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vfs_wapbl.c revision 1.71
      1  1.71  riastrad /*	$NetBSD: vfs_wapbl.c,v 1.71 2016/05/07 20:16:38 riastradh Exp $	*/
      2   1.2    simonb 
      3   1.2    simonb /*-
      4  1.23        ad  * Copyright (c) 2003, 2008, 2009 The NetBSD Foundation, Inc.
      5   1.2    simonb  * All rights reserved.
      6   1.2    simonb  *
      7   1.2    simonb  * This code is derived from software contributed to The NetBSD Foundation
      8   1.2    simonb  * by Wasabi Systems, Inc.
      9   1.2    simonb  *
     10   1.2    simonb  * Redistribution and use in source and binary forms, with or without
     11   1.2    simonb  * modification, are permitted provided that the following conditions
     12   1.2    simonb  * are met:
     13   1.2    simonb  * 1. Redistributions of source code must retain the above copyright
     14   1.2    simonb  *    notice, this list of conditions and the following disclaimer.
     15   1.2    simonb  * 2. Redistributions in binary form must reproduce the above copyright
     16   1.2    simonb  *    notice, this list of conditions and the following disclaimer in the
     17   1.2    simonb  *    documentation and/or other materials provided with the distribution.
     18   1.2    simonb  *
     19   1.2    simonb  * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
     20   1.2    simonb  * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
     21   1.2    simonb  * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
     22   1.2    simonb  * PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
     23   1.2    simonb  * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
     24   1.2    simonb  * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
     25   1.2    simonb  * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
     26   1.2    simonb  * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
     27   1.2    simonb  * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
     28   1.2    simonb  * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
     29   1.2    simonb  * POSSIBILITY OF SUCH DAMAGE.
     30   1.2    simonb  */
     31   1.2    simonb 
     32   1.2    simonb /*
     33   1.2    simonb  * This implements file system independent write ahead filesystem logging.
     34   1.2    simonb  */
     35   1.4     joerg 
     36   1.4     joerg #define WAPBL_INTERNAL
     37   1.4     joerg 
     38   1.2    simonb #include <sys/cdefs.h>
     39  1.71  riastrad __KERNEL_RCSID(0, "$NetBSD: vfs_wapbl.c,v 1.71 2016/05/07 20:16:38 riastradh Exp $");
     40   1.2    simonb 
     41   1.2    simonb #include <sys/param.h>
     42  1.31   mlelstv #include <sys/bitops.h>
     43  1.68  riastrad #include <sys/time.h>
     44  1.68  riastrad #include <sys/wapbl.h>
     45  1.68  riastrad #include <sys/wapbl_replay.h>
     46   1.2    simonb 
     47   1.2    simonb #ifdef _KERNEL
     48  1.68  riastrad 
     49  1.68  riastrad #include <sys/atomic.h>
     50  1.68  riastrad #include <sys/conf.h>
     51  1.68  riastrad #include <sys/file.h>
     52  1.68  riastrad #include <sys/kauth.h>
     53  1.68  riastrad #include <sys/kernel.h>
     54  1.68  riastrad #include <sys/module.h>
     55  1.68  riastrad #include <sys/mount.h>
     56  1.68  riastrad #include <sys/mutex.h>
     57   1.2    simonb #include <sys/namei.h>
     58   1.2    simonb #include <sys/proc.h>
     59  1.68  riastrad #include <sys/resourcevar.h>
     60  1.39  christos #include <sys/sysctl.h>
     61   1.2    simonb #include <sys/uio.h>
     62   1.2    simonb #include <sys/vnode.h>
     63   1.2    simonb 
     64   1.2    simonb #include <miscfs/specfs/specdev.h>
     65   1.2    simonb 
     66  1.51      para #define	wapbl_alloc(s) kmem_alloc((s), KM_SLEEP)
     67  1.51      para #define	wapbl_free(a, s) kmem_free((a), (s))
     68  1.51      para #define	wapbl_calloc(n, s) kmem_zalloc((n)*(s), KM_SLEEP)
     69   1.2    simonb 
     70  1.39  christos static struct sysctllog *wapbl_sysctl;
     71  1.39  christos static int wapbl_flush_disk_cache = 1;
     72  1.39  christos static int wapbl_verbose_commit = 0;
     73  1.39  christos 
     74  1.57     joerg static inline size_t wapbl_space_free(size_t, off_t, off_t);
     75  1.57     joerg 
     76   1.2    simonb #else /* !_KERNEL */
     77  1.68  riastrad 
     78   1.2    simonb #include <assert.h>
     79   1.2    simonb #include <errno.h>
     80  1.68  riastrad #include <stdbool.h>
     81   1.2    simonb #include <stdio.h>
     82   1.2    simonb #include <stdlib.h>
     83   1.2    simonb #include <string.h>
     84   1.2    simonb 
     85   1.2    simonb #define	KDASSERT(x) assert(x)
     86   1.2    simonb #define	KASSERT(x) assert(x)
     87  1.51      para #define	wapbl_alloc(s) malloc(s)
     88  1.18      yamt #define	wapbl_free(a, s) free(a)
     89   1.2    simonb #define	wapbl_calloc(n, s) calloc((n), (s))
     90   1.2    simonb 
     91   1.2    simonb #endif /* !_KERNEL */
     92   1.2    simonb 
     93   1.2    simonb /*
     94   1.2    simonb  * INTERNAL DATA STRUCTURES
     95   1.2    simonb  */
     96   1.2    simonb 
     97   1.2    simonb /*
     98   1.2    simonb  * This structure holds per-mount log information.
     99   1.2    simonb  *
    100   1.2    simonb  * Legend:	a = atomic access only
    101   1.2    simonb  *		r = read-only after init
    102   1.2    simonb  *		l = rwlock held
    103   1.2    simonb  *		m = mutex held
    104  1.38   hannken  *		lm = rwlock held writing or mutex held
    105   1.2    simonb  *		u = unlocked access ok
    106   1.2    simonb  *		b = bufcache_lock held
    107   1.2    simonb  */
    108  1.60      matt LIST_HEAD(wapbl_ino_head, wapbl_ino);
    109   1.2    simonb struct wapbl {
    110   1.2    simonb 	struct vnode *wl_logvp;	/* r:	log here */
    111   1.2    simonb 	struct vnode *wl_devvp;	/* r:	log on this device */
    112   1.2    simonb 	struct mount *wl_mount;	/* r:	mountpoint wl is associated with */
    113   1.2    simonb 	daddr_t wl_logpbn;	/* r:	Physical block number of start of log */
    114   1.2    simonb 	int wl_log_dev_bshift;	/* r:	logarithm of device block size of log
    115   1.2    simonb 					device */
    116   1.2    simonb 	int wl_fs_dev_bshift;	/* r:	logarithm of device block size of
    117   1.2    simonb 					filesystem device */
    118   1.2    simonb 
    119   1.3      yamt 	unsigned wl_lock_count;	/* m:	Count of transactions in progress */
    120   1.2    simonb 
    121   1.2    simonb 	size_t wl_circ_size; 	/* r:	Number of bytes in buffer of log */
    122   1.2    simonb 	size_t wl_circ_off;	/* r:	Number of bytes reserved at start */
    123   1.2    simonb 
    124   1.2    simonb 	size_t wl_bufcount_max;	/* r:	Number of buffers reserved for log */
    125   1.2    simonb 	size_t wl_bufbytes_max;	/* r:	Number of buf bytes reserved for log */
    126   1.2    simonb 
    127   1.2    simonb 	off_t wl_head;		/* l:	Byte offset of log head */
    128   1.2    simonb 	off_t wl_tail;		/* l:	Byte offset of log tail */
    129   1.2    simonb 	/*
    130  1.71  riastrad 	 * WAPBL log layout, stored on wl_devvp at wl_logpbn:
    131  1.71  riastrad 	 *
    132  1.71  riastrad 	 *  ___________________ wl_circ_size __________________
    133  1.71  riastrad 	 * /                                                   \
    134  1.71  riastrad 	 * +---------+---------+-------+--------------+--------+
    135  1.71  riastrad 	 * [ commit0 | commit1 | CCWCW | EEEEEEEEEEEE | CCCWCW ]
    136  1.71  riastrad 	 * +---------+---------+-------+--------------+--------+
    137  1.71  riastrad 	 *       wl_circ_off --^       ^-- wl_head    ^-- wl_tail
    138  1.71  riastrad 	 *
    139  1.71  riastrad 	 * commit0 and commit1 are commit headers.  A commit header has
    140  1.71  riastrad 	 * a generation number, indicating which of the two headers is
    141  1.71  riastrad 	 * more recent, and an assignment of head and tail pointers.
    142  1.71  riastrad 	 * The rest is a circular queue of log records, starting at
    143  1.71  riastrad 	 * the byte offset wl_circ_off.
    144  1.71  riastrad 	 *
    145  1.71  riastrad 	 * E marks empty space for records.
    146  1.71  riastrad 	 * W marks records for block writes issued but waiting.
    147  1.71  riastrad 	 * C marks completed records.
    148  1.71  riastrad 	 *
    149  1.71  riastrad 	 * wapbl_flush writes new records to empty `E' spaces after
    150  1.71  riastrad 	 * wl_head from the current transaction in memory.
    151  1.71  riastrad 	 *
    152  1.71  riastrad 	 * wapbl_truncate advances wl_tail past any completed `C'
    153  1.71  riastrad 	 * records, freeing them up for use.
    154  1.71  riastrad 	 *
    155  1.71  riastrad 	 * head == tail == 0 means log is empty.
    156  1.71  riastrad 	 * head == tail != 0 means log is full.
    157  1.71  riastrad 	 *
    158  1.71  riastrad 	 * See assertions in wapbl_advance() for other boundary
    159  1.71  riastrad 	 * conditions.
    160  1.71  riastrad 	 *
    161  1.71  riastrad 	 * Only wapbl_flush moves the head, except when wapbl_truncate
    162  1.71  riastrad 	 * sets it to 0 to indicate that the log is empty.
    163  1.71  riastrad 	 *
    164  1.71  riastrad 	 * Only wapbl_truncate moves the tail, except when wapbl_flush
    165  1.71  riastrad 	 * sets it to wl_circ_off to indicate that the log is full.
    166   1.2    simonb 	 */
    167   1.2    simonb 
    168   1.2    simonb 	struct wapbl_wc_header *wl_wc_header;	/* l	*/
    169   1.2    simonb 	void *wl_wc_scratch;	/* l:	scratch space (XXX: por que?!?) */
    170   1.2    simonb 
    171   1.2    simonb 	kmutex_t wl_mtx;	/* u:	short-term lock */
    172   1.2    simonb 	krwlock_t wl_rwlock;	/* u:	File system transaction lock */
    173   1.2    simonb 
    174   1.2    simonb 	/*
    175   1.2    simonb 	 * Must be held while accessing
    176   1.2    simonb 	 * wl_count or wl_bufs or head or tail
    177   1.2    simonb 	 */
    178   1.2    simonb 
    179   1.2    simonb 	/*
    180   1.2    simonb 	 * Callback called from within the flush routine to flush any extra
    181   1.2    simonb 	 * bits.  Note that flush may be skipped without calling this if
    182   1.2    simonb 	 * there are no outstanding buffers in the transaction.
    183   1.2    simonb 	 */
    184   1.5     joerg #if _KERNEL
    185   1.2    simonb 	wapbl_flush_fn_t wl_flush;	/* r	*/
    186   1.2    simonb 	wapbl_flush_fn_t wl_flush_abort;/* r	*/
    187   1.5     joerg #endif
    188   1.2    simonb 
    189   1.2    simonb 	size_t wl_bufbytes;	/* m:	Byte count of pages in wl_bufs */
    190   1.2    simonb 	size_t wl_bufcount;	/* m:	Count of buffers in wl_bufs */
    191   1.2    simonb 	size_t wl_bcount;	/* m:	Total bcount of wl_bufs */
    192   1.2    simonb 
    193   1.2    simonb 	LIST_HEAD(, buf) wl_bufs; /* m:	Buffers in current transaction */
    194   1.2    simonb 
    195   1.2    simonb 	kcondvar_t wl_reclaimable_cv;	/* m (obviously) */
    196   1.2    simonb 	size_t wl_reclaimable_bytes; /* m:	Amount of space available for
    197   1.2    simonb 						reclamation by truncate */
    198   1.2    simonb 	int wl_error_count;	/* m:	# of wl_entries with errors */
    199   1.2    simonb 	size_t wl_reserved_bytes; /* never truncate log smaller than this */
    200   1.2    simonb 
    201   1.2    simonb #ifdef WAPBL_DEBUG_BUFBYTES
    202   1.2    simonb 	size_t wl_unsynced_bufbytes; /* Byte count of unsynced buffers */
    203   1.2    simonb #endif
    204   1.2    simonb 
    205  1.38   hannken 	daddr_t *wl_deallocblks;/* lm:	address of block */
    206  1.38   hannken 	int *wl_dealloclens;	/* lm:	size of block */
    207  1.38   hannken 	int wl_dealloccnt;	/* lm:	total count */
    208   1.2    simonb 	int wl_dealloclim;	/* l:	max count */
    209   1.2    simonb 
    210   1.2    simonb 	/* hashtable of inode numbers for allocated but unlinked inodes */
    211   1.2    simonb 	/* synch ??? */
    212  1.60      matt 	struct wapbl_ino_head *wl_inohash;
    213   1.2    simonb 	u_long wl_inohashmask;
    214   1.2    simonb 	int wl_inohashcnt;
    215   1.2    simonb 
    216   1.2    simonb 	SIMPLEQ_HEAD(, wapbl_entry) wl_entries; /* On disk transaction
    217   1.2    simonb 						   accounting */
    218  1.54   hannken 
    219  1.54   hannken 	u_char *wl_buffer;	/* l:   buffer for wapbl_buffered_write() */
    220  1.54   hannken 	daddr_t wl_buffer_dblk;	/* l:   buffer disk block address */
    221  1.54   hannken 	size_t wl_buffer_used;	/* l:   buffer current use */
    222   1.2    simonb };
    223   1.2    simonb 
    224   1.2    simonb #ifdef WAPBL_DEBUG_PRINT
    225   1.2    simonb int wapbl_debug_print = WAPBL_DEBUG_PRINT;
    226   1.2    simonb #endif
    227   1.2    simonb 
    228   1.2    simonb /****************************************************************/
    229   1.2    simonb #ifdef _KERNEL
    230   1.2    simonb 
    231   1.2    simonb #ifdef WAPBL_DEBUG
    232   1.2    simonb struct wapbl *wapbl_debug_wl;
    233   1.2    simonb #endif
    234   1.2    simonb 
    235   1.2    simonb static int wapbl_write_commit(struct wapbl *wl, off_t head, off_t tail);
    236   1.2    simonb static int wapbl_write_blocks(struct wapbl *wl, off_t *offp);
    237   1.2    simonb static int wapbl_write_revocations(struct wapbl *wl, off_t *offp);
    238   1.2    simonb static int wapbl_write_inodes(struct wapbl *wl, off_t *offp);
    239   1.2    simonb #endif /* _KERNEL */
    240   1.2    simonb 
    241  1.14     joerg static int wapbl_replay_process(struct wapbl_replay *wr, off_t, off_t);
    242   1.2    simonb 
    243  1.30  uebayasi static inline size_t wapbl_space_used(size_t avail, off_t head,
    244   1.2    simonb 	off_t tail);
    245   1.2    simonb 
    246   1.2    simonb #ifdef _KERNEL
    247   1.2    simonb 
    248  1.51      para static struct pool wapbl_entry_pool;
    249  1.51      para 
    250   1.2    simonb #define	WAPBL_INODETRK_SIZE 83
    251   1.2    simonb static int wapbl_ino_pool_refcount;
    252   1.2    simonb static struct pool wapbl_ino_pool;
    253   1.2    simonb struct wapbl_ino {
    254   1.2    simonb 	LIST_ENTRY(wapbl_ino) wi_hash;
    255   1.2    simonb 	ino_t wi_ino;
    256   1.2    simonb 	mode_t wi_mode;
    257   1.2    simonb };
    258   1.2    simonb 
    259   1.2    simonb static void wapbl_inodetrk_init(struct wapbl *wl, u_int size);
    260   1.2    simonb static void wapbl_inodetrk_free(struct wapbl *wl);
    261   1.2    simonb static struct wapbl_ino *wapbl_inodetrk_get(struct wapbl *wl, ino_t ino);
    262   1.2    simonb 
    263   1.2    simonb static size_t wapbl_transaction_len(struct wapbl *wl);
    264  1.30  uebayasi static inline size_t wapbl_transaction_inodes_len(struct wapbl *wl);
    265   1.2    simonb 
    266  1.13     joerg #if 0
    267   1.4     joerg int wapbl_replay_verify(struct wapbl_replay *, struct vnode *);
    268   1.4     joerg #endif
    269   1.4     joerg 
    270   1.4     joerg static int wapbl_replay_isopen1(struct wapbl_replay *);
    271   1.4     joerg 
    272   1.2    simonb /*
    273   1.2    simonb  * This is useful for debugging.  If set, the log will
    274   1.2    simonb  * only be truncated when necessary.
    275   1.2    simonb  */
    276   1.2    simonb int wapbl_lazy_truncate = 0;
    277   1.2    simonb 
    278   1.2    simonb struct wapbl_ops wapbl_ops = {
    279   1.2    simonb 	.wo_wapbl_discard	= wapbl_discard,
    280   1.2    simonb 	.wo_wapbl_replay_isopen	= wapbl_replay_isopen1,
    281   1.6     joerg 	.wo_wapbl_replay_can_read = wapbl_replay_can_read,
    282   1.2    simonb 	.wo_wapbl_replay_read	= wapbl_replay_read,
    283   1.2    simonb 	.wo_wapbl_add_buf	= wapbl_add_buf,
    284   1.2    simonb 	.wo_wapbl_remove_buf	= wapbl_remove_buf,
    285   1.2    simonb 	.wo_wapbl_resize_buf	= wapbl_resize_buf,
    286   1.2    simonb 	.wo_wapbl_begin		= wapbl_begin,
    287   1.2    simonb 	.wo_wapbl_end		= wapbl_end,
    288   1.2    simonb 	.wo_wapbl_junlock_assert= wapbl_junlock_assert,
    289   1.2    simonb 
    290   1.2    simonb 	/* XXX: the following is only used to say "this is a wapbl buf" */
    291   1.2    simonb 	.wo_wapbl_biodone	= wapbl_biodone,
    292   1.2    simonb };
    293   1.2    simonb 
    294  1.21      yamt static int
    295  1.39  christos wapbl_sysctl_init(void)
    296  1.39  christos {
    297  1.39  christos 	int rv;
    298  1.39  christos 	const struct sysctlnode *rnode, *cnode;
    299  1.39  christos 
    300  1.39  christos 	wapbl_sysctl = NULL;
    301  1.39  christos 
    302  1.39  christos 	rv = sysctl_createv(&wapbl_sysctl, 0, NULL, &rnode,
    303  1.39  christos 		       CTLFLAG_PERMANENT,
    304  1.39  christos 		       CTLTYPE_NODE, "wapbl",
    305  1.39  christos 		       SYSCTL_DESCR("WAPBL journaling options"),
    306  1.39  christos 		       NULL, 0, NULL, 0,
    307  1.59     pooka 		       CTL_VFS, CTL_CREATE, CTL_EOL);
    308  1.39  christos 	if (rv)
    309  1.39  christos 		return rv;
    310  1.39  christos 
    311  1.39  christos 	rv = sysctl_createv(&wapbl_sysctl, 0, &rnode, &cnode,
    312  1.39  christos 		       CTLFLAG_PERMANENT|CTLFLAG_READWRITE,
    313  1.39  christos 		       CTLTYPE_INT, "flush_disk_cache",
    314  1.39  christos 		       SYSCTL_DESCR("flush disk cache"),
    315  1.39  christos 		       NULL, 0, &wapbl_flush_disk_cache, 0,
    316  1.39  christos 		       CTL_CREATE, CTL_EOL);
    317  1.39  christos 	if (rv)
    318  1.39  christos 		return rv;
    319  1.39  christos 
    320  1.39  christos 	rv = sysctl_createv(&wapbl_sysctl, 0, &rnode, &cnode,
    321  1.39  christos 		       CTLFLAG_PERMANENT|CTLFLAG_READWRITE,
    322  1.39  christos 		       CTLTYPE_INT, "verbose_commit",
    323  1.39  christos 		       SYSCTL_DESCR("show time and size of wapbl log commits"),
    324  1.39  christos 		       NULL, 0, &wapbl_verbose_commit, 0,
    325  1.39  christos 		       CTL_CREATE, CTL_EOL);
    326  1.39  christos 	return rv;
    327  1.39  christos }
    328  1.39  christos 
    329  1.39  christos static void
    330  1.39  christos wapbl_init(void)
    331  1.39  christos {
    332  1.51      para 
    333  1.51      para 	pool_init(&wapbl_entry_pool, sizeof(struct wapbl_entry), 0, 0, 0,
    334  1.51      para 	    "wapblentrypl", &pool_allocator_kmem, IPL_VM);
    335  1.51      para 
    336  1.39  christos 	wapbl_sysctl_init();
    337  1.39  christos }
    338  1.39  christos 
    339  1.39  christos static int
    340  1.39  christos wapbl_fini(bool interface)
    341  1.39  christos {
    342  1.51      para 
    343  1.63  pgoyette 	if (wapbl_sysctl != NULL)
    344  1.63  pgoyette 		 sysctl_teardown(&wapbl_sysctl);
    345  1.51      para 
    346  1.51      para 	pool_destroy(&wapbl_entry_pool);
    347  1.51      para 
    348  1.39  christos 	return 0;
    349  1.39  christos }
    350  1.39  christos 
    351  1.39  christos static int
    352  1.15     joerg wapbl_start_flush_inodes(struct wapbl *wl, struct wapbl_replay *wr)
    353  1.15     joerg {
    354  1.15     joerg 	int error, i;
    355  1.15     joerg 
    356  1.15     joerg 	WAPBL_PRINTF(WAPBL_PRINT_REPLAY,
    357  1.15     joerg 	    ("wapbl_start: reusing log with %d inodes\n", wr->wr_inodescnt));
    358  1.15     joerg 
    359  1.15     joerg 	/*
    360  1.15     joerg 	 * Its only valid to reuse the replay log if its
    361  1.15     joerg 	 * the same as the new log we just opened.
    362  1.15     joerg 	 */
    363  1.15     joerg 	KDASSERT(!wapbl_replay_isopen(wr));
    364  1.47  christos 	KASSERT(wl->wl_devvp->v_type == VBLK);
    365  1.47  christos 	KASSERT(wr->wr_devvp->v_type == VBLK);
    366  1.15     joerg 	KASSERT(wl->wl_devvp->v_rdev == wr->wr_devvp->v_rdev);
    367  1.15     joerg 	KASSERT(wl->wl_logpbn == wr->wr_logpbn);
    368  1.15     joerg 	KASSERT(wl->wl_circ_size == wr->wr_circ_size);
    369  1.15     joerg 	KASSERT(wl->wl_circ_off == wr->wr_circ_off);
    370  1.15     joerg 	KASSERT(wl->wl_log_dev_bshift == wr->wr_log_dev_bshift);
    371  1.15     joerg 	KASSERT(wl->wl_fs_dev_bshift == wr->wr_fs_dev_bshift);
    372  1.15     joerg 
    373  1.15     joerg 	wl->wl_wc_header->wc_generation = wr->wr_generation + 1;
    374  1.15     joerg 
    375  1.15     joerg 	for (i = 0; i < wr->wr_inodescnt; i++)
    376  1.15     joerg 		wapbl_register_inode(wl, wr->wr_inodes[i].wr_inumber,
    377  1.15     joerg 		    wr->wr_inodes[i].wr_imode);
    378  1.15     joerg 
    379  1.15     joerg 	/* Make sure new transaction won't overwrite old inodes list */
    380  1.15     joerg 	KDASSERT(wapbl_transaction_len(wl) <=
    381  1.15     joerg 	    wapbl_space_free(wl->wl_circ_size, wr->wr_inodeshead,
    382  1.15     joerg 	    wr->wr_inodestail));
    383  1.15     joerg 
    384  1.15     joerg 	wl->wl_head = wl->wl_tail = wr->wr_inodeshead;
    385  1.15     joerg 	wl->wl_reclaimable_bytes = wl->wl_reserved_bytes =
    386  1.15     joerg 	    wapbl_transaction_len(wl);
    387  1.15     joerg 
    388  1.15     joerg 	error = wapbl_write_inodes(wl, &wl->wl_head);
    389  1.15     joerg 	if (error)
    390  1.15     joerg 		return error;
    391  1.15     joerg 
    392  1.15     joerg 	KASSERT(wl->wl_head != wl->wl_tail);
    393  1.15     joerg 	KASSERT(wl->wl_head != 0);
    394  1.15     joerg 
    395  1.15     joerg 	return 0;
    396  1.15     joerg }
    397  1.15     joerg 
    398   1.2    simonb int
    399   1.2    simonb wapbl_start(struct wapbl ** wlp, struct mount *mp, struct vnode *vp,
    400   1.2    simonb 	daddr_t off, size_t count, size_t blksize, struct wapbl_replay *wr,
    401   1.2    simonb 	wapbl_flush_fn_t flushfn, wapbl_flush_fn_t flushabortfn)
    402   1.2    simonb {
    403   1.2    simonb 	struct wapbl *wl;
    404   1.2    simonb 	struct vnode *devvp;
    405   1.2    simonb 	daddr_t logpbn;
    406   1.2    simonb 	int error;
    407  1.31   mlelstv 	int log_dev_bshift = ilog2(blksize);
    408  1.32   mlelstv 	int fs_dev_bshift = log_dev_bshift;
    409   1.2    simonb 	int run;
    410   1.2    simonb 
    411   1.2    simonb 	WAPBL_PRINTF(WAPBL_PRINT_OPEN, ("wapbl_start: vp=%p off=%" PRId64
    412   1.2    simonb 	    " count=%zu blksize=%zu\n", vp, off, count, blksize));
    413   1.2    simonb 
    414   1.2    simonb 	if (log_dev_bshift > fs_dev_bshift) {
    415   1.2    simonb 		WAPBL_PRINTF(WAPBL_PRINT_OPEN,
    416   1.2    simonb 			("wapbl: log device's block size cannot be larger "
    417   1.2    simonb 			 "than filesystem's\n"));
    418   1.2    simonb 		/*
    419   1.2    simonb 		 * Not currently implemented, although it could be if
    420   1.2    simonb 		 * needed someday.
    421   1.2    simonb 		 */
    422   1.2    simonb 		return ENOSYS;
    423   1.2    simonb 	}
    424   1.2    simonb 
    425   1.2    simonb 	if (off < 0)
    426   1.2    simonb 		return EINVAL;
    427   1.2    simonb 
    428   1.2    simonb 	if (blksize < DEV_BSIZE)
    429   1.2    simonb 		return EINVAL;
    430   1.2    simonb 	if (blksize % DEV_BSIZE)
    431   1.2    simonb 		return EINVAL;
    432   1.2    simonb 
    433   1.2    simonb 	/* XXXTODO: verify that the full load is writable */
    434   1.2    simonb 
    435   1.2    simonb 	/*
    436   1.2    simonb 	 * XXX check for minimum log size
    437   1.2    simonb 	 * minimum is governed by minimum amount of space
    438   1.2    simonb 	 * to complete a transaction. (probably truncate)
    439   1.2    simonb 	 */
    440   1.2    simonb 	/* XXX for now pick something minimal */
    441   1.2    simonb 	if ((count * blksize) < MAXPHYS) {
    442   1.2    simonb 		return ENOSPC;
    443   1.2    simonb 	}
    444   1.2    simonb 
    445   1.2    simonb 	if ((error = VOP_BMAP(vp, off, &devvp, &logpbn, &run)) != 0) {
    446   1.2    simonb 		return error;
    447   1.2    simonb 	}
    448   1.2    simonb 
    449   1.2    simonb 	wl = wapbl_calloc(1, sizeof(*wl));
    450   1.2    simonb 	rw_init(&wl->wl_rwlock);
    451   1.2    simonb 	mutex_init(&wl->wl_mtx, MUTEX_DEFAULT, IPL_NONE);
    452   1.2    simonb 	cv_init(&wl->wl_reclaimable_cv, "wapblrec");
    453   1.2    simonb 	LIST_INIT(&wl->wl_bufs);
    454   1.2    simonb 	SIMPLEQ_INIT(&wl->wl_entries);
    455   1.2    simonb 
    456   1.2    simonb 	wl->wl_logvp = vp;
    457   1.2    simonb 	wl->wl_devvp = devvp;
    458   1.2    simonb 	wl->wl_mount = mp;
    459   1.2    simonb 	wl->wl_logpbn = logpbn;
    460   1.2    simonb 	wl->wl_log_dev_bshift = log_dev_bshift;
    461   1.2    simonb 	wl->wl_fs_dev_bshift = fs_dev_bshift;
    462   1.2    simonb 
    463   1.2    simonb 	wl->wl_flush = flushfn;
    464   1.2    simonb 	wl->wl_flush_abort = flushabortfn;
    465   1.2    simonb 
    466   1.2    simonb 	/* Reserve two log device blocks for the commit headers */
    467   1.2    simonb 	wl->wl_circ_off = 2<<wl->wl_log_dev_bshift;
    468  1.34   mlelstv 	wl->wl_circ_size = ((count * blksize) - wl->wl_circ_off);
    469   1.2    simonb 	/* truncate the log usage to a multiple of log_dev_bshift */
    470   1.2    simonb 	wl->wl_circ_size >>= wl->wl_log_dev_bshift;
    471   1.2    simonb 	wl->wl_circ_size <<= wl->wl_log_dev_bshift;
    472   1.2    simonb 
    473   1.2    simonb 	/*
    474   1.2    simonb 	 * wl_bufbytes_max limits the size of the in memory transaction space.
    475   1.2    simonb 	 * - Since buffers are allocated and accounted for in units of
    476   1.2    simonb 	 *   PAGE_SIZE it is required to be a multiple of PAGE_SIZE
    477   1.2    simonb 	 *   (i.e. 1<<PAGE_SHIFT)
    478   1.2    simonb 	 * - Since the log device has to be written in units of
    479   1.2    simonb 	 *   1<<wl_log_dev_bshift it is required to be a mulitple of
    480   1.2    simonb 	 *   1<<wl_log_dev_bshift.
    481   1.2    simonb 	 * - Since filesystem will provide data in units of 1<<wl_fs_dev_bshift,
    482   1.2    simonb 	 *   it is convenient to be a multiple of 1<<wl_fs_dev_bshift.
    483   1.2    simonb 	 * Therefore it must be multiple of the least common multiple of those
    484   1.2    simonb 	 * three quantities.  Fortunately, all of those quantities are
    485   1.2    simonb 	 * guaranteed to be a power of two, and the least common multiple of
    486   1.2    simonb 	 * a set of numbers which are all powers of two is simply the maximum
    487   1.2    simonb 	 * of those numbers.  Finally, the maximum logarithm of a power of two
    488   1.2    simonb 	 * is the same as the log of the maximum power of two.  So we can do
    489   1.2    simonb 	 * the following operations to size wl_bufbytes_max:
    490   1.2    simonb 	 */
    491   1.2    simonb 
    492   1.2    simonb 	/* XXX fix actual number of pages reserved per filesystem. */
    493   1.2    simonb 	wl->wl_bufbytes_max = MIN(wl->wl_circ_size, buf_memcalc() / 2);
    494   1.2    simonb 
    495   1.2    simonb 	/* Round wl_bufbytes_max to the largest power of two constraint */
    496   1.2    simonb 	wl->wl_bufbytes_max >>= PAGE_SHIFT;
    497   1.2    simonb 	wl->wl_bufbytes_max <<= PAGE_SHIFT;
    498   1.2    simonb 	wl->wl_bufbytes_max >>= wl->wl_log_dev_bshift;
    499   1.2    simonb 	wl->wl_bufbytes_max <<= wl->wl_log_dev_bshift;
    500   1.2    simonb 	wl->wl_bufbytes_max >>= wl->wl_fs_dev_bshift;
    501   1.2    simonb 	wl->wl_bufbytes_max <<= wl->wl_fs_dev_bshift;
    502   1.2    simonb 
    503   1.2    simonb 	/* XXX maybe use filesystem fragment size instead of 1024 */
    504   1.2    simonb 	/* XXX fix actual number of buffers reserved per filesystem. */
    505   1.2    simonb 	wl->wl_bufcount_max = (nbuf / 2) * 1024;
    506   1.2    simonb 
    507   1.2    simonb 	/* XXX tie this into resource estimation */
    508  1.41   hannken 	wl->wl_dealloclim = wl->wl_bufbytes_max / mp->mnt_stat.f_bsize / 2;
    509   1.2    simonb 
    510  1.51      para 	wl->wl_deallocblks = wapbl_alloc(sizeof(*wl->wl_deallocblks) *
    511   1.2    simonb 	    wl->wl_dealloclim);
    512  1.51      para 	wl->wl_dealloclens = wapbl_alloc(sizeof(*wl->wl_dealloclens) *
    513   1.2    simonb 	    wl->wl_dealloclim);
    514   1.2    simonb 
    515  1.54   hannken 	wl->wl_buffer = wapbl_alloc(MAXPHYS);
    516  1.54   hannken 	wl->wl_buffer_used = 0;
    517  1.54   hannken 
    518   1.2    simonb 	wapbl_inodetrk_init(wl, WAPBL_INODETRK_SIZE);
    519   1.2    simonb 
    520   1.2    simonb 	/* Initialize the commit header */
    521   1.2    simonb 	{
    522   1.2    simonb 		struct wapbl_wc_header *wc;
    523  1.14     joerg 		size_t len = 1 << wl->wl_log_dev_bshift;
    524   1.2    simonb 		wc = wapbl_calloc(1, len);
    525   1.2    simonb 		wc->wc_type = WAPBL_WC_HEADER;
    526   1.2    simonb 		wc->wc_len = len;
    527   1.2    simonb 		wc->wc_circ_off = wl->wl_circ_off;
    528   1.2    simonb 		wc->wc_circ_size = wl->wl_circ_size;
    529   1.2    simonb 		/* XXX wc->wc_fsid */
    530   1.2    simonb 		wc->wc_log_dev_bshift = wl->wl_log_dev_bshift;
    531   1.2    simonb 		wc->wc_fs_dev_bshift = wl->wl_fs_dev_bshift;
    532   1.2    simonb 		wl->wl_wc_header = wc;
    533  1.51      para 		wl->wl_wc_scratch = wapbl_alloc(len);
    534   1.2    simonb 	}
    535   1.2    simonb 
    536   1.2    simonb 	/*
    537   1.2    simonb 	 * if there was an existing set of unlinked but
    538   1.2    simonb 	 * allocated inodes, preserve it in the new
    539   1.2    simonb 	 * log.
    540   1.2    simonb 	 */
    541   1.2    simonb 	if (wr && wr->wr_inodescnt) {
    542  1.15     joerg 		error = wapbl_start_flush_inodes(wl, wr);
    543   1.2    simonb 		if (error)
    544   1.2    simonb 			goto errout;
    545   1.2    simonb 	}
    546   1.2    simonb 
    547   1.2    simonb 	error = wapbl_write_commit(wl, wl->wl_head, wl->wl_tail);
    548   1.2    simonb 	if (error) {
    549   1.2    simonb 		goto errout;
    550   1.2    simonb 	}
    551   1.2    simonb 
    552   1.2    simonb 	*wlp = wl;
    553   1.2    simonb #if defined(WAPBL_DEBUG)
    554   1.2    simonb 	wapbl_debug_wl = wl;
    555   1.2    simonb #endif
    556   1.2    simonb 
    557   1.2    simonb 	return 0;
    558   1.2    simonb  errout:
    559   1.2    simonb 	wapbl_discard(wl);
    560  1.18      yamt 	wapbl_free(wl->wl_wc_scratch, wl->wl_wc_header->wc_len);
    561  1.18      yamt 	wapbl_free(wl->wl_wc_header, wl->wl_wc_header->wc_len);
    562  1.18      yamt 	wapbl_free(wl->wl_deallocblks,
    563  1.18      yamt 	    sizeof(*wl->wl_deallocblks) * wl->wl_dealloclim);
    564  1.18      yamt 	wapbl_free(wl->wl_dealloclens,
    565  1.18      yamt 	    sizeof(*wl->wl_dealloclens) * wl->wl_dealloclim);
    566  1.54   hannken 	wapbl_free(wl->wl_buffer, MAXPHYS);
    567   1.2    simonb 	wapbl_inodetrk_free(wl);
    568  1.18      yamt 	wapbl_free(wl, sizeof(*wl));
    569   1.2    simonb 
    570   1.2    simonb 	return error;
    571   1.2    simonb }
    572   1.2    simonb 
    573   1.2    simonb /*
    574   1.2    simonb  * Like wapbl_flush, only discards the transaction
    575   1.2    simonb  * completely
    576   1.2    simonb  */
    577   1.2    simonb 
    578   1.2    simonb void
    579   1.2    simonb wapbl_discard(struct wapbl *wl)
    580   1.2    simonb {
    581   1.2    simonb 	struct wapbl_entry *we;
    582   1.2    simonb 	struct buf *bp;
    583   1.2    simonb 	int i;
    584   1.2    simonb 
    585   1.2    simonb 	/*
    586   1.2    simonb 	 * XXX we may consider using upgrade here
    587   1.2    simonb 	 * if we want to call flush from inside a transaction
    588   1.2    simonb 	 */
    589   1.2    simonb 	rw_enter(&wl->wl_rwlock, RW_WRITER);
    590   1.2    simonb 	wl->wl_flush(wl->wl_mount, wl->wl_deallocblks, wl->wl_dealloclens,
    591   1.2    simonb 	    wl->wl_dealloccnt);
    592   1.2    simonb 
    593   1.2    simonb #ifdef WAPBL_DEBUG_PRINT
    594   1.2    simonb 	{
    595   1.2    simonb 		pid_t pid = -1;
    596   1.2    simonb 		lwpid_t lid = -1;
    597   1.2    simonb 		if (curproc)
    598   1.2    simonb 			pid = curproc->p_pid;
    599   1.2    simonb 		if (curlwp)
    600   1.2    simonb 			lid = curlwp->l_lid;
    601   1.2    simonb #ifdef WAPBL_DEBUG_BUFBYTES
    602   1.2    simonb 		WAPBL_PRINTF(WAPBL_PRINT_DISCARD,
    603   1.2    simonb 		    ("wapbl_discard: thread %d.%d discarding "
    604   1.2    simonb 		    "transaction\n"
    605   1.2    simonb 		    "\tbufcount=%zu bufbytes=%zu bcount=%zu "
    606   1.2    simonb 		    "deallocs=%d inodes=%d\n"
    607   1.2    simonb 		    "\terrcnt = %u, reclaimable=%zu reserved=%zu "
    608   1.2    simonb 		    "unsynced=%zu\n",
    609   1.2    simonb 		    pid, lid, wl->wl_bufcount, wl->wl_bufbytes,
    610   1.2    simonb 		    wl->wl_bcount, wl->wl_dealloccnt,
    611   1.2    simonb 		    wl->wl_inohashcnt, wl->wl_error_count,
    612   1.2    simonb 		    wl->wl_reclaimable_bytes, wl->wl_reserved_bytes,
    613   1.2    simonb 		    wl->wl_unsynced_bufbytes));
    614   1.2    simonb 		SIMPLEQ_FOREACH(we, &wl->wl_entries, we_entries) {
    615   1.2    simonb 			WAPBL_PRINTF(WAPBL_PRINT_DISCARD,
    616   1.2    simonb 			    ("\tentry: bufcount = %zu, reclaimable = %zu, "
    617   1.2    simonb 			     "error = %d, unsynced = %zu\n",
    618   1.2    simonb 			     we->we_bufcount, we->we_reclaimable_bytes,
    619   1.2    simonb 			     we->we_error, we->we_unsynced_bufbytes));
    620   1.2    simonb 		}
    621   1.2    simonb #else /* !WAPBL_DEBUG_BUFBYTES */
    622   1.2    simonb 		WAPBL_PRINTF(WAPBL_PRINT_DISCARD,
    623   1.2    simonb 		    ("wapbl_discard: thread %d.%d discarding transaction\n"
    624   1.2    simonb 		    "\tbufcount=%zu bufbytes=%zu bcount=%zu "
    625   1.2    simonb 		    "deallocs=%d inodes=%d\n"
    626   1.2    simonb 		    "\terrcnt = %u, reclaimable=%zu reserved=%zu\n",
    627   1.2    simonb 		    pid, lid, wl->wl_bufcount, wl->wl_bufbytes,
    628   1.2    simonb 		    wl->wl_bcount, wl->wl_dealloccnt,
    629   1.2    simonb 		    wl->wl_inohashcnt, wl->wl_error_count,
    630   1.2    simonb 		    wl->wl_reclaimable_bytes, wl->wl_reserved_bytes));
    631   1.2    simonb 		SIMPLEQ_FOREACH(we, &wl->wl_entries, we_entries) {
    632   1.2    simonb 			WAPBL_PRINTF(WAPBL_PRINT_DISCARD,
    633   1.2    simonb 			    ("\tentry: bufcount = %zu, reclaimable = %zu, "
    634   1.2    simonb 			     "error = %d\n",
    635   1.2    simonb 			     we->we_bufcount, we->we_reclaimable_bytes,
    636   1.2    simonb 			     we->we_error));
    637   1.2    simonb 		}
    638   1.2    simonb #endif /* !WAPBL_DEBUG_BUFBYTES */
    639   1.2    simonb 	}
    640   1.2    simonb #endif /* WAPBL_DEBUG_PRINT */
    641   1.2    simonb 
    642   1.2    simonb 	for (i = 0; i <= wl->wl_inohashmask; i++) {
    643   1.2    simonb 		struct wapbl_ino_head *wih;
    644   1.2    simonb 		struct wapbl_ino *wi;
    645   1.2    simonb 
    646   1.2    simonb 		wih = &wl->wl_inohash[i];
    647   1.2    simonb 		while ((wi = LIST_FIRST(wih)) != NULL) {
    648   1.2    simonb 			LIST_REMOVE(wi, wi_hash);
    649   1.2    simonb 			pool_put(&wapbl_ino_pool, wi);
    650   1.2    simonb 			KASSERT(wl->wl_inohashcnt > 0);
    651   1.2    simonb 			wl->wl_inohashcnt--;
    652   1.2    simonb 		}
    653   1.2    simonb 	}
    654   1.2    simonb 
    655   1.2    simonb 	/*
    656   1.2    simonb 	 * clean buffer list
    657   1.2    simonb 	 */
    658   1.2    simonb 	mutex_enter(&bufcache_lock);
    659   1.2    simonb 	mutex_enter(&wl->wl_mtx);
    660   1.2    simonb 	while ((bp = LIST_FIRST(&wl->wl_bufs)) != NULL) {
    661   1.2    simonb 		if (bbusy(bp, 0, 0, &wl->wl_mtx) == 0) {
    662   1.2    simonb 			/*
    663   1.2    simonb 			 * The buffer will be unlocked and
    664   1.2    simonb 			 * removed from the transaction in brelse
    665   1.2    simonb 			 */
    666   1.2    simonb 			mutex_exit(&wl->wl_mtx);
    667   1.2    simonb 			brelsel(bp, 0);
    668   1.2    simonb 			mutex_enter(&wl->wl_mtx);
    669   1.2    simonb 		}
    670   1.2    simonb 	}
    671   1.2    simonb 	mutex_exit(&wl->wl_mtx);
    672   1.2    simonb 	mutex_exit(&bufcache_lock);
    673   1.2    simonb 
    674   1.2    simonb 	/*
    675   1.2    simonb 	 * Remove references to this wl from wl_entries, free any which
    676   1.2    simonb 	 * no longer have buffers, others will be freed in wapbl_biodone
    677   1.2    simonb 	 * when they no longer have any buffers.
    678   1.2    simonb 	 */
    679   1.2    simonb 	while ((we = SIMPLEQ_FIRST(&wl->wl_entries)) != NULL) {
    680   1.2    simonb 		SIMPLEQ_REMOVE_HEAD(&wl->wl_entries, we_entries);
    681   1.2    simonb 		/* XXX should we be accumulating wl_error_count
    682   1.2    simonb 		 * and increasing reclaimable bytes ? */
    683   1.2    simonb 		we->we_wapbl = NULL;
    684   1.2    simonb 		if (we->we_bufcount == 0) {
    685   1.2    simonb #ifdef WAPBL_DEBUG_BUFBYTES
    686   1.2    simonb 			KASSERT(we->we_unsynced_bufbytes == 0);
    687   1.2    simonb #endif
    688  1.51      para 			pool_put(&wapbl_entry_pool, we);
    689   1.2    simonb 		}
    690   1.2    simonb 	}
    691   1.2    simonb 
    692   1.2    simonb 	/* Discard list of deallocs */
    693   1.2    simonb 	wl->wl_dealloccnt = 0;
    694   1.2    simonb 	/* XXX should we clear wl_reserved_bytes? */
    695   1.2    simonb 
    696   1.2    simonb 	KASSERT(wl->wl_bufbytes == 0);
    697   1.2    simonb 	KASSERT(wl->wl_bcount == 0);
    698   1.2    simonb 	KASSERT(wl->wl_bufcount == 0);
    699   1.2    simonb 	KASSERT(LIST_EMPTY(&wl->wl_bufs));
    700   1.2    simonb 	KASSERT(SIMPLEQ_EMPTY(&wl->wl_entries));
    701   1.2    simonb 	KASSERT(wl->wl_inohashcnt == 0);
    702   1.2    simonb 
    703   1.2    simonb 	rw_exit(&wl->wl_rwlock);
    704   1.2    simonb }
    705   1.2    simonb 
    706   1.2    simonb int
    707   1.2    simonb wapbl_stop(struct wapbl *wl, int force)
    708   1.2    simonb {
    709   1.2    simonb 	int error;
    710   1.2    simonb 
    711   1.2    simonb 	WAPBL_PRINTF(WAPBL_PRINT_OPEN, ("wapbl_stop called\n"));
    712   1.2    simonb 	error = wapbl_flush(wl, 1);
    713   1.2    simonb 	if (error) {
    714   1.2    simonb 		if (force)
    715   1.2    simonb 			wapbl_discard(wl);
    716   1.2    simonb 		else
    717   1.2    simonb 			return error;
    718   1.2    simonb 	}
    719   1.2    simonb 
    720   1.2    simonb 	/* Unlinked inodes persist after a flush */
    721   1.2    simonb 	if (wl->wl_inohashcnt) {
    722   1.2    simonb 		if (force) {
    723   1.2    simonb 			wapbl_discard(wl);
    724   1.2    simonb 		} else {
    725   1.2    simonb 			return EBUSY;
    726   1.2    simonb 		}
    727   1.2    simonb 	}
    728   1.2    simonb 
    729   1.2    simonb 	KASSERT(wl->wl_bufbytes == 0);
    730   1.2    simonb 	KASSERT(wl->wl_bcount == 0);
    731   1.2    simonb 	KASSERT(wl->wl_bufcount == 0);
    732   1.2    simonb 	KASSERT(LIST_EMPTY(&wl->wl_bufs));
    733   1.2    simonb 	KASSERT(wl->wl_dealloccnt == 0);
    734   1.2    simonb 	KASSERT(SIMPLEQ_EMPTY(&wl->wl_entries));
    735   1.2    simonb 	KASSERT(wl->wl_inohashcnt == 0);
    736   1.2    simonb 
    737  1.18      yamt 	wapbl_free(wl->wl_wc_scratch, wl->wl_wc_header->wc_len);
    738  1.18      yamt 	wapbl_free(wl->wl_wc_header, wl->wl_wc_header->wc_len);
    739  1.18      yamt 	wapbl_free(wl->wl_deallocblks,
    740  1.18      yamt 	    sizeof(*wl->wl_deallocblks) * wl->wl_dealloclim);
    741  1.18      yamt 	wapbl_free(wl->wl_dealloclens,
    742  1.18      yamt 	    sizeof(*wl->wl_dealloclens) * wl->wl_dealloclim);
    743  1.54   hannken 	wapbl_free(wl->wl_buffer, MAXPHYS);
    744   1.2    simonb 	wapbl_inodetrk_free(wl);
    745   1.2    simonb 
    746   1.2    simonb 	cv_destroy(&wl->wl_reclaimable_cv);
    747   1.2    simonb 	mutex_destroy(&wl->wl_mtx);
    748   1.2    simonb 	rw_destroy(&wl->wl_rwlock);
    749  1.18      yamt 	wapbl_free(wl, sizeof(*wl));
    750   1.2    simonb 
    751   1.2    simonb 	return 0;
    752   1.2    simonb }
    753   1.2    simonb 
    754  1.71  riastrad /****************************************************************/
    755  1.71  riastrad /*
    756  1.71  riastrad  * Unbuffered disk I/O
    757  1.71  riastrad  */
    758  1.71  riastrad 
    759   1.2    simonb static int
    760   1.2    simonb wapbl_doio(void *data, size_t len, struct vnode *devvp, daddr_t pbn, int flags)
    761   1.2    simonb {
    762   1.2    simonb 	struct pstats *pstats = curlwp->l_proc->p_stats;
    763   1.2    simonb 	struct buf *bp;
    764   1.2    simonb 	int error;
    765   1.2    simonb 
    766   1.2    simonb 	KASSERT((flags & ~(B_WRITE | B_READ)) == 0);
    767   1.2    simonb 	KASSERT(devvp->v_type == VBLK);
    768   1.2    simonb 
    769   1.2    simonb 	if ((flags & (B_WRITE | B_READ)) == B_WRITE) {
    770  1.45     rmind 		mutex_enter(devvp->v_interlock);
    771   1.2    simonb 		devvp->v_numoutput++;
    772  1.45     rmind 		mutex_exit(devvp->v_interlock);
    773   1.2    simonb 		pstats->p_ru.ru_oublock++;
    774   1.2    simonb 	} else {
    775   1.2    simonb 		pstats->p_ru.ru_inblock++;
    776   1.2    simonb 	}
    777   1.2    simonb 
    778   1.2    simonb 	bp = getiobuf(devvp, true);
    779   1.2    simonb 	bp->b_flags = flags;
    780   1.2    simonb 	bp->b_cflags = BC_BUSY; /* silly & dubious */
    781   1.2    simonb 	bp->b_dev = devvp->v_rdev;
    782   1.2    simonb 	bp->b_data = data;
    783   1.2    simonb 	bp->b_bufsize = bp->b_resid = bp->b_bcount = len;
    784   1.2    simonb 	bp->b_blkno = pbn;
    785  1.52       chs 	BIO_SETPRIO(bp, BPRIO_TIMECRITICAL);
    786   1.2    simonb 
    787   1.2    simonb 	WAPBL_PRINTF(WAPBL_PRINT_IO,
    788  1.29     pooka 	    ("wapbl_doio: %s %d bytes at block %"PRId64" on dev 0x%"PRIx64"\n",
    789   1.2    simonb 	    BUF_ISWRITE(bp) ? "write" : "read", bp->b_bcount,
    790   1.2    simonb 	    bp->b_blkno, bp->b_dev));
    791   1.2    simonb 
    792   1.2    simonb 	VOP_STRATEGY(devvp, bp);
    793   1.2    simonb 
    794   1.2    simonb 	error = biowait(bp);
    795   1.2    simonb 	putiobuf(bp);
    796   1.2    simonb 
    797   1.2    simonb 	if (error) {
    798   1.2    simonb 		WAPBL_PRINTF(WAPBL_PRINT_ERROR,
    799   1.2    simonb 		    ("wapbl_doio: %s %zu bytes at block %" PRId64
    800  1.29     pooka 		    " on dev 0x%"PRIx64" failed with error %d\n",
    801   1.2    simonb 		    (((flags & (B_WRITE | B_READ)) == B_WRITE) ?
    802   1.2    simonb 		     "write" : "read"),
    803   1.2    simonb 		    len, pbn, devvp->v_rdev, error));
    804   1.2    simonb 	}
    805   1.2    simonb 
    806   1.2    simonb 	return error;
    807   1.2    simonb }
    808   1.2    simonb 
    809  1.71  riastrad /*
    810  1.71  riastrad  * wapbl_write(data, len, devvp, pbn)
    811  1.71  riastrad  *
    812  1.71  riastrad  *	Synchronously write len bytes from data to physical block pbn
    813  1.71  riastrad  *	on devvp.
    814  1.71  riastrad  */
    815   1.2    simonb int
    816   1.2    simonb wapbl_write(void *data, size_t len, struct vnode *devvp, daddr_t pbn)
    817   1.2    simonb {
    818   1.2    simonb 
    819   1.2    simonb 	return wapbl_doio(data, len, devvp, pbn, B_WRITE);
    820   1.2    simonb }
    821   1.2    simonb 
    822  1.71  riastrad /*
    823  1.71  riastrad  * wapbl_read(data, len, devvp, pbn)
    824  1.71  riastrad  *
    825  1.71  riastrad  *	Synchronously read len bytes into data from physical block pbn
    826  1.71  riastrad  *	on devvp.
    827  1.71  riastrad  */
    828   1.2    simonb int
    829   1.2    simonb wapbl_read(void *data, size_t len, struct vnode *devvp, daddr_t pbn)
    830   1.2    simonb {
    831   1.2    simonb 
    832   1.2    simonb 	return wapbl_doio(data, len, devvp, pbn, B_READ);
    833   1.2    simonb }
    834   1.2    simonb 
    835  1.71  riastrad /****************************************************************/
    836  1.71  riastrad /*
    837  1.71  riastrad  * Buffered disk writes -- try to coalesce writes and emit
    838  1.71  riastrad  * MAXPHYS-aligned blocks.
    839  1.71  riastrad  */
    840  1.71  riastrad 
    841   1.2    simonb /*
    842  1.71  riastrad  * wapbl_buffered_flush(wl)
    843  1.71  riastrad  *
    844  1.71  riastrad  *	Flush any buffered writes from wapbl_buffered_write.
    845  1.54   hannken  */
    846  1.54   hannken static int
    847  1.54   hannken wapbl_buffered_flush(struct wapbl *wl)
    848  1.54   hannken {
    849  1.54   hannken 	int error;
    850  1.54   hannken 
    851  1.54   hannken 	if (wl->wl_buffer_used == 0)
    852  1.54   hannken 		return 0;
    853  1.54   hannken 
    854  1.54   hannken 	error = wapbl_doio(wl->wl_buffer, wl->wl_buffer_used,
    855  1.54   hannken 	    wl->wl_devvp, wl->wl_buffer_dblk, B_WRITE);
    856  1.54   hannken 	wl->wl_buffer_used = 0;
    857  1.54   hannken 
    858  1.54   hannken 	return error;
    859  1.54   hannken }
    860  1.54   hannken 
    861  1.54   hannken /*
    862  1.71  riastrad  * wapbl_buffered_write(data, len, wl, pbn)
    863  1.71  riastrad  *
    864  1.71  riastrad  *	Write len bytes from data to physical block pbn on
    865  1.71  riastrad  *	wl->wl_devvp.  The write may not complete until
    866  1.71  riastrad  *	wapbl_buffered_flush.
    867  1.54   hannken  */
    868  1.54   hannken static int
    869  1.54   hannken wapbl_buffered_write(void *data, size_t len, struct wapbl *wl, daddr_t pbn)
    870  1.54   hannken {
    871  1.54   hannken 	int error;
    872  1.54   hannken 	size_t resid;
    873  1.54   hannken 
    874  1.54   hannken 	/*
    875  1.54   hannken 	 * If not adjacent to buffered data flush first.  Disk block
    876  1.54   hannken 	 * address is always valid for non-empty buffer.
    877  1.54   hannken 	 */
    878  1.54   hannken 	if (wl->wl_buffer_used > 0 &&
    879  1.54   hannken 	    pbn != wl->wl_buffer_dblk + btodb(wl->wl_buffer_used)) {
    880  1.54   hannken 		error = wapbl_buffered_flush(wl);
    881  1.54   hannken 		if (error)
    882  1.54   hannken 			return error;
    883  1.54   hannken 	}
    884  1.54   hannken 	/*
    885  1.54   hannken 	 * If this write goes to an empty buffer we have to
    886  1.54   hannken 	 * save the disk block address first.
    887  1.54   hannken 	 */
    888  1.54   hannken 	if (wl->wl_buffer_used == 0)
    889  1.54   hannken 		wl->wl_buffer_dblk = pbn;
    890  1.54   hannken 	/*
    891  1.54   hannken 	 * Remaining space so this buffer ends on a MAXPHYS boundary.
    892  1.54   hannken 	 *
    893  1.54   hannken 	 * Cannot become less or equal zero as the buffer would have been
    894  1.54   hannken 	 * flushed on the last call then.
    895  1.54   hannken 	 */
    896  1.54   hannken 	resid = MAXPHYS - dbtob(wl->wl_buffer_dblk % btodb(MAXPHYS)) -
    897  1.54   hannken 	    wl->wl_buffer_used;
    898  1.54   hannken 	KASSERT(resid > 0);
    899  1.54   hannken 	KASSERT(dbtob(btodb(resid)) == resid);
    900  1.54   hannken 	if (len >= resid) {
    901  1.54   hannken 		memcpy(wl->wl_buffer + wl->wl_buffer_used, data, resid);
    902  1.54   hannken 		wl->wl_buffer_used += resid;
    903  1.54   hannken 		error = wapbl_doio(wl->wl_buffer, wl->wl_buffer_used,
    904  1.54   hannken 		    wl->wl_devvp, wl->wl_buffer_dblk, B_WRITE);
    905  1.54   hannken 		data = (uint8_t *)data + resid;
    906  1.54   hannken 		len -= resid;
    907  1.54   hannken 		wl->wl_buffer_dblk = pbn + btodb(resid);
    908  1.54   hannken 		wl->wl_buffer_used = 0;
    909  1.54   hannken 		if (error)
    910  1.54   hannken 			return error;
    911  1.54   hannken 	}
    912  1.54   hannken 	KASSERT(len < MAXPHYS);
    913  1.54   hannken 	if (len > 0) {
    914  1.54   hannken 		memcpy(wl->wl_buffer + wl->wl_buffer_used, data, len);
    915  1.54   hannken 		wl->wl_buffer_used += len;
    916  1.54   hannken 	}
    917  1.54   hannken 
    918  1.54   hannken 	return 0;
    919  1.54   hannken }
    920  1.54   hannken 
    921  1.54   hannken /*
    922  1.71  riastrad  * wapbl_circ_write(wl, data, len, offp)
    923  1.71  riastrad  *
    924  1.71  riastrad  *	Write len bytes from data to the circular queue of wl, starting
    925  1.71  riastrad  *	at linear byte offset *offp, and returning the new linear byte
    926  1.71  riastrad  *	offset in *offp.
    927  1.71  riastrad  *
    928  1.71  riastrad  *	If the starting linear byte offset precedes wl->wl_circ_off,
    929  1.71  riastrad  *	the write instead begins at wl->wl_circ_off.  XXX WTF?  This
    930  1.71  riastrad  *	should be a KASSERT, not a conditional.
    931  1.71  riastrad  *
    932  1.71  riastrad  *	The write is buffered in wl and must be flushed with
    933  1.71  riastrad  *	wapbl_buffered_flush before it will be submitted to the disk.
    934   1.2    simonb  */
    935   1.2    simonb static int
    936   1.2    simonb wapbl_circ_write(struct wapbl *wl, void *data, size_t len, off_t *offp)
    937   1.2    simonb {
    938   1.2    simonb 	size_t slen;
    939   1.2    simonb 	off_t off = *offp;
    940   1.2    simonb 	int error;
    941  1.34   mlelstv 	daddr_t pbn;
    942   1.2    simonb 
    943   1.2    simonb 	KDASSERT(((len >> wl->wl_log_dev_bshift) <<
    944   1.2    simonb 	    wl->wl_log_dev_bshift) == len);
    945   1.2    simonb 
    946   1.2    simonb 	if (off < wl->wl_circ_off)
    947   1.2    simonb 		off = wl->wl_circ_off;
    948   1.2    simonb 	slen = wl->wl_circ_off + wl->wl_circ_size - off;
    949   1.2    simonb 	if (slen < len) {
    950  1.34   mlelstv 		pbn = wl->wl_logpbn + (off >> wl->wl_log_dev_bshift);
    951  1.34   mlelstv #ifdef _KERNEL
    952  1.34   mlelstv 		pbn = btodb(pbn << wl->wl_log_dev_bshift);
    953  1.34   mlelstv #endif
    954  1.54   hannken 		error = wapbl_buffered_write(data, slen, wl, pbn);
    955   1.2    simonb 		if (error)
    956   1.2    simonb 			return error;
    957   1.2    simonb 		data = (uint8_t *)data + slen;
    958   1.2    simonb 		len -= slen;
    959   1.2    simonb 		off = wl->wl_circ_off;
    960   1.2    simonb 	}
    961  1.34   mlelstv 	pbn = wl->wl_logpbn + (off >> wl->wl_log_dev_bshift);
    962  1.34   mlelstv #ifdef _KERNEL
    963  1.34   mlelstv 	pbn = btodb(pbn << wl->wl_log_dev_bshift);
    964  1.34   mlelstv #endif
    965  1.54   hannken 	error = wapbl_buffered_write(data, len, wl, pbn);
    966   1.2    simonb 	if (error)
    967   1.2    simonb 		return error;
    968   1.2    simonb 	off += len;
    969   1.2    simonb 	if (off >= wl->wl_circ_off + wl->wl_circ_size)
    970   1.2    simonb 		off = wl->wl_circ_off;
    971   1.2    simonb 	*offp = off;
    972   1.2    simonb 	return 0;
    973   1.2    simonb }
    974   1.2    simonb 
    975   1.2    simonb /****************************************************************/
    976  1.71  riastrad /*
    977  1.71  riastrad  * WAPBL transactions: entering, adding/removing bufs, and exiting
    978  1.71  riastrad  */
    979   1.2    simonb 
    980   1.2    simonb int
    981   1.2    simonb wapbl_begin(struct wapbl *wl, const char *file, int line)
    982   1.2    simonb {
    983   1.2    simonb 	int doflush;
    984   1.2    simonb 	unsigned lockcount;
    985   1.2    simonb 
    986   1.2    simonb 	KDASSERT(wl);
    987   1.2    simonb 
    988   1.2    simonb 	/*
    989   1.2    simonb 	 * XXX this needs to be made much more sophisticated.
    990   1.2    simonb 	 * perhaps each wapbl_begin could reserve a specified
    991   1.2    simonb 	 * number of buffers and bytes.
    992   1.2    simonb 	 */
    993   1.2    simonb 	mutex_enter(&wl->wl_mtx);
    994   1.2    simonb 	lockcount = wl->wl_lock_count;
    995   1.2    simonb 	doflush = ((wl->wl_bufbytes + (lockcount * MAXPHYS)) >
    996   1.2    simonb 		   wl->wl_bufbytes_max / 2) ||
    997   1.2    simonb 		  ((wl->wl_bufcount + (lockcount * 10)) >
    998   1.2    simonb 		   wl->wl_bufcount_max / 2) ||
    999  1.28     pooka 		  (wapbl_transaction_len(wl) > wl->wl_circ_size / 2) ||
   1000  1.42   hannken 		  (wl->wl_dealloccnt >= (wl->wl_dealloclim / 2));
   1001   1.2    simonb 	mutex_exit(&wl->wl_mtx);
   1002   1.2    simonb 
   1003   1.2    simonb 	if (doflush) {
   1004   1.2    simonb 		WAPBL_PRINTF(WAPBL_PRINT_FLUSH,
   1005   1.2    simonb 		    ("force flush lockcnt=%d bufbytes=%zu "
   1006  1.28     pooka 		    "(max=%zu) bufcount=%zu (max=%zu) "
   1007  1.28     pooka 		    "dealloccnt %d (lim=%d)\n",
   1008   1.2    simonb 		    lockcount, wl->wl_bufbytes,
   1009   1.2    simonb 		    wl->wl_bufbytes_max, wl->wl_bufcount,
   1010  1.28     pooka 		    wl->wl_bufcount_max,
   1011  1.28     pooka 		    wl->wl_dealloccnt, wl->wl_dealloclim));
   1012   1.2    simonb 	}
   1013   1.2    simonb 
   1014   1.2    simonb 	if (doflush) {
   1015   1.2    simonb 		int error = wapbl_flush(wl, 0);
   1016   1.2    simonb 		if (error)
   1017   1.2    simonb 			return error;
   1018   1.2    simonb 	}
   1019   1.2    simonb 
   1020  1.23        ad 	rw_enter(&wl->wl_rwlock, RW_READER);
   1021   1.2    simonb 	mutex_enter(&wl->wl_mtx);
   1022   1.2    simonb 	wl->wl_lock_count++;
   1023   1.2    simonb 	mutex_exit(&wl->wl_mtx);
   1024   1.2    simonb 
   1025  1.23        ad #if defined(WAPBL_DEBUG_PRINT)
   1026   1.2    simonb 	WAPBL_PRINTF(WAPBL_PRINT_TRANSACTION,
   1027   1.2    simonb 	    ("wapbl_begin thread %d.%d with bufcount=%zu "
   1028   1.2    simonb 	    "bufbytes=%zu bcount=%zu at %s:%d\n",
   1029   1.2    simonb 	    curproc->p_pid, curlwp->l_lid, wl->wl_bufcount,
   1030   1.2    simonb 	    wl->wl_bufbytes, wl->wl_bcount, file, line));
   1031   1.2    simonb #endif
   1032   1.2    simonb 
   1033   1.2    simonb 	return 0;
   1034   1.2    simonb }
   1035   1.2    simonb 
   1036   1.2    simonb void
   1037   1.2    simonb wapbl_end(struct wapbl *wl)
   1038   1.2    simonb {
   1039   1.2    simonb 
   1040  1.23        ad #if defined(WAPBL_DEBUG_PRINT)
   1041   1.2    simonb 	WAPBL_PRINTF(WAPBL_PRINT_TRANSACTION,
   1042   1.2    simonb 	     ("wapbl_end thread %d.%d with bufcount=%zu "
   1043   1.2    simonb 	      "bufbytes=%zu bcount=%zu\n",
   1044   1.2    simonb 	      curproc->p_pid, curlwp->l_lid, wl->wl_bufcount,
   1045   1.2    simonb 	      wl->wl_bufbytes, wl->wl_bcount));
   1046   1.2    simonb #endif
   1047   1.2    simonb 
   1048  1.65  riastrad 	/*
   1049  1.65  riastrad 	 * XXX this could be handled more gracefully, perhaps place
   1050  1.65  riastrad 	 * only a partial transaction in the log and allow the
   1051  1.65  riastrad 	 * remaining to flush without the protection of the journal.
   1052  1.65  riastrad 	 */
   1053  1.67  riastrad 	KASSERTMSG((wapbl_transaction_len(wl) <=
   1054  1.67  riastrad 		(wl->wl_circ_size - wl->wl_reserved_bytes)),
   1055  1.65  riastrad 	    "wapbl_end: current transaction too big to flush");
   1056  1.40    bouyer 
   1057   1.2    simonb 	mutex_enter(&wl->wl_mtx);
   1058   1.2    simonb 	KASSERT(wl->wl_lock_count > 0);
   1059   1.2    simonb 	wl->wl_lock_count--;
   1060   1.2    simonb 	mutex_exit(&wl->wl_mtx);
   1061   1.2    simonb 
   1062   1.2    simonb 	rw_exit(&wl->wl_rwlock);
   1063   1.2    simonb }
   1064   1.2    simonb 
   1065   1.2    simonb void
   1066   1.2    simonb wapbl_add_buf(struct wapbl *wl, struct buf * bp)
   1067   1.2    simonb {
   1068   1.2    simonb 
   1069   1.2    simonb 	KASSERT(bp->b_cflags & BC_BUSY);
   1070   1.2    simonb 	KASSERT(bp->b_vp);
   1071   1.2    simonb 
   1072   1.2    simonb 	wapbl_jlock_assert(wl);
   1073   1.2    simonb 
   1074   1.2    simonb #if 0
   1075   1.2    simonb 	/*
   1076   1.2    simonb 	 * XXX this might be an issue for swapfiles.
   1077   1.2    simonb 	 * see uvm_swap.c:1702
   1078   1.2    simonb 	 *
   1079   1.2    simonb 	 * XXX2 why require it then?  leap of semantics?
   1080   1.2    simonb 	 */
   1081   1.2    simonb 	KASSERT((bp->b_cflags & BC_NOCACHE) == 0);
   1082   1.2    simonb #endif
   1083   1.2    simonb 
   1084   1.2    simonb 	mutex_enter(&wl->wl_mtx);
   1085   1.2    simonb 	if (bp->b_flags & B_LOCKED) {
   1086   1.2    simonb 		LIST_REMOVE(bp, b_wapbllist);
   1087   1.2    simonb 		WAPBL_PRINTF(WAPBL_PRINT_BUFFER2,
   1088   1.2    simonb 		   ("wapbl_add_buf thread %d.%d re-adding buf %p "
   1089   1.2    simonb 		    "with %d bytes %d bcount\n",
   1090   1.2    simonb 		    curproc->p_pid, curlwp->l_lid, bp, bp->b_bufsize,
   1091   1.2    simonb 		    bp->b_bcount));
   1092   1.2    simonb 	} else {
   1093   1.2    simonb 		/* unlocked by dirty buffers shouldn't exist */
   1094   1.2    simonb 		KASSERT(!(bp->b_oflags & BO_DELWRI));
   1095   1.2    simonb 		wl->wl_bufbytes += bp->b_bufsize;
   1096   1.2    simonb 		wl->wl_bcount += bp->b_bcount;
   1097   1.2    simonb 		wl->wl_bufcount++;
   1098   1.2    simonb 		WAPBL_PRINTF(WAPBL_PRINT_BUFFER,
   1099   1.2    simonb 		   ("wapbl_add_buf thread %d.%d adding buf %p "
   1100   1.2    simonb 		    "with %d bytes %d bcount\n",
   1101   1.2    simonb 		    curproc->p_pid, curlwp->l_lid, bp, bp->b_bufsize,
   1102   1.2    simonb 		    bp->b_bcount));
   1103   1.2    simonb 	}
   1104   1.2    simonb 	LIST_INSERT_HEAD(&wl->wl_bufs, bp, b_wapbllist);
   1105   1.2    simonb 	mutex_exit(&wl->wl_mtx);
   1106   1.2    simonb 
   1107   1.2    simonb 	bp->b_flags |= B_LOCKED;
   1108   1.2    simonb }
   1109   1.2    simonb 
   1110   1.2    simonb static void
   1111   1.2    simonb wapbl_remove_buf_locked(struct wapbl * wl, struct buf *bp)
   1112   1.2    simonb {
   1113   1.2    simonb 
   1114   1.2    simonb 	KASSERT(mutex_owned(&wl->wl_mtx));
   1115   1.2    simonb 	KASSERT(bp->b_cflags & BC_BUSY);
   1116   1.2    simonb 	wapbl_jlock_assert(wl);
   1117   1.2    simonb 
   1118   1.2    simonb #if 0
   1119   1.2    simonb 	/*
   1120   1.2    simonb 	 * XXX this might be an issue for swapfiles.
   1121   1.2    simonb 	 * see uvm_swap.c:1725
   1122   1.2    simonb 	 *
   1123   1.2    simonb 	 * XXXdeux: see above
   1124   1.2    simonb 	 */
   1125   1.2    simonb 	KASSERT((bp->b_flags & BC_NOCACHE) == 0);
   1126   1.2    simonb #endif
   1127   1.2    simonb 	KASSERT(bp->b_flags & B_LOCKED);
   1128   1.2    simonb 
   1129   1.2    simonb 	WAPBL_PRINTF(WAPBL_PRINT_BUFFER,
   1130   1.2    simonb 	   ("wapbl_remove_buf thread %d.%d removing buf %p with "
   1131   1.2    simonb 	    "%d bytes %d bcount\n",
   1132   1.2    simonb 	    curproc->p_pid, curlwp->l_lid, bp, bp->b_bufsize, bp->b_bcount));
   1133   1.2    simonb 
   1134   1.2    simonb 	KASSERT(wl->wl_bufbytes >= bp->b_bufsize);
   1135   1.2    simonb 	wl->wl_bufbytes -= bp->b_bufsize;
   1136   1.2    simonb 	KASSERT(wl->wl_bcount >= bp->b_bcount);
   1137   1.2    simonb 	wl->wl_bcount -= bp->b_bcount;
   1138   1.2    simonb 	KASSERT(wl->wl_bufcount > 0);
   1139   1.2    simonb 	wl->wl_bufcount--;
   1140   1.2    simonb 	KASSERT((wl->wl_bufcount == 0) == (wl->wl_bufbytes == 0));
   1141   1.2    simonb 	KASSERT((wl->wl_bufcount == 0) == (wl->wl_bcount == 0));
   1142   1.2    simonb 	LIST_REMOVE(bp, b_wapbllist);
   1143   1.2    simonb 
   1144   1.2    simonb 	bp->b_flags &= ~B_LOCKED;
   1145   1.2    simonb }
   1146   1.2    simonb 
   1147   1.2    simonb /* called from brelsel() in vfs_bio among other places */
   1148   1.2    simonb void
   1149   1.2    simonb wapbl_remove_buf(struct wapbl * wl, struct buf *bp)
   1150   1.2    simonb {
   1151   1.2    simonb 
   1152   1.2    simonb 	mutex_enter(&wl->wl_mtx);
   1153   1.2    simonb 	wapbl_remove_buf_locked(wl, bp);
   1154   1.2    simonb 	mutex_exit(&wl->wl_mtx);
   1155   1.2    simonb }
   1156   1.2    simonb 
   1157   1.2    simonb void
   1158   1.2    simonb wapbl_resize_buf(struct wapbl *wl, struct buf *bp, long oldsz, long oldcnt)
   1159   1.2    simonb {
   1160   1.2    simonb 
   1161   1.2    simonb 	KASSERT(bp->b_cflags & BC_BUSY);
   1162   1.2    simonb 
   1163   1.2    simonb 	/*
   1164   1.2    simonb 	 * XXX: why does this depend on B_LOCKED?  otherwise the buf
   1165   1.2    simonb 	 * is not for a transaction?  if so, why is this called in the
   1166   1.2    simonb 	 * first place?
   1167   1.2    simonb 	 */
   1168   1.2    simonb 	if (bp->b_flags & B_LOCKED) {
   1169   1.2    simonb 		mutex_enter(&wl->wl_mtx);
   1170   1.2    simonb 		wl->wl_bufbytes += bp->b_bufsize - oldsz;
   1171   1.2    simonb 		wl->wl_bcount += bp->b_bcount - oldcnt;
   1172   1.2    simonb 		mutex_exit(&wl->wl_mtx);
   1173   1.2    simonb 	}
   1174   1.2    simonb }
   1175   1.2    simonb 
   1176   1.2    simonb #endif /* _KERNEL */
   1177   1.2    simonb 
   1178   1.2    simonb /****************************************************************/
   1179   1.2    simonb /* Some utility inlines */
   1180   1.2    simonb 
   1181  1.71  riastrad /*
   1182  1.71  riastrad  * wapbl_space_used(avail, head, tail)
   1183  1.71  riastrad  *
   1184  1.71  riastrad  *	Number of bytes used in a circular queue of avail total bytes,
   1185  1.71  riastrad  *	from tail to head.
   1186  1.71  riastrad  */
   1187  1.56     joerg static inline size_t
   1188  1.56     joerg wapbl_space_used(size_t avail, off_t head, off_t tail)
   1189  1.56     joerg {
   1190  1.56     joerg 
   1191  1.56     joerg 	if (tail == 0) {
   1192  1.56     joerg 		KASSERT(head == 0);
   1193  1.56     joerg 		return 0;
   1194  1.56     joerg 	}
   1195  1.56     joerg 	return ((head + (avail - 1) - tail) % avail) + 1;
   1196  1.56     joerg }
   1197  1.56     joerg 
   1198  1.56     joerg #ifdef _KERNEL
   1199  1.71  riastrad /*
   1200  1.71  riastrad  * wapbl_advance(size, off, oldoff, delta)
   1201  1.71  riastrad  *
   1202  1.71  riastrad  *	Given a byte offset oldoff into a circular queue of size bytes
   1203  1.71  riastrad  *	starting at off, return a new byte offset oldoff + delta into
   1204  1.71  riastrad  *	the circular queue.
   1205  1.71  riastrad  */
   1206  1.30  uebayasi static inline off_t
   1207  1.60      matt wapbl_advance(size_t size, size_t off, off_t oldoff, size_t delta)
   1208   1.2    simonb {
   1209  1.60      matt 	off_t newoff;
   1210   1.2    simonb 
   1211   1.2    simonb 	/* Define acceptable ranges for inputs. */
   1212  1.46  christos 	KASSERT(delta <= (size_t)size);
   1213  1.60      matt 	KASSERT((oldoff == 0) || ((size_t)oldoff >= off));
   1214  1.60      matt 	KASSERT(oldoff < (off_t)(size + off));
   1215   1.2    simonb 
   1216  1.60      matt 	if ((oldoff == 0) && (delta != 0))
   1217  1.60      matt 		newoff = off + delta;
   1218  1.60      matt 	else if ((oldoff + delta) < (size + off))
   1219  1.60      matt 		newoff = oldoff + delta;
   1220   1.2    simonb 	else
   1221  1.60      matt 		newoff = (oldoff + delta) - size;
   1222   1.2    simonb 
   1223   1.2    simonb 	/* Note some interesting axioms */
   1224  1.60      matt 	KASSERT((delta != 0) || (newoff == oldoff));
   1225  1.60      matt 	KASSERT((delta == 0) || (newoff != 0));
   1226  1.60      matt 	KASSERT((delta != (size)) || (newoff == oldoff));
   1227   1.2    simonb 
   1228   1.2    simonb 	/* Define acceptable ranges for output. */
   1229  1.60      matt 	KASSERT((newoff == 0) || ((size_t)newoff >= off));
   1230  1.60      matt 	KASSERT((size_t)newoff < (size + off));
   1231  1.60      matt 	return newoff;
   1232   1.2    simonb }
   1233   1.2    simonb 
   1234  1.71  riastrad /*
   1235  1.71  riastrad  * wapbl_space_free(avail, head, tail)
   1236  1.71  riastrad  *
   1237  1.71  riastrad  *	Number of bytes free in a circular queue of avail total bytes,
   1238  1.71  riastrad  *	in which everything from tail to head is used.
   1239  1.71  riastrad  */
   1240  1.30  uebayasi static inline size_t
   1241   1.2    simonb wapbl_space_free(size_t avail, off_t head, off_t tail)
   1242   1.2    simonb {
   1243   1.2    simonb 
   1244   1.2    simonb 	return avail - wapbl_space_used(avail, head, tail);
   1245   1.2    simonb }
   1246   1.2    simonb 
   1247  1.71  riastrad /*
   1248  1.71  riastrad  * wapbl_advance_head(size, off, delta, headp, tailp)
   1249  1.71  riastrad  *
   1250  1.71  riastrad  *	In a circular queue of size bytes starting at off, given the
   1251  1.71  riastrad  *	old head and tail offsets *headp and *tailp, store the new head
   1252  1.71  riastrad  *	and tail offsets in *headp and *tailp resulting from adding
   1253  1.71  riastrad  *	delta bytes of data to the head.
   1254  1.71  riastrad  */
   1255  1.30  uebayasi static inline void
   1256   1.2    simonb wapbl_advance_head(size_t size, size_t off, size_t delta, off_t *headp,
   1257   1.2    simonb 		   off_t *tailp)
   1258   1.2    simonb {
   1259   1.2    simonb 	off_t head = *headp;
   1260   1.2    simonb 	off_t tail = *tailp;
   1261   1.2    simonb 
   1262   1.2    simonb 	KASSERT(delta <= wapbl_space_free(size, head, tail));
   1263   1.2    simonb 	head = wapbl_advance(size, off, head, delta);
   1264   1.2    simonb 	if ((tail == 0) && (head != 0))
   1265   1.2    simonb 		tail = off;
   1266   1.2    simonb 	*headp = head;
   1267   1.2    simonb 	*tailp = tail;
   1268   1.2    simonb }
   1269   1.2    simonb 
   1270  1.71  riastrad /*
   1271  1.71  riastrad  * wapbl_advance_tail(size, off, delta, headp, tailp)
   1272  1.71  riastrad  *
   1273  1.71  riastrad  *	In a circular queue of size bytes starting at off, given the
   1274  1.71  riastrad  *	old head and tail offsets *headp and *tailp, store the new head
   1275  1.71  riastrad  *	and tail offsets in *headp and *tailp resulting from removing
   1276  1.71  riastrad  *	delta bytes of data from the tail.
   1277  1.71  riastrad  */
   1278  1.30  uebayasi static inline void
   1279   1.2    simonb wapbl_advance_tail(size_t size, size_t off, size_t delta, off_t *headp,
   1280   1.2    simonb 		   off_t *tailp)
   1281   1.2    simonb {
   1282   1.2    simonb 	off_t head = *headp;
   1283   1.2    simonb 	off_t tail = *tailp;
   1284   1.2    simonb 
   1285   1.2    simonb 	KASSERT(delta <= wapbl_space_used(size, head, tail));
   1286   1.2    simonb 	tail = wapbl_advance(size, off, tail, delta);
   1287   1.2    simonb 	if (head == tail) {
   1288   1.2    simonb 		head = tail = 0;
   1289   1.2    simonb 	}
   1290   1.2    simonb 	*headp = head;
   1291   1.2    simonb 	*tailp = tail;
   1292   1.2    simonb }
   1293   1.2    simonb 
   1294   1.2    simonb 
   1295   1.2    simonb /****************************************************************/
   1296   1.2    simonb 
   1297   1.2    simonb /*
   1298  1.71  riastrad  * wapbl_truncate(wl, minfree, waitonly)
   1299  1.71  riastrad  *
   1300  1.71  riastrad  *	Wait until at least minfree bytes are available in the log.
   1301  1.71  riastrad  *
   1302  1.71  riastrad  *	If it was necessary to wait for writes to complete, and if
   1303  1.71  riastrad  *	waitonly is not true, advance the circular queue tail to
   1304  1.71  riastrad  *	reflect the new write completions and issue a write commit to
   1305  1.71  riastrad  *	the log.
   1306  1.71  riastrad  *
   1307  1.71  riastrad  *	=> Caller must hold wl->wl_rwlock writer lock.
   1308   1.2    simonb  */
   1309   1.2    simonb static int
   1310   1.2    simonb wapbl_truncate(struct wapbl *wl, size_t minfree, int waitonly)
   1311   1.2    simonb {
   1312   1.2    simonb 	size_t delta;
   1313   1.2    simonb 	size_t avail;
   1314   1.2    simonb 	off_t head;
   1315   1.2    simonb 	off_t tail;
   1316   1.2    simonb 	int error = 0;
   1317   1.2    simonb 
   1318   1.2    simonb 	KASSERT(minfree <= (wl->wl_circ_size - wl->wl_reserved_bytes));
   1319   1.2    simonb 	KASSERT(rw_write_held(&wl->wl_rwlock));
   1320   1.2    simonb 
   1321   1.2    simonb 	mutex_enter(&wl->wl_mtx);
   1322   1.2    simonb 
   1323   1.2    simonb 	/*
   1324   1.2    simonb 	 * First check to see if we have to do a commit
   1325   1.2    simonb 	 * at all.
   1326   1.2    simonb 	 */
   1327   1.2    simonb 	avail = wapbl_space_free(wl->wl_circ_size, wl->wl_head, wl->wl_tail);
   1328   1.2    simonb 	if (minfree < avail) {
   1329   1.2    simonb 		mutex_exit(&wl->wl_mtx);
   1330   1.2    simonb 		return 0;
   1331   1.2    simonb 	}
   1332   1.2    simonb 	minfree -= avail;
   1333   1.2    simonb 	while ((wl->wl_error_count == 0) &&
   1334   1.2    simonb 	    (wl->wl_reclaimable_bytes < minfree)) {
   1335   1.2    simonb         	WAPBL_PRINTF(WAPBL_PRINT_TRUNCATE,
   1336   1.2    simonb                    ("wapbl_truncate: sleeping on %p wl=%p bytes=%zd "
   1337   1.2    simonb 		    "minfree=%zd\n",
   1338   1.2    simonb                     &wl->wl_reclaimable_bytes, wl, wl->wl_reclaimable_bytes,
   1339   1.2    simonb 		    minfree));
   1340   1.2    simonb 
   1341   1.2    simonb 		cv_wait(&wl->wl_reclaimable_cv, &wl->wl_mtx);
   1342   1.2    simonb 	}
   1343   1.2    simonb 	if (wl->wl_reclaimable_bytes < minfree) {
   1344   1.2    simonb 		KASSERT(wl->wl_error_count);
   1345   1.2    simonb 		/* XXX maybe get actual error from buffer instead someday? */
   1346   1.2    simonb 		error = EIO;
   1347   1.2    simonb 	}
   1348   1.2    simonb 	head = wl->wl_head;
   1349   1.2    simonb 	tail = wl->wl_tail;
   1350   1.2    simonb 	delta = wl->wl_reclaimable_bytes;
   1351   1.2    simonb 
   1352   1.2    simonb 	/* If all of of the entries are flushed, then be sure to keep
   1353   1.2    simonb 	 * the reserved bytes reserved.  Watch out for discarded transactions,
   1354   1.2    simonb 	 * which could leave more bytes reserved than are reclaimable.
   1355   1.2    simonb 	 */
   1356   1.2    simonb 	if (SIMPLEQ_EMPTY(&wl->wl_entries) &&
   1357   1.2    simonb 	    (delta >= wl->wl_reserved_bytes)) {
   1358   1.2    simonb 		delta -= wl->wl_reserved_bytes;
   1359   1.2    simonb 	}
   1360   1.2    simonb 	wapbl_advance_tail(wl->wl_circ_size, wl->wl_circ_off, delta, &head,
   1361   1.2    simonb 			   &tail);
   1362   1.2    simonb 	KDASSERT(wl->wl_reserved_bytes <=
   1363   1.2    simonb 		wapbl_space_used(wl->wl_circ_size, head, tail));
   1364   1.2    simonb 	mutex_exit(&wl->wl_mtx);
   1365   1.2    simonb 
   1366   1.2    simonb 	if (error)
   1367   1.2    simonb 		return error;
   1368   1.2    simonb 
   1369   1.2    simonb 	if (waitonly)
   1370   1.2    simonb 		return 0;
   1371   1.2    simonb 
   1372   1.2    simonb 	/*
   1373   1.2    simonb 	 * This is where head, tail and delta are unprotected
   1374   1.2    simonb 	 * from races against itself or flush.  This is ok since
   1375   1.2    simonb 	 * we only call this routine from inside flush itself.
   1376   1.2    simonb 	 *
   1377   1.2    simonb 	 * XXX: how can it race against itself when accessed only
   1378   1.2    simonb 	 * from behind the write-locked rwlock?
   1379   1.2    simonb 	 */
   1380   1.2    simonb 	error = wapbl_write_commit(wl, head, tail);
   1381   1.2    simonb 	if (error)
   1382   1.2    simonb 		return error;
   1383   1.2    simonb 
   1384   1.2    simonb 	wl->wl_head = head;
   1385   1.2    simonb 	wl->wl_tail = tail;
   1386   1.2    simonb 
   1387   1.2    simonb 	mutex_enter(&wl->wl_mtx);
   1388   1.2    simonb 	KASSERT(wl->wl_reclaimable_bytes >= delta);
   1389   1.2    simonb 	wl->wl_reclaimable_bytes -= delta;
   1390   1.2    simonb 	mutex_exit(&wl->wl_mtx);
   1391   1.2    simonb 	WAPBL_PRINTF(WAPBL_PRINT_TRUNCATE,
   1392   1.2    simonb 	    ("wapbl_truncate thread %d.%d truncating %zu bytes\n",
   1393   1.2    simonb 	    curproc->p_pid, curlwp->l_lid, delta));
   1394   1.2    simonb 
   1395   1.2    simonb 	return 0;
   1396   1.2    simonb }
   1397   1.2    simonb 
   1398   1.2    simonb /****************************************************************/
   1399   1.2    simonb 
   1400   1.2    simonb void
   1401   1.2    simonb wapbl_biodone(struct buf *bp)
   1402   1.2    simonb {
   1403   1.2    simonb 	struct wapbl_entry *we = bp->b_private;
   1404   1.2    simonb 	struct wapbl *wl = we->we_wapbl;
   1405  1.53   hannken #ifdef WAPBL_DEBUG_BUFBYTES
   1406  1.53   hannken 	const int bufsize = bp->b_bufsize;
   1407  1.53   hannken #endif
   1408   1.2    simonb 
   1409   1.2    simonb 	/*
   1410   1.2    simonb 	 * Handle possible flushing of buffers after log has been
   1411   1.2    simonb 	 * decomissioned.
   1412   1.2    simonb 	 */
   1413   1.2    simonb 	if (!wl) {
   1414   1.2    simonb 		KASSERT(we->we_bufcount > 0);
   1415   1.2    simonb 		we->we_bufcount--;
   1416   1.2    simonb #ifdef WAPBL_DEBUG_BUFBYTES
   1417  1.53   hannken 		KASSERT(we->we_unsynced_bufbytes >= bufsize);
   1418  1.53   hannken 		we->we_unsynced_bufbytes -= bufsize;
   1419   1.2    simonb #endif
   1420   1.2    simonb 
   1421   1.2    simonb 		if (we->we_bufcount == 0) {
   1422   1.2    simonb #ifdef WAPBL_DEBUG_BUFBYTES
   1423   1.2    simonb 			KASSERT(we->we_unsynced_bufbytes == 0);
   1424   1.2    simonb #endif
   1425  1.51      para 			pool_put(&wapbl_entry_pool, we);
   1426   1.2    simonb 		}
   1427   1.2    simonb 
   1428   1.2    simonb 		brelse(bp, 0);
   1429   1.2    simonb 		return;
   1430   1.2    simonb 	}
   1431   1.2    simonb 
   1432   1.2    simonb #ifdef ohbother
   1433  1.44  uebayasi 	KDASSERT(bp->b_oflags & BO_DONE);
   1434  1.44  uebayasi 	KDASSERT(!(bp->b_oflags & BO_DELWRI));
   1435   1.2    simonb 	KDASSERT(bp->b_flags & B_ASYNC);
   1436  1.44  uebayasi 	KDASSERT(bp->b_cflags & BC_BUSY);
   1437   1.2    simonb 	KDASSERT(!(bp->b_flags & B_LOCKED));
   1438   1.2    simonb 	KDASSERT(!(bp->b_flags & B_READ));
   1439  1.44  uebayasi 	KDASSERT(!(bp->b_cflags & BC_INVAL));
   1440  1.44  uebayasi 	KDASSERT(!(bp->b_cflags & BC_NOCACHE));
   1441   1.2    simonb #endif
   1442   1.2    simonb 
   1443   1.2    simonb 	if (bp->b_error) {
   1444   1.2    simonb #ifdef notyet /* Can't currently handle possible dirty buffer reuse */
   1445  1.26       apb 		/*
   1446  1.26       apb 		 * XXXpooka: interfaces not fully updated
   1447  1.26       apb 		 * Note: this was not enabled in the original patch
   1448  1.26       apb 		 * against netbsd4 either.  I don't know if comment
   1449  1.26       apb 		 * above is true or not.
   1450  1.26       apb 		 */
   1451   1.2    simonb 
   1452   1.2    simonb 		/*
   1453   1.2    simonb 		 * If an error occurs, report the error and leave the
   1454   1.2    simonb 		 * buffer as a delayed write on the LRU queue.
   1455   1.2    simonb 		 * restarting the write would likely result in
   1456   1.2    simonb 		 * an error spinloop, so let it be done harmlessly
   1457   1.2    simonb 		 * by the syncer.
   1458   1.2    simonb 		 */
   1459   1.2    simonb 		bp->b_flags &= ~(B_DONE);
   1460   1.2    simonb 		simple_unlock(&bp->b_interlock);
   1461   1.2    simonb 
   1462   1.2    simonb 		if (we->we_error == 0) {
   1463   1.2    simonb 			mutex_enter(&wl->wl_mtx);
   1464   1.2    simonb 			wl->wl_error_count++;
   1465   1.2    simonb 			mutex_exit(&wl->wl_mtx);
   1466   1.2    simonb 			cv_broadcast(&wl->wl_reclaimable_cv);
   1467   1.2    simonb 		}
   1468   1.2    simonb 		we->we_error = bp->b_error;
   1469   1.2    simonb 		bp->b_error = 0;
   1470   1.2    simonb 		brelse(bp);
   1471   1.2    simonb 		return;
   1472   1.2    simonb #else
   1473   1.2    simonb 		/* For now, just mark the log permanently errored out */
   1474   1.2    simonb 
   1475   1.2    simonb 		mutex_enter(&wl->wl_mtx);
   1476   1.2    simonb 		if (wl->wl_error_count == 0) {
   1477   1.2    simonb 			wl->wl_error_count++;
   1478   1.2    simonb 			cv_broadcast(&wl->wl_reclaimable_cv);
   1479   1.2    simonb 		}
   1480   1.2    simonb 		mutex_exit(&wl->wl_mtx);
   1481   1.2    simonb #endif
   1482   1.2    simonb 	}
   1483   1.2    simonb 
   1484  1.53   hannken 	/*
   1485  1.53   hannken 	 * Release the buffer here. wapbl_flush() may wait for the
   1486  1.53   hannken 	 * log to become empty and we better unbusy the buffer before
   1487  1.53   hannken 	 * wapbl_flush() returns.
   1488  1.53   hannken 	 */
   1489  1.53   hannken 	brelse(bp, 0);
   1490  1.53   hannken 
   1491   1.2    simonb 	mutex_enter(&wl->wl_mtx);
   1492   1.2    simonb 
   1493   1.2    simonb 	KASSERT(we->we_bufcount > 0);
   1494   1.2    simonb 	we->we_bufcount--;
   1495   1.2    simonb #ifdef WAPBL_DEBUG_BUFBYTES
   1496  1.53   hannken 	KASSERT(we->we_unsynced_bufbytes >= bufsize);
   1497  1.53   hannken 	we->we_unsynced_bufbytes -= bufsize;
   1498  1.53   hannken 	KASSERT(wl->wl_unsynced_bufbytes >= bufsize);
   1499  1.53   hannken 	wl->wl_unsynced_bufbytes -= bufsize;
   1500   1.2    simonb #endif
   1501   1.2    simonb 
   1502   1.2    simonb 	/*
   1503   1.2    simonb 	 * If the current transaction can be reclaimed, start
   1504   1.2    simonb 	 * at the beginning and reclaim any consecutive reclaimable
   1505   1.2    simonb 	 * transactions.  If we successfully reclaim anything,
   1506   1.2    simonb 	 * then wakeup anyone waiting for the reclaim.
   1507   1.2    simonb 	 */
   1508   1.2    simonb 	if (we->we_bufcount == 0) {
   1509   1.2    simonb 		size_t delta = 0;
   1510   1.2    simonb 		int errcnt = 0;
   1511   1.2    simonb #ifdef WAPBL_DEBUG_BUFBYTES
   1512   1.2    simonb 		KDASSERT(we->we_unsynced_bufbytes == 0);
   1513   1.2    simonb #endif
   1514   1.2    simonb 		/*
   1515   1.2    simonb 		 * clear any posted error, since the buffer it came from
   1516   1.2    simonb 		 * has successfully flushed by now
   1517   1.2    simonb 		 */
   1518   1.2    simonb 		while ((we = SIMPLEQ_FIRST(&wl->wl_entries)) &&
   1519   1.2    simonb 		       (we->we_bufcount == 0)) {
   1520   1.2    simonb 			delta += we->we_reclaimable_bytes;
   1521   1.2    simonb 			if (we->we_error)
   1522   1.2    simonb 				errcnt++;
   1523   1.2    simonb 			SIMPLEQ_REMOVE_HEAD(&wl->wl_entries, we_entries);
   1524  1.51      para 			pool_put(&wapbl_entry_pool, we);
   1525   1.2    simonb 		}
   1526   1.2    simonb 
   1527   1.2    simonb 		if (delta) {
   1528   1.2    simonb 			wl->wl_reclaimable_bytes += delta;
   1529   1.2    simonb 			KASSERT(wl->wl_error_count >= errcnt);
   1530   1.2    simonb 			wl->wl_error_count -= errcnt;
   1531   1.2    simonb 			cv_broadcast(&wl->wl_reclaimable_cv);
   1532   1.2    simonb 		}
   1533   1.2    simonb 	}
   1534   1.2    simonb 
   1535   1.2    simonb 	mutex_exit(&wl->wl_mtx);
   1536   1.2    simonb }
   1537   1.2    simonb 
   1538   1.2    simonb /*
   1539  1.71  riastrad  * wapbl_flush(wl, wait)
   1540  1.71  riastrad  *
   1541  1.71  riastrad  *	Flush pending block writes, deallocations, and inodes from
   1542  1.71  riastrad  *	the current transaction in memory to the log on disk:
   1543  1.71  riastrad  *
   1544  1.71  riastrad  *	1. Call the file system's wl_flush callback to flush any
   1545  1.71  riastrad  *	   per-file-system pending updates.
   1546  1.71  riastrad  *	2. Wait for enough space in the log for the current transaction.
   1547  1.71  riastrad  *	3. Synchronously write the new log records, advancing the
   1548  1.71  riastrad  *	   circular queue head.
   1549  1.71  riastrad  *	4. If wait is true, also wait for all the logged writes to
   1550  1.71  riastrad  *	   complete so that the log is empty on return.
   1551  1.71  riastrad  *
   1552  1.71  riastrad  *	On failure, call the file system's wl_flush_abort callback.
   1553   1.2    simonb  */
   1554   1.2    simonb int
   1555   1.2    simonb wapbl_flush(struct wapbl *wl, int waitfor)
   1556   1.2    simonb {
   1557   1.2    simonb 	struct buf *bp;
   1558   1.2    simonb 	struct wapbl_entry *we;
   1559   1.2    simonb 	off_t off;
   1560   1.2    simonb 	off_t head;
   1561   1.2    simonb 	off_t tail;
   1562   1.2    simonb 	size_t delta = 0;
   1563   1.2    simonb 	size_t flushsize;
   1564   1.2    simonb 	size_t reserved;
   1565   1.2    simonb 	int error = 0;
   1566   1.2    simonb 
   1567   1.2    simonb 	/*
   1568   1.2    simonb 	 * Do a quick check to see if a full flush can be skipped
   1569   1.2    simonb 	 * This assumes that the flush callback does not need to be called
   1570   1.2    simonb 	 * unless there are other outstanding bufs.
   1571   1.2    simonb 	 */
   1572   1.2    simonb 	if (!waitfor) {
   1573   1.2    simonb 		size_t nbufs;
   1574   1.2    simonb 		mutex_enter(&wl->wl_mtx);	/* XXX need mutex here to
   1575   1.2    simonb 						   protect the KASSERTS */
   1576   1.2    simonb 		nbufs = wl->wl_bufcount;
   1577   1.2    simonb 		KASSERT((wl->wl_bufcount == 0) == (wl->wl_bufbytes == 0));
   1578   1.2    simonb 		KASSERT((wl->wl_bufcount == 0) == (wl->wl_bcount == 0));
   1579   1.2    simonb 		mutex_exit(&wl->wl_mtx);
   1580   1.2    simonb 		if (nbufs == 0)
   1581   1.2    simonb 			return 0;
   1582   1.2    simonb 	}
   1583   1.2    simonb 
   1584   1.2    simonb 	/*
   1585   1.2    simonb 	 * XXX we may consider using LK_UPGRADE here
   1586   1.2    simonb 	 * if we want to call flush from inside a transaction
   1587   1.2    simonb 	 */
   1588   1.2    simonb 	rw_enter(&wl->wl_rwlock, RW_WRITER);
   1589   1.2    simonb 	wl->wl_flush(wl->wl_mount, wl->wl_deallocblks, wl->wl_dealloclens,
   1590   1.2    simonb 	    wl->wl_dealloccnt);
   1591   1.2    simonb 
   1592   1.2    simonb 	/*
   1593   1.2    simonb 	 * Now that we are fully locked and flushed,
   1594   1.2    simonb 	 * do another check for nothing to do.
   1595   1.2    simonb 	 */
   1596   1.2    simonb 	if (wl->wl_bufcount == 0) {
   1597  1.69  riastrad 		goto wait_out;
   1598   1.2    simonb 	}
   1599   1.2    simonb 
   1600   1.2    simonb #if 0
   1601   1.2    simonb 	WAPBL_PRINTF(WAPBL_PRINT_FLUSH,
   1602   1.2    simonb 		     ("wapbl_flush thread %d.%d flushing entries with "
   1603   1.2    simonb 		      "bufcount=%zu bufbytes=%zu\n",
   1604   1.2    simonb 		      curproc->p_pid, curlwp->l_lid, wl->wl_bufcount,
   1605   1.2    simonb 		      wl->wl_bufbytes));
   1606   1.2    simonb #endif
   1607   1.2    simonb 
   1608   1.2    simonb 	/* Calculate amount of space needed to flush */
   1609   1.2    simonb 	flushsize = wapbl_transaction_len(wl);
   1610  1.39  christos 	if (wapbl_verbose_commit) {
   1611  1.39  christos 		struct timespec ts;
   1612  1.39  christos 		getnanotime(&ts);
   1613  1.43  nakayama 		printf("%s: %lld.%09ld this transaction = %zu bytes\n",
   1614  1.39  christos 		    __func__, (long long)ts.tv_sec,
   1615  1.39  christos 		    (long)ts.tv_nsec, flushsize);
   1616  1.39  christos 	}
   1617   1.2    simonb 
   1618   1.2    simonb 	if (flushsize > (wl->wl_circ_size - wl->wl_reserved_bytes)) {
   1619   1.2    simonb 		/*
   1620   1.2    simonb 		 * XXX this could be handled more gracefully, perhaps place
   1621   1.2    simonb 		 * only a partial transaction in the log and allow the
   1622   1.2    simonb 		 * remaining to flush without the protection of the journal.
   1623   1.2    simonb 		 */
   1624  1.66  riastrad 		panic("wapbl_flush: current transaction too big to flush");
   1625   1.2    simonb 	}
   1626   1.2    simonb 
   1627   1.2    simonb 	error = wapbl_truncate(wl, flushsize, 0);
   1628   1.2    simonb 	if (error)
   1629  1.69  riastrad 		goto out;
   1630   1.2    simonb 
   1631   1.2    simonb 	off = wl->wl_head;
   1632  1.70  riastrad 	KASSERT((off == 0) || (off >= wl->wl_circ_off));
   1633  1.70  riastrad 	KASSERT((off == 0) || (off < wl->wl_circ_off + wl->wl_circ_size));
   1634   1.2    simonb 	error = wapbl_write_blocks(wl, &off);
   1635   1.2    simonb 	if (error)
   1636  1.69  riastrad 		goto out;
   1637   1.2    simonb 	error = wapbl_write_revocations(wl, &off);
   1638   1.2    simonb 	if (error)
   1639  1.69  riastrad 		goto out;
   1640   1.2    simonb 	error = wapbl_write_inodes(wl, &off);
   1641   1.2    simonb 	if (error)
   1642  1.69  riastrad 		goto out;
   1643   1.2    simonb 
   1644   1.2    simonb 	reserved = 0;
   1645   1.2    simonb 	if (wl->wl_inohashcnt)
   1646   1.2    simonb 		reserved = wapbl_transaction_inodes_len(wl);
   1647   1.2    simonb 
   1648   1.2    simonb 	head = wl->wl_head;
   1649   1.2    simonb 	tail = wl->wl_tail;
   1650   1.2    simonb 
   1651   1.2    simonb 	wapbl_advance_head(wl->wl_circ_size, wl->wl_circ_off, flushsize,
   1652   1.2    simonb 	    &head, &tail);
   1653   1.2    simonb #ifdef WAPBL_DEBUG
   1654   1.2    simonb 	if (head != off) {
   1655   1.2    simonb 		panic("lost head! head=%"PRIdMAX" tail=%" PRIdMAX
   1656  1.66  riastrad 		      " off=%"PRIdMAX" flush=%zu",
   1657   1.2    simonb 		      (intmax_t)head, (intmax_t)tail, (intmax_t)off,
   1658   1.2    simonb 		      flushsize);
   1659   1.2    simonb 	}
   1660   1.2    simonb #else
   1661   1.2    simonb 	KASSERT(head == off);
   1662   1.2    simonb #endif
   1663   1.2    simonb 
   1664   1.2    simonb 	/* Opportunistically move the tail forward if we can */
   1665   1.2    simonb 	if (!wapbl_lazy_truncate) {
   1666   1.2    simonb 		mutex_enter(&wl->wl_mtx);
   1667   1.2    simonb 		delta = wl->wl_reclaimable_bytes;
   1668   1.2    simonb 		mutex_exit(&wl->wl_mtx);
   1669   1.2    simonb 		wapbl_advance_tail(wl->wl_circ_size, wl->wl_circ_off, delta,
   1670   1.2    simonb 		    &head, &tail);
   1671   1.2    simonb 	}
   1672   1.2    simonb 
   1673   1.2    simonb 	error = wapbl_write_commit(wl, head, tail);
   1674   1.2    simonb 	if (error)
   1675  1.69  riastrad 		goto out;
   1676   1.2    simonb 
   1677  1.51      para 	we = pool_get(&wapbl_entry_pool, PR_WAITOK);
   1678   1.2    simonb 
   1679   1.2    simonb #ifdef WAPBL_DEBUG_BUFBYTES
   1680   1.2    simonb 	WAPBL_PRINTF(WAPBL_PRINT_FLUSH,
   1681   1.2    simonb 		("wapbl_flush: thread %d.%d head+=%zu tail+=%zu used=%zu"
   1682   1.2    simonb 		 " unsynced=%zu"
   1683   1.2    simonb 		 "\n\tbufcount=%zu bufbytes=%zu bcount=%zu deallocs=%d "
   1684   1.2    simonb 		 "inodes=%d\n",
   1685   1.2    simonb 		 curproc->p_pid, curlwp->l_lid, flushsize, delta,
   1686   1.2    simonb 		 wapbl_space_used(wl->wl_circ_size, head, tail),
   1687   1.2    simonb 		 wl->wl_unsynced_bufbytes, wl->wl_bufcount,
   1688   1.2    simonb 		 wl->wl_bufbytes, wl->wl_bcount, wl->wl_dealloccnt,
   1689   1.2    simonb 		 wl->wl_inohashcnt));
   1690   1.2    simonb #else
   1691   1.2    simonb 	WAPBL_PRINTF(WAPBL_PRINT_FLUSH,
   1692   1.2    simonb 		("wapbl_flush: thread %d.%d head+=%zu tail+=%zu used=%zu"
   1693   1.2    simonb 		 "\n\tbufcount=%zu bufbytes=%zu bcount=%zu deallocs=%d "
   1694   1.2    simonb 		 "inodes=%d\n",
   1695   1.2    simonb 		 curproc->p_pid, curlwp->l_lid, flushsize, delta,
   1696   1.2    simonb 		 wapbl_space_used(wl->wl_circ_size, head, tail),
   1697   1.2    simonb 		 wl->wl_bufcount, wl->wl_bufbytes, wl->wl_bcount,
   1698   1.2    simonb 		 wl->wl_dealloccnt, wl->wl_inohashcnt));
   1699   1.2    simonb #endif
   1700   1.2    simonb 
   1701   1.2    simonb 
   1702   1.2    simonb 	mutex_enter(&bufcache_lock);
   1703   1.2    simonb 	mutex_enter(&wl->wl_mtx);
   1704   1.2    simonb 
   1705   1.2    simonb 	wl->wl_reserved_bytes = reserved;
   1706   1.2    simonb 	wl->wl_head = head;
   1707   1.2    simonb 	wl->wl_tail = tail;
   1708   1.2    simonb 	KASSERT(wl->wl_reclaimable_bytes >= delta);
   1709   1.2    simonb 	wl->wl_reclaimable_bytes -= delta;
   1710   1.2    simonb 	wl->wl_dealloccnt = 0;
   1711   1.2    simonb #ifdef WAPBL_DEBUG_BUFBYTES
   1712   1.2    simonb 	wl->wl_unsynced_bufbytes += wl->wl_bufbytes;
   1713   1.2    simonb #endif
   1714   1.2    simonb 
   1715   1.2    simonb 	we->we_wapbl = wl;
   1716   1.2    simonb 	we->we_bufcount = wl->wl_bufcount;
   1717   1.2    simonb #ifdef WAPBL_DEBUG_BUFBYTES
   1718   1.2    simonb 	we->we_unsynced_bufbytes = wl->wl_bufbytes;
   1719   1.2    simonb #endif
   1720   1.2    simonb 	we->we_reclaimable_bytes = flushsize;
   1721   1.2    simonb 	we->we_error = 0;
   1722   1.2    simonb 	SIMPLEQ_INSERT_TAIL(&wl->wl_entries, we, we_entries);
   1723   1.2    simonb 
   1724   1.2    simonb 	/*
   1725   1.2    simonb 	 * this flushes bufs in reverse order than they were queued
   1726   1.2    simonb 	 * it shouldn't matter, but if we care we could use TAILQ instead.
   1727   1.2    simonb 	 * XXX Note they will get put on the lru queue when they flush
   1728   1.2    simonb 	 * so we might actually want to change this to preserve order.
   1729   1.2    simonb 	 */
   1730   1.2    simonb 	while ((bp = LIST_FIRST(&wl->wl_bufs)) != NULL) {
   1731   1.2    simonb 		if (bbusy(bp, 0, 0, &wl->wl_mtx)) {
   1732   1.2    simonb 			continue;
   1733   1.2    simonb 		}
   1734   1.2    simonb 		bp->b_iodone = wapbl_biodone;
   1735   1.2    simonb 		bp->b_private = we;
   1736   1.2    simonb 		bremfree(bp);
   1737   1.2    simonb 		wapbl_remove_buf_locked(wl, bp);
   1738   1.2    simonb 		mutex_exit(&wl->wl_mtx);
   1739   1.2    simonb 		mutex_exit(&bufcache_lock);
   1740   1.2    simonb 		bawrite(bp);
   1741   1.2    simonb 		mutex_enter(&bufcache_lock);
   1742   1.2    simonb 		mutex_enter(&wl->wl_mtx);
   1743   1.2    simonb 	}
   1744   1.2    simonb 	mutex_exit(&wl->wl_mtx);
   1745   1.2    simonb 	mutex_exit(&bufcache_lock);
   1746   1.2    simonb 
   1747   1.2    simonb #if 0
   1748   1.2    simonb 	WAPBL_PRINTF(WAPBL_PRINT_FLUSH,
   1749   1.2    simonb 		     ("wapbl_flush thread %d.%d done flushing entries...\n",
   1750   1.2    simonb 		     curproc->p_pid, curlwp->l_lid));
   1751   1.2    simonb #endif
   1752   1.2    simonb 
   1753  1.69  riastrad  wait_out:
   1754   1.2    simonb 
   1755   1.2    simonb 	/*
   1756   1.2    simonb 	 * If the waitfor flag is set, don't return until everything is
   1757   1.2    simonb 	 * fully flushed and the on disk log is empty.
   1758   1.2    simonb 	 */
   1759   1.2    simonb 	if (waitfor) {
   1760   1.2    simonb 		error = wapbl_truncate(wl, wl->wl_circ_size -
   1761   1.2    simonb 			wl->wl_reserved_bytes, wapbl_lazy_truncate);
   1762   1.2    simonb 	}
   1763   1.2    simonb 
   1764  1.69  riastrad  out:
   1765   1.2    simonb 	if (error) {
   1766   1.2    simonb 		wl->wl_flush_abort(wl->wl_mount, wl->wl_deallocblks,
   1767   1.2    simonb 		    wl->wl_dealloclens, wl->wl_dealloccnt);
   1768   1.2    simonb 	}
   1769   1.2    simonb 
   1770   1.2    simonb #ifdef WAPBL_DEBUG_PRINT
   1771   1.2    simonb 	if (error) {
   1772   1.2    simonb 		pid_t pid = -1;
   1773   1.2    simonb 		lwpid_t lid = -1;
   1774   1.2    simonb 		if (curproc)
   1775   1.2    simonb 			pid = curproc->p_pid;
   1776   1.2    simonb 		if (curlwp)
   1777   1.2    simonb 			lid = curlwp->l_lid;
   1778   1.2    simonb 		mutex_enter(&wl->wl_mtx);
   1779   1.2    simonb #ifdef WAPBL_DEBUG_BUFBYTES
   1780   1.2    simonb 		WAPBL_PRINTF(WAPBL_PRINT_ERROR,
   1781   1.2    simonb 		    ("wapbl_flush: thread %d.%d aborted flush: "
   1782   1.2    simonb 		    "error = %d\n"
   1783   1.2    simonb 		    "\tbufcount=%zu bufbytes=%zu bcount=%zu "
   1784   1.2    simonb 		    "deallocs=%d inodes=%d\n"
   1785   1.2    simonb 		    "\terrcnt = %d, reclaimable=%zu reserved=%zu "
   1786   1.2    simonb 		    "unsynced=%zu\n",
   1787   1.2    simonb 		    pid, lid, error, wl->wl_bufcount,
   1788   1.2    simonb 		    wl->wl_bufbytes, wl->wl_bcount,
   1789   1.2    simonb 		    wl->wl_dealloccnt, wl->wl_inohashcnt,
   1790   1.2    simonb 		    wl->wl_error_count, wl->wl_reclaimable_bytes,
   1791   1.2    simonb 		    wl->wl_reserved_bytes, wl->wl_unsynced_bufbytes));
   1792   1.2    simonb 		SIMPLEQ_FOREACH(we, &wl->wl_entries, we_entries) {
   1793   1.2    simonb 			WAPBL_PRINTF(WAPBL_PRINT_ERROR,
   1794   1.2    simonb 			    ("\tentry: bufcount = %zu, reclaimable = %zu, "
   1795   1.2    simonb 			     "error = %d, unsynced = %zu\n",
   1796   1.2    simonb 			     we->we_bufcount, we->we_reclaimable_bytes,
   1797   1.2    simonb 			     we->we_error, we->we_unsynced_bufbytes));
   1798   1.2    simonb 		}
   1799   1.2    simonb #else
   1800   1.2    simonb 		WAPBL_PRINTF(WAPBL_PRINT_ERROR,
   1801   1.2    simonb 		    ("wapbl_flush: thread %d.%d aborted flush: "
   1802   1.2    simonb 		     "error = %d\n"
   1803   1.2    simonb 		     "\tbufcount=%zu bufbytes=%zu bcount=%zu "
   1804   1.2    simonb 		     "deallocs=%d inodes=%d\n"
   1805   1.2    simonb 		     "\terrcnt = %d, reclaimable=%zu reserved=%zu\n",
   1806   1.2    simonb 		     pid, lid, error, wl->wl_bufcount,
   1807   1.2    simonb 		     wl->wl_bufbytes, wl->wl_bcount,
   1808   1.2    simonb 		     wl->wl_dealloccnt, wl->wl_inohashcnt,
   1809   1.2    simonb 		     wl->wl_error_count, wl->wl_reclaimable_bytes,
   1810   1.2    simonb 		     wl->wl_reserved_bytes));
   1811   1.2    simonb 		SIMPLEQ_FOREACH(we, &wl->wl_entries, we_entries) {
   1812   1.2    simonb 			WAPBL_PRINTF(WAPBL_PRINT_ERROR,
   1813   1.2    simonb 			    ("\tentry: bufcount = %zu, reclaimable = %zu, "
   1814   1.2    simonb 			     "error = %d\n", we->we_bufcount,
   1815   1.2    simonb 			     we->we_reclaimable_bytes, we->we_error));
   1816   1.2    simonb 		}
   1817   1.2    simonb #endif
   1818   1.2    simonb 		mutex_exit(&wl->wl_mtx);
   1819   1.2    simonb 	}
   1820   1.2    simonb #endif
   1821   1.2    simonb 
   1822   1.2    simonb 	rw_exit(&wl->wl_rwlock);
   1823   1.2    simonb 	return error;
   1824   1.2    simonb }
   1825   1.2    simonb 
   1826   1.2    simonb /****************************************************************/
   1827   1.2    simonb 
   1828   1.2    simonb void
   1829   1.2    simonb wapbl_jlock_assert(struct wapbl *wl)
   1830   1.2    simonb {
   1831   1.2    simonb 
   1832  1.23        ad 	KASSERT(rw_lock_held(&wl->wl_rwlock));
   1833   1.2    simonb }
   1834   1.2    simonb 
   1835   1.2    simonb void
   1836   1.2    simonb wapbl_junlock_assert(struct wapbl *wl)
   1837   1.2    simonb {
   1838   1.2    simonb 
   1839   1.2    simonb 	KASSERT(!rw_write_held(&wl->wl_rwlock));
   1840   1.2    simonb }
   1841   1.2    simonb 
   1842   1.2    simonb /****************************************************************/
   1843   1.2    simonb 
   1844   1.2    simonb /* locks missing */
   1845   1.2    simonb void
   1846   1.2    simonb wapbl_print(struct wapbl *wl,
   1847   1.2    simonb 		int full,
   1848   1.2    simonb 		void (*pr)(const char *, ...))
   1849   1.2    simonb {
   1850   1.2    simonb 	struct buf *bp;
   1851   1.2    simonb 	struct wapbl_entry *we;
   1852   1.2    simonb 	(*pr)("wapbl %p", wl);
   1853   1.2    simonb 	(*pr)("\nlogvp = %p, devvp = %p, logpbn = %"PRId64"\n",
   1854   1.2    simonb 	      wl->wl_logvp, wl->wl_devvp, wl->wl_logpbn);
   1855   1.2    simonb 	(*pr)("circ = %zu, header = %zu, head = %"PRIdMAX" tail = %"PRIdMAX"\n",
   1856   1.2    simonb 	      wl->wl_circ_size, wl->wl_circ_off,
   1857   1.2    simonb 	      (intmax_t)wl->wl_head, (intmax_t)wl->wl_tail);
   1858   1.2    simonb 	(*pr)("fs_dev_bshift = %d, log_dev_bshift = %d\n",
   1859   1.2    simonb 	      wl->wl_log_dev_bshift, wl->wl_fs_dev_bshift);
   1860   1.2    simonb #ifdef WAPBL_DEBUG_BUFBYTES
   1861   1.2    simonb 	(*pr)("bufcount = %zu, bufbytes = %zu bcount = %zu reclaimable = %zu "
   1862   1.2    simonb 	      "reserved = %zu errcnt = %d unsynced = %zu\n",
   1863   1.2    simonb 	      wl->wl_bufcount, wl->wl_bufbytes, wl->wl_bcount,
   1864   1.2    simonb 	      wl->wl_reclaimable_bytes, wl->wl_reserved_bytes,
   1865   1.2    simonb 				wl->wl_error_count, wl->wl_unsynced_bufbytes);
   1866   1.2    simonb #else
   1867   1.2    simonb 	(*pr)("bufcount = %zu, bufbytes = %zu bcount = %zu reclaimable = %zu "
   1868   1.2    simonb 	      "reserved = %zu errcnt = %d\n", wl->wl_bufcount, wl->wl_bufbytes,
   1869   1.2    simonb 	      wl->wl_bcount, wl->wl_reclaimable_bytes, wl->wl_reserved_bytes,
   1870   1.2    simonb 				wl->wl_error_count);
   1871   1.2    simonb #endif
   1872   1.2    simonb 	(*pr)("\tdealloccnt = %d, dealloclim = %d\n",
   1873   1.2    simonb 	      wl->wl_dealloccnt, wl->wl_dealloclim);
   1874   1.2    simonb 	(*pr)("\tinohashcnt = %d, inohashmask = 0x%08x\n",
   1875   1.2    simonb 	      wl->wl_inohashcnt, wl->wl_inohashmask);
   1876   1.2    simonb 	(*pr)("entries:\n");
   1877   1.2    simonb 	SIMPLEQ_FOREACH(we, &wl->wl_entries, we_entries) {
   1878   1.2    simonb #ifdef WAPBL_DEBUG_BUFBYTES
   1879   1.2    simonb 		(*pr)("\tbufcount = %zu, reclaimable = %zu, error = %d, "
   1880   1.2    simonb 		      "unsynced = %zu\n",
   1881   1.2    simonb 		      we->we_bufcount, we->we_reclaimable_bytes,
   1882   1.2    simonb 		      we->we_error, we->we_unsynced_bufbytes);
   1883   1.2    simonb #else
   1884   1.2    simonb 		(*pr)("\tbufcount = %zu, reclaimable = %zu, error = %d\n",
   1885   1.2    simonb 		      we->we_bufcount, we->we_reclaimable_bytes, we->we_error);
   1886   1.2    simonb #endif
   1887   1.2    simonb 	}
   1888   1.2    simonb 	if (full) {
   1889   1.2    simonb 		int cnt = 0;
   1890   1.2    simonb 		(*pr)("bufs =");
   1891   1.2    simonb 		LIST_FOREACH(bp, &wl->wl_bufs, b_wapbllist) {
   1892   1.2    simonb 			if (!LIST_NEXT(bp, b_wapbllist)) {
   1893   1.2    simonb 				(*pr)(" %p", bp);
   1894   1.2    simonb 			} else if ((++cnt % 6) == 0) {
   1895   1.2    simonb 				(*pr)(" %p,\n\t", bp);
   1896   1.2    simonb 			} else {
   1897   1.2    simonb 				(*pr)(" %p,", bp);
   1898   1.2    simonb 			}
   1899   1.2    simonb 		}
   1900   1.2    simonb 		(*pr)("\n");
   1901   1.2    simonb 
   1902   1.2    simonb 		(*pr)("dealloced blks = ");
   1903   1.2    simonb 		{
   1904   1.2    simonb 			int i;
   1905   1.2    simonb 			cnt = 0;
   1906   1.2    simonb 			for (i = 0; i < wl->wl_dealloccnt; i++) {
   1907   1.2    simonb 				(*pr)(" %"PRId64":%d,",
   1908   1.2    simonb 				      wl->wl_deallocblks[i],
   1909   1.2    simonb 				      wl->wl_dealloclens[i]);
   1910   1.2    simonb 				if ((++cnt % 4) == 0) {
   1911   1.2    simonb 					(*pr)("\n\t");
   1912   1.2    simonb 				}
   1913   1.2    simonb 			}
   1914   1.2    simonb 		}
   1915   1.2    simonb 		(*pr)("\n");
   1916   1.2    simonb 
   1917   1.2    simonb 		(*pr)("registered inodes = ");
   1918   1.2    simonb 		{
   1919   1.2    simonb 			int i;
   1920   1.2    simonb 			cnt = 0;
   1921   1.2    simonb 			for (i = 0; i <= wl->wl_inohashmask; i++) {
   1922   1.2    simonb 				struct wapbl_ino_head *wih;
   1923   1.2    simonb 				struct wapbl_ino *wi;
   1924   1.2    simonb 
   1925   1.2    simonb 				wih = &wl->wl_inohash[i];
   1926   1.2    simonb 				LIST_FOREACH(wi, wih, wi_hash) {
   1927   1.2    simonb 					if (wi->wi_ino == 0)
   1928   1.2    simonb 						continue;
   1929  1.55  christos 					(*pr)(" %"PRIu64"/0%06"PRIo32",",
   1930   1.2    simonb 					    wi->wi_ino, wi->wi_mode);
   1931   1.2    simonb 					if ((++cnt % 4) == 0) {
   1932   1.2    simonb 						(*pr)("\n\t");
   1933   1.2    simonb 					}
   1934   1.2    simonb 				}
   1935   1.2    simonb 			}
   1936   1.2    simonb 			(*pr)("\n");
   1937   1.2    simonb 		}
   1938   1.2    simonb 	}
   1939   1.2    simonb }
   1940   1.2    simonb 
   1941   1.2    simonb #if defined(WAPBL_DEBUG) || defined(DDB)
   1942   1.2    simonb void
   1943   1.2    simonb wapbl_dump(struct wapbl *wl)
   1944   1.2    simonb {
   1945   1.2    simonb #if defined(WAPBL_DEBUG)
   1946   1.2    simonb 	if (!wl)
   1947   1.2    simonb 		wl = wapbl_debug_wl;
   1948   1.2    simonb #endif
   1949   1.2    simonb 	if (!wl)
   1950   1.2    simonb 		return;
   1951   1.2    simonb 	wapbl_print(wl, 1, printf);
   1952   1.2    simonb }
   1953   1.2    simonb #endif
   1954   1.2    simonb 
   1955   1.2    simonb /****************************************************************/
   1956   1.2    simonb 
   1957   1.2    simonb void
   1958   1.2    simonb wapbl_register_deallocation(struct wapbl *wl, daddr_t blk, int len)
   1959   1.2    simonb {
   1960   1.2    simonb 
   1961   1.2    simonb 	wapbl_jlock_assert(wl);
   1962   1.2    simonb 
   1963  1.38   hannken 	mutex_enter(&wl->wl_mtx);
   1964   1.2    simonb 	/* XXX should eventually instead tie this into resource estimation */
   1965  1.27     pooka 	/*
   1966  1.27     pooka 	 * XXX this panic needs locking/mutex analysis and the
   1967  1.27     pooka 	 * ability to cope with the failure.
   1968  1.27     pooka 	 */
   1969  1.27     pooka 	/* XXX this XXX doesn't have enough XXX */
   1970  1.27     pooka 	if (__predict_false(wl->wl_dealloccnt >= wl->wl_dealloclim))
   1971  1.27     pooka 		panic("wapbl_register_deallocation: out of resources");
   1972  1.27     pooka 
   1973   1.2    simonb 	wl->wl_deallocblks[wl->wl_dealloccnt] = blk;
   1974   1.2    simonb 	wl->wl_dealloclens[wl->wl_dealloccnt] = len;
   1975   1.2    simonb 	wl->wl_dealloccnt++;
   1976   1.2    simonb 	WAPBL_PRINTF(WAPBL_PRINT_ALLOC,
   1977   1.2    simonb 	    ("wapbl_register_deallocation: blk=%"PRId64" len=%d\n", blk, len));
   1978  1.38   hannken 	mutex_exit(&wl->wl_mtx);
   1979   1.2    simonb }
   1980   1.2    simonb 
   1981   1.2    simonb /****************************************************************/
   1982   1.2    simonb 
   1983   1.2    simonb static void
   1984   1.2    simonb wapbl_inodetrk_init(struct wapbl *wl, u_int size)
   1985   1.2    simonb {
   1986   1.2    simonb 
   1987   1.2    simonb 	wl->wl_inohash = hashinit(size, HASH_LIST, true, &wl->wl_inohashmask);
   1988   1.2    simonb 	if (atomic_inc_uint_nv(&wapbl_ino_pool_refcount) == 1) {
   1989   1.2    simonb 		pool_init(&wapbl_ino_pool, sizeof(struct wapbl_ino), 0, 0, 0,
   1990   1.2    simonb 		    "wapblinopl", &pool_allocator_nointr, IPL_NONE);
   1991   1.2    simonb 	}
   1992   1.2    simonb }
   1993   1.2    simonb 
   1994   1.2    simonb static void
   1995   1.2    simonb wapbl_inodetrk_free(struct wapbl *wl)
   1996   1.2    simonb {
   1997   1.2    simonb 
   1998   1.2    simonb 	/* XXX this KASSERT needs locking/mutex analysis */
   1999   1.2    simonb 	KASSERT(wl->wl_inohashcnt == 0);
   2000   1.2    simonb 	hashdone(wl->wl_inohash, HASH_LIST, wl->wl_inohashmask);
   2001   1.2    simonb 	if (atomic_dec_uint_nv(&wapbl_ino_pool_refcount) == 0) {
   2002   1.2    simonb 		pool_destroy(&wapbl_ino_pool);
   2003   1.2    simonb 	}
   2004   1.2    simonb }
   2005   1.2    simonb 
   2006   1.2    simonb static struct wapbl_ino *
   2007   1.2    simonb wapbl_inodetrk_get(struct wapbl *wl, ino_t ino)
   2008   1.2    simonb {
   2009   1.2    simonb 	struct wapbl_ino_head *wih;
   2010   1.2    simonb 	struct wapbl_ino *wi;
   2011   1.2    simonb 
   2012   1.2    simonb 	KASSERT(mutex_owned(&wl->wl_mtx));
   2013   1.2    simonb 
   2014   1.2    simonb 	wih = &wl->wl_inohash[ino & wl->wl_inohashmask];
   2015   1.2    simonb 	LIST_FOREACH(wi, wih, wi_hash) {
   2016   1.2    simonb 		if (ino == wi->wi_ino)
   2017   1.2    simonb 			return wi;
   2018   1.2    simonb 	}
   2019   1.2    simonb 	return 0;
   2020   1.2    simonb }
   2021   1.2    simonb 
   2022   1.2    simonb void
   2023   1.2    simonb wapbl_register_inode(struct wapbl *wl, ino_t ino, mode_t mode)
   2024   1.2    simonb {
   2025   1.2    simonb 	struct wapbl_ino_head *wih;
   2026   1.2    simonb 	struct wapbl_ino *wi;
   2027   1.2    simonb 
   2028   1.2    simonb 	wi = pool_get(&wapbl_ino_pool, PR_WAITOK);
   2029   1.2    simonb 
   2030   1.2    simonb 	mutex_enter(&wl->wl_mtx);
   2031   1.2    simonb 	if (wapbl_inodetrk_get(wl, ino) == NULL) {
   2032   1.2    simonb 		wi->wi_ino = ino;
   2033   1.2    simonb 		wi->wi_mode = mode;
   2034   1.2    simonb 		wih = &wl->wl_inohash[ino & wl->wl_inohashmask];
   2035   1.2    simonb 		LIST_INSERT_HEAD(wih, wi, wi_hash);
   2036   1.2    simonb 		wl->wl_inohashcnt++;
   2037   1.2    simonb 		WAPBL_PRINTF(WAPBL_PRINT_INODE,
   2038   1.2    simonb 		    ("wapbl_register_inode: ino=%"PRId64"\n", ino));
   2039   1.2    simonb 		mutex_exit(&wl->wl_mtx);
   2040   1.2    simonb 	} else {
   2041   1.2    simonb 		mutex_exit(&wl->wl_mtx);
   2042   1.2    simonb 		pool_put(&wapbl_ino_pool, wi);
   2043   1.2    simonb 	}
   2044   1.2    simonb }
   2045   1.2    simonb 
   2046   1.2    simonb void
   2047   1.2    simonb wapbl_unregister_inode(struct wapbl *wl, ino_t ino, mode_t mode)
   2048   1.2    simonb {
   2049   1.2    simonb 	struct wapbl_ino *wi;
   2050   1.2    simonb 
   2051   1.2    simonb 	mutex_enter(&wl->wl_mtx);
   2052   1.2    simonb 	wi = wapbl_inodetrk_get(wl, ino);
   2053   1.2    simonb 	if (wi) {
   2054   1.2    simonb 		WAPBL_PRINTF(WAPBL_PRINT_INODE,
   2055   1.2    simonb 		    ("wapbl_unregister_inode: ino=%"PRId64"\n", ino));
   2056   1.2    simonb 		KASSERT(wl->wl_inohashcnt > 0);
   2057   1.2    simonb 		wl->wl_inohashcnt--;
   2058   1.2    simonb 		LIST_REMOVE(wi, wi_hash);
   2059   1.2    simonb 		mutex_exit(&wl->wl_mtx);
   2060   1.2    simonb 
   2061   1.2    simonb 		pool_put(&wapbl_ino_pool, wi);
   2062   1.2    simonb 	} else {
   2063   1.2    simonb 		mutex_exit(&wl->wl_mtx);
   2064   1.2    simonb 	}
   2065   1.2    simonb }
   2066   1.2    simonb 
   2067   1.2    simonb /****************************************************************/
   2068   1.2    simonb 
   2069  1.71  riastrad /*
   2070  1.71  riastrad  * wapbl_transaction_inodes_len(wl)
   2071  1.71  riastrad  *
   2072  1.71  riastrad  *	Calculate the number of bytes required for inode registration
   2073  1.71  riastrad  *	log records in wl.
   2074  1.71  riastrad  */
   2075  1.30  uebayasi static inline size_t
   2076   1.2    simonb wapbl_transaction_inodes_len(struct wapbl *wl)
   2077   1.2    simonb {
   2078   1.2    simonb 	int blocklen = 1<<wl->wl_log_dev_bshift;
   2079   1.2    simonb 	int iph;
   2080   1.2    simonb 
   2081   1.2    simonb 	/* Calculate number of inodes described in a inodelist header */
   2082   1.2    simonb 	iph = (blocklen - offsetof(struct wapbl_wc_inodelist, wc_inodes)) /
   2083   1.2    simonb 	    sizeof(((struct wapbl_wc_inodelist *)0)->wc_inodes[0]);
   2084   1.2    simonb 
   2085   1.2    simonb 	KASSERT(iph > 0);
   2086   1.2    simonb 
   2087  1.39  christos 	return MAX(1, howmany(wl->wl_inohashcnt, iph)) * blocklen;
   2088   1.2    simonb }
   2089   1.2    simonb 
   2090   1.2    simonb 
   2091  1.71  riastrad /*
   2092  1.71  riastrad  * wapbl_transaction_len(wl)
   2093  1.71  riastrad  *
   2094  1.71  riastrad  *	Calculate number of bytes required for all log records in wl.
   2095  1.71  riastrad  */
   2096   1.2    simonb static size_t
   2097   1.2    simonb wapbl_transaction_len(struct wapbl *wl)
   2098   1.2    simonb {
   2099   1.2    simonb 	int blocklen = 1<<wl->wl_log_dev_bshift;
   2100   1.2    simonb 	size_t len;
   2101   1.2    simonb 	int bph;
   2102   1.2    simonb 
   2103   1.2    simonb 	/* Calculate number of blocks described in a blocklist header */
   2104   1.2    simonb 	bph = (blocklen - offsetof(struct wapbl_wc_blocklist, wc_blocks)) /
   2105   1.2    simonb 	    sizeof(((struct wapbl_wc_blocklist *)0)->wc_blocks[0]);
   2106   1.2    simonb 
   2107   1.2    simonb 	KASSERT(bph > 0);
   2108   1.2    simonb 
   2109   1.2    simonb 	len = wl->wl_bcount;
   2110  1.39  christos 	len += howmany(wl->wl_bufcount, bph) * blocklen;
   2111  1.39  christos 	len += howmany(wl->wl_dealloccnt, bph) * blocklen;
   2112   1.2    simonb 	len += wapbl_transaction_inodes_len(wl);
   2113   1.2    simonb 
   2114   1.2    simonb 	return len;
   2115   1.2    simonb }
   2116   1.2    simonb 
   2117   1.2    simonb /*
   2118  1.71  riastrad  * wapbl_cache_sync(wl, msg)
   2119  1.71  riastrad  *
   2120  1.71  riastrad  *	Issue DIOCCACHESYNC to wl->wl_devvp.
   2121  1.71  riastrad  *
   2122  1.71  riastrad  *	If sysctl(vfs.wapbl.verbose_commit) >= 2, print a message
   2123  1.71  riastrad  *	including msg about the duration of the cache sync.
   2124  1.48      yamt  */
   2125  1.48      yamt static int
   2126  1.48      yamt wapbl_cache_sync(struct wapbl *wl, const char *msg)
   2127  1.48      yamt {
   2128  1.48      yamt 	const bool verbose = wapbl_verbose_commit >= 2;
   2129  1.48      yamt 	struct bintime start_time;
   2130  1.48      yamt 	int force = 1;
   2131  1.48      yamt 	int error;
   2132  1.48      yamt 
   2133  1.48      yamt 	if (!wapbl_flush_disk_cache) {
   2134  1.48      yamt 		return 0;
   2135  1.48      yamt 	}
   2136  1.48      yamt 	if (verbose) {
   2137  1.48      yamt 		bintime(&start_time);
   2138  1.48      yamt 	}
   2139  1.48      yamt 	error = VOP_IOCTL(wl->wl_devvp, DIOCCACHESYNC, &force,
   2140  1.48      yamt 	    FWRITE, FSCRED);
   2141  1.48      yamt 	if (error) {
   2142  1.48      yamt 		WAPBL_PRINTF(WAPBL_PRINT_ERROR,
   2143  1.48      yamt 		    ("wapbl_cache_sync: DIOCCACHESYNC on dev 0x%x "
   2144  1.48      yamt 		    "returned %d\n", wl->wl_devvp->v_rdev, error));
   2145  1.48      yamt 	}
   2146  1.48      yamt 	if (verbose) {
   2147  1.48      yamt 		struct bintime d;
   2148  1.48      yamt 		struct timespec ts;
   2149  1.48      yamt 
   2150  1.48      yamt 		bintime(&d);
   2151  1.48      yamt 		bintime_sub(&d, &start_time);
   2152  1.48      yamt 		bintime2timespec(&d, &ts);
   2153  1.48      yamt 		printf("wapbl_cache_sync: %s: dev 0x%jx %ju.%09lu\n",
   2154  1.48      yamt 		    msg, (uintmax_t)wl->wl_devvp->v_rdev,
   2155  1.48      yamt 		    (uintmax_t)ts.tv_sec, ts.tv_nsec);
   2156  1.48      yamt 	}
   2157  1.48      yamt 	return error;
   2158  1.48      yamt }
   2159  1.48      yamt 
   2160  1.48      yamt /*
   2161  1.71  riastrad  * wapbl_write_commit(wl, head, tail)
   2162  1.71  riastrad  *
   2163  1.71  riastrad  *	Issue a disk cache sync to wait for all pending writes to the
   2164  1.71  riastrad  *	log to complete, and then synchronously commit the current
   2165  1.71  riastrad  *	circular queue head and tail to the log, in the next of two
   2166  1.71  riastrad  *	locations for commit headers on disk.
   2167   1.2    simonb  *
   2168  1.71  riastrad  *	Increment the generation number.  If the generation number
   2169  1.71  riastrad  *	rolls over to zero, then a subsequent commit would appear to
   2170  1.71  riastrad  *	have an older generation than this one -- in that case, issue a
   2171  1.71  riastrad  *	duplicate commit to avoid this.
   2172  1.71  riastrad  *
   2173  1.71  riastrad  *	=> Caller must have exclusive access to wl, either by holding
   2174  1.71  riastrad  *	wl->wl_rwlock for writer or by being wapbl_start before anyone
   2175  1.71  riastrad  *	else has seen wl.
   2176   1.2    simonb  */
   2177   1.2    simonb static int
   2178   1.2    simonb wapbl_write_commit(struct wapbl *wl, off_t head, off_t tail)
   2179   1.2    simonb {
   2180   1.2    simonb 	struct wapbl_wc_header *wc = wl->wl_wc_header;
   2181   1.2    simonb 	struct timespec ts;
   2182   1.2    simonb 	int error;
   2183  1.34   mlelstv 	daddr_t pbn;
   2184   1.2    simonb 
   2185  1.54   hannken 	error = wapbl_buffered_flush(wl);
   2186  1.54   hannken 	if (error)
   2187  1.54   hannken 		return error;
   2188  1.49      yamt 	/*
   2189  1.49      yamt 	 * flush disk cache to ensure that blocks we've written are actually
   2190  1.49      yamt 	 * written to the stable storage before the commit header.
   2191  1.49      yamt 	 *
   2192  1.49      yamt 	 * XXX Calc checksum here, instead we do this for now
   2193  1.49      yamt 	 */
   2194  1.48      yamt 	wapbl_cache_sync(wl, "1");
   2195   1.2    simonb 
   2196   1.2    simonb 	wc->wc_head = head;
   2197   1.2    simonb 	wc->wc_tail = tail;
   2198   1.2    simonb 	wc->wc_checksum = 0;
   2199   1.2    simonb 	wc->wc_version = 1;
   2200   1.2    simonb 	getnanotime(&ts);
   2201  1.17      yamt 	wc->wc_time = ts.tv_sec;
   2202   1.2    simonb 	wc->wc_timensec = ts.tv_nsec;
   2203   1.2    simonb 
   2204   1.2    simonb 	WAPBL_PRINTF(WAPBL_PRINT_WRITE,
   2205   1.2    simonb 	    ("wapbl_write_commit: head = %"PRIdMAX "tail = %"PRIdMAX"\n",
   2206   1.2    simonb 	    (intmax_t)head, (intmax_t)tail));
   2207   1.2    simonb 
   2208   1.2    simonb 	/*
   2209  1.49      yamt 	 * write the commit header.
   2210  1.49      yamt 	 *
   2211   1.2    simonb 	 * XXX if generation will rollover, then first zero
   2212   1.2    simonb 	 * over second commit header before trying to write both headers.
   2213   1.2    simonb 	 */
   2214   1.2    simonb 
   2215  1.34   mlelstv 	pbn = wl->wl_logpbn + (wc->wc_generation % 2);
   2216  1.34   mlelstv #ifdef _KERNEL
   2217  1.34   mlelstv 	pbn = btodb(pbn << wc->wc_log_dev_bshift);
   2218  1.34   mlelstv #endif
   2219  1.54   hannken 	error = wapbl_buffered_write(wc, wc->wc_len, wl, pbn);
   2220  1.54   hannken 	if (error)
   2221  1.54   hannken 		return error;
   2222  1.54   hannken 	error = wapbl_buffered_flush(wl);
   2223   1.2    simonb 	if (error)
   2224   1.2    simonb 		return error;
   2225   1.2    simonb 
   2226  1.49      yamt 	/*
   2227  1.49      yamt 	 * flush disk cache to ensure that the commit header is actually
   2228  1.49      yamt 	 * written before meta data blocks.
   2229  1.49      yamt 	 */
   2230  1.48      yamt 	wapbl_cache_sync(wl, "2");
   2231   1.2    simonb 
   2232   1.2    simonb 	/*
   2233   1.2    simonb 	 * If the generation number was zero, write it out a second time.
   2234   1.2    simonb 	 * This handles initialization and generation number rollover
   2235   1.2    simonb 	 */
   2236   1.2    simonb 	if (wc->wc_generation++ == 0) {
   2237   1.2    simonb 		error = wapbl_write_commit(wl, head, tail);
   2238   1.2    simonb 		/*
   2239   1.2    simonb 		 * This panic should be able to be removed if we do the
   2240   1.2    simonb 		 * zero'ing mentioned above, and we are certain to roll
   2241   1.2    simonb 		 * back generation number on failure.
   2242   1.2    simonb 		 */
   2243   1.2    simonb 		if (error)
   2244   1.2    simonb 			panic("wapbl_write_commit: error writing duplicate "
   2245  1.66  riastrad 			      "log header: %d", error);
   2246   1.2    simonb 	}
   2247   1.2    simonb 	return 0;
   2248   1.2    simonb }
   2249   1.2    simonb 
   2250  1.71  riastrad /*
   2251  1.71  riastrad  * wapbl_write_blocks(wl, offp)
   2252  1.71  riastrad  *
   2253  1.71  riastrad  *	Write all pending physical blocks in the current transaction
   2254  1.71  riastrad  *	from wapbl_add_buf to the log on disk, adding to the circular
   2255  1.71  riastrad  *	queue head at byte offset *offp, and returning the new head's
   2256  1.71  riastrad  *	byte offset in *offp.
   2257  1.71  riastrad  */
   2258   1.2    simonb static int
   2259   1.2    simonb wapbl_write_blocks(struct wapbl *wl, off_t *offp)
   2260   1.2    simonb {
   2261   1.2    simonb 	struct wapbl_wc_blocklist *wc =
   2262   1.2    simonb 	    (struct wapbl_wc_blocklist *)wl->wl_wc_scratch;
   2263   1.2    simonb 	int blocklen = 1<<wl->wl_log_dev_bshift;
   2264   1.2    simonb 	int bph;
   2265   1.2    simonb 	struct buf *bp;
   2266   1.2    simonb 	off_t off = *offp;
   2267   1.2    simonb 	int error;
   2268   1.7     joerg 	size_t padding;
   2269   1.2    simonb 
   2270   1.2    simonb 	KASSERT(rw_write_held(&wl->wl_rwlock));
   2271   1.2    simonb 
   2272   1.2    simonb 	bph = (blocklen - offsetof(struct wapbl_wc_blocklist, wc_blocks)) /
   2273   1.2    simonb 	    sizeof(((struct wapbl_wc_blocklist *)0)->wc_blocks[0]);
   2274   1.2    simonb 
   2275   1.2    simonb 	bp = LIST_FIRST(&wl->wl_bufs);
   2276   1.2    simonb 
   2277   1.2    simonb 	while (bp) {
   2278   1.2    simonb 		int cnt;
   2279   1.2    simonb 		struct buf *obp = bp;
   2280   1.2    simonb 
   2281   1.2    simonb 		KASSERT(bp->b_flags & B_LOCKED);
   2282   1.2    simonb 
   2283   1.2    simonb 		wc->wc_type = WAPBL_WC_BLOCKS;
   2284   1.2    simonb 		wc->wc_len = blocklen;
   2285   1.2    simonb 		wc->wc_blkcount = 0;
   2286   1.2    simonb 		while (bp && (wc->wc_blkcount < bph)) {
   2287   1.2    simonb 			/*
   2288   1.2    simonb 			 * Make sure all the physical block numbers are up to
   2289   1.2    simonb 			 * date.  If this is not always true on a given
   2290   1.2    simonb 			 * filesystem, then VOP_BMAP must be called.  We
   2291   1.2    simonb 			 * could call VOP_BMAP here, or else in the filesystem
   2292   1.2    simonb 			 * specific flush callback, although neither of those
   2293   1.2    simonb 			 * solutions allow us to take the vnode lock.  If a
   2294   1.2    simonb 			 * filesystem requires that we must take the vnode lock
   2295   1.2    simonb 			 * to call VOP_BMAP, then we can probably do it in
   2296   1.2    simonb 			 * bwrite when the vnode lock should already be held
   2297   1.2    simonb 			 * by the invoking code.
   2298   1.2    simonb 			 */
   2299   1.2    simonb 			KASSERT((bp->b_vp->v_type == VBLK) ||
   2300   1.2    simonb 				 (bp->b_blkno != bp->b_lblkno));
   2301   1.2    simonb 			KASSERT(bp->b_blkno > 0);
   2302   1.2    simonb 
   2303   1.2    simonb 			wc->wc_blocks[wc->wc_blkcount].wc_daddr = bp->b_blkno;
   2304   1.2    simonb 			wc->wc_blocks[wc->wc_blkcount].wc_dlen = bp->b_bcount;
   2305   1.2    simonb 			wc->wc_len += bp->b_bcount;
   2306   1.2    simonb 			wc->wc_blkcount++;
   2307   1.2    simonb 			bp = LIST_NEXT(bp, b_wapbllist);
   2308   1.2    simonb 		}
   2309   1.7     joerg 		if (wc->wc_len % blocklen != 0) {
   2310   1.7     joerg 			padding = blocklen - wc->wc_len % blocklen;
   2311   1.7     joerg 			wc->wc_len += padding;
   2312   1.7     joerg 		} else {
   2313   1.7     joerg 			padding = 0;
   2314   1.7     joerg 		}
   2315   1.7     joerg 
   2316   1.2    simonb 		WAPBL_PRINTF(WAPBL_PRINT_WRITE,
   2317   1.7     joerg 		    ("wapbl_write_blocks: len = %u (padding %zu) off = %"PRIdMAX"\n",
   2318   1.7     joerg 		    wc->wc_len, padding, (intmax_t)off));
   2319   1.2    simonb 
   2320   1.2    simonb 		error = wapbl_circ_write(wl, wc, blocklen, &off);
   2321   1.2    simonb 		if (error)
   2322   1.2    simonb 			return error;
   2323   1.2    simonb 		bp = obp;
   2324   1.2    simonb 		cnt = 0;
   2325   1.2    simonb 		while (bp && (cnt++ < bph)) {
   2326   1.2    simonb 			error = wapbl_circ_write(wl, bp->b_data,
   2327   1.2    simonb 			    bp->b_bcount, &off);
   2328   1.2    simonb 			if (error)
   2329   1.2    simonb 				return error;
   2330   1.2    simonb 			bp = LIST_NEXT(bp, b_wapbllist);
   2331   1.2    simonb 		}
   2332   1.7     joerg 		if (padding) {
   2333   1.7     joerg 			void *zero;
   2334   1.7     joerg 
   2335  1.51      para 			zero = wapbl_alloc(padding);
   2336   1.7     joerg 			memset(zero, 0, padding);
   2337   1.7     joerg 			error = wapbl_circ_write(wl, zero, padding, &off);
   2338  1.18      yamt 			wapbl_free(zero, padding);
   2339   1.7     joerg 			if (error)
   2340   1.7     joerg 				return error;
   2341   1.7     joerg 		}
   2342   1.2    simonb 	}
   2343   1.2    simonb 	*offp = off;
   2344   1.2    simonb 	return 0;
   2345   1.2    simonb }
   2346   1.2    simonb 
   2347  1.71  riastrad /*
   2348  1.71  riastrad  * wapbl_write_revocations(wl, offp)
   2349  1.71  riastrad  *
   2350  1.71  riastrad  *	Write all pending deallocations in the current transaction from
   2351  1.71  riastrad  *	wapbl_register_deallocation to the log on disk, adding to the
   2352  1.71  riastrad  *	circular queue's head at byte offset *offp, and returning the
   2353  1.71  riastrad  *	new head's byte offset in *offp.
   2354  1.71  riastrad  */
   2355   1.2    simonb static int
   2356   1.2    simonb wapbl_write_revocations(struct wapbl *wl, off_t *offp)
   2357   1.2    simonb {
   2358   1.2    simonb 	struct wapbl_wc_blocklist *wc =
   2359   1.2    simonb 	    (struct wapbl_wc_blocklist *)wl->wl_wc_scratch;
   2360   1.2    simonb 	int i;
   2361   1.2    simonb 	int blocklen = 1<<wl->wl_log_dev_bshift;
   2362   1.2    simonb 	int bph;
   2363   1.2    simonb 	off_t off = *offp;
   2364   1.2    simonb 	int error;
   2365   1.2    simonb 
   2366   1.2    simonb 	if (wl->wl_dealloccnt == 0)
   2367   1.2    simonb 		return 0;
   2368   1.2    simonb 
   2369   1.2    simonb 	bph = (blocklen - offsetof(struct wapbl_wc_blocklist, wc_blocks)) /
   2370   1.2    simonb 	    sizeof(((struct wapbl_wc_blocklist *)0)->wc_blocks[0]);
   2371   1.2    simonb 
   2372   1.2    simonb 	i = 0;
   2373   1.2    simonb 	while (i < wl->wl_dealloccnt) {
   2374   1.2    simonb 		wc->wc_type = WAPBL_WC_REVOCATIONS;
   2375   1.2    simonb 		wc->wc_len = blocklen;
   2376   1.2    simonb 		wc->wc_blkcount = 0;
   2377   1.2    simonb 		while ((i < wl->wl_dealloccnt) && (wc->wc_blkcount < bph)) {
   2378   1.2    simonb 			wc->wc_blocks[wc->wc_blkcount].wc_daddr =
   2379   1.2    simonb 			    wl->wl_deallocblks[i];
   2380   1.2    simonb 			wc->wc_blocks[wc->wc_blkcount].wc_dlen =
   2381   1.2    simonb 			    wl->wl_dealloclens[i];
   2382   1.2    simonb 			wc->wc_blkcount++;
   2383   1.2    simonb 			i++;
   2384   1.2    simonb 		}
   2385   1.2    simonb 		WAPBL_PRINTF(WAPBL_PRINT_WRITE,
   2386   1.2    simonb 		    ("wapbl_write_revocations: len = %u off = %"PRIdMAX"\n",
   2387   1.2    simonb 		    wc->wc_len, (intmax_t)off));
   2388   1.2    simonb 		error = wapbl_circ_write(wl, wc, blocklen, &off);
   2389   1.2    simonb 		if (error)
   2390   1.2    simonb 			return error;
   2391   1.2    simonb 	}
   2392   1.2    simonb 	*offp = off;
   2393   1.2    simonb 	return 0;
   2394   1.2    simonb }
   2395   1.2    simonb 
   2396  1.71  riastrad /*
   2397  1.71  riastrad  * wapbl_write_inodes(wl, offp)
   2398  1.71  riastrad  *
   2399  1.71  riastrad  *	Write all pending inode allocations in the current transaction
   2400  1.71  riastrad  *	from wapbl_register_inode to the log on disk, adding to the
   2401  1.71  riastrad  *	circular queue's head at byte offset *offp and returning the
   2402  1.71  riastrad  *	new head's byte offset in *offp.
   2403  1.71  riastrad  */
   2404   1.2    simonb static int
   2405   1.2    simonb wapbl_write_inodes(struct wapbl *wl, off_t *offp)
   2406   1.2    simonb {
   2407   1.2    simonb 	struct wapbl_wc_inodelist *wc =
   2408   1.2    simonb 	    (struct wapbl_wc_inodelist *)wl->wl_wc_scratch;
   2409   1.2    simonb 	int i;
   2410  1.14     joerg 	int blocklen = 1 << wl->wl_log_dev_bshift;
   2411   1.2    simonb 	off_t off = *offp;
   2412   1.2    simonb 	int error;
   2413   1.2    simonb 
   2414   1.2    simonb 	struct wapbl_ino_head *wih;
   2415   1.2    simonb 	struct wapbl_ino *wi;
   2416   1.2    simonb 	int iph;
   2417   1.2    simonb 
   2418   1.2    simonb 	iph = (blocklen - offsetof(struct wapbl_wc_inodelist, wc_inodes)) /
   2419   1.2    simonb 	    sizeof(((struct wapbl_wc_inodelist *)0)->wc_inodes[0]);
   2420   1.2    simonb 
   2421   1.2    simonb 	i = 0;
   2422   1.2    simonb 	wih = &wl->wl_inohash[0];
   2423   1.2    simonb 	wi = 0;
   2424   1.2    simonb 	do {
   2425   1.2    simonb 		wc->wc_type = WAPBL_WC_INODES;
   2426   1.2    simonb 		wc->wc_len = blocklen;
   2427   1.2    simonb 		wc->wc_inocnt = 0;
   2428   1.2    simonb 		wc->wc_clear = (i == 0);
   2429   1.2    simonb 		while ((i < wl->wl_inohashcnt) && (wc->wc_inocnt < iph)) {
   2430   1.2    simonb 			while (!wi) {
   2431   1.2    simonb 				KASSERT((wih - &wl->wl_inohash[0])
   2432   1.2    simonb 				    <= wl->wl_inohashmask);
   2433   1.2    simonb 				wi = LIST_FIRST(wih++);
   2434   1.2    simonb 			}
   2435   1.2    simonb 			wc->wc_inodes[wc->wc_inocnt].wc_inumber = wi->wi_ino;
   2436   1.2    simonb 			wc->wc_inodes[wc->wc_inocnt].wc_imode = wi->wi_mode;
   2437   1.2    simonb 			wc->wc_inocnt++;
   2438   1.2    simonb 			i++;
   2439   1.2    simonb 			wi = LIST_NEXT(wi, wi_hash);
   2440   1.2    simonb 		}
   2441   1.2    simonb 		WAPBL_PRINTF(WAPBL_PRINT_WRITE,
   2442   1.2    simonb 		    ("wapbl_write_inodes: len = %u off = %"PRIdMAX"\n",
   2443   1.2    simonb 		    wc->wc_len, (intmax_t)off));
   2444   1.2    simonb 		error = wapbl_circ_write(wl, wc, blocklen, &off);
   2445   1.2    simonb 		if (error)
   2446   1.2    simonb 			return error;
   2447   1.2    simonb 	} while (i < wl->wl_inohashcnt);
   2448   1.2    simonb 
   2449   1.2    simonb 	*offp = off;
   2450   1.2    simonb 	return 0;
   2451   1.2    simonb }
   2452   1.2    simonb 
   2453   1.2    simonb #endif /* _KERNEL */
   2454   1.2    simonb 
   2455   1.2    simonb /****************************************************************/
   2456   1.2    simonb 
   2457   1.2    simonb struct wapbl_blk {
   2458   1.2    simonb 	LIST_ENTRY(wapbl_blk) wb_hash;
   2459   1.2    simonb 	daddr_t wb_blk;
   2460   1.2    simonb 	off_t wb_off; /* Offset of this block in the log */
   2461   1.2    simonb };
   2462   1.2    simonb #define	WAPBL_BLKPOOL_MIN 83
   2463   1.2    simonb 
   2464   1.2    simonb static void
   2465   1.2    simonb wapbl_blkhash_init(struct wapbl_replay *wr, u_int size)
   2466   1.2    simonb {
   2467   1.2    simonb 	if (size < WAPBL_BLKPOOL_MIN)
   2468   1.2    simonb 		size = WAPBL_BLKPOOL_MIN;
   2469   1.2    simonb 	KASSERT(wr->wr_blkhash == 0);
   2470   1.2    simonb #ifdef _KERNEL
   2471   1.2    simonb 	wr->wr_blkhash = hashinit(size, HASH_LIST, true, &wr->wr_blkhashmask);
   2472   1.2    simonb #else /* ! _KERNEL */
   2473   1.2    simonb 	/* Manually implement hashinit */
   2474   1.2    simonb 	{
   2475  1.25     lukem 		unsigned long i, hashsize;
   2476   1.2    simonb 		for (hashsize = 1; hashsize < size; hashsize <<= 1)
   2477   1.2    simonb 			continue;
   2478  1.51      para 		wr->wr_blkhash = wapbl_alloc(hashsize * sizeof(*wr->wr_blkhash));
   2479  1.37  drochner 		for (i = 0; i < hashsize; i++)
   2480   1.2    simonb 			LIST_INIT(&wr->wr_blkhash[i]);
   2481   1.2    simonb 		wr->wr_blkhashmask = hashsize - 1;
   2482   1.2    simonb 	}
   2483   1.2    simonb #endif /* ! _KERNEL */
   2484   1.2    simonb }
   2485   1.2    simonb 
   2486   1.2    simonb static void
   2487   1.2    simonb wapbl_blkhash_free(struct wapbl_replay *wr)
   2488   1.2    simonb {
   2489   1.2    simonb 	KASSERT(wr->wr_blkhashcnt == 0);
   2490   1.2    simonb #ifdef _KERNEL
   2491   1.2    simonb 	hashdone(wr->wr_blkhash, HASH_LIST, wr->wr_blkhashmask);
   2492   1.2    simonb #else /* ! _KERNEL */
   2493  1.18      yamt 	wapbl_free(wr->wr_blkhash,
   2494  1.18      yamt 	    (wr->wr_blkhashmask + 1) * sizeof(*wr->wr_blkhash));
   2495   1.2    simonb #endif /* ! _KERNEL */
   2496   1.2    simonb }
   2497   1.2    simonb 
   2498   1.2    simonb static struct wapbl_blk *
   2499   1.2    simonb wapbl_blkhash_get(struct wapbl_replay *wr, daddr_t blk)
   2500   1.2    simonb {
   2501   1.2    simonb 	struct wapbl_blk_head *wbh;
   2502   1.2    simonb 	struct wapbl_blk *wb;
   2503   1.2    simonb 	wbh = &wr->wr_blkhash[blk & wr->wr_blkhashmask];
   2504   1.2    simonb 	LIST_FOREACH(wb, wbh, wb_hash) {
   2505   1.2    simonb 		if (blk == wb->wb_blk)
   2506   1.2    simonb 			return wb;
   2507   1.2    simonb 	}
   2508   1.2    simonb 	return 0;
   2509   1.2    simonb }
   2510   1.2    simonb 
   2511   1.2    simonb static void
   2512   1.2    simonb wapbl_blkhash_ins(struct wapbl_replay *wr, daddr_t blk, off_t off)
   2513   1.2    simonb {
   2514   1.2    simonb 	struct wapbl_blk_head *wbh;
   2515   1.2    simonb 	struct wapbl_blk *wb;
   2516   1.2    simonb 	wb = wapbl_blkhash_get(wr, blk);
   2517   1.2    simonb 	if (wb) {
   2518   1.2    simonb 		KASSERT(wb->wb_blk == blk);
   2519   1.2    simonb 		wb->wb_off = off;
   2520   1.2    simonb 	} else {
   2521  1.51      para 		wb = wapbl_alloc(sizeof(*wb));
   2522   1.2    simonb 		wb->wb_blk = blk;
   2523   1.2    simonb 		wb->wb_off = off;
   2524   1.2    simonb 		wbh = &wr->wr_blkhash[blk & wr->wr_blkhashmask];
   2525   1.2    simonb 		LIST_INSERT_HEAD(wbh, wb, wb_hash);
   2526   1.2    simonb 		wr->wr_blkhashcnt++;
   2527   1.2    simonb 	}
   2528   1.2    simonb }
   2529   1.2    simonb 
   2530   1.2    simonb static void
   2531   1.2    simonb wapbl_blkhash_rem(struct wapbl_replay *wr, daddr_t blk)
   2532   1.2    simonb {
   2533   1.2    simonb 	struct wapbl_blk *wb = wapbl_blkhash_get(wr, blk);
   2534   1.2    simonb 	if (wb) {
   2535   1.2    simonb 		KASSERT(wr->wr_blkhashcnt > 0);
   2536   1.2    simonb 		wr->wr_blkhashcnt--;
   2537   1.2    simonb 		LIST_REMOVE(wb, wb_hash);
   2538  1.18      yamt 		wapbl_free(wb, sizeof(*wb));
   2539   1.2    simonb 	}
   2540   1.2    simonb }
   2541   1.2    simonb 
   2542   1.2    simonb static void
   2543   1.2    simonb wapbl_blkhash_clear(struct wapbl_replay *wr)
   2544   1.2    simonb {
   2545  1.25     lukem 	unsigned long i;
   2546   1.2    simonb 	for (i = 0; i <= wr->wr_blkhashmask; i++) {
   2547   1.2    simonb 		struct wapbl_blk *wb;
   2548   1.2    simonb 
   2549   1.2    simonb 		while ((wb = LIST_FIRST(&wr->wr_blkhash[i]))) {
   2550   1.2    simonb 			KASSERT(wr->wr_blkhashcnt > 0);
   2551   1.2    simonb 			wr->wr_blkhashcnt--;
   2552   1.2    simonb 			LIST_REMOVE(wb, wb_hash);
   2553  1.18      yamt 			wapbl_free(wb, sizeof(*wb));
   2554   1.2    simonb 		}
   2555   1.2    simonb 	}
   2556   1.2    simonb 	KASSERT(wr->wr_blkhashcnt == 0);
   2557   1.2    simonb }
   2558   1.2    simonb 
   2559   1.2    simonb /****************************************************************/
   2560   1.2    simonb 
   2561  1.71  riastrad /*
   2562  1.71  riastrad  * wapbl_circ_read(wr, data, len, offp)
   2563  1.71  riastrad  *
   2564  1.71  riastrad  *	Read len bytes into data from the circular queue of wr,
   2565  1.71  riastrad  *	starting at the linear byte offset *offp, and returning the new
   2566  1.71  riastrad  *	linear byte offset in *offp.
   2567  1.71  riastrad  *
   2568  1.71  riastrad  *	If the starting linear byte offset precedes wr->wr_circ_off,
   2569  1.71  riastrad  *	the read instead begins at wr->wr_circ_off.  XXX WTF?  This
   2570  1.71  riastrad  *	should be a KASSERT, not a conditional.
   2571  1.71  riastrad  */
   2572   1.2    simonb static int
   2573   1.2    simonb wapbl_circ_read(struct wapbl_replay *wr, void *data, size_t len, off_t *offp)
   2574   1.2    simonb {
   2575   1.2    simonb 	size_t slen;
   2576   1.2    simonb 	off_t off = *offp;
   2577   1.2    simonb 	int error;
   2578  1.34   mlelstv 	daddr_t pbn;
   2579   1.2    simonb 
   2580  1.14     joerg 	KASSERT(((len >> wr->wr_log_dev_bshift) <<
   2581  1.14     joerg 	    wr->wr_log_dev_bshift) == len);
   2582  1.34   mlelstv 
   2583  1.14     joerg 	if (off < wr->wr_circ_off)
   2584  1.14     joerg 		off = wr->wr_circ_off;
   2585  1.14     joerg 	slen = wr->wr_circ_off + wr->wr_circ_size - off;
   2586   1.2    simonb 	if (slen < len) {
   2587  1.34   mlelstv 		pbn = wr->wr_logpbn + (off >> wr->wr_log_dev_bshift);
   2588  1.34   mlelstv #ifdef _KERNEL
   2589  1.34   mlelstv 		pbn = btodb(pbn << wr->wr_log_dev_bshift);
   2590  1.34   mlelstv #endif
   2591  1.34   mlelstv 		error = wapbl_read(data, slen, wr->wr_devvp, pbn);
   2592   1.2    simonb 		if (error)
   2593   1.2    simonb 			return error;
   2594   1.2    simonb 		data = (uint8_t *)data + slen;
   2595   1.2    simonb 		len -= slen;
   2596  1.14     joerg 		off = wr->wr_circ_off;
   2597   1.2    simonb 	}
   2598  1.34   mlelstv 	pbn = wr->wr_logpbn + (off >> wr->wr_log_dev_bshift);
   2599  1.34   mlelstv #ifdef _KERNEL
   2600  1.34   mlelstv 	pbn = btodb(pbn << wr->wr_log_dev_bshift);
   2601  1.34   mlelstv #endif
   2602  1.34   mlelstv 	error = wapbl_read(data, len, wr->wr_devvp, pbn);
   2603   1.2    simonb 	if (error)
   2604   1.2    simonb 		return error;
   2605   1.2    simonb 	off += len;
   2606  1.14     joerg 	if (off >= wr->wr_circ_off + wr->wr_circ_size)
   2607  1.14     joerg 		off = wr->wr_circ_off;
   2608   1.2    simonb 	*offp = off;
   2609   1.2    simonb 	return 0;
   2610   1.2    simonb }
   2611   1.2    simonb 
   2612  1.71  riastrad /*
   2613  1.71  riastrad  * wapbl_circ_advance(wr, len, offp)
   2614  1.71  riastrad  *
   2615  1.71  riastrad  *	Compute the linear byte offset of the circular queue of wr that
   2616  1.71  riastrad  *	is len bytes past *offp, and store it in *offp.
   2617  1.71  riastrad  *
   2618  1.71  riastrad  *	This is as if wapbl_circ_read, but without actually reading
   2619  1.71  riastrad  *	anything.
   2620  1.71  riastrad  *
   2621  1.71  riastrad  *	If the starting linear byte offset precedes wr->wr_circ_off, it
   2622  1.71  riastrad  *	is taken to be wr->wr_circ_off instead.  XXX WTF?  This should
   2623  1.71  riastrad  *	be a KASSERT, not a conditional.
   2624  1.71  riastrad  */
   2625   1.2    simonb static void
   2626   1.2    simonb wapbl_circ_advance(struct wapbl_replay *wr, size_t len, off_t *offp)
   2627   1.2    simonb {
   2628   1.2    simonb 	size_t slen;
   2629   1.2    simonb 	off_t off = *offp;
   2630   1.2    simonb 
   2631  1.14     joerg 	KASSERT(((len >> wr->wr_log_dev_bshift) <<
   2632  1.14     joerg 	    wr->wr_log_dev_bshift) == len);
   2633   1.2    simonb 
   2634  1.14     joerg 	if (off < wr->wr_circ_off)
   2635  1.14     joerg 		off = wr->wr_circ_off;
   2636  1.14     joerg 	slen = wr->wr_circ_off + wr->wr_circ_size - off;
   2637   1.2    simonb 	if (slen < len) {
   2638   1.2    simonb 		len -= slen;
   2639  1.14     joerg 		off = wr->wr_circ_off;
   2640   1.2    simonb 	}
   2641   1.2    simonb 	off += len;
   2642  1.14     joerg 	if (off >= wr->wr_circ_off + wr->wr_circ_size)
   2643  1.14     joerg 		off = wr->wr_circ_off;
   2644   1.2    simonb 	*offp = off;
   2645   1.2    simonb }
   2646   1.2    simonb 
   2647   1.2    simonb /****************************************************************/
   2648   1.2    simonb 
   2649   1.2    simonb int
   2650   1.2    simonb wapbl_replay_start(struct wapbl_replay **wrp, struct vnode *vp,
   2651   1.2    simonb 	daddr_t off, size_t count, size_t blksize)
   2652   1.2    simonb {
   2653   1.2    simonb 	struct wapbl_replay *wr;
   2654   1.2    simonb 	int error;
   2655   1.2    simonb 	struct vnode *devvp;
   2656   1.2    simonb 	daddr_t logpbn;
   2657   1.2    simonb 	uint8_t *scratch;
   2658   1.2    simonb 	struct wapbl_wc_header *wch;
   2659   1.2    simonb 	struct wapbl_wc_header *wch2;
   2660   1.2    simonb 	/* Use this until we read the actual log header */
   2661  1.31   mlelstv 	int log_dev_bshift = ilog2(blksize);
   2662   1.2    simonb 	size_t used;
   2663  1.34   mlelstv 	daddr_t pbn;
   2664   1.2    simonb 
   2665   1.2    simonb 	WAPBL_PRINTF(WAPBL_PRINT_REPLAY,
   2666   1.2    simonb 	    ("wapbl_replay_start: vp=%p off=%"PRId64 " count=%zu blksize=%zu\n",
   2667   1.2    simonb 	    vp, off, count, blksize));
   2668   1.2    simonb 
   2669   1.2    simonb 	if (off < 0)
   2670   1.2    simonb 		return EINVAL;
   2671   1.2    simonb 
   2672   1.2    simonb 	if (blksize < DEV_BSIZE)
   2673   1.2    simonb 		return EINVAL;
   2674   1.2    simonb 	if (blksize % DEV_BSIZE)
   2675   1.2    simonb 		return EINVAL;
   2676   1.2    simonb 
   2677   1.2    simonb #ifdef _KERNEL
   2678   1.2    simonb #if 0
   2679   1.2    simonb 	/* XXX vp->v_size isn't reliably set for VBLK devices,
   2680   1.2    simonb 	 * especially root.  However, we might still want to verify
   2681   1.2    simonb 	 * that the full load is readable */
   2682   1.2    simonb 	if ((off + count) * blksize > vp->v_size)
   2683   1.2    simonb 		return EINVAL;
   2684   1.2    simonb #endif
   2685   1.2    simonb 	if ((error = VOP_BMAP(vp, off, &devvp, &logpbn, 0)) != 0) {
   2686   1.2    simonb 		return error;
   2687   1.2    simonb 	}
   2688   1.2    simonb #else /* ! _KERNEL */
   2689   1.2    simonb 	devvp = vp;
   2690   1.2    simonb 	logpbn = off;
   2691   1.2    simonb #endif /* ! _KERNEL */
   2692   1.2    simonb 
   2693  1.51      para 	scratch = wapbl_alloc(MAXBSIZE);
   2694   1.2    simonb 
   2695  1.34   mlelstv 	pbn = logpbn;
   2696  1.34   mlelstv #ifdef _KERNEL
   2697  1.34   mlelstv 	pbn = btodb(pbn << log_dev_bshift);
   2698  1.34   mlelstv #endif
   2699  1.34   mlelstv 	error = wapbl_read(scratch, 2<<log_dev_bshift, devvp, pbn);
   2700   1.2    simonb 	if (error)
   2701   1.2    simonb 		goto errout;
   2702   1.2    simonb 
   2703   1.2    simonb 	wch = (struct wapbl_wc_header *)scratch;
   2704   1.2    simonb 	wch2 =
   2705   1.2    simonb 	    (struct wapbl_wc_header *)(scratch + (1<<log_dev_bshift));
   2706   1.2    simonb 	/* XXX verify checksums and magic numbers */
   2707   1.2    simonb 	if (wch->wc_type != WAPBL_WC_HEADER) {
   2708   1.2    simonb 		printf("Unrecognized wapbl magic: 0x%08x\n", wch->wc_type);
   2709   1.2    simonb 		error = EFTYPE;
   2710   1.2    simonb 		goto errout;
   2711   1.2    simonb 	}
   2712   1.2    simonb 
   2713   1.2    simonb 	if (wch2->wc_generation > wch->wc_generation)
   2714   1.2    simonb 		wch = wch2;
   2715   1.2    simonb 
   2716   1.2    simonb 	wr = wapbl_calloc(1, sizeof(*wr));
   2717   1.2    simonb 
   2718   1.2    simonb 	wr->wr_logvp = vp;
   2719   1.2    simonb 	wr->wr_devvp = devvp;
   2720   1.2    simonb 	wr->wr_logpbn = logpbn;
   2721   1.2    simonb 
   2722   1.2    simonb 	wr->wr_scratch = scratch;
   2723   1.2    simonb 
   2724  1.14     joerg 	wr->wr_log_dev_bshift = wch->wc_log_dev_bshift;
   2725  1.14     joerg 	wr->wr_fs_dev_bshift = wch->wc_fs_dev_bshift;
   2726  1.14     joerg 	wr->wr_circ_off = wch->wc_circ_off;
   2727  1.14     joerg 	wr->wr_circ_size = wch->wc_circ_size;
   2728  1.14     joerg 	wr->wr_generation = wch->wc_generation;
   2729   1.2    simonb 
   2730   1.2    simonb 	used = wapbl_space_used(wch->wc_circ_size, wch->wc_head, wch->wc_tail);
   2731   1.2    simonb 
   2732   1.2    simonb 	WAPBL_PRINTF(WAPBL_PRINT_REPLAY,
   2733   1.2    simonb 	    ("wapbl_replay: head=%"PRId64" tail=%"PRId64" off=%"PRId64
   2734   1.2    simonb 	    " len=%"PRId64" used=%zu\n",
   2735   1.2    simonb 	    wch->wc_head, wch->wc_tail, wch->wc_circ_off,
   2736   1.2    simonb 	    wch->wc_circ_size, used));
   2737   1.2    simonb 
   2738   1.2    simonb 	wapbl_blkhash_init(wr, (used >> wch->wc_fs_dev_bshift));
   2739  1.11     joerg 
   2740  1.14     joerg 	error = wapbl_replay_process(wr, wch->wc_head, wch->wc_tail);
   2741   1.2    simonb 	if (error) {
   2742   1.2    simonb 		wapbl_replay_stop(wr);
   2743   1.2    simonb 		wapbl_replay_free(wr);
   2744   1.2    simonb 		return error;
   2745   1.2    simonb 	}
   2746   1.2    simonb 
   2747   1.2    simonb 	*wrp = wr;
   2748   1.2    simonb 	return 0;
   2749   1.2    simonb 
   2750   1.2    simonb  errout:
   2751  1.18      yamt 	wapbl_free(scratch, MAXBSIZE);
   2752   1.2    simonb 	return error;
   2753   1.2    simonb }
   2754   1.2    simonb 
   2755   1.2    simonb void
   2756   1.2    simonb wapbl_replay_stop(struct wapbl_replay *wr)
   2757   1.2    simonb {
   2758   1.2    simonb 
   2759   1.4     joerg 	if (!wapbl_replay_isopen(wr))
   2760   1.4     joerg 		return;
   2761   1.4     joerg 
   2762   1.2    simonb 	WAPBL_PRINTF(WAPBL_PRINT_REPLAY, ("wapbl_replay_stop called\n"));
   2763   1.2    simonb 
   2764  1.18      yamt 	wapbl_free(wr->wr_scratch, MAXBSIZE);
   2765  1.18      yamt 	wr->wr_scratch = NULL;
   2766   1.2    simonb 
   2767  1.18      yamt 	wr->wr_logvp = NULL;
   2768   1.2    simonb 
   2769   1.2    simonb 	wapbl_blkhash_clear(wr);
   2770   1.2    simonb 	wapbl_blkhash_free(wr);
   2771   1.2    simonb }
   2772   1.2    simonb 
   2773   1.2    simonb void
   2774   1.2    simonb wapbl_replay_free(struct wapbl_replay *wr)
   2775   1.2    simonb {
   2776   1.2    simonb 
   2777   1.2    simonb 	KDASSERT(!wapbl_replay_isopen(wr));
   2778   1.2    simonb 
   2779   1.2    simonb 	if (wr->wr_inodes)
   2780  1.18      yamt 		wapbl_free(wr->wr_inodes,
   2781  1.18      yamt 		    wr->wr_inodescnt * sizeof(wr->wr_inodes[0]));
   2782  1.18      yamt 	wapbl_free(wr, sizeof(*wr));
   2783   1.2    simonb }
   2784   1.2    simonb 
   2785   1.4     joerg #ifdef _KERNEL
   2786   1.2    simonb int
   2787   1.2    simonb wapbl_replay_isopen1(struct wapbl_replay *wr)
   2788   1.2    simonb {
   2789   1.2    simonb 
   2790   1.2    simonb 	return wapbl_replay_isopen(wr);
   2791   1.2    simonb }
   2792   1.4     joerg #endif
   2793   1.2    simonb 
   2794  1.62   mlelstv /*
   2795  1.62   mlelstv  * calculate the disk address for the i'th block in the wc_blockblist
   2796  1.62   mlelstv  * offset by j blocks of size blen.
   2797  1.62   mlelstv  *
   2798  1.62   mlelstv  * wc_daddr is always a kernel disk address in DEV_BSIZE units that
   2799  1.62   mlelstv  * was written to the journal.
   2800  1.62   mlelstv  *
   2801  1.62   mlelstv  * The kernel needs that address plus the offset in DEV_BSIZE units.
   2802  1.62   mlelstv  *
   2803  1.62   mlelstv  * Userland needs that address plus the offset in blen units.
   2804  1.62   mlelstv  *
   2805  1.62   mlelstv  */
   2806  1.62   mlelstv static daddr_t
   2807  1.62   mlelstv wapbl_block_daddr(struct wapbl_wc_blocklist *wc, int i, int j, int blen)
   2808  1.62   mlelstv {
   2809  1.62   mlelstv 	daddr_t pbn;
   2810  1.62   mlelstv 
   2811  1.62   mlelstv #ifdef _KERNEL
   2812  1.62   mlelstv 	pbn = wc->wc_blocks[i].wc_daddr + btodb(j * blen);
   2813  1.62   mlelstv #else
   2814  1.62   mlelstv 	pbn = dbtob(wc->wc_blocks[i].wc_daddr) / blen + j;
   2815  1.62   mlelstv #endif
   2816  1.62   mlelstv 
   2817  1.62   mlelstv 	return pbn;
   2818  1.62   mlelstv }
   2819  1.62   mlelstv 
   2820  1.10     joerg static void
   2821  1.10     joerg wapbl_replay_process_blocks(struct wapbl_replay *wr, off_t *offp)
   2822  1.10     joerg {
   2823  1.10     joerg 	struct wapbl_wc_blocklist *wc =
   2824  1.10     joerg 	    (struct wapbl_wc_blocklist *)wr->wr_scratch;
   2825  1.14     joerg 	int fsblklen = 1 << wr->wr_fs_dev_bshift;
   2826  1.10     joerg 	int i, j, n;
   2827  1.10     joerg 
   2828  1.10     joerg 	for (i = 0; i < wc->wc_blkcount; i++) {
   2829  1.10     joerg 		/*
   2830  1.10     joerg 		 * Enter each physical block into the hashtable independently.
   2831  1.10     joerg 		 */
   2832  1.14     joerg 		n = wc->wc_blocks[i].wc_dlen >> wr->wr_fs_dev_bshift;
   2833  1.10     joerg 		for (j = 0; j < n; j++) {
   2834  1.62   mlelstv 			wapbl_blkhash_ins(wr, wapbl_block_daddr(wc, i, j, fsblklen),
   2835  1.10     joerg 			    *offp);
   2836  1.10     joerg 			wapbl_circ_advance(wr, fsblklen, offp);
   2837  1.10     joerg 		}
   2838  1.10     joerg 	}
   2839  1.10     joerg }
   2840  1.10     joerg 
   2841  1.10     joerg static void
   2842  1.10     joerg wapbl_replay_process_revocations(struct wapbl_replay *wr)
   2843  1.10     joerg {
   2844  1.10     joerg 	struct wapbl_wc_blocklist *wc =
   2845  1.10     joerg 	    (struct wapbl_wc_blocklist *)wr->wr_scratch;
   2846  1.34   mlelstv 	int fsblklen = 1 << wr->wr_fs_dev_bshift;
   2847  1.10     joerg 	int i, j, n;
   2848  1.10     joerg 
   2849  1.10     joerg 	for (i = 0; i < wc->wc_blkcount; i++) {
   2850  1.10     joerg 		/*
   2851  1.10     joerg 		 * Remove any blocks found from the hashtable.
   2852  1.10     joerg 		 */
   2853  1.14     joerg 		n = wc->wc_blocks[i].wc_dlen >> wr->wr_fs_dev_bshift;
   2854  1.10     joerg 		for (j = 0; j < n; j++)
   2855  1.62   mlelstv 			wapbl_blkhash_rem(wr, wapbl_block_daddr(wc, i, j, fsblklen));
   2856  1.10     joerg 	}
   2857  1.10     joerg }
   2858  1.10     joerg 
   2859  1.10     joerg static void
   2860  1.10     joerg wapbl_replay_process_inodes(struct wapbl_replay *wr, off_t oldoff, off_t newoff)
   2861  1.10     joerg {
   2862  1.10     joerg 	struct wapbl_wc_inodelist *wc =
   2863  1.10     joerg 	    (struct wapbl_wc_inodelist *)wr->wr_scratch;
   2864  1.18      yamt 	void *new_inodes;
   2865  1.18      yamt 	const size_t oldsize = wr->wr_inodescnt * sizeof(wr->wr_inodes[0]);
   2866  1.18      yamt 
   2867  1.18      yamt 	KASSERT(sizeof(wr->wr_inodes[0]) == sizeof(wc->wc_inodes[0]));
   2868  1.18      yamt 
   2869  1.10     joerg 	/*
   2870  1.10     joerg 	 * Keep track of where we found this so location won't be
   2871  1.10     joerg 	 * overwritten.
   2872  1.10     joerg 	 */
   2873  1.10     joerg 	if (wc->wc_clear) {
   2874  1.10     joerg 		wr->wr_inodestail = oldoff;
   2875  1.10     joerg 		wr->wr_inodescnt = 0;
   2876  1.12     joerg 		if (wr->wr_inodes != NULL) {
   2877  1.18      yamt 			wapbl_free(wr->wr_inodes, oldsize);
   2878  1.12     joerg 			wr->wr_inodes = NULL;
   2879  1.12     joerg 		}
   2880  1.10     joerg 	}
   2881  1.10     joerg 	wr->wr_inodeshead = newoff;
   2882  1.10     joerg 	if (wc->wc_inocnt == 0)
   2883  1.10     joerg 		return;
   2884  1.10     joerg 
   2885  1.51      para 	new_inodes = wapbl_alloc((wr->wr_inodescnt + wc->wc_inocnt) *
   2886  1.18      yamt 	    sizeof(wr->wr_inodes[0]));
   2887  1.18      yamt 	if (wr->wr_inodes != NULL) {
   2888  1.18      yamt 		memcpy(new_inodes, wr->wr_inodes, oldsize);
   2889  1.18      yamt 		wapbl_free(wr->wr_inodes, oldsize);
   2890  1.18      yamt 	}
   2891  1.18      yamt 	wr->wr_inodes = new_inodes;
   2892  1.10     joerg 	memcpy(&wr->wr_inodes[wr->wr_inodescnt], wc->wc_inodes,
   2893  1.18      yamt 	    wc->wc_inocnt * sizeof(wr->wr_inodes[0]));
   2894  1.10     joerg 	wr->wr_inodescnt += wc->wc_inocnt;
   2895  1.10     joerg }
   2896  1.10     joerg 
   2897   1.2    simonb static int
   2898  1.14     joerg wapbl_replay_process(struct wapbl_replay *wr, off_t head, off_t tail)
   2899   1.2    simonb {
   2900   1.2    simonb 	off_t off;
   2901   1.2    simonb 	int error;
   2902   1.2    simonb 
   2903  1.14     joerg 	int logblklen = 1 << wr->wr_log_dev_bshift;
   2904   1.2    simonb 
   2905   1.2    simonb 	wapbl_blkhash_clear(wr);
   2906   1.2    simonb 
   2907  1.14     joerg 	off = tail;
   2908  1.14     joerg 	while (off != head) {
   2909   1.2    simonb 		struct wapbl_wc_null *wcn;
   2910   1.2    simonb 		off_t saveoff = off;
   2911   1.2    simonb 		error = wapbl_circ_read(wr, wr->wr_scratch, logblklen, &off);
   2912   1.2    simonb 		if (error)
   2913   1.2    simonb 			goto errout;
   2914   1.2    simonb 		wcn = (struct wapbl_wc_null *)wr->wr_scratch;
   2915   1.2    simonb 		switch (wcn->wc_type) {
   2916   1.2    simonb 		case WAPBL_WC_BLOCKS:
   2917  1.10     joerg 			wapbl_replay_process_blocks(wr, &off);
   2918   1.2    simonb 			break;
   2919   1.2    simonb 
   2920   1.2    simonb 		case WAPBL_WC_REVOCATIONS:
   2921  1.10     joerg 			wapbl_replay_process_revocations(wr);
   2922   1.2    simonb 			break;
   2923   1.2    simonb 
   2924   1.2    simonb 		case WAPBL_WC_INODES:
   2925  1.10     joerg 			wapbl_replay_process_inodes(wr, saveoff, off);
   2926   1.2    simonb 			break;
   2927  1.10     joerg 
   2928   1.2    simonb 		default:
   2929   1.2    simonb 			printf("Unrecognized wapbl type: 0x%08x\n",
   2930   1.2    simonb 			       wcn->wc_type);
   2931   1.2    simonb  			error = EFTYPE;
   2932   1.2    simonb 			goto errout;
   2933   1.2    simonb 		}
   2934   1.2    simonb 		wapbl_circ_advance(wr, wcn->wc_len, &saveoff);
   2935   1.2    simonb 		if (off != saveoff) {
   2936   1.2    simonb 			printf("wapbl_replay: corrupted records\n");
   2937   1.2    simonb 			error = EFTYPE;
   2938   1.2    simonb 			goto errout;
   2939   1.2    simonb 		}
   2940   1.2    simonb 	}
   2941   1.2    simonb 	return 0;
   2942   1.2    simonb 
   2943   1.2    simonb  errout:
   2944   1.2    simonb 	wapbl_blkhash_clear(wr);
   2945   1.2    simonb 	return error;
   2946   1.2    simonb }
   2947   1.2    simonb 
   2948  1.13     joerg #if 0
   2949   1.2    simonb int
   2950   1.2    simonb wapbl_replay_verify(struct wapbl_replay *wr, struct vnode *fsdevvp)
   2951   1.2    simonb {
   2952   1.2    simonb 	off_t off;
   2953   1.2    simonb 	int mismatchcnt = 0;
   2954  1.14     joerg 	int logblklen = 1 << wr->wr_log_dev_bshift;
   2955  1.14     joerg 	int fsblklen = 1 << wr->wr_fs_dev_bshift;
   2956  1.51      para 	void *scratch1 = wapbl_alloc(MAXBSIZE);
   2957  1.51      para 	void *scratch2 = wapbl_alloc(MAXBSIZE);
   2958   1.2    simonb 	int error = 0;
   2959   1.2    simonb 
   2960   1.2    simonb 	KDASSERT(wapbl_replay_isopen(wr));
   2961   1.2    simonb 
   2962   1.2    simonb 	off = wch->wc_tail;
   2963   1.2    simonb 	while (off != wch->wc_head) {
   2964   1.2    simonb 		struct wapbl_wc_null *wcn;
   2965   1.2    simonb #ifdef DEBUG
   2966   1.2    simonb 		off_t saveoff = off;
   2967   1.2    simonb #endif
   2968   1.2    simonb 		error = wapbl_circ_read(wr, wr->wr_scratch, logblklen, &off);
   2969   1.2    simonb 		if (error)
   2970   1.2    simonb 			goto out;
   2971   1.2    simonb 		wcn = (struct wapbl_wc_null *)wr->wr_scratch;
   2972   1.2    simonb 		switch (wcn->wc_type) {
   2973   1.2    simonb 		case WAPBL_WC_BLOCKS:
   2974   1.2    simonb 			{
   2975   1.2    simonb 				struct wapbl_wc_blocklist *wc =
   2976   1.2    simonb 				    (struct wapbl_wc_blocklist *)wr->wr_scratch;
   2977   1.2    simonb 				int i;
   2978   1.2    simonb 				for (i = 0; i < wc->wc_blkcount; i++) {
   2979   1.2    simonb 					int foundcnt = 0;
   2980   1.2    simonb 					int dirtycnt = 0;
   2981   1.2    simonb 					int j, n;
   2982   1.2    simonb 					/*
   2983   1.2    simonb 					 * Check each physical block into the
   2984   1.2    simonb 					 * hashtable independently
   2985   1.2    simonb 					 */
   2986   1.2    simonb 					n = wc->wc_blocks[i].wc_dlen >>
   2987   1.2    simonb 					    wch->wc_fs_dev_bshift;
   2988   1.2    simonb 					for (j = 0; j < n; j++) {
   2989   1.2    simonb 						struct wapbl_blk *wb =
   2990   1.2    simonb 						   wapbl_blkhash_get(wr,
   2991  1.62   mlelstv 						   wapbl_block_daddr(wc, i, j, fsblklen));
   2992   1.2    simonb 						if (wb && (wb->wb_off == off)) {
   2993   1.2    simonb 							foundcnt++;
   2994   1.2    simonb 							error =
   2995   1.2    simonb 							    wapbl_circ_read(wr,
   2996   1.2    simonb 							    scratch1, fsblklen,
   2997   1.2    simonb 							    &off);
   2998   1.2    simonb 							if (error)
   2999   1.2    simonb 								goto out;
   3000   1.2    simonb 							error =
   3001   1.2    simonb 							    wapbl_read(scratch2,
   3002   1.2    simonb 							    fsblklen, fsdevvp,
   3003   1.2    simonb 							    wb->wb_blk);
   3004   1.2    simonb 							if (error)
   3005   1.2    simonb 								goto out;
   3006   1.2    simonb 							if (memcmp(scratch1,
   3007   1.2    simonb 								   scratch2,
   3008   1.2    simonb 								   fsblklen)) {
   3009   1.2    simonb 								printf(
   3010   1.2    simonb 		"wapbl_verify: mismatch block %"PRId64" at off %"PRIdMAX"\n",
   3011   1.2    simonb 		wb->wb_blk, (intmax_t)off);
   3012   1.2    simonb 								dirtycnt++;
   3013   1.2    simonb 								mismatchcnt++;
   3014   1.2    simonb 							}
   3015   1.2    simonb 						} else {
   3016   1.2    simonb 							wapbl_circ_advance(wr,
   3017   1.2    simonb 							    fsblklen, &off);
   3018   1.2    simonb 						}
   3019   1.2    simonb 					}
   3020   1.2    simonb #if 0
   3021   1.2    simonb 					/*
   3022   1.2    simonb 					 * If all of the blocks in an entry
   3023   1.2    simonb 					 * are clean, then remove all of its
   3024   1.2    simonb 					 * blocks from the hashtable since they
   3025   1.2    simonb 					 * never will need replay.
   3026   1.2    simonb 					 */
   3027   1.2    simonb 					if ((foundcnt != 0) &&
   3028   1.2    simonb 					    (dirtycnt == 0)) {
   3029   1.2    simonb 						off = saveoff;
   3030   1.2    simonb 						wapbl_circ_advance(wr,
   3031   1.2    simonb 						    logblklen, &off);
   3032   1.2    simonb 						for (j = 0; j < n; j++) {
   3033   1.2    simonb 							struct wapbl_blk *wb =
   3034   1.2    simonb 							   wapbl_blkhash_get(wr,
   3035  1.62   mlelstv 							   wapbl_block_daddr(wc, i, j, fsblklen));
   3036   1.2    simonb 							if (wb &&
   3037   1.2    simonb 							  (wb->wb_off == off)) {
   3038   1.2    simonb 								wapbl_blkhash_rem(wr, wb->wb_blk);
   3039   1.2    simonb 							}
   3040   1.2    simonb 							wapbl_circ_advance(wr,
   3041   1.2    simonb 							    fsblklen, &off);
   3042   1.2    simonb 						}
   3043   1.2    simonb 					}
   3044   1.2    simonb #endif
   3045   1.2    simonb 				}
   3046   1.2    simonb 			}
   3047   1.2    simonb 			break;
   3048   1.2    simonb 		case WAPBL_WC_REVOCATIONS:
   3049   1.2    simonb 		case WAPBL_WC_INODES:
   3050   1.2    simonb 			break;
   3051   1.2    simonb 		default:
   3052   1.2    simonb 			KASSERT(0);
   3053   1.2    simonb 		}
   3054   1.2    simonb #ifdef DEBUG
   3055   1.2    simonb 		wapbl_circ_advance(wr, wcn->wc_len, &saveoff);
   3056   1.2    simonb 		KASSERT(off == saveoff);
   3057   1.2    simonb #endif
   3058   1.2    simonb 	}
   3059   1.2    simonb  out:
   3060  1.18      yamt 	wapbl_free(scratch1, MAXBSIZE);
   3061  1.18      yamt 	wapbl_free(scratch2, MAXBSIZE);
   3062   1.2    simonb 	if (!error && mismatchcnt)
   3063   1.2    simonb 		error = EFTYPE;
   3064   1.2    simonb 	return error;
   3065   1.2    simonb }
   3066   1.2    simonb #endif
   3067   1.2    simonb 
   3068   1.2    simonb int
   3069   1.2    simonb wapbl_replay_write(struct wapbl_replay *wr, struct vnode *fsdevvp)
   3070   1.2    simonb {
   3071   1.9     joerg 	struct wapbl_blk *wb;
   3072   1.9     joerg 	size_t i;
   3073   1.2    simonb 	off_t off;
   3074   1.9     joerg 	void *scratch;
   3075   1.2    simonb 	int error = 0;
   3076  1.14     joerg 	int fsblklen = 1 << wr->wr_fs_dev_bshift;
   3077   1.2    simonb 
   3078   1.2    simonb 	KDASSERT(wapbl_replay_isopen(wr));
   3079   1.2    simonb 
   3080  1.51      para 	scratch = wapbl_alloc(MAXBSIZE);
   3081   1.2    simonb 
   3082  1.37  drochner 	for (i = 0; i <= wr->wr_blkhashmask; ++i) {
   3083   1.9     joerg 		LIST_FOREACH(wb, &wr->wr_blkhash[i], wb_hash) {
   3084   1.9     joerg 			off = wb->wb_off;
   3085   1.9     joerg 			error = wapbl_circ_read(wr, scratch, fsblklen, &off);
   3086   1.9     joerg 			if (error)
   3087   1.9     joerg 				break;
   3088   1.9     joerg 			error = wapbl_write(scratch, fsblklen, fsdevvp,
   3089   1.9     joerg 			    wb->wb_blk);
   3090   1.9     joerg 			if (error)
   3091   1.9     joerg 				break;
   3092   1.2    simonb 		}
   3093   1.2    simonb 	}
   3094   1.9     joerg 
   3095  1.18      yamt 	wapbl_free(scratch, MAXBSIZE);
   3096   1.2    simonb 	return error;
   3097   1.2    simonb }
   3098   1.2    simonb 
   3099   1.2    simonb int
   3100   1.6     joerg wapbl_replay_can_read(struct wapbl_replay *wr, daddr_t blk, long len)
   3101   1.6     joerg {
   3102  1.14     joerg 	int fsblklen = 1 << wr->wr_fs_dev_bshift;
   3103   1.6     joerg 
   3104   1.6     joerg 	KDASSERT(wapbl_replay_isopen(wr));
   3105   1.6     joerg 	KASSERT((len % fsblklen) == 0);
   3106   1.6     joerg 
   3107   1.6     joerg 	while (len != 0) {
   3108   1.6     joerg 		struct wapbl_blk *wb = wapbl_blkhash_get(wr, blk);
   3109   1.6     joerg 		if (wb)
   3110   1.6     joerg 			return 1;
   3111   1.6     joerg 		len -= fsblklen;
   3112   1.6     joerg 	}
   3113   1.6     joerg 	return 0;
   3114   1.6     joerg }
   3115   1.6     joerg 
   3116   1.6     joerg int
   3117   1.2    simonb wapbl_replay_read(struct wapbl_replay *wr, void *data, daddr_t blk, long len)
   3118   1.2    simonb {
   3119  1.14     joerg 	int fsblklen = 1 << wr->wr_fs_dev_bshift;
   3120   1.2    simonb 
   3121   1.2    simonb 	KDASSERT(wapbl_replay_isopen(wr));
   3122   1.2    simonb 
   3123   1.2    simonb 	KASSERT((len % fsblklen) == 0);
   3124   1.2    simonb 
   3125   1.2    simonb 	while (len != 0) {
   3126   1.2    simonb 		struct wapbl_blk *wb = wapbl_blkhash_get(wr, blk);
   3127   1.2    simonb 		if (wb) {
   3128   1.2    simonb 			off_t off = wb->wb_off;
   3129   1.2    simonb 			int error;
   3130   1.2    simonb 			error = wapbl_circ_read(wr, data, fsblklen, &off);
   3131   1.2    simonb 			if (error)
   3132   1.2    simonb 				return error;
   3133   1.2    simonb 		}
   3134   1.2    simonb 		data = (uint8_t *)data + fsblklen;
   3135   1.2    simonb 		len -= fsblklen;
   3136   1.2    simonb 		blk++;
   3137   1.2    simonb 	}
   3138   1.2    simonb 	return 0;
   3139   1.2    simonb }
   3140  1.35     pooka 
   3141  1.36     pooka #ifdef _KERNEL
   3142  1.64  pgoyette 
   3143  1.35     pooka MODULE(MODULE_CLASS_VFS, wapbl, NULL);
   3144  1.35     pooka 
   3145  1.35     pooka static int
   3146  1.35     pooka wapbl_modcmd(modcmd_t cmd, void *arg)
   3147  1.35     pooka {
   3148  1.35     pooka 
   3149  1.35     pooka 	switch (cmd) {
   3150  1.35     pooka 	case MODULE_CMD_INIT:
   3151  1.39  christos 		wapbl_init();
   3152  1.35     pooka 		return 0;
   3153  1.35     pooka 	case MODULE_CMD_FINI:
   3154  1.39  christos 		return wapbl_fini(true);
   3155  1.35     pooka 	default:
   3156  1.35     pooka 		return ENOTTY;
   3157  1.35     pooka 	}
   3158  1.35     pooka }
   3159  1.36     pooka #endif /* _KERNEL */
   3160