staticvoid fix_up_ptrs(struct super_block *s, struct dnode *d)
{ struct hpfs_dirent *de; struct hpfs_dirent *de_end = dnode_end_de(d);
dnode_secno dno = le32_to_cpu(d->self); for (de = dnode_first_de(d); de < de_end; de = de_next_de(de)) if (de->down) { struct quad_buffer_head qbh; struct dnode *dd; if ((dd = hpfs_map_dnode(s, de_down_pointer(de), &qbh))) { if (le32_to_cpu(dd->up) != dno || dd->root_dnode) {
dd->up = cpu_to_le32(dno);
dd->root_dnode = 0;
hpfs_mark_4buffers_dirty(&qbh);
}
hpfs_brelse4(&qbh);
}
}
}
/* Add an entry to dnode and do dnode splitting if required */
staticint hpfs_add_to_dnode(struct inode *i, dnode_secno dno, constunsignedchar *name, unsigned namelen, struct hpfs_dirent *new_de, dnode_secno down_ptr)
{ struct quad_buffer_head qbh, qbh1, qbh2; struct dnode *d, *ad, *rd, *nd = NULL;
dnode_secno adno, rdno; struct hpfs_dirent *de; struct hpfs_dirent nde; unsignedchar *nname; int h; int pos; struct buffer_head *bh; struct fnode *fnode; int c1, c2 = 0; if (!(nname = kmalloc(256, GFP_NOFS))) {
pr_err("out of memory, can't add to dnode\n"); return 1;
}
go_up: if (namelen >= 256) {
hpfs_error(i->i_sb, "%s(): namelen == %d", __func__, namelen);
kfree(nd);
kfree(nname); return 1;
} if (!(d = hpfs_map_dnode(i->i_sb, dno, &qbh))) {
kfree(nd);
kfree(nname); return 1;
}
go_up_a: if (hpfs_sb(i->i_sb)->sb_chk) if (hpfs_stop_cycles(i->i_sb, dno, &c1, &c2, "hpfs_add_to_dnode")) {
hpfs_brelse4(&qbh);
kfree(nd);
kfree(nname); return 1;
} if (le32_to_cpu(d->first_free) + de_size(namelen, down_ptr) <= 2048) {
loff_t t;
copy_de(de=hpfs_add_de(i->i_sb, d, name, namelen, down_ptr), new_de);
t = get_pos(d, de);
for_all_poss(i, hpfs_pos_ins, t, 1);
for_all_poss(i, hpfs_pos_subst, 4, t);
for_all_poss(i, hpfs_pos_subst, 5, t + 1);
hpfs_mark_4buffers_dirty(&qbh);
hpfs_brelse4(&qbh);
kfree(nd);
kfree(nname); return 0;
} if (!nd) if (!(nd = kmalloc(0x924, GFP_NOFS))) { /* 0x924 is a max size of dnode after adding a dirent with max name length. We alloc this only once. There must not be any error while splitting dnodes, otherwise the whole directory, not only file we're adding, would
be lost. */
pr_err("out of memory for dnode splitting\n");
hpfs_brelse4(&qbh);
kfree(nname); return 1;
}
memcpy(nd, d, le32_to_cpu(d->first_free));
copy_de(de = hpfs_add_de(i->i_sb, nd, name, namelen, down_ptr), new_de);
for_all_poss(i, hpfs_pos_ins, get_pos(nd, de), 1);
h = ((char *)dnode_last_de(nd) - (char *)nd) / 2 + 10; if (!(ad = hpfs_alloc_dnode(i->i_sb, le32_to_cpu(d->up), &adno, &qbh1))) {
hpfs_error(i->i_sb, "unable to alloc dnode - dnode tree will be corrupted");
hpfs_brelse4(&qbh);
kfree(nd);
kfree(nname); return 1;
}
i->i_size += 2048;
i->i_blocks += 4;
pos = 1; for (de = dnode_first_de(nd); (char *)de_next_de(de) - (char *)nd < h; de = de_next_de(de)) {
copy_de(hpfs_add_de(i->i_sb, ad, de->name, de->namelen, de->down ? de_down_pointer(de) : 0), de);
for_all_poss(i, hpfs_pos_subst, ((loff_t)dno << 4) | pos, ((loff_t)adno << 4) | pos);
pos++;
}
copy_de(new_de = &nde, de);
memcpy(nname, de->name, de->namelen);
name = nname;
namelen = de->namelen;
for_all_poss(i, hpfs_pos_subst, ((loff_t)dno << 4) | pos, 4);
down_ptr = adno;
set_last_pointer(i->i_sb, ad, de->down ? de_down_pointer(de) : 0);
de = de_next_de(de);
memmove((char *)nd + 20, de, le32_to_cpu(nd->first_free) + (char *)nd - (char *)de);
le32_add_cpu(&nd->first_free, -((char *)de - (char *)nd - 20));
memcpy(d, nd, le32_to_cpu(nd->first_free));
for_all_poss(i, hpfs_pos_del, (loff_t)dno << 4, pos);
fix_up_ptrs(i->i_sb, ad); if (!d->root_dnode) {
ad->up = d->up;
dno = le32_to_cpu(ad->up);
hpfs_mark_4buffers_dirty(&qbh);
hpfs_brelse4(&qbh);
hpfs_mark_4buffers_dirty(&qbh1);
hpfs_brelse4(&qbh1); goto go_up;
} if (!(rd = hpfs_alloc_dnode(i->i_sb, le32_to_cpu(d->up), &rdno, &qbh2))) {
hpfs_error(i->i_sb, "unable to alloc dnode - dnode tree will be corrupted");
hpfs_brelse4(&qbh);
hpfs_brelse4(&qbh1);
kfree(nd);
kfree(nname); return 1;
}
i->i_size += 2048;
i->i_blocks += 4;
rd->root_dnode = 1;
rd->up = d->up; if (!(fnode = hpfs_map_fnode(i->i_sb, le32_to_cpu(d->up), &bh))) {
hpfs_free_dnode(i->i_sb, rdno);
hpfs_brelse4(&qbh);
hpfs_brelse4(&qbh1);
hpfs_brelse4(&qbh2);
kfree(nd);
kfree(nname); return 1;
}
fnode->u.external[0].disk_secno = cpu_to_le32(rdno);
mark_buffer_dirty(bh);
brelse(bh);
hpfs_i(i)->i_dno = rdno;
d->up = ad->up = cpu_to_le32(rdno);
d->root_dnode = ad->root_dnode = 0;
hpfs_mark_4buffers_dirty(&qbh);
hpfs_brelse4(&qbh);
hpfs_mark_4buffers_dirty(&qbh1);
hpfs_brelse4(&qbh1);
qbh = qbh2;
set_last_pointer(i->i_sb, rd, dno);
dno = rdno;
d = rd; goto go_up_a;
}
/* * Add an entry to directory btree. * I hate such crazy directory structure. * It's easy to read but terrible to write. * I wrote this directory code 4 times. * I hope, now it's finally bug-free.
*/
int hpfs_add_dirent(struct inode *i, constunsignedchar *name, unsigned namelen, struct hpfs_dirent *new_de)
{ struct hpfs_inode_info *hpfs_inode = hpfs_i(i); struct dnode *d; struct hpfs_dirent *de, *de_end; struct quad_buffer_head qbh;
dnode_secno dno; int c; int c1, c2 = 0;
dno = hpfs_inode->i_dno;
down: if (hpfs_sb(i->i_sb)->sb_chk) if (hpfs_stop_cycles(i->i_sb, dno, &c1, &c2, "hpfs_add_dirent")) return 1; if (!(d = hpfs_map_dnode(i->i_sb, dno, &qbh))) return 1;
de_end = dnode_end_de(d); for (de = dnode_first_de(d); de < de_end; de = de_next_de(de)) { if (!(c = hpfs_compare_names(i->i_sb, name, namelen, de->name, de->namelen, de->last))) {
hpfs_brelse4(&qbh); return -1;
} if (c < 0) { if (de->down) {
dno = de_down_pointer(de);
hpfs_brelse4(&qbh); goto down;
} break;
}
}
hpfs_brelse4(&qbh); if (hpfs_check_free_dnodes(i->i_sb, FREE_DNODES_ADD)) {
c = 1; goto ret;
}
c = hpfs_add_to_dnode(i, dno, name, namelen, new_de, 0);
ret: return c;
}
/* * Find dirent with higher name in 'from' subtree and move it to 'to' dnode. * Return the dnode we moved from (to be checked later if it's empty)
*/
static secno move_to_top(struct inode *i, dnode_secno from, dnode_secno to)
{
dnode_secno dno, ddno;
dnode_secno chk_up = to; struct dnode *dnode; struct quad_buffer_head qbh; struct hpfs_dirent *de, *nde; int a;
loff_t t; int c1, c2 = 0;
dno = from; while (1) { if (hpfs_sb(i->i_sb)->sb_chk) if (hpfs_stop_cycles(i->i_sb, dno, &c1, &c2, "move_to_top")) return 0; if (!(dnode = hpfs_map_dnode(i->i_sb, dno, &qbh))) return 0; if (hpfs_sb(i->i_sb)->sb_chk) { if (le32_to_cpu(dnode->up) != chk_up) {
hpfs_error(i->i_sb, "move_to_top: up pointer from %08x should be %08x, is %08x",
dno, chk_up, le32_to_cpu(dnode->up));
hpfs_brelse4(&qbh); return 0;
}
chk_up = dno;
} if (!(de = dnode_last_de(dnode))) {
hpfs_error(i->i_sb, "move_to_top: dnode %08x has no last de", dno);
hpfs_brelse4(&qbh); return 0;
} if (!de->down) break;
dno = de_down_pointer(de);
hpfs_brelse4(&qbh);
} while (!(de = dnode_pre_last_de(dnode))) {
dnode_secno up = le32_to_cpu(dnode->up);
hpfs_brelse4(&qbh);
hpfs_free_dnode(i->i_sb, dno);
i->i_size -= 2048;
i->i_blocks -= 4;
for_all_poss(i, hpfs_pos_subst, ((loff_t)dno << 4) | 1, 5); if (up == to) return to; if (!(dnode = hpfs_map_dnode(i->i_sb, up, &qbh))) return 0; if (dnode->root_dnode) {
hpfs_error(i->i_sb, "move_to_top: got to root_dnode while moving from %08x to %08x", from, to);
hpfs_brelse4(&qbh); return 0;
}
de = dnode_last_de(dnode); if (!de || !de->down) {
hpfs_error(i->i_sb, "move_to_top: dnode %08x doesn't point down to %08x", up, dno);
hpfs_brelse4(&qbh); return 0;
}
le32_add_cpu(&dnode->first_free, -4);
le16_add_cpu(&de->length, -4);
de->down = 0;
hpfs_mark_4buffers_dirty(&qbh);
dno = up;
}
t = get_pos(dnode, de);
for_all_poss(i, hpfs_pos_subst, t, 4);
for_all_poss(i, hpfs_pos_subst, t + 1, 5); if (!(nde = kmalloc(le16_to_cpu(de->length), GFP_NOFS))) {
hpfs_error(i->i_sb, "out of memory for dirent - directory will be corrupted");
hpfs_brelse4(&qbh); return 0;
}
memcpy(nde, de, le16_to_cpu(de->length));
ddno = de->down ? de_down_pointer(de) : 0;
hpfs_delete_de(i->i_sb, dnode, de);
set_last_pointer(i->i_sb, dnode, ddno);
hpfs_mark_4buffers_dirty(&qbh);
hpfs_brelse4(&qbh);
a = hpfs_add_to_dnode(i, to, nde->name, nde->namelen, nde, from);
kfree(nde); if (a) return 0; return dno;
}
/* * Check if a dnode is empty and delete it from the tree * (chkdsk doesn't like empty dnodes)
*/
staticvoid delete_empty_dnode(struct inode *i, dnode_secno dno)
{ struct hpfs_inode_info *hpfs_inode = hpfs_i(i); struct quad_buffer_head qbh; struct dnode *dnode;
dnode_secno down, up, ndown; int p; struct hpfs_dirent *de; int c1, c2 = 0;
try_it_again: if (hpfs_stop_cycles(i->i_sb, dno, &c1, &c2, "delete_empty_dnode")) return; if (!(dnode = hpfs_map_dnode(i->i_sb, dno, &qbh))) return; if (le32_to_cpu(dnode->first_free) > 56) goto end; if (le32_to_cpu(dnode->first_free) == 52 || le32_to_cpu(dnode->first_free) == 56) { struct hpfs_dirent *de_end; int root = dnode->root_dnode;
up = le32_to_cpu(dnode->up);
de = dnode_first_de(dnode);
down = de->down ? de_down_pointer(de) : 0; if (hpfs_sb(i->i_sb)->sb_chk) if (root && !down) {
hpfs_error(i->i_sb, "delete_empty_dnode: root dnode %08x is empty", dno); goto end;
}
hpfs_brelse4(&qbh);
hpfs_free_dnode(i->i_sb, dno);
i->i_size -= 2048;
i->i_blocks -= 4; if (root) { struct fnode *fnode; struct buffer_head *bh; struct dnode *d1; struct quad_buffer_head qbh1; if (hpfs_sb(i->i_sb)->sb_chk) if (up != i->i_ino) {
hpfs_error(i->i_sb, "bad pointer to fnode, dnode %08x, pointing to %08x, should be %08lx",
dno, up,
(unsignedlong)i->i_ino); return;
} if ((d1 = hpfs_map_dnode(i->i_sb, down, &qbh1))) {
d1->up = cpu_to_le32(up);
d1->root_dnode = 1;
hpfs_mark_4buffers_dirty(&qbh1);
hpfs_brelse4(&qbh1);
} if ((fnode = hpfs_map_fnode(i->i_sb, up, &bh))) {
fnode->u.external[0].disk_secno = cpu_to_le32(down);
mark_buffer_dirty(bh);
brelse(bh);
}
hpfs_inode->i_dno = down;
for_all_poss(i, hpfs_pos_subst, ((loff_t)dno << 4) | 1, (loff_t) 12); return;
} if (!(dnode = hpfs_map_dnode(i->i_sb, up, &qbh))) return;
p = 1;
de_end = dnode_end_de(dnode); for (de = dnode_first_de(dnode); de < de_end; de = de_next_de(de), p++) if (de->down) if (de_down_pointer(de) == dno) goto fnd;
hpfs_error(i->i_sb, "delete_empty_dnode: pointer to dnode %08x not found in dnode %08x", dno, up); goto end;
fnd:
for_all_poss(i, hpfs_pos_subst, ((loff_t)dno << 4) | 1, ((loff_t)up << 4) | p); if (!down) {
de->down = 0;
le16_add_cpu(&de->length, -4);
le32_add_cpu(&dnode->first_free, -4);
memmove(de_next_de(de), (char *)de_next_de(de) + 4,
(char *)dnode + le32_to_cpu(dnode->first_free) - (char *)de_next_de(de));
} else { struct dnode *d1; struct quad_buffer_head qbh1;
*(dnode_secno *) ((void *) de + le16_to_cpu(de->length) - 4) = down; if ((d1 = hpfs_map_dnode(i->i_sb, down, &qbh1))) {
d1->up = cpu_to_le32(up);
hpfs_mark_4buffers_dirty(&qbh1);
hpfs_brelse4(&qbh1);
}
}
} else {
hpfs_error(i->i_sb, "delete_empty_dnode: dnode %08x, first_free == %03x", dno, le32_to_cpu(dnode->first_free)); goto end;
}
if (!S_ISDIR(inode->i_mode)) hpfs_error(inode->i_sb, "map_dirent: not a directory\n");
again: if (hpfs_sb(inode->i_sb)->sb_chk) if (hpfs_stop_cycles(inode->i_sb, dno, &c1, &c2, "map_dirent")) return NULL; if (!(dnode = hpfs_map_dnode(inode->i_sb, dno, qbh))) return NULL;
de_end = dnode_end_de(dnode); for (de = dnode_first_de(dnode); de < de_end; de = de_next_de(de)) { int t = hpfs_compare_names(inode->i_sb, name, len, de->name, de->namelen, de->last); if (!t) { if (dd) *dd = dno; return de;
} if (t < 0) { if (de->down) {
dno = de_down_pointer(de);
hpfs_brelse4(qbh); goto again;
} break;
}
}
hpfs_brelse4(qbh); return NULL;
}
/* * Remove empty directory. In normal cases it is only one dnode with two * entries, but we must handle also such obscure cases when it's a tree * of empty dnodes.
*/
void hpfs_remove_dtree(struct super_block *s, dnode_secno dno)
{ struct quad_buffer_head qbh; struct dnode *dnode; struct hpfs_dirent *de;
dnode_secno d1, d2, rdno = dno; while (1) { if (!(dnode = hpfs_map_dnode(s, dno, &qbh))) return;
de = dnode_first_de(dnode); if (de->last) { if (de->down) d1 = de_down_pointer(de); elsegoto error;
hpfs_brelse4(&qbh);
hpfs_free_dnode(s, dno);
dno = d1;
} elsebreak;
} if (!de->first) goto error;
d1 = de->down ? de_down_pointer(de) : 0;
de = de_next_de(de); if (!de->last) goto error;
d2 = de->down ? de_down_pointer(de) : 0;
hpfs_brelse4(&qbh);
hpfs_free_dnode(s, dno); do { while (d1) { if (!(dnode = hpfs_map_dnode(s, dno = d1, &qbh))) return;
de = dnode_first_de(dnode); if (!de->last) goto error;
d1 = de->down ? de_down_pointer(de) : 0;
hpfs_brelse4(&qbh);
hpfs_free_dnode(s, dno);
}
d1 = d2;
d2 = 0;
} while (d1); return;
error:
hpfs_brelse4(&qbh);
hpfs_free_dnode(s, dno);
hpfs_error(s, "directory %08x is corrupted or not empty", rdno);
}
/* * Find dirent for specified fnode. Use truncated 15-char name in fnode as * a help for searching.
*/
struct hpfs_dirent *map_fnode_dirent(struct super_block *s, fnode_secno fno, struct fnode *f, struct quad_buffer_head *qbh)
{ unsignedchar *name1; unsignedchar *name2; int name1len, name2len; struct dnode *d;
dnode_secno dno, downd; struct fnode *upf; struct buffer_head *bh; struct hpfs_dirent *de, *de_end; int c; int c1, c2 = 0; int d1, d2 = 0;
name1 = f->name; if (!(name2 = kmalloc(256, GFP_NOFS))) {
pr_err("out of memory, can't map dirent\n"); return NULL;
} if (f->len <= 15)
memcpy(name2, name1, name1len = name2len = f->len); else {
memcpy(name2, name1, 15);
memset(name2 + 15, 0xff, 256 - 15); /*name2[15] = 0xff;*/
name1len = 15; name2len = 256;
} if (!(upf = hpfs_map_fnode(s, le32_to_cpu(f->up), &bh))) {
kfree(name2); return NULL;
} if (!fnode_is_dir(upf)) {
brelse(bh);
hpfs_error(s, "fnode %08x has non-directory parent %08x", fno, le32_to_cpu(f->up));
kfree(name2); return NULL;
}
dno = le32_to_cpu(upf->u.external[0].disk_secno);
brelse(bh);
go_down:
downd = 0;
go_up: if (!(d = hpfs_map_dnode(s, dno, qbh))) {
kfree(name2); return NULL;
}
de_end = dnode_end_de(d);
de = dnode_first_de(d); if (downd) { while (de < de_end) { if (de->down) if (de_down_pointer(de) == downd) goto f;
de = de_next_de(de);
}
hpfs_error(s, "pointer to dnode %08x not found in dnode %08x", downd, dno);
hpfs_brelse4(qbh);
kfree(name2); return NULL;
}
next_de: if (le32_to_cpu(de->fnode) == fno) {
kfree(name2); return de;
}
c = hpfs_compare_names(s, name1, name1len, de->name, de->namelen, de->last); if (c < 0 && de->down) {
dno = de_down_pointer(de);
hpfs_brelse4(qbh); if (hpfs_sb(s)->sb_chk) if (hpfs_stop_cycles(s, dno, &c1, &c2, "map_fnode_dirent #1")) {
kfree(name2); return NULL;
} goto go_down;
}
f: if (le32_to_cpu(de->fnode) == fno) {
kfree(name2); return de;
}
c = hpfs_compare_names(s, name2, name2len, de->name, de->namelen, de->last); if (c < 0 && !de->last) goto not_found; if ((de = de_next_de(de)) < de_end) goto next_de; if (d->root_dnode) goto not_found;
downd = dno;
dno = le32_to_cpu(d->up);
hpfs_brelse4(qbh); if (hpfs_sb(s)->sb_chk) if (hpfs_stop_cycles(s, downd, &d1, &d2, "map_fnode_dirent #2")) {
kfree(name2); return NULL;
} goto go_up;
not_found:
hpfs_brelse4(qbh);
hpfs_error(s, "dirent for fnode %08x not found", fno);
kfree(name2); return NULL;
}
Messung V0.5
¤ Dauer der Verarbeitung: 0.61 Sekunden
(vorverarbeitet)
¤
Die Informationen auf dieser Webseite wurden
nach bestem Wissen sorgfältig zusammengestellt. Es wird jedoch weder Vollständigkeit, noch Richtigkeit,
noch Qualität der bereit gestellten Informationen zugesichert.
Bemerkung:
Die farbliche Syntaxdarstellung und die Messung sind noch experimentell.