84d9c625bf
- Fix for possible unset uid/gid in toproto - Fix for default mtree style - Update libelf - Importing libexecinfo - Resynchronize GCC, mpc, gmp, mpfr - build.sh: Replace params with show-params. This has been done as the make target has been renamed in the same way, while a new target named params has been added. This new target generates a file containing all the parameters, instead of printing it on the console. - Update test48 with new etc/services (Fix by Ben Gras <ben@minix3.org) get getservbyport() out of the inner loop Change-Id: Ie6ad5226fa2621ff9f0dee8782ea48f9443d2091
540 lines
16 KiB
C
540 lines
16 KiB
C
/* $NetBSD: chfs_write.c,v 1.5 2012/10/19 12:44:39 ttoth 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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* Copyright (C) 2010 David Tengeri <dtengeri@inf.u-szeged.hu>
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* Copyright (C) 2010 Tamas Toth <ttoth@inf.u-szeged.hu>
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* Copyright (C) 2010 Adam Hoka <ahoka@NetBSD.org>
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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 <sys/param.h>
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#include <sys/buf.h>
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#include "chfs.h"
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/* chfs_write_flash_vnode - writes out a vnode information to flash */
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int
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chfs_write_flash_vnode(struct chfs_mount *chmp,
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struct chfs_inode *ip, int prio)
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{
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KASSERT(mutex_owned(&chmp->chm_lock_mountfields));
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struct chfs_flash_vnode *fvnode;
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struct chfs_vnode_cache* chvc;
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struct chfs_node_ref *nref;
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struct iovec vec;
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size_t size, retlen;
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int err = 0, retries = 0;
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/* root vnode is in-memory only */
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if (ip->ino == CHFS_ROOTINO)
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return 0;
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fvnode = chfs_alloc_flash_vnode();
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if (!fvnode)
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return ENOMEM;
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chvc = ip->chvc;
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/* setting up flash_vnode's fields */
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size = sizeof(*fvnode);
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fvnode->magic = htole16(CHFS_FS_MAGIC_BITMASK);
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fvnode->type = htole16(CHFS_NODETYPE_VNODE);
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fvnode->length = htole32(CHFS_PAD(size));
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fvnode->hdr_crc = htole32(crc32(0, (uint8_t *)fvnode,
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CHFS_NODE_HDR_SIZE - 4));
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fvnode->vno = htole64(ip->ino);
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fvnode->version = htole64(++ip->chvc->highest_version);
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fvnode->mode = htole32(ip->mode);
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fvnode->dn_size = htole32(ip->size);
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fvnode->atime = htole32(ip->atime);
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fvnode->ctime = htole32(ip->ctime);
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fvnode->mtime = htole32(ip->mtime);
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fvnode->gid = htole32(ip->gid);
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fvnode->uid = htole32(ip->uid);
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fvnode->node_crc = htole32(crc32(0, (uint8_t *)fvnode, size - 4));
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retry:
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/* setting up the next eraseblock where we will write */
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if (prio == ALLOC_GC) {
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/* GC called this function */
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err = chfs_reserve_space_gc(chmp, CHFS_PAD(size));
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if (err)
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goto out;
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} else {
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chfs_gc_trigger(chmp);
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if (prio == ALLOC_NORMAL)
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err = chfs_reserve_space_normal(chmp,
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CHFS_PAD(size), ALLOC_NORMAL);
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else
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err = chfs_reserve_space_normal(chmp,
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CHFS_PAD(size), ALLOC_DELETION);
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if (err)
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goto out;
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}
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/* allocating a new node reference */
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nref = chfs_alloc_node_ref(chmp->chm_nextblock);
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if (!nref) {
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err = ENOMEM;
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goto out;
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}
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mutex_enter(&chmp->chm_lock_sizes);
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/* caculating offset and sizes */
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nref->nref_offset = chmp->chm_ebh->eb_size - chmp->chm_nextblock->free_size;
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chfs_change_size_free(chmp, chmp->chm_nextblock, -CHFS_PAD(size));
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vec.iov_base = fvnode;
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vec.iov_len = CHFS_PAD(size);
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/* write it into the writebuffer */
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err = chfs_write_wbuf(chmp, &vec, 1, nref->nref_offset, &retlen);
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if (err || retlen != CHFS_PAD(size)) {
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/* there was an error during write */
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chfs_err("error while writing out flash vnode to the media\n");
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chfs_err("err: %d | size: %zu | retlen : %zu\n",
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err, CHFS_PAD(size), retlen);
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chfs_change_size_dirty(chmp,
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chmp->chm_nextblock, CHFS_PAD(size));
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if (retries) {
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err = EIO;
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mutex_exit(&chmp->chm_lock_sizes);
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goto out;
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}
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/* try again */
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retries++;
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mutex_exit(&chmp->chm_lock_sizes);
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goto retry;
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}
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/* everything went well */
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chfs_change_size_used(chmp,
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&chmp->chm_blocks[nref->nref_lnr], CHFS_PAD(size));
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mutex_exit(&chmp->chm_lock_sizes);
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/* add the new nref to vnode cache */
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mutex_enter(&chmp->chm_lock_vnocache);
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chfs_add_vnode_ref_to_vc(chmp, chvc, nref);
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mutex_exit(&chmp->chm_lock_vnocache);
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KASSERT(chmp->chm_blocks[nref->nref_lnr].used_size <= chmp->chm_ebh->eb_size);
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out:
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chfs_free_flash_vnode(fvnode);
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return err;
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}
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/* chfs_write_flash_dirent - writes out a directory entry to flash */
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int
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chfs_write_flash_dirent(struct chfs_mount *chmp, struct chfs_inode *pdir,
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struct chfs_inode *ip, struct chfs_dirent *fd,
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ino_t ino, int prio)
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{
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KASSERT(mutex_owned(&chmp->chm_lock_mountfields));
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struct chfs_flash_dirent_node *fdirent;
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struct chfs_node_ref *nref;
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struct iovec vec[2];
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size_t size, retlen;
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int err = 0, retries = 0;
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uint8_t *name;
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size_t namelen;
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KASSERT(fd->vno != CHFS_ROOTINO);
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/* setting up flash_dirent's fields */
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fdirent = chfs_alloc_flash_dirent();
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if (!fdirent)
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return ENOMEM;
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size = sizeof(*fdirent) + fd->nsize;
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namelen = CHFS_PAD(size) - sizeof(*fdirent);
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name = kmem_zalloc(namelen, KM_SLEEP);
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memcpy(name, fd->name, fd->nsize);
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fdirent->magic = htole16(CHFS_FS_MAGIC_BITMASK);
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fdirent->type = htole16(CHFS_NODETYPE_DIRENT);
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fdirent->length = htole32(CHFS_PAD(size));
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fdirent->hdr_crc = htole32(crc32(0, (uint8_t *)fdirent,
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CHFS_NODE_HDR_SIZE - 4));
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fdirent->vno = htole64(ino);
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fdirent->pvno = htole64(pdir->ino);
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fdirent->version = htole64(++pdir->chvc->highest_version);
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fdirent->mctime = ip?ip->ctime:0;
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fdirent->nsize = fd->nsize;
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fdirent->dtype = fd->type;
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fdirent->name_crc = crc32(0, (uint8_t *)&(fd->name), fd->nsize);
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fdirent->node_crc = crc32(0, (uint8_t *)fdirent, sizeof(*fdirent) - 4);
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/* directory's name is written out right after the dirent */
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vec[0].iov_base = fdirent;
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vec[0].iov_len = sizeof(*fdirent);
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vec[1].iov_base = name;
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vec[1].iov_len = namelen;
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retry:
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/* setting up the next eraseblock where we will write */
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if (prio == ALLOC_GC) {
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/* the GC calls this function */
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err = chfs_reserve_space_gc(chmp, CHFS_PAD(size));
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if (err)
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goto out;
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} else {
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chfs_gc_trigger(chmp);
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if (prio == ALLOC_NORMAL)
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err = chfs_reserve_space_normal(chmp,
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CHFS_PAD(size), ALLOC_NORMAL);
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else
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err = chfs_reserve_space_normal(chmp,
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CHFS_PAD(size), ALLOC_DELETION);
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if (err)
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goto out;
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}
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/* allocating a new node reference */
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nref = chfs_alloc_node_ref(chmp->chm_nextblock);
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if (!nref) {
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err = ENOMEM;
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goto out;
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}
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mutex_enter(&chmp->chm_lock_sizes);
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nref->nref_offset = chmp->chm_ebh->eb_size - chmp->chm_nextblock->free_size;
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chfs_change_size_free(chmp, chmp->chm_nextblock, -CHFS_PAD(size));
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/* write it into the writebuffer */
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err = chfs_write_wbuf(chmp, vec, 2, nref->nref_offset, &retlen);
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if (err || retlen != CHFS_PAD(size)) {
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/* there was an error during write */
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chfs_err("error while writing out flash dirent node to the media\n");
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chfs_err("err: %d | size: %zu | retlen : %zu\n",
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err, CHFS_PAD(size), retlen);
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chfs_change_size_dirty(chmp,
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chmp->chm_nextblock, CHFS_PAD(size));
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if (retries) {
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err = EIO;
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mutex_exit(&chmp->chm_lock_sizes);
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goto out;
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}
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/* try again */
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retries++;
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mutex_exit(&chmp->chm_lock_sizes);
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goto retry;
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}
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/* everything went well */
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chfs_change_size_used(chmp,
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&chmp->chm_blocks[nref->nref_lnr], CHFS_PAD(size));
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mutex_exit(&chmp->chm_lock_sizes);
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KASSERT(chmp->chm_blocks[nref->nref_lnr].used_size <= chmp->chm_ebh->eb_size);
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/* add the new nref to the directory chain of vnode cache */
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fd->nref = nref;
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if (prio != ALLOC_DELETION) {
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mutex_enter(&chmp->chm_lock_vnocache);
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chfs_add_node_to_list(chmp,
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pdir->chvc, nref, &pdir->chvc->dirents);
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mutex_exit(&chmp->chm_lock_vnocache);
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}
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out:
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chfs_free_flash_dirent(fdirent);
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return err;
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}
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/* chfs_write_flash_dnode - writes out a data node to flash */
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int
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chfs_write_flash_dnode(struct chfs_mount *chmp, struct vnode *vp,
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struct buf *bp, struct chfs_full_dnode *fd)
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{
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KASSERT(mutex_owned(&chmp->chm_lock_mountfields));
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int err = 0, retries = 0;
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size_t size, retlen;
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off_t ofs;
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struct chfs_flash_data_node *dnode;
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struct chfs_node_ref *nref;
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struct chfs_inode *ip = VTOI(vp);
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struct iovec vec[2];
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uint32_t len;
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void *tmpbuf = NULL;
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KASSERT(ip->ino != CHFS_ROOTINO);
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dnode = chfs_alloc_flash_dnode();
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if (!dnode)
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return ENOMEM;
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/* initialize flash data node */
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ofs = bp->b_blkno * PAGE_SIZE;
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len = MIN((vp->v_size - ofs), bp->b_resid);
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size = sizeof(*dnode) + len;
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dnode->magic = htole16(CHFS_FS_MAGIC_BITMASK);
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dnode->type = htole16(CHFS_NODETYPE_DATA);
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dnode->length = htole32(CHFS_PAD(size));
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dnode->hdr_crc = htole32(crc32(0, (uint8_t *)dnode,
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CHFS_NODE_HDR_SIZE - 4));
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dnode->vno = htole64(ip->ino);
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dnode->version = htole64(++ip->chvc->highest_version);
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dnode->offset = htole64(ofs);
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dnode->data_length = htole32(len);
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dnode->data_crc = htole32(crc32(0, (uint8_t *)bp->b_data, len));
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dnode->node_crc = htole32(crc32(0, (uint8_t *)dnode,
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sizeof(*dnode) - 4));
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dbg("dnode @%llu %ub v%llu\n", (unsigned long long)dnode->offset,
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dnode->data_length, (unsigned long long)dnode->version);
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/* pad data if needed */
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if (CHFS_PAD(size) - sizeof(*dnode)) {
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tmpbuf = kmem_zalloc(CHFS_PAD(size)
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- sizeof(*dnode), KM_SLEEP);
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memcpy(tmpbuf, bp->b_data, len);
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}
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/* creating iovecs for writebuffer
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* data is written out right after the data node */
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vec[0].iov_base = dnode;
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vec[0].iov_len = sizeof(*dnode);
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vec[1].iov_base = tmpbuf;
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vec[1].iov_len = CHFS_PAD(size) - sizeof(*dnode);
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fd->ofs = ofs;
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fd->size = len;
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retry:
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/* Reserve space for data node. This will set up the next eraseblock
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* where to we will write.
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*/
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chfs_gc_trigger(chmp);
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err = chfs_reserve_space_normal(chmp,
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CHFS_PAD(size), ALLOC_NORMAL);
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if (err)
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goto out;
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/* allocating a new node reference */
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nref = chfs_alloc_node_ref(chmp->chm_nextblock);
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if (!nref) {
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err = ENOMEM;
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goto out;
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}
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nref->nref_offset =
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chmp->chm_ebh->eb_size - chmp->chm_nextblock->free_size;
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KASSERT(nref->nref_offset < chmp->chm_ebh->eb_size);
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mutex_enter(&chmp->chm_lock_sizes);
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chfs_change_size_free(chmp,
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chmp->chm_nextblock, -CHFS_PAD(size));
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/* write it into the writebuffer */
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err = chfs_write_wbuf(chmp, vec, 2, nref->nref_offset, &retlen);
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if (err || retlen != CHFS_PAD(size)) {
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/* there was an error during write */
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chfs_err("error while writing out flash data node to the media\n");
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chfs_err("err: %d | size: %zu | retlen : %zu\n",
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err, size, retlen);
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chfs_change_size_dirty(chmp,
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chmp->chm_nextblock, CHFS_PAD(size));
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if (retries) {
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err = EIO;
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mutex_exit(&chmp->chm_lock_sizes);
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goto out;
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}
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/* try again */
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retries++;
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mutex_exit(&chmp->chm_lock_sizes);
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goto retry;
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}
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/* everything went well */
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ip->write_size += fd->size;
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chfs_change_size_used(chmp,
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&chmp->chm_blocks[nref->nref_lnr], CHFS_PAD(size));
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mutex_exit(&chmp->chm_lock_sizes);
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mutex_enter(&chmp->chm_lock_vnocache);
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if (fd->nref != NULL) {
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chfs_remove_frags_of_node(chmp, &ip->fragtree, fd->nref);
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chfs_remove_and_obsolete(chmp, ip->chvc, fd->nref, &ip->chvc->dnode);
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}
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/* add the new nref to the data node chain of vnode cache */
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KASSERT(chmp->chm_blocks[nref->nref_lnr].used_size <= chmp->chm_ebh->eb_size);
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fd->nref = nref;
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chfs_add_node_to_list(chmp, ip->chvc, nref, &ip->chvc->dnode);
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mutex_exit(&chmp->chm_lock_vnocache);
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out:
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chfs_free_flash_dnode(dnode);
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if (CHFS_PAD(size) - sizeof(*dnode)) {
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kmem_free(tmpbuf, CHFS_PAD(size) - sizeof(*dnode));
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}
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return err;
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}
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/*
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* chfs_do_link - makes a copy from a node
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* This function writes the dirent of the new node to the media.
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*/
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int
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chfs_do_link(struct chfs_inode *ip, struct chfs_inode *parent, const char *name, int namelen, enum chtype type)
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{
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int error = 0;
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struct vnode *vp = ITOV(ip);
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struct ufsmount *ump = VFSTOUFS(vp->v_mount);
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struct chfs_mount *chmp = ump->um_chfs;
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struct chfs_dirent *newfd = NULL;
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/* setting up the new directory entry */
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newfd = chfs_alloc_dirent(namelen + 1);
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newfd->vno = ip->ino;
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newfd->type = type;
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newfd->nsize = namelen;
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memcpy(newfd->name, name, namelen);
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newfd->name[newfd->nsize] = 0;
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ip->chvc->nlink++;
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parent->chvc->nlink++;
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ip->iflag |= IN_CHANGE;
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chfs_update(vp, NULL, NULL, UPDATE_WAIT);
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mutex_enter(&chmp->chm_lock_mountfields);
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/* update vnode information */
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error = chfs_write_flash_vnode(chmp, ip, ALLOC_NORMAL);
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if (error)
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return error;
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|
|
/* write out the new dirent */
|
|
error = chfs_write_flash_dirent(chmp,
|
|
parent, ip, newfd, ip->ino, ALLOC_NORMAL);
|
|
/* TODO: what should we do if error isn't zero? */
|
|
|
|
mutex_exit(&chmp->chm_lock_mountfields);
|
|
|
|
/* add fd to the fd list */
|
|
TAILQ_INSERT_TAIL(&parent->dents, newfd, fds);
|
|
|
|
return error;
|
|
}
|
|
|
|
|
|
/*
|
|
* chfs_do_unlink - delete a node
|
|
* This function set the nlink and vno of the node to zero and
|
|
* write its dirent to the media.
|
|
*/
|
|
int
|
|
chfs_do_unlink(struct chfs_inode *ip,
|
|
struct chfs_inode *parent, const char *name, int namelen)
|
|
{
|
|
struct chfs_dirent *fd, *tmpfd;
|
|
int error = 0;
|
|
struct vnode *vp = ITOV(ip);
|
|
struct ufsmount *ump = VFSTOUFS(vp->v_mount);
|
|
struct chfs_mount *chmp = ump->um_chfs;
|
|
struct chfs_node_ref *nref;
|
|
|
|
vflushbuf(vp, 0);
|
|
|
|
mutex_enter(&chmp->chm_lock_mountfields);
|
|
|
|
/* remove the full direntry from the parent dents list */
|
|
TAILQ_FOREACH_SAFE(fd, &parent->dents, fds, tmpfd) {
|
|
if (fd->vno == ip->ino &&
|
|
fd->nsize == namelen &&
|
|
!memcmp(fd->name, name, fd->nsize)) {
|
|
|
|
/* remove every fragment of the file */
|
|
chfs_kill_fragtree(chmp, &ip->fragtree);
|
|
|
|
/* decrease number of links to the file */
|
|
if (fd->type == CHT_DIR && ip->chvc->nlink == 2)
|
|
ip->chvc->nlink = 0;
|
|
else
|
|
ip->chvc->nlink--;
|
|
|
|
fd->type = CHT_BLANK;
|
|
|
|
/* remove from parent's directory entries */
|
|
TAILQ_REMOVE(&parent->dents, fd, fds);
|
|
|
|
mutex_enter(&chmp->chm_lock_vnocache);
|
|
|
|
dbg("FD->NREF vno: %llu, lnr: %u, ofs: %u\n",
|
|
fd->vno, fd->nref->nref_lnr, fd->nref->nref_offset);
|
|
chfs_remove_and_obsolete(chmp, parent->chvc, fd->nref,
|
|
&parent->chvc->dirents);
|
|
|
|
error = chfs_write_flash_dirent(chmp,
|
|
parent, ip, fd, 0, ALLOC_DELETION);
|
|
|
|
dbg("FD->NREF vno: %llu, lnr: %u, ofs: %u\n",
|
|
fd->vno, fd->nref->nref_lnr, fd->nref->nref_offset);
|
|
/* set nref_next field */
|
|
chfs_add_node_to_list(chmp, parent->chvc, fd->nref,
|
|
&parent->chvc->dirents);
|
|
/* remove from the list */
|
|
chfs_remove_and_obsolete(chmp, parent->chvc, fd->nref,
|
|
&parent->chvc->dirents);
|
|
|
|
/* clean dnode list */
|
|
while (ip->chvc->dnode != (struct chfs_node_ref *)ip->chvc) {
|
|
nref = ip->chvc->dnode;
|
|
chfs_remove_frags_of_node(chmp, &ip->fragtree, nref);
|
|
chfs_remove_and_obsolete(chmp, ip->chvc, nref, &ip->chvc->dnode);
|
|
}
|
|
|
|
/* clean vnode information (list) */
|
|
while (ip->chvc->v != (struct chfs_node_ref *)ip->chvc) {
|
|
nref = ip->chvc->v;
|
|
chfs_remove_and_obsolete(chmp, ip->chvc, nref, &ip->chvc->v);
|
|
}
|
|
|
|
/* decrease number of links to parent */
|
|
parent->chvc->nlink--;
|
|
|
|
mutex_exit(&chmp->chm_lock_vnocache);
|
|
//TODO: if error
|
|
}
|
|
}
|
|
mutex_exit(&chmp->chm_lock_mountfields);
|
|
|
|
return error;
|
|
}
|