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|
// SPDX-License-Identifier: GPL-2.0
/*
* Test: FUSE ACL caching bug triggered by AT_STATX_FORCE_SYNC
*
* A FUSE mount that does not negotiate FUSE_POSIX_ACL initialises every inode
* with i_acl = i_default_acl = ACL_DONT_CACHE. When a fresh stat is needed
* (e.g. AT_STATX_FORCE_SYNC), fuse_update_get_attr() calls
* forget_all_cached_acls() before issuing FUSE_GETATTR. On an unfixed kernel,
* __forget_cached_acl() replaces ACL_DONT_CACHE with ACL_NOT_CACHED,
* inadvertently enabling the kernel ACL cache for that inode. The next
* getxattr populates the cache. Because fuse_set_acl() skips
* forget_all_cached_acls() for !fc->posix_acl mounts, any subsequent change to
* the ACL leaves the stale kernel entry in place, and the next getxattr returns
* wrong data without ever reaching the FUSE daemon.
*
* Fix (fs/posix_acl.c): __forget_cached_acl() returns early when *p is
* ACL_DONT_CACHE, preserving the "never cache" invariant for the inode's
* lifetime.
*
* Test outline:
* 1. Mount a minimal FUSE fs (no FUSE_POSIX_ACL negotiated).
* 2. lgetxattr -> daemon called, ACL_A returned, NOT cached (ACL_DONT_CACHE).
* 3. statx(AT_STATX_FORCE_SYNC) -> forget_all_cached_acls() called.
* Buggy: ACL_DONT_CACHE -> ACL_NOT_CACHED (cache enabled).
* Fixed: ACL_DONT_CACHE preserved.
* 4. lgetxattr -> daemon called, ACL_A returned.
* Buggy: result now cached (ACL_NOT_CACHED -> cached).
* Fixed: result still not cached.
* 5. Daemon switches to ACL_B internally (different size).
* 6. lgetxattr -> should return ACL_B (44 bytes).
* Buggy: cache hit, returns stale ACL_A (28 bytes). FAIL.
* Fixed: no cache, daemon called, returns ACL_B (44 bytes). PASS.
*/
#define _GNU_SOURCE
#include <errno.h>
#include <fcntl.h>
#include <linux/limits.h>
#include <pthread.h>
#include <stdint.h>
#include <stdio.h>
#include <stdlib.h>
#include <string.h>
#include <sys/stat.h>
#include <sys/xattr.h>
#include <unistd.h>
#define FUSE_USE_VERSION 31
#include <fuse_lowlevel.h>
#include "kselftest_harness.h"
/* ---- ACL binary encoding ------------------------------------------------ */
/*
* POSIX ACL v2 xattr format (little-endian):
* header: u32 version (= 0x00000002)
* entry: u16 tag | u16 perm | u32 id
*
* Entries must appear in tag-ascending order; named USER/GROUP entries
* require a MASK entry. Both ACLs pass posix_acl_from_xattr() validation.
*/
/* ACL_A: 3 entries (USER_OBJ:rwx, GROUP_OBJ:r-x, OTHER:r-x) = 28 bytes */
static const uint8_t acl_a[] = {
0x02, 0x00, 0x00, 0x00, /* v2 header */
0x01, 0x00, 0x07, 0x00, 0xff, 0xff, 0xff, 0xff, /* USER_OBJ rwx */
0x04, 0x00, 0x05, 0x00, 0xff, 0xff, 0xff, 0xff, /* GROUP_OBJ r-x */
0x20, 0x00, 0x05, 0x00, 0xff, 0xff, 0xff, 0xff, /* OTHER r-x */
};
/*
* ACL_B: 5 entries — adds USER uid=1 and MASK = 44 bytes.
* A named USER entry requires a MASK; all tags in ascending order.
*/
static const uint8_t acl_b[] = {
0x02, 0x00, 0x00, 0x00, /* v2 header */
0x01, 0x00, 0x07, 0x00, 0xff, 0xff, 0xff, 0xff, /* USER_OBJ rwx */
0x02, 0x00, 0x07, 0x00, 0x01, 0x00, 0x00, 0x00, /* USER uid=1 rwx */
0x04, 0x00, 0x05, 0x00, 0xff, 0xff, 0xff, 0xff, /* GROUP_OBJ r-x */
0x10, 0x00, 0x07, 0x00, 0xff, 0xff, 0xff, 0xff, /* MASK rwx */
0x20, 0x00, 0x05, 0x00, 0xff, 0xff, 0xff, 0xff, /* OTHER r-x */
};
/* ---- Shared state (daemon thread <-> test thread) ----------------------- */
#define FILE_INO 2
#define FILE_NAME "testfile"
struct daemon_state {
pthread_mutex_t lock;
const uint8_t *acl;
size_t acl_size;
int getxattr_count;
};
/*
* Global: callbacks are stateless fns so we use a single global.
* Safe because only one test instance runs at a time.
*/
static struct daemon_state g_ds = {
.lock = PTHREAD_MUTEX_INITIALIZER,
};
/* ---- FUSE lowlevel callbacks -------------------------------------------- */
static void fs_lookup(fuse_req_t req, fuse_ino_t parent, const char *name)
{
if (parent != FUSE_ROOT_ID || strcmp(name, FILE_NAME)) {
fuse_reply_err(req, ENOENT);
return;
}
struct fuse_entry_param e = {};
/*
* Long attr/entry timeouts so that normal stat() calls do not
* expire and trigger forget_all_cached_acls() on their own;
* only the explicit AT_STATX_FORCE_SYNC should trigger it.
*/
e.ino = FILE_INO;
e.generation = 1;
e.attr_timeout = 10.0;
e.entry_timeout = 10.0;
e.attr.st_ino = FILE_INO;
e.attr.st_mode = S_IFREG | 0644;
e.attr.st_nlink = 1;
fuse_reply_entry(req, &e);
}
static void fs_getattr(fuse_req_t req, fuse_ino_t ino,
struct fuse_file_info *fi)
{
struct stat st = {};
(void)fi;
if (ino == FUSE_ROOT_ID) {
st.st_ino = FUSE_ROOT_ID;
st.st_mode = S_IFDIR | 0755;
st.st_nlink = 2;
} else if (ino == FILE_INO) {
st.st_ino = FILE_INO;
st.st_mode = S_IFREG | 0644;
st.st_nlink = 1;
} else {
fuse_reply_err(req, ENOENT);
return;
}
fuse_reply_attr(req, &st, 10);
}
static void fs_getxattr(fuse_req_t req, fuse_ino_t ino, const char *name,
size_t size)
{
if (ino != FILE_INO ||
strcmp(name, "system.posix_acl_access") != 0) {
fuse_reply_err(req, ENODATA);
return;
}
pthread_mutex_lock(&g_ds.lock);
const uint8_t *acl = g_ds.acl;
size_t acl_size = g_ds.acl_size;
g_ds.getxattr_count++;
pthread_mutex_unlock(&g_ds.lock);
if (size == 0)
fuse_reply_xattr(req, acl_size);
else if (size < acl_size)
fuse_reply_err(req, ERANGE);
else
fuse_reply_buf(req, (const char *)acl, acl_size);
}
static const struct fuse_lowlevel_ops fs_ops = {
.lookup = fs_lookup,
.getattr = fs_getattr,
.getxattr = fs_getxattr,
};
/* ---- Daemon thread ------------------------------------------------------- */
static void *run_daemon(void *arg)
{
fuse_session_loop((struct fuse_session *)arg);
return NULL;
}
/* ---- kselftest harness --------------------------------------------------- */
FIXTURE(acl_cache) {
struct fuse_session *se;
char mountpoint[PATH_MAX];
char file_path[PATH_MAX];
pthread_t thread;
};
FIXTURE_SETUP(acl_cache)
{
char *fuse_argv[] = { "fuse_acl_cache_test", NULL };
struct fuse_args args = FUSE_ARGS_INIT(1, fuse_argv);
g_ds.acl = acl_a;
g_ds.acl_size = sizeof(acl_a);
g_ds.getxattr_count = 0;
strcpy(self->mountpoint, "/tmp/acl_cache_test_XXXXXX");
if (!mkdtemp(self->mountpoint))
SKIP(return, "mkdtemp: %s", strerror(errno));
snprintf(self->file_path, sizeof(self->file_path),
"%s/" FILE_NAME, self->mountpoint);
self->se = fuse_session_new(&args, &fs_ops, sizeof(fs_ops), NULL);
if (!self->se) {
rmdir(self->mountpoint);
SKIP(return, "fuse_session_new failed");
}
if (fuse_session_mount(self->se, self->mountpoint)) {
fuse_session_destroy(self->se);
rmdir(self->mountpoint);
SKIP(return, "fuse_session_mount failed "
"(missing fusermount3 or insufficient privileges)");
}
if (pthread_create(&self->thread, NULL, run_daemon, self->se)) {
fuse_session_unmount(self->se);
fuse_session_destroy(self->se);
rmdir(self->mountpoint);
SKIP(return, "pthread_create: %s", strerror(errno));
}
fuse_opt_free_args(&args);
}
FIXTURE_TEARDOWN(acl_cache)
{
fuse_session_exit(self->se);
fuse_session_unmount(self->se);
pthread_join(self->thread, NULL);
fuse_session_destroy(self->se);
rmdir(self->mountpoint);
}
static int do_force_statx(const char *path)
{
struct statx stx;
return statx(AT_FDCWD, path, AT_STATX_FORCE_SYNC, STATX_BASIC_STATS,
&stx);
}
TEST_F(acl_cache, stale_after_force_sync)
{
char buf[512];
ssize_t sz;
int count;
/*
* Step 1: two getxattr calls before any statx(FORCE_SYNC).
* i_acl == ACL_DONT_CACHE. __get_acl's cmpxchg(p, ACL_NOT_CACHED,
* sentinel) finds *p != ACL_NOT_CACHED on every call, so the sentinel
* is never placed and the result is never cached. Both calls must
* reach the daemon, proving ACL_DONT_CACHE suppresses caching.
*/
sz = lgetxattr(self->file_path, "system.posix_acl_access",
buf, sizeof(buf));
ASSERT_EQ(sz, (ssize_t)sizeof(acl_a));
sz = lgetxattr(self->file_path, "system.posix_acl_access",
buf, sizeof(buf));
ASSERT_EQ(sz, (ssize_t)sizeof(acl_a));
pthread_mutex_lock(&g_ds.lock);
count = g_ds.getxattr_count;
pthread_mutex_unlock(&g_ds.lock);
ASSERT_EQ(count, 2);
TH_LOG("step 1 OK: both pre-trigger getxattrs reached daemon (count=%d), "
"ACL_DONT_CACHE is working", count);
/*
* Step 2: statx(AT_STATX_FORCE_SYNC).
* fuse_update_get_attr() calls forget_all_cached_acls() before sending
* FUSE_GETATTR.
* Buggy kernel: ACL_DONT_CACHE -> ACL_NOT_CACHED (cache enabled)
* Fixed kernel: ACL_DONT_CACHE preserved (no effect)
*/
ASSERT_EQ(do_force_statx(self->file_path), 0);
TH_LOG("step 2 OK: statx(AT_STATX_FORCE_SYNC) succeeded");
/*
* Step 3: getxattr — cache population attempt after the trigger.
* Buggy: *p == ACL_NOT_CACHED -> sentinel placed -> fuse_get_inode_acl
* called -> ACL_A parsed and stored in the kernel cache.
* Fixed: *p == ACL_DONT_CACHE -> sentinel placement skipped ->
* fuse_get_inode_acl called but result not cached.
* Either way the correct ACL_A is returned here.
*/
sz = lgetxattr(self->file_path, "system.posix_acl_access",
buf, sizeof(buf));
ASSERT_EQ(sz, (ssize_t)sizeof(acl_a));
pthread_mutex_lock(&g_ds.lock);
count = g_ds.getxattr_count;
pthread_mutex_unlock(&g_ds.lock);
ASSERT_EQ(count, 3);
TH_LOG("step 3 OK: post-trigger getxattr reached daemon (count=%d), "
"returned correct ACL_A (%zd bytes)", count, sz);
/*
* Step 4: switch daemon to ACL_B (different size: 44 vs 28 bytes).
* Simulates an ACL change that fuse_set_acl() would NOT invalidate for
* !fc->posix_acl mounts (it skips forget_all_cached_acls in that case).
* On a fixed kernel the ACL was never cached, so this is moot.
*/
pthread_mutex_lock(&g_ds.lock);
g_ds.acl = acl_b;
g_ds.acl_size = sizeof(acl_b);
pthread_mutex_unlock(&g_ds.lock);
TH_LOG("step 4: daemon switched to ACL_B (%zu bytes)", sizeof(acl_b));
/*
* Step 5: getxattr — the decisive check.
* Buggy kernel: cache hit -> stale ACL_A (28 bytes), count stays 3.
* Fixed kernel: no cache -> daemon called -> ACL_B (44 bytes), count 4.
*/
sz = lgetxattr(self->file_path, "system.posix_acl_access",
buf, sizeof(buf));
pthread_mutex_lock(&g_ds.lock);
count = g_ds.getxattr_count;
pthread_mutex_unlock(&g_ds.lock);
if (sz == (ssize_t)sizeof(acl_a))
TH_LOG("step 5 BUG: stale ACL_A (%zd bytes) from kernel cache "
"(count=%d); ACL_DONT_CACHE corrupted by "
"forget_all_cached_acls()", sz, count);
else
TH_LOG("step 5 OK: daemon reached (count=%d), "
"fresh ACL_B (%zd bytes)", count, sz);
EXPECT_EQ(sz, (ssize_t)sizeof(acl_b));
EXPECT_EQ(count, 4);
}
TEST_HARNESS_MAIN
|