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overlayfs-linux-3.8.6.patch
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overlayfs-linux-3.8.6.patch
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--- a/Documentation/filesystems/Locking
+++ b/Documentation/filesystems/Locking
@@ -64,6 +64,7 @@ prototypes:
int (*atomic_open)(struct inode *, struct dentry *,
struct file *, unsigned open_flag,
umode_t create_mode, int *opened);
+ int (*dentry_open)(struct dentry *, struct file *, const struct cred *);
locking rules:
all may block
@@ -91,6 +92,7 @@ removexattr: yes
fiemap: no
update_time: no
atomic_open: yes
+dentry_open: no
Additionally, ->rmdir(), ->unlink() and ->rename() have ->i_mutex on
victim.
--- /dev/null
+++ b/Documentation/filesystems/overlayfs.txt
@@ -0,0 +1,199 @@
+Written by: Neil Brown <neilb@suse.de>
+
+Overlay Filesystem
+==================
+
+This document describes a prototype for a new approach to providing
+overlay-filesystem functionality in Linux (sometimes referred to as
+union-filesystems). An overlay-filesystem tries to present a
+filesystem which is the result over overlaying one filesystem on top
+of the other.
+
+The result will inevitably fail to look exactly like a normal
+filesystem for various technical reasons. The expectation is that
+many use cases will be able to ignore these differences.
+
+This approach is 'hybrid' because the objects that appear in the
+filesystem do not all appear to belong to that filesystem. In many
+cases an object accessed in the union will be indistinguishable
+from accessing the corresponding object from the original filesystem.
+This is most obvious from the 'st_dev' field returned by stat(2).
+
+While directories will report an st_dev from the overlay-filesystem,
+all non-directory objects will report an st_dev from the lower or
+upper filesystem that is providing the object. Similarly st_ino will
+only be unique when combined with st_dev, and both of these can change
+over the lifetime of a non-directory object. Many applications and
+tools ignore these values and will not be affected.
+
+Upper and Lower
+---------------
+
+An overlay filesystem combines two filesystems - an 'upper' filesystem
+and a 'lower' filesystem. When a name exists in both filesystems, the
+object in the 'upper' filesystem is visible while the object in the
+'lower' filesystem is either hidden or, in the case of directories,
+merged with the 'upper' object.
+
+It would be more correct to refer to an upper and lower 'directory
+tree' rather than 'filesystem' as it is quite possible for both
+directory trees to be in the same filesystem and there is no
+requirement that the root of a filesystem be given for either upper or
+lower.
+
+The lower filesystem can be any filesystem supported by Linux and does
+not need to be writable. The lower filesystem can even be another
+overlayfs. The upper filesystem will normally be writable and if it
+is it must support the creation of trusted.* extended attributes, and
+must provide valid d_type in readdir responses, at least for symbolic
+links - so NFS is not suitable.
+
+A read-only overlay of two read-only filesystems may use any
+filesystem type.
+
+Directories
+-----------
+
+Overlaying mainly involves directories. If a given name appears in both
+upper and lower filesystems and refers to a non-directory in either,
+then the lower object is hidden - the name refers only to the upper
+object.
+
+Where both upper and lower objects are directories, a merged directory
+is formed.
+
+At mount time, the two directories given as mount options are combined
+into a merged directory:
+
+ mount -t overlayfs overlayfs -olowerdir=/lower,upperdir=/upper /overlay
+
+Then whenever a lookup is requested in such a merged directory, the
+lookup is performed in each actual directory and the combined result
+is cached in the dentry belonging to the overlay filesystem. If both
+actual lookups find directories, both are stored and a merged
+directory is created, otherwise only one is stored: the upper if it
+exists, else the lower.
+
+Only the lists of names from directories are merged. Other content
+such as metadata and extended attributes are reported for the upper
+directory only. These attributes of the lower directory are hidden.
+
+whiteouts and opaque directories
+--------------------------------
+
+In order to support rm and rmdir without changing the lower
+filesystem, an overlay filesystem needs to record in the upper filesystem
+that files have been removed. This is done using whiteouts and opaque
+directories (non-directories are always opaque).
+
+The overlay filesystem uses extended attributes with a
+"trusted.overlay." prefix to record these details.
+
+A whiteout is created as a symbolic link with target
+"(overlay-whiteout)" and with xattr "trusted.overlay.whiteout" set to "y".
+When a whiteout is found in the upper level of a merged directory, any
+matching name in the lower level is ignored, and the whiteout itself
+is also hidden.
+
+A directory is made opaque by setting the xattr "trusted.overlay.opaque"
+to "y". Where the upper filesystem contains an opaque directory, any
+directory in the lower filesystem with the same name is ignored.
+
+readdir
+-------
+
+When a 'readdir' request is made on a merged directory, the upper and
+lower directories are each read and the name lists merged in the
+obvious way (upper is read first, then lower - entries that already
+exist are not re-added). This merged name list is cached in the
+'struct file' and so remains as long as the file is kept open. If the
+directory is opened and read by two processes at the same time, they
+will each have separate caches. A seekdir to the start of the
+directory (offset 0) followed by a readdir will cause the cache to be
+discarded and rebuilt.
+
+This means that changes to the merged directory do not appear while a
+directory is being read. This is unlikely to be noticed by many
+programs.
+
+seek offsets are assigned sequentially when the directories are read.
+Thus if
+ - read part of a directory
+ - remember an offset, and close the directory
+ - re-open the directory some time later
+ - seek to the remembered offset
+
+there may be little correlation between the old and new locations in
+the list of filenames, particularly if anything has changed in the
+directory.
+
+Readdir on directories that are not merged is simply handled by the
+underlying directory (upper or lower).
+
+
+Non-directories
+---------------
+
+Objects that are not directories (files, symlinks, device-special
+files etc.) are presented either from the upper or lower filesystem as
+appropriate. When a file in the lower filesystem is accessed in a way
+the requires write-access, such as opening for write access, changing
+some metadata etc., the file is first copied from the lower filesystem
+to the upper filesystem (copy_up). Note that creating a hard-link
+also requires copy_up, though of course creation of a symlink does
+not.
+
+The copy_up may turn out to be unnecessary, for example if the file is
+opened for read-write but the data is not modified.
+
+The copy_up process first makes sure that the containing directory
+exists in the upper filesystem - creating it and any parents as
+necessary. It then creates the object with the same metadata (owner,
+mode, mtime, symlink-target etc.) and then if the object is a file, the
+data is copied from the lower to the upper filesystem. Finally any
+extended attributes are copied up.
+
+Once the copy_up is complete, the overlay filesystem simply
+provides direct access to the newly created file in the upper
+filesystem - future operations on the file are barely noticed by the
+overlay filesystem (though an operation on the name of the file such as
+rename or unlink will of course be noticed and handled).
+
+
+Non-standard behavior
+---------------------
+
+The copy_up operation essentially creates a new, identical file and
+moves it over to the old name. The new file may be on a different
+filesystem, so both st_dev and st_ino of the file may change.
+
+Any open files referring to this inode will access the old data and
+metadata. Similarly any file locks obtained before copy_up will not
+apply to the copied up file.
+
+On a file opened with O_RDONLY fchmod(2), fchown(2), futimesat(2) and
+fsetxattr(2) will fail with EROFS.
+
+If a file with multiple hard links is copied up, then this will
+"break" the link. Changes will not be propagated to other names
+referring to the same inode.
+
+Symlinks in /proc/PID/ and /proc/PID/fd which point to a non-directory
+object in overlayfs will not contain valid absolute paths, only
+relative paths leading up to the filesystem's root. This will be
+fixed in the future.
+
+Some operations are not atomic, for example a crash during copy_up or
+rename will leave the filesystem in an inconsistent state. This will
+be addressed in the future.
+
+Changes to underlying filesystems
+---------------------------------
+
+Offline changes, when the overlay is not mounted, are allowed to either
+the upper or the lower trees.
+
+Changes to the underlying filesystems while part of a mounted overlay
+filesystem are not allowed. If the underlying filesystem is changed,
+the behavior of the overlay is undefined, though it will not result in
+a crash or deadlock.
--- a/Documentation/filesystems/vfs.txt
+++ b/Documentation/filesystems/vfs.txt
@@ -362,6 +362,7 @@ struct inode_operations {
int (*atomic_open)(struct inode *, struct dentry *,
struct file *, unsigned open_flag,
umode_t create_mode, int *opened);
+ int (*dentry_open)(struct dentry *, struct file *, const struct cred *);
};
Again, all methods are called without any locks being held, unless
@@ -681,6 +682,12 @@ struct address_space_operations {
but instead uses bmap to find out where the blocks in the file
are and uses those addresses directly.
+ dentry_open: this is an alternative to f_op->open(), the difference is that
+ this method may open a file not necessarily originating from the same
+ filesystem as the one i_op->open() was called on. It may be
+ useful for stacking filesystems which want to allow native I/O directly
+ on underlying files.
+
invalidatepage: If a page has PagePrivate set, then invalidatepage
will be called when part or all of the page is to be removed
--- a/fs/ecryptfs/main.c
+++ b/fs/ecryptfs/main.c
@@ -567,6 +567,13 @@ static struct dentry *ecryptfs_mount(str
s->s_maxbytes = path.dentry->d_sb->s_maxbytes;
s->s_blocksize = path.dentry->d_sb->s_blocksize;
s->s_magic = ECRYPTFS_SUPER_MAGIC;
+ s->s_stack_depth = path.dentry->d_sb->s_stack_depth + 1;
+
+ rc = -EINVAL;
+ if (s->s_stack_depth > FILESYSTEM_MAX_STACK_DEPTH) {
+ printk(KERN_ERR "eCryptfs: maximum fs stacking depth exceeded\n");
+ goto out_free;
+ }
inode = ecryptfs_get_inode(path.dentry->d_inode, s);
rc = PTR_ERR(inode);
--- a/fs/internal.h
+++ b/fs/internal.h
@@ -42,11 +42,6 @@ static inline int __sync_blockdev(struct
extern void __init chrdev_init(void);
/*
- * namei.c
- */
-extern int __inode_permission(struct inode *, int);
-
-/*
* namespace.c
*/
extern int copy_mount_options(const void __user *, unsigned long *);
--- a/fs/Kconfig
+++ b/fs/Kconfig
@@ -67,6 +67,7 @@ source "fs/quota/Kconfig"
source "fs/autofs4/Kconfig"
source "fs/fuse/Kconfig"
+source "fs/overlayfs/Kconfig"
config GENERIC_ACL
bool
--- a/fs/Makefile
+++ b/fs/Makefile
@@ -107,6 +107,7 @@ obj-$(CONFIG_QNX6FS_FS) += qnx6/
obj-$(CONFIG_AUTOFS4_FS) += autofs4/
obj-$(CONFIG_ADFS_FS) += adfs/
obj-$(CONFIG_FUSE_FS) += fuse/
+obj-$(CONFIG_OVERLAYFS_FS) += overlayfs/
obj-$(CONFIG_UDF_FS) += udf/
obj-$(CONFIG_SUN_OPENPROMFS) += openpromfs/
obj-$(CONFIG_OMFS_FS) += omfs/
--- a/fs/namei.c
+++ b/fs/namei.c
@@ -402,6 +402,7 @@ int __inode_permission(struct inode *ino
return security_inode_permission(inode, mask);
}
+EXPORT_SYMBOL(__inode_permission);
/**
* sb_permission - Check superblock-level permissions
@@ -2878,9 +2879,12 @@ finish_open_created:
error = may_open(&nd->path, acc_mode, open_flag);
if (error)
goto out;
- file->f_path.mnt = nd->path.mnt;
- error = finish_open(file, nd->path.dentry, NULL, opened);
- if (error) {
+
+ BUG_ON(*opened & FILE_OPENED); /* once it's opened, it's opened */
+ error = vfs_open(&nd->path, file, current_cred());
+ if (!error) {
+ *opened |= FILE_OPENED;
+ } else {
if (error == -EOPENSTALE)
goto stale_open;
goto out;
--- a/fs/namespace.c
+++ b/fs/namespace.c
@@ -1410,6 +1410,24 @@ void drop_collected_mounts(struct vfsmou
release_mounts(&umount_list);
}
+struct vfsmount *clone_private_mount(struct path *path)
+{
+ struct mount *old_mnt = real_mount(path->mnt);
+ struct mount *new_mnt;
+
+ if (IS_MNT_UNBINDABLE(old_mnt))
+ return ERR_PTR(-EINVAL);
+
+ down_read(&namespace_sem);
+ new_mnt = clone_mnt(old_mnt, path->dentry, CL_PRIVATE);
+ up_read(&namespace_sem);
+ if (!new_mnt)
+ return ERR_PTR(-ENOMEM);
+
+ return &new_mnt->mnt;
+}
+EXPORT_SYMBOL_GPL(clone_private_mount);
+
int iterate_mounts(int (*f)(struct vfsmount *, void *), void *arg,
struct vfsmount *root)
{
--- a/fs/open.c
+++ b/fs/open.c
@@ -816,8 +816,7 @@ struct file *dentry_open(const struct pa
return ERR_PTR(error);
f->f_flags = flags;
- f->f_path = *path;
- error = do_dentry_open(f, NULL, cred);
+ error = vfs_open(path, f, cred);
if (!error) {
error = open_check_o_direct(f);
if (error) {
@@ -832,6 +831,26 @@ struct file *dentry_open(const struct pa
}
EXPORT_SYMBOL(dentry_open);
+/**
+ * vfs_open - open the file at the given path
+ * @path: path to open
+ * @filp: newly allocated file with f_flag initialized
+ * @cred: credentials to use
+ */
+int vfs_open(const struct path *path, struct file *filp,
+ const struct cred *cred)
+{
+ struct inode *inode = path->dentry->d_inode;
+
+ if (inode->i_op->dentry_open)
+ return inode->i_op->dentry_open(path->dentry, filp, cred);
+ else {
+ filp->f_path = *path;
+ return do_dentry_open(filp, NULL, cred);
+ }
+}
+EXPORT_SYMBOL(vfs_open);
+
static inline int build_open_flags(int flags, umode_t mode, struct open_flags *op)
{
int lookup_flags = 0;
--- /dev/null
+++ b/fs/overlayfs/copy_up.c
@@ -0,0 +1,385 @@
+/*
+ *
+ * Copyright (C) 2011 Novell Inc.
+ *
+ * This program is free software; you can redistribute it and/or modify it
+ * under the terms of the GNU General Public License version 2 as published by
+ * the Free Software Foundation.
+ */
+
+#include <linux/fs.h>
+#include <linux/slab.h>
+#include <linux/file.h>
+#include <linux/splice.h>
+#include <linux/xattr.h>
+#include <linux/security.h>
+#include <linux/uaccess.h>
+#include <linux/sched.h>
+#include "overlayfs.h"
+
+#define OVL_COPY_UP_CHUNK_SIZE (1 << 20)
+
+static int ovl_copy_up_xattr(struct dentry *old, struct dentry *new)
+{
+ ssize_t list_size, size;
+ char *buf, *name, *value;
+ int error;
+
+ if (!old->d_inode->i_op->getxattr ||
+ !new->d_inode->i_op->getxattr)
+ return 0;
+
+ list_size = vfs_listxattr(old, NULL, 0);
+ if (list_size <= 0) {
+ if (list_size == -EOPNOTSUPP)
+ return 0;
+ return list_size;
+ }
+
+ buf = kzalloc(list_size, GFP_KERNEL);
+ if (!buf)
+ return -ENOMEM;
+
+ error = -ENOMEM;
+ value = kmalloc(XATTR_SIZE_MAX, GFP_KERNEL);
+ if (!value)
+ goto out;
+
+ list_size = vfs_listxattr(old, buf, list_size);
+ if (list_size <= 0) {
+ error = list_size;
+ goto out_free_value;
+ }
+
+ for (name = buf; name < (buf + list_size); name += strlen(name) + 1) {
+ size = vfs_getxattr(old, name, value, XATTR_SIZE_MAX);
+ if (size <= 0) {
+ error = size;
+ goto out_free_value;
+ }
+ error = vfs_setxattr(new, name, value, size, 0);
+ if (error)
+ goto out_free_value;
+ }
+
+out_free_value:
+ kfree(value);
+out:
+ kfree(buf);
+ return error;
+}
+
+static int ovl_copy_up_data(struct path *old, struct path *new, loff_t len)
+{
+ struct file *old_file;
+ struct file *new_file;
+ int error = 0;
+
+ if (len == 0)
+ return 0;
+
+ old_file = ovl_path_open(old, O_RDONLY);
+ if (IS_ERR(old_file))
+ return PTR_ERR(old_file);
+
+ new_file = ovl_path_open(new, O_WRONLY);
+ if (IS_ERR(new_file)) {
+ error = PTR_ERR(new_file);
+ goto out_fput;
+ }
+
+ /* FIXME: copy up sparse files efficiently */
+ while (len) {
+ loff_t offset = new_file->f_pos;
+ size_t this_len = OVL_COPY_UP_CHUNK_SIZE;
+ long bytes;
+
+ if (len < this_len)
+ this_len = len;
+
+ if (signal_pending_state(TASK_KILLABLE, current)) {
+ error = -EINTR;
+ break;
+ }
+
+ bytes = do_splice_direct(old_file, &offset, new_file, this_len,
+ SPLICE_F_MOVE);
+ if (bytes <= 0) {
+ error = bytes;
+ break;
+ }
+
+ len -= bytes;
+ }
+
+ fput(new_file);
+out_fput:
+ fput(old_file);
+ return error;
+}
+
+static char *ovl_read_symlink(struct dentry *realdentry)
+{
+ int res;
+ char *buf;
+ struct inode *inode = realdentry->d_inode;
+ mm_segment_t old_fs;
+
+ res = -EINVAL;
+ if (!inode->i_op->readlink)
+ goto err;
+
+ res = -ENOMEM;
+ buf = (char *) __get_free_page(GFP_KERNEL);
+ if (!buf)
+ goto err;
+
+ old_fs = get_fs();
+ set_fs(get_ds());
+ /* The cast to a user pointer is valid due to the set_fs() */
+ res = inode->i_op->readlink(realdentry,
+ (char __user *)buf, PAGE_SIZE - 1);
+ set_fs(old_fs);
+ if (res < 0) {
+ free_page((unsigned long) buf);
+ goto err;
+ }
+ buf[res] = '\0';
+
+ return buf;
+
+err:
+ return ERR_PTR(res);
+}
+
+static int ovl_set_timestamps(struct dentry *upperdentry, struct kstat *stat)
+{
+ struct iattr attr = {
+ .ia_valid =
+ ATTR_ATIME | ATTR_MTIME | ATTR_ATIME_SET | ATTR_MTIME_SET,
+ .ia_atime = stat->atime,
+ .ia_mtime = stat->mtime,
+ };
+
+ return notify_change(upperdentry, &attr);
+}
+
+static int ovl_set_mode(struct dentry *upperdentry, umode_t mode)
+{
+ struct iattr attr = {
+ .ia_valid = ATTR_MODE,
+ .ia_mode = mode,
+ };
+
+ return notify_change(upperdentry, &attr);
+}
+
+static int ovl_copy_up_locked(struct dentry *upperdir, struct dentry *dentry,
+ struct path *lowerpath, struct kstat *stat,
+ const char *link)
+{
+ int err;
+ struct path newpath;
+ umode_t mode = stat->mode;
+
+ /* Can't properly set mode on creation because of the umask */
+ stat->mode &= S_IFMT;
+
+ ovl_path_upper(dentry, &newpath);
+ WARN_ON(newpath.dentry);
+ newpath.dentry = ovl_upper_create(upperdir, dentry, stat, link);
+ if (IS_ERR(newpath.dentry))
+ return PTR_ERR(newpath.dentry);
+
+ if (S_ISREG(stat->mode)) {
+ err = ovl_copy_up_data(lowerpath, &newpath, stat->size);
+ if (err)
+ goto err_remove;
+ }
+
+ err = ovl_copy_up_xattr(lowerpath->dentry, newpath.dentry);
+ if (err)
+ goto err_remove;
+
+ mutex_lock(&newpath.dentry->d_inode->i_mutex);
+ if (!S_ISLNK(stat->mode))
+ err = ovl_set_mode(newpath.dentry, mode);
+ if (!err)
+ err = ovl_set_timestamps(newpath.dentry, stat);
+ mutex_unlock(&newpath.dentry->d_inode->i_mutex);
+ if (err)
+ goto err_remove;
+
+ ovl_dentry_update(dentry, newpath.dentry);
+
+ /*
+ * Easiest way to get rid of the lower dentry reference is to
+ * drop this dentry. This is neither needed nor possible for
+ * directories.
+ */
+ if (!S_ISDIR(stat->mode))
+ d_drop(dentry);
+
+ return 0;
+
+err_remove:
+ if (S_ISDIR(stat->mode))
+ vfs_rmdir(upperdir->d_inode, newpath.dentry);
+ else
+ vfs_unlink(upperdir->d_inode, newpath.dentry);
+
+ dput(newpath.dentry);
+
+ return err;
+}
+
+/*
+ * Copy up a single dentry
+ *
+ * Directory renames only allowed on "pure upper" (already created on
+ * upper filesystem, never copied up). Directories which are on lower or
+ * are merged may not be renamed. For these -EXDEV is returned and
+ * userspace has to deal with it. This means, when copying up a
+ * directory we can rely on it and ancestors being stable.
+ *
+ * Non-directory renames start with copy up of source if necessary. The
+ * actual rename will only proceed once the copy up was successful. Copy
+ * up uses upper parent i_mutex for exclusion. Since rename can change
+ * d_parent it is possible that the copy up will lock the old parent. At
+ * that point the file will have already been copied up anyway.
+ */
+static int ovl_copy_up_one(struct dentry *parent, struct dentry *dentry,
+ struct path *lowerpath, struct kstat *stat)
+{
+ int err;
+ struct kstat pstat;
+ struct path parentpath;
+ struct dentry *upperdir;
+ const struct cred *old_cred;
+ struct cred *override_cred;
+ char *link = NULL;
+
+ ovl_path_upper(parent, &parentpath);
+ upperdir = parentpath.dentry;
+
+ err = vfs_getattr(parentpath.mnt, parentpath.dentry, &pstat);
+ if (err)
+ return err;
+
+ if (S_ISLNK(stat->mode)) {
+ link = ovl_read_symlink(lowerpath->dentry);
+ if (IS_ERR(link))
+ return PTR_ERR(link);
+ }
+
+ err = -ENOMEM;
+ override_cred = prepare_creds();
+ if (!override_cred)
+ goto out_free_link;
+
+ override_cred->fsuid = stat->uid;
+ override_cred->fsgid = stat->gid;
+ /*
+ * CAP_SYS_ADMIN for copying up extended attributes
+ * CAP_DAC_OVERRIDE for create
+ * CAP_FOWNER for chmod, timestamp update
+ * CAP_FSETID for chmod
+ * CAP_MKNOD for mknod
+ */
+ cap_raise(override_cred->cap_effective, CAP_SYS_ADMIN);
+ cap_raise(override_cred->cap_effective, CAP_DAC_OVERRIDE);
+ cap_raise(override_cred->cap_effective, CAP_FOWNER);
+ cap_raise(override_cred->cap_effective, CAP_FSETID);
+ cap_raise(override_cred->cap_effective, CAP_MKNOD);
+ old_cred = override_creds(override_cred);
+
+ mutex_lock_nested(&upperdir->d_inode->i_mutex, I_MUTEX_PARENT);
+ if (ovl_path_type(dentry) != OVL_PATH_LOWER) {
+ err = 0;
+ } else {
+ err = ovl_copy_up_locked(upperdir, dentry, lowerpath,
+ stat, link);
+ if (!err) {
+ /* Restore timestamps on parent (best effort) */
+ ovl_set_timestamps(upperdir, &pstat);
+ }
+ }
+
+ mutex_unlock(&upperdir->d_inode->i_mutex);
+
+ revert_creds(old_cred);
+ put_cred(override_cred);
+
+out_free_link:
+ if (link)
+ free_page((unsigned long) link);
+
+ return err;
+}
+
+int ovl_copy_up(struct dentry *dentry)
+{
+ int err;
+
+ err = 0;
+ while (!err) {
+ struct dentry *next;
+ struct dentry *parent;
+ struct path lowerpath;
+ struct kstat stat;
+ enum ovl_path_type type = ovl_path_type(dentry);
+
+ if (type != OVL_PATH_LOWER)
+ break;
+
+ next = dget(dentry);
+ /* find the topmost dentry not yet copied up */
+ for (;;) {
+ parent = dget_parent(next);
+
+ type = ovl_path_type(parent);
+ if (type != OVL_PATH_LOWER)
+ break;
+
+ dput(next);
+ next = parent;
+ }
+
+ ovl_path_lower(next, &lowerpath);
+ err = vfs_getattr(lowerpath.mnt, lowerpath.dentry, &stat);
+ if (!err)
+ err = ovl_copy_up_one(parent, next, &lowerpath, &stat);
+
+ dput(parent);
+ dput(next);
+ }
+
+ return err;
+}
+
+/* Optimize by not copying up the file first and truncating later */
+int ovl_copy_up_truncate(struct dentry *dentry, loff_t size)
+{
+ int err;
+ struct kstat stat;
+ struct path lowerpath;
+ struct dentry *parent = dget_parent(dentry);
+
+ err = ovl_copy_up(parent);
+ if (err)
+ goto out_dput_parent;
+
+ ovl_path_lower(dentry, &lowerpath);
+ err = vfs_getattr(lowerpath.mnt, lowerpath.dentry, &stat);
+ if (err)
+ goto out_dput_parent;
+
+ if (size < stat.size)
+ stat.size = size;
+
+ err = ovl_copy_up_one(parent, dentry, &lowerpath, &stat);
+
+out_dput_parent:
+ dput(parent);
+ return err;
+}
--- /dev/null
+++ b/fs/overlayfs/dir.c
@@ -0,0 +1,604 @@
+/*
+ *
+ * Copyright (C) 2011 Novell Inc.
+ *
+ * This program is free software; you can redistribute it and/or modify it
+ * under the terms of the GNU General Public License version 2 as published by
+ * the Free Software Foundation.
+ */
+
+#include <linux/fs.h>
+#include <linux/namei.h>
+#include <linux/xattr.h>
+#include <linux/security.h>
+#include <linux/cred.h>
+#include "overlayfs.h"
+
+static const char *ovl_whiteout_symlink = "(overlay-whiteout)";
+
+static int ovl_whiteout(struct dentry *upperdir, struct dentry *dentry)
+{
+ int err;
+ struct dentry *newdentry;
+ const struct cred *old_cred;
+ struct cred *override_cred;
+
+ /* FIXME: recheck lower dentry to see if whiteout is really needed */
+
+ err = -ENOMEM;
+ override_cred = prepare_creds();
+ if (!override_cred)
+ goto out;
+
+ /*
+ * CAP_SYS_ADMIN for setxattr
+ * CAP_DAC_OVERRIDE for symlink creation
+ * CAP_FOWNER for unlink in sticky directory
+ */
+ cap_raise(override_cred->cap_effective, CAP_SYS_ADMIN);
+ cap_raise(override_cred->cap_effective, CAP_DAC_OVERRIDE);
+ cap_raise(override_cred->cap_effective, CAP_FOWNER);
+ override_cred->fsuid = GLOBAL_ROOT_UID;
+ override_cred->fsgid = GLOBAL_ROOT_GID;
+ old_cred = override_creds(override_cred);
+
+ newdentry = lookup_one_len(dentry->d_name.name, upperdir,
+ dentry->d_name.len);
+ err = PTR_ERR(newdentry);
+ if (IS_ERR(newdentry))
+ goto out_put_cred;
+
+ /* Just been removed within the same locked region */
+ WARN_ON(newdentry->d_inode);
+
+ err = vfs_symlink(upperdir->d_inode, newdentry, ovl_whiteout_symlink);
+ if (err)
+ goto out_dput;
+
+ ovl_dentry_version_inc(dentry->d_parent);
+
+ err = vfs_setxattr(newdentry, ovl_whiteout_xattr, "y", 1, 0);
+ if (err)
+ vfs_unlink(upperdir->d_inode, newdentry);
+
+out_dput:
+ dput(newdentry);
+out_put_cred:
+ revert_creds(old_cred);
+ put_cred(override_cred);
+out:
+ if (err) {
+ /*
+ * There's no way to recover from failure to whiteout.
+ * What should we do? Log a big fat error and... ?
+ */
+ printk(KERN_ERR "overlayfs: ERROR - failed to whiteout '%s'\n",
+ dentry->d_name.name);
+ }
+
+ return err;
+}
+
+static struct dentry *ovl_lookup_create(struct dentry *upperdir,
+ struct dentry *template)
+{
+ int err;
+ struct dentry *newdentry;
+ struct qstr *name = &template->d_name;
+
+ newdentry = lookup_one_len(name->name, upperdir, name->len);
+ if (IS_ERR(newdentry))
+ return newdentry;
+
+ if (newdentry->d_inode) {
+ const struct cred *old_cred;
+ struct cred *override_cred;
+
+ /* No need to check whiteout if lower parent is non-existent */
+ err = -EEXIST;
+ if (!ovl_dentry_lower(template->d_parent))
+ goto out_dput;
+
+ if (!S_ISLNK(newdentry->d_inode->i_mode))
+ goto out_dput;
+
+ err = -ENOMEM;
+ override_cred = prepare_creds();
+ if (!override_cred)
+ goto out_dput;
+
+ /*
+ * CAP_SYS_ADMIN for getxattr
+ * CAP_FOWNER for unlink in sticky directory
+ */
+ cap_raise(override_cred->cap_effective, CAP_SYS_ADMIN);
+ cap_raise(override_cred->cap_effective, CAP_FOWNER);
+ old_cred = override_creds(override_cred);
+
+ err = -EEXIST;
+ if (ovl_is_whiteout(newdentry))
+ err = vfs_unlink(upperdir->d_inode, newdentry);
+
+ revert_creds(old_cred);
+ put_cred(override_cred);
+ if (err)
+ goto out_dput;
+
+ dput(newdentry);
+ newdentry = lookup_one_len(name->name, upperdir, name->len);
+ if (IS_ERR(newdentry)) {
+ ovl_whiteout(upperdir, template);
+ return newdentry;
+ }
+
+ /*
+ * Whiteout just been successfully removed, parent
+ * i_mutex is still held, there's no way the lookup
+ * could return positive.
+ */
+ WARN_ON(newdentry->d_inode);
+ }
+
+ return newdentry;
+
+out_dput:
+ dput(newdentry);
+ return ERR_PTR(err);
+}
+
+struct dentry *ovl_upper_create(struct dentry *upperdir, struct dentry *dentry,
+ struct kstat *stat, const char *link)
+{
+ int err;
+ struct dentry *newdentry;
+ struct inode *dir = upperdir->d_inode;
+
+ newdentry = ovl_lookup_create(upperdir, dentry);
+ if (IS_ERR(newdentry))
+ goto out;
+
+ switch (stat->mode & S_IFMT) {
+ case S_IFREG:
+ err = vfs_create(dir, newdentry, stat->mode, NULL);
+ break;
+
+ case S_IFDIR:
+ err = vfs_mkdir(dir, newdentry, stat->mode);
+ break;
+
+ case S_IFCHR:
+ case S_IFBLK:
+ case S_IFIFO:
+ case S_IFSOCK:
+ err = vfs_mknod(dir, newdentry, stat->mode, stat->rdev);
+ break;
+
+ case S_IFLNK:
+ err = vfs_symlink(dir, newdentry, link);
+ break;
+
+ default:
+ err = -EPERM;
+ }
+ if (err) {
+ if (ovl_dentry_is_opaque(dentry))
+ ovl_whiteout(upperdir, dentry);
+ dput(newdentry);
+ newdentry = ERR_PTR(err);
+ } else if (WARN_ON(!newdentry->d_inode)) {
+ /*
+ * Not quite sure if non-instantiated dentry is legal or not.
+ * VFS doesn't seem to care so check and warn here.
+ */
+ dput(newdentry);
+ newdentry = ERR_PTR(-ENOENT);
+ }
+
+out:
+ return newdentry;
+
+}
+
+static int ovl_set_opaque(struct dentry *upperdentry)
+{
+ int err;
+ const struct cred *old_cred;
+ struct cred *override_cred;
+
+ override_cred = prepare_creds();
+ if (!override_cred)
+ return -ENOMEM;
+
+ /* CAP_SYS_ADMIN for setxattr of "trusted" namespace */
+ cap_raise(override_cred->cap_effective, CAP_SYS_ADMIN);
+ old_cred = override_creds(override_cred);
+ err = vfs_setxattr(upperdentry, ovl_opaque_xattr, "y", 1, 0);
+ revert_creds(old_cred);
+ put_cred(override_cred);
+
+ return err;
+}
+
+static int ovl_remove_opaque(struct dentry *upperdentry)
+{
+ int err;