FIRST(&inodedep->id_newinoupdt);
for (listadp = TAILQ_FIRST(&inodedep->id_inoupdt); listadp && newadp;) {
if (listadp->ad_lbn < newadp->ad_lbn) {
listadp = TAILQ_NEXT(listadp, ad_next);
continue;
}
TAILQ_REMOVE(&inodedep->id_newinoupdt, newadp, ad_next);
TAILQ_INSERT_BEFORE(listadp, newadp, ad_next);
if (listadp->ad_lbn == newadp->ad_lbn) {
allocdirect_merge(&inodedep->id_inoupdt, newadp,
listadp);
listadp = newadp;
}
newadp = TAILQ_FIRST(&inodedep->id_newinoupdt);
}
while ((newadp = TAILQ_FIRST(&inodedep->id_newinoupdt)) != NULL) {
TAILQ_REMOVE(&inodedep->id_newinoupdt, newadp, ad_next);
TAILQ_INSERT_TAIL(&inodedep->id_inoupdt, newadp, ad_next);
}
}
static int
softdep_fsync(struct vnode *vp)
{
struct inodedep *inodedep;
struct pagedep *pagedep;
struct worklist *wk;
struct diradd *dap;
struct mount *mnt;
struct vnode *pvp;
struct inode *ip;
struct buf *bp;
struct fs *fs;
int error, flushparent;
ino_t parentino;
ufs_lbn_t lbn;
if ((vp->v_mount->mnt_flag & MNT_SOFTDEP) == 0)
return (0);
ip = VTOI(vp);
fs = ip->i_fs;
ACQUIRE_LOCK(&lk);
if (inodedep_lookup(fs, ip->i_number, 0, &inodedep) == 0) {
FREE_LOCK(&lk);
return (0);
}
if (LIST_FIRST(&inodedep->id_inowait) != NULL ||
LIST_FIRST(&inodedep->id_bufwait) != NULL ||
TAILQ_FIRST(&inodedep->id_inoupdt) != NULL ||
TAILQ_FIRST(&inodedep->id_newinoupdt) != NULL) {
panic("softdep_fsync: pending ops");
}
for (error = 0, flushparent = 0; ; ) {
if ((wk = LIST_FIRST(&inodedep->id_pendinghd)) == NULL)
break;
if (wk->wk_type != D_DIRADD) {
panic("softdep_fsync: Unexpected type %s",
TYPENAME(wk->wk_type));
}
dap = WK_DIRADD(wk);
if (dap->da_state & DIRCHG)
pagedep = dap->da_previous->dm_pagedep;
else
pagedep = dap->da_pagedep;
mnt = pagedep->pd_mnt;
parentino = pagedep->pd_ino;
lbn = pagedep->pd_lbn;
if ((dap->da_state & (MKDIR_BODY | COMPLETE)) != COMPLETE) {
panic("softdep_fsync: dirty");
}
flushparent = dap->da_state & MKDIR_PARENT;
if (vp->v_flag & VRECLAIMED)
break;
FREE_LOCK(&lk);
vn_unlock(vp);
error = VFS_VGET(mnt, NULL, parentino, &pvp);
vn_lock(vp, LK_EXCLUSIVE | LK_RETRY);
if (error != 0) {
return (error);
}
if (flushparent) {
if ((error = ffs_update(pvp, 1)) != 0) {
vput(pvp);
return (error);
}
}
error = bread(pvp, lblktodoff(fs, lbn), blksize(fs, VTOI(pvp), lbn), &bp);
if (error == 0)
error = bwrite(bp);
vput(pvp);
if (error != 0) {
return (error);
}
ACQUIRE_LOCK(&lk);
if (inodedep_lookup(fs, ip->i_number, 0, &inodedep) == 0)
break;
}
FREE_LOCK(&lk);
return (0);
}
static int softdep_fsync_mountdev_bp(struct buf *bp, void *data);
void
softdep_fsync_mountdev(struct vnode *vp)
{
if (!vn_isdisk(vp, NULL))
panic("softdep_fsync_mountdev: vnode not a disk");
ACQUIRE_LOCK(&lk);
lwkt_gettoken(&vp->v_token);
RB_SCAN(buf_rb_tree, &vp->v_rbdirty_tree, NULL,
softdep_fsync_mountdev_bp, vp);
lwkt_reltoken(&vp->v_token);
drain_output(vp, 1);
FREE_LOCK(&lk);
}
static int
softdep_fsync_mountdev_bp(struct buf *bp, void *data)
{
struct worklist *wk;
struct vnode *vp = data;
if (BUF_LOCK(bp, LK_EXCLUSIVE | LK_NOWAIT))
return(0);
if (bp->b_vp != vp || (bp->b_flags & B_DELWRI) == 0) {
BUF_UNLOCK(bp);
kprintf("softdep_fsync_mountdev_bp: warning, buffer %p ripped out from under vnode %p\n", bp, vp);
return(0);
}
if ((wk = LIST_FIRST(&bp->b_dep)) == NULL ||
wk->wk_type != D_BMSAFEMAP) {
BUF_UNLOCK(bp);
return(0);
}
bremfree(bp);
FREE_LOCK(&lk);
(void) bawrite(bp);
ACQUIRE_LOCK(&lk);
return(0);
}
struct softdep_sync_metadata_info {
struct vnode *vp;
int waitfor;
};
static int softdep_sync_metadata_bp(struct buf *bp, void *data);
int
softdep_sync_metadata(struct vnode *vp, struct thread *td)
{
struct softdep_sync_metadata_info info;
int error, waitfor;
if (!vn_isdisk(vp, NULL)) {
if (!DOINGSOFTDEP(vp))
return (0);
} else
if (vp->v_rdev->si_mountpoint == NULL ||
(vp->v_rdev->si_mountpoint->mnt_flag & MNT_SOFTDEP) == 0)
return (0);
ACQUIRE_LOCK(&lk);
if ((error = flush_inodedep_deps(VTOI(vp)->i_fs, VTOI(vp)->i_number))) {
FREE_LOCK(&lk);
return (error);
}
waitfor = MNT_NOWAIT;
top:
drain_output(vp, 1);
info.vp = vp;
info.waitfor = waitfor;
lwkt_gettoken(&vp->v_token);
error = RB_SCAN(buf_rb_tree, &vp->v_rbdirty_tree, NULL,
softdep_sync_metadata_bp, &info);
lwkt_reltoken(&vp->v_token);
if (error < 0) {
FREE_LOCK(&lk);
return(-error);
}
if (waitfor & MNT_NOWAIT) {
waitfor = MNT_WAIT;
FREE_LOCK(&lk);
ACQUIRE_LOCK(&lk);
goto top;
}
drain_output(vp, 1);
if (RB_EMPTY(&vp->v_rbdirty_tree)) {
FREE_LOCK(&lk);
return (0);
}
FREE_LOCK(&lk);
if (vn_isdisk(vp, NULL) &&
vp->v_rdev &&
vp->v_rdev->si_mountpoint && !vn_islocked(vp) &&
(error = VFS_SYNC(vp->v_rdev->si_mountpoint, MNT_WAIT)) != 0)
return (error);
return (0);
}
static int
softdep_sync_metadata_bp(struct buf *bp, void *data)
{
struct softdep_sync_metadata_info *info = data;
struct pagedep *pagedep;
struct allocdirect *adp;
struct allocindir *aip;
struct worklist *wk;
struct buf *nbp;
int error;
int i;
if (getdirtybuf(&bp, MNT_WAIT) == 0) {
kprintf("softdep_sync_metadata_bp(1): caught buf %p going away\n", bp);
return (1);
}
if (bp->b_vp != info->vp || (bp->b_flags & B_DELWRI) == 0) {
kprintf("softdep_sync_metadata_bp(2): caught buf %p going away vp %p\n", bp, info->vp);
BUF_UNLOCK(bp);
return(1);
}
LIST_FOREACH(wk, &bp->b_dep, wk_list) {
switch (wk->wk_type) {
case D_ALLOCDIRECT:
adp = WK_ALLOCDIRECT(wk);
if (adp->ad_state & DEPCOMPLETE)
break;
nbp = adp->ad_buf;
if (getdirtybuf(&nbp, info->waitfor) == 0)
break;
FREE_LOCK(&lk);
if (info->waitfor & MNT_NOWAIT) {
bawrite(nbp);
} else if ((error = bwrite(nbp)) != 0) {
bawrite(bp);
ACQUIRE_LOCK(&lk);
return (-error);
}
ACQUIRE_LOCK(&lk);
break;
case D_ALLOCINDIR:
aip = WK_ALLOCINDIR(wk);
if (aip->ai_state & DEPCOMPLETE)
break;
nbp = aip->ai_buf;
if (getdirtybuf(&nbp, info->waitfor) == 0)
break;
FREE_LOCK(&lk);
if (info->waitfor & MNT_NOWAIT) {
bawrite(nbp);
} else if ((error = bwrite(nbp)) != 0) {
bawrite(bp);
ACQUIRE_LOCK(&lk);
return (-error);
}
ACQUIRE_LOCK(&lk);
break;
case D_INDIRDEP:
restart:
LIST_FOREACH(aip, &WK_INDIRDEP(wk)->ir_deplisthd, ai_next) {
if (aip->ai_state & DEPCOMPLETE)
continue;
nbp = aip->ai_buf;
if (getdirtybuf(&nbp, MNT_WAIT) == 0)
goto restart;
FREE_LOCK(&lk);
if ((error = bwrite(nbp)) != 0) {
bawrite(bp);
ACQUIRE_LOCK(&lk);
return (-error);
}
ACQUIRE_LOCK(&lk);
goto restart;
}
break;
case D_INODEDEP:
if ((error = flush_inodedep_deps(WK_INODEDEP(wk)->id_fs,
WK_INODEDEP(wk)->id_ino)) != 0) {
FREE_LOCK(&lk);
bawrite(bp);
ACQUIRE_LOCK(&lk);
return (-error);
}
break;
case D_PAGEDEP:
pagedep = WK_PAGEDEP(wk);
for (i = 0; i < DAHASHSZ; i++) {
if (LIST_FIRST(&pagedep->pd_diraddhd[i]) == NULL)
continue;
if ((error =
flush_pagedep_deps(info->vp,
pagedep->pd_mnt,
&pagedep->pd_diraddhd[i]))) {
FREE_LOCK(&lk);
bawrite(bp);
ACQUIRE_LOCK(&lk);
return (-error);
}
}
break;
case D_MKDIR:
nbp = WK_MKDIR(wk)->md_buf;
if (getdirtybuf(&nbp, info->waitfor) == 0)
break;
FREE_LOCK(&lk);
if (info->waitfor & MNT_NOWAIT) {
bawrite(nbp);
} else if ((error = bwrite(nbp)) != 0) {
bawrite(bp);
ACQUIRE_LOCK(&lk);
return (-error);
}
ACQUIRE_LOCK(&lk);
break;
case D_BMSAFEMAP:
nbp = WK_BMSAFEMAP(wk)->sm_buf;
if (nbp == bp)
break;
if (getdirtybuf(&nbp, info->waitfor) == 0)
break;
FREE_LOCK(&lk);
if (info->waitfor & MNT_NOWAIT) {
bawrite(nbp);
} else if ((error = bwrite(nbp)) != 0) {
bawrite(bp);
ACQUIRE_LOCK(&lk);
return (-error);
}
ACQUIRE_LOCK(&lk);
break;
default:
panic("softdep_sync_metadata: Unknown type %s",
TYPENAME(wk->wk_type));
}
}
FREE_LOCK(&lk);
bawrite(bp);
ACQUIRE_LOCK(&lk);
return(0);
}
static int
flush_inodedep_deps(struct fs *fs, ino_t ino)
{
struct inodedep *inodedep;
struct allocdirect *adp;
int error, waitfor;
struct buf *bp;
for (waitfor = MNT_NOWAIT; ; ) {
FREE_LOCK(&lk);
ACQUIRE_LOCK(&lk);
if (inodedep_lookup(fs, ino, 0, &inodedep) == 0)
return (0);
TAILQ_FOREACH(adp, &inodedep->id_inoupdt, ad_next) {
if (adp->ad_state & DEPCOMPLETE)
continue;
bp = adp->ad_buf;
if (getdirtybuf(&bp, waitfor) == 0) {
if (waitfor & MNT_NOWAIT)
continue;
break;
}
FREE_LOCK(&lk);
if (waitfor & MNT_NOWAIT) {
bawrite(bp);
} else if ((error = bwrite(bp)) != 0) {
ACQUIRE_LOCK(&lk);
return (error);
}
ACQUIRE_LOCK(&lk);
break;
}
if (adp != NULL)
continue;
TAILQ_FOREACH(adp, &inodedep->id_newinoupdt, ad_next) {
if (adp->ad_state & DEPCOMPLETE)
continue;
bp = adp->ad_buf;
if (getdirtybuf(&bp, waitfor) == 0) {
if (waitfor & MNT_NOWAIT)
continue;
break;
}
FREE_LOCK(&lk);
if (waitfor & MNT_NOWAIT) {
bawrite(bp);
} else if ((error = bwrite(bp)) != 0) {
ACQUIRE_LOCK(&lk);
return (error);
}
ACQUIRE_LOCK(&lk);
break;
}
if (adp != NULL)
continue;
if (waitfor == MNT_WAIT)
break;
waitfor = MNT_WAIT;
}
if (inodedep_lookup(fs, ino, 0, &inodedep) != 0)
(void) free_inodedep(inodedep);
return (0);
}
static int
flush_pagedep_deps(struct vnode *pvp, struct mount *mp,
struct diraddhd *diraddhdp)
{
struct inodedep *inodedep;
struct ufsmount *ump;
struct diradd *dap;
struct worklist *wk;
struct vnode *vp;
int gotit, error = 0;
struct buf *bp;
ino_t inum;
ump = VFSTOUFS(mp);
while ((dap = LIST_FIRST(diraddhdp)) != NULL) {
if (dap->da_state & MKDIR_PARENT) {
FREE_LOCK(&lk);
if ((error = ffs_update(pvp, 1)) != 0)
break;
ACQUIRE_LOCK(&lk);
if (dap != LIST_FIRST(diraddhdp))
continue;
if (dap->da_state & MKDIR_PARENT) {
panic("flush_pagedep_deps: MKDIR_PARENT");
}
}
inum = dap->da_newinum;
if (dap->da_state & MKDIR_BODY) {
FREE_LOCK(&lk);
if ((error = VFS_VGET(mp, NULL, inum, &vp)) != 0)
break;
if ((error=VOP_FSYNC(vp, MNT_NOWAIT, 0)) ||
(error=VOP_FSYNC(vp, MNT_NOWAIT, 0))) {
vput(vp);
break;
}
drain_output(vp, 0);
error = 0;
ACQUIRE_LOCK(&lk);
bp = findblk(vp, 0, FINDBLK_TEST);
if (bp == NULL) {
FREE_LOCK(&lk);
goto mkdir_body_continue;
}
LIST_FOREACH(wk, &bp->b_dep, wk_list)
if (wk->wk_type == D_MKDIR) {
gotit = getdirtybuf(&bp, MNT_WAIT);
FREE_LOCK(&lk);
if (gotit && (error = bwrite(bp)) != 0)
goto mkdir_body_continue;
break;
}
if (wk == NULL)
FREE_LOCK(&lk);
mkdir_body_continue:
vput(vp);
if (error)
break;
ACQUIRE_LOCK(&lk);
if (dap != LIST_FIRST(diraddhdp))
continue;
if (dap->da_state & MKDIR_BODY) {
panic("flush_pagedep_deps: %p MKDIR_BODY", dap);
}
}
retry_lookup:
if (inodedep_lookup(ump->um_fs, inum, 0, &inodedep) == 0) {
panic("flush_pagedep_deps: lost inode");
}
if ((inodedep->id_state & DEPCOMPLETE) == 0) {
gotit = getdirtybuf(&inodedep->id_buf, MNT_WAIT);
if (gotit == 0)
goto retry_lookup;
FREE_LOCK(&lk);
if (gotit && (error = bwrite(inodedep->id_buf)) != 0)
break;
ACQUIRE_LOCK(&lk);
if (dap != LIST_FIRST(diraddhdp))
continue;
}
FREE_LOCK(&lk);
if ((error = bread(ump->um_devvp,
fsbtodoff(ump->um_fs, ino_to_fsba(ump->um_fs, inum)),
(int)ump->um_fs->fs_bsize, &bp)) != 0)
break;
if ((error = bwrite(bp)) != 0)
break;
ACQUIRE_LOCK(&lk);
if (dap == LIST_FIRST(diraddhdp)) {
panic("flush_pagedep_deps: flush failed");
}
}
if (error)
ACQUIRE_LOCK(&lk);
return (error);
}
int
softdep_slowdown(struct vnode *vp)
{
int max_softdeps_hard;
max_softdeps_hard = max_softdeps * 11 / 10;
if (num_dirrem < max_softdeps_hard / 2 &&
num_inodedep < max_softdeps_hard)
return (0);
stat_sync_limit_hit += 1;
return (1);
}
static int
request_cleanup(int resource)
{
struct thread *td = curthread;
KKASSERT(lock_held(&lk));
if (td == filesys_syncer)
return (0);
if (num_on_worklist > max_softdeps / 10) {
process_worklist_item(NULL, LK_NOWAIT);
process_worklist_item(NULL, LK_NOWAIT);
stat_worklist_push += 2;
return(1);
}
switch (resource) {
case FLUSH_INODES:
stat_ino_limit_push += 1;
req_clear_inodedeps += 1;
stat_countp = &stat_ino_limit_hit;
break;
case FLUSH_REMOVE:
stat_blk_limit_push += 1;
req_clear_remove += 1;
stat_countp = &stat_blk_limit_hit;
break;
default:
panic("request_cleanup: unknown type");
}
lksleep(&proc_waiting, &lk, 0, "softupdate",
tickdelay > 2 ? tickdelay : 2);
return (1);
}
static void
clear_remove(struct thread *td)
{
struct pagedep_hashhead *pagedephd;
struct pagedep *pagedep;
static int next = 0;
struct mount *mp;
struct vnode *vp;
int error, cnt;
ino_t ino;
ACQUIRE_LOCK(&lk);
for (cnt = 0; cnt < pagedep_hash; cnt++) {
pagedephd = &pagedep_hashtbl[next++];
if (next >= pagedep_hash)
next = 0;
LIST_FOREACH(pagedep, pagedephd, pd_hash) {
if (LIST_FIRST(&pagedep->pd_dirremhd) == NULL)
continue;
mp = pagedep->pd_mnt;
ino = pagedep->pd_ino;
FREE_LOCK(&lk);
if ((error = VFS_VGET(mp, NULL, ino, &vp)) != 0) {
softdep_error("clear_remove: vget", error);
return;
}
if ((error = VOP_FSYNC(vp, MNT_NOWAIT, 0)))
softdep_error("clear_remove: fsync", error);
drain_output(vp, 0);
vput(vp);
return;
}
}
FREE_LOCK(&lk);
}
struct clear_inodedeps_info {
struct fs *fs;
struct mount *mp;
};
static int
clear_inodedeps_mountlist_callback(struct mount *mp, void *data)
{
struct clear_inodedeps_info *info = data;
if ((mp->mnt_flag & MNT_SOFTDEP) && info->fs == VFSTOUFS(mp)->um_fs) {
info->mp = mp;
return(-1);
}
return(0);
}
static void
clear_inodedeps(struct thread *td)
{
struct clear_inodedeps_info info;
struct inodedep_hashhead *inodedephd;
struct inodedep *inodedep;
static int next = 0;
struct vnode *vp;
struct fs *fs;
int error, cnt;
ino_t firstino, lastino, ino;
ACQUIRE_LOCK(&lk);
inodedep = NULL;
for (cnt = 0; cnt < inodedep_hash; cnt++) {
inodedephd = &inodedep_hashtbl[next++];
if (next >= inodedep_hash)
next = 0;
if ((inodedep = LIST_FIRST(inodedephd)) != NULL)
break;
}
if (inodedep == NULL) {
FREE_LOCK(&lk);
return;
}
fs = inodedep->id_fs;
info.mp = NULL;
info.fs = fs;
mountlist_scan(clear_inodedeps_mountlist_callback,
&info, MNTSCAN_FORWARD|MNTSCAN_NOBUSY);
firstino = rounddown2(inodedep->id_ino, INOPB(fs));
for (lastino = firstino + INOPB(fs) - 1; lastino > firstino; lastino--)
if (inodedep_lookup(fs, lastino, 0, &inodedep) != 0)
break;
for (ino = firstino; ino <= lastino; ino++) {
if (inodedep_lookup(fs, ino, 0, &inodedep) == 0)
continue;
FREE_LOCK(&lk);
if ((error = VFS_VGET(info.mp, NULL, ino, &vp)) != 0) {
softdep_error("clear_inodedeps: vget", error);
return;
}
if (ino == lastino) {
if ((error = VOP_FSYNC(vp, MNT_WAIT, 0)))
softdep_error("clear_inodedeps: fsync1", error);
} else {
if ((error = VOP_FSYNC(vp, MNT_NOWAIT, 0)))
softdep_error("clear_inodedeps: fsync2", error);
drain_output(vp, 0);
}
vput(vp);
ACQUIRE_LOCK(&lk);
}
FREE_LOCK(&lk);
}
static int
softdep_count_dependencies(struct buf *bp, int wantcount)
{
struct worklist *wk;
struct inodedep *inodedep;
struct indirdep *indirdep;
struct allocindir *aip;
struct pagedep *pagedep;
struct diradd *dap;
int i, retval;
retval = 0;
ACQUIRE_LOCK(&lk);
LIST_FOREACH(wk, &bp->b_dep, wk_list) {
switch (wk->wk_type) {
case D_INODEDEP:
inodedep = WK_INODEDEP(wk);
if ((inodedep->id_state & DEPCOMPLETE) == 0) {
retval += 1;
if (!wantcount)
goto out;
}
if (TAILQ_FIRST(&inodedep->id_inoupdt)) {
retval += 1;
if (!wantcount)
goto out;
}
continue;
case D_INDIRDEP:
indirdep = WK_INDIRDEP(wk);
LIST_FOREACH(aip, &indirdep->ir_deplisthd, ai_next) {
retval += 1;
if (!wantcount)
goto out;
}
continue;
case D_PAGEDEP:
pagedep = WK_PAGEDEP(wk);
for (i = 0; i < DAHASHSZ; i++) {
LIST_FOREACH(dap, &pagedep->pd_diraddhd[i], da_pdlist) {
retval += 1;
if (!wantcount)
goto out;
}
}
continue;
case D_BMSAFEMAP:
case D_ALLOCDIRECT:
case D_ALLOCINDIR:
case D_MKDIR:
continue;
default:
panic("softdep_check_for_rollback: Unexpected type %s",
TYPENAME(wk->wk_type));
}
}
out:
FREE_LOCK(&lk);
return retval;
}
static int
getdirtybuf(struct buf **bpp, int waitfor)
{
struct buf *bp;
int error;
bp = *bpp;
if (bp == NULL)
return (0);
KKASSERT(lock_held(&lk));
error = BUF_LOCK(bp, LK_EXCLUSIVE | LK_NOWAIT);
if (error == 0) {
if ((bp->b_flags & B_DELWRI) == 0) {
BUF_UNLOCK(bp);
return (0);
}
bremfree(bp);
bkvasync_all(bp);
return (1);
}
if (waitfor != MNT_WAIT)
return (0);
FREE_LOCK(&lk);
error = BUF_LOCK(bp, LK_EXCLUSIVE | LK_SLEEPFAIL);
ACQUIRE_LOCK(&lk);
if (error == 0)
BUF_UNLOCK(bp);
return (0);
}
static void
drain_output(struct vnode *vp, int islocked)
{
if (!islocked)
ACQUIRE_LOCK(&lk);
while (bio_track_active(&vp->v_track_write)) {
FREE_LOCK(&lk);
bio_track_wait(&vp->v_track_write, 0, 0);
ACQUIRE_LOCK(&lk);
}
if (!islocked)
FREE_LOCK(&lk);
}
static void
softdep_deallocate_dependencies(struct buf *bp)
{
if ((bp->b_flags & B_ERROR) == 0)
panic("softdep_deallocate_dependencies: dangling deps");
softdep_error(bp->b_vp->v_mount->mnt_stat.f_mntfromname, bp->b_error);
panic("softdep_deallocate_dependencies: unrecovered I/O error");
}
void
softdep_error(char *func, int error)
{
kprintf("%s: got error %d while accessing filesystem\n", func, error);
}