d65f6f7009
. common/include/arch/i386 is not actually an imported sys/arch/i386/include but leftover Minix files; remove and move to include/ . move include/ufs to sys/ufs, where it came from, now that we have a sys/ hierarchy . move mdocml/ to external/bsd/, now we have that . single sys/arch/i386/stand/ import for boot stuff
405 lines
11 KiB
C
405 lines
11 KiB
C
/* $NetBSD: chfs_build.c,v 1.2 2011/11/24 21:22:39 agc Exp $ */
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/*-
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* Copyright (c) 2010 Department of Software Engineering,
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* University of Szeged, Hungary
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* All rights reserved.
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*
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* This code is derived from software contributed to The NetBSD Foundation
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* by the Department of Software Engineering, University of Szeged, Hungary
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*
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* Redistribution and use in source and binary forms, with or without
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* modification, are permitted provided that the following conditions
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* are met:
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* 1. Redistributions of source code must retain the above copyright
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* notice, this list of conditions and the following disclaimer.
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* 2. Redistributions in binary form must reproduce the above copyright
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* notice, this list of conditions and the following disclaimer in the
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* documentation and/or other materials provided with the distribution.
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*
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* THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
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* IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
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* OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
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* IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
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* INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING,
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* BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
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* LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED
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* AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY,
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* OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
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* OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
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* SUCH DAMAGE.
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*/
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#include "chfs.h"
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//#include </root/xipffs/netbsd.chfs/chfs.h>
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void
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chfs_calc_trigger_levels(struct chfs_mount *chmp)
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{
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uint32_t size;
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chmp->chm_resv_blocks_deletion = 2;
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size = chmp->chm_ebh->flash_size / 50; //2% of flash size
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size += chmp->chm_ebh->peb_nr * 100;
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size += chmp->chm_ebh->eb_size - 1;
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chmp->chm_resv_blocks_write =
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chmp->chm_resv_blocks_deletion + (size / chmp->chm_ebh->eb_size);
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chmp->chm_resv_blocks_gctrigger = chmp->chm_resv_blocks_write + 1;
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chmp->chm_resv_blocks_gcmerge = chmp->chm_resv_blocks_deletion + 1;
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chmp->chm_vdirty_blocks_gctrigger = chmp->chm_resv_blocks_gctrigger * 10;
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chmp->chm_nospc_dirty =
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chmp->chm_ebh->eb_size + (chmp->chm_ebh->flash_size / 100);
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}
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/**
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* chfs_build_set_vnodecache_nlink - set pvno and nlink in vnodecaches
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* @chmp: CHFS main descriptor structure
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* @vc: vnode cache
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* This function travels @vc's directory entries and sets the pvno and nlink
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* attribute of the vnode where the dirent's vno points.
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*/
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void
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chfs_build_set_vnodecache_nlink(struct chfs_mount *chmp,
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struct chfs_vnode_cache *vc)
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{
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struct chfs_dirent *fd;
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//dbg("set nlink\n");
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// for (fd = vc->scan_dirents; fd; fd = fd->next) {
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TAILQ_FOREACH(fd, &vc->scan_dirents, fds) {
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struct chfs_vnode_cache *child_vc;
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if (!fd->vno)
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continue;
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mutex_enter(&chmp->chm_lock_vnocache);
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child_vc = chfs_vnode_cache_get(chmp, fd->vno);
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mutex_exit(&chmp->chm_lock_vnocache);
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if (!child_vc) {
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chfs_mark_node_obsolete(chmp, fd->nref);
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continue;
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}
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if (fd->type == VDIR) {
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if (child_vc->nlink < 1)
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child_vc->nlink = 1;
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if (child_vc->pvno) {
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chfs_err("found a hard link: child dir: %s"
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", (vno: %llu) of dir vno: %llu\n",
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fd->name, (unsigned long long)fd->vno,
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(unsigned long long)vc->vno);
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} else {
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//dbg("child_vc->pvno =
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// vc->vno; pvno = %d\n", child_vc->pvno);
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child_vc->pvno = vc->vno;
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}
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}
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child_vc->nlink++;
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//dbg("child_vc->nlink++;\n");
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//child_vc->nlink++;
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vc->nlink++;
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}
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}
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/**
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* chfs_build_remove_unlinked vnode
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*/
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/* static */
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void
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chfs_build_remove_unlinked_vnode(struct chfs_mount *chmp,
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struct chfs_vnode_cache *vc,
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// struct chfs_dirent **unlinked)
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struct chfs_dirent_list *unlinked)
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{
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struct chfs_node_ref *nref;
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struct chfs_dirent *fd, *tmpfd;
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dbg("START\n");
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dbg("vno: %llu\n", (unsigned long long)vc->vno);
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nref = vc->dnode;
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KASSERT(mutex_owned(&chmp->chm_lock_mountfields));
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// The vnode cache is at the end of the data node's chain
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while (nref != (struct chfs_node_ref *)vc) {
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struct chfs_node_ref *next = nref->nref_next;
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dbg("mark dnode\n");
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chfs_mark_node_obsolete(chmp, nref);
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nref = next;
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}
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nref = vc->dirents;
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// The vnode cache is at the end of the dirent node's chain
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while (nref != (struct chfs_node_ref *)vc) {
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struct chfs_node_ref *next = nref->nref_next;
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dbg("mark dirent\n");
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chfs_mark_node_obsolete(chmp, nref);
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nref = next;
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}
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if (!TAILQ_EMPTY(&vc->scan_dirents)) {
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TAILQ_FOREACH_SAFE(fd, &vc->scan_dirents, fds, tmpfd) {
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// while (vc->scan_dirents) {
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struct chfs_vnode_cache *child_vc;
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// fd = vc->scan_dirents;
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dbg("dirent dump:\n");
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dbg(" ->vno: %llu\n", (unsigned long long)fd->vno);
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dbg(" ->version: %llu\n", (unsigned long long)fd->version);
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dbg(" ->nhash: 0x%x\n", fd->nhash);
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dbg(" ->nsize: %d\n", fd->nsize);
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dbg(" ->name: %s\n", fd->name);
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dbg(" ->type: %d\n", fd->type);
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// vc->scan_dirents = fd->next;
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TAILQ_REMOVE(&vc->scan_dirents, fd, fds);
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if (!fd->vno) {
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chfs_free_dirent(fd);
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continue;
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}
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mutex_enter(&chmp->chm_lock_vnocache);
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child_vc = chfs_vnode_cache_get(chmp, fd->vno);
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mutex_exit(&chmp->chm_lock_vnocache);
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if (!child_vc) {
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chfs_free_dirent(fd);
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continue;
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}
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/**
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* Decrease nlink in child. If it is 0, add to unlinked
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* dirents or just free it otherwise.
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*/
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child_vc->nlink--;
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if (!child_vc->nlink) {
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//dbg("nlink is 0\n");
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// fd->next = *unlinked;
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// *unlinked = fd;
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// XXX HEAD or TAIL?
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// original code did HEAD, but we could add
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// it to the TAIL easily with TAILQ.
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TAILQ_INSERT_TAIL(unlinked, fd, fds);
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} else {
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chfs_free_dirent(fd);
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}
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}
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} else {
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dbg("there are no scan dirents\n");
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}
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nref = vc->v;
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while ((struct chfs_vnode_cache *)nref != vc) {
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if (!CHFS_REF_OBSOLETE(nref))
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chfs_mark_node_obsolete(chmp, nref);
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nref = nref->nref_next;
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}
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mutex_enter(&chmp->chm_lock_vnocache);
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if (vc->vno != CHFS_ROOTINO)
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chfs_vnode_cache_set_state(chmp, vc, VNO_STATE_UNCHECKED);
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mutex_exit(&chmp->chm_lock_vnocache);
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dbg("END\n");
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}
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/**
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* chfs_build_filesystem - build in-memory representation of filesystem
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* @chmp: super block information
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*
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* Step 1:
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* This function scans through the eraseblocks mapped in EBH.
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* During scan builds up the map of vnodes and directory entries and puts them
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* into the vnode_cache.
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* Step 2:
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* Scans the directory tree and set the nlink in the vnode caches.
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* Step 3:
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* Scans vnode caches with nlink = 0
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*/
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int
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chfs_build_filesystem(struct chfs_mount *chmp)
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{
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int i,err = 0;
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struct chfs_vnode_cache *vc;
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struct chfs_dirent *fd, *tmpfd;
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// struct chfs_dirent *unlinked = NULL;
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struct chfs_node_ref **nref;
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struct chfs_dirent_list unlinked;
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struct chfs_vnode_cache *notregvc;
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TAILQ_INIT(&unlinked);
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mutex_enter(&chmp->chm_lock_mountfields);
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/**
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* Step 1
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*/
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chmp->chm_flags |= CHFS_MP_FLAG_SCANNING;
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for (i = 0; i < chmp->chm_ebh->peb_nr; i++) {
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//dbg("processing block: %d\n", i);
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chmp->chm_blocks[i].lnr = i;
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chmp->chm_blocks[i].free_size = chmp->chm_ebh->eb_size;
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//If the LEB is add to free list skip it.
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if (chmp->chm_ebh->lmap[i] < 0) {
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//dbg("block %d is unmapped\n", i);
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TAILQ_INSERT_TAIL(&chmp->chm_free_queue,
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&chmp->chm_blocks[i], queue);
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chmp->chm_nr_free_blocks++;
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continue;
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}
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err = chfs_scan_eraseblock(chmp, &chmp->chm_blocks[i]);
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switch (err) {
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case CHFS_BLK_STATE_FREE:
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chmp->chm_nr_free_blocks++;
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TAILQ_INSERT_TAIL(&chmp->chm_free_queue,
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&chmp->chm_blocks[i], queue);
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break;
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case CHFS_BLK_STATE_CLEAN:
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TAILQ_INSERT_TAIL(&chmp->chm_clean_queue,
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&chmp->chm_blocks[i], queue);
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break;
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case CHFS_BLK_STATE_PARTDIRTY:
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//dbg("free size: %d\n", chmp->chm_blocks[i].free_size);
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if (chmp->chm_blocks[i].free_size > chmp->chm_wbuf_pagesize &&
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(!chmp->chm_nextblock ||
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chmp->chm_blocks[i].free_size >
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chmp->chm_nextblock->free_size)) {
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/* convert the old nextblock's free size to
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* dirty and put it on a list */
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if (chmp->chm_nextblock) {
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err = chfs_close_eraseblock(chmp,
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chmp->chm_nextblock);
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if (err)
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return err;
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}
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chmp->chm_nextblock = &chmp->chm_blocks[i];
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} else {
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/* convert the scanned block's free size to
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* dirty and put it on a list */
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err = chfs_close_eraseblock(chmp,
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&chmp->chm_blocks[i]);
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if (err)
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return err;
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}
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break;
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case CHFS_BLK_STATE_ALLDIRTY:
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/*
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* The block has a valid EBH header, but it doesn't
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* contain any valid data.
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*/
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TAILQ_INSERT_TAIL(&chmp->chm_erase_pending_queue,
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&chmp->chm_blocks[i], queue);
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chmp->chm_nr_erasable_blocks++;
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break;
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default:
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/* It was an error, unknown state */
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break;
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}
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}
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chmp->chm_flags &= ~CHFS_MP_FLAG_SCANNING;
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//TODO need bad block check (and bad block handling in EBH too!!)
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/* Now EBH only checks block is bad during its scan operation.
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* Need check at erase + write + read...
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*/
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/**
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* Step 2
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*/
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chmp->chm_flags |= CHFS_MP_FLAG_BUILDING;
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for (i = 0; i < VNODECACHE_SIZE; i++) {
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vc = chmp->chm_vnocache_hash[i];
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while (vc) {
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dbg("vc->vno: %llu\n", (unsigned long long)vc->vno);
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if (!TAILQ_EMPTY(&vc->scan_dirents))
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chfs_build_set_vnodecache_nlink(chmp, vc);
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vc = vc->next;
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}
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}
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/**
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* Step 3
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* Scan for vnodes with 0 nlink.
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*/
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for (i = 0; i < VNODECACHE_SIZE; i++) {
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vc = chmp->chm_vnocache_hash[i];
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while (vc) {
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if (vc->nlink) {
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vc = vc->next;
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continue;
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}
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//dbg("remove unlinked start i: %d\n", i);
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chfs_build_remove_unlinked_vnode(chmp,
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vc, &unlinked);
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//dbg("remove unlinked end\n");
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vc = vc->next;
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}
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}
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/* Remove the newly unlinked vnodes. They are on the unlinked list */
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TAILQ_FOREACH_SAFE(fd, &unlinked, fds, tmpfd) {
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// while (unlinked) {
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// fd = unlinked;
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// unlinked = fd->next;
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TAILQ_REMOVE(&unlinked, fd, fds);
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mutex_enter(&chmp->chm_lock_vnocache);
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vc = chfs_vnode_cache_get(chmp, fd->vno);
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mutex_exit(&chmp->chm_lock_vnocache);
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if (vc) {
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chfs_build_remove_unlinked_vnode(chmp,
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vc, &unlinked);
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}
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chfs_free_dirent(fd);
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}
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chmp->chm_flags &= ~CHFS_MP_FLAG_BUILDING;
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/* Free all dirents */
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for (i = 0; i < VNODECACHE_SIZE; i++) {
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vc = chmp->chm_vnocache_hash[i];
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while (vc) {
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TAILQ_FOREACH_SAFE(fd, &vc->scan_dirents, fds, tmpfd) {
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// while (vc->scan_dirents) {
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// fd = vc->scan_dirents;
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// vc->scan_dirents = fd->next;
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TAILQ_REMOVE(&vc->scan_dirents, fd, fds);
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if (fd->vno == 0) {
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//for (nref = &vc->dirents;
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// *nref != fd->nref;
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// nref = &((*nref)->next));
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nref = &fd->nref;
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*nref = fd->nref->nref_next;
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//fd->nref->nref_next = NULL;
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} else if (fd->type == VDIR) {
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//set state every non-VREG file's vc
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mutex_enter(&chmp->chm_lock_vnocache);
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notregvc =
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chfs_vnode_cache_get(chmp,
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fd->vno);
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chfs_vnode_cache_set_state(chmp,
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notregvc, VNO_STATE_PRESENT);
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mutex_exit(&chmp->chm_lock_vnocache);
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}
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chfs_free_dirent(fd);
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}
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// vc->scan_dirents = NULL;
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KASSERT(TAILQ_EMPTY(&vc->scan_dirents));
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vc = vc->next;
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}
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}
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//Set up chmp->chm_wbuf_ofs for the first write
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if (chmp->chm_nextblock) {
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dbg("free_size: %d\n", chmp->chm_nextblock->free_size);
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chmp->chm_wbuf_ofs = chmp->chm_ebh->eb_size -
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chmp->chm_nextblock->free_size;
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} else {
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chmp->chm_wbuf_ofs = 0xffffffff;
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}
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mutex_exit(&chmp->chm_lock_mountfields);
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return 0;
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}
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