mirror of
git://git.kernel.org/pub/scm/linux/kernel/git/torvalds/linux.git
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-----BEGIN PGP SIGNATURE----- iHUEABYKAB0WIQRAhzRXHqcMeLMyaSiRxhvAZXjcogUCaDBPTwAKCRCRxhvAZXjc om0+AQDMxKLweJXplqQQ7jxuvW2dEa60YpE2EalEKWGg9YA3KgEA3nI4kyKMKn7Y PRFXgIcKvhs62oJLKsq8SGQUqExqvAE= =atEw -----END PGP SIGNATURE----- Merge tag 'vfs-6.16-rc1.misc' of git://git.kernel.org/pub/scm/linux/kernel/git/vfs/vfs Pull misc vfs updates from Christian Brauner: "This contains the usual selections of misc updates for this cycle. Features: - Use folios for symlinks in the page cache FUSE already uses folios for its symlinks. Mirror that conversion in the generic code and the NFS code. That lets us get rid of a few folio->page->folio conversions in this path, and some of the few remaining users of read_cache_page() / read_mapping_page() - Try and make a few filesystem operations killable on the VFS inode->i_mutex level - Add sysctl vfs_cache_pressure_denom for bulk file operations Some workloads need to preserve more dentries than we currently allow through out sysctl interface A HDFS servers with 12 HDDs per server, on a HDFS datanode startup involves scanning all files and caching their metadata (including dentries and inodes) in memory. Each HDD contains approximately 2 million files, resulting in a total of ~20 million cached dentries after initialization To minimize dentry reclamation, they set vfs_cache_pressure to 1. Despite this configuration, memory pressure conditions can still trigger reclamation of up to 50% of cached dentries, reducing the cache from 20 million to approximately 10 million entries. During the subsequent cache rebuild period, any HDFS datanode restart operation incurs substantial latency penalties until full cache recovery completes To maintain service stability, more dentries need to be preserved during memory reclamation. The current minimum reclaim ratio (1/100 of total dentries) remains too aggressive for such workload. This patch introduces vfs_cache_pressure_denom for more granular cache pressure control The configuration [vfs_cache_pressure=1, vfs_cache_pressure_denom=10000] effectively maintains the full 20 million dentry cache under memory pressure, preventing datanode restart performance degradation - Avoid some jumps in inode_permission() using likely()/unlikely() - Avid a memory access which is most likely a cache miss when descending into devcgroup_inode_permission() - Add fastpath predicts for stat() and fdput() - Anonymous inodes currently don't come with a proper mode causing issues in the kernel when we want to add useful VFS debug assert. Fix that by giving them a proper mode and masking it off when we report it to userspace which relies on them not having any mode - Anonymous inodes currently allow to change inode attributes because the VFS falls back to simple_setattr() if i_op->setattr isn't implemented. This means the ownership and mode for every single user of anon_inode_inode can be changed. Block that as it's either useless or actively harmful. If specific ownership is needed the respective subsystem should allocate anonymous inodes from their own private superblock - Raise SB_I_NODEV and SB_I_NOEXEC on the anonymous inode superblock - Add proper tests for anonymous inode behavior - Make it easy to detect proper anonymous inodes and to ensure that we can detect them in codepaths such as readahead() Cleanups: - Port pidfs to the new anon_inode_{g,s}etattr() helpers - Try to remove the uselib() system call - Add unlikely branch hint return path for poll - Add unlikely branch hint on return path for core_sys_select - Don't allow signals to interrupt getdents copying for fuse - Provide a size hint to dir_context for during readdir() - Use writeback_iter directly in mpage_writepages - Update compression and mtime descriptions in initramfs documentation - Update main netfs API document - Remove useless plus one in super_cache_scan() - Remove unnecessary NULL-check guards during setns() - Add separate separate {get,put}_cgroup_ns no-op cases Fixes: - Fix typo in root= kernel parameter description - Use KERN_INFO for infof()|info_plog()|infofc() - Correct comments of fs_validate_description() - Mark an unlikely if condition with unlikely() in vfs_parse_monolithic_sep() - Delete macro fsparam_u32hex() - Remove unused and problematic validate_constant_table() - Fix potential unsigned integer underflow in fs_name() - Make file-nr output the total allocated file handles" * tag 'vfs-6.16-rc1.misc' of git://git.kernel.org/pub/scm/linux/kernel/git/vfs/vfs: (43 commits) fs: Pass a folio to page_put_link() nfs: Use a folio in nfs_get_link() fs: Convert __page_get_link() to use a folio fs/read_write: make default_llseek() killable fs/open: make do_truncate() killable fs/open: make chmod_common() and chown_common() killable include/linux/fs.h: add inode_lock_killable() readdir: supply dir_context.count as readdir buffer size hint vfs: Add sysctl vfs_cache_pressure_denom for bulk file operations fuse: don't allow signals to interrupt getdents copying Documentation: fix typo in root= kernel parameter description include/cgroup: separate {get,put}_cgroup_ns no-op case kernel/nsproxy: remove unnecessary guards fs: use writeback_iter directly in mpage_writepages fs: remove useless plus one in super_cache_scan() fs: add S_ANON_INODE fs: remove uselib() system call device_cgroup: avoid access to ->i_rdev in the common case in devcgroup_inode_permission() fs/fs_parse: Remove unused and problematic validate_constant_table() fs: touch up predicts in inode_permission() ...
613 lines
16 KiB
C
613 lines
16 KiB
C
// SPDX-License-Identifier: GPL-2.0-only
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/*
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* Copyright (C) Neil Brown 2002
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* Copyright (C) Christoph Hellwig 2007
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*
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* This file contains the code mapping from inodes to NFS file handles,
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* and for mapping back from file handles to dentries.
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*
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* For details on why we do all the strange and hairy things in here
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* take a look at Documentation/filesystems/nfs/exporting.rst.
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*/
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#include <linux/exportfs.h>
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#include <linux/fs.h>
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#include <linux/file.h>
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#include <linux/module.h>
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#include <linux/mount.h>
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#include <linux/namei.h>
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#include <linux/sched.h>
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#include <linux/cred.h>
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#define dprintk(fmt, args...) pr_debug(fmt, ##args)
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static int get_name(const struct path *path, char *name, struct dentry *child);
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static int exportfs_get_name(struct vfsmount *mnt, struct dentry *dir,
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char *name, struct dentry *child)
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{
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const struct export_operations *nop = dir->d_sb->s_export_op;
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struct path path = {.mnt = mnt, .dentry = dir};
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if (nop->get_name)
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return nop->get_name(dir, name, child);
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else
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return get_name(&path, name, child);
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}
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/*
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* Check if the dentry or any of it's aliases is acceptable.
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*/
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static struct dentry *
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find_acceptable_alias(struct dentry *result,
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int (*acceptable)(void *context, struct dentry *dentry),
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void *context)
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{
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struct dentry *dentry, *toput = NULL;
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struct inode *inode;
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if (acceptable(context, result))
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return result;
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inode = result->d_inode;
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spin_lock(&inode->i_lock);
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hlist_for_each_entry(dentry, &inode->i_dentry, d_u.d_alias) {
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dget(dentry);
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spin_unlock(&inode->i_lock);
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if (toput)
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dput(toput);
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if (dentry != result && acceptable(context, dentry)) {
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dput(result);
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return dentry;
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}
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spin_lock(&inode->i_lock);
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toput = dentry;
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}
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spin_unlock(&inode->i_lock);
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if (toput)
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dput(toput);
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return NULL;
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}
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static bool dentry_connected(struct dentry *dentry)
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{
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dget(dentry);
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while (dentry->d_flags & DCACHE_DISCONNECTED) {
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struct dentry *parent = dget_parent(dentry);
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dput(dentry);
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if (dentry == parent) {
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dput(parent);
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return false;
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}
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dentry = parent;
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}
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dput(dentry);
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return true;
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}
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static void clear_disconnected(struct dentry *dentry)
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{
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dget(dentry);
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while (dentry->d_flags & DCACHE_DISCONNECTED) {
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struct dentry *parent = dget_parent(dentry);
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WARN_ON_ONCE(IS_ROOT(dentry));
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spin_lock(&dentry->d_lock);
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dentry->d_flags &= ~DCACHE_DISCONNECTED;
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spin_unlock(&dentry->d_lock);
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dput(dentry);
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dentry = parent;
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}
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dput(dentry);
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}
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/*
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* Reconnect a directory dentry with its parent.
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*
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* This can return a dentry, or NULL, or an error.
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*
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* In the first case the returned dentry is the parent of the given
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* dentry, and may itself need to be reconnected to its parent.
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*
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* In the NULL case, a concurrent VFS operation has either renamed or
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* removed this directory. The concurrent operation has reconnected our
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* dentry, so we no longer need to.
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*/
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static struct dentry *reconnect_one(struct vfsmount *mnt,
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struct dentry *dentry, char *nbuf)
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{
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struct dentry *parent;
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struct dentry *tmp;
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int err;
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parent = ERR_PTR(-EACCES);
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if (mnt->mnt_sb->s_export_op->get_parent)
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parent = mnt->mnt_sb->s_export_op->get_parent(dentry);
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if (IS_ERR(parent)) {
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dprintk("get_parent of %lu failed, err %ld\n",
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dentry->d_inode->i_ino, PTR_ERR(parent));
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return parent;
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}
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dprintk("%s: find name of %lu in %lu\n", __func__,
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dentry->d_inode->i_ino, parent->d_inode->i_ino);
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err = exportfs_get_name(mnt, parent, nbuf, dentry);
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if (err == -ENOENT)
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goto out_reconnected;
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if (err)
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goto out_err;
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dprintk("%s: found name: %s\n", __func__, nbuf);
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tmp = lookup_one_unlocked(mnt_idmap(mnt), &QSTR(nbuf), parent);
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if (IS_ERR(tmp)) {
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dprintk("lookup failed: %ld\n", PTR_ERR(tmp));
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err = PTR_ERR(tmp);
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goto out_err;
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}
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if (tmp != dentry) {
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/*
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* Somebody has renamed it since exportfs_get_name();
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* great, since it could've only been renamed if it
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* got looked up and thus connected, and it would
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* remain connected afterwards. We are done.
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*/
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dput(tmp);
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goto out_reconnected;
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}
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dput(tmp);
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if (IS_ROOT(dentry)) {
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err = -ESTALE;
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goto out_err;
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}
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return parent;
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out_err:
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dput(parent);
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return ERR_PTR(err);
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out_reconnected:
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dput(parent);
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/*
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* Someone must have renamed our entry into another parent, in
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* which case it has been reconnected by the rename.
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*
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* Or someone removed it entirely, in which case filehandle
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* lookup will succeed but the directory is now IS_DEAD and
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* subsequent operations on it will fail.
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*
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* Alternatively, maybe there was no race at all, and the
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* filesystem is just corrupt and gave us a parent that doesn't
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* actually contain any entry pointing to this inode. So,
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* double check that this worked and return -ESTALE if not:
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*/
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if (!dentry_connected(dentry))
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return ERR_PTR(-ESTALE);
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return NULL;
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}
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/*
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* Make sure target_dir is fully connected to the dentry tree.
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*
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* On successful return, DCACHE_DISCONNECTED will be cleared on
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* target_dir, and target_dir->d_parent->...->d_parent will reach the
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* root of the filesystem.
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*
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* Whenever DCACHE_DISCONNECTED is unset, target_dir is fully connected.
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* But the converse is not true: target_dir may have DCACHE_DISCONNECTED
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* set but already be connected. In that case we'll verify the
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* connection to root and then clear the flag.
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*
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* Note that target_dir could be removed by a concurrent operation. In
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* that case reconnect_path may still succeed with target_dir fully
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* connected, but further operations using the filehandle will fail when
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* necessary (due to S_DEAD being set on the directory).
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*/
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static int
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reconnect_path(struct vfsmount *mnt, struct dentry *target_dir, char *nbuf)
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{
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struct dentry *dentry, *parent;
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dentry = dget(target_dir);
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while (dentry->d_flags & DCACHE_DISCONNECTED) {
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BUG_ON(dentry == mnt->mnt_sb->s_root);
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if (IS_ROOT(dentry))
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parent = reconnect_one(mnt, dentry, nbuf);
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else
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parent = dget_parent(dentry);
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if (!parent)
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break;
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dput(dentry);
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if (IS_ERR(parent))
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return PTR_ERR(parent);
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dentry = parent;
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}
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dput(dentry);
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clear_disconnected(target_dir);
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return 0;
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}
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struct getdents_callback {
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struct dir_context ctx;
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char *name; /* name that was found. It already points to a
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buffer NAME_MAX+1 is size */
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u64 ino; /* the inum we are looking for */
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int found; /* inode matched? */
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int sequence; /* sequence counter */
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};
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/*
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* A rather strange filldir function to capture
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* the name matching the specified inode number.
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*/
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static bool filldir_one(struct dir_context *ctx, const char *name, int len,
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loff_t pos, u64 ino, unsigned int d_type)
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{
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struct getdents_callback *buf =
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container_of(ctx, struct getdents_callback, ctx);
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buf->sequence++;
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if (buf->ino == ino && len <= NAME_MAX && !is_dot_dotdot(name, len)) {
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memcpy(buf->name, name, len);
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buf->name[len] = '\0';
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buf->found = 1;
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return false; // no more
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}
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return true;
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}
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/**
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* get_name - default export_operations->get_name function
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* @path: the directory in which to find a name
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* @name: a pointer to a %NAME_MAX+1 char buffer to store the name
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* @child: the dentry for the child directory.
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*
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* calls readdir on the parent until it finds an entry with
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* the same inode number as the child, and returns that.
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*/
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static int get_name(const struct path *path, char *name, struct dentry *child)
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{
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const struct cred *cred = current_cred();
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struct inode *dir = path->dentry->d_inode;
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int error;
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struct file *file;
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struct kstat stat;
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struct path child_path = {
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.mnt = path->mnt,
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.dentry = child,
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};
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struct getdents_callback buffer = {
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.ctx.actor = filldir_one,
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.ctx.count = INT_MAX,
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.name = name,
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};
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error = -ENOTDIR;
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if (!dir || !S_ISDIR(dir->i_mode))
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goto out;
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error = -EINVAL;
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if (!dir->i_fop)
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goto out;
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/*
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* inode->i_ino is unsigned long, kstat->ino is u64, so the
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* former would be insufficient on 32-bit hosts when the
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* filesystem supports 64-bit inode numbers. So we need to
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* actually call ->getattr, not just read i_ino:
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*/
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error = vfs_getattr_nosec(&child_path, &stat,
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STATX_INO, AT_STATX_SYNC_AS_STAT);
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if (error)
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return error;
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buffer.ino = stat.ino;
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/*
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* Open the directory ...
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*/
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file = dentry_open(path, O_RDONLY, cred);
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error = PTR_ERR(file);
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if (IS_ERR(file))
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goto out;
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error = -EINVAL;
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if (!file->f_op->iterate_shared)
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goto out_close;
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buffer.sequence = 0;
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while (1) {
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int old_seq = buffer.sequence;
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error = iterate_dir(file, &buffer.ctx);
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if (buffer.found) {
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error = 0;
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break;
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}
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if (error < 0)
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break;
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error = -ENOENT;
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if (old_seq == buffer.sequence)
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break;
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}
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out_close:
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fput(file);
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out:
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return error;
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}
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#define FILEID_INO64_GEN_LEN 3
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/**
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* exportfs_encode_ino64_fid - encode non-decodeable 64bit ino file id
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* @inode: the object to encode
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* @fid: where to store the file handle fragment
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* @max_len: maximum length to store there (in 4 byte units)
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*
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* This generic function is used to encode a non-decodeable file id for
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* fanotify for filesystems that do not support NFS export.
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*/
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static int exportfs_encode_ino64_fid(struct inode *inode, struct fid *fid,
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int *max_len)
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{
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if (*max_len < FILEID_INO64_GEN_LEN) {
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*max_len = FILEID_INO64_GEN_LEN;
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return FILEID_INVALID;
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}
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fid->i64.ino = inode->i_ino;
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fid->i64.gen = inode->i_generation;
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*max_len = FILEID_INO64_GEN_LEN;
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return FILEID_INO64_GEN;
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}
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/**
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* exportfs_encode_inode_fh - encode a file handle from inode
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* @inode: the object to encode
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* @fid: where to store the file handle fragment
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* @max_len: maximum length to store there
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* @parent: parent directory inode, if wanted
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* @flags: properties of the requested file handle
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*
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* Returns an enum fid_type or a negative errno.
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*/
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int exportfs_encode_inode_fh(struct inode *inode, struct fid *fid,
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int *max_len, struct inode *parent, int flags)
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{
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const struct export_operations *nop = inode->i_sb->s_export_op;
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enum fid_type type;
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if (!exportfs_can_encode_fh(nop, flags))
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return -EOPNOTSUPP;
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if (!nop && (flags & EXPORT_FH_FID))
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type = exportfs_encode_ino64_fid(inode, fid, max_len);
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else
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type = nop->encode_fh(inode, fid->raw, max_len, parent);
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if (type > 0 && FILEID_USER_FLAGS(type)) {
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pr_warn_once("%s: unexpected fh type value 0x%x from fstype %s.\n",
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__func__, type, inode->i_sb->s_type->name);
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return -EINVAL;
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}
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return type;
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}
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EXPORT_SYMBOL_GPL(exportfs_encode_inode_fh);
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/**
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* exportfs_encode_fh - encode a file handle from dentry
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* @dentry: the object to encode
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* @fid: where to store the file handle fragment
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* @max_len: maximum length to store there
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* @flags: properties of the requested file handle
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*
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* Returns an enum fid_type or a negative errno.
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*/
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int exportfs_encode_fh(struct dentry *dentry, struct fid *fid, int *max_len,
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int flags)
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{
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int error;
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struct dentry *p = NULL;
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struct inode *inode = dentry->d_inode, *parent = NULL;
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if ((flags & EXPORT_FH_CONNECTABLE) && !S_ISDIR(inode->i_mode)) {
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p = dget_parent(dentry);
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/*
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* note that while p might've ceased to be our parent already,
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* it's still pinned by and still positive.
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*/
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parent = p->d_inode;
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}
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error = exportfs_encode_inode_fh(inode, fid, max_len, parent, flags);
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dput(p);
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return error;
|
|
}
|
|
EXPORT_SYMBOL_GPL(exportfs_encode_fh);
|
|
|
|
struct dentry *
|
|
exportfs_decode_fh_raw(struct vfsmount *mnt, struct fid *fid, int fh_len,
|
|
int fileid_type, unsigned int flags,
|
|
int (*acceptable)(void *, struct dentry *),
|
|
void *context)
|
|
{
|
|
const struct export_operations *nop = mnt->mnt_sb->s_export_op;
|
|
struct dentry *result, *alias;
|
|
char nbuf[NAME_MAX+1];
|
|
int err;
|
|
|
|
if (fileid_type < 0 || FILEID_USER_FLAGS(fileid_type))
|
|
return ERR_PTR(-EINVAL);
|
|
|
|
/*
|
|
* Try to get any dentry for the given file handle from the filesystem.
|
|
*/
|
|
if (!exportfs_can_decode_fh(nop))
|
|
return ERR_PTR(-ESTALE);
|
|
result = nop->fh_to_dentry(mnt->mnt_sb, fid, fh_len, fileid_type);
|
|
if (IS_ERR_OR_NULL(result))
|
|
return result;
|
|
|
|
if ((flags & EXPORT_FH_DIR_ONLY) && !d_is_dir(result)) {
|
|
err = -ENOTDIR;
|
|
goto err_result;
|
|
}
|
|
|
|
/*
|
|
* If no acceptance criteria was specified by caller, a disconnected
|
|
* dentry is also accepatable. Callers may use this mode to query if
|
|
* file handle is stale or to get a reference to an inode without
|
|
* risking the high overhead caused by directory reconnect.
|
|
*/
|
|
if (!acceptable)
|
|
return result;
|
|
|
|
if (d_is_dir(result)) {
|
|
/*
|
|
* This request is for a directory.
|
|
*
|
|
* On the positive side there is only one dentry for each
|
|
* directory inode. On the negative side this implies that we
|
|
* to ensure our dentry is connected all the way up to the
|
|
* filesystem root.
|
|
*/
|
|
if (result->d_flags & DCACHE_DISCONNECTED) {
|
|
err = reconnect_path(mnt, result, nbuf);
|
|
if (err)
|
|
goto err_result;
|
|
}
|
|
|
|
if (!acceptable(context, result)) {
|
|
err = -EACCES;
|
|
goto err_result;
|
|
}
|
|
|
|
return result;
|
|
} else {
|
|
/*
|
|
* It's not a directory. Life is a little more complicated.
|
|
*/
|
|
struct dentry *target_dir, *nresult;
|
|
|
|
/*
|
|
* See if either the dentry we just got from the filesystem
|
|
* or any alias for it is acceptable. This is always true
|
|
* if this filesystem is exported without the subtreecheck
|
|
* option. If the filesystem is exported with the subtree
|
|
* check option there's a fair chance we need to look at
|
|
* the parent directory in the file handle and make sure
|
|
* it's connected to the filesystem root.
|
|
*/
|
|
alias = find_acceptable_alias(result, acceptable, context);
|
|
if (alias)
|
|
return alias;
|
|
|
|
/*
|
|
* Try to extract a dentry for the parent directory from the
|
|
* file handle. If this fails we'll have to give up.
|
|
*/
|
|
err = -ESTALE;
|
|
if (!nop->fh_to_parent)
|
|
goto err_result;
|
|
|
|
target_dir = nop->fh_to_parent(mnt->mnt_sb, fid,
|
|
fh_len, fileid_type);
|
|
if (!target_dir)
|
|
goto err_result;
|
|
err = PTR_ERR(target_dir);
|
|
if (IS_ERR(target_dir))
|
|
goto err_result;
|
|
|
|
/*
|
|
* And as usual we need to make sure the parent directory is
|
|
* connected to the filesystem root. The VFS really doesn't
|
|
* like disconnected directories..
|
|
*/
|
|
err = reconnect_path(mnt, target_dir, nbuf);
|
|
if (err) {
|
|
dput(target_dir);
|
|
goto err_result;
|
|
}
|
|
|
|
/*
|
|
* Now that we've got both a well-connected parent and a
|
|
* dentry for the inode we're after, make sure that our
|
|
* inode is actually connected to the parent.
|
|
*/
|
|
err = exportfs_get_name(mnt, target_dir, nbuf, result);
|
|
if (err) {
|
|
dput(target_dir);
|
|
goto err_result;
|
|
}
|
|
|
|
inode_lock(target_dir->d_inode);
|
|
nresult = lookup_one(mnt_idmap(mnt), &QSTR(nbuf), target_dir);
|
|
if (!IS_ERR(nresult)) {
|
|
if (unlikely(nresult->d_inode != result->d_inode)) {
|
|
dput(nresult);
|
|
nresult = ERR_PTR(-ESTALE);
|
|
}
|
|
}
|
|
inode_unlock(target_dir->d_inode);
|
|
/*
|
|
* At this point we are done with the parent, but it's pinned
|
|
* by the child dentry anyway.
|
|
*/
|
|
dput(target_dir);
|
|
|
|
if (IS_ERR(nresult)) {
|
|
err = PTR_ERR(nresult);
|
|
goto err_result;
|
|
}
|
|
dput(result);
|
|
result = nresult;
|
|
|
|
/*
|
|
* And finally make sure the dentry is actually acceptable
|
|
* to NFSD.
|
|
*/
|
|
alias = find_acceptable_alias(result, acceptable, context);
|
|
if (!alias) {
|
|
err = -EACCES;
|
|
goto err_result;
|
|
}
|
|
|
|
return alias;
|
|
}
|
|
|
|
err_result:
|
|
dput(result);
|
|
return ERR_PTR(err);
|
|
}
|
|
EXPORT_SYMBOL_GPL(exportfs_decode_fh_raw);
|
|
|
|
struct dentry *exportfs_decode_fh(struct vfsmount *mnt, struct fid *fid,
|
|
int fh_len, int fileid_type,
|
|
int (*acceptable)(void *, struct dentry *),
|
|
void *context)
|
|
{
|
|
struct dentry *ret;
|
|
|
|
ret = exportfs_decode_fh_raw(mnt, fid, fh_len, fileid_type, 0,
|
|
acceptable, context);
|
|
if (IS_ERR_OR_NULL(ret)) {
|
|
if (ret == ERR_PTR(-ENOMEM))
|
|
return ret;
|
|
return ERR_PTR(-ESTALE);
|
|
}
|
|
return ret;
|
|
}
|
|
EXPORT_SYMBOL_GPL(exportfs_decode_fh);
|
|
|
|
MODULE_DESCRIPTION("Code mapping from inodes to file handles");
|
|
MODULE_LICENSE("GPL");
|