1 |
786 |
skrzyp |
/*
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2 |
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* JFFS2 -- Journalling Flash File System, Version 2.
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*
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* Copyright (C) 2001-2003 Red Hat, Inc.
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*
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* Created by David Woodhouse <dwmw2@infradead.org>
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*
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* For licensing information, see the file 'LICENCE' in this directory.
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*
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* $Id: write.c,v 1.94 2005/07/20 15:50:51 dedekind Exp $
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*
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*/
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#include <linux/kernel.h>
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#include <linux/fs.h>
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16 |
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#include <linux/crc32.h>
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#include <linux/slab.h>
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#include <linux/pagemap.h>
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#include <linux/mtd/mtd.h>
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#include "nodelist.h"
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#include "compr.h"
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int jffs2_do_new_inode(struct jffs2_sb_info *c, struct jffs2_inode_info *f, uint32_t mode, struct jffs2_raw_inode *ri)
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25 |
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{
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26 |
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struct jffs2_inode_cache *ic;
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ic = jffs2_alloc_inode_cache();
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if (!ic) {
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return -ENOMEM;
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}
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33 |
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memset(ic, 0, sizeof(*ic));
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34 |
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f->inocache = ic;
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f->inocache->nlink = 1;
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f->inocache->nodes = (struct jffs2_raw_node_ref *)f->inocache;
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f->inocache->state = INO_STATE_PRESENT;
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jffs2_add_ino_cache(c, f->inocache);
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D1(printk(KERN_DEBUG "jffs2_do_new_inode(): Assigned ino# %d\n", f->inocache->ino));
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ri->ino = cpu_to_je32(f->inocache->ino);
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ri->magic = cpu_to_je16(JFFS2_MAGIC_BITMASK);
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ri->nodetype = cpu_to_je16(JFFS2_NODETYPE_INODE);
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ri->totlen = cpu_to_je32(PAD(sizeof(*ri)));
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48 |
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ri->hdr_crc = cpu_to_je32(crc32(0, ri, sizeof(struct jffs2_unknown_node)-4));
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ri->mode = cpu_to_jemode(mode);
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f->highest_version = 1;
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ri->version = cpu_to_je32(f->highest_version);
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return 0;
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}
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/* jffs2_write_dnode - given a raw_inode, allocate a full_dnode for it,
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write it to the flash, link it into the existing inode/fragment list */
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struct jffs2_full_dnode *jffs2_write_dnode(struct jffs2_sb_info *c, struct jffs2_inode_info *f, struct jffs2_raw_inode *ri, const unsigned char *data, uint32_t datalen, uint32_t flash_ofs, int alloc_mode)
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{
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struct jffs2_raw_node_ref *raw;
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struct jffs2_full_dnode *fn;
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size_t retlen;
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struct kvec vecs[2];
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int ret;
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int retried = 0;
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unsigned long cnt = 2;
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D1(if(je32_to_cpu(ri->hdr_crc) != crc32(0, ri, sizeof(struct jffs2_unknown_node)-4)) {
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printk(KERN_CRIT "Eep. CRC not correct in jffs2_write_dnode()\n");
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BUG();
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}
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);
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vecs[0].iov_base = ri;
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vecs[0].iov_len = sizeof(*ri);
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vecs[1].iov_base = (unsigned char *)data;
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vecs[1].iov_len = datalen;
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jffs2_dbg_prewrite_paranoia_check(c, flash_ofs, vecs[0].iov_len + vecs[1].iov_len);
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if (je32_to_cpu(ri->totlen) != sizeof(*ri) + datalen) {
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printk(KERN_WARNING "jffs2_write_dnode: ri->totlen (0x%08x) != sizeof(*ri) (0x%08zx) + datalen (0x%08x)\n", je32_to_cpu(ri->totlen), sizeof(*ri), datalen);
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}
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raw = jffs2_alloc_raw_node_ref();
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if (!raw)
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return ERR_PTR(-ENOMEM);
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fn = jffs2_alloc_full_dnode();
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if (!fn) {
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jffs2_free_raw_node_ref(raw);
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return ERR_PTR(-ENOMEM);
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}
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fn->ofs = je32_to_cpu(ri->offset);
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fn->size = je32_to_cpu(ri->dsize);
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fn->frags = 0;
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/* check number of valid vecs */
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if (!datalen || !data)
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cnt = 1;
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retry:
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fn->raw = raw;
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raw->flash_offset = flash_ofs;
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raw->__totlen = PAD(sizeof(*ri)+datalen);
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raw->next_phys = NULL;
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if ((alloc_mode!=ALLOC_GC) && (je32_to_cpu(ri->version) < f->highest_version)) {
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BUG_ON(!retried);
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D1(printk(KERN_DEBUG "jffs2_write_dnode : dnode_version %d, "
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"highest version %d -> updating dnode\n",
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je32_to_cpu(ri->version), f->highest_version));
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ri->version = cpu_to_je32(++f->highest_version);
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ri->node_crc = cpu_to_je32(crc32(0, ri, sizeof(*ri)-8));
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}
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ret = jffs2_flash_writev(c, vecs, cnt, flash_ofs, &retlen,
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(alloc_mode==ALLOC_GC)?0:f->inocache->ino);
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if (ret || (retlen != sizeof(*ri) + datalen)) {
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printk(KERN_NOTICE "Write of %zd bytes at 0x%08x failed. returned %d, retlen %zd\n",
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sizeof(*ri)+datalen, flash_ofs, ret, retlen);
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/* Mark the space as dirtied */
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if (retlen) {
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128 |
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/* Doesn't belong to any inode */
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raw->next_in_ino = NULL;
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/* Don't change raw->size to match retlen. We may have
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written the node header already, and only the data will
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seem corrupted, in which case the scan would skip over
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any node we write before the original intended end of
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this node */
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raw->flash_offset |= REF_OBSOLETE;
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jffs2_add_physical_node_ref(c, raw);
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jffs2_mark_node_obsolete(c, raw);
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} else {
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printk(KERN_NOTICE "Not marking the space at 0x%08x as dirty because the flash driver returned retlen zero\n", raw->flash_offset);
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jffs2_free_raw_node_ref(raw);
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}
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if (!retried && alloc_mode != ALLOC_NORETRY && (raw = jffs2_alloc_raw_node_ref())) {
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/* Try to reallocate space and retry */
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uint32_t dummy;
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struct jffs2_eraseblock *jeb = &c->blocks[flash_ofs / c->sector_size];
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retried = 1;
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D1(printk(KERN_DEBUG "Retrying failed write.\n"));
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jffs2_dbg_acct_sanity_check(c,jeb);
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jffs2_dbg_acct_paranoia_check(c, jeb);
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if (alloc_mode == ALLOC_GC) {
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ret = jffs2_reserve_space_gc(c, sizeof(*ri) + datalen, &flash_ofs, &dummy);
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} else {
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/* Locking pain */
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up(&f->sem);
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jffs2_complete_reservation(c);
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ret = jffs2_reserve_space(c, sizeof(*ri) + datalen, &flash_ofs, &dummy, alloc_mode);
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down(&f->sem);
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}
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if (!ret) {
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D1(printk(KERN_DEBUG "Allocated space at 0x%08x to retry failed write.\n", flash_ofs));
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jffs2_dbg_acct_sanity_check(c,jeb);
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jffs2_dbg_acct_paranoia_check(c, jeb);
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goto retry;
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}
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D1(printk(KERN_DEBUG "Failed to allocate space to retry failed write: %d!\n", ret));
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jffs2_free_raw_node_ref(raw);
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}
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/* Release the full_dnode which is now useless, and return */
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jffs2_free_full_dnode(fn);
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return ERR_PTR(ret?ret:-EIO);
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}
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/* Mark the space used */
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/* If node covers at least a whole page, or if it starts at the
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beginning of a page and runs to the end of the file, or if
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it's a hole node, mark it REF_PRISTINE, else REF_NORMAL.
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*/
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186 |
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if ((je32_to_cpu(ri->dsize) >= PAGE_CACHE_SIZE) ||
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187 |
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( ((je32_to_cpu(ri->offset)&(PAGE_CACHE_SIZE-1))==0) &&
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188 |
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(je32_to_cpu(ri->dsize)+je32_to_cpu(ri->offset) == je32_to_cpu(ri->isize)))) {
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189 |
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raw->flash_offset |= REF_PRISTINE;
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190 |
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} else {
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191 |
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raw->flash_offset |= REF_NORMAL;
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}
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193 |
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jffs2_add_physical_node_ref(c, raw);
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194 |
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195 |
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/* Link into per-inode list */
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196 |
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spin_lock(&c->erase_completion_lock);
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197 |
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raw->next_in_ino = f->inocache->nodes;
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198 |
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f->inocache->nodes = raw;
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199 |
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spin_unlock(&c->erase_completion_lock);
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200 |
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201 |
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D1(printk(KERN_DEBUG "jffs2_write_dnode wrote node at 0x%08x(%d) with dsize 0x%x, csize 0x%x, node_crc 0x%08x, data_crc 0x%08x, totlen 0x%08x\n",
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202 |
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flash_ofs, ref_flags(raw), je32_to_cpu(ri->dsize),
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203 |
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je32_to_cpu(ri->csize), je32_to_cpu(ri->node_crc),
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204 |
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je32_to_cpu(ri->data_crc), je32_to_cpu(ri->totlen)));
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205 |
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206 |
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if (retried) {
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207 |
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jffs2_dbg_acct_sanity_check(c,NULL);
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208 |
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}
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209 |
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|
210 |
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return fn;
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211 |
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}
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212 |
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213 |
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struct jffs2_full_dirent *jffs2_write_dirent(struct jffs2_sb_info *c, struct jffs2_inode_info *f, struct jffs2_raw_dirent *rd, const unsigned char *name, uint32_t namelen, uint32_t flash_ofs, int alloc_mode)
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214 |
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{
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215 |
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struct jffs2_raw_node_ref *raw;
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216 |
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struct jffs2_full_dirent *fd;
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217 |
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size_t retlen;
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218 |
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struct kvec vecs[2];
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219 |
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int retried = 0;
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220 |
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int ret;
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221 |
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222 |
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D1(printk(KERN_DEBUG "jffs2_write_dirent(ino #%u, name at *0x%p \"%s\"->ino #%u, name_crc 0x%08x)\n",
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223 |
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je32_to_cpu(rd->pino), name, name, je32_to_cpu(rd->ino),
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224 |
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je32_to_cpu(rd->name_crc)));
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225 |
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226 |
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D1(if(je32_to_cpu(rd->hdr_crc) != crc32(0, rd, sizeof(struct jffs2_unknown_node)-4)) {
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227 |
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printk(KERN_CRIT "Eep. CRC not correct in jffs2_write_dirent()\n");
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228 |
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BUG();
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229 |
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}
|
230 |
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);
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231 |
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|
232 |
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vecs[0].iov_base = rd;
|
233 |
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vecs[0].iov_len = sizeof(*rd);
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234 |
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vecs[1].iov_base = (unsigned char *)name;
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235 |
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vecs[1].iov_len = namelen;
|
236 |
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|
237 |
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jffs2_dbg_prewrite_paranoia_check(c, flash_ofs, vecs[0].iov_len + vecs[1].iov_len);
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238 |
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|
239 |
|
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raw = jffs2_alloc_raw_node_ref();
|
240 |
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|
241 |
|
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if (!raw)
|
242 |
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return ERR_PTR(-ENOMEM);
|
243 |
|
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|
244 |
|
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fd = jffs2_alloc_full_dirent(namelen+1);
|
245 |
|
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if (!fd) {
|
246 |
|
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jffs2_free_raw_node_ref(raw);
|
247 |
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return ERR_PTR(-ENOMEM);
|
248 |
|
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}
|
249 |
|
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|
250 |
|
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fd->version = je32_to_cpu(rd->version);
|
251 |
|
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fd->ino = je32_to_cpu(rd->ino);
|
252 |
|
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fd->nhash = full_name_hash(name, strlen(name));
|
253 |
|
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fd->type = rd->type;
|
254 |
|
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memcpy(fd->name, name, namelen);
|
255 |
|
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fd->name[namelen]=0;
|
256 |
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|
257 |
|
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retry:
|
258 |
|
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fd->raw = raw;
|
259 |
|
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|
260 |
|
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raw->flash_offset = flash_ofs;
|
261 |
|
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raw->__totlen = PAD(sizeof(*rd)+namelen);
|
262 |
|
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raw->next_phys = NULL;
|
263 |
|
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|
264 |
|
|
if ((alloc_mode!=ALLOC_GC) && (je32_to_cpu(rd->version) < f->highest_version)) {
|
265 |
|
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BUG_ON(!retried);
|
266 |
|
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D1(printk(KERN_DEBUG "jffs2_write_dirent : dirent_version %d, "
|
267 |
|
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"highest version %d -> updating dirent\n",
|
268 |
|
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je32_to_cpu(rd->version), f->highest_version));
|
269 |
|
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rd->version = cpu_to_je32(++f->highest_version);
|
270 |
|
|
fd->version = je32_to_cpu(rd->version);
|
271 |
|
|
rd->node_crc = cpu_to_je32(crc32(0, rd, sizeof(*rd)-8));
|
272 |
|
|
}
|
273 |
|
|
|
274 |
|
|
ret = jffs2_flash_writev(c, vecs, 2, flash_ofs, &retlen,
|
275 |
|
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(alloc_mode==ALLOC_GC)?0:je32_to_cpu(rd->pino));
|
276 |
|
|
if (ret || (retlen != sizeof(*rd) + namelen)) {
|
277 |
|
|
printk(KERN_NOTICE "Write of %zd bytes at 0x%08x failed. returned %d, retlen %zd\n",
|
278 |
|
|
sizeof(*rd)+namelen, flash_ofs, ret, retlen);
|
279 |
|
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/* Mark the space as dirtied */
|
280 |
|
|
if (retlen) {
|
281 |
|
|
raw->next_in_ino = NULL;
|
282 |
|
|
raw->flash_offset |= REF_OBSOLETE;
|
283 |
|
|
jffs2_add_physical_node_ref(c, raw);
|
284 |
|
|
jffs2_mark_node_obsolete(c, raw);
|
285 |
|
|
} else {
|
286 |
|
|
printk(KERN_NOTICE "Not marking the space at 0x%08x as dirty because the flash driver returned retlen zero\n", raw->flash_offset);
|
287 |
|
|
jffs2_free_raw_node_ref(raw);
|
288 |
|
|
}
|
289 |
|
|
if (!retried && (raw = jffs2_alloc_raw_node_ref())) {
|
290 |
|
|
/* Try to reallocate space and retry */
|
291 |
|
|
uint32_t dummy;
|
292 |
|
|
struct jffs2_eraseblock *jeb = &c->blocks[flash_ofs / c->sector_size];
|
293 |
|
|
|
294 |
|
|
retried = 1;
|
295 |
|
|
|
296 |
|
|
D1(printk(KERN_DEBUG "Retrying failed write.\n"));
|
297 |
|
|
|
298 |
|
|
jffs2_dbg_acct_sanity_check(c,jeb);
|
299 |
|
|
jffs2_dbg_acct_paranoia_check(c, jeb);
|
300 |
|
|
|
301 |
|
|
if (alloc_mode == ALLOC_GC) {
|
302 |
|
|
ret = jffs2_reserve_space_gc(c, sizeof(*rd) + namelen, &flash_ofs, &dummy);
|
303 |
|
|
} else {
|
304 |
|
|
/* Locking pain */
|
305 |
|
|
up(&f->sem);
|
306 |
|
|
jffs2_complete_reservation(c);
|
307 |
|
|
|
308 |
|
|
ret = jffs2_reserve_space(c, sizeof(*rd) + namelen, &flash_ofs, &dummy, alloc_mode);
|
309 |
|
|
down(&f->sem);
|
310 |
|
|
}
|
311 |
|
|
|
312 |
|
|
if (!ret) {
|
313 |
|
|
D1(printk(KERN_DEBUG "Allocated space at 0x%08x to retry failed write.\n", flash_ofs));
|
314 |
|
|
jffs2_dbg_acct_sanity_check(c,jeb);
|
315 |
|
|
jffs2_dbg_acct_paranoia_check(c, jeb);
|
316 |
|
|
goto retry;
|
317 |
|
|
}
|
318 |
|
|
D1(printk(KERN_DEBUG "Failed to allocate space to retry failed write: %d!\n", ret));
|
319 |
|
|
jffs2_free_raw_node_ref(raw);
|
320 |
|
|
}
|
321 |
|
|
/* Release the full_dnode which is now useless, and return */
|
322 |
|
|
jffs2_free_full_dirent(fd);
|
323 |
|
|
return ERR_PTR(ret?ret:-EIO);
|
324 |
|
|
}
|
325 |
|
|
/* Mark the space used */
|
326 |
|
|
raw->flash_offset |= REF_PRISTINE;
|
327 |
|
|
jffs2_add_physical_node_ref(c, raw);
|
328 |
|
|
|
329 |
|
|
spin_lock(&c->erase_completion_lock);
|
330 |
|
|
raw->next_in_ino = f->inocache->nodes;
|
331 |
|
|
f->inocache->nodes = raw;
|
332 |
|
|
spin_unlock(&c->erase_completion_lock);
|
333 |
|
|
|
334 |
|
|
if (retried) {
|
335 |
|
|
jffs2_dbg_acct_sanity_check(c,NULL);
|
336 |
|
|
}
|
337 |
|
|
|
338 |
|
|
return fd;
|
339 |
|
|
}
|
340 |
|
|
|
341 |
|
|
/* The OS-specific code fills in the metadata in the jffs2_raw_inode for us, so that
|
342 |
|
|
we don't have to go digging in struct inode or its equivalent. It should set:
|
343 |
|
|
mode, uid, gid, (starting)isize, atime, ctime, mtime */
|
344 |
|
|
int jffs2_write_inode_range(struct jffs2_sb_info *c, struct jffs2_inode_info *f,
|
345 |
|
|
struct jffs2_raw_inode *ri, unsigned char *buf,
|
346 |
|
|
uint32_t offset, uint32_t writelen, uint32_t *retlen)
|
347 |
|
|
{
|
348 |
|
|
int ret = 0;
|
349 |
|
|
uint32_t writtenlen = 0;
|
350 |
|
|
|
351 |
|
|
D1(printk(KERN_DEBUG "jffs2_write_inode_range(): Ino #%u, ofs 0x%x, len 0x%x\n",
|
352 |
|
|
f->inocache->ino, offset, writelen));
|
353 |
|
|
|
354 |
|
|
while(writelen) {
|
355 |
|
|
struct jffs2_full_dnode *fn;
|
356 |
|
|
unsigned char *comprbuf = NULL;
|
357 |
|
|
uint16_t comprtype = JFFS2_COMPR_NONE;
|
358 |
|
|
uint32_t phys_ofs, alloclen;
|
359 |
|
|
uint32_t datalen, cdatalen;
|
360 |
|
|
int retried = 0;
|
361 |
|
|
|
362 |
|
|
retry:
|
363 |
|
|
D2(printk(KERN_DEBUG "jffs2_commit_write() loop: 0x%x to write to 0x%x\n", writelen, offset));
|
364 |
|
|
|
365 |
|
|
ret = jffs2_reserve_space(c, sizeof(*ri) + JFFS2_MIN_DATA_LEN, &phys_ofs, &alloclen, ALLOC_NORMAL);
|
366 |
|
|
if (ret) {
|
367 |
|
|
D1(printk(KERN_DEBUG "jffs2_reserve_space returned %d\n", ret));
|
368 |
|
|
break;
|
369 |
|
|
}
|
370 |
|
|
down(&f->sem);
|
371 |
|
|
datalen = min_t(uint32_t, writelen, PAGE_CACHE_SIZE - (offset & (PAGE_CACHE_SIZE-1)));
|
372 |
|
|
cdatalen = min_t(uint32_t, alloclen - sizeof(*ri), datalen);
|
373 |
|
|
|
374 |
|
|
comprtype = jffs2_compress(c, f, buf, &comprbuf, &datalen, &cdatalen);
|
375 |
|
|
|
376 |
|
|
ri->magic = cpu_to_je16(JFFS2_MAGIC_BITMASK);
|
377 |
|
|
ri->nodetype = cpu_to_je16(JFFS2_NODETYPE_INODE);
|
378 |
|
|
ri->totlen = cpu_to_je32(sizeof(*ri) + cdatalen);
|
379 |
|
|
ri->hdr_crc = cpu_to_je32(crc32(0, ri, sizeof(struct jffs2_unknown_node)-4));
|
380 |
|
|
|
381 |
|
|
ri->ino = cpu_to_je32(f->inocache->ino);
|
382 |
|
|
ri->version = cpu_to_je32(++f->highest_version);
|
383 |
|
|
ri->isize = cpu_to_je32(max(je32_to_cpu(ri->isize), offset + datalen));
|
384 |
|
|
ri->offset = cpu_to_je32(offset);
|
385 |
|
|
ri->csize = cpu_to_je32(cdatalen);
|
386 |
|
|
ri->dsize = cpu_to_je32(datalen);
|
387 |
|
|
ri->compr = comprtype & 0xff;
|
388 |
|
|
ri->usercompr = (comprtype >> 8 ) & 0xff;
|
389 |
|
|
ri->node_crc = cpu_to_je32(crc32(0, ri, sizeof(*ri)-8));
|
390 |
|
|
ri->data_crc = cpu_to_je32(crc32(0, comprbuf, cdatalen));
|
391 |
|
|
|
392 |
|
|
fn = jffs2_write_dnode(c, f, ri, comprbuf, cdatalen, phys_ofs, ALLOC_NORETRY);
|
393 |
|
|
|
394 |
|
|
jffs2_free_comprbuf(comprbuf, buf);
|
395 |
|
|
|
396 |
|
|
if (IS_ERR(fn)) {
|
397 |
|
|
ret = PTR_ERR(fn);
|
398 |
|
|
up(&f->sem);
|
399 |
|
|
jffs2_complete_reservation(c);
|
400 |
|
|
if (!retried) {
|
401 |
|
|
/* Write error to be retried */
|
402 |
|
|
retried = 1;
|
403 |
|
|
D1(printk(KERN_DEBUG "Retrying node write in jffs2_write_inode_range()\n"));
|
404 |
|
|
goto retry;
|
405 |
|
|
}
|
406 |
|
|
break;
|
407 |
|
|
}
|
408 |
|
|
ret = jffs2_add_full_dnode_to_inode(c, f, fn);
|
409 |
|
|
if (f->metadata) {
|
410 |
|
|
jffs2_mark_node_obsolete(c, f->metadata->raw);
|
411 |
|
|
jffs2_free_full_dnode(f->metadata);
|
412 |
|
|
f->metadata = NULL;
|
413 |
|
|
}
|
414 |
|
|
if (ret) {
|
415 |
|
|
/* Eep */
|
416 |
|
|
D1(printk(KERN_DEBUG "Eep. add_full_dnode_to_inode() failed in commit_write, returned %d\n", ret));
|
417 |
|
|
jffs2_mark_node_obsolete(c, fn->raw);
|
418 |
|
|
jffs2_free_full_dnode(fn);
|
419 |
|
|
|
420 |
|
|
up(&f->sem);
|
421 |
|
|
jffs2_complete_reservation(c);
|
422 |
|
|
break;
|
423 |
|
|
}
|
424 |
|
|
up(&f->sem);
|
425 |
|
|
jffs2_complete_reservation(c);
|
426 |
|
|
if (!datalen) {
|
427 |
|
|
printk(KERN_WARNING "Eep. We didn't actually write any data in jffs2_write_inode_range()\n");
|
428 |
|
|
ret = -EIO;
|
429 |
|
|
break;
|
430 |
|
|
}
|
431 |
|
|
D1(printk(KERN_DEBUG "increasing writtenlen by %d\n", datalen));
|
432 |
|
|
writtenlen += datalen;
|
433 |
|
|
offset += datalen;
|
434 |
|
|
writelen -= datalen;
|
435 |
|
|
buf += datalen;
|
436 |
|
|
}
|
437 |
|
|
*retlen = writtenlen;
|
438 |
|
|
return ret;
|
439 |
|
|
}
|
440 |
|
|
|
441 |
|
|
int jffs2_do_create(struct jffs2_sb_info *c, struct jffs2_inode_info *dir_f, struct jffs2_inode_info *f, struct jffs2_raw_inode *ri, const char *name, int namelen)
|
442 |
|
|
{
|
443 |
|
|
struct jffs2_raw_dirent *rd;
|
444 |
|
|
struct jffs2_full_dnode *fn;
|
445 |
|
|
struct jffs2_full_dirent *fd;
|
446 |
|
|
uint32_t alloclen, phys_ofs;
|
447 |
|
|
int ret;
|
448 |
|
|
|
449 |
|
|
/* Try to reserve enough space for both node and dirent.
|
450 |
|
|
* Just the node will do for now, though
|
451 |
|
|
*/
|
452 |
|
|
ret = jffs2_reserve_space(c, sizeof(*ri), &phys_ofs, &alloclen, ALLOC_NORMAL);
|
453 |
|
|
D1(printk(KERN_DEBUG "jffs2_do_create(): reserved 0x%x bytes\n", alloclen));
|
454 |
|
|
if (ret) {
|
455 |
|
|
up(&f->sem);
|
456 |
|
|
return ret;
|
457 |
|
|
}
|
458 |
|
|
|
459 |
|
|
ri->data_crc = cpu_to_je32(0);
|
460 |
|
|
ri->node_crc = cpu_to_je32(crc32(0, ri, sizeof(*ri)-8));
|
461 |
|
|
|
462 |
|
|
fn = jffs2_write_dnode(c, f, ri, NULL, 0, phys_ofs, ALLOC_NORMAL);
|
463 |
|
|
|
464 |
|
|
D1(printk(KERN_DEBUG "jffs2_do_create created file with mode 0x%x\n",
|
465 |
|
|
jemode_to_cpu(ri->mode)));
|
466 |
|
|
|
467 |
|
|
if (IS_ERR(fn)) {
|
468 |
|
|
D1(printk(KERN_DEBUG "jffs2_write_dnode() failed\n"));
|
469 |
|
|
/* Eeek. Wave bye bye */
|
470 |
|
|
up(&f->sem);
|
471 |
|
|
jffs2_complete_reservation(c);
|
472 |
|
|
return PTR_ERR(fn);
|
473 |
|
|
}
|
474 |
|
|
/* No data here. Only a metadata node, which will be
|
475 |
|
|
obsoleted by the first data write
|
476 |
|
|
*/
|
477 |
|
|
f->metadata = fn;
|
478 |
|
|
|
479 |
|
|
up(&f->sem);
|
480 |
|
|
jffs2_complete_reservation(c);
|
481 |
|
|
ret = jffs2_reserve_space(c, sizeof(*rd)+namelen, &phys_ofs, &alloclen, ALLOC_NORMAL);
|
482 |
|
|
|
483 |
|
|
if (ret) {
|
484 |
|
|
/* Eep. */
|
485 |
|
|
D1(printk(KERN_DEBUG "jffs2_reserve_space() for dirent failed\n"));
|
486 |
|
|
return ret;
|
487 |
|
|
}
|
488 |
|
|
|
489 |
|
|
rd = jffs2_alloc_raw_dirent();
|
490 |
|
|
if (!rd) {
|
491 |
|
|
/* Argh. Now we treat it like a normal delete */
|
492 |
|
|
jffs2_complete_reservation(c);
|
493 |
|
|
return -ENOMEM;
|
494 |
|
|
}
|
495 |
|
|
|
496 |
|
|
down(&dir_f->sem);
|
497 |
|
|
|
498 |
|
|
rd->magic = cpu_to_je16(JFFS2_MAGIC_BITMASK);
|
499 |
|
|
rd->nodetype = cpu_to_je16(JFFS2_NODETYPE_DIRENT);
|
500 |
|
|
rd->totlen = cpu_to_je32(sizeof(*rd) + namelen);
|
501 |
|
|
rd->hdr_crc = cpu_to_je32(crc32(0, rd, sizeof(struct jffs2_unknown_node)-4));
|
502 |
|
|
|
503 |
|
|
rd->pino = cpu_to_je32(dir_f->inocache->ino);
|
504 |
|
|
rd->version = cpu_to_je32(++dir_f->highest_version);
|
505 |
|
|
rd->ino = ri->ino;
|
506 |
|
|
rd->mctime = ri->ctime;
|
507 |
|
|
rd->nsize = namelen;
|
508 |
|
|
rd->type = DT_REG;
|
509 |
|
|
rd->node_crc = cpu_to_je32(crc32(0, rd, sizeof(*rd)-8));
|
510 |
|
|
rd->name_crc = cpu_to_je32(crc32(0, name, namelen));
|
511 |
|
|
|
512 |
|
|
fd = jffs2_write_dirent(c, dir_f, rd, name, namelen, phys_ofs, ALLOC_NORMAL);
|
513 |
|
|
|
514 |
|
|
jffs2_free_raw_dirent(rd);
|
515 |
|
|
|
516 |
|
|
if (IS_ERR(fd)) {
|
517 |
|
|
/* dirent failed to write. Delete the inode normally
|
518 |
|
|
as if it were the final unlink() */
|
519 |
|
|
jffs2_complete_reservation(c);
|
520 |
|
|
up(&dir_f->sem);
|
521 |
|
|
return PTR_ERR(fd);
|
522 |
|
|
}
|
523 |
|
|
|
524 |
|
|
/* Link the fd into the inode's list, obsoleting an old
|
525 |
|
|
one if necessary. */
|
526 |
|
|
jffs2_add_fd_to_list(c, fd, &dir_f->dents);
|
527 |
|
|
|
528 |
|
|
jffs2_complete_reservation(c);
|
529 |
|
|
up(&dir_f->sem);
|
530 |
|
|
|
531 |
|
|
return 0;
|
532 |
|
|
}
|
533 |
|
|
|
534 |
|
|
|
535 |
|
|
int jffs2_do_unlink(struct jffs2_sb_info *c, struct jffs2_inode_info *dir_f,
|
536 |
|
|
const char *name, int namelen, struct jffs2_inode_info *dead_f)
|
537 |
|
|
{
|
538 |
|
|
struct jffs2_raw_dirent *rd;
|
539 |
|
|
struct jffs2_full_dirent *fd;
|
540 |
|
|
uint32_t alloclen, phys_ofs;
|
541 |
|
|
int ret;
|
542 |
|
|
|
543 |
|
|
if (1 /* alternative branch needs testing */ ||
|
544 |
|
|
!jffs2_can_mark_obsolete(c)) {
|
545 |
|
|
/* We can't mark stuff obsolete on the medium. We need to write a deletion dirent */
|
546 |
|
|
|
547 |
|
|
rd = jffs2_alloc_raw_dirent();
|
548 |
|
|
if (!rd)
|
549 |
|
|
return -ENOMEM;
|
550 |
|
|
|
551 |
|
|
ret = jffs2_reserve_space(c, sizeof(*rd)+namelen, &phys_ofs, &alloclen, ALLOC_DELETION);
|
552 |
|
|
if (ret) {
|
553 |
|
|
jffs2_free_raw_dirent(rd);
|
554 |
|
|
return ret;
|
555 |
|
|
}
|
556 |
|
|
|
557 |
|
|
down(&dir_f->sem);
|
558 |
|
|
|
559 |
|
|
/* Build a deletion node */
|
560 |
|
|
rd->magic = cpu_to_je16(JFFS2_MAGIC_BITMASK);
|
561 |
|
|
rd->nodetype = cpu_to_je16(JFFS2_NODETYPE_DIRENT);
|
562 |
|
|
rd->totlen = cpu_to_je32(sizeof(*rd) + namelen);
|
563 |
|
|
rd->hdr_crc = cpu_to_je32(crc32(0, rd, sizeof(struct jffs2_unknown_node)-4));
|
564 |
|
|
|
565 |
|
|
rd->pino = cpu_to_je32(dir_f->inocache->ino);
|
566 |
|
|
rd->version = cpu_to_je32(++dir_f->highest_version);
|
567 |
|
|
rd->ino = cpu_to_je32(0);
|
568 |
|
|
rd->mctime = cpu_to_je32(get_seconds());
|
569 |
|
|
rd->nsize = namelen;
|
570 |
|
|
rd->type = DT_UNKNOWN;
|
571 |
|
|
rd->node_crc = cpu_to_je32(crc32(0, rd, sizeof(*rd)-8));
|
572 |
|
|
rd->name_crc = cpu_to_je32(crc32(0, name, namelen));
|
573 |
|
|
|
574 |
|
|
fd = jffs2_write_dirent(c, dir_f, rd, name, namelen, phys_ofs, ALLOC_DELETION);
|
575 |
|
|
|
576 |
|
|
jffs2_free_raw_dirent(rd);
|
577 |
|
|
|
578 |
|
|
if (IS_ERR(fd)) {
|
579 |
|
|
jffs2_complete_reservation(c);
|
580 |
|
|
up(&dir_f->sem);
|
581 |
|
|
return PTR_ERR(fd);
|
582 |
|
|
}
|
583 |
|
|
|
584 |
|
|
/* File it. This will mark the old one obsolete. */
|
585 |
|
|
jffs2_add_fd_to_list(c, fd, &dir_f->dents);
|
586 |
|
|
up(&dir_f->sem);
|
587 |
|
|
} else {
|
588 |
|
|
struct jffs2_full_dirent **prev = &dir_f->dents;
|
589 |
|
|
uint32_t nhash = full_name_hash(name, namelen);
|
590 |
|
|
|
591 |
|
|
down(&dir_f->sem);
|
592 |
|
|
|
593 |
|
|
while ((*prev) && (*prev)->nhash <= nhash) {
|
594 |
|
|
if ((*prev)->nhash == nhash &&
|
595 |
|
|
!memcmp((*prev)->name, name, namelen) &&
|
596 |
|
|
!(*prev)->name[namelen]) {
|
597 |
|
|
struct jffs2_full_dirent *this = *prev;
|
598 |
|
|
|
599 |
|
|
D1(printk(KERN_DEBUG "Marking old dirent node (ino #%u) @%08x obsolete\n",
|
600 |
|
|
this->ino, ref_offset(this->raw)));
|
601 |
|
|
|
602 |
|
|
*prev = this->next;
|
603 |
|
|
jffs2_mark_node_obsolete(c, (this->raw));
|
604 |
|
|
jffs2_free_full_dirent(this);
|
605 |
|
|
break;
|
606 |
|
|
}
|
607 |
|
|
prev = &((*prev)->next);
|
608 |
|
|
}
|
609 |
|
|
up(&dir_f->sem);
|
610 |
|
|
}
|
611 |
|
|
|
612 |
|
|
/* dead_f is NULL if this was a rename not a real unlink */
|
613 |
|
|
/* Also catch the !f->inocache case, where there was a dirent
|
614 |
|
|
pointing to an inode which didn't exist. */
|
615 |
|
|
if (dead_f && dead_f->inocache) {
|
616 |
|
|
|
617 |
|
|
down(&dead_f->sem);
|
618 |
|
|
|
619 |
|
|
if (S_ISDIR(OFNI_EDONI_2SFFJ(dead_f)->i_mode)) {
|
620 |
|
|
while (dead_f->dents) {
|
621 |
|
|
/* There can be only deleted ones */
|
622 |
|
|
fd = dead_f->dents;
|
623 |
|
|
|
624 |
|
|
dead_f->dents = fd->next;
|
625 |
|
|
|
626 |
|
|
if (fd->ino) {
|
627 |
|
|
printk(KERN_WARNING "Deleting inode #%u with active dentry \"%s\"->ino #%u\n",
|
628 |
|
|
dead_f->inocache->ino, fd->name, fd->ino);
|
629 |
|
|
} else {
|
630 |
|
|
D1(printk(KERN_DEBUG "Removing deletion dirent for \"%s\" from dir ino #%u\n",
|
631 |
|
|
fd->name, dead_f->inocache->ino));
|
632 |
|
|
}
|
633 |
|
|
jffs2_mark_node_obsolete(c, fd->raw);
|
634 |
|
|
jffs2_free_full_dirent(fd);
|
635 |
|
|
}
|
636 |
|
|
}
|
637 |
|
|
|
638 |
|
|
dead_f->inocache->nlink--;
|
639 |
|
|
/* NB: Caller must set inode nlink if appropriate */
|
640 |
|
|
up(&dead_f->sem);
|
641 |
|
|
}
|
642 |
|
|
|
643 |
|
|
jffs2_complete_reservation(c);
|
644 |
|
|
|
645 |
|
|
return 0;
|
646 |
|
|
}
|
647 |
|
|
|
648 |
|
|
|
649 |
|
|
int jffs2_do_link (struct jffs2_sb_info *c, struct jffs2_inode_info *dir_f, uint32_t ino, uint8_t type, const char *name, int namelen)
|
650 |
|
|
{
|
651 |
|
|
struct jffs2_raw_dirent *rd;
|
652 |
|
|
struct jffs2_full_dirent *fd;
|
653 |
|
|
uint32_t alloclen, phys_ofs;
|
654 |
|
|
int ret;
|
655 |
|
|
|
656 |
|
|
rd = jffs2_alloc_raw_dirent();
|
657 |
|
|
if (!rd)
|
658 |
|
|
return -ENOMEM;
|
659 |
|
|
|
660 |
|
|
ret = jffs2_reserve_space(c, sizeof(*rd)+namelen, &phys_ofs, &alloclen, ALLOC_NORMAL);
|
661 |
|
|
if (ret) {
|
662 |
|
|
jffs2_free_raw_dirent(rd);
|
663 |
|
|
return ret;
|
664 |
|
|
}
|
665 |
|
|
|
666 |
|
|
down(&dir_f->sem);
|
667 |
|
|
|
668 |
|
|
/* Build a deletion node */
|
669 |
|
|
rd->magic = cpu_to_je16(JFFS2_MAGIC_BITMASK);
|
670 |
|
|
rd->nodetype = cpu_to_je16(JFFS2_NODETYPE_DIRENT);
|
671 |
|
|
rd->totlen = cpu_to_je32(sizeof(*rd) + namelen);
|
672 |
|
|
rd->hdr_crc = cpu_to_je32(crc32(0, rd, sizeof(struct jffs2_unknown_node)-4));
|
673 |
|
|
|
674 |
|
|
rd->pino = cpu_to_je32(dir_f->inocache->ino);
|
675 |
|
|
rd->version = cpu_to_je32(++dir_f->highest_version);
|
676 |
|
|
rd->ino = cpu_to_je32(ino);
|
677 |
|
|
rd->mctime = cpu_to_je32(get_seconds());
|
678 |
|
|
rd->nsize = namelen;
|
679 |
|
|
|
680 |
|
|
rd->type = type;
|
681 |
|
|
|
682 |
|
|
rd->node_crc = cpu_to_je32(crc32(0, rd, sizeof(*rd)-8));
|
683 |
|
|
rd->name_crc = cpu_to_je32(crc32(0, name, namelen));
|
684 |
|
|
|
685 |
|
|
fd = jffs2_write_dirent(c, dir_f, rd, name, namelen, phys_ofs, ALLOC_NORMAL);
|
686 |
|
|
|
687 |
|
|
jffs2_free_raw_dirent(rd);
|
688 |
|
|
|
689 |
|
|
if (IS_ERR(fd)) {
|
690 |
|
|
jffs2_complete_reservation(c);
|
691 |
|
|
up(&dir_f->sem);
|
692 |
|
|
return PTR_ERR(fd);
|
693 |
|
|
}
|
694 |
|
|
|
695 |
|
|
/* File it. This will mark the old one obsolete. */
|
696 |
|
|
jffs2_add_fd_to_list(c, fd, &dir_f->dents);
|
697 |
|
|
|
698 |
|
|
jffs2_complete_reservation(c);
|
699 |
|
|
up(&dir_f->sem);
|
700 |
|
|
|
701 |
|
|
return 0;
|
702 |
|
|
}
|