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[PATCH] lockdep: annotate NTFS locking rules
NTFS uses lots of type-opaque objects which acquire their true identity runtime - so the lock validator needs to be helped in a couple of places to figure out object types. Many thanks to Anton Altaparmakov for giving lots of explanations about NTFS locking rules. Has no effect on non-lockdep kernels. Signed-off-by: Ingo Molnar <mingo@elte.hu> Signed-off-by: Anton Altaparmakov <aia21@cantab.net> Signed-off-by: Andrew Morton <akpm@osdl.org> Signed-off-by: Linus Torvalds <torvalds@osdl.org>
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@ -367,6 +367,12 @@ static void ntfs_destroy_extent_inode(ntfs_inode *ni)
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kmem_cache_free(ntfs_inode_cache, ni);
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}
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/*
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* The attribute runlist lock has separate locking rules from the
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* normal runlist lock, so split the two lock-classes:
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*/
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static struct lock_class_key attr_list_rl_lock_class;
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/**
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* __ntfs_init_inode - initialize ntfs specific part of an inode
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* @sb: super block of mounted volume
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@ -394,6 +400,8 @@ void __ntfs_init_inode(struct super_block *sb, ntfs_inode *ni)
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ni->attr_list_size = 0;
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ni->attr_list = NULL;
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ntfs_init_runlist(&ni->attr_list_rl);
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lockdep_set_class(&ni->attr_list_rl.lock,
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&attr_list_rl_lock_class);
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ni->itype.index.bmp_ino = NULL;
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ni->itype.index.block_size = 0;
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ni->itype.index.vcn_size = 0;
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@ -405,6 +413,13 @@ void __ntfs_init_inode(struct super_block *sb, ntfs_inode *ni)
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ni->ext.base_ntfs_ino = NULL;
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}
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/*
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* Extent inodes get MFT-mapped in a nested way, while the base inode
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* is still mapped. Teach this nesting to the lock validator by creating
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* a separate class for nested inode's mrec_lock's:
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*/
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static struct lock_class_key extent_inode_mrec_lock_key;
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inline ntfs_inode *ntfs_new_extent_inode(struct super_block *sb,
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unsigned long mft_no)
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{
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@ -413,6 +428,7 @@ inline ntfs_inode *ntfs_new_extent_inode(struct super_block *sb,
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ntfs_debug("Entering.");
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if (likely(ni != NULL)) {
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__ntfs_init_inode(sb, ni);
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lockdep_set_class(&ni->mrec_lock, &extent_inode_mrec_lock_key);
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ni->mft_no = mft_no;
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ni->type = AT_UNUSED;
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ni->name = NULL;
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@ -1722,6 +1738,15 @@ err_out:
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return err;
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}
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/*
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* The MFT inode has special locking, so teach the lock validator
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* about this by splitting off the locking rules of the MFT from
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* the locking rules of other inodes. The MFT inode can never be
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* accessed from the VFS side (or even internally), only by the
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* map_mft functions.
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*/
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static struct lock_class_key mft_ni_runlist_lock_key, mft_ni_mrec_lock_key;
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/**
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* ntfs_read_inode_mount - special read_inode for mount time use only
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* @vi: inode to read
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@ -2148,6 +2173,14 @@ int ntfs_read_inode_mount(struct inode *vi)
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ntfs_attr_put_search_ctx(ctx);
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ntfs_debug("Done.");
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ntfs_free(m);
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/*
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* Split the locking rules of the MFT inode from the
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* locking rules of other inodes:
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*/
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lockdep_set_class(&ni->runlist.lock, &mft_ni_runlist_lock_key);
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lockdep_set_class(&ni->mrec_lock, &mft_ni_mrec_lock_key);
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return 0;
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em_put_err_out:
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@ -1724,6 +1724,14 @@ upcase_failed:
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return FALSE;
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}
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/*
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* The lcn and mft bitmap inodes are NTFS-internal inodes with
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* their own special locking rules:
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*/
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static struct lock_class_key
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lcnbmp_runlist_lock_key, lcnbmp_mrec_lock_key,
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mftbmp_runlist_lock_key, mftbmp_mrec_lock_key;
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/**
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* load_system_files - open the system files using normal functions
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* @vol: ntfs super block describing device whose system files to load
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@ -1780,6 +1788,10 @@ static BOOL load_system_files(ntfs_volume *vol)
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ntfs_error(sb, "Failed to load $MFT/$BITMAP attribute.");
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goto iput_mirr_err_out;
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}
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lockdep_set_class(&NTFS_I(vol->mftbmp_ino)->runlist.lock,
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&mftbmp_runlist_lock_key);
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lockdep_set_class(&NTFS_I(vol->mftbmp_ino)->mrec_lock,
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&mftbmp_mrec_lock_key);
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/* Read upcase table and setup @vol->upcase and @vol->upcase_len. */
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if (!load_and_init_upcase(vol))
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goto iput_mftbmp_err_out;
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@ -1802,6 +1814,11 @@ static BOOL load_system_files(ntfs_volume *vol)
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iput(vol->lcnbmp_ino);
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goto bitmap_failed;
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}
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lockdep_set_class(&NTFS_I(vol->lcnbmp_ino)->runlist.lock,
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&lcnbmp_runlist_lock_key);
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lockdep_set_class(&NTFS_I(vol->lcnbmp_ino)->mrec_lock,
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&lcnbmp_mrec_lock_key);
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NInoSetSparseDisabled(NTFS_I(vol->lcnbmp_ino));
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if ((vol->nr_clusters + 7) >> 3 > i_size_read(vol->lcnbmp_ino)) {
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iput(vol->lcnbmp_ino);
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@ -2743,6 +2760,17 @@ static int ntfs_fill_super(struct super_block *sb, void *opt, const int silent)
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struct inode *tmp_ino;
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int blocksize, result;
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/*
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* We do a pretty difficult piece of bootstrap by reading the
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* MFT (and other metadata) from disk into memory. We'll only
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* release this metadata during umount, so the locking patterns
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* observed during bootstrap do not count. So turn off the
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* observation of locking patterns (strictly for this context
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* only) while mounting NTFS. [The validator is still active
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* otherwise, even for this context: it will for example record
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* lock class registrations.]
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*/
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lockdep_off();
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ntfs_debug("Entering.");
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#ifndef NTFS_RW
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sb->s_flags |= MS_RDONLY;
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@ -2754,6 +2782,7 @@ static int ntfs_fill_super(struct super_block *sb, void *opt, const int silent)
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if (!silent)
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ntfs_error(sb, "Allocation of NTFS volume structure "
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"failed. Aborting mount...");
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lockdep_on();
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return -ENOMEM;
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}
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/* Initialize ntfs_volume structure. */
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@ -2940,6 +2969,7 @@ static int ntfs_fill_super(struct super_block *sb, void *opt, const int silent)
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mutex_unlock(&ntfs_lock);
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sb->s_export_op = &ntfs_export_ops;
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lock_kernel();
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lockdep_on();
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return 0;
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}
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ntfs_error(sb, "Failed to allocate root directory.");
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@ -3059,6 +3089,7 @@ err_out_now:
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sb->s_fs_info = NULL;
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kfree(vol);
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ntfs_debug("Failed, returning -EINVAL.");
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lockdep_on();
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return -EINVAL;
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}
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