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vfs_dirhash.c revision 1.4.2.4
      1  1.4.2.4      snj /* $NetBSD: vfs_dirhash.c,v 1.4.2.4 2008/11/02 02:22:26 snj Exp $ */
      2      1.1  reinoud 
      3      1.1  reinoud /*
      4      1.1  reinoud  * Copyright (c) 2008 Reinoud Zandijk
      5      1.1  reinoud  * All rights reserved.
      6      1.1  reinoud  *
      7      1.1  reinoud  * Redistribution and use in source and binary forms, with or without
      8      1.1  reinoud  * modification, are permitted provided that the following conditions
      9      1.1  reinoud  * are met:
     10      1.1  reinoud  * 1. Redistributions of source code must retain the above copyright
     11      1.1  reinoud  *    notice, this list of conditions and the following disclaimer.
     12      1.1  reinoud  * 2. Redistributions in binary form must reproduce the above copyright
     13      1.1  reinoud  *    notice, this list of conditions and the following disclaimer in the
     14      1.1  reinoud  *    documentation and/or other materials provided with the distribution.
     15      1.1  reinoud  *
     16      1.1  reinoud  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
     17      1.1  reinoud  * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
     18      1.1  reinoud  * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
     19      1.1  reinoud  * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
     20      1.1  reinoud  * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
     21      1.1  reinoud  * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
     22      1.1  reinoud  * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
     23      1.1  reinoud  * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
     24      1.1  reinoud  * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
     25      1.1  reinoud  * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
     26      1.1  reinoud  *
     27      1.1  reinoud  */
     28      1.1  reinoud 
     29      1.1  reinoud 
     30      1.1  reinoud #include <sys/cdefs.h>
     31  1.4.2.4      snj __KERNEL_RCSID(0, "$NetBSD: vfs_dirhash.c,v 1.4.2.4 2008/11/02 02:22:26 snj Exp $");
     32      1.1  reinoud 
     33      1.1  reinoud /* CLEAN UP! */
     34      1.1  reinoud #include <sys/param.h>
     35      1.1  reinoud #include <sys/kernel.h>
     36      1.1  reinoud #include <sys/buf.h>
     37      1.1  reinoud #include <sys/dirent.h>
     38  1.4.2.1      snj #include <sys/hash.h>
     39  1.4.2.1      snj #include <sys/mutex.h>
     40  1.4.2.1      snj #include <sys/pool.h>
     41  1.4.2.1      snj #include <sys/queue.h>
     42  1.4.2.1      snj #include <sys/vnode.h>
     43  1.4.2.1      snj #include <sys/sysctl.h>
     44      1.1  reinoud 
     45      1.1  reinoud #include <sys/dirhash.h>
     46      1.1  reinoud 
     47  1.4.2.1      snj #if 1
     48  1.4.2.1      snj #	define DPRINTF(a) ;
     49  1.4.2.1      snj #else
     50  1.4.2.1      snj #	define DPRINTF(a) printf(a);
     51  1.4.2.1      snj #endif
     52  1.4.2.1      snj 
     53  1.4.2.4      snj /*
     54  1.4.2.4      snj  * The locking protocol of the dirhash structures is fairly simple:
     55  1.4.2.4      snj  *
     56  1.4.2.4      snj  * The global dirhash_queue is protected by the dirhashmutex. This lock is
     57  1.4.2.4      snj  * internal only and is FS/mountpoint/vnode independent. On exit of the
     58  1.4.2.4      snj  * exported functions this mutex is not helt.
     59  1.4.2.4      snj  *
     60  1.4.2.4      snj  * The dirhash structure is considered part of the vnode/inode/udf_node
     61  1.4.2.4      snj  * structure and will thus use the lock that protects that vnode/inode.
     62  1.4.2.4      snj  *
     63  1.4.2.4      snj  * The dirhash entries are considered part of the dirhash structure and thus
     64  1.4.2.4      snj  * are on the same lock.
     65  1.4.2.4      snj  */
     66      1.1  reinoud 
     67      1.1  reinoud static struct sysctllog *sysctl_log;
     68  1.4.2.1      snj static struct pool dirhash_pool;
     69  1.4.2.1      snj static struct pool dirhash_entry_pool;
     70      1.1  reinoud 
     71      1.3  reinoud static kmutex_t dirhashmutex;
     72      1.3  reinoud static uint32_t maxdirhashsize = DIRHASH_SIZE;
     73      1.3  reinoud static uint32_t dirhashsize    = 0;
     74      1.3  reinoud static TAILQ_HEAD(_dirhash, dirhash) dirhash_queue;
     75      1.1  reinoud 
     76      1.1  reinoud 
     77      1.1  reinoud void
     78      1.1  reinoud dirhash_init(void)
     79      1.1  reinoud {
     80      1.2  reinoud 	const struct sysctlnode *rnode, *cnode;
     81  1.4.2.1      snj 	size_t sz;
     82      1.1  reinoud 	uint32_t max_entries;
     83      1.1  reinoud 
     84      1.1  reinoud 	/* initialise dirhash queue */
     85      1.1  reinoud 	TAILQ_INIT(&dirhash_queue);
     86      1.1  reinoud 
     87      1.1  reinoud 	/* init dirhash pools */
     88  1.4.2.1      snj 	sz = sizeof(struct dirhash);
     89  1.4.2.1      snj 	pool_init(&dirhash_pool, sz, 0, 0, 0,
     90  1.4.2.1      snj 		"dirhpl", NULL, IPL_NONE);
     91  1.4.2.1      snj 
     92  1.4.2.1      snj 	sz = sizeof(struct dirhash_entry);
     93  1.4.2.1      snj 	pool_init(&dirhash_entry_pool, sz, 0, 0, 0,
     94  1.4.2.1      snj 		"dirhepl", NULL, IPL_NONE);
     95      1.1  reinoud 
     96      1.1  reinoud 	mutex_init(&dirhashmutex, MUTEX_DEFAULT, IPL_NONE);
     97  1.4.2.1      snj 	max_entries = maxdirhashsize / sz;
     98      1.1  reinoud 	pool_sethiwat(&dirhash_entry_pool, max_entries);
     99      1.1  reinoud 	dirhashsize = 0;
    100      1.1  reinoud 
    101      1.1  reinoud 	/* create sysctl knobs and dials */
    102      1.1  reinoud 	sysctl_log = NULL;
    103      1.2  reinoud 	sysctl_createv(&sysctl_log, 0, NULL, &rnode,
    104      1.1  reinoud 		       CTLFLAG_PERMANENT,
    105      1.2  reinoud 		       CTLTYPE_NODE, "dirhash", NULL,
    106      1.1  reinoud 		       NULL, 0, NULL, 0,
    107      1.2  reinoud 		       CTL_VFS, VFS_GENERIC, CTL_CREATE, CTL_EOL);
    108      1.2  reinoud 	sysctl_createv(&sysctl_log, 0, &rnode, &cnode,
    109      1.1  reinoud 		       CTLFLAG_PERMANENT,
    110      1.2  reinoud 		       CTLTYPE_INT, "memused",
    111      1.2  reinoud 		       SYSCTL_DESCR("current dirhash memory usage"),
    112      1.1  reinoud 		       NULL, 0, &dirhashsize, 0,
    113      1.2  reinoud 		       CTL_CREATE, CTL_EOL);
    114      1.2  reinoud 	sysctl_createv(&sysctl_log, 0, &rnode, &cnode,
    115      1.1  reinoud 		       CTLFLAG_PERMANENT | CTLFLAG_READWRITE,
    116      1.2  reinoud 		       CTLTYPE_INT, "maxmem",
    117      1.2  reinoud 		       SYSCTL_DESCR("maximum dirhash memory usage"),
    118      1.1  reinoud 		       NULL, 0, &maxdirhashsize, 0,
    119      1.2  reinoud 		       CTL_CREATE, CTL_EOL);
    120      1.1  reinoud }
    121      1.1  reinoud 
    122      1.1  reinoud 
    123      1.1  reinoud #if 0
    124      1.1  reinoud void
    125      1.1  reinoud dirhash_finish(void)
    126      1.1  reinoud {
    127      1.1  reinoud 	pool_destroy(&dirhash_pool);
    128      1.1  reinoud 	pool_destroy(&dirhash_entry_pool);
    129      1.1  reinoud 
    130      1.1  reinoud 	mutex_destroy(&dirhashmutex);
    131      1.1  reinoud 
    132      1.1  reinoud 	/* sysctl_teardown(&sysctl_log); */
    133      1.1  reinoud }
    134      1.1  reinoud #endif
    135      1.1  reinoud 
    136      1.1  reinoud 
    137      1.1  reinoud /*
    138      1.1  reinoud  * generic dirhash implementation
    139      1.1  reinoud  */
    140      1.1  reinoud 
    141      1.1  reinoud void
    142      1.1  reinoud dirhash_purge_entries(struct dirhash *dirh)
    143      1.1  reinoud {
    144      1.1  reinoud 	struct dirhash_entry *dirh_e;
    145      1.1  reinoud 	uint32_t hashline;
    146      1.1  reinoud 
    147      1.1  reinoud 	if (dirh == NULL)
    148      1.1  reinoud 		return;
    149      1.1  reinoud 
    150      1.1  reinoud 	if (dirh->size == 0)
    151      1.1  reinoud 		return;
    152      1.1  reinoud 
    153      1.1  reinoud 	for (hashline = 0; hashline < DIRHASH_HASHSIZE; hashline++) {
    154      1.1  reinoud 		dirh_e = LIST_FIRST(&dirh->entries[hashline]);
    155      1.1  reinoud 		while (dirh_e) {
    156      1.1  reinoud 			LIST_REMOVE(dirh_e, next);
    157      1.1  reinoud 			pool_put(&dirhash_entry_pool, dirh_e);
    158      1.1  reinoud 			dirh_e = LIST_FIRST(&dirh->entries[hashline]);
    159      1.1  reinoud 		}
    160      1.1  reinoud 	}
    161      1.1  reinoud 	dirh_e = LIST_FIRST(&dirh->free_entries);
    162      1.1  reinoud 
    163      1.1  reinoud 	while (dirh_e) {
    164      1.1  reinoud 		LIST_REMOVE(dirh_e, next);
    165      1.1  reinoud 		pool_put(&dirhash_entry_pool, dirh_e);
    166      1.1  reinoud 		dirh_e = LIST_FIRST(&dirh->entries[hashline]);
    167      1.1  reinoud 	}
    168      1.1  reinoud 
    169      1.1  reinoud 	dirh->flags &= ~DIRH_COMPLETE;
    170      1.1  reinoud 	dirh->flags |=  DIRH_PURGED;
    171      1.1  reinoud 
    172      1.1  reinoud 	dirhashsize -= dirh->size;
    173      1.1  reinoud 	dirh->size = 0;
    174      1.1  reinoud }
    175      1.1  reinoud 
    176      1.1  reinoud 
    177      1.1  reinoud void
    178      1.1  reinoud dirhash_purge(struct dirhash **dirhp)
    179      1.1  reinoud {
    180      1.1  reinoud 	struct dirhash *dirh = *dirhp;
    181      1.1  reinoud 
    182      1.1  reinoud 	if (dirh == NULL)
    183      1.1  reinoud 		return;
    184      1.1  reinoud 
    185  1.4.2.3      snj 	/* purge its entries */
    186      1.1  reinoud 	dirhash_purge_entries(dirh);
    187  1.4.2.3      snj 
    188  1.4.2.3      snj 	/* recycle */
    189  1.4.2.3      snj 	mutex_enter(&dirhashmutex);
    190      1.1  reinoud 	TAILQ_REMOVE(&dirhash_queue, dirh, next);
    191  1.4.2.1      snj 	mutex_exit(&dirhashmutex);
    192      1.1  reinoud 
    193  1.4.2.1      snj 	pool_put(&dirhash_pool, dirh);
    194      1.1  reinoud 	*dirhp = NULL;
    195      1.1  reinoud }
    196      1.1  reinoud 
    197      1.1  reinoud 
    198      1.1  reinoud void
    199      1.1  reinoud dirhash_get(struct dirhash **dirhp)
    200      1.1  reinoud {
    201      1.1  reinoud 	struct dirhash *dirh;
    202      1.1  reinoud 	uint32_t hashline;
    203      1.1  reinoud 
    204  1.4.2.1      snj 	/* if no dirhash was given, allocate one */
    205      1.1  reinoud 	dirh = *dirhp;
    206  1.4.2.1      snj 	if (dirh == NULL) {
    207      1.1  reinoud 		dirh = pool_get(&dirhash_pool, PR_WAITOK);
    208      1.1  reinoud 		memset(dirh, 0, sizeof(struct dirhash));
    209  1.4.2.1      snj 		for (hashline = 0; hashline < DIRHASH_HASHSIZE; hashline++) {
    210      1.1  reinoud 			LIST_INIT(&dirh->entries[hashline]);
    211  1.4.2.1      snj 		}
    212      1.1  reinoud 	}
    213      1.1  reinoud 
    214  1.4.2.1      snj 	/* implement LRU on the dirhash queue */
    215  1.4.2.1      snj 	mutex_enter(&dirhashmutex);
    216  1.4.2.1      snj 	if (*dirhp) {
    217  1.4.2.1      snj 		/* remove from queue to be requeued */
    218  1.4.2.1      snj 		TAILQ_REMOVE(&dirhash_queue, dirh, next);
    219  1.4.2.1      snj 	}
    220      1.1  reinoud 	dirh->refcnt++;
    221      1.1  reinoud 	TAILQ_INSERT_HEAD(&dirhash_queue, dirh, next);
    222      1.1  reinoud 	mutex_exit(&dirhashmutex);
    223  1.4.2.1      snj 
    224  1.4.2.1      snj 	*dirhp = dirh;
    225      1.1  reinoud }
    226      1.1  reinoud 
    227      1.1  reinoud 
    228      1.1  reinoud void
    229      1.1  reinoud dirhash_put(struct dirhash *dirh)
    230      1.1  reinoud {
    231      1.1  reinoud 
    232      1.1  reinoud 	mutex_enter(&dirhashmutex);
    233      1.1  reinoud 	dirh->refcnt--;
    234      1.1  reinoud 	mutex_exit(&dirhashmutex);
    235      1.1  reinoud }
    236      1.1  reinoud 
    237      1.1  reinoud 
    238      1.1  reinoud void
    239      1.1  reinoud dirhash_enter(struct dirhash *dirh,
    240      1.1  reinoud 	struct dirent *dirent, uint64_t offset, uint32_t entry_size, int new)
    241      1.1  reinoud {
    242      1.1  reinoud 	struct dirhash *del_dirh, *prev_dirh;
    243      1.1  reinoud 	struct dirhash_entry *dirh_e;
    244      1.1  reinoud 	uint32_t hashvalue, hashline;
    245      1.1  reinoud 	int entrysize;
    246      1.1  reinoud 
    247      1.1  reinoud 	/* make sure we have a dirhash to work on */
    248      1.1  reinoud 	KASSERT(dirh);
    249      1.1  reinoud 	KASSERT(dirh->refcnt > 0);
    250      1.1  reinoud 
    251      1.1  reinoud 	/* are we trying to re-enter an entry? */
    252      1.1  reinoud 	if (!new && (dirh->flags & DIRH_COMPLETE))
    253      1.1  reinoud 		return;
    254      1.1  reinoud 
    255      1.1  reinoud 	/* calculate our hash */
    256  1.4.2.1      snj 	hashvalue = hash32_strn(dirent->d_name, dirent->d_namlen, HASH32_STR_INIT);
    257      1.1  reinoud 	hashline  = hashvalue & DIRHASH_HASHMASK;
    258      1.1  reinoud 
    259      1.1  reinoud 	/* lookup and insert entry if not there yet */
    260      1.1  reinoud 	LIST_FOREACH(dirh_e, &dirh->entries[hashline], next) {
    261      1.1  reinoud 		/* check for hash collision */
    262      1.1  reinoud 		if (dirh_e->hashvalue != hashvalue)
    263      1.1  reinoud 			continue;
    264      1.1  reinoud 		if (dirh_e->offset != offset)
    265      1.1  reinoud 			continue;
    266      1.1  reinoud 		/* got it already */
    267      1.1  reinoud 		KASSERT(dirh_e->d_namlen == dirent->d_namlen);
    268      1.1  reinoud 		KASSERT(dirh_e->entry_size == entry_size);
    269      1.1  reinoud 		return;
    270      1.1  reinoud 	}
    271      1.1  reinoud 
    272      1.1  reinoud 	DPRINTF(("dirhash enter %"PRIu64", %d, %d for `%*.*s`\n",
    273      1.1  reinoud 		offset, entry_size, dirent->d_namlen,
    274      1.1  reinoud 		dirent->d_namlen, dirent->d_namlen, dirent->d_name));
    275      1.1  reinoud 
    276      1.1  reinoud 	/* check if entry is in free space list */
    277      1.1  reinoud 	LIST_FOREACH(dirh_e, &dirh->free_entries, next) {
    278      1.1  reinoud 		if (dirh_e->offset == offset) {
    279      1.1  reinoud 			DPRINTF(("\tremoving free entry\n"));
    280      1.1  reinoud 			LIST_REMOVE(dirh_e, next);
    281      1.1  reinoud 			break;
    282      1.1  reinoud 		}
    283      1.1  reinoud 	}
    284      1.1  reinoud 
    285      1.1  reinoud 	/* ensure we are not passing the dirhash limit */
    286      1.1  reinoud 	entrysize = sizeof(struct dirhash_entry);
    287      1.1  reinoud 	if (dirhashsize + entrysize > maxdirhashsize) {
    288  1.4.2.3      snj 		/* we walk the dirhash_queue, so need to lock it */
    289  1.4.2.3      snj 		mutex_enter(&dirhashmutex);
    290      1.1  reinoud 		del_dirh = TAILQ_LAST(&dirhash_queue, _dirhash);
    291      1.1  reinoud 		KASSERT(del_dirh);
    292      1.1  reinoud 		while (dirhashsize + entrysize > maxdirhashsize) {
    293      1.1  reinoud 			/* no use trying to delete myself */
    294      1.1  reinoud 			if (del_dirh == dirh)
    295      1.1  reinoud 				break;
    296      1.1  reinoud 			prev_dirh = TAILQ_PREV(del_dirh, _dirhash, next);
    297      1.1  reinoud 			if (del_dirh->refcnt == 0)
    298      1.1  reinoud 				dirhash_purge_entries(del_dirh);
    299      1.1  reinoud 			del_dirh = prev_dirh;
    300      1.1  reinoud 		}
    301  1.4.2.3      snj 		mutex_exit(&dirhashmutex);
    302      1.1  reinoud 	}
    303      1.1  reinoud 
    304      1.1  reinoud 	/* add to the hashline */
    305      1.1  reinoud 	dirh_e = pool_get(&dirhash_entry_pool, PR_WAITOK);
    306      1.1  reinoud 	memset(dirh_e, 0, sizeof(struct dirhash_entry));
    307      1.1  reinoud 
    308      1.1  reinoud 	dirh_e->hashvalue = hashvalue;
    309      1.1  reinoud 	dirh_e->offset    = offset;
    310      1.1  reinoud 	dirh_e->d_namlen  = dirent->d_namlen;
    311      1.1  reinoud 	dirh_e->entry_size  = entry_size;
    312      1.1  reinoud 
    313      1.1  reinoud 	dirh->size  += sizeof(struct dirhash_entry);
    314      1.1  reinoud 	dirhashsize += sizeof(struct dirhash_entry);
    315      1.1  reinoud 	LIST_INSERT_HEAD(&dirh->entries[hashline], dirh_e, next);
    316      1.1  reinoud }
    317      1.1  reinoud 
    318      1.1  reinoud 
    319      1.1  reinoud void
    320      1.1  reinoud dirhash_enter_freed(struct dirhash *dirh, uint64_t offset,
    321      1.1  reinoud 	uint32_t entry_size)
    322      1.1  reinoud {
    323      1.1  reinoud 	struct dirhash_entry *dirh_e;
    324      1.1  reinoud 
    325      1.1  reinoud 	/* make sure we have a dirhash to work on */
    326      1.1  reinoud 	KASSERT(dirh);
    327      1.1  reinoud 	KASSERT(dirh->refcnt > 0);
    328      1.1  reinoud 
    329      1.1  reinoud 	/* check for double entry of free space */
    330  1.4.2.1      snj 	LIST_FOREACH(dirh_e, &dirh->free_entries, next) {
    331      1.1  reinoud 		KASSERT(dirh_e->offset != offset);
    332  1.4.2.1      snj 	}
    333      1.1  reinoud 
    334      1.1  reinoud 	DPRINTF(("dirhash enter FREED %"PRIu64", %d\n",
    335      1.1  reinoud 		offset, entry_size));
    336      1.1  reinoud 	dirh_e = pool_get(&dirhash_entry_pool, PR_WAITOK);
    337      1.1  reinoud 	memset(dirh_e, 0, sizeof(struct dirhash_entry));
    338      1.1  reinoud 
    339      1.1  reinoud 	dirh_e->hashvalue = 0;		/* not relevant */
    340      1.1  reinoud 	dirh_e->offset    = offset;
    341      1.1  reinoud 	dirh_e->d_namlen  = 0;		/* not relevant */
    342      1.1  reinoud 	dirh_e->entry_size  = entry_size;
    343      1.1  reinoud 
    344      1.1  reinoud 	/* XXX it might be preferable to append them at the tail */
    345      1.1  reinoud 	LIST_INSERT_HEAD(&dirh->free_entries, dirh_e, next);
    346      1.1  reinoud 	dirh->size  += sizeof(struct dirhash_entry);
    347      1.1  reinoud 	dirhashsize += sizeof(struct dirhash_entry);
    348      1.1  reinoud }
    349      1.1  reinoud 
    350      1.1  reinoud 
    351      1.1  reinoud void
    352      1.1  reinoud dirhash_remove(struct dirhash *dirh, struct dirent *dirent,
    353      1.1  reinoud 	uint64_t offset, uint32_t entry_size)
    354      1.1  reinoud {
    355      1.1  reinoud 	struct dirhash_entry *dirh_e;
    356      1.1  reinoud 	uint32_t hashvalue, hashline;
    357      1.1  reinoud 
    358      1.1  reinoud 	DPRINTF(("dirhash remove %"PRIu64", %d for `%*.*s`\n",
    359      1.1  reinoud 		offset, entry_size,
    360      1.1  reinoud 		dirent->d_namlen, dirent->d_namlen, dirent->d_name));
    361      1.1  reinoud 
    362      1.1  reinoud 	/* make sure we have a dirhash to work on */
    363      1.1  reinoud 	KASSERT(dirh);
    364      1.1  reinoud 	KASSERT(dirh->refcnt > 0);
    365      1.1  reinoud 
    366      1.1  reinoud 	/* calculate our hash */
    367  1.4.2.1      snj 	hashvalue = hash32_strn(dirent->d_name, dirent->d_namlen, HASH32_STR_INIT);
    368      1.1  reinoud 	hashline  = hashvalue & DIRHASH_HASHMASK;
    369      1.1  reinoud 
    370      1.1  reinoud 	/* lookup entry */
    371      1.1  reinoud 	LIST_FOREACH(dirh_e, &dirh->entries[hashline], next) {
    372      1.1  reinoud 		/* check for hash collision */
    373      1.1  reinoud 		if (dirh_e->hashvalue != hashvalue)
    374      1.1  reinoud 			continue;
    375      1.1  reinoud 		if (dirh_e->offset != offset)
    376      1.1  reinoud 			continue;
    377      1.1  reinoud 
    378      1.1  reinoud 		/* got it! */
    379      1.1  reinoud 		KASSERT(dirh_e->d_namlen == dirent->d_namlen);
    380      1.1  reinoud 		KASSERT(dirh_e->entry_size == entry_size);
    381      1.1  reinoud 		LIST_REMOVE(dirh_e, next);
    382  1.4.2.1      snj 		dirh->size -= sizeof(struct dirhash_entry);
    383      1.1  reinoud 		dirhashsize -= sizeof(struct dirhash_entry);
    384      1.1  reinoud 
    385      1.1  reinoud 		dirhash_enter_freed(dirh, offset, entry_size);
    386      1.1  reinoud 		return;
    387      1.1  reinoud 	}
    388      1.1  reinoud 
    389      1.1  reinoud 	/* not found! */
    390      1.1  reinoud 	panic("dirhash_remove couldn't find entry in hash table\n");
    391      1.1  reinoud }
    392      1.1  reinoud 
    393      1.1  reinoud 
    394  1.4.2.1      snj /*
    395  1.4.2.1      snj  * BUGALERT: don't use result longer than needed, never past the node lock.
    396  1.4.2.1      snj  * Call with NULL *result initially and it will return nonzero if again.
    397  1.4.2.1      snj  */
    398      1.1  reinoud int
    399      1.1  reinoud dirhash_lookup(struct dirhash *dirh, const char *d_name, int d_namlen,
    400      1.1  reinoud 	struct dirhash_entry **result)
    401      1.1  reinoud {
    402      1.1  reinoud 	struct dirhash_entry *dirh_e;
    403      1.1  reinoud 	uint32_t hashvalue, hashline;
    404      1.1  reinoud 
    405      1.1  reinoud 	/* make sure we have a dirhash to work on */
    406      1.1  reinoud 	KASSERT(dirh);
    407      1.1  reinoud 	KASSERT(dirh->refcnt > 0);
    408      1.1  reinoud 
    409      1.1  reinoud 	/* start where we were */
    410      1.1  reinoud 	if (*result) {
    411      1.1  reinoud 		dirh_e = *result;
    412      1.1  reinoud 
    413      1.1  reinoud 		/* retrieve information to avoid recalculation and advance */
    414      1.1  reinoud 		hashvalue = dirh_e->hashvalue;
    415      1.1  reinoud 		dirh_e = LIST_NEXT(*result, next);
    416      1.1  reinoud 	} else {
    417      1.1  reinoud 		/* calculate our hash and lookup all entries in hashline */
    418  1.4.2.1      snj 		hashvalue = hash32_strn(d_name, d_namlen, HASH32_STR_INIT);
    419      1.1  reinoud 		hashline  = hashvalue & DIRHASH_HASHMASK;
    420      1.1  reinoud 		dirh_e = LIST_FIRST(&dirh->entries[hashline]);
    421      1.1  reinoud 	}
    422      1.1  reinoud 
    423      1.1  reinoud 	for (; dirh_e; dirh_e = LIST_NEXT(dirh_e, next)) {
    424      1.1  reinoud 		/* check for hash collision */
    425      1.1  reinoud 		if (dirh_e->hashvalue != hashvalue)
    426      1.1  reinoud 			continue;
    427      1.1  reinoud 		if (dirh_e->d_namlen != d_namlen)
    428      1.1  reinoud 			continue;
    429      1.1  reinoud 		/* might have an entry in the cache */
    430      1.1  reinoud 		*result = dirh_e;
    431      1.1  reinoud 		return 1;
    432      1.1  reinoud 	}
    433      1.1  reinoud 
    434      1.1  reinoud 	*result = NULL;
    435      1.1  reinoud 	return 0;
    436      1.1  reinoud }
    437      1.1  reinoud 
    438      1.1  reinoud 
    439  1.4.2.1      snj /*
    440  1.4.2.1      snj  * BUGALERT: don't use result longer than needed, never past the node lock.
    441  1.4.2.1      snj  * Call with NULL *result initially and it will return nonzero if again.
    442  1.4.2.1      snj  */
    443  1.4.2.1      snj 
    444      1.1  reinoud int
    445      1.1  reinoud dirhash_lookup_freed(struct dirhash *dirh, uint32_t min_entrysize,
    446      1.1  reinoud 	struct dirhash_entry **result)
    447      1.1  reinoud {
    448      1.1  reinoud 	struct dirhash_entry *dirh_e;
    449      1.1  reinoud 
    450      1.1  reinoud 	/* make sure we have a dirhash to work on */
    451      1.1  reinoud 	KASSERT(dirh);
    452      1.1  reinoud 	KASSERT(dirh->refcnt > 0);
    453      1.1  reinoud 
    454      1.1  reinoud 	/* start where we were */
    455      1.1  reinoud 	if (*result) {
    456      1.1  reinoud 		dirh_e = LIST_NEXT(*result, next);
    457      1.1  reinoud 	} else {
    458      1.1  reinoud 		/* lookup all entries that match */
    459      1.1  reinoud 		dirh_e = LIST_FIRST(&dirh->free_entries);
    460      1.1  reinoud 	}
    461      1.1  reinoud 
    462      1.1  reinoud 	for (; dirh_e; dirh_e = LIST_NEXT(dirh_e, next)) {
    463      1.1  reinoud 		/* check for minimum size */
    464      1.1  reinoud 		if (dirh_e->entry_size < min_entrysize)
    465      1.1  reinoud 			continue;
    466      1.1  reinoud 		/* might be a candidate */
    467      1.1  reinoud 		*result = dirh_e;
    468      1.1  reinoud 		return 1;
    469      1.1  reinoud 	}
    470      1.1  reinoud 
    471      1.1  reinoud 	*result = NULL;
    472      1.1  reinoud 	return 0;
    473      1.1  reinoud }
    474