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chfs_gc.c revision 1.9.26.1
      1  1.9.26.1  thorpej /*	$NetBSD: chfs_gc.c,v 1.9.26.1 2021/08/01 22:42:44 thorpej Exp $	*/
      2       1.1    ahoka 
      3       1.1    ahoka /*-
      4       1.1    ahoka  * Copyright (c) 2010 Department of Software Engineering,
      5       1.1    ahoka  *		      University of Szeged, Hungary
      6       1.1    ahoka  * Copyright (c) 2010 Tamas Toth <ttoth (at) inf.u-szeged.hu>
      7       1.1    ahoka  * Copyright (c) 2010 Adam Hoka <ahoka (at) NetBSD.org>
      8       1.1    ahoka  * All rights reserved.
      9       1.1    ahoka  *
     10       1.1    ahoka  * This code is derived from software contributed to The NetBSD Foundation
     11       1.1    ahoka  * by the Department of Software Engineering, University of Szeged, Hungary
     12       1.1    ahoka  *
     13       1.1    ahoka  * Redistribution and use in source and binary forms, with or without
     14       1.1    ahoka  * modification, are permitted provided that the following conditions
     15       1.1    ahoka  * are met:
     16       1.1    ahoka  * 1. Redistributions of source code must retain the above copyright
     17       1.1    ahoka  *    notice, this list of conditions and the following disclaimer.
     18       1.1    ahoka  * 2. Redistributions in binary form must reproduce the above copyright
     19       1.1    ahoka  *    notice, this list of conditions and the following disclaimer in the
     20       1.1    ahoka  *    documentation and/or other materials provided with the distribution.
     21       1.1    ahoka  *
     22       1.1    ahoka  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
     23       1.1    ahoka  * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
     24       1.1    ahoka  * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
     25       1.1    ahoka  * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
     26       1.1    ahoka  * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING,
     27       1.1    ahoka  * BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
     28       1.1    ahoka  * LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED
     29       1.1    ahoka  * AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY,
     30       1.1    ahoka  * OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
     31       1.1    ahoka  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
     32       1.1    ahoka  * SUCH DAMAGE.
     33       1.1    ahoka  */
     34       1.1    ahoka 
     35       1.7    joerg #include <sys/cprng.h>
     36       1.1    ahoka #include "chfs.h"
     37       1.1    ahoka 
     38       1.1    ahoka void chfs_gc_release_inode(struct chfs_mount *,
     39       1.1    ahoka     struct chfs_inode *);
     40       1.1    ahoka struct chfs_inode *chfs_gc_fetch_inode(struct chfs_mount *,
     41       1.1    ahoka     ino_t, uint32_t);
     42       1.1    ahoka int chfs_check(struct chfs_mount *, struct chfs_vnode_cache *);
     43       1.1    ahoka void chfs_clear_inode(struct chfs_mount *, struct chfs_inode *);
     44       1.1    ahoka 
     45       1.1    ahoka 
     46       1.1    ahoka struct chfs_eraseblock *find_gc_block(struct chfs_mount *);
     47       1.1    ahoka int chfs_gcollect_pristine(struct chfs_mount *,
     48       1.1    ahoka     struct chfs_eraseblock *,
     49       1.1    ahoka     struct chfs_vnode_cache *, struct chfs_node_ref *);
     50       1.1    ahoka int chfs_gcollect_live(struct chfs_mount *,
     51       1.1    ahoka     struct chfs_eraseblock *, struct chfs_node_ref *,
     52       1.1    ahoka     struct chfs_inode *);
     53       1.1    ahoka int chfs_gcollect_vnode(struct chfs_mount *, struct chfs_inode *);
     54       1.1    ahoka int chfs_gcollect_dirent(struct chfs_mount *,
     55       1.1    ahoka     struct chfs_eraseblock *, struct chfs_inode *,
     56       1.1    ahoka     struct chfs_dirent *);
     57       1.1    ahoka int chfs_gcollect_deletion_dirent(struct chfs_mount *,
     58       1.1    ahoka     struct chfs_eraseblock *, struct chfs_inode *,
     59       1.1    ahoka     struct chfs_dirent *);
     60       1.1    ahoka int chfs_gcollect_dnode(struct chfs_mount *,
     61       1.1    ahoka     struct chfs_eraseblock *, struct chfs_inode *,
     62       1.1    ahoka     struct chfs_full_dnode *, uint32_t, uint32_t);
     63       1.1    ahoka 
     64       1.4    ttoth /*
     65       1.4    ttoth  * chfs_gc_trigger - wakes up GC thread, if it should run
     66       1.4    ttoth  * Must be called with chm_lock_mountfields held.
     67       1.4    ttoth  */
     68       1.1    ahoka void
     69       1.1    ahoka chfs_gc_trigger(struct chfs_mount *chmp)
     70       1.1    ahoka {
     71       1.1    ahoka 	struct garbage_collector_thread *gc = &chmp->chm_gc_thread;
     72       1.1    ahoka 
     73       1.1    ahoka 	if (gc->gcth_running &&
     74       1.1    ahoka 	    chfs_gc_thread_should_wake(chmp)) {
     75       1.1    ahoka 		cv_signal(&gc->gcth_wakeup);
     76       1.1    ahoka 	}
     77       1.1    ahoka }
     78       1.1    ahoka 
     79       1.1    ahoka 
     80       1.4    ttoth /* chfs_gc_thread - garbage collector's thread */
     81       1.1    ahoka void
     82       1.1    ahoka chfs_gc_thread(void *data)
     83       1.1    ahoka {
     84       1.1    ahoka 	struct chfs_mount *chmp = data;
     85       1.1    ahoka 	struct garbage_collector_thread *gc = &chmp->chm_gc_thread;
     86       1.1    ahoka 
     87       1.1    ahoka 	dbg_gc("[GC THREAD] thread started\n");
     88       1.1    ahoka 
     89       1.1    ahoka 	mutex_enter(&chmp->chm_lock_mountfields);
     90       1.1    ahoka 	while (gc->gcth_running) {
     91       1.1    ahoka 		/* we must call chfs_gc_thread_should_wake with chm_lock_mountfields
     92  1.9.26.1  thorpej 		 * held, which is a bit awkwardly done here, but we can't really
     93       1.1    ahoka 		 * do it otherway with the current design...
     94       1.1    ahoka 		 */
     95       1.1    ahoka 		if (chfs_gc_thread_should_wake(chmp)) {
     96       1.1    ahoka 			if (chfs_gcollect_pass(chmp) == ENOSPC) {
     97       1.3    ttoth 				mutex_exit(&chmp->chm_lock_mountfields);
     98       1.1    ahoka 				panic("No space for garbage collection\n");
     99       1.1    ahoka 				/* XXX why break here? i have added a panic
    100       1.1    ahoka 				 * here to see if it gets triggered -ahoka
    101       1.1    ahoka 				 */
    102       1.1    ahoka 				break;
    103       1.1    ahoka 			}
    104       1.1    ahoka 			/* XXX gcollect_pass drops the mutex */
    105       1.1    ahoka 		}
    106       1.1    ahoka 
    107       1.1    ahoka 		cv_timedwait_sig(&gc->gcth_wakeup,
    108       1.1    ahoka 		    &chmp->chm_lock_mountfields, mstohz(100));
    109       1.1    ahoka 	}
    110       1.1    ahoka 	mutex_exit(&chmp->chm_lock_mountfields);
    111       1.1    ahoka 
    112       1.1    ahoka 	dbg_gc("[GC THREAD] thread stopped\n");
    113       1.1    ahoka 	kthread_exit(0);
    114       1.1    ahoka }
    115       1.1    ahoka 
    116       1.4    ttoth /* chfs_gc_thread_start - starts GC */
    117       1.1    ahoka void
    118       1.1    ahoka chfs_gc_thread_start(struct chfs_mount *chmp)
    119       1.1    ahoka {
    120       1.1    ahoka 	struct garbage_collector_thread *gc = &chmp->chm_gc_thread;
    121       1.1    ahoka 
    122       1.1    ahoka 	cv_init(&gc->gcth_wakeup, "chfsgccv");
    123       1.1    ahoka 
    124       1.1    ahoka 	gc->gcth_running = true;
    125       1.1    ahoka 	kthread_create(PRI_NONE, /*KTHREAD_MPSAFE |*/ KTHREAD_MUSTJOIN,
    126       1.1    ahoka 	    NULL, chfs_gc_thread, chmp, &gc->gcth_thread,
    127       1.1    ahoka 	    "chfsgcth");
    128       1.1    ahoka }
    129       1.1    ahoka 
    130  1.9.26.1  thorpej /* chfs_gc_thread_stop - stops GC */
    131       1.1    ahoka void
    132       1.1    ahoka chfs_gc_thread_stop(struct chfs_mount *chmp)
    133       1.1    ahoka {
    134       1.1    ahoka 	struct garbage_collector_thread *gc = &chmp->chm_gc_thread;
    135       1.1    ahoka 
    136       1.4    ttoth 	/* check if it is actually running */
    137       1.1    ahoka 	if (gc->gcth_running) {
    138       1.1    ahoka 		gc->gcth_running = false;
    139       1.1    ahoka 	} else {
    140       1.1    ahoka 		return;
    141       1.1    ahoka 	}
    142       1.1    ahoka 	cv_signal(&gc->gcth_wakeup);
    143       1.1    ahoka 	dbg_gc("[GC THREAD] stop signal sent\n");
    144       1.1    ahoka 
    145       1.1    ahoka 	kthread_join(gc->gcth_thread);
    146       1.1    ahoka #ifdef BROKEN_KTH_JOIN
    147       1.1    ahoka 	kpause("chfsthjoin", false, mstohz(1000), NULL);
    148       1.1    ahoka #endif
    149       1.1    ahoka 
    150       1.1    ahoka 	cv_destroy(&gc->gcth_wakeup);
    151       1.1    ahoka }
    152       1.1    ahoka 
    153       1.4    ttoth /*
    154       1.4    ttoth  * chfs_gc_thread_should_wake - checks if GC thread should wake up
    155       1.4    ttoth  * Must be called with chm_lock_mountfields held.
    156       1.4    ttoth  * Returns 1, if GC should wake up and 0 else.
    157       1.4    ttoth  */
    158       1.1    ahoka int
    159       1.1    ahoka chfs_gc_thread_should_wake(struct chfs_mount *chmp)
    160       1.1    ahoka {
    161       1.1    ahoka 	int nr_very_dirty = 0;
    162       1.1    ahoka 	struct chfs_eraseblock *cheb;
    163       1.1    ahoka 	uint32_t dirty;
    164       1.1    ahoka 
    165       1.1    ahoka 	KASSERT(mutex_owned(&chmp->chm_lock_mountfields));
    166       1.1    ahoka 
    167       1.4    ttoth 	/* Erase pending queue is not empty. */
    168       1.1    ahoka 	if (!TAILQ_EMPTY(&chmp->chm_erase_pending_queue)) {
    169       1.1    ahoka 		dbg_gc("erase_pending\n");
    170       1.1    ahoka 		return 1;
    171       1.1    ahoka 	}
    172       1.1    ahoka 
    173       1.4    ttoth 	/* There is something unchecked in the filesystem. */
    174       1.1    ahoka 	if (chmp->chm_unchecked_size) {
    175       1.1    ahoka 		dbg_gc("unchecked\n");
    176       1.1    ahoka 		return 1;
    177       1.1    ahoka 	}
    178       1.1    ahoka 
    179       1.1    ahoka 	dirty = chmp->chm_dirty_size - chmp->chm_nr_erasable_blocks *
    180       1.1    ahoka 	    chmp->chm_ebh->eb_size;
    181       1.1    ahoka 
    182       1.4    ttoth 	/* Number of free and erasable blocks are critical. */
    183       1.1    ahoka 	if (chmp->chm_nr_free_blocks + chmp->chm_nr_erasable_blocks <
    184       1.1    ahoka 	    chmp->chm_resv_blocks_gctrigger && (dirty > chmp->chm_nospc_dirty)) {
    185       1.1    ahoka 		dbg_gc("free: %d + erasable: %d < resv: %d\n",
    186       1.1    ahoka 		    chmp->chm_nr_free_blocks, chmp->chm_nr_erasable_blocks,
    187       1.1    ahoka 		    chmp->chm_resv_blocks_gctrigger);
    188       1.1    ahoka 		dbg_gc("dirty: %d > nospc_dirty: %d\n",
    189       1.1    ahoka 		    dirty, chmp->chm_nospc_dirty);
    190       1.1    ahoka 
    191       1.1    ahoka 		return 1;
    192       1.1    ahoka 	}
    193       1.1    ahoka 
    194  1.9.26.1  thorpej 	/* There are too much very dirty blocks. */
    195       1.1    ahoka 	TAILQ_FOREACH(cheb, &chmp->chm_very_dirty_queue, queue) {
    196       1.1    ahoka 		nr_very_dirty++;
    197       1.1    ahoka 		if (nr_very_dirty == chmp->chm_vdirty_blocks_gctrigger) {
    198       1.1    ahoka 			dbg_gc("nr_very_dirty\n");
    199       1.1    ahoka 			return 1;
    200       1.1    ahoka 		}
    201       1.1    ahoka 	}
    202       1.1    ahoka 
    203  1.9.26.1  thorpej 	/* Everything is OK, GC shouldn't run. */
    204       1.1    ahoka 	return 0;
    205       1.1    ahoka }
    206       1.1    ahoka 
    207       1.4    ttoth /* chfs_gc_release_inode - does nothing yet */
    208       1.1    ahoka void
    209       1.1    ahoka chfs_gc_release_inode(struct chfs_mount *chmp,
    210       1.1    ahoka     struct chfs_inode *ip)
    211       1.1    ahoka {
    212       1.1    ahoka 	dbg_gc("release inode\n");
    213       1.1    ahoka }
    214       1.1    ahoka 
    215       1.4    ttoth /* chfs_gc_fetch_inode - assign the given inode to the GC */
    216       1.1    ahoka struct chfs_inode *
    217       1.1    ahoka chfs_gc_fetch_inode(struct chfs_mount *chmp, ino_t vno,
    218       1.1    ahoka     uint32_t unlinked)
    219       1.1    ahoka {
    220       1.1    ahoka 	struct vnode *vp = NULL;
    221       1.1    ahoka 	struct chfs_vnode_cache *vc;
    222       1.1    ahoka 	struct chfs_inode *ip;
    223       1.2      agc 	dbg_gc("fetch inode %llu\n", (unsigned long long)vno);
    224       1.1    ahoka 
    225       1.1    ahoka 	if (unlinked) {
    226       1.1    ahoka 		dbg_gc("unlinked\n");
    227       1.1    ahoka 		vp = chfs_vnode_lookup(chmp, vno);
    228       1.1    ahoka 		if (!vp) {
    229       1.1    ahoka 			mutex_enter(&chmp->chm_lock_vnocache);
    230       1.1    ahoka 			vc = chfs_vnode_cache_get(chmp, vno);
    231       1.1    ahoka 			if (!vc) {
    232       1.1    ahoka 				mutex_exit(&chmp->chm_lock_vnocache);
    233       1.1    ahoka 				return NULL;
    234       1.1    ahoka 			}
    235  1.9.26.1  thorpej 			mutex_exit(&chmp->chm_lock_vnocache);
    236       1.1    ahoka 			if (vc->state != VNO_STATE_CHECKEDABSENT) {
    237       1.1    ahoka 				/* XXX why do we need the delay here?! */
    238       1.1    ahoka 				KASSERT(mutex_owned(&chmp->chm_lock_mountfields));
    239       1.1    ahoka 				cv_timedwait_sig(
    240       1.1    ahoka 					&chmp->chm_gc_thread.gcth_wakeup,
    241       1.1    ahoka 					&chmp->chm_lock_mountfields, mstohz(50));
    242       1.1    ahoka 			}
    243       1.1    ahoka 			return NULL;
    244       1.1    ahoka 		}
    245       1.1    ahoka 	} else {
    246       1.1    ahoka 		dbg_gc("vnode lookup\n");
    247       1.1    ahoka 		vp = chfs_vnode_lookup(chmp, vno);
    248       1.1    ahoka 	}
    249       1.1    ahoka 	dbg_gc("vp to ip\n");
    250       1.1    ahoka 	ip = VTOI(vp);
    251       1.1    ahoka 	KASSERT(ip);
    252       1.8  hannken 	vrele(vp);
    253       1.1    ahoka 
    254       1.1    ahoka 	return ip;
    255       1.1    ahoka }
    256       1.1    ahoka 
    257       1.1    ahoka extern rb_tree_ops_t frag_rbtree_ops;
    258       1.1    ahoka 
    259       1.4    ttoth /* chfs_check - checks an inode with minimal initialization */
    260       1.1    ahoka int
    261       1.1    ahoka chfs_check(struct chfs_mount *chmp, struct  chfs_vnode_cache *chvc)
    262       1.1    ahoka {
    263       1.3    ttoth 	KASSERT(mutex_owned(&chmp->chm_lock_vnocache));
    264       1.3    ttoth 
    265       1.1    ahoka 	struct chfs_inode *ip;
    266       1.1    ahoka 	struct vnode *vp;
    267       1.1    ahoka 	int ret;
    268       1.1    ahoka 
    269       1.4    ttoth 	/* Get a new inode. */
    270       1.1    ahoka 	ip = pool_get(&chfs_inode_pool, PR_WAITOK);
    271       1.1    ahoka 	if (!ip) {
    272       1.1    ahoka 		return ENOMEM;
    273       1.1    ahoka 	}
    274       1.1    ahoka 
    275       1.1    ahoka 	vp = kmem_zalloc(sizeof(struct vnode), KM_SLEEP);
    276       1.1    ahoka 
    277       1.4    ttoth 	/* Minimal initialization. */
    278       1.1    ahoka 	ip->chvc = chvc;
    279       1.1    ahoka 	ip->vp = vp;
    280       1.1    ahoka 
    281       1.1    ahoka 	vp->v_data = ip;
    282       1.1    ahoka 
    283       1.1    ahoka 	rb_tree_init(&ip->fragtree, &frag_rbtree_ops);
    284       1.1    ahoka 	TAILQ_INIT(&ip->dents);
    285       1.1    ahoka 
    286       1.4    ttoth 	/* Build the node. */
    287       1.3    ttoth 	mutex_exit(&chmp->chm_lock_vnocache);
    288       1.1    ahoka 	ret = chfs_read_inode_internal(chmp, ip);
    289       1.3    ttoth 	mutex_enter(&chmp->chm_lock_vnocache);
    290       1.1    ahoka 	if (!ret) {
    291       1.1    ahoka 		chfs_clear_inode(chmp, ip);
    292       1.1    ahoka 	}
    293       1.1    ahoka 
    294       1.4    ttoth 	/* Release inode. */
    295       1.1    ahoka 	pool_put(&chfs_inode_pool, ip);
    296       1.1    ahoka 
    297       1.1    ahoka 	return ret;
    298       1.1    ahoka }
    299       1.1    ahoka 
    300       1.4    ttoth /* chfs_clear_inode - kills a minimal inode */
    301       1.1    ahoka void
    302       1.1    ahoka chfs_clear_inode(struct chfs_mount *chmp, struct chfs_inode *ip)
    303       1.1    ahoka {
    304       1.3    ttoth 	KASSERT(mutex_owned(&chmp->chm_lock_vnocache));
    305       1.3    ttoth 
    306       1.1    ahoka 	struct chfs_dirent *fd, *tmpfd;
    307       1.1    ahoka 	struct chfs_vnode_cache *chvc;
    308       1.3    ttoth 	struct chfs_node_ref *nref;
    309       1.1    ahoka 
    310       1.1    ahoka 	chvc = ip->chvc;
    311       1.1    ahoka 	/* shouldnt this be: */
    312       1.1    ahoka 	//bool deleted = (chvc && !(chvc->pvno || chvc->nlink));
    313       1.1    ahoka 	int deleted = (chvc && !(chvc->pvno | chvc->nlink));
    314       1.1    ahoka 
    315       1.4    ttoth 	/* Set actual state. */
    316       1.1    ahoka 	if (chvc && chvc->state != VNO_STATE_CHECKING) {
    317       1.1    ahoka 		chvc->state = VNO_STATE_CLEARING;
    318       1.1    ahoka 	}
    319       1.1    ahoka 
    320       1.4    ttoth 	/* Remove vnode information. */
    321       1.3    ttoth 	while (deleted && chvc->v != (struct chfs_node_ref *)chvc) {
    322       1.3    ttoth 		nref = chvc->v;
    323       1.3    ttoth 		chfs_remove_and_obsolete(chmp, chvc, nref, &chvc->v);
    324       1.1    ahoka 	}
    325       1.3    ttoth 
    326       1.4    ttoth 	/* Destroy data. */
    327       1.3    ttoth 	chfs_kill_fragtree(chmp, &ip->fragtree);
    328       1.1    ahoka 
    329       1.4    ttoth 	/* Clear dirents. */
    330       1.1    ahoka 	TAILQ_FOREACH_SAFE(fd, &ip->dents, fds, tmpfd) {
    331       1.1    ahoka 		chfs_free_dirent(fd);
    332       1.1    ahoka 	}
    333       1.1    ahoka 
    334       1.4    ttoth 	/* Remove node from vnode cache. */
    335       1.1    ahoka 	if (chvc && chvc->state == VNO_STATE_CHECKING) {
    336       1.3    ttoth 		chvc->state = VNO_STATE_CHECKEDABSENT;
    337       1.1    ahoka 		if ((struct chfs_vnode_cache *)chvc->v == chvc &&
    338       1.1    ahoka 		    (struct chfs_vnode_cache *)chvc->dirents == chvc &&
    339       1.1    ahoka 		    (struct chfs_vnode_cache *)chvc->dnode == chvc)
    340       1.1    ahoka 			chfs_vnode_cache_remove(chmp, chvc);
    341       1.1    ahoka 	}
    342       1.1    ahoka }
    343       1.1    ahoka 
    344       1.4    ttoth /* find_gc_block - finds the next block for GC */
    345       1.1    ahoka struct chfs_eraseblock *
    346       1.1    ahoka find_gc_block(struct chfs_mount *chmp)
    347       1.1    ahoka {
    348       1.1    ahoka 	struct chfs_eraseblock *ret;
    349       1.1    ahoka 	struct chfs_eraseblock_queue *nextqueue;
    350       1.1    ahoka 
    351       1.1    ahoka 	KASSERT(mutex_owned(&chmp->chm_lock_mountfields));
    352       1.1    ahoka 
    353       1.4    ttoth 	/* Get a random number. */
    354       1.7    joerg 	uint32_t n = cprng_fast32() % 128;
    355       1.1    ahoka 
    356       1.1    ahoka again:
    357       1.4    ttoth 	/* Find an eraseblock queue. */
    358       1.4    ttoth     if (n<50 && !TAILQ_EMPTY(&chmp->chm_erase_pending_queue)) {
    359       1.1    ahoka 		dbg_gc("Picking block from erase_pending_queue to GC next\n");
    360       1.1    ahoka 		nextqueue = &chmp->chm_erase_pending_queue;
    361       1.1    ahoka 	} else if (n<110 && !TAILQ_EMPTY(&chmp->chm_very_dirty_queue) ) {
    362       1.1    ahoka 		dbg_gc("Picking block from very_dirty_queue to GC next\n");
    363       1.1    ahoka 		nextqueue = &chmp->chm_very_dirty_queue;
    364       1.1    ahoka 	} else if (n<126 && !TAILQ_EMPTY(&chmp->chm_dirty_queue) ) {
    365       1.1    ahoka 		dbg_gc("Picking block from dirty_queue to GC next\n");
    366       1.1    ahoka 		nextqueue = &chmp->chm_dirty_queue;
    367       1.1    ahoka 	} else if (!TAILQ_EMPTY(&chmp->chm_clean_queue)) {
    368       1.1    ahoka 		dbg_gc("Picking block from clean_queue to GC next\n");
    369       1.1    ahoka 		nextqueue = &chmp->chm_clean_queue;
    370       1.1    ahoka 	} else if (!TAILQ_EMPTY(&chmp->chm_dirty_queue)) {
    371       1.1    ahoka 		dbg_gc("Picking block from dirty_queue to GC next"
    372       1.1    ahoka 		    " (clean_queue was empty)\n");
    373       1.1    ahoka 		nextqueue = &chmp->chm_dirty_queue;
    374       1.1    ahoka 	} else if (!TAILQ_EMPTY(&chmp->chm_very_dirty_queue)) {
    375       1.1    ahoka 		dbg_gc("Picking block from very_dirty_queue to GC next"
    376       1.1    ahoka 		    " (clean_queue and dirty_queue were empty)\n");
    377       1.1    ahoka 		nextqueue = &chmp->chm_very_dirty_queue;
    378       1.1    ahoka 	} else if (!TAILQ_EMPTY(&chmp->chm_erase_pending_queue)) {
    379       1.1    ahoka 		dbg_gc("Picking block from erase_pending_queue to GC next"
    380       1.1    ahoka 		    " (clean_queue and {very_,}dirty_queue were empty)\n");
    381       1.1    ahoka 		nextqueue = &chmp->chm_erase_pending_queue;
    382       1.1    ahoka 	} else if (!TAILQ_EMPTY(&chmp->chm_erasable_pending_wbuf_queue)) {
    383       1.1    ahoka 		dbg_gc("Synching wbuf in order to reuse "
    384       1.1    ahoka 		    "erasable_pendig_wbuf_queue blocks\n");
    385       1.1    ahoka 		rw_enter(&chmp->chm_lock_wbuf, RW_WRITER);
    386       1.1    ahoka 		chfs_flush_pending_wbuf(chmp);
    387       1.1    ahoka 		rw_exit(&chmp->chm_lock_wbuf);
    388       1.1    ahoka 		goto again;
    389       1.1    ahoka 	} else {
    390       1.1    ahoka 		dbg_gc("CHFS: no clean, dirty _or_ erasable"
    391       1.1    ahoka 		    " blocks to GC from! Where are they all?\n");
    392       1.1    ahoka 		return NULL;
    393       1.1    ahoka 	}
    394       1.1    ahoka 
    395       1.4    ttoth 	/* Get the first block of the queue. */
    396       1.1    ahoka 	ret = TAILQ_FIRST(nextqueue);
    397       1.1    ahoka 	if (chmp->chm_nextblock) {
    398       1.1    ahoka 		dbg_gc("nextblock num: %u - gcblock num: %u\n",
    399       1.1    ahoka 		    chmp->chm_nextblock->lnr, ret->lnr);
    400       1.1    ahoka 		if (ret == chmp->chm_nextblock)
    401       1.1    ahoka 			goto again;
    402       1.1    ahoka 	}
    403       1.1    ahoka 	TAILQ_REMOVE(nextqueue, ret, queue);
    404       1.4    ttoth 
    405       1.4    ttoth 	/* Set GC block. */
    406       1.1    ahoka 	chmp->chm_gcblock = ret;
    407       1.4    ttoth 	/* Set GC node. */
    408       1.1    ahoka 	ret->gc_node = ret->first_node;
    409       1.1    ahoka 
    410       1.1    ahoka 	if (!ret->gc_node) {
    411       1.1    ahoka 		dbg_gc("Oops! ret->gc_node at LEB: %u is NULL\n", ret->lnr);
    412       1.1    ahoka 		panic("CHFS BUG - one LEB's gc_node is NULL\n");
    413       1.1    ahoka 	}
    414       1.1    ahoka 
    415       1.1    ahoka 	/* TODO wasted size? */
    416       1.1    ahoka 	return ret;
    417       1.1    ahoka }
    418       1.1    ahoka 
    419       1.4    ttoth /* chfs_gcollect_pass - this is the main function of GC */
    420       1.1    ahoka int
    421       1.1    ahoka chfs_gcollect_pass(struct chfs_mount *chmp)
    422       1.1    ahoka {
    423       1.1    ahoka 	struct chfs_vnode_cache *vc;
    424       1.1    ahoka 	struct chfs_eraseblock *eb;
    425       1.1    ahoka 	struct chfs_node_ref *nref;
    426       1.1    ahoka 	uint32_t gcblock_dirty;
    427       1.1    ahoka 	struct chfs_inode *ip;
    428       1.1    ahoka 	ino_t vno, pvno;
    429       1.1    ahoka 	uint32_t nlink;
    430       1.1    ahoka 	int ret = 0;
    431       1.1    ahoka 
    432       1.1    ahoka 	KASSERT(mutex_owned(&chmp->chm_lock_mountfields));
    433       1.1    ahoka 
    434       1.4    ttoth 	/* Check all vnodes. */
    435       1.1    ahoka 	for (;;) {
    436       1.1    ahoka 		mutex_enter(&chmp->chm_lock_sizes);
    437       1.1    ahoka 
    438       1.4    ttoth 		/* Check unchecked size. */
    439       1.1    ahoka 		dbg_gc("unchecked size == %u\n", chmp->chm_unchecked_size);
    440       1.1    ahoka 		if (!chmp->chm_unchecked_size)
    441       1.1    ahoka 			break;
    442       1.1    ahoka 
    443       1.4    ttoth 		/* Compare vnode number to the maximum. */
    444       1.1    ahoka 		if (chmp->chm_checked_vno > chmp->chm_max_vno) {
    445       1.1    ahoka 			mutex_exit(&chmp->chm_lock_sizes);
    446       1.1    ahoka 			dbg_gc("checked_vno (#%llu) > max_vno (#%llu)\n",
    447       1.2      agc 			    (unsigned long long)chmp->chm_checked_vno,
    448       1.2      agc 			    (unsigned long long)chmp->chm_max_vno);
    449       1.1    ahoka 			return ENOSPC;
    450       1.1    ahoka 		}
    451       1.1    ahoka 
    452       1.1    ahoka 		mutex_exit(&chmp->chm_lock_sizes);
    453       1.1    ahoka 
    454       1.1    ahoka 		mutex_enter(&chmp->chm_lock_vnocache);
    455       1.2      agc 		dbg_gc("checking vno #%llu\n",
    456       1.2      agc 			(unsigned long long)chmp->chm_checked_vno);
    457       1.1    ahoka 		dbg_gc("get vnode cache\n");
    458       1.4    ttoth 
    459       1.4    ttoth 		/* OK, Get and check the vnode cache. */
    460       1.1    ahoka 		vc = chfs_vnode_cache_get(chmp, chmp->chm_checked_vno++);
    461       1.1    ahoka 
    462       1.1    ahoka 		if (!vc) {
    463       1.1    ahoka 			dbg_gc("!vc\n");
    464       1.1    ahoka 			mutex_exit(&chmp->chm_lock_vnocache);
    465       1.1    ahoka 			continue;
    466       1.1    ahoka 		}
    467       1.1    ahoka 
    468       1.1    ahoka 		if ((vc->pvno | vc->nlink) == 0) {
    469       1.1    ahoka 			dbg_gc("(pvno | nlink) == 0\n");
    470       1.1    ahoka 			mutex_exit(&chmp->chm_lock_vnocache);
    471       1.1    ahoka 			continue;
    472       1.1    ahoka 		}
    473       1.1    ahoka 
    474       1.4    ttoth 		/* Find out the state of the vnode. */
    475       1.1    ahoka 		dbg_gc("switch\n");
    476       1.1    ahoka 		switch (vc->state) {
    477       1.1    ahoka 		case VNO_STATE_CHECKEDABSENT:
    478       1.4    ttoth 			/* FALLTHROUGH */
    479       1.1    ahoka 		case VNO_STATE_PRESENT:
    480       1.1    ahoka 			mutex_exit(&chmp->chm_lock_vnocache);
    481       1.1    ahoka 			continue;
    482       1.1    ahoka 
    483       1.1    ahoka 		case VNO_STATE_GC:
    484       1.4    ttoth 			/* FALLTHROUGH */
    485       1.1    ahoka 		case VNO_STATE_CHECKING:
    486       1.1    ahoka 			mutex_exit(&chmp->chm_lock_vnocache);
    487       1.1    ahoka 			dbg_gc("VNO_STATE GC or CHECKING\n");
    488       1.1    ahoka 			panic("CHFS BUG - vc state gc or checking\n");
    489       1.1    ahoka 
    490       1.1    ahoka 		case VNO_STATE_READING:
    491       1.1    ahoka 			chmp->chm_checked_vno--;
    492       1.1    ahoka 			mutex_exit(&chmp->chm_lock_vnocache);
    493       1.1    ahoka 			/* XXX why do we need the delay here?! */
    494       1.1    ahoka 			kpause("chvncrea", true, mstohz(50), NULL);
    495       1.1    ahoka 
    496       1.1    ahoka 			return 0;
    497       1.1    ahoka 
    498       1.1    ahoka 		default:
    499       1.1    ahoka 			mutex_exit(&chmp->chm_lock_vnocache);
    500       1.1    ahoka 			dbg_gc("default\n");
    501       1.1    ahoka 			panic("CHFS BUG - vc state is other what we"
    502       1.1    ahoka 			    " checked\n");
    503       1.1    ahoka 
    504       1.1    ahoka 		case VNO_STATE_UNCHECKED:
    505       1.1    ahoka 			;
    506       1.1    ahoka 		}
    507       1.1    ahoka 
    508       1.4    ttoth 		/* We found an unchecked vnode. */
    509       1.4    ttoth 
    510       1.3    ttoth 		vc->state = VNO_STATE_CHECKING;
    511       1.1    ahoka 
    512       1.1    ahoka 		/* XXX check if this is too heavy to call under
    513       1.1    ahoka 		 * chm_lock_vnocache
    514       1.1    ahoka 		 */
    515       1.1    ahoka 		ret = chfs_check(chmp, vc);
    516       1.3    ttoth 		vc->state = VNO_STATE_CHECKEDABSENT;
    517       1.1    ahoka 
    518       1.1    ahoka 		mutex_exit(&chmp->chm_lock_vnocache);
    519       1.1    ahoka 		return ret;
    520       1.1    ahoka 	}
    521       1.1    ahoka 
    522       1.4    ttoth 	/* Get GC block. */
    523       1.1    ahoka 	eb = chmp->chm_gcblock;
    524       1.1    ahoka 
    525       1.1    ahoka 	if (!eb) {
    526       1.1    ahoka 		eb = find_gc_block(chmp);
    527       1.1    ahoka 	}
    528       1.1    ahoka 
    529       1.1    ahoka 	if (!eb) {
    530       1.1    ahoka 		dbg_gc("!eb\n");
    531       1.1    ahoka 		if (!TAILQ_EMPTY(&chmp->chm_erase_pending_queue)) {
    532       1.1    ahoka 			mutex_exit(&chmp->chm_lock_sizes);
    533       1.1    ahoka 			return EAGAIN;
    534       1.1    ahoka 		}
    535       1.1    ahoka 		mutex_exit(&chmp->chm_lock_sizes);
    536       1.1    ahoka 		return EIO;
    537       1.1    ahoka 	}
    538       1.1    ahoka 
    539       1.1    ahoka 	if (!eb->used_size) {
    540       1.1    ahoka 		dbg_gc("!eb->used_size\n");
    541       1.1    ahoka 		goto eraseit;
    542       1.1    ahoka 	}
    543       1.1    ahoka 
    544       1.4    ttoth 	/* Get GC node. */
    545       1.1    ahoka 	nref = eb->gc_node;
    546       1.1    ahoka 	gcblock_dirty = eb->dirty_size;
    547       1.1    ahoka 
    548       1.4    ttoth 	/* Find a node which wasn't obsoleted yet.
    549       1.4    ttoth 	 * Obsoleted nodes will be simply deleted after the whole block has checked. */
    550       1.1    ahoka 	while(CHFS_REF_OBSOLETE(nref)) {
    551       1.1    ahoka #ifdef DBG_MSG_GC
    552       1.1    ahoka 		if (nref == chmp->chm_blocks[nref->nref_lnr].last_node) {
    553       1.1    ahoka 			dbg_gc("THIS NODE IS THE LAST NODE OF ITS EB\n");
    554       1.1    ahoka 		}
    555       1.1    ahoka #endif
    556       1.1    ahoka 		nref = node_next(nref);
    557       1.1    ahoka 		if (!nref) {
    558       1.1    ahoka 			eb->gc_node = nref;
    559       1.1    ahoka 			mutex_exit(&chmp->chm_lock_sizes);
    560       1.1    ahoka 			panic("CHFS BUG - nref is NULL)\n");
    561       1.1    ahoka 		}
    562       1.1    ahoka 	}
    563       1.4    ttoth 
    564       1.4    ttoth 	/* We found a "not obsoleted" node. */
    565       1.1    ahoka 	eb->gc_node = nref;
    566       1.1    ahoka 	KASSERT(nref->nref_lnr == chmp->chm_gcblock->lnr);
    567       1.1    ahoka 
    568       1.4    ttoth 	/* Check if node is in any chain. */
    569       1.1    ahoka 	if (!nref->nref_next) {
    570       1.4    ttoth 		/* This node is not in any chain. Simply collect it, or obsolete. */
    571       1.1    ahoka 		mutex_exit(&chmp->chm_lock_sizes);
    572       1.1    ahoka 		if (CHFS_REF_FLAGS(nref) == CHFS_PRISTINE_NODE_MASK) {
    573       1.1    ahoka 			chfs_gcollect_pristine(chmp, eb, NULL, nref);
    574       1.1    ahoka 		} else {
    575       1.1    ahoka 			chfs_mark_node_obsolete(chmp, nref);
    576       1.1    ahoka 		}
    577       1.1    ahoka 		goto lock_size;
    578       1.1    ahoka 	}
    579       1.1    ahoka 
    580       1.1    ahoka 	mutex_exit(&chmp->chm_lock_sizes);
    581       1.1    ahoka 
    582       1.1    ahoka 	mutex_enter(&chmp->chm_lock_vnocache);
    583       1.1    ahoka 
    584       1.3    ttoth 	dbg_gc("nref lnr: %u - offset: %u\n", nref->nref_lnr, nref->nref_offset);
    585       1.3    ttoth 	vc = chfs_nref_to_vc(nref);
    586       1.3    ttoth 
    587       1.4    ttoth 	/* Check the state of the node. */
    588       1.1    ahoka 	dbg_gc("switch\n");
    589       1.1    ahoka 	switch(vc->state) {
    590       1.1    ahoka         case VNO_STATE_CHECKEDABSENT:
    591       1.4    ttoth 			if (CHFS_REF_FLAGS(nref) == CHFS_PRISTINE_NODE_MASK) {
    592       1.4    ttoth 				vc->state = VNO_STATE_GC;
    593       1.4    ttoth 			}
    594       1.4    ttoth 			break;
    595       1.1    ahoka 
    596       1.1    ahoka         case VNO_STATE_PRESENT:
    597       1.4    ttoth 			break;
    598       1.1    ahoka 
    599       1.1    ahoka         case VNO_STATE_UNCHECKED:
    600       1.4    ttoth 			/* FALLTHROUGH */
    601       1.1    ahoka         case VNO_STATE_CHECKING:
    602       1.4    ttoth 			/* FALLTHROUGH */
    603       1.1    ahoka         case VNO_STATE_GC:
    604       1.4    ttoth 			mutex_exit(&chmp->chm_lock_vnocache);
    605       1.4    ttoth 			panic("CHFS BUG - vc state unchecked,"
    606       1.4    ttoth 				" checking or gc (vno #%llu, num #%d)\n",
    607       1.4    ttoth 				(unsigned long long)vc->vno, vc->state);
    608       1.1    ahoka 
    609       1.1    ahoka         case VNO_STATE_READING:
    610       1.4    ttoth 			/* Node is in use at this time. */
    611       1.4    ttoth 			mutex_exit(&chmp->chm_lock_vnocache);
    612       1.4    ttoth 			kpause("chvncrea", true, mstohz(50), NULL);
    613       1.4    ttoth 			return 0;
    614       1.1    ahoka 	}
    615       1.1    ahoka 
    616       1.1    ahoka 	if (vc->state == VNO_STATE_GC) {
    617       1.1    ahoka 		dbg_gc("vc->state == VNO_STATE_GC\n");
    618       1.3    ttoth 		vc->state = VNO_STATE_CHECKEDABSENT;
    619       1.1    ahoka 		mutex_exit(&chmp->chm_lock_vnocache);
    620       1.1    ahoka 		ret = chfs_gcollect_pristine(chmp, eb, NULL, nref);
    621       1.1    ahoka 
    622       1.1    ahoka 		//TODO wake_up(&chmp->chm_vnocache_wq);
    623       1.1    ahoka 		if (ret != EBADF)
    624       1.1    ahoka 			goto test_gcnode;
    625       1.1    ahoka 		mutex_enter(&chmp->chm_lock_vnocache);
    626       1.1    ahoka 	}
    627       1.1    ahoka 
    628       1.4    ttoth 	/* Collect living node. */
    629       1.1    ahoka 	vno = vc->vno;
    630       1.1    ahoka 	pvno = vc->pvno;
    631       1.1    ahoka 	nlink = vc->nlink;
    632       1.1    ahoka 	mutex_exit(&chmp->chm_lock_vnocache);
    633       1.1    ahoka 
    634       1.1    ahoka 	ip = chfs_gc_fetch_inode(chmp, vno, !(pvno | nlink));
    635       1.1    ahoka 
    636       1.1    ahoka 	if (!ip) {
    637       1.1    ahoka 		dbg_gc("!ip\n");
    638       1.1    ahoka 		ret = 0;
    639       1.1    ahoka 		goto lock_size;
    640       1.1    ahoka 	}
    641       1.1    ahoka 
    642       1.1    ahoka 	chfs_gcollect_live(chmp, eb, nref, ip);
    643       1.1    ahoka 
    644       1.1    ahoka 	chfs_gc_release_inode(chmp, ip);
    645       1.1    ahoka 
    646       1.1    ahoka test_gcnode:
    647       1.1    ahoka 	if (eb->dirty_size == gcblock_dirty &&
    648       1.1    ahoka 	    !CHFS_REF_OBSOLETE(eb->gc_node)) {
    649       1.1    ahoka 		dbg_gc("ERROR collecting node at %u failed.\n",
    650       1.1    ahoka 		    CHFS_GET_OFS(eb->gc_node->nref_offset));
    651       1.1    ahoka 
    652       1.1    ahoka 		ret = ENOSPC;
    653       1.1    ahoka 	}
    654       1.1    ahoka 
    655       1.1    ahoka lock_size:
    656       1.1    ahoka 	KASSERT(mutex_owned(&chmp->chm_lock_mountfields));
    657       1.1    ahoka 	mutex_enter(&chmp->chm_lock_sizes);
    658       1.1    ahoka eraseit:
    659       1.1    ahoka 	dbg_gc("eraseit\n");
    660       1.1    ahoka 
    661       1.1    ahoka 	if (chmp->chm_gcblock) {
    662       1.4    ttoth 	/* This is only for debugging. */
    663       1.1    ahoka 		dbg_gc("eb used size = %u\n", chmp->chm_gcblock->used_size);
    664       1.1    ahoka 		dbg_gc("eb free size = %u\n", chmp->chm_gcblock->free_size);
    665       1.1    ahoka 		dbg_gc("eb dirty size = %u\n", chmp->chm_gcblock->dirty_size);
    666       1.1    ahoka 		dbg_gc("eb unchecked size = %u\n",
    667       1.1    ahoka 		    chmp->chm_gcblock->unchecked_size);
    668       1.1    ahoka 		dbg_gc("eb wasted size = %u\n", chmp->chm_gcblock->wasted_size);
    669       1.1    ahoka 
    670       1.1    ahoka 		KASSERT(chmp->chm_gcblock->used_size + chmp->chm_gcblock->free_size +
    671       1.1    ahoka 		    chmp->chm_gcblock->dirty_size +
    672       1.1    ahoka 		    chmp->chm_gcblock->unchecked_size +
    673       1.1    ahoka 		    chmp->chm_gcblock->wasted_size == chmp->chm_ebh->eb_size);
    674       1.1    ahoka 
    675       1.1    ahoka 	}
    676       1.1    ahoka 
    677       1.4    ttoth 	/* Check the state of GC block. */
    678       1.1    ahoka 	if (chmp->chm_gcblock && chmp->chm_gcblock->dirty_size +
    679       1.1    ahoka 	    chmp->chm_gcblock->wasted_size == chmp->chm_ebh->eb_size) {
    680       1.1    ahoka 		dbg_gc("Block at leb #%u completely obsoleted by GC, "
    681       1.1    ahoka 		    "Moving to erase_pending_queue\n", chmp->chm_gcblock->lnr);
    682       1.1    ahoka 		TAILQ_INSERT_TAIL(&chmp->chm_erase_pending_queue,
    683       1.1    ahoka 		    chmp->chm_gcblock, queue);
    684       1.1    ahoka 		chmp->chm_gcblock = NULL;
    685       1.1    ahoka 		chmp->chm_nr_erasable_blocks++;
    686       1.1    ahoka 		if (!TAILQ_EMPTY(&chmp->chm_erase_pending_queue)) {
    687       1.1    ahoka 			ret = chfs_remap_leb(chmp);
    688       1.1    ahoka 		}
    689       1.1    ahoka 	}
    690       1.1    ahoka 
    691       1.1    ahoka 	mutex_exit(&chmp->chm_lock_sizes);
    692       1.1    ahoka 	dbg_gc("return\n");
    693       1.1    ahoka 	return ret;
    694       1.1    ahoka }
    695       1.1    ahoka 
    696       1.1    ahoka 
    697       1.4    ttoth /* chfs_gcollect_pristine - collects a pristine node */
    698       1.1    ahoka int
    699       1.1    ahoka chfs_gcollect_pristine(struct chfs_mount *chmp, struct chfs_eraseblock *cheb,
    700       1.1    ahoka     struct chfs_vnode_cache *chvc, struct chfs_node_ref *nref)
    701       1.1    ahoka {
    702       1.1    ahoka 	struct chfs_node_ref *newnref;
    703       1.1    ahoka 	struct chfs_flash_node_hdr *nhdr;
    704       1.1    ahoka 	struct chfs_flash_vnode *fvnode;
    705       1.1    ahoka 	struct chfs_flash_dirent_node *fdirent;
    706       1.1    ahoka 	struct chfs_flash_data_node *fdata;
    707       1.1    ahoka 	int ret, retries = 0;
    708       1.1    ahoka 	uint32_t ofs, crc;
    709       1.1    ahoka 	size_t totlen = chfs_nref_len(chmp, cheb, nref);
    710       1.1    ahoka 	char *data;
    711       1.1    ahoka 	struct iovec vec;
    712       1.1    ahoka 	size_t retlen;
    713       1.1    ahoka 
    714       1.1    ahoka 	dbg_gc("gcollect_pristine\n");
    715       1.1    ahoka 
    716       1.1    ahoka 	data = kmem_alloc(totlen, KM_SLEEP);
    717       1.1    ahoka 	ofs = CHFS_GET_OFS(nref->nref_offset);
    718       1.1    ahoka 
    719       1.4    ttoth 	/* Read header. */
    720       1.1    ahoka 	ret = chfs_read_leb(chmp, nref->nref_lnr, data, ofs, totlen, &retlen);
    721       1.1    ahoka 	if (ret) {
    722       1.1    ahoka 		dbg_gc("reading error\n");
    723       1.6       he 		goto err_out;
    724       1.1    ahoka 	}
    725       1.1    ahoka 	if (retlen != totlen) {
    726       1.1    ahoka 		dbg_gc("read size error\n");
    727       1.6       he 		ret = EIO;
    728       1.6       he 		goto err_out;
    729       1.1    ahoka 	}
    730       1.1    ahoka 	nhdr = (struct chfs_flash_node_hdr *)data;
    731       1.4    ttoth 
    732       1.4    ttoth 	/* Check the header. */
    733       1.1    ahoka 	if (le16toh(nhdr->magic) != CHFS_FS_MAGIC_BITMASK) {
    734       1.1    ahoka 		dbg_gc("node header magic number error\n");
    735       1.6       he 		ret = EBADF;
    736       1.6       he 		goto err_out;
    737       1.1    ahoka 	}
    738       1.1    ahoka 	crc = crc32(0, (uint8_t *)nhdr, CHFS_NODE_HDR_SIZE - 4);
    739       1.1    ahoka 	if (crc != le32toh(nhdr->hdr_crc)) {
    740       1.1    ahoka 		dbg_gc("node header crc error\n");
    741       1.6       he 		ret = EBADF;
    742       1.6       he 		goto err_out;
    743       1.1    ahoka 	}
    744       1.1    ahoka 
    745       1.4    ttoth 	/* Read the remaining parts. */
    746       1.1    ahoka 	switch(le16toh(nhdr->type)) {
    747       1.1    ahoka         case CHFS_NODETYPE_VNODE:
    748       1.4    ttoth 		/* vnode information node */
    749       1.4    ttoth 			fvnode = (struct chfs_flash_vnode *)data;
    750       1.1    ahoka 	        crc = crc32(0, (uint8_t *)fvnode, sizeof(struct chfs_flash_vnode) - 4);
    751       1.1    ahoka 	        if (crc != le32toh(fvnode->node_crc)) {
    752       1.4    ttoth 				dbg_gc("vnode crc error\n");
    753       1.6       he 				ret = EBADF;
    754       1.6       he 				goto err_out;
    755       1.4    ttoth 			}
    756       1.4    ttoth 			break;
    757       1.1    ahoka         case CHFS_NODETYPE_DIRENT:
    758       1.4    ttoth 		/* dirent node */
    759       1.4    ttoth 			fdirent = (struct chfs_flash_dirent_node *)data;
    760       1.1    ahoka 	        crc = crc32(0, (uint8_t *)fdirent, sizeof(struct chfs_flash_dirent_node) - 4);
    761       1.1    ahoka 	        if (crc != le32toh(fdirent->node_crc)) {
    762       1.4    ttoth 				dbg_gc("dirent crc error\n");
    763       1.6       he 				ret = EBADF;
    764       1.6       he 				goto err_out;
    765       1.4    ttoth 			}
    766       1.1    ahoka 	        crc = crc32(0, fdirent->name, fdirent->nsize);
    767       1.1    ahoka 	        if (crc != le32toh(fdirent->name_crc)) {
    768       1.4    ttoth 				dbg_gc("dirent name crc error\n");
    769       1.6       he 				ret = EBADF;
    770       1.6       he 				goto err_out;
    771       1.4    ttoth 			}
    772       1.4    ttoth 			break;
    773       1.1    ahoka         case CHFS_NODETYPE_DATA:
    774       1.4    ttoth 		/* data node */
    775       1.4    ttoth 			fdata = (struct chfs_flash_data_node *)data;
    776       1.1    ahoka 	        crc = crc32(0, (uint8_t *)fdata, sizeof(struct chfs_flash_data_node) - 4);
    777       1.1    ahoka 	        if (crc != le32toh(fdata->node_crc)) {
    778       1.4    ttoth 				dbg_gc("data node crc error\n");
    779       1.6       he 				ret = EBADF;
    780       1.6       he 				goto err_out;
    781       1.4    ttoth 			}
    782       1.4    ttoth 			break;
    783       1.1    ahoka         default:
    784       1.4    ttoth 		/* unknown node */
    785       1.4    ttoth 			if (chvc) {
    786       1.4    ttoth 				dbg_gc("unknown node have vnode cache\n");
    787       1.6       he 				ret = EBADF;
    788       1.6       he 				goto err_out;
    789       1.4    ttoth 			}
    790       1.1    ahoka 	}
    791       1.1    ahoka 	/* CRC's OK, write node to its new place */
    792       1.1    ahoka retry:
    793       1.1    ahoka 	ret = chfs_reserve_space_gc(chmp, totlen);
    794       1.1    ahoka 	if (ret)
    795       1.6       he 		goto err_out;
    796       1.1    ahoka 
    797       1.1    ahoka 	newnref = chfs_alloc_node_ref(chmp->chm_nextblock);
    798       1.6       he 	if (!newnref) {
    799       1.6       he 		ret = ENOMEM;
    800       1.6       he 		goto err_out;
    801       1.6       he 	}
    802       1.1    ahoka 
    803       1.1    ahoka 	ofs = chmp->chm_ebh->eb_size - chmp->chm_nextblock->free_size;
    804       1.1    ahoka 	newnref->nref_offset = ofs;
    805       1.1    ahoka 
    806       1.4    ttoth 	/* write out the whole node */
    807       1.1    ahoka 	vec.iov_base = (void *)data;
    808       1.1    ahoka 	vec.iov_len = totlen;
    809       1.1    ahoka 	mutex_enter(&chmp->chm_lock_sizes);
    810       1.1    ahoka 	ret = chfs_write_wbuf(chmp, &vec, 1, ofs, &retlen);
    811       1.1    ahoka 
    812       1.1    ahoka 	if (ret || retlen != totlen) {
    813       1.4    ttoth 		/* error while writing */
    814       1.1    ahoka 		chfs_err("error while writing out to the media\n");
    815       1.1    ahoka 		chfs_err("err: %d | size: %zu | retlen : %zu\n",
    816       1.1    ahoka 		    ret, totlen, retlen);
    817       1.1    ahoka 
    818       1.1    ahoka 		chfs_change_size_dirty(chmp, chmp->chm_nextblock, totlen);
    819       1.1    ahoka 		if (retries) {
    820       1.1    ahoka 			mutex_exit(&chmp->chm_lock_sizes);
    821       1.6       he 			ret = EIO;
    822       1.6       he 			goto err_out;
    823       1.1    ahoka 		}
    824       1.1    ahoka 
    825       1.4    ttoth 		/* try again */
    826       1.1    ahoka 		retries++;
    827       1.1    ahoka 		mutex_exit(&chmp->chm_lock_sizes);
    828       1.1    ahoka 		goto retry;
    829       1.1    ahoka 	}
    830       1.1    ahoka 
    831       1.4    ttoth 	/* update vnode information */
    832       1.1    ahoka 	mutex_exit(&chmp->chm_lock_sizes);
    833       1.1    ahoka 	//TODO should we set free_size?
    834       1.3    ttoth 	mutex_enter(&chmp->chm_lock_vnocache);
    835       1.1    ahoka 	chfs_add_vnode_ref_to_vc(chmp, chvc, newnref);
    836       1.3    ttoth 	mutex_exit(&chmp->chm_lock_vnocache);
    837       1.6       he 	ret = 0;
    838       1.6       he 	/* FALLTHROUGH */
    839       1.6       he err_out:
    840       1.6       he 	kmem_free(data, totlen);
    841       1.6       he 	return ret;
    842       1.1    ahoka }
    843       1.1    ahoka 
    844       1.1    ahoka 
    845       1.4    ttoth /* chfs_gcollect_live - collects a living node */
    846       1.1    ahoka int
    847       1.1    ahoka chfs_gcollect_live(struct chfs_mount *chmp,
    848       1.1    ahoka     struct chfs_eraseblock *cheb, struct chfs_node_ref *nref,
    849       1.1    ahoka     struct chfs_inode *ip)
    850       1.1    ahoka {
    851       1.1    ahoka 	struct chfs_node_frag *frag;
    852       1.1    ahoka 	struct chfs_full_dnode *fn = NULL;
    853       1.1    ahoka 	int start = 0, end = 0, nrfrags = 0;
    854       1.1    ahoka 	struct chfs_dirent *fd = NULL;
    855       1.1    ahoka 	int ret = 0;
    856       1.1    ahoka 	bool is_dirent;
    857       1.1    ahoka 
    858       1.1    ahoka 	dbg_gc("gcollect_live\n");
    859       1.1    ahoka 
    860       1.1    ahoka 	if (chmp->chm_gcblock != cheb) {
    861       1.1    ahoka 		dbg_gc("GC block is no longer gcblock. Restart.\n");
    862       1.1    ahoka 		goto upnout;
    863       1.1    ahoka 	}
    864       1.1    ahoka 
    865       1.1    ahoka 	if (CHFS_REF_OBSOLETE(nref)) {
    866       1.1    ahoka 		dbg_gc("node to be GC'd was obsoleted in the meantime.\n");
    867       1.1    ahoka 		goto upnout;
    868       1.1    ahoka 	}
    869       1.1    ahoka 
    870       1.1    ahoka 	/* It's a vnode? */
    871       1.1    ahoka 	if (ip->chvc->v == nref) {
    872       1.1    ahoka 		chfs_gcollect_vnode(chmp, ip);
    873       1.1    ahoka 		goto upnout;
    874       1.1    ahoka 	}
    875       1.1    ahoka 
    876       1.4    ttoth 	/* Find data node. */
    877       1.1    ahoka 	dbg_gc("find full dnode\n");
    878       1.1    ahoka 	for(frag = frag_first(&ip->fragtree);
    879       1.1    ahoka 	    frag; frag = frag_next(&ip->fragtree, frag)) {
    880       1.1    ahoka 		if (frag->node && frag->node->nref == nref) {
    881       1.1    ahoka 			fn = frag->node;
    882       1.1    ahoka 			end = frag->ofs + frag->size;
    883       1.1    ahoka 			if (!nrfrags++)
    884       1.1    ahoka 				start = frag->ofs;
    885       1.1    ahoka 			if (nrfrags == frag->node->frags)
    886       1.1    ahoka 				break;
    887       1.1    ahoka 		}
    888       1.1    ahoka 	}
    889       1.1    ahoka 
    890       1.1    ahoka 	/* It's a pristine node, or dnode (or hole? XXX have we hole nodes?) */
    891       1.1    ahoka 	if (fn) {
    892       1.1    ahoka 		if (CHFS_REF_FLAGS(nref) == CHFS_PRISTINE_NODE_MASK) {
    893       1.1    ahoka 			ret = chfs_gcollect_pristine(chmp,
    894       1.1    ahoka 			    cheb, ip->chvc, nref);
    895       1.1    ahoka 			if (!ret) {
    896       1.1    ahoka 				frag->node->nref = ip->chvc->v;
    897       1.1    ahoka 			}
    898       1.1    ahoka 			if (ret != EBADF)
    899       1.1    ahoka 				goto upnout;
    900       1.1    ahoka 		}
    901       1.1    ahoka 		ret = chfs_gcollect_dnode(chmp, cheb, ip, fn, start, end);
    902       1.1    ahoka 		goto upnout;
    903       1.1    ahoka 	}
    904       1.1    ahoka 
    905       1.3    ttoth 	/* Is it a dirent? */
    906       1.1    ahoka 	dbg_gc("find full dirent\n");
    907       1.1    ahoka 	is_dirent = false;
    908       1.1    ahoka 	TAILQ_FOREACH(fd, &ip->dents, fds) {
    909       1.1    ahoka 		if (fd->nref == nref) {
    910       1.1    ahoka 			is_dirent = true;
    911       1.1    ahoka 			break;
    912       1.1    ahoka 		}
    913       1.1    ahoka 	}
    914       1.1    ahoka 
    915       1.1    ahoka 	if (is_dirent && fd->vno) {
    916       1.4    ttoth 		/* Living dirent. */
    917       1.1    ahoka 		ret = chfs_gcollect_dirent(chmp, cheb, ip, fd);
    918       1.1    ahoka 	} else if (is_dirent) {
    919       1.4    ttoth 		/* Already deleted dirent. */
    920       1.1    ahoka 		ret = chfs_gcollect_deletion_dirent(chmp, cheb, ip, fd);
    921       1.1    ahoka 	} else {
    922       1.1    ahoka 		dbg_gc("Nref at leb #%u offset 0x%08x wasn't in node list"
    923       1.1    ahoka 		    " for ino #%llu\n",
    924       1.2      agc 		    nref->nref_lnr, CHFS_GET_OFS(nref->nref_offset),
    925       1.2      agc 		    (unsigned long long)ip->ino);
    926       1.1    ahoka 		if (CHFS_REF_OBSOLETE(nref)) {
    927       1.1    ahoka 			dbg_gc("But it's obsolete so we don't mind"
    928       1.1    ahoka 			    " too much.\n");
    929       1.1    ahoka 		}
    930       1.1    ahoka 	}
    931       1.1    ahoka 
    932       1.1    ahoka upnout:
    933       1.1    ahoka 	return ret;
    934       1.1    ahoka }
    935       1.1    ahoka 
    936       1.4    ttoth /* chfs_gcollect_vnode - collects a vnode information node */
    937       1.1    ahoka int
    938       1.1    ahoka chfs_gcollect_vnode(struct chfs_mount *chmp, struct chfs_inode *ip)
    939       1.1    ahoka {
    940       1.1    ahoka 	int ret;
    941       1.1    ahoka 	dbg_gc("gcollect_vnode\n");
    942       1.1    ahoka 
    943       1.4    ttoth 	/* Simply write the new vnode information to the flash
    944       1.4    ttoth 	 * with GC's space allocation */
    945       1.1    ahoka 	ret = chfs_write_flash_vnode(chmp, ip, ALLOC_GC);
    946       1.1    ahoka 
    947       1.1    ahoka 	return ret;
    948       1.1    ahoka }
    949       1.1    ahoka 
    950       1.4    ttoth /* chfs_gcollect_dirent - collects a dirent */
    951       1.1    ahoka int
    952       1.1    ahoka chfs_gcollect_dirent(struct chfs_mount *chmp,
    953       1.1    ahoka     struct chfs_eraseblock *cheb, struct chfs_inode *parent,
    954       1.1    ahoka     struct chfs_dirent *fd)
    955       1.1    ahoka {
    956       1.1    ahoka 	struct vnode *vnode = NULL;
    957       1.1    ahoka 	struct chfs_inode *ip;
    958       1.1    ahoka 	dbg_gc("gcollect_dirent\n");
    959       1.1    ahoka 
    960       1.4    ttoth 	/* Find vnode. */
    961       1.1    ahoka 	vnode = chfs_vnode_lookup(chmp, fd->vno);
    962       1.1    ahoka 
    963       1.1    ahoka 	/* XXX maybe KASSERT or panic on this? */
    964       1.1    ahoka 	if (vnode == NULL) {
    965       1.1    ahoka 		return ENOENT;
    966       1.1    ahoka 	}
    967       1.1    ahoka 
    968       1.1    ahoka 	ip = VTOI(vnode);
    969       1.8  hannken 	vrele(vnode);
    970       1.1    ahoka 
    971       1.4    ttoth 	/* Remove and obsolete the previous version. */
    972       1.3    ttoth 	mutex_enter(&chmp->chm_lock_vnocache);
    973       1.3    ttoth 	chfs_remove_and_obsolete(chmp, parent->chvc, fd->nref,
    974       1.3    ttoth 		&parent->chvc->dirents);
    975       1.3    ttoth 	mutex_exit(&chmp->chm_lock_vnocache);
    976       1.1    ahoka 
    977       1.4    ttoth 	/* Write the new dirent to the flash. */
    978       1.1    ahoka 	return chfs_write_flash_dirent(chmp,
    979       1.1    ahoka 	    parent, ip, fd, fd->vno, ALLOC_GC);
    980       1.1    ahoka }
    981       1.1    ahoka 
    982       1.4    ttoth /*
    983       1.4    ttoth  * chfs_gcollect_deletion_dirent -
    984       1.4    ttoth  * collects a dirent what was marked as deleted
    985       1.4    ttoth  */
    986       1.1    ahoka int
    987       1.1    ahoka chfs_gcollect_deletion_dirent(struct chfs_mount *chmp,
    988       1.1    ahoka     struct chfs_eraseblock *cheb, struct chfs_inode *parent,
    989       1.1    ahoka     struct chfs_dirent *fd)
    990       1.1    ahoka {
    991       1.1    ahoka 	struct chfs_flash_dirent_node chfdn;
    992       1.1    ahoka 	struct chfs_node_ref *nref;
    993       1.1    ahoka 	size_t retlen, name_len, nref_len;
    994       1.1    ahoka 	uint32_t name_crc;
    995       1.1    ahoka 
    996       1.1    ahoka 	int ret;
    997       1.1    ahoka 
    998       1.1    ahoka 	dbg_gc("gcollect_deletion_dirent\n");
    999       1.1    ahoka 
   1000       1.4    ttoth 	/* Check node. */
   1001       1.1    ahoka 	name_len = strlen(fd->name);
   1002       1.1    ahoka 	name_crc = crc32(0, fd->name, name_len);
   1003       1.1    ahoka 
   1004       1.1    ahoka 	nref_len = chfs_nref_len(chmp, cheb, fd->nref);
   1005       1.1    ahoka 
   1006       1.8  hannken 	/* XXX This was a noop  (void)chfs_vnode_lookup(chmp, fd->vno); */
   1007       1.1    ahoka 
   1008       1.4    ttoth 	/* Find it in parent dirents. */
   1009       1.1    ahoka 	for (nref = parent->chvc->dirents;
   1010       1.1    ahoka 	     nref != (void*)parent->chvc;
   1011       1.1    ahoka 	     nref = nref->nref_next) {
   1012       1.1    ahoka 
   1013       1.1    ahoka 		if (!CHFS_REF_OBSOLETE(nref))
   1014       1.1    ahoka 			continue;
   1015       1.1    ahoka 
   1016       1.1    ahoka 		/* if node refs have different length, skip */
   1017       1.1    ahoka 		if (chfs_nref_len(chmp, NULL, nref) != nref_len)
   1018       1.1    ahoka 			continue;
   1019       1.1    ahoka 
   1020       1.1    ahoka 		if (CHFS_GET_OFS(nref->nref_offset) ==
   1021       1.1    ahoka 		    CHFS_GET_OFS(fd->nref->nref_offset)) {
   1022       1.1    ahoka 			continue;
   1023       1.1    ahoka 		}
   1024       1.1    ahoka 
   1025       1.4    ttoth 		/* read it from flash */
   1026       1.1    ahoka 		ret = chfs_read_leb(chmp,
   1027       1.1    ahoka 		    nref->nref_lnr, (void*)&chfdn, CHFS_GET_OFS(nref->nref_offset),
   1028       1.1    ahoka 		    nref_len, &retlen);
   1029       1.1    ahoka 
   1030       1.1    ahoka 		if (ret) {
   1031       1.1    ahoka 			dbg_gc("Read error: %d\n", ret);
   1032       1.1    ahoka 			continue;
   1033       1.1    ahoka 		}
   1034       1.1    ahoka 
   1035       1.1    ahoka 		if (retlen != nref_len) {
   1036       1.1    ahoka 			dbg_gc("Error reading node:"
   1037       1.1    ahoka 			    " read: %zu insted of: %zu\n", retlen, nref_len);
   1038       1.1    ahoka 			continue;
   1039       1.1    ahoka 		}
   1040       1.1    ahoka 
   1041       1.1    ahoka 		/* if node type doesn't match, skip */
   1042       1.1    ahoka 		if (le16toh(chfdn.type) != CHFS_NODETYPE_DIRENT)
   1043       1.1    ahoka 			continue;
   1044       1.1    ahoka 
   1045       1.1    ahoka 		/* if crc doesn't match, skip */
   1046       1.1    ahoka 		if (le32toh(chfdn.name_crc) != name_crc)
   1047       1.1    ahoka 			continue;
   1048       1.1    ahoka 
   1049       1.1    ahoka 		/* if length of name different, or this is an another deletion
   1050       1.1    ahoka 		 * dirent, skip
   1051       1.1    ahoka 		 */
   1052       1.1    ahoka 		if (chfdn.nsize != name_len || !le64toh(chfdn.vno))
   1053       1.1    ahoka 			continue;
   1054       1.1    ahoka 
   1055       1.1    ahoka 		/* check actual name */
   1056       1.1    ahoka 		if (memcmp(chfdn.name, fd->name, name_len))
   1057       1.1    ahoka 			continue;
   1058       1.1    ahoka 
   1059       1.3    ttoth 		mutex_enter(&chmp->chm_lock_vnocache);
   1060       1.3    ttoth 		chfs_remove_and_obsolete(chmp, parent->chvc, fd->nref,
   1061       1.3    ttoth 			&parent->chvc->dirents);
   1062       1.3    ttoth 		mutex_exit(&chmp->chm_lock_vnocache);
   1063       1.1    ahoka 		return chfs_write_flash_dirent(chmp,
   1064       1.1    ahoka 		    parent, NULL, fd, fd->vno, ALLOC_GC);
   1065       1.1    ahoka 	}
   1066       1.1    ahoka 
   1067       1.4    ttoth 	/* Simply remove it from the parent dirents. */
   1068       1.1    ahoka 	TAILQ_REMOVE(&parent->dents, fd, fds);
   1069       1.1    ahoka 	chfs_free_dirent(fd);
   1070       1.1    ahoka 	return 0;
   1071       1.1    ahoka }
   1072       1.1    ahoka 
   1073       1.4    ttoth /* chfs_gcollect_dnode - */
   1074       1.1    ahoka int
   1075       1.1    ahoka chfs_gcollect_dnode(struct chfs_mount *chmp,
   1076       1.1    ahoka     struct chfs_eraseblock *orig_cheb, struct chfs_inode *ip,
   1077       1.1    ahoka     struct chfs_full_dnode *fn, uint32_t orig_start, uint32_t orig_end)
   1078       1.1    ahoka {
   1079       1.3    ttoth 	struct chfs_node_ref *nref;
   1080       1.1    ahoka 	struct chfs_full_dnode *newfn;
   1081       1.1    ahoka 	struct chfs_flash_data_node *fdnode;
   1082       1.1    ahoka 	int ret = 0, retries = 0;
   1083       1.1    ahoka 	uint32_t totlen;
   1084       1.1    ahoka 	char *data = NULL;
   1085       1.1    ahoka 	struct iovec vec;
   1086       1.1    ahoka 	size_t retlen;
   1087       1.1    ahoka 	dbg_gc("gcollect_dnode\n");
   1088       1.1    ahoka 
   1089       1.4    ttoth 	//TODO merge frags
   1090       1.1    ahoka 
   1091       1.1    ahoka 	KASSERT(orig_cheb->lnr == fn->nref->nref_lnr);
   1092       1.1    ahoka 	totlen = chfs_nref_len(chmp, orig_cheb, fn->nref);
   1093       1.1    ahoka 	data = kmem_alloc(totlen, KM_SLEEP);
   1094       1.1    ahoka 
   1095       1.4    ttoth 	/* Read the node from the flash. */
   1096       1.1    ahoka 	ret = chfs_read_leb(chmp, fn->nref->nref_lnr, data, fn->nref->nref_offset,
   1097       1.1    ahoka 	    totlen, &retlen);
   1098       1.1    ahoka 
   1099       1.1    ahoka 	fdnode = (struct chfs_flash_data_node *)data;
   1100       1.1    ahoka 	fdnode->version = htole64(++ip->chvc->highest_version);
   1101       1.1    ahoka 	fdnode->node_crc = htole32(crc32(0, (uint8_t *)fdnode,
   1102       1.1    ahoka 		sizeof(*fdnode) - 4));
   1103       1.1    ahoka 
   1104       1.1    ahoka 	vec.iov_base = (void *)data;
   1105       1.1    ahoka 	vec.iov_len = totlen;
   1106       1.1    ahoka 
   1107       1.1    ahoka retry:
   1108       1.4    ttoth 	/* Set the next block where we can write. */
   1109       1.1    ahoka 	ret = chfs_reserve_space_gc(chmp, totlen);
   1110       1.1    ahoka 	if (ret)
   1111       1.1    ahoka 		goto out;
   1112       1.1    ahoka 
   1113       1.1    ahoka 	nref = chfs_alloc_node_ref(chmp->chm_nextblock);
   1114       1.1    ahoka 	if (!nref) {
   1115       1.1    ahoka 		ret = ENOMEM;
   1116       1.1    ahoka 		goto out;
   1117       1.1    ahoka 	}
   1118       1.1    ahoka 
   1119       1.1    ahoka 	mutex_enter(&chmp->chm_lock_sizes);
   1120       1.1    ahoka 
   1121       1.1    ahoka 	nref->nref_offset = chmp->chm_ebh->eb_size - chmp->chm_nextblock->free_size;
   1122       1.1    ahoka 	KASSERT(nref->nref_offset % 4 == 0);
   1123       1.1    ahoka 	chfs_change_size_free(chmp, chmp->chm_nextblock, -totlen);
   1124       1.1    ahoka 
   1125       1.4    ttoth 	/* Write it to the writebuffer. */
   1126       1.1    ahoka 	ret = chfs_write_wbuf(chmp, &vec, 1, nref->nref_offset, &retlen);
   1127       1.1    ahoka 	if (ret || retlen != totlen) {
   1128       1.4    ttoth 		/* error during writing */
   1129       1.1    ahoka 		chfs_err("error while writing out to the media\n");
   1130       1.1    ahoka 		chfs_err("err: %d | size: %d | retlen : %zu\n",
   1131       1.1    ahoka 		    ret, totlen, retlen);
   1132       1.1    ahoka 		chfs_change_size_dirty(chmp, chmp->chm_nextblock, totlen);
   1133       1.1    ahoka 		if (retries) {
   1134       1.1    ahoka 			ret = EIO;
   1135       1.1    ahoka 			mutex_exit(&chmp->chm_lock_sizes);
   1136       1.1    ahoka 			goto out;
   1137       1.1    ahoka 		}
   1138       1.1    ahoka 
   1139       1.4    ttoth 		/* try again */
   1140       1.1    ahoka 		retries++;
   1141       1.1    ahoka 		mutex_exit(&chmp->chm_lock_sizes);
   1142       1.1    ahoka 		goto retry;
   1143       1.1    ahoka 	}
   1144       1.1    ahoka 
   1145       1.1    ahoka 	dbg_gc("new nref lnr: %u - offset: %u\n", nref->nref_lnr, nref->nref_offset);
   1146       1.1    ahoka 
   1147       1.1    ahoka 	chfs_change_size_used(chmp, &chmp->chm_blocks[nref->nref_lnr], totlen);
   1148       1.1    ahoka 	mutex_exit(&chmp->chm_lock_sizes);
   1149       1.1    ahoka 	KASSERT(chmp->chm_blocks[nref->nref_lnr].used_size <= chmp->chm_ebh->eb_size);
   1150       1.1    ahoka 
   1151       1.4    ttoth 	/* Set fields of the new node. */
   1152       1.1    ahoka 	newfn = chfs_alloc_full_dnode();
   1153       1.1    ahoka 	newfn->nref = nref;
   1154       1.1    ahoka 	newfn->ofs = fn->ofs;
   1155       1.1    ahoka 	newfn->size = fn->size;
   1156       1.3    ttoth 	newfn->frags = 0;
   1157       1.1    ahoka 
   1158       1.3    ttoth 	mutex_enter(&chmp->chm_lock_vnocache);
   1159       1.4    ttoth 	/* Remove every part of the old node. */
   1160       1.3    ttoth 	chfs_remove_frags_of_node(chmp, &ip->fragtree, fn->nref);
   1161       1.3    ttoth 	chfs_remove_and_obsolete(chmp, ip->chvc, fn->nref, &ip->chvc->dnode);
   1162       1.1    ahoka 
   1163       1.4    ttoth 	/* Add the new nref to inode. */
   1164       1.1    ahoka 	chfs_add_full_dnode_to_inode(chmp, ip, newfn);
   1165       1.1    ahoka 	chfs_add_node_to_list(chmp,
   1166       1.1    ahoka 	    ip->chvc, newfn->nref, &ip->chvc->dnode);
   1167       1.3    ttoth 	mutex_exit(&chmp->chm_lock_vnocache);
   1168       1.1    ahoka 
   1169       1.1    ahoka out:
   1170       1.1    ahoka 	kmem_free(data, totlen);
   1171       1.1    ahoka 	return ret;
   1172       1.1    ahoka }
   1173