jfs: Avoid field-overflowing memcpy()
In preparation for FORTIFY_SOURCE performing compile-time and run-time field array bounds checking for memcpy(), memmove(), and memset(), avoid intentionally writing across neighboring fields. Introduce more unions to cover the full inline data section, so that the entire 256 bytes can be addressed by memcpy() without thinking it is crossing field boundaries. Additionally adjusts dir memcpy() to use existing union names to get the same coverage. diffoscope shows there are no binary differences before/after excepting the name of the initcall, which is line number based: $ diffoscope --exclude-directory-metadata yes before/fs after/fs --- before/fs +++ after/fs │ --- before/fs/jfs ├── +++ after/fs/jfs │ │ --- before/fs/jfs/super.o │ ├── +++ after/fs/jfs/super.o │ │ ├── readelf --wide --symbols {} │ │ │ @@ -2,15 +2,15 @@ │ │ │ Symbol table '.symtab' contains 158 entries: │ │ │ Num: Value Size Type Bind Vis Ndx Name ... │ │ │ - 5: 0000000000000000 0 NOTYPE LOCAL DEFAULT 6 __initcall__kmod_jfs__319_1049_ini t_jfs_fs6 │ │ │ + 5: 0000000000000000 0 NOTYPE LOCAL DEFAULT 6 __initcall__kmod_jfs__319_1050_ini t_jfs_fs6 ... Signed-off-by: Kees Cook <keescook@chromium.org> Signed-off-by: Dave Kleikamp <dave.kleikamp@oracle.com>
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@ -101,7 +101,6 @@ struct dinode {
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u8 unused[16]; /* 16: */
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dxd_t _dxd; /* 16: */
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union {
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__le32 _rdev; /* 4: */
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/*
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* The fast symlink area
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* is expected to overflow
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@ -109,9 +108,15 @@ struct dinode {
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* needed (which will clear
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* INLINEEA).
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*/
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u8 _fastsymlink[128];
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} _u;
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u8 _inlineea[128];
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struct {
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union {
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__le32 _rdev; /* 4: */
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u8 _fastsymlink[128];
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} _u;
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u8 _inlineea[128];
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};
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u8 _inline_all[256];
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};
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} _special;
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} _u2;
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} _file;
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@ -122,6 +127,7 @@ struct dinode {
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#define di_rdev u._file._u2._special._u._rdev
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#define di_fastsymlink u._file._u2._special._u._fastsymlink
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#define di_inlineea u._file._u2._special._inlineea
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#define di_inline_all u._file._u2._special._inline_all
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} u;
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};
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@ -761,7 +761,7 @@ int diWrite(tid_t tid, struct inode *ip)
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lv = & dilinelock->lv[dilinelock->index];
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lv->offset = (dioffset + 2 * 128) >> L2INODESLOTSIZE;
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lv->length = 2;
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memcpy(&dp->di_fastsymlink, jfs_ip->i_inline, IDATASIZE);
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memcpy(&dp->di_inline_all, jfs_ip->i_inline_all, IDATASIZE);
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dilinelock->index++;
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}
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/*
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@ -3082,7 +3082,7 @@ static int copy_from_dinode(struct dinode * dip, struct inode *ip)
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}
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if (S_ISDIR(ip->i_mode)) {
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memcpy(&jfs_ip->i_dirtable, &dip->di_dirtable, 384);
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memcpy(&jfs_ip->u.dir, &dip->u._dir, 384);
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} else if (S_ISREG(ip->i_mode) || S_ISLNK(ip->i_mode)) {
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memcpy(&jfs_ip->i_xtroot, &dip->di_xtroot, 288);
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} else
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@ -77,11 +77,18 @@ struct jfs_inode_info {
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unchar _unused[16]; /* 16: */
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dxd_t _dxd; /* 16: */
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/* _inline may overflow into _inline_ea when needed */
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unchar _inline[128]; /* 128: inline symlink */
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/* _inline_ea may overlay the last part of
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* file._xtroot if maxentry = XTROOTINITSLOT
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*/
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unchar _inline_ea[128]; /* 128: inline extended attr */
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union {
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struct {
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/* 128: inline symlink */
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unchar _inline[128];
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/* 128: inline extended attr */
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unchar _inline_ea[128];
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};
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unchar _inline_all[256];
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};
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} link;
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} u;
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#ifdef CONFIG_QUOTA
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@ -96,6 +103,7 @@ struct jfs_inode_info {
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#define i_dtroot u.dir._dtroot
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#define i_inline u.link._inline
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#define i_inline_ea u.link._inline_ea
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#define i_inline_all u.link._inline_all
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#define IREAD_LOCK(ip, subclass) \
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down_read_nested(&JFS_IP(ip)->rdwrlock, subclass)
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@ -939,7 +939,8 @@ static int __init init_jfs_fs(void)
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jfs_inode_cachep =
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kmem_cache_create_usercopy("jfs_ip", sizeof(struct jfs_inode_info),
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0, SLAB_RECLAIM_ACCOUNT|SLAB_MEM_SPREAD|SLAB_ACCOUNT,
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offsetof(struct jfs_inode_info, i_inline), IDATASIZE,
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offsetof(struct jfs_inode_info, i_inline_all),
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sizeof_field(struct jfs_inode_info, i_inline_all),
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init_once);
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if (jfs_inode_cachep == NULL)
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return -ENOMEM;
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