]> git.pld-linux.org Git - packages/kernel.git/blob - kernel-aufs4.patch
- update aufs patch
[packages/kernel.git] / kernel-aufs4.patch
1 aufs4.9 kbuild patch
2
3 diff --git a/fs/Kconfig b/fs/Kconfig
4 index 4bd03a2..620e01b 100644
5 --- a/fs/Kconfig
6 +++ b/fs/Kconfig
7 @@ -249,6 +249,7 @@ source "fs/pstore/Kconfig"
8  source "fs/sysv/Kconfig"
9  source "fs/ufs/Kconfig"
10  source "fs/exofs/Kconfig"
11 +source "fs/aufs/Kconfig"
12  
13  endif # MISC_FILESYSTEMS
14  
15 diff --git a/fs/Makefile b/fs/Makefile
16 index ed2b632..aa6d14b 100644
17 --- a/fs/Makefile
18 +++ b/fs/Makefile
19 @@ -129,3 +129,4 @@ obj-y                               += exofs/ # Multiple modules
20  obj-$(CONFIG_CEPH_FS)          += ceph/
21  obj-$(CONFIG_PSTORE)           += pstore/
22  obj-$(CONFIG_EFIVAR_FS)                += efivarfs/
23 +obj-$(CONFIG_AUFS_FS)           += aufs/
24 diff --git a/include/uapi/linux/Kbuild b/include/uapi/linux/Kbuild
25 index cd2be1c..78f3c68 100644
26 --- a/include/uapi/linux/Kbuild
27 +++ b/include/uapi/linux/Kbuild
28 @@ -59,6 +59,7 @@ header-y += atmsvc.h
29  header-y += atm_tcp.h
30  header-y += atm_zatm.h
31  header-y += audit.h
32 +header-y += aufs_type.h
33  header-y += auto_fs4.h
34  header-y += auto_fs.h
35  header-y += auxvec.h
36 aufs4.9 base patch
37
38 diff --git a/MAINTAINERS b/MAINTAINERS
39 index 63cefa6..d78b954 100644
40 --- a/MAINTAINERS
41 +++ b/MAINTAINERS
42 @@ -2293,6 +2293,19 @@ F:       include/linux/audit.h
43  F:     include/uapi/linux/audit.h
44  F:     kernel/audit*
45  
46 +AUFS (advanced multi layered unification filesystem) FILESYSTEM
47 +M:     "J. R. Okajima" <hooanon05g@gmail.com>
48 +L:     linux-unionfs@vger.kernel.org
49 +L:     aufs-users@lists.sourceforge.net (members only)
50 +W:     http://aufs.sourceforge.net
51 +T:     git://github.com/sfjro/aufs4-linux.git
52 +S:     Supported
53 +F:     Documentation/filesystems/aufs/
54 +F:     Documentation/ABI/testing/debugfs-aufs
55 +F:     Documentation/ABI/testing/sysfs-aufs
56 +F:     fs/aufs/
57 +F:     include/uapi/linux/aufs_type.h
58 +
59  AUXILIARY DISPLAY DRIVERS
60  M:     Miguel Ojeda Sandonis <miguel.ojeda.sandonis@gmail.com>
61  W:     http://miguelojeda.es/auxdisplay.htm
62 diff --git a/drivers/block/loop.c b/drivers/block/loop.c
63 index fa1b7a9..6ee9235 100644
64 --- a/drivers/block/loop.c
65 +++ b/drivers/block/loop.c
66 @@ -701,6 +701,24 @@ static inline int is_loop_device(struct file *file)
67         return i && S_ISBLK(i->i_mode) && MAJOR(i->i_rdev) == LOOP_MAJOR;
68  }
69  
70 +/*
71 + * for AUFS
72 + * no get/put for file.
73 + */
74 +struct file *loop_backing_file(struct super_block *sb)
75 +{
76 +       struct file *ret;
77 +       struct loop_device *l;
78 +
79 +       ret = NULL;
80 +       if (MAJOR(sb->s_dev) == LOOP_MAJOR) {
81 +               l = sb->s_bdev->bd_disk->private_data;
82 +               ret = l->lo_backing_file;
83 +       }
84 +       return ret;
85 +}
86 +EXPORT_SYMBOL_GPL(loop_backing_file);
87 +
88  /* loop sysfs attributes */
89  
90  static ssize_t loop_attr_show(struct device *dev, char *page,
91 diff --git a/fs/dcache.c b/fs/dcache.c
92 index 5c7cc95..df0268c 100644
93 --- a/fs/dcache.c
94 +++ b/fs/dcache.c
95 @@ -1164,7 +1164,7 @@ enum d_walk_ret {
96   *
97   * The @enter() and @finish() callbacks are called with d_lock held.
98   */
99 -static void d_walk(struct dentry *parent, void *data,
100 +void d_walk(struct dentry *parent, void *data,
101                    enum d_walk_ret (*enter)(void *, struct dentry *),
102                    void (*finish)(void *))
103  {
104 diff --git a/fs/fcntl.c b/fs/fcntl.c
105 index 350a2c8..6f42279 100644
106 --- a/fs/fcntl.c
107 +++ b/fs/fcntl.c
108 @@ -29,7 +29,7 @@
109  
110  #define SETFL_MASK (O_APPEND | O_NONBLOCK | O_NDELAY | O_DIRECT | O_NOATIME)
111  
112 -static int setfl(int fd, struct file * filp, unsigned long arg)
113 +int setfl(int fd, struct file * filp, unsigned long arg)
114  {
115         struct inode * inode = file_inode(filp);
116         int error = 0;
117 @@ -60,6 +60,8 @@ static int setfl(int fd, struct file * filp, unsigned long arg)
118  
119         if (filp->f_op->check_flags)
120                 error = filp->f_op->check_flags(arg);
121 +       if (!error && filp->f_op->setfl)
122 +               error = filp->f_op->setfl(filp, arg);
123         if (error)
124                 return error;
125  
126 diff --git a/fs/inode.c b/fs/inode.c
127 index 88110fd..9a9ba3a 100644
128 --- a/fs/inode.c
129 +++ b/fs/inode.c
130 @@ -1642,7 +1642,7 @@ int generic_update_time(struct inode *inode, struct timespec *time, int flags)
131   * This does the actual work of updating an inodes time or version.  Must have
132   * had called mnt_want_write() before calling this.
133   */
134 -static int update_time(struct inode *inode, struct timespec *time, int flags)
135 +int update_time(struct inode *inode, struct timespec *time, int flags)
136  {
137         int (*update_time)(struct inode *, struct timespec *, int);
138  
139 diff --git a/fs/read_write.c b/fs/read_write.c
140 index 190e0d36..4052813 100644
141 --- a/fs/read_write.c
142 +++ b/fs/read_write.c
143 @@ -515,6 +515,28 @@ ssize_t __vfs_write(struct file *file, const char __user *p, size_t count,
144  }
145  EXPORT_SYMBOL(__vfs_write);
146  
147 +vfs_readf_t vfs_readf(struct file *file)
148 +{
149 +       const struct file_operations *fop = file->f_op;
150 +
151 +       if (fop->read)
152 +               return fop->read;
153 +       if (fop->read_iter)
154 +               return new_sync_read;
155 +       return ERR_PTR(-ENOSYS);
156 +}
157 +
158 +vfs_writef_t vfs_writef(struct file *file)
159 +{
160 +       const struct file_operations *fop = file->f_op;
161 +
162 +       if (fop->write)
163 +               return fop->write;
164 +       if (fop->write_iter)
165 +               return new_sync_write;
166 +       return ERR_PTR(-ENOSYS);
167 +}
168 +
169  ssize_t __kernel_write(struct file *file, const char *buf, size_t count, loff_t *pos)
170  {
171         mm_segment_t old_fs;
172 diff --git a/fs/splice.c b/fs/splice.c
173 index 5a7750b..28160a7 100644
174 --- a/fs/splice.c
175 +++ b/fs/splice.c
176 @@ -855,8 +855,8 @@ ssize_t generic_splice_sendpage(struct pipe_inode_info *pipe, struct file *out,
177  /*
178   * Attempt to initiate a splice from pipe to file.
179   */
180 -static long do_splice_from(struct pipe_inode_info *pipe, struct file *out,
181 -                          loff_t *ppos, size_t len, unsigned int flags)
182 +long do_splice_from(struct pipe_inode_info *pipe, struct file *out,
183 +                   loff_t *ppos, size_t len, unsigned int flags)
184  {
185         ssize_t (*splice_write)(struct pipe_inode_info *, struct file *,
186                                 loff_t *, size_t, unsigned int);
187 @@ -872,9 +872,9 @@ static long do_splice_from(struct pipe_inode_info *pipe, struct file *out,
188  /*
189   * Attempt to initiate a splice from a file to a pipe.
190   */
191 -static long do_splice_to(struct file *in, loff_t *ppos,
192 -                        struct pipe_inode_info *pipe, size_t len,
193 -                        unsigned int flags)
194 +long do_splice_to(struct file *in, loff_t *ppos,
195 +                 struct pipe_inode_info *pipe, size_t len,
196 +                 unsigned int flags)
197  {
198         ssize_t (*splice_read)(struct file *, loff_t *,
199                                struct pipe_inode_info *, size_t, unsigned int);
200 diff --git a/include/linux/file.h b/include/linux/file.h
201 index 7444f5f..bdac0be 100644
202 --- a/include/linux/file.h
203 +++ b/include/linux/file.h
204 @@ -19,6 +19,7 @@
205  struct path;
206  extern struct file *alloc_file(struct path *, fmode_t mode,
207         const struct file_operations *fop);
208 +extern struct file *get_empty_filp(void);
209  
210  static inline void fput_light(struct file *file, int fput_needed)
211  {
212 diff --git a/include/linux/fs.h b/include/linux/fs.h
213 index dc0478c..27c05e7 100644
214 --- a/include/linux/fs.h
215 +++ b/include/linux/fs.h
216 @@ -1291,6 +1291,7 @@ struct fasync_struct {
217  /* can be called from interrupts */
218  extern void kill_fasync(struct fasync_struct **, int, int);
219  
220 +extern int setfl(int fd, struct file * filp, unsigned long arg);
221  extern void __f_setown(struct file *filp, struct pid *, enum pid_type, int force);
222  extern void f_setown(struct file *filp, unsigned long arg, int force);
223  extern void f_delown(struct file *filp);
224 @@ -1715,6 +1716,7 @@ struct file_operations {
225         ssize_t (*sendpage) (struct file *, struct page *, int, size_t, loff_t *, int);
226         unsigned long (*get_unmapped_area)(struct file *, unsigned long, unsigned long, unsigned long, unsigned long);
227         int (*check_flags)(int);
228 +       int (*setfl)(struct file *, unsigned long);
229         int (*flock) (struct file *, int, struct file_lock *);
230         ssize_t (*splice_write)(struct pipe_inode_info *, struct file *, loff_t *, size_t, unsigned int);
231         ssize_t (*splice_read)(struct file *, loff_t *, struct pipe_inode_info *, size_t, unsigned int);
232 @@ -1768,6 +1770,12 @@ ssize_t rw_copy_check_uvector(int type, const struct iovec __user * uvector,
233                               struct iovec *fast_pointer,
234                               struct iovec **ret_pointer);
235  
236 +typedef ssize_t (*vfs_readf_t)(struct file *, char __user *, size_t, loff_t *);
237 +typedef ssize_t (*vfs_writef_t)(struct file *, const char __user *, size_t,
238 +                               loff_t *);
239 +vfs_readf_t vfs_readf(struct file *file);
240 +vfs_writef_t vfs_writef(struct file *file);
241 +
242  extern ssize_t __vfs_read(struct file *, char __user *, size_t, loff_t *);
243  extern ssize_t __vfs_write(struct file *, const char __user *, size_t, loff_t *);
244  extern ssize_t vfs_read(struct file *, char __user *, size_t, loff_t *);
245 @@ -2140,6 +2148,7 @@ extern int iterate_mounts(int (*)(struct vfsmount *, void *), void *,
246  extern void ihold(struct inode * inode);
247  extern void iput(struct inode *);
248  extern int generic_update_time(struct inode *, struct timespec *, int);
249 +extern int update_time(struct inode *, struct timespec *, int);
250  
251  /* /sys/fs */
252  extern struct kobject *fs_kobj;
253 diff --git a/include/linux/splice.h b/include/linux/splice.h
254 index 00a2116..1f0a4a2 100644
255 --- a/include/linux/splice.h
256 +++ b/include/linux/splice.h
257 @@ -86,4 +86,10 @@ extern ssize_t splice_direct_to_actor(struct file *, struct splice_desc *,
258  
259  extern const struct pipe_buf_operations page_cache_pipe_buf_ops;
260  extern const struct pipe_buf_operations default_pipe_buf_ops;
261 +
262 +extern long do_splice_from(struct pipe_inode_info *pipe, struct file *out,
263 +                          loff_t *ppos, size_t len, unsigned int flags);
264 +extern long do_splice_to(struct file *in, loff_t *ppos,
265 +                        struct pipe_inode_info *pipe, size_t len,
266 +                        unsigned int flags);
267  #endif
268 aufs4.9 mmap patch
269
270 diff --git a/fs/proc/base.c b/fs/proc/base.c
271 index ca651ac..0e8551a 100644
272 --- a/fs/proc/base.c
273 +++ b/fs/proc/base.c
274 @@ -1953,7 +1953,7 @@ static int map_files_get_link(struct dentry *dentry, struct path *path)
275         down_read(&mm->mmap_sem);
276         vma = find_exact_vma(mm, vm_start, vm_end);
277         if (vma && vma->vm_file) {
278 -               *path = vma->vm_file->f_path;
279 +               *path = vma_pr_or_file(vma)->f_path;
280                 path_get(path);
281                 rc = 0;
282         }
283 diff --git a/fs/proc/nommu.c b/fs/proc/nommu.c
284 index f8595e8..cb8eda0 100644
285 --- a/fs/proc/nommu.c
286 +++ b/fs/proc/nommu.c
287 @@ -45,7 +45,10 @@ static int nommu_region_show(struct seq_file *m, struct vm_region *region)
288         file = region->vm_file;
289  
290         if (file) {
291 -               struct inode *inode = file_inode(region->vm_file);
292 +               struct inode *inode;
293 +
294 +               file = vmr_pr_or_file(region);
295 +               inode = file_inode(file);
296                 dev = inode->i_sb->s_dev;
297                 ino = inode->i_ino;
298         }
299 diff --git a/fs/proc/task_mmu.c b/fs/proc/task_mmu.c
300 index 35b92d8..5b981db 100644
301 --- a/fs/proc/task_mmu.c
302 +++ b/fs/proc/task_mmu.c
303 @@ -291,7 +291,10 @@ static int is_stack(struct proc_maps_private *priv,
304         const char *name = NULL;
305  
306         if (file) {
307 -               struct inode *inode = file_inode(vma->vm_file);
308 +               struct inode *inode;
309 +
310 +               file = vma_pr_or_file(vma);
311 +               inode = file_inode(file);
312                 dev = inode->i_sb->s_dev;
313                 ino = inode->i_ino;
314                 pgoff = ((loff_t)vma->vm_pgoff) << PAGE_SHIFT;
315 @@ -1627,7 +1630,7 @@ static int show_numa_map(struct seq_file *m, void *v, int is_pid)
316         struct proc_maps_private *proc_priv = &numa_priv->proc_maps;
317         struct vm_area_struct *vma = v;
318         struct numa_maps *md = &numa_priv->md;
319 -       struct file *file = vma->vm_file;
320 +       struct file *file = vma_pr_or_file(vma);
321         struct mm_struct *mm = vma->vm_mm;
322         struct mm_walk walk = {
323                 .hugetlb_entry = gather_hugetlb_stats,
324 diff --git a/fs/proc/task_nommu.c b/fs/proc/task_nommu.c
325 index 3717562..6a328f1 100644
326 --- a/fs/proc/task_nommu.c
327 +++ b/fs/proc/task_nommu.c
328 @@ -155,7 +155,10 @@ static int nommu_vma_show(struct seq_file *m, struct vm_area_struct *vma,
329         file = vma->vm_file;
330  
331         if (file) {
332 -               struct inode *inode = file_inode(vma->vm_file);
333 +               struct inode *inode;
334 +
335 +               file = vma_pr_or_file(vma);
336 +               inode = file_inode(file);
337                 dev = inode->i_sb->s_dev;
338                 ino = inode->i_ino;
339                 pgoff = (loff_t)vma->vm_pgoff << PAGE_SHIFT;
340 diff --git a/include/linux/mm.h b/include/linux/mm.h
341 index a92c8d7..1d83a2a 100644
342 --- a/include/linux/mm.h
343 +++ b/include/linux/mm.h
344 @@ -1266,6 +1266,28 @@ static inline int fixup_user_fault(struct task_struct *tsk,
345  }
346  #endif
347  
348 +extern void vma_do_file_update_time(struct vm_area_struct *, const char[], int);
349 +extern struct file *vma_do_pr_or_file(struct vm_area_struct *, const char[],
350 +                                     int);
351 +extern void vma_do_get_file(struct vm_area_struct *, const char[], int);
352 +extern void vma_do_fput(struct vm_area_struct *, const char[], int);
353 +
354 +#define vma_file_update_time(vma)      vma_do_file_update_time(vma, __func__, \
355 +                                                               __LINE__)
356 +#define vma_pr_or_file(vma)            vma_do_pr_or_file(vma, __func__, \
357 +                                                         __LINE__)
358 +#define vma_get_file(vma)              vma_do_get_file(vma, __func__, __LINE__)
359 +#define vma_fput(vma)                  vma_do_fput(vma, __func__, __LINE__)
360 +
361 +#ifndef CONFIG_MMU
362 +extern struct file *vmr_do_pr_or_file(struct vm_region *, const char[], int);
363 +extern void vmr_do_fput(struct vm_region *, const char[], int);
364 +
365 +#define vmr_pr_or_file(region)         vmr_do_pr_or_file(region, __func__, \
366 +                                                         __LINE__)
367 +#define vmr_fput(region)               vmr_do_fput(region, __func__, __LINE__)
368 +#endif /* !CONFIG_MMU */
369 +
370  extern int access_process_vm(struct task_struct *tsk, unsigned long addr, void *buf, int len,
371                 unsigned int gup_flags);
372  extern int access_remote_vm(struct mm_struct *mm, unsigned long addr,
373 diff --git a/include/linux/mm_types.h b/include/linux/mm_types.h
374 index 4a8aced..badd16b 100644
375 --- a/include/linux/mm_types.h
376 +++ b/include/linux/mm_types.h
377 @@ -275,6 +275,7 @@ struct vm_region {
378         unsigned long   vm_top;         /* region allocated to here */
379         unsigned long   vm_pgoff;       /* the offset in vm_file corresponding to vm_start */
380         struct file     *vm_file;       /* the backing file or NULL */
381 +       struct file     *vm_prfile;     /* the virtual backing file or NULL */
382  
383         int             vm_usage;       /* region usage count (access under nommu_region_sem) */
384         bool            vm_icache_flushed : 1; /* true if the icache has been flushed for
385 @@ -349,6 +350,7 @@ struct vm_area_struct {
386         unsigned long vm_pgoff;         /* Offset (within vm_file) in PAGE_SIZE
387                                            units */
388         struct file * vm_file;          /* File we map to (can be NULL). */
389 +       struct file *vm_prfile;         /* shadow of vm_file */
390         void * vm_private_data;         /* was vm_pte (shared mem) */
391  
392  #ifndef CONFIG_MMU
393 diff --git a/kernel/fork.c b/kernel/fork.c
394 index 997ac1d..4d0131b 100644
395 --- a/kernel/fork.c
396 +++ b/kernel/fork.c
397 @@ -624,7 +624,7 @@ static __latent_entropy int dup_mmap(struct mm_struct *mm,
398                         struct inode *inode = file_inode(file);
399                         struct address_space *mapping = file->f_mapping;
400  
401 -                       get_file(file);
402 +                       vma_get_file(tmp);
403                         if (tmp->vm_flags & VM_DENYWRITE)
404                                 atomic_dec(&inode->i_writecount);
405                         i_mmap_lock_write(mapping);
406 diff --git a/mm/Makefile b/mm/Makefile
407 index 295bd7a..14fa1c8 100644
408 --- a/mm/Makefile
409 +++ b/mm/Makefile
410 @@ -37,7 +37,7 @@ obj-y                 := filemap.o mempool.o oom_kill.o \
411                            mm_init.o mmu_context.o percpu.o slab_common.o \
412                            compaction.o vmacache.o \
413                            interval_tree.o list_lru.o workingset.o \
414 -                          debug.o $(mmu-y)
415 +                          prfile.o debug.o $(mmu-y)
416  
417  obj-y += init-mm.o
418  
419 diff --git a/mm/filemap.c b/mm/filemap.c
420 index 50b52fe..9e607f9 100644
421 --- a/mm/filemap.c
422 +++ b/mm/filemap.c
423 @@ -2304,7 +2304,7 @@ int filemap_page_mkwrite(struct vm_area_struct *vma, struct vm_fault *vmf)
424         int ret = VM_FAULT_LOCKED;
425  
426         sb_start_pagefault(inode->i_sb);
427 -       file_update_time(vma->vm_file);
428 +       vma_file_update_time(vma);
429         lock_page(page);
430         if (page->mapping != inode->i_mapping) {
431                 unlock_page(page);
432 diff --git a/mm/memory.c b/mm/memory.c
433 index e18c57b..7be4a39 100644
434 --- a/mm/memory.c
435 +++ b/mm/memory.c
436 @@ -2117,7 +2117,7 @@ static inline int wp_page_reuse(struct fault_env *fe, pte_t orig_pte,
437                 }
438  
439                 if (!page_mkwrite)
440 -                       file_update_time(vma->vm_file);
441 +                       vma_file_update_time(vma);
442         }
443  
444         return VM_FAULT_WRITE;
445 diff --git a/mm/mmap.c b/mm/mmap.c
446 index 1af87c1..95b0ff4 100644
447 --- a/mm/mmap.c
448 +++ b/mm/mmap.c
449 @@ -170,7 +170,7 @@ static struct vm_area_struct *remove_vma(struct vm_area_struct *vma)
450         if (vma->vm_ops && vma->vm_ops->close)
451                 vma->vm_ops->close(vma);
452         if (vma->vm_file)
453 -               fput(vma->vm_file);
454 +               vma_fput(vma);
455         mpol_put(vma_policy(vma));
456         kmem_cache_free(vm_area_cachep, vma);
457         return next;
458 @@ -879,7 +879,7 @@ int __vma_adjust(struct vm_area_struct *vma, unsigned long start,
459         if (remove_next) {
460                 if (file) {
461                         uprobe_munmap(next, next->vm_start, next->vm_end);
462 -                       fput(file);
463 +                       vma_fput(vma);
464                 }
465                 if (next->anon_vma)
466                         anon_vma_merge(vma, next);
467 @@ -1727,8 +1727,8 @@ unsigned long mmap_region(struct file *file, unsigned long addr,
468         return addr;
469  
470  unmap_and_free_vma:
471 +       vma_fput(vma);
472         vma->vm_file = NULL;
473 -       fput(file);
474  
475         /* Undo any partial mapping done by a device driver. */
476         unmap_region(mm, vma, prev, vma->vm_start, vma->vm_end);
477 @@ -2533,7 +2533,7 @@ static int __split_vma(struct mm_struct *mm, struct vm_area_struct *vma,
478                 goto out_free_mpol;
479  
480         if (new->vm_file)
481 -               get_file(new->vm_file);
482 +               vma_get_file(new);
483  
484         if (new->vm_ops && new->vm_ops->open)
485                 new->vm_ops->open(new);
486 @@ -2552,7 +2552,7 @@ static int __split_vma(struct mm_struct *mm, struct vm_area_struct *vma,
487         if (new->vm_ops && new->vm_ops->close)
488                 new->vm_ops->close(new);
489         if (new->vm_file)
490 -               fput(new->vm_file);
491 +               vma_fput(new);
492         unlink_anon_vmas(new);
493   out_free_mpol:
494         mpol_put(vma_policy(new));
495 @@ -2703,7 +2703,7 @@ int vm_munmap(unsigned long start, size_t len)
496         struct vm_area_struct *vma;
497         unsigned long populate = 0;
498         unsigned long ret = -EINVAL;
499 -       struct file *file;
500 +       struct file *file, *prfile;
501  
502         pr_warn_once("%s (%d) uses deprecated remap_file_pages() syscall. See Documentation/vm/remap_file_pages.txt.\n",
503                      current->comm, current->pid);
504 @@ -2778,10 +2778,27 @@ int vm_munmap(unsigned long start, size_t len)
505                 }
506         }
507  
508 -       file = get_file(vma->vm_file);
509 +       vma_get_file(vma);
510 +       file = vma->vm_file;
511 +       prfile = vma->vm_prfile;
512         ret = do_mmap_pgoff(vma->vm_file, start, size,
513                         prot, flags, pgoff, &populate);
514 +       if (!IS_ERR_VALUE(ret) && file && prfile) {
515 +               struct vm_area_struct *new_vma;
516 +
517 +               new_vma = find_vma(mm, ret);
518 +               if (!new_vma->vm_prfile)
519 +                       new_vma->vm_prfile = prfile;
520 +               if (new_vma != vma)
521 +                       get_file(prfile);
522 +       }
523 +       /*
524 +        * two fput()s instead of vma_fput(vma),
525 +        * coz vma may not be available anymore.
526 +        */
527         fput(file);
528 +       if (prfile)
529 +               fput(prfile);
530  out:
531         up_write(&mm->mmap_sem);
532         if (populate)
533 @@ -3056,7 +3073,7 @@ struct vm_area_struct *copy_vma(struct vm_area_struct **vmap,
534                 if (anon_vma_clone(new_vma, vma))
535                         goto out_free_mempol;
536                 if (new_vma->vm_file)
537 -                       get_file(new_vma->vm_file);
538 +                       vma_get_file(new_vma);
539                 if (new_vma->vm_ops && new_vma->vm_ops->open)
540                         new_vma->vm_ops->open(new_vma);
541                 vma_link(mm, new_vma, prev, rb_link, rb_parent);
542 diff --git a/mm/nommu.c b/mm/nommu.c
543 index 8b8faaf..5d26ed94 100644
544 --- a/mm/nommu.c
545 +++ b/mm/nommu.c
546 @@ -636,7 +636,7 @@ static void __put_nommu_region(struct vm_region *region)
547                 up_write(&nommu_region_sem);
548  
549                 if (region->vm_file)
550 -                       fput(region->vm_file);
551 +                       vmr_fput(region);
552  
553                 /* IO memory and memory shared directly out of the pagecache
554                  * from ramfs/tmpfs mustn't be released here */
555 @@ -794,7 +794,7 @@ static void delete_vma(struct mm_struct *mm, struct vm_area_struct *vma)
556         if (vma->vm_ops && vma->vm_ops->close)
557                 vma->vm_ops->close(vma);
558         if (vma->vm_file)
559 -               fput(vma->vm_file);
560 +               vma_fput(vma);
561         put_nommu_region(vma->vm_region);
562         kmem_cache_free(vm_area_cachep, vma);
563  }
564 @@ -1320,7 +1320,7 @@ unsigned long do_mmap(struct file *file,
565                                         goto error_just_free;
566                                 }
567                         }
568 -                       fput(region->vm_file);
569 +                       vmr_fput(region);
570                         kmem_cache_free(vm_region_jar, region);
571                         region = pregion;
572                         result = start;
573 @@ -1395,10 +1395,10 @@ unsigned long do_mmap(struct file *file,
574         up_write(&nommu_region_sem);
575  error:
576         if (region->vm_file)
577 -               fput(region->vm_file);
578 +               vmr_fput(region);
579         kmem_cache_free(vm_region_jar, region);
580         if (vma->vm_file)
581 -               fput(vma->vm_file);
582 +               vma_fput(vma);
583         kmem_cache_free(vm_area_cachep, vma);
584         return ret;
585  
586 diff --git a/mm/prfile.c b/mm/prfile.c
587 new file mode 100644
588 index 0000000..b323b8a
589 --- /dev/null
590 +++ b/mm/prfile.c
591 @@ -0,0 +1,86 @@
592 +/*
593 + * Mainly for aufs which mmap(2) diffrent file and wants to print different path
594 + * in /proc/PID/maps.
595 + * Call these functions via macros defined in linux/mm.h.
596 + *
597 + * See Documentation/filesystems/aufs/design/06mmap.txt
598 + *
599 + * Copyright (c) 2014 Junjro R. Okajima
600 + * Copyright (c) 2014 Ian Campbell
601 + */
602 +
603 +#include <linux/mm.h>
604 +#include <linux/file.h>
605 +#include <linux/fs.h>
606 +
607 +/* #define PRFILE_TRACE */
608 +static inline void prfile_trace(struct file *f, struct file *pr,
609 +                             const char func[], int line, const char func2[])
610 +{
611 +#ifdef PRFILE_TRACE
612 +       if (pr)
613 +               pr_info("%s:%d: %s, %s\n", func, line, func2,
614 +                       f ? (char *)f->f_path.dentry->d_name.name : "(null)");
615 +#endif
616 +}
617 +
618 +void vma_do_file_update_time(struct vm_area_struct *vma, const char func[],
619 +                            int line)
620 +{
621 +       struct file *f = vma->vm_file, *pr = vma->vm_prfile;
622 +
623 +       prfile_trace(f, pr, func, line, __func__);
624 +       file_update_time(f);
625 +       if (f && pr)
626 +               file_update_time(pr);
627 +}
628 +
629 +struct file *vma_do_pr_or_file(struct vm_area_struct *vma, const char func[],
630 +                              int line)
631 +{
632 +       struct file *f = vma->vm_file, *pr = vma->vm_prfile;
633 +
634 +       prfile_trace(f, pr, func, line, __func__);
635 +       return (f && pr) ? pr : f;
636 +}
637 +
638 +void vma_do_get_file(struct vm_area_struct *vma, const char func[], int line)
639 +{
640 +       struct file *f = vma->vm_file, *pr = vma->vm_prfile;
641 +
642 +       prfile_trace(f, pr, func, line, __func__);
643 +       get_file(f);
644 +       if (f && pr)
645 +               get_file(pr);
646 +}
647 +
648 +void vma_do_fput(struct vm_area_struct *vma, const char func[], int line)
649 +{
650 +       struct file *f = vma->vm_file, *pr = vma->vm_prfile;
651 +
652 +       prfile_trace(f, pr, func, line, __func__);
653 +       fput(f);
654 +       if (f && pr)
655 +               fput(pr);
656 +}
657 +
658 +#ifndef CONFIG_MMU
659 +struct file *vmr_do_pr_or_file(struct vm_region *region, const char func[],
660 +                              int line)
661 +{
662 +       struct file *f = region->vm_file, *pr = region->vm_prfile;
663 +
664 +       prfile_trace(f, pr, func, line, __func__);
665 +       return (f && pr) ? pr : f;
666 +}
667 +
668 +void vmr_do_fput(struct vm_region *region, const char func[], int line)
669 +{
670 +       struct file *f = region->vm_file, *pr = region->vm_prfile;
671 +
672 +       prfile_trace(f, pr, func, line, __func__);
673 +       fput(f);
674 +       if (f && pr)
675 +               fput(pr);
676 +}
677 +#endif /* !CONFIG_MMU */
678 aufs4.9 standalone patch
679
680 diff --git a/fs/dcache.c b/fs/dcache.c
681 index df0268c..755fea1 100644
682 --- a/fs/dcache.c
683 +++ b/fs/dcache.c
684 @@ -1272,6 +1272,7 @@ void d_walk(struct dentry *parent, void *data,
685         seq = 1;
686         goto again;
687  }
688 +EXPORT_SYMBOL_GPL(d_walk);
689  
690  /*
691   * Search for at least 1 mount point in the dentry's subdirs.
692 @@ -2855,6 +2856,7 @@ void d_exchange(struct dentry *dentry1, struct dentry *dentry2)
693  
694         write_sequnlock(&rename_lock);
695  }
696 +EXPORT_SYMBOL_GPL(d_exchange);
697  
698  /**
699   * d_ancestor - search for an ancestor
700 diff --git a/fs/exec.c b/fs/exec.c
701 index 4e497b9..e27d323 100644
702 --- a/fs/exec.c
703 +++ b/fs/exec.c
704 @@ -104,6 +104,7 @@ bool path_noexec(const struct path *path)
705         return (path->mnt->mnt_flags & MNT_NOEXEC) ||
706                (path->mnt->mnt_sb->s_iflags & SB_I_NOEXEC);
707  }
708 +EXPORT_SYMBOL_GPL(path_noexec);
709  
710  #ifdef CONFIG_USELIB
711  /*
712 diff --git a/fs/fcntl.c b/fs/fcntl.c
713 index 6f42279..04fd33c 100644
714 --- a/fs/fcntl.c
715 +++ b/fs/fcntl.c
716 @@ -82,6 +82,7 @@ int setfl(int fd, struct file * filp, unsigned long arg)
717   out:
718         return error;
719  }
720 +EXPORT_SYMBOL_GPL(setfl);
721  
722  static void f_modown(struct file *filp, struct pid *pid, enum pid_type type,
723                       int force)
724 diff --git a/fs/file_table.c b/fs/file_table.c
725 index ad17e05..ae9f267 100644
726 --- a/fs/file_table.c
727 +++ b/fs/file_table.c
728 @@ -147,6 +147,7 @@ struct file *get_empty_filp(void)
729         }
730         return ERR_PTR(-ENFILE);
731  }
732 +EXPORT_SYMBOL_GPL(get_empty_filp);
733  
734  /**
735   * alloc_file - allocate and initialize a 'struct file'
736 @@ -258,6 +259,7 @@ void flush_delayed_fput(void)
737  {
738         delayed_fput(NULL);
739  }
740 +EXPORT_SYMBOL_GPL(flush_delayed_fput);
741  
742  static DECLARE_DELAYED_WORK(delayed_fput_work, delayed_fput);
743  
744 @@ -300,6 +302,7 @@ void __fput_sync(struct file *file)
745  }
746  
747  EXPORT_SYMBOL(fput);
748 +EXPORT_SYMBOL_GPL(__fput_sync);
749  
750  void put_filp(struct file *file)
751  {
752 @@ -308,6 +311,7 @@ void put_filp(struct file *file)
753                 file_free(file);
754         }
755  }
756 +EXPORT_SYMBOL_GPL(put_filp);
757  
758  void __init files_init(void)
759  { 
760 diff --git a/fs/inode.c b/fs/inode.c
761 index 9a9ba3a..a3a18d8 100644
762 --- a/fs/inode.c
763 +++ b/fs/inode.c
764 @@ -1651,6 +1651,7 @@ int update_time(struct inode *inode, struct timespec *time, int flags)
765  
766         return update_time(inode, time, flags);
767  }
768 +EXPORT_SYMBOL_GPL(update_time);
769  
770  /**
771   *     touch_atime     -       update the access time
772 diff --git a/fs/namespace.c b/fs/namespace.c
773 index e6c234b..8d13f7b 100644
774 --- a/fs/namespace.c
775 +++ b/fs/namespace.c
776 @@ -466,6 +466,7 @@ void __mnt_drop_write(struct vfsmount *mnt)
777         mnt_dec_writers(real_mount(mnt));
778         preempt_enable();
779  }
780 +EXPORT_SYMBOL_GPL(__mnt_drop_write);
781  
782  /**
783   * mnt_drop_write - give up write access to a mount
784 @@ -1823,6 +1824,7 @@ int iterate_mounts(int (*f)(struct vfsmount *, void *), void *arg,
785         }
786         return 0;
787  }
788 +EXPORT_SYMBOL_GPL(iterate_mounts);
789  
790  static void cleanup_group_ids(struct mount *mnt, struct mount *end)
791  {
792 diff --git a/fs/notify/group.c b/fs/notify/group.c
793 index fbe3cbe..bdfc61e 100644
794 --- a/fs/notify/group.c
795 +++ b/fs/notify/group.c
796 @@ -22,6 +22,7 @@
797  #include <linux/srcu.h>
798  #include <linux/rculist.h>
799  #include <linux/wait.h>
800 +#include <linux/module.h>
801  
802  #include <linux/fsnotify_backend.h>
803  #include "fsnotify.h"
804 @@ -100,6 +101,7 @@ void fsnotify_get_group(struct fsnotify_group *group)
805  {
806         atomic_inc(&group->refcnt);
807  }
808 +EXPORT_SYMBOL_GPL(fsnotify_get_group);
809  
810  /*
811   * Drop a reference to a group.  Free it if it's through.
812 @@ -109,6 +111,7 @@ void fsnotify_put_group(struct fsnotify_group *group)
813         if (atomic_dec_and_test(&group->refcnt))
814                 fsnotify_final_destroy_group(group);
815  }
816 +EXPORT_SYMBOL_GPL(fsnotify_put_group);
817  
818  /*
819   * Create a new fsnotify_group and hold a reference for the group returned.
820 @@ -137,6 +140,7 @@ struct fsnotify_group *fsnotify_alloc_group(const struct fsnotify_ops *ops)
821  
822         return group;
823  }
824 +EXPORT_SYMBOL_GPL(fsnotify_alloc_group);
825  
826  int fsnotify_fasync(int fd, struct file *file, int on)
827  {
828 diff --git a/fs/notify/mark.c b/fs/notify/mark.c
829 index d3fea0b..5fc06ad 100644
830 --- a/fs/notify/mark.c
831 +++ b/fs/notify/mark.c
832 @@ -113,6 +113,7 @@ void fsnotify_put_mark(struct fsnotify_mark *mark)
833                 mark->free_mark(mark);
834         }
835  }
836 +EXPORT_SYMBOL_GPL(fsnotify_put_mark);
837  
838  /* Calculate mask of events for a list of marks */
839  u32 fsnotify_recalc_mask(struct hlist_head *head)
840 @@ -230,6 +231,7 @@ void fsnotify_destroy_mark(struct fsnotify_mark *mark,
841         mutex_unlock(&group->mark_mutex);
842         fsnotify_free_mark(mark);
843  }
844 +EXPORT_SYMBOL_GPL(fsnotify_destroy_mark);
845  
846  void fsnotify_destroy_marks(struct hlist_head *head, spinlock_t *lock)
847  {
848 @@ -415,6 +417,7 @@ int fsnotify_add_mark_locked(struct fsnotify_mark *mark,
849  
850         return ret;
851  }
852 +EXPORT_SYMBOL_GPL(fsnotify_add_mark);
853  
854  int fsnotify_add_mark(struct fsnotify_mark *mark, struct fsnotify_group *group,
855                       struct inode *inode, struct vfsmount *mnt, int allow_dups)
856 @@ -533,6 +536,7 @@ void fsnotify_init_mark(struct fsnotify_mark *mark,
857         atomic_set(&mark->refcnt, 1);
858         mark->free_mark = free_mark;
859  }
860 +EXPORT_SYMBOL_GPL(fsnotify_init_mark);
861  
862  /*
863   * Destroy all marks in destroy_list, waits for SRCU period to finish before
864 diff --git a/fs/open.c b/fs/open.c
865 index d3ed817..20d2494 100644
866 --- a/fs/open.c
867 +++ b/fs/open.c
868 @@ -64,6 +64,7 @@ int do_truncate(struct dentry *dentry, loff_t length, unsigned int time_attrs,
869         inode_unlock(dentry->d_inode);
870         return ret;
871  }
872 +EXPORT_SYMBOL_GPL(do_truncate);
873  
874  long vfs_truncate(const struct path *path, loff_t length)
875  {
876 @@ -695,6 +696,7 @@ int open_check_o_direct(struct file *f)
877         }
878         return 0;
879  }
880 +EXPORT_SYMBOL_GPL(open_check_o_direct);
881  
882  static int do_dentry_open(struct file *f,
883                           struct inode *inode,
884 diff --git a/fs/read_write.c b/fs/read_write.c
885 index 4052813..7dfd732 100644
886 --- a/fs/read_write.c
887 +++ b/fs/read_write.c
888 @@ -525,6 +525,7 @@ vfs_readf_t vfs_readf(struct file *file)
889                 return new_sync_read;
890         return ERR_PTR(-ENOSYS);
891  }
892 +EXPORT_SYMBOL_GPL(vfs_readf);
893  
894  vfs_writef_t vfs_writef(struct file *file)
895  {
896 @@ -536,6 +537,7 @@ vfs_writef_t vfs_writef(struct file *file)
897                 return new_sync_write;
898         return ERR_PTR(-ENOSYS);
899  }
900 +EXPORT_SYMBOL_GPL(vfs_writef);
901  
902  ssize_t __kernel_write(struct file *file, const char *buf, size_t count, loff_t *pos)
903  {
904 diff --git a/fs/splice.c b/fs/splice.c
905 index 28160a7..98c1902 100644
906 --- a/fs/splice.c
907 +++ b/fs/splice.c
908 @@ -868,6 +868,7 @@ long do_splice_from(struct pipe_inode_info *pipe, struct file *out,
909  
910         return splice_write(pipe, out, ppos, len, flags);
911  }
912 +EXPORT_SYMBOL_GPL(do_splice_from);
913  
914  /*
915   * Attempt to initiate a splice from a file to a pipe.
916 @@ -897,6 +898,7 @@ long do_splice_to(struct file *in, loff_t *ppos,
917  
918         return splice_read(in, ppos, pipe, len, flags);
919  }
920 +EXPORT_SYMBOL_GPL(do_splice_to);
921  
922  /**
923   * splice_direct_to_actor - splices data directly between two non-pipes
924 diff --git a/fs/xattr.c b/fs/xattr.c
925 index 2d13b4e..41c2bcd 100644
926 --- a/fs/xattr.c
927 +++ b/fs/xattr.c
928 @@ -296,6 +296,7 @@ int __vfs_setxattr_noperm(struct dentry *dentry, const char *name,
929         *xattr_value = value;
930         return error;
931  }
932 +EXPORT_SYMBOL_GPL(vfs_getxattr_alloc);
933  
934  ssize_t
935  __vfs_getxattr(struct dentry *dentry, struct inode *inode, const char *name,
936 diff --git a/kernel/task_work.c b/kernel/task_work.c
937 index d513051..e056d54 100644
938 --- a/kernel/task_work.c
939 +++ b/kernel/task_work.c
940 @@ -119,3 +119,4 @@ void task_work_run(void)
941                 } while (work);
942         }
943  }
944 +EXPORT_SYMBOL_GPL(task_work_run);
945 diff --git a/security/commoncap.c b/security/commoncap.c
946 index 8df676f..6b5cc07 100644
947 --- a/security/commoncap.c
948 +++ b/security/commoncap.c
949 @@ -1061,12 +1061,14 @@ int cap_mmap_addr(unsigned long addr)
950         }
951         return ret;
952  }
953 +EXPORT_SYMBOL_GPL(cap_mmap_addr);
954  
955  int cap_mmap_file(struct file *file, unsigned long reqprot,
956                   unsigned long prot, unsigned long flags)
957  {
958         return 0;
959  }
960 +EXPORT_SYMBOL_GPL(cap_mmap_file);
961  
962  #ifdef CONFIG_SECURITY
963  
964 diff --git a/security/device_cgroup.c b/security/device_cgroup.c
965 index 03c1652..f88c84b 100644
966 --- a/security/device_cgroup.c
967 +++ b/security/device_cgroup.c
968 @@ -7,6 +7,7 @@
969  #include <linux/device_cgroup.h>
970  #include <linux/cgroup.h>
971  #include <linux/ctype.h>
972 +#include <linux/export.h>
973  #include <linux/list.h>
974  #include <linux/uaccess.h>
975  #include <linux/seq_file.h>
976 @@ -849,6 +850,7 @@ int __devcgroup_inode_permission(struct inode *inode, int mask)
977         return __devcgroup_check_permission(type, imajor(inode), iminor(inode),
978                         access);
979  }
980 +EXPORT_SYMBOL_GPL(__devcgroup_inode_permission);
981  
982  int devcgroup_inode_mknod(int mode, dev_t dev)
983  {
984 diff --git a/security/security.c b/security/security.c
985 index f825304..8dd441d 100644
986 --- a/security/security.c
987 +++ b/security/security.c
988 @@ -443,6 +443,7 @@ int security_path_rmdir(const struct path *dir, struct dentry *dentry)
989                 return 0;
990         return call_int_hook(path_rmdir, 0, dir, dentry);
991  }
992 +EXPORT_SYMBOL_GPL(security_path_rmdir);
993  
994  int security_path_unlink(const struct path *dir, struct dentry *dentry)
995  {
996 @@ -459,6 +460,7 @@ int security_path_symlink(const struct path *dir, struct dentry *dentry,
997                 return 0;
998         return call_int_hook(path_symlink, 0, dir, dentry, old_name);
999  }
1000 +EXPORT_SYMBOL_GPL(security_path_symlink);
1001  
1002  int security_path_link(struct dentry *old_dentry, const struct path *new_dir,
1003                        struct dentry *new_dentry)
1004 @@ -467,6 +469,7 @@ int security_path_link(struct dentry *old_dentry, const struct path *new_dir,
1005                 return 0;
1006         return call_int_hook(path_link, 0, old_dentry, new_dir, new_dentry);
1007  }
1008 +EXPORT_SYMBOL_GPL(security_path_link);
1009  
1010  int security_path_rename(const struct path *old_dir, struct dentry *old_dentry,
1011                          const struct path *new_dir, struct dentry *new_dentry,
1012 @@ -494,6 +497,7 @@ int security_path_truncate(const struct path *path)
1013                 return 0;
1014         return call_int_hook(path_truncate, 0, path);
1015  }
1016 +EXPORT_SYMBOL_GPL(security_path_truncate);
1017  
1018  int security_path_chmod(const struct path *path, umode_t mode)
1019  {
1020 @@ -501,6 +505,7 @@ int security_path_chmod(const struct path *path, umode_t mode)
1021                 return 0;
1022         return call_int_hook(path_chmod, 0, path, mode);
1023  }
1024 +EXPORT_SYMBOL_GPL(security_path_chmod);
1025  
1026  int security_path_chown(const struct path *path, kuid_t uid, kgid_t gid)
1027  {
1028 @@ -508,6 +513,7 @@ int security_path_chown(const struct path *path, kuid_t uid, kgid_t gid)
1029                 return 0;
1030         return call_int_hook(path_chown, 0, path, uid, gid);
1031  }
1032 +EXPORT_SYMBOL_GPL(security_path_chown);
1033  
1034  int security_path_chroot(const struct path *path)
1035  {
1036 @@ -593,6 +599,7 @@ int security_inode_readlink(struct dentry *dentry)
1037                 return 0;
1038         return call_int_hook(inode_readlink, 0, dentry);
1039  }
1040 +EXPORT_SYMBOL_GPL(security_inode_readlink);
1041  
1042  int security_inode_follow_link(struct dentry *dentry, struct inode *inode,
1043                                bool rcu)
1044 @@ -608,6 +615,7 @@ int security_inode_permission(struct inode *inode, int mask)
1045                 return 0;
1046         return call_int_hook(inode_permission, 0, inode, mask);
1047  }
1048 +EXPORT_SYMBOL_GPL(security_inode_permission);
1049  
1050  int security_inode_setattr(struct dentry *dentry, struct iattr *attr)
1051  {
1052 @@ -779,6 +787,7 @@ int security_file_permission(struct file *file, int mask)
1053  
1054         return fsnotify_perm(file, mask);
1055  }
1056 +EXPORT_SYMBOL_GPL(security_file_permission);
1057  
1058  int security_file_alloc(struct file *file)
1059  {
1060 @@ -838,6 +847,7 @@ int security_mmap_file(struct file *file, unsigned long prot,
1061                 return ret;
1062         return ima_file_mmap(file, prot);
1063  }
1064 +EXPORT_SYMBOL_GPL(security_mmap_file);
1065  
1066  int security_mmap_addr(unsigned long addr)
1067  {
1068 diff -urN /usr/share/empty/Documentation/ABI/testing/debugfs-aufs linux/Documentation/ABI/testing/debugfs-aufs
1069 --- /usr/share/empty/Documentation/ABI/testing/debugfs-aufs     1970-01-01 01:00:00.000000000 +0100
1070 +++ linux/Documentation/ABI/testing/debugfs-aufs        2016-10-09 16:55:36.476034536 +0200
1071 @@ -0,0 +1,50 @@
1072 +What:          /debug/aufs/si_<id>/
1073 +Date:          March 2009
1074 +Contact:       J. R. Okajima <hooanon05g@gmail.com>
1075 +Description:
1076 +               Under /debug/aufs, a directory named si_<id> is created
1077 +               per aufs mount, where <id> is a unique id generated
1078 +               internally.
1079 +
1080 +What:          /debug/aufs/si_<id>/plink
1081 +Date:          Apr 2013
1082 +Contact:       J. R. Okajima <hooanon05g@gmail.com>
1083 +Description:
1084 +               It has three lines and shows the information about the
1085 +               pseudo-link. The first line is a single number
1086 +               representing a number of buckets. The second line is a
1087 +               number of pseudo-links per buckets (separated by a
1088 +               blank). The last line is a single number representing a
1089 +               total number of psedo-links.
1090 +               When the aufs mount option 'noplink' is specified, it
1091 +               will show "1\n0\n0\n".
1092 +
1093 +What:          /debug/aufs/si_<id>/xib
1094 +Date:          March 2009
1095 +Contact:       J. R. Okajima <hooanon05g@gmail.com>
1096 +Description:
1097 +               It shows the consumed blocks by xib (External Inode Number
1098 +               Bitmap), its block size and file size.
1099 +               When the aufs mount option 'noxino' is specified, it
1100 +               will be empty. About XINO files, see the aufs manual.
1101 +
1102 +What:          /debug/aufs/si_<id>/xino0, xino1 ... xinoN
1103 +Date:          March 2009
1104 +Contact:       J. R. Okajima <hooanon05g@gmail.com>
1105 +Description:
1106 +               It shows the consumed blocks by xino (External Inode Number
1107 +               Translation Table), its link count, block size and file
1108 +               size.
1109 +               When the aufs mount option 'noxino' is specified, it
1110 +               will be empty. About XINO files, see the aufs manual.
1111 +
1112 +What:          /debug/aufs/si_<id>/xigen
1113 +Date:          March 2009
1114 +Contact:       J. R. Okajima <hooanon05g@gmail.com>
1115 +Description:
1116 +               It shows the consumed blocks by xigen (External Inode
1117 +               Generation Table), its block size and file size.
1118 +               If CONFIG_AUFS_EXPORT is disabled, this entry will not
1119 +               be created.
1120 +               When the aufs mount option 'noxino' is specified, it
1121 +               will be empty. About XINO files, see the aufs manual.
1122 diff -urN /usr/share/empty/Documentation/ABI/testing/sysfs-aufs linux/Documentation/ABI/testing/sysfs-aufs
1123 --- /usr/share/empty/Documentation/ABI/testing/sysfs-aufs       1970-01-01 01:00:00.000000000 +0100
1124 +++ linux/Documentation/ABI/testing/sysfs-aufs  2016-10-09 16:55:36.476034536 +0200
1125 @@ -0,0 +1,31 @@
1126 +What:          /sys/fs/aufs/si_<id>/
1127 +Date:          March 2009
1128 +Contact:       J. R. Okajima <hooanon05g@gmail.com>
1129 +Description:
1130 +               Under /sys/fs/aufs, a directory named si_<id> is created
1131 +               per aufs mount, where <id> is a unique id generated
1132 +               internally.
1133 +
1134 +What:          /sys/fs/aufs/si_<id>/br0, br1 ... brN
1135 +Date:          March 2009
1136 +Contact:       J. R. Okajima <hooanon05g@gmail.com>
1137 +Description:
1138 +               It shows the abolute path of a member directory (which
1139 +               is called branch) in aufs, and its permission.
1140 +
1141 +What:          /sys/fs/aufs/si_<id>/brid0, brid1 ... bridN
1142 +Date:          July 2013
1143 +Contact:       J. R. Okajima <hooanon05g@gmail.com>
1144 +Description:
1145 +               It shows the id of a member directory (which is called
1146 +               branch) in aufs.
1147 +
1148 +What:          /sys/fs/aufs/si_<id>/xi_path
1149 +Date:          March 2009
1150 +Contact:       J. R. Okajima <hooanon05g@gmail.com>
1151 +Description:
1152 +               It shows the abolute path of XINO (External Inode Number
1153 +               Bitmap, Translation Table and Generation Table) file
1154 +               even if it is the default path.
1155 +               When the aufs mount option 'noxino' is specified, it
1156 +               will be empty. About XINO files, see the aufs manual.
1157 diff -urN /usr/share/empty/Documentation/filesystems/aufs/design/01intro.txt linux/Documentation/filesystems/aufs/design/01intro.txt
1158 --- /usr/share/empty/Documentation/filesystems/aufs/design/01intro.txt  1970-01-01 01:00:00.000000000 +0100
1159 +++ linux/Documentation/filesystems/aufs/design/01intro.txt     2016-10-09 16:55:36.479367956 +0200
1160 @@ -0,0 +1,170 @@
1161 +
1162 +# Copyright (C) 2005-2016 Junjiro R. Okajima
1163 +# 
1164 +# This program is free software; you can redistribute it and/or modify
1165 +# it under the terms of the GNU General Public License as published by
1166 +# the Free Software Foundation; either version 2 of the License, or
1167 +# (at your option) any later version.
1168 +# 
1169 +# This program is distributed in the hope that it will be useful,
1170 +# but WITHOUT ANY WARRANTY; without even the implied warranty of
1171 +# MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
1172 +# GNU General Public License for more details.
1173 +# 
1174 +# You should have received a copy of the GNU General Public License
1175 +# along with this program.  If not, see <http://www.gnu.org/licenses/>.
1176 +
1177 +Introduction
1178 +----------------------------------------
1179 +
1180 +aufs [ei ju: ef es] | [a u f s]
1181 +1. abbrev. for "advanced multi-layered unification filesystem".
1182 +2. abbrev. for "another unionfs".
1183 +3. abbrev. for "auf das" in German which means "on the" in English.
1184 +   Ex. "Butter aufs Brot"(G) means "butter onto bread"(E).
1185 +   But "Filesystem aufs Filesystem" is hard to understand.
1186 +
1187 +AUFS is a filesystem with features:
1188 +- multi layered stackable unification filesystem, the member directory
1189 +  is called as a branch.
1190 +- branch permission and attribute, 'readonly', 'real-readonly',
1191 +  'readwrite', 'whiteout-able', 'link-able whiteout', etc. and their
1192 +  combination.
1193 +- internal "file copy-on-write".
1194 +- logical deletion, whiteout.
1195 +- dynamic branch manipulation, adding, deleting and changing permission.
1196 +- allow bypassing aufs, user's direct branch access.
1197 +- external inode number translation table and bitmap which maintains the
1198 +  persistent aufs inode number.
1199 +- seekable directory, including NFS readdir.
1200 +- file mapping, mmap and sharing pages.
1201 +- pseudo-link, hardlink over branches.
1202 +- loopback mounted filesystem as a branch.
1203 +- several policies to select one among multiple writable branches.
1204 +- revert a single systemcall when an error occurs in aufs.
1205 +- and more...
1206 +
1207 +
1208 +Multi Layered Stackable Unification Filesystem
1209 +----------------------------------------------------------------------
1210 +Most people already knows what it is.
1211 +It is a filesystem which unifies several directories and provides a
1212 +merged single directory. When users access a file, the access will be
1213 +passed/re-directed/converted (sorry, I am not sure which English word is
1214 +correct) to the real file on the member filesystem. The member
1215 +filesystem is called 'lower filesystem' or 'branch' and has a mode
1216 +'readonly' and 'readwrite.' And the deletion for a file on the lower
1217 +readonly branch is handled by creating 'whiteout' on the upper writable
1218 +branch.
1219 +
1220 +On LKML, there have been discussions about UnionMount (Jan Blunck,
1221 +Bharata B Rao and Valerie Aurora) and Unionfs (Erez Zadok). They took
1222 +different approaches to implement the merged-view.
1223 +The former tries putting it into VFS, and the latter implements as a
1224 +separate filesystem.
1225 +(If I misunderstand about these implementations, please let me know and
1226 +I shall correct it. Because it is a long time ago when I read their
1227 +source files last time).
1228 +
1229 +UnionMount's approach will be able to small, but may be hard to share
1230 +branches between several UnionMount since the whiteout in it is
1231 +implemented in the inode on branch filesystem and always
1232 +shared. According to Bharata's post, readdir does not seems to be
1233 +finished yet.
1234 +There are several missing features known in this implementations such as
1235 +- for users, the inode number may change silently. eg. copy-up.
1236 +- link(2) may break by copy-up.
1237 +- read(2) may get an obsoleted filedata (fstat(2) too).
1238 +- fcntl(F_SETLK) may be broken by copy-up.
1239 +- unnecessary copy-up may happen, for example mmap(MAP_PRIVATE) after
1240 +  open(O_RDWR).
1241 +
1242 +In linux-3.18, "overlay" filesystem (formerly known as "overlayfs") was
1243 +merged into mainline. This is another implementation of UnionMount as a
1244 +separated filesystem. All the limitations and known problems which
1245 +UnionMount are equally inherited to "overlay" filesystem.
1246 +
1247 +Unionfs has a longer history. When I started implementing a stackable
1248 +filesystem (Aug 2005), it already existed. It has virtual super_block,
1249 +inode, dentry and file objects and they have an array pointing lower
1250 +same kind objects. After contributing many patches for Unionfs, I
1251 +re-started my project AUFS (Jun 2006).
1252 +
1253 +In AUFS, the structure of filesystem resembles to Unionfs, but I
1254 +implemented my own ideas, approaches and enhancements and it became
1255 +totally different one.
1256 +
1257 +Comparing DM snapshot and fs based implementation
1258 +- the number of bytes to be copied between devices is much smaller.
1259 +- the type of filesystem must be one and only.
1260 +- the fs must be writable, no readonly fs, even for the lower original
1261 +  device. so the compression fs will not be usable. but if we use
1262 +  loopback mount, we may address this issue.
1263 +  for instance,
1264 +       mount /cdrom/squashfs.img /sq
1265 +       losetup /sq/ext2.img
1266 +       losetup /somewhere/cow
1267 +       dmsetup "snapshot /dev/loop0 /dev/loop1 ..."
1268 +- it will be difficult (or needs more operations) to extract the
1269 +  difference between the original device and COW.
1270 +- DM snapshot-merge may help a lot when users try merging. in the
1271 +  fs-layer union, users will use rsync(1).
1272 +
1273 +You may want to read my old paper "Filesystems in LiveCD"
1274 +(http://aufs.sourceforge.net/aufs2/report/sq/sq.pdf).
1275 +
1276 +
1277 +Several characters/aspects/persona of aufs
1278 +----------------------------------------------------------------------
1279 +
1280 +Aufs has several characters, aspects or persona.
1281 +1. a filesystem, callee of VFS helper
1282 +2. sub-VFS, caller of VFS helper for branches
1283 +3. a virtual filesystem which maintains persistent inode number
1284 +4. reader/writer of files on branches such like an application
1285 +
1286 +1. Callee of VFS Helper
1287 +As an ordinary linux filesystem, aufs is a callee of VFS. For instance,
1288 +unlink(2) from an application reaches sys_unlink() kernel function and
1289 +then vfs_unlink() is called. vfs_unlink() is one of VFS helper and it
1290 +calls filesystem specific unlink operation. Actually aufs implements the
1291 +unlink operation but it behaves like a redirector.
1292 +
1293 +2. Caller of VFS Helper for Branches
1294 +aufs_unlink() passes the unlink request to the branch filesystem as if
1295 +it were called from VFS. So the called unlink operation of the branch
1296 +filesystem acts as usual. As a caller of VFS helper, aufs should handle
1297 +every necessary pre/post operation for the branch filesystem.
1298 +- acquire the lock for the parent dir on a branch
1299 +- lookup in a branch
1300 +- revalidate dentry on a branch
1301 +- mnt_want_write() for a branch
1302 +- vfs_unlink() for a branch
1303 +- mnt_drop_write() for a branch
1304 +- release the lock on a branch
1305 +
1306 +3. Persistent Inode Number
1307 +One of the most important issue for a filesystem is to maintain inode
1308 +numbers. This is particularly important to support exporting a
1309 +filesystem via NFS. Aufs is a virtual filesystem which doesn't have a
1310 +backend block device for its own. But some storage is necessary to
1311 +keep and maintain the inode numbers. It may be a large space and may not
1312 +suit to keep in memory. Aufs rents some space from its first writable
1313 +branch filesystem (by default) and creates file(s) on it. These files
1314 +are created by aufs internally and removed soon (currently) keeping
1315 +opened.
1316 +Note: Because these files are removed, they are totally gone after
1317 +      unmounting aufs. It means the inode numbers are not persistent
1318 +      across unmount or reboot. I have a plan to make them really
1319 +      persistent which will be important for aufs on NFS server.
1320 +
1321 +4. Read/Write Files Internally (copy-on-write)
1322 +Because a branch can be readonly, when you write a file on it, aufs will
1323 +"copy-up" it to the upper writable branch internally. And then write the
1324 +originally requested thing to the file. Generally kernel doesn't
1325 +open/read/write file actively. In aufs, even a single write may cause a
1326 +internal "file copy". This behaviour is very similar to cp(1) command.
1327 +
1328 +Some people may think it is better to pass such work to user space
1329 +helper, instead of doing in kernel space. Actually I am still thinking
1330 +about it. But currently I have implemented it in kernel space.
1331 diff -urN /usr/share/empty/Documentation/filesystems/aufs/design/02struct.txt linux/Documentation/filesystems/aufs/design/02struct.txt
1332 --- /usr/share/empty/Documentation/filesystems/aufs/design/02struct.txt 1970-01-01 01:00:00.000000000 +0100
1333 +++ linux/Documentation/filesystems/aufs/design/02struct.txt    2016-10-09 16:55:36.479367956 +0200
1334 @@ -0,0 +1,258 @@
1335 +
1336 +# Copyright (C) 2005-2016 Junjiro R. Okajima
1337 +# 
1338 +# This program is free software; you can redistribute it and/or modify
1339 +# it under the terms of the GNU General Public License as published by
1340 +# the Free Software Foundation; either version 2 of the License, or
1341 +# (at your option) any later version.
1342 +# 
1343 +# This program is distributed in the hope that it will be useful,
1344 +# but WITHOUT ANY WARRANTY; without even the implied warranty of
1345 +# MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
1346 +# GNU General Public License for more details.
1347 +# 
1348 +# You should have received a copy of the GNU General Public License
1349 +# along with this program.  If not, see <http://www.gnu.org/licenses/>.
1350 +
1351 +Basic Aufs Internal Structure
1352 +
1353 +Superblock/Inode/Dentry/File Objects
1354 +----------------------------------------------------------------------
1355 +As like an ordinary filesystem, aufs has its own
1356 +superblock/inode/dentry/file objects. All these objects have a
1357 +dynamically allocated array and store the same kind of pointers to the
1358 +lower filesystem, branch.
1359 +For example, when you build a union with one readwrite branch and one
1360 +readonly, mounted /au, /rw and /ro respectively.
1361 +- /au = /rw + /ro
1362 +- /ro/fileA exists but /rw/fileA
1363 +
1364 +Aufs lookup operation finds /ro/fileA and gets dentry for that. These
1365 +pointers are stored in a aufs dentry. The array in aufs dentry will be,
1366 +- [0] = NULL (because /rw/fileA doesn't exist)
1367 +- [1] = /ro/fileA
1368 +
1369 +This style of an array is essentially same to the aufs
1370 +superblock/inode/dentry/file objects.
1371 +
1372 +Because aufs supports manipulating branches, ie. add/delete/change
1373 +branches dynamically, these objects has its own generation. When
1374 +branches are changed, the generation in aufs superblock is
1375 +incremented. And a generation in other object are compared when it is
1376 +accessed. When a generation in other objects are obsoleted, aufs
1377 +refreshes the internal array.
1378 +
1379 +
1380 +Superblock
1381 +----------------------------------------------------------------------
1382 +Additionally aufs superblock has some data for policies to select one
1383 +among multiple writable branches, XIB files, pseudo-links and kobject.
1384 +See below in detail.
1385 +About the policies which supports copy-down a directory, see
1386 +wbr_policy.txt too.
1387 +
1388 +
1389 +Branch and XINO(External Inode Number Translation Table)
1390 +----------------------------------------------------------------------
1391 +Every branch has its own xino (external inode number translation table)
1392 +file. The xino file is created and unlinked by aufs internally. When two
1393 +members of a union exist on the same filesystem, they share the single
1394 +xino file.
1395 +The struct of a xino file is simple, just a sequence of aufs inode
1396 +numbers which is indexed by the lower inode number.
1397 +In the above sample, assume the inode number of /ro/fileA is i111 and
1398 +aufs assigns the inode number i999 for fileA. Then aufs writes 999 as
1399 +4(8) bytes at 111 * 4(8) bytes offset in the xino file.
1400 +
1401 +When the inode numbers are not contiguous, the xino file will be sparse
1402 +which has a hole in it and doesn't consume as much disk space as it
1403 +might appear. If your branch filesystem consumes disk space for such
1404 +holes, then you should specify 'xino=' option at mounting aufs.
1405 +
1406 +Aufs has a mount option to free the disk blocks for such holes in XINO
1407 +files on tmpfs or ramdisk. But it is not so effective actually. If you
1408 +meet a problem of disk shortage due to XINO files, then you should try
1409 +"tmpfs-ino.patch" (and "vfs-ino.patch" too) in aufs4-standalone.git.
1410 +The patch localizes the assignment inumbers per tmpfs-mount and avoid
1411 +the holes in XINO files.
1412 +
1413 +Also a writable branch has three kinds of "whiteout bases". All these
1414 +are existed when the branch is joined to aufs, and their names are
1415 +whiteout-ed doubly, so that users will never see their names in aufs
1416 +hierarchy.
1417 +1. a regular file which will be hardlinked to all whiteouts.
1418 +2. a directory to store a pseudo-link.
1419 +3. a directory to store an "orphan"-ed file temporary.
1420 +
1421 +1. Whiteout Base
1422 +   When you remove a file on a readonly branch, aufs handles it as a
1423 +   logical deletion and creates a whiteout on the upper writable branch
1424 +   as a hardlink of this file in order not to consume inode on the
1425 +   writable branch.
1426 +2. Pseudo-link Dir
1427 +   See below, Pseudo-link.
1428 +3. Step-Parent Dir
1429 +   When "fileC" exists on the lower readonly branch only and it is
1430 +   opened and removed with its parent dir, and then user writes
1431 +   something into it, then aufs copies-up fileC to this
1432 +   directory. Because there is no other dir to store fileC. After
1433 +   creating a file under this dir, the file is unlinked.
1434 +
1435 +Because aufs supports manipulating branches, ie. add/delete/change
1436 +dynamically, a branch has its own id. When the branch order changes,
1437 +aufs finds the new index by searching the branch id.
1438 +
1439 +
1440 +Pseudo-link
1441 +----------------------------------------------------------------------
1442 +Assume "fileA" exists on the lower readonly branch only and it is
1443 +hardlinked to "fileB" on the branch. When you write something to fileA,
1444 +aufs copies-up it to the upper writable branch. Additionally aufs
1445 +creates a hardlink under the Pseudo-link Directory of the writable
1446 +branch. The inode of a pseudo-link is kept in aufs super_block as a
1447 +simple list. If fileB is read after unlinking fileA, aufs returns
1448 +filedata from the pseudo-link instead of the lower readonly
1449 +branch. Because the pseudo-link is based upon the inode, to keep the
1450 +inode number by xino (see above) is essentially necessary.
1451 +
1452 +All the hardlinks under the Pseudo-link Directory of the writable branch
1453 +should be restored in a proper location later. Aufs provides a utility
1454 +to do this. The userspace helpers executed at remounting and unmounting
1455 +aufs by default.
1456 +During this utility is running, it puts aufs into the pseudo-link
1457 +maintenance mode. In this mode, only the process which began the
1458 +maintenance mode (and its child processes) is allowed to operate in
1459 +aufs. Some other processes which are not related to the pseudo-link will
1460 +be allowed to run too, but the rest have to return an error or wait
1461 +until the maintenance mode ends. If a process already acquires an inode
1462 +mutex (in VFS), it has to return an error.
1463 +
1464 +
1465 +XIB(external inode number bitmap)
1466 +----------------------------------------------------------------------
1467 +Addition to the xino file per a branch, aufs has an external inode number
1468 +bitmap in a superblock object. It is also an internal file such like a
1469 +xino file.
1470 +It is a simple bitmap to mark whether the aufs inode number is in-use or
1471 +not.
1472 +To reduce the file I/O, aufs prepares a single memory page to cache xib.
1473 +
1474 +As well as XINO files, aufs has a feature to truncate/refresh XIB to
1475 +reduce the number of consumed disk blocks for these files.
1476 +
1477 +
1478 +Virtual or Vertical Dir, and Readdir in Userspace
1479 +----------------------------------------------------------------------
1480 +In order to support multiple layers (branches), aufs readdir operation
1481 +constructs a virtual dir block on memory. For readdir, aufs calls
1482 +vfs_readdir() internally for each dir on branches, merges their entries
1483 +with eliminating the whiteout-ed ones, and sets it to file (dir)
1484 +object. So the file object has its entry list until it is closed. The
1485 +entry list will be updated when the file position is zero and becomes
1486 +obsoleted. This decision is made in aufs automatically.
1487 +
1488 +The dynamically allocated memory block for the name of entries has a
1489 +unit of 512 bytes (by default) and stores the names contiguously (no
1490 +padding). Another block for each entry is handled by kmem_cache too.
1491 +During building dir blocks, aufs creates hash list and judging whether
1492 +the entry is whiteouted by its upper branch or already listed.
1493 +The merged result is cached in the corresponding inode object and
1494 +maintained by a customizable life-time option.
1495 +
1496 +Some people may call it can be a security hole or invite DoS attack
1497 +since the opened and once readdir-ed dir (file object) holds its entry
1498 +list and becomes a pressure for system memory. But I'd say it is similar
1499 +to files under /proc or /sys. The virtual files in them also holds a
1500 +memory page (generally) while they are opened. When an idea to reduce
1501 +memory for them is introduced, it will be applied to aufs too.
1502 +For those who really hate this situation, I've developed readdir(3)
1503 +library which operates this merging in userspace. You just need to set
1504 +LD_PRELOAD environment variable, and aufs will not consume no memory in
1505 +kernel space for readdir(3).
1506 +
1507 +
1508 +Workqueue
1509 +----------------------------------------------------------------------
1510 +Aufs sometimes requires privilege access to a branch. For instance,
1511 +in copy-up/down operation. When a user process is going to make changes
1512 +to a file which exists in the lower readonly branch only, and the mode
1513 +of one of ancestor directories may not be writable by a user
1514 +process. Here aufs copy-up the file with its ancestors and they may
1515 +require privilege to set its owner/group/mode/etc.
1516 +This is a typical case of a application character of aufs (see
1517 +Introduction).
1518 +
1519 +Aufs uses workqueue synchronously for this case. It creates its own
1520 +workqueue. The workqueue is a kernel thread and has privilege. Aufs
1521 +passes the request to call mkdir or write (for example), and wait for
1522 +its completion. This approach solves a problem of a signal handler
1523 +simply.
1524 +If aufs didn't adopt the workqueue and changed the privilege of the
1525 +process, then the process may receive the unexpected SIGXFSZ or other
1526 +signals.
1527 +
1528 +Also aufs uses the system global workqueue ("events" kernel thread) too
1529 +for asynchronous tasks, such like handling inotify/fsnotify, re-creating a
1530 +whiteout base and etc. This is unrelated to a privilege.
1531 +Most of aufs operation tries acquiring a rw_semaphore for aufs
1532 +superblock at the beginning, at the same time waits for the completion
1533 +of all queued asynchronous tasks.
1534 +
1535 +
1536 +Whiteout
1537 +----------------------------------------------------------------------
1538 +The whiteout in aufs is very similar to Unionfs's. That is represented
1539 +by its filename. UnionMount takes an approach of a file mode, but I am
1540 +afraid several utilities (find(1) or something) will have to support it.
1541 +
1542 +Basically the whiteout represents "logical deletion" which stops aufs to
1543 +lookup further, but also it represents "dir is opaque" which also stop
1544 +further lookup.
1545 +
1546 +In aufs, rmdir(2) and rename(2) for dir uses whiteout alternatively.
1547 +In order to make several functions in a single systemcall to be
1548 +revertible, aufs adopts an approach to rename a directory to a temporary
1549 +unique whiteouted name.
1550 +For example, in rename(2) dir where the target dir already existed, aufs
1551 +renames the target dir to a temporary unique whiteouted name before the
1552 +actual rename on a branch, and then handles other actions (make it opaque,
1553 +update the attributes, etc). If an error happens in these actions, aufs
1554 +simply renames the whiteouted name back and returns an error. If all are
1555 +succeeded, aufs registers a function to remove the whiteouted unique
1556 +temporary name completely and asynchronously to the system global
1557 +workqueue.
1558 +
1559 +
1560 +Copy-up
1561 +----------------------------------------------------------------------
1562 +It is a well-known feature or concept.
1563 +When user modifies a file on a readonly branch, aufs operate "copy-up"
1564 +internally and makes change to the new file on the upper writable branch.
1565 +When the trigger systemcall does not update the timestamps of the parent
1566 +dir, aufs reverts it after copy-up.
1567 +
1568 +
1569 +Move-down (aufs3.9 and later)
1570 +----------------------------------------------------------------------
1571 +"Copy-up" is one of the essential feature in aufs. It copies a file from
1572 +the lower readonly branch to the upper writable branch when a user
1573 +changes something about the file.
1574 +"Move-down" is an opposite action of copy-up. Basically this action is
1575 +ran manually instead of automatically and internally.
1576 +For desgin and implementation, aufs has to consider these issues.
1577 +- whiteout for the file may exist on the lower branch.
1578 +- ancestor directories may not exist on the lower branch.
1579 +- diropq for the ancestor directories may exist on the upper branch.
1580 +- free space on the lower branch will reduce.
1581 +- another access to the file may happen during moving-down, including
1582 +  UDBA (see "Revalidate Dentry and UDBA").
1583 +- the file should not be hard-linked nor pseudo-linked. they should be
1584 +  handled by auplink utility later.
1585 +
1586 +Sometimes users want to move-down a file from the upper writable branch
1587 +to the lower readonly or writable branch. For instance,
1588 +- the free space of the upper writable branch is going to run out.
1589 +- create a new intermediate branch between the upper and lower branch.
1590 +- etc.
1591 +
1592 +For this purpose, use "aumvdown" command in aufs-util.git.
1593 diff -urN /usr/share/empty/Documentation/filesystems/aufs/design/03atomic_open.txt linux/Documentation/filesystems/aufs/design/03atomic_open.txt
1594 --- /usr/share/empty/Documentation/filesystems/aufs/design/03atomic_open.txt    1970-01-01 01:00:00.000000000 +0100
1595 +++ linux/Documentation/filesystems/aufs/design/03atomic_open.txt       2016-10-09 16:55:36.479367956 +0200
1596 @@ -0,0 +1,85 @@
1597 +
1598 +# Copyright (C) 2015-2016 Junjiro R. Okajima
1599 +# 
1600 +# This program is free software; you can redistribute it and/or modify
1601 +# it under the terms of the GNU General Public License as published by
1602 +# the Free Software Foundation; either version 2 of the License, or
1603 +# (at your option) any later version.
1604 +# 
1605 +# This program is distributed in the hope that it will be useful,
1606 +# but WITHOUT ANY WARRANTY; without even the implied warranty of
1607 +# MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
1608 +# GNU General Public License for more details.
1609 +# 
1610 +# You should have received a copy of the GNU General Public License
1611 +# along with this program.  If not, see <http://www.gnu.org/licenses/>.
1612 +
1613 +Support for a branch who has its ->atomic_open()
1614 +----------------------------------------------------------------------
1615 +The filesystems who implement its ->atomic_open() are not majority. For
1616 +example NFSv4 does, and aufs should call NFSv4 ->atomic_open,
1617 +particularly for open(O_CREAT|O_EXCL, 0400) case. Other than
1618 +->atomic_open(), NFSv4 returns an error for this open(2). While I am not
1619 +sure whether all filesystems who have ->atomic_open() behave like this,
1620 +but NFSv4 surely returns the error.
1621 +
1622 +In order to support ->atomic_open() for aufs, there are a few
1623 +approaches.
1624 +
1625 +A. Introduce aufs_atomic_open()
1626 +   - calls one of VFS:do_last(), lookup_open() or atomic_open() for
1627 +     branch fs.
1628 +B. Introduce aufs_atomic_open() calling create, open and chmod. this is
1629 +   an aufs user Pip Cet's approach
1630 +   - calls aufs_create(), VFS finish_open() and notify_change().
1631 +   - pass fake-mode to finish_open(), and then correct the mode by
1632 +     notify_change().
1633 +C. Extend aufs_open() to call branch fs's ->atomic_open()
1634 +   - no aufs_atomic_open().
1635 +   - aufs_lookup() registers the TID to an aufs internal object.
1636 +   - aufs_create() does nothing when the matching TID is registered, but
1637 +     registers the mode.
1638 +   - aufs_open() calls branch fs's ->atomic_open() when the matching
1639 +     TID is registered.
1640 +D. Extend aufs_open() to re-try branch fs's ->open() with superuser's
1641 +   credential
1642 +   - no aufs_atomic_open().
1643 +   - aufs_create() registers the TID to an internal object. this info
1644 +     represents "this process created this file just now."
1645 +   - when aufs gets EACCES from branch fs's ->open(), then confirm the
1646 +     registered TID and re-try open() with superuser's credential.
1647 +
1648 +Pros and cons for each approach.
1649 +
1650 +A.
1651 +   - straightforward but highly depends upon VFS internal.
1652 +   - the atomic behavaiour is kept.
1653 +   - some of parameters such as nameidata are hard to reproduce for
1654 +     branch fs.
1655 +   - large overhead.
1656 +B.
1657 +   - easy to implement.
1658 +   - the atomic behavaiour is lost.
1659 +C.
1660 +   - the atomic behavaiour is kept.
1661 +   - dirty and tricky.
1662 +   - VFS checks whether the file is created correctly after calling
1663 +     ->create(), which means this approach doesn't work.
1664 +D.
1665 +   - easy to implement.
1666 +   - the atomic behavaiour is lost.
1667 +   - to open a file with superuser's credential and give it to a user
1668 +     process is a bad idea, since the file object keeps the credential
1669 +     in it. It may affect LSM or something. This approach doesn't work
1670 +     either.
1671 +
1672 +The approach A is ideal, but it hard to implement. So here is a
1673 +variation of A, which is to be implemented.
1674 +
1675 +A-1. Introduce aufs_atomic_open()
1676 +     - calls branch fs ->atomic_open() if exists. otherwise calls
1677 +       vfs_create() and finish_open().
1678 +     - the demerit is that the several checks after branch fs
1679 +       ->atomic_open() are lost. in the ordinary case, the checks are
1680 +       done by VFS:do_last(), lookup_open() and atomic_open(). some can
1681 +       be implemented in aufs, but not all I am afraid.
1682 diff -urN /usr/share/empty/Documentation/filesystems/aufs/design/03lookup.txt linux/Documentation/filesystems/aufs/design/03lookup.txt
1683 --- /usr/share/empty/Documentation/filesystems/aufs/design/03lookup.txt 1970-01-01 01:00:00.000000000 +0100
1684 +++ linux/Documentation/filesystems/aufs/design/03lookup.txt    2016-10-09 16:55:36.479367956 +0200
1685 @@ -0,0 +1,113 @@
1686 +
1687 +# Copyright (C) 2005-2016 Junjiro R. Okajima
1688 +# 
1689 +# This program is free software; you can redistribute it and/or modify
1690 +# it under the terms of the GNU General Public License as published by
1691 +# the Free Software Foundation; either version 2 of the License, or
1692 +# (at your option) any later version.
1693 +# 
1694 +# This program is distributed in the hope that it will be useful,
1695 +# but WITHOUT ANY WARRANTY; without even the implied warranty of
1696 +# MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
1697 +# GNU General Public License for more details.
1698 +# 
1699 +# You should have received a copy of the GNU General Public License
1700 +# along with this program.  If not, see <http://www.gnu.org/licenses/>.
1701 +
1702 +Lookup in a Branch
1703 +----------------------------------------------------------------------
1704 +Since aufs has a character of sub-VFS (see Introduction), it operates
1705 +lookup for branches as VFS does. It may be a heavy work. But almost all
1706 +lookup operation in aufs is the simplest case, ie. lookup only an entry
1707 +directly connected to its parent. Digging down the directory hierarchy
1708 +is unnecessary. VFS has a function lookup_one_len() for that use, and
1709 +aufs calls it.
1710 +
1711 +When a branch is a remote filesystem, aufs basically relies upon its
1712 +->d_revalidate(), also aufs forces the hardest revalidate tests for
1713 +them.
1714 +For d_revalidate, aufs implements three levels of revalidate tests. See
1715 +"Revalidate Dentry and UDBA" in detail.
1716 +
1717 +
1718 +Test Only the Highest One for the Directory Permission (dirperm1 option)
1719 +----------------------------------------------------------------------
1720 +Let's try case study.
1721 +- aufs has two branches, upper readwrite and lower readonly.
1722 +  /au = /rw + /ro
1723 +- "dirA" exists under /ro, but /rw. and its mode is 0700.
1724 +- user invoked "chmod a+rx /au/dirA"
1725 +- the internal copy-up is activated and "/rw/dirA" is created and its
1726 +  permission bits are set to world readable.
1727 +- then "/au/dirA" becomes world readable?
1728 +
1729 +In this case, /ro/dirA is still 0700 since it exists in readonly branch,
1730 +or it may be a natively readonly filesystem. If aufs respects the lower
1731 +branch, it should not respond readdir request from other users. But user
1732 +allowed it by chmod. Should really aufs rejects showing the entries
1733 +under /ro/dirA?
1734 +
1735 +To be honest, I don't have a good solution for this case. So aufs
1736 +implements 'dirperm1' and 'nodirperm1' mount options, and leave it to
1737 +users.
1738 +When dirperm1 is specified, aufs checks only the highest one for the
1739 +directory permission, and shows the entries. Otherwise, as usual, checks
1740 +every dir existing on all branches and rejects the request.
1741 +
1742 +As a side effect, dirperm1 option improves the performance of aufs
1743 +because the number of permission check is reduced when the number of
1744 +branch is many.
1745 +
1746 +
1747 +Revalidate Dentry and UDBA (User's Direct Branch Access)
1748 +----------------------------------------------------------------------
1749 +Generally VFS helpers re-validate a dentry as a part of lookup.
1750 +0. digging down the directory hierarchy.
1751 +1. lock the parent dir by its i_mutex.
1752 +2. lookup the final (child) entry.
1753 +3. revalidate it.
1754 +4. call the actual operation (create, unlink, etc.)
1755 +5. unlock the parent dir
1756 +
1757 +If the filesystem implements its ->d_revalidate() (step 3), then it is
1758 +called. Actually aufs implements it and checks the dentry on a branch is
1759 +still valid.
1760 +But it is not enough. Because aufs has to release the lock for the
1761 +parent dir on a branch at the end of ->lookup() (step 2) and
1762 +->d_revalidate() (step 3) while the i_mutex of the aufs dir is still
1763 +held by VFS.
1764 +If the file on a branch is changed directly, eg. bypassing aufs, after
1765 +aufs released the lock, then the subsequent operation may cause
1766 +something unpleasant result.
1767 +
1768 +This situation is a result of VFS architecture, ->lookup() and
1769 +->d_revalidate() is separated. But I never say it is wrong. It is a good
1770 +design from VFS's point of view. It is just not suitable for sub-VFS
1771 +character in aufs.
1772 +
1773 +Aufs supports such case by three level of revalidation which is
1774 +selectable by user.
1775 +1. Simple Revalidate
1776 +   Addition to the native flow in VFS's, confirm the child-parent
1777 +   relationship on the branch just after locking the parent dir on the
1778 +   branch in the "actual operation" (step 4). When this validation
1779 +   fails, aufs returns EBUSY. ->d_revalidate() (step 3) in aufs still
1780 +   checks the validation of the dentry on branches.
1781 +2. Monitor Changes Internally by Inotify/Fsnotify
1782 +   Addition to above, in the "actual operation" (step 4) aufs re-lookup
1783 +   the dentry on the branch, and returns EBUSY if it finds different
1784 +   dentry.
1785 +   Additionally, aufs sets the inotify/fsnotify watch for every dir on branches
1786 +   during it is in cache. When the event is notified, aufs registers a
1787 +   function to kernel 'events' thread by schedule_work(). And the
1788 +   function sets some special status to the cached aufs dentry and inode
1789 +   private data. If they are not cached, then aufs has nothing to
1790 +   do. When the same file is accessed through aufs (step 0-3) later,
1791 +   aufs will detect the status and refresh all necessary data.
1792 +   In this mode, aufs has to ignore the event which is fired by aufs
1793 +   itself.
1794 +3. No Extra Validation
1795 +   This is the simplest test and doesn't add any additional revalidation
1796 +   test, and skip the revalidation in step 4. It is useful and improves
1797 +   aufs performance when system surely hide the aufs branches from user,
1798 +   by over-mounting something (or another method).
1799 diff -urN /usr/share/empty/Documentation/filesystems/aufs/design/04branch.txt linux/Documentation/filesystems/aufs/design/04branch.txt
1800 --- /usr/share/empty/Documentation/filesystems/aufs/design/04branch.txt 1970-01-01 01:00:00.000000000 +0100
1801 +++ linux/Documentation/filesystems/aufs/design/04branch.txt    2016-10-09 16:55:36.482701377 +0200
1802 @@ -0,0 +1,74 @@
1803 +
1804 +# Copyright (C) 2005-2016 Junjiro R. Okajima
1805 +# 
1806 +# This program is free software; you can redistribute it and/or modify
1807 +# it under the terms of the GNU General Public License as published by
1808 +# the Free Software Foundation; either version 2 of the License, or
1809 +# (at your option) any later version.
1810 +# 
1811 +# This program is distributed in the hope that it will be useful,
1812 +# but WITHOUT ANY WARRANTY; without even the implied warranty of
1813 +# MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
1814 +# GNU General Public License for more details.
1815 +# 
1816 +# You should have received a copy of the GNU General Public License
1817 +# along with this program.  If not, see <http://www.gnu.org/licenses/>.
1818 +
1819 +Branch Manipulation
1820 +
1821 +Since aufs supports dynamic branch manipulation, ie. add/remove a branch
1822 +and changing its permission/attribute, there are a lot of works to do.
1823 +
1824 +
1825 +Add a Branch
1826 +----------------------------------------------------------------------
1827 +o Confirm the adding dir exists outside of aufs, including loopback
1828 +  mount, and its various attributes.
1829 +o Initialize the xino file and whiteout bases if necessary.
1830 +  See struct.txt.
1831 +
1832 +o Check the owner/group/mode of the directory
1833 +  When the owner/group/mode of the adding directory differs from the
1834 +  existing branch, aufs issues a warning because it may impose a
1835 +  security risk.
1836 +  For example, when a upper writable branch has a world writable empty
1837 +  top directory, a malicious user can create any files on the writable
1838 +  branch directly, like copy-up and modify manually. If something like
1839 +  /etc/{passwd,shadow} exists on the lower readonly branch but the upper
1840 +  writable branch, and the writable branch is world-writable, then a
1841 +  malicious guy may create /etc/passwd on the writable branch directly
1842 +  and the infected file will be valid in aufs.
1843 +  I am afraid it can be a security issue, but aufs can do nothing except
1844 +  producing a warning.
1845 +
1846 +
1847 +Delete a Branch
1848 +----------------------------------------------------------------------
1849 +o Confirm the deleting branch is not busy
1850 +  To be general, there is one merit to adopt "remount" interface to
1851 +  manipulate branches. It is to discard caches. At deleting a branch,
1852 +  aufs checks the still cached (and connected) dentries and inodes. If
1853 +  there are any, then they are all in-use. An inode without its
1854 +  corresponding dentry can be alive alone (for example, inotify/fsnotify case).
1855 +
1856 +  For the cached one, aufs checks whether the same named entry exists on
1857 +  other branches.
1858 +  If the cached one is a directory, because aufs provides a merged view
1859 +  to users, as long as one dir is left on any branch aufs can show the
1860 +  dir to users. In this case, the branch can be removed from aufs.
1861 +  Otherwise aufs rejects deleting the branch.
1862 +
1863 +  If any file on the deleting branch is opened by aufs, then aufs
1864 +  rejects deleting.
1865 +
1866 +
1867 +Modify the Permission of a Branch
1868 +----------------------------------------------------------------------
1869 +o Re-initialize or remove the xino file and whiteout bases if necessary.
1870 +  See struct.txt.
1871 +
1872 +o rw --> ro: Confirm the modifying branch is not busy
1873 +  Aufs rejects the request if any of these conditions are true.
1874 +  - a file on the branch is mmap-ed.
1875 +  - a regular file on the branch is opened for write and there is no
1876 +    same named entry on the upper branch.
1877 diff -urN /usr/share/empty/Documentation/filesystems/aufs/design/05wbr_policy.txt linux/Documentation/filesystems/aufs/design/05wbr_policy.txt
1878 --- /usr/share/empty/Documentation/filesystems/aufs/design/05wbr_policy.txt     1970-01-01 01:00:00.000000000 +0100
1879 +++ linux/Documentation/filesystems/aufs/design/05wbr_policy.txt        2016-10-09 16:55:36.482701377 +0200
1880 @@ -0,0 +1,64 @@
1881 +
1882 +# Copyright (C) 2005-2016 Junjiro R. Okajima
1883 +# 
1884 +# This program is free software; you can redistribute it and/or modify
1885 +# it under the terms of the GNU General Public License as published by
1886 +# the Free Software Foundation; either version 2 of the License, or
1887 +# (at your option) any later version.
1888 +# 
1889 +# This program is distributed in the hope that it will be useful,
1890 +# but WITHOUT ANY WARRANTY; without even the implied warranty of
1891 +# MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
1892 +# GNU General Public License for more details.
1893 +# 
1894 +# You should have received a copy of the GNU General Public License
1895 +# along with this program.  If not, see <http://www.gnu.org/licenses/>.
1896 +
1897 +Policies to Select One among Multiple Writable Branches
1898 +----------------------------------------------------------------------
1899 +When the number of writable branch is more than one, aufs has to decide
1900 +the target branch for file creation or copy-up. By default, the highest
1901 +writable branch which has the parent (or ancestor) dir of the target
1902 +file is chosen (top-down-parent policy).
1903 +By user's request, aufs implements some other policies to select the
1904 +writable branch, for file creation several policies, round-robin,
1905 +most-free-space, and other policies. For copy-up, top-down-parent,
1906 +bottom-up-parent, bottom-up and others.
1907 +
1908 +As expected, the round-robin policy selects the branch in circular. When
1909 +you have two writable branches and creates 10 new files, 5 files will be
1910 +created for each branch. mkdir(2) systemcall is an exception. When you
1911 +create 10 new directories, all will be created on the same branch.
1912 +And the most-free-space policy selects the one which has most free
1913 +space among the writable branches. The amount of free space will be
1914 +checked by aufs internally, and users can specify its time interval.
1915 +
1916 +The policies for copy-up is more simple,
1917 +top-down-parent is equivalent to the same named on in create policy,
1918 +bottom-up-parent selects the writable branch where the parent dir
1919 +exists and the nearest upper one from the copyup-source,
1920 +bottom-up selects the nearest upper writable branch from the
1921 +copyup-source, regardless the existence of the parent dir.
1922 +
1923 +There are some rules or exceptions to apply these policies.
1924 +- If there is a readonly branch above the policy-selected branch and
1925 +  the parent dir is marked as opaque (a variation of whiteout), or the
1926 +  target (creating) file is whiteout-ed on the upper readonly branch,
1927 +  then the result of the policy is ignored and the target file will be
1928 +  created on the nearest upper writable branch than the readonly branch.
1929 +- If there is a writable branch above the policy-selected branch and
1930 +  the parent dir is marked as opaque or the target file is whiteouted
1931 +  on the branch, then the result of the policy is ignored and the target
1932 +  file will be created on the highest one among the upper writable
1933 +  branches who has diropq or whiteout. In case of whiteout, aufs removes
1934 +  it as usual.
1935 +- link(2) and rename(2) systemcalls are exceptions in every policy.
1936 +  They try selecting the branch where the source exists as possible
1937 +  since copyup a large file will take long time. If it can't be,
1938 +  ie. the branch where the source exists is readonly, then they will
1939 +  follow the copyup policy.
1940 +- There is an exception for rename(2) when the target exists.
1941 +  If the rename target exists, aufs compares the index of the branches
1942 +  where the source and the target exists and selects the higher
1943 +  one. If the selected branch is readonly, then aufs follows the
1944 +  copyup policy.
1945 diff -urN /usr/share/empty/Documentation/filesystems/aufs/design/06fhsm.txt linux/Documentation/filesystems/aufs/design/06fhsm.txt
1946 --- /usr/share/empty/Documentation/filesystems/aufs/design/06fhsm.txt   1970-01-01 01:00:00.000000000 +0100
1947 +++ linux/Documentation/filesystems/aufs/design/06fhsm.txt      2016-10-09 16:55:36.482701377 +0200
1948 @@ -0,0 +1,120 @@
1949 +
1950 +# Copyright (C) 2011-2016 Junjiro R. Okajima
1951 +# 
1952 +# This program is free software; you can redistribute it and/or modify
1953 +# it under the terms of the GNU General Public License as published by
1954 +# the Free Software Foundation; either version 2 of the License, or
1955 +# (at your option) any later version.
1956 +# 
1957 +# This program is distributed in the hope that it will be useful,
1958 +# but WITHOUT ANY WARRANTY; without even the implied warranty of
1959 +# MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
1960 +# GNU General Public License for more details.
1961 +# 
1962 +# You should have received a copy of the GNU General Public License
1963 +# along with this program; if not, write to the Free Software
1964 +# Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA  02110-1301  USA
1965 +
1966 +
1967 +File-based Hierarchical Storage Management (FHSM)
1968 +----------------------------------------------------------------------
1969 +Hierarchical Storage Management (or HSM) is a well-known feature in the
1970 +storage world. Aufs provides this feature as file-based with multiple
1971 +writable branches, based upon the principle of "Colder, the Lower".
1972 +Here the word "colder" means that the less used files, and "lower" means
1973 +that the position in the order of the stacked branches vertically.
1974 +These multiple writable branches are prioritized, ie. the topmost one
1975 +should be the fastest drive and be used heavily.
1976 +
1977 +o Characters in aufs FHSM story
1978 +- aufs itself and a new branch attribute.
1979 +- a new ioctl interface to move-down and to establish a connection with
1980 +  the daemon ("move-down" is a converse of "copy-up").
1981 +- userspace tool and daemon.
1982 +
1983 +The userspace daemon establishes a connection with aufs and waits for
1984 +the notification. The notified information is very similar to struct
1985 +statfs containing the number of consumed blocks and inodes.
1986 +When the consumed blocks/inodes of a branch exceeds the user-specified
1987 +upper watermark, the daemon activates its move-down process until the
1988 +consumed blocks/inodes reaches the user-specified lower watermark.
1989 +
1990 +The actual move-down is done by aufs based upon the request from
1991 +user-space since we need to maintain the inode number and the internal
1992 +pointer arrays in aufs.
1993 +
1994 +Currently aufs FHSM handles the regular files only. Additionally they
1995 +must not be hard-linked nor pseudo-linked.
1996 +
1997 +
1998 +o Cowork of aufs and the user-space daemon
1999 +  During the userspace daemon established the connection, aufs sends a
2000 +  small notification to it whenever aufs writes something into the
2001 +  writable branch. But it may cost high since aufs issues statfs(2)
2002 +  internally. So user can specify a new option to cache the
2003 +  info. Actually the notification is controlled by these factors.
2004 +  + the specified cache time.
2005 +  + classified as "force" by aufs internally.
2006 +  Until the specified time expires, aufs doesn't send the info
2007 +  except the forced cases. When aufs decide forcing, the info is always
2008 +  notified to userspace.
2009 +  For example, the number of free inodes is generally large enough and
2010 +  the shortage of it happens rarely. So aufs doesn't force the
2011 +  notification when creating a new file, directory and others. This is
2012 +  the typical case which aufs doesn't force.
2013 +  When aufs writes the actual filedata and the files consumes any of new
2014 +  blocks, the aufs forces notifying.
2015 +
2016 +
2017 +o Interfaces in aufs
2018 +- New branch attribute.
2019 +  + fhsm
2020 +    Specifies that the branch is managed by FHSM feature. In other word,
2021 +    participant in the FHSM.
2022 +    When nofhsm is set to the branch, it will not be the source/target
2023 +    branch of the move-down operation. This attribute is set
2024 +    independently from coo and moo attributes, and if you want full
2025 +    FHSM, you should specify them as well.
2026 +- New mount option.
2027 +  + fhsm_sec
2028 +    Specifies a second to suppress many less important info to be
2029 +    notified.
2030 +- New ioctl.
2031 +  + AUFS_CTL_FHSM_FD
2032 +    create a new file descriptor which userspace can read the notification
2033 +    (a subset of struct statfs) from aufs.
2034 +- Module parameter 'brs'
2035 +  It has to be set to 1. Otherwise the new mount option 'fhsm' will not
2036 +  be set.
2037 +- mount helpers /sbin/mount.aufs and /sbin/umount.aufs
2038 +  When there are two or more branches with fhsm attributes,
2039 +  /sbin/mount.aufs invokes the user-space daemon and /sbin/umount.aufs
2040 +  terminates it. As a result of remounting and branch-manipulation, the
2041 +  number of branches with fhsm attribute can be one. In this case,
2042 +  /sbin/mount.aufs will terminate the user-space daemon.
2043 +
2044 +
2045 +Finally the operation is done as these steps in kernel-space.
2046 +- make sure that,
2047 +  + no one else is using the file.
2048 +  + the file is not hard-linked.
2049 +  + the file is not pseudo-linked.
2050 +  + the file is a regular file.
2051 +  + the parent dir is not opaqued.
2052 +- find the target writable branch.
2053 +- make sure the file is not whiteout-ed by the upper (than the target)
2054 +  branch.
2055 +- make the parent dir on the target branch.
2056 +- mutex lock the inode on the branch.
2057 +- unlink the whiteout on the target branch (if exists).
2058 +- lookup and create the whiteout-ed temporary name on the target branch.
2059 +- copy the file as the whiteout-ed temporary name on the target branch.
2060 +- rename the whiteout-ed temporary name to the original name.
2061 +- unlink the file on the source branch.
2062 +- maintain the internal pointer array and the external inode number
2063 +  table (XINO).
2064 +- maintain the timestamps and other attributes of the parent dir and the
2065 +  file.
2066 +
2067 +And of course, in every step, an error may happen. So the operation
2068 +should restore the original file state after an error happens.
2069 diff -urN /usr/share/empty/Documentation/filesystems/aufs/design/06mmap.txt linux/Documentation/filesystems/aufs/design/06mmap.txt
2070 --- /usr/share/empty/Documentation/filesystems/aufs/design/06mmap.txt   1970-01-01 01:00:00.000000000 +0100
2071 +++ linux/Documentation/filesystems/aufs/design/06mmap.txt      2016-10-09 16:55:36.482701377 +0200
2072 @@ -0,0 +1,72 @@
2073 +
2074 +# Copyright (C) 2005-2016 Junjiro R. Okajima
2075 +# 
2076 +# This program is free software; you can redistribute it and/or modify
2077 +# it under the terms of the GNU General Public License as published by
2078 +# the Free Software Foundation; either version 2 of the License, or
2079 +# (at your option) any later version.
2080 +# 
2081 +# This program is distributed in the hope that it will be useful,
2082 +# but WITHOUT ANY WARRANTY; without even the implied warranty of
2083 +# MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
2084 +# GNU General Public License for more details.
2085 +# 
2086 +# You should have received a copy of the GNU General Public License
2087 +# along with this program.  If not, see <http://www.gnu.org/licenses/>.
2088 +
2089 +mmap(2) -- File Memory Mapping
2090 +----------------------------------------------------------------------
2091 +In aufs, the file-mapped pages are handled by a branch fs directly, no
2092 +interaction with aufs. It means aufs_mmap() calls the branch fs's
2093 +->mmap().
2094 +This approach is simple and good, but there is one problem.
2095 +Under /proc, several entries show the mmapped files by its path (with
2096 +device and inode number), and the printed path will be the path on the
2097 +branch fs's instead of virtual aufs's.
2098 +This is not a problem in most cases, but some utilities lsof(1) (and its
2099 +user) may expect the path on aufs.
2100 +
2101 +To address this issue, aufs adds a new member called vm_prfile in struct
2102 +vm_area_struct (and struct vm_region). The original vm_file points to
2103 +the file on the branch fs in order to handle everything correctly as
2104 +usual. The new vm_prfile points to a virtual file in aufs, and the
2105 +show-functions in procfs refers to vm_prfile if it is set.
2106 +Also we need to maintain several other places where touching vm_file
2107 +such like
2108 +- fork()/clone() copies vma and the reference count of vm_file is
2109 +  incremented.
2110 +- merging vma maintains the ref count too.
2111 +
2112 +This is not a good approach. It just fakes the printed path. But it
2113 +leaves all behaviour around f_mapping unchanged. This is surely an
2114 +advantage.
2115 +Actually aufs had adopted another complicated approach which calls
2116 +generic_file_mmap() and handles struct vm_operations_struct. In this
2117 +approach, aufs met a hard problem and I could not solve it without
2118 +switching the approach.
2119 +
2120 +There may be one more another approach which is
2121 +- bind-mount the branch-root onto the aufs-root internally
2122 +- grab the new vfsmount (ie. struct mount)
2123 +- lazy-umount the branch-root internally
2124 +- in open(2) the aufs-file, open the branch-file with the hidden
2125 +  vfsmount (instead of the original branch's vfsmount)
2126 +- ideally this "bind-mount and lazy-umount" should be done atomically,
2127 +  but it may be possible from userspace by the mount helper.
2128 +
2129 +Adding the internal hidden vfsmount and using it in opening a file, the
2130 +file path under /proc will be printed correctly. This approach looks
2131 +smarter, but is not possible I am afraid.
2132 +- aufs-root may be bind-mount later. when it happens, another hidden
2133 +  vfsmount will be required.
2134 +- it is hard to get the chance to bind-mount and lazy-umount
2135 +  + in kernel-space, FS can have vfsmount in open(2) via
2136 +    file->f_path, and aufs can know its vfsmount. But several locks are
2137 +    already acquired, and if aufs tries to bind-mount and lazy-umount
2138 +    here, then it may cause a deadlock.
2139 +  + in user-space, bind-mount doesn't invoke the mount helper.
2140 +- since /proc shows dev and ino, aufs has to give vma these info. it
2141 +  means a new member vm_prinode will be necessary. this is essentially
2142 +  equivalent to vm_prfile described above.
2143 +
2144 +I have to give up this "looks-smater" approach.
2145 diff -urN /usr/share/empty/Documentation/filesystems/aufs/design/06xattr.txt linux/Documentation/filesystems/aufs/design/06xattr.txt
2146 --- /usr/share/empty/Documentation/filesystems/aufs/design/06xattr.txt  1970-01-01 01:00:00.000000000 +0100
2147 +++ linux/Documentation/filesystems/aufs/design/06xattr.txt     2016-10-09 16:55:36.482701377 +0200
2148 @@ -0,0 +1,96 @@
2149 +
2150 +# Copyright (C) 2014-2016 Junjiro R. Okajima
2151 +#
2152 +# This program is free software; you can redistribute it and/or modify
2153 +# it under the terms of the GNU General Public License as published by
2154 +# the Free Software Foundation; either version 2 of the License, or
2155 +# (at your option) any later version.
2156 +#
2157 +# This program is distributed in the hope that it will be useful,
2158 +# but WITHOUT ANY WARRANTY; without even the implied warranty of
2159 +# MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
2160 +# GNU General Public License for more details.
2161 +#
2162 +# You should have received a copy of the GNU General Public License
2163 +# along with this program; if not, write to the Free Software
2164 +# Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA  02110-1301  USA
2165 +
2166 +
2167 +Listing XATTR/EA and getting the value
2168 +----------------------------------------------------------------------
2169 +For the inode standard attributes (owner, group, timestamps, etc.), aufs
2170 +shows the values from the topmost existing file. This behaviour is good
2171 +for the non-dir entries since the bahaviour exactly matches the shown
2172 +information. But for the directories, aufs considers all the same named
2173 +entries on the lower branches. Which means, if one of the lower entry
2174 +rejects readdir call, then aufs returns an error even if the topmost
2175 +entry allows it. This behaviour is necessary to respect the branch fs's
2176 +security, but can make users confused since the user-visible standard
2177 +attributes don't match the behaviour.
2178 +To address this issue, aufs has a mount option called dirperm1 which
2179 +checks the permission for the topmost entry only, and ignores the lower
2180 +entry's permission.
2181 +
2182 +A similar issue can happen around XATTR.
2183 +getxattr(2) and listxattr(2) families behave as if dirperm1 option is
2184 +always set. Otherwise these very unpleasant situation would happen.
2185 +- listxattr(2) may return the duplicated entries.
2186 +- users may not be able to remove or reset the XATTR forever,
2187 +
2188 +
2189 +XATTR/EA support in the internal (copy,move)-(up,down)
2190 +----------------------------------------------------------------------
2191 +Generally the extended attributes of inode are categorized as these.
2192 +- "security" for LSM and capability.
2193 +- "system" for posix ACL, 'acl' mount option is required for the branch
2194 +  fs generally.
2195 +- "trusted" for userspace, CAP_SYS_ADMIN is required.
2196 +- "user" for userspace, 'user_xattr' mount option is required for the
2197 +  branch fs generally.
2198 +
2199 +Moreover there are some other categories. Aufs handles these rather
2200 +unpopular categories as the ordinary ones, ie. there is no special
2201 +condition nor exception.
2202 +
2203 +In copy-up, the support for XATTR on the dst branch may differ from the
2204 +src branch. In this case, the copy-up operation will get an error and
2205 +the original user operation which triggered the copy-up will fail. It
2206 +can happen that even all copy-up will fail.
2207 +When both of src and dst branches support XATTR and if an error occurs
2208 +during copying XATTR, then the copy-up should fail obviously. That is a
2209 +good reason and aufs should return an error to userspace. But when only
2210 +the src branch support that XATTR, aufs should not return an error.
2211 +For example, the src branch supports ACL but the dst branch doesn't
2212 +because the dst branch may natively un-support it or temporary
2213 +un-support it due to "noacl" mount option. Of course, the dst branch fs
2214 +may NOT return an error even if the XATTR is not supported. It is
2215 +totally up to the branch fs.
2216 +
2217 +Anyway when the aufs internal copy-up gets an error from the dst branch
2218 +fs, then aufs tries removing the just copied entry and returns the error
2219 +to the userspace. The worst case of this situation will be all copy-up
2220 +will fail.
2221 +
2222 +For the copy-up operation, there two basic approaches.
2223 +- copy the specified XATTR only (by category above), and return the
2224 +  error unconditionally if it happens.
2225 +- copy all XATTR, and ignore the error on the specified category only.
2226 +
2227 +In order to support XATTR and to implement the correct behaviour, aufs
2228 +chooses the latter approach and introduces some new branch attributes,
2229 +"icexsec", "icexsys", "icextr", "icexusr", and "icexoth".
2230 +They correspond to the XATTR namespaces (see above). Additionally, to be
2231 +convenient, "icex" is also provided which means all "icex*" attributes
2232 +are set (here the word "icex" stands for "ignore copy-error on XATTR").
2233 +
2234 +The meaning of these attributes is to ignore the error from setting
2235 +XATTR on that branch.
2236 +Note that aufs tries copying all XATTR unconditionally, and ignores the
2237 +error from the dst branch according to the specified attributes.
2238 +
2239 +Some XATTR may have its default value. The default value may come from
2240 +the parent dir or the environment. If the default value is set at the
2241 +file creating-time, it will be overwritten by copy-up.
2242 +Some contradiction may happen I am afraid.
2243 +Do we need another attribute to stop copying XATTR? I am unsure. For
2244 +now, aufs implements the branch attributes to ignore the error.
2245 diff -urN /usr/share/empty/Documentation/filesystems/aufs/design/07export.txt linux/Documentation/filesystems/aufs/design/07export.txt
2246 --- /usr/share/empty/Documentation/filesystems/aufs/design/07export.txt 1970-01-01 01:00:00.000000000 +0100
2247 +++ linux/Documentation/filesystems/aufs/design/07export.txt    2016-10-09 16:55:36.482701377 +0200
2248 @@ -0,0 +1,58 @@
2249 +
2250 +# Copyright (C) 2005-2016 Junjiro R. Okajima
2251 +# 
2252 +# This program is free software; you can redistribute it and/or modify
2253 +# it under the terms of the GNU General Public License as published by
2254 +# the Free Software Foundation; either version 2 of the License, or
2255 +# (at your option) any later version.
2256 +# 
2257 +# This program is distributed in the hope that it will be useful,
2258 +# but WITHOUT ANY WARRANTY; without even the implied warranty of
2259 +# MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
2260 +# GNU General Public License for more details.
2261 +# 
2262 +# You should have received a copy of the GNU General Public License
2263 +# along with this program.  If not, see <http://www.gnu.org/licenses/>.
2264 +
2265 +Export Aufs via NFS
2266 +----------------------------------------------------------------------
2267 +Here is an approach.
2268 +- like xino/xib, add a new file 'xigen' which stores aufs inode
2269 +  generation.
2270 +- iget_locked(): initialize aufs inode generation for a new inode, and
2271 +  store it in xigen file.
2272 +- destroy_inode(): increment aufs inode generation and store it in xigen
2273 +  file. it is necessary even if it is not unlinked, because any data of
2274 +  inode may be changed by UDBA.
2275 +- encode_fh(): for a root dir, simply return FILEID_ROOT. otherwise
2276 +  build file handle by
2277 +  + branch id (4 bytes)
2278 +  + superblock generation (4 bytes)
2279 +  + inode number (4 or 8 bytes)
2280 +  + parent dir inode number (4 or 8 bytes)
2281 +  + inode generation (4 bytes))
2282 +  + return value of exportfs_encode_fh() for the parent on a branch (4
2283 +    bytes)
2284 +  + file handle for a branch (by exportfs_encode_fh())
2285 +- fh_to_dentry():
2286 +  + find the index of a branch from its id in handle, and check it is
2287 +    still exist in aufs.
2288 +  + 1st level: get the inode number from handle and search it in cache.
2289 +  + 2nd level: if not found in cache, get the parent inode number from
2290 +    the handle and search it in cache. and then open the found parent
2291 +    dir, find the matching inode number by vfs_readdir() and get its
2292 +    name, and call lookup_one_len() for the target dentry.
2293 +  + 3rd level: if the parent dir is not cached, call
2294 +    exportfs_decode_fh() for a branch and get the parent on a branch,
2295 +    build a pathname of it, convert it a pathname in aufs, call
2296 +    path_lookup(). now aufs gets a parent dir dentry, then handle it as
2297 +    the 2nd level.
2298 +  + to open the dir, aufs needs struct vfsmount. aufs keeps vfsmount
2299 +    for every branch, but not itself. to get this, (currently) aufs
2300 +    searches in current->nsproxy->mnt_ns list. it may not be a good
2301 +    idea, but I didn't get other approach.
2302 +  + test the generation of the gotten inode.
2303 +- every inode operation: they may get EBUSY due to UDBA. in this case,
2304 +  convert it into ESTALE for NFSD.
2305 +- readdir(): call lockdep_on/off() because filldir in NFSD calls
2306 +  lookup_one_len(), vfs_getattr(), encode_fh() and others.
2307 diff -urN /usr/share/empty/Documentation/filesystems/aufs/design/08shwh.txt linux/Documentation/filesystems/aufs/design/08shwh.txt
2308 --- /usr/share/empty/Documentation/filesystems/aufs/design/08shwh.txt   1970-01-01 01:00:00.000000000 +0100
2309 +++ linux/Documentation/filesystems/aufs/design/08shwh.txt      2016-10-09 16:55:36.482701377 +0200
2310 @@ -0,0 +1,52 @@
2311 +
2312 +# Copyright (C) 2005-2016 Junjiro R. Okajima
2313 +# 
2314 +# This program is free software; you can redistribute it and/or modify
2315 +# it under the terms of the GNU General Public License as published by
2316 +# the Free Software Foundation; either version 2 of the License, or
2317 +# (at your option) any later version.
2318 +# 
2319 +# This program is distributed in the hope that it will be useful,
2320 +# but WITHOUT ANY WARRANTY; without even the implied warranty of
2321 +# MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
2322 +# GNU General Public License for more details.
2323 +# 
2324 +# You should have received a copy of the GNU General Public License
2325 +# along with this program.  If not, see <http://www.gnu.org/licenses/>.
2326 +
2327 +Show Whiteout Mode (shwh)
2328 +----------------------------------------------------------------------
2329 +Generally aufs hides the name of whiteouts. But in some cases, to show
2330 +them is very useful for users. For instance, creating a new middle layer
2331 +(branch) by merging existing layers.
2332 +
2333 +(borrowing aufs1 HOW-TO from a user, Michael Towers)
2334 +When you have three branches,
2335 +- Bottom: 'system', squashfs (underlying base system), read-only
2336 +- Middle: 'mods', squashfs, read-only
2337 +- Top: 'overlay', ram (tmpfs), read-write
2338 +
2339 +The top layer is loaded at boot time and saved at shutdown, to preserve
2340 +the changes made to the system during the session.
2341 +When larger changes have been made, or smaller changes have accumulated,
2342 +the size of the saved top layer data grows. At this point, it would be
2343 +nice to be able to merge the two overlay branches ('mods' and 'overlay')
2344 +and rewrite the 'mods' squashfs, clearing the top layer and thus
2345 +restoring save and load speed.
2346 +
2347 +This merging is simplified by the use of another aufs mount, of just the
2348 +two overlay branches using the 'shwh' option.
2349 +# mount -t aufs -o ro,shwh,br:/livesys/overlay=ro+wh:/livesys/mods=rr+wh \
2350 +       aufs /livesys/merge_union
2351 +
2352 +A merged view of these two branches is then available at
2353 +/livesys/merge_union, and the new feature is that the whiteouts are
2354 +visible!
2355 +Note that in 'shwh' mode the aufs mount must be 'ro', which will disable
2356 +writing to all branches. Also the default mode for all branches is 'ro'.
2357 +It is now possible to save the combined contents of the two overlay
2358 +branches to a new squashfs, e.g.:
2359 +# mksquashfs /livesys/merge_union /path/to/newmods.squash
2360 +
2361 +This new squashfs archive can be stored on the boot device and the
2362 +initramfs will use it to replace the old one at the next boot.
2363 diff -urN /usr/share/empty/Documentation/filesystems/aufs/design/10dynop.txt linux/Documentation/filesystems/aufs/design/10dynop.txt
2364 --- /usr/share/empty/Documentation/filesystems/aufs/design/10dynop.txt  1970-01-01 01:00:00.000000000 +0100
2365 +++ linux/Documentation/filesystems/aufs/design/10dynop.txt     2016-10-09 16:55:36.482701377 +0200
2366 @@ -0,0 +1,47 @@
2367 +
2368 +# Copyright (C) 2010-2016 Junjiro R. Okajima
2369 +#
2370 +# This program is free software; you can redistribute it and/or modify
2371 +# it under the terms of the GNU General Public License as published by
2372 +# the Free Software Foundation; either version 2 of the License, or
2373 +# (at your option) any later version.
2374 +#
2375 +# This program is distributed in the hope that it will be useful,
2376 +# but WITHOUT ANY WARRANTY; without even the implied warranty of
2377 +# MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
2378 +# GNU General Public License for more details.
2379 +#
2380 +# You should have received a copy of the GNU General Public License
2381 +# along with this program.  If not, see <http://www.gnu.org/licenses/>.
2382 +
2383 +Dynamically customizable FS operations
2384 +----------------------------------------------------------------------
2385 +Generally FS operations (struct inode_operations, struct
2386 +address_space_operations, struct file_operations, etc.) are defined as
2387 +"static const", but it never means that FS have only one set of
2388 +operation. Some FS have multiple sets of them. For instance, ext2 has
2389 +three sets, one for XIP, for NOBH, and for normal.
2390 +Since aufs overrides and redirects these operations, sometimes aufs has
2391 +to change its behaviour according to the branch FS type. More importantly
2392 +VFS acts differently if a function (member in the struct) is set or
2393 +not. It means aufs should have several sets of operations and select one
2394 +among them according to the branch FS definition.
2395 +
2396 +In order to solve this problem and not to affect the behaviour of VFS,
2397 +aufs defines these operations dynamically. For instance, aufs defines
2398 +dummy direct_IO function for struct address_space_operations, but it may
2399 +not be set to the address_space_operations actually. When the branch FS
2400 +doesn't have it, aufs doesn't set it to its address_space_operations
2401 +while the function definition itself is still alive. So the behaviour
2402 +itself will not change, and it will return an error when direct_IO is
2403 +not set.
2404 +
2405 +The lifetime of these dynamically generated operation object is
2406 +maintained by aufs branch object. When the branch is removed from aufs,
2407 +the reference counter of the object is decremented. When it reaches
2408 +zero, the dynamically generated operation object will be freed.
2409 +
2410 +This approach is designed to support AIO (io_submit), Direct I/O and
2411 +XIP (DAX) mainly.
2412 +Currently this approach is applied to address_space_operations for
2413 +regular files only.
2414 diff -urN /usr/share/empty/Documentation/filesystems/aufs/README linux/Documentation/filesystems/aufs/README
2415 --- /usr/share/empty/Documentation/filesystems/aufs/README      1970-01-01 01:00:00.000000000 +0100
2416 +++ linux/Documentation/filesystems/aufs/README 2016-12-17 12:28:17.595211562 +0100
2417 @@ -0,0 +1,393 @@
2418 +
2419 +Aufs4 -- advanced multi layered unification filesystem version 4.x
2420 +http://aufs.sf.net
2421 +Junjiro R. Okajima
2422 +
2423 +
2424 +0. Introduction
2425 +----------------------------------------
2426 +In the early days, aufs was entirely re-designed and re-implemented
2427 +Unionfs Version 1.x series. Adding many original ideas, approaches,
2428 +improvements and implementations, it becomes totally different from
2429 +Unionfs while keeping the basic features.
2430 +Recently, Unionfs Version 2.x series begin taking some of the same
2431 +approaches to aufs1's.
2432 +Unionfs is being developed by Professor Erez Zadok at Stony Brook
2433 +University and his team.
2434 +
2435 +Aufs4 supports linux-4.0 and later, and for linux-3.x series try aufs3.
2436 +If you want older kernel version support, try aufs2-2.6.git or
2437 +aufs2-standalone.git repository, aufs1 from CVS on SourceForge.
2438 +
2439 +Note: it becomes clear that "Aufs was rejected. Let's give it up."
2440 +      According to Christoph Hellwig, linux rejects all union-type
2441 +      filesystems but UnionMount.
2442 +<http://marc.info/?l=linux-kernel&m=123938533724484&w=2>
2443 +
2444 +PS. Al Viro seems have a plan to merge aufs as well as overlayfs and
2445 +    UnionMount, and he pointed out an issue around a directory mutex
2446 +    lock and aufs addressed it. But it is still unsure whether aufs will
2447 +    be merged (or any other union solution).
2448 +<http://marc.info/?l=linux-kernel&m=136312705029295&w=1>
2449 +
2450 +
2451 +1. Features
2452 +----------------------------------------
2453 +- unite several directories into a single virtual filesystem. The member
2454 +  directory is called as a branch.
2455 +- you can specify the permission flags to the branch, which are 'readonly',
2456 +  'readwrite' and 'whiteout-able.'
2457 +- by upper writable branch, internal copyup and whiteout, files/dirs on
2458 +  readonly branch are modifiable logically.
2459 +- dynamic branch manipulation, add, del.
2460 +- etc...
2461 +
2462 +Also there are many enhancements in aufs, such as:
2463 +- test only the highest one for the directory permission (dirperm1)
2464 +- copyup on open (coo=)
2465 +- 'move' policy for copy-up between two writable branches, after
2466 +  checking free space.
2467 +- xattr, acl
2468 +- readdir(3) in userspace.
2469 +- keep inode number by external inode number table
2470 +- keep the timestamps of file/dir in internal copyup operation
2471 +- seekable directory, supporting NFS readdir.
2472 +- whiteout is hardlinked in order to reduce the consumption of inodes
2473 +  on branch
2474 +- do not copyup, nor create a whiteout when it is unnecessary
2475 +- revert a single systemcall when an error occurs in aufs
2476 +- remount interface instead of ioctl
2477 +- maintain /etc/mtab by an external command, /sbin/mount.aufs.
2478 +- loopback mounted filesystem as a branch
2479 +- kernel thread for removing the dir who has a plenty of whiteouts
2480 +- support copyup sparse file (a file which has a 'hole' in it)
2481 +- default permission flags for branches
2482 +- selectable permission flags for ro branch, whether whiteout can
2483 +  exist or not
2484 +- export via NFS.
2485 +- support <sysfs>/fs/aufs and <debugfs>/aufs.
2486 +- support multiple writable branches, some policies to select one
2487 +  among multiple writable branches.
2488 +- a new semantics for link(2) and rename(2) to support multiple
2489 +  writable branches.
2490 +- no glibc changes are required.
2491 +- pseudo hardlink (hardlink over branches)
2492 +- allow a direct access manually to a file on branch, e.g. bypassing aufs.
2493 +  including NFS or remote filesystem branch.
2494 +- userspace wrapper for pathconf(3)/fpathconf(3) with _PC_LINK_MAX.
2495 +- and more...
2496 +
2497 +Currently these features are dropped temporary from aufs4.
2498 +See design/08plan.txt in detail.
2499 +- nested mount, i.e. aufs as readonly no-whiteout branch of another aufs
2500 +  (robr)
2501 +- statistics of aufs thread (/sys/fs/aufs/stat)
2502 +
2503 +Features or just an idea in the future (see also design/*.txt),
2504 +- reorder the branch index without del/re-add.
2505 +- permanent xino files for NFSD
2506 +- an option for refreshing the opened files after add/del branches
2507 +- light version, without branch manipulation. (unnecessary?)
2508 +- copyup in userspace
2509 +- inotify in userspace
2510 +- readv/writev
2511 +
2512 +
2513 +2. Download
2514 +----------------------------------------
2515 +There are three GIT trees for aufs4, aufs4-linux.git,
2516 +aufs4-standalone.git, and aufs-util.git. Note that there is no "4" in
2517 +"aufs-util.git."
2518 +While the aufs-util is always necessary, you need either of aufs4-linux
2519 +or aufs4-standalone.
2520 +
2521 +The aufs4-linux tree includes the whole linux mainline GIT tree,
2522 +git://git.kernel.org/.../torvalds/linux.git.
2523 +And you cannot select CONFIG_AUFS_FS=m for this version, eg. you cannot
2524 +build aufs4 as an external kernel module.
2525 +Several extra patches are not included in this tree. Only
2526 +aufs4-standalone tree contains them. They are described in the later
2527 +section "Configuration and Compilation."
2528 +
2529 +On the other hand, the aufs4-standalone tree has only aufs source files
2530 +and necessary patches, and you can select CONFIG_AUFS_FS=m.
2531 +But you need to apply all aufs patches manually.
2532 +
2533 +You will find GIT branches whose name is in form of "aufs4.x" where "x"
2534 +represents the linux kernel version, "linux-4.x". For instance,
2535 +"aufs4.0" is for linux-4.0. For latest "linux-4.x-rcN", use
2536 +"aufs4.x-rcN" branch.
2537 +
2538 +o aufs4-linux tree
2539 +$ git clone --reference /your/linux/git/tree \
2540 +       git://github.com/sfjro/aufs4-linux.git aufs4-linux.git
2541 +- if you don't have linux GIT tree, then remove "--reference ..."
2542 +$ cd aufs4-linux.git
2543 +$ git checkout origin/aufs4.0
2544 +
2545 +Or You may want to directly git-pull aufs into your linux GIT tree, and
2546 +leave the patch-work to GIT.
2547 +$ cd /your/linux/git/tree
2548 +$ git remote add aufs4 git://github.com/sfjro/aufs4-linux.git
2549 +$ git fetch aufs4
2550 +$ git checkout -b my4.0 v4.0
2551 +$ (add your local change...)
2552 +$ git pull aufs4 aufs4.0
2553 +- now you have v4.0 + your_changes + aufs4.0 in you my4.0 branch.
2554 +- you may need to solve some conflicts between your_changes and
2555 +  aufs4.0. in this case, git-rerere is recommended so that you can
2556 +  solve the similar conflicts automatically when you upgrade to 4.1 or
2557 +  later in the future.
2558 +
2559 +o aufs4-standalone tree
2560 +$ git clone git://github.com/sfjro/aufs4-standalone.git aufs4-standalone.git
2561 +$ cd aufs4-standalone.git
2562 +$ git checkout origin/aufs4.0
2563 +
2564 +o aufs-util tree
2565 +$ git clone git://git.code.sf.net/p/aufs/aufs-util aufs-util.git
2566 +- note that the public aufs-util.git is on SourceForge instead of
2567 +  GitHUB.
2568 +$ cd aufs-util.git
2569 +$ git checkout origin/aufs4.0
2570 +
2571 +Note: The 4.x-rcN branch is to be used with `rc' kernel versions ONLY.
2572 +The minor version number, 'x' in '4.x', of aufs may not always
2573 +follow the minor version number of the kernel.
2574 +Because changes in the kernel that cause the use of a new
2575 +minor version number do not always require changes to aufs-util.
2576 +
2577 +Since aufs-util has its own minor version number, you may not be
2578 +able to find a GIT branch in aufs-util for your kernel's
2579 +exact minor version number.
2580 +In this case, you should git-checkout the branch for the
2581 +nearest lower number.
2582 +
2583 +For (an unreleased) example:
2584 +If you are using "linux-4.10" and the "aufs4.10" branch
2585 +does not exist in aufs-util repository, then "aufs4.9", "aufs4.8"
2586 +or something numerically smaller is the branch for your kernel.
2587 +
2588 +Also you can view all branches by
2589 +       $ git branch -a
2590 +
2591 +
2592 +3. Configuration and Compilation
2593 +----------------------------------------
2594 +Make sure you have git-checkout'ed the correct branch.
2595 +
2596 +For aufs4-linux tree,
2597 +- enable CONFIG_AUFS_FS.
2598 +- set other aufs configurations if necessary.
2599 +
2600 +For aufs4-standalone tree,
2601 +There are several ways to build.
2602 +
2603 +1.
2604 +- apply ./aufs4-kbuild.patch to your kernel source files.
2605 +- apply ./aufs4-base.patch too.
2606 +- apply ./aufs4-mmap.patch too.
2607 +- apply ./aufs4-standalone.patch too, if you have a plan to set
2608 +  CONFIG_AUFS_FS=m. otherwise you don't need ./aufs4-standalone.patch.
2609 +- copy ./{Documentation,fs,include/uapi/linux/aufs_type.h} files to your
2610 +  kernel source tree. Never copy $PWD/include/uapi/linux/Kbuild.
2611 +- enable CONFIG_AUFS_FS, you can select either
2612 +  =m or =y.
2613 +- and build your kernel as usual.
2614 +- install the built kernel.
2615 +  Note: Since linux-3.9, every filesystem module requires an alias
2616 +  "fs-<fsname>". You should make sure that "fs-aufs" is listed in your
2617 +  modules.aliases file if you set CONFIG_AUFS_FS=m.
2618 +- install the header files too by "make headers_install" to the
2619 +  directory where you specify. By default, it is $PWD/usr.
2620 +  "make help" shows a brief note for headers_install.
2621 +- and reboot your system.
2622 +
2623 +2.
2624 +- module only (CONFIG_AUFS_FS=m).
2625 +- apply ./aufs4-base.patch to your kernel source files.
2626 +- apply ./aufs4-mmap.patch too.
2627 +- apply ./aufs4-standalone.patch too.
2628 +- build your kernel, don't forget "make headers_install", and reboot.
2629 +- edit ./config.mk and set other aufs configurations if necessary.
2630 +  Note: You should read $PWD/fs/aufs/Kconfig carefully which describes
2631 +  every aufs configurations.
2632 +- build the module by simple "make".
2633 +  Note: Since linux-3.9, every filesystem module requires an alias
2634 +  "fs-<fsname>". You should make sure that "fs-aufs" is listed in your
2635 +  modules.aliases file.
2636 +- you can specify ${KDIR} make variable which points to your kernel
2637 +  source tree.
2638 +- install the files
2639 +  + run "make install" to install the aufs module, or copy the built
2640 +    $PWD/aufs.ko to /lib/modules/... and run depmod -a (or reboot simply).
2641 +  + run "make install_headers" (instead of headers_install) to install
2642 +    the modified aufs header file (you can specify DESTDIR which is
2643 +    available in aufs standalone version's Makefile only), or copy
2644 +    $PWD/usr/include/linux/aufs_type.h to /usr/include/linux or wherever
2645 +    you like manually. By default, the target directory is $PWD/usr.
2646 +- no need to apply aufs4-kbuild.patch, nor copying source files to your
2647 +  kernel source tree.
2648 +
2649 +Note: The header file aufs_type.h is necessary to build aufs-util
2650 +      as well as "make headers_install" in the kernel source tree.
2651 +      headers_install is subject to be forgotten, but it is essentially
2652 +      necessary, not only for building aufs-util.
2653 +      You may not meet problems without headers_install in some older
2654 +      version though.
2655 +
2656 +And then,
2657 +- read README in aufs-util, build and install it
2658 +- note that your distribution may contain an obsoleted version of
2659 +  aufs_type.h in /usr/include/linux or something. When you build aufs
2660 +  utilities, make sure that your compiler refers the correct aufs header
2661 +  file which is built by "make headers_install."
2662 +- if you want to use readdir(3) in userspace or pathconf(3) wrapper,
2663 +  then run "make install_ulib" too. And refer to the aufs manual in
2664 +  detail.
2665 +
2666 +There several other patches in aufs4-standalone.git. They are all
2667 +optional. When you meet some problems, they will help you.
2668 +- aufs4-loopback.patch
2669 +  Supports a nested loopback mount in a branch-fs. This patch is
2670 +  unnecessary until aufs produces a message like "you may want to try
2671 +  another patch for loopback file".
2672 +- vfs-ino.patch
2673 +  Modifies a system global kernel internal function get_next_ino() in
2674 +  order to stop assigning 0 for an inode-number. Not directly related to
2675 +  aufs, but recommended generally.
2676 +- tmpfs-idr.patch
2677 +  Keeps the tmpfs inode number as the lowest value. Effective to reduce
2678 +  the size of aufs XINO files for tmpfs branch. Also it prevents the
2679 +  duplication of inode number, which is important for backup tools and
2680 +  other utilities. When you find aufs XINO files for tmpfs branch
2681 +  growing too much, try this patch.
2682 +- lockdep-debug.patch
2683 +  Because aufs is not only an ordinary filesystem (callee of VFS), but
2684 +  also a caller of VFS functions for branch filesystems, subclassing of
2685 +  the internal locks for LOCKDEP is necessary. LOCKDEP is a debugging
2686 +  feature of linux kernel. If you enable CONFIG_LOCKDEP, then you will
2687 +  need to apply this debug patch to expand several constant values.
2688 +  If don't know what LOCKDEP, then you don't have apply this patch.
2689 +
2690 +
2691 +4. Usage
2692 +----------------------------------------
2693 +At first, make sure aufs-util are installed, and please read the aufs
2694 +manual, aufs.5 in aufs-util.git tree.
2695 +$ man -l aufs.5
2696 +
2697 +And then,
2698 +$ mkdir /tmp/rw /tmp/aufs
2699 +# mount -t aufs -o br=/tmp/rw:${HOME} none /tmp/aufs
2700 +
2701 +Here is another example. The result is equivalent.
2702 +# mount -t aufs -o br=/tmp/rw=rw:${HOME}=ro none /tmp/aufs
2703 +  Or
2704 +# mount -t aufs -o br:/tmp/rw none /tmp/aufs
2705 +# mount -o remount,append:${HOME} /tmp/aufs
2706 +
2707 +Then, you can see whole tree of your home dir through /tmp/aufs. If
2708 +you modify a file under /tmp/aufs, the one on your home directory is
2709 +not affected, instead the same named file will be newly created under
2710 +/tmp/rw. And all of your modification to a file will be applied to
2711 +the one under /tmp/rw. This is called the file based Copy on Write
2712 +(COW) method.
2713 +Aufs mount options are described in aufs.5.
2714 +If you run chroot or something and make your aufs as a root directory,
2715 +then you need to customize the shutdown script. See the aufs manual in
2716 +detail.
2717 +
2718 +Additionally, there are some sample usages of aufs which are a
2719 +diskless system with network booting, and LiveCD over NFS.
2720 +See sample dir in CVS tree on SourceForge.
2721 +
2722 +
2723 +5. Contact
2724 +----------------------------------------
2725 +When you have any problems or strange behaviour in aufs, please let me
2726 +know with:
2727 +- /proc/mounts (instead of the output of mount(8))
2728 +- /sys/module/aufs/*
2729 +- /sys/fs/aufs/* (if you have them)
2730 +- /debug/aufs/* (if you have them)
2731 +- linux kernel version
2732 +  if your kernel is not plain, for example modified by distributor,
2733 +  the url where i can download its source is necessary too.
2734 +- aufs version which was printed at loading the module or booting the
2735 +  system, instead of the date you downloaded.
2736 +- configuration (define/undefine CONFIG_AUFS_xxx)
2737 +- kernel configuration or /proc/config.gz (if you have it)
2738 +- behaviour which you think to be incorrect
2739 +- actual operation, reproducible one is better
2740 +- mailto: aufs-users at lists.sourceforge.net
2741 +
2742 +Usually, I don't watch the Public Areas(Bugs, Support Requests, Patches,
2743 +and Feature Requests) on SourceForge. Please join and write to
2744 +aufs-users ML.
2745 +
2746 +
2747 +6. Acknowledgements
2748 +----------------------------------------
2749 +Thanks to everyone who have tried and are using aufs, whoever
2750 +have reported a bug or any feedback.
2751 +
2752 +Especially donators:
2753 +Tomas Matejicek(slax.org) made a donation (much more than once).
2754 +       Since Apr 2010, Tomas M (the author of Slax and Linux Live
2755 +       scripts) is making "doubling" donations.
2756 +       Unfortunately I cannot list all of the donators, but I really
2757 +       appreciate.
2758 +       It ends Aug 2010, but the ordinary donation URL is still available.
2759 +       <http://sourceforge.net/donate/index.php?group_id=167503>
2760 +Dai Itasaka made a donation (2007/8).
2761 +Chuck Smith made a donation (2008/4, 10 and 12).
2762 +Henk Schoneveld made a donation (2008/9).
2763 +Chih-Wei Huang, ASUS, CTC donated Eee PC 4G (2008/10).
2764 +Francois Dupoux made a donation (2008/11).
2765 +Bruno Cesar Ribas and Luis Carlos Erpen de Bona, C3SL serves public
2766 +       aufs2 GIT tree (2009/2).
2767 +William Grant made a donation (2009/3).
2768 +Patrick Lane made a donation (2009/4).
2769 +The Mail Archive (mail-archive.com) made donations (2009/5).
2770 +Nippy Networks (Ed Wildgoose) made a donation (2009/7).
2771 +New Dream Network, LLC (www.dreamhost.com) made a donation (2009/11).
2772 +Pavel Pronskiy made a donation (2011/2).
2773 +Iridium and Inmarsat satellite phone retailer (www.mailasail.com), Nippy
2774 +       Networks (Ed Wildgoose) made a donation for hardware (2011/3).
2775 +Max Lekomcev (DOM-TV project) made a donation (2011/7, 12, 2012/3, 6 and
2776 +11).
2777 +Sam Liddicott made a donation (2011/9).
2778 +Era Scarecrow made a donation (2013/4).
2779 +Bor Ratajc made a donation (2013/4).
2780 +Alessandro Gorreta made a donation (2013/4).
2781 +POIRETTE Marc made a donation (2013/4).
2782 +Alessandro Gorreta made a donation (2013/4).
2783 +lauri kasvandik made a donation (2013/5).
2784 +"pemasu from Finland" made a donation (2013/7).
2785 +The Parted Magic Project made a donation (2013/9 and 11).
2786 +Pavel Barta made a donation (2013/10).
2787 +Nikolay Pertsev made a donation (2014/5).
2788 +James B made a donation (2014/7 and 2015/7).
2789 +Stefano Di Biase made a donation (2014/8).
2790 +Daniel Epellei made a donation (2015/1).
2791 +OmegaPhil made a donation (2016/1).
2792 +Tomasz Szewczyk made a donation (2016/4).
2793 +James Burry made a donation (2016/12).
2794 +
2795 +Thank you very much.
2796 +Donations are always, including future donations, very important and
2797 +helpful for me to keep on developing aufs.
2798 +
2799 +
2800 +7.
2801 +----------------------------------------
2802 +If you are an experienced user, no explanation is needed. Aufs is
2803 +just a linux filesystem.
2804 +
2805 +
2806 +Enjoy!
2807 +
2808 +# Local variables: ;
2809 +# mode: text;
2810 +# End: ;
2811 diff -urN /usr/share/empty/fs/aufs/aufs.h linux/fs/aufs/aufs.h
2812 --- /usr/share/empty/fs/aufs/aufs.h     1970-01-01 01:00:00.000000000 +0100
2813 +++ linux/fs/aufs/aufs.h        2016-10-09 16:55:36.486034798 +0200
2814 @@ -0,0 +1,59 @@
2815 +/*
2816 + * Copyright (C) 2005-2016 Junjiro R. Okajima
2817 + *
2818 + * This program, aufs is free software; you can redistribute it and/or modify
2819 + * it under the terms of the GNU General Public License as published by
2820 + * the Free Software Foundation; either version 2 of the License, or
2821 + * (at your option) any later version.
2822 + *
2823 + * This program is distributed in the hope that it will be useful,
2824 + * but WITHOUT ANY WARRANTY; without even the implied warranty of
2825 + * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
2826 + * GNU General Public License for more details.
2827 + *
2828 + * You should have received a copy of the GNU General Public License
2829 + * along with this program.  If not, see <http://www.gnu.org/licenses/>.
2830 + */
2831 +
2832 +/*
2833 + * all header files
2834 + */
2835 +
2836 +#ifndef __AUFS_H__
2837 +#define __AUFS_H__
2838 +
2839 +#ifdef __KERNEL__
2840 +
2841 +#define AuStub(type, name, body, ...) \
2842 +       static inline type name(__VA_ARGS__) { body; }
2843 +
2844 +#define AuStubVoid(name, ...) \
2845 +       AuStub(void, name, , __VA_ARGS__)
2846 +#define AuStubInt0(name, ...) \
2847 +       AuStub(int, name, return 0, __VA_ARGS__)
2848 +
2849 +#include "debug.h"
2850 +
2851 +#include "branch.h"
2852 +#include "cpup.h"
2853 +#include "dcsub.h"
2854 +#include "dbgaufs.h"
2855 +#include "dentry.h"
2856 +#include "dir.h"
2857 +#include "dynop.h"
2858 +#include "file.h"
2859 +#include "fstype.h"
2860 +#include "inode.h"
2861 +#include "loop.h"
2862 +#include "module.h"
2863 +#include "opts.h"
2864 +#include "rwsem.h"
2865 +#include "spl.h"
2866 +#include "super.h"
2867 +#include "sysaufs.h"
2868 +#include "vfsub.h"
2869 +#include "whout.h"
2870 +#include "wkq.h"
2871 +
2872 +#endif /* __KERNEL__ */
2873 +#endif /* __AUFS_H__ */
2874 diff -urN /usr/share/empty/fs/aufs/branch.c linux/fs/aufs/branch.c
2875 --- /usr/share/empty/fs/aufs/branch.c   1970-01-01 01:00:00.000000000 +0100
2876 +++ linux/fs/aufs/branch.c      2016-10-09 16:55:38.886097714 +0200
2877 @@ -0,0 +1,1412 @@
2878 +/*
2879 + * Copyright (C) 2005-2016 Junjiro R. Okajima
2880 + *
2881 + * This program, aufs is free software; you can redistribute it and/or modify
2882 + * it under the terms of the GNU General Public License as published by
2883 + * the Free Software Foundation; either version 2 of the License, or
2884 + * (at your option) any later version.
2885 + *
2886 + * This program is distributed in the hope that it will be useful,
2887 + * but WITHOUT ANY WARRANTY; without even the implied warranty of
2888 + * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
2889 + * GNU General Public License for more details.
2890 + *
2891 + * You should have received a copy of the GNU General Public License
2892 + * along with this program.  If not, see <http://www.gnu.org/licenses/>.
2893 + */
2894 +
2895 +/*
2896 + * branch management
2897 + */
2898 +
2899 +#include <linux/compat.h>
2900 +#include <linux/statfs.h>
2901 +#include "aufs.h"
2902 +
2903 +/*
2904 + * free a single branch
2905 + */
2906 +static void au_br_do_free(struct au_branch *br)
2907 +{
2908 +       int i;
2909 +       struct au_wbr *wbr;
2910 +       struct au_dykey **key;
2911 +
2912 +       au_hnotify_fin_br(br);
2913 +
2914 +       if (br->br_xino.xi_file)
2915 +               fput(br->br_xino.xi_file);
2916 +       mutex_destroy(&br->br_xino.xi_nondir_mtx);
2917 +
2918 +       AuDebugOn(au_br_count(br));
2919 +       au_br_count_fin(br);
2920 +
2921 +       wbr = br->br_wbr;
2922 +       if (wbr) {
2923 +               for (i = 0; i < AuBrWh_Last; i++)
2924 +                       dput(wbr->wbr_wh[i]);
2925 +               AuDebugOn(atomic_read(&wbr->wbr_wh_running));
2926 +               AuRwDestroy(&wbr->wbr_wh_rwsem);
2927 +       }
2928 +
2929 +       if (br->br_fhsm) {
2930 +               au_br_fhsm_fin(br->br_fhsm);
2931 +               au_delayed_kfree(br->br_fhsm);
2932 +       }
2933 +
2934 +       key = br->br_dykey;
2935 +       for (i = 0; i < AuBrDynOp; i++, key++)
2936 +               if (*key)
2937 +                       au_dy_put(*key);
2938 +               else
2939 +                       break;
2940 +
2941 +       /* recursive lock, s_umount of branch's */
2942 +       lockdep_off();
2943 +       path_put(&br->br_path);
2944 +       lockdep_on();
2945 +       if (wbr)
2946 +               au_delayed_kfree(wbr);
2947 +       au_delayed_kfree(br);
2948 +}
2949 +
2950 +/*
2951 + * frees all branches
2952 + */
2953 +void au_br_free(struct au_sbinfo *sbinfo)
2954 +{
2955 +       aufs_bindex_t bmax;
2956 +       struct au_branch **br;
2957 +
2958 +       AuRwMustWriteLock(&sbinfo->si_rwsem);
2959 +
2960 +       bmax = sbinfo->si_bbot + 1;
2961 +       br = sbinfo->si_branch;
2962 +       while (bmax--)
2963 +               au_br_do_free(*br++);
2964 +}
2965 +
2966 +/*
2967 + * find the index of a branch which is specified by @br_id.
2968 + */
2969 +int au_br_index(struct super_block *sb, aufs_bindex_t br_id)
2970 +{
2971 +       aufs_bindex_t bindex, bbot;
2972 +
2973 +       bbot = au_sbbot(sb);
2974 +       for (bindex = 0; bindex <= bbot; bindex++)
2975 +               if (au_sbr_id(sb, bindex) == br_id)
2976 +                       return bindex;
2977 +       return -1;
2978 +}
2979 +
2980 +/* ---------------------------------------------------------------------- */
2981 +
2982 +/*
2983 + * add a branch
2984 + */
2985 +
2986 +static int test_overlap(struct super_block *sb, struct dentry *h_adding,
2987 +                       struct dentry *h_root)
2988 +{
2989 +       if (unlikely(h_adding == h_root
2990 +                    || au_test_loopback_overlap(sb, h_adding)))
2991 +               return 1;
2992 +       if (h_adding->d_sb != h_root->d_sb)
2993 +               return 0;
2994 +       return au_test_subdir(h_adding, h_root)
2995 +               || au_test_subdir(h_root, h_adding);
2996 +}
2997 +
2998 +/*
2999 + * returns a newly allocated branch. @new_nbranch is a number of branches
3000 + * after adding a branch.
3001 + */
3002 +static struct au_branch *au_br_alloc(struct super_block *sb, int new_nbranch,
3003 +                                    int perm)
3004 +{
3005 +       struct au_branch *add_branch;
3006 +       struct dentry *root;
3007 +       struct inode *inode;
3008 +       int err;
3009 +
3010 +       err = -ENOMEM;
3011 +       root = sb->s_root;
3012 +       add_branch = kzalloc(sizeof(*add_branch), GFP_NOFS);
3013 +       if (unlikely(!add_branch))
3014 +               goto out;
3015 +
3016 +       err = au_hnotify_init_br(add_branch, perm);
3017 +       if (unlikely(err))
3018 +               goto out_br;
3019 +
3020 +       if (au_br_writable(perm)) {
3021 +               /* may be freed separately at changing the branch permission */
3022 +               add_branch->br_wbr = kzalloc(sizeof(*add_branch->br_wbr),
3023 +                                            GFP_NOFS);
3024 +               if (unlikely(!add_branch->br_wbr))
3025 +                       goto out_hnotify;
3026 +       }
3027 +
3028 +       if (au_br_fhsm(perm)) {
3029 +               err = au_fhsm_br_alloc(add_branch);
3030 +               if (unlikely(err))
3031 +                       goto out_wbr;
3032 +       }
3033 +
3034 +       err = au_sbr_realloc(au_sbi(sb), new_nbranch, /*may_shrink*/0);
3035 +       if (!err)
3036 +               err = au_di_realloc(au_di(root), new_nbranch, /*may_shrink*/0);
3037 +       if (!err) {
3038 +               inode = d_inode(root);
3039 +               err = au_hinode_realloc(au_ii(inode), new_nbranch, /*may_shrink*/0);
3040 +       }
3041 +       if (!err)
3042 +               return add_branch; /* success */
3043 +
3044 +out_wbr:
3045 +       if (add_branch->br_wbr)
3046 +               au_delayed_kfree(add_branch->br_wbr);
3047 +out_hnotify:
3048 +       au_hnotify_fin_br(add_branch);
3049 +out_br:
3050 +       au_delayed_kfree(add_branch);
3051 +out:
3052 +       return ERR_PTR(err);
3053 +}
3054 +
3055 +/*
3056 + * test if the branch permission is legal or not.
3057 + */
3058 +static int test_br(struct inode *inode, int brperm, char *path)
3059 +{
3060 +       int err;
3061 +
3062 +       err = (au_br_writable(brperm) && IS_RDONLY(inode));
3063 +       if (!err)
3064 +               goto out;
3065 +
3066 +       err = -EINVAL;
3067 +       pr_err("write permission for readonly mount or inode, %s\n", path);
3068 +
3069 +out:
3070 +       return err;
3071 +}
3072 +
3073 +/*
3074 + * returns:
3075 + * 0: success, the caller will add it
3076 + * plus: success, it is already unified, the caller should ignore it
3077 + * minus: error
3078 + */
3079 +static int test_add(struct super_block *sb, struct au_opt_add *add, int remount)
3080 +{
3081 +       int err;
3082 +       aufs_bindex_t bbot, bindex;
3083 +       struct dentry *root, *h_dentry;
3084 +       struct inode *inode, *h_inode;
3085 +
3086 +       root = sb->s_root;
3087 +       bbot = au_sbbot(sb);
3088 +       if (unlikely(bbot >= 0
3089 +                    && au_find_dbindex(root, add->path.dentry) >= 0)) {
3090 +               err = 1;
3091 +               if (!remount) {
3092 +                       err = -EINVAL;
3093 +                       pr_err("%s duplicated\n", add->pathname);
3094 +               }
3095 +               goto out;
3096 +       }
3097 +
3098 +       err = -ENOSPC; /* -E2BIG; */
3099 +       if (unlikely(AUFS_BRANCH_MAX <= add->bindex
3100 +                    || AUFS_BRANCH_MAX - 1 <= bbot)) {
3101 +               pr_err("number of branches exceeded %s\n", add->pathname);
3102 +               goto out;
3103 +       }
3104 +
3105 +       err = -EDOM;
3106 +       if (unlikely(add->bindex < 0 || bbot + 1 < add->bindex)) {
3107 +               pr_err("bad index %d\n", add->bindex);
3108 +               goto out;
3109 +       }
3110 +
3111 +       inode = d_inode(add->path.dentry);
3112 +       err = -ENOENT;
3113 +       if (unlikely(!inode->i_nlink)) {
3114 +               pr_err("no existence %s\n", add->pathname);
3115 +               goto out;
3116 +       }
3117 +
3118 +       err = -EINVAL;
3119 +       if (unlikely(inode->i_sb == sb)) {
3120 +               pr_err("%s must be outside\n", add->pathname);
3121 +               goto out;
3122 +       }
3123 +
3124 +       if (unlikely(au_test_fs_unsuppoted(inode->i_sb))) {
3125 +               pr_err("unsupported filesystem, %s (%s)\n",
3126 +                      add->pathname, au_sbtype(inode->i_sb));
3127 +               goto out;
3128 +       }
3129 +
3130 +       if (unlikely(inode->i_sb->s_stack_depth)) {
3131 +               pr_err("already stacked, %s (%s)\n",
3132 +                      add->pathname, au_sbtype(inode->i_sb));
3133 +               goto out;
3134 +       }
3135 +
3136 +       err = test_br(d_inode(add->path.dentry), add->perm, add->pathname);
3137 +       if (unlikely(err))
3138 +               goto out;
3139 +
3140 +       if (bbot < 0)
3141 +               return 0; /* success */
3142 +
3143 +       err = -EINVAL;
3144 +       for (bindex = 0; bindex <= bbot; bindex++)
3145 +               if (unlikely(test_overlap(sb, add->path.dentry,
3146 +                                         au_h_dptr(root, bindex)))) {
3147 +                       pr_err("%s is overlapped\n", add->pathname);
3148 +                       goto out;
3149 +               }
3150 +
3151 +       err = 0;
3152 +       if (au_opt_test(au_mntflags(sb), WARN_PERM)) {
3153 +               h_dentry = au_h_dptr(root, 0);
3154 +               h_inode = d_inode(h_dentry);
3155 +               if ((h_inode->i_mode & S_IALLUGO) != (inode->i_mode & S_IALLUGO)
3156 +                   || !uid_eq(h_inode->i_uid, inode->i_uid)
3157 +                   || !gid_eq(h_inode->i_gid, inode->i_gid))
3158 +                       pr_warn("uid/gid/perm %s %u/%u/0%o, %u/%u/0%o\n",
3159 +                               add->pathname,
3160 +                               i_uid_read(inode), i_gid_read(inode),
3161 +                               (inode->i_mode & S_IALLUGO),
3162 +                               i_uid_read(h_inode), i_gid_read(h_inode),
3163 +                               (h_inode->i_mode & S_IALLUGO));
3164 +       }
3165 +
3166 +out:
3167 +       return err;
3168 +}
3169 +
3170 +/*
3171 + * initialize or clean the whiteouts for an adding branch
3172 + */
3173 +static int au_br_init_wh(struct super_block *sb, struct au_branch *br,
3174 +                        int new_perm)
3175 +{
3176 +       int err, old_perm;
3177 +       aufs_bindex_t bindex;
3178 +       struct inode *h_inode;
3179 +       struct au_wbr *wbr;
3180 +       struct au_hinode *hdir;
3181 +       struct dentry *h_dentry;
3182 +
3183 +       err = vfsub_mnt_want_write(au_br_mnt(br));
3184 +       if (unlikely(err))
3185 +               goto out;
3186 +
3187 +       wbr = br->br_wbr;
3188 +       old_perm = br->br_perm;
3189 +       br->br_perm = new_perm;
3190 +       hdir = NULL;
3191 +       h_inode = NULL;
3192 +       bindex = au_br_index(sb, br->br_id);
3193 +       if (0 <= bindex) {
3194 +               hdir = au_hi(d_inode(sb->s_root), bindex);
3195 +               au_hn_inode_lock_nested(hdir, AuLsc_I_PARENT);
3196 +       } else {
3197 +               h_dentry = au_br_dentry(br);
3198 +               h_inode = d_inode(h_dentry);
3199 +               inode_lock_nested(h_inode, AuLsc_I_PARENT);
3200 +       }
3201 +       if (!wbr)
3202 +               err = au_wh_init(br, sb);
3203 +       else {
3204 +               wbr_wh_write_lock(wbr);
3205 +               err = au_wh_init(br, sb);
3206 +               wbr_wh_write_unlock(wbr);
3207 +       }
3208 +       if (hdir)
3209 +               au_hn_inode_unlock(hdir);
3210 +       else
3211 +               inode_unlock(h_inode);
3212 +       vfsub_mnt_drop_write(au_br_mnt(br));
3213 +       br->br_perm = old_perm;
3214 +
3215 +       if (!err && wbr && !au_br_writable(new_perm)) {
3216 +               au_delayed_kfree(wbr);
3217 +               br->br_wbr = NULL;
3218 +       }
3219 +
3220 +out:
3221 +       return err;
3222 +}
3223 +
3224 +static int au_wbr_init(struct au_branch *br, struct super_block *sb,
3225 +                      int perm)
3226 +{
3227 +       int err;
3228 +       struct kstatfs kst;
3229 +       struct au_wbr *wbr;
3230 +
3231 +       wbr = br->br_wbr;
3232 +       au_rw_init(&wbr->wbr_wh_rwsem);
3233 +       atomic_set(&wbr->wbr_wh_running, 0);
3234 +
3235 +       /*
3236 +        * a limit for rmdir/rename a dir
3237 +        * cf. AUFS_MAX_NAMELEN in include/uapi/linux/aufs_type.h
3238 +        */
3239 +       err = vfs_statfs(&br->br_path, &kst);
3240 +       if (unlikely(err))
3241 +               goto out;
3242 +       err = -EINVAL;
3243 +       if (kst.f_namelen >= NAME_MAX)
3244 +               err = au_br_init_wh(sb, br, perm);
3245 +       else
3246 +               pr_err("%pd(%s), unsupported namelen %ld\n",
3247 +                      au_br_dentry(br),
3248 +                      au_sbtype(au_br_dentry(br)->d_sb), kst.f_namelen);
3249 +
3250 +out:
3251 +       return err;
3252 +}
3253 +
3254 +/* initialize a new branch */
3255 +static int au_br_init(struct au_branch *br, struct super_block *sb,
3256 +                     struct au_opt_add *add)
3257 +{
3258 +       int err;
3259 +       struct inode *h_inode;
3260 +
3261 +       err = 0;
3262 +       mutex_init(&br->br_xino.xi_nondir_mtx);
3263 +       br->br_perm = add->perm;
3264 +       br->br_path = add->path; /* set first, path_get() later */
3265 +       spin_lock_init(&br->br_dykey_lock);
3266 +       au_br_count_init(br);
3267 +       atomic_set(&br->br_xino_running, 0);
3268 +       br->br_id = au_new_br_id(sb);
3269 +       AuDebugOn(br->br_id < 0);
3270 +
3271 +       if (au_br_writable(add->perm)) {
3272 +               err = au_wbr_init(br, sb, add->perm);
3273 +               if (unlikely(err))
3274 +                       goto out_err;
3275 +       }
3276 +
3277 +       if (au_opt_test(au_mntflags(sb), XINO)) {
3278 +               h_inode = d_inode(add->path.dentry);
3279 +               err = au_xino_br(sb, br, h_inode->i_ino,
3280 +                                au_sbr(sb, 0)->br_xino.xi_file, /*do_test*/1);
3281 +               if (unlikely(err)) {
3282 +                       AuDebugOn(br->br_xino.xi_file);
3283 +                       goto out_err;
3284 +               }
3285 +       }
3286 +
3287 +       sysaufs_br_init(br);
3288 +       path_get(&br->br_path);
3289 +       goto out; /* success */
3290 +
3291 +out_err:
3292 +       memset(&br->br_path, 0, sizeof(br->br_path));
3293 +out:
3294 +       return err;
3295 +}
3296 +
3297 +static void au_br_do_add_brp(struct au_sbinfo *sbinfo, aufs_bindex_t bindex,
3298 +                            struct au_branch *br, aufs_bindex_t bbot,
3299 +                            aufs_bindex_t amount)
3300 +{
3301 +       struct au_branch **brp;
3302 +
3303 +       AuRwMustWriteLock(&sbinfo->si_rwsem);
3304 +
3305 +       brp = sbinfo->si_branch + bindex;
3306 +       memmove(brp + 1, brp, sizeof(*brp) * amount);
3307 +       *brp = br;
3308 +       sbinfo->si_bbot++;
3309 +       if (unlikely(bbot < 0))
3310 +               sbinfo->si_bbot = 0;
3311 +}
3312 +
3313 +static void au_br_do_add_hdp(struct au_dinfo *dinfo, aufs_bindex_t bindex,
3314 +                            aufs_bindex_t bbot, aufs_bindex_t amount)
3315 +{
3316 +       struct au_hdentry *hdp;
3317 +
3318 +       AuRwMustWriteLock(&dinfo->di_rwsem);
3319 +
3320 +       hdp = au_hdentry(dinfo, bindex);
3321 +       memmove(hdp + 1, hdp, sizeof(*hdp) * amount);
3322 +       au_h_dentry_init(hdp);
3323 +       dinfo->di_bbot++;
3324 +       if (unlikely(bbot < 0))
3325 +               dinfo->di_btop = 0;
3326 +}
3327 +
3328 +static void au_br_do_add_hip(struct au_iinfo *iinfo, aufs_bindex_t bindex,
3329 +                            aufs_bindex_t bbot, aufs_bindex_t amount)
3330 +{
3331 +       struct au_hinode *hip;
3332 +
3333 +       AuRwMustWriteLock(&iinfo->ii_rwsem);
3334 +
3335 +       hip = au_hinode(iinfo, bindex);
3336 +       memmove(hip + 1, hip, sizeof(*hip) * amount);
3337 +       au_hinode_init(hip);
3338 +       iinfo->ii_bbot++;
3339 +       if (unlikely(bbot < 0))
3340 +               iinfo->ii_btop = 0;
3341 +}
3342 +
3343 +static void au_br_do_add(struct super_block *sb, struct au_branch *br,
3344 +                        aufs_bindex_t bindex)
3345 +{
3346 +       struct dentry *root, *h_dentry;
3347 +       struct inode *root_inode, *h_inode;
3348 +       aufs_bindex_t bbot, amount;
3349 +
3350 +       root = sb->s_root;
3351 +       root_inode = d_inode(root);
3352 +       bbot = au_sbbot(sb);
3353 +       amount = bbot + 1 - bindex;
3354 +       h_dentry = au_br_dentry(br);
3355 +       au_sbilist_lock();
3356 +       au_br_do_add_brp(au_sbi(sb), bindex, br, bbot, amount);
3357 +       au_br_do_add_hdp(au_di(root), bindex, bbot, amount);
3358 +       au_br_do_add_hip(au_ii(root_inode), bindex, bbot, amount);
3359 +       au_set_h_dptr(root, bindex, dget(h_dentry));
3360 +       h_inode = d_inode(h_dentry);
3361 +       au_set_h_iptr(root_inode, bindex, au_igrab(h_inode), /*flags*/0);
3362 +       au_sbilist_unlock();
3363 +}
3364 +
3365 +int au_br_add(struct super_block *sb, struct au_opt_add *add, int remount)
3366 +{
3367 +       int err;
3368 +       aufs_bindex_t bbot, add_bindex;
3369 +       struct dentry *root, *h_dentry;
3370 +       struct inode *root_inode;
3371 +       struct au_branch *add_branch;
3372 +
3373 +       root = sb->s_root;
3374 +       root_inode = d_inode(root);
3375 +       IMustLock(root_inode);
3376 +       IiMustWriteLock(root_inode);
3377 +       err = test_add(sb, add, remount);
3378 +       if (unlikely(err < 0))
3379 +               goto out;
3380 +       if (err) {
3381 +               err = 0;
3382 +               goto out; /* success */
3383 +       }
3384 +
3385 +       bbot = au_sbbot(sb);
3386 +       add_branch = au_br_alloc(sb, bbot + 2, add->perm);
3387 +       err = PTR_ERR(add_branch);
3388 +       if (IS_ERR(add_branch))
3389 +               goto out;
3390 +
3391 +       err = au_br_init(add_branch, sb, add);
3392 +       if (unlikely(err)) {
3393 +               au_br_do_free(add_branch);
3394 +               goto out;
3395 +       }
3396 +
3397 +       add_bindex = add->bindex;
3398 +       if (!remount)
3399 +               au_br_do_add(sb, add_branch, add_bindex);
3400 +       else {
3401 +               sysaufs_brs_del(sb, add_bindex);
3402 +               au_br_do_add(sb, add_branch, add_bindex);
3403 +               sysaufs_brs_add(sb, add_bindex);
3404 +       }
3405 +
3406 +       h_dentry = add->path.dentry;
3407 +       if (!add_bindex) {
3408 +               au_cpup_attr_all(root_inode, /*force*/1);
3409 +               sb->s_maxbytes = h_dentry->d_sb->s_maxbytes;
3410 +       } else
3411 +               au_add_nlink(root_inode, d_inode(h_dentry));
3412 +
3413 +       /*
3414 +        * this test/set prevents aufs from handling unnecesary notify events
3415 +        * of xino files, in case of re-adding a writable branch which was
3416 +        * once detached from aufs.
3417 +        */
3418 +       if (au_xino_brid(sb) < 0
3419 +           && au_br_writable(add_branch->br_perm)
3420 +           && !au_test_fs_bad_xino(h_dentry->d_sb)
3421 +           && add_branch->br_xino.xi_file
3422 +           && add_branch->br_xino.xi_file->f_path.dentry->d_parent == h_dentry)
3423 +               au_xino_brid_set(sb, add_branch->br_id);
3424 +
3425 +out:
3426 +       return err;
3427 +}
3428 +
3429 +/* ---------------------------------------------------------------------- */
3430 +
3431 +static unsigned long long au_farray_cb(struct super_block *sb, void *a,
3432 +                                      unsigned long long max __maybe_unused,
3433 +                                      void *arg)
3434 +{
3435 +       unsigned long long n;
3436 +       struct file **p, *f;
3437 +       struct au_sphlhead *files;
3438 +       struct au_finfo *finfo;
3439 +
3440 +       n = 0;
3441 +       p = a;
3442 +       files = &au_sbi(sb)->si_files;
3443 +       spin_lock(&files->spin);
3444 +       hlist_for_each_entry(finfo, &files->head, fi_hlist) {
3445 +               f = finfo->fi_file;
3446 +               if (file_count(f)
3447 +                   && !special_file(file_inode(f)->i_mode)) {
3448 +                       get_file(f);
3449 +                       *p++ = f;
3450 +                       n++;
3451 +                       AuDebugOn(n > max);
3452 +               }
3453 +       }
3454 +       spin_unlock(&files->spin);
3455 +
3456 +       return n;
3457 +}
3458 +
3459 +static struct file **au_farray_alloc(struct super_block *sb,
3460 +                                    unsigned long long *max)
3461 +{
3462 +       *max = au_nfiles(sb);
3463 +       return au_array_alloc(max, au_farray_cb, sb, /*arg*/NULL);
3464 +}
3465 +
3466 +static void au_farray_free(struct file **a, unsigned long long max)
3467 +{
3468 +       unsigned long long ull;
3469 +
3470 +       for (ull = 0; ull < max; ull++)
3471 +               if (a[ull])
3472 +                       fput(a[ull]);
3473 +       kvfree(a);
3474 +}
3475 +
3476 +/* ---------------------------------------------------------------------- */
3477 +
3478 +/*
3479 + * delete a branch
3480 + */
3481 +
3482 +/* to show the line number, do not make it inlined function */
3483 +#define AuVerbose(do_info, fmt, ...) do { \
3484 +       if (do_info) \
3485 +               pr_info(fmt, ##__VA_ARGS__); \
3486 +} while (0)
3487 +
3488 +static int au_test_ibusy(struct inode *inode, aufs_bindex_t btop,
3489 +                        aufs_bindex_t bbot)
3490 +{
3491 +       return (inode && !S_ISDIR(inode->i_mode)) || btop == bbot;
3492 +}
3493 +
3494 +static int au_test_dbusy(struct dentry *dentry, aufs_bindex_t btop,
3495 +                        aufs_bindex_t bbot)
3496 +{
3497 +       return au_test_ibusy(d_inode(dentry), btop, bbot);
3498 +}
3499 +
3500 +/*
3501 + * test if the branch is deletable or not.
3502 + */
3503 +static int test_dentry_busy(struct dentry *root, aufs_bindex_t bindex,
3504 +                           unsigned int sigen, const unsigned int verbose)
3505 +{
3506 +       int err, i, j, ndentry;
3507 +       aufs_bindex_t btop, bbot;
3508 +       struct au_dcsub_pages dpages;
3509 +       struct au_dpage *dpage;
3510 +       struct dentry *d;
3511 +
3512 +       err = au_dpages_init(&dpages, GFP_NOFS);
3513 +       if (unlikely(err))
3514 +               goto out;
3515 +       err = au_dcsub_pages(&dpages, root, NULL, NULL);
3516 +       if (unlikely(err))
3517 +               goto out_dpages;
3518 +
3519 +       for (i = 0; !err && i < dpages.ndpage; i++) {
3520 +               dpage = dpages.dpages + i;
3521 +               ndentry = dpage->ndentry;
3522 +               for (j = 0; !err && j < ndentry; j++) {
3523 +                       d = dpage->dentries[j];
3524 +                       AuDebugOn(au_dcount(d) <= 0);
3525 +                       if (!au_digen_test(d, sigen)) {
3526 +                               di_read_lock_child(d, AuLock_IR);
3527 +                               if (unlikely(au_dbrange_test(d))) {
3528 +                                       di_read_unlock(d, AuLock_IR);
3529 +                                       continue;
3530 +                               }
3531 +                       } else {
3532 +                               di_write_lock_child(d);
3533 +                               if (unlikely(au_dbrange_test(d))) {
3534 +                                       di_write_unlock(d);
3535 +                                       continue;
3536 +                               }
3537 +                               err = au_reval_dpath(d, sigen);
3538 +                               if (!err)
3539 +                                       di_downgrade_lock(d, AuLock_IR);
3540 +                               else {
3541 +                                       di_write_unlock(d);
3542 +                                       break;
3543 +                               }
3544 +                       }
3545 +
3546 +                       /* AuDbgDentry(d); */
3547 +                       btop = au_dbtop(d);
3548 +                       bbot = au_dbbot(d);
3549 +                       if (btop <= bindex
3550 +                           && bindex <= bbot
3551 +                           && au_h_dptr(d, bindex)
3552 +                           && au_test_dbusy(d, btop, bbot)) {
3553 +                               err = -EBUSY;
3554 +                               AuVerbose(verbose, "busy %pd\n", d);
3555 +                               AuDbgDentry(d);
3556 +                       }
3557 +                       di_read_unlock(d, AuLock_IR);
3558 +               }
3559 +       }
3560 +
3561 +out_dpages:
3562 +       au_dpages_free(&dpages);
3563 +out:
3564 +       return err;
3565 +}
3566 +
3567 +static int test_inode_busy(struct super_block *sb, aufs_bindex_t bindex,
3568 +                          unsigned int sigen, const unsigned int verbose)
3569 +{
3570 +       int err;
3571 +       unsigned long long max, ull;
3572 +       struct inode *i, **array;
3573 +       aufs_bindex_t btop, bbot;
3574 +
3575 +       array = au_iarray_alloc(sb, &max);
3576 +       err = PTR_ERR(array);
3577 +       if (IS_ERR(array))
3578 +               goto out;
3579 +
3580 +       err = 0;
3581 +       AuDbg("b%d\n", bindex);
3582 +       for (ull = 0; !err && ull < max; ull++) {
3583 +               i = array[ull];
3584 +               if (unlikely(!i))
3585 +                       break;
3586 +               if (i->i_ino == AUFS_ROOT_INO)
3587 +                       continue;
3588 +
3589 +               /* AuDbgInode(i); */
3590 +               if (au_iigen(i, NULL) == sigen)
3591 +                       ii_read_lock_child(i);
3592 +               else {
3593 +                       ii_write_lock_child(i);
3594 +                       err = au_refresh_hinode_self(i);
3595 +                       au_iigen_dec(i);
3596 +                       if (!err)
3597 +                               ii_downgrade_lock(i);
3598 +                       else {
3599 +                               ii_write_unlock(i);
3600 +                               break;
3601 +                       }
3602 +               }
3603 +
3604 +               btop = au_ibtop(i);
3605 +               bbot = au_ibbot(i);
3606 +               if (btop <= bindex
3607 +                   && bindex <= bbot
3608 +                   && au_h_iptr(i, bindex)
3609 +                   && au_test_ibusy(i, btop, bbot)) {
3610 +                       err = -EBUSY;
3611 +                       AuVerbose(verbose, "busy i%lu\n", i->i_ino);
3612 +                       AuDbgInode(i);
3613 +               }
3614 +               ii_read_unlock(i);
3615 +       }
3616 +       au_iarray_free(array, max);
3617 +
3618 +out:
3619 +       return err;
3620 +}
3621 +
3622 +static int test_children_busy(struct dentry *root, aufs_bindex_t bindex,
3623 +                             const unsigned int verbose)
3624 +{
3625 +       int err;
3626 +       unsigned int sigen;
3627 +
3628 +       sigen = au_sigen(root->d_sb);
3629 +       DiMustNoWaiters(root);
3630 +       IiMustNoWaiters(d_inode(root));
3631 +       di_write_unlock(root);
3632 +       err = test_dentry_busy(root, bindex, sigen, verbose);
3633 +       if (!err)
3634 +               err = test_inode_busy(root->d_sb, bindex, sigen, verbose);
3635 +       di_write_lock_child(root); /* aufs_write_lock() calls ..._child() */
3636 +
3637 +       return err;
3638 +}
3639 +
3640 +static int test_dir_busy(struct file *file, aufs_bindex_t br_id,
3641 +                        struct file **to_free, int *idx)
3642 +{
3643 +       int err;
3644 +       unsigned char matched, root;
3645 +       aufs_bindex_t bindex, bbot;
3646 +       struct au_fidir *fidir;
3647 +       struct au_hfile *hfile;
3648 +
3649 +       err = 0;
3650 +       root = IS_ROOT(file->f_path.dentry);
3651 +       if (root) {
3652 +               get_file(file);
3653 +               to_free[*idx] = file;
3654 +               (*idx)++;
3655 +               goto out;
3656 +       }
3657 +
3658 +       matched = 0;
3659 +       fidir = au_fi(file)->fi_hdir;
3660 +       AuDebugOn(!fidir);
3661 +       bbot = au_fbbot_dir(file);
3662 +       for (bindex = au_fbtop(file); bindex <= bbot; bindex++) {
3663 +               hfile = fidir->fd_hfile + bindex;
3664 +               if (!hfile->hf_file)
3665 +                       continue;
3666 +
3667 +               if (hfile->hf_br->br_id == br_id) {
3668 +                       matched = 1;
3669 +                       break;
3670 +               }
3671 +       }
3672 +       if (matched)
3673 +               err = -EBUSY;
3674 +
3675 +out:
3676 +       return err;
3677 +}
3678 +
3679 +static int test_file_busy(struct super_block *sb, aufs_bindex_t br_id,
3680 +                         struct file **to_free, int opened)
3681 +{
3682 +       int err, idx;
3683 +       unsigned long long ull, max;
3684 +       aufs_bindex_t btop;
3685 +       struct file *file, **array;
3686 +       struct dentry *root;
3687 +       struct au_hfile *hfile;
3688 +
3689 +       array = au_farray_alloc(sb, &max);
3690 +       err = PTR_ERR(array);
3691 +       if (IS_ERR(array))
3692 +               goto out;
3693 +
3694 +       err = 0;
3695 +       idx = 0;
3696 +       root = sb->s_root;
3697 +       di_write_unlock(root);
3698 +       for (ull = 0; ull < max; ull++) {
3699 +               file = array[ull];
3700 +               if (unlikely(!file))
3701 +                       break;
3702 +
3703 +               /* AuDbg("%pD\n", file); */
3704 +               fi_read_lock(file);
3705 +               btop = au_fbtop(file);
3706 +               if (!d_is_dir(file->f_path.dentry)) {
3707 +                       hfile = &au_fi(file)->fi_htop;
3708 +                       if (hfile->hf_br->br_id == br_id)
3709 +                               err = -EBUSY;
3710 +               } else
3711 +                       err = test_dir_busy(file, br_id, to_free, &idx);
3712 +               fi_read_unlock(file);
3713 +               if (unlikely(err))
3714 +                       break;
3715 +       }
3716 +       di_write_lock_child(root);
3717 +       au_farray_free(array, max);
3718 +       AuDebugOn(idx > opened);
3719 +
3720 +out:
3721 +       return err;
3722 +}
3723 +
3724 +static void br_del_file(struct file **to_free, unsigned long long opened,
3725 +                         aufs_bindex_t br_id)
3726 +{
3727 +       unsigned long long ull;
3728 +       aufs_bindex_t bindex, btop, bbot, bfound;
3729 +       struct file *file;
3730 +       struct au_fidir *fidir;
3731 +       struct au_hfile *hfile;
3732 +
3733 +       for (ull = 0; ull < opened; ull++) {
3734 +               file = to_free[ull];
3735 +               if (unlikely(!file))
3736 +                       break;
3737 +
3738 +               /* AuDbg("%pD\n", file); */
3739 +               AuDebugOn(!d_is_dir(file->f_path.dentry));
3740 +               bfound = -1;
3741 +               fidir = au_fi(file)->fi_hdir;
3742 +               AuDebugOn(!fidir);
3743 +               fi_write_lock(file);
3744 +               btop = au_fbtop(file);
3745 +               bbot = au_fbbot_dir(file);
3746 +               for (bindex = btop; bindex <= bbot; bindex++) {
3747 +                       hfile = fidir->fd_hfile + bindex;
3748 +                       if (!hfile->hf_file)
3749 +                               continue;
3750 +
3751 +                       if (hfile->hf_br->br_id == br_id) {
3752 +                               bfound = bindex;
3753 +                               break;
3754 +                       }
3755 +               }
3756 +               AuDebugOn(bfound < 0);
3757 +               au_set_h_fptr(file, bfound, NULL);
3758 +               if (bfound == btop) {
3759 +                       for (btop++; btop <= bbot; btop++)
3760 +                               if (au_hf_dir(file, btop)) {
3761 +                                       au_set_fbtop(file, btop);
3762 +                                       break;
3763 +                               }
3764 +               }
3765 +               fi_write_unlock(file);
3766 +       }
3767 +}
3768 +
3769 +static void au_br_do_del_brp(struct au_sbinfo *sbinfo,
3770 +                            const aufs_bindex_t bindex,
3771 +                            const aufs_bindex_t bbot)
3772 +{
3773 +       struct au_branch **brp, **p;
3774 +
3775 +       AuRwMustWriteLock(&sbinfo->si_rwsem);
3776 +
3777 +       brp = sbinfo->si_branch + bindex;
3778 +       if (bindex < bbot)
3779 +               memmove(brp, brp + 1, sizeof(*brp) * (bbot - bindex));
3780 +       sbinfo->si_branch[0 + bbot] = NULL;
3781 +       sbinfo->si_bbot--;
3782 +
3783 +       p = au_krealloc(sbinfo->si_branch, sizeof(*p) * bbot, AuGFP_SBILIST,
3784 +                       /*may_shrink*/1);
3785 +       if (p)
3786 +               sbinfo->si_branch = p;
3787 +       /* harmless error */
3788 +}
3789 +
3790 +static void au_br_do_del_hdp(struct au_dinfo *dinfo, const aufs_bindex_t bindex,
3791 +                            const aufs_bindex_t bbot)
3792 +{
3793 +       struct au_hdentry *hdp, *p;
3794 +
3795 +       AuRwMustWriteLock(&dinfo->di_rwsem);
3796 +
3797 +       hdp = au_hdentry(dinfo, bindex);
3798 +       if (bindex < bbot)
3799 +               memmove(hdp, hdp + 1, sizeof(*hdp) * (bbot - bindex));
3800 +       /* au_h_dentry_init(au_hdentry(dinfo, bbot); */
3801 +       dinfo->di_bbot--;
3802 +
3803 +       p = au_krealloc(dinfo->di_hdentry, sizeof(*p) * bbot, AuGFP_SBILIST,
3804 +                       /*may_shrink*/1);
3805 +       if (p)
3806 +               dinfo->di_hdentry = p;
3807 +       /* harmless error */
3808 +}
3809 +
3810 +static void au_br_do_del_hip(struct au_iinfo *iinfo, const aufs_bindex_t bindex,
3811 +                            const aufs_bindex_t bbot)
3812 +{
3813 +       struct au_hinode *hip, *p;
3814 +
3815 +       AuRwMustWriteLock(&iinfo->ii_rwsem);
3816 +
3817 +       hip = au_hinode(iinfo, bindex);
3818 +       if (bindex < bbot)
3819 +               memmove(hip, hip + 1, sizeof(*hip) * (bbot - bindex));
3820 +       /* au_hinode_init(au_hinode(iinfo, bbot)); */
3821 +       iinfo->ii_bbot--;
3822 +
3823 +       p = au_krealloc(iinfo->ii_hinode, sizeof(*p) * bbot, AuGFP_SBILIST,
3824 +                       /*may_shrink*/1);
3825 +       if (p)
3826 +               iinfo->ii_hinode = p;
3827 +       /* harmless error */
3828 +}
3829 +
3830 +static void au_br_do_del(struct super_block *sb, aufs_bindex_t bindex,
3831 +                        struct au_branch *br)
3832 +{
3833 +       aufs_bindex_t bbot;
3834 +       struct au_sbinfo *sbinfo;
3835 +       struct dentry *root, *h_root;
3836 +       struct inode *inode, *h_inode;
3837 +       struct au_hinode *hinode;
3838 +
3839 +       SiMustWriteLock(sb);
3840 +
3841 +       root = sb->s_root;
3842 +       inode = d_inode(root);
3843 +       sbinfo = au_sbi(sb);
3844 +       bbot = sbinfo->si_bbot;
3845 +
3846 +       h_root = au_h_dptr(root, bindex);
3847 +       hinode = au_hi(inode, bindex);
3848 +       h_inode = au_igrab(hinode->hi_inode);
3849 +       au_hiput(hinode);
3850 +
3851 +       au_sbilist_lock();
3852 +       au_br_do_del_brp(sbinfo, bindex, bbot);
3853 +       au_br_do_del_hdp(au_di(root), bindex, bbot);
3854 +       au_br_do_del_hip(au_ii(inode), bindex, bbot);
3855 +       au_sbilist_unlock();
3856 +
3857 +       dput(h_root);
3858 +       iput(h_inode);
3859 +       au_br_do_free(br);
3860 +}
3861 +
3862 +static unsigned long long empty_cb(struct super_block *sb, void *array,
3863 +                                  unsigned long long max, void *arg)
3864 +{
3865 +       return max;
3866 +}
3867 +
3868 +int au_br_del(struct super_block *sb, struct au_opt_del *del, int remount)
3869 +{
3870 +       int err, rerr, i;
3871 +       unsigned long long opened;
3872 +       unsigned int mnt_flags;
3873 +       aufs_bindex_t bindex, bbot, br_id;
3874 +       unsigned char do_wh, verbose;
3875 +       struct au_branch *br;
3876 +       struct au_wbr *wbr;
3877 +       struct dentry *root;
3878 +       struct file **to_free;
3879 +
3880 +       err = 0;
3881 +       opened = 0;
3882 +       to_free = NULL;
3883 +       root = sb->s_root;
3884 +       bindex = au_find_dbindex(root, del->h_path.dentry);
3885 +       if (bindex < 0) {
3886 +               if (remount)
3887 +                       goto out; /* success */
3888 +               err = -ENOENT;
3889 +               pr_err("%s no such branch\n", del->pathname);
3890 +               goto out;
3891 +       }
3892 +       AuDbg("bindex b%d\n", bindex);
3893 +
3894 +       err = -EBUSY;
3895 +       mnt_flags = au_mntflags(sb);
3896 +       verbose = !!au_opt_test(mnt_flags, VERBOSE);
3897 +       bbot = au_sbbot(sb);
3898 +       if (unlikely(!bbot)) {
3899 +               AuVerbose(verbose, "no more branches left\n");
3900 +               goto out;
3901 +       }
3902 +       br = au_sbr(sb, bindex);
3903 +       AuDebugOn(!path_equal(&br->br_path, &del->h_path));
3904 +
3905 +       br_id = br->br_id;
3906 +       opened = au_br_count(br);
3907 +       if (unlikely(opened)) {
3908 +               to_free = au_array_alloc(&opened, empty_cb, sb, NULL);
3909 +               err = PTR_ERR(to_free);
3910 +               if (IS_ERR(to_free))
3911 +                       goto out;
3912 +
3913 +               err = test_file_busy(sb, br_id, to_free, opened);
3914 +               if (unlikely(err)) {
3915 +                       AuVerbose(verbose, "%llu file(s) opened\n", opened);
3916 +                       goto out;
3917 +               }
3918 +       }
3919 +
3920 +       wbr = br->br_wbr;
3921 +       do_wh = wbr && (wbr->wbr_whbase || wbr->wbr_plink || wbr->wbr_orph);
3922 +       if (do_wh) {
3923 +               /* instead of WbrWhMustWriteLock(wbr) */
3924 +               SiMustWriteLock(sb);
3925 +               for (i = 0; i < AuBrWh_Last; i++) {
3926 +                       dput(wbr->wbr_wh[i]);
3927 +                       wbr->wbr_wh[i] = NULL;
3928 +               }
3929 +       }
3930 +
3931 +       err = test_children_busy(root, bindex, verbose);
3932 +       if (unlikely(err)) {
3933 +               if (do_wh)
3934 +                       goto out_wh;
3935 +               goto out;
3936 +       }
3937 +
3938 +       err = 0;
3939 +       if (to_free) {
3940 +               /*
3941 +                * now we confirmed the branch is deletable.
3942 +                * let's free the remaining opened dirs on the branch.
3943 +                */
3944 +               di_write_unlock(root);
3945 +               br_del_file(to_free, opened, br_id);
3946 +               di_write_lock_child(root);
3947 +       }
3948 +
3949 +       if (!remount)
3950 +               au_br_do_del(sb, bindex, br);
3951 +       else {
3952 +               sysaufs_brs_del(sb, bindex);
3953 +               au_br_do_del(sb, bindex, br);
3954 +               sysaufs_brs_add(sb, bindex);
3955 +       }
3956 +
3957 +       if (!bindex) {
3958 +               au_cpup_attr_all(d_inode(root), /*force*/1);
3959 +               sb->s_maxbytes = au_sbr_sb(sb, 0)->s_maxbytes;
3960 +       } else
3961 +               au_sub_nlink(d_inode(root), d_inode(del->h_path.dentry));
3962 +       if (au_opt_test(mnt_flags, PLINK))
3963 +               au_plink_half_refresh(sb, br_id);
3964 +
3965 +       if (au_xino_brid(sb) == br_id)
3966 +               au_xino_brid_set(sb, -1);
3967 +       goto out; /* success */
3968 +
3969 +out_wh:
3970 +       /* revert */
3971 +       rerr = au_br_init_wh(sb, br, br->br_perm);
3972 +       if (rerr)
3973 +               pr_warn("failed re-creating base whiteout, %s. (%d)\n",
3974 +                       del->pathname, rerr);
3975 +out:
3976 +       if (to_free)
3977 +               au_farray_free(to_free, opened);
3978 +       return err;
3979 +}
3980 +
3981 +/* ---------------------------------------------------------------------- */
3982 +
3983 +static int au_ibusy(struct super_block *sb, struct aufs_ibusy __user *arg)
3984 +{
3985 +       int err;
3986 +       aufs_bindex_t btop, bbot;
3987 +       struct aufs_ibusy ibusy;
3988 +       struct inode *inode, *h_inode;
3989 +
3990 +       err = -EPERM;
3991 +       if (unlikely(!capable(CAP_SYS_ADMIN)))
3992 +               goto out;
3993 +
3994 +       err = copy_from_user(&ibusy, arg, sizeof(ibusy));
3995 +       if (!err)
3996 +               err = !access_ok(VERIFY_WRITE, &arg->h_ino, sizeof(arg->h_ino));
3997 +       if (unlikely(err)) {
3998 +               err = -EFAULT;
3999 +               AuTraceErr(err);
4000 +               goto out;
4001 +       }
4002 +
4003 +       err = -EINVAL;
4004 +       si_read_lock(sb, AuLock_FLUSH);
4005 +       if (unlikely(ibusy.bindex < 0 || ibusy.bindex > au_sbbot(sb)))
4006 +               goto out_unlock;
4007 +
4008 +       err = 0;
4009 +       ibusy.h_ino = 0; /* invalid */
4010 +       inode = ilookup(sb, ibusy.ino);
4011 +       if (!inode
4012 +           || inode->i_ino == AUFS_ROOT_INO
4013 +           || au_is_bad_inode(inode))
4014 +               goto out_unlock;
4015 +
4016 +       ii_read_lock_child(inode);
4017 +       btop = au_ibtop(inode);
4018 +       bbot = au_ibbot(inode);
4019 +       if (btop <= ibusy.bindex && ibusy.bindex <= bbot) {
4020 +               h_inode = au_h_iptr(inode, ibusy.bindex);
4021 +               if (h_inode && au_test_ibusy(inode, btop, bbot))
4022 +                       ibusy.h_ino = h_inode->i_ino;
4023 +       }
4024 +       ii_read_unlock(inode);
4025 +       iput(inode);
4026 +
4027 +out_unlock:
4028 +       si_read_unlock(sb);
4029 +       if (!err) {
4030 +               err = __put_user(ibusy.h_ino, &arg->h_ino);
4031 +               if (unlikely(err)) {
4032 +                       err = -EFAULT;
4033 +                       AuTraceErr(err);
4034 +               }
4035 +       }
4036 +out:
4037 +       return err;
4038 +}
4039 +
4040 +long au_ibusy_ioctl(struct file *file, unsigned long arg)
4041 +{
4042 +       return au_ibusy(file->f_path.dentry->d_sb, (void __user *)arg);
4043 +}
4044 +
4045 +#ifdef CONFIG_COMPAT
4046 +long au_ibusy_compat_ioctl(struct file *file, unsigned long arg)
4047 +{
4048 +       return au_ibusy(file->f_path.dentry->d_sb, compat_ptr(arg));
4049 +}
4050 +#endif
4051 +
4052 +/* ---------------------------------------------------------------------- */
4053 +
4054 +/*
4055 + * change a branch permission
4056 + */
4057 +
4058 +static void au_warn_ima(void)
4059 +{
4060 +#ifdef CONFIG_IMA
4061 +       /* since it doesn't support mark_files_ro() */
4062 +       AuWarn1("RW -> RO makes IMA to produce wrong message\n");
4063 +#endif
4064 +}
4065 +
4066 +static int do_need_sigen_inc(int a, int b)
4067 +{
4068 +       return au_br_whable(a) && !au_br_whable(b);
4069 +}
4070 +
4071 +static int need_sigen_inc(int old, int new)
4072 +{
4073 +       return do_need_sigen_inc(old, new)
4074 +               || do_need_sigen_inc(new, old);
4075 +}
4076 +
4077 +static int au_br_mod_files_ro(struct super_block *sb, aufs_bindex_t bindex)
4078 +{
4079 +       int err, do_warn;
4080 +       unsigned int mnt_flags;
4081 +       unsigned long long ull, max;
4082 +       aufs_bindex_t br_id;
4083 +       unsigned char verbose, writer;
4084 +       struct file *file, *hf, **array;
4085 +       struct au_hfile *hfile;
4086 +
4087 +       mnt_flags = au_mntflags(sb);
4088 +       verbose = !!au_opt_test(mnt_flags, VERBOSE);
4089 +
4090 +       array = au_farray_alloc(sb, &max);
4091 +       err = PTR_ERR(array);
4092 +       if (IS_ERR(array))
4093 +               goto out;
4094 +
4095 +       do_warn = 0;
4096 +       br_id = au_sbr_id(sb, bindex);
4097 +       for (ull = 0; ull < max; ull++) {
4098 +               file = array[ull];
4099 +               if (unlikely(!file))
4100 +                       break;
4101 +
4102 +               /* AuDbg("%pD\n", file); */
4103 +               fi_read_lock(file);
4104 +               if (unlikely(au_test_mmapped(file))) {
4105 +                       err = -EBUSY;
4106 +                       AuVerbose(verbose, "mmapped %pD\n", file);
4107 +                       AuDbgFile(file);
4108 +                       FiMustNoWaiters(file);
4109 +                       fi_read_unlock(file);
4110 +                       goto out_array;
4111 +               }
4112 +
4113 +               hfile = &au_fi(file)->fi_htop;
4114 +               hf = hfile->hf_file;
4115 +               if (!d_is_reg(file->f_path.dentry)
4116 +                   || !(file->f_mode & FMODE_WRITE)
4117 +                   || hfile->hf_br->br_id != br_id
4118 +                   || !(hf->f_mode & FMODE_WRITE))
4119 +                       array[ull] = NULL;
4120 +               else {
4121 +                       do_warn = 1;
4122 +                       get_file(file);
4123 +               }
4124 +
4125 +               FiMustNoWaiters(file);
4126 +               fi_read_unlock(file);
4127 +               fput(file);
4128 +       }
4129 +
4130 +       err = 0;
4131 +       if (do_warn)
4132 +               au_warn_ima();
4133 +
4134 +       for (ull = 0; ull < max; ull++) {
4135 +               file = array[ull];
4136 +               if (!file)
4137 +                       continue;
4138 +
4139 +               /* todo: already flushed? */
4140 +               /*
4141 +                * fs/super.c:mark_files_ro() is gone, but aufs keeps its
4142 +                * approach which resets f_mode and calls mnt_drop_write() and
4143 +                * file_release_write() for each file, because the branch
4144 +                * attribute in aufs world is totally different from the native
4145 +                * fs rw/ro mode.
4146 +               */
4147 +               /* fi_read_lock(file); */
4148 +               hfile = &au_fi(file)->fi_htop;
4149 +               hf = hfile->hf_file;
4150 +               /* fi_read_unlock(file); */
4151 +               spin_lock(&hf->f_lock);
4152 +               writer = !!(hf->f_mode & FMODE_WRITER);
4153 +               hf->f_mode &= ~(FMODE_WRITE | FMODE_WRITER);
4154 +               spin_unlock(&hf->f_lock);
4155 +               if (writer) {
4156 +                       put_write_access(file_inode(hf));
4157 +                       __mnt_drop_write(hf->f_path.mnt);
4158 +               }
4159 +       }
4160 +
4161 +out_array:
4162 +       au_farray_free(array, max);
4163 +out:
4164 +       AuTraceErr(err);
4165 +       return err;
4166 +}
4167 +
4168 +int au_br_mod(struct super_block *sb, struct au_opt_mod *mod, int remount,
4169 +             int *do_refresh)
4170 +{
4171 +       int err, rerr;
4172 +       aufs_bindex_t bindex;
4173 +       struct dentry *root;
4174 +       struct au_branch *br;
4175 +       struct au_br_fhsm *bf;
4176 +
4177 +       root = sb->s_root;
4178 +       bindex = au_find_dbindex(root, mod->h_root);
4179 +       if (bindex < 0) {
4180 +               if (remount)
4181 +                       return 0; /* success */
4182 +               err = -ENOENT;
4183 +               pr_err("%s no such branch\n", mod->path);
4184 +               goto out;
4185 +       }
4186 +       AuDbg("bindex b%d\n", bindex);
4187 +
4188 +       err = test_br(d_inode(mod->h_root), mod->perm, mod->path);
4189 +       if (unlikely(err))
4190 +               goto out;
4191 +
4192 +       br = au_sbr(sb, bindex);
4193 +       AuDebugOn(mod->h_root != au_br_dentry(br));
4194 +       if (br->br_perm == mod->perm)
4195 +               return 0; /* success */
4196 +
4197 +       /* pre-allocate for non-fhsm --> fhsm */
4198 +       bf = NULL;
4199 +       if (!au_br_fhsm(br->br_perm) && au_br_fhsm(mod->perm)) {
4200 +               err = au_fhsm_br_alloc(br);
4201 +               if (unlikely(err))
4202 +                       goto out;
4203 +               bf = br->br_fhsm;
4204 +               br->br_fhsm = NULL;
4205 +       }
4206 +
4207 +       if (au_br_writable(br->br_perm)) {
4208 +               /* remove whiteout base */
4209 +               err = au_br_init_wh(sb, br, mod->perm);
4210 +               if (unlikely(err))
4211 +                       goto out_bf;
4212 +
4213 +               if (!au_br_writable(mod->perm)) {
4214 +                       /* rw --> ro, file might be mmapped */
4215 +                       DiMustNoWaiters(root);
4216 +                       IiMustNoWaiters(d_inode(root));
4217 +                       di_write_unlock(root);
4218 +                       err = au_br_mod_files_ro(sb, bindex);
4219 +                       /* aufs_write_lock() calls ..._child() */
4220 +                       di_write_lock_child(root);
4221 +
4222 +                       if (unlikely(err)) {
4223 +                               rerr = -ENOMEM;
4224 +                               br->br_wbr = kzalloc(sizeof(*br->br_wbr),
4225 +                                                    GFP_NOFS);
4226 +                               if (br->br_wbr)
4227 +                                       rerr = au_wbr_init(br, sb, br->br_perm);
4228 +                               if (unlikely(rerr)) {
4229 +                                       AuIOErr("nested error %d (%d)\n",
4230 +                                               rerr, err);
4231 +                                       br->br_perm = mod->perm;
4232 +                               }
4233 +                       }
4234 +               }
4235 +       } else if (au_br_writable(mod->perm)) {
4236 +               /* ro --> rw */
4237 +               err = -ENOMEM;
4238 +               br->br_wbr = kzalloc(sizeof(*br->br_wbr), GFP_NOFS);
4239 +               if (br->br_wbr) {
4240 +                       err = au_wbr_init(br, sb, mod->perm);
4241 +                       if (unlikely(err)) {
4242 +                               au_delayed_kfree(br->br_wbr);
4243 +                               br->br_wbr = NULL;
4244 +                       }
4245 +               }
4246 +       }
4247 +       if (unlikely(err))
4248 +               goto out_bf;
4249 +
4250 +       if (au_br_fhsm(br->br_perm)) {
4251 +               if (!au_br_fhsm(mod->perm)) {
4252 +                       /* fhsm --> non-fhsm */
4253 +                       au_br_fhsm_fin(br->br_fhsm);
4254 +                       au_delayed_kfree(br->br_fhsm);
4255 +                       br->br_fhsm = NULL;
4256 +               }
4257 +       } else if (au_br_fhsm(mod->perm))
4258 +               /* non-fhsm --> fhsm */
4259 +               br->br_fhsm = bf;
4260 +
4261 +       *do_refresh |= need_sigen_inc(br->br_perm, mod->perm);
4262 +       br->br_perm = mod->perm;
4263 +       goto out; /* success */
4264 +
4265 +out_bf:
4266 +       if (bf)
4267 +               au_delayed_kfree(bf);
4268 +out:
4269 +       AuTraceErr(err);
4270 +       return err;
4271 +}
4272 +
4273 +/* ---------------------------------------------------------------------- */
4274 +
4275 +int au_br_stfs(struct au_branch *br, struct aufs_stfs *stfs)
4276 +{
4277 +       int err;
4278 +       struct kstatfs kstfs;
4279 +
4280 +       err = vfs_statfs(&br->br_path, &kstfs);
4281 +       if (!err) {
4282 +               stfs->f_blocks = kstfs.f_blocks;
4283 +               stfs->f_bavail = kstfs.f_bavail;
4284 +               stfs->f_files = kstfs.f_files;
4285 +               stfs->f_ffree = kstfs.f_ffree;
4286 +       }
4287 +
4288 +       return err;
4289 +}
4290 diff -urN /usr/share/empty/fs/aufs/branch.h linux/fs/aufs/branch.h
4291 --- /usr/share/empty/fs/aufs/branch.h   1970-01-01 01:00:00.000000000 +0100
4292 +++ linux/fs/aufs/branch.h      2016-10-09 16:55:36.486034798 +0200
4293 @@ -0,0 +1,309 @@
4294 +/*
4295 + * Copyright (C) 2005-2016 Junjiro R. Okajima
4296 + *
4297 + * This program, aufs is free software; you can redistribute it and/or modify
4298 + * it under the terms of the GNU General Public License as published by
4299 + * the Free Software Foundation; either version 2 of the License, or
4300 + * (at your option) any later version.
4301 + *
4302 + * This program is distributed in the hope that it will be useful,
4303 + * but WITHOUT ANY WARRANTY; without even the implied warranty of
4304 + * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
4305 + * GNU General Public License for more details.
4306 + *
4307 + * You should have received a copy of the GNU General Public License
4308 + * along with this program.  If not, see <http://www.gnu.org/licenses/>.
4309 + */
4310 +
4311 +/*
4312 + * branch filesystems and xino for them
4313 + */
4314 +
4315 +#ifndef __AUFS_BRANCH_H__
4316 +#define __AUFS_BRANCH_H__
4317 +
4318 +#ifdef __KERNEL__
4319 +
4320 +#include <linux/mount.h>
4321 +#include "dynop.h"
4322 +#include "rwsem.h"
4323 +#include "super.h"
4324 +
4325 +/* ---------------------------------------------------------------------- */
4326 +
4327 +/* a xino file */
4328 +struct au_xino_file {
4329 +       struct file             *xi_file;
4330 +       struct mutex            xi_nondir_mtx;
4331 +
4332 +       /* todo: make xino files an array to support huge inode number */
4333 +
4334 +#ifdef CONFIG_DEBUG_FS
4335 +       struct dentry            *xi_dbgaufs;
4336 +#endif
4337 +};
4338 +
4339 +/* File-based Hierarchical Storage Management */
4340 +struct au_br_fhsm {
4341 +#ifdef CONFIG_AUFS_FHSM
4342 +       struct mutex            bf_lock;
4343 +       unsigned long           bf_jiffy;
4344 +       struct aufs_stfs        bf_stfs;
4345 +       int                     bf_readable;
4346 +#endif
4347 +};
4348 +
4349 +/* members for writable branch only */
4350 +enum {AuBrWh_BASE, AuBrWh_PLINK, AuBrWh_ORPH, AuBrWh_Last};
4351 +struct au_wbr {
4352 +       struct au_rwsem         wbr_wh_rwsem;
4353 +       struct dentry           *wbr_wh[AuBrWh_Last];
4354 +       atomic_t                wbr_wh_running;
4355 +#define wbr_whbase             wbr_wh[AuBrWh_BASE]     /* whiteout base */
4356 +#define wbr_plink              wbr_wh[AuBrWh_PLINK]    /* pseudo-link dir */
4357 +#define wbr_orph               wbr_wh[AuBrWh_ORPH]     /* dir for orphans */
4358 +
4359 +       /* mfs mode */
4360 +       unsigned long long      wbr_bytes;
4361 +};
4362 +
4363 +/* ext2 has 3 types of operations at least, ext3 has 4 */
4364 +#define AuBrDynOp (AuDyLast * 4)
4365 +
4366 +#ifdef CONFIG_AUFS_HFSNOTIFY
4367 +/* support for asynchronous destruction */
4368 +struct au_br_hfsnotify {
4369 +       struct fsnotify_group   *hfsn_group;
4370 +};
4371 +#endif
4372 +
4373 +/* sysfs entries */
4374 +struct au_brsysfs {
4375 +       char                    name[16];
4376 +       struct attribute        attr;
4377 +};
4378 +
4379 +enum {
4380 +       AuBrSysfs_BR,
4381 +       AuBrSysfs_BRID,
4382 +       AuBrSysfs_Last
4383 +};
4384 +
4385 +/* protected by superblock rwsem */
4386 +struct au_branch {
4387 +       struct au_xino_file     br_xino;
4388 +
4389 +       aufs_bindex_t           br_id;
4390 +
4391 +       int                     br_perm;
4392 +       struct path             br_path;
4393 +       spinlock_t              br_dykey_lock;
4394 +       struct au_dykey         *br_dykey[AuBrDynOp];
4395 +       struct percpu_counter   br_count;
4396 +
4397 +       struct au_wbr           *br_wbr;
4398 +       struct au_br_fhsm       *br_fhsm;
4399 +
4400 +       /* xino truncation */
4401 +       atomic_t                br_xino_running;
4402 +
4403 +#ifdef CONFIG_AUFS_HFSNOTIFY
4404 +       struct au_br_hfsnotify  *br_hfsn;
4405 +#endif
4406 +
4407 +#ifdef CONFIG_SYSFS
4408 +       /* entries under sysfs per mount-point */
4409 +       struct au_brsysfs       br_sysfs[AuBrSysfs_Last];
4410 +#endif
4411 +};
4412 +
4413 +/* ---------------------------------------------------------------------- */
4414 +
4415 +static inline struct vfsmount *au_br_mnt(struct au_branch *br)
4416 +{
4417 +       return br->br_path.mnt;
4418 +}
4419 +
4420 +static inline struct dentry *au_br_dentry(struct au_branch *br)
4421 +{
4422 +       return br->br_path.dentry;
4423 +}
4424 +
4425 +static inline struct super_block *au_br_sb(struct au_branch *br)
4426 +{
4427 +       return au_br_mnt(br)->mnt_sb;
4428 +}
4429 +
4430 +static inline void au_br_get(struct au_branch *br)
4431 +{
4432 +       percpu_counter_inc(&br->br_count);
4433 +}
4434 +
4435 +static inline void au_br_put(struct au_branch *br)
4436 +{
4437 +       percpu_counter_dec(&br->br_count);
4438 +}
4439 +
4440 +static inline s64 au_br_count(struct au_branch *br)
4441 +{
4442 +       return percpu_counter_sum(&br->br_count);
4443 +}
4444 +
4445 +static inline void au_br_count_init(struct au_branch *br)
4446 +{
4447 +       percpu_counter_init(&br->br_count, 0, GFP_NOFS);
4448 +}
4449 +
4450 +static inline void au_br_count_fin(struct au_branch *br)
4451 +{
4452 +       percpu_counter_destroy(&br->br_count);
4453 +}
4454 +
4455 +static inline int au_br_rdonly(struct au_branch *br)
4456 +{
4457 +       return ((au_br_sb(br)->s_flags & MS_RDONLY)
4458 +               || !au_br_writable(br->br_perm))
4459 +               ? -EROFS : 0;
4460 +}
4461 +
4462 +static inline int au_br_hnotifyable(int brperm __maybe_unused)
4463 +{
4464 +#ifdef CONFIG_AUFS_HNOTIFY
4465 +       return !(brperm & AuBrPerm_RR);
4466 +#else
4467 +       return 0;
4468 +#endif
4469 +}
4470 +
4471 +static inline int au_br_test_oflag(int oflag, struct au_branch *br)
4472 +{
4473 +       int err, exec_flag;
4474 +
4475 +       err = 0;
4476 +       exec_flag = oflag & __FMODE_EXEC;
4477 +       if (unlikely(exec_flag && path_noexec(&br->br_path)))
4478 +               err = -EACCES;
4479 +
4480 +       return err;
4481 +}
4482 +
4483 +/* ---------------------------------------------------------------------- */
4484 +
4485 +/* branch.c */
4486 +struct au_sbinfo;
4487 +void au_br_free(struct au_sbinfo *sinfo);
4488 +int au_br_index(struct super_block *sb, aufs_bindex_t br_id);
4489 +struct au_opt_add;
4490 +int au_br_add(struct super_block *sb, struct au_opt_add *add, int remount);
4491 +struct au_opt_del;
4492 +int au_br_del(struct super_block *sb, struct au_opt_del *del, int remount);
4493 +long au_ibusy_ioctl(struct file *file, unsigned long arg);
4494 +#ifdef CONFIG_COMPAT
4495 +long au_ibusy_compat_ioctl(struct file *file, unsigned long arg);
4496 +#endif
4497 +struct au_opt_mod;
4498 +int au_br_mod(struct super_block *sb, struct au_opt_mod *mod, int remount,
4499 +             int *do_refresh);
4500 +struct aufs_stfs;
4501 +int au_br_stfs(struct au_branch *br, struct aufs_stfs *stfs);
4502 +
4503 +/* xino.c */
4504 +static const loff_t au_loff_max = LLONG_MAX;
4505 +
4506 +int au_xib_trunc(struct super_block *sb);
4507 +ssize_t xino_fread(vfs_readf_t func, struct file *file, void *buf, size_t size,
4508 +                  loff_t *pos);
4509 +ssize_t xino_fwrite(vfs_writef_t func, struct file *file, void *buf,
4510 +                   size_t size, loff_t *pos);
4511 +struct file *au_xino_create2(struct file *base_file, struct file *copy_src);
4512 +struct file *au_xino_create(struct super_block *sb, char *fname, int silent);
4513 +ino_t au_xino_new_ino(struct super_block *sb);
4514 +void au_xino_delete_inode(struct inode *inode, const int unlinked);
4515 +int au_xino_write(struct super_block *sb, aufs_bindex_t bindex, ino_t h_ino,
4516 +                 ino_t ino);
4517 +int au_xino_read(struct super_block *sb, aufs_bindex_t bindex, ino_t h_ino,
4518 +                ino_t *ino);
4519 +int au_xino_br(struct super_block *sb, struct au_branch *br, ino_t hino,
4520 +              struct file *base_file, int do_test);
4521 +int au_xino_trunc(struct super_block *sb, aufs_bindex_t bindex);
4522 +
4523 +struct au_opt_xino;
4524 +int au_xino_set(struct super_block *sb, struct au_opt_xino *xino, int remount);
4525 +void au_xino_clr(struct super_block *sb);
4526 +struct file *au_xino_def(struct super_block *sb);
4527 +int au_xino_path(struct seq_file *seq, struct file *file);
4528 +
4529 +/* ---------------------------------------------------------------------- */
4530 +
4531 +/* Superblock to branch */
4532 +static inline
4533 +aufs_bindex_t au_sbr_id(struct super_block *sb, aufs_bindex_t bindex)
4534 +{
4535 +       return au_sbr(sb, bindex)->br_id;
4536 +}
4537 +
4538 +static inline
4539 +struct vfsmount *au_sbr_mnt(struct super_block *sb, aufs_bindex_t bindex)
4540 +{
4541 +       return au_br_mnt(au_sbr(sb, bindex));
4542 +}
4543 +
4544 +static inline
4545 +struct super_block *au_sbr_sb(struct super_block *sb, aufs_bindex_t bindex)
4546 +{
4547 +       return au_br_sb(au_sbr(sb, bindex));
4548 +}
4549 +
4550 +static inline void au_sbr_get(struct super_block *sb, aufs_bindex_t bindex)
4551 +{
4552 +       au_br_get(au_sbr(sb, bindex));
4553 +}
4554 +
4555 +static inline void au_sbr_put(struct super_block *sb, aufs_bindex_t bindex)
4556 +{
4557 +       au_br_put(au_sbr(sb, bindex));
4558 +}
4559 +
4560 +static inline int au_sbr_perm(struct super_block *sb, aufs_bindex_t bindex)
4561 +{
4562 +       return au_sbr(sb, bindex)->br_perm;
4563 +}
4564 +
4565 +static inline int au_sbr_whable(struct super_block *sb, aufs_bindex_t bindex)
4566 +{
4567 +       return au_br_whable(au_sbr_perm(sb, bindex));
4568 +}
4569 +
4570 +/* ---------------------------------------------------------------------- */
4571 +
4572 +/*
4573 + * wbr_wh_read_lock, wbr_wh_write_lock
4574 + * wbr_wh_read_unlock, wbr_wh_write_unlock, wbr_wh_downgrade_lock
4575 + */
4576 +AuSimpleRwsemFuncs(wbr_wh, struct au_wbr *wbr, &wbr->wbr_wh_rwsem);
4577 +
4578 +#define WbrWhMustNoWaiters(wbr)        AuRwMustNoWaiters(&wbr->wbr_wh_rwsem)
4579 +#define WbrWhMustAnyLock(wbr)  AuRwMustAnyLock(&wbr->wbr_wh_rwsem)
4580 +#define WbrWhMustWriteLock(wbr)        AuRwMustWriteLock(&wbr->wbr_wh_rwsem)
4581 +
4582 +/* ---------------------------------------------------------------------- */
4583 +
4584 +#ifdef CONFIG_AUFS_FHSM
4585 +static inline void au_br_fhsm_init(struct au_br_fhsm *brfhsm)
4586 +{
4587 +       mutex_init(&brfhsm->bf_lock);
4588 +       brfhsm->bf_jiffy = 0;
4589 +       brfhsm->bf_readable = 0;
4590 +}
4591 +
4592 +static inline void au_br_fhsm_fin(struct au_br_fhsm *brfhsm)
4593 +{
4594 +       mutex_destroy(&brfhsm->bf_lock);
4595 +}
4596 +#else
4597 +AuStubVoid(au_br_fhsm_init, struct au_br_fhsm *brfhsm)
4598 +AuStubVoid(au_br_fhsm_fin, struct au_br_fhsm *brfhsm)
4599 +#endif
4600 +
4601 +#endif /* __KERNEL__ */
4602 +#endif /* __AUFS_BRANCH_H__ */
4603 diff -urN /usr/share/empty/fs/aufs/conf.mk linux/fs/aufs/conf.mk
4604 --- /usr/share/empty/fs/aufs/conf.mk    1970-01-01 01:00:00.000000000 +0100
4605 +++ linux/fs/aufs/conf.mk       2016-10-09 16:55:36.486034798 +0200
4606 @@ -0,0 +1,38 @@
4607 +
4608 +AuConfStr = CONFIG_AUFS_FS=${CONFIG_AUFS_FS}
4609 +
4610 +define AuConf
4611 +ifdef ${1}
4612 +AuConfStr += ${1}=${${1}}
4613 +endif
4614 +endef
4615 +
4616 +AuConfAll = BRANCH_MAX_127 BRANCH_MAX_511 BRANCH_MAX_1023 BRANCH_MAX_32767 \
4617 +       SBILIST \
4618 +       HNOTIFY HFSNOTIFY \
4619 +       EXPORT INO_T_64 \
4620 +       XATTR \
4621 +       FHSM \
4622 +       RDU \
4623 +       SHWH \
4624 +       BR_RAMFS \
4625 +       BR_FUSE POLL \
4626 +       BR_HFSPLUS \
4627 +       BDEV_LOOP \
4628 +       DEBUG MAGIC_SYSRQ
4629 +$(foreach i, ${AuConfAll}, \
4630 +       $(eval $(call AuConf,CONFIG_AUFS_${i})))
4631 +
4632 +AuConfName = ${obj}/conf.str
4633 +${AuConfName}.tmp: FORCE
4634 +       @echo ${AuConfStr} | tr ' ' '\n' | sed -e 's/^/"/' -e 's/$$/\\n"/' > $@
4635 +${AuConfName}: ${AuConfName}.tmp
4636 +       @diff -q $< $@ > /dev/null 2>&1 || { \
4637 +       echo '  GEN    ' $@; \
4638 +       cp -p $< $@; \
4639 +       }
4640 +FORCE:
4641 +clean-files += ${AuConfName} ${AuConfName}.tmp
4642 +${obj}/sysfs.o: ${AuConfName}
4643 +
4644 +-include ${srctree}/${src}/conf_priv.mk
4645 diff -urN /usr/share/empty/fs/aufs/cpup.c linux/fs/aufs/cpup.c
4646 --- /usr/share/empty/fs/aufs/cpup.c     1970-01-01 01:00:00.000000000 +0100
4647 +++ linux/fs/aufs/cpup.c        2016-12-17 12:28:17.595211562 +0100
4648 @@ -0,0 +1,1394 @@
4649 +/*
4650 + * Copyright (C) 2005-2016 Junjiro R. Okajima
4651 + *
4652 + * This program, aufs is free software; you can redistribute it and/or modify
4653 + * it under the terms of the GNU General Public License as published by
4654 + * the Free Software Foundation; either version 2 of the License, or
4655 + * (at your option) any later version.
4656 + *
4657 + * This program is distributed in the hope that it will be useful,
4658 + * but WITHOUT ANY WARRANTY; without even the implied warranty of
4659 + * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
4660 + * GNU General Public License for more details.
4661 + *
4662 + * You should have received a copy of the GNU General Public License
4663 + * along with this program.  If not, see <http://www.gnu.org/licenses/>.
4664 + */
4665 +
4666 +/*
4667 + * copy-up functions, see wbr_policy.c for copy-down
4668 + */
4669 +
4670 +#include <linux/fs_stack.h>
4671 +#include <linux/mm.h>
4672 +#include <linux/task_work.h>
4673 +#include "aufs.h"
4674 +
4675 +void au_cpup_attr_flags(struct inode *dst, unsigned int iflags)
4676 +{
4677 +       const unsigned int mask = S_DEAD | S_SWAPFILE | S_PRIVATE
4678 +               | S_NOATIME | S_NOCMTIME | S_AUTOMOUNT;
4679 +
4680 +       BUILD_BUG_ON(sizeof(iflags) != sizeof(dst->i_flags));
4681 +
4682 +       dst->i_flags |= iflags & ~mask;
4683 +       if (au_test_fs_notime(dst->i_sb))
4684 +               dst->i_flags |= S_NOATIME | S_NOCMTIME;
4685 +}
4686 +
4687 +void au_cpup_attr_timesizes(struct inode *inode)
4688 +{
4689 +       struct inode *h_inode;
4690 +
4691 +       h_inode = au_h_iptr(inode, au_ibtop(inode));
4692 +       fsstack_copy_attr_times(inode, h_inode);
4693 +       fsstack_copy_inode_size(inode, h_inode);
4694 +}
4695 +
4696 +void au_cpup_attr_nlink(struct inode *inode, int force)
4697 +{
4698 +       struct inode *h_inode;
4699 +       struct super_block *sb;
4700 +       aufs_bindex_t bindex, bbot;
4701 +
4702 +       sb = inode->i_sb;
4703 +       bindex = au_ibtop(inode);
4704 +       h_inode = au_h_iptr(inode, bindex);
4705 +       if (!force
4706 +           && !S_ISDIR(h_inode->i_mode)
4707 +           && au_opt_test(au_mntflags(sb), PLINK)
4708 +           && au_plink_test(inode))
4709 +               return;
4710 +
4711 +       /*
4712 +        * 0 can happen in revalidating.
4713 +        * h_inode->i_mutex may not be held here, but it is harmless since once
4714 +        * i_nlink reaches 0, it will never become positive except O_TMPFILE
4715 +        * case.
4716 +        * todo: O_TMPFILE+linkat(AT_SYMLINK_FOLLOW) bypassing aufs may cause
4717 +        *       the incorrect link count.
4718 +        */
4719 +       set_nlink(inode, h_inode->i_nlink);
4720 +
4721 +       /*
4722 +        * fewer nlink makes find(1) noisy, but larger nlink doesn't.
4723 +        * it may includes whplink directory.
4724 +        */
4725 +       if (S_ISDIR(h_inode->i_mode)) {
4726 +               bbot = au_ibbot(inode);
4727 +               for (bindex++; bindex <= bbot; bindex++) {
4728 +                       h_inode = au_h_iptr(inode, bindex);
4729 +                       if (h_inode)
4730 +                               au_add_nlink(inode, h_inode);
4731 +               }
4732 +       }
4733 +}
4734 +
4735 +void au_cpup_attr_changeable(struct inode *inode)
4736 +{
4737 +       struct inode *h_inode;
4738 +
4739 +       h_inode = au_h_iptr(inode, au_ibtop(inode));
4740 +       inode->i_mode = h_inode->i_mode;
4741 +       inode->i_uid = h_inode->i_uid;
4742 +       inode->i_gid = h_inode->i_gid;
4743 +       au_cpup_attr_timesizes(inode);
4744 +       au_cpup_attr_flags(inode, h_inode->i_flags);
4745 +}
4746 +
4747 +void au_cpup_igen(struct inode *inode, struct inode *h_inode)
4748 +{
4749 +       struct au_iinfo *iinfo = au_ii(inode);
4750 +
4751 +       IiMustWriteLock(inode);
4752 +
4753 +       iinfo->ii_higen = h_inode->i_generation;
4754 +       iinfo->ii_hsb1 = h_inode->i_sb;
4755 +}
4756 +
4757 +void au_cpup_attr_all(struct inode *inode, int force)
4758 +{
4759 +       struct inode *h_inode;
4760 +
4761 +       h_inode = au_h_iptr(inode, au_ibtop(inode));
4762 +       au_cpup_attr_changeable(inode);
4763 +       if (inode->i_nlink > 0)
4764 +               au_cpup_attr_nlink(inode, force);
4765 +       inode->i_rdev = h_inode->i_rdev;
4766 +       inode->i_blkbits = h_inode->i_blkbits;
4767 +       au_cpup_igen(inode, h_inode);
4768 +}
4769 +
4770 +/* ---------------------------------------------------------------------- */
4771 +
4772 +/* Note: dt_dentry and dt_h_dentry are not dget/dput-ed */
4773 +
4774 +/* keep the timestamps of the parent dir when cpup */
4775 +void au_dtime_store(struct au_dtime *dt, struct dentry *dentry,
4776 +                   struct path *h_path)
4777 +{
4778 +       struct inode *h_inode;
4779 +
4780 +       dt->dt_dentry = dentry;
4781 +       dt->dt_h_path = *h_path;
4782 +       h_inode = d_inode(h_path->dentry);
4783 +       dt->dt_atime = h_inode->i_atime;
4784 +       dt->dt_mtime = h_inode->i_mtime;
4785 +       /* smp_mb(); */
4786 +}
4787 +
4788 +void au_dtime_revert(struct au_dtime *dt)
4789 +{
4790 +       struct iattr attr;
4791 +       int err;
4792 +
4793 +       attr.ia_atime = dt->dt_atime;
4794 +       attr.ia_mtime = dt->dt_mtime;
4795 +       attr.ia_valid = ATTR_FORCE | ATTR_MTIME | ATTR_MTIME_SET
4796 +               | ATTR_ATIME | ATTR_ATIME_SET;
4797 +
4798 +       /* no delegation since this is a directory */
4799 +       err = vfsub_notify_change(&dt->dt_h_path, &attr, /*delegated*/NULL);
4800 +       if (unlikely(err))
4801 +               pr_warn("restoring timestamps failed(%d). ignored\n", err);
4802 +}
4803 +
4804 +/* ---------------------------------------------------------------------- */
4805 +
4806 +/* internal use only */
4807 +struct au_cpup_reg_attr {
4808 +       int             valid;
4809 +       struct kstat    st;
4810 +       unsigned int    iflags; /* inode->i_flags */
4811 +};
4812 +
4813 +static noinline_for_stack
4814 +int cpup_iattr(struct dentry *dst, aufs_bindex_t bindex, struct dentry *h_src,
4815 +              struct au_cpup_reg_attr *h_src_attr)
4816 +{
4817 +       int err, sbits, icex;
4818 +       unsigned int mnt_flags;
4819 +       unsigned char verbose;
4820 +       struct iattr ia;
4821 +       struct path h_path;
4822 +       struct inode *h_isrc, *h_idst;
4823 +       struct kstat *h_st;
4824 +       struct au_branch *br;
4825 +
4826 +       h_path.dentry = au_h_dptr(dst, bindex);
4827 +       h_idst = d_inode(h_path.dentry);
4828 +       br = au_sbr(dst->d_sb, bindex);
4829 +       h_path.mnt = au_br_mnt(br);
4830 +       h_isrc = d_inode(h_src);
4831 +       ia.ia_valid = ATTR_FORCE | ATTR_UID | ATTR_GID
4832 +               | ATTR_ATIME | ATTR_MTIME
4833 +               | ATTR_ATIME_SET | ATTR_MTIME_SET;
4834 +       if (h_src_attr && h_src_attr->valid) {
4835 +               h_st = &h_src_attr->st;
4836 +               ia.ia_uid = h_st->uid;
4837 +               ia.ia_gid = h_st->gid;
4838 +               ia.ia_atime = h_st->atime;
4839 +               ia.ia_mtime = h_st->mtime;
4840 +               if (h_idst->i_mode != h_st->mode
4841 +                   && !S_ISLNK(h_idst->i_mode)) {
4842 +                       ia.ia_valid |= ATTR_MODE;
4843 +                       ia.ia_mode = h_st->mode;
4844 +               }
4845 +               sbits = !!(h_st->mode & (S_ISUID | S_ISGID));
4846 +               au_cpup_attr_flags(h_idst, h_src_attr->iflags);
4847 +       } else {
4848 +               ia.ia_uid = h_isrc->i_uid;
4849 +               ia.ia_gid = h_isrc->i_gid;
4850 +               ia.ia_atime = h_isrc->i_atime;
4851 +               ia.ia_mtime = h_isrc->i_mtime;
4852 +               if (h_idst->i_mode != h_isrc->i_mode
4853 +                   && !S_ISLNK(h_idst->i_mode)) {
4854 +                       ia.ia_valid |= ATTR_MODE;
4855 +                       ia.ia_mode = h_isrc->i_mode;
4856 +               }
4857 +               sbits = !!(h_isrc->i_mode & (S_ISUID | S_ISGID));
4858 +               au_cpup_attr_flags(h_idst, h_isrc->i_flags);
4859 +       }
4860 +       /* no delegation since it is just created */
4861 +       err = vfsub_notify_change(&h_path, &ia, /*delegated*/NULL);
4862 +
4863 +       /* is this nfs only? */
4864 +       if (!err && sbits && au_test_nfs(h_path.dentry->d_sb)) {
4865 +               ia.ia_valid = ATTR_FORCE | ATTR_MODE;
4866 +               ia.ia_mode = h_isrc->i_mode;
4867 +               err = vfsub_notify_change(&h_path, &ia, /*delegated*/NULL);
4868 +       }
4869 +
4870 +       icex = br->br_perm & AuBrAttr_ICEX;
4871 +       if (!err) {
4872 +               mnt_flags = au_mntflags(dst->d_sb);
4873 +               verbose = !!au_opt_test(mnt_flags, VERBOSE);
4874 +               err = au_cpup_xattr(h_path.dentry, h_src, icex, verbose);
4875 +       }
4876 +
4877 +       return err;
4878 +}
4879 +
4880 +/* ---------------------------------------------------------------------- */
4881 +
4882 +static int au_do_copy_file(struct file *dst, struct file *src, loff_t len,
4883 +                          char *buf, unsigned long blksize)
4884 +{
4885 +       int err;
4886 +       size_t sz, rbytes, wbytes;
4887 +       unsigned char all_zero;
4888 +       char *p, *zp;
4889 +       struct inode *h_inode;
4890 +       /* reduce stack usage */
4891 +       struct iattr *ia;
4892 +
4893 +       zp = page_address(ZERO_PAGE(0));
4894 +       if (unlikely(!zp))
4895 +               return -ENOMEM; /* possible? */
4896 +
4897 +       err = 0;
4898 +       all_zero = 0;
4899 +       while (len) {
4900 +               AuDbg("len %lld\n", len);
4901 +               sz = blksize;
4902 +               if (len < blksize)
4903 +                       sz = len;
4904 +
4905 +               rbytes = 0;
4906 +               /* todo: signal_pending? */
4907 +               while (!rbytes || err == -EAGAIN || err == -EINTR) {
4908 +                       rbytes = vfsub_read_k(src, buf, sz, &src->f_pos);
4909 +                       err = rbytes;
4910 +               }
4911 +               if (unlikely(err < 0))
4912 +                       break;
4913 +
4914 +               all_zero = 0;
4915 +               if (len >= rbytes && rbytes == blksize)
4916 +                       all_zero = !memcmp(buf, zp, rbytes);
4917 +               if (!all_zero) {
4918 +                       wbytes = rbytes;
4919 +                       p = buf;
4920 +                       while (wbytes) {
4921 +                               size_t b;
4922 +
4923 +                               b = vfsub_write_k(dst, p, wbytes, &dst->f_pos);
4924 +                               err = b;
4925 +                               /* todo: signal_pending? */
4926 +                               if (unlikely(err == -EAGAIN || err == -EINTR))
4927 +                                       continue;
4928 +                               if (unlikely(err < 0))
4929 +                                       break;
4930 +                               wbytes -= b;
4931 +                               p += b;
4932 +                       }
4933 +                       if (unlikely(err < 0))
4934 +                               break;
4935 +               } else {
4936 +                       loff_t res;
4937 +
4938 +                       AuLabel(hole);
4939 +                       res = vfsub_llseek(dst, rbytes, SEEK_CUR);
4940 +                       err = res;
4941 +                       if (unlikely(res < 0))
4942 +                               break;
4943 +               }
4944 +               len -= rbytes;
4945 +               err = 0;
4946 +       }
4947 +
4948 +       /* the last block may be a hole */
4949 +       if (!err && all_zero) {
4950 +               AuLabel(last hole);
4951 +
4952 +               err = 1;
4953 +               if (au_test_nfs(dst->f_path.dentry->d_sb)) {
4954 +                       /* nfs requires this step to make last hole */
4955 +                       /* is this only nfs? */
4956 +                       do {
4957 +                               /* todo: signal_pending? */
4958 +                               err = vfsub_write_k(dst, "\0", 1, &dst->f_pos);
4959 +                       } while (err == -EAGAIN || err == -EINTR);
4960 +                       if (err == 1)
4961 +                               dst->f_pos--;
4962 +               }
4963 +
4964 +               if (err == 1) {
4965 +                       ia = (void *)buf;
4966 +                       ia->ia_size = dst->f_pos;
4967 +                       ia->ia_valid = ATTR_SIZE | ATTR_FILE;
4968 +                       ia->ia_file = dst;
4969 +                       h_inode = file_inode(dst);
4970 +                       inode_lock_nested(h_inode, AuLsc_I_CHILD2);
4971 +                       /* no delegation since it is just created */
4972 +                       err = vfsub_notify_change(&dst->f_path, ia,
4973 +                                                 /*delegated*/NULL);
4974 +                       inode_unlock(h_inode);
4975 +               }
4976 +       }
4977 +
4978 +       return err;
4979 +}
4980 +
4981 +int au_copy_file(struct file *dst, struct file *src, loff_t len)
4982 +{
4983 +       int err;
4984 +       unsigned long blksize;
4985 +       unsigned char do_kfree;
4986 +       char *buf;
4987 +
4988 +       err = -ENOMEM;
4989 +       blksize = dst->f_path.dentry->d_sb->s_blocksize;
4990 +       if (!blksize || PAGE_SIZE < blksize)
4991 +               blksize = PAGE_SIZE;
4992 +       AuDbg("blksize %lu\n", blksize);
4993 +       do_kfree = (blksize != PAGE_SIZE && blksize >= sizeof(struct iattr *));
4994 +       if (do_kfree)
4995 +               buf = kmalloc(blksize, GFP_NOFS);
4996 +       else
4997 +               buf = (void *)__get_free_page(GFP_NOFS);
4998 +       if (unlikely(!buf))
4999 +               goto out;
5000 +
5001 +       if (len > (1 << 22))
5002 +               AuDbg("copying a large file %lld\n", (long long)len);
5003 +
5004 +       src->f_pos = 0;
5005 +       dst->f_pos = 0;
5006 +       err = au_do_copy_file(dst, src, len, buf, blksize);
5007 +       if (do_kfree)
5008 +               au_delayed_kfree(buf);
5009 +       else
5010 +               au_delayed_free_page((unsigned long)buf);
5011 +
5012 +out:
5013 +       return err;
5014 +}
5015 +
5016 +/*
5017 + * to support a sparse file which is opened with O_APPEND,
5018 + * we need to close the file.
5019 + */
5020 +static int au_cp_regular(struct au_cp_generic *cpg)
5021 +{
5022 +       int err, i;
5023 +       enum { SRC, DST };
5024 +       struct {
5025 +               aufs_bindex_t bindex;
5026 +               unsigned int flags;
5027 +               struct dentry *dentry;
5028 +               int force_wr;
5029 +               struct file *file;
5030 +               void *label;
5031 +       } *f, file[] = {
5032 +               {
5033 +                       .bindex = cpg->bsrc,
5034 +                       .flags = O_RDONLY | O_NOATIME | O_LARGEFILE,
5035 +                       .label = &&out
5036 +               },
5037 +               {
5038 +                       .bindex = cpg->bdst,
5039 +                       .flags = O_WRONLY | O_NOATIME | O_LARGEFILE,
5040 +                       .force_wr = !!au_ftest_cpup(cpg->flags, RWDST),
5041 +                       .label = &&out_src
5042 +               }
5043 +       };
5044 +       struct super_block *sb;
5045 +       struct inode *h_src_inode;
5046 +       struct task_struct *tsk = current;
5047 +
5048 +       /* bsrc branch can be ro/rw. */
5049 +       sb = cpg->dentry->d_sb;
5050 +       f = file;
5051 +       for (i = 0; i < 2; i++, f++) {
5052 +               f->dentry = au_h_dptr(cpg->dentry, f->bindex);
5053 +               f->file = au_h_open(cpg->dentry, f->bindex, f->flags,
5054 +                                   /*file*/NULL, f->force_wr);
5055 +               err = PTR_ERR(f->file);
5056 +               if (IS_ERR(f->file))
5057 +                       goto *f->label;
5058 +       }
5059 +
5060 +       /* try stopping to update while we copyup */
5061 +       h_src_inode = d_inode(file[SRC].dentry);
5062 +       if (!au_test_nfs(h_src_inode->i_sb))
5063 +               IMustLock(h_src_inode);
5064 +       err = au_copy_file(file[DST].file, file[SRC].file, cpg->len);
5065 +
5066 +       /* i wonder if we had O_NO_DELAY_FPUT flag */
5067 +       if (tsk->flags & PF_KTHREAD)
5068 +               __fput_sync(file[DST].file);
5069 +       else {
5070 +               WARN(1, "%pD\nPlease report this warning to aufs-users ML",
5071 +                    file[DST].file);
5072 +               fput(file[DST].file);
5073 +               /*
5074 +                * too bad.
5075 +                * we have to call both since we don't know which place the file
5076 +                * was added to.
5077 +                */
5078 +               task_work_run();
5079 +               flush_delayed_fput();
5080 +       }
5081 +       au_sbr_put(sb, file[DST].bindex);
5082 +
5083 +out_src:
5084 +       fput(file[SRC].file);
5085 +       au_sbr_put(sb, file[SRC].bindex);
5086 +out:
5087 +       return err;
5088 +}
5089 +
5090 +static int au_do_cpup_regular(struct au_cp_generic *cpg,
5091 +                             struct au_cpup_reg_attr *h_src_attr)
5092 +{
5093 +       int err, rerr;
5094 +       loff_t l;
5095 +       struct path h_path;
5096 +       struct inode *h_src_inode, *h_dst_inode;
5097 +
5098 +       err = 0;
5099 +       h_src_inode = au_h_iptr(d_inode(cpg->dentry), cpg->bsrc);
5100 +       l = i_size_read(h_src_inode);
5101 +       if (cpg->len == -1 || l < cpg->len)
5102 +               cpg->len = l;
5103 +       if (cpg->len) {
5104 +               /* try stopping to update while we are referencing */
5105 +               inode_lock_nested(h_src_inode, AuLsc_I_CHILD);
5106 +               au_pin_hdir_unlock(cpg->pin);
5107 +
5108 +               h_path.dentry = au_h_dptr(cpg->dentry, cpg->bsrc);
5109 +               h_path.mnt = au_sbr_mnt(cpg->dentry->d_sb, cpg->bsrc);
5110 +               h_src_attr->iflags = h_src_inode->i_flags;
5111 +               if (!au_test_nfs(h_src_inode->i_sb))
5112 +                       err = vfs_getattr(&h_path, &h_src_attr->st);
5113 +               else {
5114 +                       inode_unlock(h_src_inode);
5115 +                       err = vfs_getattr(&h_path, &h_src_attr->st);
5116 +                       inode_lock_nested(h_src_inode, AuLsc_I_CHILD);
5117 +               }
5118 +               if (unlikely(err)) {
5119 +                       inode_unlock(h_src_inode);
5120 +                       goto out;
5121 +               }
5122 +               h_src_attr->valid = 1;
5123 +               if (!au_test_nfs(h_src_inode->i_sb)) {
5124 +                       err = au_cp_regular(cpg);
5125 +                       inode_unlock(h_src_inode);
5126 +               } else {
5127 +                       inode_unlock(h_src_inode);
5128 +                       err = au_cp_regular(cpg);
5129 +               }
5130 +               rerr = au_pin_hdir_relock(cpg->pin);
5131 +               if (!err && rerr)
5132 +                       err = rerr;
5133 +       }
5134 +       if (!err && (h_src_inode->i_state & I_LINKABLE)) {
5135 +               h_path.dentry = au_h_dptr(cpg->dentry, cpg->bdst);
5136 +               h_dst_inode = d_inode(h_path.dentry);
5137 +               spin_lock(&h_dst_inode->i_lock);
5138 +               h_dst_inode->i_state |= I_LINKABLE;
5139 +               spin_unlock(&h_dst_inode->i_lock);
5140 +       }
5141 +
5142 +out:
5143 +       return err;
5144 +}
5145 +
5146 +static int au_do_cpup_symlink(struct path *h_path, struct dentry *h_src,
5147 +                             struct inode *h_dir)
5148 +{
5149 +       int err, symlen;
5150 +       mm_segment_t old_fs;
5151 +       union {
5152 +               char *k;
5153 +               char __user *u;
5154 +       } sym;
5155 +       struct inode *h_inode = d_inode(h_src);
5156 +       const struct inode_operations *h_iop = h_inode->i_op;
5157 +
5158 +       err = -ENOSYS;
5159 +       if (unlikely(!h_iop->readlink))
5160 +               goto out;
5161 +
5162 +       err = -ENOMEM;
5163 +       sym.k = (void *)__get_free_page(GFP_NOFS);
5164 +       if (unlikely(!sym.k))
5165 +               goto out;
5166 +
5167 +       /* unnecessary to support mmap_sem since symlink is not mmap-able */
5168 +       old_fs = get_fs();
5169 +       set_fs(KERNEL_DS);
5170 +       symlen = h_iop->readlink(h_src, sym.u, PATH_MAX);
5171 +       err = symlen;
5172 +       set_fs(old_fs);
5173 +
5174 +       if (symlen > 0) {
5175 +               sym.k[symlen] = 0;
5176 +               err = vfsub_symlink(h_dir, h_path, sym.k);
5177 +       }
5178 +       au_delayed_free_page((unsigned long)sym.k);
5179 +
5180 +out:
5181 +       return err;
5182 +}
5183 +
5184 +/*
5185 + * regardless 'acl' option, reset all ACL.
5186 + * All ACL will be copied up later from the original entry on the lower branch.
5187 + */
5188 +static int au_reset_acl(struct inode *h_dir, struct path *h_path, umode_t mode)
5189 +{
5190 +       int err;
5191 +       struct dentry *h_dentry;
5192 +       struct inode *h_inode;
5193 +
5194 +       h_dentry = h_path->dentry;
5195 +       h_inode = d_inode(h_dentry);
5196 +       /* forget_all_cached_acls(h_inode)); */
5197 +       err = vfsub_removexattr(h_dentry, XATTR_NAME_POSIX_ACL_ACCESS);
5198 +       AuTraceErr(err);
5199 +       if (err == -EOPNOTSUPP)
5200 +               err = 0;
5201 +       if (!err)
5202 +               err = vfsub_acl_chmod(h_inode, mode);
5203 +
5204 +       AuTraceErr(err);
5205 +       return err;
5206 +}
5207 +
5208 +static int au_do_cpup_dir(struct au_cp_generic *cpg, struct dentry *dst_parent,
5209 +                         struct inode *h_dir, struct path *h_path)
5210 +{
5211 +       int err;
5212 +       struct inode *dir, *inode;
5213 +
5214 +       err = vfsub_removexattr(h_path->dentry, XATTR_NAME_POSIX_ACL_DEFAULT);
5215 +       AuTraceErr(err);
5216 +       if (err == -EOPNOTSUPP)
5217 +               err = 0;
5218 +       if (unlikely(err))
5219 +               goto out;
5220 +
5221 +       /*
5222 +        * strange behaviour from the users view,
5223 +        * particularry setattr case
5224 +        */
5225 +       dir = d_inode(dst_parent);
5226 +       if (au_ibtop(dir) == cpg->bdst)
5227 +               au_cpup_attr_nlink(dir, /*force*/1);
5228 +       inode = d_inode(cpg->dentry);
5229 +       au_cpup_attr_nlink(inode, /*force*/1);
5230 +
5231 +out:
5232 +       return err;
5233 +}
5234 +
5235 +static noinline_for_stack
5236 +int cpup_entry(struct au_cp_generic *cpg, struct dentry *dst_parent,
5237 +              struct au_cpup_reg_attr *h_src_attr)
5238 +{
5239 +       int err;
5240 +       umode_t mode;
5241 +       unsigned int mnt_flags;
5242 +       unsigned char isdir, isreg, force;
5243 +       const unsigned char do_dt = !!au_ftest_cpup(cpg->flags, DTIME);
5244 +       struct au_dtime dt;
5245 +       struct path h_path;
5246 +       struct dentry *h_src, *h_dst, *h_parent;
5247 +       struct inode *h_inode, *h_dir;
5248 +       struct super_block *sb;
5249 +
5250 +       /* bsrc branch can be ro/rw. */
5251 +       h_src = au_h_dptr(cpg->dentry, cpg->bsrc);
5252 +       h_inode = d_inode(h_src);
5253 +       AuDebugOn(h_inode != au_h_iptr(d_inode(cpg->dentry), cpg->bsrc));
5254 +
5255 +       /* try stopping to be referenced while we are creating */
5256 +       h_dst = au_h_dptr(cpg->dentry, cpg->bdst);
5257 +       if (au_ftest_cpup(cpg->flags, RENAME))
5258 +               AuDebugOn(strncmp(h_dst->d_name.name, AUFS_WH_PFX,
5259 +                                 AUFS_WH_PFX_LEN));
5260 +       h_parent = h_dst->d_parent; /* dir inode is locked */
5261 +       h_dir = d_inode(h_parent);
5262 +       IMustLock(h_dir);
5263 +       AuDebugOn(h_parent != h_dst->d_parent);
5264 +
5265 +       sb = cpg->dentry->d_sb;
5266 +       h_path.mnt = au_sbr_mnt(sb, cpg->bdst);
5267 +       if (do_dt) {
5268 +               h_path.dentry = h_parent;
5269 +               au_dtime_store(&dt, dst_parent, &h_path);
5270 +       }
5271 +       h_path.dentry = h_dst;
5272 +
5273 +       isreg = 0;
5274 +       isdir = 0;
5275 +       mode = h_inode->i_mode;
5276 +       switch (mode & S_IFMT) {
5277 +       case S_IFREG:
5278 +               isreg = 1;
5279 +               err = vfsub_create(h_dir, &h_path, S_IRUSR | S_IWUSR,
5280 +                                  /*want_excl*/true);
5281 +               if (!err)
5282 +                       err = au_do_cpup_regular(cpg, h_src_attr);
5283 +               break;
5284 +       case S_IFDIR:
5285 +               isdir = 1;
5286 +               err = vfsub_mkdir(h_dir, &h_path, mode);
5287 +               if (!err)
5288 +                       err = au_do_cpup_dir(cpg, dst_parent, h_dir, &h_path);
5289 +               break;
5290 +       case S_IFLNK:
5291 +               err = au_do_cpup_symlink(&h_path, h_src, h_dir);
5292 +               break;
5293 +       case S_IFCHR:
5294 +       case S_IFBLK:
5295 +               AuDebugOn(!capable(CAP_MKNOD));
5296 +               /*FALLTHROUGH*/
5297 +       case S_IFIFO:
5298 +       case S_IFSOCK:
5299 +               err = vfsub_mknod(h_dir, &h_path, mode, h_inode->i_rdev);
5300 +               break;
5301 +       default:
5302 +               AuIOErr("Unknown inode type 0%o\n", mode);
5303 +               err = -EIO;
5304 +       }
5305 +       if (!err)
5306 +               err = au_reset_acl(h_dir, &h_path, mode);
5307 +
5308 +       mnt_flags = au_mntflags(sb);
5309 +       if (!au_opt_test(mnt_flags, UDBA_NONE)
5310 +           && !isdir
5311 +           && au_opt_test(mnt_flags, XINO)
5312 +           && (h_inode->i_nlink == 1
5313 +               || (h_inode->i_state & I_LINKABLE))
5314 +           /* todo: unnecessary? */
5315 +           /* && d_inode(cpg->dentry)->i_nlink == 1 */
5316 +           && cpg->bdst < cpg->bsrc
5317 +           && !au_ftest_cpup(cpg->flags, KEEPLINO))
5318 +               au_xino_write(sb, cpg->bsrc, h_inode->i_ino, /*ino*/0);
5319 +               /* ignore this error */
5320 +
5321 +       if (!err) {
5322 +               force = 0;
5323 +               if (isreg) {
5324 +                       force = !!cpg->len;
5325 +                       if (cpg->len == -1)
5326 +                               force = !!i_size_read(h_inode);
5327 +               }
5328 +               au_fhsm_wrote(sb, cpg->bdst, force);
5329 +       }
5330 +
5331 +       if (do_dt)
5332 +               au_dtime_revert(&dt);
5333 +       return err;
5334 +}
5335 +
5336 +static int au_do_ren_after_cpup(struct au_cp_generic *cpg, struct path *h_path)
5337 +{
5338 +       int err;
5339 +       struct dentry *dentry, *h_dentry, *h_parent, *parent;
5340 +       struct inode *h_dir;
5341 +       aufs_bindex_t bdst;
5342 +
5343 +       dentry = cpg->dentry;
5344 +       bdst = cpg->bdst;
5345 +       h_dentry = au_h_dptr(dentry, bdst);
5346 +       if (!au_ftest_cpup(cpg->flags, OVERWRITE)) {
5347 +               dget(h_dentry);
5348 +               au_set_h_dptr(dentry, bdst, NULL);
5349 +               err = au_lkup_neg(dentry, bdst, /*wh*/0);
5350 +               if (!err)
5351 +                       h_path->dentry = dget(au_h_dptr(dentry, bdst));
5352 +               au_set_h_dptr(dentry, bdst, h_dentry);
5353 +       } else {
5354 +               err = 0;
5355 +               parent = dget_parent(dentry);
5356 +               h_parent = au_h_dptr(parent, bdst);
5357 +               dput(parent);
5358 +               h_path->dentry = vfsub_lkup_one(&dentry->d_name, h_parent);
5359 +               if (IS_ERR(h_path->dentry))
5360 +                       err = PTR_ERR(h_path->dentry);
5361 +       }
5362 +       if (unlikely(err))
5363 +               goto out;
5364 +
5365 +       h_parent = h_dentry->d_parent; /* dir inode is locked */
5366 +       h_dir = d_inode(h_parent);
5367 +       IMustLock(h_dir);
5368 +       AuDbg("%pd %pd\n", h_dentry, h_path->dentry);
5369 +       /* no delegation since it is just created */
5370 +       err = vfsub_rename(h_dir, h_dentry, h_dir, h_path, /*delegated*/NULL,
5371 +                          /*flags*/0);
5372 +       dput(h_path->dentry);
5373 +
5374 +out:
5375 +       return err;
5376 +}
5377 +
5378 +/*
5379 + * copyup the @dentry from @bsrc to @bdst.
5380 + * the caller must set the both of lower dentries.
5381 + * @len is for truncating when it is -1 copyup the entire file.
5382 + * in link/rename cases, @dst_parent may be different from the real one.
5383 + * basic->bsrc can be larger than basic->bdst.
5384 + * aufs doesn't touch the credential so
5385 + * security_inode_copy_up{,_xattr}() are unnecrssary.
5386 + */
5387 +static int au_cpup_single(struct au_cp_generic *cpg, struct dentry *dst_parent)
5388 +{
5389 +       int err, rerr;
5390 +       aufs_bindex_t old_ibtop;
5391 +       unsigned char isdir, plink;
5392 +       struct dentry *h_src, *h_dst, *h_parent;
5393 +       struct inode *dst_inode, *h_dir, *inode, *delegated, *src_inode;
5394 +       struct super_block *sb;
5395 +       struct au_branch *br;
5396 +       /* to reuduce stack size */
5397 +       struct {
5398 +               struct au_dtime dt;
5399 +               struct path h_path;
5400 +               struct au_cpup_reg_attr h_src_attr;
5401 +       } *a;
5402 +
5403 +       err = -ENOMEM;
5404 +       a = kmalloc(sizeof(*a), GFP_NOFS);
5405 +       if (unlikely(!a))
5406 +               goto out;
5407 +       a->h_src_attr.valid = 0;
5408 +
5409 +       sb = cpg->dentry->d_sb;
5410 +       br = au_sbr(sb, cpg->bdst);
5411 +       a->h_path.mnt = au_br_mnt(br);
5412 +       h_dst = au_h_dptr(cpg->dentry, cpg->bdst);
5413 +       h_parent = h_dst->d_parent; /* dir inode is locked */
5414 +       h_dir = d_inode(h_parent);
5415 +       IMustLock(h_dir);
5416 +
5417 +       h_src = au_h_dptr(cpg->dentry, cpg->bsrc);
5418 +       inode = d_inode(cpg->dentry);
5419 +
5420 +       if (!dst_parent)
5421 +               dst_parent = dget_parent(cpg->dentry);
5422 +       else
5423 +               dget(dst_parent);
5424 +
5425 +       plink = !!au_opt_test(au_mntflags(sb), PLINK);
5426 +       dst_inode = au_h_iptr(inode, cpg->bdst);
5427 +       if (dst_inode) {
5428 +               if (unlikely(!plink)) {
5429 +                       err = -EIO;
5430 +                       AuIOErr("hi%lu(i%lu) exists on b%d "
5431 +                               "but plink is disabled\n",
5432 +                               dst_inode->i_ino, inode->i_ino, cpg->bdst);
5433 +                       goto out_parent;
5434 +               }
5435 +
5436 +               if (dst_inode->i_nlink) {
5437 +                       const int do_dt = au_ftest_cpup(cpg->flags, DTIME);
5438 +
5439 +                       h_src = au_plink_lkup(inode, cpg->bdst);
5440 +                       err = PTR_ERR(h_src);
5441 +                       if (IS_ERR(h_src))
5442 +                               goto out_parent;
5443 +                       if (unlikely(d_is_negative(h_src))) {
5444 +                               err = -EIO;
5445 +                               AuIOErr("i%lu exists on b%d "
5446 +                                       "but not pseudo-linked\n",
5447 +                                       inode->i_ino, cpg->bdst);
5448 +                               dput(h_src);
5449 +                               goto out_parent;
5450 +                       }
5451 +
5452 +                       if (do_dt) {
5453 +                               a->h_path.dentry = h_parent;
5454 +                               au_dtime_store(&a->dt, dst_parent, &a->h_path);
5455 +                       }
5456 +
5457 +                       a->h_path.dentry = h_dst;
5458 +                       delegated = NULL;
5459 +                       err = vfsub_link(h_src, h_dir, &a->h_path, &delegated);
5460 +                       if (!err && au_ftest_cpup(cpg->flags, RENAME))
5461 +                               err = au_do_ren_after_cpup(cpg, &a->h_path);
5462 +                       if (do_dt)
5463 +                               au_dtime_revert(&a->dt);
5464 +                       if (unlikely(err == -EWOULDBLOCK)) {
5465 +                               pr_warn("cannot retry for NFSv4 delegation"
5466 +                                       " for an internal link\n");
5467 +                               iput(delegated);
5468 +                       }
5469 +                       dput(h_src);
5470 +                       goto out_parent;
5471 +               } else
5472 +                       /* todo: cpup_wh_file? */
5473 +                       /* udba work */
5474 +                       au_update_ibrange(inode, /*do_put_zero*/1);
5475 +       }
5476 +
5477 +       isdir = S_ISDIR(inode->i_mode);
5478 +       old_ibtop = au_ibtop(inode);
5479 +       err = cpup_entry(cpg, dst_parent, &a->h_src_attr);
5480 +       if (unlikely(err))
5481 +               goto out_rev;
5482 +       dst_inode = d_inode(h_dst);
5483 +       inode_lock_nested(dst_inode, AuLsc_I_CHILD2);
5484 +       /* todo: necessary? */
5485 +       /* au_pin_hdir_unlock(cpg->pin); */
5486 +
5487 +       err = cpup_iattr(cpg->dentry, cpg->bdst, h_src, &a->h_src_attr);
5488 +       if (unlikely(err)) {
5489 +               /* todo: necessary? */
5490 +               /* au_pin_hdir_relock(cpg->pin); */ /* ignore an error */
5491 +               inode_unlock(dst_inode);
5492 +               goto out_rev;
5493 +       }
5494 +
5495 +       if (cpg->bdst < old_ibtop) {
5496 +               if (S_ISREG(inode->i_mode)) {
5497 +                       err = au_dy_iaop(inode, cpg->bdst, dst_inode);
5498 +                       if (unlikely(err)) {
5499 +                               /* ignore an error */
5500 +                               /* au_pin_hdir_relock(cpg->pin); */
5501 +                               inode_unlock(dst_inode);
5502 +                               goto out_rev;
5503 +                       }
5504 +               }
5505 +               au_set_ibtop(inode, cpg->bdst);
5506 +       } else
5507 +               au_set_ibbot(inode, cpg->bdst);
5508 +       au_set_h_iptr(inode, cpg->bdst, au_igrab(dst_inode),
5509 +                     au_hi_flags(inode, isdir));
5510 +
5511 +       /* todo: necessary? */
5512 +       /* err = au_pin_hdir_relock(cpg->pin); */
5513 +       inode_unlock(dst_inode);
5514 +       if (unlikely(err))
5515 +               goto out_rev;
5516 +
5517 +       src_inode = d_inode(h_src);
5518 +       if (!isdir
5519 +           && (src_inode->i_nlink > 1
5520 +               || src_inode->i_state & I_LINKABLE)
5521 +           && plink)
5522 +               au_plink_append(inode, cpg->bdst, h_dst);
5523 +
5524 +       if (au_ftest_cpup(cpg->flags, RENAME)) {
5525 +               a->h_path.dentry = h_dst;
5526 +               err = au_do_ren_after_cpup(cpg, &a->h_path);
5527 +       }
5528 +       if (!err)
5529 +               goto out_parent; /* success */
5530 +
5531 +       /* revert */
5532 +out_rev:
5533 +       a->h_path.dentry = h_parent;
5534 +       au_dtime_store(&a->dt, dst_parent, &a->h_path);
5535 +       a->h_path.dentry = h_dst;
5536 +       rerr = 0;
5537 +       if (d_is_positive(h_dst)) {
5538 +               if (!isdir) {
5539 +                       /* no delegation since it is just created */
5540 +                       rerr = vfsub_unlink(h_dir, &a->h_path,
5541 +                                           /*delegated*/NULL, /*force*/0);
5542 +               } else
5543 +                       rerr = vfsub_rmdir(h_dir, &a->h_path);
5544 +       }
5545 +       au_dtime_revert(&a->dt);
5546 +       if (rerr) {
5547 +               AuIOErr("failed removing broken entry(%d, %d)\n", err, rerr);
5548 +               err = -EIO;
5549 +       }
5550 +out_parent:
5551 +       dput(dst_parent);
5552 +       au_delayed_kfree(a);
5553 +out:
5554 +       return err;
5555 +}
5556 +
5557 +#if 0 /* reserved */
5558 +struct au_cpup_single_args {
5559 +       int *errp;
5560 +       struct au_cp_generic *cpg;
5561 +       struct dentry *dst_parent;
5562 +};
5563 +
5564 +static void au_call_cpup_single(void *args)
5565 +{
5566 +       struct au_cpup_single_args *a = args;
5567 +
5568 +       au_pin_hdir_acquire_nest(a->cpg->pin);
5569 +       *a->errp = au_cpup_single(a->cpg, a->dst_parent);
5570 +       au_pin_hdir_release(a->cpg->pin);
5571 +}
5572 +#endif
5573 +
5574 +/*
5575 + * prevent SIGXFSZ in copy-up.
5576 + * testing CAP_MKNOD is for generic fs,
5577 + * but CAP_FSETID is for xfs only, currently.
5578 + */
5579 +static int au_cpup_sio_test(struct au_pin *pin, umode_t mode)
5580 +{
5581 +       int do_sio;
5582 +       struct super_block *sb;
5583 +       struct inode *h_dir;
5584 +
5585 +       do_sio = 0;
5586 +       sb = au_pinned_parent(pin)->d_sb;
5587 +       if (!au_wkq_test()
5588 +           && (!au_sbi(sb)->si_plink_maint_pid
5589 +               || au_plink_maint(sb, AuLock_NOPLM))) {
5590 +               switch (mode & S_IFMT) {
5591 +               case S_IFREG:
5592 +                       /* no condition about RLIMIT_FSIZE and the file size */
5593 +                       do_sio = 1;
5594 +                       break;
5595 +               case S_IFCHR:
5596 +               case S_IFBLK:
5597 +                       do_sio = !capable(CAP_MKNOD);
5598 +                       break;
5599 +               }
5600 +               if (!do_sio)
5601 +                       do_sio = ((mode & (S_ISUID | S_ISGID))
5602 +                                 && !capable(CAP_FSETID));
5603 +               /* this workaround may be removed in the future */
5604 +               if (!do_sio) {
5605 +                       h_dir = au_pinned_h_dir(pin);
5606 +                       do_sio = h_dir->i_mode & S_ISVTX;
5607 +               }
5608 +       }
5609 +
5610 +       return do_sio;
5611 +}
5612 +
5613 +#if 0 /* reserved */
5614 +int au_sio_cpup_single(struct au_cp_generic *cpg, struct dentry *dst_parent)
5615 +{
5616 +       int err, wkq_err;
5617 +       struct dentry *h_dentry;
5618 +
5619 +       h_dentry = au_h_dptr(cpg->dentry, cpg->bsrc);
5620 +       if (!au_cpup_sio_test(pin, d_inode(h_dentry)->i_mode))
5621 +               err = au_cpup_single(cpg, dst_parent);
5622 +       else {
5623 +               struct au_cpup_single_args args = {
5624 +                       .errp           = &err,
5625 +                       .cpg            = cpg,
5626 +                       .dst_parent     = dst_parent
5627 +               };
5628 +               wkq_err = au_wkq_wait(au_call_cpup_single, &args);
5629 +               if (unlikely(wkq_err))
5630 +                       err = wkq_err;
5631 +       }
5632 +
5633 +       return err;
5634 +}
5635 +#endif
5636 +
5637 +/*
5638 + * copyup the @dentry from the first active lower branch to @bdst,
5639 + * using au_cpup_single().
5640 + */
5641 +static int au_cpup_simple(struct au_cp_generic *cpg)
5642 +{
5643 +       int err;
5644 +       unsigned int flags_orig;
5645 +       struct dentry *dentry;
5646 +
5647 +       AuDebugOn(cpg->bsrc < 0);
5648 +
5649 +       dentry = cpg->dentry;
5650 +       DiMustWriteLock(dentry);
5651 +
5652 +       err = au_lkup_neg(dentry, cpg->bdst, /*wh*/1);
5653 +       if (!err) {
5654 +               flags_orig = cpg->flags;
5655 +               au_fset_cpup(cpg->flags, RENAME);
5656 +               err = au_cpup_single(cpg, NULL);
5657 +               cpg->flags = flags_orig;
5658 +               if (!err)
5659 +                       return 0; /* success */
5660 +
5661 +               /* revert */
5662 +               au_set_h_dptr(dentry, cpg->bdst, NULL);
5663 +               au_set_dbtop(dentry, cpg->bsrc);
5664 +       }
5665 +
5666 +       return err;
5667 +}
5668 +
5669 +struct au_cpup_simple_args {
5670 +       int *errp;
5671 +       struct au_cp_generic *cpg;
5672 +};
5673 +
5674 +static void au_call_cpup_simple(void *args)
5675 +{
5676 +       struct au_cpup_simple_args *a = args;
5677 +
5678 +       au_pin_hdir_acquire_nest(a->cpg->pin);
5679 +       *a->errp = au_cpup_simple(a->cpg);
5680 +       au_pin_hdir_release(a->cpg->pin);
5681 +}
5682 +
5683 +static int au_do_sio_cpup_simple(struct au_cp_generic *cpg)
5684 +{
5685 +       int err, wkq_err;
5686 +       struct dentry *dentry, *parent;
5687 +       struct file *h_file;
5688 +       struct inode *h_dir;
5689 +
5690 +       dentry = cpg->dentry;
5691 +       h_file = NULL;
5692 +       if (au_ftest_cpup(cpg->flags, HOPEN)) {
5693 +               AuDebugOn(cpg->bsrc < 0);
5694 +               h_file = au_h_open_pre(dentry, cpg->bsrc, /*force_wr*/0);
5695 +               err = PTR_ERR(h_file);
5696 +               if (IS_ERR(h_file))
5697 +                       goto out;
5698 +       }
5699 +
5700 +       parent = dget_parent(dentry);
5701 +       h_dir = au_h_iptr(d_inode(parent), cpg->bdst);
5702 +       if (!au_test_h_perm_sio(h_dir, MAY_EXEC | MAY_WRITE)
5703 +           && !au_cpup_sio_test(cpg->pin, d_inode(dentry)->i_mode))
5704 +               err = au_cpup_simple(cpg);
5705 +       else {
5706 +               struct au_cpup_simple_args args = {
5707 +                       .errp           = &err,
5708 +                       .cpg            = cpg
5709 +               };
5710 +               wkq_err = au_wkq_wait(au_call_cpup_simple, &args);
5711 +               if (unlikely(wkq_err))
5712 +                       err = wkq_err;
5713 +       }
5714 +
5715 +       dput(parent);
5716 +       if (h_file)
5717 +               au_h_open_post(dentry, cpg->bsrc, h_file);
5718 +
5719 +out:
5720 +       return err;
5721 +}
5722 +
5723 +int au_sio_cpup_simple(struct au_cp_generic *cpg)
5724 +{
5725 +       aufs_bindex_t bsrc, bbot;
5726 +       struct dentry *dentry, *h_dentry;
5727 +
5728 +       if (cpg->bsrc < 0) {
5729 +               dentry = cpg->dentry;
5730 +               bbot = au_dbbot(dentry);
5731 +               for (bsrc = cpg->bdst + 1; bsrc <= bbot; bsrc++) {
5732 +                       h_dentry = au_h_dptr(dentry, bsrc);
5733 +                       if (h_dentry) {
5734 +                               AuDebugOn(d_is_negative(h_dentry));
5735 +                               break;
5736 +                       }
5737 +               }
5738 +               AuDebugOn(bsrc > bbot);
5739 +               cpg->bsrc = bsrc;
5740 +       }
5741 +       AuDebugOn(cpg->bsrc <= cpg->bdst);
5742 +       return au_do_sio_cpup_simple(cpg);
5743 +}
5744 +
5745 +int au_sio_cpdown_simple(struct au_cp_generic *cpg)
5746 +{
5747 +       AuDebugOn(cpg->bdst <= cpg->bsrc);
5748 +       return au_do_sio_cpup_simple(cpg);
5749 +}
5750 +
5751 +/* ---------------------------------------------------------------------- */
5752 +
5753 +/*
5754 + * copyup the deleted file for writing.
5755 + */
5756 +static int au_do_cpup_wh(struct au_cp_generic *cpg, struct dentry *wh_dentry,
5757 +                        struct file *file)
5758 +{
5759 +       int err;
5760 +       unsigned int flags_orig;
5761 +       aufs_bindex_t bsrc_orig;
5762 +       struct au_dinfo *dinfo;
5763 +       struct {
5764 +               struct au_hdentry *hd;
5765 +               struct dentry *h_dentry;
5766 +       } hdst, hsrc;
5767 +
5768 +       dinfo = au_di(cpg->dentry);
5769 +       AuRwMustWriteLock(&dinfo->di_rwsem);
5770 +
5771 +       bsrc_orig = cpg->bsrc;
5772 +       cpg->bsrc = dinfo->di_btop;
5773 +       hdst.hd = au_hdentry(dinfo, cpg->bdst);
5774 +       hdst.h_dentry = hdst.hd->hd_dentry;
5775 +       hdst.hd->hd_dentry = wh_dentry;
5776 +       dinfo->di_btop = cpg->bdst;
5777 +
5778 +       hsrc.h_dentry = NULL;
5779 +       if (file) {
5780 +               hsrc.hd = au_hdentry(dinfo, cpg->bsrc);
5781 +               hsrc.h_dentry = hsrc.hd->hd_dentry;
5782 +               hsrc.hd->hd_dentry = au_hf_top(file)->f_path.dentry;
5783 +       }
5784 +       flags_orig = cpg->flags;
5785 +       cpg->flags = !AuCpup_DTIME;
5786 +       err = au_cpup_single(cpg, /*h_parent*/NULL);
5787 +       cpg->flags = flags_orig;
5788 +       if (file) {
5789 +               if (!err)
5790 +                       err = au_reopen_nondir(file);
5791 +               hsrc.hd->hd_dentry = hsrc.h_dentry;
5792 +       }
5793 +       hdst.hd->hd_dentry = hdst.h_dentry;
5794 +       dinfo->di_btop = cpg->bsrc;
5795 +       cpg->bsrc = bsrc_orig;
5796 +
5797 +       return err;
5798 +}
5799 +
5800 +static int au_cpup_wh(struct au_cp_generic *cpg, struct file *file)
5801 +{
5802 +       int err;
5803 +       aufs_bindex_t bdst;
5804 +       struct au_dtime dt;
5805 +       struct dentry *dentry, *parent, *h_parent, *wh_dentry;
5806 +       struct au_branch *br;
5807 +       struct path h_path;
5808 +
5809 +       dentry = cpg->dentry;
5810 +       bdst = cpg->bdst;
5811 +       br = au_sbr(dentry->d_sb, bdst);
5812 +       parent = dget_parent(dentry);
5813 +       h_parent = au_h_dptr(parent, bdst);
5814 +       wh_dentry = au_whtmp_lkup(h_parent, br, &dentry->d_name);
5815 +       err = PTR_ERR(wh_dentry);
5816 +       if (IS_ERR(wh_dentry))
5817 +               goto out;
5818 +
5819 +       h_path.dentry = h_parent;
5820 +       h_path.mnt = au_br_mnt(br);
5821 +       au_dtime_store(&dt, parent, &h_path);
5822 +       err = au_do_cpup_wh(cpg, wh_dentry, file);
5823 +       if (unlikely(err))
5824 +               goto out_wh;
5825 +
5826 +       dget(wh_dentry);
5827 +       h_path.dentry = wh_dentry;
5828 +       if (!d_is_dir(wh_dentry)) {
5829 +               /* no delegation since it is just created */
5830 +               err = vfsub_unlink(d_inode(h_parent), &h_path,
5831 +                                  /*delegated*/NULL, /*force*/0);
5832 +       } else
5833 +               err = vfsub_rmdir(d_inode(h_parent), &h_path);
5834 +       if (unlikely(err)) {
5835 +               AuIOErr("failed remove copied-up tmp file %pd(%d)\n",
5836 +                       wh_dentry, err);
5837 +               err = -EIO;
5838 +       }
5839 +       au_dtime_revert(&dt);
5840 +       au_set_hi_wh(d_inode(dentry), bdst, wh_dentry);
5841 +
5842 +out_wh:
5843 +       dput(wh_dentry);
5844 +out:
5845 +       dput(parent);
5846 +       return err;
5847 +}
5848 +
5849 +struct au_cpup_wh_args {
5850 +       int *errp;
5851 +       struct au_cp_generic *cpg;
5852 +       struct file *file;
5853 +};
5854 +
5855 +static void au_call_cpup_wh(void *args)
5856 +{
5857 +       struct au_cpup_wh_args *a = args;
5858 +
5859 +       au_pin_hdir_acquire_nest(a->cpg->pin);
5860 +       *a->errp = au_cpup_wh(a->cpg, a->file);
5861 +       au_pin_hdir_release(a->cpg->pin);
5862 +}
5863 +
5864 +int au_sio_cpup_wh(struct au_cp_generic *cpg, struct file *file)
5865 +{
5866 +       int err, wkq_err;
5867 +       aufs_bindex_t bdst;
5868 +       struct dentry *dentry, *parent, *h_orph, *h_parent;
5869 +       struct inode *dir, *h_dir, *h_tmpdir;
5870 +       struct au_wbr *wbr;
5871 +       struct au_pin wh_pin, *pin_orig;
5872 +
5873 +       dentry = cpg->dentry;
5874 +       bdst = cpg->bdst;
5875 +       parent = dget_parent(dentry);
5876 +       dir = d_inode(parent);
5877 +       h_orph = NULL;
5878 +       h_parent = NULL;
5879 +       h_dir = au_igrab(au_h_iptr(dir, bdst));
5880 +       h_tmpdir = h_dir;
5881 +       pin_orig = NULL;
5882 +       if (!h_dir->i_nlink) {
5883 +               wbr = au_sbr(dentry->d_sb, bdst)->br_wbr;
5884 +               h_orph = wbr->wbr_orph;
5885 +
5886 +               h_parent = dget(au_h_dptr(parent, bdst));
5887 +               au_set_h_dptr(parent, bdst, dget(h_orph));
5888 +               h_tmpdir = d_inode(h_orph);
5889 +               au_set_h_iptr(dir, bdst, au_igrab(h_tmpdir), /*flags*/0);
5890 +
5891 +               inode_lock_nested(h_tmpdir, AuLsc_I_PARENT3);
5892 +               /* todo: au_h_open_pre()? */
5893 +
5894 +               pin_orig = cpg->pin;
5895 +               au_pin_init(&wh_pin, dentry, bdst, AuLsc_DI_PARENT,
5896 +                           AuLsc_I_PARENT3, cpg->pin->udba, AuPin_DI_LOCKED);
5897 +               cpg->pin = &wh_pin;
5898 +       }
5899 +
5900 +       if (!au_test_h_perm_sio(h_tmpdir, MAY_EXEC | MAY_WRITE)
5901 +           && !au_cpup_sio_test(cpg->pin, d_inode(dentry)->i_mode))
5902 +               err = au_cpup_wh(cpg, file);
5903 +       else {
5904 +               struct au_cpup_wh_args args = {
5905 +                       .errp   = &err,
5906 +                       .cpg    = cpg,
5907 +                       .file   = file
5908 +               };
5909 +               wkq_err = au_wkq_wait(au_call_cpup_wh, &args);
5910 +               if (unlikely(wkq_err))
5911 +                       err = wkq_err;
5912 +       }
5913 +
5914 +       if (h_orph) {
5915 +               inode_unlock(h_tmpdir);
5916 +               /* todo: au_h_open_post()? */
5917 +               au_set_h_iptr(dir, bdst, au_igrab(h_dir), /*flags*/0);
5918 +               au_set_h_dptr(parent, bdst, h_parent);
5919 +               AuDebugOn(!pin_orig);
5920 +               cpg->pin = pin_orig;
5921 +       }
5922 +       iput(h_dir);
5923 +       dput(parent);
5924 +
5925 +       return err;
5926 +}
5927 +
5928 +/* ---------------------------------------------------------------------- */
5929 +
5930 +/*
5931 + * generic routine for both of copy-up and copy-down.
5932 + */
5933 +/* cf. revalidate function in file.c */
5934 +int au_cp_dirs(struct dentry *dentry, aufs_bindex_t bdst,
5935 +              int (*cp)(struct dentry *dentry, aufs_bindex_t bdst,
5936 +                        struct au_pin *pin,
5937 +                        struct dentry *h_parent, void *arg),
5938 +              void *arg)
5939 +{
5940 +       int err;
5941 +       struct au_pin pin;
5942 +       struct dentry *d, *parent, *h_parent, *real_parent, *h_dentry;
5943 +
5944 +       err = 0;
5945 +       parent = dget_parent(dentry);
5946 +       if (IS_ROOT(parent))
5947 +               goto out;
5948 +
5949 +       au_pin_init(&pin, dentry, bdst, AuLsc_DI_PARENT2, AuLsc_I_PARENT2,
5950 +                   au_opt_udba(dentry->d_sb), AuPin_MNT_WRITE);
5951 +
5952 +       /* do not use au_dpage */
5953 +       real_parent = parent;
5954 +       while (1) {
5955 +               dput(parent);
5956 +               parent = dget_parent(dentry);
5957 +               h_parent = au_h_dptr(parent, bdst);
5958 +               if (h_parent)
5959 +                       goto out; /* success */
5960 +
5961 +               /* find top dir which is necessary to cpup */
5962 +               do {
5963 +                       d = parent;
5964 +                       dput(parent);
5965 +                       parent = dget_parent(d);
5966 +                       di_read_lock_parent3(parent, !AuLock_IR);
5967 +                       h_parent = au_h_dptr(parent, bdst);
5968 +                       di_read_unlock(parent, !AuLock_IR);
5969 +               } while (!h_parent);
5970 +
5971 +               if (d != real_parent)
5972 +                       di_write_lock_child3(d);
5973 +
5974 +               /* somebody else might create while we were sleeping */
5975 +               h_dentry = au_h_dptr(d, bdst);
5976 +               if (!h_dentry || d_is_negative(h_dentry)) {
5977 +                       if (h_dentry)
5978 +                               au_update_dbtop(d);
5979 +
5980 +                       au_pin_set_dentry(&pin, d);
5981 +                       err = au_do_pin(&pin);
5982 +                       if (!err) {
5983 +                               err = cp(d, bdst, &pin, h_parent, arg);
5984 +                               au_unpin(&pin);
5985 +                       }
5986 +               }
5987 +
5988 +               if (d != real_parent)
5989 +                       di_write_unlock(d);
5990 +               if (unlikely(err))
5991 +                       break;
5992 +       }
5993 +
5994 +out:
5995 +       dput(parent);
5996 +       return err;
5997 +}
5998 +
5999 +static int au_cpup_dir(struct dentry *dentry, aufs_bindex_t bdst,
6000 +                      struct au_pin *pin,
6001 +                      struct dentry *h_parent __maybe_unused,
6002 +                      void *arg __maybe_unused)
6003 +{
6004 +       struct au_cp_generic cpg = {
6005 +               .dentry = dentry,
6006 +               .bdst   = bdst,
6007 +               .bsrc   = -1,
6008 +               .len    = 0,
6009 +               .pin    = pin,
6010 +               .flags  = AuCpup_DTIME
6011 +       };
6012 +       return au_sio_cpup_simple(&cpg);
6013 +}
6014 +
6015 +int au_cpup_dirs(struct dentry *dentry, aufs_bindex_t bdst)
6016 +{
6017 +       return au_cp_dirs(dentry, bdst, au_cpup_dir, NULL);
6018 +}
6019 +
6020 +int au_test_and_cpup_dirs(struct dentry *dentry, aufs_bindex_t bdst)
6021 +{
6022 +       int err;
6023 +       struct dentry *parent;
6024 +       struct inode *dir;
6025 +
6026 +       parent = dget_parent(dentry);
6027 +       dir = d_inode(parent);
6028 +       err = 0;
6029 +       if (au_h_iptr(dir, bdst))
6030 +               goto out;
6031 +
6032 +       di_read_unlock(parent, AuLock_IR);
6033 +       di_write_lock_parent(parent);
6034 +       /* someone else might change our inode while we were sleeping */
6035 +       if (!au_h_iptr(dir, bdst))
6036 +               err = au_cpup_dirs(dentry, bdst);
6037 +       di_downgrade_lock(parent, AuLock_IR);
6038 +
6039 +out:
6040 +       dput(parent);
6041 +       return err;
6042 +}
6043 diff -urN /usr/share/empty/fs/aufs/cpup.h linux/fs/aufs/cpup.h
6044 --- /usr/share/empty/fs/aufs/cpup.h     1970-01-01 01:00:00.000000000 +0100
6045 +++ linux/fs/aufs/cpup.h        2016-10-09 16:55:36.486034798 +0200
6046 @@ -0,0 +1,94 @@
6047 +/*
6048 + * Copyright (C) 2005-2016 Junjiro R. Okajima
6049 + *
6050 + * This program, aufs is free software; you can redistribute it and/or modify
6051 + * it under the terms of the GNU General Public License as published by
6052 + * the Free Software Foundation; either version 2 of the License, or
6053 + * (at your option) any later version.
6054 + *
6055 + * This program is distributed in the hope that it will be useful,
6056 + * but WITHOUT ANY WARRANTY; without even the implied warranty of
6057 + * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
6058 + * GNU General Public License for more details.
6059 + *
6060 + * You should have received a copy of the GNU General Public License
6061 + * along with this program.  If not, see <http://www.gnu.org/licenses/>.
6062 + */
6063 +
6064 +/*
6065 + * copy-up/down functions
6066 + */
6067 +
6068 +#ifndef __AUFS_CPUP_H__
6069 +#define __AUFS_CPUP_H__
6070 +
6071 +#ifdef __KERNEL__
6072 +
6073 +#include <linux/path.h>
6074 +
6075 +struct inode;
6076 +struct file;
6077 +struct au_pin;
6078 +
6079 +void au_cpup_attr_flags(struct inode *dst, unsigned int iflags);
6080 +void au_cpup_attr_timesizes(struct inode *inode);
6081 +void au_cpup_attr_nlink(struct inode *inode, int force);
6082 +void au_cpup_attr_changeable(struct inode *inode);
6083 +void au_cpup_igen(struct inode *inode, struct inode *h_inode);
6084 +void au_cpup_attr_all(struct inode *inode, int force);
6085 +
6086 +/* ---------------------------------------------------------------------- */
6087 +
6088 +struct au_cp_generic {
6089 +       struct dentry   *dentry;
6090 +       aufs_bindex_t   bdst, bsrc;
6091 +       loff_t          len;
6092 +       struct au_pin   *pin;
6093 +       unsigned int    flags;
6094 +};
6095 +
6096 +/* cpup flags */
6097 +#define AuCpup_DTIME           1               /* do dtime_store/revert */
6098 +#define AuCpup_KEEPLINO                (1 << 1)        /* do not clear the lower xino,
6099 +                                                  for link(2) */
6100 +#define AuCpup_RENAME          (1 << 2)        /* rename after cpup */
6101 +#define AuCpup_HOPEN           (1 << 3)        /* call h_open_pre/post() in
6102 +                                                  cpup */
6103 +#define AuCpup_OVERWRITE       (1 << 4)        /* allow overwriting the
6104 +                                                  existing entry */
6105 +#define AuCpup_RWDST           (1 << 5)        /* force write target even if
6106 +                                                  the branch is marked as RO */
6107 +
6108 +#define au_ftest_cpup(flags, name)     ((flags) & AuCpup_##name)
6109 +#define au_fset_cpup(flags, name) \
6110 +       do { (flags) |= AuCpup_##name; } while (0)
6111 +#define au_fclr_cpup(flags, name) \
6112 +       do { (flags) &= ~AuCpup_##name; } while (0)
6113 +
6114 +int au_copy_file(struct file *dst, struct file *src, loff_t len);
6115 +int au_sio_cpup_simple(struct au_cp_generic *cpg);
6116 +int au_sio_cpdown_simple(struct au_cp_generic *cpg);
6117 +int au_sio_cpup_wh(struct au_cp_generic *cpg, struct file *file);
6118 +
6119 +int au_cp_dirs(struct dentry *dentry, aufs_bindex_t bdst,
6120 +              int (*cp)(struct dentry *dentry, aufs_bindex_t bdst,
6121 +                        struct au_pin *pin,
6122 +                        struct dentry *h_parent, void *arg),
6123 +              void *arg);
6124 +int au_cpup_dirs(struct dentry *dentry, aufs_bindex_t bdst);
6125 +int au_test_and_cpup_dirs(struct dentry *dentry, aufs_bindex_t bdst);
6126 +
6127 +/* ---------------------------------------------------------------------- */
6128 +
6129 +/* keep timestamps when copyup */
6130 +struct au_dtime {
6131 +       struct dentry *dt_dentry;
6132 +       struct path dt_h_path;
6133 +       struct timespec dt_atime, dt_mtime;
6134 +};
6135 +void au_dtime_store(struct au_dtime *dt, struct dentry *dentry,
6136 +                   struct path *h_path);
6137 +void au_dtime_revert(struct au_dtime *dt);
6138 +
6139 +#endif /* __KERNEL__ */
6140 +#endif /* __AUFS_CPUP_H__ */
6141 diff -urN /usr/share/empty/fs/aufs/dbgaufs.c linux/fs/aufs/dbgaufs.c
6142 --- /usr/share/empty/fs/aufs/dbgaufs.c  1970-01-01 01:00:00.000000000 +0100
6143 +++ linux/fs/aufs/dbgaufs.c     2016-10-09 16:55:38.886097714 +0200
6144 @@ -0,0 +1,438 @@
6145 +/*
6146 + * Copyright (C) 2005-2016 Junjiro R. Okajima
6147 + *
6148 + * This program, aufs is free software; you can redistribute it and/or modify
6149 + * it under the terms of the GNU General Public License as published by
6150 + * the Free Software Foundation; either version 2 of the License, or
6151 + * (at your option) any later version.
6152 + *
6153 + * This program is distributed in the hope that it will be useful,
6154 + * but WITHOUT ANY WARRANTY; without even the implied warranty of
6155 + * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
6156 + * GNU General Public License for more details.
6157 + *
6158 + * You should have received a copy of the GNU General Public License
6159 + * along with this program.  If not, see <http://www.gnu.org/licenses/>.
6160 + */
6161 +
6162 +/*
6163 + * debugfs interface
6164 + */
6165 +
6166 +#include <linux/debugfs.h>
6167 +#include "aufs.h"
6168 +
6169 +#ifndef CONFIG_SYSFS
6170 +#error DEBUG_FS depends upon SYSFS
6171 +#endif
6172 +
6173 +static struct dentry *dbgaufs;
6174 +static const mode_t dbgaufs_mode = S_IRUSR | S_IRGRP | S_IROTH;
6175 +
6176 +/* 20 is max digits length of ulong 64 */
6177 +struct dbgaufs_arg {
6178 +       int n;
6179 +       char a[20 * 4];
6180 +};
6181 +
6182 +/*
6183 + * common function for all XINO files
6184 + */
6185 +static int dbgaufs_xi_release(struct inode *inode __maybe_unused,
6186 +                             struct file *file)
6187 +{
6188 +       au_delayed_kfree(file->private_data);
6189 +       return 0;
6190 +}
6191 +
6192 +static int dbgaufs_xi_open(struct file *xf, struct file *file, int do_fcnt)
6193 +{
6194 +       int err;
6195 +       struct kstat st;
6196 +       struct dbgaufs_arg *p;
6197 +
6198 +       err = -ENOMEM;
6199 +       p = kmalloc(sizeof(*p), GFP_NOFS);
6200 +       if (unlikely(!p))
6201 +               goto out;
6202 +
6203 +       err = 0;
6204 +       p->n = 0;
6205 +       file->private_data = p;
6206 +       if (!xf)
6207 +               goto out;
6208 +
6209 +       err = vfs_getattr(&xf->f_path, &st);
6210 +       if (!err) {
6211 +               if (do_fcnt)
6212 +                       p->n = snprintf
6213 +                               (p->a, sizeof(p->a), "%ld, %llux%lu %lld\n",
6214 +                                (long)file_count(xf), st.blocks, st.blksize,
6215 +                                (long long)st.size);
6216 +               else
6217 +                       p->n = snprintf(p->a, sizeof(p->a), "%llux%lu %lld\n",
6218 +                                       st.blocks, st.blksize,
6219 +                                       (long long)st.size);
6220 +               AuDebugOn(p->n >= sizeof(p->a));
6221 +       } else {
6222 +               p->n = snprintf(p->a, sizeof(p->a), "err %d\n", err);
6223 +               err = 0;
6224 +       }
6225 +
6226 +out:
6227 +       return err;
6228 +
6229 +}
6230 +
6231 +static ssize_t dbgaufs_xi_read(struct file *file, char __user *buf,
6232 +                              size_t count, loff_t *ppos)
6233 +{
6234 +       struct dbgaufs_arg *p;
6235 +
6236 +       p = file->private_data;
6237 +       return simple_read_from_buffer(buf, count, ppos, p->a, p->n);
6238 +}
6239 +
6240 +/* ---------------------------------------------------------------------- */
6241 +
6242 +struct dbgaufs_plink_arg {
6243 +       int n;
6244 +       char a[];
6245 +};
6246 +
6247 +static int dbgaufs_plink_release(struct inode *inode __maybe_unused,
6248 +                                struct file *file)
6249 +{
6250 +       au_delayed_free_page((unsigned long)file->private_data);
6251 +       return 0;
6252 +}
6253 +
6254 +static int dbgaufs_plink_open(struct inode *inode, struct file *file)
6255 +{
6256 +       int err, i, limit;
6257 +       unsigned long n, sum;
6258 +       struct dbgaufs_plink_arg *p;
6259 +       struct au_sbinfo *sbinfo;
6260 +       struct super_block *sb;
6261 +       struct au_sphlhead *sphl;
6262 +
6263 +       err = -ENOMEM;
6264 +       p = (void *)get_zeroed_page(GFP_NOFS);
6265 +       if (unlikely(!p))
6266 +               goto out;
6267 +
6268 +       err = -EFBIG;
6269 +       sbinfo = inode->i_private;
6270 +       sb = sbinfo->si_sb;
6271 +       si_noflush_read_lock(sb);
6272 +       if (au_opt_test(au_mntflags(sb), PLINK)) {
6273 +               limit = PAGE_SIZE - sizeof(p->n);
6274 +
6275 +               /* the number of buckets */
6276 +               n = snprintf(p->a + p->n, limit, "%d\n", AuPlink_NHASH);
6277 +               p->n += n;
6278 +               limit -= n;
6279 +
6280 +               sum = 0;
6281 +               for (i = 0, sphl = sbinfo->si_plink;
6282 +                    i < AuPlink_NHASH;
6283 +                    i++, sphl++) {
6284 +                       n = au_sphl_count(sphl);
6285 +                       sum += n;
6286 +
6287 +                       n = snprintf(p->a + p->n, limit, "%lu ", n);
6288 +                       p->n += n;
6289 +                       limit -= n;
6290 +                       if (unlikely(limit <= 0))
6291 +                               goto out_free;
6292 +               }
6293 +               p->a[p->n - 1] = '\n';
6294 +
6295 +               /* the sum of plinks */
6296 +               n = snprintf(p->a + p->n, limit, "%lu\n", sum);
6297 +               p->n += n;
6298 +               limit -= n;
6299 +               if (unlikely(limit <= 0))
6300 +                       goto out_free;
6301 +       } else {
6302 +#define str "1\n0\n0\n"
6303 +               p->n = sizeof(str) - 1;
6304 +               strcpy(p->a, str);
6305 +#undef str
6306 +       }
6307 +       si_read_unlock(sb);
6308 +
6309 +       err = 0;
6310 +       file->private_data = p;
6311 +       goto out; /* success */
6312 +
6313 +out_free:
6314 +       au_delayed_free_page((unsigned long)p);
6315 +out:
6316 +       return err;
6317 +}
6318 +
6319 +static ssize_t dbgaufs_plink_read(struct file *file, char __user *buf,
6320 +                                 size_t count, loff_t *ppos)
6321 +{
6322 +       struct dbgaufs_plink_arg *p;
6323 +
6324 +       p = file->private_data;
6325 +       return simple_read_from_buffer(buf, count, ppos, p->a, p->n);
6326 +}
6327 +
6328 +static const struct file_operations dbgaufs_plink_fop = {
6329 +       .owner          = THIS_MODULE,
6330 +       .open           = dbgaufs_plink_open,
6331 +       .release        = dbgaufs_plink_release,
6332 +       .read           = dbgaufs_plink_read
6333 +};
6334 +
6335 +/* ---------------------------------------------------------------------- */
6336 +
6337 +static int dbgaufs_xib_open(struct inode *inode, struct file *file)
6338 +{
6339 +       int err;
6340 +       struct au_sbinfo *sbinfo;
6341 +       struct super_block *sb;
6342 +
6343 +       sbinfo = inode->i_private;
6344 +       sb = sbinfo->si_sb;
6345 +       si_noflush_read_lock(sb);
6346 +       err = dbgaufs_xi_open(sbinfo->si_xib, file, /*do_fcnt*/0);
6347 +       si_read_unlock(sb);
6348 +       return err;
6349 +}
6350 +
6351 +static const struct file_operations dbgaufs_xib_fop = {
6352 +       .owner          = THIS_MODULE,
6353 +       .open           = dbgaufs_xib_open,
6354 +       .release        = dbgaufs_xi_release,
6355 +       .read           = dbgaufs_xi_read
6356 +};
6357 +
6358 +/* ---------------------------------------------------------------------- */
6359 +
6360 +#define DbgaufsXi_PREFIX "xi"
6361 +
6362 +static int dbgaufs_xino_open(struct inode *inode, struct file *file)
6363 +{
6364 +       int err;
6365 +       long l;
6366 +       struct au_sbinfo *sbinfo;
6367 +       struct super_block *sb;
6368 +       struct file *xf;
6369 +       struct qstr *name;
6370 +
6371 +       err = -ENOENT;
6372 +       xf = NULL;
6373 +       name = &file->f_path.dentry->d_name;
6374 +       if (unlikely(name->len < sizeof(DbgaufsXi_PREFIX)
6375 +                    || memcmp(name->name, DbgaufsXi_PREFIX,
6376 +                              sizeof(DbgaufsXi_PREFIX) - 1)))
6377 +               goto out;
6378 +       err = kstrtol(name->name + sizeof(DbgaufsXi_PREFIX) - 1, 10, &l);
6379 +       if (unlikely(err))
6380 +               goto out;
6381 +
6382 +       sbinfo = inode->i_private;
6383 +       sb = sbinfo->si_sb;
6384 +       si_noflush_read_lock(sb);
6385 +       if (l <= au_sbbot(sb)) {
6386 +               xf = au_sbr(sb, (aufs_bindex_t)l)->br_xino.xi_file;
6387 +               err = dbgaufs_xi_open(xf, file, /*do_fcnt*/1);
6388 +       } else
6389 +               err = -ENOENT;
6390 +       si_read_unlock(sb);
6391 +
6392 +out:
6393 +       return err;
6394 +}
6395 +
6396 +static const struct file_operations dbgaufs_xino_fop = {
6397 +       .owner          = THIS_MODULE,
6398 +       .open           = dbgaufs_xino_open,
6399 +       .release        = dbgaufs_xi_release,
6400 +       .read           = dbgaufs_xi_read
6401 +};
6402 +
6403 +void dbgaufs_brs_del(struct super_block *sb, aufs_bindex_t bindex)
6404 +{
6405 +       aufs_bindex_t bbot;
6406 +       struct au_branch *br;
6407 +       struct au_xino_file *xi;
6408 +
6409 +       if (!au_sbi(sb)->si_dbgaufs)
6410 +               return;
6411 +
6412 +       bbot = au_sbbot(sb);
6413 +       for (; bindex <= bbot; bindex++) {
6414 +               br = au_sbr(sb, bindex);
6415 +               xi = &br->br_xino;
6416 +               /* debugfs acquires the parent i_mutex */
6417 +               lockdep_off();
6418 +               debugfs_remove(xi->xi_dbgaufs);
6419 +               lockdep_on();
6420 +               xi->xi_dbgaufs = NULL;
6421 +       }
6422 +}
6423 +
6424 +void dbgaufs_brs_add(struct super_block *sb, aufs_bindex_t bindex)
6425 +{
6426 +       struct au_sbinfo *sbinfo;
6427 +       struct dentry *parent;
6428 +       struct au_branch *br;
6429 +       struct au_xino_file *xi;
6430 +       aufs_bindex_t bbot;
6431 +       char name[sizeof(DbgaufsXi_PREFIX) + 5]; /* "xi" bindex NULL */
6432 +
6433 +       sbinfo = au_sbi(sb);
6434 +       parent = sbinfo->si_dbgaufs;
6435 +       if (!parent)
6436 +               return;
6437 +
6438 +       bbot = au_sbbot(sb);
6439 +       for (; bindex <= bbot; bindex++) {
6440 +               snprintf(name, sizeof(name), DbgaufsXi_PREFIX "%d", bindex);
6441 +               br = au_sbr(sb, bindex);
6442 +               xi = &br->br_xino;
6443 +               AuDebugOn(xi->xi_dbgaufs);
6444 +               /* debugfs acquires the parent i_mutex */
6445 +               lockdep_off();
6446 +               xi->xi_dbgaufs = debugfs_create_file(name, dbgaufs_mode, parent,
6447 +                                                    sbinfo, &dbgaufs_xino_fop);
6448 +               lockdep_on();
6449 +               /* ignore an error */
6450 +               if (unlikely(!xi->xi_dbgaufs))
6451 +                       AuWarn1("failed %s under debugfs\n", name);
6452 +       }
6453 +}
6454 +
6455 +/* ---------------------------------------------------------------------- */
6456 +
6457 +#ifdef CONFIG_AUFS_EXPORT
6458 +static int dbgaufs_xigen_open(struct inode *inode, struct file *file)
6459 +{
6460 +       int err;
6461 +       struct au_sbinfo *sbinfo;
6462 +       struct super_block *sb;
6463 +
6464 +       sbinfo = inode->i_private;
6465 +       sb = sbinfo->si_sb;
6466 +       si_noflush_read_lock(sb);
6467 +       err = dbgaufs_xi_open(sbinfo->si_xigen, file, /*do_fcnt*/0);
6468 +       si_read_unlock(sb);
6469 +       return err;
6470 +}
6471 +
6472 +static const struct file_operations dbgaufs_xigen_fop = {
6473 +       .owner          = THIS_MODULE,
6474 +       .open           = dbgaufs_xigen_open,
6475 +       .release        = dbgaufs_xi_release,
6476 +       .read           = dbgaufs_xi_read
6477 +};
6478 +
6479 +static int dbgaufs_xigen_init(struct au_sbinfo *sbinfo)
6480 +{
6481 +       int err;
6482 +
6483 +       /*
6484 +        * This function is a dynamic '__init' function actually,
6485 +        * so the tiny check for si_rwsem is unnecessary.
6486 +        */
6487 +       /* AuRwMustWriteLock(&sbinfo->si_rwsem); */
6488 +
6489 +       err = -EIO;
6490 +       sbinfo->si_dbgaufs_xigen = debugfs_create_file
6491 +               ("xigen", dbgaufs_mode, sbinfo->si_dbgaufs, sbinfo,
6492 +                &dbgaufs_xigen_fop);
6493 +       if (sbinfo->si_dbgaufs_xigen)
6494 +               err = 0;
6495 +
6496 +       return err;
6497 +}
6498 +#else
6499 +static int dbgaufs_xigen_init(struct au_sbinfo *sbinfo)
6500 +{
6501 +       return 0;
6502 +}
6503 +#endif /* CONFIG_AUFS_EXPORT */
6504 +
6505 +/* ---------------------------------------------------------------------- */
6506 +
6507 +void dbgaufs_si_fin(struct au_sbinfo *sbinfo)
6508 +{
6509 +       /*
6510 +        * This function is a dynamic '__fin' function actually,
6511 +        * so the tiny check for si_rwsem is unnecessary.
6512 +        */
6513 +       /* AuRwMustWriteLock(&sbinfo->si_rwsem); */
6514 +
6515 +       debugfs_remove_recursive(sbinfo->si_dbgaufs);
6516 +       sbinfo->si_dbgaufs = NULL;
6517 +       kobject_put(&sbinfo->si_kobj);
6518 +}
6519 +
6520 +int dbgaufs_si_init(struct au_sbinfo *sbinfo)
6521 +{
6522 +       int err;
6523 +       char name[SysaufsSiNameLen];
6524 +
6525 +       /*
6526 +        * This function is a dynamic '__init' function actually,
6527 +        * so the tiny check for si_rwsem is unnecessary.
6528 +        */
6529 +       /* AuRwMustWriteLock(&sbinfo->si_rwsem); */
6530 +
6531 +       err = -ENOENT;
6532 +       if (!dbgaufs) {
6533 +               AuErr1("/debug/aufs is uninitialized\n");
6534 +               goto out;
6535 +       }
6536 +
6537 +       err = -EIO;
6538 +       sysaufs_name(sbinfo, name);
6539 +       sbinfo->si_dbgaufs = debugfs_create_dir(name, dbgaufs);
6540 +       if (unlikely(!sbinfo->si_dbgaufs))
6541 +               goto out;
6542 +       kobject_get(&sbinfo->si_kobj);
6543 +
6544 +       sbinfo->si_dbgaufs_xib = debugfs_create_file
6545 +               ("xib", dbgaufs_mode, sbinfo->si_dbgaufs, sbinfo,
6546 +                &dbgaufs_xib_fop);
6547 +       if (unlikely(!sbinfo->si_dbgaufs_xib))
6548 +               goto out_dir;
6549 +
6550 +       sbinfo->si_dbgaufs_plink = debugfs_create_file
6551 +               ("plink", dbgaufs_mode, sbinfo->si_dbgaufs, sbinfo,
6552 +                &dbgaufs_plink_fop);
6553 +       if (unlikely(!sbinfo->si_dbgaufs_plink))
6554 +               goto out_dir;
6555 +
6556 +       err = dbgaufs_xigen_init(sbinfo);
6557 +       if (!err)
6558 +               goto out; /* success */
6559 +
6560 +out_dir:
6561 +       dbgaufs_si_fin(sbinfo);
6562 +out:
6563 +       return err;
6564 +}
6565 +
6566 +/* ---------------------------------------------------------------------- */
6567 +
6568 +void dbgaufs_fin(void)
6569 +{
6570 +       debugfs_remove(dbgaufs);
6571 +}
6572 +
6573 +int __init dbgaufs_init(void)
6574 +{
6575 +       int err;
6576 +
6577 +       err = -EIO;
6578 +       dbgaufs = debugfs_create_dir(AUFS_NAME, NULL);
6579 +       if (dbgaufs)
6580 +               err = 0;
6581 +       return err;
6582 +}
6583 diff -urN /usr/share/empty/fs/aufs/dbgaufs.h linux/fs/aufs/dbgaufs.h
6584 --- /usr/share/empty/fs/aufs/dbgaufs.h  1970-01-01 01:00:00.000000000 +0100
6585 +++ linux/fs/aufs/dbgaufs.h     2016-10-09 16:55:36.486034798 +0200
6586 @@ -0,0 +1,48 @@
6587 +/*
6588 + * Copyright (C) 2005-2016 Junjiro R. Okajima
6589 + *
6590 + * This program, aufs is free software; you can redistribute it and/or modify
6591 + * it under the terms of the GNU General Public License as published by
6592 + * the Free Software Foundation; either version 2 of the License, or
6593 + * (at your option) any later version.
6594 + *
6595 + * This program is distributed in the hope that it will be useful,
6596 + * but WITHOUT ANY WARRANTY; without even the implied warranty of
6597 + * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
6598 + * GNU General Public License for more details.
6599 + *
6600 + * You should have received a copy of the GNU General Public License
6601 + * along with this program.  If not, see <http://www.gnu.org/licenses/>.
6602 + */
6603 +
6604 +/*
6605 + * debugfs interface
6606 + */
6607 +
6608 +#ifndef __DBGAUFS_H__
6609 +#define __DBGAUFS_H__
6610 +
6611 +#ifdef __KERNEL__
6612 +
6613 +struct super_block;
6614 +struct au_sbinfo;
6615 +
6616 +#ifdef CONFIG_DEBUG_FS
6617 +/* dbgaufs.c */
6618 +void dbgaufs_brs_del(struct super_block *sb, aufs_bindex_t bindex);
6619 +void dbgaufs_brs_add(struct super_block *sb, aufs_bindex_t bindex);
6620 +void dbgaufs_si_fin(struct au_sbinfo *sbinfo);
6621 +int dbgaufs_si_init(struct au_sbinfo *sbinfo);
6622 +void dbgaufs_fin(void);
6623 +int __init dbgaufs_init(void);
6624 +#else
6625 +AuStubVoid(dbgaufs_brs_del, struct super_block *sb, aufs_bindex_t bindex)
6626 +AuStubVoid(dbgaufs_brs_add, struct super_block *sb, aufs_bindex_t bindex)
6627 +AuStubVoid(dbgaufs_si_fin, struct au_sbinfo *sbinfo)
6628 +AuStubInt0(dbgaufs_si_init, struct au_sbinfo *sbinfo)
6629 +AuStubVoid(dbgaufs_fin, void)
6630 +AuStubInt0(__init dbgaufs_init, void)
6631 +#endif /* CONFIG_DEBUG_FS */
6632 +
6633 +#endif /* __KERNEL__ */
6634 +#endif /* __DBGAUFS_H__ */
6635 diff -urN /usr/share/empty/fs/aufs/dcsub.c linux/fs/aufs/dcsub.c
6636 --- /usr/share/empty/fs/aufs/dcsub.c    1970-01-01 01:00:00.000000000 +0100
6637 +++ linux/fs/aufs/dcsub.c       2016-10-09 16:55:38.886097714 +0200
6638 @@ -0,0 +1,225 @@
6639 +/*
6640 + * Copyright (C) 2005-2016 Junjiro R. Okajima
6641 + *
6642 + * This program, aufs is free software; you can redistribute it and/or modify
6643 + * it under the terms of the GNU General Public License as published by
6644 + * the Free Software Foundation; either version 2 of the License, or
6645 + * (at your option) any later version.
6646 + *
6647 + * This program is distributed in the hope that it will be useful,
6648 + * but WITHOUT ANY WARRANTY; without even the implied warranty of
6649 + * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
6650 + * GNU General Public License for more details.
6651 + *
6652 + * You should have received a copy of the GNU General Public License
6653 + * along with this program.  If not, see <http://www.gnu.org/licenses/>.
6654 + */
6655 +
6656 +/*
6657 + * sub-routines for dentry cache
6658 + */
6659 +
6660 +#include "aufs.h"
6661 +
6662 +static void au_dpage_free(struct au_dpage *dpage)
6663 +{
6664 +       int i;
6665 +       struct dentry **p;
6666 +
6667 +       p = dpage->dentries;
6668 +       for (i = 0; i < dpage->ndentry; i++)
6669 +               dput(*p++);
6670 +       au_delayed_free_page((unsigned long)dpage->dentries);
6671 +}
6672 +
6673 +int au_dpages_init(struct au_dcsub_pages *dpages, gfp_t gfp)
6674 +{
6675 +       int err;
6676 +       void *p;
6677 +
6678 +       err = -ENOMEM;
6679 +       dpages->dpages = kmalloc(sizeof(*dpages->dpages), gfp);
6680 +       if (unlikely(!dpages->dpages))
6681 +               goto out;
6682 +
6683 +       p = (void *)__get_free_page(gfp);
6684 +       if (unlikely(!p))
6685 +               goto out_dpages;
6686 +
6687 +       dpages->dpages[0].ndentry = 0;
6688 +       dpages->dpages[0].dentries = p;
6689 +       dpages->ndpage = 1;
6690 +       return 0; /* success */
6691 +
6692 +out_dpages:
6693 +       au_delayed_kfree(dpages->dpages);
6694 +out:
6695 +       return err;
6696 +}
6697 +
6698 +void au_dpages_free(struct au_dcsub_pages *dpages)
6699 +{
6700 +       int i;
6701 +       struct au_dpage *p;
6702 +
6703 +       p = dpages->dpages;
6704 +       for (i = 0; i < dpages->ndpage; i++)
6705 +               au_dpage_free(p++);
6706 +       au_delayed_kfree(dpages->dpages);
6707 +}
6708 +
6709 +static int au_dpages_append(struct au_dcsub_pages *dpages,
6710 +                           struct dentry *dentry, gfp_t gfp)
6711 +{
6712 +       int err, sz;
6713 +       struct au_dpage *dpage;
6714 +       void *p;
6715 +
6716 +       dpage = dpages->dpages + dpages->ndpage - 1;
6717 +       sz = PAGE_SIZE / sizeof(dentry);
6718 +       if (unlikely(dpage->ndentry >= sz)) {
6719 +               AuLabel(new dpage);
6720 +               err = -ENOMEM;
6721 +               sz = dpages->ndpage * sizeof(*dpages->dpages);
6722 +               p = au_kzrealloc(dpages->dpages, sz,
6723 +                                sz + sizeof(*dpages->dpages), gfp,
6724 +                                /*may_shrink*/0);
6725 +               if (unlikely(!p))
6726 +                       goto out;
6727 +
6728 +               dpages->dpages = p;
6729 +               dpage = dpages->dpages + dpages->ndpage;
6730 +               p = (void *)__get_free_page(gfp);
6731 +               if (unlikely(!p))
6732 +                       goto out;
6733 +
6734 +               dpage->ndentry = 0;
6735 +               dpage->dentries = p;
6736 +               dpages->ndpage++;
6737 +       }
6738 +
6739 +       AuDebugOn(au_dcount(dentry) <= 0);
6740 +       dpage->dentries[dpage->ndentry++] = dget_dlock(dentry);
6741 +       return 0; /* success */
6742 +
6743 +out:
6744 +       return err;
6745 +}
6746 +
6747 +/* todo: BAD approach */
6748 +/* copied from linux/fs/dcache.c */
6749 +enum d_walk_ret {
6750 +       D_WALK_CONTINUE,
6751 +       D_WALK_QUIT,
6752 +       D_WALK_NORETRY,
6753 +       D_WALK_SKIP,
6754 +};
6755 +
6756 +extern void d_walk(struct dentry *parent, void *data,
6757 +                  enum d_walk_ret (*enter)(void *, struct dentry *),
6758 +                  void (*finish)(void *));
6759 +
6760 +struct ac_dpages_arg {
6761 +       int err;
6762 +       struct au_dcsub_pages *dpages;
6763 +       struct super_block *sb;
6764 +       au_dpages_test test;
6765 +       void *arg;
6766 +};
6767 +
6768 +static enum d_walk_ret au_call_dpages_append(void *_arg, struct dentry *dentry)
6769 +{
6770 +       enum d_walk_ret ret;
6771 +       struct ac_dpages_arg *arg = _arg;
6772 +
6773 +       ret = D_WALK_CONTINUE;
6774 +       if (dentry->d_sb == arg->sb
6775 +           && !IS_ROOT(dentry)
6776 +           && au_dcount(dentry) > 0
6777 +           && au_di(dentry)
6778 +           && (!arg->test || arg->test(dentry, arg->arg))) {
6779 +               arg->err = au_dpages_append(arg->dpages, dentry, GFP_ATOMIC);
6780 +               if (unlikely(arg->err))
6781 +                       ret = D_WALK_QUIT;
6782 +       }
6783 +
6784 +       return ret;
6785 +}
6786 +
6787 +int au_dcsub_pages(struct au_dcsub_pages *dpages, struct dentry *root,
6788 +                  au_dpages_test test, void *arg)
6789 +{
6790 +       struct ac_dpages_arg args = {
6791 +               .err    = 0,
6792 +               .dpages = dpages,
6793 +               .sb     = root->d_sb,
6794 +               .test   = test,
6795 +               .arg    = arg
6796 +       };
6797 +
6798 +       d_walk(root, &args, au_call_dpages_append, NULL);
6799 +
6800 +       return args.err;
6801 +}
6802 +
6803 +int au_dcsub_pages_rev(struct au_dcsub_pages *dpages, struct dentry *dentry,
6804 +                      int do_include, au_dpages_test test, void *arg)
6805 +{
6806 +       int err;
6807 +
6808 +       err = 0;
6809 +       write_seqlock(&rename_lock);
6810 +       spin_lock(&dentry->d_lock);
6811 +       if (do_include
6812 +           && au_dcount(dentry) > 0
6813 +           && (!test || test(dentry, arg)))
6814 +               err = au_dpages_append(dpages, dentry, GFP_ATOMIC);
6815 +       spin_unlock(&dentry->d_lock);
6816 +       if (unlikely(err))
6817 +               goto out;
6818 +
6819 +       /*
6820 +        * RCU for vfsmount is unnecessary since this is a traverse in a single
6821 +        * mount
6822 +        */
6823 +       while (!IS_ROOT(dentry)) {
6824 +               dentry = dentry->d_parent; /* rename_lock is locked */
6825 +               spin_lock(&dentry->d_lock);
6826 +               if (au_dcount(dentry) > 0
6827 +                   && (!test || test(dentry, arg)))
6828 +                       err = au_dpages_append(dpages, dentry, GFP_ATOMIC);
6829 +               spin_unlock(&dentry->d_lock);
6830 +               if (unlikely(err))
6831 +                       break;
6832 +       }
6833 +
6834 +out:
6835 +       write_sequnlock(&rename_lock);
6836 +       return err;
6837 +}
6838 +
6839 +static inline int au_dcsub_dpages_aufs(struct dentry *dentry, void *arg)
6840 +{
6841 +       return au_di(dentry) && dentry->d_sb == arg;
6842 +}
6843 +
6844 +int au_dcsub_pages_rev_aufs(struct au_dcsub_pages *dpages,
6845 +                           struct dentry *dentry, int do_include)
6846 +{
6847 +       return au_dcsub_pages_rev(dpages, dentry, do_include,
6848 +                                 au_dcsub_dpages_aufs, dentry->d_sb);
6849 +}
6850 +
6851 +int au_test_subdir(struct dentry *d1, struct dentry *d2)
6852 +{
6853 +       struct path path[2] = {
6854 +               {
6855 +                       .dentry = d1
6856 +               },
6857 +               {
6858 +                       .dentry = d2
6859 +               }
6860 +       };
6861 +
6862 +       return path_is_under(path + 0, path + 1);
6863 +}
6864 diff -urN /usr/share/empty/fs/aufs/dcsub.h linux/fs/aufs/dcsub.h
6865 --- /usr/share/empty/fs/aufs/dcsub.h    1970-01-01 01:00:00.000000000 +0100
6866 +++ linux/fs/aufs/dcsub.h       2016-10-09 16:55:36.486034798 +0200
6867 @@ -0,0 +1,136 @@
6868 +/*
6869 + * Copyright (C) 2005-2016 Junjiro R. Okajima
6870 + *
6871 + * This program, aufs is free software; you can redistribute it and/or modify
6872 + * it under the terms of the GNU General Public License as published by
6873 + * the Free Software Foundation; either version 2 of the License, or
6874 + * (at your option) any later version.
6875 + *
6876 + * This program is distributed in the hope that it will be useful,
6877 + * but WITHOUT ANY WARRANTY; without even the implied warranty of
6878 + * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
6879 + * GNU General Public License for more details.
6880 + *
6881 + * You should have received a copy of the GNU General Public License
6882 + * along with this program.  If not, see <http://www.gnu.org/licenses/>.
6883 + */
6884 +
6885 +/*
6886 + * sub-routines for dentry cache
6887 + */
6888 +
6889 +#ifndef __AUFS_DCSUB_H__
6890 +#define __AUFS_DCSUB_H__
6891 +
6892 +#ifdef __KERNEL__
6893 +
6894 +#include <linux/dcache.h>
6895 +#include <linux/fs.h>
6896 +
6897 +struct au_dpage {
6898 +       int ndentry;
6899 +       struct dentry **dentries;
6900 +};
6901 +
6902 +struct au_dcsub_pages {
6903 +       int ndpage;
6904 +       struct au_dpage *dpages;
6905 +};
6906 +
6907 +/* ---------------------------------------------------------------------- */
6908 +
6909 +/* dcsub.c */
6910 +int au_dpages_init(struct au_dcsub_pages *dpages, gfp_t gfp);
6911 +void au_dpages_free(struct au_dcsub_pages *dpages);
6912 +typedef int (*au_dpages_test)(struct dentry *dentry, void *arg);
6913 +int au_dcsub_pages(struct au_dcsub_pages *dpages, struct dentry *root,
6914 +                  au_dpages_test test, void *arg);
6915 +int au_dcsub_pages_rev(struct au_dcsub_pages *dpages, struct dentry *dentry,
6916 +                      int do_include, au_dpages_test test, void *arg);
6917 +int au_dcsub_pages_rev_aufs(struct au_dcsub_pages *dpages,
6918 +                           struct dentry *dentry, int do_include);
6919 +int au_test_subdir(struct dentry *d1, struct dentry *d2);
6920 +
6921 +/* ---------------------------------------------------------------------- */
6922 +
6923 +/*
6924 + * todo: in linux-3.13, several similar (but faster) helpers are added to
6925 + * include/linux/dcache.h. Try them (in the future).
6926 + */
6927 +
6928 +static inline int au_d_hashed_positive(struct dentry *d)
6929 +{
6930 +       int err;
6931 +       struct inode *inode = d_inode(d);
6932 +
6933 +       err = 0;
6934 +       if (unlikely(d_unhashed(d)
6935 +                    || d_is_negative(d)
6936 +                    || !inode->i_nlink))
6937 +               err = -ENOENT;
6938 +       return err;
6939 +}
6940 +
6941 +static inline int au_d_linkable(struct dentry *d)
6942 +{
6943 +       int err;
6944 +       struct inode *inode = d_inode(d);
6945 +
6946 +       err = au_d_hashed_positive(d);
6947 +       if (err
6948 +           && d_is_positive(d)
6949 +           && (inode->i_state & I_LINKABLE))
6950 +               err = 0;
6951 +       return err;
6952 +}
6953 +
6954 +static inline int au_d_alive(struct dentry *d)
6955 +{
6956 +       int err;
6957 +       struct inode *inode;
6958 +
6959 +       err = 0;
6960 +       if (!IS_ROOT(d))
6961 +               err = au_d_hashed_positive(d);
6962 +       else {
6963 +               inode = d_inode(d);
6964 +               if (unlikely(d_unlinked(d)
6965 +                            || d_is_negative(d)
6966 +                            || !inode->i_nlink))
6967 +                       err = -ENOENT;
6968 +       }
6969 +       return err;
6970 +}
6971 +
6972 +static inline int au_alive_dir(struct dentry *d)
6973 +{
6974 +       int err;
6975 +
6976 +       err = au_d_alive(d);
6977 +       if (unlikely(err || IS_DEADDIR(d_inode(d))))
6978 +               err = -ENOENT;
6979 +       return err;
6980 +}
6981 +
6982 +static inline int au_qstreq(struct qstr *a, struct qstr *b)
6983 +{
6984 +       return a->len == b->len
6985 +               && !memcmp(a->name, b->name, a->len);
6986 +}
6987 +
6988 +/*
6989 + * by the commit
6990 + * 360f547 2015-01-25 dcache: let the dentry count go down to zero without
6991 + *                     taking d_lock
6992 + * the type of d_lockref.count became int, but the inlined function d_count()
6993 + * still returns unsigned int.
6994 + * I don't know why. Maybe it is for every d_count() users?
6995 + * Anyway au_dcount() lives on.
6996 + */
6997 +static inline int au_dcount(struct dentry *d)
6998 +{
6999 +       return (int)d_count(d);
7000 +}
7001 +
7002 +#endif /* __KERNEL__ */
7003 +#endif /* __AUFS_DCSUB_H__ */
7004 diff -urN /usr/share/empty/fs/aufs/debug.c linux/fs/aufs/debug.c
7005 --- /usr/share/empty/fs/aufs/debug.c    1970-01-01 01:00:00.000000000 +0100
7006 +++ linux/fs/aufs/debug.c       2016-10-09 16:55:36.486034798 +0200
7007 @@ -0,0 +1,440 @@
7008 +/*
7009 + * Copyright (C) 2005-2016 Junjiro R. Okajima
7010 + *
7011 + * This program, aufs is free software; you can redistribute it and/or modify
7012 + * it under the terms of the GNU General Public License as published by
7013 + * the Free Software Foundation; either version 2 of the License, or
7014 + * (at your option) any later version.
7015 + *
7016 + * This program is distributed in the hope that it will be useful,
7017 + * but WITHOUT ANY WARRANTY; without even the implied warranty of
7018 + * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
7019 + * GNU General Public License for more details.
7020 + *
7021 + * You should have received a copy of the GNU General Public License
7022 + * along with this program.  If not, see <http://www.gnu.org/licenses/>.
7023 + */
7024 +
7025 +/*
7026 + * debug print functions
7027 + */
7028 +
7029 +#include "aufs.h"
7030 +
7031 +/* Returns 0, or -errno.  arg is in kp->arg. */
7032 +static int param_atomic_t_set(const char *val, const struct kernel_param *kp)
7033 +{
7034 +       int err, n;
7035 +
7036 +       err = kstrtoint(val, 0, &n);
7037 +       if (!err) {
7038 +               if (n > 0)
7039 +                       au_debug_on();
7040 +               else
7041 +                       au_debug_off();
7042 +       }
7043 +       return err;
7044 +}
7045 +
7046 +/* Returns length written or -errno.  Buffer is 4k (ie. be short!) */
7047 +static int param_atomic_t_get(char *buffer, const struct kernel_param *kp)
7048 +{
7049 +       atomic_t *a;
7050 +
7051 +       a = kp->arg;
7052 +       return sprintf(buffer, "%d", atomic_read(a));
7053 +}
7054 +
7055 +static struct kernel_param_ops param_ops_atomic_t = {
7056 +       .set = param_atomic_t_set,
7057 +       .get = param_atomic_t_get
7058 +       /* void (*free)(void *arg) */
7059 +};
7060 +
7061 +atomic_t aufs_debug = ATOMIC_INIT(0);
7062 +MODULE_PARM_DESC(debug, "debug print");
7063 +module_param_named(debug, aufs_debug, atomic_t, S_IRUGO | S_IWUSR | S_IWGRP);
7064 +
7065 +DEFINE_MUTEX(au_dbg_mtx);      /* just to serialize the dbg msgs */
7066 +char *au_plevel = KERN_DEBUG;
7067 +#define dpri(fmt, ...) do {                                    \
7068 +       if ((au_plevel                                          \
7069 +            && strcmp(au_plevel, KERN_DEBUG))                  \
7070 +           || au_debug_test())                                 \
7071 +               printk("%s" fmt, au_plevel, ##__VA_ARGS__);     \
7072 +} while (0)
7073 +
7074 +/* ---------------------------------------------------------------------- */
7075 +
7076 +void au_dpri_whlist(struct au_nhash *whlist)
7077 +{
7078 +       unsigned long ul, n;
7079 +       struct hlist_head *head;
7080 +       struct au_vdir_wh *pos;
7081 +
7082 +       n = whlist->nh_num;
7083 +       head = whlist->nh_head;
7084 +       for (ul = 0; ul < n; ul++) {
7085 +               hlist_for_each_entry(pos, head, wh_hash)
7086 +                       dpri("b%d, %.*s, %d\n",
7087 +                            pos->wh_bindex,
7088 +                            pos->wh_str.len, pos->wh_str.name,
7089 +                            pos->wh_str.len);
7090 +               head++;
7091 +       }
7092 +}
7093 +
7094 +void au_dpri_vdir(struct au_vdir *vdir)
7095 +{
7096 +       unsigned long ul;
7097 +       union au_vdir_deblk_p p;
7098 +       unsigned char *o;
7099 +
7100 +       if (!vdir || IS_ERR(vdir)) {
7101 +               dpri("err %ld\n", PTR_ERR(vdir));
7102 +               return;
7103 +       }
7104 +
7105 +       dpri("deblk %u, nblk %lu, deblk %p, last{%lu, %p}, ver %lu\n",
7106 +            vdir->vd_deblk_sz, vdir->vd_nblk, vdir->vd_deblk,
7107 +            vdir->vd_last.ul, vdir->vd_last.p.deblk, vdir->vd_version);
7108 +       for (ul = 0; ul < vdir->vd_nblk; ul++) {
7109 +               p.deblk = vdir->vd_deblk[ul];
7110 +               o = p.deblk;
7111 +               dpri("[%lu]: %p\n", ul, o);
7112 +       }
7113 +}
7114 +
7115 +static int do_pri_inode(aufs_bindex_t bindex, struct inode *inode, int hn,
7116 +                       struct dentry *wh)
7117 +{
7118 +       char *n = NULL;
7119 +       int l = 0;
7120 +
7121 +       if (!inode || IS_ERR(inode)) {
7122 +               dpri("i%d: err %ld\n", bindex, PTR_ERR(inode));
7123 +               return -1;
7124 +       }
7125 +
7126 +       /* the type of i_blocks depends upon CONFIG_LBDAF */
7127 +       BUILD_BUG_ON(sizeof(inode->i_blocks) != sizeof(unsigned long)
7128 +                    && sizeof(inode->i_blocks) != sizeof(u64));
7129 +       if (wh) {
7130 +               n = (void *)wh->d_name.name;
7131 +               l = wh->d_name.len;
7132 +       }
7133 +
7134 +       dpri("i%d: %p, i%lu, %s, cnt %d, nl %u, 0%o, sz %llu, blk %llu,"
7135 +            " hn %d, ct %lld, np %lu, st 0x%lx, f 0x%x, v %llu, g %x%s%.*s\n",
7136 +            bindex, inode,
7137 +            inode->i_ino, inode->i_sb ? au_sbtype(inode->i_sb) : "??",
7138 +            atomic_read(&inode->i_count), inode->i_nlink, inode->i_mode,
7139 +            i_size_read(inode), (unsigned long long)inode->i_blocks,
7140 +            hn, (long long)timespec_to_ns(&inode->i_ctime) & 0x0ffff,
7141 +            inode->i_mapping ? inode->i_mapping->nrpages : 0,
7142 +            inode->i_state, inode->i_flags, inode->i_version,
7143 +            inode->i_generation,
7144 +            l ? ", wh " : "", l, n);
7145 +       return 0;
7146 +}
7147 +
7148 +void au_dpri_inode(struct inode *inode)
7149 +{
7150 +       struct au_iinfo *iinfo;
7151 +       struct au_hinode *hi;
7152 +       aufs_bindex_t bindex;
7153 +       int err, hn;
7154 +
7155 +       err = do_pri_inode(-1, inode, -1, NULL);
7156 +       if (err || !au_test_aufs(inode->i_sb) || au_is_bad_inode(inode))
7157 +               return;
7158 +
7159 +       iinfo = au_ii(inode);
7160 +       dpri("i-1: btop %d, bbot %d, gen %d\n",
7161 +            iinfo->ii_btop, iinfo->ii_bbot, au_iigen(inode, NULL));
7162 +       if (iinfo->ii_btop < 0)
7163 +               return;
7164 +       hn = 0;
7165 +       for (bindex = iinfo->ii_btop; bindex <= iinfo->ii_bbot; bindex++) {
7166 +               hi = au_hinode(iinfo, bindex);
7167 +               hn = !!au_hn(hi);
7168 +               do_pri_inode(bindex, hi->hi_inode, hn, hi->hi_whdentry);
7169 +       }
7170 +}
7171 +
7172 +void au_dpri_dalias(struct inode *inode)
7173 +{
7174 +       struct dentry *d;
7175 +
7176 +       spin_lock(&inode->i_lock);
7177 +       hlist_for_each_entry(d, &inode->i_dentry, d_u.d_alias)
7178 +               au_dpri_dentry(d);
7179 +       spin_unlock(&inode->i_lock);
7180 +}
7181 +
7182 +static int do_pri_dentry(aufs_bindex_t bindex, struct dentry *dentry)
7183 +{
7184 +       struct dentry *wh = NULL;
7185 +       int hn;
7186 +       struct inode *inode;
7187 +       struct au_iinfo *iinfo;
7188 +       struct au_hinode *hi;
7189 +
7190 +       if (!dentry || IS_ERR(dentry)) {
7191 +               dpri("d%d: err %ld\n", bindex, PTR_ERR(dentry));
7192 +               return -1;
7193 +       }
7194 +       /* do not call dget_parent() here */
7195 +       /* note: access d_xxx without d_lock */
7196 +       dpri("d%d: %p, %pd2?, %s, cnt %d, flags 0x%x, %shashed\n",
7197 +            bindex, dentry, dentry,
7198 +            dentry->d_sb ? au_sbtype(dentry->d_sb) : "??",
7199 +            au_dcount(dentry), dentry->d_flags,
7200 +            d_unhashed(dentry) ? "un" : "");
7201 +       hn = -1;
7202 +       inode = NULL;
7203 +       if (d_is_positive(dentry))
7204 +               inode = d_inode(dentry);
7205 +       if (inode
7206 +           && au_test_aufs(dentry->d_sb)
7207 +           && bindex >= 0
7208 +           && !au_is_bad_inode(inode)) {
7209 +               iinfo = au_ii(inode);
7210 +               hi = au_hinode(iinfo, bindex);
7211 +               hn = !!au_hn(hi);
7212 +               wh = hi->hi_whdentry;
7213 +       }
7214 +       do_pri_inode(bindex, inode, hn, wh);
7215 +       return 0;
7216 +}
7217 +
7218 +void au_dpri_dentry(struct dentry *dentry)
7219 +{
7220 +       struct au_dinfo *dinfo;
7221 +       aufs_bindex_t bindex;
7222 +       int err;
7223 +
7224 +       err = do_pri_dentry(-1, dentry);
7225 +       if (err || !au_test_aufs(dentry->d_sb))
7226 +               return;
7227 +
7228 +       dinfo = au_di(dentry);
7229 +       if (!dinfo)
7230 +               return;
7231 +       dpri("d-1: btop %d, bbot %d, bwh %d, bdiropq %d, gen %d, tmp %d\n",
7232 +            dinfo->di_btop, dinfo->di_bbot,
7233 +            dinfo->di_bwh, dinfo->di_bdiropq, au_digen(dentry),
7234 +            dinfo->di_tmpfile);
7235 +       if (dinfo->di_btop < 0)
7236 +               return;
7237 +       for (bindex = dinfo->di_btop; bindex <= dinfo->di_bbot; bindex++)
7238 +               do_pri_dentry(bindex, au_hdentry(dinfo, bindex)->hd_dentry);
7239 +}
7240 +
7241 +static int do_pri_file(aufs_bindex_t bindex, struct file *file)
7242 +{
7243 +       char a[32];
7244 +
7245 +       if (!file || IS_ERR(file)) {
7246 +               dpri("f%d: err %ld\n", bindex, PTR_ERR(file));
7247 +               return -1;
7248 +       }
7249 +       a[0] = 0;
7250 +       if (bindex < 0
7251 +           && !IS_ERR_OR_NULL(file->f_path.dentry)
7252 +           && au_test_aufs(file->f_path.dentry->d_sb)
7253 +           && au_fi(file))
7254 +               snprintf(a, sizeof(a), ", gen %d, mmapped %d",
7255 +                        au_figen(file), atomic_read(&au_fi(file)->fi_mmapped));
7256 +       dpri("f%d: mode 0x%x, flags 0%o, cnt %ld, v %llu, pos %llu%s\n",
7257 +            bindex, file->f_mode, file->f_flags, (long)file_count(file),
7258 +            file->f_version, file->f_pos, a);
7259 +       if (!IS_ERR_OR_NULL(file->f_path.dentry))
7260 +               do_pri_dentry(bindex, file->f_path.dentry);
7261 +       return 0;
7262 +}
7263 +
7264 +void au_dpri_file(struct file *file)
7265 +{
7266 +       struct au_finfo *finfo;
7267 +       struct au_fidir *fidir;
7268 +       struct au_hfile *hfile;
7269 +       aufs_bindex_t bindex;
7270 +       int err;
7271 +
7272 +       err = do_pri_file(-1, file);
7273 +       if (err
7274 +           || IS_ERR_OR_NULL(file->f_path.dentry)
7275 +           || !au_test_aufs(file->f_path.dentry->d_sb))
7276 +               return;
7277 +
7278 +       finfo = au_fi(file);
7279 +       if (!finfo)
7280 +               return;
7281 +       if (finfo->fi_btop < 0)
7282 +               return;
7283 +       fidir = finfo->fi_hdir;
7284 +       if (!fidir)
7285 +               do_pri_file(finfo->fi_btop, finfo->fi_htop.hf_file);
7286 +       else
7287 +               for (bindex = finfo->fi_btop;
7288 +                    bindex >= 0 && bindex <= fidir->fd_bbot;
7289 +                    bindex++) {
7290 +                       hfile = fidir->fd_hfile + bindex;
7291 +                       do_pri_file(bindex, hfile ? hfile->hf_file : NULL);
7292 +               }
7293 +}
7294 +
7295 +static int do_pri_br(aufs_bindex_t bindex, struct au_branch *br)
7296 +{
7297 +       struct vfsmount *mnt;
7298 +       struct super_block *sb;
7299 +
7300 +       if (!br || IS_ERR(br))
7301 +               goto out;
7302 +       mnt = au_br_mnt(br);
7303 +       if (!mnt || IS_ERR(mnt))
7304 +               goto out;
7305 +       sb = mnt->mnt_sb;
7306 +       if (!sb || IS_ERR(sb))
7307 +               goto out;
7308 +
7309 +       dpri("s%d: {perm 0x%x, id %d, cnt %lld, wbr %p}, "
7310 +            "%s, dev 0x%02x%02x, flags 0x%lx, cnt %d, active %d, "
7311 +            "xino %d\n",
7312 +            bindex, br->br_perm, br->br_id, au_br_count(br),
7313 +            br->br_wbr, au_sbtype(sb), MAJOR(sb->s_dev), MINOR(sb->s_dev),
7314 +            sb->s_flags, sb->s_count,
7315 +            atomic_read(&sb->s_active), !!br->br_xino.xi_file);
7316 +       return 0;
7317 +
7318 +out:
7319 +       dpri("s%d: err %ld\n", bindex, PTR_ERR(br));
7320 +       return -1;
7321 +}
7322 +
7323 +void au_dpri_sb(struct super_block *sb)
7324 +{
7325 +       struct au_sbinfo *sbinfo;
7326 +       aufs_bindex_t bindex;
7327 +       int err;
7328 +       /* to reuduce stack size */
7329 +       struct {
7330 +               struct vfsmount mnt;
7331 +               struct au_branch fake;
7332 +       } *a;
7333 +
7334 +       /* this function can be called from magic sysrq */
7335 +       a = kzalloc(sizeof(*a), GFP_ATOMIC);
7336 +       if (unlikely(!a)) {
7337 +               dpri("no memory\n");
7338 +               return;
7339 +       }
7340 +
7341 +       a->mnt.mnt_sb = sb;
7342 +       a->fake.br_path.mnt = &a->mnt;
7343 +       au_br_count_init(&a->fake);
7344 +       err = do_pri_br(-1, &a->fake);
7345 +       au_br_count_fin(&a->fake);
7346 +       au_delayed_kfree(a);
7347 +       dpri("dev 0x%x\n", sb->s_dev);
7348 +       if (err || !au_test_aufs(sb))
7349 +               return;
7350 +
7351 +       sbinfo = au_sbi(sb);
7352 +       if (!sbinfo)
7353 +               return;
7354 +       dpri("nw %d, gen %u, kobj %d\n",
7355 +            atomic_read(&sbinfo->si_nowait.nw_len), sbinfo->si_generation,
7356 +            atomic_read(&sbinfo->si_kobj.kref.refcount));
7357 +       for (bindex = 0; bindex <= sbinfo->si_bbot; bindex++)
7358 +               do_pri_br(bindex, sbinfo->si_branch[0 + bindex]);
7359 +}
7360 +
7361 +/* ---------------------------------------------------------------------- */
7362 +
7363 +void __au_dbg_verify_dinode(struct dentry *dentry, const char *func, int line)
7364 +{
7365 +       struct inode *h_inode, *inode = d_inode(dentry);
7366 +       struct dentry *h_dentry;
7367 +       aufs_bindex_t bindex, bbot, bi;
7368 +
7369 +       if (!inode /* || au_di(dentry)->di_lsc == AuLsc_DI_TMP */)
7370 +               return;
7371 +
7372 +       bbot = au_dbbot(dentry);
7373 +       bi = au_ibbot(inode);
7374 +       if (bi < bbot)
7375 +               bbot = bi;
7376 +       bindex = au_dbtop(dentry);
7377 +       bi = au_ibtop(inode);
7378 +       if (bi > bindex)
7379 +               bindex = bi;
7380 +
7381 +       for (; bindex <= bbot; bindex++) {
7382 +               h_dentry = au_h_dptr(dentry, bindex);
7383 +               if (!h_dentry)
7384 +                       continue;
7385 +               h_inode = au_h_iptr(inode, bindex);
7386 +               if (unlikely(h_inode != d_inode(h_dentry))) {
7387 +                       au_debug_on();
7388 +                       AuDbg("b%d, %s:%d\n", bindex, func, line);
7389 +                       AuDbgDentry(dentry);
7390 +                       AuDbgInode(inode);
7391 +                       au_debug_off();
7392 +                       BUG();
7393 +               }
7394 +       }
7395 +}
7396 +
7397 +void au_dbg_verify_gen(struct dentry *parent, unsigned int sigen)
7398 +{
7399 +       int err, i, j;
7400 +       struct au_dcsub_pages dpages;
7401 +       struct au_dpage *dpage;
7402 +       struct dentry **dentries;
7403 +
7404 +       err = au_dpages_init(&dpages, GFP_NOFS);
7405 +       AuDebugOn(err);
7406 +       err = au_dcsub_pages_rev_aufs(&dpages, parent, /*do_include*/1);
7407 +       AuDebugOn(err);
7408 +       for (i = dpages.ndpage - 1; !err && i >= 0; i--) {
7409 +               dpage = dpages.dpages + i;
7410 +               dentries = dpage->dentries;
7411 +               for (j = dpage->ndentry - 1; !err && j >= 0; j--)
7412 +                       AuDebugOn(au_digen_test(dentries[j], sigen));
7413 +       }
7414 +       au_dpages_free(&dpages);
7415 +}
7416 +
7417 +void au_dbg_verify_kthread(void)
7418 +{
7419 +       if (au_wkq_test()) {
7420 +               au_dbg_blocked();
7421 +               /*
7422 +                * It may be recursive, but udba=notify between two aufs mounts,
7423 +                * where a single ro branch is shared, is not a problem.
7424 +                */
7425 +               /* WARN_ON(1); */
7426 +       }
7427 +}
7428 +
7429 +/* ---------------------------------------------------------------------- */
7430 +
7431 +int __init au_debug_init(void)
7432 +{
7433 +       aufs_bindex_t bindex;
7434 +       struct au_vdir_destr destr;
7435 +
7436 +       bindex = -1;
7437 +       AuDebugOn(bindex >= 0);
7438 +
7439 +       destr.len = -1;
7440 +       AuDebugOn(destr.len < NAME_MAX);
7441 +
7442 +#ifdef CONFIG_4KSTACKS
7443 +       pr_warn("CONFIG_4KSTACKS is defined.\n");
7444 +#endif
7445 +
7446 +       return 0;
7447 +}
7448 diff -urN /usr/share/empty/fs/aufs/debug.h linux/fs/aufs/debug.h
7449 --- /usr/share/empty/fs/aufs/debug.h    1970-01-01 01:00:00.000000000 +0100
7450 +++ linux/fs/aufs/debug.h       2016-10-09 16:55:36.486034798 +0200
7451 @@ -0,0 +1,225 @@
7452 +/*
7453 + * Copyright (C) 2005-2016 Junjiro R. Okajima
7454 + *
7455 + * This program, aufs is free software; you can redistribute it and/or modify
7456 + * it under the terms of the GNU General Public License as published by
7457 + * the Free Software Foundation; either version 2 of the License, or
7458 + * (at your option) any later version.
7459 + *
7460 + * This program is distributed in the hope that it will be useful,
7461 + * but WITHOUT ANY WARRANTY; without even the implied warranty of
7462 + * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
7463 + * GNU General Public License for more details.
7464 + *
7465 + * You should have received a copy of the GNU General Public License
7466 + * along with this program.  If not, see <http://www.gnu.org/licenses/>.
7467 + */
7468 +
7469 +/*
7470 + * debug print functions
7471 + */
7472 +
7473 +#ifndef __AUFS_DEBUG_H__
7474 +#define __AUFS_DEBUG_H__
7475 +
7476 +#ifdef __KERNEL__
7477 +
7478 +#include <linux/atomic.h>
7479 +#include <linux/module.h>
7480 +#include <linux/kallsyms.h>
7481 +#include <linux/sysrq.h>
7482 +
7483 +#ifdef CONFIG_AUFS_DEBUG
7484 +#define AuDebugOn(a)           BUG_ON(a)
7485 +
7486 +/* module parameter */
7487 +extern atomic_t aufs_debug;
7488 +static inline void au_debug_on(void)
7489 +{
7490 +       atomic_inc(&aufs_debug);
7491 +}
7492 +static inline void au_debug_off(void)
7493 +{
7494 +       atomic_dec_if_positive(&aufs_debug);
7495 +}
7496 +
7497 +static inline int au_debug_test(void)
7498 +{
7499 +       return atomic_read(&aufs_debug) > 0;
7500 +}
7501 +#else
7502 +#define AuDebugOn(a)           do {} while (0)
7503 +AuStubVoid(au_debug_on, void)
7504 +AuStubVoid(au_debug_off, void)
7505 +AuStubInt0(au_debug_test, void)
7506 +#endif /* CONFIG_AUFS_DEBUG */
7507 +
7508 +#define param_check_atomic_t(name, p) __param_check(name, p, atomic_t)
7509 +
7510 +/* ---------------------------------------------------------------------- */
7511 +
7512 +/* debug print */
7513 +
7514 +#define AuDbg(fmt, ...) do { \
7515 +       if (au_debug_test()) \
7516 +               pr_debug("DEBUG: " fmt, ##__VA_ARGS__); \
7517 +} while (0)
7518 +#define AuLabel(l)             AuDbg(#l "\n")
7519 +#define AuIOErr(fmt, ...)      pr_err("I/O Error, " fmt, ##__VA_ARGS__)
7520 +#define AuWarn1(fmt, ...) do { \
7521 +       static unsigned char _c; \
7522 +       if (!_c++) \
7523 +               pr_warn(fmt, ##__VA_ARGS__); \
7524 +} while (0)
7525 +
7526 +#define AuErr1(fmt, ...) do { \
7527 +       static unsigned char _c; \
7528 +       if (!_c++) \
7529 +               pr_err(fmt, ##__VA_ARGS__); \
7530 +} while (0)
7531 +
7532 +#define AuIOErr1(fmt, ...) do { \
7533 +       static unsigned char _c; \
7534 +       if (!_c++) \
7535 +               AuIOErr(fmt, ##__VA_ARGS__); \
7536 +} while (0)
7537 +
7538 +#define AuUnsupportMsg "This operation is not supported." \
7539 +                       " Please report this application to aufs-users ML."
7540 +#define AuUnsupport(fmt, ...) do { \
7541 +       pr_err(AuUnsupportMsg "\n" fmt, ##__VA_ARGS__); \
7542 +       dump_stack(); \
7543 +} while (0)
7544 +
7545 +#define AuTraceErr(e) do { \
7546 +       if (unlikely((e) < 0)) \
7547 +               AuDbg("err %d\n", (int)(e)); \
7548 +} while (0)
7549 +
7550 +#define AuTraceErrPtr(p) do { \
7551 +       if (IS_ERR(p)) \
7552 +               AuDbg("err %ld\n", PTR_ERR(p)); \
7553 +} while (0)
7554 +
7555 +/* dirty macros for debug print, use with "%.*s" and caution */
7556 +#define AuLNPair(qstr)         (qstr)->len, (qstr)->name
7557 +
7558 +/* ---------------------------------------------------------------------- */
7559 +
7560 +struct dentry;
7561 +#ifdef CONFIG_AUFS_DEBUG
7562 +extern struct mutex au_dbg_mtx;
7563 +extern char *au_plevel;
7564 +struct au_nhash;
7565 +void au_dpri_whlist(struct au_nhash *whlist);
7566 +struct au_vdir;
7567 +void au_dpri_vdir(struct au_vdir *vdir);
7568 +struct inode;
7569 +void au_dpri_inode(struct inode *inode);
7570 +void au_dpri_dalias(struct inode *inode);
7571 +void au_dpri_dentry(struct dentry *dentry);
7572 +struct file;
7573 +void au_dpri_file(struct file *filp);
7574 +struct super_block;
7575 +void au_dpri_sb(struct super_block *sb);
7576 +
7577 +#define au_dbg_verify_dinode(d) __au_dbg_verify_dinode(d, __func__, __LINE__)
7578 +void __au_dbg_verify_dinode(struct dentry *dentry, const char *func, int line);
7579 +void au_dbg_verify_gen(struct dentry *parent, unsigned int sigen);
7580 +void au_dbg_verify_kthread(void);
7581 +
7582 +int __init au_debug_init(void);
7583 +
7584 +#define AuDbgWhlist(w) do { \
7585 +       mutex_lock(&au_dbg_mtx); \
7586 +       AuDbg(#w "\n"); \
7587 +       au_dpri_whlist(w); \
7588 +       mutex_unlock(&au_dbg_mtx); \
7589 +} while (0)
7590 +
7591 +#define AuDbgVdir(v) do { \
7592 +       mutex_lock(&au_dbg_mtx); \
7593 +       AuDbg(#v "\n"); \
7594 +       au_dpri_vdir(v); \
7595 +       mutex_unlock(&au_dbg_mtx); \
7596 +} while (0)
7597 +
7598 +#define AuDbgInode(i) do { \
7599 +       mutex_lock(&au_dbg_mtx); \
7600 +       AuDbg(#i "\n"); \
7601 +       au_dpri_inode(i); \
7602 +       mutex_unlock(&au_dbg_mtx); \
7603 +} while (0)
7604 +
7605 +#define AuDbgDAlias(i) do { \
7606 +       mutex_lock(&au_dbg_mtx); \
7607 +       AuDbg(#i "\n"); \
7608 +       au_dpri_dalias(i); \
7609 +       mutex_unlock(&au_dbg_mtx); \
7610 +} while (0)
7611 +
7612 +#define AuDbgDentry(d) do { \
7613 +       mutex_lock(&au_dbg_mtx); \
7614 +       AuDbg(#d "\n"); \
7615 +       au_dpri_dentry(d); \
7616 +       mutex_unlock(&au_dbg_mtx); \
7617 +} while (0)
7618 +
7619 +#define AuDbgFile(f) do { \
7620 +       mutex_lock(&au_dbg_mtx); \
7621 +       AuDbg(#f "\n"); \
7622 +       au_dpri_file(f); \
7623 +       mutex_unlock(&au_dbg_mtx); \
7624 +} while (0)
7625 +
7626 +#define AuDbgSb(sb) do { \
7627 +       mutex_lock(&au_dbg_mtx); \
7628 +       AuDbg(#sb "\n"); \
7629 +       au_dpri_sb(sb); \
7630 +       mutex_unlock(&au_dbg_mtx); \
7631 +} while (0)
7632 +
7633 +#define AuDbgSym(addr) do {                            \
7634 +       char sym[KSYM_SYMBOL_LEN];                      \
7635 +       sprint_symbol(sym, (unsigned long)addr);        \
7636 +       AuDbg("%s\n", sym);                             \
7637 +} while (0)
7638 +#else
7639 +AuStubVoid(au_dbg_verify_dinode, struct dentry *dentry)
7640 +AuStubVoid(au_dbg_verify_gen, struct dentry *parent, unsigned int sigen)
7641 +AuStubVoid(au_dbg_verify_kthread, void)
7642 +AuStubInt0(__init au_debug_init, void)
7643 +
7644 +#define AuDbgWhlist(w)         do {} while (0)
7645 +#define AuDbgVdir(v)           do {} while (0)
7646 +#define AuDbgInode(i)          do {} while (0)
7647 +#define AuDbgDAlias(i)         do {} while (0)
7648 +#define AuDbgDentry(d)         do {} while (0)
7649 +#define AuDbgFile(f)           do {} while (0)
7650 +#define AuDbgSb(sb)            do {} while (0)
7651 +#define AuDbgSym(addr)         do {} while (0)
7652 +#endif /* CONFIG_AUFS_DEBUG */
7653 +
7654 +/* ---------------------------------------------------------------------- */
7655 +
7656 +#ifdef CONFIG_AUFS_MAGIC_SYSRQ
7657 +int __init au_sysrq_init(void);
7658 +void au_sysrq_fin(void);
7659 +
7660 +#ifdef CONFIG_HW_CONSOLE
7661 +#define au_dbg_blocked() do { \
7662 +       WARN_ON(1); \
7663 +       handle_sysrq('w'); \
7664 +} while (0)
7665 +#else
7666 +AuStubVoid(au_dbg_blocked, void)
7667 +#endif
7668 +
7669 +#else
7670 +AuStubInt0(__init au_sysrq_init, void)
7671 +AuStubVoid(au_sysrq_fin, void)
7672 +AuStubVoid(au_dbg_blocked, void)
7673 +#endif /* CONFIG_AUFS_MAGIC_SYSRQ */
7674 +
7675 +#endif /* __KERNEL__ */
7676 +#endif /* __AUFS_DEBUG_H__ */
7677 diff -urN /usr/share/empty/fs/aufs/dentry.c linux/fs/aufs/dentry.c
7678 --- /usr/share/empty/fs/aufs/dentry.c   1970-01-01 01:00:00.000000000 +0100
7679 +++ linux/fs/aufs/dentry.c      2016-10-09 16:55:38.889431135 +0200
7680 @@ -0,0 +1,1130 @@
7681 +/*
7682 + * Copyright (C) 2005-2016 Junjiro R. Okajima
7683 + *
7684 + * This program, aufs is free software; you can redistribute it and/or modify
7685 + * it under the terms of the GNU General Public License as published by
7686 + * the Free Software Foundation; either version 2 of the License, or
7687 + * (at your option) any later version.
7688 + *
7689 + * This program is distributed in the hope that it will be useful,
7690 + * but WITHOUT ANY WARRANTY; without even the implied warranty of
7691 + * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
7692 + * GNU General Public License for more details.
7693 + *
7694 + * You should have received a copy of the GNU General Public License
7695 + * along with this program.  If not, see <http://www.gnu.org/licenses/>.
7696 + */
7697 +
7698 +/*
7699 + * lookup and dentry operations
7700 + */
7701 +
7702 +#include <linux/namei.h>
7703 +#include "aufs.h"
7704 +
7705 +struct au_do_lookup_args {
7706 +       unsigned int            flags;
7707 +       mode_t                  type;
7708 +};
7709 +
7710 +/*
7711 + * returns positive/negative dentry, NULL or an error.
7712 + * NULL means whiteout-ed or not-found.
7713 + */
7714 +static struct dentry*
7715 +au_do_lookup(struct dentry *h_parent, struct dentry *dentry,
7716 +            aufs_bindex_t bindex, struct qstr *wh_name,
7717 +            struct au_do_lookup_args *args)
7718 +{
7719 +       struct dentry *h_dentry;
7720 +       struct inode *h_inode;
7721 +       struct au_branch *br;
7722 +       int wh_found, opq;
7723 +       unsigned char wh_able;
7724 +       const unsigned char allow_neg = !!au_ftest_lkup(args->flags, ALLOW_NEG);
7725 +       const unsigned char ignore_perm = !!au_ftest_lkup(args->flags,
7726 +                                                         IGNORE_PERM);
7727 +
7728 +       wh_found = 0;
7729 +       br = au_sbr(dentry->d_sb, bindex);
7730 +       wh_able = !!au_br_whable(br->br_perm);
7731 +       if (wh_able)
7732 +               wh_found = au_wh_test(h_parent, wh_name, ignore_perm);
7733 +       h_dentry = ERR_PTR(wh_found);
7734 +       if (!wh_found)
7735 +               goto real_lookup;
7736 +       if (unlikely(wh_found < 0))
7737 +               goto out;
7738 +
7739 +       /* We found a whiteout */
7740 +       /* au_set_dbbot(dentry, bindex); */
7741 +       au_set_dbwh(dentry, bindex);
7742 +       if (!allow_neg)
7743 +               return NULL; /* success */
7744 +
7745 +real_lookup:
7746 +       if (!ignore_perm)
7747 +               h_dentry = vfsub_lkup_one(&dentry->d_name, h_parent);
7748 +       else
7749 +               h_dentry = au_sio_lkup_one(&dentry->d_name, h_parent);
7750 +       if (IS_ERR(h_dentry)) {
7751 +               if (PTR_ERR(h_dentry) == -ENAMETOOLONG
7752 +                   && !allow_neg)
7753 +                       h_dentry = NULL;
7754 +               goto out;
7755 +       }
7756 +
7757 +       h_inode = d_inode(h_dentry);
7758 +       if (d_is_negative(h_dentry)) {
7759 +               if (!allow_neg)
7760 +                       goto out_neg;
7761 +       } else if (wh_found
7762 +                  || (args->type && args->type != (h_inode->i_mode & S_IFMT)))
7763 +               goto out_neg;
7764 +
7765 +       if (au_dbbot(dentry) <= bindex)
7766 +               au_set_dbbot(dentry, bindex);
7767 +       if (au_dbtop(dentry) < 0 || bindex < au_dbtop(dentry))
7768 +               au_set_dbtop(dentry, bindex);
7769 +       au_set_h_dptr(dentry, bindex, h_dentry);
7770 +
7771 +       if (!d_is_dir(h_dentry)
7772 +           || !wh_able
7773 +           || (d_really_is_positive(dentry) && !d_is_dir(dentry)))
7774 +               goto out; /* success */
7775 +
7776 +       inode_lock_nested(h_inode, AuLsc_I_CHILD);
7777 +       opq = au_diropq_test(h_dentry);
7778 +       inode_unlock(h_inode);
7779 +       if (opq > 0)
7780 +               au_set_dbdiropq(dentry, bindex);
7781 +       else if (unlikely(opq < 0)) {
7782 +               au_set_h_dptr(dentry, bindex, NULL);
7783 +               h_dentry = ERR_PTR(opq);
7784 +       }
7785 +       goto out;
7786 +
7787 +out_neg:
7788 +       dput(h_dentry);
7789 +       h_dentry = NULL;
7790 +out:
7791 +       return h_dentry;
7792 +}
7793 +
7794 +static int au_test_shwh(struct super_block *sb, const struct qstr *name)
7795 +{
7796 +       if (unlikely(!au_opt_test(au_mntflags(sb), SHWH)
7797 +                    && !strncmp(name->name, AUFS_WH_PFX, AUFS_WH_PFX_LEN)))
7798 +               return -EPERM;
7799 +       return 0;
7800 +}
7801 +
7802 +/*
7803 + * returns the number of lower positive dentries,
7804 + * otherwise an error.
7805 + * can be called at unlinking with @type is zero.
7806 + */
7807 +int au_lkup_dentry(struct dentry *dentry, aufs_bindex_t btop,
7808 +                  unsigned int flags)
7809 +{
7810 +       int npositive, err;
7811 +       aufs_bindex_t bindex, btail, bdiropq;
7812 +       unsigned char isdir, dirperm1;
7813 +       struct qstr whname;
7814 +       struct au_do_lookup_args args = {
7815 +               .flags          = flags
7816 +       };
7817 +       const struct qstr *name = &dentry->d_name;
7818 +       struct dentry *parent;
7819 +       struct super_block *sb;
7820 +
7821 +       sb = dentry->d_sb;
7822 +       err = au_test_shwh(sb, name);
7823 +       if (unlikely(err))
7824 +               goto out;
7825 +
7826 +       err = au_wh_name_alloc(&whname, name);
7827 +       if (unlikely(err))
7828 +               goto out;
7829 +
7830 +       isdir = !!d_is_dir(dentry);
7831 +       dirperm1 = !!au_opt_test(au_mntflags(sb), DIRPERM1);
7832 +
7833 +       npositive = 0;
7834 +       parent = dget_parent(dentry);
7835 +       btail = au_dbtaildir(parent);
7836 +       for (bindex = btop; bindex <= btail; bindex++) {
7837 +               struct dentry *h_parent, *h_dentry;
7838 +               struct inode *h_inode, *h_dir;
7839 +
7840 +               h_dentry = au_h_dptr(dentry, bindex);
7841 +               if (h_dentry) {
7842 +                       if (d_is_positive(h_dentry))
7843 +                               npositive++;
7844 +                       break;
7845 +               }
7846 +               h_parent = au_h_dptr(parent, bindex);
7847 +               if (!h_parent || !d_is_dir(h_parent))
7848 +                       continue;
7849 +
7850 +               h_dir = d_inode(h_parent);
7851 +               inode_lock_nested(h_dir, AuLsc_I_PARENT);
7852 +               h_dentry = au_do_lookup(h_parent, dentry, bindex, &whname,
7853 +                                       &args);
7854 +               inode_unlock(h_dir);
7855 +               err = PTR_ERR(h_dentry);
7856 +               if (IS_ERR(h_dentry))
7857 +                       goto out_parent;
7858 +               if (h_dentry)
7859 +                       au_fclr_lkup(args.flags, ALLOW_NEG);
7860 +               if (dirperm1)
7861 +                       au_fset_lkup(args.flags, IGNORE_PERM);
7862 +
7863 +               if (au_dbwh(dentry) == bindex)
7864 +                       break;
7865 +               if (!h_dentry)
7866 +                       continue;
7867 +               if (d_is_negative(h_dentry))
7868 +                       continue;
7869 +               h_inode = d_inode(h_dentry);
7870 +               npositive++;
7871 +               if (!args.type)
7872 +                       args.type = h_inode->i_mode & S_IFMT;
7873 +               if (args.type != S_IFDIR)
7874 +                       break;
7875 +               else if (isdir) {
7876 +                       /* the type of lower may be different */
7877 +                       bdiropq = au_dbdiropq(dentry);
7878 +                       if (bdiropq >= 0 && bdiropq <= bindex)
7879 +                               break;
7880 +               }
7881 +       }
7882 +
7883 +       if (npositive) {
7884 +               AuLabel(positive);
7885 +               au_update_dbtop(dentry);
7886 +       }
7887 +       err = npositive;
7888 +       if (unlikely(!au_opt_test(au_mntflags(sb), UDBA_NONE)
7889 +                    && au_dbtop(dentry) < 0)) {
7890 +               err = -EIO;
7891 +               AuIOErr("both of real entry and whiteout found, %pd, err %d\n",
7892 +                       dentry, err);
7893 +       }
7894 +
7895 +out_parent:
7896 +       dput(parent);
7897 +       au_delayed_kfree(whname.name);
7898 +out:
7899 +       return err;
7900 +}
7901 +
7902 +struct dentry *au_sio_lkup_one(struct qstr *name, struct dentry *parent)
7903 +{
7904 +       struct dentry *dentry;
7905 +       int wkq_err;
7906 +
7907 +       if (!au_test_h_perm_sio(d_inode(parent), MAY_EXEC))
7908 +               dentry = vfsub_lkup_one(name, parent);
7909 +       else {
7910 +               struct vfsub_lkup_one_args args = {
7911 +                       .errp   = &dentry,
7912 +                       .name   = name,
7913 +                       .parent = parent
7914 +               };
7915 +
7916 +               wkq_err = au_wkq_wait(vfsub_call_lkup_one, &args);
7917 +               if (unlikely(wkq_err))
7918 +                       dentry = ERR_PTR(wkq_err);
7919 +       }
7920 +
7921 +       return dentry;
7922 +}
7923 +
7924 +/*
7925 + * lookup @dentry on @bindex which should be negative.
7926 + */
7927 +int au_lkup_neg(struct dentry *dentry, aufs_bindex_t bindex, int wh)
7928 +{
7929 +       int err;
7930 +       struct dentry *parent, *h_parent, *h_dentry;
7931 +       struct au_branch *br;
7932 +
7933 +       parent = dget_parent(dentry);
7934 +       h_parent = au_h_dptr(parent, bindex);
7935 +       br = au_sbr(dentry->d_sb, bindex);
7936 +       if (wh)
7937 +               h_dentry = au_whtmp_lkup(h_parent, br, &dentry->d_name);
7938 +       else
7939 +               h_dentry = au_sio_lkup_one(&dentry->d_name, h_parent);
7940 +       err = PTR_ERR(h_dentry);
7941 +       if (IS_ERR(h_dentry))
7942 +               goto out;
7943 +       if (unlikely(d_is_positive(h_dentry))) {
7944 +               err = -EIO;
7945 +               AuIOErr("%pd should be negative on b%d.\n", h_dentry, bindex);
7946 +               dput(h_dentry);
7947 +               goto out;
7948 +       }
7949 +
7950 +       err = 0;
7951 +       if (bindex < au_dbtop(dentry))
7952 +               au_set_dbtop(dentry, bindex);
7953 +       if (au_dbbot(dentry) < bindex)
7954 +               au_set_dbbot(dentry, bindex);
7955 +       au_set_h_dptr(dentry, bindex, h_dentry);
7956 +
7957 +out:
7958 +       dput(parent);
7959 +       return err;
7960 +}
7961 +
7962 +/* ---------------------------------------------------------------------- */
7963 +
7964 +/* subset of struct inode */
7965 +struct au_iattr {
7966 +       unsigned long           i_ino;
7967 +       /* unsigned int         i_nlink; */
7968 +       kuid_t                  i_uid;
7969 +       kgid_t                  i_gid;
7970 +       u64                     i_version;
7971 +/*
7972 +       loff_t                  i_size;
7973 +       blkcnt_t                i_blocks;
7974 +*/
7975 +       umode_t                 i_mode;
7976 +};
7977 +
7978 +static void au_iattr_save(struct au_iattr *ia, struct inode *h_inode)
7979 +{
7980 +       ia->i_ino = h_inode->i_ino;
7981 +       /* ia->i_nlink = h_inode->i_nlink; */
7982 +       ia->i_uid = h_inode->i_uid;
7983 +       ia->i_gid = h_inode->i_gid;
7984 +       ia->i_version = h_inode->i_version;
7985 +/*
7986 +       ia->i_size = h_inode->i_size;
7987 +       ia->i_blocks = h_inode->i_blocks;
7988 +*/
7989 +       ia->i_mode = (h_inode->i_mode & S_IFMT);
7990 +}
7991 +
7992 +static int au_iattr_test(struct au_iattr *ia, struct inode *h_inode)
7993 +{
7994 +       return ia->i_ino != h_inode->i_ino
7995 +               /* || ia->i_nlink != h_inode->i_nlink */
7996 +               || !uid_eq(ia->i_uid, h_inode->i_uid)
7997 +               || !gid_eq(ia->i_gid, h_inode->i_gid)
7998 +               || ia->i_version != h_inode->i_version
7999 +/*
8000 +               || ia->i_size != h_inode->i_size
8001 +               || ia->i_blocks != h_inode->i_blocks
8002 +*/
8003 +               || ia->i_mode != (h_inode->i_mode & S_IFMT);
8004 +}
8005 +
8006 +static int au_h_verify_dentry(struct dentry *h_dentry, struct dentry *h_parent,
8007 +                             struct au_branch *br)
8008 +{
8009 +       int err;
8010 +       struct au_iattr ia;
8011 +       struct inode *h_inode;
8012 +       struct dentry *h_d;
8013 +       struct super_block *h_sb;
8014 +
8015 +       err = 0;
8016 +       memset(&ia, -1, sizeof(ia));
8017 +       h_sb = h_dentry->d_sb;
8018 +       h_inode = NULL;
8019 +       if (d_is_positive(h_dentry)) {
8020 +               h_inode = d_inode(h_dentry);
8021 +               au_iattr_save(&ia, h_inode);
8022 +       } else if (au_test_nfs(h_sb) || au_test_fuse(h_sb))
8023 +               /* nfs d_revalidate may return 0 for negative dentry */
8024 +               /* fuse d_revalidate always return 0 for negative dentry */
8025 +               goto out;
8026 +
8027 +       /* main purpose is namei.c:cached_lookup() and d_revalidate */
8028 +       h_d = vfsub_lkup_one(&h_dentry->d_name, h_parent);
8029 +       err = PTR_ERR(h_d);
8030 +       if (IS_ERR(h_d))
8031 +               goto out;
8032 +
8033 +       err = 0;
8034 +       if (unlikely(h_d != h_dentry
8035 +                    || d_inode(h_d) != h_inode
8036 +                    || (h_inode && au_iattr_test(&ia, h_inode))))
8037 +               err = au_busy_or_stale();
8038 +       dput(h_d);
8039 +
8040 +out:
8041 +       AuTraceErr(err);
8042 +       return err;
8043 +}
8044 +
8045 +int au_h_verify(struct dentry *h_dentry, unsigned int udba, struct inode *h_dir,
8046 +               struct dentry *h_parent, struct au_branch *br)
8047 +{
8048 +       int err;
8049 +
8050 +       err = 0;
8051 +       if (udba == AuOpt_UDBA_REVAL
8052 +           && !au_test_fs_remote(h_dentry->d_sb)) {
8053 +               IMustLock(h_dir);
8054 +               err = (d_inode(h_dentry->d_parent) != h_dir);
8055 +       } else if (udba != AuOpt_UDBA_NONE)
8056 +               err = au_h_verify_dentry(h_dentry, h_parent, br);
8057 +
8058 +       return err;
8059 +}
8060 +
8061 +/* ---------------------------------------------------------------------- */
8062 +
8063 +static int au_do_refresh_hdentry(struct dentry *dentry, struct dentry *parent)
8064 +{
8065 +       int err;
8066 +       aufs_bindex_t new_bindex, bindex, bbot, bwh, bdiropq;
8067 +       struct au_hdentry tmp, *p, *q;
8068 +       struct au_dinfo *dinfo;
8069 +       struct super_block *sb;
8070 +
8071 +       DiMustWriteLock(dentry);
8072 +
8073 +       sb = dentry->d_sb;
8074 +       dinfo = au_di(dentry);
8075 +       bbot = dinfo->di_bbot;
8076 +       bwh = dinfo->di_bwh;
8077 +       bdiropq = dinfo->di_bdiropq;
8078 +       bindex = dinfo->di_btop;
8079 +       p = au_hdentry(dinfo, bindex);
8080 +       for (; bindex <= bbot; bindex++, p++) {
8081 +               if (!p->hd_dentry)
8082 +                       continue;
8083 +
8084 +               new_bindex = au_br_index(sb, p->hd_id);
8085 +               if (new_bindex == bindex)
8086 +                       continue;
8087 +
8088 +               if (dinfo->di_bwh == bindex)
8089 +                       bwh = new_bindex;
8090 +               if (dinfo->di_bdiropq == bindex)
8091 +                       bdiropq = new_bindex;
8092 +               if (new_bindex < 0) {
8093 +                       au_hdput(p);
8094 +                       p->hd_dentry = NULL;
8095 +                       continue;
8096 +               }
8097 +
8098 +               /* swap two lower dentries, and loop again */
8099 +               q = au_hdentry(dinfo, new_bindex);
8100 +               tmp = *q;
8101 +               *q = *p;
8102 +               *p = tmp;
8103 +               if (tmp.hd_dentry) {
8104 +                       bindex--;
8105 +                       p--;
8106 +               }
8107 +       }
8108 +
8109 +       dinfo->di_bwh = -1;
8110 +       if (bwh >= 0 && bwh <= au_sbbot(sb) && au_sbr_whable(sb, bwh))
8111 +               dinfo->di_bwh = bwh;
8112 +
8113 +       dinfo->di_bdiropq = -1;
8114 +       if (bdiropq >= 0
8115 +           && bdiropq <= au_sbbot(sb)
8116 +           && au_sbr_whable(sb, bdiropq))
8117 +               dinfo->di_bdiropq = bdiropq;
8118 +
8119 +       err = -EIO;
8120 +       dinfo->di_btop = -1;
8121 +       dinfo->di_bbot = -1;
8122 +       bbot = au_dbbot(parent);
8123 +       bindex = 0;
8124 +       p = au_hdentry(dinfo, bindex);
8125 +       for (; bindex <= bbot; bindex++, p++)
8126 +               if (p->hd_dentry) {
8127 +                       dinfo->di_btop = bindex;
8128 +                       break;
8129 +               }
8130 +
8131 +       if (dinfo->di_btop >= 0) {
8132 +               bindex = bbot;
8133 +               p = au_hdentry(dinfo, bindex);
8134 +               for (; bindex >= 0; bindex--, p--)
8135 +                       if (p->hd_dentry) {
8136 +                               dinfo->di_bbot = bindex;
8137 +                               err = 0;
8138 +                               break;
8139 +                       }
8140 +       }
8141 +
8142 +       return err;
8143 +}
8144 +
8145 +static void au_do_hide(struct dentry *dentry)
8146 +{
8147 +       struct inode *inode;
8148 +
8149 +       if (d_really_is_positive(dentry)) {
8150 +               inode = d_inode(dentry);
8151 +               if (!d_is_dir(dentry)) {
8152 +                       if (inode->i_nlink && !d_unhashed(dentry))
8153 +                               drop_nlink(inode);
8154 +               } else {
8155 +                       clear_nlink(inode);
8156 +                       /* stop next lookup */
8157 +                       inode->i_flags |= S_DEAD;
8158 +               }
8159 +               smp_mb(); /* necessary? */
8160 +       }
8161 +       d_drop(dentry);
8162 +}
8163 +
8164 +static int au_hide_children(struct dentry *parent)
8165 +{
8166 +       int err, i, j, ndentry;
8167 +       struct au_dcsub_pages dpages;
8168 +       struct au_dpage *dpage;
8169 +       struct dentry *dentry;
8170 +
8171 +       err = au_dpages_init(&dpages, GFP_NOFS);
8172 +       if (unlikely(err))
8173 +               goto out;
8174 +       err = au_dcsub_pages(&dpages, parent, NULL, NULL);
8175 +       if (unlikely(err))
8176 +               goto out_dpages;
8177 +
8178 +       /* in reverse order */
8179 +       for (i = dpages.ndpage - 1; i >= 0; i--) {
8180 +               dpage = dpages.dpages + i;
8181 +               ndentry = dpage->ndentry;
8182 +               for (j = ndentry - 1; j >= 0; j--) {
8183 +                       dentry = dpage->dentries[j];
8184 +                       if (dentry != parent)
8185 +                               au_do_hide(dentry);
8186 +               }
8187 +       }
8188 +
8189 +out_dpages:
8190 +       au_dpages_free(&dpages);
8191 +out:
8192 +       return err;
8193 +}
8194 +
8195 +static void au_hide(struct dentry *dentry)
8196 +{
8197 +       int err;
8198 +
8199 +       AuDbgDentry(dentry);
8200 +       if (d_is_dir(dentry)) {
8201 +               /* shrink_dcache_parent(dentry); */
8202 +               err = au_hide_children(dentry);
8203 +               if (unlikely(err))
8204 +                       AuIOErr("%pd, failed hiding children, ignored %d\n",
8205 +                               dentry, err);
8206 +       }
8207 +       au_do_hide(dentry);
8208 +}
8209 +
8210 +/*
8211 + * By adding a dirty branch, a cached dentry may be affected in various ways.
8212 + *
8213 + * a dirty branch is added
8214 + * - on the top of layers
8215 + * - in the middle of layers
8216 + * - to the bottom of layers
8217 + *
8218 + * on the added branch there exists
8219 + * - a whiteout
8220 + * - a diropq
8221 + * - a same named entry
8222 + *   + exist
8223 + *     * negative --> positive
8224 + *     * positive --> positive
8225 + *      - type is unchanged
8226 + *      - type is changed
8227 + *   + doesn't exist
8228 + *     * negative --> negative
8229 + *     * positive --> negative (rejected by au_br_del() for non-dir case)
8230 + * - none
8231 + */
8232 +static int au_refresh_by_dinfo(struct dentry *dentry, struct au_dinfo *dinfo,
8233 +                              struct au_dinfo *tmp)
8234 +{
8235 +       int err;
8236 +       aufs_bindex_t bindex, bbot;
8237 +       struct {
8238 +               struct dentry *dentry;
8239 +               struct inode *inode;
8240 +               mode_t mode;
8241 +       } orig_h, tmp_h = {
8242 +               .dentry = NULL
8243 +       };
8244 +       struct au_hdentry *hd;
8245 +       struct inode *inode, *h_inode;
8246 +       struct dentry *h_dentry;
8247 +
8248 +       err = 0;
8249 +       AuDebugOn(dinfo->di_btop < 0);
8250 +       orig_h.mode = 0;
8251 +       orig_h.dentry = au_hdentry(dinfo, dinfo->di_btop)->hd_dentry;
8252 +       orig_h.inode = NULL;
8253 +       if (d_is_positive(orig_h.dentry)) {
8254 +               orig_h.inode = d_inode(orig_h.dentry);
8255 +               orig_h.mode = orig_h.inode->i_mode & S_IFMT;
8256 +       }
8257 +       if (tmp->di_btop >= 0) {
8258 +               tmp_h.dentry = au_hdentry(tmp, tmp->di_btop)->hd_dentry;
8259 +               if (d_is_positive(tmp_h.dentry)) {
8260 +                       tmp_h.inode = d_inode(tmp_h.dentry);
8261 +                       tmp_h.mode = tmp_h.inode->i_mode & S_IFMT;
8262 +               }
8263 +       }
8264 +
8265 +       inode = NULL;
8266 +       if (d_really_is_positive(dentry))
8267 +               inode = d_inode(dentry);
8268 +       if (!orig_h.inode) {
8269 +               AuDbg("nagative originally\n");
8270 +               if (inode) {
8271 +                       au_hide(dentry);
8272 +                       goto out;
8273 +               }
8274 +               AuDebugOn(inode);
8275 +               AuDebugOn(dinfo->di_btop != dinfo->di_bbot);
8276 +               AuDebugOn(dinfo->di_bdiropq != -1);
8277 +
8278 +               if (!tmp_h.inode) {
8279 +                       AuDbg("negative --> negative\n");
8280 +                       /* should have only one negative lower */
8281 +                       if (tmp->di_btop >= 0
8282 +                           && tmp->di_btop < dinfo->di_btop) {
8283 +                               AuDebugOn(tmp->di_btop != tmp->di_bbot);
8284 +                               AuDebugOn(dinfo->di_btop != dinfo->di_bbot);
8285 +                               au_set_h_dptr(dentry, dinfo->di_btop, NULL);
8286 +                               au_di_cp(dinfo, tmp);
8287 +                               hd = au_hdentry(tmp, tmp->di_btop);
8288 +                               au_set_h_dptr(dentry, tmp->di_btop,
8289 +                                             dget(hd->hd_dentry));
8290 +                       }
8291 +                       au_dbg_verify_dinode(dentry);
8292 +               } else {
8293 +                       AuDbg("negative --> positive\n");
8294 +                       /*
8295 +                        * similar to the behaviour of creating with bypassing
8296 +                        * aufs.
8297 +                        * unhash it in order to force an error in the
8298 +                        * succeeding create operation.
8299 +                        * we should not set S_DEAD here.
8300 +                        */
8301 +                       d_drop(dentry);
8302 +                       /* au_di_swap(tmp, dinfo); */
8303 +                       au_dbg_verify_dinode(dentry);
8304 +               }
8305 +       } else {
8306 +               AuDbg("positive originally\n");
8307 +               /* inode may be NULL */
8308 +               AuDebugOn(inode && (inode->i_mode & S_IFMT) != orig_h.mode);
8309 +               if (!tmp_h.inode) {
8310 +                       AuDbg("positive --> negative\n");
8311 +                       /* or bypassing aufs */
8312 +                       au_hide(dentry);
8313 +                       if (tmp->di_bwh >= 0 && tmp->di_bwh <= dinfo->di_btop)
8314 +                               dinfo->di_bwh = tmp->di_bwh;
8315 +                       if (inode)
8316 +                               err = au_refresh_hinode_self(inode);
8317 +                       au_dbg_verify_dinode(dentry);
8318 +               } else if (orig_h.mode == tmp_h.mode) {
8319 +                       AuDbg("positive --> positive, same type\n");
8320 +                       if (!S_ISDIR(orig_h.mode)
8321 +                           && dinfo->di_btop > tmp->di_btop) {
8322 +                               /*
8323 +                                * similar to the behaviour of removing and
8324 +                                * creating.
8325 +                                */
8326 +                               au_hide(dentry);
8327 +                               if (inode)
8328 +                                       err = au_refresh_hinode_self(inode);
8329 +                               au_dbg_verify_dinode(dentry);
8330 +                       } else {
8331 +                               /* fill empty slots */
8332 +                               if (dinfo->di_btop > tmp->di_btop)
8333 +                                       dinfo->di_btop = tmp->di_btop;
8334 +                               if (dinfo->di_bbot < tmp->di_bbot)
8335 +                                       dinfo->di_bbot = tmp->di_bbot;
8336 +                               dinfo->di_bwh = tmp->di_bwh;
8337 +                               dinfo->di_bdiropq = tmp->di_bdiropq;
8338 +                               bbot = dinfo->di_bbot;
8339 +                               bindex = tmp->di_btop;
8340 +                               hd = au_hdentry(tmp, bindex);
8341 +                               for (; bindex <= bbot; bindex++, hd++) {
8342 +                                       if (au_h_dptr(dentry, bindex))
8343 +                                               continue;
8344 +                                       h_dentry = hd->hd_dentry;
8345 +                                       if (!h_dentry)
8346 +                                               continue;
8347 +                                       AuDebugOn(d_is_negative(h_dentry));
8348 +                                       h_inode = d_inode(h_dentry);
8349 +                                       AuDebugOn(orig_h.mode
8350 +                                                 != (h_inode->i_mode
8351 +                                                     & S_IFMT));
8352 +                                       au_set_h_dptr(dentry, bindex,
8353 +                                                     dget(h_dentry));
8354 +                               }
8355 +                               if (inode)
8356 +                                       err = au_refresh_hinode(inode, dentry);
8357 +                               au_dbg_verify_dinode(dentry);
8358 +                       }
8359 +               } else {
8360 +                       AuDbg("positive --> positive, different type\n");
8361 +                       /* similar to the behaviour of removing and creating */
8362 +                       au_hide(dentry);
8363 +                       if (inode)
8364 +                               err = au_refresh_hinode_self(inode);
8365 +                       au_dbg_verify_dinode(dentry);
8366 +               }
8367 +       }
8368 +
8369 +out:
8370 +       return err;
8371 +}
8372 +
8373 +void au_refresh_dop(struct dentry *dentry, int force_reval)
8374 +{
8375 +       const struct dentry_operations *dop
8376 +               = force_reval ? &aufs_dop : dentry->d_sb->s_d_op;
8377 +       static const unsigned int mask
8378 +               = DCACHE_OP_REVALIDATE | DCACHE_OP_WEAK_REVALIDATE;
8379 +
8380 +       BUILD_BUG_ON(sizeof(mask) != sizeof(dentry->d_flags));
8381 +
8382 +       if (dentry->d_op == dop)
8383 +               return;
8384 +
8385 +       AuDbg("%pd\n", dentry);
8386 +       spin_lock(&dentry->d_lock);
8387 +       if (dop == &aufs_dop)
8388 +               dentry->d_flags |= mask;
8389 +       else
8390 +               dentry->d_flags &= ~mask;
8391 +       dentry->d_op = dop;
8392 +       spin_unlock(&dentry->d_lock);
8393 +}
8394 +
8395 +int au_refresh_dentry(struct dentry *dentry, struct dentry *parent)
8396 +{
8397 +       int err, ebrange, nbr;
8398 +       unsigned int sigen;
8399 +       struct au_dinfo *dinfo, *tmp;
8400 +       struct super_block *sb;
8401 +       struct inode *inode;
8402 +
8403 +       DiMustWriteLock(dentry);
8404 +       AuDebugOn(IS_ROOT(dentry));
8405 +       AuDebugOn(d_really_is_negative(parent));
8406 +
8407 +       sb = dentry->d_sb;
8408 +       sigen = au_sigen(sb);
8409 +       err = au_digen_test(parent, sigen);
8410 +       if (unlikely(err))
8411 +               goto out;
8412 +
8413 +       nbr = au_sbbot(sb) + 1;
8414 +       dinfo = au_di(dentry);
8415 +       err = au_di_realloc(dinfo, nbr, /*may_shrink*/0);
8416 +       if (unlikely(err))
8417 +               goto out;
8418 +       ebrange = au_dbrange_test(dentry);
8419 +       if (!ebrange)
8420 +               ebrange = au_do_refresh_hdentry(dentry, parent);
8421 +
8422 +       if (d_unhashed(dentry) || ebrange /* || dinfo->di_tmpfile */) {
8423 +               AuDebugOn(au_dbtop(dentry) < 0 && au_dbbot(dentry) >= 0);
8424 +               if (d_really_is_positive(dentry)) {
8425 +                       inode = d_inode(dentry);
8426 +                       err = au_refresh_hinode_self(inode);
8427 +               }
8428 +               au_dbg_verify_dinode(dentry);
8429 +               if (!err)
8430 +                       goto out_dgen; /* success */
8431 +               goto out;
8432 +       }
8433 +
8434 +       /* temporary dinfo */
8435 +       AuDbgDentry(dentry);
8436 +       err = -ENOMEM;
8437 +       tmp = au_di_alloc(sb, AuLsc_DI_TMP);
8438 +       if (unlikely(!tmp))
8439 +               goto out;
8440 +       au_di_swap(tmp, dinfo);
8441 +       /* returns the number of positive dentries */
8442 +       /*
8443 +        * if current working dir is removed, it returns an error.
8444 +        * but the dentry is legal.
8445 +        */
8446 +       err = au_lkup_dentry(dentry, /*btop*/0, AuLkup_ALLOW_NEG);
8447 +       AuDbgDentry(dentry);
8448 +       au_di_swap(tmp, dinfo);
8449 +       if (err == -ENOENT)
8450 +               err = 0;
8451 +       if (err >= 0) {
8452 +               /* compare/refresh by dinfo */
8453 +               AuDbgDentry(dentry);
8454 +               err = au_refresh_by_dinfo(dentry, dinfo, tmp);
8455 +               au_dbg_verify_dinode(dentry);
8456 +               AuTraceErr(err);
8457 +       }
8458 +       au_di_realloc(dinfo, nbr, /*may_shrink*/1); /* harmless if err */
8459 +       au_rw_write_unlock(&tmp->di_rwsem);
8460 +       au_di_free(tmp);
8461 +       if (unlikely(err))
8462 +               goto out;
8463 +
8464 +out_dgen:
8465 +       au_update_digen(dentry);
8466 +out:
8467 +       if (unlikely(err && !(dentry->d_flags & DCACHE_NFSFS_RENAMED))) {
8468 +               AuIOErr("failed refreshing %pd, %d\n", dentry, err);
8469 +               AuDbgDentry(dentry);
8470 +       }
8471 +       AuTraceErr(err);
8472 +       return err;
8473 +}
8474 +
8475 +static int au_do_h_d_reval(struct dentry *h_dentry, unsigned int flags,
8476 +                          struct dentry *dentry, aufs_bindex_t bindex)
8477 +{
8478 +       int err, valid;
8479 +
8480 +       err = 0;
8481 +       if (!(h_dentry->d_flags & DCACHE_OP_REVALIDATE))
8482 +               goto out;
8483 +
8484 +       AuDbg("b%d\n", bindex);
8485 +       /*
8486 +        * gave up supporting LOOKUP_CREATE/OPEN for lower fs,
8487 +        * due to whiteout and branch permission.
8488 +        */
8489 +       flags &= ~(/*LOOKUP_PARENT |*/ LOOKUP_OPEN | LOOKUP_CREATE
8490 +                  | LOOKUP_FOLLOW | LOOKUP_EXCL);
8491 +       /* it may return tri-state */
8492 +       valid = h_dentry->d_op->d_revalidate(h_dentry, flags);
8493 +
8494 +       if (unlikely(valid < 0))
8495 +               err = valid;
8496 +       else if (!valid)
8497 +               err = -EINVAL;
8498 +
8499 +out:
8500 +       AuTraceErr(err);
8501 +       return err;
8502 +}
8503 +
8504 +/* todo: remove this */
8505 +static int h_d_revalidate(struct dentry *dentry, struct inode *inode,
8506 +                         unsigned int flags, int do_udba)
8507 +{
8508 +       int err;
8509 +       umode_t mode, h_mode;
8510 +       aufs_bindex_t bindex, btail, btop, ibs, ibe;
8511 +       unsigned char plus, unhashed, is_root, h_plus, h_nfs, tmpfile;
8512 +       struct inode *h_inode, *h_cached_inode;
8513 +       struct dentry *h_dentry;
8514 +       struct qstr *name, *h_name;
8515 +
8516 +       err = 0;
8517 +       plus = 0;
8518 +       mode = 0;
8519 +       ibs = -1;
8520 +       ibe = -1;
8521 +       unhashed = !!d_unhashed(dentry);
8522 +       is_root = !!IS_ROOT(dentry);
8523 +       name = &dentry->d_name;
8524 +       tmpfile = au_di(dentry)->di_tmpfile;
8525 +
8526 +       /*
8527 +        * Theoretically, REVAL test should be unnecessary in case of
8528 +        * {FS,I}NOTIFY.
8529 +        * But {fs,i}notify doesn't fire some necessary events,
8530 +        *      IN_ATTRIB for atime/nlink/pageio
8531 +        * Let's do REVAL test too.
8532 +        */
8533 +       if (do_udba && inode) {
8534 +               mode = (inode->i_mode & S_IFMT);
8535 +               plus = (inode->i_nlink > 0);
8536 +               ibs = au_ibtop(inode);
8537 +               ibe = au_ibbot(inode);
8538 +       }
8539 +
8540 +       btop = au_dbtop(dentry);
8541 +       btail = btop;
8542 +       if (inode && S_ISDIR(inode->i_mode))
8543 +               btail = au_dbtaildir(dentry);
8544 +       for (bindex = btop; bindex <= btail; bindex++) {
8545 +               h_dentry = au_h_dptr(dentry, bindex);
8546 +               if (!h_dentry)
8547 +                       continue;
8548 +
8549 +               AuDbg("b%d, %pd\n", bindex, h_dentry);
8550 +               h_nfs = !!au_test_nfs(h_dentry->d_sb);
8551 +               spin_lock(&h_dentry->d_lock);
8552 +               h_name = &h_dentry->d_name;
8553 +               if (unlikely(do_udba
8554 +                            && !is_root
8555 +                            && ((!h_nfs
8556 +                                 && (unhashed != !!d_unhashed(h_dentry)
8557 +                                     || (!tmpfile
8558 +                                         && !au_qstreq(name, h_name))
8559 +                                         ))
8560 +                                || (h_nfs
8561 +                                    && !(flags & LOOKUP_OPEN)
8562 +                                    && (h_dentry->d_flags
8563 +                                        & DCACHE_NFSFS_RENAMED)))
8564 +                           )) {
8565 +                       int h_unhashed;
8566 +
8567 +                       h_unhashed = d_unhashed(h_dentry);
8568 +                       spin_unlock(&h_dentry->d_lock);
8569 +                       AuDbg("unhash 0x%x 0x%x, %pd %pd\n",
8570 +                             unhashed, h_unhashed, dentry, h_dentry);
8571 +                       goto err;
8572 +               }
8573 +               spin_unlock(&h_dentry->d_lock);
8574 +
8575 +               err = au_do_h_d_reval(h_dentry, flags, dentry, bindex);
8576 +               if (unlikely(err))
8577 +                       /* do not goto err, to keep the errno */
8578 +                       break;
8579 +
8580 +               /* todo: plink too? */
8581 +               if (!do_udba)
8582 +                       continue;
8583 +
8584 +               /* UDBA tests */
8585 +               if (unlikely(!!inode != d_is_positive(h_dentry)))
8586 +                       goto err;
8587 +
8588 +               h_inode = NULL;
8589 +               if (d_is_positive(h_dentry))
8590 +                       h_inode = d_inode(h_dentry);
8591 +               h_plus = plus;
8592 +               h_mode = mode;
8593 +               h_cached_inode = h_inode;
8594 +               if (h_inode) {
8595 +                       h_mode = (h_inode->i_mode & S_IFMT);
8596 +                       h_plus = (h_inode->i_nlink > 0);
8597 +               }
8598 +               if (inode && ibs <= bindex && bindex <= ibe)
8599 +                       h_cached_inode = au_h_iptr(inode, bindex);
8600 +
8601 +               if (!h_nfs) {
8602 +                       if (unlikely(plus != h_plus && !tmpfile))
8603 +                               goto err;
8604 +               } else {
8605 +                       if (unlikely(!(h_dentry->d_flags & DCACHE_NFSFS_RENAMED)
8606 +                                    && !is_root
8607 +                                    && !IS_ROOT(h_dentry)
8608 +                                    && unhashed != d_unhashed(h_dentry)))
8609 +                               goto err;
8610 +               }
8611 +               if (unlikely(mode != h_mode
8612 +                            || h_cached_inode != h_inode))
8613 +                       goto err;
8614 +               continue;
8615 +
8616 +err:
8617 +               err = -EINVAL;
8618 +               break;
8619 +       }
8620 +
8621 +       AuTraceErr(err);
8622 +       return err;
8623 +}
8624 +
8625 +/* todo: consolidate with do_refresh() and au_reval_for_attr() */
8626 +static int simple_reval_dpath(struct dentry *dentry, unsigned int sigen)
8627 +{
8628 +       int err;
8629 +       struct dentry *parent;
8630 +
8631 +       if (!au_digen_test(dentry, sigen))
8632 +               return 0;
8633 +
8634 +       parent = dget_parent(dentry);
8635 +       di_read_lock_parent(parent, AuLock_IR);
8636 +       AuDebugOn(au_digen_test(parent, sigen));
8637 +       au_dbg_verify_gen(parent, sigen);
8638 +       err = au_refresh_dentry(dentry, parent);
8639 +       di_read_unlock(parent, AuLock_IR);
8640 +       dput(parent);
8641 +       AuTraceErr(err);
8642 +       return err;
8643 +}
8644 +
8645 +int au_reval_dpath(struct dentry *dentry, unsigned int sigen)
8646 +{
8647 +       int err;
8648 +       struct dentry *d, *parent;
8649 +
8650 +       if (!au_ftest_si(au_sbi(dentry->d_sb), FAILED_REFRESH_DIR))
8651 +               return simple_reval_dpath(dentry, sigen);
8652 +
8653 +       /* slow loop, keep it simple and stupid */
8654 +       /* cf: au_cpup_dirs() */
8655 +       err = 0;
8656 +       parent = NULL;
8657 +       while (au_digen_test(dentry, sigen)) {
8658 +               d = dentry;
8659 +               while (1) {
8660 +                       dput(parent);
8661 +                       parent = dget_parent(d);
8662 +                       if (!au_digen_test(parent, sigen))
8663 +                               break;
8664 +                       d = parent;
8665 +               }
8666 +
8667 +               if (d != dentry)
8668 +                       di_write_lock_child2(d);
8669 +
8670 +               /* someone might update our dentry while we were sleeping */
8671 +               if (au_digen_test(d, sigen)) {
8672 +                       /*
8673 +                        * todo: consolidate with simple_reval_dpath(),
8674 +                        * do_refresh() and au_reval_for_attr().
8675 +                        */
8676 +                       di_read_lock_parent(parent, AuLock_IR);
8677 +                       err = au_refresh_dentry(d, parent);
8678 +                       di_read_unlock(parent, AuLock_IR);
8679 +               }
8680 +
8681 +               if (d != dentry)
8682 +                       di_write_unlock(d);
8683 +               dput(parent);
8684 +               if (unlikely(err))
8685 +                       break;
8686 +       }
8687 +
8688 +       return err;
8689 +}
8690 +
8691 +/*
8692 + * if valid returns 1, otherwise 0.
8693 + */
8694 +static int aufs_d_revalidate(struct dentry *dentry, unsigned int flags)
8695 +{
8696 +       int valid, err;
8697 +       unsigned int sigen;
8698 +       unsigned char do_udba;
8699 +       struct super_block *sb;
8700 +       struct inode *inode;
8701 +
8702 +       /* todo: support rcu-walk? */
8703 +       if (flags & LOOKUP_RCU)
8704 +               return -ECHILD;
8705 +
8706 +       valid = 0;
8707 +       if (unlikely(!au_di(dentry)))
8708 +               goto out;
8709 +
8710 +       valid = 1;
8711 +       sb = dentry->d_sb;
8712 +       /*
8713 +        * todo: very ugly
8714 +        * i_mutex of parent dir may be held,
8715 +        * but we should not return 'invalid' due to busy.
8716 +        */
8717 +       err = aufs_read_lock(dentry, AuLock_FLUSH | AuLock_DW | AuLock_NOPLM);
8718 +       if (unlikely(err)) {
8719 +               valid = err;
8720 +               AuTraceErr(err);
8721 +               goto out;
8722 +       }
8723 +       inode = NULL;
8724 +       if (d_really_is_positive(dentry))
8725 +               inode = d_inode(dentry);
8726 +       if (unlikely(inode && au_is_bad_inode(inode))) {
8727 +               err = -EINVAL;
8728 +               AuTraceErr(err);
8729 +               goto out_dgrade;
8730 +       }
8731 +       if (unlikely(au_dbrange_test(dentry))) {
8732 +               err = -EINVAL;
8733 +               AuTraceErr(err);
8734 +               goto out_dgrade;
8735 +       }
8736 +
8737 +       sigen = au_sigen(sb);
8738 +       if (au_digen_test(dentry, sigen)) {
8739 +               AuDebugOn(IS_ROOT(dentry));
8740 +               err = au_reval_dpath(dentry, sigen);
8741 +               if (unlikely(err)) {
8742 +                       AuTraceErr(err);
8743 +                       goto out_dgrade;
8744 +               }
8745 +       }
8746 +       di_downgrade_lock(dentry, AuLock_IR);
8747 +
8748 +       err = -EINVAL;
8749 +       if (!(flags & (LOOKUP_OPEN | LOOKUP_EMPTY))
8750 +           && inode
8751 +           && !(inode->i_state && I_LINKABLE)
8752 +           && (IS_DEADDIR(inode) || !inode->i_nlink)) {
8753 +               AuTraceErr(err);
8754 +               goto out_inval;
8755 +       }
8756 +
8757 +       do_udba = !au_opt_test(au_mntflags(sb), UDBA_NONE);
8758 +       if (do_udba && inode) {
8759 +               aufs_bindex_t btop = au_ibtop(inode);
8760 +               struct inode *h_inode;
8761 +
8762 +               if (btop >= 0) {
8763 +                       h_inode = au_h_iptr(inode, btop);
8764 +                       if (h_inode && au_test_higen(inode, h_inode)) {
8765 +                               AuTraceErr(err);
8766 +                               goto out_inval;
8767 +                       }
8768 +               }
8769 +       }
8770 +
8771 +       err = h_d_revalidate(dentry, inode, flags, do_udba);
8772 +       if (unlikely(!err && do_udba && au_dbtop(dentry) < 0)) {
8773 +               err = -EIO;
8774 +               AuDbg("both of real entry and whiteout found, %p, err %d\n",
8775 +                     dentry, err);
8776 +       }
8777 +       goto out_inval;
8778 +
8779 +out_dgrade:
8780 +       di_downgrade_lock(dentry, AuLock_IR);
8781 +out_inval:
8782 +       aufs_read_unlock(dentry, AuLock_IR);
8783 +       AuTraceErr(err);
8784 +       valid = !err;
8785 +out:
8786 +       if (!valid) {
8787 +               AuDbg("%pd invalid, %d\n", dentry, valid);
8788 +               d_drop(dentry);
8789 +       }
8790 +       return valid;
8791 +}
8792 +
8793 +static void aufs_d_release(struct dentry *dentry)
8794 +{
8795 +       if (au_di(dentry)) {
8796 +               au_di_fin(dentry);
8797 +               au_hn_di_reinit(dentry);
8798 +       }
8799 +}
8800 +
8801 +const struct dentry_operations aufs_dop = {
8802 +       .d_revalidate           = aufs_d_revalidate,
8803 +       .d_weak_revalidate      = aufs_d_revalidate,
8804 +       .d_release              = aufs_d_release
8805 +};
8806 +
8807 +/* aufs_dop without d_revalidate */
8808 +const struct dentry_operations aufs_dop_noreval = {
8809 +       .d_release              = aufs_d_release
8810 +};
8811 diff -urN /usr/share/empty/fs/aufs/dentry.h linux/fs/aufs/dentry.h
8812 --- /usr/share/empty/fs/aufs/dentry.h   1970-01-01 01:00:00.000000000 +0100
8813 +++ linux/fs/aufs/dentry.h      2016-10-09 16:55:38.889431135 +0200
8814 @@ -0,0 +1,255 @@
8815 +/*
8816 + * Copyright (C) 2005-2016 Junjiro R. Okajima
8817 + *
8818 + * This program, aufs is free software; you can redistribute it and/or modify
8819 + * it under the terms of the GNU General Public License as published by
8820 + * the Free Software Foundation; either version 2 of the License, or
8821 + * (at your option) any later version.
8822 + *
8823 + * This program is distributed in the hope that it will be useful,
8824 + * but WITHOUT ANY WARRANTY; without even the implied warranty of
8825 + * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
8826 + * GNU General Public License for more details.
8827 + *
8828 + * You should have received a copy of the GNU General Public License
8829 + * along with this program.  If not, see <http://www.gnu.org/licenses/>.
8830 + */
8831 +
8832 +/*
8833 + * lookup and dentry operations
8834 + */
8835 +
8836 +#ifndef __AUFS_DENTRY_H__
8837 +#define __AUFS_DENTRY_H__
8838 +
8839 +#ifdef __KERNEL__
8840 +
8841 +#include <linux/dcache.h>
8842 +#include "rwsem.h"
8843 +
8844 +struct au_hdentry {
8845 +       struct dentry           *hd_dentry;
8846 +       aufs_bindex_t           hd_id;
8847 +};
8848 +
8849 +struct au_dinfo {
8850 +       atomic_t                di_generation;
8851 +
8852 +       struct au_rwsem         di_rwsem;
8853 +       aufs_bindex_t           di_btop, di_bbot, di_bwh, di_bdiropq;
8854 +       unsigned char           di_tmpfile; /* to allow the different name */
8855 +       union {
8856 +               struct au_hdentry       *di_hdentry;
8857 +               struct llist_node       di_lnode;       /* delayed free */
8858 +       };
8859 +} ____cacheline_aligned_in_smp;
8860 +
8861 +/* ---------------------------------------------------------------------- */
8862 +
8863 +/* flags for au_lkup_dentry() */
8864 +#define AuLkup_ALLOW_NEG       1
8865 +#define AuLkup_IGNORE_PERM     (1 << 1)
8866 +#define au_ftest_lkup(flags, name)     ((flags) & AuLkup_##name)
8867 +#define au_fset_lkup(flags, name) \
8868 +       do { (flags) |= AuLkup_##name; } while (0)
8869 +#define au_fclr_lkup(flags, name) \
8870 +       do { (flags) &= ~AuLkup_##name; } while (0)
8871 +
8872 +/* ---------------------------------------------------------------------- */
8873 +
8874 +/* dentry.c */
8875 +extern const struct dentry_operations aufs_dop, aufs_dop_noreval;
8876 +struct au_branch;
8877 +struct dentry *au_sio_lkup_one(struct qstr *name, struct dentry *parent);
8878 +int au_h_verify(struct dentry *h_dentry, unsigned int udba, struct inode *h_dir,
8879 +               struct dentry *h_parent, struct au_branch *br);
8880 +
8881 +int au_lkup_dentry(struct dentry *dentry, aufs_bindex_t btop,
8882 +                  unsigned int flags);
8883 +int au_lkup_neg(struct dentry *dentry, aufs_bindex_t bindex, int wh);
8884 +int au_refresh_dentry(struct dentry *dentry, struct dentry *parent);
8885 +int au_reval_dpath(struct dentry *dentry, unsigned int sigen);
8886 +void au_refresh_dop(struct dentry *dentry, int force_reval);
8887 +
8888 +/* dinfo.c */
8889 +void au_di_init_once(void *_di);
8890 +struct au_dinfo *au_di_alloc(struct super_block *sb, unsigned int lsc);
8891 +void au_di_free(struct au_dinfo *dinfo);
8892 +void au_di_swap(struct au_dinfo *a, struct au_dinfo *b);
8893 +void au_di_cp(struct au_dinfo *dst, struct au_dinfo *src);
8894 +int au_di_init(struct dentry *dentry);
8895 +void au_di_fin(struct dentry *dentry);
8896 +int au_di_realloc(struct au_dinfo *dinfo, int nbr, int may_shrink);
8897 +
8898 +void di_read_lock(struct dentry *d, int flags, unsigned int lsc);
8899 +void di_read_unlock(struct dentry *d, int flags);
8900 +void di_downgrade_lock(struct dentry *d, int flags);
8901 +void di_write_lock(struct dentry *d, unsigned int lsc);
8902 +void di_write_unlock(struct dentry *d);
8903 +void di_write_lock2_child(struct dentry *d1, struct dentry *d2, int isdir);
8904 +void di_write_lock2_parent(struct dentry *d1, struct dentry *d2, int isdir);
8905 +void di_write_unlock2(struct dentry *d1, struct dentry *d2);
8906 +
8907 +struct dentry *au_h_dptr(struct dentry *dentry, aufs_bindex_t bindex);
8908 +struct dentry *au_h_d_alias(struct dentry *dentry, aufs_bindex_t bindex);
8909 +aufs_bindex_t au_dbtail(struct dentry *dentry);
8910 +aufs_bindex_t au_dbtaildir(struct dentry *dentry);
8911 +
8912 +void au_set_h_dptr(struct dentry *dentry, aufs_bindex_t bindex,
8913 +                  struct dentry *h_dentry);
8914 +int au_digen_test(struct dentry *dentry, unsigned int sigen);
8915 +int au_dbrange_test(struct dentry *dentry);
8916 +void au_update_digen(struct dentry *dentry);
8917 +void au_update_dbrange(struct dentry *dentry, int do_put_zero);
8918 +void au_update_dbtop(struct dentry *dentry);
8919 +void au_update_dbbot(struct dentry *dentry);
8920 +int au_find_dbindex(struct dentry *dentry, struct dentry *h_dentry);
8921 +
8922 +/* ---------------------------------------------------------------------- */
8923 +
8924 +static inline struct au_dinfo *au_di(struct dentry *dentry)
8925 +{
8926 +       return dentry->d_fsdata;
8927 +}
8928 +
8929 +/* ---------------------------------------------------------------------- */
8930 +
8931 +/* lock subclass for dinfo */
8932 +enum {
8933 +       AuLsc_DI_CHILD,         /* child first */
8934 +       AuLsc_DI_CHILD2,        /* rename(2), link(2), and cpup at hnotify */
8935 +       AuLsc_DI_CHILD3,        /* copyup dirs */
8936 +       AuLsc_DI_PARENT,
8937 +       AuLsc_DI_PARENT2,
8938 +       AuLsc_DI_PARENT3,
8939 +       AuLsc_DI_TMP            /* temp for replacing dinfo */
8940 +};
8941 +
8942 +/*
8943 + * di_read_lock_child, di_write_lock_child,
8944 + * di_read_lock_child2, di_write_lock_child2,
8945 + * di_read_lock_child3, di_write_lock_child3,
8946 + * di_read_lock_parent, di_write_lock_parent,
8947 + * di_read_lock_parent2, di_write_lock_parent2,
8948 + * di_read_lock_parent3, di_write_lock_parent3,
8949 + */
8950 +#define AuReadLockFunc(name, lsc) \
8951 +static inline void di_read_lock_##name(struct dentry *d, int flags) \
8952 +{ di_read_lock(d, flags, AuLsc_DI_##lsc); }
8953 +
8954 +#define AuWriteLockFunc(name, lsc) \
8955 +static inline void di_write_lock_##name(struct dentry *d) \
8956 +{ di_write_lock(d, AuLsc_DI_##lsc); }
8957 +
8958 +#define AuRWLockFuncs(name, lsc) \
8959 +       AuReadLockFunc(name, lsc) \
8960 +       AuWriteLockFunc(name, lsc)
8961 +
8962 +AuRWLockFuncs(child, CHILD);
8963 +AuRWLockFuncs(child2, CHILD2);
8964 +AuRWLockFuncs(child3, CHILD3);
8965 +AuRWLockFuncs(parent, PARENT);
8966 +AuRWLockFuncs(parent2, PARENT2);
8967 +AuRWLockFuncs(parent3, PARENT3);
8968 +
8969 +#undef AuReadLockFunc
8970 +#undef AuWriteLockFunc
8971 +#undef AuRWLockFuncs
8972 +
8973 +#define DiMustNoWaiters(d)     AuRwMustNoWaiters(&au_di(d)->di_rwsem)
8974 +#define DiMustAnyLock(d)       AuRwMustAnyLock(&au_di(d)->di_rwsem)
8975 +#define DiMustWriteLock(d)     AuRwMustWriteLock(&au_di(d)->di_rwsem)
8976 +
8977 +/* ---------------------------------------------------------------------- */
8978 +
8979 +/* todo: memory barrier? */
8980 +static inline unsigned int au_digen(struct dentry *d)
8981 +{
8982 +       return atomic_read(&au_di(d)->di_generation);
8983 +}
8984 +
8985 +static inline void au_h_dentry_init(struct au_hdentry *hdentry)
8986 +{
8987 +       hdentry->hd_dentry = NULL;
8988 +}
8989 +
8990 +static inline struct au_hdentry *au_hdentry(struct au_dinfo *di,
8991 +                                           aufs_bindex_t bindex)
8992 +{
8993 +       return di->di_hdentry + bindex;
8994 +}
8995 +
8996 +static inline void au_hdput(struct au_hdentry *hd)
8997 +{
8998 +       if (hd)
8999 +               dput(hd->hd_dentry);
9000 +}
9001 +
9002 +static inline aufs_bindex_t au_dbtop(struct dentry *dentry)
9003 +{
9004 +       DiMustAnyLock(dentry);
9005 +       return au_di(dentry)->di_btop;
9006 +}
9007 +
9008 +static inline aufs_bindex_t au_dbbot(struct dentry *dentry)
9009 +{
9010 +       DiMustAnyLock(dentry);
9011 +       return au_di(dentry)->di_bbot;
9012 +}
9013 +
9014 +static inline aufs_bindex_t au_dbwh(struct dentry *dentry)
9015 +{
9016 +       DiMustAnyLock(dentry);
9017 +       return au_di(dentry)->di_bwh;
9018 +}
9019 +
9020 +static inline aufs_bindex_t au_dbdiropq(struct dentry *dentry)
9021 +{
9022 +       DiMustAnyLock(dentry);
9023 +       return au_di(dentry)->di_bdiropq;
9024 +}
9025 +
9026 +/* todo: hard/soft set? */
9027 +static inline void au_set_dbtop(struct dentry *dentry, aufs_bindex_t bindex)
9028 +{
9029 +       DiMustWriteLock(dentry);
9030 +       au_di(dentry)->di_btop = bindex;
9031 +}
9032 +
9033 +static inline void au_set_dbbot(struct dentry *dentry, aufs_bindex_t bindex)
9034 +{
9035 +       DiMustWriteLock(dentry);
9036 +       au_di(dentry)->di_bbot = bindex;
9037 +}
9038 +
9039 +static inline void au_set_dbwh(struct dentry *dentry, aufs_bindex_t bindex)
9040 +{
9041 +       DiMustWriteLock(dentry);
9042 +       /* dbwh can be outside of btop - bbot range */
9043 +       au_di(dentry)->di_bwh = bindex;
9044 +}
9045 +
9046 +static inline void au_set_dbdiropq(struct dentry *dentry, aufs_bindex_t bindex)
9047 +{
9048 +       DiMustWriteLock(dentry);
9049 +       au_di(dentry)->di_bdiropq = bindex;
9050 +}
9051 +
9052 +/* ---------------------------------------------------------------------- */
9053 +
9054 +#ifdef CONFIG_AUFS_HNOTIFY
9055 +static inline void au_digen_dec(struct dentry *d)
9056 +{
9057 +       atomic_dec(&au_di(d)->di_generation);
9058 +}
9059 +
9060 +static inline void au_hn_di_reinit(struct dentry *dentry)
9061 +{
9062 +       dentry->d_fsdata = NULL;
9063 +}
9064 +#else
9065 +AuStubVoid(au_hn_di_reinit, struct dentry *dentry __maybe_unused)
9066 +#endif /* CONFIG_AUFS_HNOTIFY */
9067 +
9068 +#endif /* __KERNEL__ */
9069 +#endif /* __AUFS_DENTRY_H__ */
9070 diff -urN /usr/share/empty/fs/aufs/dinfo.c linux/fs/aufs/dinfo.c
9071 --- /usr/share/empty/fs/aufs/dinfo.c    1970-01-01 01:00:00.000000000 +0100
9072 +++ linux/fs/aufs/dinfo.c       2016-10-09 16:55:38.889431135 +0200
9073 @@ -0,0 +1,553 @@
9074 +/*
9075 + * Copyright (C) 2005-2016 Junjiro R. Okajima
9076 + *
9077 + * This program, aufs is free software; you can redistribute it and/or modify
9078 + * it under the terms of the GNU General Public License as published by
9079 + * the Free Software Foundation; either version 2 of the License, or
9080 + * (at your option) any later version.
9081 + *
9082 + * This program is distributed in the hope that it will be useful,
9083 + * but WITHOUT ANY WARRANTY; without even the implied warranty of
9084 + * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
9085 + * GNU General Public License for more details.
9086 + *
9087 + * You should have received a copy of the GNU General Public License
9088 + * along with this program.  If not, see <http://www.gnu.org/licenses/>.
9089 + */
9090 +
9091 +/*
9092 + * dentry private data
9093 + */
9094 +
9095 +#include "aufs.h"
9096 +
9097 +void au_di_init_once(void *_dinfo)
9098 +{
9099 +       struct au_dinfo *dinfo = _dinfo;
9100 +
9101 +       au_rw_init(&dinfo->di_rwsem);
9102 +}
9103 +
9104 +struct au_dinfo *au_di_alloc(struct super_block *sb, unsigned int lsc)
9105 +{
9106 +       struct au_dinfo *dinfo;
9107 +       int nbr, i;
9108 +
9109 +       dinfo = au_cache_alloc_dinfo();
9110 +       if (unlikely(!dinfo))
9111 +               goto out;
9112 +
9113 +       nbr = au_sbbot(sb) + 1;
9114 +       if (nbr <= 0)
9115 +               nbr = 1;
9116 +       dinfo->di_hdentry = kcalloc(nbr, sizeof(*dinfo->di_hdentry), GFP_NOFS);
9117 +       if (dinfo->di_hdentry) {
9118 +               au_rw_write_lock_nested(&dinfo->di_rwsem, lsc);
9119 +               dinfo->di_btop = -1;
9120 +               dinfo->di_bbot = -1;
9121 +               dinfo->di_bwh = -1;
9122 +               dinfo->di_bdiropq = -1;
9123 +               dinfo->di_tmpfile = 0;
9124 +               for (i = 0; i < nbr; i++)
9125 +                       dinfo->di_hdentry[i].hd_id = -1;
9126 +               goto out;
9127 +       }
9128 +
9129 +       au_cache_dfree_dinfo(dinfo);
9130 +       dinfo = NULL;
9131 +
9132 +out:
9133 +       return dinfo;
9134 +}
9135 +
9136 +void au_di_free(struct au_dinfo *dinfo)
9137 +{
9138 +       struct au_hdentry *p;
9139 +       aufs_bindex_t bbot, bindex;
9140 +
9141 +       /* dentry may not be revalidated */
9142 +       bindex = dinfo->di_btop;
9143 +       if (bindex >= 0) {
9144 +               bbot = dinfo->di_bbot;
9145 +               p = au_hdentry(dinfo, bindex);
9146 +               while (bindex++ <= bbot)
9147 +                       au_hdput(p++);
9148 +       }
9149 +       au_delayed_kfree(dinfo->di_hdentry);
9150 +       au_cache_dfree_dinfo(dinfo);
9151 +}
9152 +
9153 +void au_di_swap(struct au_dinfo *a, struct au_dinfo *b)
9154 +{
9155 +       struct au_hdentry *p;
9156 +       aufs_bindex_t bi;
9157 +
9158 +       AuRwMustWriteLock(&a->di_rwsem);
9159 +       AuRwMustWriteLock(&b->di_rwsem);
9160 +
9161 +#define DiSwap(v, name)                                \
9162 +       do {                                    \
9163 +               v = a->di_##name;               \
9164 +               a->di_##name = b->di_##name;    \
9165 +               b->di_##name = v;               \
9166 +       } while (0)
9167 +
9168 +       DiSwap(p, hdentry);
9169 +       DiSwap(bi, btop);
9170 +       DiSwap(bi, bbot);
9171 +       DiSwap(bi, bwh);
9172 +       DiSwap(bi, bdiropq);
9173 +       /* smp_mb(); */
9174 +
9175 +#undef DiSwap
9176 +}
9177 +
9178 +void au_di_cp(struct au_dinfo *dst, struct au_dinfo *src)
9179 +{
9180 +       AuRwMustWriteLock(&dst->di_rwsem);
9181 +       AuRwMustWriteLock(&src->di_rwsem);
9182 +
9183 +       dst->di_btop = src->di_btop;
9184 +       dst->di_bbot = src->di_bbot;
9185 +       dst->di_bwh = src->di_bwh;
9186 +       dst->di_bdiropq = src->di_bdiropq;
9187 +       /* smp_mb(); */
9188 +}
9189 +
9190 +int au_di_init(struct dentry *dentry)
9191 +{
9192 +       int err;
9193 +       struct super_block *sb;
9194 +       struct au_dinfo *dinfo;
9195 +
9196 +       err = 0;
9197 +       sb = dentry->d_sb;
9198 +       dinfo = au_di_alloc(sb, AuLsc_DI_CHILD);
9199 +       if (dinfo) {
9200 +               atomic_set(&dinfo->di_generation, au_sigen(sb));
9201 +               /* smp_mb(); */ /* atomic_set */
9202 +               dentry->d_fsdata = dinfo;
9203 +       } else
9204 +               err = -ENOMEM;
9205 +
9206 +       return err;
9207 +}
9208 +
9209 +void au_di_fin(struct dentry *dentry)
9210 +{
9211 +       struct au_dinfo *dinfo;
9212 +
9213 +       dinfo = au_di(dentry);
9214 +       AuRwDestroy(&dinfo->di_rwsem);
9215 +       au_di_free(dinfo);
9216 +}
9217 +
9218 +int au_di_realloc(struct au_dinfo *dinfo, int nbr, int may_shrink)
9219 +{
9220 +       int err, sz;
9221 +       struct au_hdentry *hdp;
9222 +
9223 +       AuRwMustWriteLock(&dinfo->di_rwsem);
9224 +
9225 +       err = -ENOMEM;
9226 +       sz = sizeof(*hdp) * (dinfo->di_bbot + 1);
9227 +       if (!sz)
9228 +               sz = sizeof(*hdp);
9229 +       hdp = au_kzrealloc(dinfo->di_hdentry, sz, sizeof(*hdp) * nbr, GFP_NOFS,
9230 +                          may_shrink);
9231 +       if (hdp) {
9232 +               dinfo->di_hdentry = hdp;
9233 +               err = 0;
9234 +       }
9235 +
9236 +       return err;
9237 +}
9238 +
9239 +/* ---------------------------------------------------------------------- */
9240 +
9241 +static void do_ii_write_lock(struct inode *inode, unsigned int lsc)
9242 +{
9243 +       switch (lsc) {
9244 +       case AuLsc_DI_CHILD:
9245 +               ii_write_lock_child(inode);
9246 +               break;
9247 +       case AuLsc_DI_CHILD2:
9248 +               ii_write_lock_child2(inode);
9249 +               break;
9250 +       case AuLsc_DI_CHILD3:
9251 +               ii_write_lock_child3(inode);
9252 +               break;
9253 +       case AuLsc_DI_PARENT:
9254 +               ii_write_lock_parent(inode);
9255 +               break;
9256 +       case AuLsc_DI_PARENT2:
9257 +               ii_write_lock_parent2(inode);
9258 +               break;
9259 +       case AuLsc_DI_PARENT3:
9260 +               ii_write_lock_parent3(inode);
9261 +               break;
9262 +       default:
9263 +               BUG();
9264 +       }
9265 +}
9266 +
9267 +static void do_ii_read_lock(struct inode *inode, unsigned int lsc)
9268 +{
9269 +       switch (lsc) {
9270 +       case AuLsc_DI_CHILD:
9271 +               ii_read_lock_child(inode);
9272 +               break;
9273 +       case AuLsc_DI_CHILD2:
9274 +               ii_read_lock_child2(inode);
9275 +               break;
9276 +       case AuLsc_DI_CHILD3:
9277 +               ii_read_lock_child3(inode);
9278 +               break;
9279 +       case AuLsc_DI_PARENT:
9280 +               ii_read_lock_parent(inode);
9281 +               break;
9282 +       case AuLsc_DI_PARENT2:
9283 +               ii_read_lock_parent2(inode);
9284 +               break;
9285 +       case AuLsc_DI_PARENT3:
9286 +               ii_read_lock_parent3(inode);
9287 +               break;
9288 +       default:
9289 +               BUG();
9290 +       }
9291 +}
9292 +
9293 +void di_read_lock(struct dentry *d, int flags, unsigned int lsc)
9294 +{
9295 +       struct inode *inode;
9296 +
9297 +       au_rw_read_lock_nested(&au_di(d)->di_rwsem, lsc);
9298 +       if (d_really_is_positive(d)) {
9299 +               inode = d_inode(d);
9300 +               if (au_ftest_lock(flags, IW))
9301 +                       do_ii_write_lock(inode, lsc);
9302 +               else if (au_ftest_lock(flags, IR))
9303 +                       do_ii_read_lock(inode, lsc);
9304 +       }
9305 +}
9306 +
9307 +void di_read_unlock(struct dentry *d, int flags)
9308 +{
9309 +       struct inode *inode;
9310 +
9311 +       if (d_really_is_positive(d)) {
9312 +               inode = d_inode(d);
9313 +               if (au_ftest_lock(flags, IW)) {
9314 +                       au_dbg_verify_dinode(d);
9315 +                       ii_write_unlock(inode);
9316 +               } else if (au_ftest_lock(flags, IR)) {
9317 +                       au_dbg_verify_dinode(d);
9318 +                       ii_read_unlock(inode);
9319 +               }
9320 +       }
9321 +       au_rw_read_unlock(&au_di(d)->di_rwsem);
9322 +}
9323 +
9324 +void di_downgrade_lock(struct dentry *d, int flags)
9325 +{
9326 +       if (d_really_is_positive(d) && au_ftest_lock(flags, IR))
9327 +               ii_downgrade_lock(d_inode(d));
9328 +       au_rw_dgrade_lock(&au_di(d)->di_rwsem);
9329 +}
9330 +
9331 +void di_write_lock(struct dentry *d, unsigned int lsc)
9332 +{
9333 +       au_rw_write_lock_nested(&au_di(d)->di_rwsem, lsc);
9334 +       if (d_really_is_positive(d))
9335 +               do_ii_write_lock(d_inode(d), lsc);
9336 +}
9337 +
9338 +void di_write_unlock(struct dentry *d)
9339 +{
9340 +       au_dbg_verify_dinode(d);
9341 +       if (d_really_is_positive(d))
9342 +               ii_write_unlock(d_inode(d));
9343 +       au_rw_write_unlock(&au_di(d)->di_rwsem);
9344 +}
9345 +
9346 +void di_write_lock2_child(struct dentry *d1, struct dentry *d2, int isdir)
9347 +{
9348 +       AuDebugOn(d1 == d2
9349 +                 || d_inode(d1) == d_inode(d2)
9350 +                 || d1->d_sb != d2->d_sb);
9351 +
9352 +       if (isdir && au_test_subdir(d1, d2)) {
9353 +               di_write_lock_child(d1);
9354 +               di_write_lock_child2(d2);
9355 +       } else {
9356 +               /* there should be no races */
9357 +               di_write_lock_child(d2);
9358 +               di_write_lock_child2(d1);
9359 +       }
9360 +}
9361 +
9362 +void di_write_lock2_parent(struct dentry *d1, struct dentry *d2, int isdir)
9363 +{
9364 +       AuDebugOn(d1 == d2
9365 +                 || d_inode(d1) == d_inode(d2)
9366 +                 || d1->d_sb != d2->d_sb);
9367 +
9368 +       if (isdir && au_test_subdir(d1, d2)) {
9369 +               di_write_lock_parent(d1);
9370 +               di_write_lock_parent2(d2);
9371 +       } else {
9372 +               /* there should be no races */
9373 +               di_write_lock_parent(d2);
9374 +               di_write_lock_parent2(d1);
9375 +       }
9376 +}
9377 +
9378 +void di_write_unlock2(struct dentry *d1, struct dentry *d2)
9379 +{
9380 +       di_write_unlock(d1);
9381 +       if (d_inode(d1) == d_inode(d2))
9382 +               au_rw_write_unlock(&au_di(d2)->di_rwsem);
9383 +       else
9384 +               di_write_unlock(d2);
9385 +}
9386 +
9387 +/* ---------------------------------------------------------------------- */
9388 +
9389 +struct dentry *au_h_dptr(struct dentry *dentry, aufs_bindex_t bindex)
9390 +{
9391 +       struct dentry *d;
9392 +
9393 +       DiMustAnyLock(dentry);
9394 +
9395 +       if (au_dbtop(dentry) < 0 || bindex < au_dbtop(dentry))
9396 +               return NULL;
9397 +       AuDebugOn(bindex < 0);
9398 +       d = au_hdentry(au_di(dentry), bindex)->hd_dentry;
9399 +       AuDebugOn(d && au_dcount(d) <= 0);
9400 +       return d;
9401 +}
9402 +
9403 +/*
9404 + * extended version of au_h_dptr().
9405 + * returns a hashed and positive (or linkable) h_dentry in bindex, NULL, or
9406 + * error.
9407 + */
9408 +struct dentry *au_h_d_alias(struct dentry *dentry, aufs_bindex_t bindex)
9409 +{
9410 +       struct dentry *h_dentry;
9411 +       struct inode *inode, *h_inode;
9412 +
9413 +       AuDebugOn(d_really_is_negative(dentry));
9414 +
9415 +       h_dentry = NULL;
9416 +       if (au_dbtop(dentry) <= bindex
9417 +           && bindex <= au_dbbot(dentry))
9418 +               h_dentry = au_h_dptr(dentry, bindex);
9419 +       if (h_dentry && !au_d_linkable(h_dentry)) {
9420 +               dget(h_dentry);
9421 +               goto out; /* success */
9422 +       }
9423 +
9424 +       inode = d_inode(dentry);
9425 +       AuDebugOn(bindex < au_ibtop(inode));
9426 +       AuDebugOn(au_ibbot(inode) < bindex);
9427 +       h_inode = au_h_iptr(inode, bindex);
9428 +       h_dentry = d_find_alias(h_inode);
9429 +       if (h_dentry) {
9430 +               if (!IS_ERR(h_dentry)) {
9431 +                       if (!au_d_linkable(h_dentry))
9432 +                               goto out; /* success */
9433 +                       dput(h_dentry);
9434 +               } else
9435 +                       goto out;
9436 +       }
9437 +
9438 +       if (au_opt_test(au_mntflags(dentry->d_sb), PLINK)) {
9439 +               h_dentry = au_plink_lkup(inode, bindex);
9440 +               AuDebugOn(!h_dentry);
9441 +               if (!IS_ERR(h_dentry)) {
9442 +                       if (!au_d_hashed_positive(h_dentry))
9443 +                               goto out; /* success */
9444 +                       dput(h_dentry);
9445 +                       h_dentry = NULL;
9446 +               }
9447 +       }
9448 +
9449 +out:
9450 +       AuDbgDentry(h_dentry);
9451 +       return h_dentry;
9452 +}
9453 +
9454 +aufs_bindex_t au_dbtail(struct dentry *dentry)
9455 +{
9456 +       aufs_bindex_t bbot, bwh;
9457 +
9458 +       bbot = au_dbbot(dentry);
9459 +       if (0 <= bbot) {
9460 +               bwh = au_dbwh(dentry);
9461 +               if (!bwh)
9462 +                       return bwh;
9463 +               if (0 < bwh && bwh < bbot)
9464 +                       return bwh - 1;
9465 +       }
9466 +       return bbot;
9467 +}
9468 +
9469 +aufs_bindex_t au_dbtaildir(struct dentry *dentry)
9470 +{
9471 +       aufs_bindex_t bbot, bopq;
9472 +
9473 +       bbot = au_dbtail(dentry);
9474 +       if (0 <= bbot) {
9475 +               bopq = au_dbdiropq(dentry);
9476 +               if (0 <= bopq && bopq < bbot)
9477 +                       bbot = bopq;
9478 +       }
9479 +       return bbot;
9480 +}
9481 +
9482 +/* ---------------------------------------------------------------------- */
9483 +
9484 +void au_set_h_dptr(struct dentry *dentry, aufs_bindex_t bindex,
9485 +                  struct dentry *h_dentry)
9486 +{
9487 +       struct au_dinfo *dinfo;
9488 +       struct au_hdentry *hd;
9489 +       struct au_branch *br;
9490 +
9491 +       DiMustWriteLock(dentry);
9492 +
9493 +       dinfo = au_di(dentry);
9494 +       hd = au_hdentry(dinfo, bindex);
9495 +       au_hdput(hd);
9496 +       hd->hd_dentry = h_dentry;
9497 +       if (h_dentry) {
9498 +               br = au_sbr(dentry->d_sb, bindex);
9499 +               hd->hd_id = br->br_id;
9500 +       }
9501 +}
9502 +
9503 +int au_dbrange_test(struct dentry *dentry)
9504 +{
9505 +       int err;
9506 +       aufs_bindex_t btop, bbot;
9507 +
9508 +       err = 0;
9509 +       btop = au_dbtop(dentry);
9510 +       bbot = au_dbbot(dentry);
9511 +       if (btop >= 0)
9512 +               AuDebugOn(bbot < 0 && btop > bbot);
9513 +       else {
9514 +               err = -EIO;
9515 +               AuDebugOn(bbot >= 0);
9516 +       }
9517 +
9518 +       return err;
9519 +}
9520 +
9521 +int au_digen_test(struct dentry *dentry, unsigned int sigen)
9522 +{
9523 +       int err;
9524 +
9525 +       err = 0;
9526 +       if (unlikely(au_digen(dentry) != sigen
9527 +                    || au_iigen_test(d_inode(dentry), sigen)))
9528 +               err = -EIO;
9529 +
9530 +       return err;
9531 +}
9532 +
9533 +void au_update_digen(struct dentry *dentry)
9534 +{
9535 +       atomic_set(&au_di(dentry)->di_generation, au_sigen(dentry->d_sb));
9536 +       /* smp_mb(); */ /* atomic_set */
9537 +}
9538 +
9539 +void au_update_dbrange(struct dentry *dentry, int do_put_zero)
9540 +{
9541 +       struct au_dinfo *dinfo;
9542 +       struct dentry *h_d;
9543 +       struct au_hdentry *hdp;
9544 +       aufs_bindex_t bindex, bbot;
9545 +
9546 +       DiMustWriteLock(dentry);
9547 +
9548 +       dinfo = au_di(dentry);
9549 +       if (!dinfo || dinfo->di_btop < 0)
9550 +               return;
9551 +
9552 +       if (do_put_zero) {
9553 +               bbot = dinfo->di_bbot;
9554 +               bindex = dinfo->di_btop;
9555 +               hdp = au_hdentry(dinfo, bindex);
9556 +               for (; bindex <= bbot; bindex++, hdp++) {
9557 +                       h_d = hdp->hd_dentry;
9558 +                       if (h_d && d_is_negative(h_d))
9559 +                               au_set_h_dptr(dentry, bindex, NULL);
9560 +               }
9561 +       }
9562 +
9563 +       dinfo->di_btop = 0;
9564 +       hdp = au_hdentry(dinfo, dinfo->di_btop);
9565 +       for (; dinfo->di_btop <= dinfo->di_bbot; dinfo->di_btop++, hdp++)
9566 +               if (hdp->hd_dentry)
9567 +                       break;
9568 +       if (dinfo->di_btop > dinfo->di_bbot) {
9569 +               dinfo->di_btop = -1;
9570 +               dinfo->di_bbot = -1;
9571 +               return;
9572 +       }
9573 +
9574 +       hdp = au_hdentry(dinfo, dinfo->di_bbot);
9575 +       for (; dinfo->di_bbot >= 0; dinfo->di_bbot--, hdp--)
9576 +               if (hdp->hd_dentry)
9577 +                       break;
9578 +       AuDebugOn(dinfo->di_btop > dinfo->di_bbot || dinfo->di_bbot < 0);
9579 +}
9580 +
9581 +void au_update_dbtop(struct dentry *dentry)
9582 +{
9583 +       aufs_bindex_t bindex, bbot;
9584 +       struct dentry *h_dentry;
9585 +
9586 +       bbot = au_dbbot(dentry);
9587 +       for (bindex = au_dbtop(dentry); bindex <= bbot; bindex++) {
9588 +               h_dentry = au_h_dptr(dentry, bindex);
9589 +               if (!h_dentry)
9590 +                       continue;
9591 +               if (d_is_positive(h_dentry)) {
9592 +                       au_set_dbtop(dentry, bindex);
9593 +                       return;
9594 +               }
9595 +               au_set_h_dptr(dentry, bindex, NULL);
9596 +       }
9597 +}
9598 +
9599 +void au_update_dbbot(struct dentry *dentry)
9600 +{
9601 +       aufs_bindex_t bindex, btop;
9602 +       struct dentry *h_dentry;
9603 +
9604 +       btop = au_dbtop(dentry);
9605 +       for (bindex = au_dbbot(dentry); bindex >= btop; bindex--) {
9606 +               h_dentry = au_h_dptr(dentry, bindex);
9607 +               if (!h_dentry)
9608 +                       continue;
9609 +               if (d_is_positive(h_dentry)) {
9610 +                       au_set_dbbot(dentry, bindex);
9611 +                       return;
9612 +               }
9613 +               au_set_h_dptr(dentry, bindex, NULL);
9614 +       }
9615 +}
9616 +
9617 +int au_find_dbindex(struct dentry *dentry, struct dentry *h_dentry)
9618 +{
9619 +       aufs_bindex_t bindex, bbot;
9620 +
9621 +       bbot = au_dbbot(dentry);
9622 +       for (bindex = au_dbtop(dentry); bindex <= bbot; bindex++)
9623 +               if (au_h_dptr(dentry, bindex) == h_dentry)
9624 +                       return bindex;
9625 +       return -1;
9626 +}
9627 diff -urN /usr/share/empty/fs/aufs/dir.c linux/fs/aufs/dir.c
9628 --- /usr/share/empty/fs/aufs/dir.c      1970-01-01 01:00:00.000000000 +0100
9629 +++ linux/fs/aufs/dir.c 2016-10-09 16:55:36.489368218 +0200
9630 @@ -0,0 +1,762 @@
9631 +/*
9632 + * Copyright (C) 2005-2016 Junjiro R. Okajima
9633 + *
9634 + * This program, aufs is free software; you can redistribute it and/or modify
9635 + * it under the terms of the GNU General Public License as published by
9636 + * the Free Software Foundation; either version 2 of the License, or
9637 + * (at your option) any later version.
9638 + *
9639 + * This program is distributed in the hope that it will be useful,
9640 + * but WITHOUT ANY WARRANTY; without even the implied warranty of
9641 + * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
9642 + * GNU General Public License for more details.
9643 + *
9644 + * You should have received a copy of the GNU General Public License
9645 + * along with this program.  If not, see <http://www.gnu.org/licenses/>.
9646 + */
9647 +
9648 +/*
9649 + * directory operations
9650 + */
9651 +
9652 +#include <linux/fs_stack.h>
9653 +#include "aufs.h"
9654 +
9655 +void au_add_nlink(struct inode *dir, struct inode *h_dir)
9656 +{
9657 +       unsigned int nlink;
9658 +
9659 +       AuDebugOn(!S_ISDIR(dir->i_mode) || !S_ISDIR(h_dir->i_mode));
9660 +
9661 +       nlink = dir->i_nlink;
9662 +       nlink += h_dir->i_nlink - 2;
9663 +       if (h_dir->i_nlink < 2)
9664 +               nlink += 2;
9665 +       smp_mb(); /* for i_nlink */
9666 +       /* 0 can happen in revaliding */
9667 +       set_nlink(dir, nlink);
9668 +}
9669 +
9670 +void au_sub_nlink(struct inode *dir, struct inode *h_dir)
9671 +{
9672 +       unsigned int nlink;
9673 +
9674 +       AuDebugOn(!S_ISDIR(dir->i_mode) || !S_ISDIR(h_dir->i_mode));
9675 +
9676 +       nlink = dir->i_nlink;
9677 +       nlink -= h_dir->i_nlink - 2;
9678 +       if (h_dir->i_nlink < 2)
9679 +               nlink -= 2;
9680 +       smp_mb(); /* for i_nlink */
9681 +       /* nlink == 0 means the branch-fs is broken */
9682 +       set_nlink(dir, nlink);
9683 +}
9684 +
9685 +loff_t au_dir_size(struct file *file, struct dentry *dentry)
9686 +{
9687 +       loff_t sz;
9688 +       aufs_bindex_t bindex, bbot;
9689 +       struct file *h_file;
9690 +       struct dentry *h_dentry;
9691 +
9692 +       sz = 0;
9693 +       if (file) {
9694 +               AuDebugOn(!d_is_dir(file->f_path.dentry));
9695 +
9696 +               bbot = au_fbbot_dir(file);
9697 +               for (bindex = au_fbtop(file);
9698 +                    bindex <= bbot && sz < KMALLOC_MAX_SIZE;
9699 +                    bindex++) {
9700 +                       h_file = au_hf_dir(file, bindex);
9701 +                       if (h_file && file_inode(h_file))
9702 +                               sz += vfsub_f_size_read(h_file);
9703 +               }
9704 +       } else {
9705 +               AuDebugOn(!dentry);
9706 +               AuDebugOn(!d_is_dir(dentry));
9707 +
9708 +               bbot = au_dbtaildir(dentry);
9709 +               for (bindex = au_dbtop(dentry);
9710 +                    bindex <= bbot && sz < KMALLOC_MAX_SIZE;
9711 +                    bindex++) {
9712 +                       h_dentry = au_h_dptr(dentry, bindex);
9713 +                       if (h_dentry && d_is_positive(h_dentry))
9714 +                               sz += i_size_read(d_inode(h_dentry));
9715 +               }
9716 +       }
9717 +       if (sz < KMALLOC_MAX_SIZE)
9718 +               sz = roundup_pow_of_two(sz);
9719 +       if (sz > KMALLOC_MAX_SIZE)
9720 +               sz = KMALLOC_MAX_SIZE;
9721 +       else if (sz < NAME_MAX) {
9722 +               BUILD_BUG_ON(AUFS_RDBLK_DEF < NAME_MAX);
9723 +               sz = AUFS_RDBLK_DEF;
9724 +       }
9725 +       return sz;
9726 +}
9727 +
9728 +struct au_dir_ts_arg {
9729 +       struct dentry *dentry;
9730 +       aufs_bindex_t brid;
9731 +};
9732 +
9733 +static void au_do_dir_ts(void *arg)
9734 +{
9735 +       struct au_dir_ts_arg *a = arg;
9736 +       struct au_dtime dt;
9737 +       struct path h_path;
9738 +       struct inode *dir, *h_dir;
9739 +       struct super_block *sb;
9740 +       struct au_branch *br;
9741 +       struct au_hinode *hdir;
9742 +       int err;
9743 +       aufs_bindex_t btop, bindex;
9744 +
9745 +       sb = a->dentry->d_sb;
9746 +       if (d_really_is_negative(a->dentry))
9747 +               goto out;
9748 +       /* no dir->i_mutex lock */
9749 +       aufs_read_lock(a->dentry, AuLock_DW); /* noflush */
9750 +
9751 +       dir = d_inode(a->dentry);
9752 +       btop = au_ibtop(dir);
9753 +       bindex = au_br_index(sb, a->brid);
9754 +       if (bindex < btop)
9755 +               goto out_unlock;
9756 +
9757 +       br = au_sbr(sb, bindex);
9758 +       h_path.dentry = au_h_dptr(a->dentry, bindex);
9759 +       if (!h_path.dentry)
9760 +               goto out_unlock;
9761 +       h_path.mnt = au_br_mnt(br);
9762 +       au_dtime_store(&dt, a->dentry, &h_path);
9763 +
9764 +       br = au_sbr(sb, btop);
9765 +       if (!au_br_writable(br->br_perm))
9766 +               goto out_unlock;
9767 +       h_path.dentry = au_h_dptr(a->dentry, btop);
9768 +       h_path.mnt = au_br_mnt(br);
9769 +       err = vfsub_mnt_want_write(h_path.mnt);
9770 +       if (err)
9771 +               goto out_unlock;
9772 +       hdir = au_hi(dir, btop);
9773 +       au_hn_inode_lock_nested(hdir, AuLsc_I_PARENT);
9774 +       h_dir = au_h_iptr(dir, btop);
9775 +       if (h_dir->i_nlink
9776 +           && timespec_compare(&h_dir->i_mtime, &dt.dt_mtime) < 0) {
9777 +               dt.dt_h_path = h_path;
9778 +               au_dtime_revert(&dt);
9779 +       }
9780 +       au_hn_inode_unlock(hdir);
9781 +       vfsub_mnt_drop_write(h_path.mnt);
9782 +       au_cpup_attr_timesizes(dir);
9783 +
9784 +out_unlock:
9785 +       aufs_read_unlock(a->dentry, AuLock_DW);
9786 +out:
9787 +       dput(a->dentry);
9788 +       au_nwt_done(&au_sbi(sb)->si_nowait);
9789 +       au_delayed_kfree(arg);
9790 +}
9791 +
9792 +void au_dir_ts(struct inode *dir, aufs_bindex_t bindex)
9793 +{
9794 +       int perm, wkq_err;
9795 +       aufs_bindex_t btop;
9796 +       struct au_dir_ts_arg *arg;
9797 +       struct dentry *dentry;
9798 +       struct super_block *sb;
9799 +
9800 +       IMustLock(dir);
9801 +
9802 +       dentry = d_find_any_alias(dir);
9803 +       AuDebugOn(!dentry);
9804 +       sb = dentry->d_sb;
9805 +       btop = au_ibtop(dir);
9806 +       if (btop == bindex) {
9807 +               au_cpup_attr_timesizes(dir);
9808 +               goto out;
9809 +       }
9810 +
9811 +       perm = au_sbr_perm(sb, btop);
9812 +       if (!au_br_writable(perm))
9813 +               goto out;
9814 +
9815 +       arg = kmalloc(sizeof(*arg), GFP_NOFS);
9816 +       if (!arg)
9817 +               goto out;
9818 +
9819 +       arg->dentry = dget(dentry); /* will be dput-ted by au_do_dir_ts() */
9820 +       arg->brid = au_sbr_id(sb, bindex);
9821 +       wkq_err = au_wkq_nowait(au_do_dir_ts, arg, sb, /*flags*/0);
9822 +       if (unlikely(wkq_err)) {
9823 +               pr_err("wkq %d\n", wkq_err);
9824 +               dput(dentry);
9825 +               au_delayed_kfree(arg);
9826 +       }
9827 +
9828 +out:
9829 +       dput(dentry);
9830 +}
9831 +
9832 +/* ---------------------------------------------------------------------- */
9833 +
9834 +static int reopen_dir(struct file *file)
9835 +{
9836 +       int err;
9837 +       unsigned int flags;
9838 +       aufs_bindex_t bindex, btail, btop;
9839 +       struct dentry *dentry, *h_dentry;
9840 +       struct file *h_file;
9841 +
9842 +       /* open all lower dirs */
9843 +       dentry = file->f_path.dentry;
9844 +       btop = au_dbtop(dentry);
9845 +       for (bindex = au_fbtop(file); bindex < btop; bindex++)
9846 +               au_set_h_fptr(file, bindex, NULL);
9847 +       au_set_fbtop(file, btop);
9848 +
9849 +       btail = au_dbtaildir(dentry);
9850 +       for (bindex = au_fbbot_dir(file); btail < bindex; bindex--)
9851 +               au_set_h_fptr(file, bindex, NULL);
9852 +       au_set_fbbot_dir(file, btail);
9853 +
9854 +       flags = vfsub_file_flags(file);
9855 +       for (bindex = btop; bindex <= btail; bindex++) {
9856 +               h_dentry = au_h_dptr(dentry, bindex);
9857 +               if (!h_dentry)
9858 +                       continue;
9859 +               h_file = au_hf_dir(file, bindex);
9860 +               if (h_file)
9861 +                       continue;
9862 +
9863 +               h_file = au_h_open(dentry, bindex, flags, file, /*force_wr*/0);
9864 +               err = PTR_ERR(h_file);
9865 +               if (IS_ERR(h_file))
9866 +                       goto out; /* close all? */
9867 +               au_set_h_fptr(file, bindex, h_file);
9868 +       }
9869 +       au_update_figen(file);
9870 +       /* todo: necessary? */
9871 +       /* file->f_ra = h_file->f_ra; */
9872 +       err = 0;
9873 +
9874 +out:
9875 +       return err;
9876 +}
9877 +
9878 +static int do_open_dir(struct file *file, int flags, struct file *h_file)
9879 +{
9880 +       int err;
9881 +       aufs_bindex_t bindex, btail;
9882 +       struct dentry *dentry, *h_dentry;
9883 +       struct vfsmount *mnt;
9884 +
9885 +       FiMustWriteLock(file);
9886 +       AuDebugOn(h_file);
9887 +
9888 +       err = 0;
9889 +       mnt = file->f_path.mnt;
9890 +       dentry = file->f_path.dentry;
9891 +       file->f_version = d_inode(dentry)->i_version;
9892 +       bindex = au_dbtop(dentry);
9893 +       au_set_fbtop(file, bindex);
9894 +       btail = au_dbtaildir(dentry);
9895 +       au_set_fbbot_dir(file, btail);
9896 +       for (; !err && bindex <= btail; bindex++) {
9897 +               h_dentry = au_h_dptr(dentry, bindex);
9898 +               if (!h_dentry)
9899 +                       continue;
9900 +
9901 +               err = vfsub_test_mntns(mnt, h_dentry->d_sb);
9902 +               if (unlikely(err))
9903 +                       break;
9904 +               h_file = au_h_open(dentry, bindex, flags, file, /*force_wr*/0);
9905 +               if (IS_ERR(h_file)) {
9906 +                       err = PTR_ERR(h_file);
9907 +                       break;
9908 +               }
9909 +               au_set_h_fptr(file, bindex, h_file);
9910 +       }
9911 +       au_update_figen(file);
9912 +       /* todo: necessary? */
9913 +       /* file->f_ra = h_file->f_ra; */
9914 +       if (!err)
9915 +               return 0; /* success */
9916 +
9917 +       /* close all */
9918 +       for (bindex = au_fbtop(file); bindex <= btail; bindex++)
9919 +               au_set_h_fptr(file, bindex, NULL);
9920 +       au_set_fbtop(file, -1);
9921 +       au_set_fbbot_dir(file, -1);
9922 +
9923 +       return err;
9924 +}
9925 +
9926 +static int aufs_open_dir(struct inode *inode __maybe_unused,
9927 +                        struct file *file)
9928 +{
9929 +       int err;
9930 +       struct super_block *sb;
9931 +       struct au_fidir *fidir;
9932 +
9933 +       err = -ENOMEM;
9934 +       sb = file->f_path.dentry->d_sb;
9935 +       si_read_lock(sb, AuLock_FLUSH);
9936 +       fidir = au_fidir_alloc(sb);
9937 +       if (fidir) {
9938 +               struct au_do_open_args args = {
9939 +                       .open   = do_open_dir,
9940 +                       .fidir  = fidir
9941 +               };
9942 +               err = au_do_open(file, &args);
9943 +               if (unlikely(err))
9944 +                       au_delayed_kfree(fidir);
9945 +       }
9946 +       si_read_unlock(sb);
9947 +       return err;
9948 +}
9949 +
9950 +static int aufs_release_dir(struct inode *inode __maybe_unused,
9951 +                           struct file *file)
9952 +{
9953 +       struct au_vdir *vdir_cache;
9954 +       struct au_finfo *finfo;
9955 +       struct au_fidir *fidir;
9956 +       struct au_hfile *hf;
9957 +       aufs_bindex_t bindex, bbot;
9958 +       int execed, delayed;
9959 +
9960 +       delayed = (current->flags & PF_KTHREAD) || in_interrupt();
9961 +       finfo = au_fi(file);
9962 +       fidir = finfo->fi_hdir;
9963 +       if (fidir) {
9964 +               au_sphl_del(&finfo->fi_hlist,
9965 +                           &au_sbi(file->f_path.dentry->d_sb)->si_files);
9966 +               vdir_cache = fidir->fd_vdir_cache; /* lock-free */
9967 +               if (vdir_cache)
9968 +                       au_vdir_free(vdir_cache, delayed);
9969 +
9970 +               bindex = finfo->fi_btop;
9971 +               if (bindex >= 0) {
9972 +                       execed = vfsub_file_execed(file);
9973 +                       hf = fidir->fd_hfile + bindex;
9974 +                       /*
9975 +                        * calls fput() instead of filp_close(),
9976 +                        * since no dnotify or lock for the lower file.
9977 +                        */
9978 +                       bbot = fidir->fd_bbot;
9979 +                       for (; bindex <= bbot; bindex++, hf++)
9980 +                               if (hf->hf_file)
9981 +                                       au_hfput(hf, execed);
9982 +               }
9983 +               au_delayed_kfree(fidir);
9984 +               finfo->fi_hdir = NULL;
9985 +       }
9986 +       au_finfo_fin(file, delayed);
9987 +       return 0;
9988 +}
9989 +
9990 +/* ---------------------------------------------------------------------- */
9991 +
9992 +static int au_do_flush_dir(struct file *file, fl_owner_t id)
9993 +{
9994 +       int err;
9995 +       aufs_bindex_t bindex, bbot;
9996 +       struct file *h_file;
9997 +
9998 +       err = 0;
9999 +       bbot = au_fbbot_dir(file);
10000 +       for (bindex = au_fbtop(file); !err && bindex <= bbot; bindex++) {
10001 +               h_file = au_hf_dir(file, bindex);
10002 +               if (h_file)
10003 +                       err = vfsub_flush(h_file, id);
10004 +       }
10005 +       return err;
10006 +}
10007 +
10008 +static int aufs_flush_dir(struct file *file, fl_owner_t id)
10009 +{
10010 +       return au_do_flush(file, id, au_do_flush_dir);
10011 +}
10012 +
10013 +/* ---------------------------------------------------------------------- */
10014 +
10015 +static int au_do_fsync_dir_no_file(struct dentry *dentry, int datasync)
10016 +{
10017 +       int err;
10018 +       aufs_bindex_t bbot, bindex;
10019 +       struct inode *inode;
10020 +       struct super_block *sb;
10021 +
10022 +       err = 0;
10023 +       sb = dentry->d_sb;
10024 +       inode = d_inode(dentry);
10025 +       IMustLock(inode);
10026 +       bbot = au_dbbot(dentry);
10027 +       for (bindex = au_dbtop(dentry); !err && bindex <= bbot; bindex++) {
10028 +               struct path h_path;
10029 +
10030 +               if (au_test_ro(sb, bindex, inode))
10031 +                       continue;
10032 +               h_path.dentry = au_h_dptr(dentry, bindex);
10033 +               if (!h_path.dentry)
10034 +                       continue;
10035 +
10036 +               h_path.mnt = au_sbr_mnt(sb, bindex);
10037 +               err = vfsub_fsync(NULL, &h_path, datasync);
10038 +       }
10039 +
10040 +       return err;
10041 +}
10042 +
10043 +static int au_do_fsync_dir(struct file *file, int datasync)
10044 +{
10045 +       int err;
10046 +       aufs_bindex_t bbot, bindex;
10047 +       struct file *h_file;
10048 +       struct super_block *sb;
10049 +       struct inode *inode;
10050 +
10051 +       err = au_reval_and_lock_fdi(file, reopen_dir, /*wlock*/1);
10052 +       if (unlikely(err))
10053 +               goto out;
10054 +
10055 +       inode = file_inode(file);
10056 +       sb = inode->i_sb;
10057 +       bbot = au_fbbot_dir(file);
10058 +       for (bindex = au_fbtop(file); !err && bindex <= bbot; bindex++) {
10059 +               h_file = au_hf_dir(file, bindex);
10060 +               if (!h_file || au_test_ro(sb, bindex, inode))
10061 +                       continue;
10062 +
10063 +               err = vfsub_fsync(h_file, &h_file->f_path, datasync);
10064 +       }
10065 +
10066 +out:
10067 +       return err;
10068 +}
10069 +
10070 +/*
10071 + * @file may be NULL
10072 + */
10073 +static int aufs_fsync_dir(struct file *file, loff_t start, loff_t end,
10074 +                         int datasync)
10075 +{
10076 +       int err;
10077 +       struct dentry *dentry;
10078 +       struct inode *inode;
10079 +       struct super_block *sb;
10080 +
10081 +       err = 0;
10082 +       dentry = file->f_path.dentry;
10083 +       inode = d_inode(dentry);
10084 +       inode_lock(inode);
10085 +       sb = dentry->d_sb;
10086 +       si_noflush_read_lock(sb);
10087 +       if (file)
10088 +               err = au_do_fsync_dir(file, datasync);
10089 +       else {
10090 +               di_write_lock_child(dentry);
10091 +               err = au_do_fsync_dir_no_file(dentry, datasync);
10092 +       }
10093 +       au_cpup_attr_timesizes(inode);
10094 +       di_write_unlock(dentry);
10095 +       if (file)
10096 +               fi_write_unlock(file);
10097 +
10098 +       si_read_unlock(sb);
10099 +       inode_unlock(inode);
10100 +       return err;
10101 +}
10102 +
10103 +/* ---------------------------------------------------------------------- */
10104 +
10105 +static int aufs_iterate_shared(struct file *file, struct dir_context *ctx)
10106 +{
10107 +       int err;
10108 +       struct dentry *dentry;
10109 +       struct inode *inode, *h_inode;
10110 +       struct super_block *sb;
10111 +
10112 +       AuDbg("%pD, ctx{%pf, %llu}\n", file, ctx->actor, ctx->pos);
10113 +
10114 +       dentry = file->f_path.dentry;
10115 +       inode = d_inode(dentry);
10116 +       IMustLock(inode);
10117 +
10118 +       sb = dentry->d_sb;
10119 +       si_read_lock(sb, AuLock_FLUSH);
10120 +       err = au_reval_and_lock_fdi(file, reopen_dir, /*wlock*/1);
10121 +       if (unlikely(err))
10122 +               goto out;
10123 +       err = au_alive_dir(dentry);
10124 +       if (!err)
10125 +               err = au_vdir_init(file);
10126 +       di_downgrade_lock(dentry, AuLock_IR);
10127 +       if (unlikely(err))
10128 +               goto out_unlock;
10129 +
10130 +       h_inode = au_h_iptr(inode, au_ibtop(inode));
10131 +       if (!au_test_nfsd()) {
10132 +               err = au_vdir_fill_de(file, ctx);
10133 +               fsstack_copy_attr_atime(inode, h_inode);
10134 +       } else {
10135 +               /*
10136 +                * nfsd filldir may call lookup_one_len(), vfs_getattr(),
10137 +                * encode_fh() and others.
10138 +                */
10139 +               atomic_inc(&h_inode->i_count);
10140 +               di_read_unlock(dentry, AuLock_IR);
10141 +               si_read_unlock(sb);
10142 +               err = au_vdir_fill_de(file, ctx);
10143 +               fsstack_copy_attr_atime(inode, h_inode);
10144 +               fi_write_unlock(file);
10145 +               iput(h_inode);
10146 +
10147 +               AuTraceErr(err);
10148 +               return err;
10149 +       }
10150 +
10151 +out_unlock:
10152 +       di_read_unlock(dentry, AuLock_IR);
10153 +       fi_write_unlock(file);
10154 +out:
10155 +       si_read_unlock(sb);
10156 +       return err;
10157 +}
10158 +
10159 +/* ---------------------------------------------------------------------- */
10160 +
10161 +#define AuTestEmpty_WHONLY     1
10162 +#define AuTestEmpty_CALLED     (1 << 1)
10163 +#define AuTestEmpty_SHWH       (1 << 2)
10164 +#define au_ftest_testempty(flags, name)        ((flags) & AuTestEmpty_##name)
10165 +#define au_fset_testempty(flags, name) \
10166 +       do { (flags) |= AuTestEmpty_##name; } while (0)
10167 +#define au_fclr_testempty(flags, name) \
10168 +       do { (flags) &= ~AuTestEmpty_##name; } while (0)
10169 +
10170 +#ifndef CONFIG_AUFS_SHWH
10171 +#undef AuTestEmpty_SHWH
10172 +#define AuTestEmpty_SHWH       0
10173 +#endif
10174 +
10175 +struct test_empty_arg {
10176 +       struct dir_context ctx;
10177 +       struct au_nhash *whlist;
10178 +       unsigned int flags;
10179 +       int err;
10180 +       aufs_bindex_t bindex;
10181 +};
10182 +
10183 +static int test_empty_cb(struct dir_context *ctx, const char *__name,
10184 +                        int namelen, loff_t offset __maybe_unused, u64 ino,
10185 +                        unsigned int d_type)
10186 +{
10187 +       struct test_empty_arg *arg = container_of(ctx, struct test_empty_arg,
10188 +                                                 ctx);
10189 +       char *name = (void *)__name;
10190 +
10191 +       arg->err = 0;
10192 +       au_fset_testempty(arg->flags, CALLED);
10193 +       /* smp_mb(); */
10194 +       if (name[0] == '.'
10195 +           && (namelen == 1 || (name[1] == '.' && namelen == 2)))
10196 +               goto out; /* success */
10197 +
10198 +       if (namelen <= AUFS_WH_PFX_LEN
10199 +           || memcmp(name, AUFS_WH_PFX, AUFS_WH_PFX_LEN)) {
10200 +               if (au_ftest_testempty(arg->flags, WHONLY)
10201 +                   && !au_nhash_test_known_wh(arg->whlist, name, namelen))
10202 +                       arg->err = -ENOTEMPTY;
10203 +               goto out;
10204 +       }
10205 +
10206 +       name += AUFS_WH_PFX_LEN;
10207 +       namelen -= AUFS_WH_PFX_LEN;
10208 +       if (!au_nhash_test_known_wh(arg->whlist, name, namelen))
10209 +               arg->err = au_nhash_append_wh
10210 +                       (arg->whlist, name, namelen, ino, d_type, arg->bindex,
10211 +                        au_ftest_testempty(arg->flags, SHWH));
10212 +
10213 +out:
10214 +       /* smp_mb(); */
10215 +       AuTraceErr(arg->err);
10216 +       return arg->err;
10217 +}
10218 +
10219 +static int do_test_empty(struct dentry *dentry, struct test_empty_arg *arg)
10220 +{
10221 +       int err;
10222 +       struct file *h_file;
10223 +
10224 +       h_file = au_h_open(dentry, arg->bindex,
10225 +                          O_RDONLY | O_NONBLOCK | O_DIRECTORY | O_LARGEFILE,
10226 +                          /*file*/NULL, /*force_wr*/0);
10227 +       err = PTR_ERR(h_file);
10228 +       if (IS_ERR(h_file))
10229 +               goto out;
10230 +
10231 +       err = 0;
10232 +       if (!au_opt_test(au_mntflags(dentry->d_sb), UDBA_NONE)
10233 +           && !file_inode(h_file)->i_nlink)
10234 +               goto out_put;
10235 +
10236 +       do {
10237 +               arg->err = 0;
10238 +               au_fclr_testempty(arg->flags, CALLED);
10239 +               /* smp_mb(); */
10240 +               err = vfsub_iterate_dir(h_file, &arg->ctx);
10241 +               if (err >= 0)
10242 +                       err = arg->err;
10243 +       } while (!err && au_ftest_testempty(arg->flags, CALLED));
10244 +
10245 +out_put:
10246 +       fput(h_file);
10247 +       au_sbr_put(dentry->d_sb, arg->bindex);
10248 +out:
10249 +       return err;
10250 +}
10251 +
10252 +struct do_test_empty_args {
10253 +       int *errp;
10254 +       struct dentry *dentry;
10255 +       struct test_empty_arg *arg;
10256 +};
10257 +
10258 +static void call_do_test_empty(void *args)
10259 +{
10260 +       struct do_test_empty_args *a = args;
10261 +       *a->errp = do_test_empty(a->dentry, a->arg);
10262 +}
10263 +
10264 +static int sio_test_empty(struct dentry *dentry, struct test_empty_arg *arg)
10265 +{
10266 +       int err, wkq_err;
10267 +       struct dentry *h_dentry;
10268 +       struct inode *h_inode;
10269 +
10270 +       h_dentry = au_h_dptr(dentry, arg->bindex);
10271 +       h_inode = d_inode(h_dentry);
10272 +       /* todo: i_mode changes anytime? */
10273 +       inode_lock_nested(h_inode, AuLsc_I_CHILD);
10274 +       err = au_test_h_perm_sio(h_inode, MAY_EXEC | MAY_READ);
10275 +       inode_unlock(h_inode);
10276 +       if (!err)
10277 +               err = do_test_empty(dentry, arg);
10278 +       else {
10279 +               struct do_test_empty_args args = {
10280 +                       .errp   = &err,
10281 +                       .dentry = dentry,
10282 +                       .arg    = arg
10283 +               };
10284 +               unsigned int flags = arg->flags;
10285 +
10286 +               wkq_err = au_wkq_wait(call_do_test_empty, &args);
10287 +               if (unlikely(wkq_err))
10288 +                       err = wkq_err;
10289 +               arg->flags = flags;
10290 +       }
10291 +
10292 +       return err;
10293 +}
10294 +
10295 +int au_test_empty_lower(struct dentry *dentry)
10296 +{
10297 +       int err;
10298 +       unsigned int rdhash;
10299 +       aufs_bindex_t bindex, btop, btail;
10300 +       struct au_nhash whlist;
10301 +       struct test_empty_arg arg = {
10302 +               .ctx = {
10303 +                       .actor = test_empty_cb
10304 +               }
10305 +       };
10306 +       int (*test_empty)(struct dentry *dentry, struct test_empty_arg *arg);
10307 +
10308 +       SiMustAnyLock(dentry->d_sb);
10309 +
10310 +       rdhash = au_sbi(dentry->d_sb)->si_rdhash;
10311 +       if (!rdhash)
10312 +               rdhash = au_rdhash_est(au_dir_size(/*file*/NULL, dentry));
10313 +       err = au_nhash_alloc(&whlist, rdhash, GFP_NOFS);
10314 +       if (unlikely(err))
10315 +               goto out;
10316 +
10317 +       arg.flags = 0;
10318 +       arg.whlist = &whlist;
10319 +       btop = au_dbtop(dentry);
10320 +       if (au_opt_test(au_mntflags(dentry->d_sb), SHWH))
10321 +               au_fset_testempty(arg.flags, SHWH);
10322 +       test_empty = do_test_empty;
10323 +       if (au_opt_test(au_mntflags(dentry->d_sb), DIRPERM1))
10324 +               test_empty = sio_test_empty;
10325 +       arg.bindex = btop;
10326 +       err = test_empty(dentry, &arg);
10327 +       if (unlikely(err))
10328 +               goto out_whlist;
10329 +
10330 +       au_fset_testempty(arg.flags, WHONLY);
10331 +       btail = au_dbtaildir(dentry);
10332 +       for (bindex = btop + 1; !err && bindex <= btail; bindex++) {
10333 +               struct dentry *h_dentry;
10334 +
10335 +               h_dentry = au_h_dptr(dentry, bindex);
10336 +               if (h_dentry && d_is_positive(h_dentry)) {
10337 +                       arg.bindex = bindex;
10338 +                       err = test_empty(dentry, &arg);
10339 +               }
10340 +       }
10341 +
10342 +out_whlist:
10343 +       au_nhash_wh_free(&whlist);
10344 +out:
10345 +       return err;
10346 +}
10347 +
10348 +int au_test_empty(struct dentry *dentry, struct au_nhash *whlist)
10349 +{
10350 +       int err;
10351 +       struct test_empty_arg arg = {
10352 +               .ctx = {
10353 +                       .actor = test_empty_cb
10354 +               }
10355 +       };
10356 +       aufs_bindex_t bindex, btail;
10357 +
10358 +       err = 0;
10359 +       arg.whlist = whlist;
10360 +       arg.flags = AuTestEmpty_WHONLY;
10361 +       if (au_opt_test(au_mntflags(dentry->d_sb), SHWH))
10362 +               au_fset_testempty(arg.flags, SHWH);
10363 +       btail = au_dbtaildir(dentry);
10364 +       for (bindex = au_dbtop(dentry); !err && bindex <= btail; bindex++) {
10365 +               struct dentry *h_dentry;
10366 +
10367 +               h_dentry = au_h_dptr(dentry, bindex);
10368 +               if (h_dentry && d_is_positive(h_dentry)) {
10369 +                       arg.bindex = bindex;
10370 +                       err = sio_test_empty(dentry, &arg);
10371 +               }
10372 +       }
10373 +
10374 +       return err;
10375 +}
10376 +
10377 +/* ---------------------------------------------------------------------- */
10378 +
10379 +const struct file_operations aufs_dir_fop = {
10380 +       .owner          = THIS_MODULE,
10381 +       .llseek         = default_llseek,
10382 +       .read           = generic_read_dir,
10383 +       .iterate_shared = aufs_iterate_shared,
10384 +       .unlocked_ioctl = aufs_ioctl_dir,
10385 +#ifdef CONFIG_COMPAT
10386 +       .compat_ioctl   = aufs_compat_ioctl_dir,
10387 +#endif
10388 +       .open           = aufs_open_dir,
10389 +       .release        = aufs_release_dir,
10390 +       .flush          = aufs_flush_dir,
10391 +       .fsync          = aufs_fsync_dir
10392 +};
10393 diff -urN /usr/share/empty/fs/aufs/dir.h linux/fs/aufs/dir.h
10394 --- /usr/share/empty/fs/aufs/dir.h      1970-01-01 01:00:00.000000000 +0100
10395 +++ linux/fs/aufs/dir.h 2016-10-09 16:55:36.489368218 +0200
10396 @@ -0,0 +1,137 @@
10397 +/*
10398 + * Copyright (C) 2005-2016 Junjiro R. Okajima
10399 + *
10400 + * This program, aufs is free software; you can redistribute it and/or modify
10401 + * it under the terms of the GNU General Public License as published by
10402 + * the Free Software Foundation; either version 2 of the License, or
10403 + * (at your option) any later version.
10404 + *
10405 + * This program is distributed in the hope that it will be useful,
10406 + * but WITHOUT ANY WARRANTY; without even the implied warranty of
10407 + * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
10408 + * GNU General Public License for more details.
10409 + *
10410 + * You should have received a copy of the GNU General Public License
10411 + * along with this program.  If not, see <http://www.gnu.org/licenses/>.
10412 + */
10413 +
10414 +/*
10415 + * directory operations
10416 + */
10417 +
10418 +#ifndef __AUFS_DIR_H__
10419 +#define __AUFS_DIR_H__
10420 +
10421 +#ifdef __KERNEL__
10422 +
10423 +#include <linux/fs.h>
10424 +
10425 +/* ---------------------------------------------------------------------- */
10426 +
10427 +/* need to be faster and smaller */
10428 +
10429 +struct au_nhash {
10430 +       unsigned int            nh_num;
10431 +       struct hlist_head       *nh_head;
10432 +};
10433 +
10434 +struct au_vdir_destr {
10435 +       unsigned char   len;
10436 +       unsigned char   name[0];
10437 +} __packed;
10438 +
10439 +struct au_vdir_dehstr {
10440 +       struct hlist_node       hash;
10441 +       union {
10442 +               struct au_vdir_destr    *str;
10443 +               struct llist_node       lnode;  /* delayed free */
10444 +       };
10445 +} ____cacheline_aligned_in_smp;
10446 +
10447 +struct au_vdir_de {
10448 +       ino_t                   de_ino;
10449 +       unsigned char           de_type;
10450 +       /* caution: packed */
10451 +       struct au_vdir_destr    de_str;
10452 +} __packed;
10453 +
10454 +struct au_vdir_wh {
10455 +       struct hlist_node       wh_hash;
10456 +#ifdef CONFIG_AUFS_SHWH
10457 +       ino_t                   wh_ino;
10458 +       aufs_bindex_t           wh_bindex;
10459 +       unsigned char           wh_type;
10460 +#else
10461 +       aufs_bindex_t           wh_bindex;
10462 +#endif
10463 +       /* caution: packed */
10464 +       struct au_vdir_destr    wh_str;
10465 +} __packed;
10466 +
10467 +union au_vdir_deblk_p {
10468 +       unsigned char           *deblk;
10469 +       struct au_vdir_de       *de;
10470 +};
10471 +
10472 +struct au_vdir {
10473 +       unsigned char   **vd_deblk;
10474 +       unsigned long   vd_nblk;
10475 +       struct {
10476 +               unsigned long           ul;
10477 +               union au_vdir_deblk_p   p;
10478 +       } vd_last;
10479 +
10480 +       unsigned long   vd_version;
10481 +       unsigned int    vd_deblk_sz;
10482 +       union {
10483 +               unsigned long           vd_jiffy;
10484 +               struct llist_node       vd_lnode;       /* delayed free */
10485 +       };
10486 +} ____cacheline_aligned_in_smp;
10487 +
10488 +/* ---------------------------------------------------------------------- */
10489 +
10490 +/* dir.c */
10491 +extern const struct file_operations aufs_dir_fop;
10492 +void au_add_nlink(struct inode *dir, struct inode *h_dir);
10493 +void au_sub_nlink(struct inode *dir, struct inode *h_dir);
10494 +loff_t au_dir_size(struct file *file, struct dentry *dentry);
10495 +void au_dir_ts(struct inode *dir, aufs_bindex_t bsrc);
10496 +int au_test_empty_lower(struct dentry *dentry);
10497 +int au_test_empty(struct dentry *dentry, struct au_nhash *whlist);
10498 +
10499 +/* vdir.c */
10500 +unsigned int au_rdhash_est(loff_t sz);
10501 +int au_nhash_alloc(struct au_nhash *nhash, unsigned int num_hash, gfp_t gfp);
10502 +void au_nhash_wh_free(struct au_nhash *whlist);
10503 +int au_nhash_test_longer_wh(struct au_nhash *whlist, aufs_bindex_t btgt,
10504 +                           int limit);
10505 +int au_nhash_test_known_wh(struct au_nhash *whlist, char *name, int nlen);
10506 +int au_nhash_append_wh(struct au_nhash *whlist, char *name, int nlen, ino_t ino,
10507 +                      unsigned int d_type, aufs_bindex_t bindex,
10508 +                      unsigned char shwh);
10509 +void au_vdir_free(struct au_vdir *vdir, int atonce);
10510 +int au_vdir_init(struct file *file);
10511 +int au_vdir_fill_de(struct file *file, struct dir_context *ctx);
10512 +
10513 +/* ioctl.c */
10514 +long aufs_ioctl_dir(struct file *file, unsigned int cmd, unsigned long arg);
10515 +
10516 +#ifdef CONFIG_AUFS_RDU
10517 +/* rdu.c */
10518 +long au_rdu_ioctl(struct file *file, unsigned int cmd, unsigned long arg);
10519 +#ifdef CONFIG_COMPAT
10520 +long au_rdu_compat_ioctl(struct file *file, unsigned int cmd,
10521 +                        unsigned long arg);
10522 +#endif
10523 +#else
10524 +AuStub(long, au_rdu_ioctl, return -EINVAL, struct file *file,
10525 +       unsigned int cmd, unsigned long arg)
10526 +#ifdef CONFIG_COMPAT
10527 +AuStub(long, au_rdu_compat_ioctl, return -EINVAL, struct file *file,
10528 +       unsigned int cmd, unsigned long arg)
10529 +#endif
10530 +#endif
10531 +
10532 +#endif /* __KERNEL__ */
10533 +#endif /* __AUFS_DIR_H__ */
10534 diff -urN /usr/share/empty/fs/aufs/dynop.c linux/fs/aufs/dynop.c
10535 --- /usr/share/empty/fs/aufs/dynop.c    1970-01-01 01:00:00.000000000 +0100
10536 +++ linux/fs/aufs/dynop.c       2016-10-09 16:55:36.489368218 +0200
10537 @@ -0,0 +1,371 @@
10538 +/*
10539 + * Copyright (C) 2010-2016 Junjiro R. Okajima
10540 + *
10541 + * This program, aufs is free software; you can redistribute it and/or modify
10542 + * it under the terms of the GNU General Public License as published by
10543 + * the Free Software Foundation; either version 2 of the License, or
10544 + * (at your option) any later version.
10545 + *
10546 + * This program is distributed in the hope that it will be useful,
10547 + * but WITHOUT ANY WARRANTY; without even the implied warranty of
10548 + * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
10549 + * GNU General Public License for more details.
10550 + *
10551 + * You should have received a copy of the GNU General Public License
10552 + * along with this program.  If not, see <http://www.gnu.org/licenses/>.
10553 + */
10554 +
10555 +/*
10556 + * dynamically customizable operations for regular files
10557 + */
10558 +
10559 +#include "aufs.h"
10560 +
10561 +#define DyPrSym(key)   AuDbgSym(key->dk_op.dy_hop)
10562 +
10563 +/*
10564 + * How large will these lists be?
10565 + * Usually just a few elements, 20-30 at most for each, I guess.
10566 + */
10567 +static struct au_sphlhead dynop[AuDyLast];
10568 +
10569 +static struct au_dykey *dy_gfind_get(struct au_sphlhead *sphl, const void *h_op)
10570 +{
10571 +       struct au_dykey *key, *tmp;
10572 +       struct hlist_head *head;
10573 +
10574 +       key = NULL;
10575 +       head = &sphl->head;
10576 +       rcu_read_lock();
10577 +       hlist_for_each_entry_rcu(tmp, head, dk_hnode)
10578 +               if (tmp->dk_op.dy_hop == h_op) {
10579 +                       key = tmp;
10580 +                       kref_get(&key->dk_kref);
10581 +                       break;
10582 +               }
10583 +       rcu_read_unlock();
10584 +
10585 +       return key;
10586 +}
10587 +
10588 +static struct au_dykey *dy_bradd(struct au_branch *br, struct au_dykey *key)
10589 +{
10590 +       struct au_dykey **k, *found;
10591 +       const void *h_op = key->dk_op.dy_hop;
10592 +       int i;
10593 +
10594 +       found = NULL;
10595 +       k = br->br_dykey;
10596 +       for (i = 0; i < AuBrDynOp; i++)
10597 +               if (k[i]) {
10598 +                       if (k[i]->dk_op.dy_hop == h_op) {
10599 +                               found = k[i];
10600 +                               break;
10601 +                       }
10602 +               } else
10603 +                       break;
10604 +       if (!found) {
10605 +               spin_lock(&br->br_dykey_lock);
10606 +               for (; i < AuBrDynOp; i++)
10607 +                       if (k[i]) {
10608 +                               if (k[i]->dk_op.dy_hop == h_op) {
10609 +                                       found = k[i];
10610 +                                       break;
10611 +                               }
10612 +                       } else {
10613 +                               k[i] = key;
10614 +                               break;
10615 +                       }
10616 +               spin_unlock(&br->br_dykey_lock);
10617 +               BUG_ON(i == AuBrDynOp); /* expand the array */
10618 +       }
10619 +
10620 +       return found;
10621 +}
10622 +
10623 +/* kref_get() if @key is already added */
10624 +static struct au_dykey *dy_gadd(struct au_sphlhead *sphl, struct au_dykey *key)
10625 +{
10626 +       struct au_dykey *tmp, *found;
10627 +       struct hlist_head *head;
10628 +       const void *h_op = key->dk_op.dy_hop;
10629 +
10630 +       found = NULL;
10631 +       head = &sphl->head;
10632 +       spin_lock(&sphl->spin);
10633 +       hlist_for_each_entry(tmp, head, dk_hnode)
10634 +               if (tmp->dk_op.dy_hop == h_op) {
10635 +                       kref_get(&tmp->dk_kref);
10636 +                       found = tmp;
10637 +                       break;
10638 +               }
10639 +       if (!found)
10640 +               hlist_add_head_rcu(&key->dk_hnode, head);
10641 +       spin_unlock(&sphl->spin);
10642 +
10643 +       if (!found)
10644 +               DyPrSym(key);
10645 +       return found;
10646 +}
10647 +
10648 +static void dy_free_rcu(struct rcu_head *rcu)
10649 +{
10650 +       struct au_dykey *key;
10651 +
10652 +       key = container_of(rcu, struct au_dykey, dk_rcu);
10653 +       DyPrSym(key);
10654 +       kfree(key);     /* not delayed */
10655 +}
10656 +
10657 +static void dy_free(struct kref *kref)
10658 +{
10659 +       struct au_dykey *key;
10660 +       struct au_sphlhead *sphl;
10661 +
10662 +       key = container_of(kref, struct au_dykey, dk_kref);
10663 +       sphl = dynop + key->dk_op.dy_type;
10664 +       au_sphl_del_rcu(&key->dk_hnode, sphl);
10665 +       call_rcu(&key->dk_rcu, dy_free_rcu);
10666 +}
10667 +
10668 +void au_dy_put(struct au_dykey *key)
10669 +{
10670 +       kref_put(&key->dk_kref, dy_free);
10671 +}
10672 +
10673 +/* ---------------------------------------------------------------------- */
10674 +
10675 +#define DyDbgSize(cnt, op)     AuDebugOn(cnt != sizeof(op)/sizeof(void *))
10676 +
10677 +#ifdef CONFIG_AUFS_DEBUG
10678 +#define DyDbgDeclare(cnt)      unsigned int cnt = 0
10679 +#define DyDbgInc(cnt)          do { cnt++; } while (0)
10680 +#else
10681 +#define DyDbgDeclare(cnt)      do {} while (0)
10682 +#define DyDbgInc(cnt)          do {} while (0)
10683 +#endif
10684 +
10685 +#define DySet(func, dst, src, h_op, h_sb) do {                         \
10686 +       DyDbgInc(cnt);                                                  \
10687 +       if (h_op->func) {                                               \
10688 +               if (src.func)                                           \
10689 +                       dst.func = src.func;                            \
10690 +               else                                                    \
10691 +                       AuDbg("%s %s\n", au_sbtype(h_sb), #func);       \
10692 +       }                                                               \
10693 +} while (0)
10694 +
10695 +#define DySetForce(func, dst, src) do {                \
10696 +       AuDebugOn(!src.func);                   \
10697 +       DyDbgInc(cnt);                          \
10698 +       dst.func = src.func;                    \
10699 +} while (0)
10700 +
10701 +#define DySetAop(func) \
10702 +       DySet(func, dyaop->da_op, aufs_aop, h_aop, h_sb)
10703 +#define DySetAopForce(func) \
10704 +       DySetForce(func, dyaop->da_op, aufs_aop)
10705 +
10706 +static void dy_aop(struct au_dykey *key, const void *h_op,
10707 +                  struct super_block *h_sb __maybe_unused)
10708 +{
10709 +       struct au_dyaop *dyaop = (void *)key;
10710 +       const struct address_space_operations *h_aop = h_op;
10711 +       DyDbgDeclare(cnt);
10712 +
10713 +       AuDbg("%s\n", au_sbtype(h_sb));
10714 +
10715 +       DySetAop(writepage);
10716 +       DySetAopForce(readpage);        /* force */
10717 +       DySetAop(writepages);
10718 +       DySetAop(set_page_dirty);
10719 +       DySetAop(readpages);
10720 +       DySetAop(write_begin);
10721 +       DySetAop(write_end);
10722 +       DySetAop(bmap);
10723 +       DySetAop(invalidatepage);
10724 +       DySetAop(releasepage);
10725 +       DySetAop(freepage);
10726 +       /* this one will be changed according to an aufs mount option */
10727 +       DySetAop(direct_IO);
10728 +       DySetAop(migratepage);
10729 +       DySetAop(isolate_page);
10730 +       DySetAop(putback_page);
10731 +       DySetAop(launder_page);
10732 +       DySetAop(is_partially_uptodate);
10733 +       DySetAop(is_dirty_writeback);
10734 +       DySetAop(error_remove_page);
10735 +       DySetAop(swap_activate);
10736 +       DySetAop(swap_deactivate);
10737 +
10738 +       DyDbgSize(cnt, *h_aop);
10739 +}
10740 +
10741 +/* ---------------------------------------------------------------------- */
10742 +
10743 +static void dy_bug(struct kref *kref)
10744 +{
10745 +       BUG();
10746 +}
10747 +
10748 +static struct au_dykey *dy_get(struct au_dynop *op, struct au_branch *br)
10749 +{
10750 +       struct au_dykey *key, *old;
10751 +       struct au_sphlhead *sphl;
10752 +       struct op {
10753 +               unsigned int sz;
10754 +               void (*set)(struct au_dykey *key, const void *h_op,
10755 +                           struct super_block *h_sb __maybe_unused);
10756 +       };
10757 +       static const struct op a[] = {
10758 +               [AuDy_AOP] = {
10759 +                       .sz     = sizeof(struct au_dyaop),
10760 +                       .set    = dy_aop
10761 +               }
10762 +       };
10763 +       const struct op *p;
10764 +
10765 +       sphl = dynop + op->dy_type;
10766 +       key = dy_gfind_get(sphl, op->dy_hop);
10767 +       if (key)
10768 +               goto out_add; /* success */
10769 +
10770 +       p = a + op->dy_type;
10771 +       key = kzalloc(p->sz, GFP_NOFS);
10772 +       if (unlikely(!key)) {
10773 +               key = ERR_PTR(-ENOMEM);
10774 +               goto out;
10775 +       }
10776 +
10777 +       key->dk_op.dy_hop = op->dy_hop;
10778 +       kref_init(&key->dk_kref);
10779 +       p->set(key, op->dy_hop, au_br_sb(br));
10780 +       old = dy_gadd(sphl, key);
10781 +       if (old) {
10782 +               au_delayed_kfree(key);
10783 +               key = old;
10784 +       }
10785 +
10786 +out_add:
10787 +       old = dy_bradd(br, key);
10788 +       if (old)
10789 +               /* its ref-count should never be zero here */
10790 +               kref_put(&key->dk_kref, dy_bug);
10791 +out:
10792 +       return key;
10793 +}
10794 +
10795 +/* ---------------------------------------------------------------------- */
10796 +/*
10797 + * Aufs prohibits O_DIRECT by defaut even if the branch supports it.
10798 + * This behaviour is necessary to return an error from open(O_DIRECT) instead
10799 + * of the succeeding I/O. The dio mount option enables O_DIRECT and makes
10800 + * open(O_DIRECT) always succeed, but the succeeding I/O may return an error.
10801 + * See the aufs manual in detail.
10802 + */
10803 +static void dy_adx(struct au_dyaop *dyaop, int do_dx)
10804 +{
10805 +       if (!do_dx)
10806 +               dyaop->da_op.direct_IO = NULL;
10807 +       else
10808 +               dyaop->da_op.direct_IO = aufs_aop.direct_IO;
10809 +}
10810 +
10811 +static struct au_dyaop *dy_aget(struct au_branch *br,
10812 +                               const struct address_space_operations *h_aop,
10813 +                               int do_dx)
10814 +{
10815 +       struct au_dyaop *dyaop;
10816 +       struct au_dynop op;
10817 +
10818 +       op.dy_type = AuDy_AOP;
10819 +       op.dy_haop = h_aop;
10820 +       dyaop = (void *)dy_get(&op, br);
10821 +       if (IS_ERR(dyaop))
10822 +               goto out;
10823 +       dy_adx(dyaop, do_dx);
10824 +
10825 +out:
10826 +       return dyaop;
10827 +}
10828 +
10829 +int au_dy_iaop(struct inode *inode, aufs_bindex_t bindex,
10830 +               struct inode *h_inode)
10831 +{
10832 +       int err, do_dx;
10833 +       struct super_block *sb;
10834 +       struct au_branch *br;
10835 +       struct au_dyaop *dyaop;
10836 +
10837 +       AuDebugOn(!S_ISREG(h_inode->i_mode));
10838 +       IiMustWriteLock(inode);
10839 +
10840 +       sb = inode->i_sb;
10841 +       br = au_sbr(sb, bindex);
10842 +       do_dx = !!au_opt_test(au_mntflags(sb), DIO);
10843 +       dyaop = dy_aget(br, h_inode->i_mapping->a_ops, do_dx);
10844 +       err = PTR_ERR(dyaop);
10845 +       if (IS_ERR(dyaop))
10846 +               /* unnecessary to call dy_fput() */
10847 +               goto out;
10848 +
10849 +       err = 0;
10850 +       inode->i_mapping->a_ops = &dyaop->da_op;
10851 +
10852 +out:
10853 +       return err;
10854 +}
10855 +
10856 +/*
10857 + * Is it safe to replace a_ops during the inode/file is in operation?
10858 + * Yes, I hope so.
10859 + */
10860 +int au_dy_irefresh(struct inode *inode)
10861 +{
10862 +       int err;
10863 +       aufs_bindex_t btop;
10864 +       struct inode *h_inode;
10865 +
10866 +       err = 0;
10867 +       if (S_ISREG(inode->i_mode)) {
10868 +               btop = au_ibtop(inode);
10869 +               h_inode = au_h_iptr(inode, btop);
10870 +               err = au_dy_iaop(inode, btop, h_inode);
10871 +       }
10872 +       return err;
10873 +}
10874 +
10875 +void au_dy_arefresh(int do_dx)
10876 +{
10877 +       struct au_sphlhead *sphl;
10878 +       struct hlist_head *head;
10879 +       struct au_dykey *key;
10880 +
10881 +       sphl = dynop + AuDy_AOP;
10882 +       head = &sphl->head;
10883 +       spin_lock(&sphl->spin);
10884 +       hlist_for_each_entry(key, head, dk_hnode)
10885 +               dy_adx((void *)key, do_dx);
10886 +       spin_unlock(&sphl->spin);
10887 +}
10888 +
10889 +/* ---------------------------------------------------------------------- */
10890 +
10891 +void __init au_dy_init(void)
10892 +{
10893 +       int i;
10894 +
10895 +       /* make sure that 'struct au_dykey *' can be any type */
10896 +       BUILD_BUG_ON(offsetof(struct au_dyaop, da_key));
10897 +
10898 +       for (i = 0; i < AuDyLast; i++)
10899 +               au_sphl_init(dynop + i);
10900 +}
10901 +
10902 +void au_dy_fin(void)
10903 +{
10904 +       int i;
10905 +
10906 +       for (i = 0; i < AuDyLast; i++)
10907 +               WARN_ON(!hlist_empty(&dynop[i].head));
10908 +}
10909 diff -urN /usr/share/empty/fs/aufs/dynop.h linux/fs/aufs/dynop.h
10910 --- /usr/share/empty/fs/aufs/dynop.h    1970-01-01 01:00:00.000000000 +0100
10911 +++ linux/fs/aufs/dynop.h       2016-10-09 16:55:36.489368218 +0200
10912 @@ -0,0 +1,74 @@
10913 +/*
10914 + * Copyright (C) 2010-2016 Junjiro R. Okajima
10915 + *
10916 + * This program, aufs is free software; you can redistribute it and/or modify
10917 + * it under the terms of the GNU General Public License as published by
10918 + * the Free Software Foundation; either version 2 of the License, or
10919 + * (at your option) any later version.
10920 + *
10921 + * This program is distributed in the hope that it will be useful,
10922 + * but WITHOUT ANY WARRANTY; without even the implied warranty of
10923 + * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
10924 + * GNU General Public License for more details.
10925 + *
10926 + * You should have received a copy of the GNU General Public License
10927 + * along with this program.  If not, see <http://www.gnu.org/licenses/>.
10928 + */
10929 +
10930 +/*
10931 + * dynamically customizable operations (for regular files only)
10932 + */
10933 +
10934 +#ifndef __AUFS_DYNOP_H__
10935 +#define __AUFS_DYNOP_H__
10936 +
10937 +#ifdef __KERNEL__
10938 +
10939 +#include <linux/fs.h>
10940 +#include <linux/kref.h>
10941 +
10942 +enum {AuDy_AOP, AuDyLast};
10943 +
10944 +struct au_dynop {
10945 +       int                                             dy_type;
10946 +       union {
10947 +               const void                              *dy_hop;
10948 +               const struct address_space_operations   *dy_haop;
10949 +       };
10950 +};
10951 +
10952 +struct au_dykey {
10953 +       union {
10954 +               struct hlist_node       dk_hnode;
10955 +               struct rcu_head         dk_rcu;
10956 +       };
10957 +       struct au_dynop         dk_op;
10958 +
10959 +       /*
10960 +        * during I am in the branch local array, kref is gotten. when the
10961 +        * branch is removed, kref is put.
10962 +        */
10963 +       struct kref             dk_kref;
10964 +};
10965 +
10966 +/* stop unioning since their sizes are very different from each other */
10967 +struct au_dyaop {
10968 +       struct au_dykey                 da_key;
10969 +       struct address_space_operations da_op; /* not const */
10970 +};
10971 +
10972 +/* ---------------------------------------------------------------------- */
10973 +
10974 +/* dynop.c */
10975 +struct au_branch;
10976 +void au_dy_put(struct au_dykey *key);
10977 +int au_dy_iaop(struct inode *inode, aufs_bindex_t bindex,
10978 +               struct inode *h_inode);
10979 +int au_dy_irefresh(struct inode *inode);
10980 +void au_dy_arefresh(int do_dio);
10981 +
10982 +void __init au_dy_init(void);
10983 +void au_dy_fin(void);
10984 +
10985 +#endif /* __KERNEL__ */
10986 +#endif /* __AUFS_DYNOP_H__ */
10987 diff -urN /usr/share/empty/fs/aufs/export.c linux/fs/aufs/export.c
10988 --- /usr/share/empty/fs/aufs/export.c   1970-01-01 01:00:00.000000000 +0100
10989 +++ linux/fs/aufs/export.c      2016-12-17 12:28:17.595211562 +0100
10990 @@ -0,0 +1,836 @@
10991 +/*
10992 + * Copyright (C) 2005-2016 Junjiro R. Okajima
10993 + *
10994 + * This program, aufs is free software; you can redistribute it and/or modify
10995 + * it under the terms of the GNU General Public License as published by
10996 + * the Free Software Foundation; either version 2 of the License, or
10997 + * (at your option) any later version.
10998 + *
10999 + * This program is distributed in the hope that it will be useful,
11000 + * but WITHOUT ANY WARRANTY; without even the implied warranty of
11001 + * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
11002 + * GNU General Public License for more details.
11003 + *
11004 + * You should have received a copy of the GNU General Public License
11005 + * along with this program.  If not, see <http://www.gnu.org/licenses/>.
11006 + */
11007 +
11008 +/*
11009 + * export via nfs
11010 + */
11011 +
11012 +#include <linux/exportfs.h>
11013 +#include <linux/fs_struct.h>
11014 +#include <linux/namei.h>
11015 +#include <linux/nsproxy.h>
11016 +#include <linux/random.h>
11017 +#include <linux/writeback.h>
11018 +#include "aufs.h"
11019 +
11020 +union conv {
11021 +#ifdef CONFIG_AUFS_INO_T_64
11022 +       __u32 a[2];
11023 +#else
11024 +       __u32 a[1];
11025 +#endif
11026 +       ino_t ino;
11027 +};
11028 +
11029 +static ino_t decode_ino(__u32 *a)
11030 +{
11031 +       union conv u;
11032 +
11033 +       BUILD_BUG_ON(sizeof(u.ino) != sizeof(u.a));
11034 +       u.a[0] = a[0];
11035 +#ifdef CONFIG_AUFS_INO_T_64
11036 +       u.a[1] = a[1];
11037 +#endif
11038 +       return u.ino;
11039 +}
11040 +
11041 +static void encode_ino(__u32 *a, ino_t ino)
11042 +{
11043 +       union conv u;
11044 +
11045 +       u.ino = ino;
11046 +       a[0] = u.a[0];
11047 +#ifdef CONFIG_AUFS_INO_T_64
11048 +       a[1] = u.a[1];
11049 +#endif
11050 +}
11051 +
11052 +/* NFS file handle */
11053 +enum {
11054 +       Fh_br_id,
11055 +       Fh_sigen,
11056 +#ifdef CONFIG_AUFS_INO_T_64
11057 +       /* support 64bit inode number */
11058 +       Fh_ino1,
11059 +       Fh_ino2,
11060 +       Fh_dir_ino1,
11061 +       Fh_dir_ino2,
11062 +#else
11063 +       Fh_ino1,
11064 +       Fh_dir_ino1,
11065 +#endif
11066 +       Fh_igen,
11067 +       Fh_h_type,
11068 +       Fh_tail,
11069 +
11070 +       Fh_ino = Fh_ino1,
11071 +       Fh_dir_ino = Fh_dir_ino1
11072 +};
11073 +
11074 +static int au_test_anon(struct dentry *dentry)
11075 +{
11076 +       /* note: read d_flags without d_lock */
11077 +       return !!(dentry->d_flags & DCACHE_DISCONNECTED);
11078 +}
11079 +
11080 +int au_test_nfsd(void)
11081 +{
11082 +       int ret;
11083 +       struct task_struct *tsk = current;
11084 +       char comm[sizeof(tsk->comm)];
11085 +
11086 +       ret = 0;
11087 +       if (tsk->flags & PF_KTHREAD) {
11088 +               get_task_comm(comm, tsk);
11089 +               ret = !strcmp(comm, "nfsd");
11090 +       }
11091 +
11092 +       return ret;
11093 +}
11094 +
11095 +/* ---------------------------------------------------------------------- */
11096 +/* inode generation external table */
11097 +
11098 +void au_xigen_inc(struct inode *inode)
11099 +{
11100 +       loff_t pos;
11101 +       ssize_t sz;
11102 +       __u32 igen;
11103 +       struct super_block *sb;
11104 +       struct au_sbinfo *sbinfo;
11105 +
11106 +       sb = inode->i_sb;
11107 +       AuDebugOn(!au_opt_test(au_mntflags(sb), XINO));
11108 +
11109 +       sbinfo = au_sbi(sb);
11110 +       pos = inode->i_ino;
11111 +       pos *= sizeof(igen);
11112 +       igen = inode->i_generation + 1;
11113 +       sz = xino_fwrite(sbinfo->si_xwrite, sbinfo->si_xigen, &igen,
11114 +                        sizeof(igen), &pos);
11115 +       if (sz == sizeof(igen))
11116 +               return; /* success */
11117 +
11118 +       if (unlikely(sz >= 0))
11119 +               AuIOErr("xigen error (%zd)\n", sz);
11120 +}
11121 +
11122 +int au_xigen_new(struct inode *inode)
11123 +{
11124 +       int err;
11125 +       loff_t pos;
11126 +       ssize_t sz;
11127 +       struct super_block *sb;
11128 +       struct au_sbinfo *sbinfo;
11129 +       struct file *file;
11130 +
11131 +       err = 0;
11132 +       /* todo: dirty, at mount time */
11133 +       if (inode->i_ino == AUFS_ROOT_INO)
11134 +               goto out;
11135 +       sb = inode->i_sb;
11136 +       SiMustAnyLock(sb);
11137 +       if (unlikely(!au_opt_test(au_mntflags(sb), XINO)))
11138 +               goto out;
11139 +
11140 +       err = -EFBIG;
11141 +       pos = inode->i_ino;
11142 +       if (unlikely(au_loff_max / sizeof(inode->i_generation) - 1 < pos)) {
11143 +               AuIOErr1("too large i%lld\n", pos);
11144 +               goto out;
11145 +       }
11146 +       pos *= sizeof(inode->i_generation);
11147 +
11148 +       err = 0;
11149 +       sbinfo = au_sbi(sb);
11150 +       file = sbinfo->si_xigen;
11151 +       BUG_ON(!file);
11152 +
11153 +       if (vfsub_f_size_read(file)
11154 +           < pos + sizeof(inode->i_generation)) {
11155 +               inode->i_generation = atomic_inc_return(&sbinfo->si_xigen_next);
11156 +               sz = xino_fwrite(sbinfo->si_xwrite, file, &inode->i_generation,
11157 +                                sizeof(inode->i_generation), &pos);
11158 +       } else
11159 +               sz = xino_fread(sbinfo->si_xread, file, &inode->i_generation,
11160 +                               sizeof(inode->i_generation), &pos);
11161 +       if (sz == sizeof(inode->i_generation))
11162 +               goto out; /* success */
11163 +
11164 +       err = sz;
11165 +       if (unlikely(sz >= 0)) {
11166 +               err = -EIO;
11167 +               AuIOErr("xigen error (%zd)\n", sz);
11168 +       }
11169 +
11170 +out:
11171 +       return err;
11172 +}
11173 +
11174 +int au_xigen_set(struct super_block *sb, struct file *base)
11175 +{
11176 +       int err;
11177 +       struct au_sbinfo *sbinfo;
11178 +       struct file *file;
11179 +
11180 +       SiMustWriteLock(sb);
11181 +
11182 +       sbinfo = au_sbi(sb);
11183 +       file = au_xino_create2(base, sbinfo->si_xigen);
11184 +       err = PTR_ERR(file);
11185 +       if (IS_ERR(file))
11186 +               goto out;
11187 +       err = 0;
11188 +       if (sbinfo->si_xigen)
11189 +               fput(sbinfo->si_xigen);
11190 +       sbinfo->si_xigen = file;
11191 +
11192 +out:
11193 +       return err;
11194 +}
11195 +
11196 +void au_xigen_clr(struct super_block *sb)
11197 +{
11198 +       struct au_sbinfo *sbinfo;
11199 +
11200 +       SiMustWriteLock(sb);
11201 +
11202 +       sbinfo = au_sbi(sb);
11203 +       if (sbinfo->si_xigen) {
11204 +               fput(sbinfo->si_xigen);
11205 +               sbinfo->si_xigen = NULL;
11206 +       }
11207 +}
11208 +
11209 +/* ---------------------------------------------------------------------- */
11210 +
11211 +static struct dentry *decode_by_ino(struct super_block *sb, ino_t ino,
11212 +                                   ino_t dir_ino)
11213 +{
11214 +       struct dentry *dentry, *d;
11215 +       struct inode *inode;
11216 +       unsigned int sigen;
11217 +
11218 +       dentry = NULL;
11219 +       inode = ilookup(sb, ino);
11220 +       if (!inode)
11221 +               goto out;
11222 +
11223 +       dentry = ERR_PTR(-ESTALE);
11224 +       sigen = au_sigen(sb);
11225 +       if (unlikely(au_is_bad_inode(inode)
11226 +                    || IS_DEADDIR(inode)
11227 +                    || sigen != au_iigen(inode, NULL)))
11228 +               goto out_iput;
11229 +
11230 +       dentry = NULL;
11231 +       if (!dir_ino || S_ISDIR(inode->i_mode))
11232 +               dentry = d_find_alias(inode);
11233 +       else {
11234 +               spin_lock(&inode->i_lock);
11235 +               hlist_for_each_entry(d, &inode->i_dentry, d_u.d_alias) {
11236 +                       spin_lock(&d->d_lock);
11237 +                       if (!au_test_anon(d)
11238 +                           && d_inode(d->d_parent)->i_ino == dir_ino) {
11239 +                               dentry = dget_dlock(d);
11240 +                               spin_unlock(&d->d_lock);
11241 +                               break;
11242 +                       }
11243 +                       spin_unlock(&d->d_lock);
11244 +               }
11245 +               spin_unlock(&inode->i_lock);
11246 +       }
11247 +       if (unlikely(dentry && au_digen_test(dentry, sigen))) {
11248 +               /* need to refresh */
11249 +               dput(dentry);
11250 +               dentry = NULL;
11251 +       }
11252 +
11253 +out_iput:
11254 +       iput(inode);
11255 +out:
11256 +       AuTraceErrPtr(dentry);
11257 +       return dentry;
11258 +}
11259 +
11260 +/* ---------------------------------------------------------------------- */
11261 +
11262 +/* todo: dirty? */
11263 +/* if exportfs_decode_fh() passed vfsmount*, we could be happy */
11264 +
11265 +struct au_compare_mnt_args {
11266 +       /* input */
11267 +       struct super_block *sb;
11268 +
11269 +       /* output */
11270 +       struct vfsmount *mnt;
11271 +};
11272 +
11273 +static int au_compare_mnt(struct vfsmount *mnt, void *arg)
11274 +{
11275 +       struct au_compare_mnt_args *a = arg;
11276 +
11277 +       if (mnt->mnt_sb != a->sb)
11278 +               return 0;
11279 +       a->mnt = mntget(mnt);
11280 +       return 1;
11281 +}
11282 +
11283 +static struct vfsmount *au_mnt_get(struct super_block *sb)
11284 +{
11285 +       int err;
11286 +       struct path root;
11287 +       struct au_compare_mnt_args args = {
11288 +               .sb = sb
11289 +       };
11290 +
11291 +       get_fs_root(current->fs, &root);
11292 +       rcu_read_lock();
11293 +       err = iterate_mounts(au_compare_mnt, &args, root.mnt);
11294 +       rcu_read_unlock();
11295 +       path_put(&root);
11296 +       AuDebugOn(!err);
11297 +       AuDebugOn(!args.mnt);
11298 +       return args.mnt;
11299 +}
11300 +
11301 +struct au_nfsd_si_lock {
11302 +       unsigned int sigen;
11303 +       aufs_bindex_t bindex, br_id;
11304 +       unsigned char force_lock;
11305 +};
11306 +
11307 +static int si_nfsd_read_lock(struct super_block *sb,
11308 +                            struct au_nfsd_si_lock *nsi_lock)
11309 +{
11310 +       int err;
11311 +       aufs_bindex_t bindex;
11312 +
11313 +       si_read_lock(sb, AuLock_FLUSH);
11314 +
11315 +       /* branch id may be wrapped around */
11316 +       err = 0;
11317 +       bindex = au_br_index(sb, nsi_lock->br_id);
11318 +       if (bindex >= 0 && nsi_lock->sigen + AUFS_BRANCH_MAX > au_sigen(sb))
11319 +               goto out; /* success */
11320 +
11321 +       err = -ESTALE;
11322 +       bindex = -1;
11323 +       if (!nsi_lock->force_lock)
11324 +               si_read_unlock(sb);
11325 +
11326 +out:
11327 +       nsi_lock->bindex = bindex;
11328 +       return err;
11329 +}
11330 +
11331 +struct find_name_by_ino {
11332 +       struct dir_context ctx;
11333 +       int called, found;
11334 +       ino_t ino;
11335 +       char *name;
11336 +       int namelen;
11337 +};
11338 +
11339 +static int
11340 +find_name_by_ino(struct dir_context *ctx, const char *name, int namelen,
11341 +                loff_t offset, u64 ino, unsigned int d_type)
11342 +{
11343 +       struct find_name_by_ino *a = container_of(ctx, struct find_name_by_ino,
11344 +                                                 ctx);
11345 +
11346 +       a->called++;
11347 +       if (a->ino != ino)
11348 +               return 0;
11349 +
11350 +       memcpy(a->name, name, namelen);
11351 +       a->namelen = namelen;
11352 +       a->found = 1;
11353 +       return 1;
11354 +}
11355 +
11356 +static struct dentry *au_lkup_by_ino(struct path *path, ino_t ino,
11357 +                                    struct au_nfsd_si_lock *nsi_lock)
11358 +{
11359 +       struct dentry *dentry, *parent;
11360 +       struct file *file;
11361 +       struct inode *dir;
11362 +       struct find_name_by_ino arg = {
11363 +               .ctx = {
11364 +                       .actor = find_name_by_ino
11365 +               }
11366 +       };
11367 +       int err;
11368 +
11369 +       parent = path->dentry;
11370 +       if (nsi_lock)
11371 +               si_read_unlock(parent->d_sb);
11372 +       file = vfsub_dentry_open(path, au_dir_roflags);
11373 +       dentry = (void *)file;
11374 +       if (IS_ERR(file))
11375 +               goto out;
11376 +
11377 +       dentry = ERR_PTR(-ENOMEM);
11378 +       arg.name = (void *)__get_free_page(GFP_NOFS);
11379 +       if (unlikely(!arg.name))
11380 +               goto out_file;
11381 +       arg.ino = ino;
11382 +       arg.found = 0;
11383 +       do {
11384 +               arg.called = 0;
11385 +               /* smp_mb(); */
11386 +               err = vfsub_iterate_dir(file, &arg.ctx);
11387 +       } while (!err && !arg.found && arg.called);
11388 +       dentry = ERR_PTR(err);
11389 +       if (unlikely(err))
11390 +               goto out_name;
11391 +       /* instead of ENOENT */
11392 +       dentry = ERR_PTR(-ESTALE);
11393 +       if (!arg.found)
11394 +               goto out_name;
11395 +
11396 +       /* do not call vfsub_lkup_one() */
11397 +       dir = d_inode(parent);
11398 +       dentry = vfsub_lookup_one_len_unlocked(arg.name, parent, arg.namelen);
11399 +       AuTraceErrPtr(dentry);
11400 +       if (IS_ERR(dentry))
11401 +               goto out_name;
11402 +       AuDebugOn(au_test_anon(dentry));
11403 +       if (unlikely(d_really_is_negative(dentry))) {
11404 +               dput(dentry);
11405 +               dentry = ERR_PTR(-ENOENT);
11406 +       }
11407 +
11408 +out_name:
11409 +       au_delayed_free_page((unsigned long)arg.name);
11410 +out_file:
11411 +       fput(file);
11412 +out:
11413 +       if (unlikely(nsi_lock
11414 +                    && si_nfsd_read_lock(parent->d_sb, nsi_lock) < 0))
11415 +               if (!IS_ERR(dentry)) {
11416 +                       dput(dentry);
11417 +                       dentry = ERR_PTR(-ESTALE);
11418 +               }
11419 +       AuTraceErrPtr(dentry);
11420 +       return dentry;
11421 +}
11422 +
11423 +static struct dentry *decode_by_dir_ino(struct super_block *sb, ino_t ino,
11424 +                                       ino_t dir_ino,
11425 +                                       struct au_nfsd_si_lock *nsi_lock)
11426 +{
11427 +       struct dentry *dentry;
11428 +       struct path path;
11429 +
11430 +       if (dir_ino != AUFS_ROOT_INO) {
11431 +               path.dentry = decode_by_ino(sb, dir_ino, 0);
11432 +               dentry = path.dentry;
11433 +               if (!path.dentry || IS_ERR(path.dentry))
11434 +                       goto out;
11435 +               AuDebugOn(au_test_anon(path.dentry));
11436 +       } else
11437 +               path.dentry = dget(sb->s_root);
11438 +
11439 +       path.mnt = au_mnt_get(sb);
11440 +       dentry = au_lkup_by_ino(&path, ino, nsi_lock);
11441 +       path_put(&path);
11442 +
11443 +out:
11444 +       AuTraceErrPtr(dentry);
11445 +       return dentry;
11446 +}
11447 +
11448 +/* ---------------------------------------------------------------------- */
11449 +
11450 +static int h_acceptable(void *expv, struct dentry *dentry)
11451 +{
11452 +       return 1;
11453 +}
11454 +
11455 +static char *au_build_path(struct dentry *h_parent, struct path *h_rootpath,
11456 +                          char *buf, int len, struct super_block *sb)
11457 +{
11458 +       char *p;
11459 +       int n;
11460 +       struct path path;
11461 +
11462 +       p = d_path(h_rootpath, buf, len);
11463 +       if (IS_ERR(p))
11464 +               goto out;
11465 +       n = strlen(p);
11466 +
11467 +       path.mnt = h_rootpath->mnt;
11468 +       path.dentry = h_parent;
11469 +       p = d_path(&path, buf, len);
11470 +       if (IS_ERR(p))
11471 +               goto out;
11472 +       if (n != 1)
11473 +               p += n;
11474 +
11475 +       path.mnt = au_mnt_get(sb);
11476 +       path.dentry = sb->s_root;
11477 +       p = d_path(&path, buf, len - strlen(p));
11478 +       mntput(path.mnt);
11479 +       if (IS_ERR(p))
11480 +               goto out;
11481 +       if (n != 1)
11482 +               p[strlen(p)] = '/';
11483 +
11484 +out:
11485 +       AuTraceErrPtr(p);
11486 +       return p;
11487 +}
11488 +
11489 +static
11490 +struct dentry *decode_by_path(struct super_block *sb, ino_t ino, __u32 *fh,
11491 +                             int fh_len, struct au_nfsd_si_lock *nsi_lock)
11492 +{
11493 +       struct dentry *dentry, *h_parent, *root;
11494 +       struct super_block *h_sb;
11495 +       char *pathname, *p;
11496 +       struct vfsmount *h_mnt;
11497 +       struct au_branch *br;
11498 +       int err;
11499 +       struct path path;
11500 +
11501 +       br = au_sbr(sb, nsi_lock->bindex);
11502 +       h_mnt = au_br_mnt(br);
11503 +       h_sb = h_mnt->mnt_sb;
11504 +       /* todo: call lower fh_to_dentry()? fh_to_parent()? */
11505 +       lockdep_off();
11506 +       h_parent = exportfs_decode_fh(h_mnt, (void *)(fh + Fh_tail),
11507 +                                     fh_len - Fh_tail, fh[Fh_h_type],
11508 +                                     h_acceptable, /*context*/NULL);
11509 +       lockdep_on();
11510 +       dentry = h_parent;
11511 +       if (unlikely(!h_parent || IS_ERR(h_parent))) {
11512 +               AuWarn1("%s decode_fh failed, %ld\n",
11513 +                       au_sbtype(h_sb), PTR_ERR(h_parent));
11514 +               goto out;
11515 +       }
11516 +       dentry = NULL;
11517 +       if (unlikely(au_test_anon(h_parent))) {
11518 +               AuWarn1("%s decode_fh returned a disconnected dentry\n",
11519 +                       au_sbtype(h_sb));
11520 +               goto out_h_parent;
11521 +       }
11522 +
11523 +       dentry = ERR_PTR(-ENOMEM);
11524 +       pathname = (void *)__get_free_page(GFP_NOFS);
11525 +       if (unlikely(!pathname))
11526 +               goto out_h_parent;
11527 +
11528 +       root = sb->s_root;
11529 +       path.mnt = h_mnt;
11530 +       di_read_lock_parent(root, !AuLock_IR);
11531 +       path.dentry = au_h_dptr(root, nsi_lock->bindex);
11532 +       di_read_unlock(root, !AuLock_IR);
11533 +       p = au_build_path(h_parent, &path, pathname, PAGE_SIZE, sb);
11534 +       dentry = (void *)p;
11535 +       if (IS_ERR(p))
11536 +               goto out_pathname;
11537 +
11538 +       si_read_unlock(sb);
11539 +       err = vfsub_kern_path(p, LOOKUP_FOLLOW | LOOKUP_DIRECTORY, &path);
11540 +       dentry = ERR_PTR(err);
11541 +       if (unlikely(err))
11542 +               goto out_relock;
11543 +
11544 +       dentry = ERR_PTR(-ENOENT);
11545 +       AuDebugOn(au_test_anon(path.dentry));
11546 +       if (unlikely(d_really_is_negative(path.dentry)))
11547 +               goto out_path;
11548 +
11549 +       if (ino != d_inode(path.dentry)->i_ino)
11550 +               dentry = au_lkup_by_ino(&path, ino, /*nsi_lock*/NULL);
11551 +       else
11552 +               dentry = dget(path.dentry);
11553 +
11554 +out_path:
11555 +       path_put(&path);
11556 +out_relock:
11557 +       if (unlikely(si_nfsd_read_lock(sb, nsi_lock) < 0))
11558 +               if (!IS_ERR(dentry)) {
11559 +                       dput(dentry);
11560 +                       dentry = ERR_PTR(-ESTALE);
11561 +               }
11562 +out_pathname:
11563 +       au_delayed_free_page((unsigned long)pathname);
11564 +out_h_parent:
11565 +       dput(h_parent);
11566 +out:
11567 +       AuTraceErrPtr(dentry);
11568 +       return dentry;
11569 +}
11570 +
11571 +/* ---------------------------------------------------------------------- */
11572 +
11573 +static struct dentry *
11574 +aufs_fh_to_dentry(struct super_block *sb, struct fid *fid, int fh_len,
11575 +                 int fh_type)
11576 +{
11577 +       struct dentry *dentry;
11578 +       __u32 *fh = fid->raw;
11579 +       struct au_branch *br;
11580 +       ino_t ino, dir_ino;
11581 +       struct au_nfsd_si_lock nsi_lock = {
11582 +               .force_lock     = 0
11583 +       };
11584 +
11585 +       dentry = ERR_PTR(-ESTALE);
11586 +       /* it should never happen, but the file handle is unreliable */
11587 +       if (unlikely(fh_len < Fh_tail))
11588 +               goto out;
11589 +       nsi_lock.sigen = fh[Fh_sigen];
11590 +       nsi_lock.br_id = fh[Fh_br_id];
11591 +
11592 +       /* branch id may be wrapped around */
11593 +       br = NULL;
11594 +       if (unlikely(si_nfsd_read_lock(sb, &nsi_lock)))
11595 +               goto out;
11596 +       nsi_lock.force_lock = 1;
11597 +
11598 +       /* is this inode still cached? */
11599 +       ino = decode_ino(fh + Fh_ino);
11600 +       /* it should never happen */
11601 +       if (unlikely(ino == AUFS_ROOT_INO))
11602 +               goto out_unlock;
11603 +
11604 +       dir_ino = decode_ino(fh + Fh_dir_ino);
11605 +       dentry = decode_by_ino(sb, ino, dir_ino);
11606 +       if (IS_ERR(dentry))
11607 +               goto out_unlock;
11608 +       if (dentry)
11609 +               goto accept;
11610 +
11611 +       /* is the parent dir cached? */
11612 +       br = au_sbr(sb, nsi_lock.bindex);
11613 +       au_br_get(br);
11614 +       dentry = decode_by_dir_ino(sb, ino, dir_ino, &nsi_lock);
11615 +       if (IS_ERR(dentry))
11616 +               goto out_unlock;
11617 +       if (dentry)
11618 +               goto accept;
11619 +
11620 +       /* lookup path */
11621 +       dentry = decode_by_path(sb, ino, fh, fh_len, &nsi_lock);
11622 +       if (IS_ERR(dentry))
11623 +               goto out_unlock;
11624 +       if (unlikely(!dentry))
11625 +               /* todo?: make it ESTALE */
11626 +               goto out_unlock;
11627 +
11628 +accept:
11629 +       if (!au_digen_test(dentry, au_sigen(sb))
11630 +           && d_inode(dentry)->i_generation == fh[Fh_igen])
11631 +               goto out_unlock; /* success */
11632 +
11633 +       dput(dentry);
11634 +       dentry = ERR_PTR(-ESTALE);
11635 +out_unlock:
11636 +       if (br)
11637 +               au_br_put(br);
11638 +       si_read_unlock(sb);
11639 +out:
11640 +       AuTraceErrPtr(dentry);
11641 +       return dentry;
11642 +}
11643 +
11644 +#if 0 /* reserved for future use */
11645 +/* support subtreecheck option */
11646 +static struct dentry *aufs_fh_to_parent(struct super_block *sb, struct fid *fid,
11647 +                                       int fh_len, int fh_type)
11648 +{
11649 +       struct dentry *parent;
11650 +       __u32 *fh = fid->raw;
11651 +       ino_t dir_ino;
11652 +
11653 +       dir_ino = decode_ino(fh + Fh_dir_ino);
11654 +       parent = decode_by_ino(sb, dir_ino, 0);
11655 +       if (IS_ERR(parent))
11656 +               goto out;
11657 +       if (!parent)
11658 +               parent = decode_by_path(sb, au_br_index(sb, fh[Fh_br_id]),
11659 +                                       dir_ino, fh, fh_len);
11660 +
11661 +out:
11662 +       AuTraceErrPtr(parent);
11663 +       return parent;
11664 +}
11665 +#endif
11666 +
11667 +/* ---------------------------------------------------------------------- */
11668 +
11669 +static int aufs_encode_fh(struct inode *inode, __u32 *fh, int *max_len,
11670 +                         struct inode *dir)
11671 +{
11672 +       int err;
11673 +       aufs_bindex_t bindex;
11674 +       struct super_block *sb, *h_sb;
11675 +       struct dentry *dentry, *parent, *h_parent;
11676 +       struct inode *h_dir;
11677 +       struct au_branch *br;
11678 +
11679 +       err = -ENOSPC;
11680 +       if (unlikely(*max_len <= Fh_tail)) {
11681 +               AuWarn1("NFSv2 client (max_len %d)?\n", *max_len);
11682 +               goto out;
11683 +       }
11684 +
11685 +       err = FILEID_ROOT;
11686 +       if (inode->i_ino == AUFS_ROOT_INO) {
11687 +               AuDebugOn(inode->i_ino != AUFS_ROOT_INO);
11688 +               goto out;
11689 +       }
11690 +
11691 +       h_parent = NULL;
11692 +       sb = inode->i_sb;
11693 +       err = si_read_lock(sb, AuLock_FLUSH);
11694 +       if (unlikely(err))
11695 +               goto out;
11696 +
11697 +#ifdef CONFIG_AUFS_DEBUG
11698 +       if (unlikely(!au_opt_test(au_mntflags(sb), XINO)))
11699 +               AuWarn1("NFS-exporting requires xino\n");
11700 +#endif
11701 +       err = -EIO;
11702 +       parent = NULL;
11703 +       ii_read_lock_child(inode);
11704 +       bindex = au_ibtop(inode);
11705 +       if (!dir) {
11706 +               dentry = d_find_any_alias(inode);
11707 +               if (unlikely(!dentry))
11708 +                       goto out_unlock;
11709 +               AuDebugOn(au_test_anon(dentry));
11710 +               parent = dget_parent(dentry);
11711 +               dput(dentry);
11712 +               if (unlikely(!parent))
11713 +                       goto out_unlock;
11714 +               if (d_really_is_positive(parent))
11715 +                       dir = d_inode(parent);
11716 +       }
11717 +
11718 +       ii_read_lock_parent(dir);
11719 +       h_dir = au_h_iptr(dir, bindex);
11720 +       ii_read_unlock(dir);
11721 +       if (unlikely(!h_dir))
11722 +               goto out_parent;
11723 +       h_parent = d_find_any_alias(h_dir);
11724 +       if (unlikely(!h_parent))
11725 +               goto out_hparent;
11726 +
11727 +       err = -EPERM;
11728 +       br = au_sbr(sb, bindex);
11729 +       h_sb = au_br_sb(br);
11730 +       if (unlikely(!h_sb->s_export_op)) {
11731 +               AuErr1("%s branch is not exportable\n", au_sbtype(h_sb));
11732 +               goto out_hparent;
11733 +       }
11734 +
11735 +       fh[Fh_br_id] = br->br_id;
11736 +       fh[Fh_sigen] = au_sigen(sb);
11737 +       encode_ino(fh + Fh_ino, inode->i_ino);
11738 +       encode_ino(fh + Fh_dir_ino, dir->i_ino);
11739 +       fh[Fh_igen] = inode->i_generation;
11740 +
11741 +       *max_len -= Fh_tail;
11742 +       fh[Fh_h_type] = exportfs_encode_fh(h_parent, (void *)(fh + Fh_tail),
11743 +                                          max_len,
11744 +                                          /*connectable or subtreecheck*/0);
11745 +       err = fh[Fh_h_type];
11746 +       *max_len += Fh_tail;
11747 +       /* todo: macros? */
11748 +       if (err != FILEID_INVALID)
11749 +               err = 99;
11750 +       else
11751 +               AuWarn1("%s encode_fh failed\n", au_sbtype(h_sb));
11752 +
11753 +out_hparent:
11754 +       dput(h_parent);
11755 +out_parent:
11756 +       dput(parent);
11757 +out_unlock:
11758 +       ii_read_unlock(inode);
11759 +       si_read_unlock(sb);
11760 +out:
11761 +       if (unlikely(err < 0))
11762 +               err = FILEID_INVALID;
11763 +       return err;
11764 +}
11765 +
11766 +/* ---------------------------------------------------------------------- */
11767 +
11768 +static int aufs_commit_metadata(struct inode *inode)
11769 +{
11770 +       int err;
11771 +       aufs_bindex_t bindex;
11772 +       struct super_block *sb;
11773 +       struct inode *h_inode;
11774 +       int (*f)(struct inode *inode);
11775 +
11776 +       sb = inode->i_sb;
11777 +       si_read_lock(sb, AuLock_FLUSH | AuLock_NOPLMW);
11778 +       ii_write_lock_child(inode);
11779 +       bindex = au_ibtop(inode);
11780 +       AuDebugOn(bindex < 0);
11781 +       h_inode = au_h_iptr(inode, bindex);
11782 +
11783 +       f = h_inode->i_sb->s_export_op->commit_metadata;
11784 +       if (f)
11785 +               err = f(h_inode);
11786 +       else {
11787 +               struct writeback_control wbc = {
11788 +                       .sync_mode      = WB_SYNC_ALL,
11789 +                       .nr_to_write    = 0 /* metadata only */
11790 +               };
11791 +
11792 +               err = sync_inode(h_inode, &wbc);
11793 +       }
11794 +
11795 +       au_cpup_attr_timesizes(inode);
11796 +       ii_write_unlock(inode);
11797 +       si_read_unlock(sb);
11798 +       return err;
11799 +}
11800 +
11801 +/* ---------------------------------------------------------------------- */
11802 +
11803 +static struct export_operations aufs_export_op = {
11804 +       .fh_to_dentry           = aufs_fh_to_dentry,
11805 +       /* .fh_to_parent        = aufs_fh_to_parent, */
11806 +       .encode_fh              = aufs_encode_fh,
11807 +       .commit_metadata        = aufs_commit_metadata
11808 +};
11809 +
11810 +void au_export_init(struct super_block *sb)
11811 +{
11812 +       struct au_sbinfo *sbinfo;
11813 +       __u32 u;
11814 +
11815 +       BUILD_BUG_ON_MSG(IS_BUILTIN(CONFIG_AUFS_FS)
11816 +                        && IS_MODULE(CONFIG_EXPORTFS),
11817 +                        AUFS_NAME ": unsupported configuration "
11818 +                        "CONFIG_EXPORTFS=m and CONFIG_AUFS_FS=y");
11819 +
11820 +       sb->s_export_op = &aufs_export_op;
11821 +       sbinfo = au_sbi(sb);
11822 +       sbinfo->si_xigen = NULL;
11823 +       get_random_bytes(&u, sizeof(u));
11824 +       BUILD_BUG_ON(sizeof(u) != sizeof(int));
11825 +       atomic_set(&sbinfo->si_xigen_next, u);
11826 +}
11827 diff -urN /usr/share/empty/fs/aufs/fhsm.c linux/fs/aufs/fhsm.c
11828 --- /usr/share/empty/fs/aufs/fhsm.c     1970-01-01 01:00:00.000000000 +0100
11829 +++ linux/fs/aufs/fhsm.c        2016-10-09 16:55:36.489368218 +0200
11830 @@ -0,0 +1,426 @@
11831 +/*
11832 + * Copyright (C) 2011-2016 Junjiro R. Okajima
11833 + *
11834 + * This program, aufs is free software; you can redistribute it and/or modify
11835 + * it under the terms of the GNU General Public License as published by
11836 + * the Free Software Foundation; either version 2 of the License, or
11837 + * (at your option) any later version.
11838 + *
11839 + * This program is distributed in the hope that it will be useful,
11840 + * but WITHOUT ANY WARRANTY; without even the implied warranty of
11841 + * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
11842 + * GNU General Public License for more details.
11843 + *
11844 + * You should have received a copy of the GNU General Public License
11845 + * along with this program; if not, write to the Free Software
11846 + * Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA  02110-1301  USA
11847 + */
11848 +
11849 +/*
11850 + * File-based Hierarchy Storage Management
11851 + */
11852 +
11853 +#include <linux/anon_inodes.h>
11854 +#include <linux/poll.h>
11855 +#include <linux/seq_file.h>
11856 +#include <linux/statfs.h>
11857 +#include "aufs.h"
11858 +
11859 +static aufs_bindex_t au_fhsm_bottom(struct super_block *sb)
11860 +{
11861 +       struct au_sbinfo *sbinfo;
11862 +       struct au_fhsm *fhsm;
11863 +
11864 +       SiMustAnyLock(sb);
11865 +
11866 +       sbinfo = au_sbi(sb);
11867 +       fhsm = &sbinfo->si_fhsm;
11868 +       AuDebugOn(!fhsm);
11869 +       return fhsm->fhsm_bottom;
11870 +}
11871 +
11872 +void au_fhsm_set_bottom(struct super_block *sb, aufs_bindex_t bindex)
11873 +{
11874 +       struct au_sbinfo *sbinfo;
11875 +       struct au_fhsm *fhsm;
11876 +
11877 +       SiMustWriteLock(sb);
11878 +
11879 +       sbinfo = au_sbi(sb);
11880 +       fhsm = &sbinfo->si_fhsm;
11881 +       AuDebugOn(!fhsm);
11882 +       fhsm->fhsm_bottom = bindex;
11883 +}
11884 +
11885 +/* ---------------------------------------------------------------------- */
11886 +
11887 +static int au_fhsm_test_jiffy(struct au_sbinfo *sbinfo, struct au_branch *br)
11888 +{
11889 +       struct au_br_fhsm *bf;
11890 +
11891 +       bf = br->br_fhsm;
11892 +       MtxMustLock(&bf->bf_lock);
11893 +
11894 +       return !bf->bf_readable
11895 +               || time_after(jiffies,
11896 +                             bf->bf_jiffy + sbinfo->si_fhsm.fhsm_expire);
11897 +}
11898 +
11899 +/* ---------------------------------------------------------------------- */
11900 +
11901 +static void au_fhsm_notify(struct super_block *sb, int val)
11902 +{
11903 +       struct au_sbinfo *sbinfo;
11904 +       struct au_fhsm *fhsm;
11905 +
11906 +       SiMustAnyLock(sb);
11907 +
11908 +       sbinfo = au_sbi(sb);
11909 +       fhsm = &sbinfo->si_fhsm;
11910 +       if (au_fhsm_pid(fhsm)
11911 +           && atomic_read(&fhsm->fhsm_readable) != -1) {
11912 +               atomic_set(&fhsm->fhsm_readable, val);
11913 +               if (val)
11914 +                       wake_up(&fhsm->fhsm_wqh);
11915 +       }
11916 +}
11917 +
11918 +static int au_fhsm_stfs(struct super_block *sb, aufs_bindex_t bindex,
11919 +                       struct aufs_stfs *rstfs, int do_lock, int do_notify)
11920 +{
11921 +       int err;
11922 +       struct au_branch *br;
11923 +       struct au_br_fhsm *bf;
11924 +
11925 +       br = au_sbr(sb, bindex);
11926 +       AuDebugOn(au_br_rdonly(br));
11927 +       bf = br->br_fhsm;
11928 +       AuDebugOn(!bf);
11929 +
11930 +       if (do_lock)
11931 +               mutex_lock(&bf->bf_lock);
11932 +       else
11933 +               MtxMustLock(&bf->bf_lock);
11934 +
11935 +       /* sb->s_root for NFS is unreliable */
11936 +       err = au_br_stfs(br, &bf->bf_stfs);
11937 +       if (unlikely(err)) {
11938 +               AuErr1("FHSM failed (%d), b%d, ignored.\n", bindex, err);
11939 +               goto out;
11940 +       }
11941 +
11942 +       bf->bf_jiffy = jiffies;
11943 +       bf->bf_readable = 1;
11944 +       if (do_notify)
11945 +               au_fhsm_notify(sb, /*val*/1);
11946 +       if (rstfs)
11947 +               *rstfs = bf->bf_stfs;
11948 +
11949 +out:
11950 +       if (do_lock)
11951 +               mutex_unlock(&bf->bf_lock);
11952 +       au_fhsm_notify(sb, /*val*/1);
11953 +
11954 +       return err;
11955 +}
11956 +
11957 +void au_fhsm_wrote(struct super_block *sb, aufs_bindex_t bindex, int force)
11958 +{
11959 +       int err;
11960 +       struct au_sbinfo *sbinfo;
11961 +       struct au_fhsm *fhsm;
11962 +       struct au_branch *br;
11963 +       struct au_br_fhsm *bf;
11964 +
11965 +       AuDbg("b%d, force %d\n", bindex, force);
11966 +       SiMustAnyLock(sb);
11967 +
11968 +       sbinfo = au_sbi(sb);
11969 +       fhsm = &sbinfo->si_fhsm;
11970 +       if (!au_ftest_si(sbinfo, FHSM)
11971 +           || fhsm->fhsm_bottom == bindex)
11972 +               return;
11973 +
11974 +       br = au_sbr(sb, bindex);
11975 +       bf = br->br_fhsm;
11976 +       AuDebugOn(!bf);
11977 +       mutex_lock(&bf->bf_lock);
11978 +       if (force
11979 +           || au_fhsm_pid(fhsm)
11980 +           || au_fhsm_test_jiffy(sbinfo, br))
11981 +               err = au_fhsm_stfs(sb, bindex, /*rstfs*/NULL, /*do_lock*/0,
11982 +                                 /*do_notify*/1);
11983 +       mutex_unlock(&bf->bf_lock);
11984 +}
11985 +
11986 +void au_fhsm_wrote_all(struct super_block *sb, int force)
11987 +{
11988 +       aufs_bindex_t bindex, bbot;
11989 +       struct au_branch *br;
11990 +
11991 +       /* exclude the bottom */
11992 +       bbot = au_fhsm_bottom(sb);
11993 +       for (bindex = 0; bindex < bbot; bindex++) {
11994 +               br = au_sbr(sb, bindex);
11995 +               if (au_br_fhsm(br->br_perm))
11996 +                       au_fhsm_wrote(sb, bindex, force);
11997 +       }
11998 +}
11999 +
12000 +/* ---------------------------------------------------------------------- */
12001 +
12002 +static unsigned int au_fhsm_poll(struct file *file,
12003 +                                struct poll_table_struct *wait)
12004 +{
12005 +       unsigned int mask;
12006 +       struct au_sbinfo *sbinfo;
12007 +       struct au_fhsm *fhsm;
12008 +
12009 +       mask = 0;
12010 +       sbinfo = file->private_data;
12011 +       fhsm = &sbinfo->si_fhsm;
12012 +       poll_wait(file, &fhsm->fhsm_wqh, wait);
12013 +       if (atomic_read(&fhsm->fhsm_readable))
12014 +               mask = POLLIN /* | POLLRDNORM */;
12015 +
12016 +       AuTraceErr((int)mask);
12017 +       return mask;
12018 +}
12019 +
12020 +static int au_fhsm_do_read_one(struct aufs_stbr __user *stbr,
12021 +                             struct aufs_stfs *stfs, __s16 brid)
12022 +{
12023 +       int err;
12024 +
12025 +       err = copy_to_user(&stbr->stfs, stfs, sizeof(*stfs));
12026 +       if (!err)
12027 +               err = __put_user(brid, &stbr->brid);
12028 +       if (unlikely(err))
12029 +               err = -EFAULT;
12030 +
12031 +       return err;
12032 +}
12033 +
12034 +static ssize_t au_fhsm_do_read(struct super_block *sb,
12035 +                              struct aufs_stbr __user *stbr, size_t count)
12036 +{
12037 +       ssize_t err;
12038 +       int nstbr;
12039 +       aufs_bindex_t bindex, bbot;
12040 +       struct au_branch *br;
12041 +       struct au_br_fhsm *bf;
12042 +
12043 +       /* except the bottom branch */
12044 +       err = 0;
12045 +       nstbr = 0;
12046 +       bbot = au_fhsm_bottom(sb);
12047 +       for (bindex = 0; !err && bindex < bbot; bindex++) {
12048 +               br = au_sbr(sb, bindex);
12049 +               if (!au_br_fhsm(br->br_perm))
12050 +                       continue;
12051 +
12052 +               bf = br->br_fhsm;
12053 +               mutex_lock(&bf->bf_lock);
12054 +               if (bf->bf_readable) {
12055 +                       err = -EFAULT;
12056 +                       if (count >= sizeof(*stbr))
12057 +                               err = au_fhsm_do_read_one(stbr++, &bf->bf_stfs,
12058 +                                                         br->br_id);
12059 +                       if (!err) {
12060 +                               bf->bf_readable = 0;
12061 +                               count -= sizeof(*stbr);
12062 +                               nstbr++;
12063 +                       }
12064 +               }
12065 +               mutex_unlock(&bf->bf_lock);
12066 +       }
12067 +       if (!err)
12068 +               err = sizeof(*stbr) * nstbr;
12069 +
12070 +       return err;
12071 +}
12072 +
12073 +static ssize_t au_fhsm_read(struct file *file, char __user *buf, size_t count,
12074 +                          loff_t *pos)
12075 +{
12076 +       ssize_t err;
12077 +       int readable;
12078 +       aufs_bindex_t nfhsm, bindex, bbot;
12079 +       struct au_sbinfo *sbinfo;
12080 +       struct au_fhsm *fhsm;
12081 +       struct au_branch *br;
12082 +       struct super_block *sb;
12083 +
12084 +       err = 0;
12085 +       sbinfo = file->private_data;
12086 +       fhsm = &sbinfo->si_fhsm;
12087 +need_data:
12088 +       spin_lock_irq(&fhsm->fhsm_wqh.lock);
12089 +       if (!atomic_read(&fhsm->fhsm_readable)) {
12090 +               if (vfsub_file_flags(file) & O_NONBLOCK)
12091 +                       err = -EAGAIN;
12092 +               else
12093 +                       err = wait_event_interruptible_locked_irq
12094 +                               (fhsm->fhsm_wqh,
12095 +                                atomic_read(&fhsm->fhsm_readable));
12096 +       }
12097 +       spin_unlock_irq(&fhsm->fhsm_wqh.lock);
12098 +       if (unlikely(err))
12099 +               goto out;
12100 +
12101 +       /* sb may already be dead */
12102 +       au_rw_read_lock(&sbinfo->si_rwsem);
12103 +       readable = atomic_read(&fhsm->fhsm_readable);
12104 +       if (readable > 0) {
12105 +               sb = sbinfo->si_sb;
12106 +               AuDebugOn(!sb);
12107 +               /* exclude the bottom branch */
12108 +               nfhsm = 0;
12109 +               bbot = au_fhsm_bottom(sb);
12110 +               for (bindex = 0; bindex < bbot; bindex++) {
12111 +                       br = au_sbr(sb, bindex);
12112 +                       if (au_br_fhsm(br->br_perm))
12113 +                               nfhsm++;
12114 +               }
12115 +               err = -EMSGSIZE;
12116 +               if (nfhsm * sizeof(struct aufs_stbr) <= count) {
12117 +                       atomic_set(&fhsm->fhsm_readable, 0);
12118 +                       err = au_fhsm_do_read(sbinfo->si_sb, (void __user *)buf,
12119 +                                            count);
12120 +               }
12121 +       }
12122 +       au_rw_read_unlock(&sbinfo->si_rwsem);
12123 +       if (!readable)
12124 +               goto need_data;
12125 +
12126 +out:
12127 +       return err;
12128 +}
12129 +
12130 +static int au_fhsm_release(struct inode *inode, struct file *file)
12131 +{
12132 +       struct au_sbinfo *sbinfo;
12133 +       struct au_fhsm *fhsm;
12134 +
12135 +       /* sb may already be dead */
12136 +       sbinfo = file->private_data;
12137 +       fhsm = &sbinfo->si_fhsm;
12138 +       spin_lock(&fhsm->fhsm_spin);
12139 +       fhsm->fhsm_pid = 0;
12140 +       spin_unlock(&fhsm->fhsm_spin);
12141 +       kobject_put(&sbinfo->si_kobj);
12142 +
12143 +       return 0;
12144 +}
12145 +
12146 +static const struct file_operations au_fhsm_fops = {
12147 +       .owner          = THIS_MODULE,
12148 +       .llseek         = noop_llseek,
12149 +       .read           = au_fhsm_read,
12150 +       .poll           = au_fhsm_poll,
12151 +       .release        = au_fhsm_release
12152 +};
12153 +
12154 +int au_fhsm_fd(struct super_block *sb, int oflags)
12155 +{
12156 +       int err, fd;
12157 +       struct au_sbinfo *sbinfo;
12158 +       struct au_fhsm *fhsm;
12159 +
12160 +       err = -EPERM;
12161 +       if (unlikely(!capable(CAP_SYS_ADMIN)))
12162 +               goto out;
12163 +
12164 +       err = -EINVAL;
12165 +       if (unlikely(oflags & ~(O_CLOEXEC | O_NONBLOCK)))
12166 +               goto out;
12167 +
12168 +       err = 0;
12169 +       sbinfo = au_sbi(sb);
12170 +       fhsm = &sbinfo->si_fhsm;
12171 +       spin_lock(&fhsm->fhsm_spin);
12172 +       if (!fhsm->fhsm_pid)
12173 +               fhsm->fhsm_pid = current->pid;
12174 +       else
12175 +               err = -EBUSY;
12176 +       spin_unlock(&fhsm->fhsm_spin);
12177 +       if (unlikely(err))
12178 +               goto out;
12179 +
12180 +       oflags |= O_RDONLY;
12181 +       /* oflags |= FMODE_NONOTIFY; */
12182 +       fd = anon_inode_getfd("[aufs_fhsm]", &au_fhsm_fops, sbinfo, oflags);
12183 +       err = fd;
12184 +       if (unlikely(fd < 0))
12185 +               goto out_pid;
12186 +
12187 +       /* succeed reglardless 'fhsm' status */
12188 +       kobject_get(&sbinfo->si_kobj);
12189 +       si_noflush_read_lock(sb);
12190 +       if (au_ftest_si(sbinfo, FHSM))
12191 +               au_fhsm_wrote_all(sb, /*force*/0);
12192 +       si_read_unlock(sb);
12193 +       goto out; /* success */
12194 +
12195 +out_pid:
12196 +       spin_lock(&fhsm->fhsm_spin);
12197 +       fhsm->fhsm_pid = 0;
12198 +       spin_unlock(&fhsm->fhsm_spin);
12199 +out:
12200 +       AuTraceErr(err);
12201 +       return err;
12202 +}
12203 +
12204 +/* ---------------------------------------------------------------------- */
12205 +
12206 +int au_fhsm_br_alloc(struct au_branch *br)
12207 +{
12208 +       int err;
12209 +
12210 +       err = 0;
12211 +       br->br_fhsm = kmalloc(sizeof(*br->br_fhsm), GFP_NOFS);
12212 +       if (br->br_fhsm)
12213 +               au_br_fhsm_init(br->br_fhsm);
12214 +       else
12215 +               err = -ENOMEM;
12216 +
12217 +       return err;
12218 +}
12219 +
12220 +/* ---------------------------------------------------------------------- */
12221 +
12222 +void au_fhsm_fin(struct super_block *sb)
12223 +{
12224 +       au_fhsm_notify(sb, /*val*/-1);
12225 +}
12226 +
12227 +void au_fhsm_init(struct au_sbinfo *sbinfo)
12228 +{
12229 +       struct au_fhsm *fhsm;
12230 +
12231 +       fhsm = &sbinfo->si_fhsm;
12232 +       spin_lock_init(&fhsm->fhsm_spin);
12233 +       init_waitqueue_head(&fhsm->fhsm_wqh);
12234 +       atomic_set(&fhsm->fhsm_readable, 0);
12235 +       fhsm->fhsm_expire
12236 +               = msecs_to_jiffies(AUFS_FHSM_CACHE_DEF_SEC * MSEC_PER_SEC);
12237 +       fhsm->fhsm_bottom = -1;
12238 +}
12239 +
12240 +void au_fhsm_set(struct au_sbinfo *sbinfo, unsigned int sec)
12241 +{
12242 +       sbinfo->si_fhsm.fhsm_expire
12243 +               = msecs_to_jiffies(sec * MSEC_PER_SEC);
12244 +}
12245 +
12246 +void au_fhsm_show(struct seq_file *seq, struct au_sbinfo *sbinfo)
12247 +{
12248 +       unsigned int u;
12249 +
12250 +       if (!au_ftest_si(sbinfo, FHSM))
12251 +               return;
12252 +
12253 +       u = jiffies_to_msecs(sbinfo->si_fhsm.fhsm_expire) / MSEC_PER_SEC;
12254 +       if (u != AUFS_FHSM_CACHE_DEF_SEC)
12255 +               seq_printf(seq, ",fhsm_sec=%u", u);
12256 +}
12257 diff -urN /usr/share/empty/fs/aufs/file.c linux/fs/aufs/file.c
12258 --- /usr/share/empty/fs/aufs/file.c     1970-01-01 01:00:00.000000000 +0100
12259 +++ linux/fs/aufs/file.c        2016-10-09 16:55:38.889431135 +0200
12260 @@ -0,0 +1,857 @@
12261 +/*
12262 + * Copyright (C) 2005-2016 Junjiro R. Okajima
12263 + *
12264 + * This program, aufs is free software; you can redistribute it and/or modify
12265 + * it under the terms of the GNU General Public License as published by
12266 + * the Free Software Foundation; either version 2 of the License, or
12267 + * (at your option) any later version.
12268 + *
12269 + * This program is distributed in the hope that it will be useful,
12270 + * but WITHOUT ANY WARRANTY; without even the implied warranty of
12271 + * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
12272 + * GNU General Public License for more details.
12273 + *
12274 + * You should have received a copy of the GNU General Public License
12275 + * along with this program.  If not, see <http://www.gnu.org/licenses/>.
12276 + */
12277 +
12278 +/*
12279 + * handling file/dir, and address_space operation
12280 + */
12281 +
12282 +#ifdef CONFIG_AUFS_DEBUG
12283 +#include <linux/migrate.h>
12284 +#endif
12285 +#include <linux/pagemap.h>
12286 +#include "aufs.h"
12287 +
12288 +/* drop flags for writing */
12289 +unsigned int au_file_roflags(unsigned int flags)
12290 +{
12291 +       flags &= ~(O_WRONLY | O_RDWR | O_APPEND | O_CREAT | O_TRUNC);
12292 +       flags |= O_RDONLY | O_NOATIME;
12293 +       return flags;
12294 +}
12295 +
12296 +/* common functions to regular file and dir */
12297 +struct file *au_h_open(struct dentry *dentry, aufs_bindex_t bindex, int flags,
12298 +                      struct file *file, int force_wr)
12299 +{
12300 +       struct file *h_file;
12301 +       struct dentry *h_dentry;
12302 +       struct inode *h_inode;
12303 +       struct super_block *sb;
12304 +       struct au_branch *br;
12305 +       struct path h_path;
12306 +       int err;
12307 +
12308 +       /* a race condition can happen between open and unlink/rmdir */
12309 +       h_file = ERR_PTR(-ENOENT);
12310 +       h_dentry = au_h_dptr(dentry, bindex);
12311 +       if (au_test_nfsd() && (!h_dentry || d_is_negative(h_dentry)))
12312 +               goto out;
12313 +       h_inode = d_inode(h_dentry);
12314 +       spin_lock(&h_dentry->d_lock);
12315 +       err = (!d_unhashed(dentry) && d_unlinked(h_dentry))
12316 +               /* || !d_inode(dentry)->i_nlink */
12317 +               ;
12318 +       spin_unlock(&h_dentry->d_lock);
12319 +       if (unlikely(err))
12320 +               goto out;
12321 +
12322 +       sb = dentry->d_sb;
12323 +       br = au_sbr(sb, bindex);
12324 +       err = au_br_test_oflag(flags, br);
12325 +       h_file = ERR_PTR(err);
12326 +       if (unlikely(err))
12327 +               goto out;
12328 +
12329 +       /* drop flags for writing */
12330 +       if (au_test_ro(sb, bindex, d_inode(dentry))) {
12331 +               if (force_wr && !(flags & O_WRONLY))
12332 +                       force_wr = 0;
12333 +               flags = au_file_roflags(flags);
12334 +               if (force_wr) {
12335 +                       h_file = ERR_PTR(-EROFS);
12336 +                       flags = au_file_roflags(flags);
12337 +                       if (unlikely(vfsub_native_ro(h_inode)
12338 +                                    || IS_APPEND(h_inode)))
12339 +                               goto out;
12340 +                       flags &= ~O_ACCMODE;
12341 +                       flags |= O_WRONLY;
12342 +               }
12343 +       }
12344 +       flags &= ~O_CREAT;
12345 +       au_br_get(br);
12346 +       h_path.dentry = h_dentry;
12347 +       h_path.mnt = au_br_mnt(br);
12348 +       h_file = vfsub_dentry_open(&h_path, flags);
12349 +       if (IS_ERR(h_file))
12350 +               goto out_br;
12351 +
12352 +       if (flags & __FMODE_EXEC) {
12353 +               err = deny_write_access(h_file);
12354 +               if (unlikely(err)) {
12355 +                       fput(h_file);
12356 +                       h_file = ERR_PTR(err);
12357 +                       goto out_br;
12358 +               }
12359 +       }
12360 +       fsnotify_open(h_file);
12361 +       goto out; /* success */
12362 +
12363 +out_br:
12364 +       au_br_put(br);
12365 +out:
12366 +       return h_file;
12367 +}
12368 +
12369 +static int au_cmoo(struct dentry *dentry)
12370 +{
12371 +       int err, cmoo;
12372 +       unsigned int udba;
12373 +       struct path h_path;
12374 +       struct au_pin pin;
12375 +       struct au_cp_generic cpg = {
12376 +               .dentry = dentry,
12377 +               .bdst   = -1,
12378 +               .bsrc   = -1,
12379 +               .len    = -1,
12380 +               .pin    = &pin,
12381 +               .flags  = AuCpup_DTIME | AuCpup_HOPEN
12382 +       };
12383 +       struct inode *delegated;
12384 +       struct super_block *sb;
12385 +       struct au_sbinfo *sbinfo;
12386 +       struct au_fhsm *fhsm;
12387 +       pid_t pid;
12388 +       struct au_branch *br;
12389 +       struct dentry *parent;
12390 +       struct au_hinode *hdir;
12391 +
12392 +       DiMustWriteLock(dentry);
12393 +       IiMustWriteLock(d_inode(dentry));
12394 +
12395 +       err = 0;
12396 +       if (IS_ROOT(dentry))
12397 +               goto out;
12398 +       cpg.bsrc = au_dbtop(dentry);
12399 +       if (!cpg.bsrc)
12400 +               goto out;
12401 +
12402 +       sb = dentry->d_sb;
12403 +       sbinfo = au_sbi(sb);
12404 +       fhsm = &sbinfo->si_fhsm;
12405 +       pid = au_fhsm_pid(fhsm);
12406 +       if (pid
12407 +           && (current->pid == pid
12408 +               || current->real_parent->pid == pid))
12409 +               goto out;
12410 +
12411 +       br = au_sbr(sb, cpg.bsrc);
12412 +       cmoo = au_br_cmoo(br->br_perm);
12413 +       if (!cmoo)
12414 +               goto out;
12415 +       if (!d_is_reg(dentry))
12416 +               cmoo &= AuBrAttr_COO_ALL;
12417 +       if (!cmoo)
12418 +               goto out;
12419 +
12420 +       parent = dget_parent(dentry);
12421 +       di_write_lock_parent(parent);
12422 +       err = au_wbr_do_copyup_bu(dentry, cpg.bsrc - 1);
12423 +       cpg.bdst = err;
12424 +       if (unlikely(err < 0)) {
12425 +               err = 0;        /* there is no upper writable branch */
12426 +               goto out_dgrade;
12427 +       }
12428 +       AuDbg("bsrc %d, bdst %d\n", cpg.bsrc, cpg.bdst);
12429 +
12430 +       /* do not respect the coo attrib for the target branch */
12431 +       err = au_cpup_dirs(dentry, cpg.bdst);
12432 +       if (unlikely(err))
12433 +               goto out_dgrade;
12434 +
12435 +       di_downgrade_lock(parent, AuLock_IR);
12436 +       udba = au_opt_udba(sb);
12437 +       err = au_pin(&pin, dentry, cpg.bdst, udba,
12438 +                    AuPin_DI_LOCKED | AuPin_MNT_WRITE);
12439 +       if (unlikely(err))
12440 +               goto out_parent;
12441 +
12442 +       err = au_sio_cpup_simple(&cpg);
12443 +       au_unpin(&pin);
12444 +       if (unlikely(err))
12445 +               goto out_parent;
12446 +       if (!(cmoo & AuBrWAttr_MOO))
12447 +               goto out_parent; /* success */
12448 +
12449 +       err = au_pin(&pin, dentry, cpg.bsrc, udba,
12450 +                    AuPin_DI_LOCKED | AuPin_MNT_WRITE);
12451 +       if (unlikely(err))
12452 +               goto out_parent;
12453 +
12454 +       h_path.mnt = au_br_mnt(br);
12455 +       h_path.dentry = au_h_dptr(dentry, cpg.bsrc);
12456 +       hdir = au_hi(d_inode(parent), cpg.bsrc);
12457 +       delegated = NULL;
12458 +       err = vfsub_unlink(hdir->hi_inode, &h_path, &delegated, /*force*/1);
12459 +       au_unpin(&pin);
12460 +       /* todo: keep h_dentry or not? */
12461 +       if (unlikely(err == -EWOULDBLOCK)) {
12462 +               pr_warn("cannot retry for NFSv4 delegation"
12463 +                       " for an internal unlink\n");
12464 +               iput(delegated);
12465 +       }
12466 +       if (unlikely(err)) {
12467 +               pr_err("unlink %pd after coo failed (%d), ignored\n",
12468 +                      dentry, err);
12469 +               err = 0;
12470 +       }
12471 +       goto out_parent; /* success */
12472 +
12473 +out_dgrade:
12474 +       di_downgrade_lock(parent, AuLock_IR);
12475 +out_parent:
12476 +       di_read_unlock(parent, AuLock_IR);
12477 +       dput(parent);
12478 +out:
12479 +       AuTraceErr(err);
12480 +       return err;
12481 +}
12482 +
12483 +int au_do_open(struct file *file, struct au_do_open_args *args)
12484 +{
12485 +       int err, no_lock = args->no_lock;
12486 +       struct dentry *dentry;
12487 +       struct au_finfo *finfo;
12488 +
12489 +       if (!no_lock)
12490 +               err = au_finfo_init(file, args->fidir);
12491 +       else {
12492 +               lockdep_off();
12493 +               err = au_finfo_init(file, args->fidir);
12494 +               lockdep_on();
12495 +       }
12496 +       if (unlikely(err))
12497 +               goto out;
12498 +
12499 +       dentry = file->f_path.dentry;
12500 +       AuDebugOn(IS_ERR_OR_NULL(dentry));
12501 +       if (!no_lock) {
12502 +               di_write_lock_child(dentry);
12503 +               err = au_cmoo(dentry);
12504 +               di_downgrade_lock(dentry, AuLock_IR);
12505 +               if (!err)
12506 +                       err = args->open(file, vfsub_file_flags(file), NULL);
12507 +               di_read_unlock(dentry, AuLock_IR);
12508 +       } else {
12509 +               err = au_cmoo(dentry);
12510 +               if (!err)
12511 +                       err = args->open(file, vfsub_file_flags(file),
12512 +                                        args->h_file);
12513 +               if (!err && au_fbtop(file) != au_dbtop(dentry))
12514 +                       /*
12515 +                        * cmoo happens after h_file was opened.
12516 +                        * need to refresh file later.
12517 +                        */
12518 +                       atomic_dec(&au_fi(file)->fi_generation);
12519 +       }
12520 +
12521 +       finfo = au_fi(file);
12522 +       if (!err) {
12523 +               finfo->fi_file = file;
12524 +               au_sphl_add(&finfo->fi_hlist,
12525 +                           &au_sbi(file->f_path.dentry->d_sb)->si_files);
12526 +       }
12527 +       if (!no_lock)
12528 +               fi_write_unlock(file);
12529 +       else {
12530 +               lockdep_off();
12531 +               fi_write_unlock(file);
12532 +               lockdep_on();
12533 +       }
12534 +       if (unlikely(err)) {
12535 +               finfo->fi_hdir = NULL;
12536 +               au_finfo_fin(file, /*atonce*/0);
12537 +       }
12538 +
12539 +out:
12540 +       return err;
12541 +}
12542 +
12543 +int au_reopen_nondir(struct file *file)
12544 +{
12545 +       int err;
12546 +       aufs_bindex_t btop;
12547 +       struct dentry *dentry;
12548 +       struct file *h_file, *h_file_tmp;
12549 +
12550 +       dentry = file->f_path.dentry;
12551 +       btop = au_dbtop(dentry);
12552 +       h_file_tmp = NULL;
12553 +       if (au_fbtop(file) == btop) {
12554 +               h_file = au_hf_top(file);
12555 +               if (file->f_mode == h_file->f_mode)
12556 +                       return 0; /* success */
12557 +               h_file_tmp = h_file;
12558 +               get_file(h_file_tmp);
12559 +               au_set_h_fptr(file, btop, NULL);
12560 +       }
12561 +       AuDebugOn(au_fi(file)->fi_hdir);
12562 +       /*
12563 +        * it can happen
12564 +        * file exists on both of rw and ro
12565 +        * open --> dbtop and fbtop are both 0
12566 +        * prepend a branch as rw, "rw" become ro
12567 +        * remove rw/file
12568 +        * delete the top branch, "rw" becomes rw again
12569 +        *      --> dbtop is 1, fbtop is still 0
12570 +        * write --> fbtop is 0 but dbtop is 1
12571 +        */
12572 +       /* AuDebugOn(au_fbtop(file) < btop); */
12573 +
12574 +       h_file = au_h_open(dentry, btop, vfsub_file_flags(file) & ~O_TRUNC,
12575 +                          file, /*force_wr*/0);
12576 +       err = PTR_ERR(h_file);
12577 +       if (IS_ERR(h_file)) {
12578 +               if (h_file_tmp) {
12579 +                       au_sbr_get(dentry->d_sb, btop);
12580 +                       au_set_h_fptr(file, btop, h_file_tmp);
12581 +                       h_file_tmp = NULL;
12582 +               }
12583 +               goto out; /* todo: close all? */
12584 +       }
12585 +
12586 +       err = 0;
12587 +       au_set_fbtop(file, btop);
12588 +       au_set_h_fptr(file, btop, h_file);
12589 +       au_update_figen(file);
12590 +       /* todo: necessary? */
12591 +       /* file->f_ra = h_file->f_ra; */
12592 +
12593 +out:
12594 +       if (h_file_tmp)
12595 +               fput(h_file_tmp);
12596 +       return err;
12597 +}
12598 +
12599 +/* ---------------------------------------------------------------------- */
12600 +
12601 +static int au_reopen_wh(struct file *file, aufs_bindex_t btgt,
12602 +                       struct dentry *hi_wh)
12603 +{
12604 +       int err;
12605 +       aufs_bindex_t btop;
12606 +       struct au_dinfo *dinfo;
12607 +       struct dentry *h_dentry;
12608 +       struct au_hdentry *hdp;
12609 +
12610 +       dinfo = au_di(file->f_path.dentry);
12611 +       AuRwMustWriteLock(&dinfo->di_rwsem);
12612 +
12613 +       btop = dinfo->di_btop;
12614 +       dinfo->di_btop = btgt;
12615 +       hdp = au_hdentry(dinfo, btgt);
12616 +       h_dentry = hdp->hd_dentry;
12617 +       hdp->hd_dentry = hi_wh;
12618 +       err = au_reopen_nondir(file);
12619 +       hdp->hd_dentry = h_dentry;
12620 +       dinfo->di_btop = btop;
12621 +
12622 +       return err;
12623 +}
12624 +
12625 +static int au_ready_to_write_wh(struct file *file, loff_t len,
12626 +                               aufs_bindex_t bcpup, struct au_pin *pin)
12627 +{
12628 +       int err;
12629 +       struct inode *inode, *h_inode;
12630 +       struct dentry *h_dentry, *hi_wh;
12631 +       struct au_cp_generic cpg = {
12632 +               .dentry = file->f_path.dentry,
12633 +               .bdst   = bcpup,
12634 +               .bsrc   = -1,
12635 +               .len    = len,
12636 +               .pin    = pin
12637 +       };
12638 +
12639 +       au_update_dbtop(cpg.dentry);
12640 +       inode = d_inode(cpg.dentry);
12641 +       h_inode = NULL;
12642 +       if (au_dbtop(cpg.dentry) <= bcpup
12643 +           && au_dbbot(cpg.dentry) >= bcpup) {
12644 +               h_dentry = au_h_dptr(cpg.dentry, bcpup);
12645 +               if (h_dentry && d_is_positive(h_dentry))
12646 +                       h_inode = d_inode(h_dentry);
12647 +       }
12648 +       hi_wh = au_hi_wh(inode, bcpup);
12649 +       if (!hi_wh && !h_inode)
12650 +               err = au_sio_cpup_wh(&cpg, file);
12651 +       else
12652 +               /* already copied-up after unlink */
12653 +               err = au_reopen_wh(file, bcpup, hi_wh);
12654 +
12655 +       if (!err
12656 +           && (inode->i_nlink > 1
12657 +               || (inode->i_state & I_LINKABLE))
12658 +           && au_opt_test(au_mntflags(cpg.dentry->d_sb), PLINK))
12659 +               au_plink_append(inode, bcpup, au_h_dptr(cpg.dentry, bcpup));
12660 +
12661 +       return err;
12662 +}
12663 +
12664 +/*
12665 + * prepare the @file for writing.
12666 + */
12667 +int au_ready_to_write(struct file *file, loff_t len, struct au_pin *pin)
12668 +{
12669 +       int err;
12670 +       aufs_bindex_t dbtop;
12671 +       struct dentry *parent;
12672 +       struct inode *inode;
12673 +       struct super_block *sb;
12674 +       struct file *h_file;
12675 +       struct au_cp_generic cpg = {
12676 +               .dentry = file->f_path.dentry,
12677 +               .bdst   = -1,
12678 +               .bsrc   = -1,
12679 +               .len    = len,
12680 +               .pin    = pin,
12681 +               .flags  = AuCpup_DTIME
12682 +       };
12683 +
12684 +       sb = cpg.dentry->d_sb;
12685 +       inode = d_inode(cpg.dentry);
12686 +       cpg.bsrc = au_fbtop(file);
12687 +       err = au_test_ro(sb, cpg.bsrc, inode);
12688 +       if (!err && (au_hf_top(file)->f_mode & FMODE_WRITE)) {
12689 +               err = au_pin(pin, cpg.dentry, cpg.bsrc, AuOpt_UDBA_NONE,
12690 +                            /*flags*/0);
12691 +               goto out;
12692 +       }
12693 +
12694 +       /* need to cpup or reopen */
12695 +       parent = dget_parent(cpg.dentry);
12696 +       di_write_lock_parent(parent);
12697 +       err = AuWbrCopyup(au_sbi(sb), cpg.dentry);
12698 +       cpg.bdst = err;
12699 +       if (unlikely(err < 0))
12700 +               goto out_dgrade;
12701 +       err = 0;
12702 +
12703 +       if (!d_unhashed(cpg.dentry) && !au_h_dptr(parent, cpg.bdst)) {
12704 +               err = au_cpup_dirs(cpg.dentry, cpg.bdst);
12705 +               if (unlikely(err))
12706 +                       goto out_dgrade;
12707 +       }
12708 +
12709 +       err = au_pin(pin, cpg.dentry, cpg.bdst, AuOpt_UDBA_NONE,
12710 +                    AuPin_DI_LOCKED | AuPin_MNT_WRITE);
12711 +       if (unlikely(err))
12712 +               goto out_dgrade;
12713 +
12714 +       dbtop = au_dbtop(cpg.dentry);
12715 +       if (dbtop <= cpg.bdst)
12716 +               cpg.bsrc = cpg.bdst;
12717 +
12718 +       if (dbtop <= cpg.bdst           /* just reopen */
12719 +           || !d_unhashed(cpg.dentry)  /* copyup and reopen */
12720 +               ) {
12721 +               h_file = au_h_open_pre(cpg.dentry, cpg.bsrc, /*force_wr*/0);
12722 +               if (IS_ERR(h_file))
12723 +                       err = PTR_ERR(h_file);
12724 +               else {
12725 +                       di_downgrade_lock(parent, AuLock_IR);
12726 +                       if (dbtop > cpg.bdst)
12727 +                               err = au_sio_cpup_simple(&cpg);
12728 +                       if (!err)
12729 +                               err = au_reopen_nondir(file);
12730 +                       au_h_open_post(cpg.dentry, cpg.bsrc, h_file);
12731 +               }
12732 +       } else {                        /* copyup as wh and reopen */
12733 +               /*
12734 +                * since writable hfsplus branch is not supported,
12735 +                * h_open_pre/post() are unnecessary.
12736 +                */
12737 +               err = au_ready_to_write_wh(file, len, cpg.bdst, pin);
12738 +               di_downgrade_lock(parent, AuLock_IR);
12739 +       }
12740 +
12741 +       if (!err) {
12742 +               au_pin_set_parent_lflag(pin, /*lflag*/0);
12743 +               goto out_dput; /* success */
12744 +       }
12745 +       au_unpin(pin);
12746 +       goto out_unlock;
12747 +
12748 +out_dgrade:
12749 +       di_downgrade_lock(parent, AuLock_IR);
12750 +out_unlock:
12751 +       di_read_unlock(parent, AuLock_IR);
12752 +out_dput:
12753 +       dput(parent);
12754 +out:
12755 +       return err;
12756 +}
12757 +
12758 +/* ---------------------------------------------------------------------- */
12759 +
12760 +int au_do_flush(struct file *file, fl_owner_t id,
12761 +               int (*flush)(struct file *file, fl_owner_t id))
12762 +{
12763 +       int err;
12764 +       struct super_block *sb;
12765 +       struct inode *inode;
12766 +
12767 +       inode = file_inode(file);
12768 +       sb = inode->i_sb;
12769 +       si_noflush_read_lock(sb);
12770 +       fi_read_lock(file);
12771 +       ii_read_lock_child(inode);
12772 +
12773 +       err = flush(file, id);
12774 +       au_cpup_attr_timesizes(inode);
12775 +
12776 +       ii_read_unlock(inode);
12777 +       fi_read_unlock(file);
12778 +       si_read_unlock(sb);
12779 +       return err;
12780 +}
12781 +
12782 +/* ---------------------------------------------------------------------- */
12783 +
12784 +static int au_file_refresh_by_inode(struct file *file, int *need_reopen)
12785 +{
12786 +       int err;
12787 +       struct au_pin pin;
12788 +       struct au_finfo *finfo;
12789 +       struct dentry *parent, *hi_wh;
12790 +       struct inode *inode;
12791 +       struct super_block *sb;
12792 +       struct au_cp_generic cpg = {
12793 +               .dentry = file->f_path.dentry,
12794 +               .bdst   = -1,
12795 +               .bsrc   = -1,
12796 +               .len    = -1,
12797 +               .pin    = &pin,
12798 +               .flags  = AuCpup_DTIME
12799 +       };
12800 +
12801 +       FiMustWriteLock(file);
12802 +
12803 +       err = 0;
12804 +       finfo = au_fi(file);
12805 +       sb = cpg.dentry->d_sb;
12806 +       inode = d_inode(cpg.dentry);
12807 +       cpg.bdst = au_ibtop(inode);
12808 +       if (cpg.bdst == finfo->fi_btop || IS_ROOT(cpg.dentry))
12809 +               goto out;
12810 +
12811 +       parent = dget_parent(cpg.dentry);
12812 +       if (au_test_ro(sb, cpg.bdst, inode)) {
12813 +               di_read_lock_parent(parent, !AuLock_IR);
12814 +               err = AuWbrCopyup(au_sbi(sb), cpg.dentry);
12815 +               cpg.bdst = err;
12816 +               di_read_unlock(parent, !AuLock_IR);
12817 +               if (unlikely(err < 0))
12818 +                       goto out_parent;
12819 +               err = 0;
12820 +       }
12821 +
12822 +       di_read_lock_parent(parent, AuLock_IR);
12823 +       hi_wh = au_hi_wh(inode, cpg.bdst);
12824 +       if (!S_ISDIR(inode->i_mode)
12825 +           && au_opt_test(au_mntflags(sb), PLINK)
12826 +           && au_plink_test(inode)
12827 +           && !d_unhashed(cpg.dentry)
12828 +           && cpg.bdst < au_dbtop(cpg.dentry)) {
12829 +               err = au_test_and_cpup_dirs(cpg.dentry, cpg.bdst);
12830 +               if (unlikely(err))
12831 +                       goto out_unlock;
12832 +
12833 +               /* always superio. */
12834 +               err = au_pin(&pin, cpg.dentry, cpg.bdst, AuOpt_UDBA_NONE,
12835 +                            AuPin_DI_LOCKED | AuPin_MNT_WRITE);
12836 +               if (!err) {
12837 +                       err = au_sio_cpup_simple(&cpg);
12838 +                       au_unpin(&pin);
12839 +               }
12840 +       } else if (hi_wh) {
12841 +               /* already copied-up after unlink */
12842 +               err = au_reopen_wh(file, cpg.bdst, hi_wh);
12843 +               *need_reopen = 0;
12844 +       }
12845 +
12846 +out_unlock:
12847 +       di_read_unlock(parent, AuLock_IR);
12848 +out_parent:
12849 +       dput(parent);
12850 +out:
12851 +       return err;
12852 +}
12853 +
12854 +static void au_do_refresh_dir(struct file *file)
12855 +{
12856 +       int execed;
12857 +       aufs_bindex_t bindex, bbot, new_bindex, brid;
12858 +       struct au_hfile *p, tmp, *q;
12859 +       struct au_finfo *finfo;
12860 +       struct super_block *sb;
12861 +       struct au_fidir *fidir;
12862 +
12863 +       FiMustWriteLock(file);
12864 +
12865 +       sb = file->f_path.dentry->d_sb;
12866 +       finfo = au_fi(file);
12867 +       fidir = finfo->fi_hdir;
12868 +       AuDebugOn(!fidir);
12869 +       p = fidir->fd_hfile + finfo->fi_btop;
12870 +       brid = p->hf_br->br_id;
12871 +       bbot = fidir->fd_bbot;
12872 +       for (bindex = finfo->fi_btop; bindex <= bbot; bindex++, p++) {
12873 +               if (!p->hf_file)
12874 +                       continue;
12875 +
12876 +               new_bindex = au_br_index(sb, p->hf_br->br_id);
12877 +               if (new_bindex == bindex)
12878 +                       continue;
12879 +               if (new_bindex < 0) {
12880 +                       au_set_h_fptr(file, bindex, NULL);
12881 +                       continue;
12882 +               }
12883 +
12884 +               /* swap two lower inode, and loop again */
12885 +               q = fidir->fd_hfile + new_bindex;
12886 +               tmp = *q;
12887 +               *q = *p;
12888 +               *p = tmp;
12889 +               if (tmp.hf_file) {
12890 +                       bindex--;
12891 +                       p--;
12892 +               }
12893 +       }
12894 +
12895 +       execed = vfsub_file_execed(file);
12896 +       p = fidir->fd_hfile;
12897 +       if (!au_test_mmapped(file) && !d_unlinked(file->f_path.dentry)) {
12898 +               bbot = au_sbbot(sb);
12899 +               for (finfo->fi_btop = 0; finfo->fi_btop <= bbot;
12900 +                    finfo->fi_btop++, p++)
12901 +                       if (p->hf_file) {
12902 +                               if (file_inode(p->hf_file))
12903 +                                       break;
12904 +                               au_hfput(p, execed);
12905 +                       }
12906 +       } else {
12907 +               bbot = au_br_index(sb, brid);
12908 +               for (finfo->fi_btop = 0; finfo->fi_btop < bbot;
12909 +                    finfo->fi_btop++, p++)
12910 +                       if (p->hf_file)
12911 +                               au_hfput(p, execed);
12912 +               bbot = au_sbbot(sb);
12913 +       }
12914 +
12915 +       p = fidir->fd_hfile + bbot;
12916 +       for (fidir->fd_bbot = bbot; fidir->fd_bbot >= finfo->fi_btop;
12917 +            fidir->fd_bbot--, p--)
12918 +               if (p->hf_file) {
12919 +                       if (file_inode(p->hf_file))
12920 +                               break;
12921 +                       au_hfput(p, execed);
12922 +               }
12923 +       AuDebugOn(fidir->fd_bbot < finfo->fi_btop);
12924 +}
12925 +
12926 +/*
12927 + * after branch manipulating, refresh the file.
12928 + */
12929 +static int refresh_file(struct file *file, int (*reopen)(struct file *file))
12930 +{
12931 +       int err, need_reopen, nbr;
12932 +       aufs_bindex_t bbot, bindex;
12933 +       struct dentry *dentry;
12934 +       struct super_block *sb;
12935 +       struct au_finfo *finfo;
12936 +       struct au_hfile *hfile;
12937 +
12938 +       dentry = file->f_path.dentry;
12939 +       sb = dentry->d_sb;
12940 +       nbr = au_sbbot(sb) + 1;
12941 +       finfo = au_fi(file);
12942 +       if (!finfo->fi_hdir) {
12943 +               hfile = &finfo->fi_htop;
12944 +               AuDebugOn(!hfile->hf_file);
12945 +               bindex = au_br_index(sb, hfile->hf_br->br_id);
12946 +               AuDebugOn(bindex < 0);
12947 +               if (bindex != finfo->fi_btop)
12948 +                       au_set_fbtop(file, bindex);
12949 +       } else {
12950 +               err = au_fidir_realloc(finfo, nbr, /*may_shrink*/0);
12951 +               if (unlikely(err))
12952 +                       goto out;
12953 +               au_do_refresh_dir(file);
12954 +       }
12955 +
12956 +       err = 0;
12957 +       need_reopen = 1;
12958 +       if (!au_test_mmapped(file))
12959 +               err = au_file_refresh_by_inode(file, &need_reopen);
12960 +       if (finfo->fi_hdir)
12961 +               /* harmless if err */
12962 +               au_fidir_realloc(finfo, nbr, /*may_shrink*/1);
12963 +       if (!err && need_reopen && !d_unlinked(dentry))
12964 +               err = reopen(file);
12965 +       if (!err) {
12966 +               au_update_figen(file);
12967 +               goto out; /* success */
12968 +       }
12969 +
12970 +       /* error, close all lower files */
12971 +       if (finfo->fi_hdir) {
12972 +               bbot = au_fbbot_dir(file);
12973 +               for (bindex = au_fbtop(file); bindex <= bbot; bindex++)
12974 +                       au_set_h_fptr(file, bindex, NULL);
12975 +       }
12976 +
12977 +out:
12978 +       return err;
12979 +}
12980 +
12981 +/* common function to regular file and dir */
12982 +int au_reval_and_lock_fdi(struct file *file, int (*reopen)(struct file *file),
12983 +                         int wlock)
12984 +{
12985 +       int err;
12986 +       unsigned int sigen, figen;
12987 +       aufs_bindex_t btop;
12988 +       unsigned char pseudo_link;
12989 +       struct dentry *dentry;
12990 +       struct inode *inode;
12991 +
12992 +       err = 0;
12993 +       dentry = file->f_path.dentry;
12994 +       inode = d_inode(dentry);
12995 +       sigen = au_sigen(dentry->d_sb);
12996 +       fi_write_lock(file);
12997 +       figen = au_figen(file);
12998 +       di_write_lock_child(dentry);
12999 +       btop = au_dbtop(dentry);
13000 +       pseudo_link = (btop != au_ibtop(inode));
13001 +       if (sigen == figen && !pseudo_link && au_fbtop(file) == btop) {
13002 +               if (!wlock) {
13003 +                       di_downgrade_lock(dentry, AuLock_IR);
13004 +                       fi_downgrade_lock(file);
13005 +               }
13006 +               goto out; /* success */
13007 +       }
13008 +
13009 +       AuDbg("sigen %d, figen %d\n", sigen, figen);
13010 +       if (au_digen_test(dentry, sigen)) {
13011 +               err = au_reval_dpath(dentry, sigen);
13012 +               AuDebugOn(!err && au_digen_test(dentry, sigen));
13013 +       }
13014 +
13015 +       if (!err)
13016 +               err = refresh_file(file, reopen);
13017 +       if (!err) {
13018 +               if (!wlock) {
13019 +                       di_downgrade_lock(dentry, AuLock_IR);
13020 +                       fi_downgrade_lock(file);
13021 +               }
13022 +       } else {
13023 +               di_write_unlock(dentry);
13024 +               fi_write_unlock(file);
13025 +       }
13026 +
13027 +out:
13028 +       return err;
13029 +}
13030 +
13031 +/* ---------------------------------------------------------------------- */
13032 +
13033 +/* cf. aufs_nopage() */
13034 +/* for madvise(2) */
13035 +static int aufs_readpage(struct file *file __maybe_unused, struct page *page)
13036 +{
13037 +       unlock_page(page);
13038 +       return 0;
13039 +}
13040 +
13041 +/* it will never be called, but necessary to support O_DIRECT */
13042 +static ssize_t aufs_direct_IO(struct kiocb *iocb, struct iov_iter *iter)
13043 +{ BUG(); return 0; }
13044 +
13045 +/* they will never be called. */
13046 +#ifdef CONFIG_AUFS_DEBUG
13047 +static int aufs_write_begin(struct file *file, struct address_space *mapping,
13048 +                           loff_t pos, unsigned len, unsigned flags,
13049 +                           struct page **pagep, void **fsdata)
13050 +{ AuUnsupport(); return 0; }
13051 +static int aufs_write_end(struct file *file, struct address_space *mapping,
13052 +                         loff_t pos, unsigned len, unsigned copied,
13053 +                         struct page *page, void *fsdata)
13054 +{ AuUnsupport(); return 0; }
13055 +static int aufs_writepage(struct page *page, struct writeback_control *wbc)
13056 +{ AuUnsupport(); return 0; }
13057 +
13058 +static int aufs_set_page_dirty(struct page *page)
13059 +{ AuUnsupport(); return 0; }
13060 +static void aufs_invalidatepage(struct page *page, unsigned int offset,
13061 +                               unsigned int length)
13062 +{ AuUnsupport(); }
13063 +static int aufs_releasepage(struct page *page, gfp_t gfp)
13064 +{ AuUnsupport(); return 0; }
13065 +#if 0 /* called by memory compaction regardless file */
13066 +static int aufs_migratepage(struct address_space *mapping, struct page *newpage,
13067 +                           struct page *page, enum migrate_mode mode)
13068 +{ AuUnsupport(); return 0; }
13069 +#endif
13070 +static bool aufs_isolate_page(struct page *page, isolate_mode_t mode)
13071 +{ AuUnsupport(); return true; }
13072 +static void aufs_putback_page(struct page *page)
13073 +{ AuUnsupport(); }
13074 +static int aufs_launder_page(struct page *page)
13075 +{ AuUnsupport(); return 0; }
13076 +static int aufs_is_partially_uptodate(struct page *page,
13077 +                                     unsigned long from,
13078 +                                     unsigned long count)
13079 +{ AuUnsupport(); return 0; }
13080 +static void aufs_is_dirty_writeback(struct page *page, bool *dirty,
13081 +                                   bool *writeback)
13082 +{ AuUnsupport(); }
13083 +static int aufs_error_remove_page(struct address_space *mapping,
13084 +                                 struct page *page)
13085 +{ AuUnsupport(); return 0; }
13086 +static int aufs_swap_activate(struct swap_info_struct *sis, struct file *file,
13087 +                             sector_t *span)
13088 +{ AuUnsupport(); return 0; }
13089 +static void aufs_swap_deactivate(struct file *file)
13090 +{ AuUnsupport(); }
13091 +#endif /* CONFIG_AUFS_DEBUG */
13092 +
13093 +const struct address_space_operations aufs_aop = {
13094 +       .readpage               = aufs_readpage,
13095 +       .direct_IO              = aufs_direct_IO,
13096 +#ifdef CONFIG_AUFS_DEBUG
13097 +       .writepage              = aufs_writepage,
13098 +       /* no writepages, because of writepage */
13099 +       .set_page_dirty         = aufs_set_page_dirty,
13100 +       /* no readpages, because of readpage */
13101 +       .write_begin            = aufs_write_begin,
13102 +       .write_end              = aufs_write_end,
13103 +       /* no bmap, no block device */
13104 +       .invalidatepage         = aufs_invalidatepage,
13105 +       .releasepage            = aufs_releasepage,
13106 +       /* is fallback_migrate_page ok? */
13107 +       /* .migratepage         = aufs_migratepage, */
13108 +       .isolate_page           = aufs_isolate_page,
13109 +       .putback_page           = aufs_putback_page,
13110 +       .launder_page           = aufs_launder_page,
13111 +       .is_partially_uptodate  = aufs_is_partially_uptodate,
13112 +       .is_dirty_writeback     = aufs_is_dirty_writeback,
13113 +       .error_remove_page      = aufs_error_remove_page,
13114 +       .swap_activate          = aufs_swap_activate,
13115 +       .swap_deactivate        = aufs_swap_deactivate
13116 +#endif /* CONFIG_AUFS_DEBUG */
13117 +};
13118 diff -urN /usr/share/empty/fs/aufs/file.h linux/fs/aufs/file.h
13119 --- /usr/share/empty/fs/aufs/file.h     1970-01-01 01:00:00.000000000 +0100
13120 +++ linux/fs/aufs/file.h        2016-10-09 16:55:38.889431135 +0200
13121 @@ -0,0 +1,294 @@
13122 +/*
13123 + * Copyright (C) 2005-2016 Junjiro R. Okajima
13124 + *
13125 + * This program, aufs is free software; you can redistribute it and/or modify
13126 + * it under the terms of the GNU General Public License as published by
13127 + * the Free Software Foundation; either version 2 of the License, or
13128 + * (at your option) any later version.
13129 + *
13130 + * This program is distributed in the hope that it will be useful,
13131 + * but WITHOUT ANY WARRANTY; without even the implied warranty of
13132 + * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
13133 + * GNU General Public License for more details.
13134 + *
13135 + * You should have received a copy of the GNU General Public License
13136 + * along with this program.  If not, see <http://www.gnu.org/licenses/>.
13137 + */
13138 +
13139 +/*
13140 + * file operations
13141 + */
13142 +
13143 +#ifndef __AUFS_FILE_H__
13144 +#define __AUFS_FILE_H__
13145 +
13146 +#ifdef __KERNEL__
13147 +
13148 +#include <linux/file.h>
13149 +#include <linux/fs.h>
13150 +#include <linux/poll.h>
13151 +#include "rwsem.h"
13152 +
13153 +struct au_branch;
13154 +struct au_hfile {
13155 +       struct file             *hf_file;
13156 +       struct au_branch        *hf_br;
13157 +};
13158 +
13159 +struct au_vdir;
13160 +struct au_fidir {
13161 +       aufs_bindex_t           fd_bbot;
13162 +       aufs_bindex_t           fd_nent;
13163 +       struct au_vdir          *fd_vdir_cache;
13164 +       struct au_hfile         fd_hfile[];
13165 +};
13166 +
13167 +static inline int au_fidir_sz(int nent)
13168 +{
13169 +       AuDebugOn(nent < 0);
13170 +       return sizeof(struct au_fidir) + sizeof(struct au_hfile) * nent;
13171 +}
13172 +
13173 +struct au_finfo {
13174 +       atomic_t                fi_generation;
13175 +
13176 +       struct au_rwsem         fi_rwsem;
13177 +       aufs_bindex_t           fi_btop;
13178 +
13179 +       /* do not union them */
13180 +       struct {                                /* for non-dir */
13181 +               struct au_hfile                 fi_htop;
13182 +               atomic_t                        fi_mmapped;
13183 +       };
13184 +       struct au_fidir         *fi_hdir;       /* for dir only */
13185 +
13186 +       struct hlist_node       fi_hlist;
13187 +       union {
13188 +               struct file             *fi_file;       /* very ugly */
13189 +               struct llist_node       fi_lnode;       /* delayed free */
13190 +       };
13191 +} ____cacheline_aligned_in_smp;
13192 +
13193 +/* ---------------------------------------------------------------------- */
13194 +
13195 +/* file.c */
13196 +extern const struct address_space_operations aufs_aop;
13197 +unsigned int au_file_roflags(unsigned int flags);
13198 +struct file *au_h_open(struct dentry *dentry, aufs_bindex_t bindex, int flags,
13199 +                      struct file *file, int force_wr);
13200 +struct au_do_open_args {
13201 +       int             no_lock;
13202 +       int             (*open)(struct file *file, int flags,
13203 +                               struct file *h_file);
13204 +       struct au_fidir *fidir;
13205 +       struct file     *h_file;
13206 +};
13207 +int au_do_open(struct file *file, struct au_do_open_args *args);
13208 +int au_reopen_nondir(struct file *file);
13209 +struct au_pin;
13210 +int au_ready_to_write(struct file *file, loff_t len, struct au_pin *pin);
13211 +int au_reval_and_lock_fdi(struct file *file, int (*reopen)(struct file *file),
13212 +                         int wlock);
13213 +int au_do_flush(struct file *file, fl_owner_t id,
13214 +               int (*flush)(struct file *file, fl_owner_t id));
13215 +
13216 +/* poll.c */
13217 +#ifdef CONFIG_AUFS_POLL
13218 +unsigned int aufs_poll(struct file *file, poll_table *wait);
13219 +#endif
13220 +
13221 +#ifdef CONFIG_AUFS_BR_HFSPLUS
13222 +/* hfsplus.c */
13223 +struct file *au_h_open_pre(struct dentry *dentry, aufs_bindex_t bindex,
13224 +                          int force_wr);
13225 +void au_h_open_post(struct dentry *dentry, aufs_bindex_t bindex,
13226 +                   struct file *h_file);
13227 +#else
13228 +AuStub(struct file *, au_h_open_pre, return NULL, struct dentry *dentry,
13229 +       aufs_bindex_t bindex, int force_wr)
13230 +AuStubVoid(au_h_open_post, struct dentry *dentry, aufs_bindex_t bindex,
13231 +          struct file *h_file);
13232 +#endif
13233 +
13234 +/* f_op.c */
13235 +extern const struct file_operations aufs_file_fop;
13236 +int au_do_open_nondir(struct file *file, int flags, struct file *h_file);
13237 +int aufs_release_nondir(struct inode *inode __maybe_unused, struct file *file);
13238 +struct file *au_read_pre(struct file *file, int keep_fi);
13239 +
13240 +/* finfo.c */
13241 +void au_hfput(struct au_hfile *hf, int execed);
13242 +void au_set_h_fptr(struct file *file, aufs_bindex_t bindex,
13243 +                  struct file *h_file);
13244 +
13245 +void au_update_figen(struct file *file);
13246 +struct au_fidir *au_fidir_alloc(struct super_block *sb);
13247 +int au_fidir_realloc(struct au_finfo *finfo, int nbr, int may_shrink);
13248 +
13249 +void au_fi_init_once(void *_fi);
13250 +void au_finfo_fin(struct file *file, int atonce);
13251 +int au_finfo_init(struct file *file, struct au_fidir *fidir);
13252 +
13253 +/* ioctl.c */
13254 +long aufs_ioctl_nondir(struct file *file, unsigned int cmd, unsigned long arg);
13255 +#ifdef CONFIG_COMPAT
13256 +long aufs_compat_ioctl_dir(struct file *file, unsigned int cmd,
13257 +                          unsigned long arg);
13258 +long aufs_compat_ioctl_nondir(struct file *file, unsigned int cmd,
13259 +                             unsigned long arg);
13260 +#endif
13261 +
13262 +/* ---------------------------------------------------------------------- */
13263 +
13264 +static inline struct au_finfo *au_fi(struct file *file)
13265 +{
13266 +       return file->private_data;
13267 +}
13268 +
13269 +/* ---------------------------------------------------------------------- */
13270 +
13271 +/*
13272 + * fi_read_lock, fi_write_lock,
13273 + * fi_read_unlock, fi_write_unlock, fi_downgrade_lock
13274 + */
13275 +AuSimpleRwsemFuncs(fi, struct file *f, &au_fi(f)->fi_rwsem);
13276 +
13277 +#define FiMustNoWaiters(f)     AuRwMustNoWaiters(&au_fi(f)->fi_rwsem)
13278 +#define FiMustAnyLock(f)       AuRwMustAnyLock(&au_fi(f)->fi_rwsem)
13279 +#define FiMustWriteLock(f)     AuRwMustWriteLock(&au_fi(f)->fi_rwsem)
13280 +
13281 +/* ---------------------------------------------------------------------- */
13282 +
13283 +/* todo: hard/soft set? */
13284 +static inline aufs_bindex_t au_fbtop(struct file *file)
13285 +{
13286 +       FiMustAnyLock(file);
13287 +       return au_fi(file)->fi_btop;
13288 +}
13289 +
13290 +static inline aufs_bindex_t au_fbbot_dir(struct file *file)
13291 +{
13292 +       FiMustAnyLock(file);
13293 +       AuDebugOn(!au_fi(file)->fi_hdir);
13294 +       return au_fi(file)->fi_hdir->fd_bbot;
13295 +}
13296 +
13297 +static inline struct au_vdir *au_fvdir_cache(struct file *file)
13298 +{
13299 +       FiMustAnyLock(file);
13300 +       AuDebugOn(!au_fi(file)->fi_hdir);
13301 +       return au_fi(file)->fi_hdir->fd_vdir_cache;
13302 +}
13303 +
13304 +static inline void au_set_fbtop(struct file *file, aufs_bindex_t bindex)
13305 +{
13306 +       FiMustWriteLock(file);
13307 +       au_fi(file)->fi_btop = bindex;
13308 +}
13309 +
13310 +static inline void au_set_fbbot_dir(struct file *file, aufs_bindex_t bindex)
13311 +{
13312 +       FiMustWriteLock(file);
13313 +       AuDebugOn(!au_fi(file)->fi_hdir);
13314 +       au_fi(file)->fi_hdir->fd_bbot = bindex;
13315 +}
13316 +
13317 +static inline void au_set_fvdir_cache(struct file *file,
13318 +                                     struct au_vdir *vdir_cache)
13319 +{
13320 +       FiMustWriteLock(file);
13321 +       AuDebugOn(!au_fi(file)->fi_hdir);
13322 +       au_fi(file)->fi_hdir->fd_vdir_cache = vdir_cache;
13323 +}
13324 +
13325 +static inline struct file *au_hf_top(struct file *file)
13326 +{
13327 +       FiMustAnyLock(file);
13328 +       AuDebugOn(au_fi(file)->fi_hdir);
13329 +       return au_fi(file)->fi_htop.hf_file;
13330 +}
13331 +
13332 +static inline struct file *au_hf_dir(struct file *file, aufs_bindex_t bindex)
13333 +{
13334 +       FiMustAnyLock(file);
13335 +       AuDebugOn(!au_fi(file)->fi_hdir);
13336 +       return au_fi(file)->fi_hdir->fd_hfile[0 + bindex].hf_file;
13337 +}
13338 +
13339 +/* todo: memory barrier? */
13340 +static inline unsigned int au_figen(struct file *f)
13341 +{
13342 +       return atomic_read(&au_fi(f)->fi_generation);
13343 +}
13344 +
13345 +static inline void au_set_mmapped(struct file *f)
13346 +{
13347 +       if (atomic_inc_return(&au_fi(f)->fi_mmapped))
13348 +               return;
13349 +       pr_warn("fi_mmapped wrapped around\n");
13350 +       while (!atomic_inc_return(&au_fi(f)->fi_mmapped))
13351 +               ;
13352 +}
13353 +
13354 +static inline void au_unset_mmapped(struct file *f)
13355 +{
13356 +       atomic_dec(&au_fi(f)->fi_mmapped);
13357 +}
13358 +
13359 +static inline int au_test_mmapped(struct file *f)
13360 +{
13361 +       return atomic_read(&au_fi(f)->fi_mmapped);
13362 +}
13363 +
13364 +/* customize vma->vm_file */
13365 +
13366 +static inline void au_do_vm_file_reset(struct vm_area_struct *vma,
13367 +                                      struct file *file)
13368 +{
13369 +       struct file *f;
13370 +
13371 +       f = vma->vm_file;
13372 +       get_file(file);
13373 +       vma->vm_file = file;
13374 +       fput(f);
13375 +}
13376 +
13377 +#ifdef CONFIG_MMU
13378 +#define AuDbgVmRegion(file, vma) do {} while (0)
13379 +
13380 +static inline void au_vm_file_reset(struct vm_area_struct *vma,
13381 +                                   struct file *file)
13382 +{
13383 +       au_do_vm_file_reset(vma, file);
13384 +}
13385 +#else
13386 +#define AuDbgVmRegion(file, vma) \
13387 +       AuDebugOn((vma)->vm_region && (vma)->vm_region->vm_file != (file))
13388 +
13389 +static inline void au_vm_file_reset(struct vm_area_struct *vma,
13390 +                                   struct file *file)
13391 +{
13392 +       struct file *f;
13393 +
13394 +       au_do_vm_file_reset(vma, file);
13395 +       f = vma->vm_region->vm_file;
13396 +       get_file(file);
13397 +       vma->vm_region->vm_file = file;
13398 +       fput(f);
13399 +}
13400 +#endif /* CONFIG_MMU */
13401 +
13402 +/* handle vma->vm_prfile */
13403 +static inline void au_vm_prfile_set(struct vm_area_struct *vma,
13404 +                                   struct file *file)
13405 +{
13406 +       get_file(file);
13407 +       vma->vm_prfile = file;
13408 +#ifndef CONFIG_MMU
13409 +       get_file(file);
13410 +       vma->vm_region->vm_prfile = file;
13411 +#endif
13412 +}
13413 +
13414 +#endif /* __KERNEL__ */
13415 +#endif /* __AUFS_FILE_H__ */
13416 diff -urN /usr/share/empty/fs/aufs/finfo.c linux/fs/aufs/finfo.c
13417 --- /usr/share/empty/fs/aufs/finfo.c    1970-01-01 01:00:00.000000000 +0100
13418 +++ linux/fs/aufs/finfo.c       2016-10-09 16:55:38.889431135 +0200
13419 @@ -0,0 +1,151 @@
13420 +/*
13421 + * Copyright (C) 2005-2016 Junjiro R. Okajima
13422 + *
13423 + * This program, aufs is free software; you can redistribute it and/or modify
13424 + * it under the terms of the GNU General Public License as published by
13425 + * the Free Software Foundation; either version 2 of the License, or
13426 + * (at your option) any later version.
13427 + *
13428 + * This program is distributed in the hope that it will be useful,
13429 + * but WITHOUT ANY WARRANTY; without even the implied warranty of
13430 + * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
13431 + * GNU General Public License for more details.
13432 + *
13433 + * You should have received a copy of the GNU General Public License
13434 + * along with this program.  If not, see <http://www.gnu.org/licenses/>.
13435 + */
13436 +
13437 +/*
13438 + * file private data
13439 + */
13440 +
13441 +#include "aufs.h"
13442 +
13443 +void au_hfput(struct au_hfile *hf, int execed)
13444 +{
13445 +       if (execed)
13446 +               allow_write_access(hf->hf_file);
13447 +       fput(hf->hf_file);
13448 +       hf->hf_file = NULL;
13449 +       au_br_put(hf->hf_br);
13450 +       hf->hf_br = NULL;
13451 +}
13452 +
13453 +void au_set_h_fptr(struct file *file, aufs_bindex_t bindex, struct file *val)
13454 +{
13455 +       struct au_finfo *finfo = au_fi(file);
13456 +       struct au_hfile *hf;
13457 +       struct au_fidir *fidir;
13458 +
13459 +       fidir = finfo->fi_hdir;
13460 +       if (!fidir) {
13461 +               AuDebugOn(finfo->fi_btop != bindex);
13462 +               hf = &finfo->fi_htop;
13463 +       } else
13464 +               hf = fidir->fd_hfile + bindex;
13465 +
13466 +       if (hf && hf->hf_file)
13467 +               au_hfput(hf, vfsub_file_execed(file));
13468 +       if (val) {
13469 +               FiMustWriteLock(file);
13470 +               AuDebugOn(IS_ERR_OR_NULL(file->f_path.dentry));
13471 +               hf->hf_file = val;
13472 +               hf->hf_br = au_sbr(file->f_path.dentry->d_sb, bindex);
13473 +       }
13474 +}
13475 +
13476 +void au_update_figen(struct file *file)
13477 +{
13478 +       atomic_set(&au_fi(file)->fi_generation, au_digen(file->f_path.dentry));
13479 +       /* smp_mb(); */ /* atomic_set */
13480 +}
13481 +
13482 +/* ---------------------------------------------------------------------- */
13483 +
13484 +struct au_fidir *au_fidir_alloc(struct super_block *sb)
13485 +{
13486 +       struct au_fidir *fidir;
13487 +       int nbr;
13488 +
13489 +       nbr = au_sbbot(sb) + 1;
13490 +       if (nbr < 2)
13491 +               nbr = 2; /* initial allocate for 2 branches */
13492 +       fidir = kzalloc(au_fidir_sz(nbr), GFP_NOFS);
13493 +       if (fidir) {
13494 +               fidir->fd_bbot = -1;
13495 +               fidir->fd_nent = nbr;
13496 +       }
13497 +
13498 +       return fidir;
13499 +}
13500 +
13501 +int au_fidir_realloc(struct au_finfo *finfo, int nbr, int may_shrink)
13502 +{
13503 +       int err;
13504 +       struct au_fidir *fidir, *p;
13505 +
13506 +       AuRwMustWriteLock(&finfo->fi_rwsem);
13507 +       fidir = finfo->fi_hdir;
13508 +       AuDebugOn(!fidir);
13509 +
13510 +       err = -ENOMEM;
13511 +       p = au_kzrealloc(fidir, au_fidir_sz(fidir->fd_nent), au_fidir_sz(nbr),
13512 +                        GFP_NOFS, may_shrink);
13513 +       if (p) {
13514 +               p->fd_nent = nbr;
13515 +               finfo->fi_hdir = p;
13516 +               err = 0;
13517 +       }
13518 +
13519 +       return err;
13520 +}
13521 +
13522 +/* ---------------------------------------------------------------------- */
13523 +
13524 +void au_finfo_fin(struct file *file, int atonce)
13525 +{
13526 +       struct au_finfo *finfo;
13527 +
13528 +       au_nfiles_dec(file->f_path.dentry->d_sb);
13529 +
13530 +       finfo = au_fi(file);
13531 +       AuDebugOn(finfo->fi_hdir);
13532 +       AuRwDestroy(&finfo->fi_rwsem);
13533 +       if (!atonce)
13534 +               au_cache_dfree_finfo(finfo);
13535 +       else
13536 +               au_cache_free_finfo(finfo);
13537 +}
13538 +
13539 +void au_fi_init_once(void *_finfo)
13540 +{
13541 +       struct au_finfo *finfo = _finfo;
13542 +
13543 +       au_rw_init(&finfo->fi_rwsem);
13544 +}
13545 +
13546 +int au_finfo_init(struct file *file, struct au_fidir *fidir)
13547 +{
13548 +       int err;
13549 +       struct au_finfo *finfo;
13550 +       struct dentry *dentry;
13551 +
13552 +       err = -ENOMEM;
13553 +       dentry = file->f_path.dentry;
13554 +       finfo = au_cache_alloc_finfo();
13555 +       if (unlikely(!finfo))
13556 +               goto out;
13557 +
13558 +       err = 0;
13559 +       au_nfiles_inc(dentry->d_sb);
13560 +       au_rw_write_lock(&finfo->fi_rwsem);
13561 +       finfo->fi_btop = -1;
13562 +       finfo->fi_hdir = fidir;
13563 +       atomic_set(&finfo->fi_generation, au_digen(dentry));
13564 +       /* smp_mb(); */ /* atomic_set */
13565 +
13566 +       file->private_data = finfo;
13567 +
13568 +out:
13569 +       return err;
13570 +}
13571 diff -urN /usr/share/empty/fs/aufs/f_op.c linux/fs/aufs/f_op.c
13572 --- /usr/share/empty/fs/aufs/f_op.c     1970-01-01 01:00:00.000000000 +0100
13573 +++ linux/fs/aufs/f_op.c        2016-12-17 12:28:17.595211562 +0100
13574 @@ -0,0 +1,723 @@
13575 +/*
13576 + * Copyright (C) 2005-2016 Junjiro R. Okajima
13577 + *
13578 + * This program, aufs is free software; you can redistribute it and/or modify
13579 + * it under the terms of the GNU General Public License as published by
13580 + * the Free Software Foundation; either version 2 of the License, or
13581 + * (at your option) any later version.
13582 + *
13583 + * This program is distributed in the hope that it will be useful,
13584 + * but WITHOUT ANY WARRANTY; without even the implied warranty of
13585 + * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
13586 + * GNU General Public License for more details.
13587 + *
13588 + * You should have received a copy of the GNU General Public License
13589 + * along with this program.  If not, see <http://www.gnu.org/licenses/>.
13590 + */
13591 +
13592 +/*
13593 + * file and vm operations
13594 + */
13595 +
13596 +#include <linux/aio.h>
13597 +#include <linux/fs_stack.h>
13598 +#include <linux/mman.h>
13599 +#include <linux/security.h>
13600 +#include "aufs.h"
13601 +
13602 +int au_do_open_nondir(struct file *file, int flags, struct file *h_file)
13603 +{
13604 +       int err;
13605 +       aufs_bindex_t bindex;
13606 +       struct dentry *dentry, *h_dentry;
13607 +       struct au_finfo *finfo;
13608 +       struct inode *h_inode;
13609 +
13610 +       FiMustWriteLock(file);
13611 +
13612 +       err = 0;
13613 +       dentry = file->f_path.dentry;
13614 +       AuDebugOn(IS_ERR_OR_NULL(dentry));
13615 +       finfo = au_fi(file);
13616 +       memset(&finfo->fi_htop, 0, sizeof(finfo->fi_htop));
13617 +       atomic_set(&finfo->fi_mmapped, 0);
13618 +       bindex = au_dbtop(dentry);
13619 +       if (!h_file) {
13620 +               h_dentry = au_h_dptr(dentry, bindex);
13621 +               err = vfsub_test_mntns(file->f_path.mnt, h_dentry->d_sb);
13622 +               if (unlikely(err))
13623 +                       goto out;
13624 +               h_file = au_h_open(dentry, bindex, flags, file, /*force_wr*/0);
13625 +       } else {
13626 +               h_dentry = h_file->f_path.dentry;
13627 +               err = vfsub_test_mntns(file->f_path.mnt, h_dentry->d_sb);
13628 +               if (unlikely(err))
13629 +                       goto out;
13630 +               get_file(h_file);
13631 +       }
13632 +       if (IS_ERR(h_file))
13633 +               err = PTR_ERR(h_file);
13634 +       else {
13635 +               if ((flags & __O_TMPFILE)
13636 +                   && !(flags & O_EXCL)) {
13637 +                       h_inode = file_inode(h_file);
13638 +                       spin_lock(&h_inode->i_lock);
13639 +                       h_inode->i_state |= I_LINKABLE;
13640 +                       spin_unlock(&h_inode->i_lock);
13641 +               }
13642 +               au_set_fbtop(file, bindex);
13643 +               au_set_h_fptr(file, bindex, h_file);
13644 +               au_update_figen(file);
13645 +               /* todo: necessary? */
13646 +               /* file->f_ra = h_file->f_ra; */
13647 +       }
13648 +
13649 +out:
13650 +       return err;
13651 +}
13652 +
13653 +static int aufs_open_nondir(struct inode *inode __maybe_unused,
13654 +                           struct file *file)
13655 +{
13656 +       int err;
13657 +       struct super_block *sb;
13658 +       struct au_do_open_args args = {
13659 +               .open   = au_do_open_nondir
13660 +       };
13661 +
13662 +       AuDbg("%pD, f_flags 0x%x, f_mode 0x%x\n",
13663 +             file, vfsub_file_flags(file), file->f_mode);
13664 +
13665 +       sb = file->f_path.dentry->d_sb;
13666 +       si_read_lock(sb, AuLock_FLUSH);
13667 +       err = au_do_open(file, &args);
13668 +       si_read_unlock(sb);
13669 +       return err;
13670 +}
13671 +
13672 +int aufs_release_nondir(struct inode *inode __maybe_unused, struct file *file)
13673 +{
13674 +       struct au_finfo *finfo;
13675 +       aufs_bindex_t bindex;
13676 +       int delayed;
13677 +
13678 +       finfo = au_fi(file);
13679 +       au_sphl_del(&finfo->fi_hlist,
13680 +                   &au_sbi(file->f_path.dentry->d_sb)->si_files);
13681 +       bindex = finfo->fi_btop;
13682 +       if (bindex >= 0)
13683 +               au_set_h_fptr(file, bindex, NULL);
13684 +
13685 +       delayed = (current->flags & PF_KTHREAD) || in_interrupt();
13686 +       au_finfo_fin(file, delayed);
13687 +       return 0;
13688 +}
13689 +
13690 +/* ---------------------------------------------------------------------- */
13691 +
13692 +static int au_do_flush_nondir(struct file *file, fl_owner_t id)
13693 +{
13694 +       int err;
13695 +       struct file *h_file;
13696 +
13697 +       err = 0;
13698 +       h_file = au_hf_top(file);
13699 +       if (h_file)
13700 +               err = vfsub_flush(h_file, id);
13701 +       return err;
13702 +}
13703 +
13704 +static int aufs_flush_nondir(struct file *file, fl_owner_t id)
13705 +{
13706 +       return au_do_flush(file, id, au_do_flush_nondir);
13707 +}
13708 +
13709 +/* ---------------------------------------------------------------------- */
13710 +/*
13711 + * read and write functions acquire [fdi]_rwsem once, but release before
13712 + * mmap_sem. This is because to stop a race condition between mmap(2).
13713 + * Releasing these aufs-rwsem should be safe, no branch-mamagement (by keeping
13714 + * si_rwsem), no harmful copy-up should happen. Actually copy-up may happen in
13715 + * read functions after [fdi]_rwsem are released, but it should be harmless.
13716 + */
13717 +
13718 +/* Callers should call au_read_post() or fput() in the end */
13719 +struct file *au_read_pre(struct file *file, int keep_fi)
13720 +{
13721 +       struct file *h_file;
13722 +       int err;
13723 +
13724 +       err = au_reval_and_lock_fdi(file, au_reopen_nondir, /*wlock*/0);
13725 +       if (!err) {
13726 +               di_read_unlock(file->f_path.dentry, AuLock_IR);
13727 +               h_file = au_hf_top(file);
13728 +               get_file(h_file);
13729 +               if (!keep_fi)
13730 +                       fi_read_unlock(file);
13731 +       } else
13732 +               h_file = ERR_PTR(err);
13733 +
13734 +       return h_file;
13735 +}
13736 +
13737 +static void au_read_post(struct inode *inode, struct file *h_file)
13738 +{
13739 +       /* update without lock, I don't think it a problem */
13740 +       fsstack_copy_attr_atime(inode, file_inode(h_file));
13741 +       fput(h_file);
13742 +}
13743 +
13744 +struct au_write_pre {
13745 +       blkcnt_t blks;
13746 +       aufs_bindex_t btop;
13747 +};
13748 +
13749 +/*
13750 + * return with iinfo is write-locked
13751 + * callers should call au_write_post() or iinfo_write_unlock() + fput() in the
13752 + * end
13753 + */
13754 +static struct file *au_write_pre(struct file *file, int do_ready,
13755 +                                struct au_write_pre *wpre)
13756 +{
13757 +       struct file *h_file;
13758 +       struct dentry *dentry;
13759 +       int err;
13760 +       struct au_pin pin;
13761 +
13762 +       err = au_reval_and_lock_fdi(file, au_reopen_nondir, /*wlock*/1);
13763 +       h_file = ERR_PTR(err);
13764 +       if (unlikely(err))
13765 +               goto out;
13766 +
13767 +       dentry = file->f_path.dentry;
13768 +       if (do_ready) {
13769 +               err = au_ready_to_write(file, -1, &pin);
13770 +               if (unlikely(err)) {
13771 +                       h_file = ERR_PTR(err);
13772 +                       di_write_unlock(dentry);
13773 +                       goto out_fi;
13774 +               }
13775 +       }
13776 +
13777 +       di_downgrade_lock(dentry, /*flags*/0);
13778 +       if (wpre)
13779 +               wpre->btop = au_fbtop(file);
13780 +       h_file = au_hf_top(file);
13781 +       get_file(h_file);
13782 +       if (wpre)
13783 +               wpre->blks = file_inode(h_file)->i_blocks;
13784 +       if (do_ready)
13785 +               au_unpin(&pin);
13786 +       di_read_unlock(dentry, /*flags*/0);
13787 +
13788 +out_fi:
13789 +       fi_write_unlock(file);
13790 +out:
13791 +       return h_file;
13792 +}
13793 +
13794 +static void au_write_post(struct inode *inode, struct file *h_file,
13795 +                         struct au_write_pre *wpre, ssize_t written)
13796 +{
13797 +       struct inode *h_inode;
13798 +
13799 +       au_cpup_attr_timesizes(inode);
13800 +       AuDebugOn(au_ibtop(inode) != wpre->btop);
13801 +       h_inode = file_inode(h_file);
13802 +       inode->i_mode = h_inode->i_mode;
13803 +       ii_write_unlock(inode);
13804 +       fput(h_file);
13805 +
13806 +       /* AuDbg("blks %llu, %llu\n", (u64)blks, (u64)h_inode->i_blocks); */
13807 +       if (written > 0)
13808 +               au_fhsm_wrote(inode->i_sb, wpre->btop,
13809 +                             /*force*/h_inode->i_blocks > wpre->blks);
13810 +}
13811 +
13812 +static ssize_t aufs_read(struct file *file, char __user *buf, size_t count,
13813 +                        loff_t *ppos)
13814 +{
13815 +       ssize_t err;
13816 +       struct inode *inode;
13817 +       struct file *h_file;
13818 +       struct super_block *sb;
13819 +
13820 +       inode = file_inode(file);
13821 +       sb = inode->i_sb;
13822 +       si_read_lock(sb, AuLock_FLUSH | AuLock_NOPLMW);
13823 +
13824 +       h_file = au_read_pre(file, /*keep_fi*/0);
13825 +       err = PTR_ERR(h_file);
13826 +       if (IS_ERR(h_file))
13827 +               goto out;
13828 +
13829 +       /* filedata may be obsoleted by concurrent copyup, but no problem */
13830 +       err = vfsub_read_u(h_file, buf, count, ppos);
13831 +       /* todo: necessary? */
13832 +       /* file->f_ra = h_file->f_ra; */
13833 +       au_read_post(inode, h_file);
13834 +
13835 +out:
13836 +       si_read_unlock(sb);
13837 +       return err;
13838 +}
13839 +
13840 +/*
13841 + * todo: very ugly
13842 + * it locks both of i_mutex and si_rwsem for read in safe.
13843 + * if the plink maintenance mode continues forever (that is the problem),
13844 + * may loop forever.
13845 + */
13846 +static void au_mtx_and_read_lock(struct inode *inode)
13847 +{
13848 +       int err;
13849 +       struct super_block *sb = inode->i_sb;
13850 +
13851 +       while (1) {
13852 +               inode_lock(inode);
13853 +               err = si_read_lock(sb, AuLock_FLUSH | AuLock_NOPLM);
13854 +               if (!err)
13855 +                       break;
13856 +               inode_unlock(inode);
13857 +               si_read_lock(sb, AuLock_NOPLMW);
13858 +               si_read_unlock(sb);
13859 +       }
13860 +}
13861 +
13862 +static ssize_t aufs_write(struct file *file, const char __user *ubuf,
13863 +                         size_t count, loff_t *ppos)
13864 +{
13865 +       ssize_t err;
13866 +       struct au_write_pre wpre;
13867 +       struct inode *inode;
13868 +       struct file *h_file;
13869 +       char __user *buf = (char __user *)ubuf;
13870 +
13871 +       inode = file_inode(file);
13872 +       au_mtx_and_read_lock(inode);
13873 +
13874 +       h_file = au_write_pre(file, /*do_ready*/1, &wpre);
13875 +       err = PTR_ERR(h_file);
13876 +       if (IS_ERR(h_file))
13877 +               goto out;
13878 +
13879 +       err = vfsub_write_u(h_file, buf, count, ppos);
13880 +       au_write_post(inode, h_file, &wpre, err);
13881 +
13882 +out:
13883 +       si_read_unlock(inode->i_sb);
13884 +       inode_unlock(inode);
13885 +       return err;
13886 +}
13887 +
13888 +static ssize_t au_do_iter(struct file *h_file, int rw, struct kiocb *kio,
13889 +                         struct iov_iter *iov_iter)
13890 +{
13891 +       ssize_t err;
13892 +       struct file *file;
13893 +       ssize_t (*iter)(struct kiocb *, struct iov_iter *);
13894 +
13895 +       err = security_file_permission(h_file, rw);
13896 +       if (unlikely(err))
13897 +               goto out;
13898 +
13899 +       err = -ENOSYS;
13900 +       iter = NULL;
13901 +       if (rw == MAY_READ)
13902 +               iter = h_file->f_op->read_iter;
13903 +       else if (rw == MAY_WRITE)
13904 +               iter = h_file->f_op->write_iter;
13905 +
13906 +       file = kio->ki_filp;
13907 +       kio->ki_filp = h_file;
13908 +       if (iter) {
13909 +               lockdep_off();
13910 +               err = iter(kio, iov_iter);
13911 +               lockdep_on();
13912 +       } else
13913 +               /* currently there is no such fs */
13914 +               WARN_ON_ONCE(1);
13915 +       kio->ki_filp = file;
13916 +
13917 +out:
13918 +       return err;
13919 +}
13920 +
13921 +static ssize_t aufs_read_iter(struct kiocb *kio, struct iov_iter *iov_iter)
13922 +{
13923 +       ssize_t err;
13924 +       struct file *file, *h_file;
13925 +       struct inode *inode;
13926 +       struct super_block *sb;
13927 +
13928 +       file = kio->ki_filp;
13929 +       inode = file_inode(file);
13930 +       sb = inode->i_sb;
13931 +       si_read_lock(sb, AuLock_FLUSH | AuLock_NOPLMW);
13932 +
13933 +       h_file = au_read_pre(file, /*keep_fi*/1);
13934 +       err = PTR_ERR(h_file);
13935 +       if (IS_ERR(h_file))
13936 +               goto out;
13937 +
13938 +       if (au_test_loopback_kthread()) {
13939 +               au_warn_loopback(h_file->f_path.dentry->d_sb);
13940 +               if (file->f_mapping != h_file->f_mapping) {
13941 +                       file->f_mapping = h_file->f_mapping;
13942 +                       smp_mb(); /* unnecessary? */
13943 +               }
13944 +       }
13945 +       fi_read_unlock(file);
13946 +
13947 +       err = au_do_iter(h_file, MAY_READ, kio, iov_iter);
13948 +       /* todo: necessary? */
13949 +       /* file->f_ra = h_file->f_ra; */
13950 +       au_read_post(inode, h_file);
13951 +
13952 +out:
13953 +       si_read_unlock(sb);
13954 +       return err;
13955 +}
13956 +
13957 +static ssize_t aufs_write_iter(struct kiocb *kio, struct iov_iter *iov_iter)
13958 +{
13959 +       ssize_t err;
13960 +       struct au_write_pre wpre;
13961 +       struct inode *inode;
13962 +       struct file *file, *h_file;
13963 +
13964 +       file = kio->ki_filp;
13965 +       inode = file_inode(file);
13966 +       au_mtx_and_read_lock(inode);
13967 +
13968 +       h_file = au_write_pre(file, /*do_ready*/1, &wpre);
13969 +       err = PTR_ERR(h_file);
13970 +       if (IS_ERR(h_file))
13971 +               goto out;
13972 +
13973 +       err = au_do_iter(h_file, MAY_WRITE, kio, iov_iter);
13974 +       au_write_post(inode, h_file, &wpre, err);
13975 +
13976 +out:
13977 +       si_read_unlock(inode->i_sb);
13978 +       inode_unlock(inode);
13979 +       return err;
13980 +}
13981 +
13982 +static ssize_t aufs_splice_read(struct file *file, loff_t *ppos,
13983 +                               struct pipe_inode_info *pipe, size_t len,
13984 +                               unsigned int flags)
13985 +{
13986 +       ssize_t err;
13987 +       struct file *h_file;
13988 +       struct inode *inode;
13989 +       struct super_block *sb;
13990 +
13991 +       inode = file_inode(file);
13992 +       sb = inode->i_sb;
13993 +       si_read_lock(sb, AuLock_FLUSH | AuLock_NOPLMW);
13994 +
13995 +       h_file = au_read_pre(file, /*keep_fi*/0);
13996 +       err = PTR_ERR(h_file);
13997 +       if (IS_ERR(h_file))
13998 +               goto out;
13999 +
14000 +       err = vfsub_splice_to(h_file, ppos, pipe, len, flags);
14001 +       /* todo: necessasry? */
14002 +       /* file->f_ra = h_file->f_ra; */
14003 +       au_read_post(inode, h_file);
14004 +
14005 +out:
14006 +       si_read_unlock(sb);
14007 +       return err;
14008 +}
14009 +
14010 +static ssize_t
14011 +aufs_splice_write(struct pipe_inode_info *pipe, struct file *file, loff_t *ppos,
14012 +                 size_t len, unsigned int flags)
14013 +{
14014 +       ssize_t err;
14015 +       struct au_write_pre wpre;
14016 +       struct inode *inode;
14017 +       struct file *h_file;
14018 +
14019 +       inode = file_inode(file);
14020 +       au_mtx_and_read_lock(inode);
14021 +
14022 +       h_file = au_write_pre(file, /*do_ready*/1, &wpre);
14023 +       err = PTR_ERR(h_file);
14024 +       if (IS_ERR(h_file))
14025 +               goto out;
14026 +
14027 +       err = vfsub_splice_from(pipe, h_file, ppos, len, flags);
14028 +       au_write_post(inode, h_file, &wpre, err);
14029 +
14030 +out:
14031 +       si_read_unlock(inode->i_sb);
14032 +       inode_unlock(inode);
14033 +       return err;
14034 +}
14035 +
14036 +static long aufs_fallocate(struct file *file, int mode, loff_t offset,
14037 +                          loff_t len)
14038 +{
14039 +       long err;
14040 +       struct au_write_pre wpre;
14041 +       struct inode *inode;
14042 +       struct file *h_file;
14043 +
14044 +       inode = file_inode(file);
14045 +       au_mtx_and_read_lock(inode);
14046 +
14047 +       h_file = au_write_pre(file, /*do_ready*/1, &wpre);
14048 +       err = PTR_ERR(h_file);
14049 +       if (IS_ERR(h_file))
14050 +               goto out;
14051 +
14052 +       lockdep_off();
14053 +       err = vfs_fallocate(h_file, mode, offset, len);
14054 +       lockdep_on();
14055 +       au_write_post(inode, h_file, &wpre, /*written*/1);
14056 +
14057 +out:
14058 +       si_read_unlock(inode->i_sb);
14059 +       inode_unlock(inode);
14060 +       return err;
14061 +}
14062 +
14063 +/* ---------------------------------------------------------------------- */
14064 +
14065 +/*
14066 + * The locking order around current->mmap_sem.
14067 + * - in most and regular cases
14068 + *   file I/O syscall -- aufs_read() or something
14069 + *     -- si_rwsem for read -- mmap_sem
14070 + *     (Note that [fdi]i_rwsem are released before mmap_sem).
14071 + * - in mmap case
14072 + *   mmap(2) -- mmap_sem -- aufs_mmap() -- si_rwsem for read -- [fdi]i_rwsem
14073 + * This AB-BA order is definitly bad, but is not a problem since "si_rwsem for
14074 + * read" allows muliple processes to acquire it and [fdi]i_rwsem are not held in
14075 + * file I/O. Aufs needs to stop lockdep in aufs_mmap() though.
14076 + * It means that when aufs acquires si_rwsem for write, the process should never
14077 + * acquire mmap_sem.
14078 + *
14079 + * Actually aufs_iterate() holds [fdi]i_rwsem before mmap_sem, but this is not a
14080 + * problem either since any directory is not able to be mmap-ed.
14081 + * The similar scenario is applied to aufs_readlink() too.
14082 + */
14083 +
14084 +#if 0 /* stop calling security_file_mmap() */
14085 +/* cf. linux/include/linux/mman.h: calc_vm_prot_bits() */
14086 +#define AuConv_VM_PROT(f, b)   _calc_vm_trans(f, VM_##b, PROT_##b)
14087 +
14088 +static unsigned long au_arch_prot_conv(unsigned long flags)
14089 +{
14090 +       /* currently ppc64 only */
14091 +#ifdef CONFIG_PPC64
14092 +       /* cf. linux/arch/powerpc/include/asm/mman.h */
14093 +       AuDebugOn(arch_calc_vm_prot_bits(-1) != VM_SAO);
14094 +       return AuConv_VM_PROT(flags, SAO);
14095 +#else
14096 +       AuDebugOn(arch_calc_vm_prot_bits(-1));
14097 +       return 0;
14098 +#endif
14099 +}
14100 +
14101 +static unsigned long au_prot_conv(unsigned long flags)
14102 +{
14103 +       return AuConv_VM_PROT(flags, READ)
14104 +               | AuConv_VM_PROT(flags, WRITE)
14105 +               | AuConv_VM_PROT(flags, EXEC)
14106 +               | au_arch_prot_conv(flags);
14107 +}
14108 +
14109 +/* cf. linux/include/linux/mman.h: calc_vm_flag_bits() */
14110 +#define AuConv_VM_MAP(f, b)    _calc_vm_trans(f, VM_##b, MAP_##b)
14111 +
14112 +static unsigned long au_flag_conv(unsigned long flags)
14113 +{
14114 +       return AuConv_VM_MAP(flags, GROWSDOWN)
14115 +               | AuConv_VM_MAP(flags, DENYWRITE)
14116 +               | AuConv_VM_MAP(flags, LOCKED);
14117 +}
14118 +#endif
14119 +
14120 +static int aufs_mmap(struct file *file, struct vm_area_struct *vma)
14121 +{
14122 +       int err;
14123 +       const unsigned char wlock
14124 +               = (file->f_mode & FMODE_WRITE) && (vma->vm_flags & VM_SHARED);
14125 +       struct super_block *sb;
14126 +       struct file *h_file;
14127 +       struct inode *inode;
14128 +
14129 +       AuDbgVmRegion(file, vma);
14130 +
14131 +       inode = file_inode(file);
14132 +       sb = inode->i_sb;
14133 +       lockdep_off();
14134 +       si_read_lock(sb, AuLock_NOPLMW);
14135 +
14136 +       h_file = au_write_pre(file, wlock, /*wpre*/NULL);
14137 +       lockdep_on();
14138 +       err = PTR_ERR(h_file);
14139 +       if (IS_ERR(h_file))
14140 +               goto out;
14141 +
14142 +       err = 0;
14143 +       au_set_mmapped(file);
14144 +       au_vm_file_reset(vma, h_file);
14145 +       /*
14146 +        * we cannot call security_mmap_file() here since it may acquire
14147 +        * mmap_sem or i_mutex.
14148 +        *
14149 +        * err = security_mmap_file(h_file, au_prot_conv(vma->vm_flags),
14150 +        *                       au_flag_conv(vma->vm_flags));
14151 +        */
14152 +       if (!err)
14153 +               err = h_file->f_op->mmap(h_file, vma);
14154 +       if (!err) {
14155 +               au_vm_prfile_set(vma, file);
14156 +               fsstack_copy_attr_atime(inode, file_inode(h_file));
14157 +               goto out_fput; /* success */
14158 +       }
14159 +       au_unset_mmapped(file);
14160 +       au_vm_file_reset(vma, file);
14161 +
14162 +out_fput:
14163 +       lockdep_off();
14164 +       ii_write_unlock(inode);
14165 +       lockdep_on();
14166 +       fput(h_file);
14167 +out:
14168 +       lockdep_off();
14169 +       si_read_unlock(sb);
14170 +       lockdep_on();
14171 +       AuTraceErr(err);
14172 +       return err;
14173 +}
14174 +
14175 +/* ---------------------------------------------------------------------- */
14176 +
14177 +static int aufs_fsync_nondir(struct file *file, loff_t start, loff_t end,
14178 +                            int datasync)
14179 +{
14180 +       int err;
14181 +       struct au_write_pre wpre;
14182 +       struct inode *inode;
14183 +       struct file *h_file;
14184 +
14185 +       err = 0; /* -EBADF; */ /* posix? */
14186 +       if (unlikely(!(file->f_mode & FMODE_WRITE)))
14187 +               goto out;
14188 +
14189 +       inode = file_inode(file);
14190 +       au_mtx_and_read_lock(inode);
14191 +
14192 +       h_file = au_write_pre(file, /*do_ready*/1, &wpre);
14193 +       err = PTR_ERR(h_file);
14194 +       if (IS_ERR(h_file))
14195 +               goto out_unlock;
14196 +
14197 +       err = vfsub_fsync(h_file, &h_file->f_path, datasync);
14198 +       au_write_post(inode, h_file, &wpre, /*written*/0);
14199 +
14200 +out_unlock:
14201 +       si_read_unlock(inode->i_sb);
14202 +       inode_unlock(inode);
14203 +out:
14204 +       return err;
14205 +}
14206 +
14207 +static int aufs_fasync(int fd, struct file *file, int flag)
14208 +{
14209 +       int err;
14210 +       struct file *h_file;
14211 +       struct super_block *sb;
14212 +
14213 +       sb = file->f_path.dentry->d_sb;
14214 +       si_read_lock(sb, AuLock_FLUSH | AuLock_NOPLMW);
14215 +
14216 +       h_file = au_read_pre(file, /*keep_fi*/0);
14217 +       err = PTR_ERR(h_file);
14218 +       if (IS_ERR(h_file))
14219 +               goto out;
14220 +
14221 +       if (h_file->f_op->fasync)
14222 +               err = h_file->f_op->fasync(fd, h_file, flag);
14223 +       fput(h_file); /* instead of au_read_post() */
14224 +
14225 +out:
14226 +       si_read_unlock(sb);
14227 +       return err;
14228 +}
14229 +
14230 +static int aufs_setfl(struct file *file, unsigned long arg)
14231 +{
14232 +       int err;
14233 +       struct file *h_file;
14234 +       struct super_block *sb;
14235 +
14236 +       sb = file->f_path.dentry->d_sb;
14237 +       si_read_lock(sb, AuLock_FLUSH | AuLock_NOPLMW);
14238 +
14239 +       h_file = au_read_pre(file, /*keep_fi*/0);
14240 +       err = PTR_ERR(h_file);
14241 +       if (IS_ERR(h_file))
14242 +               goto out;
14243 +
14244 +       arg |= vfsub_file_flags(file) & FASYNC; /* stop calling h_file->fasync */
14245 +       err = setfl(/*unused fd*/-1, h_file, arg);
14246 +       fput(h_file); /* instead of au_read_post() */
14247 +
14248 +out:
14249 +       si_read_unlock(sb);
14250 +       return err;
14251 +}
14252 +
14253 +/* ---------------------------------------------------------------------- */
14254 +
14255 +/* no one supports this operation, currently */
14256 +#if 0
14257 +static ssize_t aufs_sendpage(struct file *file, struct page *page, int offset,
14258 +                            size_t len, loff_t *pos, int more)
14259 +{
14260 +}
14261 +#endif
14262 +
14263 +/* ---------------------------------------------------------------------- */
14264 +
14265 +const struct file_operations aufs_file_fop = {
14266 +       .owner          = THIS_MODULE,
14267 +
14268 +       .llseek         = default_llseek,
14269 +
14270 +       .read           = aufs_read,
14271 +       .write          = aufs_write,
14272 +       .read_iter      = aufs_read_iter,
14273 +       .write_iter     = aufs_write_iter,
14274 +
14275 +#ifdef CONFIG_AUFS_POLL
14276 +       .poll           = aufs_poll,
14277 +#endif
14278 +       .unlocked_ioctl = aufs_ioctl_nondir,
14279 +#ifdef CONFIG_COMPAT
14280 +       .compat_ioctl   = aufs_compat_ioctl_nondir,
14281 +#endif
14282 +       .mmap           = aufs_mmap,
14283 +       .open           = aufs_open_nondir,
14284 +       .flush          = aufs_flush_nondir,
14285 +       .release        = aufs_release_nondir,
14286 +       .fsync          = aufs_fsync_nondir,
14287 +       .fasync         = aufs_fasync,
14288 +       /* .sendpage    = aufs_sendpage, */
14289 +       .setfl          = aufs_setfl,
14290 +       .splice_write   = aufs_splice_write,
14291 +       .splice_read    = aufs_splice_read,
14292 +#if 0
14293 +       .aio_splice_write = aufs_aio_splice_write,
14294 +       .aio_splice_read  = aufs_aio_splice_read,
14295 +#endif
14296 +       .fallocate      = aufs_fallocate
14297 +};
14298 diff -urN /usr/share/empty/fs/aufs/fstype.h linux/fs/aufs/fstype.h
14299 --- /usr/share/empty/fs/aufs/fstype.h   1970-01-01 01:00:00.000000000 +0100
14300 +++ linux/fs/aufs/fstype.h      2016-10-09 16:55:36.492701639 +0200
14301 @@ -0,0 +1,400 @@
14302 +/*
14303 + * Copyright (C) 2005-2016 Junjiro R. Okajima
14304 + *
14305 + * This program, aufs is free software; you can redistribute it and/or modify
14306 + * it under the terms of the GNU General Public License as published by
14307 + * the Free Software Foundation; either version 2 of the License, or
14308 + * (at your option) any later version.
14309 + *
14310 + * This program is distributed in the hope that it will be useful,
14311 + * but WITHOUT ANY WARRANTY; without even the implied warranty of
14312 + * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
14313 + * GNU General Public License for more details.
14314 + *
14315 + * You should have received a copy of the GNU General Public License
14316 + * along with this program.  If not, see <http://www.gnu.org/licenses/>.
14317 + */
14318 +
14319 +/*
14320 + * judging filesystem type
14321 + */
14322 +
14323 +#ifndef __AUFS_FSTYPE_H__
14324 +#define __AUFS_FSTYPE_H__
14325 +
14326 +#ifdef __KERNEL__
14327 +
14328 +#include <linux/fs.h>
14329 +#include <linux/magic.h>
14330 +#include <linux/nfs_fs.h>
14331 +#include <linux/romfs_fs.h>
14332 +
14333 +static inline int au_test_aufs(struct super_block *sb)
14334 +{
14335 +       return sb->s_magic == AUFS_SUPER_MAGIC;
14336 +}
14337 +
14338 +static inline const char *au_sbtype(struct super_block *sb)
14339 +{
14340 +       return sb->s_type->name;
14341 +}
14342 +
14343 +static inline int au_test_iso9660(struct super_block *sb __maybe_unused)
14344 +{
14345 +#if IS_ENABLED(CONFIG_ISO9660_FS)
14346 +       return sb->s_magic == ISOFS_SUPER_MAGIC;
14347 +#else
14348 +       return 0;
14349 +#endif
14350 +}
14351 +
14352 +static inline int au_test_romfs(struct super_block *sb __maybe_unused)
14353 +{
14354 +#if IS_ENABLED(CONFIG_ROMFS_FS)
14355 +       return sb->s_magic == ROMFS_MAGIC;
14356 +#else
14357 +       return 0;
14358 +#endif
14359 +}
14360 +
14361 +static inline int au_test_cramfs(struct super_block *sb __maybe_unused)
14362 +{
14363 +#if IS_ENABLED(CONFIG_CRAMFS)
14364 +       return sb->s_magic == CRAMFS_MAGIC;
14365 +#endif
14366 +       return 0;
14367 +}
14368 +
14369 +static inline int au_test_nfs(struct super_block *sb __maybe_unused)
14370 +{
14371 +#if IS_ENABLED(CONFIG_NFS_FS)
14372 +       return sb->s_magic == NFS_SUPER_MAGIC;
14373 +#else
14374 +       return 0;
14375 +#endif
14376 +}
14377 +
14378 +static inline int au_test_fuse(struct super_block *sb __maybe_unused)
14379 +{
14380 +#if IS_ENABLED(CONFIG_FUSE_FS)
14381 +       return sb->s_magic == FUSE_SUPER_MAGIC;
14382 +#else
14383 +       return 0;
14384 +#endif
14385 +}
14386 +
14387 +static inline int au_test_xfs(struct super_block *sb __maybe_unused)
14388 +{
14389 +#if IS_ENABLED(CONFIG_XFS_FS)
14390 +       return sb->s_magic == XFS_SB_MAGIC;
14391 +#else
14392 +       return 0;
14393 +#endif
14394 +}
14395 +
14396 +static inline int au_test_tmpfs(struct super_block *sb __maybe_unused)
14397 +{
14398 +#ifdef CONFIG_TMPFS
14399 +       return sb->s_magic == TMPFS_MAGIC;
14400 +#else
14401 +       return 0;
14402 +#endif
14403 +}
14404 +
14405 +static inline int au_test_ecryptfs(struct super_block *sb __maybe_unused)
14406 +{
14407 +#if IS_ENABLED(CONFIG_ECRYPT_FS)
14408 +       return !strcmp(au_sbtype(sb), "ecryptfs");
14409 +#else
14410 +       return 0;
14411 +#endif
14412 +}
14413 +
14414 +static inline int au_test_ramfs(struct super_block *sb)
14415 +{
14416 +       return sb->s_magic == RAMFS_MAGIC;
14417 +}
14418 +
14419 +static inline int au_test_ubifs(struct super_block *sb __maybe_unused)
14420 +{
14421 +#if IS_ENABLED(CONFIG_UBIFS_FS)
14422 +       return sb->s_magic == UBIFS_SUPER_MAGIC;
14423 +#else
14424 +       return 0;
14425 +#endif
14426 +}
14427 +
14428 +static inline int au_test_procfs(struct super_block *sb __maybe_unused)
14429 +{
14430 +#ifdef CONFIG_PROC_FS
14431 +       return sb->s_magic == PROC_SUPER_MAGIC;
14432 +#else
14433 +       return 0;
14434 +#endif
14435 +}
14436 +
14437 +static inline int au_test_sysfs(struct super_block *sb __maybe_unused)
14438 +{
14439 +#ifdef CONFIG_SYSFS
14440 +       return sb->s_magic == SYSFS_MAGIC;
14441 +#else
14442 +       return 0;
14443 +#endif
14444 +}
14445 +
14446 +static inline int au_test_configfs(struct super_block *sb __maybe_unused)
14447 +{
14448 +#if IS_ENABLED(CONFIG_CONFIGFS_FS)
14449 +       return sb->s_magic == CONFIGFS_MAGIC;
14450 +#else
14451 +       return 0;
14452 +#endif
14453 +}
14454 +
14455 +static inline int au_test_minix(struct super_block *sb __maybe_unused)
14456 +{
14457 +#if IS_ENABLED(CONFIG_MINIX_FS)
14458 +       return sb->s_magic == MINIX3_SUPER_MAGIC
14459 +               || sb->s_magic == MINIX2_SUPER_MAGIC
14460 +               || sb->s_magic == MINIX2_SUPER_MAGIC2
14461 +               || sb->s_magic == MINIX_SUPER_MAGIC
14462 +               || sb->s_magic == MINIX_SUPER_MAGIC2;
14463 +#else
14464 +       return 0;
14465 +#endif
14466 +}
14467 +
14468 +static inline int au_test_fat(struct super_block *sb __maybe_unused)
14469 +{
14470 +#if IS_ENABLED(CONFIG_FAT_FS)
14471 +       return sb->s_magic == MSDOS_SUPER_MAGIC;
14472 +#else
14473 +       return 0;
14474 +#endif
14475 +}
14476 +
14477 +static inline int au_test_msdos(struct super_block *sb)
14478 +{
14479 +       return au_test_fat(sb);
14480 +}
14481 +
14482 +static inline int au_test_vfat(struct super_block *sb)
14483 +{
14484 +       return au_test_fat(sb);
14485 +}
14486 +
14487 +static inline int au_test_securityfs(struct super_block *sb __maybe_unused)
14488 +{
14489 +#ifdef CONFIG_SECURITYFS
14490 +       return sb->s_magic == SECURITYFS_MAGIC;
14491 +#else
14492 +       return 0;
14493 +#endif
14494 +}
14495 +
14496 +static inline int au_test_squashfs(struct super_block *sb __maybe_unused)
14497 +{
14498 +#if IS_ENABLED(CONFIG_SQUASHFS)
14499 +       return sb->s_magic == SQUASHFS_MAGIC;
14500 +#else
14501 +       return 0;
14502 +#endif
14503 +}
14504 +
14505 +static inline int au_test_btrfs(struct super_block *sb __maybe_unused)
14506 +{
14507 +#if IS_ENABLED(CONFIG_BTRFS_FS)
14508 +       return sb->s_magic == BTRFS_SUPER_MAGIC;
14509 +#else
14510 +       return 0;
14511 +#endif
14512 +}
14513 +
14514 +static inline int au_test_xenfs(struct super_block *sb __maybe_unused)
14515 +{
14516 +#if IS_ENABLED(CONFIG_XENFS)
14517 +       return sb->s_magic == XENFS_SUPER_MAGIC;
14518 +#else
14519 +       return 0;
14520 +#endif
14521 +}
14522 +
14523 +static inline int au_test_debugfs(struct super_block *sb __maybe_unused)
14524 +{
14525 +#ifdef CONFIG_DEBUG_FS
14526 +       return sb->s_magic == DEBUGFS_MAGIC;
14527 +#else
14528 +       return 0;
14529 +#endif
14530 +}
14531 +
14532 +static inline int au_test_nilfs(struct super_block *sb __maybe_unused)
14533 +{
14534 +#if IS_ENABLED(CONFIG_NILFS)
14535 +       return sb->s_magic == NILFS_SUPER_MAGIC;
14536 +#else
14537 +       return 0;
14538 +#endif
14539 +}
14540 +
14541 +static inline int au_test_hfsplus(struct super_block *sb __maybe_unused)
14542 +{
14543 +#if IS_ENABLED(CONFIG_HFSPLUS_FS)
14544 +       return sb->s_magic == HFSPLUS_SUPER_MAGIC;
14545 +#else
14546 +       return 0;
14547 +#endif
14548 +}
14549 +
14550 +/* ---------------------------------------------------------------------- */
14551 +/*
14552 + * they can't be an aufs branch.
14553 + */
14554 +static inline int au_test_fs_unsuppoted(struct super_block *sb)
14555 +{
14556 +       return
14557 +#ifndef CONFIG_AUFS_BR_RAMFS
14558 +               au_test_ramfs(sb) ||
14559 +#endif
14560 +               au_test_procfs(sb)
14561 +               || au_test_sysfs(sb)
14562 +               || au_test_configfs(sb)
14563 +               || au_test_debugfs(sb)
14564 +               || au_test_securityfs(sb)
14565 +               || au_test_xenfs(sb)
14566 +               || au_test_ecryptfs(sb)
14567 +               /* || !strcmp(au_sbtype(sb), "unionfs") */
14568 +               || au_test_aufs(sb); /* will be supported in next version */
14569 +}
14570 +
14571 +static inline int au_test_fs_remote(struct super_block *sb)
14572 +{
14573 +       return !au_test_tmpfs(sb)
14574 +#ifdef CONFIG_AUFS_BR_RAMFS
14575 +               && !au_test_ramfs(sb)
14576 +#endif
14577 +               && !(sb->s_type->fs_flags & FS_REQUIRES_DEV);
14578 +}
14579 +
14580 +/* ---------------------------------------------------------------------- */
14581 +
14582 +/*
14583 + * Note: these functions (below) are created after reading ->getattr() in all
14584 + * filesystems under linux/fs. it means we have to do so in every update...
14585 + */
14586 +
14587 +/*
14588 + * some filesystems require getattr to refresh the inode attributes before
14589 + * referencing.
14590 + * in most cases, we can rely on the inode attribute in NFS (or every remote fs)
14591 + * and leave the work for d_revalidate()
14592 + */
14593 +static inline int au_test_fs_refresh_iattr(struct super_block *sb)
14594 +{
14595 +       return au_test_nfs(sb)
14596 +               || au_test_fuse(sb)
14597 +               /* || au_test_btrfs(sb) */      /* untested */
14598 +               ;
14599 +}
14600 +
14601 +/*
14602 + * filesystems which don't maintain i_size or i_blocks.
14603 + */
14604 +static inline int au_test_fs_bad_iattr_size(struct super_block *sb)
14605 +{
14606 +       return au_test_xfs(sb)
14607 +               || au_test_btrfs(sb)
14608 +               || au_test_ubifs(sb)
14609 +               || au_test_hfsplus(sb)  /* maintained, but incorrect */
14610 +               /* || au_test_minix(sb) */      /* untested */
14611 +               ;
14612 +}
14613 +
14614 +/*
14615 + * filesystems which don't store the correct value in some of their inode
14616 + * attributes.
14617 + */
14618 +static inline int au_test_fs_bad_iattr(struct super_block *sb)
14619 +{
14620 +       return au_test_fs_bad_iattr_size(sb)
14621 +               || au_test_fat(sb)
14622 +               || au_test_msdos(sb)
14623 +               || au_test_vfat(sb);
14624 +}
14625 +
14626 +/* they don't check i_nlink in link(2) */
14627 +static inline int au_test_fs_no_limit_nlink(struct super_block *sb)
14628 +{
14629 +       return au_test_tmpfs(sb)
14630 +#ifdef CONFIG_AUFS_BR_RAMFS
14631 +               || au_test_ramfs(sb)
14632 +#endif
14633 +               || au_test_ubifs(sb)
14634 +               || au_test_hfsplus(sb);
14635 +}
14636 +
14637 +/*
14638 + * filesystems which sets S_NOATIME and S_NOCMTIME.
14639 + */
14640 +static inline int au_test_fs_notime(struct super_block *sb)
14641 +{
14642 +       return au_test_nfs(sb)
14643 +               || au_test_fuse(sb)
14644 +               || au_test_ubifs(sb)
14645 +               ;
14646 +}
14647 +
14648 +/* temporary support for i#1 in cramfs */
14649 +static inline int au_test_fs_unique_ino(struct inode *inode)
14650 +{
14651 +       if (au_test_cramfs(inode->i_sb))
14652 +               return inode->i_ino != 1;
14653 +       return 1;
14654 +}
14655 +
14656 +/* ---------------------------------------------------------------------- */
14657 +
14658 +/*
14659 + * the filesystem where the xino files placed must support i/o after unlink and
14660 + * maintain i_size and i_blocks.
14661 + */
14662 +static inline int au_test_fs_bad_xino(struct super_block *sb)
14663 +{
14664 +       return au_test_fs_remote(sb)
14665 +               || au_test_fs_bad_iattr_size(sb)
14666 +               /* don't want unnecessary work for xino */
14667 +               || au_test_aufs(sb)
14668 +               || au_test_ecryptfs(sb)
14669 +               || au_test_nilfs(sb);
14670 +}
14671 +
14672 +static inline int au_test_fs_trunc_xino(struct super_block *sb)
14673 +{
14674 +       return au_test_tmpfs(sb)
14675 +               || au_test_ramfs(sb);
14676 +}
14677 +
14678 +/*
14679 + * test if the @sb is real-readonly.
14680 + */
14681 +static inline int au_test_fs_rr(struct super_block *sb)
14682 +{
14683 +       return au_test_squashfs(sb)
14684 +               || au_test_iso9660(sb)
14685 +               || au_test_cramfs(sb)
14686 +               || au_test_romfs(sb);
14687 +}
14688 +
14689 +/*
14690 + * test if the @inode is nfs with 'noacl' option
14691 + * NFS always sets MS_POSIXACL regardless its mount option 'noacl.'
14692 + */
14693 +static inline int au_test_nfs_noacl(struct inode *inode)
14694 +{
14695 +       return au_test_nfs(inode->i_sb)
14696 +               /* && IS_POSIXACL(inode) */
14697 +               && !nfs_server_capable(inode, NFS_CAP_ACLS);
14698 +}
14699 +
14700 +#endif /* __KERNEL__ */
14701 +#endif /* __AUFS_FSTYPE_H__ */
14702 diff -urN /usr/share/empty/fs/aufs/hfsnotify.c linux/fs/aufs/hfsnotify.c
14703 --- /usr/share/empty/fs/aufs/hfsnotify.c        1970-01-01 01:00:00.000000000 +0100
14704 +++ linux/fs/aufs/hfsnotify.c   2016-10-09 16:55:36.492701639 +0200
14705 @@ -0,0 +1,287 @@
14706 +/*
14707 + * Copyright (C) 2005-2016 Junjiro R. Okajima
14708 + *
14709 + * This program, aufs is free software; you can redistribute it and/or modify
14710 + * it under the terms of the GNU General Public License as published by
14711 + * the Free Software Foundation; either version 2 of the License, or
14712 + * (at your option) any later version.
14713 + *
14714 + * This program is distributed in the hope that it will be useful,
14715 + * but WITHOUT ANY WARRANTY; without even the implied warranty of
14716 + * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
14717 + * GNU General Public License for more details.
14718 + *
14719 + * You should have received a copy of the GNU General Public License
14720 + * along with this program.  If not, see <http://www.gnu.org/licenses/>.
14721 + */
14722 +
14723 +/*
14724 + * fsnotify for the lower directories
14725 + */
14726 +
14727 +#include "aufs.h"
14728 +
14729 +/* FS_IN_IGNORED is unnecessary */
14730 +static const __u32 AuHfsnMask = (FS_MOVED_TO | FS_MOVED_FROM | FS_DELETE
14731 +                                | FS_CREATE | FS_EVENT_ON_CHILD);
14732 +static DECLARE_WAIT_QUEUE_HEAD(au_hfsn_wq);
14733 +static __cacheline_aligned_in_smp atomic64_t au_hfsn_ifree = ATOMIC64_INIT(0);
14734 +
14735 +static void au_hfsn_free_mark(struct fsnotify_mark *mark)
14736 +{
14737 +       struct au_hnotify *hn = container_of(mark, struct au_hnotify,
14738 +                                            hn_mark);
14739 +       /* AuDbg("here\n"); */
14740 +       au_cache_dfree_hnotify(hn);
14741 +       smp_mb__before_atomic();
14742 +       if (atomic64_dec_and_test(&au_hfsn_ifree))
14743 +               wake_up(&au_hfsn_wq);
14744 +}
14745 +
14746 +static int au_hfsn_alloc(struct au_hinode *hinode)
14747 +{
14748 +       int err;
14749 +       struct au_hnotify *hn;
14750 +       struct super_block *sb;
14751 +       struct au_branch *br;
14752 +       struct fsnotify_mark *mark;
14753 +       aufs_bindex_t bindex;
14754 +
14755 +       hn = hinode->hi_notify;
14756 +       sb = hn->hn_aufs_inode->i_sb;
14757 +       bindex = au_br_index(sb, hinode->hi_id);
14758 +       br = au_sbr(sb, bindex);
14759 +       AuDebugOn(!br->br_hfsn);
14760 +
14761 +       mark = &hn->hn_mark;
14762 +       fsnotify_init_mark(mark, au_hfsn_free_mark);
14763 +       mark->mask = AuHfsnMask;
14764 +       /*
14765 +        * by udba rename or rmdir, aufs assign a new inode to the known
14766 +        * h_inode, so specify 1 to allow dups.
14767 +        */
14768 +       lockdep_off();
14769 +       err = fsnotify_add_mark(mark, br->br_hfsn->hfsn_group, hinode->hi_inode,
14770 +                                /*mnt*/NULL, /*allow_dups*/1);
14771 +       lockdep_on();
14772 +
14773 +       return err;
14774 +}
14775 +
14776 +static int au_hfsn_free(struct au_hinode *hinode, struct au_hnotify *hn)
14777 +{
14778 +       struct fsnotify_mark *mark;
14779 +       unsigned long long ull;
14780 +       struct fsnotify_group *group;
14781 +
14782 +       ull = atomic64_inc_return(&au_hfsn_ifree);
14783 +       BUG_ON(!ull);
14784 +
14785 +       mark = &hn->hn_mark;
14786 +       spin_lock(&mark->lock);
14787 +       group = mark->group;
14788 +       fsnotify_get_group(group);
14789 +       spin_unlock(&mark->lock);
14790 +       lockdep_off();
14791 +       fsnotify_destroy_mark(mark, group);
14792 +       fsnotify_put_mark(mark);
14793 +       fsnotify_put_group(group);
14794 +       lockdep_on();
14795 +
14796 +       /* free hn by myself */
14797 +       return 0;
14798 +}
14799 +
14800 +/* ---------------------------------------------------------------------- */
14801 +
14802 +static void au_hfsn_ctl(struct au_hinode *hinode, int do_set)
14803 +{
14804 +       struct fsnotify_mark *mark;
14805 +
14806 +       mark = &hinode->hi_notify->hn_mark;
14807 +       spin_lock(&mark->lock);
14808 +       if (do_set) {
14809 +               AuDebugOn(mark->mask & AuHfsnMask);
14810 +               mark->mask |= AuHfsnMask;
14811 +       } else {
14812 +               AuDebugOn(!(mark->mask & AuHfsnMask));
14813 +               mark->mask &= ~AuHfsnMask;
14814 +       }
14815 +       spin_unlock(&mark->lock);
14816 +       /* fsnotify_recalc_inode_mask(hinode->hi_inode); */
14817 +}
14818 +
14819 +/* ---------------------------------------------------------------------- */
14820 +
14821 +/* #define AuDbgHnotify */
14822 +#ifdef AuDbgHnotify
14823 +static char *au_hfsn_name(u32 mask)
14824 +{
14825 +#ifdef CONFIG_AUFS_DEBUG
14826 +#define test_ret(flag)                         \
14827 +       do {                                    \
14828 +               if (mask & flag)                \
14829 +                       return #flag;           \
14830 +       } while (0)
14831 +       test_ret(FS_ACCESS);
14832 +       test_ret(FS_MODIFY);
14833 +       test_ret(FS_ATTRIB);
14834 +       test_ret(FS_CLOSE_WRITE);
14835 +       test_ret(FS_CLOSE_NOWRITE);
14836 +       test_ret(FS_OPEN);
14837 +       test_ret(FS_MOVED_FROM);
14838 +       test_ret(FS_MOVED_TO);
14839 +       test_ret(FS_CREATE);
14840 +       test_ret(FS_DELETE);
14841 +       test_ret(FS_DELETE_SELF);
14842 +       test_ret(FS_MOVE_SELF);
14843 +       test_ret(FS_UNMOUNT);
14844 +       test_ret(FS_Q_OVERFLOW);
14845 +       test_ret(FS_IN_IGNORED);
14846 +       test_ret(FS_ISDIR);
14847 +       test_ret(FS_IN_ONESHOT);
14848 +       test_ret(FS_EVENT_ON_CHILD);
14849 +       return "";
14850 +#undef test_ret
14851 +#else
14852 +       return "??";
14853 +#endif
14854 +}
14855 +#endif
14856 +
14857 +/* ---------------------------------------------------------------------- */
14858 +
14859 +static void au_hfsn_free_group(struct fsnotify_group *group)
14860 +{
14861 +       struct au_br_hfsnotify *hfsn = group->private;
14862 +
14863 +       /* AuDbg("here\n"); */
14864 +       au_delayed_kfree(hfsn);
14865 +}
14866 +
14867 +static int au_hfsn_handle_event(struct fsnotify_group *group,
14868 +                               struct inode *inode,
14869 +                               struct fsnotify_mark *inode_mark,
14870 +                               struct fsnotify_mark *vfsmount_mark,
14871 +                               u32 mask, void *data, int data_type,
14872 +                               const unsigned char *file_name, u32 cookie)
14873 +{
14874 +       int err;
14875 +       struct au_hnotify *hnotify;
14876 +       struct inode *h_dir, *h_inode;
14877 +       struct qstr h_child_qstr = QSTR_INIT(file_name, strlen(file_name));
14878 +
14879 +       AuDebugOn(data_type != FSNOTIFY_EVENT_INODE);
14880 +
14881 +       err = 0;
14882 +       /* if FS_UNMOUNT happens, there must be another bug */
14883 +       AuDebugOn(mask & FS_UNMOUNT);
14884 +       if (mask & (FS_IN_IGNORED | FS_UNMOUNT))
14885 +               goto out;
14886 +
14887 +       h_dir = inode;
14888 +       h_inode = NULL;
14889 +#ifdef AuDbgHnotify
14890 +       au_debug_on();
14891 +       if (1 || h_child_qstr.len != sizeof(AUFS_XINO_FNAME) - 1
14892 +           || strncmp(h_child_qstr.name, AUFS_XINO_FNAME, h_child_qstr.len)) {
14893 +               AuDbg("i%lu, mask 0x%x %s, hcname %.*s, hi%lu\n",
14894 +                     h_dir->i_ino, mask, au_hfsn_name(mask),
14895 +                     AuLNPair(&h_child_qstr), h_inode ? h_inode->i_ino : 0);
14896 +               /* WARN_ON(1); */
14897 +       }
14898 +       au_debug_off();
14899 +#endif
14900 +
14901 +       AuDebugOn(!inode_mark);
14902 +       hnotify = container_of(inode_mark, struct au_hnotify, hn_mark);
14903 +       err = au_hnotify(h_dir, hnotify, mask, &h_child_qstr, h_inode);
14904 +
14905 +out:
14906 +       return err;
14907 +}
14908 +
14909 +static struct fsnotify_ops au_hfsn_ops = {
14910 +       .handle_event           = au_hfsn_handle_event,
14911 +       .free_group_priv        = au_hfsn_free_group
14912 +};
14913 +
14914 +/* ---------------------------------------------------------------------- */
14915 +
14916 +static void au_hfsn_fin_br(struct au_branch *br)
14917 +{
14918 +       struct au_br_hfsnotify *hfsn;
14919 +
14920 +       hfsn = br->br_hfsn;
14921 +       if (hfsn) {
14922 +               lockdep_off();
14923 +               fsnotify_put_group(hfsn->hfsn_group);
14924 +               lockdep_on();
14925 +       }
14926 +}
14927 +
14928 +static int au_hfsn_init_br(struct au_branch *br, int perm)
14929 +{
14930 +       int err;
14931 +       struct fsnotify_group *group;
14932 +       struct au_br_hfsnotify *hfsn;
14933 +
14934 +       err = 0;
14935 +       br->br_hfsn = NULL;
14936 +       if (!au_br_hnotifyable(perm))
14937 +               goto out;
14938 +
14939 +       err = -ENOMEM;
14940 +       hfsn = kmalloc(sizeof(*hfsn), GFP_NOFS);
14941 +       if (unlikely(!hfsn))
14942 +               goto out;
14943 +
14944 +       err = 0;
14945 +       group = fsnotify_alloc_group(&au_hfsn_ops);
14946 +       if (IS_ERR(group)) {
14947 +               err = PTR_ERR(group);
14948 +               pr_err("fsnotify_alloc_group() failed, %d\n", err);
14949 +               goto out_hfsn;
14950 +       }
14951 +
14952 +       group->private = hfsn;
14953 +       hfsn->hfsn_group = group;
14954 +       br->br_hfsn = hfsn;
14955 +       goto out; /* success */
14956 +
14957 +out_hfsn:
14958 +       au_delayed_kfree(hfsn);
14959 +out:
14960 +       return err;
14961 +}
14962 +
14963 +static int au_hfsn_reset_br(unsigned int udba, struct au_branch *br, int perm)
14964 +{
14965 +       int err;
14966 +
14967 +       err = 0;
14968 +       if (!br->br_hfsn)
14969 +               err = au_hfsn_init_br(br, perm);
14970 +
14971 +       return err;
14972 +}
14973 +
14974 +/* ---------------------------------------------------------------------- */
14975 +
14976 +static void au_hfsn_fin(void)
14977 +{
14978 +       AuDbg("au_hfsn_ifree %lld\n", (long long)atomic64_read(&au_hfsn_ifree));
14979 +       wait_event(au_hfsn_wq, !atomic64_read(&au_hfsn_ifree));
14980 +}
14981 +
14982 +const struct au_hnotify_op au_hnotify_op = {
14983 +       .ctl            = au_hfsn_ctl,
14984 +       .alloc          = au_hfsn_alloc,
14985 +       .free           = au_hfsn_free,
14986 +
14987 +       .fin            = au_hfsn_fin,
14988 +
14989 +       .reset_br       = au_hfsn_reset_br,
14990 +       .fin_br         = au_hfsn_fin_br,
14991 +       .init_br        = au_hfsn_init_br
14992 +};
14993 diff -urN /usr/share/empty/fs/aufs/hfsplus.c linux/fs/aufs/hfsplus.c
14994 --- /usr/share/empty/fs/aufs/hfsplus.c  1970-01-01 01:00:00.000000000 +0100
14995 +++ linux/fs/aufs/hfsplus.c     2016-10-09 16:55:36.492701639 +0200
14996 @@ -0,0 +1,56 @@
14997 +/*
14998 + * Copyright (C) 2010-2016 Junjiro R. Okajima
14999 + *
15000 + * This program, aufs is free software; you can redistribute it and/or modify
15001 + * it under the terms of the GNU General Public License as published by
15002 + * the Free Software Foundation; either version 2 of the License, or
15003 + * (at your option) any later version.
15004 + *
15005 + * This program is distributed in the hope that it will be useful,
15006 + * but WITHOUT ANY WARRANTY; without even the implied warranty of
15007 + * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
15008 + * GNU General Public License for more details.
15009 + *
15010 + * You should have received a copy of the GNU General Public License
15011 + * along with this program.  If not, see <http://www.gnu.org/licenses/>.
15012 + */
15013 +
15014 +/*
15015 + * special support for filesystems which aqucires an inode mutex
15016 + * at final closing a file, eg, hfsplus.
15017 + *
15018 + * This trick is very simple and stupid, just to open the file before really
15019 + * neceeary open to tell hfsplus that this is not the final closing.
15020 + * The caller should call au_h_open_pre() after acquiring the inode mutex,
15021 + * and au_h_open_post() after releasing it.
15022 + */
15023 +
15024 +#include "aufs.h"
15025 +
15026 +struct file *au_h_open_pre(struct dentry *dentry, aufs_bindex_t bindex,
15027 +                          int force_wr)
15028 +{
15029 +       struct file *h_file;
15030 +       struct dentry *h_dentry;
15031 +
15032 +       h_dentry = au_h_dptr(dentry, bindex);
15033 +       AuDebugOn(!h_dentry);
15034 +       AuDebugOn(d_is_negative(h_dentry));
15035 +
15036 +       h_file = NULL;
15037 +       if (au_test_hfsplus(h_dentry->d_sb)
15038 +           && d_is_reg(h_dentry))
15039 +               h_file = au_h_open(dentry, bindex,
15040 +                                  O_RDONLY | O_NOATIME | O_LARGEFILE,
15041 +                                  /*file*/NULL, force_wr);
15042 +       return h_file;
15043 +}
15044 +
15045 +void au_h_open_post(struct dentry *dentry, aufs_bindex_t bindex,
15046 +                   struct file *h_file)
15047 +{
15048 +       if (h_file) {
15049 +               fput(h_file);
15050 +               au_sbr_put(dentry->d_sb, bindex);
15051 +       }
15052 +}
15053 diff -urN /usr/share/empty/fs/aufs/hnotify.c linux/fs/aufs/hnotify.c
15054 --- /usr/share/empty/fs/aufs/hnotify.c  1970-01-01 01:00:00.000000000 +0100
15055 +++ linux/fs/aufs/hnotify.c     2016-10-09 16:55:36.492701639 +0200
15056 @@ -0,0 +1,723 @@
15057 +/*
15058 + * Copyright (C) 2005-2016 Junjiro R. Okajima
15059 + *
15060 + * This program, aufs is free software; you can redistribute it and/or modify
15061 + * it under the terms of the GNU General Public License as published by
15062 + * the Free Software Foundation; either version 2 of the License, or
15063 + * (at your option) any later version.
15064 + *
15065 + * This program is distributed in the hope that it will be useful,
15066 + * but WITHOUT ANY WARRANTY; without even the implied warranty of
15067 + * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
15068 + * GNU General Public License for more details.
15069 + *
15070 + * You should have received a copy of the GNU General Public License
15071 + * along with this program.  If not, see <http://www.gnu.org/licenses/>.
15072 + */
15073 +
15074 +/*
15075 + * abstraction to notify the direct changes on lower directories
15076 + */
15077 +
15078 +#include "aufs.h"
15079 +
15080 +int au_hn_alloc(struct au_hinode *hinode, struct inode *inode)
15081 +{
15082 +       int err;
15083 +       struct au_hnotify *hn;
15084 +
15085 +       err = -ENOMEM;
15086 +       hn = au_cache_alloc_hnotify();
15087 +       if (hn) {
15088 +               hn->hn_aufs_inode = inode;
15089 +               hinode->hi_notify = hn;
15090 +               err = au_hnotify_op.alloc(hinode);
15091 +               AuTraceErr(err);
15092 +               if (unlikely(err)) {
15093 +                       hinode->hi_notify = NULL;
15094 +                       au_cache_dfree_hnotify(hn);
15095 +                       /*
15096 +                        * The upper dir was removed by udba, but the same named
15097 +                        * dir left. In this case, aufs assignes a new inode
15098 +                        * number and set the monitor again.
15099 +                        * For the lower dir, the old monitnor is still left.
15100 +                        */
15101 +                       if (err == -EEXIST)
15102 +                               err = 0;
15103 +               }
15104 +       }
15105 +
15106 +       AuTraceErr(err);
15107 +       return err;
15108 +}
15109 +
15110 +void au_hn_free(struct au_hinode *hinode)
15111 +{
15112 +       struct au_hnotify *hn;
15113 +
15114 +       hn = hinode->hi_notify;
15115 +       if (hn) {
15116 +               hinode->hi_notify = NULL;
15117 +               if (au_hnotify_op.free(hinode, hn))
15118 +                       au_cache_dfree_hnotify(hn);
15119 +       }
15120 +}
15121 +
15122 +/* ---------------------------------------------------------------------- */
15123 +
15124 +void au_hn_ctl(struct au_hinode *hinode, int do_set)
15125 +{
15126 +       if (hinode->hi_notify)
15127 +               au_hnotify_op.ctl(hinode, do_set);
15128 +}
15129 +
15130 +void au_hn_reset(struct inode *inode, unsigned int flags)
15131 +{
15132 +       aufs_bindex_t bindex, bbot;
15133 +       struct inode *hi;
15134 +       struct dentry *iwhdentry;
15135 +
15136 +       bbot = au_ibbot(inode);
15137 +       for (bindex = au_ibtop(inode); bindex <= bbot; bindex++) {
15138 +               hi = au_h_iptr(inode, bindex);
15139 +               if (!hi)
15140 +                       continue;
15141 +
15142 +               /* inode_lock_nested(hi, AuLsc_I_CHILD); */
15143 +               iwhdentry = au_hi_wh(inode, bindex);
15144 +               if (iwhdentry)
15145 +                       dget(iwhdentry);
15146 +               au_igrab(hi);
15147 +               au_set_h_iptr(inode, bindex, NULL, 0);
15148 +               au_set_h_iptr(inode, bindex, au_igrab(hi),
15149 +                             flags & ~AuHi_XINO);
15150 +               iput(hi);
15151 +               dput(iwhdentry);
15152 +               /* inode_unlock(hi); */
15153 +       }
15154 +}
15155 +
15156 +/* ---------------------------------------------------------------------- */
15157 +
15158 +static int hn_xino(struct inode *inode, struct inode *h_inode)
15159 +{
15160 +       int err;
15161 +       aufs_bindex_t bindex, bbot, bfound, btop;
15162 +       struct inode *h_i;
15163 +
15164 +       err = 0;
15165 +       if (unlikely(inode->i_ino == AUFS_ROOT_INO)) {
15166 +               pr_warn("branch root dir was changed\n");
15167 +               goto out;
15168 +       }
15169 +
15170 +       bfound = -1;
15171 +       bbot = au_ibbot(inode);
15172 +       btop = au_ibtop(inode);
15173 +#if 0 /* reserved for future use */
15174 +       if (bindex == bbot) {
15175 +               /* keep this ino in rename case */
15176 +               goto out;
15177 +       }
15178 +#endif
15179 +       for (bindex = btop; bindex <= bbot; bindex++)
15180 +               if (au_h_iptr(inode, bindex) == h_inode) {
15181 +                       bfound = bindex;
15182 +                       break;
15183 +               }
15184 +       if (bfound < 0)
15185 +               goto out;
15186 +
15187 +       for (bindex = btop; bindex <= bbot; bindex++) {
15188 +               h_i = au_h_iptr(inode, bindex);
15189 +               if (!h_i)
15190 +                       continue;
15191 +
15192 +               err = au_xino_write(inode->i_sb, bindex, h_i->i_ino, /*ino*/0);
15193 +               /* ignore this error */
15194 +               /* bad action? */
15195 +       }
15196 +
15197 +       /* children inode number will be broken */
15198 +
15199 +out:
15200 +       AuTraceErr(err);
15201 +       return err;
15202 +}
15203 +
15204 +static int hn_gen_tree(struct dentry *dentry)
15205 +{
15206 +       int err, i, j, ndentry;
15207 +       struct au_dcsub_pages dpages;
15208 +       struct au_dpage *dpage;
15209 +       struct dentry **dentries;
15210 +
15211 +       err = au_dpages_init(&dpages, GFP_NOFS);
15212 +       if (unlikely(err))
15213 +               goto out;
15214 +       err = au_dcsub_pages(&dpages, dentry, NULL, NULL);
15215 +       if (unlikely(err))
15216 +               goto out_dpages;
15217 +
15218 +       for (i = 0; i < dpages.ndpage; i++) {
15219 +               dpage = dpages.dpages + i;
15220 +               dentries = dpage->dentries;
15221 +               ndentry = dpage->ndentry;
15222 +               for (j = 0; j < ndentry; j++) {
15223 +                       struct dentry *d;
15224 +
15225 +                       d = dentries[j];
15226 +                       if (IS_ROOT(d))
15227 +                               continue;
15228 +
15229 +                       au_digen_dec(d);
15230 +                       if (d_really_is_positive(d))
15231 +                               /* todo: reset children xino?
15232 +                                  cached children only? */
15233 +                               au_iigen_dec(d_inode(d));
15234 +               }
15235 +       }
15236 +
15237 +out_dpages:
15238 +       au_dpages_free(&dpages);
15239 +
15240 +#if 0
15241 +       /* discard children */
15242 +       dentry_unhash(dentry);
15243 +       dput(dentry);
15244 +#endif
15245 +out:
15246 +       return err;
15247 +}
15248 +
15249 +/*
15250 + * return 0 if processed.
15251 + */
15252 +static int hn_gen_by_inode(char *name, unsigned int nlen, struct inode *inode,
15253 +                          const unsigned int isdir)
15254 +{
15255 +       int err;
15256 +       struct dentry *d;
15257 +       struct qstr *dname;
15258 +
15259 +       err = 1;
15260 +       if (unlikely(inode->i_ino == AUFS_ROOT_INO)) {
15261 +               pr_warn("branch root dir was changed\n");
15262 +               err = 0;
15263 +               goto out;
15264 +       }
15265 +
15266 +       if (!isdir) {
15267 +               AuDebugOn(!name);
15268 +               au_iigen_dec(inode);
15269 +               spin_lock(&inode->i_lock);
15270 +               hlist_for_each_entry(d, &inode->i_dentry, d_u.d_alias) {
15271 +                       spin_lock(&d->d_lock);
15272 +                       dname = &d->d_name;
15273 +                       if (dname->len != nlen
15274 +                           && memcmp(dname->name, name, nlen)) {
15275 +                               spin_unlock(&d->d_lock);
15276 +                               continue;
15277 +                       }
15278 +                       err = 0;
15279 +                       au_digen_dec(d);
15280 +                       spin_unlock(&d->d_lock);
15281 +                       break;
15282 +               }
15283 +               spin_unlock(&inode->i_lock);
15284 +       } else {
15285 +               au_fset_si(au_sbi(inode->i_sb), FAILED_REFRESH_DIR);
15286 +               d = d_find_any_alias(inode);
15287 +               if (!d) {
15288 +                       au_iigen_dec(inode);
15289 +                       goto out;
15290 +               }
15291 +
15292 +               spin_lock(&d->d_lock);
15293 +               dname = &d->d_name;
15294 +               if (dname->len == nlen && !memcmp(dname->name, name, nlen)) {
15295 +                       spin_unlock(&d->d_lock);
15296 +                       err = hn_gen_tree(d);
15297 +                       spin_lock(&d->d_lock);
15298 +               }
15299 +               spin_unlock(&d->d_lock);
15300 +               dput(d);
15301 +       }
15302 +
15303 +out:
15304 +       AuTraceErr(err);
15305 +       return err;
15306 +}
15307 +
15308 +static int hn_gen_by_name(struct dentry *dentry, const unsigned int isdir)
15309 +{
15310 +       int err;
15311 +
15312 +       if (IS_ROOT(dentry)) {
15313 +               pr_warn("branch root dir was changed\n");
15314 +               return 0;
15315 +       }
15316 +
15317 +       err = 0;
15318 +       if (!isdir) {
15319 +               au_digen_dec(dentry);
15320 +               if (d_really_is_positive(dentry))
15321 +                       au_iigen_dec(d_inode(dentry));
15322 +       } else {
15323 +               au_fset_si(au_sbi(dentry->d_sb), FAILED_REFRESH_DIR);
15324 +               if (d_really_is_positive(dentry))
15325 +                       err = hn_gen_tree(dentry);
15326 +       }
15327 +
15328 +       AuTraceErr(err);
15329 +       return err;
15330 +}
15331 +
15332 +/* ---------------------------------------------------------------------- */
15333 +
15334 +/* hnotify job flags */
15335 +#define AuHnJob_XINO0          1
15336 +#define AuHnJob_GEN            (1 << 1)
15337 +#define AuHnJob_DIRENT         (1 << 2)
15338 +#define AuHnJob_ISDIR          (1 << 3)
15339 +#define AuHnJob_TRYXINO0       (1 << 4)
15340 +#define AuHnJob_MNTPNT         (1 << 5)
15341 +#define au_ftest_hnjob(flags, name)    ((flags) & AuHnJob_##name)
15342 +#define au_fset_hnjob(flags, name) \
15343 +       do { (flags) |= AuHnJob_##name; } while (0)
15344 +#define au_fclr_hnjob(flags, name) \
15345 +       do { (flags) &= ~AuHnJob_##name; } while (0)
15346 +
15347 +enum {
15348 +       AuHn_CHILD,
15349 +       AuHn_PARENT,
15350 +       AuHnLast
15351 +};
15352 +
15353 +struct au_hnotify_args {
15354 +       struct inode *h_dir, *dir, *h_child_inode;
15355 +       u32 mask;
15356 +       unsigned int flags[AuHnLast];
15357 +       unsigned int h_child_nlen;
15358 +       char h_child_name[];
15359 +};
15360 +
15361 +struct hn_job_args {
15362 +       unsigned int flags;
15363 +       struct inode *inode, *h_inode, *dir, *h_dir;
15364 +       struct dentry *dentry;
15365 +       char *h_name;
15366 +       int h_nlen;
15367 +};
15368 +
15369 +static int hn_job(struct hn_job_args *a)
15370 +{
15371 +       const unsigned int isdir = au_ftest_hnjob(a->flags, ISDIR);
15372 +       int e;
15373 +
15374 +       /* reset xino */
15375 +       if (au_ftest_hnjob(a->flags, XINO0) && a->inode)
15376 +               hn_xino(a->inode, a->h_inode); /* ignore this error */
15377 +
15378 +       if (au_ftest_hnjob(a->flags, TRYXINO0)
15379 +           && a->inode
15380 +           && a->h_inode) {
15381 +               inode_lock_nested(a->h_inode, AuLsc_I_CHILD);
15382 +               if (!a->h_inode->i_nlink
15383 +                   && !(a->h_inode->i_state & I_LINKABLE))
15384 +                       hn_xino(a->inode, a->h_inode); /* ignore this error */
15385 +               inode_unlock(a->h_inode);
15386 +       }
15387 +
15388 +       /* make the generation obsolete */
15389 +       if (au_ftest_hnjob(a->flags, GEN)) {
15390 +               e = -1;
15391 +               if (a->inode)
15392 +                       e = hn_gen_by_inode(a->h_name, a->h_nlen, a->inode,
15393 +                                             isdir);
15394 +               if (e && a->dentry)
15395 +                       hn_gen_by_name(a->dentry, isdir);
15396 +               /* ignore this error */
15397 +       }
15398 +
15399 +       /* make dir entries obsolete */
15400 +       if (au_ftest_hnjob(a->flags, DIRENT) && a->inode) {
15401 +               struct au_vdir *vdir;
15402 +
15403 +               vdir = au_ivdir(a->inode);
15404 +               if (vdir)
15405 +                       vdir->vd_jiffy = 0;
15406 +               /* IMustLock(a->inode); */
15407 +               /* a->inode->i_version++; */
15408 +       }
15409 +
15410 +       /* can do nothing but warn */
15411 +       if (au_ftest_hnjob(a->flags, MNTPNT)
15412 +           && a->dentry
15413 +           && d_mountpoint(a->dentry))
15414 +               pr_warn("mount-point %pd is removed or renamed\n", a->dentry);
15415 +
15416 +       return 0;
15417 +}
15418 +
15419 +/* ---------------------------------------------------------------------- */
15420 +
15421 +static struct dentry *lookup_wlock_by_name(char *name, unsigned int nlen,
15422 +                                          struct inode *dir)
15423 +{
15424 +       struct dentry *dentry, *d, *parent;
15425 +       struct qstr *dname;
15426 +
15427 +       parent = d_find_any_alias(dir);
15428 +       if (!parent)
15429 +               return NULL;
15430 +
15431 +       dentry = NULL;
15432 +       spin_lock(&parent->d_lock);
15433 +       list_for_each_entry(d, &parent->d_subdirs, d_child) {
15434 +               /* AuDbg("%pd\n", d); */
15435 +               spin_lock_nested(&d->d_lock, DENTRY_D_LOCK_NESTED);
15436 +               dname = &d->d_name;
15437 +               if (dname->len != nlen || memcmp(dname->name, name, nlen))
15438 +                       goto cont_unlock;
15439 +               if (au_di(d))
15440 +                       au_digen_dec(d);
15441 +               else
15442 +                       goto cont_unlock;
15443 +               if (au_dcount(d) > 0) {
15444 +                       dentry = dget_dlock(d);
15445 +                       spin_unlock(&d->d_lock);
15446 +                       break;
15447 +               }
15448 +
15449 +cont_unlock:
15450 +               spin_unlock(&d->d_lock);
15451 +       }
15452 +       spin_unlock(&parent->d_lock);
15453 +       dput(parent);
15454 +
15455 +       if (dentry)
15456 +               di_write_lock_child(dentry);
15457 +
15458 +       return dentry;
15459 +}
15460 +
15461 +static struct inode *lookup_wlock_by_ino(struct super_block *sb,
15462 +                                        aufs_bindex_t bindex, ino_t h_ino)
15463 +{
15464 +       struct inode *inode;
15465 +       ino_t ino;
15466 +       int err;
15467 +
15468 +       inode = NULL;
15469 +       err = au_xino_read(sb, bindex, h_ino, &ino);
15470 +       if (!err && ino)
15471 +               inode = ilookup(sb, ino);
15472 +       if (!inode)
15473 +               goto out;
15474 +
15475 +       if (unlikely(inode->i_ino == AUFS_ROOT_INO)) {
15476 +               pr_warn("wrong root branch\n");
15477 +               iput(inode);
15478 +               inode = NULL;
15479 +               goto out;
15480 +       }
15481 +
15482 +       ii_write_lock_child(inode);
15483 +
15484 +out:
15485 +       return inode;
15486 +}
15487 +
15488 +static void au_hn_bh(void *_args)
15489 +{
15490 +       struct au_hnotify_args *a = _args;
15491 +       struct super_block *sb;
15492 +       aufs_bindex_t bindex, bbot, bfound;
15493 +       unsigned char xino, try_iput;
15494 +       int err;
15495 +       struct inode *inode;
15496 +       ino_t h_ino;
15497 +       struct hn_job_args args;
15498 +       struct dentry *dentry;
15499 +       struct au_sbinfo *sbinfo;
15500 +
15501 +       AuDebugOn(!_args);
15502 +       AuDebugOn(!a->h_dir);
15503 +       AuDebugOn(!a->dir);
15504 +       AuDebugOn(!a->mask);
15505 +       AuDbg("mask 0x%x, i%lu, hi%lu, hci%lu\n",
15506 +             a->mask, a->dir->i_ino, a->h_dir->i_ino,
15507 +             a->h_child_inode ? a->h_child_inode->i_ino : 0);
15508 +
15509 +       inode = NULL;
15510 +       dentry = NULL;
15511 +       /*
15512 +        * do not lock a->dir->i_mutex here
15513 +        * because of d_revalidate() may cause a deadlock.
15514 +        */
15515 +       sb = a->dir->i_sb;
15516 +       AuDebugOn(!sb);
15517 +       sbinfo = au_sbi(sb);
15518 +       AuDebugOn(!sbinfo);
15519 +       si_write_lock(sb, AuLock_NOPLMW);
15520 +
15521 +       ii_read_lock_parent(a->dir);
15522 +       bfound = -1;
15523 +       bbot = au_ibbot(a->dir);
15524 +       for (bindex = au_ibtop(a->dir); bindex <= bbot; bindex++)
15525 +               if (au_h_iptr(a->dir, bindex) == a->h_dir) {
15526 +                       bfound = bindex;
15527 +                       break;
15528 +               }
15529 +       ii_read_unlock(a->dir);
15530 +       if (unlikely(bfound < 0))
15531 +               goto out;
15532 +
15533 +       xino = !!au_opt_test(au_mntflags(sb), XINO);
15534 +       h_ino = 0;
15535 +       if (a->h_child_inode)
15536 +               h_ino = a->h_child_inode->i_ino;
15537 +
15538 +       if (a->h_child_nlen
15539 +           && (au_ftest_hnjob(a->flags[AuHn_CHILD], GEN)
15540 +               || au_ftest_hnjob(a->flags[AuHn_CHILD], MNTPNT)))
15541 +               dentry = lookup_wlock_by_name(a->h_child_name, a->h_child_nlen,
15542 +                                             a->dir);
15543 +       try_iput = 0;
15544 +       if (dentry && d_really_is_positive(dentry))
15545 +               inode = d_inode(dentry);
15546 +       if (xino && !inode && h_ino
15547 +           && (au_ftest_hnjob(a->flags[AuHn_CHILD], XINO0)
15548 +               || au_ftest_hnjob(a->flags[AuHn_CHILD], TRYXINO0)
15549 +               || au_ftest_hnjob(a->flags[AuHn_CHILD], GEN))) {
15550 +               inode = lookup_wlock_by_ino(sb, bfound, h_ino);
15551 +               try_iput = 1;
15552 +       }
15553 +
15554 +       args.flags = a->flags[AuHn_CHILD];
15555 +       args.dentry = dentry;
15556 +       args.inode = inode;
15557 +       args.h_inode = a->h_child_inode;
15558 +       args.dir = a->dir;
15559 +       args.h_dir = a->h_dir;
15560 +       args.h_name = a->h_child_name;
15561 +       args.h_nlen = a->h_child_nlen;
15562 +       err = hn_job(&args);
15563 +       if (dentry) {
15564 +               if (au_di(dentry))
15565 +                       di_write_unlock(dentry);
15566 +               dput(dentry);
15567 +       }
15568 +       if (inode && try_iput) {
15569 +               ii_write_unlock(inode);
15570 +               iput(inode);
15571 +       }
15572 +
15573 +       ii_write_lock_parent(a->dir);
15574 +       args.flags = a->flags[AuHn_PARENT];
15575 +       args.dentry = NULL;
15576 +       args.inode = a->dir;
15577 +       args.h_inode = a->h_dir;
15578 +       args.dir = NULL;
15579 +       args.h_dir = NULL;
15580 +       args.h_name = NULL;
15581 +       args.h_nlen = 0;
15582 +       err = hn_job(&args);
15583 +       ii_write_unlock(a->dir);
15584 +
15585 +out:
15586 +       iput(a->h_child_inode);
15587 +       iput(a->h_dir);
15588 +       iput(a->dir);
15589 +       si_write_unlock(sb);
15590 +       au_nwt_done(&sbinfo->si_nowait);
15591 +       au_delayed_kfree(a);
15592 +}
15593 +
15594 +/* ---------------------------------------------------------------------- */
15595 +
15596 +int au_hnotify(struct inode *h_dir, struct au_hnotify *hnotify, u32 mask,
15597 +              struct qstr *h_child_qstr, struct inode *h_child_inode)
15598 +{
15599 +       int err, len;
15600 +       unsigned int flags[AuHnLast], f;
15601 +       unsigned char isdir, isroot, wh;
15602 +       struct inode *dir;
15603 +       struct au_hnotify_args *args;
15604 +       char *p, *h_child_name;
15605 +
15606 +       err = 0;
15607 +       AuDebugOn(!hnotify || !hnotify->hn_aufs_inode);
15608 +       dir = igrab(hnotify->hn_aufs_inode);
15609 +       if (!dir)
15610 +               goto out;
15611 +
15612 +       isroot = (dir->i_ino == AUFS_ROOT_INO);
15613 +       wh = 0;
15614 +       h_child_name = (void *)h_child_qstr->name;
15615 +       len = h_child_qstr->len;
15616 +       if (h_child_name) {
15617 +               if (len > AUFS_WH_PFX_LEN
15618 +                   && !memcmp(h_child_name, AUFS_WH_PFX, AUFS_WH_PFX_LEN)) {
15619 +                       h_child_name += AUFS_WH_PFX_LEN;
15620 +                       len -= AUFS_WH_PFX_LEN;
15621 +                       wh = 1;
15622 +               }
15623 +       }
15624 +
15625 +       isdir = 0;
15626 +       if (h_child_inode)
15627 +               isdir = !!S_ISDIR(h_child_inode->i_mode);
15628 +       flags[AuHn_PARENT] = AuHnJob_ISDIR;
15629 +       flags[AuHn_CHILD] = 0;
15630 +       if (isdir)
15631 +               flags[AuHn_CHILD] = AuHnJob_ISDIR;
15632 +       au_fset_hnjob(flags[AuHn_PARENT], DIRENT);
15633 +       au_fset_hnjob(flags[AuHn_CHILD], GEN);
15634 +       switch (mask & FS_EVENTS_POSS_ON_CHILD) {
15635 +       case FS_MOVED_FROM:
15636 +       case FS_MOVED_TO:
15637 +               au_fset_hnjob(flags[AuHn_CHILD], XINO0);
15638 +               au_fset_hnjob(flags[AuHn_CHILD], MNTPNT);
15639 +               /*FALLTHROUGH*/
15640 +       case FS_CREATE:
15641 +               AuDebugOn(!h_child_name);
15642 +               break;
15643 +
15644 +       case FS_DELETE:
15645 +               /*
15646 +                * aufs never be able to get this child inode.
15647 +                * revalidation should be in d_revalidate()
15648 +                * by checking i_nlink, i_generation or d_unhashed().
15649 +                */
15650 +               AuDebugOn(!h_child_name);
15651 +               au_fset_hnjob(flags[AuHn_CHILD], TRYXINO0);
15652 +               au_fset_hnjob(flags[AuHn_CHILD], MNTPNT);
15653 +               break;
15654 +
15655 +       default:
15656 +               AuDebugOn(1);
15657 +       }
15658 +
15659 +       if (wh)
15660 +               h_child_inode = NULL;
15661 +
15662 +       err = -ENOMEM;
15663 +       /* iput() and kfree() will be called in au_hnotify() */
15664 +       args = kmalloc(sizeof(*args) + len + 1, GFP_NOFS);
15665 +       if (unlikely(!args)) {
15666 +               AuErr1("no memory\n");
15667 +               iput(dir);
15668 +               goto out;
15669 +       }
15670 +       args->flags[AuHn_PARENT] = flags[AuHn_PARENT];
15671 +       args->flags[AuHn_CHILD] = flags[AuHn_CHILD];
15672 +       args->mask = mask;
15673 +       args->dir = dir;
15674 +       args->h_dir = igrab(h_dir);
15675 +       if (h_child_inode)
15676 +               h_child_inode = igrab(h_child_inode); /* can be NULL */
15677 +       args->h_child_inode = h_child_inode;
15678 +       args->h_child_nlen = len;
15679 +       if (len) {
15680 +               p = (void *)args;
15681 +               p += sizeof(*args);
15682 +               memcpy(p, h_child_name, len);
15683 +               p[len] = 0;
15684 +       }
15685 +
15686 +       /* NFS fires the event for silly-renamed one from kworker */
15687 +       f = 0;
15688 +       if (!dir->i_nlink
15689 +           || (au_test_nfs(h_dir->i_sb) && (mask & FS_DELETE)))
15690 +               f = AuWkq_NEST;
15691 +       err = au_wkq_nowait(au_hn_bh, args, dir->i_sb, f);
15692 +       if (unlikely(err)) {
15693 +               pr_err("wkq %d\n", err);
15694 +               iput(args->h_child_inode);
15695 +               iput(args->h_dir);
15696 +               iput(args->dir);
15697 +               au_delayed_kfree(args);
15698 +       }
15699 +
15700 +out:
15701 +       return err;
15702 +}
15703 +
15704 +/* ---------------------------------------------------------------------- */
15705 +
15706 +int au_hnotify_reset_br(unsigned int udba, struct au_branch *br, int perm)
15707 +{
15708 +       int err;
15709 +
15710 +       AuDebugOn(!(udba & AuOptMask_UDBA));
15711 +
15712 +       err = 0;
15713 +       if (au_hnotify_op.reset_br)
15714 +               err = au_hnotify_op.reset_br(udba, br, perm);
15715 +
15716 +       return err;
15717 +}
15718 +
15719 +int au_hnotify_init_br(struct au_branch *br, int perm)
15720 +{
15721 +       int err;
15722 +
15723 +       err = 0;
15724 +       if (au_hnotify_op.init_br)
15725 +               err = au_hnotify_op.init_br(br, perm);
15726 +
15727 +       return err;
15728 +}
15729 +
15730 +void au_hnotify_fin_br(struct au_branch *br)
15731 +{
15732 +       if (au_hnotify_op.fin_br)
15733 +               au_hnotify_op.fin_br(br);
15734 +}
15735 +
15736 +static void au_hn_destroy_cache(void)
15737 +{
15738 +       struct au_cache *cp;
15739 +
15740 +       flush_delayed_work(&au_dfree.dwork);
15741 +       cp = au_dfree.cache + AuCache_HNOTIFY;
15742 +       AuDebugOn(!llist_empty(&cp->llist));
15743 +       kmem_cache_destroy(cp->cache);
15744 +       cp->cache = NULL;
15745 +}
15746 +
15747 +AU_CACHE_DFREE_FUNC(hnotify, HNOTIFY, hn_lnode);
15748 +
15749 +int __init au_hnotify_init(void)
15750 +{
15751 +       int err;
15752 +       struct au_cache *cp;
15753 +
15754 +       err = -ENOMEM;
15755 +       cp = au_dfree.cache + AuCache_HNOTIFY;
15756 +       cp->cache = AuCache(au_hnotify);
15757 +       if (cp->cache) {
15758 +               err = 0;
15759 +               if (au_hnotify_op.init)
15760 +                       err = au_hnotify_op.init();
15761 +               if (unlikely(err))
15762 +                       au_hn_destroy_cache();
15763 +       }
15764 +       AuTraceErr(err);
15765 +       return err;
15766 +}
15767 +
15768 +void au_hnotify_fin(void)
15769 +{
15770 +       struct au_cache *cp;
15771 +
15772 +       if (au_hnotify_op.fin)
15773 +               au_hnotify_op.fin();
15774 +
15775 +       /* cf. au_cache_fin() */
15776 +       cp = au_dfree.cache + AuCache_HNOTIFY;
15777 +       if (cp->cache)
15778 +               au_hn_destroy_cache();
15779 +}
15780 diff -urN /usr/share/empty/fs/aufs/iinfo.c linux/fs/aufs/iinfo.c
15781 --- /usr/share/empty/fs/aufs/iinfo.c    1970-01-01 01:00:00.000000000 +0100
15782 +++ linux/fs/aufs/iinfo.c       2016-10-09 16:55:38.889431135 +0200
15783 @@ -0,0 +1,285 @@
15784 +/*
15785 + * Copyright (C) 2005-2016 Junjiro R. Okajima
15786 + *
15787 + * This program, aufs is free software; you can redistribute it and/or modify
15788 + * it under the terms of the GNU General Public License as published by
15789 + * the Free Software Foundation; either version 2 of the License, or
15790 + * (at your option) any later version.
15791 + *
15792 + * This program is distributed in the hope that it will be useful,
15793 + * but WITHOUT ANY WARRANTY; without even the implied warranty of
15794 + * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
15795 + * GNU General Public License for more details.
15796 + *
15797 + * You should have received a copy of the GNU General Public License
15798 + * along with this program.  If not, see <http://www.gnu.org/licenses/>.
15799 + */
15800 +
15801 +/*
15802 + * inode private data
15803 + */
15804 +
15805 +#include "aufs.h"
15806 +
15807 +struct inode *au_h_iptr(struct inode *inode, aufs_bindex_t bindex)
15808 +{
15809 +       struct inode *h_inode;
15810 +       struct au_hinode *hinode;
15811 +
15812 +       IiMustAnyLock(inode);
15813 +
15814 +       hinode = au_hinode(au_ii(inode), bindex);
15815 +       h_inode = hinode->hi_inode;
15816 +       AuDebugOn(h_inode && atomic_read(&h_inode->i_count) <= 0);
15817 +       return h_inode;
15818 +}
15819 +
15820 +/* todo: hard/soft set? */
15821 +void au_hiput(struct au_hinode *hinode)
15822 +{
15823 +       au_hn_free(hinode);
15824 +       dput(hinode->hi_whdentry);
15825 +       iput(hinode->hi_inode);
15826 +}
15827 +
15828 +unsigned int au_hi_flags(struct inode *inode, int isdir)
15829 +{
15830 +       unsigned int flags;
15831 +       const unsigned int mnt_flags = au_mntflags(inode->i_sb);
15832 +
15833 +       flags = 0;
15834 +       if (au_opt_test(mnt_flags, XINO))
15835 +               au_fset_hi(flags, XINO);
15836 +       if (isdir && au_opt_test(mnt_flags, UDBA_HNOTIFY))
15837 +               au_fset_hi(flags, HNOTIFY);
15838 +       return flags;
15839 +}
15840 +
15841 +void au_set_h_iptr(struct inode *inode, aufs_bindex_t bindex,
15842 +                  struct inode *h_inode, unsigned int flags)
15843 +{
15844 +       struct au_hinode *hinode;
15845 +       struct inode *hi;
15846 +       struct au_iinfo *iinfo = au_ii(inode);
15847 +
15848 +       IiMustWriteLock(inode);
15849 +
15850 +       hinode = au_hinode(iinfo, bindex);
15851 +       hi = hinode->hi_inode;
15852 +       AuDebugOn(h_inode && atomic_read(&h_inode->i_count) <= 0);
15853 +
15854 +       if (hi)
15855 +               au_hiput(hinode);
15856 +       hinode->hi_inode = h_inode;
15857 +       if (h_inode) {
15858 +               int err;
15859 +               struct super_block *sb = inode->i_sb;
15860 +               struct au_branch *br;
15861 +
15862 +               AuDebugOn(inode->i_mode
15863 +                         && (h_inode->i_mode & S_IFMT)
15864 +                         != (inode->i_mode & S_IFMT));
15865 +               if (bindex == iinfo->ii_btop)
15866 +                       au_cpup_igen(inode, h_inode);
15867 +               br = au_sbr(sb, bindex);
15868 +               hinode->hi_id = br->br_id;
15869 +               if (au_ftest_hi(flags, XINO)) {
15870 +                       err = au_xino_write(sb, bindex, h_inode->i_ino,
15871 +                                           inode->i_ino);
15872 +                       if (unlikely(err))
15873 +                               AuIOErr1("failed au_xino_write() %d\n", err);
15874 +               }
15875 +
15876 +               if (au_ftest_hi(flags, HNOTIFY)
15877 +                   && au_br_hnotifyable(br->br_perm)) {
15878 +                       err = au_hn_alloc(hinode, inode);
15879 +                       if (unlikely(err))
15880 +                               AuIOErr1("au_hn_alloc() %d\n", err);
15881 +               }
15882 +       }
15883 +}
15884 +
15885 +void au_set_hi_wh(struct inode *inode, aufs_bindex_t bindex,
15886 +                 struct dentry *h_wh)
15887 +{
15888 +       struct au_hinode *hinode;
15889 +
15890 +       IiMustWriteLock(inode);
15891 +
15892 +       hinode = au_hinode(au_ii(inode), bindex);
15893 +       AuDebugOn(hinode->hi_whdentry);
15894 +       hinode->hi_whdentry = h_wh;
15895 +}
15896 +
15897 +void au_update_iigen(struct inode *inode, int half)
15898 +{
15899 +       struct au_iinfo *iinfo;
15900 +       struct au_iigen *iigen;
15901 +       unsigned int sigen;
15902 +
15903 +       sigen = au_sigen(inode->i_sb);
15904 +       iinfo = au_ii(inode);
15905 +       iigen = &iinfo->ii_generation;
15906 +       spin_lock(&iigen->ig_spin);
15907 +       iigen->ig_generation = sigen;
15908 +       if (half)
15909 +               au_ig_fset(iigen->ig_flags, HALF_REFRESHED);
15910 +       else
15911 +               au_ig_fclr(iigen->ig_flags, HALF_REFRESHED);
15912 +       spin_unlock(&iigen->ig_spin);
15913 +}
15914 +
15915 +/* it may be called at remount time, too */
15916 +void au_update_ibrange(struct inode *inode, int do_put_zero)
15917 +{
15918 +       struct au_iinfo *iinfo;
15919 +       aufs_bindex_t bindex, bbot;
15920 +
15921 +       AuDebugOn(au_is_bad_inode(inode));
15922 +       IiMustWriteLock(inode);
15923 +
15924 +       iinfo = au_ii(inode);
15925 +       if (do_put_zero && iinfo->ii_btop >= 0) {
15926 +               for (bindex = iinfo->ii_btop; bindex <= iinfo->ii_bbot;
15927 +                    bindex++) {
15928 +                       struct inode *h_i;
15929 +
15930 +                       h_i = au_hinode(iinfo, bindex)->hi_inode;
15931 +                       if (h_i
15932 +                           && !h_i->i_nlink
15933 +                           && !(h_i->i_state & I_LINKABLE))
15934 +                               au_set_h_iptr(inode, bindex, NULL, 0);
15935 +               }
15936 +       }
15937 +
15938 +       iinfo->ii_btop = -1;
15939 +       iinfo->ii_bbot = -1;
15940 +       bbot = au_sbbot(inode->i_sb);
15941 +       for (bindex = 0; bindex <= bbot; bindex++)
15942 +               if (au_hinode(iinfo, bindex)->hi_inode) {
15943 +                       iinfo->ii_btop = bindex;
15944 +                       break;
15945 +               }
15946 +       if (iinfo->ii_btop >= 0)
15947 +               for (bindex = bbot; bindex >= iinfo->ii_btop; bindex--)
15948 +                       if (au_hinode(iinfo, bindex)->hi_inode) {
15949 +                               iinfo->ii_bbot = bindex;
15950 +                               break;
15951 +                       }
15952 +       AuDebugOn(iinfo->ii_btop > iinfo->ii_bbot);
15953 +}
15954 +
15955 +/* ---------------------------------------------------------------------- */
15956 +
15957 +void au_icntnr_init_once(void *_c)
15958 +{
15959 +       struct au_icntnr *c = _c;
15960 +       struct au_iinfo *iinfo = &c->iinfo;
15961 +
15962 +       spin_lock_init(&iinfo->ii_generation.ig_spin);
15963 +       au_rw_init(&iinfo->ii_rwsem);
15964 +       inode_init_once(&c->vfs_inode);
15965 +}
15966 +
15967 +void au_hinode_init(struct au_hinode *hinode)
15968 +{
15969 +       hinode->hi_inode = NULL;
15970 +       hinode->hi_id = -1;
15971 +       au_hn_init(hinode);
15972 +       hinode->hi_whdentry = NULL;
15973 +}
15974 +
15975 +int au_iinfo_init(struct inode *inode)
15976 +{
15977 +       struct au_iinfo *iinfo;
15978 +       struct super_block *sb;
15979 +       struct au_hinode *hi;
15980 +       int nbr, i;
15981 +
15982 +       sb = inode->i_sb;
15983 +       iinfo = &(container_of(inode, struct au_icntnr, vfs_inode)->iinfo);
15984 +       nbr = au_sbbot(sb) + 1;
15985 +       if (unlikely(nbr <= 0))
15986 +               nbr = 1;
15987 +       hi = kmalloc_array(nbr, sizeof(*iinfo->ii_hinode), GFP_NOFS);
15988 +       if (hi) {
15989 +               au_ninodes_inc(sb);
15990 +
15991 +               iinfo->ii_hinode = hi;
15992 +               for (i = 0; i < nbr; i++, hi++)
15993 +                       au_hinode_init(hi);
15994 +
15995 +               iinfo->ii_generation.ig_generation = au_sigen(sb);
15996 +               iinfo->ii_btop = -1;
15997 +               iinfo->ii_bbot = -1;
15998 +               iinfo->ii_vdir = NULL;
15999 +               return 0;
16000 +       }
16001 +       return -ENOMEM;
16002 +}
16003 +
16004 +int au_hinode_realloc(struct au_iinfo *iinfo, int nbr, int may_shrink)
16005 +{
16006 +       int err, i;
16007 +       struct au_hinode *hip;
16008 +
16009 +       AuRwMustWriteLock(&iinfo->ii_rwsem);
16010 +
16011 +       err = -ENOMEM;
16012 +       hip = au_krealloc(iinfo->ii_hinode, sizeof(*hip) * nbr, GFP_NOFS,
16013 +                         may_shrink);
16014 +       if (hip) {
16015 +               iinfo->ii_hinode = hip;
16016 +               i = iinfo->ii_bbot + 1;
16017 +               hip += i;
16018 +               for (; i < nbr; i++, hip++)
16019 +                       au_hinode_init(hip);
16020 +               err = 0;
16021 +       }
16022 +
16023 +       return err;
16024 +}
16025 +
16026 +void au_iinfo_fin(struct inode *inode)
16027 +{
16028 +       struct au_iinfo *iinfo;
16029 +       struct au_hinode *hi;
16030 +       struct super_block *sb;
16031 +       aufs_bindex_t bindex, bbot;
16032 +       const unsigned char unlinked = !inode->i_nlink;
16033 +
16034 +       AuDebugOn(au_is_bad_inode(inode));
16035 +
16036 +       sb = inode->i_sb;
16037 +       au_ninodes_dec(sb);
16038 +       if (si_pid_test(sb))
16039 +               au_xino_delete_inode(inode, unlinked);
16040 +       else {
16041 +               /*
16042 +                * it is safe to hide the dependency between sbinfo and
16043 +                * sb->s_umount.
16044 +                */
16045 +               lockdep_off();
16046 +               si_noflush_read_lock(sb);
16047 +               au_xino_delete_inode(inode, unlinked);
16048 +               si_read_unlock(sb);
16049 +               lockdep_on();
16050 +       }
16051 +
16052 +       iinfo = au_ii(inode);
16053 +       if (iinfo->ii_vdir)
16054 +               au_vdir_free(iinfo->ii_vdir, /*atonce*/0);
16055 +
16056 +       bindex = iinfo->ii_btop;
16057 +       if (bindex >= 0) {
16058 +               hi = au_hinode(iinfo, bindex);
16059 +               bbot = iinfo->ii_bbot;
16060 +               while (bindex++ <= bbot) {
16061 +                       if (hi->hi_inode)
16062 +                               au_hiput(hi);
16063 +                       hi++;
16064 +               }
16065 +       }
16066 +       au_delayed_kfree(iinfo->ii_hinode);
16067 +       AuRwDestroy(&iinfo->ii_rwsem);
16068 +}
16069 diff -urN /usr/share/empty/fs/aufs/inode.c linux/fs/aufs/inode.c
16070 --- /usr/share/empty/fs/aufs/inode.c    1970-01-01 01:00:00.000000000 +0100
16071 +++ linux/fs/aufs/inode.c       2016-10-09 16:55:38.889431135 +0200
16072 @@ -0,0 +1,519 @@
16073 +/*
16074 + * Copyright (C) 2005-2016 Junjiro R. Okajima
16075 + *
16076 + * This program, aufs is free software; you can redistribute it and/or modify
16077 + * it under the terms of the GNU General Public License as published by
16078 + * the Free Software Foundation; either version 2 of the License, or
16079 + * (at your option) any later version.
16080 + *
16081 + * This program is distributed in the hope that it will be useful,
16082 + * but WITHOUT ANY WARRANTY; without even the implied warranty of
16083 + * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
16084 + * GNU General Public License for more details.
16085 + *
16086 + * You should have received a copy of the GNU General Public License
16087 + * along with this program.  If not, see <http://www.gnu.org/licenses/>.
16088 + */
16089 +
16090 +/*
16091 + * inode functions
16092 + */
16093 +
16094 +#include "aufs.h"
16095 +
16096 +struct inode *au_igrab(struct inode *inode)
16097 +{
16098 +       if (inode) {
16099 +               AuDebugOn(!atomic_read(&inode->i_count));
16100 +               ihold(inode);
16101 +       }
16102 +       return inode;
16103 +}
16104 +
16105 +static void au_refresh_hinode_attr(struct inode *inode, int do_version)
16106 +{
16107 +       au_cpup_attr_all(inode, /*force*/0);
16108 +       au_update_iigen(inode, /*half*/1);
16109 +       if (do_version)
16110 +               inode->i_version++;
16111 +}
16112 +
16113 +static int au_ii_refresh(struct inode *inode, int *update)
16114 +{
16115 +       int err, e, nbr;
16116 +       umode_t type;
16117 +       aufs_bindex_t bindex, new_bindex;
16118 +       struct super_block *sb;
16119 +       struct au_iinfo *iinfo;
16120 +       struct au_hinode *p, *q, tmp;
16121 +
16122 +       AuDebugOn(au_is_bad_inode(inode));
16123 +       IiMustWriteLock(inode);
16124 +
16125 +       *update = 0;
16126 +       sb = inode->i_sb;
16127 +       nbr = au_sbbot(sb) + 1;
16128 +       type = inode->i_mode & S_IFMT;
16129 +       iinfo = au_ii(inode);
16130 +       err = au_hinode_realloc(iinfo, nbr, /*may_shrink*/0);
16131 +       if (unlikely(err))
16132 +               goto out;
16133 +
16134 +       AuDebugOn(iinfo->ii_btop < 0);
16135 +       p = au_hinode(iinfo, iinfo->ii_btop);
16136 +       for (bindex = iinfo->ii_btop; bindex <= iinfo->ii_bbot;
16137 +            bindex++, p++) {
16138 +               if (!p->hi_inode)
16139 +                       continue;
16140 +
16141 +               AuDebugOn(type != (p->hi_inode->i_mode & S_IFMT));
16142 +               new_bindex = au_br_index(sb, p->hi_id);
16143 +               if (new_bindex == bindex)
16144 +                       continue;
16145 +
16146 +               if (new_bindex < 0) {
16147 +                       *update = 1;
16148 +                       au_hiput(p);
16149 +                       p->hi_inode = NULL;
16150 +                       continue;
16151 +               }
16152 +
16153 +               if (new_bindex < iinfo->ii_btop)
16154 +                       iinfo->ii_btop = new_bindex;
16155 +               if (iinfo->ii_bbot < new_bindex)
16156 +                       iinfo->ii_bbot = new_bindex;
16157 +               /* swap two lower inode, and loop again */
16158 +               q = au_hinode(iinfo, new_bindex);
16159 +               tmp = *q;
16160 +               *q = *p;
16161 +               *p = tmp;
16162 +               if (tmp.hi_inode) {
16163 +                       bindex--;
16164 +                       p--;
16165 +               }
16166 +       }
16167 +       au_update_ibrange(inode, /*do_put_zero*/0);
16168 +       au_hinode_realloc(iinfo, nbr, /*may_shrink*/1); /* harmless if err */
16169 +       e = au_dy_irefresh(inode);
16170 +       if (unlikely(e && !err))
16171 +               err = e;
16172 +
16173 +out:
16174 +       AuTraceErr(err);
16175 +       return err;
16176 +}
16177 +
16178 +void au_refresh_iop(struct inode *inode, int force_getattr)
16179 +{
16180 +       int type;
16181 +       struct au_sbinfo *sbi = au_sbi(inode->i_sb);
16182 +       const struct inode_operations *iop
16183 +               = force_getattr ? aufs_iop : sbi->si_iop_array;
16184 +
16185 +       if (inode->i_op == iop)
16186 +               return;
16187 +
16188 +       switch (inode->i_mode & S_IFMT) {
16189 +       case S_IFDIR:
16190 +               type = AuIop_DIR;
16191 +               break;
16192 +       case S_IFLNK:
16193 +               type = AuIop_SYMLINK;
16194 +               break;
16195 +       default:
16196 +               type = AuIop_OTHER;
16197 +               break;
16198 +       }
16199 +
16200 +       inode->i_op = iop + type;
16201 +       /* unnecessary smp_wmb() */
16202 +}
16203 +
16204 +int au_refresh_hinode_self(struct inode *inode)
16205 +{
16206 +       int err, update;
16207 +
16208 +       err = au_ii_refresh(inode, &update);
16209 +       if (!err)
16210 +               au_refresh_hinode_attr(inode, update && S_ISDIR(inode->i_mode));
16211 +
16212 +       AuTraceErr(err);
16213 +       return err;
16214 +}
16215 +
16216 +int au_refresh_hinode(struct inode *inode, struct dentry *dentry)
16217 +{
16218 +       int err, e, update;
16219 +       unsigned int flags;
16220 +       umode_t mode;
16221 +       aufs_bindex_t bindex, bbot;
16222 +       unsigned char isdir;
16223 +       struct au_hinode *p;
16224 +       struct au_iinfo *iinfo;
16225 +
16226 +       err = au_ii_refresh(inode, &update);
16227 +       if (unlikely(err))
16228 +               goto out;
16229 +
16230 +       update = 0;
16231 +       iinfo = au_ii(inode);
16232 +       p = au_hinode(iinfo, iinfo->ii_btop);
16233 +       mode = (inode->i_mode & S_IFMT);
16234 +       isdir = S_ISDIR(mode);
16235 +       flags = au_hi_flags(inode, isdir);
16236 +       bbot = au_dbbot(dentry);
16237 +       for (bindex = au_dbtop(dentry); bindex <= bbot; bindex++) {
16238 +               struct inode *h_i, *h_inode;
16239 +               struct dentry *h_d;
16240 +
16241 +               h_d = au_h_dptr(dentry, bindex);
16242 +               if (!h_d || d_is_negative(h_d))
16243 +                       continue;
16244 +
16245 +               h_inode = d_inode(h_d);
16246 +               AuDebugOn(mode != (h_inode->i_mode & S_IFMT));
16247 +               if (iinfo->ii_btop <= bindex && bindex <= iinfo->ii_bbot) {
16248 +                       h_i = au_h_iptr(inode, bindex);
16249 +                       if (h_i) {
16250 +                               if (h_i == h_inode)
16251 +                                       continue;
16252 +                               err = -EIO;
16253 +                               break;
16254 +                       }
16255 +               }
16256 +               if (bindex < iinfo->ii_btop)
16257 +                       iinfo->ii_btop = bindex;
16258 +               if (iinfo->ii_bbot < bindex)
16259 +                       iinfo->ii_bbot = bindex;
16260 +               au_set_h_iptr(inode, bindex, au_igrab(h_inode), flags);
16261 +               update = 1;
16262 +       }
16263 +       au_update_ibrange(inode, /*do_put_zero*/0);
16264 +       e = au_dy_irefresh(inode);
16265 +       if (unlikely(e && !err))
16266 +               err = e;
16267 +       if (!err)
16268 +               au_refresh_hinode_attr(inode, update && isdir);
16269 +
16270 +out:
16271 +       AuTraceErr(err);
16272 +       return err;
16273 +}
16274 +
16275 +static int set_inode(struct inode *inode, struct dentry *dentry)
16276 +{
16277 +       int err;
16278 +       unsigned int flags;
16279 +       umode_t mode;
16280 +       aufs_bindex_t bindex, btop, btail;
16281 +       unsigned char isdir;
16282 +       struct dentry *h_dentry;
16283 +       struct inode *h_inode;
16284 +       struct au_iinfo *iinfo;
16285 +       struct inode_operations *iop;
16286 +
16287 +       IiMustWriteLock(inode);
16288 +
16289 +       err = 0;
16290 +       isdir = 0;
16291 +       iop = au_sbi(inode->i_sb)->si_iop_array;
16292 +       btop = au_dbtop(dentry);
16293 +       h_dentry = au_h_dptr(dentry, btop);
16294 +       h_inode = d_inode(h_dentry);
16295 +       mode = h_inode->i_mode;
16296 +       switch (mode & S_IFMT) {
16297 +       case S_IFREG:
16298 +               btail = au_dbtail(dentry);
16299 +               inode->i_op = iop + AuIop_OTHER;
16300 +               inode->i_fop = &aufs_file_fop;
16301 +               err = au_dy_iaop(inode, btop, h_inode);
16302 +               if (unlikely(err))
16303 +                       goto out;
16304 +               break;
16305 +       case S_IFDIR:
16306 +               isdir = 1;
16307 +               btail = au_dbtaildir(dentry);
16308 +               inode->i_op = iop + AuIop_DIR;
16309 +               inode->i_fop = &aufs_dir_fop;
16310 +               break;
16311 +       case S_IFLNK:
16312 +               btail = au_dbtail(dentry);
16313 +               inode->i_op = iop + AuIop_SYMLINK;
16314 +               break;
16315 +       case S_IFBLK:
16316 +       case S_IFCHR:
16317 +       case S_IFIFO:
16318 +       case S_IFSOCK:
16319 +               btail = au_dbtail(dentry);
16320 +               inode->i_op = iop + AuIop_OTHER;
16321 +               init_special_inode(inode, mode, h_inode->i_rdev);
16322 +               break;
16323 +       default:
16324 +               AuIOErr("Unknown file type 0%o\n", mode);
16325 +               err = -EIO;
16326 +               goto out;
16327 +       }
16328 +
16329 +       /* do not set hnotify for whiteouted dirs (SHWH mode) */
16330 +       flags = au_hi_flags(inode, isdir);
16331 +       if (au_opt_test(au_mntflags(dentry->d_sb), SHWH)
16332 +           && au_ftest_hi(flags, HNOTIFY)
16333 +           && dentry->d_name.len > AUFS_WH_PFX_LEN
16334 +           && !memcmp(dentry->d_name.name, AUFS_WH_PFX, AUFS_WH_PFX_LEN))
16335 +               au_fclr_hi(flags, HNOTIFY);
16336 +       iinfo = au_ii(inode);
16337 +       iinfo->ii_btop = btop;
16338 +       iinfo->ii_bbot = btail;
16339 +       for (bindex = btop; bindex <= btail; bindex++) {
16340 +               h_dentry = au_h_dptr(dentry, bindex);
16341 +               if (h_dentry)
16342 +                       au_set_h_iptr(inode, bindex,
16343 +                                     au_igrab(d_inode(h_dentry)), flags);
16344 +       }
16345 +       au_cpup_attr_all(inode, /*force*/1);
16346 +       /*
16347 +        * to force calling aufs_get_acl() every time,
16348 +        * do not call cache_no_acl() for aufs inode.
16349 +        */
16350 +
16351 +out:
16352 +       return err;
16353 +}
16354 +
16355 +/*
16356 + * successful returns with iinfo write_locked
16357 + * minus: errno
16358 + * zero: success, matched
16359 + * plus: no error, but unmatched
16360 + */
16361 +static int reval_inode(struct inode *inode, struct dentry *dentry)
16362 +{
16363 +       int err;
16364 +       unsigned int gen, igflags;
16365 +       aufs_bindex_t bindex, bbot;
16366 +       struct inode *h_inode, *h_dinode;
16367 +       struct dentry *h_dentry;
16368 +
16369 +       /*
16370 +        * before this function, if aufs got any iinfo lock, it must be only
16371 +        * one, the parent dir.
16372 +        * it can happen by UDBA and the obsoleted inode number.
16373 +        */
16374 +       err = -EIO;
16375 +       if (unlikely(inode->i_ino == parent_ino(dentry)))
16376 +               goto out;
16377 +
16378 +       err = 1;
16379 +       ii_write_lock_new_child(inode);
16380 +       h_dentry = au_h_dptr(dentry, au_dbtop(dentry));
16381 +       h_dinode = d_inode(h_dentry);
16382 +       bbot = au_ibbot(inode);
16383 +       for (bindex = au_ibtop(inode); bindex <= bbot; bindex++) {
16384 +               h_inode = au_h_iptr(inode, bindex);
16385 +               if (!h_inode || h_inode != h_dinode)
16386 +                       continue;
16387 +
16388 +               err = 0;
16389 +               gen = au_iigen(inode, &igflags);
16390 +               if (gen == au_digen(dentry)
16391 +                   && !au_ig_ftest(igflags, HALF_REFRESHED))
16392 +                       break;
16393 +
16394 +               /* fully refresh inode using dentry */
16395 +               err = au_refresh_hinode(inode, dentry);
16396 +               if (!err)
16397 +                       au_update_iigen(inode, /*half*/0);
16398 +               break;
16399 +       }
16400 +
16401 +       if (unlikely(err))
16402 +               ii_write_unlock(inode);
16403 +out:
16404 +       return err;
16405 +}
16406 +
16407 +int au_ino(struct super_block *sb, aufs_bindex_t bindex, ino_t h_ino,
16408 +          unsigned int d_type, ino_t *ino)
16409 +{
16410 +       int err;
16411 +       struct mutex *mtx;
16412 +
16413 +       /* prevent hardlinked inode number from race condition */
16414 +       mtx = NULL;
16415 +       if (d_type != DT_DIR) {
16416 +               mtx = &au_sbr(sb, bindex)->br_xino.xi_nondir_mtx;
16417 +               mutex_lock(mtx);
16418 +       }
16419 +       err = au_xino_read(sb, bindex, h_ino, ino);
16420 +       if (unlikely(err))
16421 +               goto out;
16422 +
16423 +       if (!*ino) {
16424 +               err = -EIO;
16425 +               *ino = au_xino_new_ino(sb);
16426 +               if (unlikely(!*ino))
16427 +                       goto out;
16428 +               err = au_xino_write(sb, bindex, h_ino, *ino);
16429 +               if (unlikely(err))
16430 +                       goto out;
16431 +       }
16432 +
16433 +out:
16434 +       if (mtx)
16435 +               mutex_unlock(mtx);
16436 +       return err;
16437 +}
16438 +
16439 +/* successful returns with iinfo write_locked */
16440 +/* todo: return with unlocked? */
16441 +struct inode *au_new_inode(struct dentry *dentry, int must_new)
16442 +{
16443 +       struct inode *inode, *h_inode;
16444 +       struct dentry *h_dentry;
16445 +       struct super_block *sb;
16446 +       struct mutex *mtx;
16447 +       ino_t h_ino, ino;
16448 +       int err;
16449 +       aufs_bindex_t btop;
16450 +
16451 +       sb = dentry->d_sb;
16452 +       btop = au_dbtop(dentry);
16453 +       h_dentry = au_h_dptr(dentry, btop);
16454 +       h_inode = d_inode(h_dentry);
16455 +       h_ino = h_inode->i_ino;
16456 +
16457 +       /*
16458 +        * stop 'race'-ing between hardlinks under different
16459 +        * parents.
16460 +        */
16461 +       mtx = NULL;
16462 +       if (!d_is_dir(h_dentry))
16463 +               mtx = &au_sbr(sb, btop)->br_xino.xi_nondir_mtx;
16464 +
16465 +new_ino:
16466 +       if (mtx)
16467 +               mutex_lock(mtx);
16468 +       err = au_xino_read(sb, btop, h_ino, &ino);
16469 +       inode = ERR_PTR(err);
16470 +       if (unlikely(err))
16471 +               goto out;
16472 +
16473 +       if (!ino) {
16474 +               ino = au_xino_new_ino(sb);
16475 +               if (unlikely(!ino)) {
16476 +                       inode = ERR_PTR(-EIO);
16477 +                       goto out;
16478 +               }
16479 +       }
16480 +
16481 +       AuDbg("i%lu\n", (unsigned long)ino);
16482 +       inode = au_iget_locked(sb, ino);
16483 +       err = PTR_ERR(inode);
16484 +       if (IS_ERR(inode))
16485 +               goto out;
16486 +
16487 +       AuDbg("%lx, new %d\n", inode->i_state, !!(inode->i_state & I_NEW));
16488 +       if (inode->i_state & I_NEW) {
16489 +               ii_write_lock_new_child(inode);
16490 +               err = set_inode(inode, dentry);
16491 +               if (!err) {
16492 +                       unlock_new_inode(inode);
16493 +                       goto out; /* success */
16494 +               }
16495 +
16496 +               /*
16497 +                * iget_failed() calls iput(), but we need to call
16498 +                * ii_write_unlock() after iget_failed(). so dirty hack for
16499 +                * i_count.
16500 +                */
16501 +               atomic_inc(&inode->i_count);
16502 +               iget_failed(inode);
16503 +               ii_write_unlock(inode);
16504 +               au_xino_write(sb, btop, h_ino, /*ino*/0);
16505 +               /* ignore this error */
16506 +               goto out_iput;
16507 +       } else if (!must_new && !IS_DEADDIR(inode) && inode->i_nlink) {
16508 +               /*
16509 +                * horrible race condition between lookup, readdir and copyup
16510 +                * (or something).
16511 +                */
16512 +               if (mtx)
16513 +                       mutex_unlock(mtx);
16514 +               err = reval_inode(inode, dentry);
16515 +               if (unlikely(err < 0)) {
16516 +                       mtx = NULL;
16517 +                       goto out_iput;
16518 +               }
16519 +
16520 +               if (!err) {
16521 +                       mtx = NULL;
16522 +                       goto out; /* success */
16523 +               } else if (mtx)
16524 +                       mutex_lock(mtx);
16525 +       }
16526 +
16527 +       if (unlikely(au_test_fs_unique_ino(h_inode)))
16528 +               AuWarn1("Warning: Un-notified UDBA or repeatedly renamed dir,"
16529 +                       " b%d, %s, %pd, hi%lu, i%lu.\n",
16530 +                       btop, au_sbtype(h_dentry->d_sb), dentry,
16531 +                       (unsigned long)h_ino, (unsigned long)ino);
16532 +       ino = 0;
16533 +       err = au_xino_write(sb, btop, h_ino, /*ino*/0);
16534 +       if (!err) {
16535 +               iput(inode);
16536 +               if (mtx)
16537 +                       mutex_unlock(mtx);
16538 +               goto new_ino;
16539 +       }
16540 +
16541 +out_iput:
16542 +       iput(inode);
16543 +       inode = ERR_PTR(err);
16544 +out:
16545 +       if (mtx)
16546 +               mutex_unlock(mtx);
16547 +       return inode;
16548 +}
16549 +
16550 +/* ---------------------------------------------------------------------- */
16551 +
16552 +int au_test_ro(struct super_block *sb, aufs_bindex_t bindex,
16553 +              struct inode *inode)
16554 +{
16555 +       int err;
16556 +       struct inode *hi;
16557 +
16558 +       err = au_br_rdonly(au_sbr(sb, bindex));
16559 +
16560 +       /* pseudo-link after flushed may happen out of bounds */
16561 +       if (!err
16562 +           && inode
16563 +           && au_ibtop(inode) <= bindex
16564 +           && bindex <= au_ibbot(inode)) {
16565 +               /*
16566 +                * permission check is unnecessary since vfsub routine
16567 +                * will be called later
16568 +                */
16569 +               hi = au_h_iptr(inode, bindex);
16570 +               if (hi)
16571 +                       err = IS_IMMUTABLE(hi) ? -EROFS : 0;
16572 +       }
16573 +
16574 +       return err;
16575 +}
16576 +
16577 +int au_test_h_perm(struct inode *h_inode, int mask)
16578 +{
16579 +       if (uid_eq(current_fsuid(), GLOBAL_ROOT_UID))
16580 +               return 0;
16581 +       return inode_permission(h_inode, mask);
16582 +}
16583 +
16584 +int au_test_h_perm_sio(struct inode *h_inode, int mask)
16585 +{
16586 +       if (au_test_nfs(h_inode->i_sb)
16587 +           && (mask & MAY_WRITE)
16588 +           && S_ISDIR(h_inode->i_mode))
16589 +               mask |= MAY_READ; /* force permission check */
16590 +       return au_test_h_perm(h_inode, mask);
16591 +}
16592 diff -urN /usr/share/empty/fs/aufs/inode.h linux/fs/aufs/inode.h
16593 --- /usr/share/empty/fs/aufs/inode.h    1970-01-01 01:00:00.000000000 +0100
16594 +++ linux/fs/aufs/inode.h       2016-12-17 12:28:17.595211562 +0100
16595 @@ -0,0 +1,691 @@
16596 +/*
16597 + * Copyright (C) 2005-2016 Junjiro R. Okajima
16598 + *
16599 + * This program, aufs is free software; you can redistribute it and/or modify
16600 + * it under the terms of the GNU General Public License as published by
16601 + * the Free Software Foundation; either version 2 of the License, or
16602 + * (at your option) any later version.
16603 + *
16604 + * This program is distributed in the hope that it will be useful,
16605 + * but WITHOUT ANY WARRANTY; without even the implied warranty of
16606 + * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
16607 + * GNU General Public License for more details.
16608 + *
16609 + * You should have received a copy of the GNU General Public License
16610 + * along with this program.  If not, see <http://www.gnu.org/licenses/>.
16611 + */
16612 +
16613 +/*
16614 + * inode operations
16615 + */
16616 +
16617 +#ifndef __AUFS_INODE_H__
16618 +#define __AUFS_INODE_H__
16619 +
16620 +#ifdef __KERNEL__
16621 +
16622 +#include <linux/fsnotify.h>
16623 +#include "rwsem.h"
16624 +
16625 +struct vfsmount;
16626 +
16627 +struct au_hnotify {
16628 +#ifdef CONFIG_AUFS_HNOTIFY
16629 +#ifdef CONFIG_AUFS_HFSNOTIFY
16630 +       /* never use fsnotify_add_vfsmount_mark() */
16631 +       struct fsnotify_mark            hn_mark;
16632 +#endif
16633 +       union {
16634 +               struct inode            *hn_aufs_inode; /* no get/put */
16635 +               struct llist_node       hn_lnode;       /* delayed free */
16636 +       };
16637 +#endif
16638 +} ____cacheline_aligned_in_smp;
16639 +
16640 +struct au_hinode {
16641 +       struct inode            *hi_inode;
16642 +       aufs_bindex_t           hi_id;
16643 +#ifdef CONFIG_AUFS_HNOTIFY
16644 +       struct au_hnotify       *hi_notify;
16645 +#endif
16646 +
16647 +       /* reference to the copied-up whiteout with get/put */
16648 +       struct dentry           *hi_whdentry;
16649 +};
16650 +
16651 +/* ig_flags */
16652 +#define AuIG_HALF_REFRESHED            1
16653 +#define au_ig_ftest(flags, name)       ((flags) & AuIG_##name)
16654 +#define au_ig_fset(flags, name) \
16655 +       do { (flags) |= AuIG_##name; } while (0)
16656 +#define au_ig_fclr(flags, name) \
16657 +       do { (flags) &= ~AuIG_##name; } while (0)
16658 +
16659 +struct au_iigen {
16660 +       spinlock_t      ig_spin;
16661 +       __u32           ig_generation, ig_flags;
16662 +};
16663 +
16664 +struct au_vdir;
16665 +struct au_iinfo {
16666 +       struct au_iigen         ii_generation;
16667 +       struct super_block      *ii_hsb1;       /* no get/put */
16668 +
16669 +       struct au_rwsem         ii_rwsem;
16670 +       aufs_bindex_t           ii_btop, ii_bbot;
16671 +       __u32                   ii_higen;
16672 +       struct au_hinode        *ii_hinode;
16673 +       struct au_vdir          *ii_vdir;
16674 +};
16675 +
16676 +struct au_icntnr {
16677 +       struct au_iinfo iinfo;
16678 +       struct inode vfs_inode;
16679 +       union {
16680 +               struct hlist_node       plink;
16681 +               struct llist_node       lnode;  /* delayed free */
16682 +       };
16683 +} ____cacheline_aligned_in_smp;
16684 +
16685 +/* au_pin flags */
16686 +#define AuPin_DI_LOCKED                1
16687 +#define AuPin_MNT_WRITE                (1 << 1)
16688 +#define au_ftest_pin(flags, name)      ((flags) & AuPin_##name)
16689 +#define au_fset_pin(flags, name) \
16690 +       do { (flags) |= AuPin_##name; } while (0)
16691 +#define au_fclr_pin(flags, name) \
16692 +       do { (flags) &= ~AuPin_##name; } while (0)
16693 +
16694 +struct au_pin {
16695 +       /* input */
16696 +       struct dentry *dentry;
16697 +       unsigned int udba;
16698 +       unsigned char lsc_di, lsc_hi, flags;
16699 +       aufs_bindex_t bindex;
16700 +
16701 +       /* output */
16702 +       struct dentry *parent;
16703 +       struct au_hinode *hdir;
16704 +       struct vfsmount *h_mnt;
16705 +
16706 +       /* temporary unlock/relock for copyup */
16707 +       struct dentry *h_dentry, *h_parent;
16708 +       struct au_branch *br;
16709 +       struct task_struct *task;
16710 +};
16711 +
16712 +void au_pin_hdir_unlock(struct au_pin *p);
16713 +int au_pin_hdir_lock(struct au_pin *p);
16714 +int au_pin_hdir_relock(struct au_pin *p);
16715 +void au_pin_hdir_acquire_nest(struct au_pin *p);
16716 +void au_pin_hdir_release(struct au_pin *p);
16717 +
16718 +/* ---------------------------------------------------------------------- */
16719 +
16720 +static inline struct au_iinfo *au_ii(struct inode *inode)
16721 +{
16722 +       BUG_ON(is_bad_inode(inode));
16723 +       return &(container_of(inode, struct au_icntnr, vfs_inode)->iinfo);
16724 +}
16725 +
16726 +/* ---------------------------------------------------------------------- */
16727 +
16728 +/* inode.c */
16729 +struct inode *au_igrab(struct inode *inode);
16730 +void au_refresh_iop(struct inode *inode, int force_getattr);
16731 +int au_refresh_hinode_self(struct inode *inode);
16732 +int au_refresh_hinode(struct inode *inode, struct dentry *dentry);
16733 +int au_ino(struct super_block *sb, aufs_bindex_t bindex, ino_t h_ino,
16734 +          unsigned int d_type, ino_t *ino);
16735 +struct inode *au_new_inode(struct dentry *dentry, int must_new);
16736 +int au_test_ro(struct super_block *sb, aufs_bindex_t bindex,
16737 +              struct inode *inode);
16738 +int au_test_h_perm(struct inode *h_inode, int mask);
16739 +int au_test_h_perm_sio(struct inode *h_inode, int mask);
16740 +
16741 +static inline int au_wh_ino(struct super_block *sb, aufs_bindex_t bindex,
16742 +                           ino_t h_ino, unsigned int d_type, ino_t *ino)
16743 +{
16744 +#ifdef CONFIG_AUFS_SHWH
16745 +       return au_ino(sb, bindex, h_ino, d_type, ino);
16746 +#else
16747 +       return 0;
16748 +#endif
16749 +}
16750 +
16751 +/* i_op.c */
16752 +enum {
16753 +       AuIop_SYMLINK,
16754 +       AuIop_DIR,
16755 +       AuIop_OTHER,
16756 +       AuIop_Last
16757 +};
16758 +extern struct inode_operations aufs_iop[AuIop_Last],
16759 +       aufs_iop_nogetattr[AuIop_Last];
16760 +
16761 +/* au_wr_dir flags */
16762 +#define AuWrDir_ADD_ENTRY      1
16763 +#define AuWrDir_ISDIR          (1 << 1)
16764 +#define AuWrDir_TMPFILE                (1 << 2)
16765 +#define au_ftest_wrdir(flags, name)    ((flags) & AuWrDir_##name)
16766 +#define au_fset_wrdir(flags, name) \
16767 +       do { (flags) |= AuWrDir_##name; } while (0)
16768 +#define au_fclr_wrdir(flags, name) \
16769 +       do { (flags) &= ~AuWrDir_##name; } while (0)
16770 +
16771 +struct au_wr_dir_args {
16772 +       aufs_bindex_t force_btgt;
16773 +       unsigned char flags;
16774 +};
16775 +int au_wr_dir(struct dentry *dentry, struct dentry *src_dentry,
16776 +             struct au_wr_dir_args *args);
16777 +
16778 +struct dentry *au_pinned_h_parent(struct au_pin *pin);
16779 +void au_pin_init(struct au_pin *pin, struct dentry *dentry,
16780 +                aufs_bindex_t bindex, int lsc_di, int lsc_hi,
16781 +                unsigned int udba, unsigned char flags);
16782 +int au_pin(struct au_pin *pin, struct dentry *dentry, aufs_bindex_t bindex,
16783 +          unsigned int udba, unsigned char flags) __must_check;
16784 +int au_do_pin(struct au_pin *pin) __must_check;
16785 +void au_unpin(struct au_pin *pin);
16786 +int au_reval_for_attr(struct dentry *dentry, unsigned int sigen);
16787 +
16788 +#define AuIcpup_DID_CPUP       1
16789 +#define au_ftest_icpup(flags, name)    ((flags) & AuIcpup_##name)
16790 +#define au_fset_icpup(flags, name) \
16791 +       do { (flags) |= AuIcpup_##name; } while (0)
16792 +#define au_fclr_icpup(flags, name) \
16793 +       do { (flags) &= ~AuIcpup_##name; } while (0)
16794 +
16795 +struct au_icpup_args {
16796 +       unsigned char flags;
16797 +       unsigned char pin_flags;
16798 +       aufs_bindex_t btgt;
16799 +       unsigned int udba;
16800 +       struct au_pin pin;
16801 +       struct path h_path;
16802 +       struct inode *h_inode;
16803 +};
16804 +
16805 +int au_pin_and_icpup(struct dentry *dentry, struct iattr *ia,
16806 +                    struct au_icpup_args *a);
16807 +
16808 +int au_h_path_getattr(struct dentry *dentry, int force, struct path *h_path);
16809 +
16810 +/* i_op_add.c */
16811 +int au_may_add(struct dentry *dentry, aufs_bindex_t bindex,
16812 +              struct dentry *h_parent, int isdir);
16813 +int aufs_mknod(struct inode *dir, struct dentry *dentry, umode_t mode,
16814 +              dev_t dev);
16815 +int aufs_symlink(struct inode *dir, struct dentry *dentry, const char *symname);
16816 +int aufs_create(struct inode *dir, struct dentry *dentry, umode_t mode,
16817 +               bool want_excl);
16818 +struct vfsub_aopen_args;
16819 +int au_aopen_or_create(struct inode *dir, struct dentry *dentry,
16820 +                      struct vfsub_aopen_args *args);
16821 +int aufs_tmpfile(struct inode *dir, struct dentry *dentry, umode_t mode);
16822 +int aufs_link(struct dentry *src_dentry, struct inode *dir,
16823 +             struct dentry *dentry);
16824 +int aufs_mkdir(struct inode *dir, struct dentry *dentry, umode_t mode);
16825 +
16826 +/* i_op_del.c */
16827 +int au_wr_dir_need_wh(struct dentry *dentry, int isdir, aufs_bindex_t *bcpup);
16828 +int au_may_del(struct dentry *dentry, aufs_bindex_t bindex,
16829 +              struct dentry *h_parent, int isdir);
16830 +int aufs_unlink(struct inode *dir, struct dentry *dentry);
16831 +int aufs_rmdir(struct inode *dir, struct dentry *dentry);
16832 +
16833 +/* i_op_ren.c */
16834 +int au_wbr(struct dentry *dentry, aufs_bindex_t btgt);
16835 +int aufs_rename(struct inode *src_dir, struct dentry *src_dentry,
16836 +               struct inode *dir, struct dentry *dentry,
16837 +               unsigned int flags);
16838 +
16839 +/* iinfo.c */
16840 +struct inode *au_h_iptr(struct inode *inode, aufs_bindex_t bindex);
16841 +void au_hiput(struct au_hinode *hinode);
16842 +void au_set_hi_wh(struct inode *inode, aufs_bindex_t bindex,
16843 +                 struct dentry *h_wh);
16844 +unsigned int au_hi_flags(struct inode *inode, int isdir);
16845 +
16846 +/* hinode flags */
16847 +#define AuHi_XINO      1
16848 +#define AuHi_HNOTIFY   (1 << 1)
16849 +#define au_ftest_hi(flags, name)       ((flags) & AuHi_##name)
16850 +#define au_fset_hi(flags, name) \
16851 +       do { (flags) |= AuHi_##name; } while (0)
16852 +#define au_fclr_hi(flags, name) \
16853 +       do { (flags) &= ~AuHi_##name; } while (0)
16854 +
16855 +#ifndef CONFIG_AUFS_HNOTIFY
16856 +#undef AuHi_HNOTIFY
16857 +#define AuHi_HNOTIFY   0
16858 +#endif
16859 +
16860 +void au_set_h_iptr(struct inode *inode, aufs_bindex_t bindex,
16861 +                  struct inode *h_inode, unsigned int flags);
16862 +
16863 +void au_update_iigen(struct inode *inode, int half);
16864 +void au_update_ibrange(struct inode *inode, int do_put_zero);
16865 +
16866 +void au_icntnr_init_once(void *_c);
16867 +void au_hinode_init(struct au_hinode *hinode);
16868 +int au_iinfo_init(struct inode *inode);
16869 +void au_iinfo_fin(struct inode *inode);
16870 +int au_hinode_realloc(struct au_iinfo *iinfo, int nbr, int may_shrink);
16871 +
16872 +#ifdef CONFIG_PROC_FS
16873 +/* plink.c */
16874 +int au_plink_maint(struct super_block *sb, int flags);
16875 +struct au_sbinfo;
16876 +void au_plink_maint_leave(struct au_sbinfo *sbinfo);
16877 +int au_plink_maint_enter(struct super_block *sb);
16878 +#ifdef CONFIG_AUFS_DEBUG
16879 +void au_plink_list(struct super_block *sb);
16880 +#else
16881 +AuStubVoid(au_plink_list, struct super_block *sb)
16882 +#endif
16883 +int au_plink_test(struct inode *inode);
16884 +struct dentry *au_plink_lkup(struct inode *inode, aufs_bindex_t bindex);
16885 +void au_plink_append(struct inode *inode, aufs_bindex_t bindex,
16886 +                    struct dentry *h_dentry);
16887 +void au_plink_put(struct super_block *sb, int verbose);
16888 +void au_plink_clean(struct super_block *sb, int verbose);
16889 +void au_plink_half_refresh(struct super_block *sb, aufs_bindex_t br_id);
16890 +#else
16891 +AuStubInt0(au_plink_maint, struct super_block *sb, int flags);
16892 +AuStubVoid(au_plink_maint_leave, struct au_sbinfo *sbinfo);
16893 +AuStubInt0(au_plink_maint_enter, struct super_block *sb);
16894 +AuStubVoid(au_plink_list, struct super_block *sb);
16895 +AuStubInt0(au_plink_test, struct inode *inode);
16896 +AuStub(struct dentry *, au_plink_lkup, return NULL,
16897 +       struct inode *inode, aufs_bindex_t bindex);
16898 +AuStubVoid(au_plink_append, struct inode *inode, aufs_bindex_t bindex,
16899 +          struct dentry *h_dentry);
16900 +AuStubVoid(au_plink_put, struct super_block *sb, int verbose);
16901 +AuStubVoid(au_plink_clean, struct super_block *sb, int verbose);
16902 +AuStubVoid(au_plink_half_refresh, struct super_block *sb, aufs_bindex_t br_id);
16903 +#endif /* CONFIG_PROC_FS */
16904 +
16905 +#ifdef CONFIG_AUFS_XATTR
16906 +/* xattr.c */
16907 +int au_cpup_xattr(struct dentry *h_dst, struct dentry *h_src, int ignore_flags,
16908 +                 unsigned int verbose);
16909 +ssize_t aufs_listxattr(struct dentry *dentry, char *list, size_t size);
16910 +void au_xattr_init(struct super_block *sb);
16911 +#else
16912 +AuStubInt0(au_cpup_xattr, struct dentry *h_dst, struct dentry *h_src,
16913 +          int ignore_flags, unsigned int verbose);
16914 +AuStubVoid(au_xattr_init, struct super_block *sb);
16915 +#endif
16916 +
16917 +#ifdef CONFIG_FS_POSIX_ACL
16918 +struct posix_acl *aufs_get_acl(struct inode *inode, int type);
16919 +int aufs_set_acl(struct inode *inode, struct posix_acl *acl, int type);
16920 +#endif
16921 +
16922 +#if IS_ENABLED(CONFIG_AUFS_XATTR) || IS_ENABLED(CONFIG_FS_POSIX_ACL)
16923 +enum {
16924 +       AU_XATTR_SET,
16925 +       AU_ACL_SET
16926 +};
16927 +
16928 +struct au_sxattr {
16929 +       int type;
16930 +       union {
16931 +               struct {
16932 +                       const char      *name;
16933 +                       const void      *value;
16934 +                       size_t          size;
16935 +                       int             flags;
16936 +               } set;
16937 +               struct {
16938 +                       struct posix_acl *acl;
16939 +                       int             type;
16940 +               } acl_set;
16941 +       } u;
16942 +};
16943 +ssize_t au_sxattr(struct dentry *dentry, struct inode *inode,
16944 +                 struct au_sxattr *arg);
16945 +#endif
16946 +
16947 +/* ---------------------------------------------------------------------- */
16948 +
16949 +/* lock subclass for iinfo */
16950 +enum {
16951 +       AuLsc_II_CHILD,         /* child first */
16952 +       AuLsc_II_CHILD2,        /* rename(2), link(2), and cpup at hnotify */
16953 +       AuLsc_II_CHILD3,        /* copyup dirs */
16954 +       AuLsc_II_PARENT,        /* see AuLsc_I_PARENT in vfsub.h */
16955 +       AuLsc_II_PARENT2,
16956 +       AuLsc_II_PARENT3,       /* copyup dirs */
16957 +       AuLsc_II_NEW_CHILD
16958 +};
16959 +
16960 +/*
16961 + * ii_read_lock_child, ii_write_lock_child,
16962 + * ii_read_lock_child2, ii_write_lock_child2,
16963 + * ii_read_lock_child3, ii_write_lock_child3,
16964 + * ii_read_lock_parent, ii_write_lock_parent,
16965 + * ii_read_lock_parent2, ii_write_lock_parent2,
16966 + * ii_read_lock_parent3, ii_write_lock_parent3,
16967 + * ii_read_lock_new_child, ii_write_lock_new_child,
16968 + */
16969 +#define AuReadLockFunc(name, lsc) \
16970 +static inline void ii_read_lock_##name(struct inode *i) \
16971 +{ \
16972 +       au_rw_read_lock_nested(&au_ii(i)->ii_rwsem, AuLsc_II_##lsc); \
16973 +}
16974 +
16975 +#define AuWriteLockFunc(name, lsc) \
16976 +static inline void ii_write_lock_##name(struct inode *i) \
16977 +{ \
16978 +       au_rw_write_lock_nested(&au_ii(i)->ii_rwsem, AuLsc_II_##lsc); \
16979 +}
16980 +
16981 +#define AuRWLockFuncs(name, lsc) \
16982 +       AuReadLockFunc(name, lsc) \
16983 +       AuWriteLockFunc(name, lsc)
16984 +
16985 +AuRWLockFuncs(child, CHILD);
16986 +AuRWLockFuncs(child2, CHILD2);
16987 +AuRWLockFuncs(child3, CHILD3);
16988 +AuRWLockFuncs(parent, PARENT);
16989 +AuRWLockFuncs(parent2, PARENT2);
16990 +AuRWLockFuncs(parent3, PARENT3);
16991 +AuRWLockFuncs(new_child, NEW_CHILD);
16992 +
16993 +#undef AuReadLockFunc
16994 +#undef AuWriteLockFunc
16995 +#undef AuRWLockFuncs
16996 +
16997 +/*
16998 + * ii_read_unlock, ii_write_unlock, ii_downgrade_lock
16999 + */
17000 +AuSimpleUnlockRwsemFuncs(ii, struct inode *i, &au_ii(i)->ii_rwsem);
17001 +
17002 +#define IiMustNoWaiters(i)     AuRwMustNoWaiters(&au_ii(i)->ii_rwsem)
17003 +#define IiMustAnyLock(i)       AuRwMustAnyLock(&au_ii(i)->ii_rwsem)
17004 +#define IiMustWriteLock(i)     AuRwMustWriteLock(&au_ii(i)->ii_rwsem)
17005 +
17006 +/* ---------------------------------------------------------------------- */
17007 +
17008 +static inline void au_icntnr_init(struct au_icntnr *c)
17009 +{
17010 +#ifdef CONFIG_AUFS_DEBUG
17011 +       c->vfs_inode.i_mode = 0;
17012 +#endif
17013 +}
17014 +
17015 +static inline unsigned int au_iigen(struct inode *inode, unsigned int *igflags)
17016 +{
17017 +       unsigned int gen;
17018 +       struct au_iinfo *iinfo;
17019 +       struct au_iigen *iigen;
17020 +
17021 +       iinfo = au_ii(inode);
17022 +       iigen = &iinfo->ii_generation;
17023 +       spin_lock(&iigen->ig_spin);
17024 +       if (igflags)
17025 +               *igflags = iigen->ig_flags;
17026 +       gen = iigen->ig_generation;
17027 +       spin_unlock(&iigen->ig_spin);
17028 +
17029 +       return gen;
17030 +}
17031 +
17032 +/* tiny test for inode number */
17033 +/* tmpfs generation is too rough */
17034 +static inline int au_test_higen(struct inode *inode, struct inode *h_inode)
17035 +{
17036 +       struct au_iinfo *iinfo;
17037 +
17038 +       iinfo = au_ii(inode);
17039 +       AuRwMustAnyLock(&iinfo->ii_rwsem);
17040 +       return !(iinfo->ii_hsb1 == h_inode->i_sb
17041 +                && iinfo->ii_higen == h_inode->i_generation);
17042 +}
17043 +
17044 +static inline void au_iigen_dec(struct inode *inode)
17045 +{
17046 +       struct au_iinfo *iinfo;
17047 +       struct au_iigen *iigen;
17048 +
17049 +       iinfo = au_ii(inode);
17050 +       iigen = &iinfo->ii_generation;
17051 +       spin_lock(&iigen->ig_spin);
17052 +       iigen->ig_generation--;
17053 +       spin_unlock(&iigen->ig_spin);
17054 +}
17055 +
17056 +static inline int au_iigen_test(struct inode *inode, unsigned int sigen)
17057 +{
17058 +       int err;
17059 +
17060 +       err = 0;
17061 +       if (unlikely(inode && au_iigen(inode, NULL) != sigen))
17062 +               err = -EIO;
17063 +
17064 +       return err;
17065 +}
17066 +
17067 +/* ---------------------------------------------------------------------- */
17068 +
17069 +static inline struct au_hinode *au_hinode(struct au_iinfo *iinfo,
17070 +                                         aufs_bindex_t bindex)
17071 +{
17072 +       return iinfo->ii_hinode + bindex;
17073 +}
17074 +
17075 +static inline int au_is_bad_inode(struct inode *inode)
17076 +{
17077 +       return !!(is_bad_inode(inode) || !au_hinode(au_ii(inode), 0));
17078 +}
17079 +
17080 +static inline aufs_bindex_t au_ii_br_id(struct inode *inode,
17081 +                                       aufs_bindex_t bindex)
17082 +{
17083 +       IiMustAnyLock(inode);
17084 +       return au_hinode(au_ii(inode), bindex)->hi_id;
17085 +}
17086 +
17087 +static inline aufs_bindex_t au_ibtop(struct inode *inode)
17088 +{
17089 +       IiMustAnyLock(inode);
17090 +       return au_ii(inode)->ii_btop;
17091 +}
17092 +
17093 +static inline aufs_bindex_t au_ibbot(struct inode *inode)
17094 +{
17095 +       IiMustAnyLock(inode);
17096 +       return au_ii(inode)->ii_bbot;
17097 +}
17098 +
17099 +static inline struct au_vdir *au_ivdir(struct inode *inode)
17100 +{
17101 +       IiMustAnyLock(inode);
17102 +       return au_ii(inode)->ii_vdir;
17103 +}
17104 +
17105 +static inline struct dentry *au_hi_wh(struct inode *inode, aufs_bindex_t bindex)
17106 +{
17107 +       IiMustAnyLock(inode);
17108 +       return au_hinode(au_ii(inode), bindex)->hi_whdentry;
17109 +}
17110 +
17111 +static inline void au_set_ibtop(struct inode *inode, aufs_bindex_t bindex)
17112 +{
17113 +       IiMustWriteLock(inode);
17114 +       au_ii(inode)->ii_btop = bindex;
17115 +}
17116 +
17117 +static inline void au_set_ibbot(struct inode *inode, aufs_bindex_t bindex)
17118 +{
17119 +       IiMustWriteLock(inode);
17120 +       au_ii(inode)->ii_bbot = bindex;
17121 +}
17122 +
17123 +static inline void au_set_ivdir(struct inode *inode, struct au_vdir *vdir)
17124 +{
17125 +       IiMustWriteLock(inode);
17126 +       au_ii(inode)->ii_vdir = vdir;
17127 +}
17128 +
17129 +static inline struct au_hinode *au_hi(struct inode *inode, aufs_bindex_t bindex)
17130 +{
17131 +       IiMustAnyLock(inode);
17132 +       return au_hinode(au_ii(inode), bindex);
17133 +}
17134 +
17135 +/* ---------------------------------------------------------------------- */
17136 +
17137 +static inline struct dentry *au_pinned_parent(struct au_pin *pin)
17138 +{
17139 +       if (pin)
17140 +               return pin->parent;
17141 +       return NULL;
17142 +}
17143 +
17144 +static inline struct inode *au_pinned_h_dir(struct au_pin *pin)
17145 +{
17146 +       if (pin && pin->hdir)
17147 +               return pin->hdir->hi_inode;
17148 +       return NULL;
17149 +}
17150 +
17151 +static inline struct au_hinode *au_pinned_hdir(struct au_pin *pin)
17152 +{
17153 +       if (pin)
17154 +               return pin->hdir;
17155 +       return NULL;
17156 +}
17157 +
17158 +static inline void au_pin_set_dentry(struct au_pin *pin, struct dentry *dentry)
17159 +{
17160 +       if (pin)
17161 +               pin->dentry = dentry;
17162 +}
17163 +
17164 +static inline void au_pin_set_parent_lflag(struct au_pin *pin,
17165 +                                          unsigned char lflag)
17166 +{
17167 +       if (pin) {
17168 +               if (lflag)
17169 +                       au_fset_pin(pin->flags, DI_LOCKED);
17170 +               else
17171 +                       au_fclr_pin(pin->flags, DI_LOCKED);
17172 +       }
17173 +}
17174 +
17175 +#if 0 /* reserved */
17176 +static inline void au_pin_set_parent(struct au_pin *pin, struct dentry *parent)
17177 +{
17178 +       if (pin) {
17179 +               dput(pin->parent);
17180 +               pin->parent = dget(parent);
17181 +       }
17182 +}
17183 +#endif
17184 +
17185 +/* ---------------------------------------------------------------------- */
17186 +
17187 +struct au_branch;
17188 +#ifdef CONFIG_AUFS_HNOTIFY
17189 +struct au_hnotify_op {
17190 +       void (*ctl)(struct au_hinode *hinode, int do_set);
17191 +       int (*alloc)(struct au_hinode *hinode);
17192 +
17193 +       /*
17194 +        * if it returns true, the the caller should free hinode->hi_notify,
17195 +        * otherwise ->free() frees it.
17196 +        */
17197 +       int (*free)(struct au_hinode *hinode,
17198 +                   struct au_hnotify *hn) __must_check;
17199 +
17200 +       void (*fin)(void);
17201 +       int (*init)(void);
17202 +
17203 +       int (*reset_br)(unsigned int udba, struct au_branch *br, int perm);
17204 +       void (*fin_br)(struct au_branch *br);
17205 +       int (*init_br)(struct au_branch *br, int perm);
17206 +};
17207 +
17208 +/* hnotify.c */
17209 +int au_hn_alloc(struct au_hinode *hinode, struct inode *inode);
17210 +void au_hn_free(struct au_hinode *hinode);
17211 +void au_hn_ctl(struct au_hinode *hinode, int do_set);
17212 +void au_hn_reset(struct inode *inode, unsigned int flags);
17213 +int au_hnotify(struct inode *h_dir, struct au_hnotify *hnotify, u32 mask,
17214 +              struct qstr *h_child_qstr, struct inode *h_child_inode);
17215 +int au_hnotify_reset_br(unsigned int udba, struct au_branch *br, int perm);
17216 +int au_hnotify_init_br(struct au_branch *br, int perm);
17217 +void au_hnotify_fin_br(struct au_branch *br);
17218 +int __init au_hnotify_init(void);
17219 +void au_hnotify_fin(void);
17220 +
17221 +/* hfsnotify.c */
17222 +extern const struct au_hnotify_op au_hnotify_op;
17223 +
17224 +static inline
17225 +void au_hn_init(struct au_hinode *hinode)
17226 +{
17227 +       hinode->hi_notify = NULL;
17228 +}
17229 +
17230 +static inline struct au_hnotify *au_hn(struct au_hinode *hinode)
17231 +{
17232 +       return hinode->hi_notify;
17233 +}
17234 +
17235 +#else
17236 +AuStub(int, au_hn_alloc, return -EOPNOTSUPP,
17237 +       struct au_hinode *hinode __maybe_unused,
17238 +       struct inode *inode __maybe_unused)
17239 +AuStub(struct au_hnotify *, au_hn, return NULL, struct au_hinode *hinode)
17240 +AuStubVoid(au_hn_free, struct au_hinode *hinode __maybe_unused)
17241 +AuStubVoid(au_hn_ctl, struct au_hinode *hinode __maybe_unused,
17242 +          int do_set __maybe_unused)
17243 +AuStubVoid(au_hn_reset, struct inode *inode __maybe_unused,
17244 +          unsigned int flags __maybe_unused)
17245 +AuStubInt0(au_hnotify_reset_br, unsigned int udba __maybe_unused,
17246 +          struct au_branch *br __maybe_unused,
17247 +          int perm __maybe_unused)
17248 +AuStubInt0(au_hnotify_init_br, struct au_branch *br __maybe_unused,
17249 +          int perm __maybe_unused)
17250 +AuStubVoid(au_hnotify_fin_br, struct au_branch *br __maybe_unused)
17251 +AuStubInt0(__init au_hnotify_init, void)
17252 +AuStubVoid(au_hnotify_fin, void)
17253 +AuStubVoid(au_hn_init, struct au_hinode *hinode __maybe_unused)
17254 +#endif /* CONFIG_AUFS_HNOTIFY */
17255 +
17256 +static inline void au_hn_suspend(struct au_hinode *hdir)
17257 +{
17258 +       au_hn_ctl(hdir, /*do_set*/0);
17259 +}
17260 +
17261 +static inline void au_hn_resume(struct au_hinode *hdir)
17262 +{
17263 +       au_hn_ctl(hdir, /*do_set*/1);
17264 +}
17265 +
17266 +static inline void au_hn_inode_lock(struct au_hinode *hdir)
17267 +{
17268 +       inode_lock(hdir->hi_inode);
17269 +       au_hn_suspend(hdir);
17270 +}
17271 +
17272 +static inline void au_hn_inode_lock_nested(struct au_hinode *hdir,
17273 +                                         unsigned int sc __maybe_unused)
17274 +{
17275 +       inode_lock_nested(hdir->hi_inode, sc);
17276 +       au_hn_suspend(hdir);
17277 +}
17278 +
17279 +static inline void au_hn_inode_unlock(struct au_hinode *hdir)
17280 +{
17281 +       au_hn_resume(hdir);
17282 +       inode_unlock(hdir->hi_inode);
17283 +}
17284 +
17285 +#endif /* __KERNEL__ */
17286 +#endif /* __AUFS_INODE_H__ */
17287 diff -urN /usr/share/empty/fs/aufs/ioctl.c linux/fs/aufs/ioctl.c
17288 --- /usr/share/empty/fs/aufs/ioctl.c    1970-01-01 01:00:00.000000000 +0100
17289 +++ linux/fs/aufs/ioctl.c       2016-10-09 16:55:36.492701639 +0200
17290 @@ -0,0 +1,219 @@
17291 +/*
17292 + * Copyright (C) 2005-2016 Junjiro R. Okajima
17293 + *
17294 + * This program, aufs is free software; you can redistribute it and/or modify
17295 + * it under the terms of the GNU General Public License as published by
17296 + * the Free Software Foundation; either version 2 of the License, or
17297 + * (at your option) any later version.
17298 + *
17299 + * This program is distributed in the hope that it will be useful,
17300 + * but WITHOUT ANY WARRANTY; without even the implied warranty of
17301 + * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
17302 + * GNU General Public License for more details.
17303 + *
17304 + * You should have received a copy of the GNU General Public License
17305 + * along with this program.  If not, see <http://www.gnu.org/licenses/>.
17306 + */
17307 +
17308 +/*
17309 + * ioctl
17310 + * plink-management and readdir in userspace.
17311 + * assist the pathconf(3) wrapper library.
17312 + * move-down
17313 + * File-based Hierarchical Storage Management.
17314 + */
17315 +
17316 +#include <linux/compat.h>
17317 +#include <linux/file.h>
17318 +#include "aufs.h"
17319 +
17320 +static int au_wbr_fd(struct path *path, struct aufs_wbr_fd __user *arg)
17321 +{
17322 +       int err, fd;
17323 +       aufs_bindex_t wbi, bindex, bbot;
17324 +       struct file *h_file;
17325 +       struct super_block *sb;
17326 +       struct dentry *root;
17327 +       struct au_branch *br;
17328 +       struct aufs_wbr_fd wbrfd = {
17329 +               .oflags = au_dir_roflags,
17330 +               .brid   = -1
17331 +       };
17332 +       const int valid = O_RDONLY | O_NONBLOCK | O_LARGEFILE | O_DIRECTORY
17333 +               | O_NOATIME | O_CLOEXEC;
17334 +
17335 +       AuDebugOn(wbrfd.oflags & ~valid);
17336 +
17337 +       if (arg) {
17338 +               err = copy_from_user(&wbrfd, arg, sizeof(wbrfd));
17339 +               if (unlikely(err)) {
17340 +                       err = -EFAULT;
17341 +                       goto out;
17342 +               }
17343 +
17344 +               err = -EINVAL;
17345 +               AuDbg("wbrfd{0%o, %d}\n", wbrfd.oflags, wbrfd.brid);
17346 +               wbrfd.oflags |= au_dir_roflags;
17347 +               AuDbg("0%o\n", wbrfd.oflags);
17348 +               if (unlikely(wbrfd.oflags & ~valid))
17349 +                       goto out;
17350 +       }
17351 +
17352 +       fd = get_unused_fd_flags(0);
17353 +       err = fd;
17354 +       if (unlikely(fd < 0))
17355 +               goto out;
17356 +
17357 +       h_file = ERR_PTR(-EINVAL);
17358 +       wbi = 0;
17359 +       br = NULL;
17360 +       sb = path->dentry->d_sb;
17361 +       root = sb->s_root;
17362 +       aufs_read_lock(root, AuLock_IR);
17363 +       bbot = au_sbbot(sb);
17364 +       if (wbrfd.brid >= 0) {
17365 +               wbi = au_br_index(sb, wbrfd.brid);
17366 +               if (unlikely(wbi < 0 || wbi > bbot))
17367 +                       goto out_unlock;
17368 +       }
17369 +
17370 +       h_file = ERR_PTR(-ENOENT);
17371 +       br = au_sbr(sb, wbi);
17372 +       if (!au_br_writable(br->br_perm)) {
17373 +               if (arg)
17374 +                       goto out_unlock;
17375 +
17376 +               bindex = wbi + 1;
17377 +               wbi = -1;
17378 +               for (; bindex <= bbot; bindex++) {
17379 +                       br = au_sbr(sb, bindex);
17380 +                       if (au_br_writable(br->br_perm)) {
17381 +                               wbi = bindex;
17382 +                               br = au_sbr(sb, wbi);
17383 +                               break;
17384 +                       }
17385 +               }
17386 +       }
17387 +       AuDbg("wbi %d\n", wbi);
17388 +       if (wbi >= 0)
17389 +               h_file = au_h_open(root, wbi, wbrfd.oflags, NULL,
17390 +                                  /*force_wr*/0);
17391 +
17392 +out_unlock:
17393 +       aufs_read_unlock(root, AuLock_IR);
17394 +       err = PTR_ERR(h_file);
17395 +       if (IS_ERR(h_file))
17396 +               goto out_fd;
17397 +
17398 +       au_br_put(br); /* cf. au_h_open() */
17399 +       fd_install(fd, h_file);
17400 +       err = fd;
17401 +       goto out; /* success */
17402 +
17403 +out_fd:
17404 +       put_unused_fd(fd);
17405 +out:
17406 +       AuTraceErr(err);
17407 +       return err;
17408 +}
17409 +
17410 +/* ---------------------------------------------------------------------- */
17411 +
17412 +long aufs_ioctl_dir(struct file *file, unsigned int cmd, unsigned long arg)
17413 +{
17414 +       long err;
17415 +       struct dentry *dentry;
17416 +
17417 +       switch (cmd) {
17418 +       case AUFS_CTL_RDU:
17419 +       case AUFS_CTL_RDU_INO:
17420 +               err = au_rdu_ioctl(file, cmd, arg);
17421 +               break;
17422 +
17423 +       case AUFS_CTL_WBR_FD:
17424 +               err = au_wbr_fd(&file->f_path, (void __user *)arg);
17425 +               break;
17426 +
17427 +       case AUFS_CTL_IBUSY:
17428 +               err = au_ibusy_ioctl(file, arg);
17429 +               break;
17430 +
17431 +       case AUFS_CTL_BRINFO:
17432 +               err = au_brinfo_ioctl(file, arg);
17433 +               break;
17434 +
17435 +       case AUFS_CTL_FHSM_FD:
17436 +               dentry = file->f_path.dentry;
17437 +               if (IS_ROOT(dentry))
17438 +                       err = au_fhsm_fd(dentry->d_sb, arg);
17439 +               else
17440 +                       err = -ENOTTY;
17441 +               break;
17442 +
17443 +       default:
17444 +               /* do not call the lower */
17445 +               AuDbg("0x%x\n", cmd);
17446 +               err = -ENOTTY;
17447 +       }
17448 +
17449 +       AuTraceErr(err);
17450 +       return err;
17451 +}
17452 +
17453 +long aufs_ioctl_nondir(struct file *file, unsigned int cmd, unsigned long arg)
17454 +{
17455 +       long err;
17456 +
17457 +       switch (cmd) {
17458 +       case AUFS_CTL_MVDOWN:
17459 +               err = au_mvdown(file->f_path.dentry, (void __user *)arg);
17460 +               break;
17461 +
17462 +       case AUFS_CTL_WBR_FD:
17463 +               err = au_wbr_fd(&file->f_path, (void __user *)arg);
17464 +               break;
17465 +
17466 +       default:
17467 +               /* do not call the lower */
17468 +               AuDbg("0x%x\n", cmd);
17469 +               err = -ENOTTY;
17470 +       }
17471 +
17472 +       AuTraceErr(err);
17473 +       return err;
17474 +}
17475 +
17476 +#ifdef CONFIG_COMPAT
17477 +long aufs_compat_ioctl_dir(struct file *file, unsigned int cmd,
17478 +                          unsigned long arg)
17479 +{
17480 +       long err;
17481 +
17482 +       switch (cmd) {
17483 +       case AUFS_CTL_RDU:
17484 +       case AUFS_CTL_RDU_INO:
17485 +               err = au_rdu_compat_ioctl(file, cmd, arg);
17486 +               break;
17487 +
17488 +       case AUFS_CTL_IBUSY:
17489 +               err = au_ibusy_compat_ioctl(file, arg);
17490 +               break;
17491 +
17492 +       case AUFS_CTL_BRINFO:
17493 +               err = au_brinfo_compat_ioctl(file, arg);
17494 +               break;
17495 +
17496 +       default:
17497 +               err = aufs_ioctl_dir(file, cmd, arg);
17498 +       }
17499 +
17500 +       AuTraceErr(err);
17501 +       return err;
17502 +}
17503 +
17504 +long aufs_compat_ioctl_nondir(struct file *file, unsigned int cmd,
17505 +                             unsigned long arg)
17506 +{
17507 +       return aufs_ioctl_nondir(file, cmd, (unsigned long)compat_ptr(arg));
17508 +}
17509 +#endif
17510 diff -urN /usr/share/empty/fs/aufs/i_op_add.c linux/fs/aufs/i_op_add.c
17511 --- /usr/share/empty/fs/aufs/i_op_add.c 1970-01-01 01:00:00.000000000 +0100
17512 +++ linux/fs/aufs/i_op_add.c    2016-12-17 12:28:17.595211562 +0100
17513 @@ -0,0 +1,928 @@
17514 +/*
17515 + * Copyright (C) 2005-2016 Junjiro R. Okajima
17516 + *
17517 + * This program, aufs is free software; you can redistribute it and/or modify
17518 + * it under the terms of the GNU General Public License as published by
17519 + * the Free Software Foundation; either version 2 of the License, or
17520 + * (at your option) any later version.
17521 + *
17522 + * This program is distributed in the hope that it will be useful,
17523 + * but WITHOUT ANY WARRANTY; without even the implied warranty of
17524 + * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
17525 + * GNU General Public License for more details.
17526 + *
17527 + * You should have received a copy of the GNU General Public License
17528 + * along with this program.  If not, see <http://www.gnu.org/licenses/>.
17529 + */
17530 +
17531 +/*
17532 + * inode operations (add entry)
17533 + */
17534 +
17535 +#include "aufs.h"
17536 +
17537 +/*
17538 + * final procedure of adding a new entry, except link(2).
17539 + * remove whiteout, instantiate, copyup the parent dir's times and size
17540 + * and update version.
17541 + * if it failed, re-create the removed whiteout.
17542 + */
17543 +static int epilog(struct inode *dir, aufs_bindex_t bindex,
17544 +                 struct dentry *wh_dentry, struct dentry *dentry)
17545 +{
17546 +       int err, rerr;
17547 +       aufs_bindex_t bwh;
17548 +       struct path h_path;
17549 +       struct super_block *sb;
17550 +       struct inode *inode, *h_dir;
17551 +       struct dentry *wh;
17552 +
17553 +       bwh = -1;
17554 +       sb = dir->i_sb;
17555 +       if (wh_dentry) {
17556 +               h_dir = d_inode(wh_dentry->d_parent); /* dir inode is locked */
17557 +               IMustLock(h_dir);
17558 +               AuDebugOn(au_h_iptr(dir, bindex) != h_dir);
17559 +               bwh = au_dbwh(dentry);
17560 +               h_path.dentry = wh_dentry;
17561 +               h_path.mnt = au_sbr_mnt(sb, bindex);
17562 +               err = au_wh_unlink_dentry(au_h_iptr(dir, bindex), &h_path,
17563 +                                         dentry);
17564 +               if (unlikely(err))
17565 +                       goto out;
17566 +       }
17567 +
17568 +       inode = au_new_inode(dentry, /*must_new*/1);
17569 +       if (!IS_ERR(inode)) {
17570 +               d_instantiate(dentry, inode);
17571 +               dir = d_inode(dentry->d_parent); /* dir inode is locked */
17572 +               IMustLock(dir);
17573 +               au_dir_ts(dir, bindex);
17574 +               dir->i_version++;
17575 +               au_fhsm_wrote(sb, bindex, /*force*/0);
17576 +               return 0; /* success */
17577 +       }
17578 +
17579 +       err = PTR_ERR(inode);
17580 +       if (!wh_dentry)
17581 +               goto out;
17582 +
17583 +       /* revert */
17584 +       /* dir inode is locked */
17585 +       wh = au_wh_create(dentry, bwh, wh_dentry->d_parent);
17586 +       rerr = PTR_ERR(wh);
17587 +       if (IS_ERR(wh)) {
17588 +               AuIOErr("%pd reverting whiteout failed(%d, %d)\n",
17589 +                       dentry, err, rerr);
17590 +               err = -EIO;
17591 +       } else
17592 +               dput(wh);
17593 +
17594 +out:
17595 +       return err;
17596 +}
17597 +
17598 +static int au_d_may_add(struct dentry *dentry)
17599 +{
17600 +       int err;
17601 +
17602 +       err = 0;
17603 +       if (unlikely(d_unhashed(dentry)))
17604 +               err = -ENOENT;
17605 +       if (unlikely(d_really_is_positive(dentry)))
17606 +               err = -EEXIST;
17607 +       return err;
17608 +}
17609 +
17610 +/*
17611 + * simple tests for the adding inode operations.
17612 + * following the checks in vfs, plus the parent-child relationship.
17613 + */
17614 +int au_may_add(struct dentry *dentry, aufs_bindex_t bindex,
17615 +              struct dentry *h_parent, int isdir)
17616 +{
17617 +       int err;
17618 +       umode_t h_mode;
17619 +       struct dentry *h_dentry;
17620 +       struct inode *h_inode;
17621 +
17622 +       err = -ENAMETOOLONG;
17623 +       if (unlikely(dentry->d_name.len > AUFS_MAX_NAMELEN))
17624 +               goto out;
17625 +
17626 +       h_dentry = au_h_dptr(dentry, bindex);
17627 +       if (d_really_is_negative(dentry)) {
17628 +               err = -EEXIST;
17629 +               if (unlikely(d_is_positive(h_dentry)))
17630 +                       goto out;
17631 +       } else {
17632 +               /* rename(2) case */
17633 +               err = -EIO;
17634 +               if (unlikely(d_is_negative(h_dentry)))
17635 +                       goto out;
17636 +               h_inode = d_inode(h_dentry);
17637 +               if (unlikely(!h_inode->i_nlink))
17638 +                       goto out;
17639 +
17640 +               h_mode = h_inode->i_mode;
17641 +               if (!isdir) {
17642 +                       err = -EISDIR;
17643 +                       if (unlikely(S_ISDIR(h_mode)))
17644 +                               goto out;
17645 +               } else if (unlikely(!S_ISDIR(h_mode))) {
17646 +                       err = -ENOTDIR;
17647 +                       goto out;
17648 +               }
17649 +       }
17650 +
17651 +       err = 0;
17652 +       /* expected parent dir is locked */
17653 +       if (unlikely(h_parent != h_dentry->d_parent))
17654 +               err = -EIO;
17655 +
17656 +out:
17657 +       AuTraceErr(err);
17658 +       return err;
17659 +}
17660 +
17661 +/*
17662 + * initial procedure of adding a new entry.
17663 + * prepare writable branch and the parent dir, lock it,
17664 + * and lookup whiteout for the new entry.
17665 + */
17666 +static struct dentry*
17667 +lock_hdir_lkup_wh(struct dentry *dentry, struct au_dtime *dt,
17668 +                 struct dentry *src_dentry, struct au_pin *pin,
17669 +                 struct au_wr_dir_args *wr_dir_args)
17670 +{
17671 +       struct dentry *wh_dentry, *h_parent;
17672 +       struct super_block *sb;
17673 +       struct au_branch *br;
17674 +       int err;
17675 +       unsigned int udba;
17676 +       aufs_bindex_t bcpup;
17677 +
17678 +       AuDbg("%pd\n", dentry);
17679 +
17680 +       err = au_wr_dir(dentry, src_dentry, wr_dir_args);
17681 +       bcpup = err;
17682 +       wh_dentry = ERR_PTR(err);
17683 +       if (unlikely(err < 0))
17684 +               goto out;
17685 +
17686 +       sb = dentry->d_sb;
17687 +       udba = au_opt_udba(sb);
17688 +       err = au_pin(pin, dentry, bcpup, udba,
17689 +                    AuPin_DI_LOCKED | AuPin_MNT_WRITE);
17690 +       wh_dentry = ERR_PTR(err);
17691 +       if (unlikely(err))
17692 +               goto out;
17693 +
17694 +       h_parent = au_pinned_h_parent(pin);
17695 +       if (udba != AuOpt_UDBA_NONE
17696 +           && au_dbtop(dentry) == bcpup)
17697 +               err = au_may_add(dentry, bcpup, h_parent,
17698 +                                au_ftest_wrdir(wr_dir_args->flags, ISDIR));
17699 +       else if (unlikely(dentry->d_name.len > AUFS_MAX_NAMELEN))
17700 +               err = -ENAMETOOLONG;
17701 +       wh_dentry = ERR_PTR(err);
17702 +       if (unlikely(err))
17703 +               goto out_unpin;
17704 +
17705 +       br = au_sbr(sb, bcpup);
17706 +       if (dt) {
17707 +               struct path tmp = {
17708 +                       .dentry = h_parent,
17709 +                       .mnt    = au_br_mnt(br)
17710 +               };
17711 +               au_dtime_store(dt, au_pinned_parent(pin), &tmp);
17712 +       }
17713 +
17714 +       wh_dentry = NULL;
17715 +       if (bcpup != au_dbwh(dentry))
17716 +               goto out; /* success */
17717 +
17718 +       /*
17719 +        * ENAMETOOLONG here means that if we allowed create such name, then it
17720 +        * would not be able to removed in the future. So we don't allow such
17721 +        * name here and we don't handle ENAMETOOLONG differently here.
17722 +        */
17723 +       wh_dentry = au_wh_lkup(h_parent, &dentry->d_name, br);
17724 +
17725 +out_unpin:
17726 +       if (IS_ERR(wh_dentry))
17727 +               au_unpin(pin);
17728 +out:
17729 +       return wh_dentry;
17730 +}
17731 +
17732 +/* ---------------------------------------------------------------------- */
17733 +
17734 +enum { Mknod, Symlink, Creat };
17735 +struct simple_arg {
17736 +       int type;
17737 +       union {
17738 +               struct {
17739 +                       umode_t                 mode;
17740 +                       bool                    want_excl;
17741 +                       bool                    try_aopen;
17742 +                       struct vfsub_aopen_args *aopen;
17743 +               } c;
17744 +               struct {
17745 +                       const char *symname;
17746 +               } s;
17747 +               struct {
17748 +                       umode_t mode;
17749 +                       dev_t dev;
17750 +               } m;
17751 +       } u;
17752 +};
17753 +
17754 +static int add_simple(struct inode *dir, struct dentry *dentry,
17755 +                     struct simple_arg *arg)
17756 +{
17757 +       int err, rerr;
17758 +       aufs_bindex_t btop;
17759 +       unsigned char created;
17760 +       const unsigned char try_aopen
17761 +               = (arg->type == Creat && arg->u.c.try_aopen);
17762 +       struct dentry *wh_dentry, *parent;
17763 +       struct inode *h_dir;
17764 +       struct super_block *sb;
17765 +       struct au_branch *br;
17766 +       /* to reuduce stack size */
17767 +       struct {
17768 +               struct au_dtime dt;
17769 +               struct au_pin pin;
17770 +               struct path h_path;
17771 +               struct au_wr_dir_args wr_dir_args;
17772 +       } *a;
17773 +
17774 +       AuDbg("%pd\n", dentry);
17775 +       IMustLock(dir);
17776 +
17777 +       err = -ENOMEM;
17778 +       a = kmalloc(sizeof(*a), GFP_NOFS);
17779 +       if (unlikely(!a))
17780 +               goto out;
17781 +       a->wr_dir_args.force_btgt = -1;
17782 +       a->wr_dir_args.flags = AuWrDir_ADD_ENTRY;
17783 +
17784 +       parent = dentry->d_parent; /* dir inode is locked */
17785 +       if (!try_aopen) {
17786 +               err = aufs_read_lock(dentry, AuLock_DW | AuLock_GEN);
17787 +               if (unlikely(err))
17788 +                       goto out_free;
17789 +       }
17790 +       err = au_d_may_add(dentry);
17791 +       if (unlikely(err))
17792 +               goto out_unlock;
17793 +       if (!try_aopen)
17794 +               di_write_lock_parent(parent);
17795 +       wh_dentry = lock_hdir_lkup_wh(dentry, &a->dt, /*src_dentry*/NULL,
17796 +                                     &a->pin, &a->wr_dir_args);
17797 +       err = PTR_ERR(wh_dentry);
17798 +       if (IS_ERR(wh_dentry))
17799 +               goto out_parent;
17800 +
17801 +       btop = au_dbtop(dentry);
17802 +       sb = dentry->d_sb;
17803 +       br = au_sbr(sb, btop);
17804 +       a->h_path.dentry = au_h_dptr(dentry, btop);
17805 +       a->h_path.mnt = au_br_mnt(br);
17806 +       h_dir = au_pinned_h_dir(&a->pin);
17807 +       switch (arg->type) {
17808 +       case Creat:
17809 +               err = 0;
17810 +               if (!try_aopen || !h_dir->i_op->atomic_open)
17811 +                       err = vfsub_create(h_dir, &a->h_path, arg->u.c.mode,
17812 +                                          arg->u.c.want_excl);
17813 +               else
17814 +                       err = vfsub_atomic_open(h_dir, a->h_path.dentry,
17815 +                                               arg->u.c.aopen, br);
17816 +               break;
17817 +       case Symlink:
17818 +               err = vfsub_symlink(h_dir, &a->h_path, arg->u.s.symname);
17819 +               break;
17820 +       case Mknod:
17821 +               err = vfsub_mknod(h_dir, &a->h_path, arg->u.m.mode,
17822 +                                 arg->u.m.dev);
17823 +               break;
17824 +       default:
17825 +               BUG();
17826 +       }
17827 +       created = !err;
17828 +       if (!err)
17829 +               err = epilog(dir, btop, wh_dentry, dentry);
17830 +
17831 +       /* revert */
17832 +       if (unlikely(created && err && d_is_positive(a->h_path.dentry))) {
17833 +               /* no delegation since it is just created */
17834 +               rerr = vfsub_unlink(h_dir, &a->h_path, /*delegated*/NULL,
17835 +                                   /*force*/0);
17836 +               if (rerr) {
17837 +                       AuIOErr("%pd revert failure(%d, %d)\n",
17838 +                               dentry, err, rerr);
17839 +                       err = -EIO;
17840 +               }
17841 +               au_dtime_revert(&a->dt);
17842 +       }
17843 +
17844 +       if (!err && try_aopen && !h_dir->i_op->atomic_open)
17845 +               *arg->u.c.aopen->opened |= FILE_CREATED;
17846 +
17847 +       au_unpin(&a->pin);
17848 +       dput(wh_dentry);
17849 +
17850 +out_parent:
17851 +       if (!try_aopen)
17852 +               di_write_unlock(parent);
17853 +out_unlock:
17854 +       if (unlikely(err)) {
17855 +               au_update_dbtop(dentry);
17856 +               d_drop(dentry);
17857 +       }
17858 +       if (!try_aopen)
17859 +               aufs_read_unlock(dentry, AuLock_DW);
17860 +out_free:
17861 +       au_delayed_kfree(a);
17862 +out:
17863 +       return err;
17864 +}
17865 +
17866 +int aufs_mknod(struct inode *dir, struct dentry *dentry, umode_t mode,
17867 +              dev_t dev)
17868 +{
17869 +       struct simple_arg arg = {
17870 +               .type = Mknod,
17871 +               .u.m = {
17872 +                       .mode   = mode,
17873 +                       .dev    = dev
17874 +               }
17875 +       };
17876 +       return add_simple(dir, dentry, &arg);
17877 +}
17878 +
17879 +int aufs_symlink(struct inode *dir, struct dentry *dentry, const char *symname)
17880 +{
17881 +       struct simple_arg arg = {
17882 +               .type = Symlink,
17883 +               .u.s.symname = symname
17884 +       };
17885 +       return add_simple(dir, dentry, &arg);
17886 +}
17887 +
17888 +int aufs_create(struct inode *dir, struct dentry *dentry, umode_t mode,
17889 +               bool want_excl)
17890 +{
17891 +       struct simple_arg arg = {
17892 +               .type = Creat,
17893 +               .u.c = {
17894 +                       .mode           = mode,
17895 +                       .want_excl      = want_excl
17896 +               }
17897 +       };
17898 +       return add_simple(dir, dentry, &arg);
17899 +}
17900 +
17901 +int au_aopen_or_create(struct inode *dir, struct dentry *dentry,
17902 +                      struct vfsub_aopen_args *aopen_args)
17903 +{
17904 +       struct simple_arg arg = {
17905 +               .type = Creat,
17906 +               .u.c = {
17907 +                       .mode           = aopen_args->create_mode,
17908 +                       .want_excl      = aopen_args->open_flag & O_EXCL,
17909 +                       .try_aopen      = true,
17910 +                       .aopen          = aopen_args
17911 +               }
17912 +       };
17913 +       return add_simple(dir, dentry, &arg);
17914 +}
17915 +
17916 +int aufs_tmpfile(struct inode *dir, struct dentry *dentry, umode_t mode)
17917 +{
17918 +       int err;
17919 +       aufs_bindex_t bindex;
17920 +       struct super_block *sb;
17921 +       struct dentry *parent, *h_parent, *h_dentry;
17922 +       struct inode *h_dir, *inode;
17923 +       struct vfsmount *h_mnt;
17924 +       struct au_wr_dir_args wr_dir_args = {
17925 +               .force_btgt     = -1,
17926 +               .flags          = AuWrDir_TMPFILE
17927 +       };
17928 +
17929 +       /* copy-up may happen */
17930 +       inode_lock(dir);
17931 +
17932 +       sb = dir->i_sb;
17933 +       err = si_read_lock(sb, AuLock_FLUSH | AuLock_NOPLM);
17934 +       if (unlikely(err))
17935 +               goto out;
17936 +
17937 +       err = au_di_init(dentry);
17938 +       if (unlikely(err))
17939 +               goto out_si;
17940 +
17941 +       err = -EBUSY;
17942 +       parent = d_find_any_alias(dir);
17943 +       AuDebugOn(!parent);
17944 +       di_write_lock_parent(parent);
17945 +       if (unlikely(d_inode(parent) != dir))
17946 +               goto out_parent;
17947 +
17948 +       err = au_digen_test(parent, au_sigen(sb));
17949 +       if (unlikely(err))
17950 +               goto out_parent;
17951 +
17952 +       bindex = au_dbtop(parent);
17953 +       au_set_dbtop(dentry, bindex);
17954 +       au_set_dbbot(dentry, bindex);
17955 +       err = au_wr_dir(dentry, /*src_dentry*/NULL, &wr_dir_args);
17956 +       bindex = err;
17957 +       if (unlikely(err < 0))
17958 +               goto out_parent;
17959 +
17960 +       err = -EOPNOTSUPP;
17961 +       h_dir = au_h_iptr(dir, bindex);
17962 +       if (unlikely(!h_dir->i_op->tmpfile))
17963 +               goto out_parent;
17964 +
17965 +       h_mnt = au_sbr_mnt(sb, bindex);
17966 +       err = vfsub_mnt_want_write(h_mnt);
17967 +       if (unlikely(err))
17968 +               goto out_parent;
17969 +
17970 +       h_parent = au_h_dptr(parent, bindex);
17971 +       err = inode_permission(d_inode(h_parent), MAY_WRITE | MAY_EXEC);
17972 +       if (unlikely(err))
17973 +               goto out_mnt;
17974 +
17975 +       err = -ENOMEM;
17976 +       h_dentry = d_alloc(h_parent, &dentry->d_name);
17977 +       if (unlikely(!h_dentry))
17978 +               goto out_mnt;
17979 +
17980 +       err = h_dir->i_op->tmpfile(h_dir, h_dentry, mode);
17981 +       if (unlikely(err))
17982 +               goto out_dentry;
17983 +
17984 +       au_set_dbtop(dentry, bindex);
17985 +       au_set_dbbot(dentry, bindex);
17986 +       au_set_h_dptr(dentry, bindex, dget(h_dentry));
17987 +       inode = au_new_inode(dentry, /*must_new*/1);
17988 +       if (IS_ERR(inode)) {
17989 +               err = PTR_ERR(inode);
17990 +               au_set_h_dptr(dentry, bindex, NULL);
17991 +               au_set_dbtop(dentry, -1);
17992 +               au_set_dbbot(dentry, -1);
17993 +       } else {
17994 +               if (!inode->i_nlink)
17995 +                       set_nlink(inode, 1);
17996 +               d_tmpfile(dentry, inode);
17997 +               au_di(dentry)->di_tmpfile = 1;
17998 +
17999 +               /* update without i_mutex */
18000 +               if (au_ibtop(dir) == au_dbtop(dentry))
18001 +                       au_cpup_attr_timesizes(dir);
18002 +       }
18003 +
18004 +out_dentry:
18005 +       dput(h_dentry);
18006 +out_mnt:
18007 +       vfsub_mnt_drop_write(h_mnt);
18008 +out_parent:
18009 +       di_write_unlock(parent);
18010 +       dput(parent);
18011 +       di_write_unlock(dentry);
18012 +       if (unlikely(err)) {
18013 +               au_di_fin(dentry);
18014 +               dentry->d_fsdata = NULL;
18015 +       }
18016 +out_si:
18017 +       si_read_unlock(sb);
18018 +out:
18019 +       inode_unlock(dir);
18020 +       return err;
18021 +}
18022 +
18023 +/* ---------------------------------------------------------------------- */
18024 +
18025 +struct au_link_args {
18026 +       aufs_bindex_t bdst, bsrc;
18027 +       struct au_pin pin;
18028 +       struct path h_path;
18029 +       struct dentry *src_parent, *parent;
18030 +};
18031 +
18032 +static int au_cpup_before_link(struct dentry *src_dentry,
18033 +                              struct au_link_args *a)
18034 +{
18035 +       int err;
18036 +       struct dentry *h_src_dentry;
18037 +       struct au_cp_generic cpg = {
18038 +               .dentry = src_dentry,
18039 +               .bdst   = a->bdst,
18040 +               .bsrc   = a->bsrc,
18041 +               .len    = -1,
18042 +               .pin    = &a->pin,
18043 +               .flags  = AuCpup_DTIME | AuCpup_HOPEN /* | AuCpup_KEEPLINO */
18044 +       };
18045 +
18046 +       di_read_lock_parent(a->src_parent, AuLock_IR);
18047 +       err = au_test_and_cpup_dirs(src_dentry, a->bdst);
18048 +       if (unlikely(err))
18049 +               goto out;
18050 +
18051 +       h_src_dentry = au_h_dptr(src_dentry, a->bsrc);
18052 +       err = au_pin(&a->pin, src_dentry, a->bdst,
18053 +                    au_opt_udba(src_dentry->d_sb),
18054 +                    AuPin_DI_LOCKED | AuPin_MNT_WRITE);
18055 +       if (unlikely(err))
18056 +               goto out;
18057 +
18058 +       err = au_sio_cpup_simple(&cpg);
18059 +       au_unpin(&a->pin);
18060 +
18061 +out:
18062 +       di_read_unlock(a->src_parent, AuLock_IR);
18063 +       return err;
18064 +}
18065 +
18066 +static int au_cpup_or_link(struct dentry *src_dentry, struct dentry *dentry,
18067 +                          struct au_link_args *a)
18068 +{
18069 +       int err;
18070 +       unsigned char plink;
18071 +       aufs_bindex_t bbot;
18072 +       struct dentry *h_src_dentry;
18073 +       struct inode *h_inode, *inode, *delegated;
18074 +       struct super_block *sb;
18075 +       struct file *h_file;
18076 +
18077 +       plink = 0;
18078 +       h_inode = NULL;
18079 +       sb = src_dentry->d_sb;
18080 +       inode = d_inode(src_dentry);
18081 +       if (au_ibtop(inode) <= a->bdst)
18082 +               h_inode = au_h_iptr(inode, a->bdst);
18083 +       if (!h_inode || !h_inode->i_nlink) {
18084 +               /* copyup src_dentry as the name of dentry. */
18085 +               bbot = au_dbbot(dentry);
18086 +               if (bbot < a->bsrc)
18087 +                       au_set_dbbot(dentry, a->bsrc);
18088 +               au_set_h_dptr(dentry, a->bsrc,
18089 +                             dget(au_h_dptr(src_dentry, a->bsrc)));
18090 +               dget(a->h_path.dentry);
18091 +               au_set_h_dptr(dentry, a->bdst, NULL);
18092 +               AuDbg("temporary d_inode...\n");
18093 +               spin_lock(&dentry->d_lock);
18094 +               dentry->d_inode = d_inode(src_dentry); /* tmp */
18095 +               spin_unlock(&dentry->d_lock);
18096 +               h_file = au_h_open_pre(dentry, a->bsrc, /*force_wr*/0);
18097 +               if (IS_ERR(h_file))
18098 +                       err = PTR_ERR(h_file);
18099 +               else {
18100 +                       struct au_cp_generic cpg = {
18101 +                               .dentry = dentry,
18102 +                               .bdst   = a->bdst,
18103 +                               .bsrc   = -1,
18104 +                               .len    = -1,
18105 +                               .pin    = &a->pin,
18106 +                               .flags  = AuCpup_KEEPLINO
18107 +                       };
18108 +                       err = au_sio_cpup_simple(&cpg);
18109 +                       au_h_open_post(dentry, a->bsrc, h_file);
18110 +                       if (!err) {
18111 +                               dput(a->h_path.dentry);
18112 +                               a->h_path.dentry = au_h_dptr(dentry, a->bdst);
18113 +                       } else
18114 +                               au_set_h_dptr(dentry, a->bdst,
18115 +                                             a->h_path.dentry);
18116 +               }
18117 +               spin_lock(&dentry->d_lock);
18118 +               dentry->d_inode = NULL; /* restore */
18119 +               spin_unlock(&dentry->d_lock);
18120 +               AuDbg("temporary d_inode...done\n");
18121 +               au_set_h_dptr(dentry, a->bsrc, NULL);
18122 +               au_set_dbbot(dentry, bbot);
18123 +       } else {
18124 +               /* the inode of src_dentry already exists on a.bdst branch */
18125 +               h_src_dentry = d_find_alias(h_inode);
18126 +               if (!h_src_dentry && au_plink_test(inode)) {
18127 +                       plink = 1;
18128 +                       h_src_dentry = au_plink_lkup(inode, a->bdst);
18129 +                       err = PTR_ERR(h_src_dentry);
18130 +                       if (IS_ERR(h_src_dentry))
18131 +                               goto out;
18132 +
18133 +                       if (unlikely(d_is_negative(h_src_dentry))) {
18134 +                               dput(h_src_dentry);
18135 +                               h_src_dentry = NULL;
18136 +                       }
18137 +
18138 +               }
18139 +               if (h_src_dentry) {
18140 +                       delegated = NULL;
18141 +                       err = vfsub_link(h_src_dentry, au_pinned_h_dir(&a->pin),
18142 +                                        &a->h_path, &delegated);
18143 +                       if (unlikely(err == -EWOULDBLOCK)) {
18144 +                               pr_warn("cannot retry for NFSv4 delegation"
18145 +                                       " for an internal link\n");
18146 +                               iput(delegated);
18147 +                       }
18148 +                       dput(h_src_dentry);
18149 +               } else {
18150 +                       AuIOErr("no dentry found for hi%lu on b%d\n",
18151 +                               h_inode->i_ino, a->bdst);
18152 +                       err = -EIO;
18153 +               }
18154 +       }
18155 +
18156 +       if (!err && !plink)
18157 +               au_plink_append(inode, a->bdst, a->h_path.dentry);
18158 +
18159 +out:
18160 +       AuTraceErr(err);
18161 +       return err;
18162 +}
18163 +
18164 +int aufs_link(struct dentry *src_dentry, struct inode *dir,
18165 +             struct dentry *dentry)
18166 +{
18167 +       int err, rerr;
18168 +       struct au_dtime dt;
18169 +       struct au_link_args *a;
18170 +       struct dentry *wh_dentry, *h_src_dentry;
18171 +       struct inode *inode, *delegated;
18172 +       struct super_block *sb;
18173 +       struct au_wr_dir_args wr_dir_args = {
18174 +               /* .force_btgt  = -1, */
18175 +               .flags          = AuWrDir_ADD_ENTRY
18176 +       };
18177 +
18178 +       IMustLock(dir);
18179 +       inode = d_inode(src_dentry);
18180 +       IMustLock(inode);
18181 +
18182 +       err = -ENOMEM;
18183 +       a = kzalloc(sizeof(*a), GFP_NOFS);
18184 +       if (unlikely(!a))
18185 +               goto out;
18186 +
18187 +       a->parent = dentry->d_parent; /* dir inode is locked */
18188 +       err = aufs_read_and_write_lock2(dentry, src_dentry,
18189 +                                       AuLock_NOPLM | AuLock_GEN);
18190 +       if (unlikely(err))
18191 +               goto out_kfree;
18192 +       err = au_d_linkable(src_dentry);
18193 +       if (unlikely(err))
18194 +               goto out_unlock;
18195 +       err = au_d_may_add(dentry);
18196 +       if (unlikely(err))
18197 +               goto out_unlock;
18198 +
18199 +       a->src_parent = dget_parent(src_dentry);
18200 +       wr_dir_args.force_btgt = au_ibtop(inode);
18201 +
18202 +       di_write_lock_parent(a->parent);
18203 +       wr_dir_args.force_btgt = au_wbr(dentry, wr_dir_args.force_btgt);
18204 +       wh_dentry = lock_hdir_lkup_wh(dentry, &dt, src_dentry, &a->pin,
18205 +                                     &wr_dir_args);
18206 +       err = PTR_ERR(wh_dentry);
18207 +       if (IS_ERR(wh_dentry))
18208 +               goto out_parent;
18209 +
18210 +       err = 0;
18211 +       sb = dentry->d_sb;
18212 +       a->bdst = au_dbtop(dentry);
18213 +       a->h_path.dentry = au_h_dptr(dentry, a->bdst);
18214 +       a->h_path.mnt = au_sbr_mnt(sb, a->bdst);
18215 +       a->bsrc = au_ibtop(inode);
18216 +       h_src_dentry = au_h_d_alias(src_dentry, a->bsrc);
18217 +       if (!h_src_dentry && au_di(src_dentry)->di_tmpfile)
18218 +               h_src_dentry = dget(au_hi_wh(inode, a->bsrc));
18219 +       if (!h_src_dentry) {
18220 +               a->bsrc = au_dbtop(src_dentry);
18221 +               h_src_dentry = au_h_d_alias(src_dentry, a->bsrc);
18222 +               AuDebugOn(!h_src_dentry);
18223 +       } else if (IS_ERR(h_src_dentry)) {
18224 +               err = PTR_ERR(h_src_dentry);
18225 +               goto out_parent;
18226 +       }
18227 +
18228 +       /*
18229 +        * aufs doesn't touch the credential so
18230 +        * security_dentry_create_files_as() is unnecrssary.
18231 +        */
18232 +       if (au_opt_test(au_mntflags(sb), PLINK)) {
18233 +               if (a->bdst < a->bsrc
18234 +                   /* && h_src_dentry->d_sb != a->h_path.dentry->d_sb */)
18235 +                       err = au_cpup_or_link(src_dentry, dentry, a);
18236 +               else {
18237 +                       delegated = NULL;
18238 +                       err = vfsub_link(h_src_dentry, au_pinned_h_dir(&a->pin),
18239 +                                        &a->h_path, &delegated);
18240 +                       if (unlikely(err == -EWOULDBLOCK)) {
18241 +                               pr_warn("cannot retry for NFSv4 delegation"
18242 +                                       " for an internal link\n");
18243 +                               iput(delegated);
18244 +                       }
18245 +               }
18246 +               dput(h_src_dentry);
18247 +       } else {
18248 +               /*
18249 +                * copyup src_dentry to the branch we process,
18250 +                * and then link(2) to it.
18251 +                */
18252 +               dput(h_src_dentry);
18253 +               if (a->bdst < a->bsrc
18254 +                   /* && h_src_dentry->d_sb != a->h_path.dentry->d_sb */) {
18255 +                       au_unpin(&a->pin);
18256 +                       di_write_unlock(a->parent);
18257 +                       err = au_cpup_before_link(src_dentry, a);
18258 +                       di_write_lock_parent(a->parent);
18259 +                       if (!err)
18260 +                               err = au_pin(&a->pin, dentry, a->bdst,
18261 +                                            au_opt_udba(sb),
18262 +                                            AuPin_DI_LOCKED | AuPin_MNT_WRITE);
18263 +                       if (unlikely(err))
18264 +                               goto out_wh;
18265 +               }
18266 +               if (!err) {
18267 +                       h_src_dentry = au_h_dptr(src_dentry, a->bdst);
18268 +                       err = -ENOENT;
18269 +                       if (h_src_dentry && d_is_positive(h_src_dentry)) {
18270 +                               delegated = NULL;
18271 +                               err = vfsub_link(h_src_dentry,
18272 +                                                au_pinned_h_dir(&a->pin),
18273 +                                                &a->h_path, &delegated);
18274 +                               if (unlikely(err == -EWOULDBLOCK)) {
18275 +                                       pr_warn("cannot retry"
18276 +                                               " for NFSv4 delegation"
18277 +                                               " for an internal link\n");
18278 +                                       iput(delegated);
18279 +                               }
18280 +                       }
18281 +               }
18282 +       }
18283 +       if (unlikely(err))
18284 +               goto out_unpin;
18285 +
18286 +       if (wh_dentry) {
18287 +               a->h_path.dentry = wh_dentry;
18288 +               err = au_wh_unlink_dentry(au_pinned_h_dir(&a->pin), &a->h_path,
18289 +                                         dentry);
18290 +               if (unlikely(err))
18291 +                       goto out_revert;
18292 +       }
18293 +
18294 +       au_dir_ts(dir, a->bdst);
18295 +       dir->i_version++;
18296 +       inc_nlink(inode);
18297 +       inode->i_ctime = dir->i_ctime;
18298 +       d_instantiate(dentry, au_igrab(inode));
18299 +       if (d_unhashed(a->h_path.dentry))
18300 +               /* some filesystem calls d_drop() */
18301 +               d_drop(dentry);
18302 +       /* some filesystems consume an inode even hardlink */
18303 +       au_fhsm_wrote(sb, a->bdst, /*force*/0);
18304 +       goto out_unpin; /* success */
18305 +
18306 +out_revert:
18307 +       /* no delegation since it is just created */
18308 +       rerr = vfsub_unlink(au_pinned_h_dir(&a->pin), &a->h_path,
18309 +                           /*delegated*/NULL, /*force*/0);
18310 +       if (unlikely(rerr)) {
18311 +               AuIOErr("%pd reverting failed(%d, %d)\n", dentry, err, rerr);
18312 +               err = -EIO;
18313 +       }
18314 +       au_dtime_revert(&dt);
18315 +out_unpin:
18316 +       au_unpin(&a->pin);
18317 +out_wh:
18318 +       dput(wh_dentry);
18319 +out_parent:
18320 +       di_write_unlock(a->parent);
18321 +       dput(a->src_parent);
18322 +out_unlock:
18323 +       if (unlikely(err)) {
18324 +               au_update_dbtop(dentry);
18325 +               d_drop(dentry);
18326 +       }
18327 +       aufs_read_and_write_unlock2(dentry, src_dentry);
18328 +out_kfree:
18329 +       au_delayed_kfree(a);
18330 +out:
18331 +       AuTraceErr(err);
18332 +       return err;
18333 +}
18334 +
18335 +int aufs_mkdir(struct inode *dir, struct dentry *dentry, umode_t mode)
18336 +{
18337 +       int err, rerr;
18338 +       aufs_bindex_t bindex;
18339 +       unsigned char diropq;
18340 +       struct path h_path;
18341 +       struct dentry *wh_dentry, *parent, *opq_dentry;
18342 +       struct inode *h_inode;
18343 +       struct super_block *sb;
18344 +       struct {
18345 +               struct au_pin pin;
18346 +               struct au_dtime dt;
18347 +       } *a; /* reduce the stack usage */
18348 +       struct au_wr_dir_args wr_dir_args = {
18349 +               .force_btgt     = -1,
18350 +               .flags          = AuWrDir_ADD_ENTRY | AuWrDir_ISDIR
18351 +       };
18352 +
18353 +       IMustLock(dir);
18354 +
18355 +       err = -ENOMEM;
18356 +       a = kmalloc(sizeof(*a), GFP_NOFS);
18357 +       if (unlikely(!a))
18358 +               goto out;
18359 +
18360 +       err = aufs_read_lock(dentry, AuLock_DW | AuLock_GEN);
18361 +       if (unlikely(err))
18362 +               goto out_free;
18363 +       err = au_d_may_add(dentry);
18364 +       if (unlikely(err))
18365 +               goto out_unlock;
18366 +
18367 +       parent = dentry->d_parent; /* dir inode is locked */
18368 +       di_write_lock_parent(parent);
18369 +       wh_dentry = lock_hdir_lkup_wh(dentry, &a->dt, /*src_dentry*/NULL,
18370 +                                     &a->pin, &wr_dir_args);
18371 +       err = PTR_ERR(wh_dentry);
18372 +       if (IS_ERR(wh_dentry))
18373 +               goto out_parent;
18374 +
18375 +       sb = dentry->d_sb;
18376 +       bindex = au_dbtop(dentry);
18377 +       h_path.dentry = au_h_dptr(dentry, bindex);
18378 +       h_path.mnt = au_sbr_mnt(sb, bindex);
18379 +       err = vfsub_mkdir(au_pinned_h_dir(&a->pin), &h_path, mode);
18380 +       if (unlikely(err))
18381 +               goto out_unpin;
18382 +
18383 +       /* make the dir opaque */
18384 +       diropq = 0;
18385 +       h_inode = d_inode(h_path.dentry);
18386 +       if (wh_dentry
18387 +           || au_opt_test(au_mntflags(sb), ALWAYS_DIROPQ)) {
18388 +               inode_lock_nested(h_inode, AuLsc_I_CHILD);
18389 +               opq_dentry = au_diropq_create(dentry, bindex);
18390 +               inode_unlock(h_inode);
18391 +               err = PTR_ERR(opq_dentry);
18392 +               if (IS_ERR(opq_dentry))
18393 +                       goto out_dir;
18394 +               dput(opq_dentry);
18395 +               diropq = 1;
18396 +       }
18397 +
18398 +       err = epilog(dir, bindex, wh_dentry, dentry);
18399 +       if (!err) {
18400 +               inc_nlink(dir);
18401 +               goto out_unpin; /* success */
18402 +       }
18403 +
18404 +       /* revert */
18405 +       if (diropq) {
18406 +               AuLabel(revert opq);
18407 +               inode_lock_nested(h_inode, AuLsc_I_CHILD);
18408 +               rerr = au_diropq_remove(dentry, bindex);
18409 +               inode_unlock(h_inode);
18410 +               if (rerr) {
18411 +                       AuIOErr("%pd reverting diropq failed(%d, %d)\n",
18412 +                               dentry, err, rerr);
18413 +                       err = -EIO;
18414 +               }
18415 +       }
18416 +
18417 +out_dir:
18418 +       AuLabel(revert dir);
18419 +       rerr = vfsub_rmdir(au_pinned_h_dir(&a->pin), &h_path);
18420 +       if (rerr) {
18421 +               AuIOErr("%pd reverting dir failed(%d, %d)\n",
18422 +                       dentry, err, rerr);
18423 +               err = -EIO;
18424 +       }
18425 +       au_dtime_revert(&a->dt);
18426 +out_unpin:
18427 +       au_unpin(&a->pin);
18428 +       dput(wh_dentry);
18429 +out_parent:
18430 +       di_write_unlock(parent);
18431 +out_unlock:
18432 +       if (unlikely(err)) {
18433 +               au_update_dbtop(dentry);
18434 +               d_drop(dentry);
18435 +       }
18436 +       aufs_read_unlock(dentry, AuLock_DW);
18437 +out_free:
18438 +       au_delayed_kfree(a);
18439 +out:
18440 +       return err;
18441 +}
18442 diff -urN /usr/share/empty/fs/aufs/i_op.c linux/fs/aufs/i_op.c
18443 --- /usr/share/empty/fs/aufs/i_op.c     1970-01-01 01:00:00.000000000 +0100
18444 +++ linux/fs/aufs/i_op.c        2016-12-17 12:28:17.595211562 +0100
18445 @@ -0,0 +1,1444 @@
18446 +/*
18447 + * Copyright (C) 2005-2016 Junjiro R. Okajima
18448 + *
18449 + * This program, aufs is free software; you can redistribute it and/or modify
18450 + * it under the terms of the GNU General Public License as published by
18451 + * the Free Software Foundation; either version 2 of the License, or
18452 + * (at your option) any later version.
18453 + *
18454 + * This program is distributed in the hope that it will be useful,
18455 + * but WITHOUT ANY WARRANTY; without even the implied warranty of
18456 + * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
18457 + * GNU General Public License for more details.
18458 + *
18459 + * You should have received a copy of the GNU General Public License
18460 + * along with this program.  If not, see <http://www.gnu.org/licenses/>.
18461 + */
18462 +
18463 +/*
18464 + * inode operations (except add/del/rename)
18465 + */
18466 +
18467 +#include <linux/device_cgroup.h>
18468 +#include <linux/fs_stack.h>
18469 +#include <linux/namei.h>
18470 +#include <linux/security.h>
18471 +#include "aufs.h"
18472 +
18473 +static int h_permission(struct inode *h_inode, int mask,
18474 +                       struct path *h_path, int brperm)
18475 +{
18476 +       int err;
18477 +       const unsigned char write_mask = !!(mask & (MAY_WRITE | MAY_APPEND));
18478 +
18479 +       err = -EPERM;
18480 +       if (write_mask && IS_IMMUTABLE(h_inode))
18481 +               goto out;
18482 +
18483 +       err = -EACCES;
18484 +       if (((mask & MAY_EXEC)
18485 +            && S_ISREG(h_inode->i_mode)
18486 +            && (path_noexec(h_path)
18487 +                || !(h_inode->i_mode & S_IXUGO))))
18488 +               goto out;
18489 +
18490 +       /*
18491 +        * - skip the lower fs test in the case of write to ro branch.
18492 +        * - nfs dir permission write check is optimized, but a policy for
18493 +        *   link/rename requires a real check.
18494 +        * - nfs always sets MS_POSIXACL regardless its mount option 'noacl.'
18495 +        *   in this case, generic_permission() returns -EOPNOTSUPP.
18496 +        */
18497 +       if ((write_mask && !au_br_writable(brperm))
18498 +           || (au_test_nfs(h_inode->i_sb) && S_ISDIR(h_inode->i_mode)
18499 +               && write_mask && !(mask & MAY_READ))
18500 +           || !h_inode->i_op->permission) {
18501 +               /* AuLabel(generic_permission); */
18502 +               /* AuDbg("get_acl %pf\n", h_inode->i_op->get_acl); */
18503 +               err = generic_permission(h_inode, mask);
18504 +               if (err == -EOPNOTSUPP && au_test_nfs_noacl(h_inode))
18505 +                       err = h_inode->i_op->permission(h_inode, mask);
18506 +               AuTraceErr(err);
18507 +       } else {
18508 +               /* AuLabel(h_inode->permission); */
18509 +               err = h_inode->i_op->permission(h_inode, mask);
18510 +               AuTraceErr(err);
18511 +       }
18512 +
18513 +       if (!err)
18514 +               err = devcgroup_inode_permission(h_inode, mask);
18515 +       if (!err)
18516 +               err = security_inode_permission(h_inode, mask);
18517 +
18518 +#if 0
18519 +       if (!err) {
18520 +               /* todo: do we need to call ima_path_check()? */
18521 +               struct path h_path = {
18522 +                       .dentry =
18523 +                       .mnt    = h_mnt
18524 +               };
18525 +               err = ima_path_check(&h_path,
18526 +                                    mask & (MAY_READ | MAY_WRITE | MAY_EXEC),
18527 +                                    IMA_COUNT_LEAVE);
18528 +       }
18529 +#endif
18530 +
18531 +out:
18532 +       return err;
18533 +}
18534 +
18535 +static int aufs_permission(struct inode *inode, int mask)
18536 +{
18537 +       int err;
18538 +       aufs_bindex_t bindex, bbot;
18539 +       const unsigned char isdir = !!S_ISDIR(inode->i_mode),
18540 +               write_mask = !!(mask & (MAY_WRITE | MAY_APPEND));
18541 +       struct inode *h_inode;
18542 +       struct super_block *sb;
18543 +       struct au_branch *br;
18544 +
18545 +       /* todo: support rcu-walk? */
18546 +       if (mask & MAY_NOT_BLOCK)
18547 +               return -ECHILD;
18548 +
18549 +       sb = inode->i_sb;
18550 +       si_read_lock(sb, AuLock_FLUSH);
18551 +       ii_read_lock_child(inode);
18552 +#if 0
18553 +       err = au_iigen_test(inode, au_sigen(sb));
18554 +       if (unlikely(err))
18555 +               goto out;
18556 +#endif
18557 +
18558 +       if (!isdir
18559 +           || write_mask
18560 +           || au_opt_test(au_mntflags(sb), DIRPERM1)) {
18561 +               err = au_busy_or_stale();
18562 +               h_inode = au_h_iptr(inode, au_ibtop(inode));
18563 +               if (unlikely(!h_inode
18564 +                            || (h_inode->i_mode & S_IFMT)
18565 +                            != (inode->i_mode & S_IFMT)))
18566 +                       goto out;
18567 +
18568 +               err = 0;
18569 +               bindex = au_ibtop(inode);
18570 +               br = au_sbr(sb, bindex);
18571 +               err = h_permission(h_inode, mask, &br->br_path, br->br_perm);
18572 +               if (write_mask
18573 +                   && !err
18574 +                   && !special_file(h_inode->i_mode)) {
18575 +                       /* test whether the upper writable branch exists */
18576 +                       err = -EROFS;
18577 +                       for (; bindex >= 0; bindex--)
18578 +                               if (!au_br_rdonly(au_sbr(sb, bindex))) {
18579 +                                       err = 0;
18580 +                                       break;
18581 +                               }
18582 +               }
18583 +               goto out;
18584 +       }
18585 +
18586 +       /* non-write to dir */
18587 +       err = 0;
18588 +       bbot = au_ibbot(inode);
18589 +       for (bindex = au_ibtop(inode); !err && bindex <= bbot; bindex++) {
18590 +               h_inode = au_h_iptr(inode, bindex);
18591 +               if (h_inode) {
18592 +                       err = au_busy_or_stale();
18593 +                       if (unlikely(!S_ISDIR(h_inode->i_mode)))
18594 +                               break;
18595 +
18596 +                       br = au_sbr(sb, bindex);
18597 +                       err = h_permission(h_inode, mask, &br->br_path,
18598 +                                          br->br_perm);
18599 +               }
18600 +       }
18601 +
18602 +out:
18603 +       ii_read_unlock(inode);
18604 +       si_read_unlock(sb);
18605 +       return err;
18606 +}
18607 +
18608 +/* ---------------------------------------------------------------------- */
18609 +
18610 +static struct dentry *aufs_lookup(struct inode *dir, struct dentry *dentry,
18611 +                                 unsigned int flags)
18612 +{
18613 +       struct dentry *ret, *parent;
18614 +       struct inode *inode;
18615 +       struct super_block *sb;
18616 +       int err, npositive;
18617 +
18618 +       IMustLock(dir);
18619 +
18620 +       /* todo: support rcu-walk? */
18621 +       ret = ERR_PTR(-ECHILD);
18622 +       if (flags & LOOKUP_RCU)
18623 +               goto out;
18624 +
18625 +       ret = ERR_PTR(-ENAMETOOLONG);
18626 +       if (unlikely(dentry->d_name.len > AUFS_MAX_NAMELEN))
18627 +               goto out;
18628 +
18629 +       sb = dir->i_sb;
18630 +       err = si_read_lock(sb, AuLock_FLUSH | AuLock_NOPLM);
18631 +       ret = ERR_PTR(err);
18632 +       if (unlikely(err))
18633 +               goto out;
18634 +
18635 +       err = au_di_init(dentry);
18636 +       ret = ERR_PTR(err);
18637 +       if (unlikely(err))
18638 +               goto out_si;
18639 +
18640 +       inode = NULL;
18641 +       npositive = 0; /* suppress a warning */
18642 +       parent = dentry->d_parent; /* dir inode is locked */
18643 +       di_read_lock_parent(parent, AuLock_IR);
18644 +       err = au_alive_dir(parent);
18645 +       if (!err)
18646 +               err = au_digen_test(parent, au_sigen(sb));
18647 +       if (!err) {
18648 +               /* regardless LOOKUP_CREATE, always ALLOW_NEG */
18649 +               npositive = au_lkup_dentry(dentry, au_dbtop(parent),
18650 +                                          AuLkup_ALLOW_NEG);
18651 +               err = npositive;
18652 +       }
18653 +       di_read_unlock(parent, AuLock_IR);
18654 +       ret = ERR_PTR(err);
18655 +       if (unlikely(err < 0))
18656 +               goto out_unlock;
18657 +
18658 +       if (npositive) {
18659 +               inode = au_new_inode(dentry, /*must_new*/0);
18660 +               if (IS_ERR(inode)) {
18661 +                       ret = (void *)inode;
18662 +                       inode = NULL;
18663 +                       goto out_unlock;
18664 +               }
18665 +       }
18666 +
18667 +       if (inode)
18668 +               atomic_inc(&inode->i_count);
18669 +       ret = d_splice_alias(inode, dentry);
18670 +#if 0
18671 +       if (unlikely(d_need_lookup(dentry))) {
18672 +               spin_lock(&dentry->d_lock);
18673 +               dentry->d_flags &= ~DCACHE_NEED_LOOKUP;
18674 +               spin_unlock(&dentry->d_lock);
18675 +       } else
18676 +#endif
18677 +       if (inode) {
18678 +               if (!IS_ERR(ret)) {
18679 +                       iput(inode);
18680 +                       if (ret && ret != dentry)
18681 +                               ii_write_unlock(inode);
18682 +               } else {
18683 +                       ii_write_unlock(inode);
18684 +                       iput(inode);
18685 +                       inode = NULL;
18686 +               }
18687 +       }
18688 +
18689 +out_unlock:
18690 +       di_write_unlock(dentry);
18691 +out_si:
18692 +       si_read_unlock(sb);
18693 +out:
18694 +       return ret;
18695 +}
18696 +
18697 +/* ---------------------------------------------------------------------- */
18698 +
18699 +struct aopen_node {
18700 +       struct hlist_node hlist;
18701 +       struct file *file, *h_file;
18702 +};
18703 +
18704 +static int au_do_aopen(struct inode *inode, struct file *file)
18705 +{
18706 +       struct au_sphlhead *aopen;
18707 +       struct aopen_node *node;
18708 +       struct au_do_open_args args = {
18709 +               .no_lock        = 1,
18710 +               .open           = au_do_open_nondir
18711 +       };
18712 +
18713 +       aopen = &au_sbi(inode->i_sb)->si_aopen;
18714 +       spin_lock(&aopen->spin);
18715 +       hlist_for_each_entry(node, &aopen->head, hlist)
18716 +               if (node->file == file) {
18717 +                       args.h_file = node->h_file;
18718 +                       break;
18719 +               }
18720 +       spin_unlock(&aopen->spin);
18721 +       /* AuDebugOn(!args.h_file); */
18722 +
18723 +       return au_do_open(file, &args);
18724 +}
18725 +
18726 +static int aufs_atomic_open(struct inode *dir, struct dentry *dentry,
18727 +                           struct file *file, unsigned int open_flag,
18728 +                           umode_t create_mode, int *opened)
18729 +{
18730 +       int err, h_opened = *opened;
18731 +       unsigned int lkup_flags;
18732 +       struct dentry *parent, *d;
18733 +       struct au_sphlhead *aopen;
18734 +       struct vfsub_aopen_args args = {
18735 +               .open_flag      = open_flag,
18736 +               .create_mode    = create_mode,
18737 +               .opened         = &h_opened
18738 +       };
18739 +       struct aopen_node aopen_node = {
18740 +               .file   = file
18741 +       };
18742 +
18743 +       IMustLock(dir);
18744 +       AuDbg("open_flag 0%o\n", open_flag);
18745 +       AuDbgDentry(dentry);
18746 +
18747 +       err = 0;
18748 +       if (!au_di(dentry)) {
18749 +               lkup_flags = LOOKUP_OPEN;
18750 +               if (open_flag & O_CREAT)
18751 +                       lkup_flags |= LOOKUP_CREATE;
18752 +               d = aufs_lookup(dir, dentry, lkup_flags);
18753 +               if (IS_ERR(d)) {
18754 +                       err = PTR_ERR(d);
18755 +                       AuTraceErr(err);
18756 +                       goto out;
18757 +               } else if (d) {
18758 +                       /*
18759 +                        * obsoleted dentry found.
18760 +                        * another error will be returned later.
18761 +                        */
18762 +                       d_drop(d);
18763 +                       AuDbgDentry(d);
18764 +                       dput(d);
18765 +               }
18766 +               AuDbgDentry(dentry);
18767 +       }
18768 +
18769 +       if (d_is_positive(dentry)
18770 +           || d_unhashed(dentry)
18771 +           || d_unlinked(dentry)
18772 +           || !(open_flag & O_CREAT))
18773 +               goto out_no_open;
18774 +
18775 +       err = aufs_read_lock(dentry, AuLock_DW | AuLock_FLUSH | AuLock_GEN);
18776 +       if (unlikely(err))
18777 +               goto out;
18778 +
18779 +       parent = dentry->d_parent;      /* dir is locked */
18780 +       di_write_lock_parent(parent);
18781 +       err = au_lkup_dentry(dentry, /*btop*/0, AuLkup_ALLOW_NEG);
18782 +       if (unlikely(err))
18783 +               goto out_unlock;
18784 +
18785 +       AuDbgDentry(dentry);
18786 +       if (d_is_positive(dentry))
18787 +               goto out_unlock;
18788 +
18789 +       args.file = get_empty_filp();
18790 +       err = PTR_ERR(args.file);
18791 +       if (IS_ERR(args.file))
18792 +               goto out_unlock;
18793 +
18794 +       args.file->f_flags = file->f_flags;
18795 +       err = au_aopen_or_create(dir, dentry, &args);
18796 +       AuTraceErr(err);
18797 +       AuDbgFile(args.file);
18798 +       if (unlikely(err < 0)) {
18799 +               if (h_opened & FILE_OPENED)
18800 +                       fput(args.file);
18801 +               else
18802 +                       put_filp(args.file);
18803 +               goto out_unlock;
18804 +       }
18805 +
18806 +       /* some filesystems don't set FILE_CREATED while succeeded? */
18807 +       *opened |= FILE_CREATED;
18808 +       if (h_opened & FILE_OPENED)
18809 +               aopen_node.h_file = args.file;
18810 +       else {
18811 +               put_filp(args.file);
18812 +               args.file = NULL;
18813 +       }
18814 +       aopen = &au_sbi(dir->i_sb)->si_aopen;
18815 +       au_sphl_add(&aopen_node.hlist, aopen);
18816 +       err = finish_open(file, dentry, au_do_aopen, opened);
18817 +       au_sphl_del(&aopen_node.hlist, aopen);
18818 +       AuTraceErr(err);
18819 +       AuDbgFile(file);
18820 +       if (aopen_node.h_file)
18821 +               fput(aopen_node.h_file);
18822 +
18823 +out_unlock:
18824 +       di_write_unlock(parent);
18825 +       aufs_read_unlock(dentry, AuLock_DW);
18826 +       AuDbgDentry(dentry);
18827 +       if (unlikely(err < 0))
18828 +               goto out;
18829 +out_no_open:
18830 +       if (err >= 0 && !(*opened & FILE_CREATED)) {
18831 +               AuLabel(out_no_open);
18832 +               dget(dentry);
18833 +               err = finish_no_open(file, dentry);
18834 +       }
18835 +out:
18836 +       AuDbg("%pd%s%s\n", dentry,
18837 +             (*opened & FILE_CREATED) ? " created" : "",
18838 +             (*opened & FILE_OPENED) ? " opened" : "");
18839 +       AuTraceErr(err);
18840 +       return err;
18841 +}
18842 +
18843 +
18844 +/* ---------------------------------------------------------------------- */
18845 +
18846 +static int au_wr_dir_cpup(struct dentry *dentry, struct dentry *parent,
18847 +                         const unsigned char add_entry, aufs_bindex_t bcpup,
18848 +                         aufs_bindex_t btop)
18849 +{
18850 +       int err;
18851 +       struct dentry *h_parent;
18852 +       struct inode *h_dir;
18853 +
18854 +       if (add_entry)
18855 +               IMustLock(d_inode(parent));
18856 +       else
18857 +               di_write_lock_parent(parent);
18858 +
18859 +       err = 0;
18860 +       if (!au_h_dptr(parent, bcpup)) {
18861 +               if (btop > bcpup)
18862 +                       err = au_cpup_dirs(dentry, bcpup);
18863 +               else if (btop < bcpup)
18864 +                       err = au_cpdown_dirs(dentry, bcpup);
18865 +               else
18866 +                       BUG();
18867 +       }
18868 +       if (!err && add_entry && !au_ftest_wrdir(add_entry, TMPFILE)) {
18869 +               h_parent = au_h_dptr(parent, bcpup);
18870 +               h_dir = d_inode(h_parent);
18871 +               inode_lock_nested(h_dir, AuLsc_I_PARENT);
18872 +               err = au_lkup_neg(dentry, bcpup, /*wh*/0);
18873 +               /* todo: no unlock here */
18874 +               inode_unlock(h_dir);
18875 +
18876 +               AuDbg("bcpup %d\n", bcpup);
18877 +               if (!err) {
18878 +                       if (d_really_is_negative(dentry))
18879 +                               au_set_h_dptr(dentry, btop, NULL);
18880 +                       au_update_dbrange(dentry, /*do_put_zero*/0);
18881 +               }
18882 +       }
18883 +
18884 +       if (!add_entry)
18885 +               di_write_unlock(parent);
18886 +       if (!err)
18887 +               err = bcpup; /* success */
18888 +
18889 +       AuTraceErr(err);
18890 +       return err;
18891 +}
18892 +
18893 +/*
18894 + * decide the branch and the parent dir where we will create a new entry.
18895 + * returns new bindex or an error.
18896 + * copyup the parent dir if needed.
18897 + */
18898 +int au_wr_dir(struct dentry *dentry, struct dentry *src_dentry,
18899 +             struct au_wr_dir_args *args)
18900 +{
18901 +       int err;
18902 +       unsigned int flags;
18903 +       aufs_bindex_t bcpup, btop, src_btop;
18904 +       const unsigned char add_entry
18905 +               = au_ftest_wrdir(args->flags, ADD_ENTRY)
18906 +               | au_ftest_wrdir(args->flags, TMPFILE);
18907 +       struct super_block *sb;
18908 +       struct dentry *parent;
18909 +       struct au_sbinfo *sbinfo;
18910 +
18911 +       sb = dentry->d_sb;
18912 +       sbinfo = au_sbi(sb);
18913 +       parent = dget_parent(dentry);
18914 +       btop = au_dbtop(dentry);
18915 +       bcpup = btop;
18916 +       if (args->force_btgt < 0) {
18917 +               if (src_dentry) {
18918 +                       src_btop = au_dbtop(src_dentry);
18919 +                       if (src_btop < btop)
18920 +                               bcpup = src_btop;
18921 +               } else if (add_entry) {
18922 +                       flags = 0;
18923 +                       if (au_ftest_wrdir(args->flags, ISDIR))
18924 +                               au_fset_wbr(flags, DIR);
18925 +                       err = AuWbrCreate(sbinfo, dentry, flags);
18926 +                       bcpup = err;
18927 +               }
18928 +
18929 +               if (bcpup < 0 || au_test_ro(sb, bcpup, d_inode(dentry))) {
18930 +                       if (add_entry)
18931 +                               err = AuWbrCopyup(sbinfo, dentry);
18932 +                       else {
18933 +                               if (!IS_ROOT(dentry)) {
18934 +                                       di_read_lock_parent(parent, !AuLock_IR);
18935 +                                       err = AuWbrCopyup(sbinfo, dentry);
18936 +                                       di_read_unlock(parent, !AuLock_IR);
18937 +                               } else
18938 +                                       err = AuWbrCopyup(sbinfo, dentry);
18939 +                       }
18940 +                       bcpup = err;
18941 +                       if (unlikely(err < 0))
18942 +                               goto out;
18943 +               }
18944 +       } else {
18945 +               bcpup = args->force_btgt;
18946 +               AuDebugOn(au_test_ro(sb, bcpup, d_inode(dentry)));
18947 +       }
18948 +
18949 +       AuDbg("btop %d, bcpup %d\n", btop, bcpup);
18950 +       err = bcpup;
18951 +       if (bcpup == btop)
18952 +               goto out; /* success */
18953 +
18954 +       /* copyup the new parent into the branch we process */
18955 +       err = au_wr_dir_cpup(dentry, parent, add_entry, bcpup, btop);
18956 +       if (err >= 0) {
18957 +               if (d_really_is_negative(dentry)) {
18958 +                       au_set_h_dptr(dentry, btop, NULL);
18959 +                       au_set_dbtop(dentry, bcpup);
18960 +                       au_set_dbbot(dentry, bcpup);
18961 +               }
18962 +               AuDebugOn(add_entry
18963 +                         && !au_ftest_wrdir(args->flags, TMPFILE)
18964 +                         && !au_h_dptr(dentry, bcpup));
18965 +       }
18966 +
18967 +out:
18968 +       dput(parent);
18969 +       return err;
18970 +}
18971 +
18972 +/* ---------------------------------------------------------------------- */
18973 +
18974 +void au_pin_hdir_unlock(struct au_pin *p)
18975 +{
18976 +       if (p->hdir)
18977 +               au_hn_inode_unlock(p->hdir);
18978 +}
18979 +
18980 +int au_pin_hdir_lock(struct au_pin *p)
18981 +{
18982 +       int err;
18983 +
18984 +       err = 0;
18985 +       if (!p->hdir)
18986 +               goto out;
18987 +
18988 +       /* even if an error happens later, keep this lock */
18989 +       au_hn_inode_lock_nested(p->hdir, p->lsc_hi);
18990 +
18991 +       err = -EBUSY;
18992 +       if (unlikely(p->hdir->hi_inode != d_inode(p->h_parent)))
18993 +               goto out;
18994 +
18995 +       err = 0;
18996 +       if (p->h_dentry)
18997 +               err = au_h_verify(p->h_dentry, p->udba, p->hdir->hi_inode,
18998 +                                 p->h_parent, p->br);
18999 +
19000 +out:
19001 +       return err;
19002 +}
19003 +
19004 +int au_pin_hdir_relock(struct au_pin *p)
19005 +{
19006 +       int err, i;
19007 +       struct inode *h_i;
19008 +       struct dentry *h_d[] = {
19009 +               p->h_dentry,
19010 +               p->h_parent
19011 +       };
19012 +
19013 +       err = au_pin_hdir_lock(p);
19014 +       if (unlikely(err))
19015 +               goto out;
19016 +
19017 +       for (i = 0; !err && i < sizeof(h_d)/sizeof(*h_d); i++) {
19018 +               if (!h_d[i])
19019 +                       continue;
19020 +               if (d_is_positive(h_d[i])) {
19021 +                       h_i = d_inode(h_d[i]);
19022 +                       err = !h_i->i_nlink;
19023 +               }
19024 +       }
19025 +
19026 +out:
19027 +       return err;
19028 +}
19029 +
19030 +static void au_pin_hdir_set_owner(struct au_pin *p, struct task_struct *task)
19031 +{
19032 +#if !defined(CONFIG_RWSEM_GENERIC_SPINLOCK) && defined(CONFIG_RWSEM_SPIN_ON_OWNER)
19033 +       p->hdir->hi_inode->i_rwsem.owner = task;
19034 +#endif
19035 +}
19036 +
19037 +void au_pin_hdir_acquire_nest(struct au_pin *p)
19038 +{
19039 +       if (p->hdir) {
19040 +               rwsem_acquire_nest(&p->hdir->hi_inode->i_rwsem.dep_map,
19041 +                                  p->lsc_hi, 0, NULL, _RET_IP_);
19042 +               au_pin_hdir_set_owner(p, current);
19043 +       }
19044 +}
19045 +
19046 +void au_pin_hdir_release(struct au_pin *p)
19047 +{
19048 +       if (p->hdir) {
19049 +               au_pin_hdir_set_owner(p, p->task);
19050 +               rwsem_release(&p->hdir->hi_inode->i_rwsem.dep_map, 1, _RET_IP_);
19051 +       }
19052 +}
19053 +
19054 +struct dentry *au_pinned_h_parent(struct au_pin *pin)
19055 +{
19056 +       if (pin && pin->parent)
19057 +               return au_h_dptr(pin->parent, pin->bindex);
19058 +       return NULL;
19059 +}
19060 +
19061 +void au_unpin(struct au_pin *p)
19062 +{
19063 +       if (p->hdir)
19064 +               au_pin_hdir_unlock(p);
19065 +       if (p->h_mnt && au_ftest_pin(p->flags, MNT_WRITE))
19066 +               vfsub_mnt_drop_write(p->h_mnt);
19067 +       if (!p->hdir)
19068 +               return;
19069 +
19070 +       if (!au_ftest_pin(p->flags, DI_LOCKED))
19071 +               di_read_unlock(p->parent, AuLock_IR);
19072 +       iput(p->hdir->hi_inode);
19073 +       dput(p->parent);
19074 +       p->parent = NULL;
19075 +       p->hdir = NULL;
19076 +       p->h_mnt = NULL;
19077 +       /* do not clear p->task */
19078 +}
19079 +
19080 +int au_do_pin(struct au_pin *p)
19081 +{
19082 +       int err;
19083 +       struct super_block *sb;
19084 +       struct inode *h_dir;
19085 +
19086 +       err = 0;
19087 +       sb = p->dentry->d_sb;
19088 +       p->br = au_sbr(sb, p->bindex);
19089 +       if (IS_ROOT(p->dentry)) {
19090 +               if (au_ftest_pin(p->flags, MNT_WRITE)) {
19091 +                       p->h_mnt = au_br_mnt(p->br);
19092 +                       err = vfsub_mnt_want_write(p->h_mnt);
19093 +                       if (unlikely(err)) {
19094 +                               au_fclr_pin(p->flags, MNT_WRITE);
19095 +                               goto out_err;
19096 +                       }
19097 +               }
19098 +               goto out;
19099 +       }
19100 +
19101 +       p->h_dentry = NULL;
19102 +       if (p->bindex <= au_dbbot(p->dentry))
19103 +               p->h_dentry = au_h_dptr(p->dentry, p->bindex);
19104 +
19105 +       p->parent = dget_parent(p->dentry);
19106 +       if (!au_ftest_pin(p->flags, DI_LOCKED))
19107 +               di_read_lock(p->parent, AuLock_IR, p->lsc_di);
19108 +
19109 +       h_dir = NULL;
19110 +       p->h_parent = au_h_dptr(p->parent, p->bindex);
19111 +       p->hdir = au_hi(d_inode(p->parent), p->bindex);
19112 +       if (p->hdir)
19113 +               h_dir = p->hdir->hi_inode;
19114 +
19115 +       /*
19116 +        * udba case, or
19117 +        * if DI_LOCKED is not set, then p->parent may be different
19118 +        * and h_parent can be NULL.
19119 +        */
19120 +       if (unlikely(!p->hdir || !h_dir || !p->h_parent)) {
19121 +               err = -EBUSY;
19122 +               if (!au_ftest_pin(p->flags, DI_LOCKED))
19123 +                       di_read_unlock(p->parent, AuLock_IR);
19124 +               dput(p->parent);
19125 +               p->parent = NULL;
19126 +               goto out_err;
19127 +       }
19128 +
19129 +       if (au_ftest_pin(p->flags, MNT_WRITE)) {
19130 +               p->h_mnt = au_br_mnt(p->br);
19131 +               err = vfsub_mnt_want_write(p->h_mnt);
19132 +               if (unlikely(err)) {
19133 +                       au_fclr_pin(p->flags, MNT_WRITE);
19134 +                       if (!au_ftest_pin(p->flags, DI_LOCKED))
19135 +                               di_read_unlock(p->parent, AuLock_IR);
19136 +                       dput(p->parent);
19137 +                       p->parent = NULL;
19138 +                       goto out_err;
19139 +               }
19140 +       }
19141 +
19142 +       au_igrab(h_dir);
19143 +       err = au_pin_hdir_lock(p);
19144 +       if (!err)
19145 +               goto out; /* success */
19146 +
19147 +       au_unpin(p);
19148 +
19149 +out_err:
19150 +       pr_err("err %d\n", err);
19151 +       err = au_busy_or_stale();
19152 +out:
19153 +       return err;
19154 +}
19155 +
19156 +void au_pin_init(struct au_pin *p, struct dentry *dentry,
19157 +                aufs_bindex_t bindex, int lsc_di, int lsc_hi,
19158 +                unsigned int udba, unsigned char flags)
19159 +{
19160 +       p->dentry = dentry;
19161 +       p->udba = udba;
19162 +       p->lsc_di = lsc_di;
19163 +       p->lsc_hi = lsc_hi;
19164 +       p->flags = flags;
19165 +       p->bindex = bindex;
19166 +
19167 +       p->parent = NULL;
19168 +       p->hdir = NULL;
19169 +       p->h_mnt = NULL;
19170 +
19171 +       p->h_dentry = NULL;
19172 +       p->h_parent = NULL;
19173 +       p->br = NULL;
19174 +       p->task = current;
19175 +}
19176 +
19177 +int au_pin(struct au_pin *pin, struct dentry *dentry, aufs_bindex_t bindex,
19178 +          unsigned int udba, unsigned char flags)
19179 +{
19180 +       au_pin_init(pin, dentry, bindex, AuLsc_DI_PARENT, AuLsc_I_PARENT2,
19181 +                   udba, flags);
19182 +       return au_do_pin(pin);
19183 +}
19184 +
19185 +/* ---------------------------------------------------------------------- */
19186 +
19187 +/*
19188 + * ->setattr() and ->getattr() are called in various cases.
19189 + * chmod, stat: dentry is revalidated.
19190 + * fchmod, fstat: file and dentry are not revalidated, additionally they may be
19191 + *               unhashed.
19192 + * for ->setattr(), ia->ia_file is passed from ftruncate only.
19193 + */
19194 +/* todo: consolidate with do_refresh() and simple_reval_dpath() */
19195 +int au_reval_for_attr(struct dentry *dentry, unsigned int sigen)
19196 +{
19197 +       int err;
19198 +       struct dentry *parent;
19199 +
19200 +       err = 0;
19201 +       if (au_digen_test(dentry, sigen)) {
19202 +               parent = dget_parent(dentry);
19203 +               di_read_lock_parent(parent, AuLock_IR);
19204 +               err = au_refresh_dentry(dentry, parent);
19205 +               di_read_unlock(parent, AuLock_IR);
19206 +               dput(parent);
19207 +       }
19208 +
19209 +       AuTraceErr(err);
19210 +       return err;
19211 +}
19212 +
19213 +int au_pin_and_icpup(struct dentry *dentry, struct iattr *ia,
19214 +                    struct au_icpup_args *a)
19215 +{
19216 +       int err;
19217 +       loff_t sz;
19218 +       aufs_bindex_t btop, ibtop;
19219 +       struct dentry *hi_wh, *parent;
19220 +       struct inode *inode;
19221 +       struct au_wr_dir_args wr_dir_args = {
19222 +               .force_btgt     = -1,
19223 +               .flags          = 0
19224 +       };
19225 +
19226 +       if (d_is_dir(dentry))
19227 +               au_fset_wrdir(wr_dir_args.flags, ISDIR);
19228 +       /* plink or hi_wh() case */
19229 +       btop = au_dbtop(dentry);
19230 +       inode = d_inode(dentry);
19231 +       ibtop = au_ibtop(inode);
19232 +       if (btop != ibtop && !au_test_ro(inode->i_sb, ibtop, inode))
19233 +               wr_dir_args.force_btgt = ibtop;
19234 +       err = au_wr_dir(dentry, /*src_dentry*/NULL, &wr_dir_args);
19235 +       if (unlikely(err < 0))
19236 +               goto out;
19237 +       a->btgt = err;
19238 +       if (err != btop)
19239 +               au_fset_icpup(a->flags, DID_CPUP);
19240 +
19241 +       err = 0;
19242 +       a->pin_flags = AuPin_MNT_WRITE;
19243 +       parent = NULL;
19244 +       if (!IS_ROOT(dentry)) {
19245 +               au_fset_pin(a->pin_flags, DI_LOCKED);
19246 +               parent = dget_parent(dentry);
19247 +               di_write_lock_parent(parent);
19248 +       }
19249 +
19250 +       err = au_pin(&a->pin, dentry, a->btgt, a->udba, a->pin_flags);
19251 +       if (unlikely(err))
19252 +               goto out_parent;
19253 +
19254 +       sz = -1;
19255 +       a->h_path.dentry = au_h_dptr(dentry, btop);
19256 +       a->h_inode = d_inode(a->h_path.dentry);
19257 +       if (ia && (ia->ia_valid & ATTR_SIZE)) {
19258 +               inode_lock_nested(a->h_inode, AuLsc_I_CHILD);
19259 +               if (ia->ia_size < i_size_read(a->h_inode))
19260 +                       sz = ia->ia_size;
19261 +               inode_unlock(a->h_inode);
19262 +       }
19263 +
19264 +       hi_wh = NULL;
19265 +       if (au_ftest_icpup(a->flags, DID_CPUP) && d_unlinked(dentry)) {
19266 +               hi_wh = au_hi_wh(inode, a->btgt);
19267 +               if (!hi_wh) {
19268 +                       struct au_cp_generic cpg = {
19269 +                               .dentry = dentry,
19270 +                               .bdst   = a->btgt,
19271 +                               .bsrc   = -1,
19272 +                               .len    = sz,
19273 +                               .pin    = &a->pin
19274 +                       };
19275 +                       err = au_sio_cpup_wh(&cpg, /*file*/NULL);
19276 +                       if (unlikely(err))
19277 +                               goto out_unlock;
19278 +                       hi_wh = au_hi_wh(inode, a->btgt);
19279 +                       /* todo: revalidate hi_wh? */
19280 +               }
19281 +       }
19282 +
19283 +       if (parent) {
19284 +               au_pin_set_parent_lflag(&a->pin, /*lflag*/0);
19285 +               di_downgrade_lock(parent, AuLock_IR);
19286 +               dput(parent);
19287 +               parent = NULL;
19288 +       }
19289 +       if (!au_ftest_icpup(a->flags, DID_CPUP))
19290 +               goto out; /* success */
19291 +
19292 +       if (!d_unhashed(dentry)) {
19293 +               struct au_cp_generic cpg = {
19294 +                       .dentry = dentry,
19295 +                       .bdst   = a->btgt,
19296 +                       .bsrc   = btop,
19297 +                       .len    = sz,
19298 +                       .pin    = &a->pin,
19299 +                       .flags  = AuCpup_DTIME | AuCpup_HOPEN
19300 +               };
19301 +               err = au_sio_cpup_simple(&cpg);
19302 +               if (!err)
19303 +                       a->h_path.dentry = au_h_dptr(dentry, a->btgt);
19304 +       } else if (!hi_wh)
19305 +               a->h_path.dentry = au_h_dptr(dentry, a->btgt);
19306 +       else
19307 +               a->h_path.dentry = hi_wh; /* do not dget here */
19308 +
19309 +out_unlock:
19310 +       a->h_inode = d_inode(a->h_path.dentry);
19311 +       if (!err)
19312 +               goto out; /* success */
19313 +       au_unpin(&a->pin);
19314 +out_parent:
19315 +       if (parent) {
19316 +               di_write_unlock(parent);
19317 +               dput(parent);
19318 +       }
19319 +out:
19320 +       if (!err)
19321 +               inode_lock_nested(a->h_inode, AuLsc_I_CHILD);
19322 +       return err;
19323 +}
19324 +
19325 +static int aufs_setattr(struct dentry *dentry, struct iattr *ia)
19326 +{
19327 +       int err;
19328 +       struct inode *inode, *delegated;
19329 +       struct super_block *sb;
19330 +       struct file *file;
19331 +       struct au_icpup_args *a;
19332 +
19333 +       inode = d_inode(dentry);
19334 +       IMustLock(inode);
19335 +
19336 +       err = setattr_prepare(dentry, ia);
19337 +       if (unlikely(err))
19338 +               goto out;
19339 +
19340 +       err = -ENOMEM;
19341 +       a = kzalloc(sizeof(*a), GFP_NOFS);
19342 +       if (unlikely(!a))
19343 +               goto out;
19344 +
19345 +       if (ia->ia_valid & (ATTR_KILL_SUID | ATTR_KILL_SGID))
19346 +               ia->ia_valid &= ~ATTR_MODE;
19347 +
19348 +       file = NULL;
19349 +       sb = dentry->d_sb;
19350 +       err = si_read_lock(sb, AuLock_FLUSH | AuLock_NOPLM);
19351 +       if (unlikely(err))
19352 +               goto out_kfree;
19353 +
19354 +       if (ia->ia_valid & ATTR_FILE) {
19355 +               /* currently ftruncate(2) only */
19356 +               AuDebugOn(!d_is_reg(dentry));
19357 +               file = ia->ia_file;
19358 +               err = au_reval_and_lock_fdi(file, au_reopen_nondir, /*wlock*/1);
19359 +               if (unlikely(err))
19360 +                       goto out_si;
19361 +               ia->ia_file = au_hf_top(file);
19362 +               a->udba = AuOpt_UDBA_NONE;
19363 +       } else {
19364 +               /* fchmod() doesn't pass ia_file */
19365 +               a->udba = au_opt_udba(sb);
19366 +               di_write_lock_child(dentry);
19367 +               /* no d_unlinked(), to set UDBA_NONE for root */
19368 +               if (d_unhashed(dentry))
19369 +                       a->udba = AuOpt_UDBA_NONE;
19370 +               if (a->udba != AuOpt_UDBA_NONE) {
19371 +                       AuDebugOn(IS_ROOT(dentry));
19372 +                       err = au_reval_for_attr(dentry, au_sigen(sb));
19373 +                       if (unlikely(err))
19374 +                               goto out_dentry;
19375 +               }
19376 +       }
19377 +
19378 +       err = au_pin_and_icpup(dentry, ia, a);
19379 +       if (unlikely(err < 0))
19380 +               goto out_dentry;
19381 +       if (au_ftest_icpup(a->flags, DID_CPUP)) {
19382 +               ia->ia_file = NULL;
19383 +               ia->ia_valid &= ~ATTR_FILE;
19384 +       }
19385 +
19386 +       a->h_path.mnt = au_sbr_mnt(sb, a->btgt);
19387 +       if ((ia->ia_valid & (ATTR_MODE | ATTR_CTIME))
19388 +           == (ATTR_MODE | ATTR_CTIME)) {
19389 +               err = security_path_chmod(&a->h_path, ia->ia_mode);
19390 +               if (unlikely(err))
19391 +                       goto out_unlock;
19392 +       } else if ((ia->ia_valid & (ATTR_UID | ATTR_GID))
19393 +                  && (ia->ia_valid & ATTR_CTIME)) {
19394 +               err = security_path_chown(&a->h_path, ia->ia_uid, ia->ia_gid);
19395 +               if (unlikely(err))
19396 +                       goto out_unlock;
19397 +       }
19398 +
19399 +       if (ia->ia_valid & ATTR_SIZE) {
19400 +               struct file *f;
19401 +
19402 +               if (ia->ia_size < i_size_read(inode))
19403 +                       /* unmap only */
19404 +                       truncate_setsize(inode, ia->ia_size);
19405 +
19406 +               f = NULL;
19407 +               if (ia->ia_valid & ATTR_FILE)
19408 +                       f = ia->ia_file;
19409 +               inode_unlock(a->h_inode);
19410 +               err = vfsub_trunc(&a->h_path, ia->ia_size, ia->ia_valid, f);
19411 +               inode_lock_nested(a->h_inode, AuLsc_I_CHILD);
19412 +       } else {
19413 +               delegated = NULL;
19414 +               while (1) {
19415 +                       err = vfsub_notify_change(&a->h_path, ia, &delegated);
19416 +                       if (delegated) {
19417 +                               err = break_deleg_wait(&delegated);
19418 +                               if (!err)
19419 +                                       continue;
19420 +                       }
19421 +                       break;
19422 +               }
19423 +       }
19424 +       /*
19425 +        * regardless aufs 'acl' option setting.
19426 +        * why don't all acl-aware fs call this func from their ->setattr()?
19427 +        */
19428 +       if (!err && (ia->ia_valid & ATTR_MODE))
19429 +               err = vfsub_acl_chmod(a->h_inode, ia->ia_mode);
19430 +       if (!err)
19431 +               au_cpup_attr_changeable(inode);
19432 +
19433 +out_unlock:
19434 +       inode_unlock(a->h_inode);
19435 +       au_unpin(&a->pin);
19436 +       if (unlikely(err))
19437 +               au_update_dbtop(dentry);
19438 +out_dentry:
19439 +       di_write_unlock(dentry);
19440 +       if (file) {
19441 +               fi_write_unlock(file);
19442 +               ia->ia_file = file;
19443 +               ia->ia_valid |= ATTR_FILE;
19444 +       }
19445 +out_si:
19446 +       si_read_unlock(sb);
19447 +out_kfree:
19448 +       au_delayed_kfree(a);
19449 +out:
19450 +       AuTraceErr(err);
19451 +       return err;
19452 +}
19453 +
19454 +#if IS_ENABLED(CONFIG_AUFS_XATTR) || IS_ENABLED(CONFIG_FS_POSIX_ACL)
19455 +static int au_h_path_to_set_attr(struct dentry *dentry,
19456 +                                struct au_icpup_args *a, struct path *h_path)
19457 +{
19458 +       int err;
19459 +       struct super_block *sb;
19460 +
19461 +       sb = dentry->d_sb;
19462 +       a->udba = au_opt_udba(sb);
19463 +       /* no d_unlinked(), to set UDBA_NONE for root */
19464 +       if (d_unhashed(dentry))
19465 +               a->udba = AuOpt_UDBA_NONE;
19466 +       if (a->udba != AuOpt_UDBA_NONE) {
19467 +               AuDebugOn(IS_ROOT(dentry));
19468 +               err = au_reval_for_attr(dentry, au_sigen(sb));
19469 +               if (unlikely(err))
19470 +                       goto out;
19471 +       }
19472 +       err = au_pin_and_icpup(dentry, /*ia*/NULL, a);
19473 +       if (unlikely(err < 0))
19474 +               goto out;
19475 +
19476 +       h_path->dentry = a->h_path.dentry;
19477 +       h_path->mnt = au_sbr_mnt(sb, a->btgt);
19478 +
19479 +out:
19480 +       return err;
19481 +}
19482 +
19483 +ssize_t au_sxattr(struct dentry *dentry, struct inode *inode,
19484 +                 struct au_sxattr *arg)
19485 +{
19486 +       int err;
19487 +       struct path h_path;
19488 +       struct super_block *sb;
19489 +       struct au_icpup_args *a;
19490 +       struct inode *h_inode;
19491 +
19492 +       IMustLock(inode);
19493 +
19494 +       err = -ENOMEM;
19495 +       a = kzalloc(sizeof(*a), GFP_NOFS);
19496 +       if (unlikely(!a))
19497 +               goto out;
19498 +
19499 +       sb = dentry->d_sb;
19500 +       err = si_read_lock(sb, AuLock_FLUSH | AuLock_NOPLM);
19501 +       if (unlikely(err))
19502 +               goto out_kfree;
19503 +
19504 +       h_path.dentry = NULL;   /* silence gcc */
19505 +       di_write_lock_child(dentry);
19506 +       err = au_h_path_to_set_attr(dentry, a, &h_path);
19507 +       if (unlikely(err))
19508 +               goto out_di;
19509 +
19510 +       inode_unlock(a->h_inode);
19511 +       switch (arg->type) {
19512 +       case AU_XATTR_SET:
19513 +               AuDebugOn(d_is_negative(h_path.dentry));
19514 +               err = vfsub_setxattr(h_path.dentry,
19515 +                                    arg->u.set.name, arg->u.set.value,
19516 +                                    arg->u.set.size, arg->u.set.flags);
19517 +               break;
19518 +       case AU_ACL_SET:
19519 +               err = -EOPNOTSUPP;
19520 +               h_inode = d_inode(h_path.dentry);
19521 +               if (h_inode->i_op->set_acl)
19522 +                       /* this will call posix_acl_update_mode */
19523 +                       err = h_inode->i_op->set_acl(h_inode,
19524 +                                                    arg->u.acl_set.acl,
19525 +                                                    arg->u.acl_set.type);
19526 +               break;
19527 +       }
19528 +       if (!err)
19529 +               au_cpup_attr_timesizes(inode);
19530 +
19531 +       au_unpin(&a->pin);
19532 +       if (unlikely(err))
19533 +               au_update_dbtop(dentry);
19534 +
19535 +out_di:
19536 +       di_write_unlock(dentry);
19537 +       si_read_unlock(sb);
19538 +out_kfree:
19539 +       au_delayed_kfree(a);
19540 +out:
19541 +       AuTraceErr(err);
19542 +       return err;
19543 +}
19544 +#endif
19545 +
19546 +static void au_refresh_iattr(struct inode *inode, struct kstat *st,
19547 +                            unsigned int nlink)
19548 +{
19549 +       unsigned int n;
19550 +
19551 +       inode->i_mode = st->mode;
19552 +       /* don't i_[ug]id_write() here */
19553 +       inode->i_uid = st->uid;
19554 +       inode->i_gid = st->gid;
19555 +       inode->i_atime = st->atime;
19556 +       inode->i_mtime = st->mtime;
19557 +       inode->i_ctime = st->ctime;
19558 +
19559 +       au_cpup_attr_nlink(inode, /*force*/0);
19560 +       if (S_ISDIR(inode->i_mode)) {
19561 +               n = inode->i_nlink;
19562 +               n -= nlink;
19563 +               n += st->nlink;
19564 +               smp_mb(); /* for i_nlink */
19565 +               /* 0 can happen */
19566 +               set_nlink(inode, n);
19567 +       }
19568 +
19569 +       spin_lock(&inode->i_lock);
19570 +       inode->i_blocks = st->blocks;
19571 +       i_size_write(inode, st->size);
19572 +       spin_unlock(&inode->i_lock);
19573 +}
19574 +
19575 +/*
19576 + * common routine for aufs_getattr() and au_getxattr().
19577 + * returns zero or negative (an error).
19578 + * @dentry will be read-locked in success.
19579 + */
19580 +int au_h_path_getattr(struct dentry *dentry, int force, struct path *h_path)
19581 +{
19582 +       int err;
19583 +       unsigned int mnt_flags, sigen;
19584 +       unsigned char udba_none;
19585 +       aufs_bindex_t bindex;
19586 +       struct super_block *sb, *h_sb;
19587 +       struct inode *inode;
19588 +
19589 +       h_path->mnt = NULL;
19590 +       h_path->dentry = NULL;
19591 +
19592 +       err = 0;
19593 +       sb = dentry->d_sb;
19594 +       mnt_flags = au_mntflags(sb);
19595 +       udba_none = !!au_opt_test(mnt_flags, UDBA_NONE);
19596 +
19597 +       /* support fstat(2) */
19598 +       if (!d_unlinked(dentry) && !udba_none) {
19599 +               sigen = au_sigen(sb);
19600 +               err = au_digen_test(dentry, sigen);
19601 +               if (!err) {
19602 +                       di_read_lock_child(dentry, AuLock_IR);
19603 +                       err = au_dbrange_test(dentry);
19604 +                       if (unlikely(err)) {
19605 +                               di_read_unlock(dentry, AuLock_IR);
19606 +                               goto out;
19607 +                       }
19608 +               } else {
19609 +                       AuDebugOn(IS_ROOT(dentry));
19610 +                       di_write_lock_child(dentry);
19611 +                       err = au_dbrange_test(dentry);
19612 +                       if (!err)
19613 +                               err = au_reval_for_attr(dentry, sigen);
19614 +                       if (!err)
19615 +                               di_downgrade_lock(dentry, AuLock_IR);
19616 +                       else {
19617 +                               di_write_unlock(dentry);
19618 +                               goto out;
19619 +                       }
19620 +               }
19621 +       } else
19622 +               di_read_lock_child(dentry, AuLock_IR);
19623 +
19624 +       inode = d_inode(dentry);
19625 +       bindex = au_ibtop(inode);
19626 +       h_path->mnt = au_sbr_mnt(sb, bindex);
19627 +       h_sb = h_path->mnt->mnt_sb;
19628 +       if (!force
19629 +           && !au_test_fs_bad_iattr(h_sb)
19630 +           && udba_none)
19631 +               goto out; /* success */
19632 +
19633 +       if (au_dbtop(dentry) == bindex)
19634 +               h_path->dentry = au_h_dptr(dentry, bindex);
19635 +       else if (au_opt_test(mnt_flags, PLINK) && au_plink_test(inode)) {
19636 +               h_path->dentry = au_plink_lkup(inode, bindex);
19637 +               if (IS_ERR(h_path->dentry))
19638 +                       /* pretending success */
19639 +                       h_path->dentry = NULL;
19640 +               else
19641 +                       dput(h_path->dentry);
19642 +       }
19643 +
19644 +out:
19645 +       return err;
19646 +}
19647 +
19648 +static int aufs_getattr(struct vfsmount *mnt __maybe_unused,
19649 +                       struct dentry *dentry, struct kstat *st)
19650 +{
19651 +       int err;
19652 +       unsigned char positive;
19653 +       struct path h_path;
19654 +       struct inode *inode;
19655 +       struct super_block *sb;
19656 +
19657 +       inode = d_inode(dentry);
19658 +       sb = dentry->d_sb;
19659 +       err = si_read_lock(sb, AuLock_FLUSH | AuLock_NOPLM);
19660 +       if (unlikely(err))
19661 +               goto out;
19662 +       err = au_h_path_getattr(dentry, /*force*/0, &h_path);
19663 +       if (unlikely(err))
19664 +               goto out_si;
19665 +       if (unlikely(!h_path.dentry))
19666 +               /* illegally overlapped or something */
19667 +               goto out_fill; /* pretending success */
19668 +
19669 +       positive = d_is_positive(h_path.dentry);
19670 +       if (positive)
19671 +               err = vfs_getattr(&h_path, st);
19672 +       if (!err) {
19673 +               if (positive)
19674 +                       au_refresh_iattr(inode, st,
19675 +                                        d_inode(h_path.dentry)->i_nlink);
19676 +               goto out_fill; /* success */
19677 +       }
19678 +       AuTraceErr(err);
19679 +       goto out_di;
19680 +
19681 +out_fill:
19682 +       generic_fillattr(inode, st);
19683 +out_di:
19684 +       di_read_unlock(dentry, AuLock_IR);
19685 +out_si:
19686 +       si_read_unlock(sb);
19687 +out:
19688 +       AuTraceErr(err);
19689 +       return err;
19690 +}
19691 +
19692 +/* ---------------------------------------------------------------------- */
19693 +
19694 +static const char *aufs_get_link(struct dentry *dentry, struct inode *inode,
19695 +                                struct delayed_call *done)
19696 +{
19697 +       const char *ret;
19698 +       struct dentry *h_dentry;
19699 +       struct inode *h_inode;
19700 +       int err;
19701 +       aufs_bindex_t bindex;
19702 +
19703 +       ret = NULL; /* suppress a warning */
19704 +       err = -ECHILD;
19705 +       if (!dentry)
19706 +               goto out;
19707 +
19708 +       err = aufs_read_lock(dentry, AuLock_IR | AuLock_GEN);
19709 +       if (unlikely(err))
19710 +               goto out;
19711 +
19712 +       err = au_d_hashed_positive(dentry);
19713 +       if (unlikely(err))
19714 +               goto out_unlock;
19715 +
19716 +       err = -EINVAL;
19717 +       inode = d_inode(dentry);
19718 +       bindex = au_ibtop(inode);
19719 +       h_inode = au_h_iptr(inode, bindex);
19720 +       if (unlikely(!h_inode->i_op->get_link))
19721 +               goto out_unlock;
19722 +
19723 +       err = -EBUSY;
19724 +       h_dentry = NULL;
19725 +       if (au_dbtop(dentry) <= bindex) {
19726 +               h_dentry = au_h_dptr(dentry, bindex);
19727 +               if (h_dentry)
19728 +                       dget(h_dentry);
19729 +       }
19730 +       if (!h_dentry) {
19731 +               h_dentry = d_find_any_alias(h_inode);
19732 +               if (IS_ERR(h_dentry)) {
19733 +                       err = PTR_ERR(h_dentry);
19734 +                       goto out_unlock;
19735 +               }
19736 +       }
19737 +       if (unlikely(!h_dentry))
19738 +               goto out_unlock;
19739 +
19740 +       err = 0;
19741 +       AuDbg("%pf\n", h_inode->i_op->get_link);
19742 +       AuDbgDentry(h_dentry);
19743 +       ret = vfs_get_link(h_dentry, done);
19744 +       dput(h_dentry);
19745 +       if (IS_ERR(ret))
19746 +               err = PTR_ERR(ret);
19747 +
19748 +out_unlock:
19749 +       aufs_read_unlock(dentry, AuLock_IR);
19750 +out:
19751 +       if (unlikely(err))
19752 +               ret = ERR_PTR(err);
19753 +       AuTraceErrPtr(ret);
19754 +       return ret;
19755 +}
19756 +
19757 +/* ---------------------------------------------------------------------- */
19758 +
19759 +static int au_is_special(struct inode *inode)
19760 +{
19761 +       return (inode->i_mode & (S_IFBLK | S_IFCHR | S_IFIFO | S_IFSOCK));
19762 +}
19763 +
19764 +static int aufs_update_time(struct inode *inode, struct timespec *ts, int flags)
19765 +{
19766 +       int err;
19767 +       aufs_bindex_t bindex;
19768 +       struct super_block *sb;
19769 +       struct inode *h_inode;
19770 +       struct vfsmount *h_mnt;
19771 +
19772 +       sb = inode->i_sb;
19773 +       WARN_ONCE((flags & S_ATIME) && !IS_NOATIME(inode),
19774 +                 "unexpected s_flags 0x%lx", sb->s_flags);
19775 +
19776 +       /* mmap_sem might be acquired already, cf. aufs_mmap() */
19777 +       lockdep_off();
19778 +       si_read_lock(sb, AuLock_FLUSH);
19779 +       ii_write_lock_child(inode);
19780 +       lockdep_on();
19781 +
19782 +       err = 0;
19783 +       bindex = au_ibtop(inode);
19784 +       h_inode = au_h_iptr(inode, bindex);
19785 +       if (!au_test_ro(sb, bindex, inode)) {
19786 +               h_mnt = au_sbr_mnt(sb, bindex);
19787 +               err = vfsub_mnt_want_write(h_mnt);
19788 +               if (!err) {
19789 +                       err = vfsub_update_time(h_inode, ts, flags);
19790 +                       vfsub_mnt_drop_write(h_mnt);
19791 +               }
19792 +       } else if (au_is_special(h_inode)) {
19793 +               /*
19794 +                * Never copy-up here.
19795 +                * These special files may already be opened and used for
19796 +                * communicating. If we copied it up, then the communication
19797 +                * would be corrupted.
19798 +                */
19799 +               AuWarn1("timestamps for i%lu are ignored "
19800 +                       "since it is on readonly branch (hi%lu).\n",
19801 +                       inode->i_ino, h_inode->i_ino);
19802 +       } else if (flags & ~S_ATIME) {
19803 +               err = -EIO;
19804 +               AuIOErr1("unexpected flags 0x%x\n", flags);
19805 +               AuDebugOn(1);
19806 +       }
19807 +
19808 +       lockdep_off();
19809 +       if (!err)
19810 +               au_cpup_attr_timesizes(inode);
19811 +       ii_write_unlock(inode);
19812 +       si_read_unlock(sb);
19813 +       lockdep_on();
19814 +
19815 +       if (!err && (flags & S_VERSION))
19816 +               inode_inc_iversion(inode);
19817 +
19818 +       return err;
19819 +}
19820 +
19821 +/* ---------------------------------------------------------------------- */
19822 +
19823 +/* no getattr version will be set by module.c:aufs_init() */
19824 +struct inode_operations aufs_iop_nogetattr[AuIop_Last],
19825 +       aufs_iop[] = {
19826 +       [AuIop_SYMLINK] = {
19827 +               .permission     = aufs_permission,
19828 +#ifdef CONFIG_FS_POSIX_ACL
19829 +               .get_acl        = aufs_get_acl,
19830 +               .set_acl        = aufs_set_acl, /* unsupport for symlink? */
19831 +#endif
19832 +
19833 +               .setattr        = aufs_setattr,
19834 +               .getattr        = aufs_getattr,
19835 +
19836 +#ifdef CONFIG_AUFS_XATTR
19837 +               .listxattr      = aufs_listxattr,
19838 +#endif
19839 +
19840 +               .readlink       = generic_readlink,
19841 +               .get_link       = aufs_get_link,
19842 +
19843 +               /* .update_time = aufs_update_time */
19844 +       },
19845 +       [AuIop_DIR] = {
19846 +               .create         = aufs_create,
19847 +               .lookup         = aufs_lookup,
19848 +               .link           = aufs_link,
19849 +               .unlink         = aufs_unlink,
19850 +               .symlink        = aufs_symlink,
19851 +               .mkdir          = aufs_mkdir,
19852 +               .rmdir          = aufs_rmdir,
19853 +               .mknod          = aufs_mknod,
19854 +               .rename         = aufs_rename,
19855 +
19856 +               .permission     = aufs_permission,
19857 +#ifdef CONFIG_FS_POSIX_ACL
19858 +               .get_acl        = aufs_get_acl,
19859 +               .set_acl        = aufs_set_acl,
19860 +#endif
19861 +
19862 +               .setattr        = aufs_setattr,
19863 +               .getattr        = aufs_getattr,
19864 +
19865 +#ifdef CONFIG_AUFS_XATTR
19866 +               .listxattr      = aufs_listxattr,
19867 +#endif
19868 +
19869 +               .update_time    = aufs_update_time,
19870 +               .atomic_open    = aufs_atomic_open,
19871 +               .tmpfile        = aufs_tmpfile
19872 +       },
19873 +       [AuIop_OTHER] = {
19874 +               .permission     = aufs_permission,
19875 +#ifdef CONFIG_FS_POSIX_ACL
19876 +               .get_acl        = aufs_get_acl,
19877 +               .set_acl        = aufs_set_acl,
19878 +#endif
19879 +
19880 +               .setattr        = aufs_setattr,
19881 +               .getattr        = aufs_getattr,
19882 +
19883 +#ifdef CONFIG_AUFS_XATTR
19884 +               .listxattr      = aufs_listxattr,
19885 +#endif
19886 +
19887 +               .update_time    = aufs_update_time
19888 +       }
19889 +};
19890 diff -urN /usr/share/empty/fs/aufs/i_op_del.c linux/fs/aufs/i_op_del.c
19891 --- /usr/share/empty/fs/aufs/i_op_del.c 1970-01-01 01:00:00.000000000 +0100
19892 +++ linux/fs/aufs/i_op_del.c    2016-10-09 16:55:36.492701639 +0200
19893 @@ -0,0 +1,511 @@
19894 +/*
19895 + * Copyright (C) 2005-2016 Junjiro R. Okajima
19896 + *
19897 + * This program, aufs is free software; you can redistribute it and/or modify
19898 + * it under the terms of the GNU General Public License as published by
19899 + * the Free Software Foundation; either version 2 of the License, or
19900 + * (at your option) any later version.
19901 + *
19902 + * This program is distributed in the hope that it will be useful,
19903 + * but WITHOUT ANY WARRANTY; without even the implied warranty of
19904 + * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
19905 + * GNU General Public License for more details.
19906 + *
19907 + * You should have received a copy of the GNU General Public License
19908 + * along with this program.  If not, see <http://www.gnu.org/licenses/>.
19909 + */
19910 +
19911 +/*
19912 + * inode operations (del entry)
19913 + */
19914 +
19915 +#include "aufs.h"
19916 +
19917 +/*
19918 + * decide if a new whiteout for @dentry is necessary or not.
19919 + * when it is necessary, prepare the parent dir for the upper branch whose
19920 + * branch index is @bcpup for creation. the actual creation of the whiteout will
19921 + * be done by caller.
19922 + * return value:
19923 + * 0: wh is unnecessary
19924 + * plus: wh is necessary
19925 + * minus: error
19926 + */
19927 +int au_wr_dir_need_wh(struct dentry *dentry, int isdir, aufs_bindex_t *bcpup)
19928 +{
19929 +       int need_wh, err;
19930 +       aufs_bindex_t btop;
19931 +       struct super_block *sb;
19932 +
19933 +       sb = dentry->d_sb;
19934 +       btop = au_dbtop(dentry);
19935 +       if (*bcpup < 0) {
19936 +               *bcpup = btop;
19937 +               if (au_test_ro(sb, btop, d_inode(dentry))) {
19938 +                       err = AuWbrCopyup(au_sbi(sb), dentry);
19939 +                       *bcpup = err;
19940 +                       if (unlikely(err < 0))
19941 +                               goto out;
19942 +               }
19943 +       } else
19944 +               AuDebugOn(btop < *bcpup
19945 +                         || au_test_ro(sb, *bcpup, d_inode(dentry)));
19946 +       AuDbg("bcpup %d, btop %d\n", *bcpup, btop);
19947 +
19948 +       if (*bcpup != btop) {
19949 +               err = au_cpup_dirs(dentry, *bcpup);
19950 +               if (unlikely(err))
19951 +                       goto out;
19952 +               need_wh = 1;
19953 +       } else {
19954 +               struct au_dinfo *dinfo, *tmp;
19955 +
19956 +               need_wh = -ENOMEM;
19957 +               dinfo = au_di(dentry);
19958 +               tmp = au_di_alloc(sb, AuLsc_DI_TMP);
19959 +               if (tmp) {
19960 +                       au_di_cp(tmp, dinfo);
19961 +                       au_di_swap(tmp, dinfo);
19962 +                       /* returns the number of positive dentries */
19963 +                       need_wh = au_lkup_dentry(dentry, btop + 1,
19964 +                                                /* AuLkup_IGNORE_PERM */ 0);
19965 +                       au_di_swap(tmp, dinfo);
19966 +                       au_rw_write_unlock(&tmp->di_rwsem);
19967 +                       au_di_free(tmp);
19968 +               }
19969 +       }
19970 +       AuDbg("need_wh %d\n", need_wh);
19971 +       err = need_wh;
19972 +
19973 +out:
19974 +       return err;
19975 +}
19976 +
19977 +/*
19978 + * simple tests for the del-entry operations.
19979 + * following the checks in vfs, plus the parent-child relationship.
19980 + */
19981 +int au_may_del(struct dentry *dentry, aufs_bindex_t bindex,
19982 +              struct dentry *h_parent, int isdir)
19983 +{
19984 +       int err;
19985 +       umode_t h_mode;
19986 +       struct dentry *h_dentry, *h_latest;
19987 +       struct inode *h_inode;
19988 +
19989 +       h_dentry = au_h_dptr(dentry, bindex);
19990 +       if (d_really_is_positive(dentry)) {
19991 +               err = -ENOENT;
19992 +               if (unlikely(d_is_negative(h_dentry)))
19993 +                       goto out;
19994 +               h_inode = d_inode(h_dentry);
19995 +               if (unlikely(!h_inode->i_nlink))
19996 +                       goto out;
19997 +
19998 +               h_mode = h_inode->i_mode;
19999 +               if (!isdir) {
20000 +                       err = -EISDIR;
20001 +                       if (unlikely(S_ISDIR(h_mode)))
20002 +                               goto out;
20003 +               } else if (unlikely(!S_ISDIR(h_mode))) {
20004 +                       err = -ENOTDIR;
20005 +                       goto out;
20006 +               }
20007 +       } else {
20008 +               /* rename(2) case */
20009 +               err = -EIO;
20010 +               if (unlikely(d_is_positive(h_dentry)))
20011 +                       goto out;
20012 +       }
20013 +
20014 +       err = -ENOENT;
20015 +       /* expected parent dir is locked */
20016 +       if (unlikely(h_parent != h_dentry->d_parent))
20017 +               goto out;
20018 +       err = 0;
20019 +
20020 +       /*
20021 +        * rmdir a dir may break the consistency on some filesystem.
20022 +        * let's try heavy test.
20023 +        */
20024 +       err = -EACCES;
20025 +       if (unlikely(!au_opt_test(au_mntflags(dentry->d_sb), DIRPERM1)
20026 +                    && au_test_h_perm(d_inode(h_parent),
20027 +                                      MAY_EXEC | MAY_WRITE)))
20028 +               goto out;
20029 +
20030 +       h_latest = au_sio_lkup_one(&dentry->d_name, h_parent);
20031 +       err = -EIO;
20032 +       if (IS_ERR(h_latest))
20033 +               goto out;
20034 +       if (h_latest == h_dentry)
20035 +               err = 0;
20036 +       dput(h_latest);
20037 +
20038 +out:
20039 +       return err;
20040 +}
20041 +
20042 +/*
20043 + * decide the branch where we operate for @dentry. the branch index will be set
20044 + * @rbcpup. after diciding it, 'pin' it and store the timestamps of the parent
20045 + * dir for reverting.
20046 + * when a new whiteout is necessary, create it.
20047 + */
20048 +static struct dentry*
20049 +lock_hdir_create_wh(struct dentry *dentry, int isdir, aufs_bindex_t *rbcpup,
20050 +                   struct au_dtime *dt, struct au_pin *pin)
20051 +{
20052 +       struct dentry *wh_dentry;
20053 +       struct super_block *sb;
20054 +       struct path h_path;
20055 +       int err, need_wh;
20056 +       unsigned int udba;
20057 +       aufs_bindex_t bcpup;
20058 +
20059 +       need_wh = au_wr_dir_need_wh(dentry, isdir, rbcpup);
20060 +       wh_dentry = ERR_PTR(need_wh);
20061 +       if (unlikely(need_wh < 0))
20062 +               goto out;
20063 +
20064 +       sb = dentry->d_sb;
20065 +       udba = au_opt_udba(sb);
20066 +       bcpup = *rbcpup;
20067 +       err = au_pin(pin, dentry, bcpup, udba,
20068 +                    AuPin_DI_LOCKED | AuPin_MNT_WRITE);
20069 +       wh_dentry = ERR_PTR(err);
20070 +       if (unlikely(err))
20071 +               goto out;
20072 +
20073 +       h_path.dentry = au_pinned_h_parent(pin);
20074 +       if (udba != AuOpt_UDBA_NONE
20075 +           && au_dbtop(dentry) == bcpup) {
20076 +               err = au_may_del(dentry, bcpup, h_path.dentry, isdir);
20077 +               wh_dentry = ERR_PTR(err);
20078 +               if (unlikely(err))
20079 +                       goto out_unpin;
20080 +       }
20081 +
20082 +       h_path.mnt = au_sbr_mnt(sb, bcpup);
20083 +       au_dtime_store(dt, au_pinned_parent(pin), &h_path);
20084 +       wh_dentry = NULL;
20085 +       if (!need_wh)
20086 +               goto out; /* success, no need to create whiteout */
20087 +
20088 +       wh_dentry = au_wh_create(dentry, bcpup, h_path.dentry);
20089 +       if (IS_ERR(wh_dentry))
20090 +               goto out_unpin;
20091 +
20092 +       /* returns with the parent is locked and wh_dentry is dget-ed */
20093 +       goto out; /* success */
20094 +
20095 +out_unpin:
20096 +       au_unpin(pin);
20097 +out:
20098 +       return wh_dentry;
20099 +}
20100 +
20101 +/*
20102 + * when removing a dir, rename it to a unique temporary whiteout-ed name first
20103 + * in order to be revertible and save time for removing many child whiteouts
20104 + * under the dir.
20105 + * returns 1 when there are too many child whiteout and caller should remove
20106 + * them asynchronously. returns 0 when the number of children is enough small to
20107 + * remove now or the branch fs is a remote fs.
20108 + * otherwise return an error.
20109 + */
20110 +static int renwh_and_rmdir(struct dentry *dentry, aufs_bindex_t bindex,
20111 +                          struct au_nhash *whlist, struct inode *dir)
20112 +{
20113 +       int rmdir_later, err, dirwh;
20114 +       struct dentry *h_dentry;
20115 +       struct super_block *sb;
20116 +       struct inode *inode;
20117 +
20118 +       sb = dentry->d_sb;
20119 +       SiMustAnyLock(sb);
20120 +       h_dentry = au_h_dptr(dentry, bindex);
20121 +       err = au_whtmp_ren(h_dentry, au_sbr(sb, bindex));
20122 +       if (unlikely(err))
20123 +               goto out;
20124 +
20125 +       /* stop monitoring */
20126 +       inode = d_inode(dentry);
20127 +       au_hn_free(au_hi(inode, bindex));
20128 +
20129 +       if (!au_test_fs_remote(h_dentry->d_sb)) {
20130 +               dirwh = au_sbi(sb)->si_dirwh;
20131 +               rmdir_later = (dirwh <= 1);
20132 +               if (!rmdir_later)
20133 +                       rmdir_later = au_nhash_test_longer_wh(whlist, bindex,
20134 +                                                             dirwh);
20135 +               if (rmdir_later)
20136 +                       return rmdir_later;
20137 +       }
20138 +
20139 +       err = au_whtmp_rmdir(dir, bindex, h_dentry, whlist);
20140 +       if (unlikely(err)) {
20141 +               AuIOErr("rmdir %pd, b%d failed, %d. ignored\n",
20142 +                       h_dentry, bindex, err);
20143 +               err = 0;
20144 +       }
20145 +
20146 +out:
20147 +       AuTraceErr(err);
20148 +       return err;
20149 +}
20150 +
20151 +/*
20152 + * final procedure for deleting a entry.
20153 + * maintain dentry and iattr.
20154 + */
20155 +static void epilog(struct inode *dir, struct dentry *dentry,
20156 +                  aufs_bindex_t bindex)
20157 +{
20158 +       struct inode *inode;
20159 +
20160 +       inode = d_inode(dentry);
20161 +       d_drop(dentry);
20162 +       inode->i_ctime = dir->i_ctime;
20163 +
20164 +       au_dir_ts(dir, bindex);
20165 +       dir->i_version++;
20166 +}
20167 +
20168 +/*
20169 + * when an error happened, remove the created whiteout and revert everything.
20170 + */
20171 +static int do_revert(int err, struct inode *dir, aufs_bindex_t bindex,
20172 +                    aufs_bindex_t bwh, struct dentry *wh_dentry,
20173 +                    struct dentry *dentry, struct au_dtime *dt)
20174 +{
20175 +       int rerr;
20176 +       struct path h_path = {
20177 +               .dentry = wh_dentry,
20178 +               .mnt    = au_sbr_mnt(dir->i_sb, bindex)
20179 +       };
20180 +
20181 +       rerr = au_wh_unlink_dentry(au_h_iptr(dir, bindex), &h_path, dentry);
20182 +       if (!rerr) {
20183 +               au_set_dbwh(dentry, bwh);
20184 +               au_dtime_revert(dt);
20185 +               return 0;
20186 +       }
20187 +
20188 +       AuIOErr("%pd reverting whiteout failed(%d, %d)\n", dentry, err, rerr);
20189 +       return -EIO;
20190 +}
20191 +
20192 +/* ---------------------------------------------------------------------- */
20193 +
20194 +int aufs_unlink(struct inode *dir, struct dentry *dentry)
20195 +{
20196 +       int err;
20197 +       aufs_bindex_t bwh, bindex, btop;
20198 +       struct inode *inode, *h_dir, *delegated;
20199 +       struct dentry *parent, *wh_dentry;
20200 +       /* to reuduce stack size */
20201 +       struct {
20202 +               struct au_dtime dt;
20203 +               struct au_pin pin;
20204 +               struct path h_path;
20205 +       } *a;
20206 +
20207 +       IMustLock(dir);
20208 +
20209 +       err = -ENOMEM;
20210 +       a = kmalloc(sizeof(*a), GFP_NOFS);
20211 +       if (unlikely(!a))
20212 +               goto out;
20213 +
20214 +       err = aufs_read_lock(dentry, AuLock_DW | AuLock_GEN);
20215 +       if (unlikely(err))
20216 +               goto out_free;
20217 +       err = au_d_hashed_positive(dentry);
20218 +       if (unlikely(err))
20219 +               goto out_unlock;
20220 +       inode = d_inode(dentry);
20221 +       IMustLock(inode);
20222 +       err = -EISDIR;
20223 +       if (unlikely(d_is_dir(dentry)))
20224 +               goto out_unlock; /* possible? */
20225 +
20226 +       btop = au_dbtop(dentry);
20227 +       bwh = au_dbwh(dentry);
20228 +       bindex = -1;
20229 +       parent = dentry->d_parent; /* dir inode is locked */
20230 +       di_write_lock_parent(parent);
20231 +       wh_dentry = lock_hdir_create_wh(dentry, /*isdir*/0, &bindex, &a->dt,
20232 +                                       &a->pin);
20233 +       err = PTR_ERR(wh_dentry);
20234 +       if (IS_ERR(wh_dentry))
20235 +               goto out_parent;
20236 +
20237 +       a->h_path.mnt = au_sbr_mnt(dentry->d_sb, btop);
20238 +       a->h_path.dentry = au_h_dptr(dentry, btop);
20239 +       dget(a->h_path.dentry);
20240 +       if (bindex == btop) {
20241 +               h_dir = au_pinned_h_dir(&a->pin);
20242 +               delegated = NULL;
20243 +               err = vfsub_unlink(h_dir, &a->h_path, &delegated, /*force*/0);
20244 +               if (unlikely(err == -EWOULDBLOCK)) {
20245 +                       pr_warn("cannot retry for NFSv4 delegation"
20246 +                               " for an internal unlink\n");
20247 +                       iput(delegated);
20248 +               }
20249 +       } else {
20250 +               /* dir inode is locked */
20251 +               h_dir = d_inode(wh_dentry->d_parent);
20252 +               IMustLock(h_dir);
20253 +               err = 0;
20254 +       }
20255 +
20256 +       if (!err) {
20257 +               vfsub_drop_nlink(inode);
20258 +               epilog(dir, dentry, bindex);
20259 +
20260 +               /* update target timestamps */
20261 +               if (bindex == btop) {
20262 +                       vfsub_update_h_iattr(&a->h_path, /*did*/NULL);
20263 +                       /*ignore*/
20264 +                       inode->i_ctime = d_inode(a->h_path.dentry)->i_ctime;
20265 +               } else
20266 +                       /* todo: this timestamp may be reverted later */
20267 +                       inode->i_ctime = h_dir->i_ctime;
20268 +               goto out_unpin; /* success */
20269 +       }
20270 +
20271 +       /* revert */
20272 +       if (wh_dentry) {
20273 +               int rerr;
20274 +
20275 +               rerr = do_revert(err, dir, bindex, bwh, wh_dentry, dentry,
20276 +                                &a->dt);
20277 +               if (rerr)
20278 +                       err = rerr;
20279 +       }
20280 +
20281 +out_unpin:
20282 +       au_unpin(&a->pin);
20283 +       dput(wh_dentry);
20284 +       dput(a->h_path.dentry);
20285 +out_parent:
20286 +       di_write_unlock(parent);
20287 +out_unlock:
20288 +       aufs_read_unlock(dentry, AuLock_DW);
20289 +out_free:
20290 +       au_delayed_kfree(a);
20291 +out:
20292 +       return err;
20293 +}
20294 +
20295 +int aufs_rmdir(struct inode *dir, struct dentry *dentry)
20296 +{
20297 +       int err, rmdir_later;
20298 +       aufs_bindex_t bwh, bindex, btop;
20299 +       struct inode *inode;
20300 +       struct dentry *parent, *wh_dentry, *h_dentry;
20301 +       struct au_whtmp_rmdir *args;
20302 +       /* to reuduce stack size */
20303 +       struct {
20304 +               struct au_dtime dt;
20305 +               struct au_pin pin;
20306 +       } *a;
20307 +
20308 +       IMustLock(dir);
20309 +
20310 +       err = -ENOMEM;
20311 +       a = kmalloc(sizeof(*a), GFP_NOFS);
20312 +       if (unlikely(!a))
20313 +               goto out;
20314 +
20315 +       err = aufs_read_lock(dentry, AuLock_DW | AuLock_FLUSH | AuLock_GEN);
20316 +       if (unlikely(err))
20317 +               goto out_free;
20318 +       err = au_alive_dir(dentry);
20319 +       if (unlikely(err))
20320 +               goto out_unlock;
20321 +       inode = d_inode(dentry);
20322 +       IMustLock(inode);
20323 +       err = -ENOTDIR;
20324 +       if (unlikely(!d_is_dir(dentry)))
20325 +               goto out_unlock; /* possible? */
20326 +
20327 +       err = -ENOMEM;
20328 +       args = au_whtmp_rmdir_alloc(dir->i_sb, GFP_NOFS);
20329 +       if (unlikely(!args))
20330 +               goto out_unlock;
20331 +
20332 +       parent = dentry->d_parent; /* dir inode is locked */
20333 +       di_write_lock_parent(parent);
20334 +       err = au_test_empty(dentry, &args->whlist);
20335 +       if (unlikely(err))
20336 +               goto out_parent;
20337 +
20338 +       btop = au_dbtop(dentry);
20339 +       bwh = au_dbwh(dentry);
20340 +       bindex = -1;
20341 +       wh_dentry = lock_hdir_create_wh(dentry, /*isdir*/1, &bindex, &a->dt,
20342 +                                       &a->pin);
20343 +       err = PTR_ERR(wh_dentry);
20344 +       if (IS_ERR(wh_dentry))
20345 +               goto out_parent;
20346 +
20347 +       h_dentry = au_h_dptr(dentry, btop);
20348 +       dget(h_dentry);
20349 +       rmdir_later = 0;
20350 +       if (bindex == btop) {
20351 +               err = renwh_and_rmdir(dentry, btop, &args->whlist, dir);
20352 +               if (err > 0) {
20353 +                       rmdir_later = err;
20354 +                       err = 0;
20355 +               }
20356 +       } else {
20357 +               /* stop monitoring */
20358 +               au_hn_free(au_hi(inode, btop));
20359 +
20360 +               /* dir inode is locked */
20361 +               IMustLock(d_inode(wh_dentry->d_parent));
20362 +               err = 0;
20363 +       }
20364 +
20365 +       if (!err) {
20366 +               vfsub_dead_dir(inode);
20367 +               au_set_dbdiropq(dentry, -1);
20368 +               epilog(dir, dentry, bindex);
20369 +
20370 +               if (rmdir_later) {
20371 +                       au_whtmp_kick_rmdir(dir, btop, h_dentry, args);
20372 +                       args = NULL;
20373 +               }
20374 +
20375 +               goto out_unpin; /* success */
20376 +       }
20377 +
20378 +       /* revert */
20379 +       AuLabel(revert);
20380 +       if (wh_dentry) {
20381 +               int rerr;
20382 +
20383 +               rerr = do_revert(err, dir, bindex, bwh, wh_dentry, dentry,
20384 +                                &a->dt);
20385 +               if (rerr)
20386 +                       err = rerr;
20387 +       }
20388 +
20389 +out_unpin:
20390 +       au_unpin(&a->pin);
20391 +       dput(wh_dentry);
20392 +       dput(h_dentry);
20393 +out_parent:
20394 +       di_write_unlock(parent);
20395 +       if (args)
20396 +               au_whtmp_rmdir_free(args);
20397 +out_unlock:
20398 +       aufs_read_unlock(dentry, AuLock_DW);
20399 +out_free:
20400 +       au_delayed_kfree(a);
20401 +out:
20402 +       AuTraceErr(err);
20403 +       return err;
20404 +}
20405 diff -urN /usr/share/empty/fs/aufs/i_op_ren.c linux/fs/aufs/i_op_ren.c
20406 --- /usr/share/empty/fs/aufs/i_op_ren.c 1970-01-01 01:00:00.000000000 +0100
20407 +++ linux/fs/aufs/i_op_ren.c    2016-12-17 12:28:17.595211562 +0100
20408 @@ -0,0 +1,1165 @@
20409 +/*
20410 + * Copyright (C) 2005-2016 Junjiro R. Okajima
20411 + *
20412 + * This program, aufs is free software; you can redistribute it and/or modify
20413 + * it under the terms of the GNU General Public License as published by
20414 + * the Free Software Foundation; either version 2 of the License, or
20415 + * (at your option) any later version.
20416 + *
20417 + * This program is distributed in the hope that it will be useful,
20418 + * but WITHOUT ANY WARRANTY; without even the implied warranty of
20419 + * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
20420 + * GNU General Public License for more details.
20421 + *
20422 + * You should have received a copy of the GNU General Public License
20423 + * along with this program.  If not, see <http://www.gnu.org/licenses/>.
20424 + */
20425 +
20426 +/*
20427 + * inode operation (rename entry)
20428 + * todo: this is crazy monster
20429 + */
20430 +
20431 +#include "aufs.h"
20432 +
20433 +enum { AuSRC, AuDST, AuSrcDst };
20434 +enum { AuPARENT, AuCHILD, AuParentChild };
20435 +
20436 +#define AuRen_ISDIR_SRC                1
20437 +#define AuRen_ISDIR_DST                (1 << 1)
20438 +#define AuRen_ISSAMEDIR                (1 << 2)
20439 +#define AuRen_WHSRC            (1 << 3)
20440 +#define AuRen_WHDST            (1 << 4)
20441 +#define AuRen_MNT_WRITE                (1 << 5)
20442 +#define AuRen_DT_DSTDIR                (1 << 6)
20443 +#define AuRen_DIROPQ_SRC       (1 << 7)
20444 +#define AuRen_DIROPQ_DST       (1 << 8)
20445 +#define au_ftest_ren(flags, name)      ((flags) & AuRen_##name)
20446 +#define au_fset_ren(flags, name) \
20447 +       do { (flags) |= AuRen_##name; } while (0)
20448 +#define au_fclr_ren(flags, name) \
20449 +       do { (flags) &= ~AuRen_##name; } while (0)
20450 +
20451 +struct au_ren_args {
20452 +       struct {
20453 +               struct dentry *dentry, *h_dentry, *parent, *h_parent,
20454 +                       *wh_dentry;
20455 +               struct inode *dir, *inode;
20456 +               struct au_hinode *hdir, *hinode;
20457 +               struct au_dtime dt[AuParentChild];
20458 +               aufs_bindex_t btop, bdiropq;
20459 +       } sd[AuSrcDst];
20460 +
20461 +#define src_dentry     sd[AuSRC].dentry
20462 +#define src_dir                sd[AuSRC].dir
20463 +#define src_inode      sd[AuSRC].inode
20464 +#define src_h_dentry   sd[AuSRC].h_dentry
20465 +#define src_parent     sd[AuSRC].parent
20466 +#define src_h_parent   sd[AuSRC].h_parent
20467 +#define src_wh_dentry  sd[AuSRC].wh_dentry
20468 +#define src_hdir       sd[AuSRC].hdir
20469 +#define src_hinode     sd[AuSRC].hinode
20470 +#define src_h_dir      sd[AuSRC].hdir->hi_inode
20471 +#define src_dt         sd[AuSRC].dt
20472 +#define src_btop       sd[AuSRC].btop
20473 +#define src_bdiropq    sd[AuSRC].bdiropq
20474 +
20475 +#define dst_dentry     sd[AuDST].dentry
20476 +#define dst_dir                sd[AuDST].dir
20477 +#define dst_inode      sd[AuDST].inode
20478 +#define dst_h_dentry   sd[AuDST].h_dentry
20479 +#define dst_parent     sd[AuDST].parent
20480 +#define dst_h_parent   sd[AuDST].h_parent
20481 +#define dst_wh_dentry  sd[AuDST].wh_dentry
20482 +#define dst_hdir       sd[AuDST].hdir
20483 +#define dst_hinode     sd[AuDST].hinode
20484 +#define dst_h_dir      sd[AuDST].hdir->hi_inode
20485 +#define dst_dt         sd[AuDST].dt
20486 +#define dst_btop       sd[AuDST].btop
20487 +#define dst_bdiropq    sd[AuDST].bdiropq
20488 +
20489 +       struct dentry *h_trap;
20490 +       struct au_branch *br;
20491 +       struct path h_path;
20492 +       struct au_nhash whlist;
20493 +       aufs_bindex_t btgt, src_bwh;
20494 +
20495 +       struct {
20496 +               unsigned short auren_flags;
20497 +               unsigned char flags;    /* syscall parameter */
20498 +               unsigned char exchange;
20499 +       } __packed;
20500 +
20501 +       struct au_whtmp_rmdir *thargs;
20502 +       struct dentry *h_dst;
20503 +};
20504 +
20505 +/* ---------------------------------------------------------------------- */
20506 +
20507 +/*
20508 + * functions for reverting.
20509 + * when an error happened in a single rename systemcall, we should revert
20510 + * everything as if nothing happened.
20511 + * we don't need to revert the copied-up/down the parent dir since they are
20512 + * harmless.
20513 + */
20514 +
20515 +#define RevertFailure(fmt, ...) do { \
20516 +       AuIOErr("revert failure: " fmt " (%d, %d)\n", \
20517 +               ##__VA_ARGS__, err, rerr); \
20518 +       err = -EIO; \
20519 +} while (0)
20520 +
20521 +static void au_ren_do_rev_diropq(int err, struct au_ren_args *a, int idx)
20522 +{
20523 +       int rerr;
20524 +       struct dentry *d;
20525 +#define src_or_dst(member) a->sd[idx].member
20526 +
20527 +       d = src_or_dst(dentry); /* {src,dst}_dentry */
20528 +       au_hn_inode_lock_nested(src_or_dst(hinode), AuLsc_I_CHILD);
20529 +       rerr = au_diropq_remove(d, a->btgt);
20530 +       au_hn_inode_unlock(src_or_dst(hinode));
20531 +       au_set_dbdiropq(d, src_or_dst(bdiropq));
20532 +       if (rerr)
20533 +               RevertFailure("remove diropq %pd", d);
20534 +
20535 +#undef src_or_dst_
20536 +}
20537 +
20538 +static void au_ren_rev_diropq(int err, struct au_ren_args *a)
20539 +{
20540 +       if (au_ftest_ren(a->auren_flags, DIROPQ_SRC))
20541 +               au_ren_do_rev_diropq(err, a, AuSRC);
20542 +       if (au_ftest_ren(a->auren_flags, DIROPQ_DST))
20543 +               au_ren_do_rev_diropq(err, a, AuDST);
20544 +}
20545 +
20546 +static void au_ren_rev_rename(int err, struct au_ren_args *a)
20547 +{
20548 +       int rerr;
20549 +       struct inode *delegated;
20550 +
20551 +       a->h_path.dentry = vfsub_lkup_one(&a->src_dentry->d_name,
20552 +                                         a->src_h_parent);
20553 +       rerr = PTR_ERR(a->h_path.dentry);
20554 +       if (IS_ERR(a->h_path.dentry)) {
20555 +               RevertFailure("lkup one %pd", a->src_dentry);
20556 +               return;
20557 +       }
20558 +
20559 +       delegated = NULL;
20560 +       rerr = vfsub_rename(a->dst_h_dir,
20561 +                           au_h_dptr(a->src_dentry, a->btgt),
20562 +                           a->src_h_dir, &a->h_path, &delegated, a->flags);
20563 +       if (unlikely(rerr == -EWOULDBLOCK)) {
20564 +               pr_warn("cannot retry for NFSv4 delegation"
20565 +                       " for an internal rename\n");
20566 +               iput(delegated);
20567 +       }
20568 +       d_drop(a->h_path.dentry);
20569 +       dput(a->h_path.dentry);
20570 +       /* au_set_h_dptr(a->src_dentry, a->btgt, NULL); */
20571 +       if (rerr)
20572 +               RevertFailure("rename %pd", a->src_dentry);
20573 +}
20574 +
20575 +static void au_ren_rev_whtmp(int err, struct au_ren_args *a)
20576 +{
20577 +       int rerr;
20578 +       struct inode *delegated;
20579 +
20580 +       a->h_path.dentry = vfsub_lkup_one(&a->dst_dentry->d_name,
20581 +                                         a->dst_h_parent);
20582 +       rerr = PTR_ERR(a->h_path.dentry);
20583 +       if (IS_ERR(a->h_path.dentry)) {
20584 +               RevertFailure("lkup one %pd", a->dst_dentry);
20585 +               return;
20586 +       }
20587 +       if (d_is_positive(a->h_path.dentry)) {
20588 +               d_drop(a->h_path.dentry);
20589 +               dput(a->h_path.dentry);
20590 +               return;
20591 +       }
20592 +
20593 +       delegated = NULL;
20594 +       rerr = vfsub_rename(a->dst_h_dir, a->h_dst, a->dst_h_dir, &a->h_path,
20595 +                           &delegated, a->flags);
20596 +       if (unlikely(rerr == -EWOULDBLOCK)) {
20597 +               pr_warn("cannot retry for NFSv4 delegation"
20598 +                       " for an internal rename\n");
20599 +               iput(delegated);
20600 +       }
20601 +       d_drop(a->h_path.dentry);
20602 +       dput(a->h_path.dentry);
20603 +       if (!rerr)
20604 +               au_set_h_dptr(a->dst_dentry, a->btgt, dget(a->h_dst));
20605 +       else
20606 +               RevertFailure("rename %pd", a->h_dst);
20607 +}
20608 +
20609 +static void au_ren_rev_whsrc(int err, struct au_ren_args *a)
20610 +{
20611 +       int rerr;
20612 +
20613 +       a->h_path.dentry = a->src_wh_dentry;
20614 +       rerr = au_wh_unlink_dentry(a->src_h_dir, &a->h_path, a->src_dentry);
20615 +       au_set_dbwh(a->src_dentry, a->src_bwh);
20616 +       if (rerr)
20617 +               RevertFailure("unlink %pd", a->src_wh_dentry);
20618 +}
20619 +#undef RevertFailure
20620 +
20621 +/* ---------------------------------------------------------------------- */
20622 +
20623 +/*
20624 + * when we have to copyup the renaming entry, do it with the rename-target name
20625 + * in order to minimize the cost (the later actual rename is unnecessary).
20626 + * otherwise rename it on the target branch.
20627 + */
20628 +static int au_ren_or_cpup(struct au_ren_args *a)
20629 +{
20630 +       int err;
20631 +       struct dentry *d;
20632 +       struct inode *delegated;
20633 +
20634 +       d = a->src_dentry;
20635 +       if (au_dbtop(d) == a->btgt) {
20636 +               a->h_path.dentry = a->dst_h_dentry;
20637 +               AuDebugOn(au_dbtop(d) != a->btgt);
20638 +               delegated = NULL;
20639 +               err = vfsub_rename(a->src_h_dir, au_h_dptr(d, a->btgt),
20640 +                                  a->dst_h_dir, &a->h_path, &delegated,
20641 +                                  a->flags);
20642 +               if (unlikely(err == -EWOULDBLOCK)) {
20643 +                       pr_warn("cannot retry for NFSv4 delegation"
20644 +                               " for an internal rename\n");
20645 +                       iput(delegated);
20646 +               }
20647 +       } else
20648 +               BUG();
20649 +
20650 +       if (!err && a->h_dst)
20651 +               /* it will be set to dinfo later */
20652 +               dget(a->h_dst);
20653 +
20654 +       return err;
20655 +}
20656 +
20657 +/* cf. aufs_rmdir() */
20658 +static int au_ren_del_whtmp(struct au_ren_args *a)
20659 +{
20660 +       int err;
20661 +       struct inode *dir;
20662 +
20663 +       dir = a->dst_dir;
20664 +       SiMustAnyLock(dir->i_sb);
20665 +       if (!au_nhash_test_longer_wh(&a->whlist, a->btgt,
20666 +                                    au_sbi(dir->i_sb)->si_dirwh)
20667 +           || au_test_fs_remote(a->h_dst->d_sb)) {
20668 +               err = au_whtmp_rmdir(dir, a->btgt, a->h_dst, &a->whlist);
20669 +               if (unlikely(err))
20670 +                       pr_warn("failed removing whtmp dir %pd (%d), "
20671 +                               "ignored.\n", a->h_dst, err);
20672 +       } else {
20673 +               au_nhash_wh_free(&a->thargs->whlist);
20674 +               a->thargs->whlist = a->whlist;
20675 +               a->whlist.nh_num = 0;
20676 +               au_whtmp_kick_rmdir(dir, a->btgt, a->h_dst, a->thargs);
20677 +               dput(a->h_dst);
20678 +               a->thargs = NULL;
20679 +       }
20680 +
20681 +       return 0;
20682 +}
20683 +
20684 +/* make it 'opaque' dir. */
20685 +static int au_ren_do_diropq(struct au_ren_args *a, int idx)
20686 +{
20687 +       int err;
20688 +       struct dentry *d, *diropq;
20689 +#define src_or_dst(member) a->sd[idx].member
20690 +
20691 +       err = 0;
20692 +       d = src_or_dst(dentry); /* {src,dst}_dentry */
20693 +       src_or_dst(bdiropq) = au_dbdiropq(d);
20694 +       src_or_dst(hinode) = au_hi(src_or_dst(inode), a->btgt);
20695 +       au_hn_inode_lock_nested(src_or_dst(hinode), AuLsc_I_CHILD);
20696 +       diropq = au_diropq_create(d, a->btgt);
20697 +       au_hn_inode_unlock(src_or_dst(hinode));
20698 +       if (IS_ERR(diropq))
20699 +               err = PTR_ERR(diropq);
20700 +       else
20701 +               dput(diropq);
20702 +
20703 +#undef src_or_dst_
20704 +       return err;
20705 +}
20706 +
20707 +static int au_ren_diropq(struct au_ren_args *a)
20708 +{
20709 +       int err;
20710 +       unsigned char always;
20711 +       struct dentry *d;
20712 +
20713 +       err = 0;
20714 +       d = a->dst_dentry; /* already renamed on the branch */
20715 +       always = !!au_opt_test(au_mntflags(d->d_sb), ALWAYS_DIROPQ);
20716 +       if (au_ftest_ren(a->auren_flags, ISDIR_SRC)
20717 +           && a->btgt != au_dbdiropq(a->src_dentry)
20718 +           && (a->dst_wh_dentry
20719 +               || a->btgt <= au_dbdiropq(d)
20720 +               /* hide the lower to keep xino */
20721 +               /* the lowers may not be a dir, but we hide them anyway */
20722 +               || a->btgt < au_dbbot(d)
20723 +               || always)) {
20724 +               AuDbg("here\n");
20725 +               err = au_ren_do_diropq(a, AuSRC);
20726 +               if (unlikely(err))
20727 +                       goto out;
20728 +               au_fset_ren(a->auren_flags, DIROPQ_SRC);
20729 +       }
20730 +       if (!a->exchange)
20731 +               goto out; /* success */
20732 +
20733 +       d = a->src_dentry; /* already renamed on the branch */
20734 +       if (au_ftest_ren(a->auren_flags, ISDIR_DST)
20735 +           && a->btgt != au_dbdiropq(a->dst_dentry)
20736 +           && (a->btgt < au_dbdiropq(d)
20737 +               || a->btgt < au_dbbot(d)
20738 +               || always)) {
20739 +               AuDbgDentry(a->src_dentry);
20740 +               AuDbgDentry(a->dst_dentry);
20741 +               err = au_ren_do_diropq(a, AuDST);
20742 +               if (unlikely(err))
20743 +                       goto out_rev_src;
20744 +               au_fset_ren(a->auren_flags, DIROPQ_DST);
20745 +       }
20746 +       goto out; /* success */
20747 +
20748 +out_rev_src:
20749 +       AuDbg("err %d, reverting src\n", err);
20750 +       au_ren_rev_diropq(err, a);
20751 +out:
20752 +       return err;
20753 +}
20754 +
20755 +static int do_rename(struct au_ren_args *a)
20756 +{
20757 +       int err;
20758 +       struct dentry *d, *h_d;
20759 +
20760 +       if (!a->exchange) {
20761 +               /* prepare workqueue args for asynchronous rmdir */
20762 +               h_d = a->dst_h_dentry;
20763 +               if (au_ftest_ren(a->auren_flags, ISDIR_DST)
20764 +                   && d_is_positive(h_d)) {
20765 +                       err = -ENOMEM;
20766 +                       a->thargs = au_whtmp_rmdir_alloc(a->src_dentry->d_sb,
20767 +                                                        GFP_NOFS);
20768 +                       if (unlikely(!a->thargs))
20769 +                               goto out;
20770 +                       a->h_dst = dget(h_d);
20771 +               }
20772 +
20773 +               /* create whiteout for src_dentry */
20774 +               if (au_ftest_ren(a->auren_flags, WHSRC)) {
20775 +                       a->src_bwh = au_dbwh(a->src_dentry);
20776 +                       AuDebugOn(a->src_bwh >= 0);
20777 +                       a->src_wh_dentry = au_wh_create(a->src_dentry, a->btgt,
20778 +                                                       a->src_h_parent);
20779 +                       err = PTR_ERR(a->src_wh_dentry);
20780 +                       if (IS_ERR(a->src_wh_dentry))
20781 +                               goto out_thargs;
20782 +               }
20783 +
20784 +               /* lookup whiteout for dentry */
20785 +               if (au_ftest_ren(a->auren_flags, WHDST)) {
20786 +                       h_d = au_wh_lkup(a->dst_h_parent,
20787 +                                        &a->dst_dentry->d_name, a->br);
20788 +                       err = PTR_ERR(h_d);
20789 +                       if (IS_ERR(h_d))
20790 +                               goto out_whsrc;
20791 +                       if (d_is_negative(h_d))
20792 +                               dput(h_d);
20793 +                       else
20794 +                               a->dst_wh_dentry = h_d;
20795 +               }
20796 +
20797 +               /* rename dentry to tmpwh */
20798 +               if (a->thargs) {
20799 +                       err = au_whtmp_ren(a->dst_h_dentry, a->br);
20800 +                       if (unlikely(err))
20801 +                               goto out_whdst;
20802 +
20803 +                       d = a->dst_dentry;
20804 +                       au_set_h_dptr(d, a->btgt, NULL);
20805 +                       err = au_lkup_neg(d, a->btgt, /*wh*/0);
20806 +                       if (unlikely(err))
20807 +                               goto out_whtmp;
20808 +                       a->dst_h_dentry = au_h_dptr(d, a->btgt);
20809 +               }
20810 +       }
20811 +
20812 +       BUG_ON(d_is_positive(a->dst_h_dentry) && a->src_btop != a->btgt);
20813 +
20814 +       /* rename by vfs_rename or cpup */
20815 +       err = au_ren_or_cpup(a);
20816 +       if (unlikely(err))
20817 +               /* leave the copied-up one */
20818 +               goto out_whtmp;
20819 +
20820 +       /* make dir opaque */
20821 +       err = au_ren_diropq(a);
20822 +       if (unlikely(err))
20823 +               goto out_rename;
20824 +
20825 +       /* update target timestamps */
20826 +       if (a->exchange) {
20827 +               AuDebugOn(au_dbtop(a->dst_dentry) != a->btgt);
20828 +               a->h_path.dentry = au_h_dptr(a->dst_dentry, a->btgt);
20829 +               vfsub_update_h_iattr(&a->h_path, /*did*/NULL); /*ignore*/
20830 +               a->dst_inode->i_ctime = d_inode(a->h_path.dentry)->i_ctime;
20831 +       }
20832 +       AuDebugOn(au_dbtop(a->src_dentry) != a->btgt);
20833 +       a->h_path.dentry = au_h_dptr(a->src_dentry, a->btgt);
20834 +       vfsub_update_h_iattr(&a->h_path, /*did*/NULL); /*ignore*/
20835 +       a->src_inode->i_ctime = d_inode(a->h_path.dentry)->i_ctime;
20836 +
20837 +       if (!a->exchange) {
20838 +               /* remove whiteout for dentry */
20839 +               if (a->dst_wh_dentry) {
20840 +                       a->h_path.dentry = a->dst_wh_dentry;
20841 +                       err = au_wh_unlink_dentry(a->dst_h_dir, &a->h_path,
20842 +                                                 a->dst_dentry);
20843 +                       if (unlikely(err))
20844 +                               goto out_diropq;
20845 +               }
20846 +
20847 +               /* remove whtmp */
20848 +               if (a->thargs)
20849 +                       au_ren_del_whtmp(a); /* ignore this error */
20850 +
20851 +               au_fhsm_wrote(a->src_dentry->d_sb, a->btgt, /*force*/0);
20852 +       }
20853 +       err = 0;
20854 +       goto out_success;
20855 +
20856 +out_diropq:
20857 +       au_ren_rev_diropq(err, a);
20858 +out_rename:
20859 +       au_ren_rev_rename(err, a);
20860 +       dput(a->h_dst);
20861 +out_whtmp:
20862 +       if (a->thargs)
20863 +               au_ren_rev_whtmp(err, a);
20864 +out_whdst:
20865 +       dput(a->dst_wh_dentry);
20866 +       a->dst_wh_dentry = NULL;
20867 +out_whsrc:
20868 +       if (a->src_wh_dentry)
20869 +               au_ren_rev_whsrc(err, a);
20870 +out_success:
20871 +       dput(a->src_wh_dentry);
20872 +       dput(a->dst_wh_dentry);
20873 +out_thargs:
20874 +       if (a->thargs) {
20875 +               dput(a->h_dst);
20876 +               au_whtmp_rmdir_free(a->thargs);
20877 +               a->thargs = NULL;
20878 +       }
20879 +out:
20880 +       return err;
20881 +}
20882 +
20883 +/* ---------------------------------------------------------------------- */
20884 +
20885 +/*
20886 + * test if @dentry dir can be rename destination or not.
20887 + * success means, it is a logically empty dir.
20888 + */
20889 +static int may_rename_dstdir(struct dentry *dentry, struct au_nhash *whlist)
20890 +{
20891 +       return au_test_empty(dentry, whlist);
20892 +}
20893 +
20894 +/*
20895 + * test if @dentry dir can be rename source or not.
20896 + * if it can, return 0 and @children is filled.
20897 + * success means,
20898 + * - it is a logically empty dir.
20899 + * - or, it exists on writable branch and has no children including whiteouts
20900 + *       on the lower branch.
20901 + */
20902 +static int may_rename_srcdir(struct dentry *dentry, aufs_bindex_t btgt)
20903 +{
20904 +       int err;
20905 +       unsigned int rdhash;
20906 +       aufs_bindex_t btop;
20907 +
20908 +       btop = au_dbtop(dentry);
20909 +       if (btop != btgt) {
20910 +               struct au_nhash whlist;
20911 +
20912 +               SiMustAnyLock(dentry->d_sb);
20913 +               rdhash = au_sbi(dentry->d_sb)->si_rdhash;
20914 +               if (!rdhash)
20915 +                       rdhash = au_rdhash_est(au_dir_size(/*file*/NULL,
20916 +                                                          dentry));
20917 +               err = au_nhash_alloc(&whlist, rdhash, GFP_NOFS);
20918 +               if (unlikely(err))
20919 +                       goto out;
20920 +               err = au_test_empty(dentry, &whlist);
20921 +               au_nhash_wh_free(&whlist);
20922 +               goto out;
20923 +       }
20924 +
20925 +       if (btop == au_dbtaildir(dentry))
20926 +               return 0; /* success */
20927 +
20928 +       err = au_test_empty_lower(dentry);
20929 +
20930 +out:
20931 +       if (err == -ENOTEMPTY) {
20932 +               AuWarn1("renaming dir who has child(ren) on multiple branches,"
20933 +                       " is not supported\n");
20934 +               err = -EXDEV;
20935 +       }
20936 +       return err;
20937 +}
20938 +
20939 +/* side effect: sets whlist and h_dentry */
20940 +static int au_ren_may_dir(struct au_ren_args *a)
20941 +{
20942 +       int err;
20943 +       unsigned int rdhash;
20944 +       struct dentry *d;
20945 +
20946 +       d = a->dst_dentry;
20947 +       SiMustAnyLock(d->d_sb);
20948 +
20949 +       err = 0;
20950 +       if (au_ftest_ren(a->auren_flags, ISDIR_DST) && a->dst_inode) {
20951 +               rdhash = au_sbi(d->d_sb)->si_rdhash;
20952 +               if (!rdhash)
20953 +                       rdhash = au_rdhash_est(au_dir_size(/*file*/NULL, d));
20954 +               err = au_nhash_alloc(&a->whlist, rdhash, GFP_NOFS);
20955 +               if (unlikely(err))
20956 +                       goto out;
20957 +
20958 +               if (!a->exchange) {
20959 +                       au_set_dbtop(d, a->dst_btop);
20960 +                       err = may_rename_dstdir(d, &a->whlist);
20961 +                       au_set_dbtop(d, a->btgt);
20962 +               } else
20963 +                       err = may_rename_srcdir(d, a->btgt);
20964 +       }
20965 +       a->dst_h_dentry = au_h_dptr(d, au_dbtop(d));
20966 +       if (unlikely(err))
20967 +               goto out;
20968 +
20969 +       d = a->src_dentry;
20970 +       a->src_h_dentry = au_h_dptr(d, au_dbtop(d));
20971 +       if (au_ftest_ren(a->auren_flags, ISDIR_SRC)) {
20972 +               err = may_rename_srcdir(d, a->btgt);
20973 +               if (unlikely(err)) {
20974 +                       au_nhash_wh_free(&a->whlist);
20975 +                       a->whlist.nh_num = 0;
20976 +               }
20977 +       }
20978 +out:
20979 +       return err;
20980 +}
20981 +
20982 +/* ---------------------------------------------------------------------- */
20983 +
20984 +/*
20985 + * simple tests for rename.
20986 + * following the checks in vfs, plus the parent-child relationship.
20987 + */
20988 +static int au_may_ren(struct au_ren_args *a)
20989 +{
20990 +       int err, isdir;
20991 +       struct inode *h_inode;
20992 +
20993 +       if (a->src_btop == a->btgt) {
20994 +               err = au_may_del(a->src_dentry, a->btgt, a->src_h_parent,
20995 +                                au_ftest_ren(a->auren_flags, ISDIR_SRC));
20996 +               if (unlikely(err))
20997 +                       goto out;
20998 +               err = -EINVAL;
20999 +               if (unlikely(a->src_h_dentry == a->h_trap))
21000 +                       goto out;
21001 +       }
21002 +
21003 +       err = 0;
21004 +       if (a->dst_btop != a->btgt)
21005 +               goto out;
21006 +
21007 +       err = -ENOTEMPTY;
21008 +       if (unlikely(a->dst_h_dentry == a->h_trap))
21009 +               goto out;
21010 +
21011 +       err = -EIO;
21012 +       isdir = !!au_ftest_ren(a->auren_flags, ISDIR_DST);
21013 +       if (d_really_is_negative(a->dst_dentry)) {
21014 +               if (d_is_negative(a->dst_h_dentry))
21015 +                       err = au_may_add(a->dst_dentry, a->btgt,
21016 +                                        a->dst_h_parent, isdir);
21017 +       } else {
21018 +               if (unlikely(d_is_negative(a->dst_h_dentry)))
21019 +                       goto out;
21020 +               h_inode = d_inode(a->dst_h_dentry);
21021 +               if (h_inode->i_nlink)
21022 +                       err = au_may_del(a->dst_dentry, a->btgt,
21023 +                                        a->dst_h_parent, isdir);
21024 +       }
21025 +
21026 +out:
21027 +       if (unlikely(err == -ENOENT || err == -EEXIST))
21028 +               err = -EIO;
21029 +       AuTraceErr(err);
21030 +       return err;
21031 +}
21032 +
21033 +/* ---------------------------------------------------------------------- */
21034 +
21035 +/*
21036 + * locking order
21037 + * (VFS)
21038 + * - src_dir and dir by lock_rename()
21039 + * - inode if exitsts
21040 + * (aufs)
21041 + * - lock all
21042 + *   + src_dentry and dentry by aufs_read_and_write_lock2() which calls,
21043 + *     + si_read_lock
21044 + *     + di_write_lock2_child()
21045 + *       + di_write_lock_child()
21046 + *        + ii_write_lock_child()
21047 + *       + di_write_lock_child2()
21048 + *        + ii_write_lock_child2()
21049 + *     + src_parent and parent
21050 + *       + di_write_lock_parent()
21051 + *        + ii_write_lock_parent()
21052 + *       + di_write_lock_parent2()
21053 + *        + ii_write_lock_parent2()
21054 + *   + lower src_dir and dir by vfsub_lock_rename()
21055 + *   + verify the every relationships between child and parent. if any
21056 + *     of them failed, unlock all and return -EBUSY.
21057 + */
21058 +static void au_ren_unlock(struct au_ren_args *a)
21059 +{
21060 +       vfsub_unlock_rename(a->src_h_parent, a->src_hdir,
21061 +                           a->dst_h_parent, a->dst_hdir);
21062 +       if (au_ftest_ren(a->auren_flags, MNT_WRITE))
21063 +               vfsub_mnt_drop_write(au_br_mnt(a->br));
21064 +}
21065 +
21066 +static int au_ren_lock(struct au_ren_args *a)
21067 +{
21068 +       int err;
21069 +       unsigned int udba;
21070 +
21071 +       err = 0;
21072 +       a->src_h_parent = au_h_dptr(a->src_parent, a->btgt);
21073 +       a->src_hdir = au_hi(a->src_dir, a->btgt);
21074 +       a->dst_h_parent = au_h_dptr(a->dst_parent, a->btgt);
21075 +       a->dst_hdir = au_hi(a->dst_dir, a->btgt);
21076 +
21077 +       err = vfsub_mnt_want_write(au_br_mnt(a->br));
21078 +       if (unlikely(err))
21079 +               goto out;
21080 +       au_fset_ren(a->auren_flags, MNT_WRITE);
21081 +       a->h_trap = vfsub_lock_rename(a->src_h_parent, a->src_hdir,
21082 +                                     a->dst_h_parent, a->dst_hdir);
21083 +       udba = au_opt_udba(a->src_dentry->d_sb);
21084 +       if (unlikely(a->src_hdir->hi_inode != d_inode(a->src_h_parent)
21085 +                    || a->dst_hdir->hi_inode != d_inode(a->dst_h_parent)))
21086 +               err = au_busy_or_stale();
21087 +       if (!err && au_dbtop(a->src_dentry) == a->btgt)
21088 +               err = au_h_verify(a->src_h_dentry, udba,
21089 +                                 d_inode(a->src_h_parent), a->src_h_parent,
21090 +                                 a->br);
21091 +       if (!err && au_dbtop(a->dst_dentry) == a->btgt)
21092 +               err = au_h_verify(a->dst_h_dentry, udba,
21093 +                                 d_inode(a->dst_h_parent), a->dst_h_parent,
21094 +                                 a->br);
21095 +       if (!err)
21096 +               goto out; /* success */
21097 +
21098 +       err = au_busy_or_stale();
21099 +       au_ren_unlock(a);
21100 +
21101 +out:
21102 +       return err;
21103 +}
21104 +
21105 +/* ---------------------------------------------------------------------- */
21106 +
21107 +static void au_ren_refresh_dir(struct au_ren_args *a)
21108 +{
21109 +       struct inode *dir;
21110 +
21111 +       dir = a->dst_dir;
21112 +       dir->i_version++;
21113 +       if (au_ftest_ren(a->auren_flags, ISDIR_SRC)) {
21114 +               /* is this updating defined in POSIX? */
21115 +               au_cpup_attr_timesizes(a->src_inode);
21116 +               au_cpup_attr_nlink(dir, /*force*/1);
21117 +       }
21118 +       au_dir_ts(dir, a->btgt);
21119 +
21120 +       if (a->exchange) {
21121 +               dir = a->src_dir;
21122 +               dir->i_version++;
21123 +               if (au_ftest_ren(a->auren_flags, ISDIR_DST)) {
21124 +                       /* is this updating defined in POSIX? */
21125 +                       au_cpup_attr_timesizes(a->dst_inode);
21126 +                       au_cpup_attr_nlink(dir, /*force*/1);
21127 +               }
21128 +               au_dir_ts(dir, a->btgt);
21129 +       }
21130 +
21131 +       if (au_ftest_ren(a->auren_flags, ISSAMEDIR))
21132 +               return;
21133 +
21134 +       dir = a->src_dir;
21135 +       dir->i_version++;
21136 +       if (au_ftest_ren(a->auren_flags, ISDIR_SRC))
21137 +               au_cpup_attr_nlink(dir, /*force*/1);
21138 +       au_dir_ts(dir, a->btgt);
21139 +}
21140 +
21141 +static void au_ren_refresh(struct au_ren_args *a)
21142 +{
21143 +       aufs_bindex_t bbot, bindex;
21144 +       struct dentry *d, *h_d;
21145 +       struct inode *i, *h_i;
21146 +       struct super_block *sb;
21147 +
21148 +       d = a->dst_dentry;
21149 +       d_drop(d);
21150 +       if (a->h_dst)
21151 +               /* already dget-ed by au_ren_or_cpup() */
21152 +               au_set_h_dptr(d, a->btgt, a->h_dst);
21153 +
21154 +       i = a->dst_inode;
21155 +       if (i) {
21156 +               if (!a->exchange) {
21157 +                       if (!au_ftest_ren(a->auren_flags, ISDIR_DST))
21158 +                               vfsub_drop_nlink(i);
21159 +                       else {
21160 +                               vfsub_dead_dir(i);
21161 +                               au_cpup_attr_timesizes(i);
21162 +                       }
21163 +                       au_update_dbrange(d, /*do_put_zero*/1);
21164 +               } else
21165 +                       au_cpup_attr_nlink(i, /*force*/1);
21166 +       } else {
21167 +               bbot = a->btgt;
21168 +               for (bindex = au_dbtop(d); bindex < bbot; bindex++)
21169 +                       au_set_h_dptr(d, bindex, NULL);
21170 +               bbot = au_dbbot(d);
21171 +               for (bindex = a->btgt + 1; bindex <= bbot; bindex++)
21172 +                       au_set_h_dptr(d, bindex, NULL);
21173 +               au_update_dbrange(d, /*do_put_zero*/0);
21174 +       }
21175 +
21176 +       d = a->src_dentry;
21177 +       if (!a->exchange) {
21178 +               au_set_dbwh(d, -1);
21179 +               bbot = au_dbbot(d);
21180 +               for (bindex = a->btgt + 1; bindex <= bbot; bindex++) {
21181 +                       h_d = au_h_dptr(d, bindex);
21182 +                       if (h_d)
21183 +                               au_set_h_dptr(d, bindex, NULL);
21184 +               }
21185 +               au_set_dbbot(d, a->btgt);
21186 +
21187 +               sb = d->d_sb;
21188 +               i = a->src_inode;
21189 +               if (au_opt_test(au_mntflags(sb), PLINK) && au_plink_test(i))
21190 +                       return; /* success */
21191 +
21192 +               bbot = au_ibbot(i);
21193 +               for (bindex = a->btgt + 1; bindex <= bbot; bindex++) {
21194 +                       h_i = au_h_iptr(i, bindex);
21195 +                       if (h_i) {
21196 +                               au_xino_write(sb, bindex, h_i->i_ino, /*ino*/0);
21197 +                               /* ignore this error */
21198 +                               au_set_h_iptr(i, bindex, NULL, 0);
21199 +                       }
21200 +               }
21201 +               au_set_ibbot(i, a->btgt);
21202 +       }
21203 +               d_drop(a->src_dentry);
21204 +}
21205 +
21206 +/* ---------------------------------------------------------------------- */
21207 +
21208 +/* mainly for link(2) and rename(2) */
21209 +int au_wbr(struct dentry *dentry, aufs_bindex_t btgt)
21210 +{
21211 +       aufs_bindex_t bdiropq, bwh;
21212 +       struct dentry *parent;
21213 +       struct au_branch *br;
21214 +
21215 +       parent = dentry->d_parent;
21216 +       IMustLock(d_inode(parent)); /* dir is locked */
21217 +
21218 +       bdiropq = au_dbdiropq(parent);
21219 +       bwh = au_dbwh(dentry);
21220 +       br = au_sbr(dentry->d_sb, btgt);
21221 +       if (au_br_rdonly(br)
21222 +           || (0 <= bdiropq && bdiropq < btgt)
21223 +           || (0 <= bwh && bwh < btgt))
21224 +               btgt = -1;
21225 +
21226 +       AuDbg("btgt %d\n", btgt);
21227 +       return btgt;
21228 +}
21229 +
21230 +/* sets src_btop, dst_btop and btgt */
21231 +static int au_ren_wbr(struct au_ren_args *a)
21232 +{
21233 +       int err;
21234 +       struct au_wr_dir_args wr_dir_args = {
21235 +               /* .force_btgt  = -1, */
21236 +               .flags          = AuWrDir_ADD_ENTRY
21237 +       };
21238 +
21239 +       a->src_btop = au_dbtop(a->src_dentry);
21240 +       a->dst_btop = au_dbtop(a->dst_dentry);
21241 +       if (au_ftest_ren(a->auren_flags, ISDIR_SRC)
21242 +           || au_ftest_ren(a->auren_flags, ISDIR_DST))
21243 +               au_fset_wrdir(wr_dir_args.flags, ISDIR);
21244 +       wr_dir_args.force_btgt = a->src_btop;
21245 +       if (a->dst_inode && a->dst_btop < a->src_btop)
21246 +               wr_dir_args.force_btgt = a->dst_btop;
21247 +       wr_dir_args.force_btgt = au_wbr(a->dst_dentry, wr_dir_args.force_btgt);
21248 +       err = au_wr_dir(a->dst_dentry, a->src_dentry, &wr_dir_args);
21249 +       a->btgt = err;
21250 +       if (a->exchange)
21251 +               au_update_dbtop(a->dst_dentry);
21252 +
21253 +       return err;
21254 +}
21255 +
21256 +static void au_ren_dt(struct au_ren_args *a)
21257 +{
21258 +       a->h_path.dentry = a->src_h_parent;
21259 +       au_dtime_store(a->src_dt + AuPARENT, a->src_parent, &a->h_path);
21260 +       if (!au_ftest_ren(a->auren_flags, ISSAMEDIR)) {
21261 +               a->h_path.dentry = a->dst_h_parent;
21262 +               au_dtime_store(a->dst_dt + AuPARENT, a->dst_parent, &a->h_path);
21263 +       }
21264 +
21265 +       au_fclr_ren(a->auren_flags, DT_DSTDIR);
21266 +       if (!au_ftest_ren(a->auren_flags, ISDIR_SRC)
21267 +           && !a->exchange)
21268 +               return;
21269 +
21270 +       a->h_path.dentry = a->src_h_dentry;
21271 +       au_dtime_store(a->src_dt + AuCHILD, a->src_dentry, &a->h_path);
21272 +       if (d_is_positive(a->dst_h_dentry)) {
21273 +               au_fset_ren(a->auren_flags, DT_DSTDIR);
21274 +               a->h_path.dentry = a->dst_h_dentry;
21275 +               au_dtime_store(a->dst_dt + AuCHILD, a->dst_dentry, &a->h_path);
21276 +       }
21277 +}
21278 +
21279 +static void au_ren_rev_dt(int err, struct au_ren_args *a)
21280 +{
21281 +       struct dentry *h_d;
21282 +       struct inode *h_inode;
21283 +
21284 +       au_dtime_revert(a->src_dt + AuPARENT);
21285 +       if (!au_ftest_ren(a->auren_flags, ISSAMEDIR))
21286 +               au_dtime_revert(a->dst_dt + AuPARENT);
21287 +
21288 +       if (au_ftest_ren(a->auren_flags, ISDIR_SRC) && err != -EIO) {
21289 +               h_d = a->src_dt[AuCHILD].dt_h_path.dentry;
21290 +               h_inode = d_inode(h_d);
21291 +               inode_lock_nested(h_inode, AuLsc_I_CHILD);
21292 +               au_dtime_revert(a->src_dt + AuCHILD);
21293 +               inode_unlock(h_inode);
21294 +
21295 +               if (au_ftest_ren(a->auren_flags, DT_DSTDIR)) {
21296 +                       h_d = a->dst_dt[AuCHILD].dt_h_path.dentry;
21297 +                       h_inode = d_inode(h_d);
21298 +                       inode_lock_nested(h_inode, AuLsc_I_CHILD);
21299 +                       au_dtime_revert(a->dst_dt + AuCHILD);
21300 +                       inode_unlock(h_inode);
21301 +               }
21302 +       }
21303 +}
21304 +
21305 +/* ---------------------------------------------------------------------- */
21306 +
21307 +int aufs_rename(struct inode *_src_dir, struct dentry *_src_dentry,
21308 +               struct inode *_dst_dir, struct dentry *_dst_dentry,
21309 +               unsigned int _flags)
21310 +{
21311 +       int err, lock_flags;
21312 +       /* reduce stack space */
21313 +       struct au_ren_args *a;
21314 +       struct au_pin pin;
21315 +
21316 +       AuDbg("%pd, %pd, 0x%x\n", _src_dentry, _dst_dentry, _flags);
21317 +       IMustLock(_src_dir);
21318 +       IMustLock(_dst_dir);
21319 +
21320 +       err = -EINVAL;
21321 +       if (unlikely(_flags & RENAME_WHITEOUT))
21322 +               goto out;
21323 +
21324 +       err = -ENOMEM;
21325 +       BUILD_BUG_ON(sizeof(*a) > PAGE_SIZE);
21326 +       a = kzalloc(sizeof(*a), GFP_NOFS);
21327 +       if (unlikely(!a))
21328 +               goto out;
21329 +
21330 +       a->flags = _flags;
21331 +       a->exchange = _flags & RENAME_EXCHANGE;
21332 +       a->src_dir = _src_dir;
21333 +       a->src_dentry = _src_dentry;
21334 +       a->src_inode = NULL;
21335 +       if (d_really_is_positive(a->src_dentry))
21336 +               a->src_inode = d_inode(a->src_dentry);
21337 +       a->src_parent = a->src_dentry->d_parent; /* dir inode is locked */
21338 +       a->dst_dir = _dst_dir;
21339 +       a->dst_dentry = _dst_dentry;
21340 +       a->dst_inode = NULL;
21341 +       if (d_really_is_positive(a->dst_dentry))
21342 +               a->dst_inode = d_inode(a->dst_dentry);
21343 +       a->dst_parent = a->dst_dentry->d_parent; /* dir inode is locked */
21344 +       if (a->dst_inode) {
21345 +               /*
21346 +                * if EXCHANGE && src is non-dir && dst is dir,
21347 +                * dst is not locked.
21348 +                */
21349 +               /* IMustLock(a->dst_inode); */
21350 +               au_igrab(a->dst_inode);
21351 +       }
21352 +
21353 +       err = -ENOTDIR;
21354 +       lock_flags = AuLock_FLUSH | AuLock_NOPLM | AuLock_GEN;
21355 +       if (d_is_dir(a->src_dentry)) {
21356 +               au_fset_ren(a->auren_flags, ISDIR_SRC);
21357 +               if (unlikely(!a->exchange
21358 +                            && d_really_is_positive(a->dst_dentry)
21359 +                            && !d_is_dir(a->dst_dentry)))
21360 +                       goto out_free;
21361 +               lock_flags |= AuLock_DIRS;
21362 +       }
21363 +       if (a->dst_inode && d_is_dir(a->dst_dentry)) {
21364 +               au_fset_ren(a->auren_flags, ISDIR_DST);
21365 +               if (unlikely(!a->exchange
21366 +                            && d_really_is_positive(a->src_dentry)
21367 +                            && !d_is_dir(a->src_dentry)))
21368 +                       goto out_free;
21369 +               lock_flags |= AuLock_DIRS;
21370 +       }
21371 +       err = aufs_read_and_write_lock2(a->dst_dentry, a->src_dentry, lock_flags);
21372 +       if (unlikely(err))
21373 +               goto out_free;
21374 +
21375 +       err = au_d_hashed_positive(a->src_dentry);
21376 +       if (unlikely(err))
21377 +               goto out_unlock;
21378 +       err = -ENOENT;
21379 +       if (a->dst_inode) {
21380 +               /*
21381 +                * If it is a dir, VFS unhash it before this
21382 +                * function. It means we cannot rely upon d_unhashed().
21383 +                */
21384 +               if (unlikely(!a->dst_inode->i_nlink))
21385 +                       goto out_unlock;
21386 +               if (!au_ftest_ren(a->auren_flags, ISDIR_DST)) {
21387 +                       err = au_d_hashed_positive(a->dst_dentry);
21388 +                       if (unlikely(err && !a->exchange))
21389 +                               goto out_unlock;
21390 +               } else if (unlikely(IS_DEADDIR(a->dst_inode)))
21391 +                       goto out_unlock;
21392 +       } else if (unlikely(d_unhashed(a->dst_dentry)))
21393 +               goto out_unlock;
21394 +
21395 +       /*
21396 +        * is it possible?
21397 +        * yes, it happened (in linux-3.3-rcN) but I don't know why.
21398 +        * there may exist a problem somewhere else.
21399 +        */
21400 +       err = -EINVAL;
21401 +       if (unlikely(d_inode(a->dst_parent) == d_inode(a->src_dentry)))
21402 +               goto out_unlock;
21403 +
21404 +       au_fset_ren(a->auren_flags, ISSAMEDIR); /* temporary */
21405 +       di_write_lock_parent(a->dst_parent);
21406 +
21407 +       /* which branch we process */
21408 +       err = au_ren_wbr(a);
21409 +       if (unlikely(err < 0))
21410 +               goto out_parent;
21411 +       a->br = au_sbr(a->dst_dentry->d_sb, a->btgt);
21412 +       a->h_path.mnt = au_br_mnt(a->br);
21413 +
21414 +       /* are they available to be renamed */
21415 +       err = au_ren_may_dir(a);
21416 +       if (unlikely(err))
21417 +               goto out_children;
21418 +
21419 +       /* prepare the writable parent dir on the same branch */
21420 +       if (a->dst_btop == a->btgt) {
21421 +               au_fset_ren(a->auren_flags, WHDST);
21422 +       } else {
21423 +               err = au_cpup_dirs(a->dst_dentry, a->btgt);
21424 +               if (unlikely(err))
21425 +                       goto out_children;
21426 +       }
21427 +
21428 +       err = 0;
21429 +       if (!a->exchange) {
21430 +               if (a->src_dir != a->dst_dir) {
21431 +                       /*
21432 +                        * this temporary unlock is safe,
21433 +                        * because both dir->i_mutex are locked.
21434 +                        */
21435 +                       di_write_unlock(a->dst_parent);
21436 +                       di_write_lock_parent(a->src_parent);
21437 +                       err = au_wr_dir_need_wh(a->src_dentry,
21438 +                                               au_ftest_ren(a->auren_flags,
21439 +                                                            ISDIR_SRC),
21440 +                                               &a->btgt);
21441 +                       di_write_unlock(a->src_parent);
21442 +                       di_write_lock2_parent(a->src_parent, a->dst_parent,
21443 +                                             /*isdir*/1);
21444 +                       au_fclr_ren(a->auren_flags, ISSAMEDIR);
21445 +               } else
21446 +                       err = au_wr_dir_need_wh(a->src_dentry,
21447 +                                               au_ftest_ren(a->auren_flags,
21448 +                                                            ISDIR_SRC),
21449 +                                               &a->btgt);
21450 +       }
21451 +       if (unlikely(err < 0))
21452 +               goto out_children;
21453 +       if (err)
21454 +               au_fset_ren(a->auren_flags, WHSRC);
21455 +
21456 +       /* cpup src */
21457 +       if (a->src_btop != a->btgt) {
21458 +               err = au_pin(&pin, a->src_dentry, a->btgt,
21459 +                            au_opt_udba(a->src_dentry->d_sb),
21460 +                            AuPin_DI_LOCKED | AuPin_MNT_WRITE);
21461 +               if (!err) {
21462 +                       struct au_cp_generic cpg = {
21463 +                               .dentry = a->src_dentry,
21464 +                               .bdst   = a->btgt,
21465 +                               .bsrc   = a->src_btop,
21466 +                               .len    = -1,
21467 +                               .pin    = &pin,
21468 +                               .flags  = AuCpup_DTIME | AuCpup_HOPEN
21469 +                       };
21470 +                       AuDebugOn(au_dbtop(a->src_dentry) != a->src_btop);
21471 +                       err = au_sio_cpup_simple(&cpg);
21472 +                       au_unpin(&pin);
21473 +               }
21474 +               if (unlikely(err))
21475 +                       goto out_children;
21476 +               a->src_btop = a->btgt;
21477 +               a->src_h_dentry = au_h_dptr(a->src_dentry, a->btgt);
21478 +               if (!a->exchange)
21479 +                       au_fset_ren(a->auren_flags, WHSRC);
21480 +       }
21481 +
21482 +       /* cpup dst */
21483 +       if (a->exchange && a->dst_inode
21484 +           && a->dst_btop != a->btgt) {
21485 +               err = au_pin(&pin, a->dst_dentry, a->btgt,
21486 +                            au_opt_udba(a->dst_dentry->d_sb),
21487 +                            AuPin_DI_LOCKED | AuPin_MNT_WRITE);
21488 +               if (!err) {
21489 +                       struct au_cp_generic cpg = {
21490 +                               .dentry = a->dst_dentry,
21491 +                               .bdst   = a->btgt,
21492 +                               .bsrc   = a->dst_btop,
21493 +                               .len    = -1,
21494 +                               .pin    = &pin,
21495 +                               .flags  = AuCpup_DTIME | AuCpup_HOPEN
21496 +                       };
21497 +                       err = au_sio_cpup_simple(&cpg);
21498 +                       au_unpin(&pin);
21499 +               }
21500 +               if (unlikely(err))
21501 +                       goto out_children;
21502 +               a->dst_btop = a->btgt;
21503 +               a->dst_h_dentry = au_h_dptr(a->dst_dentry, a->btgt);
21504 +       }
21505 +
21506 +       /* lock them all */
21507 +       err = au_ren_lock(a);
21508 +       if (unlikely(err))
21509 +               /* leave the copied-up one */
21510 +               goto out_children;
21511 +
21512 +       if (!a->exchange) {
21513 +               if (!au_opt_test(au_mntflags(a->dst_dir->i_sb), UDBA_NONE))
21514 +                       err = au_may_ren(a);
21515 +               else if (unlikely(a->dst_dentry->d_name.len > AUFS_MAX_NAMELEN))
21516 +                       err = -ENAMETOOLONG;
21517 +               if (unlikely(err))
21518 +                       goto out_hdir;
21519 +       }
21520 +
21521 +       /* store timestamps to be revertible */
21522 +       au_ren_dt(a);
21523 +
21524 +       /* here we go */
21525 +       err = do_rename(a);
21526 +       if (unlikely(err))
21527 +               goto out_dt;
21528 +
21529 +       /* update dir attributes */
21530 +       au_ren_refresh_dir(a);
21531 +
21532 +       /* dput/iput all lower dentries */
21533 +       au_ren_refresh(a);
21534 +
21535 +       goto out_hdir; /* success */
21536 +
21537 +out_dt:
21538 +       au_ren_rev_dt(err, a);
21539 +out_hdir:
21540 +       au_ren_unlock(a);
21541 +out_children:
21542 +       au_nhash_wh_free(&a->whlist);
21543 +       if (err && a->dst_inode && a->dst_btop != a->btgt) {
21544 +               AuDbg("btop %d, btgt %d\n", a->dst_btop, a->btgt);
21545 +               au_set_h_dptr(a->dst_dentry, a->btgt, NULL);
21546 +               au_set_dbtop(a->dst_dentry, a->dst_btop);
21547 +       }
21548 +out_parent:
21549 +       if (!err) {
21550 +               if (!a->exchange)
21551 +                       d_move(a->src_dentry, a->dst_dentry);
21552 +               else
21553 +                       d_exchange(a->src_dentry, a->dst_dentry);
21554 +       } else {
21555 +               au_update_dbtop(a->dst_dentry);
21556 +               if (!a->dst_inode)
21557 +                       d_drop(a->dst_dentry);
21558 +       }
21559 +       if (au_ftest_ren(a->auren_flags, ISSAMEDIR))
21560 +               di_write_unlock(a->dst_parent);
21561 +       else
21562 +               di_write_unlock2(a->src_parent, a->dst_parent);
21563 +out_unlock:
21564 +       aufs_read_and_write_unlock2(a->dst_dentry, a->src_dentry);
21565 +out_free:
21566 +       iput(a->dst_inode);
21567 +       if (a->thargs)
21568 +               au_whtmp_rmdir_free(a->thargs);
21569 +       au_delayed_kfree(a);
21570 +out:
21571 +       AuTraceErr(err);
21572 +       return err;
21573 +}
21574 diff -urN /usr/share/empty/fs/aufs/Kconfig linux/fs/aufs/Kconfig
21575 --- /usr/share/empty/fs/aufs/Kconfig    1970-01-01 01:00:00.000000000 +0100
21576 +++ linux/fs/aufs/Kconfig       2016-10-09 16:55:36.482701377 +0200
21577 @@ -0,0 +1,185 @@
21578 +config AUFS_FS
21579 +       tristate "Aufs (Advanced multi layered unification filesystem) support"
21580 +       help
21581 +       Aufs is a stackable unification filesystem such as Unionfs,
21582 +       which unifies several directories and provides a merged single
21583 +       directory.
21584 +       In the early days, aufs was entirely re-designed and
21585 +       re-implemented Unionfs Version 1.x series. Introducing many
21586 +       original ideas, approaches and improvements, it becomes totally
21587 +       different from Unionfs while keeping the basic features.
21588 +
21589 +if AUFS_FS
21590 +choice
21591 +       prompt "Maximum number of branches"
21592 +       default AUFS_BRANCH_MAX_127
21593 +       help
21594 +       Specifies the maximum number of branches (or member directories)
21595 +       in a single aufs. The larger value consumes more system
21596 +       resources and has a minor impact to performance.
21597 +config AUFS_BRANCH_MAX_127
21598 +       bool "127"
21599 +       help
21600 +       Specifies the maximum number of branches (or member directories)
21601 +       in a single aufs. The larger value consumes more system
21602 +       resources and has a minor impact to performance.
21603 +config AUFS_BRANCH_MAX_511
21604 +       bool "511"
21605 +       help
21606 +       Specifies the maximum number of branches (or member directories)
21607 +       in a single aufs. The larger value consumes more system
21608 +       resources and has a minor impact to performance.
21609 +config AUFS_BRANCH_MAX_1023
21610 +       bool "1023"
21611 +       help
21612 +       Specifies the maximum number of branches (or member directories)
21613 +       in a single aufs. The larger value consumes more system
21614 +       resources and has a minor impact to performance.
21615 +config AUFS_BRANCH_MAX_32767
21616 +       bool "32767"
21617 +       help
21618 +       Specifies the maximum number of branches (or member directories)
21619 +       in a single aufs. The larger value consumes more system
21620 +       resources and has a minor impact to performance.
21621 +endchoice
21622 +
21623 +config AUFS_SBILIST
21624 +       bool
21625 +       depends on AUFS_MAGIC_SYSRQ || PROC_FS
21626 +       default y
21627 +       help
21628 +       Automatic configuration for internal use.
21629 +       When aufs supports Magic SysRq or /proc, enabled automatically.
21630 +
21631 +config AUFS_HNOTIFY
21632 +       bool "Detect direct branch access (bypassing aufs)"
21633 +       help
21634 +       If you want to modify files on branches directly, eg. bypassing aufs,
21635 +       and want aufs to detect the changes of them fully, then enable this
21636 +       option and use 'udba=notify' mount option.
21637 +       Currently there is only one available configuration, "fsnotify".
21638 +       It will have a negative impact to the performance.
21639 +       See detail in aufs.5.
21640 +
21641 +choice
21642 +       prompt "method" if AUFS_HNOTIFY
21643 +       default AUFS_HFSNOTIFY
21644 +config AUFS_HFSNOTIFY
21645 +       bool "fsnotify"
21646 +       select FSNOTIFY
21647 +endchoice
21648 +
21649 +config AUFS_EXPORT
21650 +       bool "NFS-exportable aufs"
21651 +       depends on EXPORTFS
21652 +       help
21653 +       If you want to export your mounted aufs via NFS, then enable this
21654 +       option. There are several requirements for this configuration.
21655 +       See detail in aufs.5.
21656 +
21657 +config AUFS_INO_T_64
21658 +       bool
21659 +       depends on AUFS_EXPORT
21660 +       depends on 64BIT && !(ALPHA || S390)
21661 +       default y
21662 +       help
21663 +       Automatic configuration for internal use.
21664 +       /* typedef unsigned long/int __kernel_ino_t */
21665 +       /* alpha and s390x are int */
21666 +
21667 +config AUFS_XATTR
21668 +       bool "support for XATTR/EA (including Security Labels)"
21669 +       help
21670 +       If your branch fs supports XATTR/EA and you want to make them
21671 +       available in aufs too, then enable this opsion and specify the
21672 +       branch attributes for EA.
21673 +       See detail in aufs.5.
21674 +
21675 +config AUFS_FHSM
21676 +       bool "File-based Hierarchical Storage Management"
21677 +       help
21678 +       Hierarchical Storage Management (or HSM) is a well-known feature
21679 +       in the storage world. Aufs provides this feature as file-based.
21680 +       with multiple branches.
21681 +       These multiple branches are prioritized, ie. the topmost one
21682 +       should be the fastest drive and be used heavily.
21683 +
21684 +config AUFS_RDU
21685 +       bool "Readdir in userspace"
21686 +       help
21687 +       Aufs has two methods to provide a merged view for a directory,
21688 +       by a user-space library and by kernel-space natively. The latter
21689 +       is always enabled but sometimes large and slow.
21690 +       If you enable this option, install the library in aufs2-util
21691 +       package, and set some environment variables for your readdir(3),
21692 +       then the work will be handled in user-space which generally
21693 +       shows better performance in most cases.
21694 +       See detail in aufs.5.
21695 +
21696 +config AUFS_SHWH
21697 +       bool "Show whiteouts"
21698 +       help
21699 +       If you want to make the whiteouts in aufs visible, then enable
21700 +       this option and specify 'shwh' mount option. Although it may
21701 +       sounds like philosophy or something, but in technically it
21702 +       simply shows the name of whiteout with keeping its behaviour.
21703 +
21704 +config AUFS_BR_RAMFS
21705 +       bool "Ramfs (initramfs/rootfs) as an aufs branch"
21706 +       help
21707 +       If you want to use ramfs as an aufs branch fs, then enable this
21708 +       option. Generally tmpfs is recommended.
21709 +       Aufs prohibited them to be a branch fs by default, because
21710 +       initramfs becomes unusable after switch_root or something
21711 +       generally. If you sets initramfs as an aufs branch and boot your
21712 +       system by switch_root, you will meet a problem easily since the
21713 +       files in initramfs may be inaccessible.
21714 +       Unless you are going to use ramfs as an aufs branch fs without
21715 +       switch_root or something, leave it N.
21716 +
21717 +config AUFS_BR_FUSE
21718 +       bool "Fuse fs as an aufs branch"
21719 +       depends on FUSE_FS
21720 +       select AUFS_POLL
21721 +       help
21722 +       If you want to use fuse-based userspace filesystem as an aufs
21723 +       branch fs, then enable this option.
21724 +       It implements the internal poll(2) operation which is
21725 +       implemented by fuse only (curretnly).
21726 +
21727 +config AUFS_POLL
21728 +       bool
21729 +       help
21730 +       Automatic configuration for internal use.
21731 +
21732 +config AUFS_BR_HFSPLUS
21733 +       bool "Hfsplus as an aufs branch"
21734 +       depends on HFSPLUS_FS
21735 +       default y
21736 +       help
21737 +       If you want to use hfsplus fs as an aufs branch fs, then enable
21738 +       this option. This option introduces a small overhead at
21739 +       copying-up a file on hfsplus.
21740 +
21741 +config AUFS_BDEV_LOOP
21742 +       bool
21743 +       depends on BLK_DEV_LOOP
21744 +       default y
21745 +       help
21746 +       Automatic configuration for internal use.
21747 +       Convert =[ym] into =y.
21748 +
21749 +config AUFS_DEBUG
21750 +       bool "Debug aufs"
21751 +       help
21752 +       Enable this to compile aufs internal debug code.
21753 +       It will have a negative impact to the performance.
21754 +
21755 +config AUFS_MAGIC_SYSRQ
21756 +       bool
21757 +       depends on AUFS_DEBUG && MAGIC_SYSRQ
21758 +       default y
21759 +       help
21760 +       Automatic configuration for internal use.
21761 +       When aufs supports Magic SysRq, enabled automatically.
21762 +endif
21763 diff -urN /usr/share/empty/fs/aufs/loop.c linux/fs/aufs/loop.c
21764 --- /usr/share/empty/fs/aufs/loop.c     1970-01-01 01:00:00.000000000 +0100
21765 +++ linux/fs/aufs/loop.c        2016-10-09 16:55:38.889431135 +0200
21766 @@ -0,0 +1,147 @@
21767 +/*
21768 + * Copyright (C) 2005-2016 Junjiro R. Okajima
21769 + *
21770 + * This program, aufs is free software; you can redistribute it and/or modify
21771 + * it under the terms of the GNU General Public License as published by
21772 + * the Free Software Foundation; either version 2 of the License, or
21773 + * (at your option) any later version.
21774 + *
21775 + * This program is distributed in the hope that it will be useful,
21776 + * but WITHOUT ANY WARRANTY; without even the implied warranty of
21777 + * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
21778 + * GNU General Public License for more details.
21779 + *
21780 + * You should have received a copy of the GNU General Public License
21781 + * along with this program.  If not, see <http://www.gnu.org/licenses/>.
21782 + */
21783 +
21784 +/*
21785 + * support for loopback block device as a branch
21786 + */
21787 +
21788 +#include "aufs.h"
21789 +
21790 +/* added into drivers/block/loop.c */
21791 +static struct file *(*backing_file_func)(struct super_block *sb);
21792 +
21793 +/*
21794 + * test if two lower dentries have overlapping branches.
21795 + */
21796 +int au_test_loopback_overlap(struct super_block *sb, struct dentry *h_adding)
21797 +{
21798 +       struct super_block *h_sb;
21799 +       struct file *backing_file;
21800 +
21801 +       if (unlikely(!backing_file_func)) {
21802 +               /* don't load "loop" module here */
21803 +               backing_file_func = symbol_get(loop_backing_file);
21804 +               if (unlikely(!backing_file_func))
21805 +                       /* "loop" module is not loaded */
21806 +                       return 0;
21807 +       }
21808 +
21809 +       h_sb = h_adding->d_sb;
21810 +       backing_file = backing_file_func(h_sb);
21811 +       if (!backing_file)
21812 +               return 0;
21813 +
21814 +       h_adding = backing_file->f_path.dentry;
21815 +       /*
21816 +        * h_adding can be local NFS.
21817 +        * in this case aufs cannot detect the loop.
21818 +        */
21819 +       if (unlikely(h_adding->d_sb == sb))
21820 +               return 1;
21821 +       return !!au_test_subdir(h_adding, sb->s_root);
21822 +}
21823 +
21824 +/* true if a kernel thread named 'loop[0-9].*' accesses a file */
21825 +int au_test_loopback_kthread(void)
21826 +{
21827 +       int ret;
21828 +       struct task_struct *tsk = current;
21829 +       char c, comm[sizeof(tsk->comm)];
21830 +
21831 +       ret = 0;
21832 +       if (tsk->flags & PF_KTHREAD) {
21833 +               get_task_comm(comm, tsk);
21834 +               c = comm[4];
21835 +               ret = ('0' <= c && c <= '9'
21836 +                      && !strncmp(comm, "loop", 4));
21837 +       }
21838 +
21839 +       return ret;
21840 +}
21841 +
21842 +/* ---------------------------------------------------------------------- */
21843 +
21844 +#define au_warn_loopback_step  16
21845 +static int au_warn_loopback_nelem = au_warn_loopback_step;
21846 +static unsigned long *au_warn_loopback_array;
21847 +
21848 +void au_warn_loopback(struct super_block *h_sb)
21849 +{
21850 +       int i, new_nelem;
21851 +       unsigned long *a, magic;
21852 +       static DEFINE_SPINLOCK(spin);
21853 +
21854 +       magic = h_sb->s_magic;
21855 +       spin_lock(&spin);
21856 +       a = au_warn_loopback_array;
21857 +       for (i = 0; i < au_warn_loopback_nelem && *a; i++)
21858 +               if (a[i] == magic) {
21859 +                       spin_unlock(&spin);
21860 +                       return;
21861 +               }
21862 +
21863 +       /* h_sb is new to us, print it */
21864 +       if (i < au_warn_loopback_nelem) {
21865 +               a[i] = magic;
21866 +               goto pr;
21867 +       }
21868 +
21869 +       /* expand the array */
21870 +       new_nelem = au_warn_loopback_nelem + au_warn_loopback_step;
21871 +       a = au_kzrealloc(au_warn_loopback_array,
21872 +                        au_warn_loopback_nelem * sizeof(unsigned long),
21873 +                        new_nelem * sizeof(unsigned long), GFP_ATOMIC,
21874 +                        /*may_shrink*/0);
21875 +       if (a) {
21876 +               au_warn_loopback_nelem = new_nelem;
21877 +               au_warn_loopback_array = a;
21878 +               a[i] = magic;
21879 +               goto pr;
21880 +       }
21881 +
21882 +       spin_unlock(&spin);
21883 +       AuWarn1("realloc failed, ignored\n");
21884 +       return;
21885 +
21886 +pr:
21887 +       spin_unlock(&spin);
21888 +       pr_warn("you may want to try another patch for loopback file "
21889 +               "on %s(0x%lx) branch\n", au_sbtype(h_sb), magic);
21890 +}
21891 +
21892 +int au_loopback_init(void)
21893 +{
21894 +       int err;
21895 +       struct super_block *sb __maybe_unused;
21896 +
21897 +       BUILD_BUG_ON(sizeof(sb->s_magic) != sizeof(unsigned long));
21898 +
21899 +       err = 0;
21900 +       au_warn_loopback_array = kcalloc(au_warn_loopback_step,
21901 +                                        sizeof(unsigned long), GFP_NOFS);
21902 +       if (unlikely(!au_warn_loopback_array))
21903 +               err = -ENOMEM;
21904 +
21905 +       return err;
21906 +}
21907 +
21908 +void au_loopback_fin(void)
21909 +{
21910 +       if (backing_file_func)
21911 +               symbol_put(loop_backing_file);
21912 +       au_delayed_kfree(au_warn_loopback_array);
21913 +}
21914 diff -urN /usr/share/empty/fs/aufs/loop.h linux/fs/aufs/loop.h
21915 --- /usr/share/empty/fs/aufs/loop.h     1970-01-01 01:00:00.000000000 +0100
21916 +++ linux/fs/aufs/loop.h        2016-10-09 16:55:36.492701639 +0200
21917 @@ -0,0 +1,52 @@
21918 +/*
21919 + * Copyright (C) 2005-2016 Junjiro R. Okajima
21920 + *
21921 + * This program, aufs is free software; you can redistribute it and/or modify
21922 + * it under the terms of the GNU General Public License as published by
21923 + * the Free Software Foundation; either version 2 of the License, or
21924 + * (at your option) any later version.
21925 + *
21926 + * This program is distributed in the hope that it will be useful,
21927 + * but WITHOUT ANY WARRANTY; without even the implied warranty of
21928 + * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
21929 + * GNU General Public License for more details.
21930 + *
21931 + * You should have received a copy of the GNU General Public License
21932 + * along with this program.  If not, see <http://www.gnu.org/licenses/>.
21933 + */
21934 +
21935 +/*
21936 + * support for loopback mount as a branch
21937 + */
21938 +
21939 +#ifndef __AUFS_LOOP_H__
21940 +#define __AUFS_LOOP_H__
21941 +
21942 +#ifdef __KERNEL__
21943 +
21944 +struct dentry;
21945 +struct super_block;
21946 +
21947 +#ifdef CONFIG_AUFS_BDEV_LOOP
21948 +/* drivers/block/loop.c */
21949 +struct file *loop_backing_file(struct super_block *sb);
21950 +
21951 +/* loop.c */
21952 +int au_test_loopback_overlap(struct super_block *sb, struct dentry *h_adding);
21953 +int au_test_loopback_kthread(void);
21954 +void au_warn_loopback(struct super_block *h_sb);
21955 +
21956 +int au_loopback_init(void);
21957 +void au_loopback_fin(void);
21958 +#else
21959 +AuStubInt0(au_test_loopback_overlap, struct super_block *sb,
21960 +          struct dentry *h_adding)
21961 +AuStubInt0(au_test_loopback_kthread, void)
21962 +AuStubVoid(au_warn_loopback, struct super_block *h_sb)
21963 +
21964 +AuStubInt0(au_loopback_init, void)
21965 +AuStubVoid(au_loopback_fin, void)
21966 +#endif /* BLK_DEV_LOOP */
21967 +
21968 +#endif /* __KERNEL__ */
21969 +#endif /* __AUFS_LOOP_H__ */
21970 diff -urN /usr/share/empty/fs/aufs/magic.mk linux/fs/aufs/magic.mk
21971 --- /usr/share/empty/fs/aufs/magic.mk   1970-01-01 01:00:00.000000000 +0100
21972 +++ linux/fs/aufs/magic.mk      2016-10-09 16:55:36.492701639 +0200
21973 @@ -0,0 +1,30 @@
21974 +
21975 +# defined in ${srctree}/fs/fuse/inode.c
21976 +# tristate
21977 +ifdef CONFIG_FUSE_FS
21978 +ccflags-y += -DFUSE_SUPER_MAGIC=0x65735546
21979 +endif
21980 +
21981 +# defined in ${srctree}/fs/xfs/xfs_sb.h
21982 +# tristate
21983 +ifdef CONFIG_XFS_FS
21984 +ccflags-y += -DXFS_SB_MAGIC=0x58465342
21985 +endif
21986 +
21987 +# defined in ${srctree}/fs/configfs/mount.c
21988 +# tristate
21989 +ifdef CONFIG_CONFIGFS_FS
21990 +ccflags-y += -DCONFIGFS_MAGIC=0x62656570
21991 +endif
21992 +
21993 +# defined in ${srctree}/fs/ubifs/ubifs.h
21994 +# tristate
21995 +ifdef CONFIG_UBIFS_FS
21996 +ccflags-y += -DUBIFS_SUPER_MAGIC=0x24051905
21997 +endif
21998 +
21999 +# defined in ${srctree}/fs/hfsplus/hfsplus_raw.h
22000 +# tristate
22001 +ifdef CONFIG_HFSPLUS_FS
22002 +ccflags-y += -DHFSPLUS_SUPER_MAGIC=0x482b
22003 +endif
22004 diff -urN /usr/share/empty/fs/aufs/Makefile linux/fs/aufs/Makefile
22005 --- /usr/share/empty/fs/aufs/Makefile   1970-01-01 01:00:00.000000000 +0100
22006 +++ linux/fs/aufs/Makefile      2016-10-09 16:55:36.486034798 +0200
22007 @@ -0,0 +1,44 @@
22008 +
22009 +include ${src}/magic.mk
22010 +ifeq (${CONFIG_AUFS_FS},m)
22011 +include ${src}/conf.mk
22012 +endif
22013 +-include ${src}/priv_def.mk
22014 +
22015 +# cf. include/linux/kernel.h
22016 +# enable pr_debug
22017 +ccflags-y += -DDEBUG
22018 +# sparse requires the full pathname
22019 +ifdef M
22020 +ccflags-y += -include ${M}/../../include/uapi/linux/aufs_type.h
22021 +else
22022 +ccflags-y += -include ${srctree}/include/uapi/linux/aufs_type.h
22023 +endif
22024 +
22025 +obj-$(CONFIG_AUFS_FS) += aufs.o
22026 +aufs-y := module.o sbinfo.o super.o branch.o xino.o sysaufs.o opts.o \
22027 +       wkq.o vfsub.o dcsub.o \
22028 +       cpup.o whout.o wbr_policy.o \
22029 +       dinfo.o dentry.o \
22030 +       dynop.o \
22031 +       finfo.o file.o f_op.o \
22032 +       dir.o vdir.o \
22033 +       iinfo.o inode.o i_op.o i_op_add.o i_op_del.o i_op_ren.o \
22034 +       mvdown.o ioctl.o
22035 +
22036 +# all are boolean
22037 +aufs-$(CONFIG_PROC_FS) += procfs.o plink.o
22038 +aufs-$(CONFIG_SYSFS) += sysfs.o
22039 +aufs-$(CONFIG_DEBUG_FS) += dbgaufs.o
22040 +aufs-$(CONFIG_AUFS_BDEV_LOOP) += loop.o
22041 +aufs-$(CONFIG_AUFS_HNOTIFY) += hnotify.o
22042 +aufs-$(CONFIG_AUFS_HFSNOTIFY) += hfsnotify.o
22043 +aufs-$(CONFIG_AUFS_EXPORT) += export.o
22044 +aufs-$(CONFIG_AUFS_XATTR) += xattr.o
22045 +aufs-$(CONFIG_FS_POSIX_ACL) += posix_acl.o
22046 +aufs-$(CONFIG_AUFS_FHSM) += fhsm.o
22047 +aufs-$(CONFIG_AUFS_POLL) += poll.o
22048 +aufs-$(CONFIG_AUFS_RDU) += rdu.o
22049 +aufs-$(CONFIG_AUFS_BR_HFSPLUS) += hfsplus.o
22050 +aufs-$(CONFIG_AUFS_DEBUG) += debug.o
22051 +aufs-$(CONFIG_AUFS_MAGIC_SYSRQ) += sysrq.o
22052 diff -urN /usr/share/empty/fs/aufs/module.c linux/fs/aufs/module.c
22053 --- /usr/share/empty/fs/aufs/module.c   1970-01-01 01:00:00.000000000 +0100
22054 +++ linux/fs/aufs/module.c      2016-10-09 16:55:38.889431135 +0200
22055 @@ -0,0 +1,333 @@
22056 +/*
22057 + * Copyright (C) 2005-2016 Junjiro R. Okajima
22058 + *
22059 + * This program, aufs is free software; you can redistribute it and/or modify
22060 + * it under the terms of the GNU General Public License as published by
22061 + * the Free Software Foundation; either version 2 of the License, or
22062 + * (at your option) any later version.
22063 + *
22064 + * This program is distributed in the hope that it will be useful,
22065 + * but WITHOUT ANY WARRANTY; without even the implied warranty of
22066 + * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
22067 + * GNU General Public License for more details.
22068 + *
22069 + * You should have received a copy of the GNU General Public License
22070 + * along with this program.  If not, see <http://www.gnu.org/licenses/>.
22071 + */
22072 +
22073 +/*
22074 + * module global variables and operations
22075 + */
22076 +
22077 +#include <linux/module.h>
22078 +#include <linux/seq_file.h>
22079 +#include "aufs.h"
22080 +
22081 +/* shrinkable realloc */
22082 +void *au_krealloc(void *p, unsigned int new_sz, gfp_t gfp, int may_shrink)
22083 +{
22084 +       size_t sz;
22085 +       int diff;
22086 +
22087 +       sz = 0;
22088 +       diff = -1;
22089 +       if (p) {
22090 +#if 0 /* unused */
22091 +               if (!new_sz) {
22092 +                       au_delayed_kfree(p);
22093 +                       p = NULL;
22094 +                       goto out;
22095 +               }
22096 +#else
22097 +               AuDebugOn(!new_sz);
22098 +#endif
22099 +               sz = ksize(p);
22100 +               diff = au_kmidx_sub(sz, new_sz);
22101 +       }
22102 +       if (sz && !diff)
22103 +               goto out;
22104 +
22105 +       if (sz < new_sz)
22106 +               /* expand or SLOB */
22107 +               p = krealloc(p, new_sz, gfp);
22108 +       else if (new_sz < sz && may_shrink) {
22109 +               /* shrink */
22110 +               void *q;
22111 +
22112 +               q = kmalloc(new_sz, gfp);
22113 +               if (q) {
22114 +                       if (p) {
22115 +                               memcpy(q, p, new_sz);
22116 +                               au_delayed_kfree(p);
22117 +                       }
22118 +                       p = q;
22119 +               } else
22120 +                       p = NULL;
22121 +       }
22122 +
22123 +out:
22124 +       return p;
22125 +}
22126 +
22127 +void *au_kzrealloc(void *p, unsigned int nused, unsigned int new_sz, gfp_t gfp,
22128 +                  int may_shrink)
22129 +{
22130 +       p = au_krealloc(p, new_sz, gfp, may_shrink);
22131 +       if (p && new_sz > nused)
22132 +               memset(p + nused, 0, new_sz - nused);
22133 +       return p;
22134 +}
22135 +
22136 +/* ---------------------------------------------------------------------- */
22137 +/*
22138 + * aufs caches
22139 + */
22140 +
22141 +struct au_dfree au_dfree;
22142 +
22143 +/* delayed free */
22144 +static void au_do_dfree(struct work_struct *work __maybe_unused)
22145 +{
22146 +       struct llist_head *head;
22147 +       struct llist_node *node, *next;
22148 +
22149 +#define AU_CACHE_DFREE_DO_BODY(name, idx, lnode) do {                  \
22150 +               head = &au_dfree.cache[AuCache_##idx].llist;            \
22151 +               node = llist_del_all(head);                             \
22152 +               for (; node; node = next) {                             \
22153 +                       struct au_##name *p                             \
22154 +                               = llist_entry(node, struct au_##name,   \
22155 +                                             lnode);                   \
22156 +                       next = llist_next(node);                        \
22157 +                       au_cache_free_##name(p);                        \
22158 +               }                                                       \
22159 +       } while (0)
22160 +
22161 +       AU_CACHE_DFREE_DO_BODY(dinfo, DINFO, di_lnode);
22162 +       AU_CACHE_DFREE_DO_BODY(icntnr, ICNTNR, lnode);
22163 +       AU_CACHE_DFREE_DO_BODY(finfo, FINFO, fi_lnode);
22164 +       AU_CACHE_DFREE_DO_BODY(vdir, VDIR, vd_lnode);
22165 +       AU_CACHE_DFREE_DO_BODY(vdir_dehstr, DEHSTR, lnode);
22166 +#ifdef CONFIG_AUFS_HNOTIFY
22167 +       AU_CACHE_DFREE_DO_BODY(hnotify, HNOTIFY, hn_lnode);
22168 +#endif
22169 +
22170 +#define AU_DFREE_DO_BODY(llist, func) do {             \
22171 +               node = llist_del_all(llist);            \
22172 +               for (; node; node = next) {             \
22173 +                       next = llist_next(node);        \
22174 +                       func(node);                     \
22175 +               }                                       \
22176 +       } while (0)
22177 +
22178 +       AU_DFREE_DO_BODY(au_dfree.llist + AU_DFREE_KFREE, kfree);
22179 +       AU_DFREE_DO_BODY(au_dfree.llist + AU_DFREE_FREE_PAGE, au_free_page);
22180 +
22181 +#undef AU_CACHE_DFREE_DO_BODY
22182 +#undef AU_DFREE_DO_BODY
22183 +}
22184 +
22185 +AU_CACHE_DFREE_FUNC(dinfo, DINFO, di_lnode);
22186 +AU_CACHE_DFREE_FUNC(icntnr, ICNTNR, lnode);
22187 +AU_CACHE_DFREE_FUNC(finfo, FINFO, fi_lnode);
22188 +AU_CACHE_DFREE_FUNC(vdir, VDIR, vd_lnode);
22189 +AU_CACHE_DFREE_FUNC(vdir_dehstr, DEHSTR, lnode);
22190 +
22191 +static void au_cache_fin(void)
22192 +{
22193 +       int i;
22194 +       struct au_cache *cp;
22195 +
22196 +       /*
22197 +        * Make sure all delayed rcu free inodes are flushed before we
22198 +        * destroy cache.
22199 +        */
22200 +       rcu_barrier();
22201 +
22202 +       /* excluding AuCache_HNOTIFY */
22203 +       BUILD_BUG_ON(AuCache_HNOTIFY + 1 != AuCache_Last);
22204 +       flush_delayed_work(&au_dfree.dwork);
22205 +       for (i = 0; i < AuCache_HNOTIFY; i++) {
22206 +               cp = au_dfree.cache + i;
22207 +               AuDebugOn(!llist_empty(&cp->llist));
22208 +               kmem_cache_destroy(cp->cache);
22209 +               cp->cache = NULL;
22210 +       }
22211 +}
22212 +
22213 +static int __init au_cache_init(void)
22214 +{
22215 +       struct au_cache *cp;
22216 +
22217 +       cp = au_dfree.cache;
22218 +       cp[AuCache_DINFO].cache = AuCacheCtor(au_dinfo, au_di_init_once);
22219 +       if (cp[AuCache_DINFO].cache)
22220 +               /* SLAB_DESTROY_BY_RCU */
22221 +               cp[AuCache_ICNTNR].cache = AuCacheCtor(au_icntnr,
22222 +                                                      au_icntnr_init_once);
22223 +       if (cp[AuCache_ICNTNR].cache)
22224 +               cp[AuCache_FINFO].cache = AuCacheCtor(au_finfo,
22225 +                                                     au_fi_init_once);
22226 +       if (cp[AuCache_FINFO].cache)
22227 +               cp[AuCache_VDIR].cache = AuCache(au_vdir);
22228 +       if (cp[AuCache_VDIR].cache)
22229 +               cp[AuCache_DEHSTR].cache = AuCache(au_vdir_dehstr);
22230 +       if (cp[AuCache_DEHSTR].cache)
22231 +               return 0;
22232 +
22233 +       au_cache_fin();
22234 +       return -ENOMEM;
22235 +}
22236 +
22237 +/* ---------------------------------------------------------------------- */
22238 +
22239 +int au_dir_roflags;
22240 +
22241 +#ifdef CONFIG_AUFS_SBILIST
22242 +/*
22243 + * iterate_supers_type() doesn't protect us from
22244 + * remounting (branch management)
22245 + */
22246 +struct au_sphlhead au_sbilist;
22247 +#endif
22248 +
22249 +/*
22250 + * functions for module interface.
22251 + */
22252 +MODULE_LICENSE("GPL");
22253 +/* MODULE_LICENSE("GPL v2"); */
22254 +MODULE_AUTHOR("Junjiro R. Okajima <aufs-users@lists.sourceforge.net>");
22255 +MODULE_DESCRIPTION(AUFS_NAME
22256 +       " -- Advanced multi layered unification filesystem");
22257 +MODULE_VERSION(AUFS_VERSION);
22258 +MODULE_ALIAS_FS(AUFS_NAME);
22259 +
22260 +/* this module parameter has no meaning when SYSFS is disabled */
22261 +int sysaufs_brs = 1;
22262 +MODULE_PARM_DESC(brs, "use <sysfs>/fs/aufs/si_*/brN");
22263 +module_param_named(brs, sysaufs_brs, int, S_IRUGO);
22264 +
22265 +/* this module parameter has no meaning when USER_NS is disabled */
22266 +bool au_userns;
22267 +MODULE_PARM_DESC(allow_userns, "allow unprivileged to mount under userns");
22268 +module_param_named(allow_userns, au_userns, bool, S_IRUGO);
22269 +
22270 +/* ---------------------------------------------------------------------- */
22271 +
22272 +static char au_esc_chars[0x20 + 3]; /* 0x01-0x20, backslash, del, and NULL */
22273 +
22274 +int au_seq_path(struct seq_file *seq, struct path *path)
22275 +{
22276 +       int err;
22277 +
22278 +       err = seq_path(seq, path, au_esc_chars);
22279 +       if (err > 0)
22280 +               err = 0;
22281 +       else if (err < 0)
22282 +               err = -ENOMEM;
22283 +
22284 +       return err;
22285 +}
22286 +
22287 +/* ---------------------------------------------------------------------- */
22288 +
22289 +static int __init aufs_init(void)
22290 +{
22291 +       int err, i;
22292 +       char *p;
22293 +       struct au_cache *cp;
22294 +
22295 +       p = au_esc_chars;
22296 +       for (i = 1; i <= ' '; i++)
22297 +               *p++ = i;
22298 +       *p++ = '\\';
22299 +       *p++ = '\x7f';
22300 +       *p = 0;
22301 +
22302 +       au_dir_roflags = au_file_roflags(O_DIRECTORY | O_LARGEFILE);
22303 +
22304 +       memcpy(aufs_iop_nogetattr, aufs_iop, sizeof(aufs_iop));
22305 +       for (i = 0; i < AuIop_Last; i++)
22306 +               aufs_iop_nogetattr[i].getattr = NULL;
22307 +
22308 +       /* First, initialize au_dfree */
22309 +       for (i = 0; i < AuCache_Last; i++) {    /* including hnotify */
22310 +               cp = au_dfree.cache + i;
22311 +               cp->cache = NULL;
22312 +               init_llist_head(&cp->llist);
22313 +       }
22314 +       for (i = 0; i < AU_DFREE_Last; i++)
22315 +               init_llist_head(au_dfree.llist + i);
22316 +       INIT_DELAYED_WORK(&au_dfree.dwork, au_do_dfree);
22317 +
22318 +       au_sbilist_init();
22319 +       sysaufs_brs_init();
22320 +       au_debug_init();
22321 +       au_dy_init();
22322 +       err = sysaufs_init();
22323 +       if (unlikely(err))
22324 +               goto out;
22325 +       err = au_procfs_init();
22326 +       if (unlikely(err))
22327 +               goto out_sysaufs;
22328 +       err = au_wkq_init();
22329 +       if (unlikely(err))
22330 +               goto out_procfs;
22331 +       err = au_loopback_init();
22332 +       if (unlikely(err))
22333 +               goto out_wkq;
22334 +       err = au_hnotify_init();
22335 +       if (unlikely(err))
22336 +               goto out_loopback;
22337 +       err = au_sysrq_init();
22338 +       if (unlikely(err))
22339 +               goto out_hin;
22340 +       err = au_cache_init();
22341 +       if (unlikely(err))
22342 +               goto out_sysrq;
22343 +
22344 +       aufs_fs_type.fs_flags |= au_userns ? FS_USERNS_MOUNT : 0;
22345 +       err = register_filesystem(&aufs_fs_type);
22346 +       if (unlikely(err))
22347 +               goto out_cache;
22348 +
22349 +       /* since we define pr_fmt, call printk directly */
22350 +       printk(KERN_INFO AUFS_NAME " " AUFS_VERSION "\n");
22351 +       goto out; /* success */
22352 +
22353 +out_cache:
22354 +       au_cache_fin();
22355 +out_sysrq:
22356 +       au_sysrq_fin();
22357 +out_hin:
22358 +       au_hnotify_fin();
22359 +out_loopback:
22360 +       au_loopback_fin();
22361 +out_wkq:
22362 +       au_wkq_fin();
22363 +out_procfs:
22364 +       au_procfs_fin();
22365 +out_sysaufs:
22366 +       sysaufs_fin();
22367 +       au_dy_fin();
22368 +       flush_delayed_work(&au_dfree.dwork);
22369 +out:
22370 +       return err;
22371 +}
22372 +
22373 +static void __exit aufs_exit(void)
22374 +{
22375 +       unregister_filesystem(&aufs_fs_type);
22376 +       au_cache_fin();
22377 +       au_sysrq_fin();
22378 +       au_hnotify_fin();
22379 +       au_loopback_fin();
22380 +       au_wkq_fin();
22381 +       au_procfs_fin();
22382 +       sysaufs_fin();
22383 +       au_dy_fin();
22384 +       flush_delayed_work(&au_dfree.dwork);
22385 +}
22386 +
22387 +module_init(aufs_init);
22388 +module_exit(aufs_exit);
22389 diff -urN /usr/share/empty/fs/aufs/module.h linux/fs/aufs/module.h
22390 --- /usr/share/empty/fs/aufs/module.h   1970-01-01 01:00:00.000000000 +0100
22391 +++ linux/fs/aufs/module.h      2016-10-09 16:55:38.889431135 +0200
22392 @@ -0,0 +1,156 @@
22393 +/*
22394 + * Copyright (C) 2005-2016 Junjiro R. Okajima
22395 + *
22396 + * This program, aufs is free software; you can redistribute it and/or modify
22397 + * it under the terms of the GNU General Public License as published by
22398 + * the Free Software Foundation; either version 2 of the License, or
22399 + * (at your option) any later version.
22400 + *
22401 + * This program is distributed in the hope that it will be useful,
22402 + * but WITHOUT ANY WARRANTY; without even the implied warranty of
22403 + * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
22404 + * GNU General Public License for more details.
22405 + *
22406 + * You should have received a copy of the GNU General Public License
22407 + * along with this program.  If not, see <http://www.gnu.org/licenses/>.
22408 + */
22409 +
22410 +/*
22411 + * module initialization and module-global
22412 + */
22413 +
22414 +#ifndef __AUFS_MODULE_H__
22415 +#define __AUFS_MODULE_H__
22416 +
22417 +#ifdef __KERNEL__
22418 +
22419 +#include <linux/slab.h>
22420 +#include "debug.h"
22421 +
22422 +struct path;
22423 +struct seq_file;
22424 +
22425 +/* module parameters */
22426 +extern int sysaufs_brs;
22427 +extern bool au_userns;
22428 +
22429 +/* ---------------------------------------------------------------------- */
22430 +
22431 +extern int au_dir_roflags;
22432 +
22433 +void *au_krealloc(void *p, unsigned int new_sz, gfp_t gfp, int may_shrink);
22434 +void *au_kzrealloc(void *p, unsigned int nused, unsigned int new_sz, gfp_t gfp,
22435 +                  int may_shrink);
22436 +
22437 +static inline int au_kmidx_sub(size_t sz, size_t new_sz)
22438 +{
22439 +#ifndef CONFIG_SLOB
22440 +       return kmalloc_index(sz) - kmalloc_index(new_sz);
22441 +#else
22442 +       return -1; /* SLOB is untested */
22443 +#endif
22444 +}
22445 +
22446 +int au_seq_path(struct seq_file *seq, struct path *path);
22447 +
22448 +#ifdef CONFIG_PROC_FS
22449 +/* procfs.c */
22450 +int __init au_procfs_init(void);
22451 +void au_procfs_fin(void);
22452 +#else
22453 +AuStubInt0(au_procfs_init, void);
22454 +AuStubVoid(au_procfs_fin, void);
22455 +#endif
22456 +
22457 +/* ---------------------------------------------------------------------- */
22458 +
22459 +/* kmem cache and delayed free */
22460 +enum {
22461 +       AuCache_DINFO,
22462 +       AuCache_ICNTNR,
22463 +       AuCache_FINFO,
22464 +       AuCache_VDIR,
22465 +       AuCache_DEHSTR,
22466 +       AuCache_HNOTIFY, /* must be last */
22467 +       AuCache_Last
22468 +};
22469 +
22470 +enum {
22471 +       AU_DFREE_KFREE,
22472 +       AU_DFREE_FREE_PAGE,
22473 +       AU_DFREE_Last
22474 +};
22475 +
22476 +struct au_cache {
22477 +       struct kmem_cache       *cache;
22478 +       struct llist_head       llist;  /* delayed free */
22479 +};
22480 +
22481 +/*
22482 + * in order to reduce the cost of the internal timer, consolidate all the
22483 + * delayed free works into a single delayed_work.
22484 + */
22485 +struct au_dfree {
22486 +       struct au_cache         cache[AuCache_Last];
22487 +       struct llist_head       llist[AU_DFREE_Last];
22488 +       struct delayed_work     dwork;
22489 +};
22490 +
22491 +extern struct au_dfree au_dfree;
22492 +
22493 +#define AuCacheFlags           (SLAB_RECLAIM_ACCOUNT | SLAB_MEM_SPREAD)
22494 +#define AuCache(type)          KMEM_CACHE(type, AuCacheFlags)
22495 +#define AuCacheCtor(type, ctor)        \
22496 +       kmem_cache_create(#type, sizeof(struct type), \
22497 +                         __alignof__(struct type), AuCacheFlags, ctor)
22498 +
22499 +#define AU_DFREE_DELAY         msecs_to_jiffies(10)
22500 +#define AU_DFREE_BODY(lnode, llist) do {                               \
22501 +               if (llist_add(lnode, llist))                            \
22502 +                       schedule_delayed_work(&au_dfree.dwork,          \
22503 +                                             AU_DFREE_DELAY);          \
22504 +       } while (0)
22505 +#define AU_CACHE_DFREE_FUNC(name, idx, lnode)                          \
22506 +       void au_cache_dfree_##name(struct au_##name *p)                 \
22507 +       {                                                               \
22508 +               struct au_cache *cp = au_dfree.cache + AuCache_##idx;   \
22509 +               AU_DFREE_BODY(&p->lnode, &cp->llist);                   \
22510 +       }
22511 +
22512 +#define AuCacheFuncs(name, index) \
22513 +static inline struct au_##name *au_cache_alloc_##name(void) \
22514 +{ return kmem_cache_alloc(au_dfree.cache[AuCache_##index].cache, GFP_NOFS); } \
22515 +static inline void au_cache_free_##name(struct au_##name *p) \
22516 +{ kmem_cache_free(au_dfree.cache[AuCache_##index].cache, p); } \
22517 +void au_cache_dfree_##name(struct au_##name *p)
22518 +
22519 +AuCacheFuncs(dinfo, DINFO);
22520 +AuCacheFuncs(icntnr, ICNTNR);
22521 +AuCacheFuncs(finfo, FINFO);
22522 +AuCacheFuncs(vdir, VDIR);
22523 +AuCacheFuncs(vdir_dehstr, DEHSTR);
22524 +#ifdef CONFIG_AUFS_HNOTIFY
22525 +AuCacheFuncs(hnotify, HNOTIFY);
22526 +#endif
22527 +
22528 +static inline void au_delayed_kfree(const void *p)
22529 +{
22530 +       AuDebugOn(!p);
22531 +       AuDebugOn(ksize(p) < sizeof(struct llist_node));
22532 +
22533 +       AU_DFREE_BODY((void *)p, au_dfree.llist + AU_DFREE_KFREE);
22534 +}
22535 +
22536 +/* cast only */
22537 +static inline void au_free_page(void *p)
22538 +{
22539 +       free_page((unsigned long)p);
22540 +}
22541 +
22542 +static inline void au_delayed_free_page(unsigned long addr)
22543 +{
22544 +       AU_DFREE_BODY((void *)addr, au_dfree.llist + AU_DFREE_FREE_PAGE);
22545 +}
22546 +
22547 +#endif /* __KERNEL__ */
22548 +#endif /* __AUFS_MODULE_H__ */
22549 diff -urN /usr/share/empty/fs/aufs/mvdown.c linux/fs/aufs/mvdown.c
22550 --- /usr/share/empty/fs/aufs/mvdown.c   1970-01-01 01:00:00.000000000 +0100
22551 +++ linux/fs/aufs/mvdown.c      2016-10-09 16:55:36.492701639 +0200
22552 @@ -0,0 +1,704 @@
22553 +/*
22554 + * Copyright (C) 2011-2016 Junjiro R. Okajima
22555 + *
22556 + * This program, aufs is free software; you can redistribute it and/or modify
22557 + * it under the terms of the GNU General Public License as published by
22558 + * the Free Software Foundation; either version 2 of the License, or
22559 + * (at your option) any later version.
22560 + *
22561 + * This program is distributed in the hope that it will be useful,
22562 + * but WITHOUT ANY WARRANTY; without even the implied warranty of
22563 + * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
22564 + * GNU General Public License for more details.
22565 + *
22566 + * You should have received a copy of the GNU General Public License
22567 + * along with this program.  If not, see <http://www.gnu.org/licenses/>.
22568 + */
22569 +
22570 +/*
22571 + * move-down, opposite of copy-up
22572 + */
22573 +
22574 +#include "aufs.h"
22575 +
22576 +struct au_mvd_args {
22577 +       struct {
22578 +               struct super_block *h_sb;
22579 +               struct dentry *h_parent;
22580 +               struct au_hinode *hdir;
22581 +               struct inode *h_dir, *h_inode;
22582 +               struct au_pin pin;
22583 +       } info[AUFS_MVDOWN_NARRAY];
22584 +
22585 +       struct aufs_mvdown mvdown;
22586 +       struct dentry *dentry, *parent;
22587 +       struct inode *inode, *dir;
22588 +       struct super_block *sb;
22589 +       aufs_bindex_t bopq, bwh, bfound;
22590 +       unsigned char rename_lock;
22591 +};
22592 +
22593 +#define mvd_errno              mvdown.au_errno
22594 +#define mvd_bsrc               mvdown.stbr[AUFS_MVDOWN_UPPER].bindex
22595 +#define mvd_src_brid           mvdown.stbr[AUFS_MVDOWN_UPPER].brid
22596 +#define mvd_bdst               mvdown.stbr[AUFS_MVDOWN_LOWER].bindex
22597 +#define mvd_dst_brid           mvdown.stbr[AUFS_MVDOWN_LOWER].brid
22598 +
22599 +#define mvd_h_src_sb           info[AUFS_MVDOWN_UPPER].h_sb
22600 +#define mvd_h_src_parent       info[AUFS_MVDOWN_UPPER].h_parent
22601 +#define mvd_hdir_src           info[AUFS_MVDOWN_UPPER].hdir
22602 +#define mvd_h_src_dir          info[AUFS_MVDOWN_UPPER].h_dir
22603 +#define mvd_h_src_inode                info[AUFS_MVDOWN_UPPER].h_inode
22604 +#define mvd_pin_src            info[AUFS_MVDOWN_UPPER].pin
22605 +
22606 +#define mvd_h_dst_sb           info[AUFS_MVDOWN_LOWER].h_sb
22607 +#define mvd_h_dst_parent       info[AUFS_MVDOWN_LOWER].h_parent
22608 +#define mvd_hdir_dst           info[AUFS_MVDOWN_LOWER].hdir
22609 +#define mvd_h_dst_dir          info[AUFS_MVDOWN_LOWER].h_dir
22610 +#define mvd_h_dst_inode                info[AUFS_MVDOWN_LOWER].h_inode
22611 +#define mvd_pin_dst            info[AUFS_MVDOWN_LOWER].pin
22612 +
22613 +#define AU_MVD_PR(flag, ...) do {                      \
22614 +               if (flag)                               \
22615 +                       pr_err(__VA_ARGS__);            \
22616 +       } while (0)
22617 +
22618 +static int find_lower_writable(struct au_mvd_args *a)
22619 +{
22620 +       struct super_block *sb;
22621 +       aufs_bindex_t bindex, bbot;
22622 +       struct au_branch *br;
22623 +
22624 +       sb = a->sb;
22625 +       bindex = a->mvd_bsrc;
22626 +       bbot = au_sbbot(sb);
22627 +       if (a->mvdown.flags & AUFS_MVDOWN_FHSM_LOWER)
22628 +               for (bindex++; bindex <= bbot; bindex++) {
22629 +                       br = au_sbr(sb, bindex);
22630 +                       if (au_br_fhsm(br->br_perm)
22631 +                           && (!(au_br_sb(br)->s_flags & MS_RDONLY)))
22632 +                               return bindex;
22633 +               }
22634 +       else if (!(a->mvdown.flags & AUFS_MVDOWN_ROLOWER))
22635 +               for (bindex++; bindex <= bbot; bindex++) {
22636 +                       br = au_sbr(sb, bindex);
22637 +                       if (!au_br_rdonly(br))
22638 +                               return bindex;
22639 +               }
22640 +       else
22641 +               for (bindex++; bindex <= bbot; bindex++) {
22642 +                       br = au_sbr(sb, bindex);
22643 +                       if (!(au_br_sb(br)->s_flags & MS_RDONLY)) {
22644 +                               if (au_br_rdonly(br))
22645 +                                       a->mvdown.flags
22646 +                                               |= AUFS_MVDOWN_ROLOWER_R;
22647 +                               return bindex;
22648 +                       }
22649 +               }
22650 +
22651 +       return -1;
22652 +}
22653 +
22654 +/* make the parent dir on bdst */
22655 +static int au_do_mkdir(const unsigned char dmsg, struct au_mvd_args *a)
22656 +{
22657 +       int err;
22658 +
22659 +       err = 0;
22660 +       a->mvd_hdir_src = au_hi(a->dir, a->mvd_bsrc);
22661 +       a->mvd_hdir_dst = au_hi(a->dir, a->mvd_bdst);
22662 +       a->mvd_h_src_parent = au_h_dptr(a->parent, a->mvd_bsrc);
22663 +       a->mvd_h_dst_parent = NULL;
22664 +       if (au_dbbot(a->parent) >= a->mvd_bdst)
22665 +               a->mvd_h_dst_parent = au_h_dptr(a->parent, a->mvd_bdst);
22666 +       if (!a->mvd_h_dst_parent) {
22667 +               err = au_cpdown_dirs(a->dentry, a->mvd_bdst);
22668 +               if (unlikely(err)) {
22669 +                       AU_MVD_PR(dmsg, "cpdown_dirs failed\n");
22670 +                       goto out;
22671 +               }
22672 +               a->mvd_h_dst_parent = au_h_dptr(a->parent, a->mvd_bdst);
22673 +       }
22674 +
22675 +out:
22676 +       AuTraceErr(err);
22677 +       return err;
22678 +}
22679 +
22680 +/* lock them all */
22681 +static int au_do_lock(const unsigned char dmsg, struct au_mvd_args *a)
22682 +{
22683 +       int err;
22684 +       struct dentry *h_trap;
22685 +
22686 +       a->mvd_h_src_sb = au_sbr_sb(a->sb, a->mvd_bsrc);
22687 +       a->mvd_h_dst_sb = au_sbr_sb(a->sb, a->mvd_bdst);
22688 +       err = au_pin(&a->mvd_pin_dst, a->dentry, a->mvd_bdst,
22689 +                    au_opt_udba(a->sb),
22690 +                    AuPin_MNT_WRITE | AuPin_DI_LOCKED);
22691 +       AuTraceErr(err);
22692 +       if (unlikely(err)) {
22693 +               AU_MVD_PR(dmsg, "pin_dst failed\n");
22694 +               goto out;
22695 +       }
22696 +
22697 +       if (a->mvd_h_src_sb != a->mvd_h_dst_sb) {
22698 +               a->rename_lock = 0;
22699 +               au_pin_init(&a->mvd_pin_src, a->dentry, a->mvd_bsrc,
22700 +                           AuLsc_DI_PARENT, AuLsc_I_PARENT3,
22701 +                           au_opt_udba(a->sb),
22702 +                           AuPin_MNT_WRITE | AuPin_DI_LOCKED);
22703 +               err = au_do_pin(&a->mvd_pin_src);
22704 +               AuTraceErr(err);
22705 +               a->mvd_h_src_dir = d_inode(a->mvd_h_src_parent);
22706 +               if (unlikely(err)) {
22707 +                       AU_MVD_PR(dmsg, "pin_src failed\n");
22708 +                       goto out_dst;
22709 +               }
22710 +               goto out; /* success */
22711 +       }
22712 +
22713 +       a->rename_lock = 1;
22714 +       au_pin_hdir_unlock(&a->mvd_pin_dst);
22715 +       err = au_pin(&a->mvd_pin_src, a->dentry, a->mvd_bsrc,
22716 +                    au_opt_udba(a->sb),
22717 +                    AuPin_MNT_WRITE | AuPin_DI_LOCKED);
22718 +       AuTraceErr(err);
22719 +       a->mvd_h_src_dir = d_inode(a->mvd_h_src_parent);
22720 +       if (unlikely(err)) {
22721 +               AU_MVD_PR(dmsg, "pin_src failed\n");
22722 +               au_pin_hdir_lock(&a->mvd_pin_dst);
22723 +               goto out_dst;
22724 +       }
22725 +       au_pin_hdir_unlock(&a->mvd_pin_src);
22726 +       h_trap = vfsub_lock_rename(a->mvd_h_src_parent, a->mvd_hdir_src,
22727 +                                  a->mvd_h_dst_parent, a->mvd_hdir_dst);
22728 +       if (h_trap) {
22729 +               err = (h_trap != a->mvd_h_src_parent);
22730 +               if (err)
22731 +                       err = (h_trap != a->mvd_h_dst_parent);
22732 +       }
22733 +       BUG_ON(err); /* it should never happen */
22734 +       if (unlikely(a->mvd_h_src_dir != au_pinned_h_dir(&a->mvd_pin_src))) {
22735 +               err = -EBUSY;
22736 +               AuTraceErr(err);
22737 +               vfsub_unlock_rename(a->mvd_h_src_parent, a->mvd_hdir_src,
22738 +                                   a->mvd_h_dst_parent, a->mvd_hdir_dst);
22739 +               au_pin_hdir_lock(&a->mvd_pin_src);
22740 +               au_unpin(&a->mvd_pin_src);
22741 +               au_pin_hdir_lock(&a->mvd_pin_dst);
22742 +               goto out_dst;
22743 +       }
22744 +       goto out; /* success */
22745 +
22746 +out_dst:
22747 +       au_unpin(&a->mvd_pin_dst);
22748 +out:
22749 +       AuTraceErr(err);
22750 +       return err;
22751 +}
22752 +
22753 +static void au_do_unlock(const unsigned char dmsg, struct au_mvd_args *a)
22754 +{
22755 +       if (!a->rename_lock)
22756 +               au_unpin(&a->mvd_pin_src);
22757 +       else {
22758 +               vfsub_unlock_rename(a->mvd_h_src_parent, a->mvd_hdir_src,
22759 +                                   a->mvd_h_dst_parent, a->mvd_hdir_dst);
22760 +               au_pin_hdir_lock(&a->mvd_pin_src);
22761 +               au_unpin(&a->mvd_pin_src);
22762 +               au_pin_hdir_lock(&a->mvd_pin_dst);
22763 +       }
22764 +       au_unpin(&a->mvd_pin_dst);
22765 +}
22766 +
22767 +/* copy-down the file */
22768 +static int au_do_cpdown(const unsigned char dmsg, struct au_mvd_args *a)
22769 +{
22770 +       int err;
22771 +       struct au_cp_generic cpg = {
22772 +               .dentry = a->dentry,
22773 +               .bdst   = a->mvd_bdst,
22774 +               .bsrc   = a->mvd_bsrc,
22775 +               .len    = -1,
22776 +               .pin    = &a->mvd_pin_dst,
22777 +               .flags  = AuCpup_DTIME | AuCpup_HOPEN
22778 +       };
22779 +
22780 +       AuDbg("b%d, b%d\n", cpg.bsrc, cpg.bdst);
22781 +       if (a->mvdown.flags & AUFS_MVDOWN_OWLOWER)
22782 +               au_fset_cpup(cpg.flags, OVERWRITE);
22783 +       if (a->mvdown.flags & AUFS_MVDOWN_ROLOWER)
22784 +               au_fset_cpup(cpg.flags, RWDST);
22785 +       err = au_sio_cpdown_simple(&cpg);
22786 +       if (unlikely(err))
22787 +               AU_MVD_PR(dmsg, "cpdown failed\n");
22788 +
22789 +       AuTraceErr(err);
22790 +       return err;
22791 +}
22792 +
22793 +/*
22794 + * unlink the whiteout on bdst if exist which may be created by UDBA while we
22795 + * were sleeping
22796 + */
22797 +static int au_do_unlink_wh(const unsigned char dmsg, struct au_mvd_args *a)
22798 +{
22799 +       int err;
22800 +       struct path h_path;
22801 +       struct au_branch *br;
22802 +       struct inode *delegated;
22803 +
22804 +       br = au_sbr(a->sb, a->mvd_bdst);
22805 +       h_path.dentry = au_wh_lkup(a->mvd_h_dst_parent, &a->dentry->d_name, br);
22806 +       err = PTR_ERR(h_path.dentry);
22807 +       if (IS_ERR(h_path.dentry)) {
22808 +               AU_MVD_PR(dmsg, "wh_lkup failed\n");
22809 +               goto out;
22810 +       }
22811 +
22812 +       err = 0;
22813 +       if (d_is_positive(h_path.dentry)) {
22814 +               h_path.mnt = au_br_mnt(br);
22815 +               delegated = NULL;
22816 +               err = vfsub_unlink(d_inode(a->mvd_h_dst_parent), &h_path,
22817 +                                  &delegated, /*force*/0);
22818 +               if (unlikely(err == -EWOULDBLOCK)) {
22819 +                       pr_warn("cannot retry for NFSv4 delegation"
22820 +                               " for an internal unlink\n");
22821 +                       iput(delegated);
22822 +               }
22823 +               if (unlikely(err))
22824 +                       AU_MVD_PR(dmsg, "wh_unlink failed\n");
22825 +       }
22826 +       dput(h_path.dentry);
22827 +
22828 +out:
22829 +       AuTraceErr(err);
22830 +       return err;
22831 +}
22832 +
22833 +/*
22834 + * unlink the topmost h_dentry
22835 + */
22836 +static int au_do_unlink(const unsigned char dmsg, struct au_mvd_args *a)
22837 +{
22838 +       int err;
22839 +       struct path h_path;
22840 +       struct inode *delegated;
22841 +
22842 +       h_path.mnt = au_sbr_mnt(a->sb, a->mvd_bsrc);
22843 +       h_path.dentry = au_h_dptr(a->dentry, a->mvd_bsrc);
22844 +       delegated = NULL;
22845 +       err = vfsub_unlink(a->mvd_h_src_dir, &h_path, &delegated, /*force*/0);
22846 +       if (unlikely(err == -EWOULDBLOCK)) {
22847 +               pr_warn("cannot retry for NFSv4 delegation"
22848 +                       " for an internal unlink\n");
22849 +               iput(delegated);
22850 +       }
22851 +       if (unlikely(err))
22852 +               AU_MVD_PR(dmsg, "unlink failed\n");
22853 +
22854 +       AuTraceErr(err);
22855 +       return err;
22856 +}
22857 +
22858 +/* Since mvdown succeeded, we ignore an error of this function */
22859 +static void au_do_stfs(const unsigned char dmsg, struct au_mvd_args *a)
22860 +{
22861 +       int err;
22862 +       struct au_branch *br;
22863 +
22864 +       a->mvdown.flags |= AUFS_MVDOWN_STFS_FAILED;
22865 +       br = au_sbr(a->sb, a->mvd_bsrc);
22866 +       err = au_br_stfs(br, &a->mvdown.stbr[AUFS_MVDOWN_UPPER].stfs);
22867 +       if (!err) {
22868 +               br = au_sbr(a->sb, a->mvd_bdst);
22869 +               a->mvdown.stbr[AUFS_MVDOWN_LOWER].brid = br->br_id;
22870 +               err = au_br_stfs(br, &a->mvdown.stbr[AUFS_MVDOWN_LOWER].stfs);
22871 +       }
22872 +       if (!err)
22873 +               a->mvdown.flags &= ~AUFS_MVDOWN_STFS_FAILED;
22874 +       else
22875 +               AU_MVD_PR(dmsg, "statfs failed (%d), ignored\n", err);
22876 +}
22877 +
22878 +/*
22879 + * copy-down the file and unlink the bsrc file.
22880 + * - unlink the bdst whout if exist
22881 + * - copy-down the file (with whtmp name and rename)
22882 + * - unlink the bsrc file
22883 + */
22884 +static int au_do_mvdown(const unsigned char dmsg, struct au_mvd_args *a)
22885 +{
22886 +       int err;
22887 +
22888 +       err = au_do_mkdir(dmsg, a);
22889 +       if (!err)
22890 +               err = au_do_lock(dmsg, a);
22891 +       if (unlikely(err))
22892 +               goto out;
22893 +
22894 +       /*
22895 +        * do not revert the activities we made on bdst since they should be
22896 +        * harmless in aufs.
22897 +        */
22898 +
22899 +       err = au_do_cpdown(dmsg, a);
22900 +       if (!err)
22901 +               err = au_do_unlink_wh(dmsg, a);
22902 +       if (!err && !(a->mvdown.flags & AUFS_MVDOWN_KUPPER))
22903 +               err = au_do_unlink(dmsg, a);
22904 +       if (unlikely(err))
22905 +               goto out_unlock;
22906 +
22907 +       AuDbg("%pd2, 0x%x, %d --> %d\n",
22908 +             a->dentry, a->mvdown.flags, a->mvd_bsrc, a->mvd_bdst);
22909 +       if (find_lower_writable(a) < 0)
22910 +               a->mvdown.flags |= AUFS_MVDOWN_BOTTOM;
22911 +
22912 +       if (a->mvdown.flags & AUFS_MVDOWN_STFS)
22913 +               au_do_stfs(dmsg, a);
22914 +
22915 +       /* maintain internal array */
22916 +       if (!(a->mvdown.flags & AUFS_MVDOWN_KUPPER)) {
22917 +               au_set_h_dptr(a->dentry, a->mvd_bsrc, NULL);
22918 +               au_set_dbtop(a->dentry, a->mvd_bdst);
22919 +               au_set_h_iptr(a->inode, a->mvd_bsrc, NULL, /*flags*/0);
22920 +               au_set_ibtop(a->inode, a->mvd_bdst);
22921 +       } else {
22922 +               /* hide the lower */
22923 +               au_set_h_dptr(a->dentry, a->mvd_bdst, NULL);
22924 +               au_set_dbbot(a->dentry, a->mvd_bsrc);
22925 +               au_set_h_iptr(a->inode, a->mvd_bdst, NULL, /*flags*/0);
22926 +               au_set_ibbot(a->inode, a->mvd_bsrc);
22927 +       }
22928 +       if (au_dbbot(a->dentry) < a->mvd_bdst)
22929 +               au_set_dbbot(a->dentry, a->mvd_bdst);
22930 +       if (au_ibbot(a->inode) < a->mvd_bdst)
22931 +               au_set_ibbot(a->inode, a->mvd_bdst);
22932 +
22933 +out_unlock:
22934 +       au_do_unlock(dmsg, a);
22935 +out:
22936 +       AuTraceErr(err);
22937 +       return err;
22938 +}
22939 +
22940 +/* ---------------------------------------------------------------------- */
22941 +
22942 +/* make sure the file is idle */
22943 +static int au_mvd_args_busy(const unsigned char dmsg, struct au_mvd_args *a)
22944 +{
22945 +       int err, plinked;
22946 +
22947 +       err = 0;
22948 +       plinked = !!au_opt_test(au_mntflags(a->sb), PLINK);
22949 +       if (au_dbtop(a->dentry) == a->mvd_bsrc
22950 +           && au_dcount(a->dentry) == 1
22951 +           && atomic_read(&a->inode->i_count) == 1
22952 +           /* && a->mvd_h_src_inode->i_nlink == 1 */
22953 +           && (!plinked || !au_plink_test(a->inode))
22954 +           && a->inode->i_nlink == 1)
22955 +               goto out;
22956 +
22957 +       err = -EBUSY;
22958 +       AU_MVD_PR(dmsg,
22959 +                 "b%d, d{b%d, c%d?}, i{c%d?, l%u}, hi{l%u}, p{%d, %d}\n",
22960 +                 a->mvd_bsrc, au_dbtop(a->dentry), au_dcount(a->dentry),
22961 +                 atomic_read(&a->inode->i_count), a->inode->i_nlink,
22962 +                 a->mvd_h_src_inode->i_nlink,
22963 +                 plinked, plinked ? au_plink_test(a->inode) : 0);
22964 +
22965 +out:
22966 +       AuTraceErr(err);
22967 +       return err;
22968 +}
22969 +
22970 +/* make sure the parent dir is fine */
22971 +static int au_mvd_args_parent(const unsigned char dmsg,
22972 +                             struct au_mvd_args *a)
22973 +{
22974 +       int err;
22975 +       aufs_bindex_t bindex;
22976 +
22977 +       err = 0;
22978 +       if (unlikely(au_alive_dir(a->parent))) {
22979 +               err = -ENOENT;
22980 +               AU_MVD_PR(dmsg, "parent dir is dead\n");
22981 +               goto out;
22982 +       }
22983 +
22984 +       a->bopq = au_dbdiropq(a->parent);
22985 +       bindex = au_wbr_nonopq(a->dentry, a->mvd_bdst);
22986 +       AuDbg("b%d\n", bindex);
22987 +       if (unlikely((bindex >= 0 && bindex < a->mvd_bdst)
22988 +                    || (a->bopq != -1 && a->bopq < a->mvd_bdst))) {
22989 +               err = -EINVAL;
22990 +               a->mvd_errno = EAU_MVDOWN_OPAQUE;
22991 +               AU_MVD_PR(dmsg, "ancestor is opaque b%d, b%d\n",
22992 +                         a->bopq, a->mvd_bdst);
22993 +       }
22994 +
22995 +out:
22996 +       AuTraceErr(err);
22997 +       return err;
22998 +}
22999 +
23000 +static int au_mvd_args_intermediate(const unsigned char dmsg,
23001 +                                   struct au_mvd_args *a)
23002 +{
23003 +       int err;
23004 +       struct au_dinfo *dinfo, *tmp;
23005 +
23006 +       /* lookup the next lower positive entry */
23007 +       err = -ENOMEM;
23008 +       tmp = au_di_alloc(a->sb, AuLsc_DI_TMP);
23009 +       if (unlikely(!tmp))
23010 +               goto out;
23011 +
23012 +       a->bfound = -1;
23013 +       a->bwh = -1;
23014 +       dinfo = au_di(a->dentry);
23015 +       au_di_cp(tmp, dinfo);
23016 +       au_di_swap(tmp, dinfo);
23017 +
23018 +       /* returns the number of positive dentries */
23019 +       err = au_lkup_dentry(a->dentry, a->mvd_bsrc + 1,
23020 +                            /* AuLkup_IGNORE_PERM */ 0);
23021 +       if (!err)
23022 +               a->bwh = au_dbwh(a->dentry);
23023 +       else if (err > 0)
23024 +               a->bfound = au_dbtop(a->dentry);
23025 +
23026 +       au_di_swap(tmp, dinfo);
23027 +       au_rw_write_unlock(&tmp->di_rwsem);
23028 +       au_di_free(tmp);
23029 +       if (unlikely(err < 0))
23030 +               AU_MVD_PR(dmsg, "failed look-up lower\n");
23031 +
23032 +       /*
23033 +        * here, we have these cases.
23034 +        * bfound == -1
23035 +        *      no positive dentry under bsrc. there are more sub-cases.
23036 +        *      bwh < 0
23037 +        *              there no whiteout, we can safely move-down.
23038 +        *      bwh <= bsrc
23039 +        *              impossible
23040 +        *      bsrc < bwh && bwh < bdst
23041 +        *              there is a whiteout on RO branch. cannot proceed.
23042 +        *      bwh == bdst
23043 +        *              there is a whiteout on the RW target branch. it should
23044 +        *              be removed.
23045 +        *      bdst < bwh
23046 +        *              there is a whiteout somewhere unrelated branch.
23047 +        * -1 < bfound && bfound <= bsrc
23048 +        *      impossible.
23049 +        * bfound < bdst
23050 +        *      found, but it is on RO branch between bsrc and bdst. cannot
23051 +        *      proceed.
23052 +        * bfound == bdst
23053 +        *      found, replace it if AUFS_MVDOWN_FORCE is set. otherwise return
23054 +        *      error.
23055 +        * bdst < bfound
23056 +        *      found, after we create the file on bdst, it will be hidden.
23057 +        */
23058 +
23059 +       AuDebugOn(a->bfound == -1
23060 +                 && a->bwh != -1
23061 +                 && a->bwh <= a->mvd_bsrc);
23062 +       AuDebugOn(-1 < a->bfound
23063 +                 && a->bfound <= a->mvd_bsrc);
23064 +
23065 +       err = -EINVAL;
23066 +       if (a->bfound == -1
23067 +           && a->mvd_bsrc < a->bwh
23068 +           && a->bwh != -1
23069 +           && a->bwh < a->mvd_bdst) {
23070 +               a->mvd_errno = EAU_MVDOWN_WHITEOUT;
23071 +               AU_MVD_PR(dmsg, "bsrc %d, bdst %d, bfound %d, bwh %d\n",
23072 +                         a->mvd_bsrc, a->mvd_bdst, a->bfound, a->bwh);
23073 +               goto out;
23074 +       } else if (a->bfound != -1 && a->bfound < a->mvd_bdst) {
23075 +               a->mvd_errno = EAU_MVDOWN_UPPER;
23076 +               AU_MVD_PR(dmsg, "bdst %d, bfound %d\n",
23077 +                         a->mvd_bdst, a->bfound);
23078 +               goto out;
23079 +       }
23080 +
23081 +       err = 0; /* success */
23082 +
23083 +out:
23084 +       AuTraceErr(err);
23085 +       return err;
23086 +}
23087 +
23088 +static int au_mvd_args_exist(const unsigned char dmsg, struct au_mvd_args *a)
23089 +{
23090 +       int err;
23091 +
23092 +       err = 0;
23093 +       if (!(a->mvdown.flags & AUFS_MVDOWN_OWLOWER)
23094 +           && a->bfound == a->mvd_bdst)
23095 +               err = -EEXIST;
23096 +       AuTraceErr(err);
23097 +       return err;
23098 +}
23099 +
23100 +static int au_mvd_args(const unsigned char dmsg, struct au_mvd_args *a)
23101 +{
23102 +       int err;
23103 +       struct au_branch *br;
23104 +
23105 +       err = -EISDIR;
23106 +       if (unlikely(S_ISDIR(a->inode->i_mode)))
23107 +               goto out;
23108 +
23109 +       err = -EINVAL;
23110 +       if (!(a->mvdown.flags & AUFS_MVDOWN_BRID_UPPER))
23111 +               a->mvd_bsrc = au_ibtop(a->inode);
23112 +       else {
23113 +               a->mvd_bsrc = au_br_index(a->sb, a->mvd_src_brid);
23114 +               if (unlikely(a->mvd_bsrc < 0
23115 +                            || (a->mvd_bsrc < au_dbtop(a->dentry)
23116 +                                || au_dbbot(a->dentry) < a->mvd_bsrc
23117 +                                || !au_h_dptr(a->dentry, a->mvd_bsrc))
23118 +                            || (a->mvd_bsrc < au_ibtop(a->inode)
23119 +                                || au_ibbot(a->inode) < a->mvd_bsrc
23120 +                                || !au_h_iptr(a->inode, a->mvd_bsrc)))) {
23121 +                       a->mvd_errno = EAU_MVDOWN_NOUPPER;
23122 +                       AU_MVD_PR(dmsg, "no upper\n");
23123 +                       goto out;
23124 +               }
23125 +       }
23126 +       if (unlikely(a->mvd_bsrc == au_sbbot(a->sb))) {
23127 +               a->mvd_errno = EAU_MVDOWN_BOTTOM;
23128 +               AU_MVD_PR(dmsg, "on the bottom\n");
23129 +               goto out;
23130 +       }
23131 +       a->mvd_h_src_inode = au_h_iptr(a->inode, a->mvd_bsrc);
23132 +       br = au_sbr(a->sb, a->mvd_bsrc);
23133 +       err = au_br_rdonly(br);
23134 +       if (!(a->mvdown.flags & AUFS_MVDOWN_ROUPPER)) {
23135 +               if (unlikely(err))
23136 +                       goto out;
23137 +       } else if (!(vfsub_native_ro(a->mvd_h_src_inode)
23138 +                    || IS_APPEND(a->mvd_h_src_inode))) {
23139 +               if (err)
23140 +                       a->mvdown.flags |= AUFS_MVDOWN_ROUPPER_R;
23141 +               /* go on */
23142 +       } else
23143 +               goto out;
23144 +
23145 +       err = -EINVAL;
23146 +       if (!(a->mvdown.flags & AUFS_MVDOWN_BRID_LOWER)) {
23147 +               a->mvd_bdst = find_lower_writable(a);
23148 +               if (unlikely(a->mvd_bdst < 0)) {
23149 +                       a->mvd_errno = EAU_MVDOWN_BOTTOM;
23150 +                       AU_MVD_PR(dmsg, "no writable lower branch\n");
23151 +                       goto out;
23152 +               }
23153 +       } else {
23154 +               a->mvd_bdst = au_br_index(a->sb, a->mvd_dst_brid);
23155 +               if (unlikely(a->mvd_bdst < 0
23156 +                            || au_sbbot(a->sb) < a->mvd_bdst)) {
23157 +                       a->mvd_errno = EAU_MVDOWN_NOLOWERBR;
23158 +                       AU_MVD_PR(dmsg, "no lower brid\n");
23159 +                       goto out;
23160 +               }
23161 +       }
23162 +
23163 +       err = au_mvd_args_busy(dmsg, a);
23164 +       if (!err)
23165 +               err = au_mvd_args_parent(dmsg, a);
23166 +       if (!err)
23167 +               err = au_mvd_args_intermediate(dmsg, a);
23168 +       if (!err)
23169 +               err = au_mvd_args_exist(dmsg, a);
23170 +       if (!err)
23171 +               AuDbg("b%d, b%d\n", a->mvd_bsrc, a->mvd_bdst);
23172 +
23173 +out:
23174 +       AuTraceErr(err);
23175 +       return err;
23176 +}
23177 +
23178 +int au_mvdown(struct dentry *dentry, struct aufs_mvdown __user *uarg)
23179 +{
23180 +       int err, e;
23181 +       unsigned char dmsg;
23182 +       struct au_mvd_args *args;
23183 +       struct inode *inode;
23184 +
23185 +       inode = d_inode(dentry);
23186 +       err = -EPERM;
23187 +       if (unlikely(!capable(CAP_SYS_ADMIN)))
23188 +               goto out;
23189 +
23190 +       err = -ENOMEM;
23191 +       args = kmalloc(sizeof(*args), GFP_NOFS);
23192 +       if (unlikely(!args))
23193 +               goto out;
23194 +
23195 +       err = copy_from_user(&args->mvdown, uarg, sizeof(args->mvdown));
23196 +       if (!err)
23197 +               err = !access_ok(VERIFY_WRITE, uarg, sizeof(*uarg));
23198 +       if (unlikely(err)) {
23199 +               err = -EFAULT;
23200 +               AuTraceErr(err);
23201 +               goto out_free;
23202 +       }
23203 +       AuDbg("flags 0x%x\n", args->mvdown.flags);
23204 +       args->mvdown.flags &= ~(AUFS_MVDOWN_ROLOWER_R | AUFS_MVDOWN_ROUPPER_R);
23205 +       args->mvdown.au_errno = 0;
23206 +       args->dentry = dentry;
23207 +       args->inode = inode;
23208 +       args->sb = dentry->d_sb;
23209 +
23210 +       err = -ENOENT;
23211 +       dmsg = !!(args->mvdown.flags & AUFS_MVDOWN_DMSG);
23212 +       args->parent = dget_parent(dentry);
23213 +       args->dir = d_inode(args->parent);
23214 +       inode_lock_nested(args->dir, I_MUTEX_PARENT);
23215 +       dput(args->parent);
23216 +       if (unlikely(args->parent != dentry->d_parent)) {
23217 +               AU_MVD_PR(dmsg, "parent dir is moved\n");
23218 +               goto out_dir;
23219 +       }
23220 +
23221 +       inode_lock_nested(inode, I_MUTEX_CHILD);
23222 +       err = aufs_read_lock(dentry, AuLock_DW | AuLock_FLUSH | AuLock_NOPLMW);
23223 +       if (unlikely(err))
23224 +               goto out_inode;
23225 +
23226 +       di_write_lock_parent(args->parent);
23227 +       err = au_mvd_args(dmsg, args);
23228 +       if (unlikely(err))
23229 +               goto out_parent;
23230 +
23231 +       err = au_do_mvdown(dmsg, args);
23232 +       if (unlikely(err))
23233 +               goto out_parent;
23234 +
23235 +       au_cpup_attr_timesizes(args->dir);
23236 +       au_cpup_attr_timesizes(inode);
23237 +       if (!(args->mvdown.flags & AUFS_MVDOWN_KUPPER))
23238 +               au_cpup_igen(inode, au_h_iptr(inode, args->mvd_bdst));
23239 +       /* au_digen_dec(dentry); */
23240 +
23241 +out_parent:
23242 +       di_write_unlock(args->parent);
23243 +       aufs_read_unlock(dentry, AuLock_DW);
23244 +out_inode:
23245 +       inode_unlock(inode);
23246 +out_dir:
23247 +       inode_unlock(args->dir);
23248 +out_free:
23249 +       e = copy_to_user(uarg, &args->mvdown, sizeof(args->mvdown));
23250 +       if (unlikely(e))
23251 +               err = -EFAULT;
23252 +       au_delayed_kfree(args);
23253 +out:
23254 +       AuTraceErr(err);
23255 +       return err;
23256 +}
23257 diff -urN /usr/share/empty/fs/aufs/opts.c linux/fs/aufs/opts.c
23258 --- /usr/share/empty/fs/aufs/opts.c     1970-01-01 01:00:00.000000000 +0100
23259 +++ linux/fs/aufs/opts.c        2016-12-17 12:28:17.598545045 +0100
23260 @@ -0,0 +1,1870 @@
23261 +/*
23262 + * Copyright (C) 2005-2016 Junjiro R. Okajima
23263 + *
23264 + * This program, aufs is free software; you can redistribute it and/or modify
23265 + * it under the terms of the GNU General Public License as published by
23266 + * the Free Software Foundation; either version 2 of the License, or
23267 + * (at your option) any later version.
23268 + *
23269 + * This program is distributed in the hope that it will be useful,
23270 + * but WITHOUT ANY WARRANTY; without even the implied warranty of
23271 + * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
23272 + * GNU General Public License for more details.
23273 + *
23274 + * You should have received a copy of the GNU General Public License
23275 + * along with this program.  If not, see <http://www.gnu.org/licenses/>.
23276 + */
23277 +
23278 +/*
23279 + * mount options/flags
23280 + */
23281 +
23282 +#include <linux/namei.h>
23283 +#include <linux/types.h> /* a distribution requires */
23284 +#include <linux/parser.h>
23285 +#include "aufs.h"
23286 +
23287 +/* ---------------------------------------------------------------------- */
23288 +
23289 +enum {
23290 +       Opt_br,
23291 +       Opt_add, Opt_del, Opt_mod, Opt_append, Opt_prepend,
23292 +       Opt_idel, Opt_imod,
23293 +       Opt_dirwh, Opt_rdcache, Opt_rdblk, Opt_rdhash,
23294 +       Opt_rdblk_def, Opt_rdhash_def,
23295 +       Opt_xino, Opt_noxino,
23296 +       Opt_trunc_xino, Opt_trunc_xino_v, Opt_notrunc_xino,
23297 +       Opt_trunc_xino_path, Opt_itrunc_xino,
23298 +       Opt_trunc_xib, Opt_notrunc_xib,
23299 +       Opt_shwh, Opt_noshwh,
23300 +       Opt_plink, Opt_noplink, Opt_list_plink,
23301 +       Opt_udba,
23302 +       Opt_dio, Opt_nodio,
23303 +       Opt_diropq_a, Opt_diropq_w,
23304 +       Opt_warn_perm, Opt_nowarn_perm,
23305 +       Opt_wbr_copyup, Opt_wbr_create,
23306 +       Opt_fhsm_sec,
23307 +       Opt_verbose, Opt_noverbose,
23308 +       Opt_sum, Opt_nosum, Opt_wsum,
23309 +       Opt_dirperm1, Opt_nodirperm1,
23310 +       Opt_acl, Opt_noacl,
23311 +       Opt_tail, Opt_ignore, Opt_ignore_silent, Opt_err
23312 +};
23313 +
23314 +static match_table_t options = {
23315 +       {Opt_br, "br=%s"},
23316 +       {Opt_br, "br:%s"},
23317 +
23318 +       {Opt_add, "add=%d:%s"},
23319 +       {Opt_add, "add:%d:%s"},
23320 +       {Opt_add, "ins=%d:%s"},
23321 +       {Opt_add, "ins:%d:%s"},
23322 +       {Opt_append, "append=%s"},
23323 +       {Opt_append, "append:%s"},
23324 +       {Opt_prepend, "prepend=%s"},
23325 +       {Opt_prepend, "prepend:%s"},
23326 +
23327 +       {Opt_del, "del=%s"},
23328 +       {Opt_del, "del:%s"},
23329 +       /* {Opt_idel, "idel:%d"}, */
23330 +       {Opt_mod, "mod=%s"},
23331 +       {Opt_mod, "mod:%s"},
23332 +       /* {Opt_imod, "imod:%d:%s"}, */
23333 +
23334 +       {Opt_dirwh, "dirwh=%d"},
23335 +
23336 +       {Opt_xino, "xino=%s"},
23337 +       {Opt_noxino, "noxino"},
23338 +       {Opt_trunc_xino, "trunc_xino"},
23339 +       {Opt_trunc_xino_v, "trunc_xino_v=%d:%d"},
23340 +       {Opt_notrunc_xino, "notrunc_xino"},
23341 +       {Opt_trunc_xino_path, "trunc_xino=%s"},
23342 +       {Opt_itrunc_xino, "itrunc_xino=%d"},
23343 +       /* {Opt_zxino, "zxino=%s"}, */
23344 +       {Opt_trunc_xib, "trunc_xib"},
23345 +       {Opt_notrunc_xib, "notrunc_xib"},
23346 +
23347 +#ifdef CONFIG_PROC_FS
23348 +       {Opt_plink, "plink"},
23349 +#else
23350 +       {Opt_ignore_silent, "plink"},
23351 +#endif
23352 +
23353 +       {Opt_noplink, "noplink"},
23354 +
23355 +#ifdef CONFIG_AUFS_DEBUG
23356 +       {Opt_list_plink, "list_plink"},
23357 +#endif
23358 +
23359 +       {Opt_udba, "udba=%s"},
23360 +
23361 +       {Opt_dio, "dio"},
23362 +       {Opt_nodio, "nodio"},
23363 +
23364 +#ifdef CONFIG_AUFS_FHSM
23365 +       {Opt_fhsm_sec, "fhsm_sec=%d"},
23366 +#else
23367 +       {Opt_ignore_silent, "fhsm_sec=%d"},
23368 +#endif
23369 +
23370 +       {Opt_diropq_a, "diropq=always"},
23371 +       {Opt_diropq_a, "diropq=a"},
23372 +       {Opt_diropq_w, "diropq=whiteouted"},
23373 +       {Opt_diropq_w, "diropq=w"},
23374 +
23375 +       {Opt_warn_perm, "warn_perm"},
23376 +       {Opt_nowarn_perm, "nowarn_perm"},
23377 +
23378 +       /* keep them temporary */
23379 +       {Opt_ignore_silent, "nodlgt"},
23380 +       {Opt_ignore_silent, "clean_plink"},
23381 +
23382 +#ifdef CONFIG_AUFS_SHWH
23383 +       {Opt_shwh, "shwh"},
23384 +#endif
23385 +       {Opt_noshwh, "noshwh"},
23386 +
23387 +       {Opt_dirperm1, "dirperm1"},
23388 +       {Opt_nodirperm1, "nodirperm1"},
23389 +
23390 +       {Opt_verbose, "verbose"},
23391 +       {Opt_verbose, "v"},
23392 +       {Opt_noverbose, "noverbose"},
23393 +       {Opt_noverbose, "quiet"},
23394 +       {Opt_noverbose, "q"},
23395 +       {Opt_noverbose, "silent"},
23396 +
23397 +       {Opt_sum, "sum"},
23398 +       {Opt_nosum, "nosum"},
23399 +       {Opt_wsum, "wsum"},
23400 +
23401 +       {Opt_rdcache, "rdcache=%d"},
23402 +       {Opt_rdblk, "rdblk=%d"},
23403 +       {Opt_rdblk_def, "rdblk=def"},
23404 +       {Opt_rdhash, "rdhash=%d"},
23405 +       {Opt_rdhash_def, "rdhash=def"},
23406 +
23407 +       {Opt_wbr_create, "create=%s"},
23408 +       {Opt_wbr_create, "create_policy=%s"},
23409 +       {Opt_wbr_copyup, "cpup=%s"},
23410 +       {Opt_wbr_copyup, "copyup=%s"},
23411 +       {Opt_wbr_copyup, "copyup_policy=%s"},
23412 +
23413 +       /* generic VFS flag */
23414 +#ifdef CONFIG_FS_POSIX_ACL
23415 +       {Opt_acl, "acl"},
23416 +       {Opt_noacl, "noacl"},
23417 +#else
23418 +       {Opt_ignore_silent, "acl"},
23419 +       {Opt_ignore_silent, "noacl"},
23420 +#endif
23421 +
23422 +       /* internal use for the scripts */
23423 +       {Opt_ignore_silent, "si=%s"},
23424 +
23425 +       {Opt_br, "dirs=%s"},
23426 +       {Opt_ignore, "debug=%d"},
23427 +       {Opt_ignore, "delete=whiteout"},
23428 +       {Opt_ignore, "delete=all"},
23429 +       {Opt_ignore, "imap=%s"},
23430 +
23431 +       /* temporary workaround, due to old mount(8)? */
23432 +       {Opt_ignore_silent, "relatime"},
23433 +
23434 +       {Opt_err, NULL}
23435 +};
23436 +
23437 +/* ---------------------------------------------------------------------- */
23438 +
23439 +static const char *au_parser_pattern(int val, match_table_t tbl)
23440 +{
23441 +       struct match_token *p;
23442 +
23443 +       p = tbl;
23444 +       while (p->pattern) {
23445 +               if (p->token == val)
23446 +                       return p->pattern;
23447 +               p++;
23448 +       }
23449 +       BUG();
23450 +       return "??";
23451 +}
23452 +
23453 +static const char *au_optstr(int *val, match_table_t tbl)
23454 +{
23455 +       struct match_token *p;
23456 +       int v;
23457 +
23458 +       v = *val;
23459 +       if (!v)
23460 +               goto out;
23461 +       p = tbl;
23462 +       while (p->pattern) {
23463 +               if (p->token
23464 +                   && (v & p->token) == p->token) {
23465 +                       *val &= ~p->token;
23466 +                       return p->pattern;
23467 +               }
23468 +               p++;
23469 +       }
23470 +
23471 +out:
23472 +       return NULL;
23473 +}
23474 +
23475 +/* ---------------------------------------------------------------------- */
23476 +
23477 +static match_table_t brperm = {
23478 +       {AuBrPerm_RO, AUFS_BRPERM_RO},
23479 +       {AuBrPerm_RR, AUFS_BRPERM_RR},
23480 +       {AuBrPerm_RW, AUFS_BRPERM_RW},
23481 +       {0, NULL}
23482 +};
23483 +
23484 +static match_table_t brattr = {
23485 +       /* general */
23486 +       {AuBrAttr_COO_REG, AUFS_BRATTR_COO_REG},
23487 +       {AuBrAttr_COO_ALL, AUFS_BRATTR_COO_ALL},
23488 +       /* 'unpin' attrib is meaningless since linux-3.18-rc1 */
23489 +       {AuBrAttr_UNPIN, AUFS_BRATTR_UNPIN},
23490 +#ifdef CONFIG_AUFS_FHSM
23491 +       {AuBrAttr_FHSM, AUFS_BRATTR_FHSM},
23492 +#endif
23493 +#ifdef CONFIG_AUFS_XATTR
23494 +       {AuBrAttr_ICEX, AUFS_BRATTR_ICEX},
23495 +       {AuBrAttr_ICEX_SEC, AUFS_BRATTR_ICEX_SEC},
23496 +       {AuBrAttr_ICEX_SYS, AUFS_BRATTR_ICEX_SYS},
23497 +       {AuBrAttr_ICEX_TR, AUFS_BRATTR_ICEX_TR},
23498 +       {AuBrAttr_ICEX_USR, AUFS_BRATTR_ICEX_USR},
23499 +       {AuBrAttr_ICEX_OTH, AUFS_BRATTR_ICEX_OTH},
23500 +#endif
23501 +
23502 +       /* ro/rr branch */
23503 +       {AuBrRAttr_WH, AUFS_BRRATTR_WH},
23504 +
23505 +       /* rw branch */
23506 +       {AuBrWAttr_MOO, AUFS_BRWATTR_MOO},
23507 +       {AuBrWAttr_NoLinkWH, AUFS_BRWATTR_NLWH},
23508 +
23509 +       {0, NULL}
23510 +};
23511 +
23512 +static int br_attr_val(char *str, match_table_t table, substring_t args[])
23513 +{
23514 +       int attr, v;
23515 +       char *p;
23516 +
23517 +       attr = 0;
23518 +       do {
23519 +               p = strchr(str, '+');
23520 +               if (p)
23521 +                       *p = 0;
23522 +               v = match_token(str, table, args);
23523 +               if (v) {
23524 +                       if (v & AuBrAttr_CMOO_Mask)
23525 +                               attr &= ~AuBrAttr_CMOO_Mask;
23526 +                       attr |= v;
23527 +               } else {
23528 +                       if (p)
23529 +                               *p = '+';
23530 +                       pr_warn("ignored branch attribute %s\n", str);
23531 +                       break;
23532 +               }
23533 +               if (p)
23534 +                       str = p + 1;
23535 +       } while (p);
23536 +
23537 +       return attr;
23538 +}
23539 +
23540 +static int au_do_optstr_br_attr(au_br_perm_str_t *str, int perm)
23541 +{
23542 +       int sz;
23543 +       const char *p;
23544 +       char *q;
23545 +
23546 +       q = str->a;
23547 +       *q = 0;
23548 +       p = au_optstr(&perm, brattr);
23549 +       if (p) {
23550 +               sz = strlen(p);
23551 +               memcpy(q, p, sz + 1);
23552 +               q += sz;
23553 +       } else
23554 +               goto out;
23555 +
23556 +       do {
23557 +               p = au_optstr(&perm, brattr);
23558 +               if (p) {
23559 +                       *q++ = '+';
23560 +                       sz = strlen(p);
23561 +                       memcpy(q, p, sz + 1);
23562 +                       q += sz;
23563 +               }
23564 +       } while (p);
23565 +
23566 +out:
23567 +       return q - str->a;
23568 +}
23569 +
23570 +static int noinline_for_stack br_perm_val(char *perm)
23571 +{
23572 +       int val, bad, sz;
23573 +       char *p;
23574 +       substring_t args[MAX_OPT_ARGS];
23575 +       au_br_perm_str_t attr;
23576 +
23577 +       p = strchr(perm, '+');
23578 +       if (p)
23579 +               *p = 0;
23580 +       val = match_token(perm, brperm, args);
23581 +       if (!val) {
23582 +               if (p)
23583 +                       *p = '+';
23584 +               pr_warn("ignored branch permission %s\n", perm);
23585 +               val = AuBrPerm_RO;
23586 +               goto out;
23587 +       }
23588 +       if (!p)
23589 +               goto out;
23590 +
23591 +       val |= br_attr_val(p + 1, brattr, args);
23592 +
23593 +       bad = 0;
23594 +       switch (val & AuBrPerm_Mask) {
23595 +       case AuBrPerm_RO:
23596 +       case AuBrPerm_RR:
23597 +               bad = val & AuBrWAttr_Mask;
23598 +               val &= ~AuBrWAttr_Mask;
23599 +               break;
23600 +       case AuBrPerm_RW:
23601 +               bad = val & AuBrRAttr_Mask;
23602 +               val &= ~AuBrRAttr_Mask;
23603 +               break;
23604 +       }
23605 +
23606 +       /*
23607 +        * 'unpin' attrib becomes meaningless since linux-3.18-rc1, but aufs
23608 +        * does not treat it as an error, just warning.
23609 +        * this is a tiny guard for the user operation.
23610 +        */
23611 +       if (val & AuBrAttr_UNPIN) {
23612 +               bad |= AuBrAttr_UNPIN;
23613 +               val &= ~AuBrAttr_UNPIN;
23614 +       }
23615 +
23616 +       if (unlikely(bad)) {
23617 +               sz = au_do_optstr_br_attr(&attr, bad);
23618 +               AuDebugOn(!sz);
23619 +               pr_warn("ignored branch attribute %s\n", attr.a);
23620 +       }
23621 +
23622 +out:
23623 +       return val;
23624 +}
23625 +
23626 +void au_optstr_br_perm(au_br_perm_str_t *str, int perm)
23627 +{
23628 +       au_br_perm_str_t attr;
23629 +       const char *p;
23630 +       char *q;
23631 +       int sz;
23632 +
23633 +       q = str->a;
23634 +       p = au_optstr(&perm, brperm);
23635 +       AuDebugOn(!p || !*p);
23636 +       sz = strlen(p);
23637 +       memcpy(q, p, sz + 1);
23638 +       q += sz;
23639 +
23640 +       sz = au_do_optstr_br_attr(&attr, perm);
23641 +       if (sz) {
23642 +               *q++ = '+';
23643 +               memcpy(q, attr.a, sz + 1);
23644 +       }
23645 +
23646 +       AuDebugOn(strlen(str->a) >= sizeof(str->a));
23647 +}
23648 +
23649 +/* ---------------------------------------------------------------------- */
23650 +
23651 +static match_table_t udbalevel = {
23652 +       {AuOpt_UDBA_REVAL, "reval"},
23653 +       {AuOpt_UDBA_NONE, "none"},
23654 +#ifdef CONFIG_AUFS_HNOTIFY
23655 +       {AuOpt_UDBA_HNOTIFY, "notify"}, /* abstraction */
23656 +#ifdef CONFIG_AUFS_HFSNOTIFY
23657 +       {AuOpt_UDBA_HNOTIFY, "fsnotify"},
23658 +#endif
23659 +#endif
23660 +       {-1, NULL}
23661 +};
23662 +
23663 +static int noinline_for_stack udba_val(char *str)
23664 +{
23665 +       substring_t args[MAX_OPT_ARGS];
23666 +
23667 +       return match_token(str, udbalevel, args);
23668 +}
23669 +
23670 +const char *au_optstr_udba(int udba)
23671 +{
23672 +       return au_parser_pattern(udba, udbalevel);
23673 +}
23674 +
23675 +/* ---------------------------------------------------------------------- */
23676 +
23677 +static match_table_t au_wbr_create_policy = {
23678 +       {AuWbrCreate_TDP, "tdp"},
23679 +       {AuWbrCreate_TDP, "top-down-parent"},
23680 +       {AuWbrCreate_RR, "rr"},
23681 +       {AuWbrCreate_RR, "round-robin"},
23682 +       {AuWbrCreate_MFS, "mfs"},
23683 +       {AuWbrCreate_MFS, "most-free-space"},
23684 +       {AuWbrCreate_MFSV, "mfs:%d"},
23685 +       {AuWbrCreate_MFSV, "most-free-space:%d"},
23686 +
23687 +       /* top-down regardless the parent, and then mfs */
23688 +       {AuWbrCreate_TDMFS, "tdmfs:%d"},
23689 +       {AuWbrCreate_TDMFSV, "tdmfs:%d:%d"},
23690 +
23691 +       {AuWbrCreate_MFSRR, "mfsrr:%d"},
23692 +       {AuWbrCreate_MFSRRV, "mfsrr:%d:%d"},
23693 +       {AuWbrCreate_PMFS, "pmfs"},
23694 +       {AuWbrCreate_PMFSV, "pmfs:%d"},
23695 +       {AuWbrCreate_PMFSRR, "pmfsrr:%d"},
23696 +       {AuWbrCreate_PMFSRRV, "pmfsrr:%d:%d"},
23697 +
23698 +       {-1, NULL}
23699 +};
23700 +
23701 +/*
23702 + * cf. linux/lib/parser.c and cmdline.c
23703 + * gave up calling memparse() since it uses simple_strtoull() instead of
23704 + * kstrto...().
23705 + */
23706 +static int noinline_for_stack
23707 +au_match_ull(substring_t *s, unsigned long long *result)
23708 +{
23709 +       int err;
23710 +       unsigned int len;
23711 +       char a[32];
23712 +
23713 +       err = -ERANGE;
23714 +       len = s->to - s->from;
23715 +       if (len + 1 <= sizeof(a)) {
23716 +               memcpy(a, s->from, len);
23717 +               a[len] = '\0';
23718 +               err = kstrtoull(a, 0, result);
23719 +       }
23720 +       return err;
23721 +}
23722 +
23723 +static int au_wbr_mfs_wmark(substring_t *arg, char *str,
23724 +                           struct au_opt_wbr_create *create)
23725 +{
23726 +       int err;
23727 +       unsigned long long ull;
23728 +
23729 +       err = 0;
23730 +       if (!au_match_ull(arg, &ull))
23731 +               create->mfsrr_watermark = ull;
23732 +       else {
23733 +               pr_err("bad integer in %s\n", str);
23734 +               err = -EINVAL;
23735 +       }
23736 +
23737 +       return err;
23738 +}
23739 +
23740 +static int au_wbr_mfs_sec(substring_t *arg, char *str,
23741 +                         struct au_opt_wbr_create *create)
23742 +{
23743 +       int n, err;
23744 +
23745 +       err = 0;
23746 +       if (!match_int(arg, &n) && 0 <= n && n <= AUFS_MFS_MAX_SEC)
23747 +               create->mfs_second = n;
23748 +       else {
23749 +               pr_err("bad integer in %s\n", str);
23750 +               err = -EINVAL;
23751 +       }
23752 +
23753 +       return err;
23754 +}
23755 +
23756 +static int noinline_for_stack
23757 +au_wbr_create_val(char *str, struct au_opt_wbr_create *create)
23758 +{
23759 +       int err, e;
23760 +       substring_t args[MAX_OPT_ARGS];
23761 +
23762 +       err = match_token(str, au_wbr_create_policy, args);
23763 +       create->wbr_create = err;
23764 +       switch (err) {
23765 +       case AuWbrCreate_MFSRRV:
23766 +       case AuWbrCreate_TDMFSV:
23767 +       case AuWbrCreate_PMFSRRV:
23768 +               e = au_wbr_mfs_wmark(&args[0], str, create);
23769 +               if (!e)
23770 +                       e = au_wbr_mfs_sec(&args[1], str, create);
23771 +               if (unlikely(e))
23772 +                       err = e;
23773 +               break;
23774 +       case AuWbrCreate_MFSRR:
23775 +       case AuWbrCreate_TDMFS:
23776 +       case AuWbrCreate_PMFSRR:
23777 +               e = au_wbr_mfs_wmark(&args[0], str, create);
23778 +               if (unlikely(e)) {
23779 +                       err = e;
23780 +                       break;
23781 +               }
23782 +               /*FALLTHROUGH*/
23783 +       case AuWbrCreate_MFS:
23784 +       case AuWbrCreate_PMFS:
23785 +               create->mfs_second = AUFS_MFS_DEF_SEC;
23786 +               break;
23787 +       case AuWbrCreate_MFSV:
23788 +       case AuWbrCreate_PMFSV:
23789 +               e = au_wbr_mfs_sec(&args[0], str, create);
23790 +               if (unlikely(e))
23791 +                       err = e;
23792 +               break;
23793 +       }
23794 +
23795 +       return err;
23796 +}
23797 +
23798 +const char *au_optstr_wbr_create(int wbr_create)
23799 +{
23800 +       return au_parser_pattern(wbr_create, au_wbr_create_policy);
23801 +}
23802 +
23803 +static match_table_t au_wbr_copyup_policy = {
23804 +       {AuWbrCopyup_TDP, "tdp"},
23805 +       {AuWbrCopyup_TDP, "top-down-parent"},
23806 +       {AuWbrCopyup_BUP, "bup"},
23807 +       {AuWbrCopyup_BUP, "bottom-up-parent"},
23808 +       {AuWbrCopyup_BU, "bu"},
23809 +       {AuWbrCopyup_BU, "bottom-up"},
23810 +       {-1, NULL}
23811 +};
23812 +
23813 +static int noinline_for_stack au_wbr_copyup_val(char *str)
23814 +{
23815 +       substring_t args[MAX_OPT_ARGS];
23816 +
23817 +       return match_token(str, au_wbr_copyup_policy, args);
23818 +}
23819 +
23820 +const char *au_optstr_wbr_copyup(int wbr_copyup)
23821 +{
23822 +       return au_parser_pattern(wbr_copyup, au_wbr_copyup_policy);
23823 +}
23824 +
23825 +/* ---------------------------------------------------------------------- */
23826 +
23827 +static const int lkup_dirflags = LOOKUP_FOLLOW | LOOKUP_DIRECTORY;
23828 +
23829 +static void dump_opts(struct au_opts *opts)
23830 +{
23831 +#ifdef CONFIG_AUFS_DEBUG
23832 +       /* reduce stack space */
23833 +       union {
23834 +               struct au_opt_add *add;
23835 +               struct au_opt_del *del;
23836 +               struct au_opt_mod *mod;
23837 +               struct au_opt_xino *xino;
23838 +               struct au_opt_xino_itrunc *xino_itrunc;
23839 +               struct au_opt_wbr_create *create;
23840 +       } u;
23841 +       struct au_opt *opt;
23842 +
23843 +       opt = opts->opt;
23844 +       while (opt->type != Opt_tail) {
23845 +               switch (opt->type) {
23846 +               case Opt_add:
23847 +                       u.add = &opt->add;
23848 +                       AuDbg("add {b%d, %s, 0x%x, %p}\n",
23849 +                                 u.add->bindex, u.add->pathname, u.add->perm,
23850 +                                 u.add->path.dentry);
23851 +                       break;
23852 +               case Opt_del:
23853 +               case Opt_idel:
23854 +                       u.del = &opt->del;
23855 +                       AuDbg("del {%s, %p}\n",
23856 +                             u.del->pathname, u.del->h_path.dentry);
23857 +                       break;
23858 +               case Opt_mod:
23859 +               case Opt_imod:
23860 +                       u.mod = &opt->mod;
23861 +                       AuDbg("mod {%s, 0x%x, %p}\n",
23862 +                                 u.mod->path, u.mod->perm, u.mod->h_root);
23863 +                       break;
23864 +               case Opt_append:
23865 +                       u.add = &opt->add;
23866 +                       AuDbg("append {b%d, %s, 0x%x, %p}\n",
23867 +                                 u.add->bindex, u.add->pathname, u.add->perm,
23868 +                                 u.add->path.dentry);
23869 +                       break;
23870 +               case Opt_prepend:
23871 +                       u.add = &opt->add;
23872 +                       AuDbg("prepend {b%d, %s, 0x%x, %p}\n",
23873 +                                 u.add->bindex, u.add->pathname, u.add->perm,
23874 +                                 u.add->path.dentry);
23875 +                       break;
23876 +               case Opt_dirwh:
23877 +                       AuDbg("dirwh %d\n", opt->dirwh);
23878 +                       break;
23879 +               case Opt_rdcache:
23880 +                       AuDbg("rdcache %d\n", opt->rdcache);
23881 +                       break;
23882 +               case Opt_rdblk:
23883 +                       AuDbg("rdblk %u\n", opt->rdblk);
23884 +                       break;
23885 +               case Opt_rdblk_def:
23886 +                       AuDbg("rdblk_def\n");
23887 +                       break;
23888 +               case Opt_rdhash:
23889 +                       AuDbg("rdhash %u\n", opt->rdhash);
23890 +                       break;
23891 +               case Opt_rdhash_def:
23892 +                       AuDbg("rdhash_def\n");
23893 +                       break;
23894 +               case Opt_xino:
23895 +                       u.xino = &opt->xino;
23896 +                       AuDbg("xino {%s %pD}\n", u.xino->path, u.xino->file);
23897 +                       break;
23898 +               case Opt_trunc_xino:
23899 +                       AuLabel(trunc_xino);
23900 +                       break;
23901 +               case Opt_notrunc_xino:
23902 +                       AuLabel(notrunc_xino);
23903 +                       break;
23904 +               case Opt_trunc_xino_path:
23905 +               case Opt_itrunc_xino:
23906 +                       u.xino_itrunc = &opt->xino_itrunc;
23907 +                       AuDbg("trunc_xino %d\n", u.xino_itrunc->bindex);
23908 +                       break;
23909 +               case Opt_noxino:
23910 +                       AuLabel(noxino);
23911 +                       break;
23912 +               case Opt_trunc_xib:
23913 +                       AuLabel(trunc_xib);
23914 +                       break;
23915 +               case Opt_notrunc_xib:
23916 +                       AuLabel(notrunc_xib);
23917 +                       break;
23918 +               case Opt_shwh:
23919 +                       AuLabel(shwh);
23920 +                       break;
23921 +               case Opt_noshwh:
23922 +                       AuLabel(noshwh);
23923 +                       break;
23924 +               case Opt_dirperm1:
23925 +                       AuLabel(dirperm1);
23926 +                       break;
23927 +               case Opt_nodirperm1:
23928 +                       AuLabel(nodirperm1);
23929 +                       break;
23930 +               case Opt_plink:
23931 +                       AuLabel(plink);
23932 +                       break;
23933 +               case Opt_noplink:
23934 +                       AuLabel(noplink);
23935 +                       break;
23936 +               case Opt_list_plink:
23937 +                       AuLabel(list_plink);
23938 +                       break;
23939 +               case Opt_udba:
23940 +                       AuDbg("udba %d, %s\n",
23941 +                                 opt->udba, au_optstr_udba(opt->udba));
23942 +                       break;
23943 +               case Opt_dio:
23944 +                       AuLabel(dio);
23945 +                       break;
23946 +               case Opt_nodio:
23947 +                       AuLabel(nodio);
23948 +                       break;
23949 +               case Opt_diropq_a:
23950 +                       AuLabel(diropq_a);
23951 +                       break;
23952 +               case Opt_diropq_w:
23953 +                       AuLabel(diropq_w);
23954 +                       break;
23955 +               case Opt_warn_perm:
23956 +                       AuLabel(warn_perm);
23957 +                       break;
23958 +               case Opt_nowarn_perm:
23959 +                       AuLabel(nowarn_perm);
23960 +                       break;
23961 +               case Opt_verbose:
23962 +                       AuLabel(verbose);
23963 +                       break;
23964 +               case Opt_noverbose:
23965 +                       AuLabel(noverbose);
23966 +                       break;
23967 +               case Opt_sum:
23968 +                       AuLabel(sum);
23969 +                       break;
23970 +               case Opt_nosum:
23971 +                       AuLabel(nosum);
23972 +                       break;
23973 +               case Opt_wsum:
23974 +                       AuLabel(wsum);
23975 +                       break;
23976 +               case Opt_wbr_create:
23977 +                       u.create = &opt->wbr_create;
23978 +                       AuDbg("create %d, %s\n", u.create->wbr_create,
23979 +                                 au_optstr_wbr_create(u.create->wbr_create));
23980 +                       switch (u.create->wbr_create) {
23981 +                       case AuWbrCreate_MFSV:
23982 +                       case AuWbrCreate_PMFSV:
23983 +                               AuDbg("%d sec\n", u.create->mfs_second);
23984 +                               break;
23985 +                       case AuWbrCreate_MFSRR:
23986 +                       case AuWbrCreate_TDMFS:
23987 +                               AuDbg("%llu watermark\n",
23988 +                                         u.create->mfsrr_watermark);
23989 +                               break;
23990 +                       case AuWbrCreate_MFSRRV:
23991 +                       case AuWbrCreate_TDMFSV:
23992 +                       case AuWbrCreate_PMFSRRV:
23993 +                               AuDbg("%llu watermark, %d sec\n",
23994 +                                         u.create->mfsrr_watermark,
23995 +                                         u.create->mfs_second);
23996 +                               break;
23997 +                       }
23998 +                       break;
23999 +               case Opt_wbr_copyup:
24000 +                       AuDbg("copyup %d, %s\n", opt->wbr_copyup,
24001 +                                 au_optstr_wbr_copyup(opt->wbr_copyup));
24002 +                       break;
24003 +               case Opt_fhsm_sec:
24004 +                       AuDbg("fhsm_sec %u\n", opt->fhsm_second);
24005 +                       break;
24006 +               case Opt_acl:
24007 +                       AuLabel(acl);
24008 +                       break;
24009 +               case Opt_noacl:
24010 +                       AuLabel(noacl);
24011 +                       break;
24012 +               default:
24013 +                       BUG();
24014 +               }
24015 +               opt++;
24016 +       }
24017 +#endif
24018 +}
24019 +
24020 +void au_opts_free(struct au_opts *opts)
24021 +{
24022 +       struct au_opt *opt;
24023 +
24024 +       opt = opts->opt;
24025 +       while (opt->type != Opt_tail) {
24026 +               switch (opt->type) {
24027 +               case Opt_add:
24028 +               case Opt_append:
24029 +               case Opt_prepend:
24030 +                       path_put(&opt->add.path);
24031 +                       break;
24032 +               case Opt_del:
24033 +               case Opt_idel:
24034 +                       path_put(&opt->del.h_path);
24035 +                       break;
24036 +               case Opt_mod:
24037 +               case Opt_imod:
24038 +                       dput(opt->mod.h_root);
24039 +                       break;
24040 +               case Opt_xino:
24041 +                       fput(opt->xino.file);
24042 +                       break;
24043 +               }
24044 +               opt++;
24045 +       }
24046 +}
24047 +
24048 +static int opt_add(struct au_opt *opt, char *opt_str, unsigned long sb_flags,
24049 +                  aufs_bindex_t bindex)
24050 +{
24051 +       int err;
24052 +       struct au_opt_add *add = &opt->add;
24053 +       char *p;
24054 +
24055 +       add->bindex = bindex;
24056 +       add->perm = AuBrPerm_RO;
24057 +       add->pathname = opt_str;
24058 +       p = strchr(opt_str, '=');
24059 +       if (p) {
24060 +               *p++ = 0;
24061 +               if (*p)
24062 +                       add->perm = br_perm_val(p);
24063 +       }
24064 +
24065 +       err = vfsub_kern_path(add->pathname, lkup_dirflags, &add->path);
24066 +       if (!err) {
24067 +               if (!p) {
24068 +                       add->perm = AuBrPerm_RO;
24069 +                       if (au_test_fs_rr(add->path.dentry->d_sb))
24070 +                               add->perm = AuBrPerm_RR;
24071 +                       else if (!bindex && !(sb_flags & MS_RDONLY))
24072 +                               add->perm = AuBrPerm_RW;
24073 +               }
24074 +               opt->type = Opt_add;
24075 +               goto out;
24076 +       }
24077 +       pr_err("lookup failed %s (%d)\n", add->pathname, err);
24078 +       err = -EINVAL;
24079 +
24080 +out:
24081 +       return err;
24082 +}
24083 +
24084 +static int au_opts_parse_del(struct au_opt_del *del, substring_t args[])
24085 +{
24086 +       int err;
24087 +
24088 +       del->pathname = args[0].from;
24089 +       AuDbg("del path %s\n", del->pathname);
24090 +
24091 +       err = vfsub_kern_path(del->pathname, lkup_dirflags, &del->h_path);
24092 +       if (unlikely(err))
24093 +               pr_err("lookup failed %s (%d)\n", del->pathname, err);
24094 +
24095 +       return err;
24096 +}
24097 +
24098 +#if 0 /* reserved for future use */
24099 +static int au_opts_parse_idel(struct super_block *sb, aufs_bindex_t bindex,
24100 +                             struct au_opt_del *del, substring_t args[])
24101 +{
24102 +       int err;
24103 +       struct dentry *root;
24104 +
24105 +       err = -EINVAL;
24106 +       root = sb->s_root;
24107 +       aufs_read_lock(root, AuLock_FLUSH);
24108 +       if (bindex < 0 || au_sbbot(sb) < bindex) {
24109 +               pr_err("out of bounds, %d\n", bindex);
24110 +               goto out;
24111 +       }
24112 +
24113 +       err = 0;
24114 +       del->h_path.dentry = dget(au_h_dptr(root, bindex));
24115 +       del->h_path.mnt = mntget(au_sbr_mnt(sb, bindex));
24116 +
24117 +out:
24118 +       aufs_read_unlock(root, !AuLock_IR);
24119 +       return err;
24120 +}
24121 +#endif
24122 +
24123 +static int noinline_for_stack
24124 +au_opts_parse_mod(struct au_opt_mod *mod, substring_t args[])
24125 +{
24126 +       int err;
24127 +       struct path path;
24128 +       char *p;
24129 +
24130 +       err = -EINVAL;
24131 +       mod->path = args[0].from;
24132 +       p = strchr(mod->path, '=');
24133 +       if (unlikely(!p)) {
24134 +               pr_err("no permssion %s\n", args[0].from);
24135 +               goto out;
24136 +       }
24137 +
24138 +       *p++ = 0;
24139 +       err = vfsub_kern_path(mod->path, lkup_dirflags, &path);
24140 +       if (unlikely(err)) {
24141 +               pr_err("lookup failed %s (%d)\n", mod->path, err);
24142 +               goto out;
24143 +       }
24144 +
24145 +       mod->perm = br_perm_val(p);
24146 +       AuDbg("mod path %s, perm 0x%x, %s\n", mod->path, mod->perm, p);
24147 +       mod->h_root = dget(path.dentry);
24148 +       path_put(&path);
24149 +
24150 +out:
24151 +       return err;
24152 +}
24153 +
24154 +#if 0 /* reserved for future use */
24155 +static int au_opts_parse_imod(struct super_block *sb, aufs_bindex_t bindex,
24156 +                             struct au_opt_mod *mod, substring_t args[])
24157 +{
24158 +       int err;
24159 +       struct dentry *root;
24160 +
24161 +       err = -EINVAL;
24162 +       root = sb->s_root;
24163 +       aufs_read_lock(root, AuLock_FLUSH);
24164 +       if (bindex < 0 || au_sbbot(sb) < bindex) {
24165 +               pr_err("out of bounds, %d\n", bindex);
24166 +               goto out;
24167 +       }
24168 +
24169 +       err = 0;
24170 +       mod->perm = br_perm_val(args[1].from);
24171 +       AuDbg("mod path %s, perm 0x%x, %s\n",
24172 +             mod->path, mod->perm, args[1].from);
24173 +       mod->h_root = dget(au_h_dptr(root, bindex));
24174 +
24175 +out:
24176 +       aufs_read_unlock(root, !AuLock_IR);
24177 +       return err;
24178 +}
24179 +#endif
24180 +
24181 +static int au_opts_parse_xino(struct super_block *sb, struct au_opt_xino *xino,
24182 +                             substring_t args[])
24183 +{
24184 +       int err;
24185 +       struct file *file;
24186 +
24187 +       file = au_xino_create(sb, args[0].from, /*silent*/0);
24188 +       err = PTR_ERR(file);
24189 +       if (IS_ERR(file))
24190 +               goto out;
24191 +
24192 +       err = -EINVAL;
24193 +       if (unlikely(file->f_path.dentry->d_sb == sb)) {
24194 +               fput(file);
24195 +               pr_err("%s must be outside\n", args[0].from);
24196 +               goto out;
24197 +       }
24198 +
24199 +       err = 0;
24200 +       xino->file = file;
24201 +       xino->path = args[0].from;
24202 +
24203 +out:
24204 +       return err;
24205 +}
24206 +
24207 +static int noinline_for_stack
24208 +au_opts_parse_xino_itrunc_path(struct super_block *sb,
24209 +                              struct au_opt_xino_itrunc *xino_itrunc,
24210 +                              substring_t args[])
24211 +{
24212 +       int err;
24213 +       aufs_bindex_t bbot, bindex;
24214 +       struct path path;
24215 +       struct dentry *root;
24216 +
24217 +       err = vfsub_kern_path(args[0].from, lkup_dirflags, &path);
24218 +       if (unlikely(err)) {
24219 +               pr_err("lookup failed %s (%d)\n", args[0].from, err);
24220 +               goto out;
24221 +       }
24222 +
24223 +       xino_itrunc->bindex = -1;
24224 +       root = sb->s_root;
24225 +       aufs_read_lock(root, AuLock_FLUSH);
24226 +       bbot = au_sbbot(sb);
24227 +       for (bindex = 0; bindex <= bbot; bindex++) {
24228 +               if (au_h_dptr(root, bindex) == path.dentry) {
24229 +                       xino_itrunc->bindex = bindex;
24230 +                       break;
24231 +               }
24232 +       }
24233 +       aufs_read_unlock(root, !AuLock_IR);
24234 +       path_put(&path);
24235 +
24236 +       if (unlikely(xino_itrunc->bindex < 0)) {
24237 +               pr_err("no such branch %s\n", args[0].from);
24238 +               err = -EINVAL;
24239 +       }
24240 +
24241 +out:
24242 +       return err;
24243 +}
24244 +
24245 +/* called without aufs lock */
24246 +int au_opts_parse(struct super_block *sb, char *str, struct au_opts *opts)
24247 +{
24248 +       int err, n, token;
24249 +       aufs_bindex_t bindex;
24250 +       unsigned char skipped;
24251 +       struct dentry *root;
24252 +       struct au_opt *opt, *opt_tail;
24253 +       char *opt_str;
24254 +       /* reduce the stack space */
24255 +       union {
24256 +               struct au_opt_xino_itrunc *xino_itrunc;
24257 +               struct au_opt_wbr_create *create;
24258 +       } u;
24259 +       struct {
24260 +               substring_t args[MAX_OPT_ARGS];
24261 +       } *a;
24262 +
24263 +       err = -ENOMEM;
24264 +       a = kmalloc(sizeof(*a), GFP_NOFS);
24265 +       if (unlikely(!a))
24266 +               goto out;
24267 +
24268 +       root = sb->s_root;
24269 +       err = 0;
24270 +       bindex = 0;
24271 +       opt = opts->opt;
24272 +       opt_tail = opt + opts->max_opt - 1;
24273 +       opt->type = Opt_tail;
24274 +       while (!err && (opt_str = strsep(&str, ",")) && *opt_str) {
24275 +               err = -EINVAL;
24276 +               skipped = 0;
24277 +               token = match_token(opt_str, options, a->args);
24278 +               switch (token) {
24279 +               case Opt_br:
24280 +                       err = 0;
24281 +                       while (!err && (opt_str = strsep(&a->args[0].from, ":"))
24282 +                              && *opt_str) {
24283 +                               err = opt_add(opt, opt_str, opts->sb_flags,
24284 +                                             bindex++);
24285 +                               if (unlikely(!err && ++opt > opt_tail)) {
24286 +                                       err = -E2BIG;
24287 +                                       break;
24288 +                               }
24289 +                               opt->type = Opt_tail;
24290 +                               skipped = 1;
24291 +                       }
24292 +                       break;
24293 +               case Opt_add:
24294 +                       if (unlikely(match_int(&a->args[0], &n))) {
24295 +                               pr_err("bad integer in %s\n", opt_str);
24296 +                               break;
24297 +                       }
24298 +                       bindex = n;
24299 +                       err = opt_add(opt, a->args[1].from, opts->sb_flags,
24300 +                                     bindex);
24301 +                       if (!err)
24302 +                               opt->type = token;
24303 +                       break;
24304 +               case Opt_append:
24305 +                       err = opt_add(opt, a->args[0].from, opts->sb_flags,
24306 +                                     /*dummy bindex*/1);
24307 +                       if (!err)
24308 +                               opt->type = token;
24309 +                       break;
24310 +               case Opt_prepend:
24311 +                       err = opt_add(opt, a->args[0].from, opts->sb_flags,
24312 +                                     /*bindex*/0);
24313 +                       if (!err)
24314 +                               opt->type = token;
24315 +                       break;
24316 +               case Opt_del:
24317 +                       err = au_opts_parse_del(&opt->del, a->args);
24318 +                       if (!err)
24319 +                               opt->type = token;
24320 +                       break;
24321 +#if 0 /* reserved for future use */
24322 +               case Opt_idel:
24323 +                       del->pathname = "(indexed)";
24324 +                       if (unlikely(match_int(&args[0], &n))) {
24325 +                               pr_err("bad integer in %s\n", opt_str);
24326 +                               break;
24327 +                       }
24328 +                       err = au_opts_parse_idel(sb, n, &opt->del, a->args);
24329 +                       if (!err)
24330 +                               opt->type = token;
24331 +                       break;
24332 +#endif
24333 +               case Opt_mod:
24334 +                       err = au_opts_parse_mod(&opt->mod, a->args);
24335 +                       if (!err)
24336 +                               opt->type = token;
24337 +                       break;
24338 +#ifdef IMOD /* reserved for future use */
24339 +               case Opt_imod:
24340 +                       u.mod->path = "(indexed)";
24341 +                       if (unlikely(match_int(&a->args[0], &n))) {
24342 +                               pr_err("bad integer in %s\n", opt_str);
24343 +                               break;
24344 +                       }
24345 +                       err = au_opts_parse_imod(sb, n, &opt->mod, a->args);
24346 +                       if (!err)
24347 +                               opt->type = token;
24348 +                       break;
24349 +#endif
24350 +               case Opt_xino:
24351 +                       err = au_opts_parse_xino(sb, &opt->xino, a->args);
24352 +                       if (!err)
24353 +                               opt->type = token;
24354 +                       break;
24355 +
24356 +               case Opt_trunc_xino_path:
24357 +                       err = au_opts_parse_xino_itrunc_path
24358 +                               (sb, &opt->xino_itrunc, a->args);
24359 +                       if (!err)
24360 +                               opt->type = token;
24361 +                       break;
24362 +
24363 +               case Opt_itrunc_xino:
24364 +                       u.xino_itrunc = &opt->xino_itrunc;
24365 +                       if (unlikely(match_int(&a->args[0], &n))) {
24366 +                               pr_err("bad integer in %s\n", opt_str);
24367 +                               break;
24368 +                       }
24369 +                       u.xino_itrunc->bindex = n;
24370 +                       aufs_read_lock(root, AuLock_FLUSH);
24371 +                       if (n < 0 || au_sbbot(sb) < n) {
24372 +                               pr_err("out of bounds, %d\n", n);
24373 +                               aufs_read_unlock(root, !AuLock_IR);
24374 +                               break;
24375 +                       }
24376 +                       aufs_read_unlock(root, !AuLock_IR);
24377 +                       err = 0;
24378 +                       opt->type = token;
24379 +                       break;
24380 +
24381 +               case Opt_dirwh:
24382 +                       if (unlikely(match_int(&a->args[0], &opt->dirwh)))
24383 +                               break;
24384 +                       err = 0;
24385 +                       opt->type = token;
24386 +                       break;
24387 +
24388 +               case Opt_rdcache:
24389 +                       if (unlikely(match_int(&a->args[0], &n))) {
24390 +                               pr_err("bad integer in %s\n", opt_str);
24391 +                               break;
24392 +                       }
24393 +                       if (unlikely(n > AUFS_RDCACHE_MAX)) {
24394 +                               pr_err("rdcache must be smaller than %d\n",
24395 +                                      AUFS_RDCACHE_MAX);
24396 +                               break;
24397 +                       }
24398 +                       opt->rdcache = n;
24399 +                       err = 0;
24400 +                       opt->type = token;
24401 +                       break;
24402 +               case Opt_rdblk:
24403 +                       if (unlikely(match_int(&a->args[0], &n)
24404 +                                    || n < 0
24405 +                                    || n > KMALLOC_MAX_SIZE)) {
24406 +                               pr_err("bad integer in %s\n", opt_str);
24407 +                               break;
24408 +                       }
24409 +                       if (unlikely(n && n < NAME_MAX)) {
24410 +                               pr_err("rdblk must be larger than %d\n",
24411 +                                      NAME_MAX);
24412 +                               break;
24413 +                       }
24414 +                       opt->rdblk = n;
24415 +                       err = 0;
24416 +                       opt->type = token;
24417 +                       break;
24418 +               case Opt_rdhash:
24419 +                       if (unlikely(match_int(&a->args[0], &n)
24420 +                                    || n < 0
24421 +                                    || n * sizeof(struct hlist_head)
24422 +                                    > KMALLOC_MAX_SIZE)) {
24423 +                               pr_err("bad integer in %s\n", opt_str);
24424 +                               break;
24425 +                       }
24426 +                       opt->rdhash = n;
24427 +                       err = 0;
24428 +                       opt->type = token;
24429 +                       break;
24430 +
24431 +               case Opt_trunc_xino:
24432 +               case Opt_notrunc_xino:
24433 +               case Opt_noxino:
24434 +               case Opt_trunc_xib:
24435 +               case Opt_notrunc_xib:
24436 +               case Opt_shwh:
24437 +               case Opt_noshwh:
24438 +               case Opt_dirperm1:
24439 +               case Opt_nodirperm1:
24440 +               case Opt_plink:
24441 +               case Opt_noplink:
24442 +               case Opt_list_plink:
24443 +               case Opt_dio:
24444 +               case Opt_nodio:
24445 +               case Opt_diropq_a:
24446 +               case Opt_diropq_w:
24447 +               case Opt_warn_perm:
24448 +               case Opt_nowarn_perm:
24449 +               case Opt_verbose:
24450 +               case Opt_noverbose:
24451 +               case Opt_sum:
24452 +               case Opt_nosum:
24453 +               case Opt_wsum:
24454 +               case Opt_rdblk_def:
24455 +               case Opt_rdhash_def:
24456 +               case Opt_acl:
24457 +               case Opt_noacl:
24458 +                       err = 0;
24459 +                       opt->type = token;
24460 +                       break;
24461 +
24462 +               case Opt_udba:
24463 +                       opt->udba = udba_val(a->args[0].from);
24464 +                       if (opt->udba >= 0) {
24465 +                               err = 0;
24466 +                               opt->type = token;
24467 +                       } else
24468 +                               pr_err("wrong value, %s\n", opt_str);
24469 +                       break;
24470 +
24471 +               case Opt_wbr_create:
24472 +                       u.create = &opt->wbr_create;
24473 +                       u.create->wbr_create
24474 +                               = au_wbr_create_val(a->args[0].from, u.create);
24475 +                       if (u.create->wbr_create >= 0) {
24476 +                               err = 0;
24477 +                               opt->type = token;
24478 +                       } else
24479 +                               pr_err("wrong value, %s\n", opt_str);
24480 +                       break;
24481 +               case Opt_wbr_copyup:
24482 +                       opt->wbr_copyup = au_wbr_copyup_val(a->args[0].from);
24483 +                       if (opt->wbr_copyup >= 0) {
24484 +                               err = 0;
24485 +                               opt->type = token;
24486 +                       } else
24487 +                               pr_err("wrong value, %s\n", opt_str);
24488 +                       break;
24489 +
24490 +               case Opt_fhsm_sec:
24491 +                       if (unlikely(match_int(&a->args[0], &n)
24492 +                                    || n < 0)) {
24493 +                               pr_err("bad integer in %s\n", opt_str);
24494 +                               break;
24495 +                       }
24496 +                       if (sysaufs_brs) {
24497 +                               opt->fhsm_second = n;
24498 +                               opt->type = token;
24499 +                       } else
24500 +                               pr_warn("ignored %s\n", opt_str);
24501 +                       err = 0;
24502 +                       break;
24503 +
24504 +               case Opt_ignore:
24505 +                       pr_warn("ignored %s\n", opt_str);
24506 +                       /*FALLTHROUGH*/
24507 +               case Opt_ignore_silent:
24508 +                       skipped = 1;
24509 +                       err = 0;
24510 +                       break;
24511 +               case Opt_err:
24512 +                       pr_err("unknown option %s\n", opt_str);
24513 +                       break;
24514 +               }
24515 +
24516 +               if (!err && !skipped) {
24517 +                       if (unlikely(++opt > opt_tail)) {
24518 +                               err = -E2BIG;
24519 +                               opt--;
24520 +                               opt->type = Opt_tail;
24521 +                               break;
24522 +                       }
24523 +                       opt->type = Opt_tail;
24524 +               }
24525 +       }
24526 +
24527 +       au_delayed_kfree(a);
24528 +       dump_opts(opts);
24529 +       if (unlikely(err))
24530 +               au_opts_free(opts);
24531 +
24532 +out:
24533 +       return err;
24534 +}
24535 +
24536 +static int au_opt_wbr_create(struct super_block *sb,
24537 +                            struct au_opt_wbr_create *create)
24538 +{
24539 +       int err;
24540 +       struct au_sbinfo *sbinfo;
24541 +
24542 +       SiMustWriteLock(sb);
24543 +
24544 +       err = 1; /* handled */
24545 +       sbinfo = au_sbi(sb);
24546 +       if (sbinfo->si_wbr_create_ops->fin) {
24547 +               err = sbinfo->si_wbr_create_ops->fin(sb);
24548 +               if (!err)
24549 +                       err = 1;
24550 +       }
24551 +
24552 +       sbinfo->si_wbr_create = create->wbr_create;
24553 +       sbinfo->si_wbr_create_ops = au_wbr_create_ops + create->wbr_create;
24554 +       switch (create->wbr_create) {
24555 +       case AuWbrCreate_MFSRRV:
24556 +       case AuWbrCreate_MFSRR:
24557 +       case AuWbrCreate_TDMFS:
24558 +       case AuWbrCreate_TDMFSV:
24559 +       case AuWbrCreate_PMFSRR:
24560 +       case AuWbrCreate_PMFSRRV:
24561 +               sbinfo->si_wbr_mfs.mfsrr_watermark = create->mfsrr_watermark;
24562 +               /*FALLTHROUGH*/
24563 +       case AuWbrCreate_MFS:
24564 +       case AuWbrCreate_MFSV:
24565 +       case AuWbrCreate_PMFS:
24566 +       case AuWbrCreate_PMFSV:
24567 +               sbinfo->si_wbr_mfs.mfs_expire
24568 +                       = msecs_to_jiffies(create->mfs_second * MSEC_PER_SEC);
24569 +               break;
24570 +       }
24571 +
24572 +       if (sbinfo->si_wbr_create_ops->init)
24573 +               sbinfo->si_wbr_create_ops->init(sb); /* ignore */
24574 +
24575 +       return err;
24576 +}
24577 +
24578 +/*
24579 + * returns,
24580 + * plus: processed without an error
24581 + * zero: unprocessed
24582 + */
24583 +static int au_opt_simple(struct super_block *sb, struct au_opt *opt,
24584 +                        struct au_opts *opts)
24585 +{
24586 +       int err;
24587 +       struct au_sbinfo *sbinfo;
24588 +
24589 +       SiMustWriteLock(sb);
24590 +
24591 +       err = 1; /* handled */
24592 +       sbinfo = au_sbi(sb);
24593 +       switch (opt->type) {
24594 +       case Opt_udba:
24595 +               sbinfo->si_mntflags &= ~AuOptMask_UDBA;
24596 +               sbinfo->si_mntflags |= opt->udba;
24597 +               opts->given_udba |= opt->udba;
24598 +               break;
24599 +
24600 +       case Opt_plink:
24601 +               au_opt_set(sbinfo->si_mntflags, PLINK);
24602 +               break;
24603 +       case Opt_noplink:
24604 +               if (au_opt_test(sbinfo->si_mntflags, PLINK))
24605 +                       au_plink_put(sb, /*verbose*/1);
24606 +               au_opt_clr(sbinfo->si_mntflags, PLINK);
24607 +               break;
24608 +       case Opt_list_plink:
24609 +               if (au_opt_test(sbinfo->si_mntflags, PLINK))
24610 +                       au_plink_list(sb);
24611 +               break;
24612 +
24613 +       case Opt_dio:
24614 +               au_opt_set(sbinfo->si_mntflags, DIO);
24615 +               au_fset_opts(opts->flags, REFRESH_DYAOP);
24616 +               break;
24617 +       case Opt_nodio:
24618 +               au_opt_clr(sbinfo->si_mntflags, DIO);
24619 +               au_fset_opts(opts->flags, REFRESH_DYAOP);
24620 +               break;
24621 +
24622 +       case Opt_fhsm_sec:
24623 +               au_fhsm_set(sbinfo, opt->fhsm_second);
24624 +               break;
24625 +
24626 +       case Opt_diropq_a:
24627 +               au_opt_set(sbinfo->si_mntflags, ALWAYS_DIROPQ);
24628 +               break;
24629 +       case Opt_diropq_w:
24630 +               au_opt_clr(sbinfo->si_mntflags, ALWAYS_DIROPQ);
24631 +               break;
24632 +
24633 +       case Opt_warn_perm:
24634 +               au_opt_set(sbinfo->si_mntflags, WARN_PERM);
24635 +               break;
24636 +       case Opt_nowarn_perm:
24637 +               au_opt_clr(sbinfo->si_mntflags, WARN_PERM);
24638 +               break;
24639 +
24640 +       case Opt_verbose:
24641 +               au_opt_set(sbinfo->si_mntflags, VERBOSE);
24642 +               break;
24643 +       case Opt_noverbose:
24644 +               au_opt_clr(sbinfo->si_mntflags, VERBOSE);
24645 +               break;
24646 +
24647 +       case Opt_sum:
24648 +               au_opt_set(sbinfo->si_mntflags, SUM);
24649 +               break;
24650 +       case Opt_wsum:
24651 +               au_opt_clr(sbinfo->si_mntflags, SUM);
24652 +               au_opt_set(sbinfo->si_mntflags, SUM_W);
24653 +       case Opt_nosum:
24654 +               au_opt_clr(sbinfo->si_mntflags, SUM);
24655 +               au_opt_clr(sbinfo->si_mntflags, SUM_W);
24656 +               break;
24657 +
24658 +       case Opt_wbr_create:
24659 +               err = au_opt_wbr_create(sb, &opt->wbr_create);
24660 +               break;
24661 +       case Opt_wbr_copyup:
24662 +               sbinfo->si_wbr_copyup = opt->wbr_copyup;
24663 +               sbinfo->si_wbr_copyup_ops = au_wbr_copyup_ops + opt->wbr_copyup;
24664 +               break;
24665 +
24666 +       case Opt_dirwh:
24667 +               sbinfo->si_dirwh = opt->dirwh;
24668 +               break;
24669 +
24670 +       case Opt_rdcache:
24671 +               sbinfo->si_rdcache
24672 +                       = msecs_to_jiffies(opt->rdcache * MSEC_PER_SEC);
24673 +               break;
24674 +       case Opt_rdblk:
24675 +               sbinfo->si_rdblk = opt->rdblk;
24676 +               break;
24677 +       case Opt_rdblk_def:
24678 +               sbinfo->si_rdblk = AUFS_RDBLK_DEF;
24679 +               break;
24680 +       case Opt_rdhash:
24681 +               sbinfo->si_rdhash = opt->rdhash;
24682 +               break;
24683 +       case Opt_rdhash_def:
24684 +               sbinfo->si_rdhash = AUFS_RDHASH_DEF;
24685 +               break;
24686 +
24687 +       case Opt_shwh:
24688 +               au_opt_set(sbinfo->si_mntflags, SHWH);
24689 +               break;
24690 +       case Opt_noshwh:
24691 +               au_opt_clr(sbinfo->si_mntflags, SHWH);
24692 +               break;
24693 +
24694 +       case Opt_dirperm1:
24695 +               au_opt_set(sbinfo->si_mntflags, DIRPERM1);
24696 +               break;
24697 +       case Opt_nodirperm1:
24698 +               au_opt_clr(sbinfo->si_mntflags, DIRPERM1);
24699 +               break;
24700 +
24701 +       case Opt_trunc_xino:
24702 +               au_opt_set(sbinfo->si_mntflags, TRUNC_XINO);
24703 +               break;
24704 +       case Opt_notrunc_xino:
24705 +               au_opt_clr(sbinfo->si_mntflags, TRUNC_XINO);
24706 +               break;
24707 +
24708 +       case Opt_trunc_xino_path:
24709 +       case Opt_itrunc_xino:
24710 +               err = au_xino_trunc(sb, opt->xino_itrunc.bindex);
24711 +               if (!err)
24712 +                       err = 1;
24713 +               break;
24714 +
24715 +       case Opt_trunc_xib:
24716 +               au_fset_opts(opts->flags, TRUNC_XIB);
24717 +               break;
24718 +       case Opt_notrunc_xib:
24719 +               au_fclr_opts(opts->flags, TRUNC_XIB);
24720 +               break;
24721 +
24722 +       case Opt_acl:
24723 +               sb->s_flags |= MS_POSIXACL;
24724 +               break;
24725 +       case Opt_noacl:
24726 +               sb->s_flags &= ~MS_POSIXACL;
24727 +               break;
24728 +
24729 +       default:
24730 +               err = 0;
24731 +               break;
24732 +       }
24733 +
24734 +       return err;
24735 +}
24736 +
24737 +/*
24738 + * returns tri-state.
24739 + * plus: processed without an error
24740 + * zero: unprocessed
24741 + * minus: error
24742 + */
24743 +static int au_opt_br(struct super_block *sb, struct au_opt *opt,
24744 +                    struct au_opts *opts)
24745 +{
24746 +       int err, do_refresh;
24747 +
24748 +       err = 0;
24749 +       switch (opt->type) {
24750 +       case Opt_append:
24751 +               opt->add.bindex = au_sbbot(sb) + 1;
24752 +               if (opt->add.bindex < 0)
24753 +                       opt->add.bindex = 0;
24754 +               goto add;
24755 +       case Opt_prepend:
24756 +               opt->add.bindex = 0;
24757 +       add: /* indented label */
24758 +       case Opt_add:
24759 +               err = au_br_add(sb, &opt->add,
24760 +                               au_ftest_opts(opts->flags, REMOUNT));
24761 +               if (!err) {
24762 +                       err = 1;
24763 +                       au_fset_opts(opts->flags, REFRESH);
24764 +               }
24765 +               break;
24766 +
24767 +       case Opt_del:
24768 +       case Opt_idel:
24769 +               err = au_br_del(sb, &opt->del,
24770 +                               au_ftest_opts(opts->flags, REMOUNT));
24771 +               if (!err) {
24772 +                       err = 1;
24773 +                       au_fset_opts(opts->flags, TRUNC_XIB);
24774 +                       au_fset_opts(opts->flags, REFRESH);
24775 +               }
24776 +               break;
24777 +
24778 +       case Opt_mod:
24779 +       case Opt_imod:
24780 +               err = au_br_mod(sb, &opt->mod,
24781 +                               au_ftest_opts(opts->flags, REMOUNT),
24782 +                               &do_refresh);
24783 +               if (!err) {
24784 +                       err = 1;
24785 +                       if (do_refresh)
24786 +                               au_fset_opts(opts->flags, REFRESH);
24787 +               }
24788 +               break;
24789 +       }
24790 +
24791 +       return err;
24792 +}
24793 +
24794 +static int au_opt_xino(struct super_block *sb, struct au_opt *opt,
24795 +                      struct au_opt_xino **opt_xino,
24796 +                      struct au_opts *opts)
24797 +{
24798 +       int err;
24799 +       aufs_bindex_t bbot, bindex;
24800 +       struct dentry *root, *parent, *h_root;
24801 +
24802 +       err = 0;
24803 +       switch (opt->type) {
24804 +       case Opt_xino:
24805 +               err = au_xino_set(sb, &opt->xino,
24806 +                                 !!au_ftest_opts(opts->flags, REMOUNT));
24807 +               if (unlikely(err))
24808 +                       break;
24809 +
24810 +               *opt_xino = &opt->xino;
24811 +               au_xino_brid_set(sb, -1);
24812 +
24813 +               /* safe d_parent access */
24814 +               parent = opt->xino.file->f_path.dentry->d_parent;
24815 +               root = sb->s_root;
24816 +               bbot = au_sbbot(sb);
24817 +               for (bindex = 0; bindex <= bbot; bindex++) {
24818 +                       h_root = au_h_dptr(root, bindex);
24819 +                       if (h_root == parent) {
24820 +                               au_xino_brid_set(sb, au_sbr_id(sb, bindex));
24821 +                               break;
24822 +                       }
24823 +               }
24824 +               break;
24825 +
24826 +       case Opt_noxino:
24827 +               au_xino_clr(sb);
24828 +               au_xino_brid_set(sb, -1);
24829 +               *opt_xino = (void *)-1;
24830 +               break;
24831 +       }
24832 +
24833 +       return err;
24834 +}
24835 +
24836 +int au_opts_verify(struct super_block *sb, unsigned long sb_flags,
24837 +                  unsigned int pending)
24838 +{
24839 +       int err, fhsm;
24840 +       aufs_bindex_t bindex, bbot;
24841 +       unsigned char do_plink, skip, do_free, can_no_dreval;
24842 +       struct au_branch *br;
24843 +       struct au_wbr *wbr;
24844 +       struct dentry *root, *dentry;
24845 +       struct inode *dir, *h_dir;
24846 +       struct au_sbinfo *sbinfo;
24847 +       struct au_hinode *hdir;
24848 +
24849 +       SiMustAnyLock(sb);
24850 +
24851 +       sbinfo = au_sbi(sb);
24852 +       AuDebugOn(!(sbinfo->si_mntflags & AuOptMask_UDBA));
24853 +
24854 +       if (!(sb_flags & MS_RDONLY)) {
24855 +               if (unlikely(!au_br_writable(au_sbr_perm(sb, 0))))
24856 +                       pr_warn("first branch should be rw\n");
24857 +               if (unlikely(au_opt_test(sbinfo->si_mntflags, SHWH)))
24858 +                       pr_warn_once("shwh should be used with ro\n");
24859 +       }
24860 +
24861 +       if (au_opt_test((sbinfo->si_mntflags | pending), UDBA_HNOTIFY)
24862 +           && !au_opt_test(sbinfo->si_mntflags, XINO))
24863 +               pr_warn_once("udba=*notify requires xino\n");
24864 +
24865 +       if (au_opt_test(sbinfo->si_mntflags, DIRPERM1))
24866 +               pr_warn_once("dirperm1 breaks the protection"
24867 +                            " by the permission bits on the lower branch\n");
24868 +
24869 +       err = 0;
24870 +       fhsm = 0;
24871 +       root = sb->s_root;
24872 +       dir = d_inode(root);
24873 +       do_plink = !!au_opt_test(sbinfo->si_mntflags, PLINK);
24874 +       can_no_dreval = !!au_opt_test((sbinfo->si_mntflags | pending),
24875 +                                     UDBA_NONE);
24876 +       bbot = au_sbbot(sb);
24877 +       for (bindex = 0; !err && bindex <= bbot; bindex++) {
24878 +               skip = 0;
24879 +               h_dir = au_h_iptr(dir, bindex);
24880 +               br = au_sbr(sb, bindex);
24881 +
24882 +               if ((br->br_perm & AuBrAttr_ICEX)
24883 +                   && !h_dir->i_op->listxattr)
24884 +                       br->br_perm &= ~AuBrAttr_ICEX;
24885 +#if 0
24886 +               if ((br->br_perm & AuBrAttr_ICEX_SEC)
24887 +                   && (au_br_sb(br)->s_flags & MS_NOSEC))
24888 +                       br->br_perm &= ~AuBrAttr_ICEX_SEC;
24889 +#endif
24890 +
24891 +               do_free = 0;
24892 +               wbr = br->br_wbr;
24893 +               if (wbr)
24894 +                       wbr_wh_read_lock(wbr);
24895 +
24896 +               if (!au_br_writable(br->br_perm)) {
24897 +                       do_free = !!wbr;
24898 +                       skip = (!wbr
24899 +                               || (!wbr->wbr_whbase
24900 +                                   && !wbr->wbr_plink
24901 +                                   && !wbr->wbr_orph));
24902 +               } else if (!au_br_wh_linkable(br->br_perm)) {
24903 +                       /* skip = (!br->br_whbase && !br->br_orph); */
24904 +                       skip = (!wbr || !wbr->wbr_whbase);
24905 +                       if (skip && wbr) {
24906 +                               if (do_plink)
24907 +                                       skip = !!wbr->wbr_plink;
24908 +                               else
24909 +                                       skip = !wbr->wbr_plink;
24910 +                       }
24911 +               } else {
24912 +                       /* skip = (br->br_whbase && br->br_ohph); */
24913 +                       skip = (wbr && wbr->wbr_whbase);
24914 +                       if (skip) {
24915 +                               if (do_plink)
24916 +                                       skip = !!wbr->wbr_plink;
24917 +                               else
24918 +                                       skip = !wbr->wbr_plink;
24919 +                       }
24920 +               }
24921 +               if (wbr)
24922 +                       wbr_wh_read_unlock(wbr);
24923 +
24924 +               if (can_no_dreval) {
24925 +                       dentry = br->br_path.dentry;
24926 +                       spin_lock(&dentry->d_lock);
24927 +                       if (dentry->d_flags &
24928 +                           (DCACHE_OP_REVALIDATE | DCACHE_OP_WEAK_REVALIDATE))
24929 +                               can_no_dreval = 0;
24930 +                       spin_unlock(&dentry->d_lock);
24931 +               }
24932 +
24933 +               if (au_br_fhsm(br->br_perm)) {
24934 +                       fhsm++;
24935 +                       AuDebugOn(!br->br_fhsm);
24936 +               }
24937 +
24938 +               if (skip)
24939 +                       continue;
24940 +
24941 +               hdir = au_hi(dir, bindex);
24942 +               au_hn_inode_lock_nested(hdir, AuLsc_I_PARENT);
24943 +               if (wbr)
24944 +                       wbr_wh_write_lock(wbr);
24945 +               err = au_wh_init(br, sb);
24946 +               if (wbr)
24947 +                       wbr_wh_write_unlock(wbr);
24948 +               au_hn_inode_unlock(hdir);
24949 +
24950 +               if (!err && do_free) {
24951 +                       if (wbr)
24952 +                               au_delayed_kfree(wbr);
24953 +                       br->br_wbr = NULL;
24954 +               }
24955 +       }
24956 +
24957 +       if (can_no_dreval)
24958 +               au_fset_si(sbinfo, NO_DREVAL);
24959 +       else
24960 +               au_fclr_si(sbinfo, NO_DREVAL);
24961 +
24962 +       if (fhsm >= 2) {
24963 +               au_fset_si(sbinfo, FHSM);
24964 +               for (bindex = bbot; bindex >= 0; bindex--) {
24965 +                       br = au_sbr(sb, bindex);
24966 +                       if (au_br_fhsm(br->br_perm)) {
24967 +                               au_fhsm_set_bottom(sb, bindex);
24968 +                               break;
24969 +                       }
24970 +               }
24971 +       } else {
24972 +               au_fclr_si(sbinfo, FHSM);
24973 +               au_fhsm_set_bottom(sb, -1);
24974 +       }
24975 +
24976 +       return err;
24977 +}
24978 +
24979 +int au_opts_mount(struct super_block *sb, struct au_opts *opts)
24980 +{
24981 +       int err;
24982 +       unsigned int tmp;
24983 +       aufs_bindex_t bindex, bbot;
24984 +       struct au_opt *opt;
24985 +       struct au_opt_xino *opt_xino, xino;
24986 +       struct au_sbinfo *sbinfo;
24987 +       struct au_branch *br;
24988 +       struct inode *dir;
24989 +
24990 +       SiMustWriteLock(sb);
24991 +
24992 +       err = 0;
24993 +       opt_xino = NULL;
24994 +       opt = opts->opt;
24995 +       while (err >= 0 && opt->type != Opt_tail)
24996 +               err = au_opt_simple(sb, opt++, opts);
24997 +       if (err > 0)
24998 +               err = 0;
24999 +       else if (unlikely(err < 0))
25000 +               goto out;
25001 +
25002 +       /* disable xino and udba temporary */
25003 +       sbinfo = au_sbi(sb);
25004 +       tmp = sbinfo->si_mntflags;
25005 +       au_opt_clr(sbinfo->si_mntflags, XINO);
25006 +       au_opt_set_udba(sbinfo->si_mntflags, UDBA_REVAL);
25007 +
25008 +       opt = opts->opt;
25009 +       while (err >= 0 && opt->type != Opt_tail)
25010 +               err = au_opt_br(sb, opt++, opts);
25011 +       if (err > 0)
25012 +               err = 0;
25013 +       else if (unlikely(err < 0))
25014 +               goto out;
25015 +
25016 +       bbot = au_sbbot(sb);
25017 +       if (unlikely(bbot < 0)) {
25018 +               err = -EINVAL;
25019 +               pr_err("no branches\n");
25020 +               goto out;
25021 +       }
25022 +
25023 +       if (au_opt_test(tmp, XINO))
25024 +               au_opt_set(sbinfo->si_mntflags, XINO);
25025 +       opt = opts->opt;
25026 +       while (!err && opt->type != Opt_tail)
25027 +               err = au_opt_xino(sb, opt++, &opt_xino, opts);
25028 +       if (unlikely(err))
25029 +               goto out;
25030 +
25031 +       err = au_opts_verify(sb, sb->s_flags, tmp);
25032 +       if (unlikely(err))
25033 +               goto out;
25034 +
25035 +       /* restore xino */
25036 +       if (au_opt_test(tmp, XINO) && !opt_xino) {
25037 +               xino.file = au_xino_def(sb);
25038 +               err = PTR_ERR(xino.file);
25039 +               if (IS_ERR(xino.file))
25040 +                       goto out;
25041 +
25042 +               err = au_xino_set(sb, &xino, /*remount*/0);
25043 +               fput(xino.file);
25044 +               if (unlikely(err))
25045 +                       goto out;
25046 +       }
25047 +
25048 +       /* restore udba */
25049 +       tmp &= AuOptMask_UDBA;
25050 +       sbinfo->si_mntflags &= ~AuOptMask_UDBA;
25051 +       sbinfo->si_mntflags |= tmp;
25052 +       bbot = au_sbbot(sb);
25053 +       for (bindex = 0; bindex <= bbot; bindex++) {
25054 +               br = au_sbr(sb, bindex);
25055 +               err = au_hnotify_reset_br(tmp, br, br->br_perm);
25056 +               if (unlikely(err))
25057 +                       AuIOErr("hnotify failed on br %d, %d, ignored\n",
25058 +                               bindex, err);
25059 +               /* go on even if err */
25060 +       }
25061 +       if (au_opt_test(tmp, UDBA_HNOTIFY)) {
25062 +               dir = d_inode(sb->s_root);
25063 +               au_hn_reset(dir, au_hi_flags(dir, /*isdir*/1) & ~AuHi_XINO);
25064 +       }
25065 +
25066 +out:
25067 +       return err;
25068 +}
25069 +
25070 +int au_opts_remount(struct super_block *sb, struct au_opts *opts)
25071 +{
25072 +       int err, rerr;
25073 +       unsigned char no_dreval;
25074 +       struct inode *dir;
25075 +       struct au_opt_xino *opt_xino;
25076 +       struct au_opt *opt;
25077 +       struct au_sbinfo *sbinfo;
25078 +
25079 +       SiMustWriteLock(sb);
25080 +
25081 +       err = 0;
25082 +       dir = d_inode(sb->s_root);
25083 +       sbinfo = au_sbi(sb);
25084 +       opt_xino = NULL;
25085 +       opt = opts->opt;
25086 +       while (err >= 0 && opt->type != Opt_tail) {
25087 +               err = au_opt_simple(sb, opt, opts);
25088 +               if (!err)
25089 +                       err = au_opt_br(sb, opt, opts);
25090 +               if (!err)
25091 +                       err = au_opt_xino(sb, opt, &opt_xino, opts);
25092 +               opt++;
25093 +       }
25094 +       if (err > 0)
25095 +               err = 0;
25096 +       AuTraceErr(err);
25097 +       /* go on even err */
25098 +
25099 +       no_dreval = !!au_ftest_si(sbinfo, NO_DREVAL);
25100 +       rerr = au_opts_verify(sb, opts->sb_flags, /*pending*/0);
25101 +       if (unlikely(rerr && !err))
25102 +               err = rerr;
25103 +
25104 +       if (no_dreval != !!au_ftest_si(sbinfo, NO_DREVAL))
25105 +               au_fset_opts(opts->flags, REFRESH_IDOP);
25106 +
25107 +       if (au_ftest_opts(opts->flags, TRUNC_XIB)) {
25108 +               rerr = au_xib_trunc(sb);
25109 +               if (unlikely(rerr && !err))
25110 +                       err = rerr;
25111 +       }
25112 +
25113 +       /* will be handled by the caller */
25114 +       if (!au_ftest_opts(opts->flags, REFRESH)
25115 +           && (opts->given_udba
25116 +               || au_opt_test(sbinfo->si_mntflags, XINO)
25117 +               || au_ftest_opts(opts->flags, REFRESH_IDOP)
25118 +                   ))
25119 +               au_fset_opts(opts->flags, REFRESH);
25120 +
25121 +       AuDbg("status 0x%x\n", opts->flags);
25122 +       return err;
25123 +}
25124 +
25125 +/* ---------------------------------------------------------------------- */
25126 +
25127 +unsigned int au_opt_udba(struct super_block *sb)
25128 +{
25129 +       return au_mntflags(sb) & AuOptMask_UDBA;
25130 +}
25131 diff -urN /usr/share/empty/fs/aufs/opts.h linux/fs/aufs/opts.h
25132 --- /usr/share/empty/fs/aufs/opts.h     1970-01-01 01:00:00.000000000 +0100
25133 +++ linux/fs/aufs/opts.h        2016-12-17 12:28:17.598545045 +0100
25134 @@ -0,0 +1,213 @@
25135 +/*
25136 + * Copyright (C) 2005-2016 Junjiro R. Okajima
25137 + *
25138 + * This program, aufs is free software; you can redistribute it and/or modify
25139 + * it under the terms of the GNU General Public License as published by
25140 + * the Free Software Foundation; either version 2 of the License, or
25141 + * (at your option) any later version.
25142 + *
25143 + * This program is distributed in the hope that it will be useful,
25144 + * but WITHOUT ANY WARRANTY; without even the implied warranty of
25145 + * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
25146 + * GNU General Public License for more details.
25147 + *
25148 + * You should have received a copy of the GNU General Public License
25149 + * along with this program.  If not, see <http://www.gnu.org/licenses/>.
25150 + */
25151 +
25152 +/*
25153 + * mount options/flags
25154 + */
25155 +
25156 +#ifndef __AUFS_OPTS_H__
25157 +#define __AUFS_OPTS_H__
25158 +
25159 +#ifdef __KERNEL__
25160 +
25161 +#include <linux/path.h>
25162 +
25163 +struct file;
25164 +struct super_block;
25165 +
25166 +/* ---------------------------------------------------------------------- */
25167 +
25168 +/* mount flags */
25169 +#define AuOpt_XINO             1               /* external inode number bitmap
25170 +                                                  and translation table */
25171 +#define AuOpt_TRUNC_XINO       (1 << 1)        /* truncate xino files */
25172 +#define AuOpt_UDBA_NONE                (1 << 2)        /* users direct branch access */
25173 +#define AuOpt_UDBA_REVAL       (1 << 3)
25174 +#define AuOpt_UDBA_HNOTIFY     (1 << 4)
25175 +#define AuOpt_SHWH             (1 << 5)        /* show whiteout */
25176 +#define AuOpt_PLINK            (1 << 6)        /* pseudo-link */
25177 +#define AuOpt_DIRPERM1         (1 << 7)        /* ignore the lower dir's perm
25178 +                                                  bits */
25179 +#define AuOpt_ALWAYS_DIROPQ    (1 << 9)        /* policy to creating diropq */
25180 +#define AuOpt_SUM              (1 << 10)       /* summation for statfs(2) */
25181 +#define AuOpt_SUM_W            (1 << 11)       /* unimplemented */
25182 +#define AuOpt_WARN_PERM                (1 << 12)       /* warn when add-branch */
25183 +#define AuOpt_VERBOSE          (1 << 13)       /* busy inode when del-branch */
25184 +#define AuOpt_DIO              (1 << 14)       /* direct io */
25185 +
25186 +#ifndef CONFIG_AUFS_HNOTIFY
25187 +#undef AuOpt_UDBA_HNOTIFY
25188 +#define AuOpt_UDBA_HNOTIFY     0
25189 +#endif
25190 +#ifndef CONFIG_AUFS_SHWH
25191 +#undef AuOpt_SHWH
25192 +#define AuOpt_SHWH             0
25193 +#endif
25194 +
25195 +#define AuOpt_Def      (AuOpt_XINO \
25196 +                        | AuOpt_UDBA_REVAL \
25197 +                        | AuOpt_PLINK \
25198 +                        /* | AuOpt_DIRPERM1 */ \
25199 +                        | AuOpt_WARN_PERM)
25200 +#define AuOptMask_UDBA (AuOpt_UDBA_NONE \
25201 +                        | AuOpt_UDBA_REVAL \
25202 +                        | AuOpt_UDBA_HNOTIFY)
25203 +
25204 +#define au_opt_test(flags, name)       (flags & AuOpt_##name)
25205 +#define au_opt_set(flags, name) do { \
25206 +       BUILD_BUG_ON(AuOpt_##name & AuOptMask_UDBA); \
25207 +       ((flags) |= AuOpt_##name); \
25208 +} while (0)
25209 +#define au_opt_set_udba(flags, name) do { \
25210 +       (flags) &= ~AuOptMask_UDBA; \
25211 +       ((flags) |= AuOpt_##name); \
25212 +} while (0)
25213 +#define au_opt_clr(flags, name) do { \
25214 +       ((flags) &= ~AuOpt_##name); \
25215 +} while (0)
25216 +
25217 +static inline unsigned int au_opts_plink(unsigned int mntflags)
25218 +{
25219 +#ifdef CONFIG_PROC_FS
25220 +       return mntflags;
25221 +#else
25222 +       return mntflags & ~AuOpt_PLINK;
25223 +#endif
25224 +}
25225 +
25226 +/* ---------------------------------------------------------------------- */
25227 +
25228 +/* policies to select one among multiple writable branches */
25229 +enum {
25230 +       AuWbrCreate_TDP,        /* top down parent */
25231 +       AuWbrCreate_RR,         /* round robin */
25232 +       AuWbrCreate_MFS,        /* most free space */
25233 +       AuWbrCreate_MFSV,       /* mfs with seconds */
25234 +       AuWbrCreate_MFSRR,      /* mfs then rr */
25235 +       AuWbrCreate_MFSRRV,     /* mfs then rr with seconds */
25236 +       AuWbrCreate_TDMFS,      /* top down regardless parent and mfs */
25237 +       AuWbrCreate_TDMFSV,     /* top down regardless parent and mfs */
25238 +       AuWbrCreate_PMFS,       /* parent and mfs */
25239 +       AuWbrCreate_PMFSV,      /* parent and mfs with seconds */
25240 +       AuWbrCreate_PMFSRR,     /* parent, mfs and round-robin */
25241 +       AuWbrCreate_PMFSRRV,    /* plus seconds */
25242 +
25243 +       AuWbrCreate_Def = AuWbrCreate_TDP
25244 +};
25245 +
25246 +enum {
25247 +       AuWbrCopyup_TDP,        /* top down parent */
25248 +       AuWbrCopyup_BUP,        /* bottom up parent */
25249 +       AuWbrCopyup_BU,         /* bottom up */
25250 +
25251 +       AuWbrCopyup_Def = AuWbrCopyup_TDP
25252 +};
25253 +
25254 +/* ---------------------------------------------------------------------- */
25255 +
25256 +struct au_opt_add {
25257 +       aufs_bindex_t   bindex;
25258 +       char            *pathname;
25259 +       int             perm;
25260 +       struct path     path;
25261 +};
25262 +
25263 +struct au_opt_del {
25264 +       char            *pathname;
25265 +       struct path     h_path;
25266 +};
25267 +
25268 +struct au_opt_mod {
25269 +       char            *path;
25270 +       int             perm;
25271 +       struct dentry   *h_root;
25272 +};
25273 +
25274 +struct au_opt_xino {
25275 +       char            *path;
25276 +       struct file     *file;
25277 +};
25278 +
25279 +struct au_opt_xino_itrunc {
25280 +       aufs_bindex_t   bindex;
25281 +};
25282 +
25283 +struct au_opt_wbr_create {
25284 +       int                     wbr_create;
25285 +       int                     mfs_second;
25286 +       unsigned long long      mfsrr_watermark;
25287 +};
25288 +
25289 +struct au_opt {
25290 +       int type;
25291 +       union {
25292 +               struct au_opt_xino      xino;
25293 +               struct au_opt_xino_itrunc xino_itrunc;
25294 +               struct au_opt_add       add;
25295 +               struct au_opt_del       del;
25296 +               struct au_opt_mod       mod;
25297 +               int                     dirwh;
25298 +               int                     rdcache;
25299 +               unsigned int            rdblk;
25300 +               unsigned int            rdhash;
25301 +               int                     udba;
25302 +               struct au_opt_wbr_create wbr_create;
25303 +               int                     wbr_copyup;
25304 +               unsigned int            fhsm_second;
25305 +       };
25306 +};
25307 +
25308 +/* opts flags */
25309 +#define AuOpts_REMOUNT         1
25310 +#define AuOpts_REFRESH         (1 << 1)
25311 +#define AuOpts_TRUNC_XIB       (1 << 2)
25312 +#define AuOpts_REFRESH_DYAOP   (1 << 3)
25313 +#define AuOpts_REFRESH_IDOP    (1 << 4)
25314 +#define au_ftest_opts(flags, name)     ((flags) & AuOpts_##name)
25315 +#define au_fset_opts(flags, name) \
25316 +       do { (flags) |= AuOpts_##name; } while (0)
25317 +#define au_fclr_opts(flags, name) \
25318 +       do { (flags) &= ~AuOpts_##name; } while (0)
25319 +
25320 +struct au_opts {
25321 +       struct au_opt   *opt;
25322 +       int             max_opt;
25323 +
25324 +       unsigned int    given_udba;
25325 +       unsigned int    flags;
25326 +       unsigned long   sb_flags;
25327 +};
25328 +
25329 +/* ---------------------------------------------------------------------- */
25330 +
25331 +/* opts.c */
25332 +void au_optstr_br_perm(au_br_perm_str_t *str, int perm);
25333 +const char *au_optstr_udba(int udba);
25334 +const char *au_optstr_wbr_copyup(int wbr_copyup);
25335 +const char *au_optstr_wbr_create(int wbr_create);
25336 +
25337 +void au_opts_free(struct au_opts *opts);
25338 +int au_opts_parse(struct super_block *sb, char *str, struct au_opts *opts);
25339 +int au_opts_verify(struct super_block *sb, unsigned long sb_flags,
25340 +                  unsigned int pending);
25341 +int au_opts_mount(struct super_block *sb, struct au_opts *opts);
25342 +int au_opts_remount(struct super_block *sb, struct au_opts *opts);
25343 +
25344 +unsigned int au_opt_udba(struct super_block *sb);
25345 +
25346 +#endif /* __KERNEL__ */
25347 +#endif /* __AUFS_OPTS_H__ */
25348 diff -urN /usr/share/empty/fs/aufs/plink.c linux/fs/aufs/plink.c
25349 --- /usr/share/empty/fs/aufs/plink.c    1970-01-01 01:00:00.000000000 +0100
25350 +++ linux/fs/aufs/plink.c       2016-10-09 16:55:36.496035060 +0200
25351 @@ -0,0 +1,514 @@
25352 +/*
25353 + * Copyright (C) 2005-2016 Junjiro R. Okajima
25354 + *
25355 + * This program, aufs is free software; you can redistribute it and/or modify
25356 + * it under the terms of the GNU General Public License as published by
25357 + * the Free Software Foundation; either version 2 of the License, or
25358 + * (at your option) any later version.
25359 + *
25360 + * This program is distributed in the hope that it will be useful,
25361 + * but WITHOUT ANY WARRANTY; without even the implied warranty of
25362 + * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
25363 + * GNU General Public License for more details.
25364 + *
25365 + * You should have received a copy of the GNU General Public License
25366 + * along with this program.  If not, see <http://www.gnu.org/licenses/>.
25367 + */
25368 +
25369 +/*
25370 + * pseudo-link
25371 + */
25372 +
25373 +#include "aufs.h"
25374 +
25375 +/*
25376 + * the pseudo-link maintenance mode.
25377 + * during a user process maintains the pseudo-links,
25378 + * prohibit adding a new plink and branch manipulation.
25379 + *
25380 + * Flags
25381 + * NOPLM:
25382 + *     For entry functions which will handle plink, and i_mutex is already held
25383 + *     in VFS.
25384 + *     They cannot wait and should return an error at once.
25385 + *     Callers has to check the error.
25386 + * NOPLMW:
25387 + *     For entry functions which will handle plink, but i_mutex is not held
25388 + *     in VFS.
25389 + *     They can wait the plink maintenance mode to finish.
25390 + *
25391 + * They behave like F_SETLK and F_SETLKW.
25392 + * If the caller never handle plink, then both flags are unnecessary.
25393 + */
25394 +
25395 +int au_plink_maint(struct super_block *sb, int flags)
25396 +{
25397 +       int err;
25398 +       pid_t pid, ppid;
25399 +       struct task_struct *parent, *prev;
25400 +       struct au_sbinfo *sbi;
25401 +
25402 +       SiMustAnyLock(sb);
25403 +
25404 +       err = 0;
25405 +       if (!au_opt_test(au_mntflags(sb), PLINK))
25406 +               goto out;
25407 +
25408 +       sbi = au_sbi(sb);
25409 +       pid = sbi->si_plink_maint_pid;
25410 +       if (!pid || pid == current->pid)
25411 +               goto out;
25412 +
25413 +       /* todo: it highly depends upon /sbin/mount.aufs */
25414 +       prev = NULL;
25415 +       parent = current;
25416 +       ppid = 0;
25417 +       rcu_read_lock();
25418 +       while (1) {
25419 +               parent = rcu_dereference(parent->real_parent);
25420 +               if (parent == prev)
25421 +                       break;
25422 +               ppid = task_pid_vnr(parent);
25423 +               if (pid == ppid) {
25424 +                       rcu_read_unlock();
25425 +                       goto out;
25426 +               }
25427 +               prev = parent;
25428 +       }
25429 +       rcu_read_unlock();
25430 +
25431 +       if (au_ftest_lock(flags, NOPLMW)) {
25432 +               /* if there is no i_mutex lock in VFS, we don't need to wait */
25433 +               /* AuDebugOn(!lockdep_depth(current)); */
25434 +               while (sbi->si_plink_maint_pid) {
25435 +                       si_read_unlock(sb);
25436 +                       /* gave up wake_up_bit() */
25437 +                       wait_event(sbi->si_plink_wq, !sbi->si_plink_maint_pid);
25438 +
25439 +                       if (au_ftest_lock(flags, FLUSH))
25440 +                               au_nwt_flush(&sbi->si_nowait);
25441 +                       si_noflush_read_lock(sb);
25442 +               }
25443 +       } else if (au_ftest_lock(flags, NOPLM)) {
25444 +               AuDbg("ppid %d, pid %d\n", ppid, pid);
25445 +               err = -EAGAIN;
25446 +       }
25447 +
25448 +out:
25449 +       return err;
25450 +}
25451 +
25452 +void au_plink_maint_leave(struct au_sbinfo *sbinfo)
25453 +{
25454 +       spin_lock(&sbinfo->si_plink_maint_lock);
25455 +       sbinfo->si_plink_maint_pid = 0;
25456 +       spin_unlock(&sbinfo->si_plink_maint_lock);
25457 +       wake_up_all(&sbinfo->si_plink_wq);
25458 +}
25459 +
25460 +int au_plink_maint_enter(struct super_block *sb)
25461 +{
25462 +       int err;
25463 +       struct au_sbinfo *sbinfo;
25464 +
25465 +       err = 0;
25466 +       sbinfo = au_sbi(sb);
25467 +       /* make sure i am the only one in this fs */
25468 +       si_write_lock(sb, AuLock_FLUSH);
25469 +       if (au_opt_test(au_mntflags(sb), PLINK)) {
25470 +               spin_lock(&sbinfo->si_plink_maint_lock);
25471 +               if (!sbinfo->si_plink_maint_pid)
25472 +                       sbinfo->si_plink_maint_pid = current->pid;
25473 +               else
25474 +                       err = -EBUSY;
25475 +               spin_unlock(&sbinfo->si_plink_maint_lock);
25476 +       }
25477 +       si_write_unlock(sb);
25478 +
25479 +       return err;
25480 +}
25481 +
25482 +/* ---------------------------------------------------------------------- */
25483 +
25484 +#ifdef CONFIG_AUFS_DEBUG
25485 +void au_plink_list(struct super_block *sb)
25486 +{
25487 +       int i;
25488 +       struct au_sbinfo *sbinfo;
25489 +       struct hlist_head *plink_hlist;
25490 +       struct au_icntnr *icntnr;
25491 +
25492 +       SiMustAnyLock(sb);
25493 +
25494 +       sbinfo = au_sbi(sb);
25495 +       AuDebugOn(!au_opt_test(au_mntflags(sb), PLINK));
25496 +       AuDebugOn(au_plink_maint(sb, AuLock_NOPLM));
25497 +
25498 +       for (i = 0; i < AuPlink_NHASH; i++) {
25499 +               plink_hlist = &sbinfo->si_plink[i].head;
25500 +               rcu_read_lock();
25501 +               hlist_for_each_entry_rcu(icntnr, plink_hlist, plink)
25502 +                       AuDbg("%lu\n", icntnr->vfs_inode.i_ino);
25503 +               rcu_read_unlock();
25504 +       }
25505 +}
25506 +#endif
25507 +
25508 +/* is the inode pseudo-linked? */
25509 +int au_plink_test(struct inode *inode)
25510 +{
25511 +       int found, i;
25512 +       struct au_sbinfo *sbinfo;
25513 +       struct hlist_head *plink_hlist;
25514 +       struct au_icntnr *icntnr;
25515 +
25516 +       sbinfo = au_sbi(inode->i_sb);
25517 +       AuRwMustAnyLock(&sbinfo->si_rwsem);
25518 +       AuDebugOn(!au_opt_test(au_mntflags(inode->i_sb), PLINK));
25519 +       AuDebugOn(au_plink_maint(inode->i_sb, AuLock_NOPLM));
25520 +
25521 +       found = 0;
25522 +       i = au_plink_hash(inode->i_ino);
25523 +       plink_hlist = &sbinfo->si_plink[i].head;
25524 +       rcu_read_lock();
25525 +       hlist_for_each_entry_rcu(icntnr, plink_hlist, plink)
25526 +               if (&icntnr->vfs_inode == inode) {
25527 +                       found = 1;
25528 +                       break;
25529 +               }
25530 +       rcu_read_unlock();
25531 +       return found;
25532 +}
25533 +
25534 +/* ---------------------------------------------------------------------- */
25535 +
25536 +/*
25537 + * generate a name for plink.
25538 + * the file will be stored under AUFS_WH_PLINKDIR.
25539 + */
25540 +/* 20 is max digits length of ulong 64 */
25541 +#define PLINK_NAME_LEN ((20 + 1) * 2)
25542 +
25543 +static int plink_name(char *name, int len, struct inode *inode,
25544 +                     aufs_bindex_t bindex)
25545 +{
25546 +       int rlen;
25547 +       struct inode *h_inode;
25548 +
25549 +       h_inode = au_h_iptr(inode, bindex);
25550 +       rlen = snprintf(name, len, "%lu.%lu", inode->i_ino, h_inode->i_ino);
25551 +       return rlen;
25552 +}
25553 +
25554 +struct au_do_plink_lkup_args {
25555 +       struct dentry **errp;
25556 +       struct qstr *tgtname;
25557 +       struct dentry *h_parent;
25558 +       struct au_branch *br;
25559 +};
25560 +
25561 +static struct dentry *au_do_plink_lkup(struct qstr *tgtname,
25562 +                                      struct dentry *h_parent,
25563 +                                      struct au_branch *br)
25564 +{
25565 +       struct dentry *h_dentry;
25566 +       struct inode *h_inode;
25567 +
25568 +       h_inode = d_inode(h_parent);
25569 +       inode_lock_nested(h_inode, AuLsc_I_CHILD2);
25570 +       h_dentry = vfsub_lkup_one(tgtname, h_parent);
25571 +       inode_unlock(h_inode);
25572 +       return h_dentry;
25573 +}
25574 +
25575 +static void au_call_do_plink_lkup(void *args)
25576 +{
25577 +       struct au_do_plink_lkup_args *a = args;
25578 +       *a->errp = au_do_plink_lkup(a->tgtname, a->h_parent, a->br);
25579 +}
25580 +
25581 +/* lookup the plink-ed @inode under the branch at @bindex */
25582 +struct dentry *au_plink_lkup(struct inode *inode, aufs_bindex_t bindex)
25583 +{
25584 +       struct dentry *h_dentry, *h_parent;
25585 +       struct au_branch *br;
25586 +       int wkq_err;
25587 +       char a[PLINK_NAME_LEN];
25588 +       struct qstr tgtname = QSTR_INIT(a, 0);
25589 +
25590 +       AuDebugOn(au_plink_maint(inode->i_sb, AuLock_NOPLM));
25591 +
25592 +       br = au_sbr(inode->i_sb, bindex);
25593 +       h_parent = br->br_wbr->wbr_plink;
25594 +       tgtname.len = plink_name(a, sizeof(a), inode, bindex);
25595 +
25596 +       if (!uid_eq(current_fsuid(), GLOBAL_ROOT_UID)) {
25597 +               struct au_do_plink_lkup_args args = {
25598 +                       .errp           = &h_dentry,
25599 +                       .tgtname        = &tgtname,
25600 +                       .h_parent       = h_parent,
25601 +                       .br             = br
25602 +               };
25603 +
25604 +               wkq_err = au_wkq_wait(au_call_do_plink_lkup, &args);
25605 +               if (unlikely(wkq_err))
25606 +                       h_dentry = ERR_PTR(wkq_err);
25607 +       } else
25608 +               h_dentry = au_do_plink_lkup(&tgtname, h_parent, br);
25609 +
25610 +       return h_dentry;
25611 +}
25612 +
25613 +/* create a pseudo-link */
25614 +static int do_whplink(struct qstr *tgt, struct dentry *h_parent,
25615 +                     struct dentry *h_dentry, struct au_branch *br)
25616 +{
25617 +       int err;
25618 +       struct path h_path = {
25619 +               .mnt = au_br_mnt(br)
25620 +       };
25621 +       struct inode *h_dir, *delegated;
25622 +
25623 +       h_dir = d_inode(h_parent);
25624 +       inode_lock_nested(h_dir, AuLsc_I_CHILD2);
25625 +again:
25626 +       h_path.dentry = vfsub_lkup_one(tgt, h_parent);
25627 +       err = PTR_ERR(h_path.dentry);
25628 +       if (IS_ERR(h_path.dentry))
25629 +               goto out;
25630 +
25631 +       err = 0;
25632 +       /* wh.plink dir is not monitored */
25633 +       /* todo: is it really safe? */
25634 +       if (d_is_positive(h_path.dentry)
25635 +           && d_inode(h_path.dentry) != d_inode(h_dentry)) {
25636 +               delegated = NULL;
25637 +               err = vfsub_unlink(h_dir, &h_path, &delegated, /*force*/0);
25638 +               if (unlikely(err == -EWOULDBLOCK)) {
25639 +                       pr_warn("cannot retry for NFSv4 delegation"
25640 +                               " for an internal unlink\n");
25641 +                       iput(delegated);
25642 +               }
25643 +               dput(h_path.dentry);
25644 +               h_path.dentry = NULL;
25645 +               if (!err)
25646 +                       goto again;
25647 +       }
25648 +       if (!err && d_is_negative(h_path.dentry)) {
25649 +               delegated = NULL;
25650 +               err = vfsub_link(h_dentry, h_dir, &h_path, &delegated);
25651 +               if (unlikely(err == -EWOULDBLOCK)) {
25652 +                       pr_warn("cannot retry for NFSv4 delegation"
25653 +                               " for an internal link\n");
25654 +                       iput(delegated);
25655 +               }
25656 +       }
25657 +       dput(h_path.dentry);
25658 +
25659 +out:
25660 +       inode_unlock(h_dir);
25661 +       return err;
25662 +}
25663 +
25664 +struct do_whplink_args {
25665 +       int *errp;
25666 +       struct qstr *tgt;
25667 +       struct dentry *h_parent;
25668 +       struct dentry *h_dentry;
25669 +       struct au_branch *br;
25670 +};
25671 +
25672 +static void call_do_whplink(void *args)
25673 +{
25674 +       struct do_whplink_args *a = args;
25675 +       *a->errp = do_whplink(a->tgt, a->h_parent, a->h_dentry, a->br);
25676 +}
25677 +
25678 +static int whplink(struct dentry *h_dentry, struct inode *inode,
25679 +                  aufs_bindex_t bindex, struct au_branch *br)
25680 +{
25681 +       int err, wkq_err;
25682 +       struct au_wbr *wbr;
25683 +       struct dentry *h_parent;
25684 +       char a[PLINK_NAME_LEN];
25685 +       struct qstr tgtname = QSTR_INIT(a, 0);
25686 +
25687 +       wbr = au_sbr(inode->i_sb, bindex)->br_wbr;
25688 +       h_parent = wbr->wbr_plink;
25689 +       tgtname.len = plink_name(a, sizeof(a), inode, bindex);
25690 +
25691 +       /* always superio. */
25692 +       if (!uid_eq(current_fsuid(), GLOBAL_ROOT_UID)) {
25693 +               struct do_whplink_args args = {
25694 +                       .errp           = &err,
25695 +                       .tgt            = &tgtname,
25696 +                       .h_parent       = h_parent,
25697 +                       .h_dentry       = h_dentry,
25698 +                       .br             = br
25699 +               };
25700 +               wkq_err = au_wkq_wait(call_do_whplink, &args);
25701 +               if (unlikely(wkq_err))
25702 +                       err = wkq_err;
25703 +       } else
25704 +               err = do_whplink(&tgtname, h_parent, h_dentry, br);
25705 +
25706 +       return err;
25707 +}
25708 +
25709 +/*
25710 + * create a new pseudo-link for @h_dentry on @bindex.
25711 + * the linked inode is held in aufs @inode.
25712 + */
25713 +void au_plink_append(struct inode *inode, aufs_bindex_t bindex,
25714 +                    struct dentry *h_dentry)
25715 +{
25716 +       struct super_block *sb;
25717 +       struct au_sbinfo *sbinfo;
25718 +       struct hlist_head *plink_hlist;
25719 +       struct au_icntnr *icntnr;
25720 +       struct au_sphlhead *sphl;
25721 +       int found, err, cnt, i;
25722 +
25723 +       sb = inode->i_sb;
25724 +       sbinfo = au_sbi(sb);
25725 +       AuDebugOn(!au_opt_test(au_mntflags(sb), PLINK));
25726 +       AuDebugOn(au_plink_maint(sb, AuLock_NOPLM));
25727 +
25728 +       found = au_plink_test(inode);
25729 +       if (found)
25730 +               return;
25731 +
25732 +       i = au_plink_hash(inode->i_ino);
25733 +       sphl = sbinfo->si_plink + i;
25734 +       plink_hlist = &sphl->head;
25735 +       au_igrab(inode);
25736 +
25737 +       spin_lock(&sphl->spin);
25738 +       hlist_for_each_entry(icntnr, plink_hlist, plink) {
25739 +               if (&icntnr->vfs_inode == inode) {
25740 +                       found = 1;
25741 +                       break;
25742 +               }
25743 +       }
25744 +       if (!found) {
25745 +               icntnr = container_of(inode, struct au_icntnr, vfs_inode);
25746 +               hlist_add_head_rcu(&icntnr->plink, plink_hlist);
25747 +       }
25748 +       spin_unlock(&sphl->spin);
25749 +       if (!found) {
25750 +               cnt = au_sphl_count(sphl);
25751 +#define msg "unexpectedly unblanced or too many pseudo-links"
25752 +               if (cnt > AUFS_PLINK_WARN)
25753 +                       AuWarn1(msg ", %d\n", cnt);
25754 +#undef msg
25755 +               err = whplink(h_dentry, inode, bindex, au_sbr(sb, bindex));
25756 +               if (unlikely(err)) {
25757 +                       pr_warn("err %d, damaged pseudo link.\n", err);
25758 +                       au_sphl_del_rcu(&icntnr->plink, sphl);
25759 +                       iput(&icntnr->vfs_inode);
25760 +               }
25761 +       } else
25762 +               iput(&icntnr->vfs_inode);
25763 +}
25764 +
25765 +/* free all plinks */
25766 +void au_plink_put(struct super_block *sb, int verbose)
25767 +{
25768 +       int i, warned;
25769 +       struct au_sbinfo *sbinfo;
25770 +       struct hlist_head *plink_hlist;
25771 +       struct hlist_node *tmp;
25772 +       struct au_icntnr *icntnr;
25773 +
25774 +       SiMustWriteLock(sb);
25775 +
25776 +       sbinfo = au_sbi(sb);
25777 +       AuDebugOn(!au_opt_test(au_mntflags(sb), PLINK));
25778 +       AuDebugOn(au_plink_maint(sb, AuLock_NOPLM));
25779 +
25780 +       /* no spin_lock since sbinfo is write-locked */
25781 +       warned = 0;
25782 +       for (i = 0; i < AuPlink_NHASH; i++) {
25783 +               plink_hlist = &sbinfo->si_plink[i].head;
25784 +               if (!warned && verbose && !hlist_empty(plink_hlist)) {
25785 +                       pr_warn("pseudo-link is not flushed");
25786 +                       warned = 1;
25787 +               }
25788 +               hlist_for_each_entry_safe(icntnr, tmp, plink_hlist, plink)
25789 +                       iput(&icntnr->vfs_inode);
25790 +               INIT_HLIST_HEAD(plink_hlist);
25791 +       }
25792 +}
25793 +
25794 +void au_plink_clean(struct super_block *sb, int verbose)
25795 +{
25796 +       struct dentry *root;
25797 +
25798 +       root = sb->s_root;
25799 +       aufs_write_lock(root);
25800 +       if (au_opt_test(au_mntflags(sb), PLINK))
25801 +               au_plink_put(sb, verbose);
25802 +       aufs_write_unlock(root);
25803 +}
25804 +
25805 +static int au_plink_do_half_refresh(struct inode *inode, aufs_bindex_t br_id)
25806 +{
25807 +       int do_put;
25808 +       aufs_bindex_t btop, bbot, bindex;
25809 +
25810 +       do_put = 0;
25811 +       btop = au_ibtop(inode);
25812 +       bbot = au_ibbot(inode);
25813 +       if (btop >= 0) {
25814 +               for (bindex = btop; bindex <= bbot; bindex++) {
25815 +                       if (!au_h_iptr(inode, bindex)
25816 +                           || au_ii_br_id(inode, bindex) != br_id)
25817 +                               continue;
25818 +                       au_set_h_iptr(inode, bindex, NULL, 0);
25819 +                       do_put = 1;
25820 +                       break;
25821 +               }
25822 +               if (do_put)
25823 +                       for (bindex = btop; bindex <= bbot; bindex++)
25824 +                               if (au_h_iptr(inode, bindex)) {
25825 +                                       do_put = 0;
25826 +                                       break;
25827 +                               }
25828 +       } else
25829 +               do_put = 1;
25830 +
25831 +       return do_put;
25832 +}
25833 +
25834 +/* free the plinks on a branch specified by @br_id */
25835 +void au_plink_half_refresh(struct super_block *sb, aufs_bindex_t br_id)
25836 +{
25837 +       struct au_sbinfo *sbinfo;
25838 +       struct hlist_head *plink_hlist;
25839 +       struct hlist_node *tmp;
25840 +       struct au_icntnr *icntnr;
25841 +       struct inode *inode;
25842 +       int i, do_put;
25843 +
25844 +       SiMustWriteLock(sb);
25845 +
25846 +       sbinfo = au_sbi(sb);
25847 +       AuDebugOn(!au_opt_test(au_mntflags(sb), PLINK));
25848 +       AuDebugOn(au_plink_maint(sb, AuLock_NOPLM));
25849 +
25850 +       /* no spin_lock since sbinfo is write-locked */
25851 +       for (i = 0; i < AuPlink_NHASH; i++) {
25852 +               plink_hlist = &sbinfo->si_plink[i].head;
25853 +               hlist_for_each_entry_safe(icntnr, tmp, plink_hlist, plink) {
25854 +                       inode = au_igrab(&icntnr->vfs_inode);
25855 +                       ii_write_lock_child(inode);
25856 +                       do_put = au_plink_do_half_refresh(inode, br_id);
25857 +                       if (do_put) {
25858 +                               hlist_del(&icntnr->plink);
25859 +                               iput(inode);
25860 +                       }
25861 +                       ii_write_unlock(inode);
25862 +                       iput(inode);
25863 +               }
25864 +       }
25865 +}
25866 diff -urN /usr/share/empty/fs/aufs/poll.c linux/fs/aufs/poll.c
25867 --- /usr/share/empty/fs/aufs/poll.c     1970-01-01 01:00:00.000000000 +0100
25868 +++ linux/fs/aufs/poll.c        2016-10-09 16:55:36.496035060 +0200
25869 @@ -0,0 +1,52 @@
25870 +/*
25871 + * Copyright (C) 2005-2016 Junjiro R. Okajima
25872 + *
25873 + * This program, aufs is free software; you can redistribute it and/or modify
25874 + * it under the terms of the GNU General Public License as published by
25875 + * the Free Software Foundation; either version 2 of the License, or
25876 + * (at your option) any later version.
25877 + *
25878 + * This program is distributed in the hope that it will be useful,
25879 + * but WITHOUT ANY WARRANTY; without even the implied warranty of
25880 + * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
25881 + * GNU General Public License for more details.
25882 + *
25883 + * You should have received a copy of the GNU General Public License
25884 + * along with this program.  If not, see <http://www.gnu.org/licenses/>.
25885 + */
25886 +
25887 +/*
25888 + * poll operation
25889 + * There is only one filesystem which implements ->poll operation, currently.
25890 + */
25891 +
25892 +#include "aufs.h"
25893 +
25894 +unsigned int aufs_poll(struct file *file, poll_table *wait)
25895 +{
25896 +       unsigned int mask;
25897 +       int err;
25898 +       struct file *h_file;
25899 +       struct super_block *sb;
25900 +
25901 +       /* We should pretend an error happened. */
25902 +       mask = POLLERR /* | POLLIN | POLLOUT */;
25903 +       sb = file->f_path.dentry->d_sb;
25904 +       si_read_lock(sb, AuLock_FLUSH | AuLock_NOPLMW);
25905 +
25906 +       h_file = au_read_pre(file, /*keep_fi*/0);
25907 +       err = PTR_ERR(h_file);
25908 +       if (IS_ERR(h_file))
25909 +               goto out;
25910 +
25911 +       /* it is not an error if h_file has no operation */
25912 +       mask = DEFAULT_POLLMASK;
25913 +       if (h_file->f_op->poll)
25914 +               mask = h_file->f_op->poll(h_file, wait);
25915 +       fput(h_file); /* instead of au_read_post() */
25916 +
25917 +out:
25918 +       si_read_unlock(sb);
25919 +       AuTraceErr((int)mask);
25920 +       return mask;
25921 +}
25922 diff -urN /usr/share/empty/fs/aufs/posix_acl.c linux/fs/aufs/posix_acl.c
25923 --- /usr/share/empty/fs/aufs/posix_acl.c        1970-01-01 01:00:00.000000000 +0100
25924 +++ linux/fs/aufs/posix_acl.c   2016-12-17 12:28:17.598545045 +0100
25925 @@ -0,0 +1,98 @@
25926 +/*
25927 + * Copyright (C) 2014-2016 Junjiro R. Okajima
25928 + *
25929 + * This program, aufs is free software; you can redistribute it and/or modify
25930 + * it under the terms of the GNU General Public License as published by
25931 + * the Free Software Foundation; either version 2 of the License, or
25932 + * (at your option) any later version.
25933 + *
25934 + * This program is distributed in the hope that it will be useful,
25935 + * but WITHOUT ANY WARRANTY; without even the implied warranty of
25936 + * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
25937 + * GNU General Public License for more details.
25938 + *
25939 + * You should have received a copy of the GNU General Public License
25940 + * along with this program.  If not, see <http://www.gnu.org/licenses/>.
25941 + */
25942 +
25943 +/*
25944 + * posix acl operations
25945 + */
25946 +
25947 +#include <linux/fs.h>
25948 +#include "aufs.h"
25949 +
25950 +struct posix_acl *aufs_get_acl(struct inode *inode, int type)
25951 +{
25952 +       struct posix_acl *acl;
25953 +       int err;
25954 +       aufs_bindex_t bindex;
25955 +       struct inode *h_inode;
25956 +       struct super_block *sb;
25957 +
25958 +       acl = NULL;
25959 +       sb = inode->i_sb;
25960 +       si_read_lock(sb, AuLock_FLUSH);
25961 +       ii_read_lock_child(inode);
25962 +       if (!(sb->s_flags & MS_POSIXACL))
25963 +               goto out;
25964 +
25965 +       bindex = au_ibtop(inode);
25966 +       h_inode = au_h_iptr(inode, bindex);
25967 +       if (unlikely(!h_inode
25968 +                    || ((h_inode->i_mode & S_IFMT)
25969 +                        != (inode->i_mode & S_IFMT)))) {
25970 +               err = au_busy_or_stale();
25971 +               acl = ERR_PTR(err);
25972 +               goto out;
25973 +       }
25974 +
25975 +       /* always topmost only */
25976 +       acl = get_acl(h_inode, type);
25977 +
25978 +out:
25979 +       ii_read_unlock(inode);
25980 +       si_read_unlock(sb);
25981 +
25982 +       AuTraceErrPtr(acl);
25983 +       return acl;
25984 +}
25985 +
25986 +int aufs_set_acl(struct inode *inode, struct posix_acl *acl, int type)
25987 +{
25988 +       int err;
25989 +       ssize_t ssz;
25990 +       struct dentry *dentry;
25991 +       struct au_sxattr arg = {
25992 +               .type = AU_ACL_SET,
25993 +               .u.acl_set = {
25994 +                       .acl    = acl,
25995 +                       .type   = type
25996 +               },
25997 +       };
25998 +
25999 +       IMustLock(inode);
26000 +
26001 +       if (inode->i_ino == AUFS_ROOT_INO)
26002 +               dentry = dget(inode->i_sb->s_root);
26003 +       else {
26004 +               dentry = d_find_alias(inode);
26005 +               if (!dentry)
26006 +                       dentry = d_find_any_alias(inode);
26007 +               if (!dentry) {
26008 +                       pr_warn("cannot handle this inode, "
26009 +                               "please report to aufs-users ML\n");
26010 +                       err = -ENOENT;
26011 +                       goto out;
26012 +               }
26013 +       }
26014 +
26015 +       ssz = au_sxattr(dentry, inode, &arg);
26016 +       dput(dentry);
26017 +       err = ssz;
26018 +       if (ssz >= 0)
26019 +               err = 0;
26020 +
26021 +out:
26022 +       return err;
26023 +}
26024 diff -urN /usr/share/empty/fs/aufs/procfs.c linux/fs/aufs/procfs.c
26025 --- /usr/share/empty/fs/aufs/procfs.c   1970-01-01 01:00:00.000000000 +0100
26026 +++ linux/fs/aufs/procfs.c      2016-10-09 16:55:36.496035060 +0200
26027 @@ -0,0 +1,169 @@
26028 +/*
26029 + * Copyright (C) 2010-2016 Junjiro R. Okajima
26030 + *
26031 + * This program, aufs is free software; you can redistribute it and/or modify
26032 + * it under the terms of the GNU General Public License as published by
26033 + * the Free Software Foundation; either version 2 of the License, or
26034 + * (at your option) any later version.
26035 + *
26036 + * This program is distributed in the hope that it will be useful,
26037 + * but WITHOUT ANY WARRANTY; without even the implied warranty of
26038 + * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
26039 + * GNU General Public License for more details.
26040 + *
26041 + * You should have received a copy of the GNU General Public License
26042 + * along with this program.  If not, see <http://www.gnu.org/licenses/>.
26043 + */
26044 +
26045 +/*
26046 + * procfs interfaces
26047 + */
26048 +
26049 +#include <linux/proc_fs.h>
26050 +#include "aufs.h"
26051 +
26052 +static int au_procfs_plm_release(struct inode *inode, struct file *file)
26053 +{
26054 +       struct au_sbinfo *sbinfo;
26055 +
26056 +       sbinfo = file->private_data;
26057 +       if (sbinfo) {
26058 +               au_plink_maint_leave(sbinfo);
26059 +               kobject_put(&sbinfo->si_kobj);
26060 +       }
26061 +
26062 +       return 0;
26063 +}
26064 +
26065 +static void au_procfs_plm_write_clean(struct file *file)
26066 +{
26067 +       struct au_sbinfo *sbinfo;
26068 +
26069 +       sbinfo = file->private_data;
26070 +       if (sbinfo)
26071 +               au_plink_clean(sbinfo->si_sb, /*verbose*/0);
26072 +}
26073 +
26074 +static int au_procfs_plm_write_si(struct file *file, unsigned long id)
26075 +{
26076 +       int err;
26077 +       struct super_block *sb;
26078 +       struct au_sbinfo *sbinfo;
26079 +
26080 +       err = -EBUSY;
26081 +       if (unlikely(file->private_data))
26082 +               goto out;
26083 +
26084 +       sb = NULL;
26085 +       /* don't use au_sbilist_lock() here */
26086 +       spin_lock(&au_sbilist.spin);
26087 +       hlist_for_each_entry(sbinfo, &au_sbilist.head, si_list)
26088 +               if (id == sysaufs_si_id(sbinfo)) {
26089 +                       kobject_get(&sbinfo->si_kobj);
26090 +                       sb = sbinfo->si_sb;
26091 +                       break;
26092 +               }
26093 +       spin_unlock(&au_sbilist.spin);
26094 +
26095 +       err = -EINVAL;
26096 +       if (unlikely(!sb))
26097 +               goto out;
26098 +
26099 +       err = au_plink_maint_enter(sb);
26100 +       if (!err)
26101 +               /* keep kobject_get() */
26102 +               file->private_data = sbinfo;
26103 +       else
26104 +               kobject_put(&sbinfo->si_kobj);
26105 +out:
26106 +       return err;
26107 +}
26108 +
26109 +/*
26110 + * Accept a valid "si=xxxx" only.
26111 + * Once it is accepted successfully, accept "clean" too.
26112 + */
26113 +static ssize_t au_procfs_plm_write(struct file *file, const char __user *ubuf,
26114 +                                  size_t count, loff_t *ppos)
26115 +{
26116 +       ssize_t err;
26117 +       unsigned long id;
26118 +       /* last newline is allowed */
26119 +       char buf[3 + sizeof(unsigned long) * 2 + 1];
26120 +
26121 +       err = -EACCES;
26122 +       if (unlikely(!capable(CAP_SYS_ADMIN)))
26123 +               goto out;
26124 +
26125 +       err = -EINVAL;
26126 +       if (unlikely(count > sizeof(buf)))
26127 +               goto out;
26128 +
26129 +       err = copy_from_user(buf, ubuf, count);
26130 +       if (unlikely(err)) {
26131 +               err = -EFAULT;
26132 +               goto out;
26133 +       }
26134 +       buf[count] = 0;
26135 +
26136 +       err = -EINVAL;
26137 +       if (!strcmp("clean", buf)) {
26138 +               au_procfs_plm_write_clean(file);
26139 +               goto out_success;
26140 +       } else if (unlikely(strncmp("si=", buf, 3)))
26141 +               goto out;
26142 +
26143 +       err = kstrtoul(buf + 3, 16, &id);
26144 +       if (unlikely(err))
26145 +               goto out;
26146 +
26147 +       err = au_procfs_plm_write_si(file, id);
26148 +       if (unlikely(err))
26149 +               goto out;
26150 +
26151 +out_success:
26152 +       err = count; /* success */
26153 +out:
26154 +       return err;
26155 +}
26156 +
26157 +static const struct file_operations au_procfs_plm_fop = {
26158 +       .write          = au_procfs_plm_write,
26159 +       .release        = au_procfs_plm_release,
26160 +       .owner          = THIS_MODULE
26161 +};
26162 +
26163 +/* ---------------------------------------------------------------------- */
26164 +
26165 +static struct proc_dir_entry *au_procfs_dir;
26166 +
26167 +void au_procfs_fin(void)
26168 +{
26169 +       remove_proc_entry(AUFS_PLINK_MAINT_NAME, au_procfs_dir);
26170 +       remove_proc_entry(AUFS_PLINK_MAINT_DIR, NULL);
26171 +}
26172 +
26173 +int __init au_procfs_init(void)
26174 +{
26175 +       int err;
26176 +       struct proc_dir_entry *entry;
26177 +
26178 +       err = -ENOMEM;
26179 +       au_procfs_dir = proc_mkdir(AUFS_PLINK_MAINT_DIR, NULL);
26180 +       if (unlikely(!au_procfs_dir))
26181 +               goto out;
26182 +
26183 +       entry = proc_create(AUFS_PLINK_MAINT_NAME, S_IFREG | S_IWUSR,
26184 +                           au_procfs_dir, &au_procfs_plm_fop);
26185 +       if (unlikely(!entry))
26186 +               goto out_dir;
26187 +
26188 +       err = 0;
26189 +       goto out; /* success */
26190 +
26191 +
26192 +out_dir:
26193 +       remove_proc_entry(AUFS_PLINK_MAINT_DIR, NULL);
26194 +out:
26195 +       return err;
26196 +}
26197 diff -urN /usr/share/empty/fs/aufs/rdu.c linux/fs/aufs/rdu.c
26198 --- /usr/share/empty/fs/aufs/rdu.c      1970-01-01 01:00:00.000000000 +0100
26199 +++ linux/fs/aufs/rdu.c 2016-10-09 16:55:36.496035060 +0200
26200 @@ -0,0 +1,381 @@
26201 +/*
26202 + * Copyright (C) 2005-2016 Junjiro R. Okajima
26203 + *
26204 + * This program, aufs is free software; you can redistribute it and/or modify
26205 + * it under the terms of the GNU General Public License as published by
26206 + * the Free Software Foundation; either version 2 of the License, or
26207 + * (at your option) any later version.
26208 + *
26209 + * This program is distributed in the hope that it will be useful,
26210 + * but WITHOUT ANY WARRANTY; without even the implied warranty of
26211 + * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
26212 + * GNU General Public License for more details.
26213 + *
26214 + * You should have received a copy of the GNU General Public License
26215 + * along with this program.  If not, see <http://www.gnu.org/licenses/>.
26216 + */
26217 +
26218 +/*
26219 + * readdir in userspace.
26220 + */
26221 +
26222 +#include <linux/compat.h>
26223 +#include <linux/fs_stack.h>
26224 +#include <linux/security.h>
26225 +#include "aufs.h"
26226 +
26227 +/* bits for struct aufs_rdu.flags */
26228 +#define        AuRdu_CALLED    1
26229 +#define        AuRdu_CONT      (1 << 1)
26230 +#define        AuRdu_FULL      (1 << 2)
26231 +#define au_ftest_rdu(flags, name)      ((flags) & AuRdu_##name)
26232 +#define au_fset_rdu(flags, name) \
26233 +       do { (flags) |= AuRdu_##name; } while (0)
26234 +#define au_fclr_rdu(flags, name) \
26235 +       do { (flags) &= ~AuRdu_##name; } while (0)
26236 +
26237 +struct au_rdu_arg {
26238 +       struct dir_context              ctx;
26239 +       struct aufs_rdu                 *rdu;
26240 +       union au_rdu_ent_ul             ent;
26241 +       unsigned long                   end;
26242 +
26243 +       struct super_block              *sb;
26244 +       int                             err;
26245 +};
26246 +
26247 +static int au_rdu_fill(struct dir_context *ctx, const char *name, int nlen,
26248 +                      loff_t offset, u64 h_ino, unsigned int d_type)
26249 +{
26250 +       int err, len;
26251 +       struct au_rdu_arg *arg = container_of(ctx, struct au_rdu_arg, ctx);
26252 +       struct aufs_rdu *rdu = arg->rdu;
26253 +       struct au_rdu_ent ent;
26254 +
26255 +       err = 0;
26256 +       arg->err = 0;
26257 +       au_fset_rdu(rdu->cookie.flags, CALLED);
26258 +       len = au_rdu_len(nlen);
26259 +       if (arg->ent.ul + len  < arg->end) {
26260 +               ent.ino = h_ino;
26261 +               ent.bindex = rdu->cookie.bindex;
26262 +               ent.type = d_type;
26263 +               ent.nlen = nlen;
26264 +               if (unlikely(nlen > AUFS_MAX_NAMELEN))
26265 +                       ent.type = DT_UNKNOWN;
26266 +
26267 +               /* unnecessary to support mmap_sem since this is a dir */
26268 +               err = -EFAULT;
26269 +               if (copy_to_user(arg->ent.e, &ent, sizeof(ent)))
26270 +                       goto out;
26271 +               if (copy_to_user(arg->ent.e->name, name, nlen))
26272 +                       goto out;
26273 +               /* the terminating NULL */
26274 +               if (__put_user(0, arg->ent.e->name + nlen))
26275 +                       goto out;
26276 +               err = 0;
26277 +               /* AuDbg("%p, %.*s\n", arg->ent.p, nlen, name); */
26278 +               arg->ent.ul += len;
26279 +               rdu->rent++;
26280 +       } else {
26281 +               err = -EFAULT;
26282 +               au_fset_rdu(rdu->cookie.flags, FULL);
26283 +               rdu->full = 1;
26284 +               rdu->tail = arg->ent;
26285 +       }
26286 +
26287 +out:
26288 +       /* AuTraceErr(err); */
26289 +       return err;
26290 +}
26291 +
26292 +static int au_rdu_do(struct file *h_file, struct au_rdu_arg *arg)
26293 +{
26294 +       int err;
26295 +       loff_t offset;
26296 +       struct au_rdu_cookie *cookie = &arg->rdu->cookie;
26297 +
26298 +       /* we don't have to care (FMODE_32BITHASH | FMODE_64BITHASH) for ext4 */
26299 +       offset = vfsub_llseek(h_file, cookie->h_pos, SEEK_SET);
26300 +       err = offset;
26301 +       if (unlikely(offset != cookie->h_pos))
26302 +               goto out;
26303 +
26304 +       err = 0;
26305 +       do {
26306 +               arg->err = 0;
26307 +               au_fclr_rdu(cookie->flags, CALLED);
26308 +               /* smp_mb(); */
26309 +               err = vfsub_iterate_dir(h_file, &arg->ctx);
26310 +               if (err >= 0)
26311 +                       err = arg->err;
26312 +       } while (!err
26313 +                && au_ftest_rdu(cookie->flags, CALLED)
26314 +                && !au_ftest_rdu(cookie->flags, FULL));
26315 +       cookie->h_pos = h_file->f_pos;
26316 +
26317 +out:
26318 +       AuTraceErr(err);
26319 +       return err;
26320 +}
26321 +
26322 +static int au_rdu(struct file *file, struct aufs_rdu *rdu)
26323 +{
26324 +       int err;
26325 +       aufs_bindex_t bbot;
26326 +       struct au_rdu_arg arg = {
26327 +               .ctx = {
26328 +                       .actor = au_rdu_fill
26329 +               }
26330 +       };
26331 +       struct dentry *dentry;
26332 +       struct inode *inode;
26333 +       struct file *h_file;
26334 +       struct au_rdu_cookie *cookie = &rdu->cookie;
26335 +
26336 +       err = !access_ok(VERIFY_WRITE, rdu->ent.e, rdu->sz);
26337 +       if (unlikely(err)) {
26338 +               err = -EFAULT;
26339 +               AuTraceErr(err);
26340 +               goto out;
26341 +       }
26342 +       rdu->rent = 0;
26343 +       rdu->tail = rdu->ent;
26344 +       rdu->full = 0;
26345 +       arg.rdu = rdu;
26346 +       arg.ent = rdu->ent;
26347 +       arg.end = arg.ent.ul;
26348 +       arg.end += rdu->sz;
26349 +
26350 +       err = -ENOTDIR;
26351 +       if (unlikely(!file->f_op->iterate && !file->f_op->iterate_shared))
26352 +               goto out;
26353 +
26354 +       err = security_file_permission(file, MAY_READ);
26355 +       AuTraceErr(err);
26356 +       if (unlikely(err))
26357 +               goto out;
26358 +
26359 +       dentry = file->f_path.dentry;
26360 +       inode = d_inode(dentry);
26361 +       inode_lock_shared(inode);
26362 +
26363 +       arg.sb = inode->i_sb;
26364 +       err = si_read_lock(arg.sb, AuLock_FLUSH | AuLock_NOPLM);
26365 +       if (unlikely(err))
26366 +               goto out_mtx;
26367 +       err = au_alive_dir(dentry);
26368 +       if (unlikely(err))
26369 +               goto out_si;
26370 +       /* todo: reval? */
26371 +       fi_read_lock(file);
26372 +
26373 +       err = -EAGAIN;
26374 +       if (unlikely(au_ftest_rdu(cookie->flags, CONT)
26375 +                    && cookie->generation != au_figen(file)))
26376 +               goto out_unlock;
26377 +
26378 +       err = 0;
26379 +       if (!rdu->blk) {
26380 +               rdu->blk = au_sbi(arg.sb)->si_rdblk;
26381 +               if (!rdu->blk)
26382 +                       rdu->blk = au_dir_size(file, /*dentry*/NULL);
26383 +       }
26384 +       bbot = au_fbtop(file);
26385 +       if (cookie->bindex < bbot)
26386 +               cookie->bindex = bbot;
26387 +       bbot = au_fbbot_dir(file);
26388 +       /* AuDbg("b%d, b%d\n", cookie->bindex, bbot); */
26389 +       for (; !err && cookie->bindex <= bbot;
26390 +            cookie->bindex++, cookie->h_pos = 0) {
26391 +               h_file = au_hf_dir(file, cookie->bindex);
26392 +               if (!h_file)
26393 +                       continue;
26394 +
26395 +               au_fclr_rdu(cookie->flags, FULL);
26396 +               err = au_rdu_do(h_file, &arg);
26397 +               AuTraceErr(err);
26398 +               if (unlikely(au_ftest_rdu(cookie->flags, FULL) || err))
26399 +                       break;
26400 +       }
26401 +       AuDbg("rent %llu\n", rdu->rent);
26402 +
26403 +       if (!err && !au_ftest_rdu(cookie->flags, CONT)) {
26404 +               rdu->shwh = !!au_opt_test(au_sbi(arg.sb)->si_mntflags, SHWH);
26405 +               au_fset_rdu(cookie->flags, CONT);
26406 +               cookie->generation = au_figen(file);
26407 +       }
26408 +
26409 +       ii_read_lock_child(inode);
26410 +       fsstack_copy_attr_atime(inode, au_h_iptr(inode, au_ibtop(inode)));
26411 +       ii_read_unlock(inode);
26412 +
26413 +out_unlock:
26414 +       fi_read_unlock(file);
26415 +out_si:
26416 +       si_read_unlock(arg.sb);
26417 +out_mtx:
26418 +       inode_unlock_shared(inode);
26419 +out:
26420 +       AuTraceErr(err);
26421 +       return err;
26422 +}
26423 +
26424 +static int au_rdu_ino(struct file *file, struct aufs_rdu *rdu)
26425 +{
26426 +       int err;
26427 +       ino_t ino;
26428 +       unsigned long long nent;
26429 +       union au_rdu_ent_ul *u;
26430 +       struct au_rdu_ent ent;
26431 +       struct super_block *sb;
26432 +
26433 +       err = 0;
26434 +       nent = rdu->nent;
26435 +       u = &rdu->ent;
26436 +       sb = file->f_path.dentry->d_sb;
26437 +       si_read_lock(sb, AuLock_FLUSH);
26438 +       while (nent-- > 0) {
26439 +               /* unnecessary to support mmap_sem since this is a dir */
26440 +               err = copy_from_user(&ent, u->e, sizeof(ent));
26441 +               if (!err)
26442 +                       err = !access_ok(VERIFY_WRITE, &u->e->ino, sizeof(ino));
26443 +               if (unlikely(err)) {
26444 +                       err = -EFAULT;
26445 +                       AuTraceErr(err);
26446 +                       break;
26447 +               }
26448 +
26449 +               /* AuDbg("b%d, i%llu\n", ent.bindex, ent.ino); */
26450 +               if (!ent.wh)
26451 +                       err = au_ino(sb, ent.bindex, ent.ino, ent.type, &ino);
26452 +               else
26453 +                       err = au_wh_ino(sb, ent.bindex, ent.ino, ent.type,
26454 +                                       &ino);
26455 +               if (unlikely(err)) {
26456 +                       AuTraceErr(err);
26457 +                       break;
26458 +               }
26459 +
26460 +               err = __put_user(ino, &u->e->ino);
26461 +               if (unlikely(err)) {
26462 +                       err = -EFAULT;
26463 +                       AuTraceErr(err);
26464 +                       break;
26465 +               }
26466 +               u->ul += au_rdu_len(ent.nlen);
26467 +       }
26468 +       si_read_unlock(sb);
26469 +
26470 +       return err;
26471 +}
26472 +
26473 +/* ---------------------------------------------------------------------- */
26474 +
26475 +static int au_rdu_verify(struct aufs_rdu *rdu)
26476 +{
26477 +       AuDbg("rdu{%llu, %p, %u | %u | %llu, %u, %u | "
26478 +             "%llu, b%d, 0x%x, g%u}\n",
26479 +             rdu->sz, rdu->ent.e, rdu->verify[AufsCtlRduV_SZ],
26480 +             rdu->blk,
26481 +             rdu->rent, rdu->shwh, rdu->full,
26482 +             rdu->cookie.h_pos, rdu->cookie.bindex, rdu->cookie.flags,
26483 +             rdu->cookie.generation);
26484 +
26485 +       if (rdu->verify[AufsCtlRduV_SZ] == sizeof(*rdu))
26486 +               return 0;
26487 +
26488 +       AuDbg("%u:%u\n",
26489 +             rdu->verify[AufsCtlRduV_SZ], (unsigned int)sizeof(*rdu));
26490 +       return -EINVAL;
26491 +}
26492 +
26493 +long au_rdu_ioctl(struct file *file, unsigned int cmd, unsigned long arg)
26494 +{
26495 +       long err, e;
26496 +       struct aufs_rdu rdu;
26497 +       void __user *p = (void __user *)arg;
26498 +
26499 +       err = copy_from_user(&rdu, p, sizeof(rdu));
26500 +       if (unlikely(err)) {
26501 +               err = -EFAULT;
26502 +               AuTraceErr(err);
26503 +               goto out;
26504 +       }
26505 +       err = au_rdu_verify(&rdu);
26506 +       if (unlikely(err))
26507 +               goto out;
26508 +
26509 +       switch (cmd) {
26510 +       case AUFS_CTL_RDU:
26511 +               err = au_rdu(file, &rdu);
26512 +               if (unlikely(err))
26513 +                       break;
26514 +
26515 +               e = copy_to_user(p, &rdu, sizeof(rdu));
26516 +               if (unlikely(e)) {
26517 +                       err = -EFAULT;
26518 +                       AuTraceErr(err);
26519 +               }
26520 +               break;
26521 +       case AUFS_CTL_RDU_INO:
26522 +               err = au_rdu_ino(file, &rdu);
26523 +               break;
26524 +
26525 +       default:
26526 +               /* err = -ENOTTY; */
26527 +               err = -EINVAL;
26528 +       }
26529 +
26530 +out:
26531 +       AuTraceErr(err);
26532 +       return err;
26533 +}
26534 +
26535 +#ifdef CONFIG_COMPAT
26536 +long au_rdu_compat_ioctl(struct file *file, unsigned int cmd, unsigned long arg)
26537 +{
26538 +       long err, e;
26539 +       struct aufs_rdu rdu;
26540 +       void __user *p = compat_ptr(arg);
26541 +
26542 +       /* todo: get_user()? */
26543 +       err = copy_from_user(&rdu, p, sizeof(rdu));
26544 +       if (unlikely(err)) {
26545 +               err = -EFAULT;
26546 +               AuTraceErr(err);
26547 +               goto out;
26548 +       }
26549 +       rdu.ent.e = compat_ptr(rdu.ent.ul);
26550 +       err = au_rdu_verify(&rdu);
26551 +       if (unlikely(err))
26552 +               goto out;
26553 +
26554 +       switch (cmd) {
26555 +       case AUFS_CTL_RDU:
26556 +               err = au_rdu(file, &rdu);
26557 +               if (unlikely(err))
26558 +                       break;
26559 +
26560 +               rdu.ent.ul = ptr_to_compat(rdu.ent.e);
26561 +               rdu.tail.ul = ptr_to_compat(rdu.tail.e);
26562 +               e = copy_to_user(p, &rdu, sizeof(rdu));
26563 +               if (unlikely(e)) {
26564 +                       err = -EFAULT;
26565 +                       AuTraceErr(err);
26566 +               }
26567 +               break;
26568 +       case AUFS_CTL_RDU_INO:
26569 +               err = au_rdu_ino(file, &rdu);
26570 +               break;
26571 +
26572 +       default:
26573 +               /* err = -ENOTTY; */
26574 +               err = -EINVAL;
26575 +       }
26576 +
26577 +out:
26578 +       AuTraceErr(err);
26579 +       return err;
26580 +}
26581 +#endif
26582 diff -urN /usr/share/empty/fs/aufs/rwsem.h linux/fs/aufs/rwsem.h
26583 --- /usr/share/empty/fs/aufs/rwsem.h    1970-01-01 01:00:00.000000000 +0100
26584 +++ linux/fs/aufs/rwsem.h       2016-10-09 16:55:36.496035060 +0200
26585 @@ -0,0 +1,198 @@
26586 +/*
26587 + * Copyright (C) 2005-2016 Junjiro R. Okajima
26588 + *
26589 + * This program, aufs is free software; you can redistribute it and/or modify
26590 + * it under the terms of the GNU General Public License as published by
26591 + * the Free Software Foundation; either version 2 of the License, or
26592 + * (at your option) any later version.
26593 + *
26594 + * This program is distributed in the hope that it will be useful,
26595 + * but WITHOUT ANY WARRANTY; without even the implied warranty of
26596 + * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
26597 + * GNU General Public License for more details.
26598 + *
26599 + * You should have received a copy of the GNU General Public License
26600 + * along with this program.  If not, see <http://www.gnu.org/licenses/>.
26601 + */
26602 +
26603 +/*
26604 + * simple read-write semaphore wrappers
26605 + */
26606 +
26607 +#ifndef __AUFS_RWSEM_H__
26608 +#define __AUFS_RWSEM_H__
26609 +
26610 +#ifdef __KERNEL__
26611 +
26612 +#include "debug.h"
26613 +
26614 +struct au_rwsem {
26615 +       struct rw_semaphore     rwsem;
26616 +#ifdef CONFIG_AUFS_DEBUG
26617 +       /* just for debugging, not almighty counter */
26618 +       atomic_t                rcnt, wcnt;
26619 +#endif
26620 +};
26621 +
26622 +#ifdef CONFIG_LOCKDEP
26623 +#define au_lockdep_set_name(rw)                                                \
26624 +       lockdep_set_class_and_name(&(rw)->rwsem,                        \
26625 +                                  /*original key*/(rw)->rwsem.dep_map.key, \
26626 +                                  /*name*/#rw)
26627 +#else
26628 +#define au_lockdep_set_name(rw) do {} while (0)
26629 +#endif
26630 +
26631 +#ifdef CONFIG_AUFS_DEBUG
26632 +#define AuDbgCntInit(rw) do { \
26633 +       atomic_set(&(rw)->rcnt, 0); \
26634 +       atomic_set(&(rw)->wcnt, 0); \
26635 +       smp_mb(); /* atomic set */ \
26636 +} while (0)
26637 +
26638 +#define AuDbgCnt(rw, cnt)      atomic_read(&(rw)->cnt)
26639 +#define AuDbgCntInc(rw, cnt)   atomic_inc(&(rw)->cnt)
26640 +#define AuDbgCntDec(rw, cnt)   WARN_ON(atomic_dec_return(&(rw)->cnt) < 0)
26641 +#define AuDbgRcntInc(rw)       AuDbgCntInc(rw, rcnt)
26642 +#define AuDbgRcntDec(rw)       AuDbgCntDec(rw, rcnt)
26643 +#define AuDbgWcntInc(rw)       AuDbgCntInc(rw, wcnt)
26644 +#define AuDbgWcntDec(rw)       AuDbgCntDec(rw, wcnt)
26645 +#else
26646 +#define AuDbgCnt(rw, cnt)      0
26647 +#define AuDbgCntInit(rw)       do {} while (0)
26648 +#define AuDbgRcntInc(rw)       do {} while (0)
26649 +#define AuDbgRcntDec(rw)       do {} while (0)
26650 +#define AuDbgWcntInc(rw)       do {} while (0)
26651 +#define AuDbgWcntDec(rw)       do {} while (0)
26652 +#endif /* CONFIG_AUFS_DEBUG */
26653 +
26654 +/* to debug easier, do not make them inlined functions */
26655 +#define AuRwMustNoWaiters(rw)  AuDebugOn(rwsem_is_contended(&(rw)->rwsem))
26656 +/* rwsem_is_locked() is unusable */
26657 +#define AuRwMustReadLock(rw)   AuDebugOn(AuDbgCnt(rw, rcnt) <= 0)
26658 +#define AuRwMustWriteLock(rw)  AuDebugOn(AuDbgCnt(rw, wcnt) <= 0)
26659 +#define AuRwMustAnyLock(rw)    AuDebugOn(AuDbgCnt(rw, rcnt) <= 0       \
26660 +                                         && AuDbgCnt(rw, wcnt) <= 0)
26661 +#define AuRwDestroy(rw)                AuDebugOn(AuDbgCnt(rw, rcnt)            \
26662 +                                         || AuDbgCnt(rw, wcnt))
26663 +
26664 +#define au_rw_init(rw) do {                    \
26665 +               AuDbgCntInit(rw);               \
26666 +               init_rwsem(&(rw)->rwsem);       \
26667 +               au_lockdep_set_name(rw);        \
26668 +       } while (0)
26669 +
26670 +#define au_rw_init_wlock(rw) do {              \
26671 +               au_rw_init(rw);                 \
26672 +               down_write(&(rw)->rwsem);       \
26673 +               AuDbgWcntInc(rw);               \
26674 +       } while (0)
26675 +
26676 +#define au_rw_init_wlock_nested(rw, lsc) do { \
26677 +               au_rw_init(rw);                         \
26678 +               down_write_nested(&(rw)->rwsem, lsc);   \
26679 +               AuDbgWcntInc(rw);                       \
26680 +       } while (0)
26681 +
26682 +static inline void au_rw_read_lock(struct au_rwsem *rw)
26683 +{
26684 +       down_read(&rw->rwsem);
26685 +       AuDbgRcntInc(rw);
26686 +}
26687 +
26688 +static inline void au_rw_read_lock_nested(struct au_rwsem *rw, unsigned int lsc)
26689 +{
26690 +       down_read_nested(&rw->rwsem, lsc);
26691 +       AuDbgRcntInc(rw);
26692 +}
26693 +
26694 +static inline void au_rw_read_unlock(struct au_rwsem *rw)
26695 +{
26696 +       AuRwMustReadLock(rw);
26697 +       AuDbgRcntDec(rw);
26698 +       up_read(&rw->rwsem);
26699 +}
26700 +
26701 +static inline void au_rw_dgrade_lock(struct au_rwsem *rw)
26702 +{
26703 +       AuRwMustWriteLock(rw);
26704 +       AuDbgRcntInc(rw);
26705 +       AuDbgWcntDec(rw);
26706 +       downgrade_write(&rw->rwsem);
26707 +}
26708 +
26709 +static inline void au_rw_write_lock(struct au_rwsem *rw)
26710 +{
26711 +       down_write(&rw->rwsem);
26712 +       AuDbgWcntInc(rw);
26713 +}
26714 +
26715 +static inline void au_rw_write_lock_nested(struct au_rwsem *rw,
26716 +                                          unsigned int lsc)
26717 +{
26718 +       down_write_nested(&rw->rwsem, lsc);
26719 +       AuDbgWcntInc(rw);
26720 +}
26721 +
26722 +static inline void au_rw_write_unlock(struct au_rwsem *rw)
26723 +{
26724 +       AuRwMustWriteLock(rw);
26725 +       AuDbgWcntDec(rw);
26726 +       up_write(&rw->rwsem);
26727 +}
26728 +
26729 +/* why is not _nested version defined */
26730 +static inline int au_rw_read_trylock(struct au_rwsem *rw)
26731 +{
26732 +       int ret;
26733 +
26734 +       ret = down_read_trylock(&rw->rwsem);
26735 +       if (ret)
26736 +               AuDbgRcntInc(rw);
26737 +       return ret;
26738 +}
26739 +
26740 +static inline int au_rw_write_trylock(struct au_rwsem *rw)
26741 +{
26742 +       int ret;
26743 +
26744 +       ret = down_write_trylock(&rw->rwsem);
26745 +       if (ret)
26746 +               AuDbgWcntInc(rw);
26747 +       return ret;
26748 +}
26749 +
26750 +#undef AuDbgCntDec
26751 +#undef AuDbgRcntInc
26752 +#undef AuDbgRcntDec
26753 +#undef AuDbgWcntDec
26754 +
26755 +#define AuSimpleLockRwsemFuncs(prefix, param, rwsem) \
26756 +static inline void prefix##_read_lock(param) \
26757 +{ au_rw_read_lock(rwsem); } \
26758 +static inline void prefix##_write_lock(param) \
26759 +{ au_rw_write_lock(rwsem); } \
26760 +static inline int prefix##_read_trylock(param) \
26761 +{ return au_rw_read_trylock(rwsem); } \
26762 +static inline int prefix##_write_trylock(param) \
26763 +{ return au_rw_write_trylock(rwsem); }
26764 +/* why is not _nested version defined */
26765 +/* static inline void prefix##_read_trylock_nested(param, lsc)
26766 +{ au_rw_read_trylock_nested(rwsem, lsc)); }
26767 +static inline void prefix##_write_trylock_nestd(param, lsc)
26768 +{ au_rw_write_trylock_nested(rwsem, lsc); } */
26769 +
26770 +#define AuSimpleUnlockRwsemFuncs(prefix, param, rwsem) \
26771 +static inline void prefix##_read_unlock(param) \
26772 +{ au_rw_read_unlock(rwsem); } \
26773 +static inline void prefix##_write_unlock(param) \
26774 +{ au_rw_write_unlock(rwsem); } \
26775 +static inline void prefix##_downgrade_lock(param) \
26776 +{ au_rw_dgrade_lock(rwsem); }
26777 +
26778 +#define AuSimpleRwsemFuncs(prefix, param, rwsem) \
26779 +       AuSimpleLockRwsemFuncs(prefix, param, rwsem) \
26780 +       AuSimpleUnlockRwsemFuncs(prefix, param, rwsem)
26781 +
26782 +#endif /* __KERNEL__ */
26783 +#endif /* __AUFS_RWSEM_H__ */
26784 diff -urN /usr/share/empty/fs/aufs/sbinfo.c linux/fs/aufs/sbinfo.c
26785 --- /usr/share/empty/fs/aufs/sbinfo.c   1970-01-01 01:00:00.000000000 +0100
26786 +++ linux/fs/aufs/sbinfo.c      2016-10-09 16:55:38.889431135 +0200
26787 @@ -0,0 +1,355 @@
26788 +/*
26789 + * Copyright (C) 2005-2016 Junjiro R. Okajima
26790 + *
26791 + * This program, aufs is free software; you can redistribute it and/or modify
26792 + * it under the terms of the GNU General Public License as published by
26793 + * the Free Software Foundation; either version 2 of the License, or
26794 + * (at your option) any later version.
26795 + *
26796 + * This program is distributed in the hope that it will be useful,
26797 + * but WITHOUT ANY WARRANTY; without even the implied warranty of
26798 + * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
26799 + * GNU General Public License for more details.
26800 + *
26801 + * You should have received a copy of the GNU General Public License
26802 + * along with this program.  If not, see <http://www.gnu.org/licenses/>.
26803 + */
26804 +
26805 +/*
26806 + * superblock private data
26807 + */
26808 +
26809 +#include "aufs.h"
26810 +
26811 +/*
26812 + * they are necessary regardless sysfs is disabled.
26813 + */
26814 +void au_si_free(struct kobject *kobj)
26815 +{
26816 +       int i;
26817 +       struct au_sbinfo *sbinfo;
26818 +       char *locked __maybe_unused; /* debug only */
26819 +
26820 +       sbinfo = container_of(kobj, struct au_sbinfo, si_kobj);
26821 +       for (i = 0; i < AuPlink_NHASH; i++)
26822 +               AuDebugOn(!hlist_empty(&sbinfo->si_plink[i].head));
26823 +       AuDebugOn(atomic_read(&sbinfo->si_nowait.nw_len));
26824 +
26825 +       AuDebugOn(percpu_counter_sum(&sbinfo->si_ninodes));
26826 +       percpu_counter_destroy(&sbinfo->si_ninodes);
26827 +       AuDebugOn(percpu_counter_sum(&sbinfo->si_nfiles));
26828 +       percpu_counter_destroy(&sbinfo->si_nfiles);
26829 +
26830 +       au_rw_write_lock(&sbinfo->si_rwsem);
26831 +       au_br_free(sbinfo);
26832 +       au_rw_write_unlock(&sbinfo->si_rwsem);
26833 +
26834 +       au_delayed_kfree(sbinfo->si_branch);
26835 +       for (i = 0; i < AU_NPIDMAP; i++)
26836 +               if (sbinfo->au_si_pid.pid_bitmap[i])
26837 +                       au_delayed_kfree(sbinfo->au_si_pid.pid_bitmap[i]);
26838 +       mutex_destroy(&sbinfo->au_si_pid.pid_mtx);
26839 +       mutex_destroy(&sbinfo->si_xib_mtx);
26840 +       AuRwDestroy(&sbinfo->si_rwsem);
26841 +
26842 +       au_delayed_kfree(sbinfo);
26843 +}
26844 +
26845 +int au_si_alloc(struct super_block *sb)
26846 +{
26847 +       int err, i;
26848 +       struct au_sbinfo *sbinfo;
26849 +
26850 +       err = -ENOMEM;
26851 +       sbinfo = kzalloc(sizeof(*sbinfo), GFP_NOFS);
26852 +       if (unlikely(!sbinfo))
26853 +               goto out;
26854 +
26855 +       /* will be reallocated separately */
26856 +       sbinfo->si_branch = kzalloc(sizeof(*sbinfo->si_branch), GFP_NOFS);
26857 +       if (unlikely(!sbinfo->si_branch))
26858 +               goto out_sbinfo;
26859 +
26860 +       err = sysaufs_si_init(sbinfo);
26861 +       if (unlikely(err))
26862 +               goto out_br;
26863 +
26864 +       au_nwt_init(&sbinfo->si_nowait);
26865 +       au_rw_init_wlock(&sbinfo->si_rwsem);
26866 +       mutex_init(&sbinfo->au_si_pid.pid_mtx);
26867 +
26868 +       percpu_counter_init(&sbinfo->si_ninodes, 0, GFP_NOFS);
26869 +       percpu_counter_init(&sbinfo->si_nfiles, 0, GFP_NOFS);
26870 +
26871 +       sbinfo->si_bbot = -1;
26872 +       sbinfo->si_last_br_id = AUFS_BRANCH_MAX / 2;
26873 +
26874 +       sbinfo->si_wbr_copyup = AuWbrCopyup_Def;
26875 +       sbinfo->si_wbr_create = AuWbrCreate_Def;
26876 +       sbinfo->si_wbr_copyup_ops = au_wbr_copyup_ops + sbinfo->si_wbr_copyup;
26877 +       sbinfo->si_wbr_create_ops = au_wbr_create_ops + sbinfo->si_wbr_create;
26878 +
26879 +       au_fhsm_init(sbinfo);
26880 +
26881 +       sbinfo->si_mntflags = au_opts_plink(AuOpt_Def);
26882 +
26883 +       sbinfo->si_xino_jiffy = jiffies;
26884 +       sbinfo->si_xino_expire
26885 +               = msecs_to_jiffies(AUFS_XINO_DEF_SEC * MSEC_PER_SEC);
26886 +       mutex_init(&sbinfo->si_xib_mtx);
26887 +       sbinfo->si_xino_brid = -1;
26888 +       /* leave si_xib_last_pindex and si_xib_next_bit */
26889 +
26890 +       au_sphl_init(&sbinfo->si_aopen);
26891 +
26892 +       sbinfo->si_rdcache = msecs_to_jiffies(AUFS_RDCACHE_DEF * MSEC_PER_SEC);
26893 +       sbinfo->si_rdblk = AUFS_RDBLK_DEF;
26894 +       sbinfo->si_rdhash = AUFS_RDHASH_DEF;
26895 +       sbinfo->si_dirwh = AUFS_DIRWH_DEF;
26896 +
26897 +       for (i = 0; i < AuPlink_NHASH; i++)
26898 +               au_sphl_init(sbinfo->si_plink + i);
26899 +       init_waitqueue_head(&sbinfo->si_plink_wq);
26900 +       spin_lock_init(&sbinfo->si_plink_maint_lock);
26901 +
26902 +       au_sphl_init(&sbinfo->si_files);
26903 +
26904 +       /* with getattr by default */
26905 +       sbinfo->si_iop_array = aufs_iop;
26906 +
26907 +       /* leave other members for sysaufs and si_mnt. */
26908 +       sbinfo->si_sb = sb;
26909 +       sb->s_fs_info = sbinfo;
26910 +       si_pid_set(sb);
26911 +       return 0; /* success */
26912 +
26913 +out_br:
26914 +       au_delayed_kfree(sbinfo->si_branch);
26915 +out_sbinfo:
26916 +       au_delayed_kfree(sbinfo);
26917 +out:
26918 +       return err;
26919 +}
26920 +
26921 +int au_sbr_realloc(struct au_sbinfo *sbinfo, int nbr, int may_shrink)
26922 +{
26923 +       int err, sz;
26924 +       struct au_branch **brp;
26925 +
26926 +       AuRwMustWriteLock(&sbinfo->si_rwsem);
26927 +
26928 +       err = -ENOMEM;
26929 +       sz = sizeof(*brp) * (sbinfo->si_bbot + 1);
26930 +       if (unlikely(!sz))
26931 +               sz = sizeof(*brp);
26932 +       brp = au_kzrealloc(sbinfo->si_branch, sz, sizeof(*brp) * nbr, GFP_NOFS,
26933 +                          may_shrink);
26934 +       if (brp) {
26935 +               sbinfo->si_branch = brp;
26936 +               err = 0;
26937 +       }
26938 +
26939 +       return err;
26940 +}
26941 +
26942 +/* ---------------------------------------------------------------------- */
26943 +
26944 +unsigned int au_sigen_inc(struct super_block *sb)
26945 +{
26946 +       unsigned int gen;
26947 +       struct inode *inode;
26948 +
26949 +       SiMustWriteLock(sb);
26950 +
26951 +       gen = ++au_sbi(sb)->si_generation;
26952 +       au_update_digen(sb->s_root);
26953 +       inode = d_inode(sb->s_root);
26954 +       au_update_iigen(inode, /*half*/0);
26955 +       inode->i_version++;
26956 +       return gen;
26957 +}
26958 +
26959 +aufs_bindex_t au_new_br_id(struct super_block *sb)
26960 +{
26961 +       aufs_bindex_t br_id;
26962 +       int i;
26963 +       struct au_sbinfo *sbinfo;
26964 +
26965 +       SiMustWriteLock(sb);
26966 +
26967 +       sbinfo = au_sbi(sb);
26968 +       for (i = 0; i <= AUFS_BRANCH_MAX; i++) {
26969 +               br_id = ++sbinfo->si_last_br_id;
26970 +               AuDebugOn(br_id < 0);
26971 +               if (br_id && au_br_index(sb, br_id) < 0)
26972 +                       return br_id;
26973 +       }
26974 +
26975 +       return -1;
26976 +}
26977 +
26978 +/* ---------------------------------------------------------------------- */
26979 +
26980 +/* it is ok that new 'nwt' tasks are appended while we are sleeping */
26981 +int si_read_lock(struct super_block *sb, int flags)
26982 +{
26983 +       int err;
26984 +
26985 +       err = 0;
26986 +       if (au_ftest_lock(flags, FLUSH))
26987 +               au_nwt_flush(&au_sbi(sb)->si_nowait);
26988 +
26989 +       si_noflush_read_lock(sb);
26990 +       err = au_plink_maint(sb, flags);
26991 +       if (unlikely(err))
26992 +               si_read_unlock(sb);
26993 +
26994 +       return err;
26995 +}
26996 +
26997 +int si_write_lock(struct super_block *sb, int flags)
26998 +{
26999 +       int err;
27000 +
27001 +       if (au_ftest_lock(flags, FLUSH))
27002 +               au_nwt_flush(&au_sbi(sb)->si_nowait);
27003 +
27004 +       si_noflush_write_lock(sb);
27005 +       err = au_plink_maint(sb, flags);
27006 +       if (unlikely(err))
27007 +               si_write_unlock(sb);
27008 +
27009 +       return err;
27010 +}
27011 +
27012 +/* dentry and super_block lock. call at entry point */
27013 +int aufs_read_lock(struct dentry *dentry, int flags)
27014 +{
27015 +       int err;
27016 +       struct super_block *sb;
27017 +
27018 +       sb = dentry->d_sb;
27019 +       err = si_read_lock(sb, flags);
27020 +       if (unlikely(err))
27021 +               goto out;
27022 +
27023 +       if (au_ftest_lock(flags, DW))
27024 +               di_write_lock_child(dentry);
27025 +       else
27026 +               di_read_lock_child(dentry, flags);
27027 +
27028 +       if (au_ftest_lock(flags, GEN)) {
27029 +               err = au_digen_test(dentry, au_sigen(sb));
27030 +               if (!au_opt_test(au_mntflags(sb), UDBA_NONE))
27031 +                       AuDebugOn(!err && au_dbrange_test(dentry));
27032 +               else if (!err)
27033 +                       err = au_dbrange_test(dentry);
27034 +               if (unlikely(err))
27035 +                       aufs_read_unlock(dentry, flags);
27036 +       }
27037 +
27038 +out:
27039 +       return err;
27040 +}
27041 +
27042 +void aufs_read_unlock(struct dentry *dentry, int flags)
27043 +{
27044 +       if (au_ftest_lock(flags, DW))
27045 +               di_write_unlock(dentry);
27046 +       else
27047 +               di_read_unlock(dentry, flags);
27048 +       si_read_unlock(dentry->d_sb);
27049 +}
27050 +
27051 +void aufs_write_lock(struct dentry *dentry)
27052 +{
27053 +       si_write_lock(dentry->d_sb, AuLock_FLUSH | AuLock_NOPLMW);
27054 +       di_write_lock_child(dentry);
27055 +}
27056 +
27057 +void aufs_write_unlock(struct dentry *dentry)
27058 +{
27059 +       di_write_unlock(dentry);
27060 +       si_write_unlock(dentry->d_sb);
27061 +}
27062 +
27063 +int aufs_read_and_write_lock2(struct dentry *d1, struct dentry *d2, int flags)
27064 +{
27065 +       int err;
27066 +       unsigned int sigen;
27067 +       struct super_block *sb;
27068 +
27069 +       sb = d1->d_sb;
27070 +       err = si_read_lock(sb, flags);
27071 +       if (unlikely(err))
27072 +               goto out;
27073 +
27074 +       di_write_lock2_child(d1, d2, au_ftest_lock(flags, DIRS));
27075 +
27076 +       if (au_ftest_lock(flags, GEN)) {
27077 +               sigen = au_sigen(sb);
27078 +               err = au_digen_test(d1, sigen);
27079 +               AuDebugOn(!err && au_dbrange_test(d1));
27080 +               if (!err) {
27081 +                       err = au_digen_test(d2, sigen);
27082 +                       AuDebugOn(!err && au_dbrange_test(d2));
27083 +               }
27084 +               if (unlikely(err))
27085 +                       aufs_read_and_write_unlock2(d1, d2);
27086 +       }
27087 +
27088 +out:
27089 +       return err;
27090 +}
27091 +
27092 +void aufs_read_and_write_unlock2(struct dentry *d1, struct dentry *d2)
27093 +{
27094 +       di_write_unlock2(d1, d2);
27095 +       si_read_unlock(d1->d_sb);
27096 +}
27097 +
27098 +/* ---------------------------------------------------------------------- */
27099 +
27100 +static void si_pid_alloc(struct au_si_pid *au_si_pid, int idx)
27101 +{
27102 +       unsigned long *p;
27103 +
27104 +       BUILD_BUG_ON(sizeof(unsigned long) !=
27105 +                    sizeof(*au_si_pid->pid_bitmap));
27106 +
27107 +       mutex_lock(&au_si_pid->pid_mtx);
27108 +       p = au_si_pid->pid_bitmap[idx];
27109 +       while (!p) {
27110 +               /*
27111 +                * bad approach.
27112 +                * but keeping 'si_pid_set()' void is more important.
27113 +                */
27114 +               p = kcalloc(BITS_TO_LONGS(AU_PIDSTEP),
27115 +                           sizeof(*au_si_pid->pid_bitmap),
27116 +                           GFP_NOFS);
27117 +               if (p)
27118 +                       break;
27119 +               cond_resched();
27120 +       }
27121 +       au_si_pid->pid_bitmap[idx] = p;
27122 +       mutex_unlock(&au_si_pid->pid_mtx);
27123 +}
27124 +
27125 +void si_pid_set(struct super_block *sb)
27126 +{
27127 +       pid_t bit;
27128 +       int idx;
27129 +       unsigned long *bitmap;
27130 +       struct au_si_pid *au_si_pid;
27131 +
27132 +       si_pid_idx_bit(&idx, &bit);
27133 +       au_si_pid = &au_sbi(sb)->au_si_pid;
27134 +       bitmap = au_si_pid->pid_bitmap[idx];
27135 +       if (!bitmap) {
27136 +               si_pid_alloc(au_si_pid, idx);
27137 +               bitmap = au_si_pid->pid_bitmap[idx];
27138 +       }
27139 +       AuDebugOn(test_bit(bit, bitmap));
27140 +       set_bit(bit, bitmap);
27141 +       /* smp_mb(); */
27142 +}
27143 diff -urN /usr/share/empty/fs/aufs/spl.h linux/fs/aufs/spl.h
27144 --- /usr/share/empty/fs/aufs/spl.h      1970-01-01 01:00:00.000000000 +0100
27145 +++ linux/fs/aufs/spl.h 2016-10-09 16:55:36.496035060 +0200
27146 @@ -0,0 +1,113 @@
27147 +/*
27148 + * Copyright (C) 2005-2016 Junjiro R. Okajima
27149 + *
27150 + * This program, aufs is free software; you can redistribute it and/or modify
27151 + * it under the terms of the GNU General Public License as published by
27152 + * the Free Software Foundation; either version 2 of the License, or
27153 + * (at your option) any later version.
27154 + *
27155 + * This program is distributed in the hope that it will be useful,
27156 + * but WITHOUT ANY WARRANTY; without even the implied warranty of
27157 + * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
27158 + * GNU General Public License for more details.
27159 + *
27160 + * You should have received a copy of the GNU General Public License
27161 + * along with this program.  If not, see <http://www.gnu.org/licenses/>.
27162 + */
27163 +
27164 +/*
27165 + * simple list protected by a spinlock
27166 + */
27167 +
27168 +#ifndef __AUFS_SPL_H__
27169 +#define __AUFS_SPL_H__
27170 +
27171 +#ifdef __KERNEL__
27172 +
27173 +#if 0
27174 +struct au_splhead {
27175 +       spinlock_t              spin;
27176 +       struct list_head        head;
27177 +};
27178 +
27179 +static inline void au_spl_init(struct au_splhead *spl)
27180 +{
27181 +       spin_lock_init(&spl->spin);
27182 +       INIT_LIST_HEAD(&spl->head);
27183 +}
27184 +
27185 +static inline void au_spl_add(struct list_head *list, struct au_splhead *spl)
27186 +{
27187 +       spin_lock(&spl->spin);
27188 +       list_add(list, &spl->head);
27189 +       spin_unlock(&spl->spin);
27190 +}
27191 +
27192 +static inline void au_spl_del(struct list_head *list, struct au_splhead *spl)
27193 +{
27194 +       spin_lock(&spl->spin);
27195 +       list_del(list);
27196 +       spin_unlock(&spl->spin);
27197 +}
27198 +
27199 +static inline void au_spl_del_rcu(struct list_head *list,
27200 +                                 struct au_splhead *spl)
27201 +{
27202 +       spin_lock(&spl->spin);
27203 +       list_del_rcu(list);
27204 +       spin_unlock(&spl->spin);
27205 +}
27206 +#endif
27207 +
27208 +/* ---------------------------------------------------------------------- */
27209 +
27210 +struct au_sphlhead {
27211 +       spinlock_t              spin;
27212 +       struct hlist_head       head;
27213 +};
27214 +
27215 +static inline void au_sphl_init(struct au_sphlhead *sphl)
27216 +{
27217 +       spin_lock_init(&sphl->spin);
27218 +       INIT_HLIST_HEAD(&sphl->head);
27219 +}
27220 +
27221 +static inline void au_sphl_add(struct hlist_node *hlist,
27222 +                              struct au_sphlhead *sphl)
27223 +{
27224 +       spin_lock(&sphl->spin);
27225 +       hlist_add_head(hlist, &sphl->head);
27226 +       spin_unlock(&sphl->spin);
27227 +}
27228 +
27229 +static inline void au_sphl_del(struct hlist_node *hlist,
27230 +                              struct au_sphlhead *sphl)
27231 +{
27232 +       spin_lock(&sphl->spin);
27233 +       hlist_del(hlist);
27234 +       spin_unlock(&sphl->spin);
27235 +}
27236 +
27237 +static inline void au_sphl_del_rcu(struct hlist_node *hlist,
27238 +                                  struct au_sphlhead *sphl)
27239 +{
27240 +       spin_lock(&sphl->spin);
27241 +       hlist_del_rcu(hlist);
27242 +       spin_unlock(&sphl->spin);
27243 +}
27244 +
27245 +static inline unsigned long au_sphl_count(struct au_sphlhead *sphl)
27246 +{
27247 +       unsigned long cnt;
27248 +       struct hlist_node *pos;
27249 +
27250 +       cnt = 0;
27251 +       spin_lock(&sphl->spin);
27252 +       hlist_for_each(pos, &sphl->head)
27253 +               cnt++;
27254 +       spin_unlock(&sphl->spin);
27255 +       return cnt;
27256 +}
27257 +
27258 +#endif /* __KERNEL__ */
27259 +#endif /* __AUFS_SPL_H__ */
27260 diff -urN /usr/share/empty/fs/aufs/super.c linux/fs/aufs/super.c
27261 --- /usr/share/empty/fs/aufs/super.c    1970-01-01 01:00:00.000000000 +0100
27262 +++ linux/fs/aufs/super.c       2016-12-17 12:28:17.598545045 +0100
27263 @@ -0,0 +1,1046 @@
27264 +/*
27265 + * Copyright (C) 2005-2016 Junjiro R. Okajima
27266 + *
27267 + * This program, aufs is free software; you can redistribute it and/or modify
27268 + * it under the terms of the GNU General Public License as published by
27269 + * the Free Software Foundation; either version 2 of the License, or
27270 + * (at your option) any later version.
27271 + *
27272 + * This program is distributed in the hope that it will be useful,
27273 + * but WITHOUT ANY WARRANTY; without even the implied warranty of
27274 + * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
27275 + * GNU General Public License for more details.
27276 + *
27277 + * You should have received a copy of the GNU General Public License
27278 + * along with this program.  If not, see <http://www.gnu.org/licenses/>.
27279 + */
27280 +
27281 +/*
27282 + * mount and super_block operations
27283 + */
27284 +
27285 +#include <linux/mm.h>
27286 +#include <linux/seq_file.h>
27287 +#include <linux/statfs.h>
27288 +#include <linux/vmalloc.h>
27289 +#include "aufs.h"
27290 +
27291 +/*
27292 + * super_operations
27293 + */
27294 +static struct inode *aufs_alloc_inode(struct super_block *sb __maybe_unused)
27295 +{
27296 +       struct au_icntnr *c;
27297 +
27298 +       c = au_cache_alloc_icntnr();
27299 +       if (c) {
27300 +               au_icntnr_init(c);
27301 +               c->vfs_inode.i_version = 1; /* sigen(sb); */
27302 +               c->iinfo.ii_hinode = NULL;
27303 +               return &c->vfs_inode;
27304 +       }
27305 +       return NULL;
27306 +}
27307 +
27308 +static void aufs_destroy_inode_cb(struct rcu_head *head)
27309 +{
27310 +       struct inode *inode = container_of(head, struct inode, i_rcu);
27311 +
27312 +       au_cache_dfree_icntnr(container_of(inode, struct au_icntnr, vfs_inode));
27313 +}
27314 +
27315 +static void aufs_destroy_inode(struct inode *inode)
27316 +{
27317 +       if (!au_is_bad_inode(inode))
27318 +               au_iinfo_fin(inode);
27319 +       call_rcu(&inode->i_rcu, aufs_destroy_inode_cb);
27320 +}
27321 +
27322 +struct inode *au_iget_locked(struct super_block *sb, ino_t ino)
27323 +{
27324 +       struct inode *inode;
27325 +       int err;
27326 +
27327 +       inode = iget_locked(sb, ino);
27328 +       if (unlikely(!inode)) {
27329 +               inode = ERR_PTR(-ENOMEM);
27330 +               goto out;
27331 +       }
27332 +       if (!(inode->i_state & I_NEW))
27333 +               goto out;
27334 +
27335 +       err = au_xigen_new(inode);
27336 +       if (!err)
27337 +               err = au_iinfo_init(inode);
27338 +       if (!err)
27339 +               inode->i_version++;
27340 +       else {
27341 +               iget_failed(inode);
27342 +               inode = ERR_PTR(err);
27343 +       }
27344 +
27345 +out:
27346 +       /* never return NULL */
27347 +       AuDebugOn(!inode);
27348 +       AuTraceErrPtr(inode);
27349 +       return inode;
27350 +}
27351 +
27352 +/* lock free root dinfo */
27353 +static int au_show_brs(struct seq_file *seq, struct super_block *sb)
27354 +{
27355 +       int err;
27356 +       aufs_bindex_t bindex, bbot;
27357 +       struct path path;
27358 +       struct au_hdentry *hdp;
27359 +       struct au_branch *br;
27360 +       au_br_perm_str_t perm;
27361 +
27362 +       err = 0;
27363 +       bbot = au_sbbot(sb);
27364 +       bindex = 0;
27365 +       hdp = au_hdentry(au_di(sb->s_root), bindex);
27366 +       for (; !err && bindex <= bbot; bindex++, hdp++) {
27367 +               br = au_sbr(sb, bindex);
27368 +               path.mnt = au_br_mnt(br);
27369 +               path.dentry = hdp->hd_dentry;
27370 +               err = au_seq_path(seq, &path);
27371 +               if (!err) {
27372 +                       au_optstr_br_perm(&perm, br->br_perm);
27373 +                       seq_printf(seq, "=%s", perm.a);
27374 +                       if (bindex != bbot)
27375 +                               seq_putc(seq, ':');
27376 +               }
27377 +       }
27378 +       if (unlikely(err || seq_has_overflowed(seq)))
27379 +               err = -E2BIG;
27380 +
27381 +       return err;
27382 +}
27383 +
27384 +static void au_gen_fmt(char *fmt, int len __maybe_unused, const char *pat,
27385 +                      const char *append)
27386 +{
27387 +       char *p;
27388 +
27389 +       p = fmt;
27390 +       while (*pat != ':')
27391 +               *p++ = *pat++;
27392 +       *p++ = *pat++;
27393 +       strcpy(p, append);
27394 +       AuDebugOn(strlen(fmt) >= len);
27395 +}
27396 +
27397 +static void au_show_wbr_create(struct seq_file *m, int v,
27398 +                              struct au_sbinfo *sbinfo)
27399 +{
27400 +       const char *pat;
27401 +       char fmt[32];
27402 +       struct au_wbr_mfs *mfs;
27403 +
27404 +       AuRwMustAnyLock(&sbinfo->si_rwsem);
27405 +
27406 +       seq_puts(m, ",create=");
27407 +       pat = au_optstr_wbr_create(v);
27408 +       mfs = &sbinfo->si_wbr_mfs;
27409 +       switch (v) {
27410 +       case AuWbrCreate_TDP:
27411 +       case AuWbrCreate_RR:
27412 +       case AuWbrCreate_MFS:
27413 +       case AuWbrCreate_PMFS:
27414 +               seq_puts(m, pat);
27415 +               break;
27416 +       case AuWbrCreate_MFSRR:
27417 +       case AuWbrCreate_TDMFS:
27418 +       case AuWbrCreate_PMFSRR:
27419 +               au_gen_fmt(fmt, sizeof(fmt), pat, "%llu");
27420 +               seq_printf(m, fmt, mfs->mfsrr_watermark);
27421 +               break;
27422 +       case AuWbrCreate_MFSV:
27423 +       case AuWbrCreate_PMFSV:
27424 +               au_gen_fmt(fmt, sizeof(fmt), pat, "%lu");
27425 +               seq_printf(m, fmt,
27426 +                          jiffies_to_msecs(mfs->mfs_expire)
27427 +                          / MSEC_PER_SEC);
27428 +               break;
27429 +       case AuWbrCreate_MFSRRV:
27430 +       case AuWbrCreate_TDMFSV:
27431 +       case AuWbrCreate_PMFSRRV:
27432 +               au_gen_fmt(fmt, sizeof(fmt), pat, "%llu:%lu");
27433 +               seq_printf(m, fmt, mfs->mfsrr_watermark,
27434 +                          jiffies_to_msecs(mfs->mfs_expire) / MSEC_PER_SEC);
27435 +               break;
27436 +       default:
27437 +               BUG();
27438 +       }
27439 +}
27440 +
27441 +static int au_show_xino(struct seq_file *seq, struct super_block *sb)
27442 +{
27443 +#ifdef CONFIG_SYSFS
27444 +       return 0;
27445 +#else
27446 +       int err;
27447 +       const int len = sizeof(AUFS_XINO_FNAME) - 1;
27448 +       aufs_bindex_t bindex, brid;
27449 +       struct qstr *name;
27450 +       struct file *f;
27451 +       struct dentry *d, *h_root;
27452 +
27453 +       AuRwMustAnyLock(&sbinfo->si_rwsem);
27454 +
27455 +       err = 0;
27456 +       f = au_sbi(sb)->si_xib;
27457 +       if (!f)
27458 +               goto out;
27459 +
27460 +       /* stop printing the default xino path on the first writable branch */
27461 +       h_root = NULL;
27462 +       brid = au_xino_brid(sb);
27463 +       if (brid >= 0) {
27464 +               bindex = au_br_index(sb, brid);
27465 +               h_root = au_hdentry(au_di(sb->s_root), bindex)->hd_dentry;
27466 +       }
27467 +       d = f->f_path.dentry;
27468 +       name = &d->d_name;
27469 +       /* safe ->d_parent because the file is unlinked */
27470 +       if (d->d_parent == h_root
27471 +           && name->len == len
27472 +           && !memcmp(name->name, AUFS_XINO_FNAME, len))
27473 +               goto out;
27474 +
27475 +       seq_puts(seq, ",xino=");
27476 +       err = au_xino_path(seq, f);
27477 +
27478 +out:
27479 +       return err;
27480 +#endif
27481 +}
27482 +
27483 +/* seq_file will re-call me in case of too long string */
27484 +static int aufs_show_options(struct seq_file *m, struct dentry *dentry)
27485 +{
27486 +       int err;
27487 +       unsigned int mnt_flags, v;
27488 +       struct super_block *sb;
27489 +       struct au_sbinfo *sbinfo;
27490 +
27491 +#define AuBool(name, str) do { \
27492 +       v = au_opt_test(mnt_flags, name); \
27493 +       if (v != au_opt_test(AuOpt_Def, name)) \
27494 +               seq_printf(m, ",%s" #str, v ? "" : "no"); \
27495 +} while (0)
27496 +
27497 +#define AuStr(name, str) do { \
27498 +       v = mnt_flags & AuOptMask_##name; \
27499 +       if (v != (AuOpt_Def & AuOptMask_##name)) \
27500 +               seq_printf(m, "," #str "=%s", au_optstr_##str(v)); \
27501 +} while (0)
27502 +
27503 +#define AuUInt(name, str, val) do { \
27504 +       if (val != AUFS_##name##_DEF) \
27505 +               seq_printf(m, "," #str "=%u", val); \
27506 +} while (0)
27507 +
27508 +       sb = dentry->d_sb;
27509 +       if (sb->s_flags & MS_POSIXACL)
27510 +               seq_puts(m, ",acl");
27511 +
27512 +       /* lock free root dinfo */
27513 +       si_noflush_read_lock(sb);
27514 +       sbinfo = au_sbi(sb);
27515 +       seq_printf(m, ",si=%lx", sysaufs_si_id(sbinfo));
27516 +
27517 +       mnt_flags = au_mntflags(sb);
27518 +       if (au_opt_test(mnt_flags, XINO)) {
27519 +               err = au_show_xino(m, sb);
27520 +               if (unlikely(err))
27521 +                       goto out;
27522 +       } else
27523 +               seq_puts(m, ",noxino");
27524 +
27525 +       AuBool(TRUNC_XINO, trunc_xino);
27526 +       AuStr(UDBA, udba);
27527 +       AuBool(SHWH, shwh);
27528 +       AuBool(PLINK, plink);
27529 +       AuBool(DIO, dio);
27530 +       AuBool(DIRPERM1, dirperm1);
27531 +
27532 +       v = sbinfo->si_wbr_create;
27533 +       if (v != AuWbrCreate_Def)
27534 +               au_show_wbr_create(m, v, sbinfo);
27535 +
27536 +       v = sbinfo->si_wbr_copyup;
27537 +       if (v != AuWbrCopyup_Def)
27538 +               seq_printf(m, ",cpup=%s", au_optstr_wbr_copyup(v));
27539 +
27540 +       v = au_opt_test(mnt_flags, ALWAYS_DIROPQ);
27541 +       if (v != au_opt_test(AuOpt_Def, ALWAYS_DIROPQ))
27542 +               seq_printf(m, ",diropq=%c", v ? 'a' : 'w');
27543 +
27544 +       AuUInt(DIRWH, dirwh, sbinfo->si_dirwh);
27545 +
27546 +       v = jiffies_to_msecs(sbinfo->si_rdcache) / MSEC_PER_SEC;
27547 +       AuUInt(RDCACHE, rdcache, v);
27548 +
27549 +       AuUInt(RDBLK, rdblk, sbinfo->si_rdblk);
27550 +       AuUInt(RDHASH, rdhash, sbinfo->si_rdhash);
27551 +
27552 +       au_fhsm_show(m, sbinfo);
27553 +
27554 +       AuBool(SUM, sum);
27555 +       /* AuBool(SUM_W, wsum); */
27556 +       AuBool(WARN_PERM, warn_perm);
27557 +       AuBool(VERBOSE, verbose);
27558 +
27559 +out:
27560 +       /* be sure to print "br:" last */
27561 +       if (!sysaufs_brs) {
27562 +               seq_puts(m, ",br:");
27563 +               au_show_brs(m, sb);
27564 +       }
27565 +       si_read_unlock(sb);
27566 +       return 0;
27567 +
27568 +#undef AuBool
27569 +#undef AuStr
27570 +#undef AuUInt
27571 +}
27572 +
27573 +/* ---------------------------------------------------------------------- */
27574 +
27575 +/* sum mode which returns the summation for statfs(2) */
27576 +
27577 +static u64 au_add_till_max(u64 a, u64 b)
27578 +{
27579 +       u64 old;
27580 +
27581 +       old = a;
27582 +       a += b;
27583 +       if (old <= a)
27584 +               return a;
27585 +       return ULLONG_MAX;
27586 +}
27587 +
27588 +static u64 au_mul_till_max(u64 a, long mul)
27589 +{
27590 +       u64 old;
27591 +
27592 +       old = a;
27593 +       a *= mul;
27594 +       if (old <= a)
27595 +               return a;
27596 +       return ULLONG_MAX;
27597 +}
27598 +
27599 +static int au_statfs_sum(struct super_block *sb, struct kstatfs *buf)
27600 +{
27601 +       int err;
27602 +       long bsize, factor;
27603 +       u64 blocks, bfree, bavail, files, ffree;
27604 +       aufs_bindex_t bbot, bindex, i;
27605 +       unsigned char shared;
27606 +       struct path h_path;
27607 +       struct super_block *h_sb;
27608 +
27609 +       err = 0;
27610 +       bsize = LONG_MAX;
27611 +       files = 0;
27612 +       ffree = 0;
27613 +       blocks = 0;
27614 +       bfree = 0;
27615 +       bavail = 0;
27616 +       bbot = au_sbbot(sb);
27617 +       for (bindex = 0; bindex <= bbot; bindex++) {
27618 +               h_path.mnt = au_sbr_mnt(sb, bindex);
27619 +               h_sb = h_path.mnt->mnt_sb;
27620 +               shared = 0;
27621 +               for (i = 0; !shared && i < bindex; i++)
27622 +                       shared = (au_sbr_sb(sb, i) == h_sb);
27623 +               if (shared)
27624 +                       continue;
27625 +
27626 +               /* sb->s_root for NFS is unreliable */
27627 +               h_path.dentry = h_path.mnt->mnt_root;
27628 +               err = vfs_statfs(&h_path, buf);
27629 +               if (unlikely(err))
27630 +                       goto out;
27631 +
27632 +               if (bsize > buf->f_bsize) {
27633 +                       /*
27634 +                        * we will reduce bsize, so we have to expand blocks
27635 +                        * etc. to match them again
27636 +                        */
27637 +                       factor = (bsize / buf->f_bsize);
27638 +                       blocks = au_mul_till_max(blocks, factor);
27639 +                       bfree = au_mul_till_max(bfree, factor);
27640 +                       bavail = au_mul_till_max(bavail, factor);
27641 +                       bsize = buf->f_bsize;
27642 +               }
27643 +
27644 +               factor = (buf->f_bsize / bsize);
27645 +               blocks = au_add_till_max(blocks,
27646 +                               au_mul_till_max(buf->f_blocks, factor));
27647 +               bfree = au_add_till_max(bfree,
27648 +                               au_mul_till_max(buf->f_bfree, factor));
27649 +               bavail = au_add_till_max(bavail,
27650 +                               au_mul_till_max(buf->f_bavail, factor));
27651 +               files = au_add_till_max(files, buf->f_files);
27652 +               ffree = au_add_till_max(ffree, buf->f_ffree);
27653 +       }
27654 +
27655 +       buf->f_bsize = bsize;
27656 +       buf->f_blocks = blocks;
27657 +       buf->f_bfree = bfree;
27658 +       buf->f_bavail = bavail;
27659 +       buf->f_files = files;
27660 +       buf->f_ffree = ffree;
27661 +       buf->f_frsize = 0;
27662 +
27663 +out:
27664 +       return err;
27665 +}
27666 +
27667 +static int aufs_statfs(struct dentry *dentry, struct kstatfs *buf)
27668 +{
27669 +       int err;
27670 +       struct path h_path;
27671 +       struct super_block *sb;
27672 +
27673 +       /* lock free root dinfo */
27674 +       sb = dentry->d_sb;
27675 +       si_noflush_read_lock(sb);
27676 +       if (!au_opt_test(au_mntflags(sb), SUM)) {
27677 +               /* sb->s_root for NFS is unreliable */
27678 +               h_path.mnt = au_sbr_mnt(sb, 0);
27679 +               h_path.dentry = h_path.mnt->mnt_root;
27680 +               err = vfs_statfs(&h_path, buf);
27681 +       } else
27682 +               err = au_statfs_sum(sb, buf);
27683 +       si_read_unlock(sb);
27684 +
27685 +       if (!err) {
27686 +               buf->f_type = AUFS_SUPER_MAGIC;
27687 +               buf->f_namelen = AUFS_MAX_NAMELEN;
27688 +               memset(&buf->f_fsid, 0, sizeof(buf->f_fsid));
27689 +       }
27690 +       /* buf->f_bsize = buf->f_blocks = buf->f_bfree = buf->f_bavail = -1; */
27691 +
27692 +       return err;
27693 +}
27694 +
27695 +/* ---------------------------------------------------------------------- */
27696 +
27697 +static int aufs_sync_fs(struct super_block *sb, int wait)
27698 +{
27699 +       int err, e;
27700 +       aufs_bindex_t bbot, bindex;
27701 +       struct au_branch *br;
27702 +       struct super_block *h_sb;
27703 +
27704 +       err = 0;
27705 +       si_noflush_read_lock(sb);
27706 +       bbot = au_sbbot(sb);
27707 +       for (bindex = 0; bindex <= bbot; bindex++) {
27708 +               br = au_sbr(sb, bindex);
27709 +               if (!au_br_writable(br->br_perm))
27710 +                       continue;
27711 +
27712 +               h_sb = au_sbr_sb(sb, bindex);
27713 +               if (h_sb->s_op->sync_fs) {
27714 +                       e = h_sb->s_op->sync_fs(h_sb, wait);
27715 +                       if (unlikely(e && !err))
27716 +                               err = e;
27717 +                       /* go on even if an error happens */
27718 +               }
27719 +       }
27720 +       si_read_unlock(sb);
27721 +
27722 +       return err;
27723 +}
27724 +
27725 +/* ---------------------------------------------------------------------- */
27726 +
27727 +/* final actions when unmounting a file system */
27728 +static void aufs_put_super(struct super_block *sb)
27729 +{
27730 +       struct au_sbinfo *sbinfo;
27731 +
27732 +       sbinfo = au_sbi(sb);
27733 +       if (!sbinfo)
27734 +               return;
27735 +
27736 +       dbgaufs_si_fin(sbinfo);
27737 +       kobject_put(&sbinfo->si_kobj);
27738 +}
27739 +
27740 +/* ---------------------------------------------------------------------- */
27741 +
27742 +void *au_array_alloc(unsigned long long *hint, au_arraycb_t cb,
27743 +                    struct super_block *sb, void *arg)
27744 +{
27745 +       void *array;
27746 +       unsigned long long n, sz;
27747 +
27748 +       array = NULL;
27749 +       n = 0;
27750 +       if (!*hint)
27751 +               goto out;
27752 +
27753 +       if (*hint > ULLONG_MAX / sizeof(array)) {
27754 +               array = ERR_PTR(-EMFILE);
27755 +               pr_err("hint %llu\n", *hint);
27756 +               goto out;
27757 +       }
27758 +
27759 +       sz = sizeof(array) * *hint;
27760 +       array = kzalloc(sz, GFP_NOFS);
27761 +       if (unlikely(!array))
27762 +               array = vzalloc(sz);
27763 +       if (unlikely(!array)) {
27764 +               array = ERR_PTR(-ENOMEM);
27765 +               goto out;
27766 +       }
27767 +
27768 +       n = cb(sb, array, *hint, arg);
27769 +       AuDebugOn(n > *hint);
27770 +
27771 +out:
27772 +       *hint = n;
27773 +       return array;
27774 +}
27775 +
27776 +static unsigned long long au_iarray_cb(struct super_block *sb, void *a,
27777 +                                      unsigned long long max __maybe_unused,
27778 +                                      void *arg)
27779 +{
27780 +       unsigned long long n;
27781 +       struct inode **p, *inode;
27782 +       struct list_head *head;
27783 +
27784 +       n = 0;
27785 +       p = a;
27786 +       head = arg;
27787 +       spin_lock(&sb->s_inode_list_lock);
27788 +       list_for_each_entry(inode, head, i_sb_list) {
27789 +               if (!au_is_bad_inode(inode)
27790 +                   && au_ii(inode)->ii_btop >= 0) {
27791 +                       spin_lock(&inode->i_lock);
27792 +                       if (atomic_read(&inode->i_count)) {
27793 +                               au_igrab(inode);
27794 +                               *p++ = inode;
27795 +                               n++;
27796 +                               AuDebugOn(n > max);
27797 +                       }
27798 +                       spin_unlock(&inode->i_lock);
27799 +               }
27800 +       }
27801 +       spin_unlock(&sb->s_inode_list_lock);
27802 +
27803 +       return n;
27804 +}
27805 +
27806 +struct inode **au_iarray_alloc(struct super_block *sb, unsigned long long *max)
27807 +{
27808 +       *max = au_ninodes(sb);
27809 +       return au_array_alloc(max, au_iarray_cb, sb, &sb->s_inodes);
27810 +}
27811 +
27812 +void au_iarray_free(struct inode **a, unsigned long long max)
27813 +{
27814 +       unsigned long long ull;
27815 +
27816 +       for (ull = 0; ull < max; ull++)
27817 +               iput(a[ull]);
27818 +       kvfree(a);
27819 +}
27820 +
27821 +/* ---------------------------------------------------------------------- */
27822 +
27823 +/*
27824 + * refresh dentry and inode at remount time.
27825 + */
27826 +/* todo: consolidate with simple_reval_dpath() and au_reval_for_attr() */
27827 +static int au_do_refresh(struct dentry *dentry, unsigned int dir_flags,
27828 +                     struct dentry *parent)
27829 +{
27830 +       int err;
27831 +
27832 +       di_write_lock_child(dentry);
27833 +       di_read_lock_parent(parent, AuLock_IR);
27834 +       err = au_refresh_dentry(dentry, parent);
27835 +       if (!err && dir_flags)
27836 +               au_hn_reset(d_inode(dentry), dir_flags);
27837 +       di_read_unlock(parent, AuLock_IR);
27838 +       di_write_unlock(dentry);
27839 +
27840 +       return err;
27841 +}
27842 +
27843 +static int au_do_refresh_d(struct dentry *dentry, unsigned int sigen,
27844 +                          struct au_sbinfo *sbinfo,
27845 +                          const unsigned int dir_flags, unsigned int do_idop)
27846 +{
27847 +       int err;
27848 +       struct dentry *parent;
27849 +
27850 +       err = 0;
27851 +       parent = dget_parent(dentry);
27852 +       if (!au_digen_test(parent, sigen) && au_digen_test(dentry, sigen)) {
27853 +               if (d_really_is_positive(dentry)) {
27854 +                       if (!d_is_dir(dentry))
27855 +                               err = au_do_refresh(dentry, /*dir_flags*/0,
27856 +                                                parent);
27857 +                       else {
27858 +                               err = au_do_refresh(dentry, dir_flags, parent);
27859 +                               if (unlikely(err))
27860 +                                       au_fset_si(sbinfo, FAILED_REFRESH_DIR);
27861 +                       }
27862 +               } else
27863 +                       err = au_do_refresh(dentry, /*dir_flags*/0, parent);
27864 +               AuDbgDentry(dentry);
27865 +       }
27866 +       dput(parent);
27867 +
27868 +       if (!err) {
27869 +               if (do_idop)
27870 +                       au_refresh_dop(dentry, /*force_reval*/0);
27871 +       } else
27872 +               au_refresh_dop(dentry, /*force_reval*/1);
27873 +
27874 +       AuTraceErr(err);
27875 +       return err;
27876 +}
27877 +
27878 +static int au_refresh_d(struct super_block *sb, unsigned int do_idop)
27879 +{
27880 +       int err, i, j, ndentry, e;
27881 +       unsigned int sigen;
27882 +       struct au_dcsub_pages dpages;
27883 +       struct au_dpage *dpage;
27884 +       struct dentry **dentries, *d;
27885 +       struct au_sbinfo *sbinfo;
27886 +       struct dentry *root = sb->s_root;
27887 +       const unsigned int dir_flags = au_hi_flags(d_inode(root), /*isdir*/1);
27888 +
27889 +       if (do_idop)
27890 +               au_refresh_dop(root, /*force_reval*/0);
27891 +
27892 +       err = au_dpages_init(&dpages, GFP_NOFS);
27893 +       if (unlikely(err))
27894 +               goto out;
27895 +       err = au_dcsub_pages(&dpages, root, NULL, NULL);
27896 +       if (unlikely(err))
27897 +               goto out_dpages;
27898 +
27899 +       sigen = au_sigen(sb);
27900 +       sbinfo = au_sbi(sb);
27901 +       for (i = 0; i < dpages.ndpage; i++) {
27902 +               dpage = dpages.dpages + i;
27903 +               dentries = dpage->dentries;
27904 +               ndentry = dpage->ndentry;
27905 +               for (j = 0; j < ndentry; j++) {
27906 +                       d = dentries[j];
27907 +                       e = au_do_refresh_d(d, sigen, sbinfo, dir_flags,
27908 +                                           do_idop);
27909 +                       if (unlikely(e && !err))
27910 +                               err = e;
27911 +                       /* go on even err */
27912 +               }
27913 +       }
27914 +
27915 +out_dpages:
27916 +       au_dpages_free(&dpages);
27917 +out:
27918 +       return err;
27919 +}
27920 +
27921 +static int au_refresh_i(struct super_block *sb, unsigned int do_idop)
27922 +{
27923 +       int err, e;
27924 +       unsigned int sigen;
27925 +       unsigned long long max, ull;
27926 +       struct inode *inode, **array;
27927 +
27928 +       array = au_iarray_alloc(sb, &max);
27929 +       err = PTR_ERR(array);
27930 +       if (IS_ERR(array))
27931 +               goto out;
27932 +
27933 +       err = 0;
27934 +       sigen = au_sigen(sb);
27935 +       for (ull = 0; ull < max; ull++) {
27936 +               inode = array[ull];
27937 +               if (unlikely(!inode))
27938 +                       break;
27939 +
27940 +               e = 0;
27941 +               ii_write_lock_child(inode);
27942 +               if (au_iigen(inode, NULL) != sigen) {
27943 +                       e = au_refresh_hinode_self(inode);
27944 +                       if (unlikely(e)) {
27945 +                               au_refresh_iop(inode, /*force_getattr*/1);
27946 +                               pr_err("error %d, i%lu\n", e, inode->i_ino);
27947 +                               if (!err)
27948 +                                       err = e;
27949 +                               /* go on even if err */
27950 +                       }
27951 +               }
27952 +               if (!e && do_idop)
27953 +                       au_refresh_iop(inode, /*force_getattr*/0);
27954 +               ii_write_unlock(inode);
27955 +       }
27956 +
27957 +       au_iarray_free(array, max);
27958 +
27959 +out:
27960 +       return err;
27961 +}
27962 +
27963 +static void au_remount_refresh(struct super_block *sb, unsigned int do_idop)
27964 +{
27965 +       int err, e;
27966 +       unsigned int udba;
27967 +       aufs_bindex_t bindex, bbot;
27968 +       struct dentry *root;
27969 +       struct inode *inode;
27970 +       struct au_branch *br;
27971 +       struct au_sbinfo *sbi;
27972 +
27973 +       au_sigen_inc(sb);
27974 +       sbi = au_sbi(sb);
27975 +       au_fclr_si(sbi, FAILED_REFRESH_DIR);
27976 +
27977 +       root = sb->s_root;
27978 +       DiMustNoWaiters(root);
27979 +       inode = d_inode(root);
27980 +       IiMustNoWaiters(inode);
27981 +
27982 +       udba = au_opt_udba(sb);
27983 +       bbot = au_sbbot(sb);
27984 +       for (bindex = 0; bindex <= bbot; bindex++) {
27985 +               br = au_sbr(sb, bindex);
27986 +               err = au_hnotify_reset_br(udba, br, br->br_perm);
27987 +               if (unlikely(err))
27988 +                       AuIOErr("hnotify failed on br %d, %d, ignored\n",
27989 +                               bindex, err);
27990 +               /* go on even if err */
27991 +       }
27992 +       au_hn_reset(inode, au_hi_flags(inode, /*isdir*/1));
27993 +
27994 +       if (do_idop) {
27995 +               if (au_ftest_si(sbi, NO_DREVAL)) {
27996 +                       AuDebugOn(sb->s_d_op == &aufs_dop_noreval);
27997 +                       sb->s_d_op = &aufs_dop_noreval;
27998 +                       AuDebugOn(sbi->si_iop_array == aufs_iop_nogetattr);
27999 +                       sbi->si_iop_array = aufs_iop_nogetattr;
28000 +               } else {
28001 +                       AuDebugOn(sb->s_d_op == &aufs_dop);
28002 +                       sb->s_d_op = &aufs_dop;
28003 +                       AuDebugOn(sbi->si_iop_array == aufs_iop);
28004 +                       sbi->si_iop_array = aufs_iop;
28005 +               }
28006 +               pr_info("reset to %pf and %pf\n",
28007 +                       sb->s_d_op, sbi->si_iop_array);
28008 +       }
28009 +
28010 +       di_write_unlock(root);
28011 +       err = au_refresh_d(sb, do_idop);
28012 +       e = au_refresh_i(sb, do_idop);
28013 +       if (unlikely(e && !err))
28014 +               err = e;
28015 +       /* aufs_write_lock() calls ..._child() */
28016 +       di_write_lock_child(root);
28017 +
28018 +       au_cpup_attr_all(inode, /*force*/1);
28019 +
28020 +       if (unlikely(err))
28021 +               AuIOErr("refresh failed, ignored, %d\n", err);
28022 +}
28023 +
28024 +/* stop extra interpretation of errno in mount(8), and strange error messages */
28025 +static int cvt_err(int err)
28026 +{
28027 +       AuTraceErr(err);
28028 +
28029 +       switch (err) {
28030 +       case -ENOENT:
28031 +       case -ENOTDIR:
28032 +       case -EEXIST:
28033 +       case -EIO:
28034 +               err = -EINVAL;
28035 +       }
28036 +       return err;
28037 +}
28038 +
28039 +static int aufs_remount_fs(struct super_block *sb, int *flags, char *data)
28040 +{
28041 +       int err, do_dx;
28042 +       unsigned int mntflags;
28043 +       struct au_opts opts = {
28044 +               .opt = NULL
28045 +       };
28046 +       struct dentry *root;
28047 +       struct inode *inode;
28048 +       struct au_sbinfo *sbinfo;
28049 +
28050 +       err = 0;
28051 +       root = sb->s_root;
28052 +       if (!data || !*data) {
28053 +               err = si_write_lock(sb, AuLock_FLUSH | AuLock_NOPLM);
28054 +               if (!err) {
28055 +                       di_write_lock_child(root);
28056 +                       err = au_opts_verify(sb, *flags, /*pending*/0);
28057 +                       aufs_write_unlock(root);
28058 +               }
28059 +               goto out;
28060 +       }
28061 +
28062 +       err = -ENOMEM;
28063 +       opts.opt = (void *)__get_free_page(GFP_NOFS);
28064 +       if (unlikely(!opts.opt))
28065 +               goto out;
28066 +       opts.max_opt = PAGE_SIZE / sizeof(*opts.opt);
28067 +       opts.flags = AuOpts_REMOUNT;
28068 +       opts.sb_flags = *flags;
28069 +
28070 +       /* parse it before aufs lock */
28071 +       err = au_opts_parse(sb, data, &opts);
28072 +       if (unlikely(err))
28073 +               goto out_opts;
28074 +
28075 +       sbinfo = au_sbi(sb);
28076 +       inode = d_inode(root);
28077 +       inode_lock(inode);
28078 +       err = si_write_lock(sb, AuLock_FLUSH | AuLock_NOPLM);
28079 +       if (unlikely(err))
28080 +               goto out_mtx;
28081 +       di_write_lock_child(root);
28082 +
28083 +       /* au_opts_remount() may return an error */
28084 +       err = au_opts_remount(sb, &opts);
28085 +       au_opts_free(&opts);
28086 +
28087 +       if (au_ftest_opts(opts.flags, REFRESH))
28088 +               au_remount_refresh(sb, au_ftest_opts(opts.flags, REFRESH_IDOP));
28089 +
28090 +       if (au_ftest_opts(opts.flags, REFRESH_DYAOP)) {
28091 +               mntflags = au_mntflags(sb);
28092 +               do_dx = !!au_opt_test(mntflags, DIO);
28093 +               au_dy_arefresh(do_dx);
28094 +       }
28095 +
28096 +       au_fhsm_wrote_all(sb, /*force*/1); /* ?? */
28097 +       aufs_write_unlock(root);
28098 +
28099 +out_mtx:
28100 +       inode_unlock(inode);
28101 +out_opts:
28102 +       au_delayed_free_page((unsigned long)opts.opt);
28103 +out:
28104 +       err = cvt_err(err);
28105 +       AuTraceErr(err);
28106 +       return err;
28107 +}
28108 +
28109 +static const struct super_operations aufs_sop = {
28110 +       .alloc_inode    = aufs_alloc_inode,
28111 +       .destroy_inode  = aufs_destroy_inode,
28112 +       /* always deleting, no clearing */
28113 +       .drop_inode     = generic_delete_inode,
28114 +       .show_options   = aufs_show_options,
28115 +       .statfs         = aufs_statfs,
28116 +       .put_super      = aufs_put_super,
28117 +       .sync_fs        = aufs_sync_fs,
28118 +       .remount_fs     = aufs_remount_fs
28119 +};
28120 +
28121 +/* ---------------------------------------------------------------------- */
28122 +
28123 +static int alloc_root(struct super_block *sb)
28124 +{
28125 +       int err;
28126 +       struct inode *inode;
28127 +       struct dentry *root;
28128 +
28129 +       err = -ENOMEM;
28130 +       inode = au_iget_locked(sb, AUFS_ROOT_INO);
28131 +       err = PTR_ERR(inode);
28132 +       if (IS_ERR(inode))
28133 +               goto out;
28134 +
28135 +       inode->i_op = aufs_iop + AuIop_DIR; /* with getattr by default */
28136 +       inode->i_fop = &aufs_dir_fop;
28137 +       inode->i_mode = S_IFDIR;
28138 +       set_nlink(inode, 2);
28139 +       unlock_new_inode(inode);
28140 +
28141 +       root = d_make_root(inode);
28142 +       if (unlikely(!root))
28143 +               goto out;
28144 +       err = PTR_ERR(root);
28145 +       if (IS_ERR(root))
28146 +               goto out;
28147 +
28148 +       err = au_di_init(root);
28149 +       if (!err) {
28150 +               sb->s_root = root;
28151 +               return 0; /* success */
28152 +       }
28153 +       dput(root);
28154 +
28155 +out:
28156 +       return err;
28157 +}
28158 +
28159 +static int aufs_fill_super(struct super_block *sb, void *raw_data,
28160 +                          int silent __maybe_unused)
28161 +{
28162 +       int err;
28163 +       struct au_opts opts = {
28164 +               .opt = NULL
28165 +       };
28166 +       struct au_sbinfo *sbinfo;
28167 +       struct dentry *root;
28168 +       struct inode *inode;
28169 +       char *arg = raw_data;
28170 +
28171 +       if (unlikely(!arg || !*arg)) {
28172 +               err = -EINVAL;
28173 +               pr_err("no arg\n");
28174 +               goto out;
28175 +       }
28176 +
28177 +       err = -ENOMEM;
28178 +       opts.opt = (void *)__get_free_page(GFP_NOFS);
28179 +       if (unlikely(!opts.opt))
28180 +               goto out;
28181 +       opts.max_opt = PAGE_SIZE / sizeof(*opts.opt);
28182 +       opts.sb_flags = sb->s_flags;
28183 +
28184 +       err = au_si_alloc(sb);
28185 +       if (unlikely(err))
28186 +               goto out_opts;
28187 +       sbinfo = au_sbi(sb);
28188 +
28189 +       /* all timestamps always follow the ones on the branch */
28190 +       sb->s_flags |= MS_NOATIME | MS_NODIRATIME;
28191 +       sb->s_op = &aufs_sop;
28192 +       sb->s_d_op = &aufs_dop;
28193 +       sb->s_magic = AUFS_SUPER_MAGIC;
28194 +       sb->s_maxbytes = 0;
28195 +       sb->s_stack_depth = 1;
28196 +       au_export_init(sb);
28197 +       au_xattr_init(sb);
28198 +
28199 +       err = alloc_root(sb);
28200 +       if (unlikely(err)) {
28201 +               si_write_unlock(sb);
28202 +               goto out_info;
28203 +       }
28204 +       root = sb->s_root;
28205 +       inode = d_inode(root);
28206 +
28207 +       /*
28208 +        * actually we can parse options regardless aufs lock here.
28209 +        * but at remount time, parsing must be done before aufs lock.
28210 +        * so we follow the same rule.
28211 +        */
28212 +       ii_write_lock_parent(inode);
28213 +       aufs_write_unlock(root);
28214 +       err = au_opts_parse(sb, arg, &opts);
28215 +       if (unlikely(err))
28216 +               goto out_root;
28217 +
28218 +       /* lock vfs_inode first, then aufs. */
28219 +       inode_lock(inode);
28220 +       aufs_write_lock(root);
28221 +       err = au_opts_mount(sb, &opts);
28222 +       au_opts_free(&opts);
28223 +       if (!err && au_ftest_si(sbinfo, NO_DREVAL)) {
28224 +               sb->s_d_op = &aufs_dop_noreval;
28225 +               pr_info("%pf\n", sb->s_d_op);
28226 +               au_refresh_dop(root, /*force_reval*/0);
28227 +               sbinfo->si_iop_array = aufs_iop_nogetattr;
28228 +               au_refresh_iop(inode, /*force_getattr*/0);
28229 +       }
28230 +       aufs_write_unlock(root);
28231 +       inode_unlock(inode);
28232 +       if (!err)
28233 +               goto out_opts; /* success */
28234 +
28235 +out_root:
28236 +       dput(root);
28237 +       sb->s_root = NULL;
28238 +out_info:
28239 +       dbgaufs_si_fin(sbinfo);
28240 +       kobject_put(&sbinfo->si_kobj);
28241 +       sb->s_fs_info = NULL;
28242 +out_opts:
28243 +       au_delayed_free_page((unsigned long)opts.opt);
28244 +out:
28245 +       AuTraceErr(err);
28246 +       err = cvt_err(err);
28247 +       AuTraceErr(err);
28248 +       return err;
28249 +}
28250 +
28251 +/* ---------------------------------------------------------------------- */
28252 +
28253 +static struct dentry *aufs_mount(struct file_system_type *fs_type, int flags,
28254 +                                const char *dev_name __maybe_unused,
28255 +                                void *raw_data)
28256 +{
28257 +       struct dentry *root;
28258 +       struct super_block *sb;
28259 +
28260 +       /* all timestamps always follow the ones on the branch */
28261 +       /* mnt->mnt_flags |= MNT_NOATIME | MNT_NODIRATIME; */
28262 +       root = mount_nodev(fs_type, flags, raw_data, aufs_fill_super);
28263 +       if (IS_ERR(root))
28264 +               goto out;
28265 +
28266 +       sb = root->d_sb;
28267 +       si_write_lock(sb, !AuLock_FLUSH);
28268 +       sysaufs_brs_add(sb, 0);
28269 +       si_write_unlock(sb);
28270 +       au_sbilist_add(sb);
28271 +
28272 +out:
28273 +       return root;
28274 +}
28275 +
28276 +static void aufs_kill_sb(struct super_block *sb)
28277 +{
28278 +       struct au_sbinfo *sbinfo;
28279 +
28280 +       sbinfo = au_sbi(sb);
28281 +       if (sbinfo) {
28282 +               au_sbilist_del(sb);
28283 +               aufs_write_lock(sb->s_root);
28284 +               au_fhsm_fin(sb);
28285 +               if (sbinfo->si_wbr_create_ops->fin)
28286 +                       sbinfo->si_wbr_create_ops->fin(sb);
28287 +               if (au_opt_test(sbinfo->si_mntflags, UDBA_HNOTIFY)) {
28288 +                       au_opt_set_udba(sbinfo->si_mntflags, UDBA_NONE);
28289 +                       au_remount_refresh(sb, /*do_idop*/0);
28290 +               }
28291 +               if (au_opt_test(sbinfo->si_mntflags, PLINK))
28292 +                       au_plink_put(sb, /*verbose*/1);
28293 +               au_xino_clr(sb);
28294 +               sbinfo->si_sb = NULL;
28295 +               aufs_write_unlock(sb->s_root);
28296 +               au_nwt_flush(&sbinfo->si_nowait);
28297 +       }
28298 +       kill_anon_super(sb);
28299 +}
28300 +
28301 +struct file_system_type aufs_fs_type = {
28302 +       .name           = AUFS_FSTYPE,
28303 +       /* a race between rename and others */
28304 +       .fs_flags       = FS_RENAME_DOES_D_MOVE,
28305 +       .mount          = aufs_mount,
28306 +       .kill_sb        = aufs_kill_sb,
28307 +       /* no need to __module_get() and module_put(). */
28308 +       .owner          = THIS_MODULE,
28309 +};
28310 diff -urN /usr/share/empty/fs/aufs/super.h linux/fs/aufs/super.h
28311 --- /usr/share/empty/fs/aufs/super.h    1970-01-01 01:00:00.000000000 +0100
28312 +++ linux/fs/aufs/super.h       2016-12-17 12:28:17.598545045 +0100
28313 @@ -0,0 +1,639 @@
28314 +/*
28315 + * Copyright (C) 2005-2016 Junjiro R. Okajima
28316 + *
28317 + * This program, aufs is free software; you can redistribute it and/or modify
28318 + * it under the terms of the GNU General Public License as published by
28319 + * the Free Software Foundation; either version 2 of the License, or
28320 + * (at your option) any later version.
28321 + *
28322 + * This program is distributed in the hope that it will be useful,
28323 + * but WITHOUT ANY WARRANTY; without even the implied warranty of
28324 + * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
28325 + * GNU General Public License for more details.
28326 + *
28327 + * You should have received a copy of the GNU General Public License
28328 + * along with this program.  If not, see <http://www.gnu.org/licenses/>.
28329 + */
28330 +
28331 +/*
28332 + * super_block operations
28333 + */
28334 +
28335 +#ifndef __AUFS_SUPER_H__
28336 +#define __AUFS_SUPER_H__
28337 +
28338 +#ifdef __KERNEL__
28339 +
28340 +#include <linux/fs.h>
28341 +#include <linux/kobject.h>
28342 +#include "rwsem.h"
28343 +#include "spl.h"
28344 +#include "wkq.h"
28345 +
28346 +/* policies to select one among multiple writable branches */
28347 +struct au_wbr_copyup_operations {
28348 +       int (*copyup)(struct dentry *dentry);
28349 +};
28350 +
28351 +#define AuWbr_DIR      1               /* target is a dir */
28352 +#define AuWbr_PARENT   (1 << 1)        /* always require a parent */
28353 +
28354 +#define au_ftest_wbr(flags, name)      ((flags) & AuWbr_##name)
28355 +#define au_fset_wbr(flags, name)       { (flags) |= AuWbr_##name; }
28356 +#define au_fclr_wbr(flags, name)       { (flags) &= ~AuWbr_##name; }
28357 +
28358 +struct au_wbr_create_operations {
28359 +       int (*create)(struct dentry *dentry, unsigned int flags);
28360 +       int (*init)(struct super_block *sb);
28361 +       int (*fin)(struct super_block *sb);
28362 +};
28363 +
28364 +struct au_wbr_mfs {
28365 +       struct mutex    mfs_lock; /* protect this structure */
28366 +       unsigned long   mfs_jiffy;
28367 +       unsigned long   mfs_expire;
28368 +       aufs_bindex_t   mfs_bindex;
28369 +
28370 +       unsigned long long      mfsrr_bytes;
28371 +       unsigned long long      mfsrr_watermark;
28372 +};
28373 +
28374 +#define AuPlink_NHASH 100
28375 +static inline int au_plink_hash(ino_t ino)
28376 +{
28377 +       return ino % AuPlink_NHASH;
28378 +}
28379 +
28380 +/* File-based Hierarchical Storage Management */
28381 +struct au_fhsm {
28382 +#ifdef CONFIG_AUFS_FHSM
28383 +       /* allow only one process who can receive the notification */
28384 +       spinlock_t              fhsm_spin;
28385 +       pid_t                   fhsm_pid;
28386 +       wait_queue_head_t       fhsm_wqh;
28387 +       atomic_t                fhsm_readable;
28388 +
28389 +       /* these are protected by si_rwsem */
28390 +       unsigned long           fhsm_expire;
28391 +       aufs_bindex_t           fhsm_bottom;
28392 +#endif
28393 +};
28394 +
28395 +#define AU_PIDSTEP     (int)(BITS_TO_LONGS(PID_MAX_DEFAULT) * BITS_PER_LONG)
28396 +#define AU_NPIDMAP     (int)DIV_ROUND_UP(PID_MAX_LIMIT, AU_PIDSTEP)
28397 +struct au_si_pid {
28398 +       unsigned long   *pid_bitmap[AU_NPIDMAP];
28399 +       struct mutex    pid_mtx;
28400 +};
28401 +
28402 +struct au_branch;
28403 +struct au_sbinfo {
28404 +       /* nowait tasks in the system-wide workqueue */
28405 +       struct au_nowait_tasks  si_nowait;
28406 +
28407 +       /*
28408 +        * tried sb->s_umount, but failed due to the dependecy between i_mutex.
28409 +        * rwsem for au_sbinfo is necessary.
28410 +        */
28411 +       struct au_rwsem         si_rwsem;
28412 +
28413 +       /* prevent recursive locking in deleting inode */
28414 +       struct au_si_pid        au_si_pid;
28415 +
28416 +       /*
28417 +        * dirty approach to protect sb->sb_inodes and ->s_files (gone) from
28418 +        * remount.
28419 +        */
28420 +       struct percpu_counter   si_ninodes, si_nfiles;
28421 +
28422 +       /* branch management */
28423 +       unsigned int            si_generation;
28424 +
28425 +       /* see AuSi_ flags */
28426 +       unsigned char           au_si_status;
28427 +
28428 +       aufs_bindex_t           si_bbot;
28429 +
28430 +       /* dirty trick to keep br_id plus */
28431 +       unsigned int            si_last_br_id :
28432 +                               sizeof(aufs_bindex_t) * BITS_PER_BYTE - 1;
28433 +       struct au_branch        **si_branch;
28434 +
28435 +       /* policy to select a writable branch */
28436 +       unsigned char           si_wbr_copyup;
28437 +       unsigned char           si_wbr_create;
28438 +       struct au_wbr_copyup_operations *si_wbr_copyup_ops;
28439 +       struct au_wbr_create_operations *si_wbr_create_ops;
28440 +
28441 +       /* round robin */
28442 +       atomic_t                si_wbr_rr_next;
28443 +
28444 +       /* most free space */
28445 +       struct au_wbr_mfs       si_wbr_mfs;
28446 +
28447 +       /* File-based Hierarchical Storage Management */
28448 +       struct au_fhsm          si_fhsm;
28449 +
28450 +       /* mount flags */
28451 +       /* include/asm-ia64/siginfo.h defines a macro named si_flags */
28452 +       unsigned int            si_mntflags;
28453 +
28454 +       /* external inode number (bitmap and translation table) */
28455 +       vfs_readf_t             si_xread;
28456 +       vfs_writef_t            si_xwrite;
28457 +       struct file             *si_xib;
28458 +       struct mutex            si_xib_mtx; /* protect xib members */
28459 +       unsigned long           *si_xib_buf;
28460 +       unsigned long           si_xib_last_pindex;
28461 +       int                     si_xib_next_bit;
28462 +       aufs_bindex_t           si_xino_brid;
28463 +       unsigned long           si_xino_jiffy;
28464 +       unsigned long           si_xino_expire;
28465 +       /* reserved for future use */
28466 +       /* unsigned long long   si_xib_limit; */        /* Max xib file size */
28467 +
28468 +#ifdef CONFIG_AUFS_EXPORT
28469 +       /* i_generation */
28470 +       struct file             *si_xigen;
28471 +       atomic_t                si_xigen_next;
28472 +#endif
28473 +
28474 +       /* dirty trick to suppoer atomic_open */
28475 +       struct au_sphlhead      si_aopen;
28476 +
28477 +       /* vdir parameters */
28478 +       unsigned long           si_rdcache;     /* max cache time in jiffies */
28479 +       unsigned int            si_rdblk;       /* deblk size */
28480 +       unsigned int            si_rdhash;      /* hash size */
28481 +
28482 +       /*
28483 +        * If the number of whiteouts are larger than si_dirwh, leave all of
28484 +        * them after au_whtmp_ren to reduce the cost of rmdir(2).
28485 +        * future fsck.aufs or kernel thread will remove them later.
28486 +        * Otherwise, remove all whiteouts and the dir in rmdir(2).
28487 +        */
28488 +       unsigned int            si_dirwh;
28489 +
28490 +       /* pseudo_link list */
28491 +       struct au_sphlhead      si_plink[AuPlink_NHASH];
28492 +       wait_queue_head_t       si_plink_wq;
28493 +       spinlock_t              si_plink_maint_lock;
28494 +       pid_t                   si_plink_maint_pid;
28495 +
28496 +       /* file list */
28497 +       struct au_sphlhead      si_files;
28498 +
28499 +       /* with/without getattr, brother of sb->s_d_op */
28500 +       struct inode_operations *si_iop_array;
28501 +
28502 +       /*
28503 +        * sysfs and lifetime management.
28504 +        * this is not a small structure and it may be a waste of memory in case
28505 +        * of sysfs is disabled, particulary when many aufs-es are mounted.
28506 +        * but using sysfs is majority.
28507 +        */
28508 +       struct kobject          si_kobj;
28509 +#ifdef CONFIG_DEBUG_FS
28510 +       struct dentry            *si_dbgaufs;
28511 +       struct dentry            *si_dbgaufs_plink;
28512 +       struct dentry            *si_dbgaufs_xib;
28513 +#ifdef CONFIG_AUFS_EXPORT
28514 +       struct dentry            *si_dbgaufs_xigen;
28515 +#endif
28516 +#endif
28517 +
28518 +#ifdef CONFIG_AUFS_SBILIST
28519 +       struct hlist_node       si_list;
28520 +#endif
28521 +
28522 +       /* dirty, necessary for unmounting, sysfs and sysrq */
28523 +       struct super_block      *si_sb;
28524 +};
28525 +
28526 +/* sbinfo status flags */
28527 +/*
28528 + * set true when refresh_dirs() failed at remount time.
28529 + * then try refreshing dirs at access time again.
28530 + * if it is false, refreshing dirs at access time is unnecesary
28531 + */
28532 +#define AuSi_FAILED_REFRESH_DIR        1
28533 +#define AuSi_FHSM              (1 << 1)        /* fhsm is active now */
28534 +#define AuSi_NO_DREVAL         (1 << 2)        /* disable all d_revalidate */
28535 +
28536 +#ifndef CONFIG_AUFS_FHSM
28537 +#undef AuSi_FHSM
28538 +#define AuSi_FHSM              0
28539 +#endif
28540 +
28541 +static inline unsigned char au_do_ftest_si(struct au_sbinfo *sbi,
28542 +                                          unsigned int flag)
28543 +{
28544 +       AuRwMustAnyLock(&sbi->si_rwsem);
28545 +       return sbi->au_si_status & flag;
28546 +}
28547 +#define au_ftest_si(sbinfo, name)      au_do_ftest_si(sbinfo, AuSi_##name)
28548 +#define au_fset_si(sbinfo, name) do { \
28549 +       AuRwMustWriteLock(&(sbinfo)->si_rwsem); \
28550 +       (sbinfo)->au_si_status |= AuSi_##name; \
28551 +} while (0)
28552 +#define au_fclr_si(sbinfo, name) do { \
28553 +       AuRwMustWriteLock(&(sbinfo)->si_rwsem); \
28554 +       (sbinfo)->au_si_status &= ~AuSi_##name; \
28555 +} while (0)
28556 +
28557 +/* ---------------------------------------------------------------------- */
28558 +
28559 +/* policy to select one among writable branches */
28560 +#define AuWbrCopyup(sbinfo, ...) \
28561 +       ((sbinfo)->si_wbr_copyup_ops->copyup(__VA_ARGS__))
28562 +#define AuWbrCreate(sbinfo, ...) \
28563 +       ((sbinfo)->si_wbr_create_ops->create(__VA_ARGS__))
28564 +
28565 +/* flags for si_read_lock()/aufs_read_lock()/di_read_lock() */
28566 +#define AuLock_DW              1               /* write-lock dentry */
28567 +#define AuLock_IR              (1 << 1)        /* read-lock inode */
28568 +#define AuLock_IW              (1 << 2)        /* write-lock inode */
28569 +#define AuLock_FLUSH           (1 << 3)        /* wait for 'nowait' tasks */
28570 +#define AuLock_DIRS            (1 << 4)        /* target is a pair of dirs */
28571 +                                               /* except RENAME_EXCHANGE */
28572 +#define AuLock_NOPLM           (1 << 5)        /* return err in plm mode */
28573 +#define AuLock_NOPLMW          (1 << 6)        /* wait for plm mode ends */
28574 +#define AuLock_GEN             (1 << 7)        /* test digen/iigen */
28575 +#define au_ftest_lock(flags, name)     ((flags) & AuLock_##name)
28576 +#define au_fset_lock(flags, name) \
28577 +       do { (flags) |= AuLock_##name; } while (0)
28578 +#define au_fclr_lock(flags, name) \
28579 +       do { (flags) &= ~AuLock_##name; } while (0)
28580 +
28581 +/* ---------------------------------------------------------------------- */
28582 +
28583 +/* super.c */
28584 +extern struct file_system_type aufs_fs_type;
28585 +struct inode *au_iget_locked(struct super_block *sb, ino_t ino);
28586 +typedef unsigned long long (*au_arraycb_t)(struct super_block *sb, void *array,
28587 +                                          unsigned long long max, void *arg);
28588 +void *au_array_alloc(unsigned long long *hint, au_arraycb_t cb,
28589 +                    struct super_block *sb, void *arg);
28590 +struct inode **au_iarray_alloc(struct super_block *sb, unsigned long long *max);
28591 +void au_iarray_free(struct inode **a, unsigned long long max);
28592 +
28593 +/* sbinfo.c */
28594 +void au_si_free(struct kobject *kobj);
28595 +int au_si_alloc(struct super_block *sb);
28596 +int au_sbr_realloc(struct au_sbinfo *sbinfo, int nbr, int may_shrink);
28597 +
28598 +unsigned int au_sigen_inc(struct super_block *sb);
28599 +aufs_bindex_t au_new_br_id(struct super_block *sb);
28600 +
28601 +int si_read_lock(struct super_block *sb, int flags);
28602 +int si_write_lock(struct super_block *sb, int flags);
28603 +int aufs_read_lock(struct dentry *dentry, int flags);
28604 +void aufs_read_unlock(struct dentry *dentry, int flags);
28605 +void aufs_write_lock(struct dentry *dentry);
28606 +void aufs_write_unlock(struct dentry *dentry);
28607 +int aufs_read_and_write_lock2(struct dentry *d1, struct dentry *d2, int flags);
28608 +void aufs_read_and_write_unlock2(struct dentry *d1, struct dentry *d2);
28609 +
28610 +/* wbr_policy.c */
28611 +extern struct au_wbr_copyup_operations au_wbr_copyup_ops[];
28612 +extern struct au_wbr_create_operations au_wbr_create_ops[];
28613 +int au_cpdown_dirs(struct dentry *dentry, aufs_bindex_t bdst);
28614 +int au_wbr_nonopq(struct dentry *dentry, aufs_bindex_t bindex);
28615 +int au_wbr_do_copyup_bu(struct dentry *dentry, aufs_bindex_t btop);
28616 +
28617 +/* mvdown.c */
28618 +int au_mvdown(struct dentry *dentry, struct aufs_mvdown __user *arg);
28619 +
28620 +#ifdef CONFIG_AUFS_FHSM
28621 +/* fhsm.c */
28622 +
28623 +static inline pid_t au_fhsm_pid(struct au_fhsm *fhsm)
28624 +{
28625 +       pid_t pid;
28626 +
28627 +       spin_lock(&fhsm->fhsm_spin);
28628 +       pid = fhsm->fhsm_pid;
28629 +       spin_unlock(&fhsm->fhsm_spin);
28630 +
28631 +       return pid;
28632 +}
28633 +
28634 +void au_fhsm_wrote(struct super_block *sb, aufs_bindex_t bindex, int force);
28635 +void au_fhsm_wrote_all(struct super_block *sb, int force);
28636 +int au_fhsm_fd(struct super_block *sb, int oflags);
28637 +int au_fhsm_br_alloc(struct au_branch *br);
28638 +void au_fhsm_set_bottom(struct super_block *sb, aufs_bindex_t bindex);
28639 +void au_fhsm_fin(struct super_block *sb);
28640 +void au_fhsm_init(struct au_sbinfo *sbinfo);
28641 +void au_fhsm_set(struct au_sbinfo *sbinfo, unsigned int sec);
28642 +void au_fhsm_show(struct seq_file *seq, struct au_sbinfo *sbinfo);
28643 +#else
28644 +AuStubVoid(au_fhsm_wrote, struct super_block *sb, aufs_bindex_t bindex,
28645 +          int force)
28646 +AuStubVoid(au_fhsm_wrote_all, struct super_block *sb, int force)
28647 +AuStub(int, au_fhsm_fd, return -EOPNOTSUPP, struct super_block *sb, int oflags)
28648 +AuStub(pid_t, au_fhsm_pid, return 0, struct au_fhsm *fhsm)
28649 +AuStubInt0(au_fhsm_br_alloc, struct au_branch *br)
28650 +AuStubVoid(au_fhsm_set_bottom, struct super_block *sb, aufs_bindex_t bindex)
28651 +AuStubVoid(au_fhsm_fin, struct super_block *sb)
28652 +AuStubVoid(au_fhsm_init, struct au_sbinfo *sbinfo)
28653 +AuStubVoid(au_fhsm_set, struct au_sbinfo *sbinfo, unsigned int sec)
28654 +AuStubVoid(au_fhsm_show, struct seq_file *seq, struct au_sbinfo *sbinfo)
28655 +#endif
28656 +
28657 +/* ---------------------------------------------------------------------- */
28658 +
28659 +static inline struct au_sbinfo *au_sbi(struct super_block *sb)
28660 +{
28661 +       return sb->s_fs_info;
28662 +}
28663 +
28664 +/* ---------------------------------------------------------------------- */
28665 +
28666 +#ifdef CONFIG_AUFS_EXPORT
28667 +int au_test_nfsd(void);
28668 +void au_export_init(struct super_block *sb);
28669 +void au_xigen_inc(struct inode *inode);
28670 +int au_xigen_new(struct inode *inode);
28671 +int au_xigen_set(struct super_block *sb, struct file *base);
28672 +void au_xigen_clr(struct super_block *sb);
28673 +
28674 +static inline int au_busy_or_stale(void)
28675 +{
28676 +       if (!au_test_nfsd())
28677 +               return -EBUSY;
28678 +       return -ESTALE;
28679 +}
28680 +#else
28681 +AuStubInt0(au_test_nfsd, void)
28682 +AuStubVoid(au_export_init, struct super_block *sb)
28683 +AuStubVoid(au_xigen_inc, struct inode *inode)
28684 +AuStubInt0(au_xigen_new, struct inode *inode)
28685 +AuStubInt0(au_xigen_set, struct super_block *sb, struct file *base)
28686 +AuStubVoid(au_xigen_clr, struct super_block *sb)
28687 +AuStub(int, au_busy_or_stale, return -EBUSY, void)
28688 +#endif /* CONFIG_AUFS_EXPORT */
28689 +
28690 +/* ---------------------------------------------------------------------- */
28691 +
28692 +#ifdef CONFIG_AUFS_SBILIST
28693 +/* module.c */
28694 +extern struct au_sphlhead au_sbilist;
28695 +
28696 +static inline void au_sbilist_init(void)
28697 +{
28698 +       au_sphl_init(&au_sbilist);
28699 +}
28700 +
28701 +static inline void au_sbilist_add(struct super_block *sb)
28702 +{
28703 +       au_sphl_add(&au_sbi(sb)->si_list, &au_sbilist);
28704 +}
28705 +
28706 +static inline void au_sbilist_del(struct super_block *sb)
28707 +{
28708 +       au_sphl_del(&au_sbi(sb)->si_list, &au_sbilist);
28709 +}
28710 +
28711 +#ifdef CONFIG_AUFS_MAGIC_SYSRQ
28712 +static inline void au_sbilist_lock(void)
28713 +{
28714 +       spin_lock(&au_sbilist.spin);
28715 +}
28716 +
28717 +static inline void au_sbilist_unlock(void)
28718 +{
28719 +       spin_unlock(&au_sbilist.spin);
28720 +}
28721 +#define AuGFP_SBILIST  GFP_ATOMIC
28722 +#else
28723 +AuStubVoid(au_sbilist_lock, void)
28724 +AuStubVoid(au_sbilist_unlock, void)
28725 +#define AuGFP_SBILIST  GFP_NOFS
28726 +#endif /* CONFIG_AUFS_MAGIC_SYSRQ */
28727 +#else
28728 +AuStubVoid(au_sbilist_init, void)
28729 +AuStubVoid(au_sbilist_add, struct super_block *sb)
28730 +AuStubVoid(au_sbilist_del, struct super_block *sb)
28731 +AuStubVoid(au_sbilist_lock, void)
28732 +AuStubVoid(au_sbilist_unlock, void)
28733 +#define AuGFP_SBILIST  GFP_NOFS
28734 +#endif
28735 +
28736 +/* ---------------------------------------------------------------------- */
28737 +
28738 +static inline void dbgaufs_si_null(struct au_sbinfo *sbinfo)
28739 +{
28740 +       /*
28741 +        * This function is a dynamic '__init' function actually,
28742 +        * so the tiny check for si_rwsem is unnecessary.
28743 +        */
28744 +       /* AuRwMustWriteLock(&sbinfo->si_rwsem); */
28745 +#ifdef CONFIG_DEBUG_FS
28746 +       sbinfo->si_dbgaufs = NULL;
28747 +       sbinfo->si_dbgaufs_plink = NULL;
28748 +       sbinfo->si_dbgaufs_xib = NULL;
28749 +#ifdef CONFIG_AUFS_EXPORT
28750 +       sbinfo->si_dbgaufs_xigen = NULL;
28751 +#endif
28752 +#endif
28753 +}
28754 +
28755 +/* ---------------------------------------------------------------------- */
28756 +
28757 +static inline void si_pid_idx_bit(int *idx, pid_t *bit)
28758 +{
28759 +       /* the origin of pid is 1, but the bitmap's is 0 */
28760 +       *bit = current->pid - 1;
28761 +       *idx = *bit / AU_PIDSTEP;
28762 +       *bit %= AU_PIDSTEP;
28763 +}
28764 +
28765 +static inline int si_pid_test(struct super_block *sb)
28766 +{
28767 +       pid_t bit;
28768 +       int idx;
28769 +       unsigned long *bitmap;
28770 +
28771 +       si_pid_idx_bit(&idx, &bit);
28772 +       bitmap = au_sbi(sb)->au_si_pid.pid_bitmap[idx];
28773 +       if (bitmap)
28774 +               return test_bit(bit, bitmap);
28775 +       return 0;
28776 +}
28777 +
28778 +static inline void si_pid_clr(struct super_block *sb)
28779 +{
28780 +       pid_t bit;
28781 +       int idx;
28782 +       unsigned long *bitmap;
28783 +
28784 +       si_pid_idx_bit(&idx, &bit);
28785 +       bitmap = au_sbi(sb)->au_si_pid.pid_bitmap[idx];
28786 +       BUG_ON(!bitmap);
28787 +       AuDebugOn(!test_bit(bit, bitmap));
28788 +       clear_bit(bit, bitmap);
28789 +       /* smp_mb(); */
28790 +}
28791 +
28792 +void si_pid_set(struct super_block *sb);
28793 +
28794 +/* ---------------------------------------------------------------------- */
28795 +
28796 +/* lock superblock. mainly for entry point functions */
28797 +/*
28798 + * __si_read_lock, __si_write_lock,
28799 + * __si_read_unlock, __si_write_unlock, __si_downgrade_lock
28800 + */
28801 +AuSimpleRwsemFuncs(__si, struct super_block *sb, &au_sbi(sb)->si_rwsem);
28802 +
28803 +#define SiMustNoWaiters(sb)    AuRwMustNoWaiters(&au_sbi(sb)->si_rwsem)
28804 +#define SiMustAnyLock(sb)      AuRwMustAnyLock(&au_sbi(sb)->si_rwsem)
28805 +#define SiMustWriteLock(sb)    AuRwMustWriteLock(&au_sbi(sb)->si_rwsem)
28806 +
28807 +static inline void si_noflush_read_lock(struct super_block *sb)
28808 +{
28809 +       __si_read_lock(sb);
28810 +       si_pid_set(sb);
28811 +}
28812 +
28813 +static inline int si_noflush_read_trylock(struct super_block *sb)
28814 +{
28815 +       int locked;
28816 +
28817 +       locked = __si_read_trylock(sb);
28818 +       if (locked)
28819 +               si_pid_set(sb);
28820 +       return locked;
28821 +}
28822 +
28823 +static inline void si_noflush_write_lock(struct super_block *sb)
28824 +{
28825 +       __si_write_lock(sb);
28826 +       si_pid_set(sb);
28827 +}
28828 +
28829 +static inline int si_noflush_write_trylock(struct super_block *sb)
28830 +{
28831 +       int locked;
28832 +
28833 +       locked = __si_write_trylock(sb);
28834 +       if (locked)
28835 +               si_pid_set(sb);
28836 +       return locked;
28837 +}
28838 +
28839 +#if 0 /* reserved */
28840 +static inline int si_read_trylock(struct super_block *sb, int flags)
28841 +{
28842 +       if (au_ftest_lock(flags, FLUSH))
28843 +               au_nwt_flush(&au_sbi(sb)->si_nowait);
28844 +       return si_noflush_read_trylock(sb);
28845 +}
28846 +#endif
28847 +
28848 +static inline void si_read_unlock(struct super_block *sb)
28849 +{
28850 +       si_pid_clr(sb);
28851 +       __si_read_unlock(sb);
28852 +}
28853 +
28854 +#if 0 /* reserved */
28855 +static inline int si_write_trylock(struct super_block *sb, int flags)
28856 +{
28857 +       if (au_ftest_lock(flags, FLUSH))
28858 +               au_nwt_flush(&au_sbi(sb)->si_nowait);
28859 +       return si_noflush_write_trylock(sb);
28860 +}
28861 +#endif
28862 +
28863 +static inline void si_write_unlock(struct super_block *sb)
28864 +{
28865 +       si_pid_clr(sb);
28866 +       __si_write_unlock(sb);
28867 +}
28868 +
28869 +#if 0 /* reserved */
28870 +static inline void si_downgrade_lock(struct super_block *sb)
28871 +{
28872 +       __si_downgrade_lock(sb);
28873 +}
28874 +#endif
28875 +
28876 +/* ---------------------------------------------------------------------- */
28877 +
28878 +static inline aufs_bindex_t au_sbbot(struct super_block *sb)
28879 +{
28880 +       SiMustAnyLock(sb);
28881 +       return au_sbi(sb)->si_bbot;
28882 +}
28883 +
28884 +static inline unsigned int au_mntflags(struct super_block *sb)
28885 +{
28886 +       SiMustAnyLock(sb);
28887 +       return au_sbi(sb)->si_mntflags;
28888 +}
28889 +
28890 +static inline unsigned int au_sigen(struct super_block *sb)
28891 +{
28892 +       SiMustAnyLock(sb);
28893 +       return au_sbi(sb)->si_generation;
28894 +}
28895 +
28896 +static inline unsigned long long au_ninodes(struct super_block *sb)
28897 +{
28898 +       s64 n = percpu_counter_sum(&au_sbi(sb)->si_ninodes);
28899 +
28900 +       BUG_ON(n < 0);
28901 +       return n;
28902 +}
28903 +
28904 +static inline void au_ninodes_inc(struct super_block *sb)
28905 +{
28906 +       percpu_counter_inc(&au_sbi(sb)->si_ninodes);
28907 +}
28908 +
28909 +static inline void au_ninodes_dec(struct super_block *sb)
28910 +{
28911 +       percpu_counter_dec(&au_sbi(sb)->si_ninodes);
28912 +}
28913 +
28914 +static inline unsigned long long au_nfiles(struct super_block *sb)
28915 +{
28916 +       s64 n = percpu_counter_sum(&au_sbi(sb)->si_nfiles);
28917 +
28918 +       BUG_ON(n < 0);
28919 +       return n;
28920 +}
28921 +
28922 +static inline void au_nfiles_inc(struct super_block *sb)
28923 +{
28924 +       percpu_counter_inc(&au_sbi(sb)->si_nfiles);
28925 +}
28926 +
28927 +static inline void au_nfiles_dec(struct super_block *sb)
28928 +{
28929 +       percpu_counter_dec(&au_sbi(sb)->si_nfiles);
28930 +}
28931 +
28932 +static inline struct au_branch *au_sbr(struct super_block *sb,
28933 +                                      aufs_bindex_t bindex)
28934 +{
28935 +       SiMustAnyLock(sb);
28936 +       return au_sbi(sb)->si_branch[0 + bindex];
28937 +}
28938 +
28939 +static inline void au_xino_brid_set(struct super_block *sb, aufs_bindex_t brid)
28940 +{
28941 +       SiMustWriteLock(sb);
28942 +       au_sbi(sb)->si_xino_brid = brid;
28943 +}
28944 +
28945 +static inline aufs_bindex_t au_xino_brid(struct super_block *sb)
28946 +{
28947 +       SiMustAnyLock(sb);
28948 +       return au_sbi(sb)->si_xino_brid;
28949 +}
28950 +
28951 +#endif /* __KERNEL__ */
28952 +#endif /* __AUFS_SUPER_H__ */
28953 diff -urN /usr/share/empty/fs/aufs/sysaufs.c linux/fs/aufs/sysaufs.c
28954 --- /usr/share/empty/fs/aufs/sysaufs.c  1970-01-01 01:00:00.000000000 +0100
28955 +++ linux/fs/aufs/sysaufs.c     2016-10-09 16:55:36.496035060 +0200
28956 @@ -0,0 +1,104 @@
28957 +/*
28958 + * Copyright (C) 2005-2016 Junjiro R. Okajima
28959 + *
28960 + * This program, aufs is free software; you can redistribute it and/or modify
28961 + * it under the terms of the GNU General Public License as published by
28962 + * the Free Software Foundation; either version 2 of the License, or
28963 + * (at your option) any later version.
28964 + *
28965 + * This program is distributed in the hope that it will be useful,
28966 + * but WITHOUT ANY WARRANTY; without even the implied warranty of
28967 + * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
28968 + * GNU General Public License for more details.
28969 + *
28970 + * You should have received a copy of the GNU General Public License
28971 + * along with this program.  If not, see <http://www.gnu.org/licenses/>.
28972 + */
28973 +
28974 +/*
28975 + * sysfs interface and lifetime management
28976 + * they are necessary regardless sysfs is disabled.
28977 + */
28978 +
28979 +#include <linux/random.h>
28980 +#include "aufs.h"
28981 +
28982 +unsigned long sysaufs_si_mask;
28983 +struct kset *sysaufs_kset;
28984 +
28985 +#define AuSiAttr(_name) { \
28986 +       .attr   = { .name = __stringify(_name), .mode = 0444 }, \
28987 +       .show   = sysaufs_si_##_name,                           \
28988 +}
28989 +
28990 +static struct sysaufs_si_attr sysaufs_si_attr_xi_path = AuSiAttr(xi_path);
28991 +struct attribute *sysaufs_si_attrs[] = {
28992 +       &sysaufs_si_attr_xi_path.attr,
28993 +       NULL,
28994 +};
28995 +
28996 +static const struct sysfs_ops au_sbi_ops = {
28997 +       .show   = sysaufs_si_show
28998 +};
28999 +
29000 +static struct kobj_type au_sbi_ktype = {
29001 +       .release        = au_si_free,
29002 +       .sysfs_ops      = &au_sbi_ops,
29003 +       .default_attrs  = sysaufs_si_attrs
29004 +};
29005 +
29006 +/* ---------------------------------------------------------------------- */
29007 +
29008 +int sysaufs_si_init(struct au_sbinfo *sbinfo)
29009 +{
29010 +       int err;
29011 +
29012 +       sbinfo->si_kobj.kset = sysaufs_kset;
29013 +       /* cf. sysaufs_name() */
29014 +       err = kobject_init_and_add
29015 +               (&sbinfo->si_kobj, &au_sbi_ktype, /*&sysaufs_kset->kobj*/NULL,
29016 +                SysaufsSiNamePrefix "%lx", sysaufs_si_id(sbinfo));
29017 +
29018 +       dbgaufs_si_null(sbinfo);
29019 +       if (!err) {
29020 +               err = dbgaufs_si_init(sbinfo);
29021 +               if (unlikely(err))
29022 +                       kobject_put(&sbinfo->si_kobj);
29023 +       }
29024 +       return err;
29025 +}
29026 +
29027 +void sysaufs_fin(void)
29028 +{
29029 +       dbgaufs_fin();
29030 +       sysfs_remove_group(&sysaufs_kset->kobj, sysaufs_attr_group);
29031 +       kset_unregister(sysaufs_kset);
29032 +}
29033 +
29034 +int __init sysaufs_init(void)
29035 +{
29036 +       int err;
29037 +
29038 +       do {
29039 +               get_random_bytes(&sysaufs_si_mask, sizeof(sysaufs_si_mask));
29040 +       } while (!sysaufs_si_mask);
29041 +
29042 +       err = -EINVAL;
29043 +       sysaufs_kset = kset_create_and_add(AUFS_NAME, NULL, fs_kobj);
29044 +       if (unlikely(!sysaufs_kset))
29045 +               goto out;
29046 +       err = PTR_ERR(sysaufs_kset);
29047 +       if (IS_ERR(sysaufs_kset))
29048 +               goto out;
29049 +       err = sysfs_create_group(&sysaufs_kset->kobj, sysaufs_attr_group);
29050 +       if (unlikely(err)) {
29051 +               kset_unregister(sysaufs_kset);
29052 +               goto out;
29053 +       }
29054 +
29055 +       err = dbgaufs_init();
29056 +       if (unlikely(err))
29057 +               sysaufs_fin();
29058 +out:
29059 +       return err;
29060 +}
29061 diff -urN /usr/share/empty/fs/aufs/sysaufs.h linux/fs/aufs/sysaufs.h
29062 --- /usr/share/empty/fs/aufs/sysaufs.h  1970-01-01 01:00:00.000000000 +0100
29063 +++ linux/fs/aufs/sysaufs.h     2016-10-09 16:55:36.496035060 +0200
29064 @@ -0,0 +1,101 @@
29065 +/*
29066 + * Copyright (C) 2005-2016 Junjiro R. Okajima
29067 + *
29068 + * This program, aufs is free software; you can redistribute it and/or modify
29069 + * it under the terms of the GNU General Public License as published by
29070 + * the Free Software Foundation; either version 2 of the License, or
29071 + * (at your option) any later version.
29072 + *
29073 + * This program is distributed in the hope that it will be useful,
29074 + * but WITHOUT ANY WARRANTY; without even the implied warranty of
29075 + * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
29076 + * GNU General Public License for more details.
29077 + *
29078 + * You should have received a copy of the GNU General Public License
29079 + * along with this program.  If not, see <http://www.gnu.org/licenses/>.
29080 + */
29081 +
29082 +/*
29083 + * sysfs interface and mount lifetime management
29084 + */
29085 +
29086 +#ifndef __SYSAUFS_H__
29087 +#define __SYSAUFS_H__
29088 +
29089 +#ifdef __KERNEL__
29090 +
29091 +#include <linux/sysfs.h>
29092 +#include "module.h"
29093 +
29094 +struct super_block;
29095 +struct au_sbinfo;
29096 +
29097 +struct sysaufs_si_attr {
29098 +       struct attribute attr;
29099 +       int (*show)(struct seq_file *seq, struct super_block *sb);
29100 +};
29101 +
29102 +/* ---------------------------------------------------------------------- */
29103 +
29104 +/* sysaufs.c */
29105 +extern unsigned long sysaufs_si_mask;
29106 +extern struct kset *sysaufs_kset;
29107 +extern struct attribute *sysaufs_si_attrs[];
29108 +int sysaufs_si_init(struct au_sbinfo *sbinfo);
29109 +int __init sysaufs_init(void);
29110 +void sysaufs_fin(void);
29111 +
29112 +/* ---------------------------------------------------------------------- */
29113 +
29114 +/* some people doesn't like to show a pointer in kernel */
29115 +static inline unsigned long sysaufs_si_id(struct au_sbinfo *sbinfo)
29116 +{
29117 +       return sysaufs_si_mask ^ (unsigned long)sbinfo;
29118 +}
29119 +
29120 +#define SysaufsSiNamePrefix    "si_"
29121 +#define SysaufsSiNameLen       (sizeof(SysaufsSiNamePrefix) + 16)
29122 +static inline void sysaufs_name(struct au_sbinfo *sbinfo, char *name)
29123 +{
29124 +       snprintf(name, SysaufsSiNameLen, SysaufsSiNamePrefix "%lx",
29125 +                sysaufs_si_id(sbinfo));
29126 +}
29127 +
29128 +struct au_branch;
29129 +#ifdef CONFIG_SYSFS
29130 +/* sysfs.c */
29131 +extern struct attribute_group *sysaufs_attr_group;
29132 +
29133 +int sysaufs_si_xi_path(struct seq_file *seq, struct super_block *sb);
29134 +ssize_t sysaufs_si_show(struct kobject *kobj, struct attribute *attr,
29135 +                        char *buf);
29136 +long au_brinfo_ioctl(struct file *file, unsigned long arg);
29137 +#ifdef CONFIG_COMPAT
29138 +long au_brinfo_compat_ioctl(struct file *file, unsigned long arg);
29139 +#endif
29140 +
29141 +void sysaufs_br_init(struct au_branch *br);
29142 +void sysaufs_brs_add(struct super_block *sb, aufs_bindex_t bindex);
29143 +void sysaufs_brs_del(struct super_block *sb, aufs_bindex_t bindex);
29144 +
29145 +#define sysaufs_brs_init()     do {} while (0)
29146 +
29147 +#else
29148 +#define sysaufs_attr_group     NULL
29149 +
29150 +AuStubInt0(sysaufs_si_xi_path, struct seq_file *seq, struct super_block *sb)
29151 +AuStub(ssize_t, sysaufs_si_show, return 0, struct kobject *kobj,
29152 +       struct attribute *attr, char *buf)
29153 +AuStubVoid(sysaufs_br_init, struct au_branch *br)
29154 +AuStubVoid(sysaufs_brs_add, struct super_block *sb, aufs_bindex_t bindex)
29155 +AuStubVoid(sysaufs_brs_del, struct super_block *sb, aufs_bindex_t bindex)
29156 +
29157 +static inline void sysaufs_brs_init(void)
29158 +{
29159 +       sysaufs_brs = 0;
29160 +}
29161 +
29162 +#endif /* CONFIG_SYSFS */
29163 +
29164 +#endif /* __KERNEL__ */
29165 +#endif /* __SYSAUFS_H__ */
29166 diff -urN /usr/share/empty/fs/aufs/sysfs.c linux/fs/aufs/sysfs.c
29167 --- /usr/share/empty/fs/aufs/sysfs.c    1970-01-01 01:00:00.000000000 +0100
29168 +++ linux/fs/aufs/sysfs.c       2016-10-09 16:55:36.496035060 +0200
29169 @@ -0,0 +1,376 @@
29170 +/*
29171 + * Copyright (C) 2005-2016 Junjiro R. Okajima
29172 + *
29173 + * This program, aufs is free software; you can redistribute it and/or modify
29174 + * it under the terms of the GNU General Public License as published by
29175 + * the Free Software Foundation; either version 2 of the License, or
29176 + * (at your option) any later version.
29177 + *
29178 + * This program is distributed in the hope that it will be useful,
29179 + * but WITHOUT ANY WARRANTY; without even the implied warranty of
29180 + * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
29181 + * GNU General Public License for more details.
29182 + *
29183 + * You should have received a copy of the GNU General Public License
29184 + * along with this program.  If not, see <http://www.gnu.org/licenses/>.
29185 + */
29186 +
29187 +/*
29188 + * sysfs interface
29189 + */
29190 +
29191 +#include <linux/compat.h>
29192 +#include <linux/seq_file.h>
29193 +#include "aufs.h"
29194 +
29195 +#ifdef CONFIG_AUFS_FS_MODULE
29196 +/* this entry violates the "one line per file" policy of sysfs */
29197 +static ssize_t config_show(struct kobject *kobj, struct kobj_attribute *attr,
29198 +                          char *buf)
29199 +{
29200 +       ssize_t err;
29201 +       static char *conf =
29202 +/* this file is generated at compiling */
29203 +#include "conf.str"
29204 +               ;
29205 +
29206 +       err = snprintf(buf, PAGE_SIZE, conf);
29207 +       if (unlikely(err >= PAGE_SIZE))
29208 +               err = -EFBIG;
29209 +       return err;
29210 +}
29211 +
29212 +static struct kobj_attribute au_config_attr = __ATTR_RO(config);
29213 +#endif
29214 +
29215 +static struct attribute *au_attr[] = {
29216 +#ifdef CONFIG_AUFS_FS_MODULE
29217 +       &au_config_attr.attr,
29218 +#endif
29219 +       NULL,   /* need to NULL terminate the list of attributes */
29220 +};
29221 +
29222 +static struct attribute_group sysaufs_attr_group_body = {
29223 +       .attrs = au_attr
29224 +};
29225 +
29226 +struct attribute_group *sysaufs_attr_group = &sysaufs_attr_group_body;
29227 +
29228 +/* ---------------------------------------------------------------------- */
29229 +
29230 +int sysaufs_si_xi_path(struct seq_file *seq, struct super_block *sb)
29231 +{
29232 +       int err;
29233 +
29234 +       SiMustAnyLock(sb);
29235 +
29236 +       err = 0;
29237 +       if (au_opt_test(au_mntflags(sb), XINO)) {
29238 +               err = au_xino_path(seq, au_sbi(sb)->si_xib);
29239 +               seq_putc(seq, '\n');
29240 +       }
29241 +       return err;
29242 +}
29243 +
29244 +/*
29245 + * the lifetime of branch is independent from the entry under sysfs.
29246 + * sysfs handles the lifetime of the entry, and never call ->show() after it is
29247 + * unlinked.
29248 + */
29249 +static int sysaufs_si_br(struct seq_file *seq, struct super_block *sb,
29250 +                        aufs_bindex_t bindex, int idx)
29251 +{
29252 +       int err;
29253 +       struct path path;
29254 +       struct dentry *root;
29255 +       struct au_branch *br;
29256 +       au_br_perm_str_t perm;
29257 +
29258 +       AuDbg("b%d\n", bindex);
29259 +
29260 +       err = 0;
29261 +       root = sb->s_root;
29262 +       di_read_lock_parent(root, !AuLock_IR);
29263 +       br = au_sbr(sb, bindex);
29264 +
29265 +       switch (idx) {
29266 +       case AuBrSysfs_BR:
29267 +               path.mnt = au_br_mnt(br);
29268 +               path.dentry = au_h_dptr(root, bindex);
29269 +               err = au_seq_path(seq, &path);
29270 +               if (!err) {
29271 +                       au_optstr_br_perm(&perm, br->br_perm);
29272 +                       seq_printf(seq, "=%s\n", perm.a);
29273 +               }
29274 +               break;
29275 +       case AuBrSysfs_BRID:
29276 +               seq_printf(seq, "%d\n", br->br_id);
29277 +               break;
29278 +       }
29279 +       di_read_unlock(root, !AuLock_IR);
29280 +       if (unlikely(err || seq_has_overflowed(seq)))
29281 +               err = -E2BIG;
29282 +
29283 +       return err;
29284 +}
29285 +
29286 +/* ---------------------------------------------------------------------- */
29287 +
29288 +static struct seq_file *au_seq(char *p, ssize_t len)
29289 +{
29290 +       struct seq_file *seq;
29291 +
29292 +       seq = kzalloc(sizeof(*seq), GFP_NOFS);
29293 +       if (seq) {
29294 +               /* mutex_init(&seq.lock); */
29295 +               seq->buf = p;
29296 +               seq->size = len;
29297 +               return seq; /* success */
29298 +       }
29299 +
29300 +       seq = ERR_PTR(-ENOMEM);
29301 +       return seq;
29302 +}
29303 +
29304 +#define SysaufsBr_PREFIX       "br"
29305 +#define SysaufsBrid_PREFIX     "brid"
29306 +
29307 +/* todo: file size may exceed PAGE_SIZE */
29308 +ssize_t sysaufs_si_show(struct kobject *kobj, struct attribute *attr,
29309 +                       char *buf)
29310 +{
29311 +       ssize_t err;
29312 +       int idx;
29313 +       long l;
29314 +       aufs_bindex_t bbot;
29315 +       struct au_sbinfo *sbinfo;
29316 +       struct super_block *sb;
29317 +       struct seq_file *seq;
29318 +       char *name;
29319 +       struct attribute **cattr;
29320 +
29321 +       sbinfo = container_of(kobj, struct au_sbinfo, si_kobj);
29322 +       sb = sbinfo->si_sb;
29323 +
29324 +       /*
29325 +        * prevent a race condition between sysfs and aufs.
29326 +        * for instance, sysfs_file_read() calls sysfs_get_active_two() which
29327 +        * prohibits maintaining the sysfs entries.
29328 +        * hew we acquire read lock after sysfs_get_active_two().
29329 +        * on the other hand, the remount process may maintain the sysfs/aufs
29330 +        * entries after acquiring write lock.
29331 +        * it can cause a deadlock.
29332 +        * simply we gave up processing read here.
29333 +        */
29334 +       err = -EBUSY;
29335 +       if (unlikely(!si_noflush_read_trylock(sb)))
29336 +               goto out;
29337 +
29338 +       seq = au_seq(buf, PAGE_SIZE);
29339 +       err = PTR_ERR(seq);
29340 +       if (IS_ERR(seq))
29341 +               goto out_unlock;
29342 +
29343 +       name = (void *)attr->name;
29344 +       cattr = sysaufs_si_attrs;
29345 +       while (*cattr) {
29346 +               if (!strcmp(name, (*cattr)->name)) {
29347 +                       err = container_of(*cattr, struct sysaufs_si_attr, attr)
29348 +                               ->show(seq, sb);
29349 +                       goto out_seq;
29350 +               }
29351 +               cattr++;
29352 +       }
29353 +
29354 +       if (!strncmp(name, SysaufsBrid_PREFIX,
29355 +                    sizeof(SysaufsBrid_PREFIX) - 1)) {
29356 +               idx = AuBrSysfs_BRID;
29357 +               name += sizeof(SysaufsBrid_PREFIX) - 1;
29358 +       } else if (!strncmp(name, SysaufsBr_PREFIX,
29359 +                           sizeof(SysaufsBr_PREFIX) - 1)) {
29360 +               idx = AuBrSysfs_BR;
29361 +               name += sizeof(SysaufsBr_PREFIX) - 1;
29362 +       } else
29363 +                 BUG();
29364 +
29365 +       err = kstrtol(name, 10, &l);
29366 +       if (!err) {
29367 +               bbot = au_sbbot(sb);
29368 +               if (l <= bbot)
29369 +                       err = sysaufs_si_br(seq, sb, (aufs_bindex_t)l, idx);
29370 +               else
29371 +                       err = -ENOENT;
29372 +       }
29373 +
29374 +out_seq:
29375 +       if (!err) {
29376 +               err = seq->count;
29377 +               /* sysfs limit */
29378 +               if (unlikely(err == PAGE_SIZE))
29379 +                       err = -EFBIG;
29380 +       }
29381 +       au_delayed_kfree(seq);
29382 +out_unlock:
29383 +       si_read_unlock(sb);
29384 +out:
29385 +       return err;
29386 +}
29387 +
29388 +/* ---------------------------------------------------------------------- */
29389 +
29390 +static int au_brinfo(struct super_block *sb, union aufs_brinfo __user *arg)
29391 +{
29392 +       int err;
29393 +       int16_t brid;
29394 +       aufs_bindex_t bindex, bbot;
29395 +       size_t sz;
29396 +       char *buf;
29397 +       struct seq_file *seq;
29398 +       struct au_branch *br;
29399 +
29400 +       si_read_lock(sb, AuLock_FLUSH);
29401 +       bbot = au_sbbot(sb);
29402 +       err = bbot + 1;
29403 +       if (!arg)
29404 +               goto out;
29405 +
29406 +       err = -ENOMEM;
29407 +       buf = (void *)__get_free_page(GFP_NOFS);
29408 +       if (unlikely(!buf))
29409 +               goto out;
29410 +
29411 +       seq = au_seq(buf, PAGE_SIZE);
29412 +       err = PTR_ERR(seq);
29413 +       if (IS_ERR(seq))
29414 +               goto out_buf;
29415 +
29416 +       sz = sizeof(*arg) - offsetof(union aufs_brinfo, path);
29417 +       for (bindex = 0; bindex <= bbot; bindex++, arg++) {
29418 +               err = !access_ok(VERIFY_WRITE, arg, sizeof(*arg));
29419 +               if (unlikely(err))
29420 +                       break;
29421 +
29422 +               br = au_sbr(sb, bindex);
29423 +               brid = br->br_id;
29424 +               BUILD_BUG_ON(sizeof(brid) != sizeof(arg->id));
29425 +               err = __put_user(brid, &arg->id);
29426 +               if (unlikely(err))
29427 +                       break;
29428 +
29429 +               BUILD_BUG_ON(sizeof(br->br_perm) != sizeof(arg->perm));
29430 +               err = __put_user(br->br_perm, &arg->perm);
29431 +               if (unlikely(err))
29432 +                       break;
29433 +
29434 +               err = au_seq_path(seq, &br->br_path);
29435 +               if (unlikely(err))
29436 +                       break;
29437 +               seq_putc(seq, '\0');
29438 +               if (!seq_has_overflowed(seq)) {
29439 +                       err = copy_to_user(arg->path, seq->buf, seq->count);
29440 +                       seq->count = 0;
29441 +                       if (unlikely(err))
29442 +                               break;
29443 +               } else {
29444 +                       err = -E2BIG;
29445 +                       goto out_seq;
29446 +               }
29447 +       }
29448 +       if (unlikely(err))
29449 +               err = -EFAULT;
29450 +
29451 +out_seq:
29452 +       au_delayed_kfree(seq);
29453 +out_buf:
29454 +       au_delayed_free_page((unsigned long)buf);
29455 +out:
29456 +       si_read_unlock(sb);
29457 +       return err;
29458 +}
29459 +
29460 +long au_brinfo_ioctl(struct file *file, unsigned long arg)
29461 +{
29462 +       return au_brinfo(file->f_path.dentry->d_sb, (void __user *)arg);
29463 +}
29464 +
29465 +#ifdef CONFIG_COMPAT
29466 +long au_brinfo_compat_ioctl(struct file *file, unsigned long arg)
29467 +{
29468 +       return au_brinfo(file->f_path.dentry->d_sb, compat_ptr(arg));
29469 +}
29470 +#endif
29471 +
29472 +/* ---------------------------------------------------------------------- */
29473 +
29474 +void sysaufs_br_init(struct au_branch *br)
29475 +{
29476 +       int i;
29477 +       struct au_brsysfs *br_sysfs;
29478 +       struct attribute *attr;
29479 +
29480 +       br_sysfs = br->br_sysfs;
29481 +       for (i = 0; i < ARRAY_SIZE(br->br_sysfs); i++) {
29482 +               attr = &br_sysfs->attr;
29483 +               sysfs_attr_init(attr);
29484 +               attr->name = br_sysfs->name;
29485 +               attr->mode = S_IRUGO;
29486 +               br_sysfs++;
29487 +       }
29488 +}
29489 +
29490 +void sysaufs_brs_del(struct super_block *sb, aufs_bindex_t bindex)
29491 +{
29492 +       struct au_branch *br;
29493 +       struct kobject *kobj;
29494 +       struct au_brsysfs *br_sysfs;
29495 +       int i;
29496 +       aufs_bindex_t bbot;
29497 +
29498 +       dbgaufs_brs_del(sb, bindex);
29499 +
29500 +       if (!sysaufs_brs)
29501 +               return;
29502 +
29503 +       kobj = &au_sbi(sb)->si_kobj;
29504 +       bbot = au_sbbot(sb);
29505 +       for (; bindex <= bbot; bindex++) {
29506 +               br = au_sbr(sb, bindex);
29507 +               br_sysfs = br->br_sysfs;
29508 +               for (i = 0; i < ARRAY_SIZE(br->br_sysfs); i++) {
29509 +                       sysfs_remove_file(kobj, &br_sysfs->attr);
29510 +                       br_sysfs++;
29511 +               }
29512 +       }
29513 +}
29514 +
29515 +void sysaufs_brs_add(struct super_block *sb, aufs_bindex_t bindex)
29516 +{
29517 +       int err, i;
29518 +       aufs_bindex_t bbot;
29519 +       struct kobject *kobj;
29520 +       struct au_branch *br;
29521 +       struct au_brsysfs *br_sysfs;
29522 +
29523 +       dbgaufs_brs_add(sb, bindex);
29524 +
29525 +       if (!sysaufs_brs)
29526 +               return;
29527 +
29528 +       kobj = &au_sbi(sb)->si_kobj;
29529 +       bbot = au_sbbot(sb);
29530 +       for (; bindex <= bbot; bindex++) {
29531 +               br = au_sbr(sb, bindex);
29532 +               br_sysfs = br->br_sysfs;
29533 +               snprintf(br_sysfs[AuBrSysfs_BR].name, sizeof(br_sysfs->name),
29534 +                        SysaufsBr_PREFIX "%d", bindex);
29535 +               snprintf(br_sysfs[AuBrSysfs_BRID].name, sizeof(br_sysfs->name),
29536 +                        SysaufsBrid_PREFIX "%d", bindex);
29537 +               for (i = 0; i < ARRAY_SIZE(br->br_sysfs); i++) {
29538 +                       err = sysfs_create_file(kobj, &br_sysfs->attr);
29539 +                       if (unlikely(err))
29540 +                               pr_warn("failed %s under sysfs(%d)\n",
29541 +                                       br_sysfs->name, err);
29542 +                       br_sysfs++;
29543 +               }
29544 +       }
29545 +}
29546 diff -urN /usr/share/empty/fs/aufs/sysrq.c linux/fs/aufs/sysrq.c
29547 --- /usr/share/empty/fs/aufs/sysrq.c    1970-01-01 01:00:00.000000000 +0100
29548 +++ linux/fs/aufs/sysrq.c       2016-10-09 16:55:36.496035060 +0200
29549 @@ -0,0 +1,157 @@
29550 +/*
29551 + * Copyright (C) 2005-2016 Junjiro R. Okajima
29552 + *
29553 + * This program, aufs is free software; you can redistribute it and/or modify
29554 + * it under the terms of the GNU General Public License as published by
29555 + * the Free Software Foundation; either version 2 of the License, or
29556 + * (at your option) any later version.
29557 + *
29558 + * This program is distributed in the hope that it will be useful,
29559 + * but WITHOUT ANY WARRANTY; without even the implied warranty of
29560 + * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
29561 + * GNU General Public License for more details.
29562 + *
29563 + * You should have received a copy of the GNU General Public License
29564 + * along with this program.  If not, see <http://www.gnu.org/licenses/>.
29565 + */
29566 +
29567 +/*
29568 + * magic sysrq hanlder
29569 + */
29570 +
29571 +/* #include <linux/sysrq.h> */
29572 +#include <linux/writeback.h>
29573 +#include "aufs.h"
29574 +
29575 +/* ---------------------------------------------------------------------- */
29576 +
29577 +static void sysrq_sb(struct super_block *sb)
29578 +{
29579 +       char *plevel;
29580 +       struct au_sbinfo *sbinfo;
29581 +       struct file *file;
29582 +       struct au_sphlhead *files;
29583 +       struct au_finfo *finfo;
29584 +
29585 +       plevel = au_plevel;
29586 +       au_plevel = KERN_WARNING;
29587 +
29588 +       /* since we define pr_fmt, call printk directly */
29589 +#define pr(str) printk(KERN_WARNING AUFS_NAME ": " str)
29590 +
29591 +       sbinfo = au_sbi(sb);
29592 +       printk(KERN_WARNING "si=%lx\n", sysaufs_si_id(sbinfo));
29593 +       pr("superblock\n");
29594 +       au_dpri_sb(sb);
29595 +
29596 +#if 0
29597 +       pr("root dentry\n");
29598 +       au_dpri_dentry(sb->s_root);
29599 +       pr("root inode\n");
29600 +       au_dpri_inode(d_inode(sb->s_root));
29601 +#endif
29602 +
29603 +#if 0
29604 +       do {
29605 +               int err, i, j, ndentry;
29606 +               struct au_dcsub_pages dpages;
29607 +               struct au_dpage *dpage;
29608 +
29609 +               err = au_dpages_init(&dpages, GFP_ATOMIC);
29610 +               if (unlikely(err))
29611 +                       break;
29612 +               err = au_dcsub_pages(&dpages, sb->s_root, NULL, NULL);
29613 +               if (!err)
29614 +                       for (i = 0; i < dpages.ndpage; i++) {
29615 +                               dpage = dpages.dpages + i;
29616 +                               ndentry = dpage->ndentry;
29617 +                               for (j = 0; j < ndentry; j++)
29618 +                                       au_dpri_dentry(dpage->dentries[j]);
29619 +                       }
29620 +               au_dpages_free(&dpages);
29621 +       } while (0);
29622 +#endif
29623 +
29624 +#if 1
29625 +       {
29626 +               struct inode *i;
29627 +
29628 +               pr("isolated inode\n");
29629 +               spin_lock(&sb->s_inode_list_lock);
29630 +               list_for_each_entry(i, &sb->s_inodes, i_sb_list) {
29631 +                       spin_lock(&i->i_lock);
29632 +                       if (1 || hlist_empty(&i->i_dentry))
29633 +                               au_dpri_inode(i);
29634 +                       spin_unlock(&i->i_lock);
29635 +               }
29636 +               spin_unlock(&sb->s_inode_list_lock);
29637 +       }
29638 +#endif
29639 +       pr("files\n");
29640 +       files = &au_sbi(sb)->si_files;
29641 +       spin_lock(&files->spin);
29642 +       hlist_for_each_entry(finfo, &files->head, fi_hlist) {
29643 +               umode_t mode;
29644 +
29645 +               file = finfo->fi_file;
29646 +               mode = file_inode(file)->i_mode;
29647 +               if (!special_file(mode))
29648 +                       au_dpri_file(file);
29649 +       }
29650 +       spin_unlock(&files->spin);
29651 +       pr("done\n");
29652 +
29653 +#undef pr
29654 +       au_plevel = plevel;
29655 +}
29656 +
29657 +/* ---------------------------------------------------------------------- */
29658 +
29659 +/* module parameter */
29660 +static char *aufs_sysrq_key = "a";
29661 +module_param_named(sysrq, aufs_sysrq_key, charp, S_IRUGO);
29662 +MODULE_PARM_DESC(sysrq, "MagicSysRq key for " AUFS_NAME);
29663 +
29664 +static void au_sysrq(int key __maybe_unused)
29665 +{
29666 +       struct au_sbinfo *sbinfo;
29667 +
29668 +       lockdep_off();
29669 +       au_sbilist_lock();
29670 +       hlist_for_each_entry(sbinfo, &au_sbilist.head, si_list)
29671 +               sysrq_sb(sbinfo->si_sb);
29672 +       au_sbilist_unlock();
29673 +       lockdep_on();
29674 +}
29675 +
29676 +static struct sysrq_key_op au_sysrq_op = {
29677 +       .handler        = au_sysrq,
29678 +       .help_msg       = "Aufs",
29679 +       .action_msg     = "Aufs",
29680 +       .enable_mask    = SYSRQ_ENABLE_DUMP
29681 +};
29682 +
29683 +/* ---------------------------------------------------------------------- */
29684 +
29685 +int __init au_sysrq_init(void)
29686 +{
29687 +       int err;
29688 +       char key;
29689 +
29690 +       err = -1;
29691 +       key = *aufs_sysrq_key;
29692 +       if ('a' <= key && key <= 'z')
29693 +               err = register_sysrq_key(key, &au_sysrq_op);
29694 +       if (unlikely(err))
29695 +               pr_err("err %d, sysrq=%c\n", err, key);
29696 +       return err;
29697 +}
29698 +
29699 +void au_sysrq_fin(void)
29700 +{
29701 +       int err;
29702 +
29703 +       err = unregister_sysrq_key(*aufs_sysrq_key, &au_sysrq_op);
29704 +       if (unlikely(err))
29705 +               pr_err("err %d (ignored)\n", err);
29706 +}
29707 diff -urN /usr/share/empty/fs/aufs/vdir.c linux/fs/aufs/vdir.c
29708 --- /usr/share/empty/fs/aufs/vdir.c     1970-01-01 01:00:00.000000000 +0100
29709 +++ linux/fs/aufs/vdir.c        2016-10-09 16:55:38.889431135 +0200
29710 @@ -0,0 +1,900 @@
29711 +/*
29712 + * Copyright (C) 2005-2016 Junjiro R. Okajima
29713 + *
29714 + * This program, aufs is free software; you can redistribute it and/or modify
29715 + * it under the terms of the GNU General Public License as published by
29716 + * the Free Software Foundation; either version 2 of the License, or
29717 + * (at your option) any later version.
29718 + *
29719 + * This program is distributed in the hope that it will be useful,
29720 + * but WITHOUT ANY WARRANTY; without even the implied warranty of
29721 + * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
29722 + * GNU General Public License for more details.
29723 + *
29724 + * You should have received a copy of the GNU General Public License
29725 + * along with this program.  If not, see <http://www.gnu.org/licenses/>.
29726 + */
29727 +
29728 +/*
29729 + * virtual or vertical directory
29730 + */
29731 +
29732 +#include "aufs.h"
29733 +
29734 +static unsigned int calc_size(int nlen)
29735 +{
29736 +       return ALIGN(sizeof(struct au_vdir_de) + nlen, sizeof(ino_t));
29737 +}
29738 +
29739 +static int set_deblk_end(union au_vdir_deblk_p *p,
29740 +                        union au_vdir_deblk_p *deblk_end)
29741 +{
29742 +       if (calc_size(0) <= deblk_end->deblk - p->deblk) {
29743 +               p->de->de_str.len = 0;
29744 +               /* smp_mb(); */
29745 +               return 0;
29746 +       }
29747 +       return -1; /* error */
29748 +}
29749 +
29750 +/* returns true or false */
29751 +static int is_deblk_end(union au_vdir_deblk_p *p,
29752 +                       union au_vdir_deblk_p *deblk_end)
29753 +{
29754 +       if (calc_size(0) <= deblk_end->deblk - p->deblk)
29755 +               return !p->de->de_str.len;
29756 +       return 1;
29757 +}
29758 +
29759 +static unsigned char *last_deblk(struct au_vdir *vdir)
29760 +{
29761 +       return vdir->vd_deblk[vdir->vd_nblk - 1];
29762 +}
29763 +
29764 +/* ---------------------------------------------------------------------- */
29765 +
29766 +/* estimate the appropriate size for name hash table */
29767 +unsigned int au_rdhash_est(loff_t sz)
29768 +{
29769 +       unsigned int n;
29770 +
29771 +       n = UINT_MAX;
29772 +       sz >>= 10;
29773 +       if (sz < n)
29774 +               n = sz;
29775 +       if (sz < AUFS_RDHASH_DEF)
29776 +               n = AUFS_RDHASH_DEF;
29777 +       /* pr_info("n %u\n", n); */
29778 +       return n;
29779 +}
29780 +
29781 +/*
29782 + * the allocated memory has to be freed by
29783 + * au_nhash_wh_free() or au_nhash_de_free().
29784 + */
29785 +int au_nhash_alloc(struct au_nhash *nhash, unsigned int num_hash, gfp_t gfp)
29786 +{
29787 +       struct hlist_head *head;
29788 +       unsigned int u;
29789 +       size_t sz;
29790 +
29791 +       sz = sizeof(*nhash->nh_head) * num_hash;
29792 +       head = kmalloc(sz, gfp);
29793 +       if (head) {
29794 +               nhash->nh_num = num_hash;
29795 +               nhash->nh_head = head;
29796 +               for (u = 0; u < num_hash; u++)
29797 +                       INIT_HLIST_HEAD(head++);
29798 +               return 0; /* success */
29799 +       }
29800 +
29801 +       return -ENOMEM;
29802 +}
29803 +
29804 +static void nhash_count(struct hlist_head *head)
29805 +{
29806 +#if 0
29807 +       unsigned long n;
29808 +       struct hlist_node *pos;
29809 +
29810 +       n = 0;
29811 +       hlist_for_each(pos, head)
29812 +               n++;
29813 +       pr_info("%lu\n", n);
29814 +#endif
29815 +}
29816 +
29817 +static void au_nhash_wh_do_free(struct hlist_head *head)
29818 +{
29819 +       struct au_vdir_wh *pos;
29820 +       struct hlist_node *node;
29821 +
29822 +       hlist_for_each_entry_safe(pos, node, head, wh_hash)
29823 +               au_delayed_kfree(pos);
29824 +}
29825 +
29826 +static void au_nhash_de_do_free(struct hlist_head *head)
29827 +{
29828 +       struct au_vdir_dehstr *pos;
29829 +       struct hlist_node *node;
29830 +
29831 +       hlist_for_each_entry_safe(pos, node, head, hash)
29832 +               au_cache_dfree_vdir_dehstr(pos);
29833 +}
29834 +
29835 +static void au_nhash_do_free(struct au_nhash *nhash,
29836 +                            void (*free)(struct hlist_head *head))
29837 +{
29838 +       unsigned int n;
29839 +       struct hlist_head *head;
29840 +
29841 +       n = nhash->nh_num;
29842 +       if (!n)
29843 +               return;
29844 +
29845 +       head = nhash->nh_head;
29846 +       while (n-- > 0) {
29847 +               nhash_count(head);
29848 +               free(head++);
29849 +       }
29850 +       au_delayed_kfree(nhash->nh_head);
29851 +}
29852 +
29853 +void au_nhash_wh_free(struct au_nhash *whlist)
29854 +{
29855 +       au_nhash_do_free(whlist, au_nhash_wh_do_free);
29856 +}
29857 +
29858 +static void au_nhash_de_free(struct au_nhash *delist)
29859 +{
29860 +       au_nhash_do_free(delist, au_nhash_de_do_free);
29861 +}
29862 +
29863 +/* ---------------------------------------------------------------------- */
29864 +
29865 +int au_nhash_test_longer_wh(struct au_nhash *whlist, aufs_bindex_t btgt,
29866 +                           int limit)
29867 +{
29868 +       int num;
29869 +       unsigned int u, n;
29870 +       struct hlist_head *head;
29871 +       struct au_vdir_wh *pos;
29872 +
29873 +       num = 0;
29874 +       n = whlist->nh_num;
29875 +       head = whlist->nh_head;
29876 +       for (u = 0; u < n; u++, head++)
29877 +               hlist_for_each_entry(pos, head, wh_hash)
29878 +                       if (pos->wh_bindex == btgt && ++num > limit)
29879 +                               return 1;
29880 +       return 0;
29881 +}
29882 +
29883 +static struct hlist_head *au_name_hash(struct au_nhash *nhash,
29884 +                                      unsigned char *name,
29885 +                                      unsigned int len)
29886 +{
29887 +       unsigned int v;
29888 +       /* const unsigned int magic_bit = 12; */
29889 +
29890 +       AuDebugOn(!nhash->nh_num || !nhash->nh_head);
29891 +
29892 +       v = 0;
29893 +       if (len > 8)
29894 +               len = 8;
29895 +       while (len--)
29896 +               v += *name++;
29897 +       /* v = hash_long(v, magic_bit); */
29898 +       v %= nhash->nh_num;
29899 +       return nhash->nh_head + v;
29900 +}
29901 +
29902 +static int au_nhash_test_name(struct au_vdir_destr *str, const char *name,
29903 +                             int nlen)
29904 +{
29905 +       return str->len == nlen && !memcmp(str->name, name, nlen);
29906 +}
29907 +
29908 +/* returns found or not */
29909 +int au_nhash_test_known_wh(struct au_nhash *whlist, char *name, int nlen)
29910 +{
29911 +       struct hlist_head *head;
29912 +       struct au_vdir_wh *pos;
29913 +       struct au_vdir_destr *str;
29914 +
29915 +       head = au_name_hash(whlist, name, nlen);
29916 +       hlist_for_each_entry(pos, head, wh_hash) {
29917 +               str = &pos->wh_str;
29918 +               AuDbg("%.*s\n", str->len, str->name);
29919 +               if (au_nhash_test_name(str, name, nlen))
29920 +                       return 1;
29921 +       }
29922 +       return 0;
29923 +}
29924 +
29925 +/* returns found(true) or not */
29926 +static int test_known(struct au_nhash *delist, char *name, int nlen)
29927 +{
29928 +       struct hlist_head *head;
29929 +       struct au_vdir_dehstr *pos;
29930 +       struct au_vdir_destr *str;
29931 +
29932 +       head = au_name_hash(delist, name, nlen);
29933 +       hlist_for_each_entry(pos, head, hash) {
29934 +               str = pos->str;
29935 +               AuDbg("%.*s\n", str->len, str->name);
29936 +               if (au_nhash_test_name(str, name, nlen))
29937 +                       return 1;
29938 +       }
29939 +       return 0;
29940 +}
29941 +
29942 +static void au_shwh_init_wh(struct au_vdir_wh *wh, ino_t ino,
29943 +                           unsigned char d_type)
29944 +{
29945 +#ifdef CONFIG_AUFS_SHWH
29946 +       wh->wh_ino = ino;
29947 +       wh->wh_type = d_type;
29948 +#endif
29949 +}
29950 +
29951 +/* ---------------------------------------------------------------------- */
29952 +
29953 +int au_nhash_append_wh(struct au_nhash *whlist, char *name, int nlen, ino_t ino,
29954 +                      unsigned int d_type, aufs_bindex_t bindex,
29955 +                      unsigned char shwh)
29956 +{
29957 +       int err;
29958 +       struct au_vdir_destr *str;
29959 +       struct au_vdir_wh *wh;
29960 +
29961 +       AuDbg("%.*s\n", nlen, name);
29962 +       AuDebugOn(!whlist->nh_num || !whlist->nh_head);
29963 +
29964 +       err = -ENOMEM;
29965 +       wh = kmalloc(sizeof(*wh) + nlen, GFP_NOFS);
29966 +       if (unlikely(!wh))
29967 +               goto out;
29968 +
29969 +       err = 0;
29970 +       wh->wh_bindex = bindex;
29971 +       if (shwh)
29972 +               au_shwh_init_wh(wh, ino, d_type);
29973 +       str = &wh->wh_str;
29974 +       str->len = nlen;
29975 +       memcpy(str->name, name, nlen);
29976 +       hlist_add_head(&wh->wh_hash, au_name_hash(whlist, name, nlen));
29977 +       /* smp_mb(); */
29978 +
29979 +out:
29980 +       return err;
29981 +}
29982 +
29983 +static int append_deblk(struct au_vdir *vdir)
29984 +{
29985 +       int err;
29986 +       unsigned long ul;
29987 +       const unsigned int deblk_sz = vdir->vd_deblk_sz;
29988 +       union au_vdir_deblk_p p, deblk_end;
29989 +       unsigned char **o;
29990 +
29991 +       err = -ENOMEM;
29992 +       o = au_krealloc(vdir->vd_deblk, sizeof(*o) * (vdir->vd_nblk + 1),
29993 +                       GFP_NOFS, /*may_shrink*/0);
29994 +       if (unlikely(!o))
29995 +               goto out;
29996 +
29997 +       vdir->vd_deblk = o;
29998 +       p.deblk = kmalloc(deblk_sz, GFP_NOFS);
29999 +       if (p.deblk) {
30000 +               ul = vdir->vd_nblk++;
30001 +               vdir->vd_deblk[ul] = p.deblk;
30002 +               vdir->vd_last.ul = ul;
30003 +               vdir->vd_last.p.deblk = p.deblk;
30004 +               deblk_end.deblk = p.deblk + deblk_sz;
30005 +               err = set_deblk_end(&p, &deblk_end);
30006 +       }
30007 +
30008 +out:
30009 +       return err;
30010 +}
30011 +
30012 +static int append_de(struct au_vdir *vdir, char *name, int nlen, ino_t ino,
30013 +                    unsigned int d_type, struct au_nhash *delist)
30014 +{
30015 +       int err;
30016 +       unsigned int sz;
30017 +       const unsigned int deblk_sz = vdir->vd_deblk_sz;
30018 +       union au_vdir_deblk_p p, *room, deblk_end;
30019 +       struct au_vdir_dehstr *dehstr;
30020 +
30021 +       p.deblk = last_deblk(vdir);
30022 +       deblk_end.deblk = p.deblk + deblk_sz;
30023 +       room = &vdir->vd_last.p;
30024 +       AuDebugOn(room->deblk < p.deblk || deblk_end.deblk <= room->deblk
30025 +                 || !is_deblk_end(room, &deblk_end));
30026 +
30027 +       sz = calc_size(nlen);
30028 +       if (unlikely(sz > deblk_end.deblk - room->deblk)) {
30029 +               err = append_deblk(vdir);
30030 +               if (unlikely(err))
30031 +                       goto out;
30032 +
30033 +               p.deblk = last_deblk(vdir);
30034 +               deblk_end.deblk = p.deblk + deblk_sz;
30035 +               /* smp_mb(); */
30036 +               AuDebugOn(room->deblk != p.deblk);
30037 +       }
30038 +
30039 +       err = -ENOMEM;
30040 +       dehstr = au_cache_alloc_vdir_dehstr();
30041 +       if (unlikely(!dehstr))
30042 +               goto out;
30043 +
30044 +       dehstr->str = &room->de->de_str;
30045 +       hlist_add_head(&dehstr->hash, au_name_hash(delist, name, nlen));
30046 +       room->de->de_ino = ino;
30047 +       room->de->de_type = d_type;
30048 +       room->de->de_str.len = nlen;
30049 +       memcpy(room->de->de_str.name, name, nlen);
30050 +
30051 +       err = 0;
30052 +       room->deblk += sz;
30053 +       if (unlikely(set_deblk_end(room, &deblk_end)))
30054 +               err = append_deblk(vdir);
30055 +       /* smp_mb(); */
30056 +
30057 +out:
30058 +       return err;
30059 +}
30060 +
30061 +/* ---------------------------------------------------------------------- */
30062 +
30063 +void au_vdir_free(struct au_vdir *vdir, int atonce)
30064 +{
30065 +       unsigned char **deblk;
30066 +
30067 +       deblk = vdir->vd_deblk;
30068 +       if (!atonce) {
30069 +               while (vdir->vd_nblk--)
30070 +                       au_delayed_kfree(*deblk++);
30071 +               au_delayed_kfree(vdir->vd_deblk);
30072 +               au_cache_dfree_vdir(vdir);
30073 +       } else {
30074 +               /* not delayed */
30075 +               while (vdir->vd_nblk--)
30076 +                       kfree(*deblk++);
30077 +               kfree(vdir->vd_deblk);
30078 +               au_cache_free_vdir(vdir);
30079 +       }
30080 +}
30081 +
30082 +static struct au_vdir *alloc_vdir(struct file *file)
30083 +{
30084 +       struct au_vdir *vdir;
30085 +       struct super_block *sb;
30086 +       int err;
30087 +
30088 +       sb = file->f_path.dentry->d_sb;
30089 +       SiMustAnyLock(sb);
30090 +
30091 +       err = -ENOMEM;
30092 +       vdir = au_cache_alloc_vdir();
30093 +       if (unlikely(!vdir))
30094 +               goto out;
30095 +
30096 +       vdir->vd_deblk = kzalloc(sizeof(*vdir->vd_deblk), GFP_NOFS);
30097 +       if (unlikely(!vdir->vd_deblk))
30098 +               goto out_free;
30099 +
30100 +       vdir->vd_deblk_sz = au_sbi(sb)->si_rdblk;
30101 +       if (!vdir->vd_deblk_sz) {
30102 +               /* estimate the appropriate size for deblk */
30103 +               vdir->vd_deblk_sz = au_dir_size(file, /*dentry*/NULL);
30104 +               /* pr_info("vd_deblk_sz %u\n", vdir->vd_deblk_sz); */
30105 +       }
30106 +       vdir->vd_nblk = 0;
30107 +       vdir->vd_version = 0;
30108 +       vdir->vd_jiffy = 0;
30109 +       err = append_deblk(vdir);
30110 +       if (!err)
30111 +               return vdir; /* success */
30112 +
30113 +       au_delayed_kfree(vdir->vd_deblk);
30114 +
30115 +out_free:
30116 +       au_cache_dfree_vdir(vdir);
30117 +out:
30118 +       vdir = ERR_PTR(err);
30119 +       return vdir;
30120 +}
30121 +
30122 +static int reinit_vdir(struct au_vdir *vdir)
30123 +{
30124 +       int err;
30125 +       union au_vdir_deblk_p p, deblk_end;
30126 +
30127 +       while (vdir->vd_nblk > 1) {
30128 +               au_delayed_kfree(vdir->vd_deblk[vdir->vd_nblk - 1]);
30129 +               /* vdir->vd_deblk[vdir->vd_nblk - 1] = NULL; */
30130 +               vdir->vd_nblk--;
30131 +       }
30132 +       p.deblk = vdir->vd_deblk[0];
30133 +       deblk_end.deblk = p.deblk + vdir->vd_deblk_sz;
30134 +       err = set_deblk_end(&p, &deblk_end);
30135 +       /* keep vd_dblk_sz */
30136 +       vdir->vd_last.ul = 0;
30137 +       vdir->vd_last.p.deblk = vdir->vd_deblk[0];
30138 +       vdir->vd_version = 0;
30139 +       vdir->vd_jiffy = 0;
30140 +       /* smp_mb(); */
30141 +       return err;
30142 +}
30143 +
30144 +/* ---------------------------------------------------------------------- */
30145 +
30146 +#define AuFillVdir_CALLED      1
30147 +#define AuFillVdir_WHABLE      (1 << 1)
30148 +#define AuFillVdir_SHWH                (1 << 2)
30149 +#define au_ftest_fillvdir(flags, name) ((flags) & AuFillVdir_##name)
30150 +#define au_fset_fillvdir(flags, name) \
30151 +       do { (flags) |= AuFillVdir_##name; } while (0)
30152 +#define au_fclr_fillvdir(flags, name) \
30153 +       do { (flags) &= ~AuFillVdir_##name; } while (0)
30154 +
30155 +#ifndef CONFIG_AUFS_SHWH
30156 +#undef AuFillVdir_SHWH
30157 +#define AuFillVdir_SHWH                0
30158 +#endif
30159 +
30160 +struct fillvdir_arg {
30161 +       struct dir_context      ctx;
30162 +       struct file             *file;
30163 +       struct au_vdir          *vdir;
30164 +       struct au_nhash         delist;
30165 +       struct au_nhash         whlist;
30166 +       aufs_bindex_t           bindex;
30167 +       unsigned int            flags;
30168 +       int                     err;
30169 +};
30170 +
30171 +static int fillvdir(struct dir_context *ctx, const char *__name, int nlen,
30172 +                   loff_t offset __maybe_unused, u64 h_ino,
30173 +                   unsigned int d_type)
30174 +{
30175 +       struct fillvdir_arg *arg = container_of(ctx, struct fillvdir_arg, ctx);
30176 +       char *name = (void *)__name;
30177 +       struct super_block *sb;
30178 +       ino_t ino;
30179 +       const unsigned char shwh = !!au_ftest_fillvdir(arg->flags, SHWH);
30180 +
30181 +       arg->err = 0;
30182 +       sb = arg->file->f_path.dentry->d_sb;
30183 +       au_fset_fillvdir(arg->flags, CALLED);
30184 +       /* smp_mb(); */
30185 +       if (nlen <= AUFS_WH_PFX_LEN
30186 +           || memcmp(name, AUFS_WH_PFX, AUFS_WH_PFX_LEN)) {
30187 +               if (test_known(&arg->delist, name, nlen)
30188 +                   || au_nhash_test_known_wh(&arg->whlist, name, nlen))
30189 +                       goto out; /* already exists or whiteouted */
30190 +
30191 +               arg->err = au_ino(sb, arg->bindex, h_ino, d_type, &ino);
30192 +               if (!arg->err) {
30193 +                       if (unlikely(nlen > AUFS_MAX_NAMELEN))
30194 +                               d_type = DT_UNKNOWN;
30195 +                       arg->err = append_de(arg->vdir, name, nlen, ino,
30196 +                                            d_type, &arg->delist);
30197 +               }
30198 +       } else if (au_ftest_fillvdir(arg->flags, WHABLE)) {
30199 +               name += AUFS_WH_PFX_LEN;
30200 +               nlen -= AUFS_WH_PFX_LEN;
30201 +               if (au_nhash_test_known_wh(&arg->whlist, name, nlen))
30202 +                       goto out; /* already whiteouted */
30203 +
30204 +               if (shwh)
30205 +                       arg->err = au_wh_ino(sb, arg->bindex, h_ino, d_type,
30206 +                                            &ino);
30207 +               if (!arg->err) {
30208 +                       if (nlen <= AUFS_MAX_NAMELEN + AUFS_WH_PFX_LEN)
30209 +                               d_type = DT_UNKNOWN;
30210 +                       arg->err = au_nhash_append_wh
30211 +                               (&arg->whlist, name, nlen, ino, d_type,
30212 +                                arg->bindex, shwh);
30213 +               }
30214 +       }
30215 +
30216 +out:
30217 +       if (!arg->err)
30218 +               arg->vdir->vd_jiffy = jiffies;
30219 +       /* smp_mb(); */
30220 +       AuTraceErr(arg->err);
30221 +       return arg->err;
30222 +}
30223 +
30224 +static int au_handle_shwh(struct super_block *sb, struct au_vdir *vdir,
30225 +                         struct au_nhash *whlist, struct au_nhash *delist)
30226 +{
30227 +#ifdef CONFIG_AUFS_SHWH
30228 +       int err;
30229 +       unsigned int nh, u;
30230 +       struct hlist_head *head;
30231 +       struct au_vdir_wh *pos;
30232 +       struct hlist_node *n;
30233 +       char *p, *o;
30234 +       struct au_vdir_destr *destr;
30235 +
30236 +       AuDebugOn(!au_opt_test(au_mntflags(sb), SHWH));
30237 +
30238 +       err = -ENOMEM;
30239 +       o = p = (void *)__get_free_page(GFP_NOFS);
30240 +       if (unlikely(!p))
30241 +               goto out;
30242 +
30243 +       err = 0;
30244 +       nh = whlist->nh_num;
30245 +       memcpy(p, AUFS_WH_PFX, AUFS_WH_PFX_LEN);
30246 +       p += AUFS_WH_PFX_LEN;
30247 +       for (u = 0; u < nh; u++) {
30248 +               head = whlist->nh_head + u;
30249 +               hlist_for_each_entry_safe(pos, n, head, wh_hash) {
30250 +                       destr = &pos->wh_str;
30251 +                       memcpy(p, destr->name, destr->len);
30252 +                       err = append_de(vdir, o, destr->len + AUFS_WH_PFX_LEN,
30253 +                                       pos->wh_ino, pos->wh_type, delist);
30254 +                       if (unlikely(err))
30255 +                               break;
30256 +               }
30257 +       }
30258 +
30259 +       au_delayed_free_page((unsigned long)o);
30260 +
30261 +out:
30262 +       AuTraceErr(err);
30263 +       return err;
30264 +#else
30265 +       return 0;
30266 +#endif
30267 +}
30268 +
30269 +static int au_do_read_vdir(struct fillvdir_arg *arg)
30270 +{
30271 +       int err;
30272 +       unsigned int rdhash;
30273 +       loff_t offset;
30274 +       aufs_bindex_t bbot, bindex, btop;
30275 +       unsigned char shwh;
30276 +       struct file *hf, *file;
30277 +       struct super_block *sb;
30278 +
30279 +       file = arg->file;
30280 +       sb = file->f_path.dentry->d_sb;
30281 +       SiMustAnyLock(sb);
30282 +
30283 +       rdhash = au_sbi(sb)->si_rdhash;
30284 +       if (!rdhash)
30285 +               rdhash = au_rdhash_est(au_dir_size(file, /*dentry*/NULL));
30286 +       err = au_nhash_alloc(&arg->delist, rdhash, GFP_NOFS);
30287 +       if (unlikely(err))
30288 +               goto out;
30289 +       err = au_nhash_alloc(&arg->whlist, rdhash, GFP_NOFS);
30290 +       if (unlikely(err))
30291 +               goto out_delist;
30292 +
30293 +       err = 0;
30294 +       arg->flags = 0;
30295 +       shwh = 0;
30296 +       if (au_opt_test(au_mntflags(sb), SHWH)) {
30297 +               shwh = 1;
30298 +               au_fset_fillvdir(arg->flags, SHWH);
30299 +       }
30300 +       btop = au_fbtop(file);
30301 +       bbot = au_fbbot_dir(file);
30302 +       for (bindex = btop; !err && bindex <= bbot; bindex++) {
30303 +               hf = au_hf_dir(file, bindex);
30304 +               if (!hf)
30305 +                       continue;
30306 +
30307 +               offset = vfsub_llseek(hf, 0, SEEK_SET);
30308 +               err = offset;
30309 +               if (unlikely(offset))
30310 +                       break;
30311 +
30312 +               arg->bindex = bindex;
30313 +               au_fclr_fillvdir(arg->flags, WHABLE);
30314 +               if (shwh
30315 +                   || (bindex != bbot
30316 +                       && au_br_whable(au_sbr_perm(sb, bindex))))
30317 +                       au_fset_fillvdir(arg->flags, WHABLE);
30318 +               do {
30319 +                       arg->err = 0;
30320 +                       au_fclr_fillvdir(arg->flags, CALLED);
30321 +                       /* smp_mb(); */
30322 +                       err = vfsub_iterate_dir(hf, &arg->ctx);
30323 +                       if (err >= 0)
30324 +                               err = arg->err;
30325 +               } while (!err && au_ftest_fillvdir(arg->flags, CALLED));
30326 +
30327 +               /*
30328 +                * dir_relax() may be good for concurrency, but aufs should not
30329 +                * use it since it will cause a lockdep problem.
30330 +                */
30331 +       }
30332 +
30333 +       if (!err && shwh)
30334 +               err = au_handle_shwh(sb, arg->vdir, &arg->whlist, &arg->delist);
30335 +
30336 +       au_nhash_wh_free(&arg->whlist);
30337 +
30338 +out_delist:
30339 +       au_nhash_de_free(&arg->delist);
30340 +out:
30341 +       return err;
30342 +}
30343 +
30344 +static int read_vdir(struct file *file, int may_read)
30345 +{
30346 +       int err;
30347 +       unsigned long expire;
30348 +       unsigned char do_read;
30349 +       struct fillvdir_arg arg = {
30350 +               .ctx = {
30351 +                       .actor = fillvdir
30352 +               }
30353 +       };
30354 +       struct inode *inode;
30355 +       struct au_vdir *vdir, *allocated;
30356 +
30357 +       err = 0;
30358 +       inode = file_inode(file);
30359 +       IMustLock(inode);
30360 +       IiMustWriteLock(inode);
30361 +       SiMustAnyLock(inode->i_sb);
30362 +
30363 +       allocated = NULL;
30364 +       do_read = 0;
30365 +       expire = au_sbi(inode->i_sb)->si_rdcache;
30366 +       vdir = au_ivdir(inode);
30367 +       if (!vdir) {
30368 +               do_read = 1;
30369 +               vdir = alloc_vdir(file);
30370 +               err = PTR_ERR(vdir);
30371 +               if (IS_ERR(vdir))
30372 +                       goto out;
30373 +               err = 0;
30374 +               allocated = vdir;
30375 +       } else if (may_read
30376 +                  && (inode->i_version != vdir->vd_version
30377 +                      || time_after(jiffies, vdir->vd_jiffy + expire))) {
30378 +               do_read = 1;
30379 +               err = reinit_vdir(vdir);
30380 +               if (unlikely(err))
30381 +                       goto out;
30382 +       }
30383 +
30384 +       if (!do_read)
30385 +               return 0; /* success */
30386 +
30387 +       arg.file = file;
30388 +       arg.vdir = vdir;
30389 +       err = au_do_read_vdir(&arg);
30390 +       if (!err) {
30391 +               /* file->f_pos = 0; */ /* todo: ctx->pos? */
30392 +               vdir->vd_version = inode->i_version;
30393 +               vdir->vd_last.ul = 0;
30394 +               vdir->vd_last.p.deblk = vdir->vd_deblk[0];
30395 +               if (allocated)
30396 +                       au_set_ivdir(inode, allocated);
30397 +       } else if (allocated)
30398 +               au_vdir_free(allocated, /*atonce*/0);
30399 +
30400 +out:
30401 +       return err;
30402 +}
30403 +
30404 +static int copy_vdir(struct au_vdir *tgt, struct au_vdir *src)
30405 +{
30406 +       int err, rerr;
30407 +       unsigned long ul, n;
30408 +       const unsigned int deblk_sz = src->vd_deblk_sz;
30409 +
30410 +       AuDebugOn(tgt->vd_nblk != 1);
30411 +
30412 +       err = -ENOMEM;
30413 +       if (tgt->vd_nblk < src->vd_nblk) {
30414 +               unsigned char **p;
30415 +
30416 +               p = au_krealloc(tgt->vd_deblk, sizeof(*p) * src->vd_nblk,
30417 +                               GFP_NOFS, /*may_shrink*/0);
30418 +               if (unlikely(!p))
30419 +                       goto out;
30420 +               tgt->vd_deblk = p;
30421 +       }
30422 +
30423 +       if (tgt->vd_deblk_sz != deblk_sz) {
30424 +               unsigned char *p;
30425 +
30426 +               tgt->vd_deblk_sz = deblk_sz;
30427 +               p = au_krealloc(tgt->vd_deblk[0], deblk_sz, GFP_NOFS,
30428 +                               /*may_shrink*/1);
30429 +               if (unlikely(!p))
30430 +                       goto out;
30431 +               tgt->vd_deblk[0] = p;
30432 +       }
30433 +       memcpy(tgt->vd_deblk[0], src->vd_deblk[0], deblk_sz);
30434 +       tgt->vd_version = src->vd_version;
30435 +       tgt->vd_jiffy = src->vd_jiffy;
30436 +
30437 +       n = src->vd_nblk;
30438 +       for (ul = 1; ul < n; ul++) {
30439 +               tgt->vd_deblk[ul] = kmemdup(src->vd_deblk[ul], deblk_sz,
30440 +                                           GFP_NOFS);
30441 +               if (unlikely(!tgt->vd_deblk[ul]))
30442 +                       goto out;
30443 +               tgt->vd_nblk++;
30444 +       }
30445 +       tgt->vd_nblk = n;
30446 +       tgt->vd_last.ul = tgt->vd_last.ul;
30447 +       tgt->vd_last.p.deblk = tgt->vd_deblk[tgt->vd_last.ul];
30448 +       tgt->vd_last.p.deblk += src->vd_last.p.deblk
30449 +               - src->vd_deblk[src->vd_last.ul];
30450 +       /* smp_mb(); */
30451 +       return 0; /* success */
30452 +
30453 +out:
30454 +       rerr = reinit_vdir(tgt);
30455 +       BUG_ON(rerr);
30456 +       return err;
30457 +}
30458 +
30459 +int au_vdir_init(struct file *file)
30460 +{
30461 +       int err;
30462 +       struct inode *inode;
30463 +       struct au_vdir *vdir_cache, *allocated;
30464 +
30465 +       /* test file->f_pos here instead of ctx->pos */
30466 +       err = read_vdir(file, !file->f_pos);
30467 +       if (unlikely(err))
30468 +               goto out;
30469 +
30470 +       allocated = NULL;
30471 +       vdir_cache = au_fvdir_cache(file);
30472 +       if (!vdir_cache) {
30473 +               vdir_cache = alloc_vdir(file);
30474 +               err = PTR_ERR(vdir_cache);
30475 +               if (IS_ERR(vdir_cache))
30476 +                       goto out;
30477 +               allocated = vdir_cache;
30478 +       } else if (!file->f_pos && vdir_cache->vd_version != file->f_version) {
30479 +               /* test file->f_pos here instead of ctx->pos */
30480 +               err = reinit_vdir(vdir_cache);
30481 +               if (unlikely(err))
30482 +                       goto out;
30483 +       } else
30484 +               return 0; /* success */
30485 +
30486 +       inode = file_inode(file);
30487 +       err = copy_vdir(vdir_cache, au_ivdir(inode));
30488 +       if (!err) {
30489 +               file->f_version = inode->i_version;
30490 +               if (allocated)
30491 +                       au_set_fvdir_cache(file, allocated);
30492 +       } else if (allocated)
30493 +               au_vdir_free(allocated, /*atonce*/0);
30494 +
30495 +out:
30496 +       return err;
30497 +}
30498 +
30499 +static loff_t calc_offset(struct au_vdir *vdir)
30500 +{
30501 +       loff_t offset;
30502 +       union au_vdir_deblk_p p;
30503 +
30504 +       p.deblk = vdir->vd_deblk[vdir->vd_last.ul];
30505 +       offset = vdir->vd_last.p.deblk - p.deblk;
30506 +       offset += vdir->vd_deblk_sz * vdir->vd_last.ul;
30507 +       return offset;
30508 +}
30509 +
30510 +/* returns true or false */
30511 +static int seek_vdir(struct file *file, struct dir_context *ctx)
30512 +{
30513 +       int valid;
30514 +       unsigned int deblk_sz;
30515 +       unsigned long ul, n;
30516 +       loff_t offset;
30517 +       union au_vdir_deblk_p p, deblk_end;
30518 +       struct au_vdir *vdir_cache;
30519 +
30520 +       valid = 1;
30521 +       vdir_cache = au_fvdir_cache(file);
30522 +       offset = calc_offset(vdir_cache);
30523 +       AuDbg("offset %lld\n", offset);
30524 +       if (ctx->pos == offset)
30525 +               goto out;
30526 +
30527 +       vdir_cache->vd_last.ul = 0;
30528 +       vdir_cache->vd_last.p.deblk = vdir_cache->vd_deblk[0];
30529 +       if (!ctx->pos)
30530 +               goto out;
30531 +
30532 +       valid = 0;
30533 +       deblk_sz = vdir_cache->vd_deblk_sz;
30534 +       ul = div64_u64(ctx->pos, deblk_sz);
30535 +       AuDbg("ul %lu\n", ul);
30536 +       if (ul >= vdir_cache->vd_nblk)
30537 +               goto out;
30538 +
30539 +       n = vdir_cache->vd_nblk;
30540 +       for (; ul < n; ul++) {
30541 +               p.deblk = vdir_cache->vd_deblk[ul];
30542 +               deblk_end.deblk = p.deblk + deblk_sz;
30543 +               offset = ul;
30544 +               offset *= deblk_sz;
30545 +               while (!is_deblk_end(&p, &deblk_end) && offset < ctx->pos) {
30546 +                       unsigned int l;
30547 +
30548 +                       l = calc_size(p.de->de_str.len);
30549 +                       offset += l;
30550 +                       p.deblk += l;
30551 +               }
30552 +               if (!is_deblk_end(&p, &deblk_end)) {
30553 +                       valid = 1;
30554 +                       vdir_cache->vd_last.ul = ul;
30555 +                       vdir_cache->vd_last.p = p;
30556 +                       break;
30557 +               }
30558 +       }
30559 +
30560 +out:
30561 +       /* smp_mb(); */
30562 +       AuTraceErr(!valid);
30563 +       return valid;
30564 +}
30565 +
30566 +int au_vdir_fill_de(struct file *file, struct dir_context *ctx)
30567 +{
30568 +       unsigned int l, deblk_sz;
30569 +       union au_vdir_deblk_p deblk_end;
30570 +       struct au_vdir *vdir_cache;
30571 +       struct au_vdir_de *de;
30572 +
30573 +       vdir_cache = au_fvdir_cache(file);
30574 +       if (!seek_vdir(file, ctx))
30575 +               return 0;
30576 +
30577 +       deblk_sz = vdir_cache->vd_deblk_sz;
30578 +       while (1) {
30579 +               deblk_end.deblk = vdir_cache->vd_deblk[vdir_cache->vd_last.ul];
30580 +               deblk_end.deblk += deblk_sz;
30581 +               while (!is_deblk_end(&vdir_cache->vd_last.p, &deblk_end)) {
30582 +                       de = vdir_cache->vd_last.p.de;
30583 +                       AuDbg("%.*s, off%lld, i%lu, dt%d\n",
30584 +                             de->de_str.len, de->de_str.name, ctx->pos,
30585 +                             (unsigned long)de->de_ino, de->de_type);
30586 +                       if (unlikely(!dir_emit(ctx, de->de_str.name,
30587 +                                              de->de_str.len, de->de_ino,
30588 +                                              de->de_type))) {
30589 +                               /* todo: ignore the error caused by udba? */
30590 +                               /* return err; */
30591 +                               return 0;
30592 +                       }
30593 +
30594 +                       l = calc_size(de->de_str.len);
30595 +                       vdir_cache->vd_last.p.deblk += l;
30596 +                       ctx->pos += l;
30597 +               }
30598 +               if (vdir_cache->vd_last.ul < vdir_cache->vd_nblk - 1) {
30599 +                       vdir_cache->vd_last.ul++;
30600 +                       vdir_cache->vd_last.p.deblk
30601 +                               = vdir_cache->vd_deblk[vdir_cache->vd_last.ul];
30602 +                       ctx->pos = deblk_sz * vdir_cache->vd_last.ul;
30603 +                       continue;
30604 +               }
30605 +               break;
30606 +       }
30607 +
30608 +       /* smp_mb(); */
30609 +       return 0;
30610 +}
30611 diff -urN /usr/share/empty/fs/aufs/vfsub.c linux/fs/aufs/vfsub.c
30612 --- /usr/share/empty/fs/aufs/vfsub.c    1970-01-01 01:00:00.000000000 +0100
30613 +++ linux/fs/aufs/vfsub.c       2016-12-17 12:28:17.598545045 +0100
30614 @@ -0,0 +1,886 @@
30615 +/*
30616 + * Copyright (C) 2005-2016 Junjiro R. Okajima
30617 + *
30618 + * This program, aufs is free software; you can redistribute it and/or modify
30619 + * it under the terms of the GNU General Public License as published by
30620 + * the Free Software Foundation; either version 2 of the License, or
30621 + * (at your option) any later version.
30622 + *
30623 + * This program is distributed in the hope that it will be useful,
30624 + * but WITHOUT ANY WARRANTY; without even the implied warranty of
30625 + * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
30626 + * GNU General Public License for more details.
30627 + *
30628 + * You should have received a copy of the GNU General Public License
30629 + * along with this program.  If not, see <http://www.gnu.org/licenses/>.
30630 + */
30631 +
30632 +/*
30633 + * sub-routines for VFS
30634 + */
30635 +
30636 +#include <linux/namei.h>
30637 +#include <linux/nsproxy.h>
30638 +#include <linux/security.h>
30639 +#include <linux/splice.h>
30640 +#ifdef CONFIG_AUFS_BR_FUSE
30641 +#include "../fs/mount.h"
30642 +#endif
30643 +#include "aufs.h"
30644 +
30645 +#ifdef CONFIG_AUFS_BR_FUSE
30646 +int vfsub_test_mntns(struct vfsmount *mnt, struct super_block *h_sb)
30647 +{
30648 +       struct nsproxy *ns;
30649 +
30650 +       if (!au_test_fuse(h_sb) || !au_userns)
30651 +               return 0;
30652 +
30653 +       ns = current->nsproxy;
30654 +       /* no {get,put}_nsproxy(ns) */
30655 +       return real_mount(mnt)->mnt_ns == ns->mnt_ns ? 0 : -EACCES;
30656 +}
30657 +#endif
30658 +
30659 +/* ---------------------------------------------------------------------- */
30660 +
30661 +int vfsub_update_h_iattr(struct path *h_path, int *did)
30662 +{
30663 +       int err;
30664 +       struct kstat st;
30665 +       struct super_block *h_sb;
30666 +
30667 +       /* for remote fs, leave work for its getattr or d_revalidate */
30668 +       /* for bad i_attr fs, handle them in aufs_getattr() */
30669 +       /* still some fs may acquire i_mutex. we need to skip them */
30670 +       err = 0;
30671 +       if (!did)
30672 +               did = &err;
30673 +       h_sb = h_path->dentry->d_sb;
30674 +       *did = (!au_test_fs_remote(h_sb) && au_test_fs_refresh_iattr(h_sb));
30675 +       if (*did)
30676 +               err = vfs_getattr(h_path, &st);
30677 +
30678 +       return err;
30679 +}
30680 +
30681 +/* ---------------------------------------------------------------------- */
30682 +
30683 +struct file *vfsub_dentry_open(struct path *path, int flags)
30684 +{
30685 +       struct file *file;
30686 +
30687 +       file = dentry_open(path, flags /* | __FMODE_NONOTIFY */,
30688 +                          current_cred());
30689 +       if (!IS_ERR_OR_NULL(file)
30690 +           && (file->f_mode & (FMODE_READ | FMODE_WRITE)) == FMODE_READ)
30691 +               i_readcount_inc(d_inode(path->dentry));
30692 +
30693 +       return file;
30694 +}
30695 +
30696 +struct file *vfsub_filp_open(const char *path, int oflags, int mode)
30697 +{
30698 +       struct file *file;
30699 +
30700 +       lockdep_off();
30701 +       file = filp_open(path,
30702 +                        oflags /* | __FMODE_NONOTIFY */,
30703 +                        mode);
30704 +       lockdep_on();
30705 +       if (IS_ERR(file))
30706 +               goto out;
30707 +       vfsub_update_h_iattr(&file->f_path, /*did*/NULL); /*ignore*/
30708 +
30709 +out:
30710 +       return file;
30711 +}
30712 +
30713 +/*
30714 + * Ideally this function should call VFS:do_last() in order to keep all its
30715 + * checkings. But it is very hard for aufs to regenerate several VFS internal
30716 + * structure such as nameidata. This is a second (or third) best approach.
30717 + * cf. linux/fs/namei.c:do_last(), lookup_open() and atomic_open().
30718 + */
30719 +int vfsub_atomic_open(struct inode *dir, struct dentry *dentry,
30720 +                     struct vfsub_aopen_args *args, struct au_branch *br)
30721 +{
30722 +       int err;
30723 +       struct file *file = args->file;
30724 +       /* copied from linux/fs/namei.c:atomic_open() */
30725 +       struct dentry *const DENTRY_NOT_SET = (void *)-1UL;
30726 +
30727 +       IMustLock(dir);
30728 +       AuDebugOn(!dir->i_op->atomic_open);
30729 +
30730 +       err = au_br_test_oflag(args->open_flag, br);
30731 +       if (unlikely(err))
30732 +               goto out;
30733 +
30734 +       args->file->f_path.dentry = DENTRY_NOT_SET;
30735 +       args->file->f_path.mnt = au_br_mnt(br);
30736 +       err = dir->i_op->atomic_open(dir, dentry, file, args->open_flag,
30737 +                                    args->create_mode, args->opened);
30738 +       if (err >= 0) {
30739 +               /* some filesystems don't set FILE_CREATED while succeeded? */
30740 +               if (*args->opened & FILE_CREATED)
30741 +                       fsnotify_create(dir, dentry);
30742 +       } else
30743 +               goto out;
30744 +
30745 +
30746 +       if (!err) {
30747 +               /* todo: call VFS:may_open() here */
30748 +               err = open_check_o_direct(file);
30749 +               /* todo: ima_file_check() too? */
30750 +               if (!err && (args->open_flag & __FMODE_EXEC))
30751 +                       err = deny_write_access(file);
30752 +               if (unlikely(err))
30753 +                       /* note that the file is created and still opened */
30754 +                       goto out;
30755 +       }
30756 +
30757 +       au_br_get(br);
30758 +       fsnotify_open(file);
30759 +
30760 +out:
30761 +       return err;
30762 +}
30763 +
30764 +int vfsub_kern_path(const char *name, unsigned int flags, struct path *path)
30765 +{
30766 +       int err;
30767 +
30768 +       err = kern_path(name, flags, path);
30769 +       if (!err && d_is_positive(path->dentry))
30770 +               vfsub_update_h_iattr(path, /*did*/NULL); /*ignore*/
30771 +       return err;
30772 +}
30773 +
30774 +struct dentry *vfsub_lookup_one_len_unlocked(const char *name,
30775 +                                            struct dentry *parent, int len)
30776 +{
30777 +       struct path path = {
30778 +               .mnt = NULL
30779 +       };
30780 +
30781 +       path.dentry = lookup_one_len_unlocked(name, parent, len);
30782 +       if (IS_ERR(path.dentry))
30783 +               goto out;
30784 +       if (d_is_positive(path.dentry))
30785 +               vfsub_update_h_iattr(&path, /*did*/NULL); /*ignore*/
30786 +
30787 +out:
30788 +       AuTraceErrPtr(path.dentry);
30789 +       return path.dentry;
30790 +}
30791 +
30792 +struct dentry *vfsub_lookup_one_len(const char *name, struct dentry *parent,
30793 +                                   int len)
30794 +{
30795 +       struct path path = {
30796 +               .mnt = NULL
30797 +       };
30798 +
30799 +       /* VFS checks it too, but by WARN_ON_ONCE() */
30800 +       IMustLock(d_inode(parent));
30801 +
30802 +       path.dentry = lookup_one_len(name, parent, len);
30803 +       if (IS_ERR(path.dentry))
30804 +               goto out;
30805 +       if (d_is_positive(path.dentry))
30806 +               vfsub_update_h_iattr(&path, /*did*/NULL); /*ignore*/
30807 +
30808 +out:
30809 +       AuTraceErrPtr(path.dentry);
30810 +       return path.dentry;
30811 +}
30812 +
30813 +void vfsub_call_lkup_one(void *args)
30814 +{
30815 +       struct vfsub_lkup_one_args *a = args;
30816 +       *a->errp = vfsub_lkup_one(a->name, a->parent);
30817 +}
30818 +
30819 +/* ---------------------------------------------------------------------- */
30820 +
30821 +struct dentry *vfsub_lock_rename(struct dentry *d1, struct au_hinode *hdir1,
30822 +                                struct dentry *d2, struct au_hinode *hdir2)
30823 +{
30824 +       struct dentry *d;
30825 +
30826 +       lockdep_off();
30827 +       d = lock_rename(d1, d2);
30828 +       lockdep_on();
30829 +       au_hn_suspend(hdir1);
30830 +       if (hdir1 != hdir2)
30831 +               au_hn_suspend(hdir2);
30832 +
30833 +       return d;
30834 +}
30835 +
30836 +void vfsub_unlock_rename(struct dentry *d1, struct au_hinode *hdir1,
30837 +                        struct dentry *d2, struct au_hinode *hdir2)
30838 +{
30839 +       au_hn_resume(hdir1);
30840 +       if (hdir1 != hdir2)
30841 +               au_hn_resume(hdir2);
30842 +       lockdep_off();
30843 +       unlock_rename(d1, d2);
30844 +       lockdep_on();
30845 +}
30846 +
30847 +/* ---------------------------------------------------------------------- */
30848 +
30849 +int vfsub_create(struct inode *dir, struct path *path, int mode, bool want_excl)
30850 +{
30851 +       int err;
30852 +       struct dentry *d;
30853 +
30854 +       IMustLock(dir);
30855 +
30856 +       d = path->dentry;
30857 +       path->dentry = d->d_parent;
30858 +       err = security_path_mknod(path, d, mode, 0);
30859 +       path->dentry = d;
30860 +       if (unlikely(err))
30861 +               goto out;
30862 +
30863 +       lockdep_off();
30864 +       err = vfs_create(dir, path->dentry, mode, want_excl);
30865 +       lockdep_on();
30866 +       if (!err) {
30867 +               struct path tmp = *path;
30868 +               int did;
30869 +
30870 +               vfsub_update_h_iattr(&tmp, &did);
30871 +               if (did) {
30872 +                       tmp.dentry = path->dentry->d_parent;
30873 +                       vfsub_update_h_iattr(&tmp, /*did*/NULL);
30874 +               }
30875 +               /*ignore*/
30876 +       }
30877 +
30878 +out:
30879 +       return err;
30880 +}
30881 +
30882 +int vfsub_symlink(struct inode *dir, struct path *path, const char *symname)
30883 +{
30884 +       int err;
30885 +       struct dentry *d;
30886 +
30887 +       IMustLock(dir);
30888 +
30889 +       d = path->dentry;
30890 +       path->dentry = d->d_parent;
30891 +       err = security_path_symlink(path, d, symname);
30892 +       path->dentry = d;
30893 +       if (unlikely(err))
30894 +               goto out;
30895 +
30896 +       lockdep_off();
30897 +       err = vfs_symlink(dir, path->dentry, symname);
30898 +       lockdep_on();
30899 +       if (!err) {
30900 +               struct path tmp = *path;
30901 +               int did;
30902 +
30903 +               vfsub_update_h_iattr(&tmp, &did);
30904 +               if (did) {
30905 +                       tmp.dentry = path->dentry->d_parent;
30906 +                       vfsub_update_h_iattr(&tmp, /*did*/NULL);
30907 +               }
30908 +               /*ignore*/
30909 +       }
30910 +
30911 +out:
30912 +       return err;
30913 +}
30914 +
30915 +int vfsub_mknod(struct inode *dir, struct path *path, int mode, dev_t dev)
30916 +{
30917 +       int err;
30918 +       struct dentry *d;
30919 +
30920 +       IMustLock(dir);
30921 +
30922 +       d = path->dentry;
30923 +       path->dentry = d->d_parent;
30924 +       err = security_path_mknod(path, d, mode, new_encode_dev(dev));
30925 +       path->dentry = d;
30926 +       if (unlikely(err))
30927 +               goto out;
30928 +
30929 +       lockdep_off();
30930 +       err = vfs_mknod(dir, path->dentry, mode, dev);
30931 +       lockdep_on();
30932 +       if (!err) {
30933 +               struct path tmp = *path;
30934 +               int did;
30935 +
30936 +               vfsub_update_h_iattr(&tmp, &did);
30937 +               if (did) {
30938 +                       tmp.dentry = path->dentry->d_parent;
30939 +                       vfsub_update_h_iattr(&tmp, /*did*/NULL);
30940 +               }
30941 +               /*ignore*/
30942 +       }
30943 +
30944 +out:
30945 +       return err;
30946 +}
30947 +
30948 +static int au_test_nlink(struct inode *inode)
30949 +{
30950 +       const unsigned int link_max = UINT_MAX >> 1; /* rough margin */
30951 +
30952 +       if (!au_test_fs_no_limit_nlink(inode->i_sb)
30953 +           || inode->i_nlink < link_max)
30954 +               return 0;
30955 +       return -EMLINK;
30956 +}
30957 +
30958 +int vfsub_link(struct dentry *src_dentry, struct inode *dir, struct path *path,
30959 +              struct inode **delegated_inode)
30960 +{
30961 +       int err;
30962 +       struct dentry *d;
30963 +
30964 +       IMustLock(dir);
30965 +
30966 +       err = au_test_nlink(d_inode(src_dentry));
30967 +       if (unlikely(err))
30968 +               return err;
30969 +
30970 +       /* we don't call may_linkat() */
30971 +       d = path->dentry;
30972 +       path->dentry = d->d_parent;
30973 +       err = security_path_link(src_dentry, path, d);
30974 +       path->dentry = d;
30975 +       if (unlikely(err))
30976 +               goto out;
30977 +
30978 +       lockdep_off();
30979 +       err = vfs_link(src_dentry, dir, path->dentry, delegated_inode);
30980 +       lockdep_on();
30981 +       if (!err) {
30982 +               struct path tmp = *path;
30983 +               int did;
30984 +
30985 +               /* fuse has different memory inode for the same inumber */
30986 +               vfsub_update_h_iattr(&tmp, &did);
30987 +               if (did) {
30988 +                       tmp.dentry = path->dentry->d_parent;
30989 +                       vfsub_update_h_iattr(&tmp, /*did*/NULL);
30990 +                       tmp.dentry = src_dentry;
30991 +                       vfsub_update_h_iattr(&tmp, /*did*/NULL);
30992 +               }
30993 +               /*ignore*/
30994 +       }
30995 +
30996 +out:
30997 +       return err;
30998 +}
30999 +
31000 +int vfsub_rename(struct inode *src_dir, struct dentry *src_dentry,
31001 +                struct inode *dir, struct path *path,
31002 +                struct inode **delegated_inode, unsigned int flags)
31003 +{
31004 +       int err;
31005 +       struct path tmp = {
31006 +               .mnt    = path->mnt
31007 +       };
31008 +       struct dentry *d;
31009 +
31010 +       IMustLock(dir);
31011 +       IMustLock(src_dir);
31012 +
31013 +       d = path->dentry;
31014 +       path->dentry = d->d_parent;
31015 +       tmp.dentry = src_dentry->d_parent;
31016 +       err = security_path_rename(&tmp, src_dentry, path, d, /*flags*/0);
31017 +       path->dentry = d;
31018 +       if (unlikely(err))
31019 +               goto out;
31020 +
31021 +       lockdep_off();
31022 +       err = vfs_rename(src_dir, src_dentry, dir, path->dentry,
31023 +                        delegated_inode, flags);
31024 +       lockdep_on();
31025 +       if (!err) {
31026 +               int did;
31027 +
31028 +               tmp.dentry = d->d_parent;
31029 +               vfsub_update_h_iattr(&tmp, &did);
31030 +               if (did) {
31031 +                       tmp.dentry = src_dentry;
31032 +                       vfsub_update_h_iattr(&tmp, /*did*/NULL);
31033 +                       tmp.dentry = src_dentry->d_parent;
31034 +                       vfsub_update_h_iattr(&tmp, /*did*/NULL);
31035 +               }
31036 +               /*ignore*/
31037 +       }
31038 +
31039 +out:
31040 +       return err;
31041 +}
31042 +
31043 +int vfsub_mkdir(struct inode *dir, struct path *path, int mode)
31044 +{
31045 +       int err;
31046 +       struct dentry *d;
31047 +
31048 +       IMustLock(dir);
31049 +
31050 +       d = path->dentry;
31051 +       path->dentry = d->d_parent;
31052 +       err = security_path_mkdir(path, d, mode);
31053 +       path->dentry = d;
31054 +       if (unlikely(err))
31055 +               goto out;
31056 +
31057 +       lockdep_off();
31058 +       err = vfs_mkdir(dir, path->dentry, mode);
31059 +       lockdep_on();
31060 +       if (!err) {
31061 +               struct path tmp = *path;
31062 +               int did;
31063 +
31064 +               vfsub_update_h_iattr(&tmp, &did);
31065 +               if (did) {
31066 +                       tmp.dentry = path->dentry->d_parent;
31067 +                       vfsub_update_h_iattr(&tmp, /*did*/NULL);
31068 +               }
31069 +               /*ignore*/
31070 +       }
31071 +
31072 +out:
31073 +       return err;
31074 +}
31075 +
31076 +int vfsub_rmdir(struct inode *dir, struct path *path)
31077 +{
31078 +       int err;
31079 +       struct dentry *d;
31080 +
31081 +       IMustLock(dir);
31082 +
31083 +       d = path->dentry;
31084 +       path->dentry = d->d_parent;
31085 +       err = security_path_rmdir(path, d);
31086 +       path->dentry = d;
31087 +       if (unlikely(err))
31088 +               goto out;
31089 +
31090 +       lockdep_off();
31091 +       err = vfs_rmdir(dir, path->dentry);
31092 +       lockdep_on();
31093 +       if (!err) {
31094 +               struct path tmp = {
31095 +                       .dentry = path->dentry->d_parent,
31096 +                       .mnt    = path->mnt
31097 +               };
31098 +
31099 +               vfsub_update_h_iattr(&tmp, /*did*/NULL); /*ignore*/
31100 +       }
31101 +
31102 +out:
31103 +       return err;
31104 +}
31105 +
31106 +/* ---------------------------------------------------------------------- */
31107 +
31108 +/* todo: support mmap_sem? */
31109 +ssize_t vfsub_read_u(struct file *file, char __user *ubuf, size_t count,
31110 +                    loff_t *ppos)
31111 +{
31112 +       ssize_t err;
31113 +
31114 +       lockdep_off();
31115 +       err = vfs_read(file, ubuf, count, ppos);
31116 +       lockdep_on();
31117 +       if (err >= 0)
31118 +               vfsub_update_h_iattr(&file->f_path, /*did*/NULL); /*ignore*/
31119 +       return err;
31120 +}
31121 +
31122 +/* todo: kernel_read()? */
31123 +ssize_t vfsub_read_k(struct file *file, void *kbuf, size_t count,
31124 +                    loff_t *ppos)
31125 +{
31126 +       ssize_t err;
31127 +       mm_segment_t oldfs;
31128 +       union {
31129 +               void *k;
31130 +               char __user *u;
31131 +       } buf;
31132 +
31133 +       buf.k = kbuf;
31134 +       oldfs = get_fs();
31135 +       set_fs(KERNEL_DS);
31136 +       err = vfsub_read_u(file, buf.u, count, ppos);
31137 +       set_fs(oldfs);
31138 +       return err;
31139 +}
31140 +
31141 +ssize_t vfsub_write_u(struct file *file, const char __user *ubuf, size_t count,
31142 +                     loff_t *ppos)
31143 +{
31144 +       ssize_t err;
31145 +
31146 +       lockdep_off();
31147 +       err = vfs_write(file, ubuf, count, ppos);
31148 +       lockdep_on();
31149 +       if (err >= 0)
31150 +               vfsub_update_h_iattr(&file->f_path, /*did*/NULL); /*ignore*/
31151 +       return err;
31152 +}
31153 +
31154 +ssize_t vfsub_write_k(struct file *file, void *kbuf, size_t count, loff_t *ppos)
31155 +{
31156 +       ssize_t err;
31157 +       mm_segment_t oldfs;
31158 +       union {
31159 +               void *k;
31160 +               const char __user *u;
31161 +       } buf;
31162 +
31163 +       buf.k = kbuf;
31164 +       oldfs = get_fs();
31165 +       set_fs(KERNEL_DS);
31166 +       err = vfsub_write_u(file, buf.u, count, ppos);
31167 +       set_fs(oldfs);
31168 +       return err;
31169 +}
31170 +
31171 +int vfsub_flush(struct file *file, fl_owner_t id)
31172 +{
31173 +       int err;
31174 +
31175 +       err = 0;
31176 +       if (file->f_op->flush) {
31177 +               if (!au_test_nfs(file->f_path.dentry->d_sb))
31178 +                       err = file->f_op->flush(file, id);
31179 +               else {
31180 +                       lockdep_off();
31181 +                       err = file->f_op->flush(file, id);
31182 +                       lockdep_on();
31183 +               }
31184 +               if (!err)
31185 +                       vfsub_update_h_iattr(&file->f_path, /*did*/NULL);
31186 +               /*ignore*/
31187 +       }
31188 +       return err;
31189 +}
31190 +
31191 +int vfsub_iterate_dir(struct file *file, struct dir_context *ctx)
31192 +{
31193 +       int err;
31194 +
31195 +       AuDbg("%pD, ctx{%pf, %llu}\n", file, ctx->actor, ctx->pos);
31196 +
31197 +       lockdep_off();
31198 +       err = iterate_dir(file, ctx);
31199 +       lockdep_on();
31200 +       if (err >= 0)
31201 +               vfsub_update_h_iattr(&file->f_path, /*did*/NULL); /*ignore*/
31202 +       return err;
31203 +}
31204 +
31205 +long vfsub_splice_to(struct file *in, loff_t *ppos,
31206 +                    struct pipe_inode_info *pipe, size_t len,
31207 +                    unsigned int flags)
31208 +{
31209 +       long err;
31210 +
31211 +       lockdep_off();
31212 +       err = do_splice_to(in, ppos, pipe, len, flags);
31213 +       lockdep_on();
31214 +       file_accessed(in);
31215 +       if (err >= 0)
31216 +               vfsub_update_h_iattr(&in->f_path, /*did*/NULL); /*ignore*/
31217 +       return err;
31218 +}
31219 +
31220 +long vfsub_splice_from(struct pipe_inode_info *pipe, struct file *out,
31221 +                      loff_t *ppos, size_t len, unsigned int flags)
31222 +{
31223 +       long err;
31224 +
31225 +       lockdep_off();
31226 +       err = do_splice_from(pipe, out, ppos, len, flags);
31227 +       lockdep_on();
31228 +       if (err >= 0)
31229 +               vfsub_update_h_iattr(&out->f_path, /*did*/NULL); /*ignore*/
31230 +       return err;
31231 +}
31232 +
31233 +int vfsub_fsync(struct file *file, struct path *path, int datasync)
31234 +{
31235 +       int err;
31236 +
31237 +       /* file can be NULL */
31238 +       lockdep_off();
31239 +       err = vfs_fsync(file, datasync);
31240 +       lockdep_on();
31241 +       if (!err) {
31242 +               if (!path) {
31243 +                       AuDebugOn(!file);
31244 +                       path = &file->f_path;
31245 +               }
31246 +               vfsub_update_h_iattr(path, /*did*/NULL); /*ignore*/
31247 +       }
31248 +       return err;
31249 +}
31250 +
31251 +/* cf. open.c:do_sys_truncate() and do_sys_ftruncate() */
31252 +int vfsub_trunc(struct path *h_path, loff_t length, unsigned int attr,
31253 +               struct file *h_file)
31254 +{
31255 +       int err;
31256 +       struct inode *h_inode;
31257 +       struct super_block *h_sb;
31258 +
31259 +       if (!h_file) {
31260 +               err = vfsub_truncate(h_path, length);
31261 +               goto out;
31262 +       }
31263 +
31264 +       h_inode = d_inode(h_path->dentry);
31265 +       h_sb = h_inode->i_sb;
31266 +       lockdep_off();
31267 +       sb_start_write(h_sb);
31268 +       lockdep_on();
31269 +       err = locks_verify_truncate(h_inode, h_file, length);
31270 +       if (!err)
31271 +               err = security_path_truncate(h_path);
31272 +       if (!err) {
31273 +               lockdep_off();
31274 +               err = do_truncate(h_path->dentry, length, attr, h_file);
31275 +               lockdep_on();
31276 +       }
31277 +       lockdep_off();
31278 +       sb_end_write(h_sb);
31279 +       lockdep_on();
31280 +
31281 +out:
31282 +       return err;
31283 +}
31284 +
31285 +/* ---------------------------------------------------------------------- */
31286 +
31287 +struct au_vfsub_mkdir_args {
31288 +       int *errp;
31289 +       struct inode *dir;
31290 +       struct path *path;
31291 +       int mode;
31292 +};
31293 +
31294 +static void au_call_vfsub_mkdir(void *args)
31295 +{
31296 +       struct au_vfsub_mkdir_args *a = args;
31297 +       *a->errp = vfsub_mkdir(a->dir, a->path, a->mode);
31298 +}
31299 +
31300 +int vfsub_sio_mkdir(struct inode *dir, struct path *path, int mode)
31301 +{
31302 +       int err, do_sio, wkq_err;
31303 +
31304 +       do_sio = au_test_h_perm_sio(dir, MAY_EXEC | MAY_WRITE);
31305 +       if (!do_sio) {
31306 +               lockdep_off();
31307 +               err = vfsub_mkdir(dir, path, mode);
31308 +               lockdep_on();
31309 +       } else {
31310 +               struct au_vfsub_mkdir_args args = {
31311 +                       .errp   = &err,
31312 +                       .dir    = dir,
31313 +                       .path   = path,
31314 +                       .mode   = mode
31315 +               };
31316 +               wkq_err = au_wkq_wait(au_call_vfsub_mkdir, &args);
31317 +               if (unlikely(wkq_err))
31318 +                       err = wkq_err;
31319 +       }
31320 +
31321 +       return err;
31322 +}
31323 +
31324 +struct au_vfsub_rmdir_args {
31325 +       int *errp;
31326 +       struct inode *dir;
31327 +       struct path *path;
31328 +};
31329 +
31330 +static void au_call_vfsub_rmdir(void *args)
31331 +{
31332 +       struct au_vfsub_rmdir_args *a = args;
31333 +       *a->errp = vfsub_rmdir(a->dir, a->path);
31334 +}
31335 +
31336 +int vfsub_sio_rmdir(struct inode *dir, struct path *path)
31337 +{
31338 +       int err, do_sio, wkq_err;
31339 +
31340 +       do_sio = au_test_h_perm_sio(dir, MAY_EXEC | MAY_WRITE);
31341 +       if (!do_sio) {
31342 +               lockdep_off();
31343 +               err = vfsub_rmdir(dir, path);
31344 +               lockdep_on();
31345 +       } else {
31346 +               struct au_vfsub_rmdir_args args = {
31347 +                       .errp   = &err,
31348 +                       .dir    = dir,
31349 +                       .path   = path
31350 +               };
31351 +               wkq_err = au_wkq_wait(au_call_vfsub_rmdir, &args);
31352 +               if (unlikely(wkq_err))
31353 +                       err = wkq_err;
31354 +       }
31355 +
31356 +       return err;
31357 +}
31358 +
31359 +/* ---------------------------------------------------------------------- */
31360 +
31361 +struct notify_change_args {
31362 +       int *errp;
31363 +       struct path *path;
31364 +       struct iattr *ia;
31365 +       struct inode **delegated_inode;
31366 +};
31367 +
31368 +static void call_notify_change(void *args)
31369 +{
31370 +       struct notify_change_args *a = args;
31371 +       struct inode *h_inode;
31372 +
31373 +       h_inode = d_inode(a->path->dentry);
31374 +       IMustLock(h_inode);
31375 +
31376 +       *a->errp = -EPERM;
31377 +       if (!IS_IMMUTABLE(h_inode) && !IS_APPEND(h_inode)) {
31378 +               lockdep_off();
31379 +               *a->errp = notify_change(a->path->dentry, a->ia,
31380 +                                        a->delegated_inode);
31381 +               lockdep_on();
31382 +               if (!*a->errp)
31383 +                       vfsub_update_h_iattr(a->path, /*did*/NULL); /*ignore*/
31384 +       }
31385 +       AuTraceErr(*a->errp);
31386 +}
31387 +
31388 +int vfsub_notify_change(struct path *path, struct iattr *ia,
31389 +                       struct inode **delegated_inode)
31390 +{
31391 +       int err;
31392 +       struct notify_change_args args = {
31393 +               .errp                   = &err,
31394 +               .path                   = path,
31395 +               .ia                     = ia,
31396 +               .delegated_inode        = delegated_inode
31397 +       };
31398 +
31399 +       call_notify_change(&args);
31400 +
31401 +       return err;
31402 +}
31403 +
31404 +int vfsub_sio_notify_change(struct path *path, struct iattr *ia,
31405 +                           struct inode **delegated_inode)
31406 +{
31407 +       int err, wkq_err;
31408 +       struct notify_change_args args = {
31409 +               .errp                   = &err,
31410 +               .path                   = path,
31411 +               .ia                     = ia,
31412 +               .delegated_inode        = delegated_inode
31413 +       };
31414 +
31415 +       wkq_err = au_wkq_wait(call_notify_change, &args);
31416 +       if (unlikely(wkq_err))
31417 +               err = wkq_err;
31418 +
31419 +       return err;
31420 +}
31421 +
31422 +/* ---------------------------------------------------------------------- */
31423 +
31424 +struct unlink_args {
31425 +       int *errp;
31426 +       struct inode *dir;
31427 +       struct path *path;
31428 +       struct inode **delegated_inode;
31429 +};
31430 +
31431 +static void call_unlink(void *args)
31432 +{
31433 +       struct unlink_args *a = args;
31434 +       struct dentry *d = a->path->dentry;
31435 +       struct inode *h_inode;
31436 +       const int stop_sillyrename = (au_test_nfs(d->d_sb)
31437 +                                     && au_dcount(d) == 1);
31438 +
31439 +       IMustLock(a->dir);
31440 +
31441 +       a->path->dentry = d->d_parent;
31442 +       *a->errp = security_path_unlink(a->path, d);
31443 +       a->path->dentry = d;
31444 +       if (unlikely(*a->errp))
31445 +               return;
31446 +
31447 +       if (!stop_sillyrename)
31448 +               dget(d);
31449 +       h_inode = NULL;
31450 +       if (d_is_positive(d)) {
31451 +               h_inode = d_inode(d);
31452 +               ihold(h_inode);
31453 +       }
31454 +
31455 +       lockdep_off();
31456 +       *a->errp = vfs_unlink(a->dir, d, a->delegated_inode);
31457 +       lockdep_on();
31458 +       if (!*a->errp) {
31459 +               struct path tmp = {
31460 +                       .dentry = d->d_parent,
31461 +                       .mnt    = a->path->mnt
31462 +               };
31463 +               vfsub_update_h_iattr(&tmp, /*did*/NULL); /*ignore*/
31464 +       }
31465 +
31466 +       if (!stop_sillyrename)
31467 +               dput(d);
31468 +       if (h_inode)
31469 +               iput(h_inode);
31470 +
31471 +       AuTraceErr(*a->errp);
31472 +}
31473 +
31474 +/*
31475 + * @dir: must be locked.
31476 + * @dentry: target dentry.
31477 + */
31478 +int vfsub_unlink(struct inode *dir, struct path *path,
31479 +                struct inode **delegated_inode, int force)
31480 +{
31481 +       int err;
31482 +       struct unlink_args args = {
31483 +               .errp                   = &err,
31484 +               .dir                    = dir,
31485 +               .path                   = path,
31486 +               .delegated_inode        = delegated_inode
31487 +       };
31488 +
31489 +       if (!force)
31490 +               call_unlink(&args);
31491 +       else {
31492 +               int wkq_err;
31493 +
31494 +               wkq_err = au_wkq_wait(call_unlink, &args);
31495 +               if (unlikely(wkq_err))
31496 +                       err = wkq_err;
31497 +       }
31498 +
31499 +       return err;
31500 +}
31501 diff -urN /usr/share/empty/fs/aufs/vfsub.h linux/fs/aufs/vfsub.h
31502 --- /usr/share/empty/fs/aufs/vfsub.h    1970-01-01 01:00:00.000000000 +0100
31503 +++ linux/fs/aufs/vfsub.h       2016-12-17 12:28:17.598545045 +0100
31504 @@ -0,0 +1,316 @@
31505 +/*
31506 + * Copyright (C) 2005-2016 Junjiro R. Okajima
31507 + *
31508 + * This program, aufs is free software; you can redistribute it and/or modify
31509 + * it under the terms of the GNU General Public License as published by
31510 + * the Free Software Foundation; either version 2 of the License, or
31511 + * (at your option) any later version.
31512 + *
31513 + * This program is distributed in the hope that it will be useful,
31514 + * but WITHOUT ANY WARRANTY; without even the implied warranty of
31515 + * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
31516 + * GNU General Public License for more details.
31517 + *
31518 + * You should have received a copy of the GNU General Public License
31519 + * along with this program.  If not, see <http://www.gnu.org/licenses/>.
31520 + */
31521 +
31522 +/*
31523 + * sub-routines for VFS
31524 + */
31525 +
31526 +#ifndef __AUFS_VFSUB_H__
31527 +#define __AUFS_VFSUB_H__
31528 +
31529 +#ifdef __KERNEL__
31530 +
31531 +#include <linux/fs.h>
31532 +#include <linux/mount.h>
31533 +#include <linux/posix_acl.h>
31534 +#include <linux/xattr.h>
31535 +#include "debug.h"
31536 +
31537 +/* copied from linux/fs/internal.h */
31538 +/* todo: BAD approach!! */
31539 +extern void __mnt_drop_write(struct vfsmount *);
31540 +extern int open_check_o_direct(struct file *f);
31541 +
31542 +/* ---------------------------------------------------------------------- */
31543 +
31544 +/* lock subclass for lower inode */
31545 +/* default MAX_LOCKDEP_SUBCLASSES(8) is not enough */
31546 +/* reduce? gave up. */
31547 +enum {
31548 +       AuLsc_I_Begin = I_MUTEX_PARENT2, /* 5 */
31549 +       AuLsc_I_PARENT,         /* lower inode, parent first */
31550 +       AuLsc_I_PARENT2,        /* copyup dirs */
31551 +       AuLsc_I_PARENT3,        /* copyup wh */
31552 +       AuLsc_I_CHILD,
31553 +       AuLsc_I_CHILD2,
31554 +       AuLsc_I_End
31555 +};
31556 +
31557 +/* to debug easier, do not make them inlined functions */
31558 +#define MtxMustLock(mtx)       AuDebugOn(!mutex_is_locked(mtx))
31559 +#define IMustLock(i)           AuDebugOn(!inode_is_locked(i))
31560 +
31561 +/* ---------------------------------------------------------------------- */
31562 +
31563 +static inline void vfsub_drop_nlink(struct inode *inode)
31564 +{
31565 +       AuDebugOn(!inode->i_nlink);
31566 +       drop_nlink(inode);
31567 +}
31568 +
31569 +static inline void vfsub_dead_dir(struct inode *inode)
31570 +{
31571 +       AuDebugOn(!S_ISDIR(inode->i_mode));
31572 +       inode->i_flags |= S_DEAD;
31573 +       clear_nlink(inode);
31574 +}
31575 +
31576 +static inline int vfsub_native_ro(struct inode *inode)
31577 +{
31578 +       return (inode->i_sb->s_flags & MS_RDONLY)
31579 +               || IS_RDONLY(inode)
31580 +               /* || IS_APPEND(inode) */
31581 +               || IS_IMMUTABLE(inode);
31582 +}
31583 +
31584 +#ifdef CONFIG_AUFS_BR_FUSE
31585 +int vfsub_test_mntns(struct vfsmount *mnt, struct super_block *h_sb);
31586 +#else
31587 +AuStubInt0(vfsub_test_mntns, struct vfsmount *mnt, struct super_block *h_sb);
31588 +#endif
31589 +
31590 +/* ---------------------------------------------------------------------- */
31591 +
31592 +int vfsub_update_h_iattr(struct path *h_path, int *did);
31593 +struct file *vfsub_dentry_open(struct path *path, int flags);
31594 +struct file *vfsub_filp_open(const char *path, int oflags, int mode);
31595 +struct vfsub_aopen_args {
31596 +       struct file     *file;
31597 +       unsigned int    open_flag;
31598 +       umode_t         create_mode;
31599 +       int             *opened;
31600 +};
31601 +struct au_branch;
31602 +int vfsub_atomic_open(struct inode *dir, struct dentry *dentry,
31603 +                     struct vfsub_aopen_args *args, struct au_branch *br);
31604 +int vfsub_kern_path(const char *name, unsigned int flags, struct path *path);
31605 +
31606 +struct dentry *vfsub_lookup_one_len_unlocked(const char *name,
31607 +                                            struct dentry *parent, int len);
31608 +struct dentry *vfsub_lookup_one_len(const char *name, struct dentry *parent,
31609 +                                   int len);
31610 +
31611 +struct vfsub_lkup_one_args {
31612 +       struct dentry **errp;
31613 +       struct qstr *name;
31614 +       struct dentry *parent;
31615 +};
31616 +
31617 +static inline struct dentry *vfsub_lkup_one(struct qstr *name,
31618 +                                           struct dentry *parent)
31619 +{
31620 +       return vfsub_lookup_one_len(name->name, parent, name->len);
31621 +}
31622 +
31623 +void vfsub_call_lkup_one(void *args);
31624 +
31625 +/* ---------------------------------------------------------------------- */
31626 +
31627 +static inline int vfsub_mnt_want_write(struct vfsmount *mnt)
31628 +{
31629 +       int err;
31630 +
31631 +       lockdep_off();
31632 +       err = mnt_want_write(mnt);
31633 +       lockdep_on();
31634 +       return err;
31635 +}
31636 +
31637 +static inline void vfsub_mnt_drop_write(struct vfsmount *mnt)
31638 +{
31639 +       lockdep_off();
31640 +       mnt_drop_write(mnt);
31641 +       lockdep_on();
31642 +}
31643 +
31644 +#if 0 /* reserved */
31645 +static inline void vfsub_mnt_drop_write_file(struct file *file)
31646 +{
31647 +       lockdep_off();
31648 +       mnt_drop_write_file(file);
31649 +       lockdep_on();
31650 +}
31651 +#endif
31652 +
31653 +/* ---------------------------------------------------------------------- */
31654 +
31655 +struct au_hinode;
31656 +struct dentry *vfsub_lock_rename(struct dentry *d1, struct au_hinode *hdir1,
31657 +                                struct dentry *d2, struct au_hinode *hdir2);
31658 +void vfsub_unlock_rename(struct dentry *d1, struct au_hinode *hdir1,
31659 +                        struct dentry *d2, struct au_hinode *hdir2);
31660 +
31661 +int vfsub_create(struct inode *dir, struct path *path, int mode,
31662 +                bool want_excl);
31663 +int vfsub_symlink(struct inode *dir, struct path *path,
31664 +                 const char *symname);
31665 +int vfsub_mknod(struct inode *dir, struct path *path, int mode, dev_t dev);
31666 +int vfsub_link(struct dentry *src_dentry, struct inode *dir,
31667 +              struct path *path, struct inode **delegated_inode);
31668 +int vfsub_rename(struct inode *src_hdir, struct dentry *src_dentry,
31669 +                struct inode *hdir, struct path *path,
31670 +                struct inode **delegated_inode, unsigned int flags);
31671 +int vfsub_mkdir(struct inode *dir, struct path *path, int mode);
31672 +int vfsub_rmdir(struct inode *dir, struct path *path);
31673 +
31674 +/* ---------------------------------------------------------------------- */
31675 +
31676 +ssize_t vfsub_read_u(struct file *file, char __user *ubuf, size_t count,
31677 +                    loff_t *ppos);
31678 +ssize_t vfsub_read_k(struct file *file, void *kbuf, size_t count,
31679 +                       loff_t *ppos);
31680 +ssize_t vfsub_write_u(struct file *file, const char __user *ubuf, size_t count,
31681 +                     loff_t *ppos);
31682 +ssize_t vfsub_write_k(struct file *file, void *kbuf, size_t count,
31683 +                     loff_t *ppos);
31684 +int vfsub_flush(struct file *file, fl_owner_t id);
31685 +int vfsub_iterate_dir(struct file *file, struct dir_context *ctx);
31686 +
31687 +static inline loff_t vfsub_f_size_read(struct file *file)
31688 +{
31689 +       return i_size_read(file_inode(file));
31690 +}
31691 +
31692 +static inline unsigned int vfsub_file_flags(struct file *file)
31693 +{
31694 +       unsigned int flags;
31695 +
31696 +       spin_lock(&file->f_lock);
31697 +       flags = file->f_flags;
31698 +       spin_unlock(&file->f_lock);
31699 +
31700 +       return flags;
31701 +}
31702 +
31703 +static inline int vfsub_file_execed(struct file *file)
31704 +{
31705 +       /* todo: direct access f_flags */
31706 +       return !!(vfsub_file_flags(file) & __FMODE_EXEC);
31707 +}
31708 +
31709 +#if 0 /* reserved */
31710 +static inline void vfsub_file_accessed(struct file *h_file)
31711 +{
31712 +       file_accessed(h_file);
31713 +       vfsub_update_h_iattr(&h_file->f_path, /*did*/NULL); /*ignore*/
31714 +}
31715 +#endif
31716 +
31717 +#if 0 /* reserved */
31718 +static inline void vfsub_touch_atime(struct vfsmount *h_mnt,
31719 +                                    struct dentry *h_dentry)
31720 +{
31721 +       struct path h_path = {
31722 +               .dentry = h_dentry,
31723 +               .mnt    = h_mnt
31724 +       };
31725 +       touch_atime(&h_path);
31726 +       vfsub_update_h_iattr(&h_path, /*did*/NULL); /*ignore*/
31727 +}
31728 +#endif
31729 +
31730 +static inline int vfsub_update_time(struct inode *h_inode, struct timespec *ts,
31731 +                                   int flags)
31732 +{
31733 +       return update_time(h_inode, ts, flags);
31734 +       /* no vfsub_update_h_iattr() since we don't have struct path */
31735 +}
31736 +
31737 +#ifdef CONFIG_FS_POSIX_ACL
31738 +static inline int vfsub_acl_chmod(struct inode *h_inode, umode_t h_mode)
31739 +{
31740 +       int err;
31741 +
31742 +       err = posix_acl_chmod(h_inode, h_mode);
31743 +       if (err == -EOPNOTSUPP)
31744 +               err = 0;
31745 +       return err;
31746 +}
31747 +#else
31748 +AuStubInt0(vfsub_acl_chmod, struct inode *h_inode, umode_t h_mode);
31749 +#endif
31750 +
31751 +long vfsub_splice_to(struct file *in, loff_t *ppos,
31752 +                    struct pipe_inode_info *pipe, size_t len,
31753 +                    unsigned int flags);
31754 +long vfsub_splice_from(struct pipe_inode_info *pipe, struct file *out,
31755 +                      loff_t *ppos, size_t len, unsigned int flags);
31756 +
31757 +static inline long vfsub_truncate(struct path *path, loff_t length)
31758 +{
31759 +       long err;
31760 +
31761 +       lockdep_off();
31762 +       err = vfs_truncate(path, length);
31763 +       lockdep_on();
31764 +       return err;
31765 +}
31766 +
31767 +int vfsub_trunc(struct path *h_path, loff_t length, unsigned int attr,
31768 +               struct file *h_file);
31769 +int vfsub_fsync(struct file *file, struct path *path, int datasync);
31770 +
31771 +/* ---------------------------------------------------------------------- */
31772 +
31773 +static inline loff_t vfsub_llseek(struct file *file, loff_t offset, int origin)
31774 +{
31775 +       loff_t err;
31776 +
31777 +       lockdep_off();
31778 +       err = vfs_llseek(file, offset, origin);
31779 +       lockdep_on();
31780 +       return err;
31781 +}
31782 +
31783 +/* ---------------------------------------------------------------------- */
31784 +
31785 +int vfsub_sio_mkdir(struct inode *dir, struct path *path, int mode);
31786 +int vfsub_sio_rmdir(struct inode *dir, struct path *path);
31787 +int vfsub_sio_notify_change(struct path *path, struct iattr *ia,
31788 +                           struct inode **delegated_inode);
31789 +int vfsub_notify_change(struct path *path, struct iattr *ia,
31790 +                       struct inode **delegated_inode);
31791 +int vfsub_unlink(struct inode *dir, struct path *path,
31792 +                struct inode **delegated_inode, int force);
31793 +
31794 +/* ---------------------------------------------------------------------- */
31795 +
31796 +static inline int vfsub_setxattr(struct dentry *dentry, const char *name,
31797 +                                const void *value, size_t size, int flags)
31798 +{
31799 +       int err;
31800 +
31801 +       lockdep_off();
31802 +       err = vfs_setxattr(dentry, name, value, size, flags);
31803 +       lockdep_on();
31804 +
31805 +       return err;
31806 +}
31807 +
31808 +static inline int vfsub_removexattr(struct dentry *dentry, const char *name)
31809 +{
31810 +       int err;
31811 +
31812 +       lockdep_off();
31813 +       err = vfs_removexattr(dentry, name);
31814 +       lockdep_on();
31815 +
31816 +       return err;
31817 +}
31818 +
31819 +#endif /* __KERNEL__ */
31820 +#endif /* __AUFS_VFSUB_H__ */
31821 diff -urN /usr/share/empty/fs/aufs/wbr_policy.c linux/fs/aufs/wbr_policy.c
31822 --- /usr/share/empty/fs/aufs/wbr_policy.c       1970-01-01 01:00:00.000000000 +0100
31823 +++ linux/fs/aufs/wbr_policy.c  2016-12-17 12:28:17.598545045 +0100
31824 @@ -0,0 +1,830 @@
31825 +/*
31826 + * Copyright (C) 2005-2016 Junjiro R. Okajima
31827 + *
31828 + * This program, aufs is free software; you can redistribute it and/or modify
31829 + * it under the terms of the GNU General Public License as published by
31830 + * the Free Software Foundation; either version 2 of the License, or
31831 + * (at your option) any later version.
31832 + *
31833 + * This program is distributed in the hope that it will be useful,
31834 + * but WITHOUT ANY WARRANTY; without even the implied warranty of
31835 + * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
31836 + * GNU General Public License for more details.
31837 + *
31838 + * You should have received a copy of the GNU General Public License
31839 + * along with this program.  If not, see <http://www.gnu.org/licenses/>.
31840 + */
31841 +
31842 +/*
31843 + * policies for selecting one among multiple writable branches
31844 + */
31845 +
31846 +#include <linux/statfs.h>
31847 +#include "aufs.h"
31848 +
31849 +/* subset of cpup_attr() */
31850 +static noinline_for_stack
31851 +int au_cpdown_attr(struct path *h_path, struct dentry *h_src)
31852 +{
31853 +       int err, sbits;
31854 +       struct iattr ia;
31855 +       struct inode *h_isrc;
31856 +
31857 +       h_isrc = d_inode(h_src);
31858 +       ia.ia_valid = ATTR_FORCE | ATTR_MODE | ATTR_UID | ATTR_GID;
31859 +       ia.ia_mode = h_isrc->i_mode;
31860 +       ia.ia_uid = h_isrc->i_uid;
31861 +       ia.ia_gid = h_isrc->i_gid;
31862 +       sbits = !!(ia.ia_mode & (S_ISUID | S_ISGID));
31863 +       au_cpup_attr_flags(d_inode(h_path->dentry), h_isrc->i_flags);
31864 +       /* no delegation since it is just created */
31865 +       err = vfsub_sio_notify_change(h_path, &ia, /*delegated*/NULL);
31866 +
31867 +       /* is this nfs only? */
31868 +       if (!err && sbits && au_test_nfs(h_path->dentry->d_sb)) {
31869 +               ia.ia_valid = ATTR_FORCE | ATTR_MODE;
31870 +               ia.ia_mode = h_isrc->i_mode;
31871 +               err = vfsub_sio_notify_change(h_path, &ia, /*delegated*/NULL);
31872 +       }
31873 +
31874 +       return err;
31875 +}
31876 +
31877 +#define AuCpdown_PARENT_OPQ    1
31878 +#define AuCpdown_WHED          (1 << 1)
31879 +#define AuCpdown_MADE_DIR      (1 << 2)
31880 +#define AuCpdown_DIROPQ                (1 << 3)
31881 +#define au_ftest_cpdown(flags, name)   ((flags) & AuCpdown_##name)
31882 +#define au_fset_cpdown(flags, name) \
31883 +       do { (flags) |= AuCpdown_##name; } while (0)
31884 +#define au_fclr_cpdown(flags, name) \
31885 +       do { (flags) &= ~AuCpdown_##name; } while (0)
31886 +
31887 +static int au_cpdown_dir_opq(struct dentry *dentry, aufs_bindex_t bdst,
31888 +                            unsigned int *flags)
31889 +{
31890 +       int err;
31891 +       struct dentry *opq_dentry;
31892 +
31893 +       opq_dentry = au_diropq_create(dentry, bdst);
31894 +       err = PTR_ERR(opq_dentry);
31895 +       if (IS_ERR(opq_dentry))
31896 +               goto out;
31897 +       dput(opq_dentry);
31898 +       au_fset_cpdown(*flags, DIROPQ);
31899 +
31900 +out:
31901 +       return err;
31902 +}
31903 +
31904 +static int au_cpdown_dir_wh(struct dentry *dentry, struct dentry *h_parent,
31905 +                           struct inode *dir, aufs_bindex_t bdst)
31906 +{
31907 +       int err;
31908 +       struct path h_path;
31909 +       struct au_branch *br;
31910 +
31911 +       br = au_sbr(dentry->d_sb, bdst);
31912 +       h_path.dentry = au_wh_lkup(h_parent, &dentry->d_name, br);
31913 +       err = PTR_ERR(h_path.dentry);
31914 +       if (IS_ERR(h_path.dentry))
31915 +               goto out;
31916 +
31917 +       err = 0;
31918 +       if (d_is_positive(h_path.dentry)) {
31919 +               h_path.mnt = au_br_mnt(br);
31920 +               err = au_wh_unlink_dentry(au_h_iptr(dir, bdst), &h_path,
31921 +                                         dentry);
31922 +       }
31923 +       dput(h_path.dentry);
31924 +
31925 +out:
31926 +       return err;
31927 +}
31928 +
31929 +static int au_cpdown_dir(struct dentry *dentry, aufs_bindex_t bdst,
31930 +                        struct au_pin *pin,
31931 +                        struct dentry *h_parent, void *arg)
31932 +{
31933 +       int err, rerr;
31934 +       aufs_bindex_t bopq, btop;
31935 +       struct path h_path;
31936 +       struct dentry *parent;
31937 +       struct inode *h_dir, *h_inode, *inode, *dir;
31938 +       unsigned int *flags = arg;
31939 +
31940 +       btop = au_dbtop(dentry);
31941 +       /* dentry is di-locked */
31942 +       parent = dget_parent(dentry);
31943 +       dir = d_inode(parent);
31944 +       h_dir = d_inode(h_parent);
31945 +       AuDebugOn(h_dir != au_h_iptr(dir, bdst));
31946 +       IMustLock(h_dir);
31947 +
31948 +       err = au_lkup_neg(dentry, bdst, /*wh*/0);
31949 +       if (unlikely(err < 0))
31950 +               goto out;
31951 +       h_path.dentry = au_h_dptr(dentry, bdst);
31952 +       h_path.mnt = au_sbr_mnt(dentry->d_sb, bdst);
31953 +       err = vfsub_sio_mkdir(au_h_iptr(dir, bdst), &h_path,
31954 +                             S_IRWXU | S_IRUGO | S_IXUGO);
31955 +       if (unlikely(err))
31956 +               goto out_put;
31957 +       au_fset_cpdown(*flags, MADE_DIR);
31958 +
31959 +       bopq = au_dbdiropq(dentry);
31960 +       au_fclr_cpdown(*flags, WHED);
31961 +       au_fclr_cpdown(*flags, DIROPQ);
31962 +       if (au_dbwh(dentry) == bdst)
31963 +               au_fset_cpdown(*flags, WHED);
31964 +       if (!au_ftest_cpdown(*flags, PARENT_OPQ) && bopq <= bdst)
31965 +               au_fset_cpdown(*flags, PARENT_OPQ);
31966 +       h_inode = d_inode(h_path.dentry);
31967 +       inode_lock_nested(h_inode, AuLsc_I_CHILD);
31968 +       if (au_ftest_cpdown(*flags, WHED)) {
31969 +               err = au_cpdown_dir_opq(dentry, bdst, flags);
31970 +               if (unlikely(err)) {
31971 +                       inode_unlock(h_inode);
31972 +                       goto out_dir;
31973 +               }
31974 +       }
31975 +
31976 +       err = au_cpdown_attr(&h_path, au_h_dptr(dentry, btop));
31977 +       inode_unlock(h_inode);
31978 +       if (unlikely(err))
31979 +               goto out_opq;
31980 +
31981 +       if (au_ftest_cpdown(*flags, WHED)) {
31982 +               err = au_cpdown_dir_wh(dentry, h_parent, dir, bdst);
31983 +               if (unlikely(err))
31984 +                       goto out_opq;
31985 +       }
31986 +
31987 +       inode = d_inode(dentry);
31988 +       if (au_ibbot(inode) < bdst)
31989 +               au_set_ibbot(inode, bdst);
31990 +       au_set_h_iptr(inode, bdst, au_igrab(h_inode),
31991 +                     au_hi_flags(inode, /*isdir*/1));
31992 +       au_fhsm_wrote(dentry->d_sb, bdst, /*force*/0);
31993 +       goto out; /* success */
31994 +
31995 +       /* revert */
31996 +out_opq:
31997 +       if (au_ftest_cpdown(*flags, DIROPQ)) {
31998 +               inode_lock_nested(h_inode, AuLsc_I_CHILD);
31999 +               rerr = au_diropq_remove(dentry, bdst);
32000 +               inode_unlock(h_inode);
32001 +               if (unlikely(rerr)) {
32002 +                       AuIOErr("failed removing diropq for %pd b%d (%d)\n",
32003 +                               dentry, bdst, rerr);
32004 +                       err = -EIO;
32005 +                       goto out;
32006 +               }
32007 +       }
32008 +out_dir:
32009 +       if (au_ftest_cpdown(*flags, MADE_DIR)) {
32010 +               rerr = vfsub_sio_rmdir(au_h_iptr(dir, bdst), &h_path);
32011 +               if (unlikely(rerr)) {
32012 +                       AuIOErr("failed removing %pd b%d (%d)\n",
32013 +                               dentry, bdst, rerr);
32014 +                       err = -EIO;
32015 +               }
32016 +       }
32017 +out_put:
32018 +       au_set_h_dptr(dentry, bdst, NULL);
32019 +       if (au_dbbot(dentry) == bdst)
32020 +               au_update_dbbot(dentry);
32021 +out:
32022 +       dput(parent);
32023 +       return err;
32024 +}
32025 +
32026 +int au_cpdown_dirs(struct dentry *dentry, aufs_bindex_t bdst)
32027 +{
32028 +       int err;
32029 +       unsigned int flags;
32030 +
32031 +       flags = 0;
32032 +       err = au_cp_dirs(dentry, bdst, au_cpdown_dir, &flags);
32033 +
32034 +       return err;
32035 +}
32036 +
32037 +/* ---------------------------------------------------------------------- */
32038 +
32039 +/* policies for create */
32040 +
32041 +int au_wbr_nonopq(struct dentry *dentry, aufs_bindex_t bindex)
32042 +{
32043 +       int err, i, j, ndentry;
32044 +       aufs_bindex_t bopq;
32045 +       struct au_dcsub_pages dpages;
32046 +       struct au_dpage *dpage;
32047 +       struct dentry **dentries, *parent, *d;
32048 +
32049 +       err = au_dpages_init(&dpages, GFP_NOFS);
32050 +       if (unlikely(err))
32051 +               goto out;
32052 +       parent = dget_parent(dentry);
32053 +       err = au_dcsub_pages_rev_aufs(&dpages, parent, /*do_include*/0);
32054 +       if (unlikely(err))
32055 +               goto out_free;
32056 +
32057 +       err = bindex;
32058 +       for (i = 0; i < dpages.ndpage; i++) {
32059 +               dpage = dpages.dpages + i;
32060 +               dentries = dpage->dentries;
32061 +               ndentry = dpage->ndentry;
32062 +               for (j = 0; j < ndentry; j++) {
32063 +                       d = dentries[j];
32064 +                       di_read_lock_parent2(d, !AuLock_IR);
32065 +                       bopq = au_dbdiropq(d);
32066 +                       di_read_unlock(d, !AuLock_IR);
32067 +                       if (bopq >= 0 && bopq < err)
32068 +                               err = bopq;
32069 +               }
32070 +       }
32071 +
32072 +out_free:
32073 +       dput(parent);
32074 +       au_dpages_free(&dpages);
32075 +out:
32076 +       return err;
32077 +}
32078 +
32079 +static int au_wbr_bu(struct super_block *sb, aufs_bindex_t bindex)
32080 +{
32081 +       for (; bindex >= 0; bindex--)
32082 +               if (!au_br_rdonly(au_sbr(sb, bindex)))
32083 +                       return bindex;
32084 +       return -EROFS;
32085 +}
32086 +
32087 +/* top down parent */
32088 +static int au_wbr_create_tdp(struct dentry *dentry,
32089 +                            unsigned int flags __maybe_unused)
32090 +{
32091 +       int err;
32092 +       aufs_bindex_t btop, bindex;
32093 +       struct super_block *sb;
32094 +       struct dentry *parent, *h_parent;
32095 +
32096 +       sb = dentry->d_sb;
32097 +       btop = au_dbtop(dentry);
32098 +       err = btop;
32099 +       if (!au_br_rdonly(au_sbr(sb, btop)))
32100 +               goto out;
32101 +
32102 +       err = -EROFS;
32103 +       parent = dget_parent(dentry);
32104 +       for (bindex = au_dbtop(parent); bindex < btop; bindex++) {
32105 +               h_parent = au_h_dptr(parent, bindex);
32106 +               if (!h_parent || d_is_negative(h_parent))
32107 +                       continue;
32108 +
32109 +               if (!au_br_rdonly(au_sbr(sb, bindex))) {
32110 +                       err = bindex;
32111 +                       break;
32112 +               }
32113 +       }
32114 +       dput(parent);
32115 +
32116 +       /* bottom up here */
32117 +       if (unlikely(err < 0)) {
32118 +               err = au_wbr_bu(sb, btop - 1);
32119 +               if (err >= 0)
32120 +                       err = au_wbr_nonopq(dentry, err);
32121 +       }
32122 +
32123 +out:
32124 +       AuDbg("b%d\n", err);
32125 +       return err;
32126 +}
32127 +
32128 +/* ---------------------------------------------------------------------- */
32129 +
32130 +/* an exception for the policy other than tdp */
32131 +static int au_wbr_create_exp(struct dentry *dentry)
32132 +{
32133 +       int err;
32134 +       aufs_bindex_t bwh, bdiropq;
32135 +       struct dentry *parent;
32136 +
32137 +       err = -1;
32138 +       bwh = au_dbwh(dentry);
32139 +       parent = dget_parent(dentry);
32140 +       bdiropq = au_dbdiropq(parent);
32141 +       if (bwh >= 0) {
32142 +               if (bdiropq >= 0)
32143 +                       err = min(bdiropq, bwh);
32144 +               else
32145 +                       err = bwh;
32146 +               AuDbg("%d\n", err);
32147 +       } else if (bdiropq >= 0) {
32148 +               err = bdiropq;
32149 +               AuDbg("%d\n", err);
32150 +       }
32151 +       dput(parent);
32152 +
32153 +       if (err >= 0)
32154 +               err = au_wbr_nonopq(dentry, err);
32155 +
32156 +       if (err >= 0 && au_br_rdonly(au_sbr(dentry->d_sb, err)))
32157 +               err = -1;
32158 +
32159 +       AuDbg("%d\n", err);
32160 +       return err;
32161 +}
32162 +
32163 +/* ---------------------------------------------------------------------- */
32164 +
32165 +/* round robin */
32166 +static int au_wbr_create_init_rr(struct super_block *sb)
32167 +{
32168 +       int err;
32169 +
32170 +       err = au_wbr_bu(sb, au_sbbot(sb));
32171 +       atomic_set(&au_sbi(sb)->si_wbr_rr_next, -err); /* less important */
32172 +       /* smp_mb(); */
32173 +
32174 +       AuDbg("b%d\n", err);
32175 +       return err;
32176 +}
32177 +
32178 +static int au_wbr_create_rr(struct dentry *dentry, unsigned int flags)
32179 +{
32180 +       int err, nbr;
32181 +       unsigned int u;
32182 +       aufs_bindex_t bindex, bbot;
32183 +       struct super_block *sb;
32184 +       atomic_t *next;
32185 +
32186 +       err = au_wbr_create_exp(dentry);
32187 +       if (err >= 0)
32188 +               goto out;
32189 +
32190 +       sb = dentry->d_sb;
32191 +       next = &au_sbi(sb)->si_wbr_rr_next;
32192 +       bbot = au_sbbot(sb);
32193 +       nbr = bbot + 1;
32194 +       for (bindex = 0; bindex <= bbot; bindex++) {
32195 +               if (!au_ftest_wbr(flags, DIR)) {
32196 +                       err = atomic_dec_return(next) + 1;
32197 +                       /* modulo for 0 is meaningless */
32198 +                       if (unlikely(!err))
32199 +                               err = atomic_dec_return(next) + 1;
32200 +               } else
32201 +                       err = atomic_read(next);
32202 +               AuDbg("%d\n", err);
32203 +               u = err;
32204 +               err = u % nbr;
32205 +               AuDbg("%d\n", err);
32206 +               if (!au_br_rdonly(au_sbr(sb, err)))
32207 +                       break;
32208 +               err = -EROFS;
32209 +       }
32210 +
32211 +       if (err >= 0)
32212 +               err = au_wbr_nonopq(dentry, err);
32213 +
32214 +out:
32215 +       AuDbg("%d\n", err);
32216 +       return err;
32217 +}
32218 +
32219 +/* ---------------------------------------------------------------------- */
32220 +
32221 +/* most free space */
32222 +static void au_mfs(struct dentry *dentry, struct dentry *parent)
32223 +{
32224 +       struct super_block *sb;
32225 +       struct au_branch *br;
32226 +       struct au_wbr_mfs *mfs;
32227 +       struct dentry *h_parent;
32228 +       aufs_bindex_t bindex, bbot;
32229 +       int err;
32230 +       unsigned long long b, bavail;
32231 +       struct path h_path;
32232 +       /* reduce the stack usage */
32233 +       struct kstatfs *st;
32234 +
32235 +       st = kmalloc(sizeof(*st), GFP_NOFS);
32236 +       if (unlikely(!st)) {
32237 +               AuWarn1("failed updating mfs(%d), ignored\n", -ENOMEM);
32238 +               return;
32239 +       }
32240 +
32241 +       bavail = 0;
32242 +       sb = dentry->d_sb;
32243 +       mfs = &au_sbi(sb)->si_wbr_mfs;
32244 +       MtxMustLock(&mfs->mfs_lock);
32245 +       mfs->mfs_bindex = -EROFS;
32246 +       mfs->mfsrr_bytes = 0;
32247 +       if (!parent) {
32248 +               bindex = 0;
32249 +               bbot = au_sbbot(sb);
32250 +       } else {
32251 +               bindex = au_dbtop(parent);
32252 +               bbot = au_dbtaildir(parent);
32253 +       }
32254 +
32255 +       for (; bindex <= bbot; bindex++) {
32256 +               if (parent) {
32257 +                       h_parent = au_h_dptr(parent, bindex);
32258 +                       if (!h_parent || d_is_negative(h_parent))
32259 +                               continue;
32260 +               }
32261 +               br = au_sbr(sb, bindex);
32262 +               if (au_br_rdonly(br))
32263 +                       continue;
32264 +
32265 +               /* sb->s_root for NFS is unreliable */
32266 +               h_path.mnt = au_br_mnt(br);
32267 +               h_path.dentry = h_path.mnt->mnt_root;
32268 +               err = vfs_statfs(&h_path, st);
32269 +               if (unlikely(err)) {
32270 +                       AuWarn1("failed statfs, b%d, %d\n", bindex, err);
32271 +                       continue;
32272 +               }
32273 +
32274 +               /* when the available size is equal, select the lower one */
32275 +               BUILD_BUG_ON(sizeof(b) < sizeof(st->f_bavail)
32276 +                            || sizeof(b) < sizeof(st->f_bsize));
32277 +               b = st->f_bavail * st->f_bsize;
32278 +               br->br_wbr->wbr_bytes = b;
32279 +               if (b >= bavail) {
32280 +                       bavail = b;
32281 +                       mfs->mfs_bindex = bindex;
32282 +                       mfs->mfs_jiffy = jiffies;
32283 +               }
32284 +       }
32285 +
32286 +       mfs->mfsrr_bytes = bavail;
32287 +       AuDbg("b%d\n", mfs->mfs_bindex);
32288 +       au_delayed_kfree(st);
32289 +}
32290 +
32291 +static int au_wbr_create_mfs(struct dentry *dentry, unsigned int flags)
32292 +{
32293 +       int err;
32294 +       struct dentry *parent;
32295 +       struct super_block *sb;
32296 +       struct au_wbr_mfs *mfs;
32297 +
32298 +       err = au_wbr_create_exp(dentry);
32299 +       if (err >= 0)
32300 +               goto out;
32301 +
32302 +       sb = dentry->d_sb;
32303 +       parent = NULL;
32304 +       if (au_ftest_wbr(flags, PARENT))
32305 +               parent = dget_parent(dentry);
32306 +       mfs = &au_sbi(sb)->si_wbr_mfs;
32307 +       mutex_lock(&mfs->mfs_lock);
32308 +       if (time_after(jiffies, mfs->mfs_jiffy + mfs->mfs_expire)
32309 +           || mfs->mfs_bindex < 0
32310 +           || au_br_rdonly(au_sbr(sb, mfs->mfs_bindex)))
32311 +               au_mfs(dentry, parent);
32312 +       mutex_unlock(&mfs->mfs_lock);
32313 +       err = mfs->mfs_bindex;
32314 +       dput(parent);
32315 +
32316 +       if (err >= 0)
32317 +               err = au_wbr_nonopq(dentry, err);
32318 +
32319 +out:
32320 +       AuDbg("b%d\n", err);
32321 +       return err;
32322 +}
32323 +
32324 +static int au_wbr_create_init_mfs(struct super_block *sb)
32325 +{
32326 +       struct au_wbr_mfs *mfs;
32327 +
32328 +       mfs = &au_sbi(sb)->si_wbr_mfs;
32329 +       mutex_init(&mfs->mfs_lock);
32330 +       mfs->mfs_jiffy = 0;
32331 +       mfs->mfs_bindex = -EROFS;
32332 +
32333 +       return 0;
32334 +}
32335 +
32336 +static int au_wbr_create_fin_mfs(struct super_block *sb __maybe_unused)
32337 +{
32338 +       mutex_destroy(&au_sbi(sb)->si_wbr_mfs.mfs_lock);
32339 +       return 0;
32340 +}
32341 +
32342 +/* ---------------------------------------------------------------------- */
32343 +
32344 +/* top down regardless parent, and then mfs */
32345 +static int au_wbr_create_tdmfs(struct dentry *dentry,
32346 +                              unsigned int flags __maybe_unused)
32347 +{
32348 +       int err;
32349 +       aufs_bindex_t bwh, btail, bindex, bfound, bmfs;
32350 +       unsigned long long watermark;
32351 +       struct super_block *sb;
32352 +       struct au_wbr_mfs *mfs;
32353 +       struct au_branch *br;
32354 +       struct dentry *parent;
32355 +
32356 +       sb = dentry->d_sb;
32357 +       mfs = &au_sbi(sb)->si_wbr_mfs;
32358 +       mutex_lock(&mfs->mfs_lock);
32359 +       if (time_after(jiffies, mfs->mfs_jiffy + mfs->mfs_expire)
32360 +           || mfs->mfs_bindex < 0)
32361 +               au_mfs(dentry, /*parent*/NULL);
32362 +       watermark = mfs->mfsrr_watermark;
32363 +       bmfs = mfs->mfs_bindex;
32364 +       mutex_unlock(&mfs->mfs_lock);
32365 +
32366 +       /* another style of au_wbr_create_exp() */
32367 +       bwh = au_dbwh(dentry);
32368 +       parent = dget_parent(dentry);
32369 +       btail = au_dbtaildir(parent);
32370 +       if (bwh >= 0 && bwh < btail)
32371 +               btail = bwh;
32372 +
32373 +       err = au_wbr_nonopq(dentry, btail);
32374 +       if (unlikely(err < 0))
32375 +               goto out;
32376 +       btail = err;
32377 +       bfound = -1;
32378 +       for (bindex = 0; bindex <= btail; bindex++) {
32379 +               br = au_sbr(sb, bindex);
32380 +               if (au_br_rdonly(br))
32381 +                       continue;
32382 +               if (br->br_wbr->wbr_bytes > watermark) {
32383 +                       bfound = bindex;
32384 +                       break;
32385 +               }
32386 +       }
32387 +       err = bfound;
32388 +       if (err < 0)
32389 +               err = bmfs;
32390 +
32391 +out:
32392 +       dput(parent);
32393 +       AuDbg("b%d\n", err);
32394 +       return err;
32395 +}
32396 +
32397 +/* ---------------------------------------------------------------------- */
32398 +
32399 +/* most free space and then round robin */
32400 +static int au_wbr_create_mfsrr(struct dentry *dentry, unsigned int flags)
32401 +{
32402 +       int err;
32403 +       struct au_wbr_mfs *mfs;
32404 +
32405 +       err = au_wbr_create_mfs(dentry, flags);
32406 +       if (err >= 0) {
32407 +               mfs = &au_sbi(dentry->d_sb)->si_wbr_mfs;
32408 +               mutex_lock(&mfs->mfs_lock);
32409 +               if (mfs->mfsrr_bytes < mfs->mfsrr_watermark)
32410 +                       err = au_wbr_create_rr(dentry, flags);
32411 +               mutex_unlock(&mfs->mfs_lock);
32412 +       }
32413 +
32414 +       AuDbg("b%d\n", err);
32415 +       return err;
32416 +}
32417 +
32418 +static int au_wbr_create_init_mfsrr(struct super_block *sb)
32419 +{
32420 +       int err;
32421 +
32422 +       au_wbr_create_init_mfs(sb); /* ignore */
32423 +       err = au_wbr_create_init_rr(sb);
32424 +
32425 +       return err;
32426 +}
32427 +
32428 +/* ---------------------------------------------------------------------- */
32429 +
32430 +/* top down parent and most free space */
32431 +static int au_wbr_create_pmfs(struct dentry *dentry, unsigned int flags)
32432 +{
32433 +       int err, e2;
32434 +       unsigned long long b;
32435 +       aufs_bindex_t bindex, btop, bbot;
32436 +       struct super_block *sb;
32437 +       struct dentry *parent, *h_parent;
32438 +       struct au_branch *br;
32439 +
32440 +       err = au_wbr_create_tdp(dentry, flags);
32441 +       if (unlikely(err < 0))
32442 +               goto out;
32443 +       parent = dget_parent(dentry);
32444 +       btop = au_dbtop(parent);
32445 +       bbot = au_dbtaildir(parent);
32446 +       if (btop == bbot)
32447 +               goto out_parent; /* success */
32448 +
32449 +       e2 = au_wbr_create_mfs(dentry, flags);
32450 +       if (e2 < 0)
32451 +               goto out_parent; /* success */
32452 +
32453 +       /* when the available size is equal, select upper one */
32454 +       sb = dentry->d_sb;
32455 +       br = au_sbr(sb, err);
32456 +       b = br->br_wbr->wbr_bytes;
32457 +       AuDbg("b%d, %llu\n", err, b);
32458 +
32459 +       for (bindex = btop; bindex <= bbot; bindex++) {
32460 +               h_parent = au_h_dptr(parent, bindex);
32461 +               if (!h_parent || d_is_negative(h_parent))
32462 +                       continue;
32463 +
32464 +               br = au_sbr(sb, bindex);
32465 +               if (!au_br_rdonly(br) && br->br_wbr->wbr_bytes > b) {
32466 +                       b = br->br_wbr->wbr_bytes;
32467 +                       err = bindex;
32468 +                       AuDbg("b%d, %llu\n", err, b);
32469 +               }
32470 +       }
32471 +
32472 +       if (err >= 0)
32473 +               err = au_wbr_nonopq(dentry, err);
32474 +
32475 +out_parent:
32476 +       dput(parent);
32477 +out:
32478 +       AuDbg("b%d\n", err);
32479 +       return err;
32480 +}
32481 +
32482 +/* ---------------------------------------------------------------------- */
32483 +
32484 +/*
32485 + * - top down parent
32486 + * - most free space with parent
32487 + * - most free space round-robin regardless parent
32488 + */
32489 +static int au_wbr_create_pmfsrr(struct dentry *dentry, unsigned int flags)
32490 +{
32491 +       int err;
32492 +       unsigned long long watermark;
32493 +       struct super_block *sb;
32494 +       struct au_branch *br;
32495 +       struct au_wbr_mfs *mfs;
32496 +
32497 +       err = au_wbr_create_pmfs(dentry, flags | AuWbr_PARENT);
32498 +       if (unlikely(err < 0))
32499 +               goto out;
32500 +
32501 +       sb = dentry->d_sb;
32502 +       br = au_sbr(sb, err);
32503 +       mfs = &au_sbi(sb)->si_wbr_mfs;
32504 +       mutex_lock(&mfs->mfs_lock);
32505 +       watermark = mfs->mfsrr_watermark;
32506 +       mutex_unlock(&mfs->mfs_lock);
32507 +       if (br->br_wbr->wbr_bytes < watermark)
32508 +               /* regardless the parent dir */
32509 +               err = au_wbr_create_mfsrr(dentry, flags);
32510 +
32511 +out:
32512 +       AuDbg("b%d\n", err);
32513 +       return err;
32514 +}
32515 +
32516 +/* ---------------------------------------------------------------------- */
32517 +
32518 +/* policies for copyup */
32519 +
32520 +/* top down parent */
32521 +static int au_wbr_copyup_tdp(struct dentry *dentry)
32522 +{
32523 +       return au_wbr_create_tdp(dentry, /*flags, anything is ok*/0);
32524 +}
32525 +
32526 +/* bottom up parent */
32527 +static int au_wbr_copyup_bup(struct dentry *dentry)
32528 +{
32529 +       int err;
32530 +       aufs_bindex_t bindex, btop;
32531 +       struct dentry *parent, *h_parent;
32532 +       struct super_block *sb;
32533 +
32534 +       err = -EROFS;
32535 +       sb = dentry->d_sb;
32536 +       parent = dget_parent(dentry);
32537 +       btop = au_dbtop(parent);
32538 +       for (bindex = au_dbtop(dentry); bindex >= btop; bindex--) {
32539 +               h_parent = au_h_dptr(parent, bindex);
32540 +               if (!h_parent || d_is_negative(h_parent))
32541 +                       continue;
32542 +
32543 +               if (!au_br_rdonly(au_sbr(sb, bindex))) {
32544 +                       err = bindex;
32545 +                       break;
32546 +               }
32547 +       }
32548 +       dput(parent);
32549 +
32550 +       /* bottom up here */
32551 +       if (unlikely(err < 0))
32552 +               err = au_wbr_bu(sb, btop - 1);
32553 +
32554 +       AuDbg("b%d\n", err);
32555 +       return err;
32556 +}
32557 +
32558 +/* bottom up */
32559 +int au_wbr_do_copyup_bu(struct dentry *dentry, aufs_bindex_t btop)
32560 +{
32561 +       int err;
32562 +
32563 +       err = au_wbr_bu(dentry->d_sb, btop);
32564 +       AuDbg("b%d\n", err);
32565 +       if (err > btop)
32566 +               err = au_wbr_nonopq(dentry, err);
32567 +
32568 +       AuDbg("b%d\n", err);
32569 +       return err;
32570 +}
32571 +
32572 +static int au_wbr_copyup_bu(struct dentry *dentry)
32573 +{
32574 +       int err;
32575 +       aufs_bindex_t btop;
32576 +
32577 +       btop = au_dbtop(dentry);
32578 +       err = au_wbr_do_copyup_bu(dentry, btop);
32579 +       return err;
32580 +}
32581 +
32582 +/* ---------------------------------------------------------------------- */
32583 +
32584 +struct au_wbr_copyup_operations au_wbr_copyup_ops[] = {
32585 +       [AuWbrCopyup_TDP] = {
32586 +               .copyup = au_wbr_copyup_tdp
32587 +       },
32588 +       [AuWbrCopyup_BUP] = {
32589 +               .copyup = au_wbr_copyup_bup
32590 +       },
32591 +       [AuWbrCopyup_BU] = {
32592 +               .copyup = au_wbr_copyup_bu
32593 +       }
32594 +};
32595 +
32596 +struct au_wbr_create_operations au_wbr_create_ops[] = {
32597 +       [AuWbrCreate_TDP] = {
32598 +               .create = au_wbr_create_tdp
32599 +       },
32600 +       [AuWbrCreate_RR] = {
32601 +               .create = au_wbr_create_rr,
32602 +               .init   = au_wbr_create_init_rr
32603 +       },
32604 +       [AuWbrCreate_MFS] = {
32605 +               .create = au_wbr_create_mfs,
32606 +               .init   = au_wbr_create_init_mfs,
32607 +               .fin    = au_wbr_create_fin_mfs
32608 +       },
32609 +       [AuWbrCreate_MFSV] = {
32610 +               .create = au_wbr_create_mfs,
32611 +               .init   = au_wbr_create_init_mfs,
32612 +               .fin    = au_wbr_create_fin_mfs
32613 +       },
32614 +       [AuWbrCreate_MFSRR] = {
32615 +               .create = au_wbr_create_mfsrr,
32616 +               .init   = au_wbr_create_init_mfsrr,
32617 +               .fin    = au_wbr_create_fin_mfs
32618 +       },
32619 +       [AuWbrCreate_MFSRRV] = {
32620 +               .create = au_wbr_create_mfsrr,
32621 +               .init   = au_wbr_create_init_mfsrr,
32622 +               .fin    = au_wbr_create_fin_mfs
32623 +       },
32624 +       [AuWbrCreate_TDMFS] = {
32625 +               .create = au_wbr_create_tdmfs,
32626 +               .init   = au_wbr_create_init_mfs,
32627 +               .fin    = au_wbr_create_fin_mfs
32628 +       },
32629 +       [AuWbrCreate_TDMFSV] = {
32630 +               .create = au_wbr_create_tdmfs,
32631 +               .init   = au_wbr_create_init_mfs,
32632 +               .fin    = au_wbr_create_fin_mfs
32633 +       },
32634 +       [AuWbrCreate_PMFS] = {
32635 +               .create = au_wbr_create_pmfs,
32636 +               .init   = au_wbr_create_init_mfs,
32637 +               .fin    = au_wbr_create_fin_mfs
32638 +       },
32639 +       [AuWbrCreate_PMFSV] = {
32640 +               .create = au_wbr_create_pmfs,
32641 +               .init   = au_wbr_create_init_mfs,
32642 +               .fin    = au_wbr_create_fin_mfs
32643 +       },
32644 +       [AuWbrCreate_PMFSRR] = {
32645 +               .create = au_wbr_create_pmfsrr,
32646 +               .init   = au_wbr_create_init_mfsrr,
32647 +               .fin    = au_wbr_create_fin_mfs
32648 +       },
32649 +       [AuWbrCreate_PMFSRRV] = {
32650 +               .create = au_wbr_create_pmfsrr,
32651 +               .init   = au_wbr_create_init_mfsrr,
32652 +               .fin    = au_wbr_create_fin_mfs
32653 +       }
32654 +};
32655 diff -urN /usr/share/empty/fs/aufs/whout.c linux/fs/aufs/whout.c
32656 --- /usr/share/empty/fs/aufs/whout.c    1970-01-01 01:00:00.000000000 +0100
32657 +++ linux/fs/aufs/whout.c       2016-12-17 12:28:17.598545045 +0100
32658 @@ -0,0 +1,1061 @@
32659 +/*
32660 + * Copyright (C) 2005-2016 Junjiro R. Okajima
32661 + *
32662 + * This program, aufs is free software; you can redistribute it and/or modify
32663 + * it under the terms of the GNU General Public License as published by
32664 + * the Free Software Foundation; either version 2 of the License, or
32665 + * (at your option) any later version.
32666 + *
32667 + * This program is distributed in the hope that it will be useful,
32668 + * but WITHOUT ANY WARRANTY; without even the implied warranty of
32669 + * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
32670 + * GNU General Public License for more details.
32671 + *
32672 + * You should have received a copy of the GNU General Public License
32673 + * along with this program.  If not, see <http://www.gnu.org/licenses/>.
32674 + */
32675 +
32676 +/*
32677 + * whiteout for logical deletion and opaque directory
32678 + */
32679 +
32680 +#include "aufs.h"
32681 +
32682 +#define WH_MASK                        S_IRUGO
32683 +
32684 +/*
32685 + * If a directory contains this file, then it is opaque.  We start with the
32686 + * .wh. flag so that it is blocked by lookup.
32687 + */
32688 +static struct qstr diropq_name = QSTR_INIT(AUFS_WH_DIROPQ,
32689 +                                          sizeof(AUFS_WH_DIROPQ) - 1);
32690 +
32691 +/*
32692 + * generate whiteout name, which is NOT terminated by NULL.
32693 + * @name: original d_name.name
32694 + * @len: original d_name.len
32695 + * @wh: whiteout qstr
32696 + * returns zero when succeeds, otherwise error.
32697 + * succeeded value as wh->name should be freed by kfree().
32698 + */
32699 +int au_wh_name_alloc(struct qstr *wh, const struct qstr *name)
32700 +{
32701 +       char *p;
32702 +
32703 +       if (unlikely(name->len > PATH_MAX - AUFS_WH_PFX_LEN))
32704 +               return -ENAMETOOLONG;
32705 +
32706 +       wh->len = name->len + AUFS_WH_PFX_LEN;
32707 +       p = kmalloc(wh->len, GFP_NOFS);
32708 +       wh->name = p;
32709 +       if (p) {
32710 +               memcpy(p, AUFS_WH_PFX, AUFS_WH_PFX_LEN);
32711 +               memcpy(p + AUFS_WH_PFX_LEN, name->name, name->len);
32712 +               /* smp_mb(); */
32713 +               return 0;
32714 +       }
32715 +       return -ENOMEM;
32716 +}
32717 +
32718 +/* ---------------------------------------------------------------------- */
32719 +
32720 +/*
32721 + * test if the @wh_name exists under @h_parent.
32722 + * @try_sio specifies the necessary of super-io.
32723 + */
32724 +int au_wh_test(struct dentry *h_parent, struct qstr *wh_name, int try_sio)
32725 +{
32726 +       int err;
32727 +       struct dentry *wh_dentry;
32728 +
32729 +       if (!try_sio)
32730 +               wh_dentry = vfsub_lkup_one(wh_name, h_parent);
32731 +       else
32732 +               wh_dentry = au_sio_lkup_one(wh_name, h_parent);
32733 +       err = PTR_ERR(wh_dentry);
32734 +       if (IS_ERR(wh_dentry)) {
32735 +               if (err == -ENAMETOOLONG)
32736 +                       err = 0;
32737 +               goto out;
32738 +       }
32739 +
32740 +       err = 0;
32741 +       if (d_is_negative(wh_dentry))
32742 +               goto out_wh; /* success */
32743 +
32744 +       err = 1;
32745 +       if (d_is_reg(wh_dentry))
32746 +               goto out_wh; /* success */
32747 +
32748 +       err = -EIO;
32749 +       AuIOErr("%pd Invalid whiteout entry type 0%o.\n",
32750 +               wh_dentry, d_inode(wh_dentry)->i_mode);
32751 +
32752 +out_wh:
32753 +       dput(wh_dentry);
32754 +out:
32755 +       return err;
32756 +}
32757 +
32758 +/*
32759 + * test if the @h_dentry sets opaque or not.
32760 + */
32761 +int au_diropq_test(struct dentry *h_dentry)
32762 +{
32763 +       int err;
32764 +       struct inode *h_dir;
32765 +
32766 +       h_dir = d_inode(h_dentry);
32767 +       err = au_wh_test(h_dentry, &diropq_name,
32768 +                        au_test_h_perm_sio(h_dir, MAY_EXEC));
32769 +       return err;
32770 +}
32771 +
32772 +/*
32773 + * returns a negative dentry whose name is unique and temporary.
32774 + */
32775 +struct dentry *au_whtmp_lkup(struct dentry *h_parent, struct au_branch *br,
32776 +                            struct qstr *prefix)
32777 +{
32778 +       struct dentry *dentry;
32779 +       int i;
32780 +       char defname[NAME_MAX - AUFS_MAX_NAMELEN + DNAME_INLINE_LEN + 1],
32781 +               *name, *p;
32782 +       /* strict atomic_t is unnecessary here */
32783 +       static unsigned short cnt;
32784 +       struct qstr qs;
32785 +
32786 +       BUILD_BUG_ON(sizeof(cnt) * 2 > AUFS_WH_TMP_LEN);
32787 +
32788 +       name = defname;
32789 +       qs.len = sizeof(defname) - DNAME_INLINE_LEN + prefix->len - 1;
32790 +       if (unlikely(prefix->len > DNAME_INLINE_LEN)) {
32791 +               dentry = ERR_PTR(-ENAMETOOLONG);
32792 +               if (unlikely(qs.len > NAME_MAX))
32793 +                       goto out;
32794 +               dentry = ERR_PTR(-ENOMEM);
32795 +               name = kmalloc(qs.len + 1, GFP_NOFS);
32796 +               if (unlikely(!name))
32797 +                       goto out;
32798 +       }
32799 +
32800 +       /* doubly whiteout-ed */
32801 +       memcpy(name, AUFS_WH_PFX AUFS_WH_PFX, AUFS_WH_PFX_LEN * 2);
32802 +       p = name + AUFS_WH_PFX_LEN * 2;
32803 +       memcpy(p, prefix->name, prefix->len);
32804 +       p += prefix->len;
32805 +       *p++ = '.';
32806 +       AuDebugOn(name + qs.len + 1 - p <= AUFS_WH_TMP_LEN);
32807 +
32808 +       qs.name = name;
32809 +       for (i = 0; i < 3; i++) {
32810 +               sprintf(p, "%.*x", AUFS_WH_TMP_LEN, cnt++);
32811 +               dentry = au_sio_lkup_one(&qs, h_parent);
32812 +               if (IS_ERR(dentry) || d_is_negative(dentry))
32813 +                       goto out_name;
32814 +               dput(dentry);
32815 +       }
32816 +       /* pr_warn("could not get random name\n"); */
32817 +       dentry = ERR_PTR(-EEXIST);
32818 +       AuDbg("%.*s\n", AuLNPair(&qs));
32819 +       BUG();
32820 +
32821 +out_name:
32822 +       if (name != defname)
32823 +               au_delayed_kfree(name);
32824 +out:
32825 +       AuTraceErrPtr(dentry);
32826 +       return dentry;
32827 +}
32828 +
32829 +/*
32830 + * rename the @h_dentry on @br to the whiteouted temporary name.
32831 + */
32832 +int au_whtmp_ren(struct dentry *h_dentry, struct au_branch *br)
32833 +{
32834 +       int err;
32835 +       struct path h_path = {
32836 +               .mnt = au_br_mnt(br)
32837 +       };
32838 +       struct inode *h_dir, *delegated;
32839 +       struct dentry *h_parent;
32840 +
32841 +       h_parent = h_dentry->d_parent; /* dir inode is locked */
32842 +       h_dir = d_inode(h_parent);
32843 +       IMustLock(h_dir);
32844 +
32845 +       h_path.dentry = au_whtmp_lkup(h_parent, br, &h_dentry->d_name);
32846 +       err = PTR_ERR(h_path.dentry);
32847 +       if (IS_ERR(h_path.dentry))
32848 +               goto out;
32849 +
32850 +       /* under the same dir, no need to lock_rename() */
32851 +       delegated = NULL;
32852 +       err = vfsub_rename(h_dir, h_dentry, h_dir, &h_path, &delegated,
32853 +                          /*flags*/0);
32854 +       AuTraceErr(err);
32855 +       if (unlikely(err == -EWOULDBLOCK)) {
32856 +               pr_warn("cannot retry for NFSv4 delegation"
32857 +                       " for an internal rename\n");
32858 +               iput(delegated);
32859 +       }
32860 +       dput(h_path.dentry);
32861 +
32862 +out:
32863 +       AuTraceErr(err);
32864 +       return err;
32865 +}
32866 +
32867 +/* ---------------------------------------------------------------------- */
32868 +/*
32869 + * functions for removing a whiteout
32870 + */
32871 +
32872 +static int do_unlink_wh(struct inode *h_dir, struct path *h_path)
32873 +{
32874 +       int err, force;
32875 +       struct inode *delegated;
32876 +
32877 +       /*
32878 +        * forces superio when the dir has a sticky bit.
32879 +        * this may be a violation of unix fs semantics.
32880 +        */
32881 +       force = (h_dir->i_mode & S_ISVTX)
32882 +               && !uid_eq(current_fsuid(), d_inode(h_path->dentry)->i_uid);
32883 +       delegated = NULL;
32884 +       err = vfsub_unlink(h_dir, h_path, &delegated, force);
32885 +       if (unlikely(err == -EWOULDBLOCK)) {
32886 +               pr_warn("cannot retry for NFSv4 delegation"
32887 +                       " for an internal unlink\n");
32888 +               iput(delegated);
32889 +       }
32890 +       return err;
32891 +}
32892 +
32893 +int au_wh_unlink_dentry(struct inode *h_dir, struct path *h_path,
32894 +                       struct dentry *dentry)
32895 +{
32896 +       int err;
32897 +
32898 +       err = do_unlink_wh(h_dir, h_path);
32899 +       if (!err && dentry)
32900 +               au_set_dbwh(dentry, -1);
32901 +
32902 +       return err;
32903 +}
32904 +
32905 +static int unlink_wh_name(struct dentry *h_parent, struct qstr *wh,
32906 +                         struct au_branch *br)
32907 +{
32908 +       int err;
32909 +       struct path h_path = {
32910 +               .mnt = au_br_mnt(br)
32911 +       };
32912 +
32913 +       err = 0;
32914 +       h_path.dentry = vfsub_lkup_one(wh, h_parent);
32915 +       if (IS_ERR(h_path.dentry))
32916 +               err = PTR_ERR(h_path.dentry);
32917 +       else {
32918 +               if (d_is_reg(h_path.dentry))
32919 +                       err = do_unlink_wh(d_inode(h_parent), &h_path);
32920 +               dput(h_path.dentry);
32921 +       }
32922 +
32923 +       return err;
32924 +}
32925 +
32926 +/* ---------------------------------------------------------------------- */
32927 +/*
32928 + * initialize/clean whiteout for a branch
32929 + */
32930 +
32931 +static void au_wh_clean(struct inode *h_dir, struct path *whpath,
32932 +                       const int isdir)
32933 +{
32934 +       int err;
32935 +       struct inode *delegated;
32936 +
32937 +       if (d_is_negative(whpath->dentry))
32938 +               return;
32939 +
32940 +       if (isdir)
32941 +               err = vfsub_rmdir(h_dir, whpath);
32942 +       else {
32943 +               delegated = NULL;
32944 +               err = vfsub_unlink(h_dir, whpath, &delegated, /*force*/0);
32945 +               if (unlikely(err == -EWOULDBLOCK)) {
32946 +                       pr_warn("cannot retry for NFSv4 delegation"
32947 +                               " for an internal unlink\n");
32948 +                       iput(delegated);
32949 +               }
32950 +       }
32951 +       if (unlikely(err))
32952 +               pr_warn("failed removing %pd (%d), ignored.\n",
32953 +                       whpath->dentry, err);
32954 +}
32955 +
32956 +static int test_linkable(struct dentry *h_root)
32957 +{
32958 +       struct inode *h_dir = d_inode(h_root);
32959 +
32960 +       if (h_dir->i_op->link)
32961 +               return 0;
32962 +
32963 +       pr_err("%pd (%s) doesn't support link(2), use noplink and rw+nolwh\n",
32964 +              h_root, au_sbtype(h_root->d_sb));
32965 +       return -ENOSYS;
32966 +}
32967 +
32968 +/* todo: should this mkdir be done in /sbin/mount.aufs helper? */
32969 +static int au_whdir(struct inode *h_dir, struct path *path)
32970 +{
32971 +       int err;
32972 +
32973 +       err = -EEXIST;
32974 +       if (d_is_negative(path->dentry)) {
32975 +               int mode = S_IRWXU;
32976 +
32977 +               if (au_test_nfs(path->dentry->d_sb))
32978 +                       mode |= S_IXUGO;
32979 +               err = vfsub_mkdir(h_dir, path, mode);
32980 +       } else if (d_is_dir(path->dentry))
32981 +               err = 0;
32982 +       else
32983 +               pr_err("unknown %pd exists\n", path->dentry);
32984 +
32985 +       return err;
32986 +}
32987 +
32988 +struct au_wh_base {
32989 +       const struct qstr *name;
32990 +       struct dentry *dentry;
32991 +};
32992 +
32993 +static void au_wh_init_ro(struct inode *h_dir, struct au_wh_base base[],
32994 +                         struct path *h_path)
32995 +{
32996 +       h_path->dentry = base[AuBrWh_BASE].dentry;
32997 +       au_wh_clean(h_dir, h_path, /*isdir*/0);
32998 +       h_path->dentry = base[AuBrWh_PLINK].dentry;
32999 +       au_wh_clean(h_dir, h_path, /*isdir*/1);
33000 +       h_path->dentry = base[AuBrWh_ORPH].dentry;
33001 +       au_wh_clean(h_dir, h_path, /*isdir*/1);
33002 +}
33003 +
33004 +/*
33005 + * returns tri-state,
33006 + * minus: error, caller should print the message
33007 + * zero: succuess
33008 + * plus: error, caller should NOT print the message
33009 + */
33010 +static int au_wh_init_rw_nolink(struct dentry *h_root, struct au_wbr *wbr,
33011 +                               int do_plink, struct au_wh_base base[],
33012 +                               struct path *h_path)
33013 +{
33014 +       int err;
33015 +       struct inode *h_dir;
33016 +
33017 +       h_dir = d_inode(h_root);
33018 +       h_path->dentry = base[AuBrWh_BASE].dentry;
33019 +       au_wh_clean(h_dir, h_path, /*isdir*/0);
33020 +       h_path->dentry = base[AuBrWh_PLINK].dentry;
33021 +       if (do_plink) {
33022 +               err = test_linkable(h_root);
33023 +               if (unlikely(err)) {
33024 +                       err = 1;
33025 +                       goto out;
33026 +               }
33027 +
33028 +               err = au_whdir(h_dir, h_path);
33029 +               if (unlikely(err))
33030 +                       goto out;
33031 +               wbr->wbr_plink = dget(base[AuBrWh_PLINK].dentry);
33032 +       } else
33033 +               au_wh_clean(h_dir, h_path, /*isdir*/1);
33034 +       h_path->dentry = base[AuBrWh_ORPH].dentry;
33035 +       err = au_whdir(h_dir, h_path);
33036 +       if (unlikely(err))
33037 +               goto out;
33038 +       wbr->wbr_orph = dget(base[AuBrWh_ORPH].dentry);
33039 +
33040 +out:
33041 +       return err;
33042 +}
33043 +
33044 +/*
33045 + * for the moment, aufs supports the branch filesystem which does not support
33046 + * link(2). testing on FAT which does not support i_op->setattr() fully either,
33047 + * copyup failed. finally, such filesystem will not be used as the writable
33048 + * branch.
33049 + *
33050 + * returns tri-state, see above.
33051 + */
33052 +static int au_wh_init_rw(struct dentry *h_root, struct au_wbr *wbr,
33053 +                        int do_plink, struct au_wh_base base[],
33054 +                        struct path *h_path)
33055 +{
33056 +       int err;
33057 +       struct inode *h_dir;
33058 +
33059 +       WbrWhMustWriteLock(wbr);
33060 +
33061 +       err = test_linkable(h_root);
33062 +       if (unlikely(err)) {
33063 +               err = 1;
33064 +               goto out;
33065 +       }
33066 +
33067 +       /*
33068 +        * todo: should this create be done in /sbin/mount.aufs helper?
33069 +        */
33070 +       err = -EEXIST;
33071 +       h_dir = d_inode(h_root);
33072 +       if (d_is_negative(base[AuBrWh_BASE].dentry)) {
33073 +               h_path->dentry = base[AuBrWh_BASE].dentry;
33074 +               err = vfsub_create(h_dir, h_path, WH_MASK, /*want_excl*/true);
33075 +       } else if (d_is_reg(base[AuBrWh_BASE].dentry))
33076 +               err = 0;
33077 +       else
33078 +               pr_err("unknown %pd2 exists\n", base[AuBrWh_BASE].dentry);
33079 +       if (unlikely(err))
33080 +               goto out;
33081 +
33082 +       h_path->dentry = base[AuBrWh_PLINK].dentry;
33083 +       if (do_plink) {
33084 +               err = au_whdir(h_dir, h_path);
33085 +               if (unlikely(err))
33086 +                       goto out;
33087 +               wbr->wbr_plink = dget(base[AuBrWh_PLINK].dentry);
33088 +       } else
33089 +               au_wh_clean(h_dir, h_path, /*isdir*/1);
33090 +       wbr->wbr_whbase = dget(base[AuBrWh_BASE].dentry);
33091 +
33092 +       h_path->dentry = base[AuBrWh_ORPH].dentry;
33093 +       err = au_whdir(h_dir, h_path);
33094 +       if (unlikely(err))
33095 +               goto out;
33096 +       wbr->wbr_orph = dget(base[AuBrWh_ORPH].dentry);
33097 +
33098 +out:
33099 +       return err;
33100 +}
33101 +
33102 +/*
33103 + * initialize the whiteout base file/dir for @br.
33104 + */
33105 +int au_wh_init(struct au_branch *br, struct super_block *sb)
33106 +{
33107 +       int err, i;
33108 +       const unsigned char do_plink
33109 +               = !!au_opt_test(au_mntflags(sb), PLINK);
33110 +       struct inode *h_dir;
33111 +       struct path path = br->br_path;
33112 +       struct dentry *h_root = path.dentry;
33113 +       struct au_wbr *wbr = br->br_wbr;
33114 +       static const struct qstr base_name[] = {
33115 +               [AuBrWh_BASE] = QSTR_INIT(AUFS_BASE_NAME,
33116 +                                         sizeof(AUFS_BASE_NAME) - 1),
33117 +               [AuBrWh_PLINK] = QSTR_INIT(AUFS_PLINKDIR_NAME,
33118 +                                          sizeof(AUFS_PLINKDIR_NAME) - 1),
33119 +               [AuBrWh_ORPH] = QSTR_INIT(AUFS_ORPHDIR_NAME,
33120 +                                         sizeof(AUFS_ORPHDIR_NAME) - 1)
33121 +       };
33122 +       struct au_wh_base base[] = {
33123 +               [AuBrWh_BASE] = {
33124 +                       .name   = base_name + AuBrWh_BASE,
33125 +                       .dentry = NULL
33126 +               },
33127 +               [AuBrWh_PLINK] = {
33128 +                       .name   = base_name + AuBrWh_PLINK,
33129 +                       .dentry = NULL
33130 +               },
33131 +               [AuBrWh_ORPH] = {
33132 +                       .name   = base_name + AuBrWh_ORPH,
33133 +                       .dentry = NULL
33134 +               }
33135 +       };
33136 +
33137 +       if (wbr)
33138 +               WbrWhMustWriteLock(wbr);
33139 +
33140 +       for (i = 0; i < AuBrWh_Last; i++) {
33141 +               /* doubly whiteouted */
33142 +               struct dentry *d;
33143 +
33144 +               d = au_wh_lkup(h_root, (void *)base[i].name, br);
33145 +               err = PTR_ERR(d);
33146 +               if (IS_ERR(d))
33147 +                       goto out;
33148 +
33149 +               base[i].dentry = d;
33150 +               AuDebugOn(wbr
33151 +                         && wbr->wbr_wh[i]
33152 +                         && wbr->wbr_wh[i] != base[i].dentry);
33153 +       }
33154 +
33155 +       if (wbr)
33156 +               for (i = 0; i < AuBrWh_Last; i++) {
33157 +                       dput(wbr->wbr_wh[i]);
33158 +                       wbr->wbr_wh[i] = NULL;
33159 +               }
33160 +
33161 +       err = 0;
33162 +       if (!au_br_writable(br->br_perm)) {
33163 +               h_dir = d_inode(h_root);
33164 +               au_wh_init_ro(h_dir, base, &path);
33165 +       } else if (!au_br_wh_linkable(br->br_perm)) {
33166 +               err = au_wh_init_rw_nolink(h_root, wbr, do_plink, base, &path);
33167 +               if (err > 0)
33168 +                       goto out;
33169 +               else if (err)
33170 +                       goto out_err;
33171 +       } else {
33172 +               err = au_wh_init_rw(h_root, wbr, do_plink, base, &path);
33173 +               if (err > 0)
33174 +                       goto out;
33175 +               else if (err)
33176 +                       goto out_err;
33177 +       }
33178 +       goto out; /* success */
33179 +
33180 +out_err:
33181 +       pr_err("an error(%d) on the writable branch %pd(%s)\n",
33182 +              err, h_root, au_sbtype(h_root->d_sb));
33183 +out:
33184 +       for (i = 0; i < AuBrWh_Last; i++)
33185 +               dput(base[i].dentry);
33186 +       return err;
33187 +}
33188 +
33189 +/* ---------------------------------------------------------------------- */
33190 +/*
33191 + * whiteouts are all hard-linked usually.
33192 + * when its link count reaches a ceiling, we create a new whiteout base
33193 + * asynchronously.
33194 + */
33195 +
33196 +struct reinit_br_wh {
33197 +       struct super_block *sb;
33198 +       struct au_branch *br;
33199 +};
33200 +
33201 +static void reinit_br_wh(void *arg)
33202 +{
33203 +       int err;
33204 +       aufs_bindex_t bindex;
33205 +       struct path h_path;
33206 +       struct reinit_br_wh *a = arg;
33207 +       struct au_wbr *wbr;
33208 +       struct inode *dir, *delegated;
33209 +       struct dentry *h_root;
33210 +       struct au_hinode *hdir;
33211 +
33212 +       err = 0;
33213 +       wbr = a->br->br_wbr;
33214 +       /* big aufs lock */
33215 +       si_noflush_write_lock(a->sb);
33216 +       if (!au_br_writable(a->br->br_perm))
33217 +               goto out;
33218 +       bindex = au_br_index(a->sb, a->br->br_id);
33219 +       if (unlikely(bindex < 0))
33220 +               goto out;
33221 +
33222 +       di_read_lock_parent(a->sb->s_root, AuLock_IR);
33223 +       dir = d_inode(a->sb->s_root);
33224 +       hdir = au_hi(dir, bindex);
33225 +       h_root = au_h_dptr(a->sb->s_root, bindex);
33226 +       AuDebugOn(h_root != au_br_dentry(a->br));
33227 +
33228 +       au_hn_inode_lock_nested(hdir, AuLsc_I_PARENT);
33229 +       wbr_wh_write_lock(wbr);
33230 +       err = au_h_verify(wbr->wbr_whbase, au_opt_udba(a->sb), hdir->hi_inode,
33231 +                         h_root, a->br);
33232 +       if (!err) {
33233 +               h_path.dentry = wbr->wbr_whbase;
33234 +               h_path.mnt = au_br_mnt(a->br);
33235 +               delegated = NULL;
33236 +               err = vfsub_unlink(hdir->hi_inode, &h_path, &delegated,
33237 +                                  /*force*/0);
33238 +               if (unlikely(err == -EWOULDBLOCK)) {
33239 +                       pr_warn("cannot retry for NFSv4 delegation"
33240 +                               " for an internal unlink\n");
33241 +                       iput(delegated);
33242 +               }
33243 +       } else {
33244 +               pr_warn("%pd is moved, ignored\n", wbr->wbr_whbase);
33245 +               err = 0;
33246 +       }
33247 +       dput(wbr->wbr_whbase);
33248 +       wbr->wbr_whbase = NULL;
33249 +       if (!err)
33250 +               err = au_wh_init(a->br, a->sb);
33251 +       wbr_wh_write_unlock(wbr);
33252 +       au_hn_inode_unlock(hdir);
33253 +       di_read_unlock(a->sb->s_root, AuLock_IR);
33254 +       if (!err)
33255 +               au_fhsm_wrote(a->sb, bindex, /*force*/0);
33256 +
33257 +out:
33258 +       if (wbr)
33259 +               atomic_dec(&wbr->wbr_wh_running);
33260 +       au_br_put(a->br);
33261 +       si_write_unlock(a->sb);
33262 +       au_nwt_done(&au_sbi(a->sb)->si_nowait);
33263 +       au_delayed_kfree(arg);
33264 +       if (unlikely(err))
33265 +               AuIOErr("err %d\n", err);
33266 +}
33267 +
33268 +static void kick_reinit_br_wh(struct super_block *sb, struct au_branch *br)
33269 +{
33270 +       int do_dec, wkq_err;
33271 +       struct reinit_br_wh *arg;
33272 +
33273 +       do_dec = 1;
33274 +       if (atomic_inc_return(&br->br_wbr->wbr_wh_running) != 1)
33275 +               goto out;
33276 +
33277 +       /* ignore ENOMEM */
33278 +       arg = kmalloc(sizeof(*arg), GFP_NOFS);
33279 +       if (arg) {
33280 +               /*
33281 +                * dec(wh_running), kfree(arg) and dec(br_count)
33282 +                * in reinit function
33283 +                */
33284 +               arg->sb = sb;
33285 +               arg->br = br;
33286 +               au_br_get(br);
33287 +               wkq_err = au_wkq_nowait(reinit_br_wh, arg, sb, /*flags*/0);
33288 +               if (unlikely(wkq_err)) {
33289 +                       atomic_dec(&br->br_wbr->wbr_wh_running);
33290 +                       au_br_put(br);
33291 +                       au_delayed_kfree(arg);
33292 +               }
33293 +               do_dec = 0;
33294 +       }
33295 +
33296 +out:
33297 +       if (do_dec)
33298 +               atomic_dec(&br->br_wbr->wbr_wh_running);
33299 +}
33300 +
33301 +/* ---------------------------------------------------------------------- */
33302 +
33303 +/*
33304 + * create the whiteout @wh.
33305 + */
33306 +static int link_or_create_wh(struct super_block *sb, aufs_bindex_t bindex,
33307 +                            struct dentry *wh)
33308 +{
33309 +       int err;
33310 +       struct path h_path = {
33311 +               .dentry = wh
33312 +       };
33313 +       struct au_branch *br;
33314 +       struct au_wbr *wbr;
33315 +       struct dentry *h_parent;
33316 +       struct inode *h_dir, *delegated;
33317 +
33318 +       h_parent = wh->d_parent; /* dir inode is locked */
33319 +       h_dir = d_inode(h_parent);
33320 +       IMustLock(h_dir);
33321 +
33322 +       br = au_sbr(sb, bindex);
33323 +       h_path.mnt = au_br_mnt(br);
33324 +       wbr = br->br_wbr;
33325 +       wbr_wh_read_lock(wbr);
33326 +       if (wbr->wbr_whbase) {
33327 +               delegated = NULL;
33328 +               err = vfsub_link(wbr->wbr_whbase, h_dir, &h_path, &delegated);
33329 +               if (unlikely(err == -EWOULDBLOCK)) {
33330 +                       pr_warn("cannot retry for NFSv4 delegation"
33331 +                               " for an internal link\n");
33332 +                       iput(delegated);
33333 +               }
33334 +               if (!err || err != -EMLINK)
33335 +                       goto out;
33336 +
33337 +               /* link count full. re-initialize br_whbase. */
33338 +               kick_reinit_br_wh(sb, br);
33339 +       }
33340 +
33341 +       /* return this error in this context */
33342 +       err = vfsub_create(h_dir, &h_path, WH_MASK, /*want_excl*/true);
33343 +       if (!err)
33344 +               au_fhsm_wrote(sb, bindex, /*force*/0);
33345 +
33346 +out:
33347 +       wbr_wh_read_unlock(wbr);
33348 +       return err;
33349 +}
33350 +
33351 +/* ---------------------------------------------------------------------- */
33352 +
33353 +/*
33354 + * create or remove the diropq.
33355 + */
33356 +static struct dentry *do_diropq(struct dentry *dentry, aufs_bindex_t bindex,
33357 +                               unsigned int flags)
33358 +{
33359 +       struct dentry *opq_dentry, *h_dentry;
33360 +       struct super_block *sb;
33361 +       struct au_branch *br;
33362 +       int err;
33363 +
33364 +       sb = dentry->d_sb;
33365 +       br = au_sbr(sb, bindex);
33366 +       h_dentry = au_h_dptr(dentry, bindex);
33367 +       opq_dentry = vfsub_lkup_one(&diropq_name, h_dentry);
33368 +       if (IS_ERR(opq_dentry))
33369 +               goto out;
33370 +
33371 +       if (au_ftest_diropq(flags, CREATE)) {
33372 +               err = link_or_create_wh(sb, bindex, opq_dentry);
33373 +               if (!err) {
33374 +                       au_set_dbdiropq(dentry, bindex);
33375 +                       goto out; /* success */
33376 +               }
33377 +       } else {
33378 +               struct path tmp = {
33379 +                       .dentry = opq_dentry,
33380 +                       .mnt    = au_br_mnt(br)
33381 +               };
33382 +               err = do_unlink_wh(au_h_iptr(d_inode(dentry), bindex), &tmp);
33383 +               if (!err)
33384 +                       au_set_dbdiropq(dentry, -1);
33385 +       }
33386 +       dput(opq_dentry);
33387 +       opq_dentry = ERR_PTR(err);
33388 +
33389 +out:
33390 +       return opq_dentry;
33391 +}
33392 +
33393 +struct do_diropq_args {
33394 +       struct dentry **errp;
33395 +       struct dentry *dentry;
33396 +       aufs_bindex_t bindex;
33397 +       unsigned int flags;
33398 +};
33399 +
33400 +static void call_do_diropq(void *args)
33401 +{
33402 +       struct do_diropq_args *a = args;
33403 +       *a->errp = do_diropq(a->dentry, a->bindex, a->flags);
33404 +}
33405 +
33406 +struct dentry *au_diropq_sio(struct dentry *dentry, aufs_bindex_t bindex,
33407 +                            unsigned int flags)
33408 +{
33409 +       struct dentry *diropq, *h_dentry;
33410 +
33411 +       h_dentry = au_h_dptr(dentry, bindex);
33412 +       if (!au_test_h_perm_sio(d_inode(h_dentry), MAY_EXEC | MAY_WRITE))
33413 +               diropq = do_diropq(dentry, bindex, flags);
33414 +       else {
33415 +               int wkq_err;
33416 +               struct do_diropq_args args = {
33417 +                       .errp           = &diropq,
33418 +                       .dentry         = dentry,
33419 +                       .bindex         = bindex,
33420 +                       .flags          = flags
33421 +               };
33422 +
33423 +               wkq_err = au_wkq_wait(call_do_diropq, &args);
33424 +               if (unlikely(wkq_err))
33425 +                       diropq = ERR_PTR(wkq_err);
33426 +       }
33427 +
33428 +       return diropq;
33429 +}
33430 +
33431 +/* ---------------------------------------------------------------------- */
33432 +
33433 +/*
33434 + * lookup whiteout dentry.
33435 + * @h_parent: lower parent dentry which must exist and be locked
33436 + * @base_name: name of dentry which will be whiteouted
33437 + * returns dentry for whiteout.
33438 + */
33439 +struct dentry *au_wh_lkup(struct dentry *h_parent, struct qstr *base_name,
33440 +                         struct au_branch *br)
33441 +{
33442 +       int err;
33443 +       struct qstr wh_name;
33444 +       struct dentry *wh_dentry;
33445 +
33446 +       err = au_wh_name_alloc(&wh_name, base_name);
33447 +       wh_dentry = ERR_PTR(err);
33448 +       if (!err) {
33449 +               wh_dentry = vfsub_lkup_one(&wh_name, h_parent);
33450 +               au_delayed_kfree(wh_name.name);
33451 +       }
33452 +       return wh_dentry;
33453 +}
33454 +
33455 +/*
33456 + * link/create a whiteout for @dentry on @bindex.
33457 + */
33458 +struct dentry *au_wh_create(struct dentry *dentry, aufs_bindex_t bindex,
33459 +                           struct dentry *h_parent)
33460 +{
33461 +       struct dentry *wh_dentry;
33462 +       struct super_block *sb;
33463 +       int err;
33464 +
33465 +       sb = dentry->d_sb;
33466 +       wh_dentry = au_wh_lkup(h_parent, &dentry->d_name, au_sbr(sb, bindex));
33467 +       if (!IS_ERR(wh_dentry) && d_is_negative(wh_dentry)) {
33468 +               err = link_or_create_wh(sb, bindex, wh_dentry);
33469 +               if (!err) {
33470 +                       au_set_dbwh(dentry, bindex);
33471 +                       au_fhsm_wrote(sb, bindex, /*force*/0);
33472 +               } else {
33473 +                       dput(wh_dentry);
33474 +                       wh_dentry = ERR_PTR(err);
33475 +               }
33476 +       }
33477 +
33478 +       return wh_dentry;
33479 +}
33480 +
33481 +/* ---------------------------------------------------------------------- */
33482 +
33483 +/* Delete all whiteouts in this directory on branch bindex. */
33484 +static int del_wh_children(struct dentry *h_dentry, struct au_nhash *whlist,
33485 +                          aufs_bindex_t bindex, struct au_branch *br)
33486 +{
33487 +       int err;
33488 +       unsigned long ul, n;
33489 +       struct qstr wh_name;
33490 +       char *p;
33491 +       struct hlist_head *head;
33492 +       struct au_vdir_wh *pos;
33493 +       struct au_vdir_destr *str;
33494 +
33495 +       err = -ENOMEM;
33496 +       p = (void *)__get_free_page(GFP_NOFS);
33497 +       wh_name.name = p;
33498 +       if (unlikely(!wh_name.name))
33499 +               goto out;
33500 +
33501 +       err = 0;
33502 +       memcpy(p, AUFS_WH_PFX, AUFS_WH_PFX_LEN);
33503 +       p += AUFS_WH_PFX_LEN;
33504 +       n = whlist->nh_num;
33505 +       head = whlist->nh_head;
33506 +       for (ul = 0; !err && ul < n; ul++, head++) {
33507 +               hlist_for_each_entry(pos, head, wh_hash) {
33508 +                       if (pos->wh_bindex != bindex)
33509 +                               continue;
33510 +
33511 +                       str = &pos->wh_str;
33512 +                       if (str->len + AUFS_WH_PFX_LEN <= PATH_MAX) {
33513 +                               memcpy(p, str->name, str->len);
33514 +                               wh_name.len = AUFS_WH_PFX_LEN + str->len;
33515 +                               err = unlink_wh_name(h_dentry, &wh_name, br);
33516 +                               if (!err)
33517 +                                       continue;
33518 +                               break;
33519 +                       }
33520 +                       AuIOErr("whiteout name too long %.*s\n",
33521 +                               str->len, str->name);
33522 +                       err = -EIO;
33523 +                       break;
33524 +               }
33525 +       }
33526 +       au_delayed_free_page((unsigned long)wh_name.name);
33527 +
33528 +out:
33529 +       return err;
33530 +}
33531 +
33532 +struct del_wh_children_args {
33533 +       int *errp;
33534 +       struct dentry *h_dentry;
33535 +       struct au_nhash *whlist;
33536 +       aufs_bindex_t bindex;
33537 +       struct au_branch *br;
33538 +};
33539 +
33540 +static void call_del_wh_children(void *args)
33541 +{
33542 +       struct del_wh_children_args *a = args;
33543 +       *a->errp = del_wh_children(a->h_dentry, a->whlist, a->bindex, a->br);
33544 +}
33545 +
33546 +/* ---------------------------------------------------------------------- */
33547 +
33548 +struct au_whtmp_rmdir *au_whtmp_rmdir_alloc(struct super_block *sb, gfp_t gfp)
33549 +{
33550 +       struct au_whtmp_rmdir *whtmp;
33551 +       int err;
33552 +       unsigned int rdhash;
33553 +
33554 +       SiMustAnyLock(sb);
33555 +
33556 +       whtmp = kzalloc(sizeof(*whtmp), gfp);
33557 +       if (unlikely(!whtmp)) {
33558 +               whtmp = ERR_PTR(-ENOMEM);
33559 +               goto out;
33560 +       }
33561 +
33562 +       /* no estimation for dir size */
33563 +       rdhash = au_sbi(sb)->si_rdhash;
33564 +       if (!rdhash)
33565 +               rdhash = AUFS_RDHASH_DEF;
33566 +       err = au_nhash_alloc(&whtmp->whlist, rdhash, gfp);
33567 +       if (unlikely(err)) {
33568 +               au_delayed_kfree(whtmp);
33569 +               whtmp = ERR_PTR(err);
33570 +       }
33571 +
33572 +out:
33573 +       return whtmp;
33574 +}
33575 +
33576 +void au_whtmp_rmdir_free(struct au_whtmp_rmdir *whtmp)
33577 +{
33578 +       if (whtmp->br)
33579 +               au_br_put(whtmp->br);
33580 +       dput(whtmp->wh_dentry);
33581 +       iput(whtmp->dir);
33582 +       au_nhash_wh_free(&whtmp->whlist);
33583 +       au_delayed_kfree(whtmp);
33584 +}
33585 +
33586 +/*
33587 + * rmdir the whiteouted temporary named dir @h_dentry.
33588 + * @whlist: whiteouted children.
33589 + */
33590 +int au_whtmp_rmdir(struct inode *dir, aufs_bindex_t bindex,
33591 +                  struct dentry *wh_dentry, struct au_nhash *whlist)
33592 +{
33593 +       int err;
33594 +       unsigned int h_nlink;
33595 +       struct path h_tmp;
33596 +       struct inode *wh_inode, *h_dir;
33597 +       struct au_branch *br;
33598 +
33599 +       h_dir = d_inode(wh_dentry->d_parent); /* dir inode is locked */
33600 +       IMustLock(h_dir);
33601 +
33602 +       br = au_sbr(dir->i_sb, bindex);
33603 +       wh_inode = d_inode(wh_dentry);
33604 +       inode_lock_nested(wh_inode, AuLsc_I_CHILD);
33605 +
33606 +       /*
33607 +        * someone else might change some whiteouts while we were sleeping.
33608 +        * it means this whlist may have an obsoleted entry.
33609 +        */
33610 +       if (!au_test_h_perm_sio(wh_inode, MAY_EXEC | MAY_WRITE))
33611 +               err = del_wh_children(wh_dentry, whlist, bindex, br);
33612 +       else {
33613 +               int wkq_err;
33614 +               struct del_wh_children_args args = {
33615 +                       .errp           = &err,
33616 +                       .h_dentry       = wh_dentry,
33617 +                       .whlist         = whlist,
33618 +                       .bindex         = bindex,
33619 +                       .br             = br
33620 +               };
33621 +
33622 +               wkq_err = au_wkq_wait(call_del_wh_children, &args);
33623 +               if (unlikely(wkq_err))
33624 +                       err = wkq_err;
33625 +       }
33626 +       inode_unlock(wh_inode);
33627 +
33628 +       if (!err) {
33629 +               h_tmp.dentry = wh_dentry;
33630 +               h_tmp.mnt = au_br_mnt(br);
33631 +               h_nlink = h_dir->i_nlink;
33632 +               err = vfsub_rmdir(h_dir, &h_tmp);
33633 +               /* some fs doesn't change the parent nlink in some cases */
33634 +               h_nlink -= h_dir->i_nlink;
33635 +       }
33636 +
33637 +       if (!err) {
33638 +               if (au_ibtop(dir) == bindex) {
33639 +                       /* todo: dir->i_mutex is necessary */
33640 +                       au_cpup_attr_timesizes(dir);
33641 +                       if (h_nlink)
33642 +                               vfsub_drop_nlink(dir);
33643 +               }
33644 +               return 0; /* success */
33645 +       }
33646 +
33647 +       pr_warn("failed removing %pd(%d), ignored\n", wh_dentry, err);
33648 +       return err;
33649 +}
33650 +
33651 +static void call_rmdir_whtmp(void *args)
33652 +{
33653 +       int err;
33654 +       aufs_bindex_t bindex;
33655 +       struct au_whtmp_rmdir *a = args;
33656 +       struct super_block *sb;
33657 +       struct dentry *h_parent;
33658 +       struct inode *h_dir;
33659 +       struct au_hinode *hdir;
33660 +
33661 +       /* rmdir by nfsd may cause deadlock with this i_mutex */
33662 +       /* inode_lock(a->dir); */
33663 +       err = -EROFS;
33664 +       sb = a->dir->i_sb;
33665 +       si_read_lock(sb, !AuLock_FLUSH);
33666 +       if (!au_br_writable(a->br->br_perm))
33667 +               goto out;
33668 +       bindex = au_br_index(sb, a->br->br_id);
33669 +       if (unlikely(bindex < 0))
33670 +               goto out;
33671 +
33672 +       err = -EIO;
33673 +       ii_write_lock_parent(a->dir);
33674 +       h_parent = dget_parent(a->wh_dentry);
33675 +       h_dir = d_inode(h_parent);
33676 +       hdir = au_hi(a->dir, bindex);
33677 +       err = vfsub_mnt_want_write(au_br_mnt(a->br));
33678 +       if (unlikely(err))
33679 +               goto out_mnt;
33680 +       au_hn_inode_lock_nested(hdir, AuLsc_I_PARENT);
33681 +       err = au_h_verify(a->wh_dentry, au_opt_udba(sb), h_dir, h_parent,
33682 +                         a->br);
33683 +       if (!err)
33684 +               err = au_whtmp_rmdir(a->dir, bindex, a->wh_dentry, &a->whlist);
33685 +       au_hn_inode_unlock(hdir);
33686 +       vfsub_mnt_drop_write(au_br_mnt(a->br));
33687 +
33688 +out_mnt:
33689 +       dput(h_parent);
33690 +       ii_write_unlock(a->dir);
33691 +out:
33692 +       /* inode_unlock(a->dir); */
33693 +       au_whtmp_rmdir_free(a);
33694 +       si_read_unlock(sb);
33695 +       au_nwt_done(&au_sbi(sb)->si_nowait);
33696 +       if (unlikely(err))
33697 +               AuIOErr("err %d\n", err);
33698 +}
33699 +
33700 +void au_whtmp_kick_rmdir(struct inode *dir, aufs_bindex_t bindex,
33701 +                        struct dentry *wh_dentry, struct au_whtmp_rmdir *args)
33702 +{
33703 +       int wkq_err;
33704 +       struct super_block *sb;
33705 +
33706 +       IMustLock(dir);
33707 +
33708 +       /* all post-process will be done in do_rmdir_whtmp(). */
33709 +       sb = dir->i_sb;
33710 +       args->dir = au_igrab(dir);
33711 +       args->br = au_sbr(sb, bindex);
33712 +       au_br_get(args->br);
33713 +       args->wh_dentry = dget(wh_dentry);
33714 +       wkq_err = au_wkq_nowait(call_rmdir_whtmp, args, sb, /*flags*/0);
33715 +       if (unlikely(wkq_err)) {
33716 +               pr_warn("rmdir error %pd (%d), ignored\n", wh_dentry, wkq_err);
33717 +               au_whtmp_rmdir_free(args);
33718 +       }
33719 +}
33720 diff -urN /usr/share/empty/fs/aufs/whout.h linux/fs/aufs/whout.h
33721 --- /usr/share/empty/fs/aufs/whout.h    1970-01-01 01:00:00.000000000 +0100
33722 +++ linux/fs/aufs/whout.h       2016-10-09 16:55:36.496035060 +0200
33723 @@ -0,0 +1,85 @@
33724 +/*
33725 + * Copyright (C) 2005-2016 Junjiro R. Okajima
33726 + *
33727 + * This program, aufs is free software; you can redistribute it and/or modify
33728 + * it under the terms of the GNU General Public License as published by
33729 + * the Free Software Foundation; either version 2 of the License, or
33730 + * (at your option) any later version.
33731 + *
33732 + * This program is distributed in the hope that it will be useful,
33733 + * but WITHOUT ANY WARRANTY; without even the implied warranty of
33734 + * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
33735 + * GNU General Public License for more details.
33736 + *
33737 + * You should have received a copy of the GNU General Public License
33738 + * along with this program.  If not, see <http://www.gnu.org/licenses/>.
33739 + */
33740 +
33741 +/*
33742 + * whiteout for logical deletion and opaque directory
33743 + */
33744 +
33745 +#ifndef __AUFS_WHOUT_H__
33746 +#define __AUFS_WHOUT_H__
33747 +
33748 +#ifdef __KERNEL__
33749 +
33750 +#include "dir.h"
33751 +
33752 +/* whout.c */
33753 +int au_wh_name_alloc(struct qstr *wh, const struct qstr *name);
33754 +int au_wh_test(struct dentry *h_parent, struct qstr *wh_name, int try_sio);
33755 +int au_diropq_test(struct dentry *h_dentry);
33756 +struct au_branch;
33757 +struct dentry *au_whtmp_lkup(struct dentry *h_parent, struct au_branch *br,
33758 +                            struct qstr *prefix);
33759 +int au_whtmp_ren(struct dentry *h_dentry, struct au_branch *br);
33760 +int au_wh_unlink_dentry(struct inode *h_dir, struct path *h_path,
33761 +                       struct dentry *dentry);
33762 +int au_wh_init(struct au_branch *br, struct super_block *sb);
33763 +
33764 +/* diropq flags */
33765 +#define AuDiropq_CREATE        1
33766 +#define au_ftest_diropq(flags, name)   ((flags) & AuDiropq_##name)
33767 +#define au_fset_diropq(flags, name) \
33768 +       do { (flags) |= AuDiropq_##name; } while (0)
33769 +#define au_fclr_diropq(flags, name) \
33770 +       do { (flags) &= ~AuDiropq_##name; } while (0)
33771 +
33772 +struct dentry *au_diropq_sio(struct dentry *dentry, aufs_bindex_t bindex,
33773 +                            unsigned int flags);
33774 +struct dentry *au_wh_lkup(struct dentry *h_parent, struct qstr *base_name,
33775 +                         struct au_branch *br);
33776 +struct dentry *au_wh_create(struct dentry *dentry, aufs_bindex_t bindex,
33777 +                           struct dentry *h_parent);
33778 +
33779 +/* real rmdir for the whiteout-ed dir */
33780 +struct au_whtmp_rmdir {
33781 +       struct inode *dir;
33782 +       struct au_branch *br;
33783 +       struct dentry *wh_dentry;
33784 +       struct au_nhash whlist;
33785 +};
33786 +
33787 +struct au_whtmp_rmdir *au_whtmp_rmdir_alloc(struct super_block *sb, gfp_t gfp);
33788 +void au_whtmp_rmdir_free(struct au_whtmp_rmdir *whtmp);
33789 +int au_whtmp_rmdir(struct inode *dir, aufs_bindex_t bindex,
33790 +                  struct dentry *wh_dentry, struct au_nhash *whlist);
33791 +void au_whtmp_kick_rmdir(struct inode *dir, aufs_bindex_t bindex,
33792 +                        struct dentry *wh_dentry, struct au_whtmp_rmdir *args);
33793 +
33794 +/* ---------------------------------------------------------------------- */
33795 +
33796 +static inline struct dentry *au_diropq_create(struct dentry *dentry,
33797 +                                             aufs_bindex_t bindex)
33798 +{
33799 +       return au_diropq_sio(dentry, bindex, AuDiropq_CREATE);
33800 +}
33801 +
33802 +static inline int au_diropq_remove(struct dentry *dentry, aufs_bindex_t bindex)
33803 +{
33804 +       return PTR_ERR(au_diropq_sio(dentry, bindex, !AuDiropq_CREATE));
33805 +}
33806 +
33807 +#endif /* __KERNEL__ */
33808 +#endif /* __AUFS_WHOUT_H__ */
33809 diff -urN /usr/share/empty/fs/aufs/wkq.c linux/fs/aufs/wkq.c
33810 --- /usr/share/empty/fs/aufs/wkq.c      1970-01-01 01:00:00.000000000 +0100
33811 +++ linux/fs/aufs/wkq.c 2016-10-09 16:55:36.496035060 +0200
33812 @@ -0,0 +1,213 @@
33813 +/*
33814 + * Copyright (C) 2005-2016 Junjiro R. Okajima
33815 + *
33816 + * This program, aufs is free software; you can redistribute it and/or modify
33817 + * it under the terms of the GNU General Public License as published by
33818 + * the Free Software Foundation; either version 2 of the License, or
33819 + * (at your option) any later version.
33820 + *
33821 + * This program is distributed in the hope that it will be useful,
33822 + * but WITHOUT ANY WARRANTY; without even the implied warranty of
33823 + * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
33824 + * GNU General Public License for more details.
33825 + *
33826 + * You should have received a copy of the GNU General Public License
33827 + * along with this program.  If not, see <http://www.gnu.org/licenses/>.
33828 + */
33829 +
33830 +/*
33831 + * workqueue for asynchronous/super-io operations
33832 + * todo: try new dredential scheme
33833 + */
33834 +
33835 +#include <linux/module.h>
33836 +#include "aufs.h"
33837 +
33838 +/* internal workqueue named AUFS_WKQ_NAME */
33839 +
33840 +static struct workqueue_struct *au_wkq;
33841 +
33842 +struct au_wkinfo {
33843 +       struct work_struct wk;
33844 +       struct kobject *kobj;
33845 +
33846 +       unsigned int flags; /* see wkq.h */
33847 +
33848 +       au_wkq_func_t func;
33849 +       void *args;
33850 +
33851 +       struct completion *comp;
33852 +};
33853 +
33854 +/* ---------------------------------------------------------------------- */
33855 +
33856 +static void wkq_func(struct work_struct *wk)
33857 +{
33858 +       struct au_wkinfo *wkinfo = container_of(wk, struct au_wkinfo, wk);
33859 +
33860 +       AuDebugOn(!uid_eq(current_fsuid(), GLOBAL_ROOT_UID));
33861 +       AuDebugOn(rlimit(RLIMIT_FSIZE) != RLIM_INFINITY);
33862 +
33863 +       wkinfo->func(wkinfo->args);
33864 +       if (au_ftest_wkq(wkinfo->flags, WAIT))
33865 +               complete(wkinfo->comp);
33866 +       else {
33867 +               kobject_put(wkinfo->kobj);
33868 +               module_put(THIS_MODULE); /* todo: ?? */
33869 +               au_delayed_kfree(wkinfo);
33870 +       }
33871 +}
33872 +
33873 +/*
33874 + * Since struct completion is large, try allocating it dynamically.
33875 + */
33876 +#if 1 /* defined(CONFIG_4KSTACKS) || defined(AuTest4KSTACKS) */
33877 +#define AuWkqCompDeclare(name) struct completion *comp = NULL
33878 +
33879 +static int au_wkq_comp_alloc(struct au_wkinfo *wkinfo, struct completion **comp)
33880 +{
33881 +       *comp = kmalloc(sizeof(**comp), GFP_NOFS);
33882 +       if (*comp) {
33883 +               init_completion(*comp);
33884 +               wkinfo->comp = *comp;
33885 +               return 0;
33886 +       }
33887 +       return -ENOMEM;
33888 +}
33889 +
33890 +static void au_wkq_comp_free(struct completion *comp)
33891 +{
33892 +       au_delayed_kfree(comp);
33893 +}
33894 +
33895 +#else
33896 +
33897 +/* no braces */
33898 +#define AuWkqCompDeclare(name) \
33899 +       DECLARE_COMPLETION_ONSTACK(_ ## name); \
33900 +       struct completion *comp = &_ ## name
33901 +
33902 +static int au_wkq_comp_alloc(struct au_wkinfo *wkinfo, struct completion **comp)
33903 +{
33904 +       wkinfo->comp = *comp;
33905 +       return 0;
33906 +}
33907 +
33908 +static void au_wkq_comp_free(struct completion *comp __maybe_unused)
33909 +{
33910 +       /* empty */
33911 +}
33912 +#endif /* 4KSTACKS */
33913 +
33914 +static void au_wkq_run(struct au_wkinfo *wkinfo)
33915 +{
33916 +       if (au_ftest_wkq(wkinfo->flags, NEST)) {
33917 +               if (au_wkq_test()) {
33918 +                       AuWarn1("wkq from wkq, unless silly-rename on NFS,"
33919 +                               " due to a dead dir by UDBA?\n");
33920 +                       AuDebugOn(au_ftest_wkq(wkinfo->flags, WAIT));
33921 +               }
33922 +       } else
33923 +               au_dbg_verify_kthread();
33924 +
33925 +       if (au_ftest_wkq(wkinfo->flags, WAIT)) {
33926 +               INIT_WORK_ONSTACK(&wkinfo->wk, wkq_func);
33927 +               queue_work(au_wkq, &wkinfo->wk);
33928 +       } else {
33929 +               INIT_WORK(&wkinfo->wk, wkq_func);
33930 +               schedule_work(&wkinfo->wk);
33931 +       }
33932 +}
33933 +
33934 +/*
33935 + * Be careful. It is easy to make deadlock happen.
33936 + * processA: lock, wkq and wait
33937 + * processB: wkq and wait, lock in wkq
33938 + * --> deadlock
33939 + */
33940 +int au_wkq_do_wait(unsigned int flags, au_wkq_func_t func, void *args)
33941 +{
33942 +       int err;
33943 +       AuWkqCompDeclare(comp);
33944 +       struct au_wkinfo wkinfo = {
33945 +               .flags  = flags,
33946 +               .func   = func,
33947 +               .args   = args
33948 +       };
33949 +
33950 +       err = au_wkq_comp_alloc(&wkinfo, &comp);
33951 +       if (!err) {
33952 +               au_wkq_run(&wkinfo);
33953 +               /* no timeout, no interrupt */
33954 +               wait_for_completion(wkinfo.comp);
33955 +               au_wkq_comp_free(comp);
33956 +               destroy_work_on_stack(&wkinfo.wk);
33957 +       }
33958 +
33959 +       return err;
33960 +
33961 +}
33962 +
33963 +/*
33964 + * Note: dget/dput() in func for aufs dentries are not supported. It will be a
33965 + * problem in a concurrent umounting.
33966 + */
33967 +int au_wkq_nowait(au_wkq_func_t func, void *args, struct super_block *sb,
33968 +                 unsigned int flags)
33969 +{
33970 +       int err;
33971 +       struct au_wkinfo *wkinfo;
33972 +
33973 +       atomic_inc(&au_sbi(sb)->si_nowait.nw_len);
33974 +
33975 +       /*
33976 +        * wkq_func() must free this wkinfo.
33977 +        * it highly depends upon the implementation of workqueue.
33978 +        */
33979 +       err = 0;
33980 +       wkinfo = kmalloc(sizeof(*wkinfo), GFP_NOFS);
33981 +       if (wkinfo) {
33982 +               wkinfo->kobj = &au_sbi(sb)->si_kobj;
33983 +               wkinfo->flags = flags & ~AuWkq_WAIT;
33984 +               wkinfo->func = func;
33985 +               wkinfo->args = args;
33986 +               wkinfo->comp = NULL;
33987 +               kobject_get(wkinfo->kobj);
33988 +               __module_get(THIS_MODULE); /* todo: ?? */
33989 +
33990 +               au_wkq_run(wkinfo);
33991 +       } else {
33992 +               err = -ENOMEM;
33993 +               au_nwt_done(&au_sbi(sb)->si_nowait);
33994 +       }
33995 +
33996 +       return err;
33997 +}
33998 +
33999 +/* ---------------------------------------------------------------------- */
34000 +
34001 +void au_nwt_init(struct au_nowait_tasks *nwt)
34002 +{
34003 +       atomic_set(&nwt->nw_len, 0);
34004 +       /* smp_mb(); */ /* atomic_set */
34005 +       init_waitqueue_head(&nwt->nw_wq);
34006 +}
34007 +
34008 +void au_wkq_fin(void)
34009 +{
34010 +       destroy_workqueue(au_wkq);
34011 +}
34012 +
34013 +int __init au_wkq_init(void)
34014 +{
34015 +       int err;
34016 +
34017 +       err = 0;
34018 +       au_wkq = alloc_workqueue(AUFS_WKQ_NAME, 0, WQ_DFL_ACTIVE);
34019 +       if (IS_ERR(au_wkq))
34020 +               err = PTR_ERR(au_wkq);
34021 +       else if (!au_wkq)
34022 +               err = -ENOMEM;
34023 +
34024 +       return err;
34025 +}
34026 diff -urN /usr/share/empty/fs/aufs/wkq.h linux/fs/aufs/wkq.h
34027 --- /usr/share/empty/fs/aufs/wkq.h      1970-01-01 01:00:00.000000000 +0100
34028 +++ linux/fs/aufs/wkq.h 2016-10-09 16:55:36.496035060 +0200
34029 @@ -0,0 +1,93 @@
34030 +/*
34031 + * Copyright (C) 2005-2016 Junjiro R. Okajima
34032 + *
34033 + * This program, aufs is free software; you can redistribute it and/or modify
34034 + * it under the terms of the GNU General Public License as published by
34035 + * the Free Software Foundation; either version 2 of the License, or
34036 + * (at your option) any later version.
34037 + *
34038 + * This program is distributed in the hope that it will be useful,
34039 + * but WITHOUT ANY WARRANTY; without even the implied warranty of
34040 + * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
34041 + * GNU General Public License for more details.
34042 + *
34043 + * You should have received a copy of the GNU General Public License
34044 + * along with this program.  If not, see <http://www.gnu.org/licenses/>.
34045 + */
34046 +
34047 +/*
34048 + * workqueue for asynchronous/super-io operations
34049 + * todo: try new credentials management scheme
34050 + */
34051 +
34052 +#ifndef __AUFS_WKQ_H__
34053 +#define __AUFS_WKQ_H__
34054 +
34055 +#ifdef __KERNEL__
34056 +
34057 +#include <linux/percpu_counter.h>
34058 +
34059 +struct super_block;
34060 +
34061 +/* ---------------------------------------------------------------------- */
34062 +
34063 +/*
34064 + * in the next operation, wait for the 'nowait' tasks in system-wide workqueue
34065 + */
34066 +struct au_nowait_tasks {
34067 +       atomic_t                nw_len;
34068 +       wait_queue_head_t       nw_wq;
34069 +};
34070 +
34071 +/* ---------------------------------------------------------------------- */
34072 +
34073 +typedef void (*au_wkq_func_t)(void *args);
34074 +
34075 +/* wkq flags */
34076 +#define AuWkq_WAIT     1
34077 +#define AuWkq_NEST     (1 << 1)
34078 +#define au_ftest_wkq(flags, name)      ((flags) & AuWkq_##name)
34079 +#define au_fset_wkq(flags, name) \
34080 +       do { (flags) |= AuWkq_##name; } while (0)
34081 +#define au_fclr_wkq(flags, name) \
34082 +       do { (flags) &= ~AuWkq_##name; } while (0)
34083 +
34084 +#ifndef CONFIG_AUFS_HNOTIFY
34085 +#undef AuWkq_NEST
34086 +#define AuWkq_NEST     0
34087 +#endif
34088 +
34089 +/* wkq.c */
34090 +int au_wkq_do_wait(unsigned int flags, au_wkq_func_t func, void *args);
34091 +int au_wkq_nowait(au_wkq_func_t func, void *args, struct super_block *sb,
34092 +                 unsigned int flags);
34093 +void au_nwt_init(struct au_nowait_tasks *nwt);
34094 +int __init au_wkq_init(void);
34095 +void au_wkq_fin(void);
34096 +
34097 +/* ---------------------------------------------------------------------- */
34098 +
34099 +static inline int au_wkq_test(void)
34100 +{
34101 +       return current->flags & PF_WQ_WORKER;
34102 +}
34103 +
34104 +static inline int au_wkq_wait(au_wkq_func_t func, void *args)
34105 +{
34106 +       return au_wkq_do_wait(AuWkq_WAIT, func, args);
34107 +}
34108 +
34109 +static inline void au_nwt_done(struct au_nowait_tasks *nwt)
34110 +{
34111 +       if (atomic_dec_and_test(&nwt->nw_len))
34112 +               wake_up_all(&nwt->nw_wq);
34113 +}
34114 +
34115 +static inline int au_nwt_flush(struct au_nowait_tasks *nwt)
34116 +{
34117 +       wait_event(nwt->nw_wq, !atomic_read(&nwt->nw_len));
34118 +       return 0;
34119 +}
34120 +
34121 +#endif /* __KERNEL__ */
34122 +#endif /* __AUFS_WKQ_H__ */
34123 diff -urN /usr/share/empty/fs/aufs/xattr.c linux/fs/aufs/xattr.c
34124 --- /usr/share/empty/fs/aufs/xattr.c    1970-01-01 01:00:00.000000000 +0100
34125 +++ linux/fs/aufs/xattr.c       2016-12-17 12:28:17.598545045 +0100
34126 @@ -0,0 +1,332 @@
34127 +/*
34128 + * Copyright (C) 2014-2016 Junjiro R. Okajima
34129 + *
34130 + * This program, aufs is free software; you can redistribute it and/or modify
34131 + * it under the terms of the GNU General Public License as published by
34132 + * the Free Software Foundation; either version 2 of the License, or
34133 + * (at your option) any later version.
34134 + *
34135 + * This program is distributed in the hope that it will be useful,
34136 + * but WITHOUT ANY WARRANTY; without even the implied warranty of
34137 + * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
34138 + * GNU General Public License for more details.
34139 + *
34140 + * You should have received a copy of the GNU General Public License
34141 + * along with this program.  If not, see <http://www.gnu.org/licenses/>.
34142 + */
34143 +
34144 +/*
34145 + * handling xattr functions
34146 + */
34147 +
34148 +#include <linux/xattr.h>
34149 +#include "aufs.h"
34150 +
34151 +static int au_xattr_ignore(int err, char *name, unsigned int ignore_flags)
34152 +{
34153 +       if (!ignore_flags)
34154 +               goto out;
34155 +       switch (err) {
34156 +       case -ENOMEM:
34157 +       case -EDQUOT:
34158 +               goto out;
34159 +       }
34160 +
34161 +       if ((ignore_flags & AuBrAttr_ICEX) == AuBrAttr_ICEX) {
34162 +               err = 0;
34163 +               goto out;
34164 +       }
34165 +
34166 +#define cmp(brattr, prefix) do {                                       \
34167 +               if (!strncmp(name, XATTR_##prefix##_PREFIX,             \
34168 +                            XATTR_##prefix##_PREFIX_LEN)) {            \
34169 +                       if (ignore_flags & AuBrAttr_ICEX_##brattr)      \
34170 +                               err = 0;                                \
34171 +                       goto out;                                       \
34172 +               }                                                       \
34173 +       } while (0)
34174 +
34175 +       cmp(SEC, SECURITY);
34176 +       cmp(SYS, SYSTEM);
34177 +       cmp(TR, TRUSTED);
34178 +       cmp(USR, USER);
34179 +#undef cmp
34180 +
34181 +       if (ignore_flags & AuBrAttr_ICEX_OTH)
34182 +               err = 0;
34183 +
34184 +out:
34185 +       return err;
34186 +}
34187 +
34188 +static const int au_xattr_out_of_list = AuBrAttr_ICEX_OTH << 1;
34189 +
34190 +static int au_do_cpup_xattr(struct dentry *h_dst, struct dentry *h_src,
34191 +                           char *name, char **buf, unsigned int ignore_flags,
34192 +                           unsigned int verbose)
34193 +{
34194 +       int err;
34195 +       ssize_t ssz;
34196 +       struct inode *h_idst;
34197 +
34198 +       ssz = vfs_getxattr_alloc(h_src, name, buf, 0, GFP_NOFS);
34199 +       err = ssz;
34200 +       if (unlikely(err <= 0)) {
34201 +               if (err == -ENODATA
34202 +                   || (err == -EOPNOTSUPP
34203 +                       && ((ignore_flags & au_xattr_out_of_list)
34204 +                           || (au_test_nfs_noacl(d_inode(h_src))
34205 +                               && (!strcmp(name, XATTR_NAME_POSIX_ACL_ACCESS)
34206 +                                   || !strcmp(name,
34207 +                                              XATTR_NAME_POSIX_ACL_DEFAULT))))
34208 +                           ))
34209 +                       err = 0;
34210 +               if (err && (verbose || au_debug_test()))
34211 +                       pr_err("%s, err %d\n", name, err);
34212 +               goto out;
34213 +       }
34214 +
34215 +       /* unlock it temporary */
34216 +       h_idst = d_inode(h_dst);
34217 +       inode_unlock(h_idst);
34218 +       err = vfsub_setxattr(h_dst, name, *buf, ssz, /*flags*/0);
34219 +       inode_lock_nested(h_idst, AuLsc_I_CHILD2);
34220 +       if (unlikely(err)) {
34221 +               if (verbose || au_debug_test())
34222 +                       pr_err("%s, err %d\n", name, err);
34223 +               err = au_xattr_ignore(err, name, ignore_flags);
34224 +       }
34225 +
34226 +out:
34227 +       return err;
34228 +}
34229 +
34230 +int au_cpup_xattr(struct dentry *h_dst, struct dentry *h_src, int ignore_flags,
34231 +                 unsigned int verbose)
34232 +{
34233 +       int err, unlocked, acl_access, acl_default;
34234 +       ssize_t ssz;
34235 +       struct inode *h_isrc, *h_idst;
34236 +       char *value, *p, *o, *e;
34237 +
34238 +       /* try stopping to update the source inode while we are referencing */
34239 +       /* there should not be the parent-child relationship between them */
34240 +       h_isrc = d_inode(h_src);
34241 +       h_idst = d_inode(h_dst);
34242 +       inode_unlock(h_idst);
34243 +       inode_lock_nested(h_isrc, AuLsc_I_CHILD);
34244 +       inode_lock_nested(h_idst, AuLsc_I_CHILD2);
34245 +       unlocked = 0;
34246 +
34247 +       /* some filesystems don't list POSIX ACL, for example tmpfs */
34248 +       ssz = vfs_listxattr(h_src, NULL, 0);
34249 +       err = ssz;
34250 +       if (unlikely(err < 0)) {
34251 +               AuTraceErr(err);
34252 +               if (err == -ENODATA
34253 +                   || err == -EOPNOTSUPP)
34254 +                       err = 0;        /* ignore */
34255 +               goto out;
34256 +       }
34257 +
34258 +       err = 0;
34259 +       p = NULL;
34260 +       o = NULL;
34261 +       if (ssz) {
34262 +               err = -ENOMEM;
34263 +               p = kmalloc(ssz, GFP_NOFS);
34264 +               o = p;
34265 +               if (unlikely(!p))
34266 +                       goto out;
34267 +               err = vfs_listxattr(h_src, p, ssz);
34268 +       }
34269 +       inode_unlock(h_isrc);
34270 +       unlocked = 1;
34271 +       AuDbg("err %d, ssz %zd\n", err, ssz);
34272 +       if (unlikely(err < 0))
34273 +               goto out_free;
34274 +
34275 +       err = 0;
34276 +       e = p + ssz;
34277 +       value = NULL;
34278 +       acl_access = 0;
34279 +       acl_default = 0;
34280 +       while (!err && p < e) {
34281 +               acl_access |= !strncmp(p, XATTR_NAME_POSIX_ACL_ACCESS,
34282 +                                      sizeof(XATTR_NAME_POSIX_ACL_ACCESS) - 1);
34283 +               acl_default |= !strncmp(p, XATTR_NAME_POSIX_ACL_DEFAULT,
34284 +                                       sizeof(XATTR_NAME_POSIX_ACL_DEFAULT)
34285 +                                       - 1);
34286 +               err = au_do_cpup_xattr(h_dst, h_src, p, &value, ignore_flags,
34287 +                                      verbose);
34288 +               p += strlen(p) + 1;
34289 +       }
34290 +       AuTraceErr(err);
34291 +       ignore_flags |= au_xattr_out_of_list;
34292 +       if (!err && !acl_access) {
34293 +               err = au_do_cpup_xattr(h_dst, h_src,
34294 +                                      XATTR_NAME_POSIX_ACL_ACCESS, &value,
34295 +                                      ignore_flags, verbose);
34296 +               AuTraceErr(err);
34297 +       }
34298 +       if (!err && !acl_default) {
34299 +               err = au_do_cpup_xattr(h_dst, h_src,
34300 +                                      XATTR_NAME_POSIX_ACL_DEFAULT, &value,
34301 +                                      ignore_flags, verbose);
34302 +               AuTraceErr(err);
34303 +       }
34304 +
34305 +       if (value)
34306 +               au_delayed_kfree(value);
34307 +
34308 +out_free:
34309 +       if (o)
34310 +               au_delayed_kfree(o);
34311 +out:
34312 +       if (!unlocked)
34313 +               inode_unlock(h_isrc);
34314 +       AuTraceErr(err);
34315 +       return err;
34316 +}
34317 +
34318 +/* ---------------------------------------------------------------------- */
34319 +
34320 +enum {
34321 +       AU_XATTR_LIST,
34322 +       AU_XATTR_GET
34323 +};
34324 +
34325 +struct au_lgxattr {
34326 +       int type;
34327 +       union {
34328 +               struct {
34329 +                       char    *list;
34330 +                       size_t  size;
34331 +               } list;
34332 +               struct {
34333 +                       const char      *name;
34334 +                       void            *value;
34335 +                       size_t          size;
34336 +               } get;
34337 +       } u;
34338 +};
34339 +
34340 +static ssize_t au_lgxattr(struct dentry *dentry, struct au_lgxattr *arg)
34341 +{
34342 +       ssize_t err;
34343 +       struct path h_path;
34344 +       struct super_block *sb;
34345 +
34346 +       sb = dentry->d_sb;
34347 +       err = si_read_lock(sb, AuLock_FLUSH | AuLock_NOPLM);
34348 +       if (unlikely(err))
34349 +               goto out;
34350 +       err = au_h_path_getattr(dentry, /*force*/1, &h_path);
34351 +       if (unlikely(err))
34352 +               goto out_si;
34353 +       if (unlikely(!h_path.dentry))
34354 +               /* illegally overlapped or something */
34355 +               goto out_di; /* pretending success */
34356 +
34357 +       /* always topmost entry only */
34358 +       switch (arg->type) {
34359 +       case AU_XATTR_LIST:
34360 +               err = vfs_listxattr(h_path.dentry,
34361 +                                   arg->u.list.list, arg->u.list.size);
34362 +               break;
34363 +       case AU_XATTR_GET:
34364 +               AuDebugOn(d_is_negative(h_path.dentry));
34365 +               err = vfs_getxattr(h_path.dentry,
34366 +                                  arg->u.get.name, arg->u.get.value,
34367 +                                  arg->u.get.size);
34368 +               break;
34369 +       }
34370 +
34371 +out_di:
34372 +       di_read_unlock(dentry, AuLock_IR);
34373 +out_si:
34374 +       si_read_unlock(sb);
34375 +out:
34376 +       AuTraceErr(err);
34377 +       return err;
34378 +}
34379 +
34380 +ssize_t aufs_listxattr(struct dentry *dentry, char *list, size_t size)
34381 +{
34382 +       struct au_lgxattr arg = {
34383 +               .type = AU_XATTR_LIST,
34384 +               .u.list = {
34385 +                       .list   = list,
34386 +                       .size   = size
34387 +               },
34388 +       };
34389 +
34390 +       return au_lgxattr(dentry, &arg);
34391 +}
34392 +
34393 +static ssize_t au_getxattr(struct dentry *dentry,
34394 +                          struct inode *inode __maybe_unused,
34395 +                          const char *name, void *value, size_t size)
34396 +{
34397 +       struct au_lgxattr arg = {
34398 +               .type = AU_XATTR_GET,
34399 +               .u.get = {
34400 +                       .name   = name,
34401 +                       .value  = value,
34402 +                       .size   = size
34403 +               },
34404 +       };
34405 +
34406 +       return au_lgxattr(dentry, &arg);
34407 +}
34408 +
34409 +static int au_setxattr(struct dentry *dentry, struct inode *inode,
34410 +                      const char *name, const void *value, size_t size,
34411 +                      int flags)
34412 +{
34413 +       struct au_sxattr arg = {
34414 +               .type = AU_XATTR_SET,
34415 +               .u.set = {
34416 +                       .name   = name,
34417 +                       .value  = value,
34418 +                       .size   = size,
34419 +                       .flags  = flags
34420 +               },
34421 +       };
34422 +
34423 +       return au_sxattr(dentry, inode, &arg);
34424 +}
34425 +
34426 +/* ---------------------------------------------------------------------- */
34427 +
34428 +static int au_xattr_get(const struct xattr_handler *handler,
34429 +                       struct dentry *dentry, struct inode *inode,
34430 +                       const char *name, void *buffer, size_t size)
34431 +{
34432 +       return au_getxattr(dentry, inode, name, buffer, size);
34433 +}
34434 +
34435 +static int au_xattr_set(const struct xattr_handler *handler,
34436 +                       struct dentry *dentry, struct inode *inode,
34437 +                       const char *name, const void *value, size_t size,
34438 +                       int flags)
34439 +{
34440 +       return au_setxattr(dentry, inode, name, value, size, flags);
34441 +}
34442 +
34443 +static const struct xattr_handler au_xattr_handler = {
34444 +       .name   = "",
34445 +       .prefix = "",
34446 +       .get    = au_xattr_get,
34447 +       .set    = au_xattr_set
34448 +};
34449 +
34450 +static const struct xattr_handler *au_xattr_handlers[] = {
34451 +       &au_xattr_handler,
34452 +       NULL
34453 +};
34454 +
34455 +void au_xattr_init(struct super_block *sb)
34456 +{
34457 +       sb->s_xattr = au_xattr_handlers;
34458 +}
34459 diff -urN /usr/share/empty/fs/aufs/xino.c linux/fs/aufs/xino.c
34460 --- /usr/share/empty/fs/aufs/xino.c     1970-01-01 01:00:00.000000000 +0100
34461 +++ linux/fs/aufs/xino.c        2016-10-09 16:55:36.496035060 +0200
34462 @@ -0,0 +1,1318 @@
34463 +/*
34464 + * Copyright (C) 2005-2016 Junjiro R. Okajima
34465 + *
34466 + * This program, aufs is free software; you can redistribute it and/or modify
34467 + * it under the terms of the GNU General Public License as published by
34468 + * the Free Software Foundation; either version 2 of the License, or
34469 + * (at your option) any later version.
34470 + *
34471 + * This program is distributed in the hope that it will be useful,
34472 + * but WITHOUT ANY WARRANTY; without even the implied warranty of
34473 + * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
34474 + * GNU General Public License for more details.
34475 + *
34476 + * You should have received a copy of the GNU General Public License
34477 + * along with this program.  If not, see <http://www.gnu.org/licenses/>.
34478 + */
34479 +
34480 +/*
34481 + * external inode number translation table and bitmap
34482 + */
34483 +
34484 +#include <linux/seq_file.h>
34485 +#include <linux/statfs.h>
34486 +#include "aufs.h"
34487 +
34488 +/* todo: unnecessary to support mmap_sem since kernel-space? */
34489 +ssize_t xino_fread(vfs_readf_t func, struct file *file, void *kbuf, size_t size,
34490 +                  loff_t *pos)
34491 +{
34492 +       ssize_t err;
34493 +       mm_segment_t oldfs;
34494 +       union {
34495 +               void *k;
34496 +               char __user *u;
34497 +       } buf;
34498 +
34499 +       buf.k = kbuf;
34500 +       oldfs = get_fs();
34501 +       set_fs(KERNEL_DS);
34502 +       do {
34503 +               /* todo: signal_pending? */
34504 +               err = func(file, buf.u, size, pos);
34505 +       } while (err == -EAGAIN || err == -EINTR);
34506 +       set_fs(oldfs);
34507 +
34508 +#if 0 /* reserved for future use */
34509 +       if (err > 0)
34510 +               fsnotify_access(file->f_path.dentry);
34511 +#endif
34512 +
34513 +       return err;
34514 +}
34515 +
34516 +/* ---------------------------------------------------------------------- */
34517 +
34518 +static ssize_t xino_fwrite_wkq(vfs_writef_t func, struct file *file, void *buf,
34519 +                              size_t size, loff_t *pos);
34520 +
34521 +static ssize_t do_xino_fwrite(vfs_writef_t func, struct file *file, void *kbuf,
34522 +                             size_t size, loff_t *pos)
34523 +{
34524 +       ssize_t err;
34525 +       mm_segment_t oldfs;
34526 +       union {
34527 +               void *k;
34528 +               const char __user *u;
34529 +       } buf;
34530 +       int i;
34531 +       const int prevent_endless = 10;
34532 +
34533 +       i = 0;
34534 +       buf.k = kbuf;
34535 +       oldfs = get_fs();
34536 +       set_fs(KERNEL_DS);
34537 +       do {
34538 +               err = func(file, buf.u, size, pos);
34539 +               if (err == -EINTR
34540 +                   && !au_wkq_test()
34541 +                   && fatal_signal_pending(current)) {
34542 +                       set_fs(oldfs);
34543 +                       err = xino_fwrite_wkq(func, file, kbuf, size, pos);
34544 +                       BUG_ON(err == -EINTR);
34545 +                       oldfs = get_fs();
34546 +                       set_fs(KERNEL_DS);
34547 +               }
34548 +       } while (i++ < prevent_endless
34549 +                && (err == -EAGAIN || err == -EINTR));
34550 +       set_fs(oldfs);
34551 +
34552 +#if 0 /* reserved for future use */
34553 +       if (err > 0)
34554 +               fsnotify_modify(file->f_path.dentry);
34555 +#endif
34556 +
34557 +       return err;
34558 +}
34559 +
34560 +struct do_xino_fwrite_args {
34561 +       ssize_t *errp;
34562 +       vfs_writef_t func;
34563 +       struct file *file;
34564 +       void *buf;
34565 +       size_t size;
34566 +       loff_t *pos;
34567 +};
34568 +
34569 +static void call_do_xino_fwrite(void *args)
34570 +{
34571 +       struct do_xino_fwrite_args *a = args;
34572 +       *a->errp = do_xino_fwrite(a->func, a->file, a->buf, a->size, a->pos);
34573 +}
34574 +
34575 +static ssize_t xino_fwrite_wkq(vfs_writef_t func, struct file *file, void *buf,
34576 +                              size_t size, loff_t *pos)
34577 +{
34578 +       ssize_t err;
34579 +       int wkq_err;
34580 +       struct do_xino_fwrite_args args = {
34581 +               .errp   = &err,
34582 +               .func   = func,
34583 +               .file   = file,
34584 +               .buf    = buf,
34585 +               .size   = size,
34586 +               .pos    = pos
34587 +       };
34588 +
34589 +       /*
34590 +        * it breaks RLIMIT_FSIZE and normal user's limit,
34591 +        * users should care about quota and real 'filesystem full.'
34592 +        */
34593 +       wkq_err = au_wkq_wait(call_do_xino_fwrite, &args);
34594 +       if (unlikely(wkq_err))
34595 +               err = wkq_err;
34596 +
34597 +       return err;
34598 +}
34599 +
34600 +ssize_t xino_fwrite(vfs_writef_t func, struct file *file, void *buf,
34601 +                   size_t size, loff_t *pos)
34602 +{
34603 +       ssize_t err;
34604 +
34605 +       if (rlimit(RLIMIT_FSIZE) == RLIM_INFINITY) {
34606 +               lockdep_off();
34607 +               err = do_xino_fwrite(func, file, buf, size, pos);
34608 +               lockdep_on();
34609 +       } else
34610 +               err = xino_fwrite_wkq(func, file, buf, size, pos);
34611 +
34612 +       return err;
34613 +}
34614 +
34615 +/* ---------------------------------------------------------------------- */
34616 +
34617 +/*
34618 + * create a new xinofile at the same place/path as @base_file.
34619 + */
34620 +struct file *au_xino_create2(struct file *base_file, struct file *copy_src)
34621 +{
34622 +       struct file *file;
34623 +       struct dentry *base, *parent;
34624 +       struct inode *dir, *delegated;
34625 +       struct qstr *name;
34626 +       struct path path;
34627 +       int err;
34628 +
34629 +       base = base_file->f_path.dentry;
34630 +       parent = base->d_parent; /* dir inode is locked */
34631 +       dir = d_inode(parent);
34632 +       IMustLock(dir);
34633 +
34634 +       file = ERR_PTR(-EINVAL);
34635 +       name = &base->d_name;
34636 +       path.dentry = vfsub_lookup_one_len(name->name, parent, name->len);
34637 +       if (IS_ERR(path.dentry)) {
34638 +               file = (void *)path.dentry;
34639 +               pr_err("%pd lookup err %ld\n",
34640 +                      base, PTR_ERR(path.dentry));
34641 +               goto out;
34642 +       }
34643 +
34644 +       /* no need to mnt_want_write() since we call dentry_open() later */
34645 +       err = vfs_create(dir, path.dentry, S_IRUGO | S_IWUGO, NULL);
34646 +       if (unlikely(err)) {
34647 +               file = ERR_PTR(err);
34648 +               pr_err("%pd create err %d\n", base, err);
34649 +               goto out_dput;
34650 +       }
34651 +
34652 +       path.mnt = base_file->f_path.mnt;
34653 +       file = vfsub_dentry_open(&path,
34654 +                                O_RDWR | O_CREAT | O_EXCL | O_LARGEFILE
34655 +                                /* | __FMODE_NONOTIFY */);
34656 +       if (IS_ERR(file)) {
34657 +               pr_err("%pd open err %ld\n", base, PTR_ERR(file));
34658 +               goto out_dput;
34659 +       }
34660 +
34661 +       delegated = NULL;
34662 +       err = vfsub_unlink(dir, &file->f_path, &delegated, /*force*/0);
34663 +       if (unlikely(err == -EWOULDBLOCK)) {
34664 +               pr_warn("cannot retry for NFSv4 delegation"
34665 +                       " for an internal unlink\n");
34666 +               iput(delegated);
34667 +       }
34668 +       if (unlikely(err)) {
34669 +               pr_err("%pd unlink err %d\n", base, err);
34670 +               goto out_fput;
34671 +       }
34672 +
34673 +       if (copy_src) {
34674 +               /* no one can touch copy_src xino */
34675 +               err = au_copy_file(file, copy_src, vfsub_f_size_read(copy_src));
34676 +               if (unlikely(err)) {
34677 +                       pr_err("%pd copy err %d\n", base, err);
34678 +                       goto out_fput;
34679 +               }
34680 +       }
34681 +       goto out_dput; /* success */
34682 +
34683 +out_fput:
34684 +       fput(file);
34685 +       file = ERR_PTR(err);
34686 +out_dput:
34687 +       dput(path.dentry);
34688 +out:
34689 +       return file;
34690 +}
34691 +
34692 +struct au_xino_lock_dir {
34693 +       struct au_hinode *hdir;
34694 +       struct dentry *parent;
34695 +       struct inode *dir;
34696 +};
34697 +
34698 +static void au_xino_lock_dir(struct super_block *sb, struct file *xino,
34699 +                            struct au_xino_lock_dir *ldir)
34700 +{
34701 +       aufs_bindex_t brid, bindex;
34702 +
34703 +       ldir->hdir = NULL;
34704 +       bindex = -1;
34705 +       brid = au_xino_brid(sb);
34706 +       if (brid >= 0)
34707 +               bindex = au_br_index(sb, brid);
34708 +       if (bindex >= 0) {
34709 +               ldir->hdir = au_hi(d_inode(sb->s_root), bindex);
34710 +               au_hn_inode_lock_nested(ldir->hdir, AuLsc_I_PARENT);
34711 +       } else {
34712 +               ldir->parent = dget_parent(xino->f_path.dentry);
34713 +               ldir->dir = d_inode(ldir->parent);
34714 +               inode_lock_nested(ldir->dir, AuLsc_I_PARENT);
34715 +       }
34716 +}
34717 +
34718 +static void au_xino_unlock_dir(struct au_xino_lock_dir *ldir)
34719 +{
34720 +       if (ldir->hdir)
34721 +               au_hn_inode_unlock(ldir->hdir);
34722 +       else {
34723 +               inode_unlock(ldir->dir);
34724 +               dput(ldir->parent);
34725 +       }
34726 +}
34727 +
34728 +/* ---------------------------------------------------------------------- */
34729 +
34730 +/* trucate xino files asynchronously */
34731 +
34732 +int au_xino_trunc(struct super_block *sb, aufs_bindex_t bindex)
34733 +{
34734 +       int err;
34735 +       unsigned long jiffy;
34736 +       blkcnt_t blocks;
34737 +       aufs_bindex_t bi, bbot;
34738 +       struct kstatfs *st;
34739 +       struct au_branch *br;
34740 +       struct file *new_xino, *file;
34741 +       struct super_block *h_sb;
34742 +       struct au_xino_lock_dir ldir;
34743 +
34744 +       err = -ENOMEM;
34745 +       st = kmalloc(sizeof(*st), GFP_NOFS);
34746 +       if (unlikely(!st))
34747 +               goto out;
34748 +
34749 +       err = -EINVAL;
34750 +       bbot = au_sbbot(sb);
34751 +       if (unlikely(bindex < 0 || bbot < bindex))
34752 +               goto out_st;
34753 +       br = au_sbr(sb, bindex);
34754 +       file = br->br_xino.xi_file;
34755 +       if (!file)
34756 +               goto out_st;
34757 +
34758 +       err = vfs_statfs(&file->f_path, st);
34759 +       if (unlikely(err))
34760 +               AuErr1("statfs err %d, ignored\n", err);
34761 +       jiffy = jiffies;
34762 +       blocks = file_inode(file)->i_blocks;
34763 +       pr_info("begin truncating xino(b%d), ib%llu, %llu/%llu free blks\n",
34764 +               bindex, (u64)blocks, st->f_bfree, st->f_blocks);
34765 +
34766 +       au_xino_lock_dir(sb, file, &ldir);
34767 +       /* mnt_want_write() is unnecessary here */
34768 +       new_xino = au_xino_create2(file, file);
34769 +       au_xino_unlock_dir(&ldir);
34770 +       err = PTR_ERR(new_xino);
34771 +       if (IS_ERR(new_xino)) {
34772 +               pr_err("err %d, ignored\n", err);
34773 +               goto out_st;
34774 +       }
34775 +       err = 0;
34776 +       fput(file);
34777 +       br->br_xino.xi_file = new_xino;
34778 +
34779 +       h_sb = au_br_sb(br);
34780 +       for (bi = 0; bi <= bbot; bi++) {
34781 +               if (unlikely(bi == bindex))
34782 +                       continue;
34783 +               br = au_sbr(sb, bi);
34784 +               if (au_br_sb(br) != h_sb)
34785 +                       continue;
34786 +
34787 +               fput(br->br_xino.xi_file);
34788 +               br->br_xino.xi_file = new_xino;
34789 +               get_file(new_xino);
34790 +       }
34791 +
34792 +       err = vfs_statfs(&new_xino->f_path, st);
34793 +       if (!err) {
34794 +               pr_info("end truncating xino(b%d), ib%llu, %llu/%llu free blks\n",
34795 +                       bindex, (u64)file_inode(new_xino)->i_blocks,
34796 +                       st->f_bfree, st->f_blocks);
34797 +               if (file_inode(new_xino)->i_blocks < blocks)
34798 +                       au_sbi(sb)->si_xino_jiffy = jiffy;
34799 +       } else
34800 +               AuErr1("statfs err %d, ignored\n", err);
34801 +
34802 +out_st:
34803 +       au_delayed_kfree(st);
34804 +out:
34805 +       return err;
34806 +}
34807 +
34808 +struct xino_do_trunc_args {
34809 +       struct super_block *sb;
34810 +       struct au_branch *br;
34811 +};
34812 +
34813 +static void xino_do_trunc(void *_args)
34814 +{
34815 +       struct xino_do_trunc_args *args = _args;
34816 +       struct super_block *sb;
34817 +       struct au_branch *br;
34818 +       struct inode *dir;
34819 +       int err;
34820 +       aufs_bindex_t bindex;
34821 +
34822 +       err = 0;
34823 +       sb = args->sb;
34824 +       dir = d_inode(sb->s_root);
34825 +       br = args->br;
34826 +
34827 +       si_noflush_write_lock(sb);
34828 +       ii_read_lock_parent(dir);
34829 +       bindex = au_br_index(sb, br->br_id);
34830 +       err = au_xino_trunc(sb, bindex);
34831 +       ii_read_unlock(dir);
34832 +       if (unlikely(err))
34833 +               pr_warn("err b%d, (%d)\n", bindex, err);
34834 +       atomic_dec(&br->br_xino_running);
34835 +       au_br_put(br);
34836 +       si_write_unlock(sb);
34837 +       au_nwt_done(&au_sbi(sb)->si_nowait);
34838 +       au_delayed_kfree(args);
34839 +}
34840 +
34841 +static int xino_trunc_test(struct super_block *sb, struct au_branch *br)
34842 +{
34843 +       int err;
34844 +       struct kstatfs st;
34845 +       struct au_sbinfo *sbinfo;
34846 +
34847 +       /* todo: si_xino_expire and the ratio should be customizable */
34848 +       sbinfo = au_sbi(sb);
34849 +       if (time_before(jiffies,
34850 +                       sbinfo->si_xino_jiffy + sbinfo->si_xino_expire))
34851 +               return 0;
34852 +
34853 +       /* truncation border */
34854 +       err = vfs_statfs(&br->br_xino.xi_file->f_path, &st);
34855 +       if (unlikely(err)) {
34856 +               AuErr1("statfs err %d, ignored\n", err);
34857 +               return 0;
34858 +       }
34859 +       if (div64_u64(st.f_bfree * 100, st.f_blocks) >= AUFS_XINO_DEF_TRUNC)
34860 +               return 0;
34861 +
34862 +       return 1;
34863 +}
34864 +
34865 +static void xino_try_trunc(struct super_block *sb, struct au_branch *br)
34866 +{
34867 +       struct xino_do_trunc_args *args;
34868 +       int wkq_err;
34869 +
34870 +       if (!xino_trunc_test(sb, br))
34871 +               return;
34872 +
34873 +       if (atomic_inc_return(&br->br_xino_running) > 1)
34874 +               goto out;
34875 +
34876 +       /* lock and kfree() will be called in trunc_xino() */
34877 +       args = kmalloc(sizeof(*args), GFP_NOFS);
34878 +       if (unlikely(!args)) {
34879 +               AuErr1("no memory\n");
34880 +               goto out;
34881 +       }
34882 +
34883 +       au_br_get(br);
34884 +       args->sb = sb;
34885 +       args->br = br;
34886 +       wkq_err = au_wkq_nowait(xino_do_trunc, args, sb, /*flags*/0);
34887 +       if (!wkq_err)
34888 +               return; /* success */
34889 +
34890 +       pr_err("wkq %d\n", wkq_err);
34891 +       au_br_put(br);
34892 +       au_delayed_kfree(args);
34893 +
34894 +out:
34895 +       atomic_dec(&br->br_xino_running);
34896 +}
34897 +
34898 +/* ---------------------------------------------------------------------- */
34899 +
34900 +static int au_xino_do_write(vfs_writef_t write, struct file *file,
34901 +                           ino_t h_ino, ino_t ino)
34902 +{
34903 +       loff_t pos;
34904 +       ssize_t sz;
34905 +
34906 +       pos = h_ino;
34907 +       if (unlikely(au_loff_max / sizeof(ino) - 1 < pos)) {
34908 +               AuIOErr1("too large hi%lu\n", (unsigned long)h_ino);
34909 +               return -EFBIG;
34910 +       }
34911 +       pos *= sizeof(ino);
34912 +       sz = xino_fwrite(write, file, &ino, sizeof(ino), &pos);
34913 +       if (sz == sizeof(ino))
34914 +               return 0; /* success */
34915 +
34916 +       AuIOErr("write failed (%zd)\n", sz);
34917 +       return -EIO;
34918 +}
34919 +
34920 +/*
34921 + * write @ino to the xinofile for the specified branch{@sb, @bindex}
34922 + * at the position of @h_ino.
34923 + * even if @ino is zero, it is written to the xinofile and means no entry.
34924 + * if the size of the xino file on a specific filesystem exceeds the watermark,
34925 + * try truncating it.
34926 + */
34927 +int au_xino_write(struct super_block *sb, aufs_bindex_t bindex, ino_t h_ino,
34928 +                 ino_t ino)
34929 +{
34930 +       int err;
34931 +       unsigned int mnt_flags;
34932 +       struct au_branch *br;
34933 +
34934 +       BUILD_BUG_ON(sizeof(long long) != sizeof(au_loff_max)
34935 +                    || ((loff_t)-1) > 0);
34936 +       SiMustAnyLock(sb);
34937 +
34938 +       mnt_flags = au_mntflags(sb);
34939 +       if (!au_opt_test(mnt_flags, XINO))
34940 +               return 0;
34941 +
34942 +       br = au_sbr(sb, bindex);
34943 +       err = au_xino_do_write(au_sbi(sb)->si_xwrite, br->br_xino.xi_file,
34944 +                              h_ino, ino);
34945 +       if (!err) {
34946 +               if (au_opt_test(mnt_flags, TRUNC_XINO)
34947 +                   && au_test_fs_trunc_xino(au_br_sb(br)))
34948 +                       xino_try_trunc(sb, br);
34949 +               return 0; /* success */
34950 +       }
34951 +
34952 +       AuIOErr("write failed (%d)\n", err);
34953 +       return -EIO;
34954 +}
34955 +
34956 +/* ---------------------------------------------------------------------- */
34957 +
34958 +/* aufs inode number bitmap */
34959 +
34960 +static const int page_bits = (int)PAGE_SIZE * BITS_PER_BYTE;
34961 +static ino_t xib_calc_ino(unsigned long pindex, int bit)
34962 +{
34963 +       ino_t ino;
34964 +
34965 +       AuDebugOn(bit < 0 || page_bits <= bit);
34966 +       ino = AUFS_FIRST_INO + pindex * page_bits + bit;
34967 +       return ino;
34968 +}
34969 +
34970 +static void xib_calc_bit(ino_t ino, unsigned long *pindex, int *bit)
34971 +{
34972 +       AuDebugOn(ino < AUFS_FIRST_INO);
34973 +       ino -= AUFS_FIRST_INO;
34974 +       *pindex = ino / page_bits;
34975 +       *bit = ino % page_bits;
34976 +}
34977 +
34978 +static int xib_pindex(struct super_block *sb, unsigned long pindex)
34979 +{
34980 +       int err;
34981 +       loff_t pos;
34982 +       ssize_t sz;
34983 +       struct au_sbinfo *sbinfo;
34984 +       struct file *xib;
34985 +       unsigned long *p;
34986 +
34987 +       sbinfo = au_sbi(sb);
34988 +       MtxMustLock(&sbinfo->si_xib_mtx);
34989 +       AuDebugOn(pindex > ULONG_MAX / PAGE_SIZE
34990 +                 || !au_opt_test(sbinfo->si_mntflags, XINO));
34991 +
34992 +       if (pindex == sbinfo->si_xib_last_pindex)
34993 +               return 0;
34994 +
34995 +       xib = sbinfo->si_xib;
34996 +       p = sbinfo->si_xib_buf;
34997 +       pos = sbinfo->si_xib_last_pindex;
34998 +       pos *= PAGE_SIZE;
34999 +       sz = xino_fwrite(sbinfo->si_xwrite, xib, p, PAGE_SIZE, &pos);
35000 +       if (unlikely(sz != PAGE_SIZE))
35001 +               goto out;
35002 +
35003 +       pos = pindex;
35004 +       pos *= PAGE_SIZE;
35005 +       if (vfsub_f_size_read(xib) >= pos + PAGE_SIZE)
35006 +               sz = xino_fread(sbinfo->si_xread, xib, p, PAGE_SIZE, &pos);
35007 +       else {
35008 +               memset(p, 0, PAGE_SIZE);
35009 +               sz = xino_fwrite(sbinfo->si_xwrite, xib, p, PAGE_SIZE, &pos);
35010 +       }
35011 +       if (sz == PAGE_SIZE) {
35012 +               sbinfo->si_xib_last_pindex = pindex;
35013 +               return 0; /* success */
35014 +       }
35015 +
35016 +out:
35017 +       AuIOErr1("write failed (%zd)\n", sz);
35018 +       err = sz;
35019 +       if (sz >= 0)
35020 +               err = -EIO;
35021 +       return err;
35022 +}
35023 +
35024 +/* ---------------------------------------------------------------------- */
35025 +
35026 +static void au_xib_clear_bit(struct inode *inode)
35027 +{
35028 +       int err, bit;
35029 +       unsigned long pindex;
35030 +       struct super_block *sb;
35031 +       struct au_sbinfo *sbinfo;
35032 +
35033 +       AuDebugOn(inode->i_nlink);
35034 +
35035 +       sb = inode->i_sb;
35036 +       xib_calc_bit(inode->i_ino, &pindex, &bit);
35037 +       AuDebugOn(page_bits <= bit);
35038 +       sbinfo = au_sbi(sb);
35039 +       mutex_lock(&sbinfo->si_xib_mtx);
35040 +       err = xib_pindex(sb, pindex);
35041 +       if (!err) {
35042 +               clear_bit(bit, sbinfo->si_xib_buf);
35043 +               sbinfo->si_xib_next_bit = bit;
35044 +       }
35045 +       mutex_unlock(&sbinfo->si_xib_mtx);
35046 +}
35047 +
35048 +/* for s_op->delete_inode() */
35049 +void au_xino_delete_inode(struct inode *inode, const int unlinked)
35050 +{
35051 +       int err;
35052 +       unsigned int mnt_flags;
35053 +       aufs_bindex_t bindex, bbot, bi;
35054 +       unsigned char try_trunc;
35055 +       struct au_iinfo *iinfo;
35056 +       struct super_block *sb;
35057 +       struct au_hinode *hi;
35058 +       struct inode *h_inode;
35059 +       struct au_branch *br;
35060 +       vfs_writef_t xwrite;
35061 +
35062 +       AuDebugOn(au_is_bad_inode(inode));
35063 +
35064 +       sb = inode->i_sb;
35065 +       mnt_flags = au_mntflags(sb);
35066 +       if (!au_opt_test(mnt_flags, XINO)
35067 +           || inode->i_ino == AUFS_ROOT_INO)
35068 +               return;
35069 +
35070 +       if (unlinked) {
35071 +               au_xigen_inc(inode);
35072 +               au_xib_clear_bit(inode);
35073 +       }
35074 +
35075 +       iinfo = au_ii(inode);
35076 +       bindex = iinfo->ii_btop;
35077 +       if (bindex < 0)
35078 +               return;
35079 +
35080 +       xwrite = au_sbi(sb)->si_xwrite;
35081 +       try_trunc = !!au_opt_test(mnt_flags, TRUNC_XINO);
35082 +       hi = au_hinode(iinfo, bindex);
35083 +       bbot = iinfo->ii_bbot;
35084 +       for (; bindex <= bbot; bindex++, hi++) {
35085 +               h_inode = hi->hi_inode;
35086 +               if (!h_inode
35087 +                   || (!unlinked && h_inode->i_nlink))
35088 +                       continue;
35089 +
35090 +               /* inode may not be revalidated */
35091 +               bi = au_br_index(sb, hi->hi_id);
35092 +               if (bi < 0)
35093 +                       continue;
35094 +
35095 +               br = au_sbr(sb, bi);
35096 +               err = au_xino_do_write(xwrite, br->br_xino.xi_file,
35097 +                                      h_inode->i_ino, /*ino*/0);
35098 +               if (!err && try_trunc
35099 +                   && au_test_fs_trunc_xino(au_br_sb(br)))
35100 +                       xino_try_trunc(sb, br);
35101 +       }
35102 +}
35103 +
35104 +/* get an unused inode number from bitmap */
35105 +ino_t au_xino_new_ino(struct super_block *sb)
35106 +{
35107 +       ino_t ino;
35108 +       unsigned long *p, pindex, ul, pend;
35109 +       struct au_sbinfo *sbinfo;
35110 +       struct file *file;
35111 +       int free_bit, err;
35112 +
35113 +       if (!au_opt_test(au_mntflags(sb), XINO))
35114 +               return iunique(sb, AUFS_FIRST_INO);
35115 +
35116 +       sbinfo = au_sbi(sb);
35117 +       mutex_lock(&sbinfo->si_xib_mtx);
35118 +       p = sbinfo->si_xib_buf;
35119 +       free_bit = sbinfo->si_xib_next_bit;
35120 +       if (free_bit < page_bits && !test_bit(free_bit, p))
35121 +               goto out; /* success */
35122 +       free_bit = find_first_zero_bit(p, page_bits);
35123 +       if (free_bit < page_bits)
35124 +               goto out; /* success */
35125 +
35126 +       pindex = sbinfo->si_xib_last_pindex;
35127 +       for (ul = pindex - 1; ul < ULONG_MAX; ul--) {
35128 +               err = xib_pindex(sb, ul);
35129 +               if (unlikely(err))
35130 +                       goto out_err;
35131 +               free_bit = find_first_zero_bit(p, page_bits);
35132 +               if (free_bit < page_bits)
35133 +                       goto out; /* success */
35134 +       }
35135 +
35136 +       file = sbinfo->si_xib;
35137 +       pend = vfsub_f_size_read(file) / PAGE_SIZE;
35138 +       for (ul = pindex + 1; ul <= pend; ul++) {
35139 +               err = xib_pindex(sb, ul);
35140 +               if (unlikely(err))
35141 +                       goto out_err;
35142 +               free_bit = find_first_zero_bit(p, page_bits);
35143 +               if (free_bit < page_bits)
35144 +                       goto out; /* success */
35145 +       }
35146 +       BUG();
35147 +
35148 +out:
35149 +       set_bit(free_bit, p);
35150 +       sbinfo->si_xib_next_bit = free_bit + 1;
35151 +       pindex = sbinfo->si_xib_last_pindex;
35152 +       mutex_unlock(&sbinfo->si_xib_mtx);
35153 +       ino = xib_calc_ino(pindex, free_bit);
35154 +       AuDbg("i%lu\n", (unsigned long)ino);
35155 +       return ino;
35156 +out_err:
35157 +       mutex_unlock(&sbinfo->si_xib_mtx);
35158 +       AuDbg("i0\n");
35159 +       return 0;
35160 +}
35161 +
35162 +/*
35163 + * read @ino from xinofile for the specified branch{@sb, @bindex}
35164 + * at the position of @h_ino.
35165 + * if @ino does not exist and @do_new is true, get new one.
35166 + */
35167 +int au_xino_read(struct super_block *sb, aufs_bindex_t bindex, ino_t h_ino,
35168 +                ino_t *ino)
35169 +{
35170 +       int err;
35171 +       ssize_t sz;
35172 +       loff_t pos;
35173 +       struct file *file;
35174 +       struct au_sbinfo *sbinfo;
35175 +
35176 +       *ino = 0;
35177 +       if (!au_opt_test(au_mntflags(sb), XINO))
35178 +               return 0; /* no xino */
35179 +
35180 +       err = 0;
35181 +       sbinfo = au_sbi(sb);
35182 +       pos = h_ino;
35183 +       if (unlikely(au_loff_max / sizeof(*ino) - 1 < pos)) {
35184 +               AuIOErr1("too large hi%lu\n", (unsigned long)h_ino);
35185 +               return -EFBIG;
35186 +       }
35187 +       pos *= sizeof(*ino);
35188 +
35189 +       file = au_sbr(sb, bindex)->br_xino.xi_file;
35190 +       if (vfsub_f_size_read(file) < pos + sizeof(*ino))
35191 +               return 0; /* no ino */
35192 +
35193 +       sz = xino_fread(sbinfo->si_xread, file, ino, sizeof(*ino), &pos);
35194 +       if (sz == sizeof(*ino))
35195 +               return 0; /* success */
35196 +
35197 +       err = sz;
35198 +       if (unlikely(sz >= 0)) {
35199 +               err = -EIO;
35200 +               AuIOErr("xino read error (%zd)\n", sz);
35201 +       }
35202 +
35203 +       return err;
35204 +}
35205 +
35206 +/* ---------------------------------------------------------------------- */
35207 +
35208 +/* create and set a new xino file */
35209 +
35210 +struct file *au_xino_create(struct super_block *sb, char *fname, int silent)
35211 +{
35212 +       struct file *file;
35213 +       struct dentry *h_parent, *d;
35214 +       struct inode *h_dir, *inode;
35215 +       int err;
35216 +
35217 +       /*
35218 +        * at mount-time, and the xino file is the default path,
35219 +        * hnotify is disabled so we have no notify events to ignore.
35220 +        * when a user specified the xino, we cannot get au_hdir to be ignored.
35221 +        */
35222 +       file = vfsub_filp_open(fname, O_RDWR | O_CREAT | O_EXCL | O_LARGEFILE
35223 +                              /* | __FMODE_NONOTIFY */,
35224 +                              S_IRUGO | S_IWUGO);
35225 +       if (IS_ERR(file)) {
35226 +               if (!silent)
35227 +                       pr_err("open %s(%ld)\n", fname, PTR_ERR(file));
35228 +               return file;
35229 +       }
35230 +
35231 +       /* keep file count */
35232 +       err = 0;
35233 +       inode = file_inode(file);
35234 +       h_parent = dget_parent(file->f_path.dentry);
35235 +       h_dir = d_inode(h_parent);
35236 +       inode_lock_nested(h_dir, AuLsc_I_PARENT);
35237 +       /* mnt_want_write() is unnecessary here */
35238 +       /* no delegation since it is just created */
35239 +       if (inode->i_nlink)
35240 +               err = vfsub_unlink(h_dir, &file->f_path, /*delegated*/NULL,
35241 +                                  /*force*/0);
35242 +       inode_unlock(h_dir);
35243 +       dput(h_parent);
35244 +       if (unlikely(err)) {
35245 +               if (!silent)
35246 +                       pr_err("unlink %s(%d)\n", fname, err);
35247 +               goto out;
35248 +       }
35249 +
35250 +       err = -EINVAL;
35251 +       d = file->f_path.dentry;
35252 +       if (unlikely(sb == d->d_sb)) {
35253 +               if (!silent)
35254 +                       pr_err("%s must be outside\n", fname);
35255 +               goto out;
35256 +       }
35257 +       if (unlikely(au_test_fs_bad_xino(d->d_sb))) {
35258 +               if (!silent)
35259 +                       pr_err("xino doesn't support %s(%s)\n",
35260 +                              fname, au_sbtype(d->d_sb));
35261 +               goto out;
35262 +       }
35263 +       return file; /* success */
35264 +
35265 +out:
35266 +       fput(file);
35267 +       file = ERR_PTR(err);
35268 +       return file;
35269 +}
35270 +
35271 +/*
35272 + * find another branch who is on the same filesystem of the specified
35273 + * branch{@btgt}. search until @bbot.
35274 + */
35275 +static int is_sb_shared(struct super_block *sb, aufs_bindex_t btgt,
35276 +                       aufs_bindex_t bbot)
35277 +{
35278 +       aufs_bindex_t bindex;
35279 +       struct super_block *tgt_sb = au_sbr_sb(sb, btgt);
35280 +
35281 +       for (bindex = 0; bindex < btgt; bindex++)
35282 +               if (unlikely(tgt_sb == au_sbr_sb(sb, bindex)))
35283 +                       return bindex;
35284 +       for (bindex++; bindex <= bbot; bindex++)
35285 +               if (unlikely(tgt_sb == au_sbr_sb(sb, bindex)))
35286 +                       return bindex;
35287 +       return -1;
35288 +}
35289 +
35290 +/* ---------------------------------------------------------------------- */
35291 +
35292 +/*
35293 + * initialize the xinofile for the specified branch @br
35294 + * at the place/path where @base_file indicates.
35295 + * test whether another branch is on the same filesystem or not,
35296 + * if @do_test is true.
35297 + */
35298 +int au_xino_br(struct super_block *sb, struct au_branch *br, ino_t h_ino,
35299 +              struct file *base_file, int do_test)
35300 +{
35301 +       int err;
35302 +       ino_t ino;
35303 +       aufs_bindex_t bbot, bindex;
35304 +       struct au_branch *shared_br, *b;
35305 +       struct file *file;
35306 +       struct super_block *tgt_sb;
35307 +
35308 +       shared_br = NULL;
35309 +       bbot = au_sbbot(sb);
35310 +       if (do_test) {
35311 +               tgt_sb = au_br_sb(br);
35312 +               for (bindex = 0; bindex <= bbot; bindex++) {
35313 +                       b = au_sbr(sb, bindex);
35314 +                       if (tgt_sb == au_br_sb(b)) {
35315 +                               shared_br = b;
35316 +                               break;
35317 +                       }
35318 +               }
35319 +       }
35320 +
35321 +       if (!shared_br || !shared_br->br_xino.xi_file) {
35322 +               struct au_xino_lock_dir ldir;
35323 +
35324 +               au_xino_lock_dir(sb, base_file, &ldir);
35325 +               /* mnt_want_write() is unnecessary here */
35326 +               file = au_xino_create2(base_file, NULL);
35327 +               au_xino_unlock_dir(&ldir);
35328 +               err = PTR_ERR(file);
35329 +               if (IS_ERR(file))
35330 +                       goto out;
35331 +               br->br_xino.xi_file = file;
35332 +       } else {
35333 +               br->br_xino.xi_file = shared_br->br_xino.xi_file;
35334 +               get_file(br->br_xino.xi_file);
35335 +       }
35336 +
35337 +       ino = AUFS_ROOT_INO;
35338 +       err = au_xino_do_write(au_sbi(sb)->si_xwrite, br->br_xino.xi_file,
35339 +                              h_ino, ino);
35340 +       if (unlikely(err)) {
35341 +               fput(br->br_xino.xi_file);
35342 +               br->br_xino.xi_file = NULL;
35343 +       }
35344 +
35345 +out:
35346 +       return err;
35347 +}
35348 +
35349 +/* ---------------------------------------------------------------------- */
35350 +
35351 +/* trucate a xino bitmap file */
35352 +
35353 +/* todo: slow */
35354 +static int do_xib_restore(struct super_block *sb, struct file *file, void *page)
35355 +{
35356 +       int err, bit;
35357 +       ssize_t sz;
35358 +       unsigned long pindex;
35359 +       loff_t pos, pend;
35360 +       struct au_sbinfo *sbinfo;
35361 +       vfs_readf_t func;
35362 +       ino_t *ino;
35363 +       unsigned long *p;
35364 +
35365 +       err = 0;
35366 +       sbinfo = au_sbi(sb);
35367 +       MtxMustLock(&sbinfo->si_xib_mtx);
35368 +       p = sbinfo->si_xib_buf;
35369 +       func = sbinfo->si_xread;
35370 +       pend = vfsub_f_size_read(file);
35371 +       pos = 0;
35372 +       while (pos < pend) {
35373 +               sz = xino_fread(func, file, page, PAGE_SIZE, &pos);
35374 +               err = sz;
35375 +               if (unlikely(sz <= 0))
35376 +                       goto out;
35377 +
35378 +               err = 0;
35379 +               for (ino = page; sz > 0; ino++, sz -= sizeof(ino)) {
35380 +                       if (unlikely(*ino < AUFS_FIRST_INO))
35381 +                               continue;
35382 +
35383 +                       xib_calc_bit(*ino, &pindex, &bit);
35384 +                       AuDebugOn(page_bits <= bit);
35385 +                       err = xib_pindex(sb, pindex);
35386 +                       if (!err)
35387 +                               set_bit(bit, p);
35388 +                       else
35389 +                               goto out;
35390 +               }
35391 +       }
35392 +
35393 +out:
35394 +       return err;
35395 +}
35396 +
35397 +static int xib_restore(struct super_block *sb)
35398 +{
35399 +       int err;
35400 +       aufs_bindex_t bindex, bbot;
35401 +       void *page;
35402 +
35403 +       err = -ENOMEM;
35404 +       page = (void *)__get_free_page(GFP_NOFS);
35405 +       if (unlikely(!page))
35406 +               goto out;
35407 +
35408 +       err = 0;
35409 +       bbot = au_sbbot(sb);
35410 +       for (bindex = 0; !err && bindex <= bbot; bindex++)
35411 +               if (!bindex || is_sb_shared(sb, bindex, bindex - 1) < 0)
35412 +                       err = do_xib_restore
35413 +                               (sb, au_sbr(sb, bindex)->br_xino.xi_file, page);
35414 +               else
35415 +                       AuDbg("b%d\n", bindex);
35416 +       au_delayed_free_page((unsigned long)page);
35417 +
35418 +out:
35419 +       return err;
35420 +}
35421 +
35422 +int au_xib_trunc(struct super_block *sb)
35423 +{
35424 +       int err;
35425 +       ssize_t sz;
35426 +       loff_t pos;
35427 +       struct au_xino_lock_dir ldir;
35428 +       struct au_sbinfo *sbinfo;
35429 +       unsigned long *p;
35430 +       struct file *file;
35431 +
35432 +       SiMustWriteLock(sb);
35433 +
35434 +       err = 0;
35435 +       sbinfo = au_sbi(sb);
35436 +       if (!au_opt_test(sbinfo->si_mntflags, XINO))
35437 +               goto out;
35438 +
35439 +       file = sbinfo->si_xib;
35440 +       if (vfsub_f_size_read(file) <= PAGE_SIZE)
35441 +               goto out;
35442 +
35443 +       au_xino_lock_dir(sb, file, &ldir);
35444 +       /* mnt_want_write() is unnecessary here */
35445 +       file = au_xino_create2(sbinfo->si_xib, NULL);
35446 +       au_xino_unlock_dir(&ldir);
35447 +       err = PTR_ERR(file);
35448 +       if (IS_ERR(file))
35449 +               goto out;
35450 +       fput(sbinfo->si_xib);
35451 +       sbinfo->si_xib = file;
35452 +
35453 +       p = sbinfo->si_xib_buf;
35454 +       memset(p, 0, PAGE_SIZE);
35455 +       pos = 0;
35456 +       sz = xino_fwrite(sbinfo->si_xwrite, sbinfo->si_xib, p, PAGE_SIZE, &pos);
35457 +       if (unlikely(sz != PAGE_SIZE)) {
35458 +               err = sz;
35459 +               AuIOErr("err %d\n", err);
35460 +               if (sz >= 0)
35461 +                       err = -EIO;
35462 +               goto out;
35463 +       }
35464 +
35465 +       mutex_lock(&sbinfo->si_xib_mtx);
35466 +       /* mnt_want_write() is unnecessary here */
35467 +       err = xib_restore(sb);
35468 +       mutex_unlock(&sbinfo->si_xib_mtx);
35469 +
35470 +out:
35471 +       return err;
35472 +}
35473 +
35474 +/* ---------------------------------------------------------------------- */
35475 +
35476 +/*
35477 + * xino mount option handlers
35478 + */
35479 +
35480 +/* xino bitmap */
35481 +static void xino_clear_xib(struct super_block *sb)
35482 +{
35483 +       struct au_sbinfo *sbinfo;
35484 +
35485 +       SiMustWriteLock(sb);
35486 +
35487 +       sbinfo = au_sbi(sb);
35488 +       sbinfo->si_xread = NULL;
35489 +       sbinfo->si_xwrite = NULL;
35490 +       if (sbinfo->si_xib)
35491 +               fput(sbinfo->si_xib);
35492 +       sbinfo->si_xib = NULL;
35493 +       if (sbinfo->si_xib_buf)
35494 +               au_delayed_free_page((unsigned long)sbinfo->si_xib_buf);
35495 +       sbinfo->si_xib_buf = NULL;
35496 +}
35497 +
35498 +static int au_xino_set_xib(struct super_block *sb, struct file *base)
35499 +{
35500 +       int err;
35501 +       loff_t pos;
35502 +       struct au_sbinfo *sbinfo;
35503 +       struct file *file;
35504 +
35505 +       SiMustWriteLock(sb);
35506 +
35507 +       sbinfo = au_sbi(sb);
35508 +       file = au_xino_create2(base, sbinfo->si_xib);
35509 +       err = PTR_ERR(file);
35510 +       if (IS_ERR(file))
35511 +               goto out;
35512 +       if (sbinfo->si_xib)
35513 +               fput(sbinfo->si_xib);
35514 +       sbinfo->si_xib = file;
35515 +       sbinfo->si_xread = vfs_readf(file);
35516 +       sbinfo->si_xwrite = vfs_writef(file);
35517 +
35518 +       err = -ENOMEM;
35519 +       if (!sbinfo->si_xib_buf)
35520 +               sbinfo->si_xib_buf = (void *)get_zeroed_page(GFP_NOFS);
35521 +       if (unlikely(!sbinfo->si_xib_buf))
35522 +               goto out_unset;
35523 +
35524 +       sbinfo->si_xib_last_pindex = 0;
35525 +       sbinfo->si_xib_next_bit = 0;
35526 +       if (vfsub_f_size_read(file) < PAGE_SIZE) {
35527 +               pos = 0;
35528 +               err = xino_fwrite(sbinfo->si_xwrite, file, sbinfo->si_xib_buf,
35529 +                                 PAGE_SIZE, &pos);
35530 +               if (unlikely(err != PAGE_SIZE))
35531 +                       goto out_free;
35532 +       }
35533 +       err = 0;
35534 +       goto out; /* success */
35535 +
35536 +out_free:
35537 +       if (sbinfo->si_xib_buf)
35538 +               au_delayed_free_page((unsigned long)sbinfo->si_xib_buf);
35539 +       sbinfo->si_xib_buf = NULL;
35540 +       if (err >= 0)
35541 +               err = -EIO;
35542 +out_unset:
35543 +       fput(sbinfo->si_xib);
35544 +       sbinfo->si_xib = NULL;
35545 +       sbinfo->si_xread = NULL;
35546 +       sbinfo->si_xwrite = NULL;
35547 +out:
35548 +       return err;
35549 +}
35550 +
35551 +/* xino for each branch */
35552 +static void xino_clear_br(struct super_block *sb)
35553 +{
35554 +       aufs_bindex_t bindex, bbot;
35555 +       struct au_branch *br;
35556 +
35557 +       bbot = au_sbbot(sb);
35558 +       for (bindex = 0; bindex <= bbot; bindex++) {
35559 +               br = au_sbr(sb, bindex);
35560 +               if (!br || !br->br_xino.xi_file)
35561 +                       continue;
35562 +
35563 +               fput(br->br_xino.xi_file);
35564 +               br->br_xino.xi_file = NULL;
35565 +       }
35566 +}
35567 +
35568 +static int au_xino_set_br(struct super_block *sb, struct file *base)
35569 +{
35570 +       int err;
35571 +       ino_t ino;
35572 +       aufs_bindex_t bindex, bbot, bshared;
35573 +       struct {
35574 +               struct file *old, *new;
35575 +       } *fpair, *p;
35576 +       struct au_branch *br;
35577 +       struct inode *inode;
35578 +       vfs_writef_t writef;
35579 +
35580 +       SiMustWriteLock(sb);
35581 +
35582 +       err = -ENOMEM;
35583 +       bbot = au_sbbot(sb);
35584 +       fpair = kcalloc(bbot + 1, sizeof(*fpair), GFP_NOFS);
35585 +       if (unlikely(!fpair))
35586 +               goto out;
35587 +
35588 +       inode = d_inode(sb->s_root);
35589 +       ino = AUFS_ROOT_INO;
35590 +       writef = au_sbi(sb)->si_xwrite;
35591 +       for (bindex = 0, p = fpair; bindex <= bbot; bindex++, p++) {
35592 +               bshared = is_sb_shared(sb, bindex, bindex - 1);
35593 +               if (bshared >= 0) {
35594 +                       /* shared xino */
35595 +                       *p = fpair[bshared];
35596 +                       get_file(p->new);
35597 +               }
35598 +
35599 +               if (!p->new) {
35600 +                       /* new xino */
35601 +                       br = au_sbr(sb, bindex);
35602 +                       p->old = br->br_xino.xi_file;
35603 +                       p->new = au_xino_create2(base, br->br_xino.xi_file);
35604 +                       err = PTR_ERR(p->new);
35605 +                       if (IS_ERR(p->new)) {
35606 +                               p->new = NULL;
35607 +                               goto out_pair;
35608 +                       }
35609 +               }
35610 +
35611 +               err = au_xino_do_write(writef, p->new,
35612 +                                      au_h_iptr(inode, bindex)->i_ino, ino);
35613 +               if (unlikely(err))
35614 +                       goto out_pair;
35615 +       }
35616 +
35617 +       for (bindex = 0, p = fpair; bindex <= bbot; bindex++, p++) {
35618 +               br = au_sbr(sb, bindex);
35619 +               if (br->br_xino.xi_file)
35620 +                       fput(br->br_xino.xi_file);
35621 +               get_file(p->new);
35622 +               br->br_xino.xi_file = p->new;
35623 +       }
35624 +
35625 +out_pair:
35626 +       for (bindex = 0, p = fpair; bindex <= bbot; bindex++, p++)
35627 +               if (p->new)
35628 +                       fput(p->new);
35629 +               else
35630 +                       break;
35631 +       au_delayed_kfree(fpair);
35632 +out:
35633 +       return err;
35634 +}
35635 +
35636 +void au_xino_clr(struct super_block *sb)
35637 +{
35638 +       struct au_sbinfo *sbinfo;
35639 +
35640 +       au_xigen_clr(sb);
35641 +       xino_clear_xib(sb);
35642 +       xino_clear_br(sb);
35643 +       sbinfo = au_sbi(sb);
35644 +       /* lvalue, do not call au_mntflags() */
35645 +       au_opt_clr(sbinfo->si_mntflags, XINO);
35646 +}
35647 +
35648 +int au_xino_set(struct super_block *sb, struct au_opt_xino *xino, int remount)
35649 +{
35650 +       int err, skip;
35651 +       struct dentry *parent, *cur_parent;
35652 +       struct qstr *dname, *cur_name;
35653 +       struct file *cur_xino;
35654 +       struct inode *dir;
35655 +       struct au_sbinfo *sbinfo;
35656 +
35657 +       SiMustWriteLock(sb);
35658 +
35659 +       err = 0;
35660 +       sbinfo = au_sbi(sb);
35661 +       parent = dget_parent(xino->file->f_path.dentry);
35662 +       if (remount) {
35663 +               skip = 0;
35664 +               dname = &xino->file->f_path.dentry->d_name;
35665 +               cur_xino = sbinfo->si_xib;
35666 +               if (cur_xino) {
35667 +                       cur_parent = dget_parent(cur_xino->f_path.dentry);
35668 +                       cur_name = &cur_xino->f_path.dentry->d_name;
35669 +                       skip = (cur_parent == parent
35670 +                               && au_qstreq(dname, cur_name));
35671 +                       dput(cur_parent);
35672 +               }
35673 +               if (skip)
35674 +                       goto out;
35675 +       }
35676 +
35677 +       au_opt_set(sbinfo->si_mntflags, XINO);
35678 +       dir = d_inode(parent);
35679 +       inode_lock_nested(dir, AuLsc_I_PARENT);
35680 +       /* mnt_want_write() is unnecessary here */
35681 +       err = au_xino_set_xib(sb, xino->file);
35682 +       if (!err)
35683 +               err = au_xigen_set(sb, xino->file);
35684 +       if (!err)
35685 +               err = au_xino_set_br(sb, xino->file);
35686 +       inode_unlock(dir);
35687 +       if (!err)
35688 +               goto out; /* success */
35689 +
35690 +       /* reset all */
35691 +       AuIOErr("failed creating xino(%d).\n", err);
35692 +       au_xigen_clr(sb);
35693 +       xino_clear_xib(sb);
35694 +
35695 +out:
35696 +       dput(parent);
35697 +       return err;
35698 +}
35699 +
35700 +/* ---------------------------------------------------------------------- */
35701 +
35702 +/*
35703 + * create a xinofile at the default place/path.
35704 + */
35705 +struct file *au_xino_def(struct super_block *sb)
35706 +{
35707 +       struct file *file;
35708 +       char *page, *p;
35709 +       struct au_branch *br;
35710 +       struct super_block *h_sb;
35711 +       struct path path;
35712 +       aufs_bindex_t bbot, bindex, bwr;
35713 +
35714 +       br = NULL;
35715 +       bbot = au_sbbot(sb);
35716 +       bwr = -1;
35717 +       for (bindex = 0; bindex <= bbot; bindex++) {
35718 +               br = au_sbr(sb, bindex);
35719 +               if (au_br_writable(br->br_perm)
35720 +                   && !au_test_fs_bad_xino(au_br_sb(br))) {
35721 +                       bwr = bindex;
35722 +                       break;
35723 +               }
35724 +       }
35725 +
35726 +       if (bwr >= 0) {
35727 +               file = ERR_PTR(-ENOMEM);
35728 +               page = (void *)__get_free_page(GFP_NOFS);
35729 +               if (unlikely(!page))
35730 +                       goto out;
35731 +               path.mnt = au_br_mnt(br);
35732 +               path.dentry = au_h_dptr(sb->s_root, bwr);
35733 +               p = d_path(&path, page, PATH_MAX - sizeof(AUFS_XINO_FNAME));
35734 +               file = (void *)p;
35735 +               if (!IS_ERR(p)) {
35736 +                       strcat(p, "/" AUFS_XINO_FNAME);
35737 +                       AuDbg("%s\n", p);
35738 +                       file = au_xino_create(sb, p, /*silent*/0);
35739 +                       if (!IS_ERR(file))
35740 +                               au_xino_brid_set(sb, br->br_id);
35741 +               }
35742 +               au_delayed_free_page((unsigned long)page);
35743 +       } else {
35744 +               file = au_xino_create(sb, AUFS_XINO_DEFPATH, /*silent*/0);
35745 +               if (IS_ERR(file))
35746 +                       goto out;
35747 +               h_sb = file->f_path.dentry->d_sb;
35748 +               if (unlikely(au_test_fs_bad_xino(h_sb))) {
35749 +                       pr_err("xino doesn't support %s(%s)\n",
35750 +                              AUFS_XINO_DEFPATH, au_sbtype(h_sb));
35751 +                       fput(file);
35752 +                       file = ERR_PTR(-EINVAL);
35753 +               }
35754 +               if (!IS_ERR(file))
35755 +                       au_xino_brid_set(sb, -1);
35756 +       }
35757 +
35758 +out:
35759 +       return file;
35760 +}
35761 +
35762 +/* ---------------------------------------------------------------------- */
35763 +
35764 +int au_xino_path(struct seq_file *seq, struct file *file)
35765 +{
35766 +       int err;
35767 +
35768 +       err = au_seq_path(seq, &file->f_path);
35769 +       if (unlikely(err))
35770 +               goto out;
35771 +
35772 +#define Deleted "\\040(deleted)"
35773 +       seq->count -= sizeof(Deleted) - 1;
35774 +       AuDebugOn(memcmp(seq->buf + seq->count, Deleted,
35775 +                        sizeof(Deleted) - 1));
35776 +#undef Deleted
35777 +
35778 +out:
35779 +       return err;
35780 +}
35781 diff -urN /usr/share/empty/include/uapi/linux/aufs_type.h linux/include/uapi/linux/aufs_type.h
35782 --- /usr/share/empty/include/uapi/linux/aufs_type.h     1970-01-01 01:00:00.000000000 +0100
35783 +++ linux/include/uapi/linux/aufs_type.h        2016-12-17 12:28:38.769494865 +0100
35784 @@ -0,0 +1,419 @@
35785 +/*
35786 + * Copyright (C) 2005-2016 Junjiro R. Okajima
35787 + *
35788 + * This program, aufs is free software; you can redistribute it and/or modify
35789 + * it under the terms of the GNU General Public License as published by
35790 + * the Free Software Foundation; either version 2 of the License, or
35791 + * (at your option) any later version.
35792 + *
35793 + * This program is distributed in the hope that it will be useful,
35794 + * but WITHOUT ANY WARRANTY; without even the implied warranty of
35795 + * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
35796 + * GNU General Public License for more details.
35797 + *
35798 + * You should have received a copy of the GNU General Public License
35799 + * along with this program.  If not, see <http://www.gnu.org/licenses/>.
35800 + */
35801 +
35802 +#ifndef __AUFS_TYPE_H__
35803 +#define __AUFS_TYPE_H__
35804 +
35805 +#define AUFS_NAME      "aufs"
35806 +
35807 +#ifdef __KERNEL__
35808 +/*
35809 + * define it before including all other headers.
35810 + * sched.h may use pr_* macros before defining "current", so define the
35811 + * no-current version first, and re-define later.
35812 + */
35813 +#define pr_fmt(fmt)    AUFS_NAME " %s:%d: " fmt, __func__, __LINE__
35814 +#include <linux/sched.h>
35815 +#undef pr_fmt
35816 +#define pr_fmt(fmt) \
35817 +               AUFS_NAME " %s:%d:%.*s[%d]: " fmt, __func__, __LINE__, \
35818 +               (int)sizeof(current->comm), current->comm, current->pid
35819 +#else
35820 +#include <stdint.h>
35821 +#include <sys/types.h>
35822 +#endif /* __KERNEL__ */
35823 +
35824 +#include <linux/limits.h>
35825 +
35826 +#define AUFS_VERSION   "4.9-20161219"
35827 +
35828 +/* todo? move this to linux-2.6.19/include/magic.h */
35829 +#define AUFS_SUPER_MAGIC       ('a' << 24 | 'u' << 16 | 'f' << 8 | 's')
35830 +
35831 +/* ---------------------------------------------------------------------- */
35832 +
35833 +#ifdef CONFIG_AUFS_BRANCH_MAX_127
35834 +typedef int8_t aufs_bindex_t;
35835 +#define AUFS_BRANCH_MAX 127
35836 +#else
35837 +typedef int16_t aufs_bindex_t;
35838 +#ifdef CONFIG_AUFS_BRANCH_MAX_511
35839 +#define AUFS_BRANCH_MAX 511
35840 +#elif defined(CONFIG_AUFS_BRANCH_MAX_1023)
35841 +#define AUFS_BRANCH_MAX 1023
35842 +#elif defined(CONFIG_AUFS_BRANCH_MAX_32767)
35843 +#define AUFS_BRANCH_MAX 32767
35844 +#endif
35845 +#endif
35846 +
35847 +#ifdef __KERNEL__
35848 +#ifndef AUFS_BRANCH_MAX
35849 +#error unknown CONFIG_AUFS_BRANCH_MAX value
35850 +#endif
35851 +#endif /* __KERNEL__ */
35852 +
35853 +/* ---------------------------------------------------------------------- */
35854 +
35855 +#define AUFS_FSTYPE            AUFS_NAME
35856 +
35857 +#define AUFS_ROOT_INO          2
35858 +#define AUFS_FIRST_INO         11
35859 +
35860 +#define AUFS_WH_PFX            ".wh."
35861 +#define AUFS_WH_PFX_LEN                ((int)sizeof(AUFS_WH_PFX) - 1)
35862 +#define AUFS_WH_TMP_LEN                4
35863 +/* a limit for rmdir/rename a dir and copyup */
35864 +#define AUFS_MAX_NAMELEN       (NAME_MAX \
35865 +                               - AUFS_WH_PFX_LEN * 2   /* doubly whiteouted */\
35866 +                               - 1                     /* dot */\
35867 +                               - AUFS_WH_TMP_LEN)      /* hex */
35868 +#define AUFS_XINO_FNAME                "." AUFS_NAME ".xino"
35869 +#define AUFS_XINO_DEFPATH      "/tmp/" AUFS_XINO_FNAME
35870 +#define AUFS_XINO_DEF_SEC      30 /* seconds */
35871 +#define AUFS_XINO_DEF_TRUNC    45 /* percentage */
35872 +#define AUFS_DIRWH_DEF         3
35873 +#define AUFS_RDCACHE_DEF       10 /* seconds */
35874 +#define AUFS_RDCACHE_MAX       3600 /* seconds */
35875 +#define AUFS_RDBLK_DEF         512 /* bytes */
35876 +#define AUFS_RDHASH_DEF                32
35877 +#define AUFS_WKQ_NAME          AUFS_NAME "d"
35878 +#define AUFS_MFS_DEF_SEC       30 /* seconds */
35879 +#define AUFS_MFS_MAX_SEC       3600 /* seconds */
35880 +#define AUFS_FHSM_CACHE_DEF_SEC        30 /* seconds */
35881 +#define AUFS_PLINK_WARN                50 /* number of plinks in a single bucket */
35882 +
35883 +/* pseudo-link maintenace under /proc */
35884 +#define AUFS_PLINK_MAINT_NAME  "plink_maint"
35885 +#define AUFS_PLINK_MAINT_DIR   "fs/" AUFS_NAME
35886 +#define AUFS_PLINK_MAINT_PATH  AUFS_PLINK_MAINT_DIR "/" AUFS_PLINK_MAINT_NAME
35887 +
35888 +#define AUFS_DIROPQ_NAME       AUFS_WH_PFX ".opq" /* whiteouted doubly */
35889 +#define AUFS_WH_DIROPQ         AUFS_WH_PFX AUFS_DIROPQ_NAME
35890 +
35891 +#define AUFS_BASE_NAME         AUFS_WH_PFX AUFS_NAME
35892 +#define AUFS_PLINKDIR_NAME     AUFS_WH_PFX "plnk"
35893 +#define AUFS_ORPHDIR_NAME      AUFS_WH_PFX "orph"
35894 +
35895 +/* doubly whiteouted */
35896 +#define AUFS_WH_BASE           AUFS_WH_PFX AUFS_BASE_NAME
35897 +#define AUFS_WH_PLINKDIR       AUFS_WH_PFX AUFS_PLINKDIR_NAME
35898 +#define AUFS_WH_ORPHDIR                AUFS_WH_PFX AUFS_ORPHDIR_NAME
35899 +
35900 +/* branch permissions and attributes */
35901 +#define AUFS_BRPERM_RW         "rw"
35902 +#define AUFS_BRPERM_RO         "ro"
35903 +#define AUFS_BRPERM_RR         "rr"
35904 +#define AUFS_BRATTR_COO_REG    "coo_reg"
35905 +#define AUFS_BRATTR_COO_ALL    "coo_all"
35906 +#define AUFS_BRATTR_FHSM       "fhsm"
35907 +#define AUFS_BRATTR_UNPIN      "unpin"
35908 +#define AUFS_BRATTR_ICEX       "icex"
35909 +#define AUFS_BRATTR_ICEX_SEC   "icexsec"
35910 +#define AUFS_BRATTR_ICEX_SYS   "icexsys"
35911 +#define AUFS_BRATTR_ICEX_TR    "icextr"
35912 +#define AUFS_BRATTR_ICEX_USR   "icexusr"
35913 +#define AUFS_BRATTR_ICEX_OTH   "icexoth"
35914 +#define AUFS_BRRATTR_WH                "wh"
35915 +#define AUFS_BRWATTR_NLWH      "nolwh"
35916 +#define AUFS_BRWATTR_MOO       "moo"
35917 +
35918 +#define AuBrPerm_RW            1               /* writable, hardlinkable wh */
35919 +#define AuBrPerm_RO            (1 << 1)        /* readonly */
35920 +#define AuBrPerm_RR            (1 << 2)        /* natively readonly */
35921 +#define AuBrPerm_Mask          (AuBrPerm_RW | AuBrPerm_RO | AuBrPerm_RR)
35922 +
35923 +#define AuBrAttr_COO_REG       (1 << 3)        /* copy-up on open */
35924 +#define AuBrAttr_COO_ALL       (1 << 4)
35925 +#define AuBrAttr_COO_Mask      (AuBrAttr_COO_REG | AuBrAttr_COO_ALL)
35926 +
35927 +#define AuBrAttr_FHSM          (1 << 5)        /* file-based hsm */
35928 +#define AuBrAttr_UNPIN         (1 << 6)        /* rename-able top dir of
35929 +                                                  branch. meaningless since
35930 +                                                  linux-3.18-rc1 */
35931 +
35932 +/* ignore error in copying XATTR */
35933 +#define AuBrAttr_ICEX_SEC      (1 << 7)
35934 +#define AuBrAttr_ICEX_SYS      (1 << 8)
35935 +#define AuBrAttr_ICEX_TR       (1 << 9)
35936 +#define AuBrAttr_ICEX_USR      (1 << 10)
35937 +#define AuBrAttr_ICEX_OTH      (1 << 11)
35938 +#define AuBrAttr_ICEX          (AuBrAttr_ICEX_SEC      \
35939 +                                | AuBrAttr_ICEX_SYS    \
35940 +                                | AuBrAttr_ICEX_TR     \
35941 +                                | AuBrAttr_ICEX_USR    \
35942 +                                | AuBrAttr_ICEX_OTH)
35943 +
35944 +#define AuBrRAttr_WH           (1 << 12)       /* whiteout-able */
35945 +#define AuBrRAttr_Mask         AuBrRAttr_WH
35946 +
35947 +#define AuBrWAttr_NoLinkWH     (1 << 13)       /* un-hardlinkable whiteouts */
35948 +#define AuBrWAttr_MOO          (1 << 14)       /* move-up on open */
35949 +#define AuBrWAttr_Mask         (AuBrWAttr_NoLinkWH | AuBrWAttr_MOO)
35950 +
35951 +#define AuBrAttr_CMOO_Mask     (AuBrAttr_COO_Mask | AuBrWAttr_MOO)
35952 +
35953 +/* #warning test userspace */
35954 +#ifdef __KERNEL__
35955 +#ifndef CONFIG_AUFS_FHSM
35956 +#undef AuBrAttr_FHSM
35957 +#define AuBrAttr_FHSM          0
35958 +#endif
35959 +#ifndef CONFIG_AUFS_XATTR
35960 +#undef AuBrAttr_ICEX
35961 +#define AuBrAttr_ICEX          0
35962 +#undef AuBrAttr_ICEX_SEC
35963 +#define AuBrAttr_ICEX_SEC      0
35964 +#undef AuBrAttr_ICEX_SYS
35965 +#define AuBrAttr_ICEX_SYS      0
35966 +#undef AuBrAttr_ICEX_TR
35967 +#define AuBrAttr_ICEX_TR       0
35968 +#undef AuBrAttr_ICEX_USR
35969 +#define AuBrAttr_ICEX_USR      0
35970 +#undef AuBrAttr_ICEX_OTH
35971 +#define AuBrAttr_ICEX_OTH      0
35972 +#endif
35973 +#endif
35974 +
35975 +/* the longest combination */
35976 +/* AUFS_BRATTR_ICEX and AUFS_BRATTR_ICEX_TR don't affect here */
35977 +#define AuBrPermStrSz  sizeof(AUFS_BRPERM_RW                   \
35978 +                              "+" AUFS_BRATTR_COO_REG          \
35979 +                              "+" AUFS_BRATTR_FHSM             \
35980 +                              "+" AUFS_BRATTR_UNPIN            \
35981 +                              "+" AUFS_BRATTR_ICEX_SEC         \
35982 +                              "+" AUFS_BRATTR_ICEX_SYS         \
35983 +                              "+" AUFS_BRATTR_ICEX_USR         \
35984 +                              "+" AUFS_BRATTR_ICEX_OTH         \
35985 +                              "+" AUFS_BRWATTR_NLWH)
35986 +
35987 +typedef struct {
35988 +       char a[AuBrPermStrSz];
35989 +} au_br_perm_str_t;
35990 +
35991 +static inline int au_br_writable(int brperm)
35992 +{
35993 +       return brperm & AuBrPerm_RW;
35994 +}
35995 +
35996 +static inline int au_br_whable(int brperm)
35997 +{
35998 +       return brperm & (AuBrPerm_RW | AuBrRAttr_WH);
35999 +}
36000 +
36001 +static inline int au_br_wh_linkable(int brperm)
36002 +{
36003 +       return !(brperm & AuBrWAttr_NoLinkWH);
36004 +}
36005 +
36006 +static inline int au_br_cmoo(int brperm)
36007 +{
36008 +       return brperm & AuBrAttr_CMOO_Mask;
36009 +}
36010 +
36011 +static inline int au_br_fhsm(int brperm)
36012 +{
36013 +       return brperm & AuBrAttr_FHSM;
36014 +}
36015 +
36016 +/* ---------------------------------------------------------------------- */
36017 +
36018 +/* ioctl */
36019 +enum {
36020 +       /* readdir in userspace */
36021 +       AuCtl_RDU,
36022 +       AuCtl_RDU_INO,
36023 +
36024 +       AuCtl_WBR_FD,   /* pathconf wrapper */
36025 +       AuCtl_IBUSY,    /* busy inode */
36026 +       AuCtl_MVDOWN,   /* move-down */
36027 +       AuCtl_BR,       /* info about branches */
36028 +       AuCtl_FHSM_FD   /* connection for fhsm */
36029 +};
36030 +
36031 +/* borrowed from linux/include/linux/kernel.h */
36032 +#ifndef ALIGN
36033 +#define ALIGN(x, a)            __ALIGN_MASK(x, (typeof(x))(a)-1)
36034 +#define __ALIGN_MASK(x, mask)  (((x)+(mask))&~(mask))
36035 +#endif
36036 +
36037 +/* borrowed from linux/include/linux/compiler-gcc3.h */
36038 +#ifndef __aligned
36039 +#define __aligned(x)                   __attribute__((aligned(x)))
36040 +#endif
36041 +
36042 +#ifdef __KERNEL__
36043 +#ifndef __packed
36044 +#define __packed                       __attribute__((packed))
36045 +#endif
36046 +#endif
36047 +
36048 +struct au_rdu_cookie {
36049 +       uint64_t        h_pos;
36050 +       int16_t         bindex;
36051 +       uint8_t         flags;
36052 +       uint8_t         pad;
36053 +       uint32_t        generation;
36054 +} __aligned(8);
36055 +
36056 +struct au_rdu_ent {
36057 +       uint64_t        ino;
36058 +       int16_t         bindex;
36059 +       uint8_t         type;
36060 +       uint8_t         nlen;
36061 +       uint8_t         wh;
36062 +       char            name[0];
36063 +} __aligned(8);
36064 +
36065 +static inline int au_rdu_len(int nlen)
36066 +{
36067 +       /* include the terminating NULL */
36068 +       return ALIGN(sizeof(struct au_rdu_ent) + nlen + 1,
36069 +                    sizeof(uint64_t));
36070 +}
36071 +
36072 +union au_rdu_ent_ul {
36073 +       struct au_rdu_ent __user        *e;
36074 +       uint64_t                        ul;
36075 +};
36076 +
36077 +enum {
36078 +       AufsCtlRduV_SZ,
36079 +       AufsCtlRduV_End
36080 +};
36081 +
36082 +struct aufs_rdu {
36083 +       /* input */
36084 +       union {
36085 +               uint64_t        sz;     /* AuCtl_RDU */
36086 +               uint64_t        nent;   /* AuCtl_RDU_INO */
36087 +       };
36088 +       union au_rdu_ent_ul     ent;
36089 +       uint16_t                verify[AufsCtlRduV_End];
36090 +
36091 +       /* input/output */
36092 +       uint32_t                blk;
36093 +
36094 +       /* output */
36095 +       union au_rdu_ent_ul     tail;
36096 +       /* number of entries which were added in a single call */
36097 +       uint64_t                rent;
36098 +       uint8_t                 full;
36099 +       uint8_t                 shwh;
36100 +
36101 +       struct au_rdu_cookie    cookie;
36102 +} __aligned(8);
36103 +
36104 +/* ---------------------------------------------------------------------- */
36105 +
36106 +struct aufs_wbr_fd {
36107 +       uint32_t        oflags;
36108 +       int16_t         brid;
36109 +} __aligned(8);
36110 +
36111 +/* ---------------------------------------------------------------------- */
36112 +
36113 +struct aufs_ibusy {
36114 +       uint64_t        ino, h_ino;
36115 +       int16_t         bindex;
36116 +} __aligned(8);
36117 +
36118 +/* ---------------------------------------------------------------------- */
36119 +
36120 +/* error code for move-down */
36121 +/* the actual message strings are implemented in aufs-util.git */
36122 +enum {
36123 +       EAU_MVDOWN_OPAQUE = 1,
36124 +       EAU_MVDOWN_WHITEOUT,
36125 +       EAU_MVDOWN_UPPER,
36126 +       EAU_MVDOWN_BOTTOM,
36127 +       EAU_MVDOWN_NOUPPER,
36128 +       EAU_MVDOWN_NOLOWERBR,
36129 +       EAU_Last
36130 +};
36131 +
36132 +/* flags for move-down */
36133 +#define AUFS_MVDOWN_DMSG       1
36134 +#define AUFS_MVDOWN_OWLOWER    (1 << 1)        /* overwrite lower */
36135 +#define AUFS_MVDOWN_KUPPER     (1 << 2)        /* keep upper */
36136 +#define AUFS_MVDOWN_ROLOWER    (1 << 3)        /* do even if lower is RO */
36137 +#define AUFS_MVDOWN_ROLOWER_R  (1 << 4)        /* did on lower RO */
36138 +#define AUFS_MVDOWN_ROUPPER    (1 << 5)        /* do even if upper is RO */
36139 +#define AUFS_MVDOWN_ROUPPER_R  (1 << 6)        /* did on upper RO */
36140 +#define AUFS_MVDOWN_BRID_UPPER (1 << 7)        /* upper brid */
36141 +#define AUFS_MVDOWN_BRID_LOWER (1 << 8)        /* lower brid */
36142 +#define AUFS_MVDOWN_FHSM_LOWER (1 << 9)        /* find fhsm attr for lower */
36143 +#define AUFS_MVDOWN_STFS       (1 << 10)       /* req. stfs */
36144 +#define AUFS_MVDOWN_STFS_FAILED        (1 << 11)       /* output: stfs is unusable */
36145 +#define AUFS_MVDOWN_BOTTOM     (1 << 12)       /* output: no more lowers */
36146 +
36147 +/* index for move-down */
36148 +enum {
36149 +       AUFS_MVDOWN_UPPER,
36150 +       AUFS_MVDOWN_LOWER,
36151 +       AUFS_MVDOWN_NARRAY
36152 +};
36153 +
36154 +/*
36155 + * additional info of move-down
36156 + * number of free blocks and inodes.
36157 + * subset of struct kstatfs, but smaller and always 64bit.
36158 + */
36159 +struct aufs_stfs {
36160 +       uint64_t        f_blocks;
36161 +       uint64_t        f_bavail;
36162 +       uint64_t        f_files;
36163 +       uint64_t        f_ffree;
36164 +};
36165 +
36166 +struct aufs_stbr {
36167 +       int16_t                 brid;   /* optional input */
36168 +       int16_t                 bindex; /* output */
36169 +       struct aufs_stfs        stfs;   /* output when AUFS_MVDOWN_STFS set */
36170 +} __aligned(8);
36171 +
36172 +struct aufs_mvdown {
36173 +       uint32_t                flags;                  /* input/output */
36174 +       struct aufs_stbr        stbr[AUFS_MVDOWN_NARRAY]; /* input/output */
36175 +       int8_t                  au_errno;               /* output */
36176 +} __aligned(8);
36177 +
36178 +/* ---------------------------------------------------------------------- */
36179 +
36180 +union aufs_brinfo {
36181 +       /* PATH_MAX may differ between kernel-space and user-space */
36182 +       char    _spacer[4096];
36183 +       struct {
36184 +               int16_t id;
36185 +               int     perm;
36186 +               char    path[0];
36187 +       };
36188 +} __aligned(8);
36189 +
36190 +/* ---------------------------------------------------------------------- */
36191 +
36192 +#define AuCtlType              'A'
36193 +#define AUFS_CTL_RDU           _IOWR(AuCtlType, AuCtl_RDU, struct aufs_rdu)
36194 +#define AUFS_CTL_RDU_INO       _IOWR(AuCtlType, AuCtl_RDU_INO, struct aufs_rdu)
36195 +#define AUFS_CTL_WBR_FD                _IOW(AuCtlType, AuCtl_WBR_FD, \
36196 +                                    struct aufs_wbr_fd)
36197 +#define AUFS_CTL_IBUSY         _IOWR(AuCtlType, AuCtl_IBUSY, struct aufs_ibusy)
36198 +#define AUFS_CTL_MVDOWN                _IOWR(AuCtlType, AuCtl_MVDOWN, \
36199 +                                     struct aufs_mvdown)
36200 +#define AUFS_CTL_BRINFO                _IOW(AuCtlType, AuCtl_BR, union aufs_brinfo)
36201 +#define AUFS_CTL_FHSM_FD       _IOW(AuCtlType, AuCtl_FHSM_FD, int)
36202 +
36203 +#endif /* __AUFS_TYPE_H__ */
36204 aufs4.9 loopback patch
36205
36206 diff --git a/drivers/block/loop.c b/drivers/block/loop.c
36207 index 6ee9235..f64161f 100644
36208 --- a/drivers/block/loop.c
36209 +++ b/drivers/block/loop.c
36210 @@ -551,7 +551,7 @@ static int do_req_filebacked(struct loop_device *lo, struct request *rq)
36211  }
36212  
36213  struct switch_request {
36214 -       struct file *file;
36215 +       struct file *file, *virt_file;
36216         struct completion wait;
36217  };
36218  
36219 @@ -577,6 +577,7 @@ static void do_loop_switch(struct loop_device *lo, struct switch_request *p)
36220         mapping = file->f_mapping;
36221         mapping_set_gfp_mask(old_file->f_mapping, lo->old_gfp_mask);
36222         lo->lo_backing_file = file;
36223 +       lo->lo_backing_virt_file = p->virt_file;
36224         lo->lo_blocksize = S_ISBLK(mapping->host->i_mode) ?
36225                 mapping->host->i_bdev->bd_block_size : PAGE_SIZE;
36226         lo->old_gfp_mask = mapping_gfp_mask(mapping);
36227 @@ -589,11 +590,13 @@ static void do_loop_switch(struct loop_device *lo, struct switch_request *p)
36228   * First it needs to flush existing IO, it does this by sending a magic
36229   * BIO down the pipe. The completion of this BIO does the actual switch.
36230   */
36231 -static int loop_switch(struct loop_device *lo, struct file *file)
36232 +static int loop_switch(struct loop_device *lo, struct file *file,
36233 +                      struct file *virt_file)
36234  {
36235         struct switch_request w;
36236  
36237         w.file = file;
36238 +       w.virt_file = virt_file;
36239  
36240         /* freeze queue and wait for completion of scheduled requests */
36241         blk_mq_freeze_queue(lo->lo_queue);
36242 @@ -612,7 +615,16 @@ static int loop_switch(struct loop_device *lo, struct file *file)
36243   */
36244  static int loop_flush(struct loop_device *lo)
36245  {
36246 -       return loop_switch(lo, NULL);
36247 +       return loop_switch(lo, NULL, NULL);
36248 +}
36249 +
36250 +static struct file *loop_real_file(struct file *file)
36251 +{
36252 +       struct file *f = NULL;
36253 +
36254 +       if (file->f_path.dentry->d_sb->s_op->real_loop)
36255 +               f = file->f_path.dentry->d_sb->s_op->real_loop(file);
36256 +       return f;
36257  }
36258  
36259  static void loop_reread_partitions(struct loop_device *lo,
36260 @@ -649,6 +661,7 @@ static int loop_change_fd(struct loop_device *lo, struct block_device *bdev,
36261                           unsigned int arg)
36262  {
36263         struct file     *file, *old_file;
36264 +       struct file     *f, *virt_file = NULL, *old_virt_file;
36265         struct inode    *inode;
36266         int             error;
36267  
36268 @@ -665,9 +678,16 @@ static int loop_change_fd(struct loop_device *lo, struct block_device *bdev,
36269         file = fget(arg);
36270         if (!file)
36271                 goto out;
36272 +       f = loop_real_file(file);
36273 +       if (f) {
36274 +               virt_file = file;
36275 +               file = f;
36276 +               get_file(file);
36277 +       }
36278  
36279         inode = file->f_mapping->host;
36280         old_file = lo->lo_backing_file;
36281 +       old_virt_file = lo->lo_backing_virt_file;
36282  
36283         error = -EINVAL;
36284  
36285 @@ -679,17 +699,21 @@ static int loop_change_fd(struct loop_device *lo, struct block_device *bdev,
36286                 goto out_putf;
36287  
36288         /* and ... switch */
36289 -       error = loop_switch(lo, file);
36290 +       error = loop_switch(lo, file, virt_file);
36291         if (error)
36292                 goto out_putf;
36293  
36294         fput(old_file);
36295 +       if (old_virt_file)
36296 +               fput(old_virt_file);
36297         if (lo->lo_flags & LO_FLAGS_PARTSCAN)
36298                 loop_reread_partitions(lo, bdev);
36299         return 0;
36300  
36301   out_putf:
36302         fput(file);
36303 +       if (virt_file)
36304 +               fput(virt_file);
36305   out:
36306         return error;
36307  }
36308 @@ -876,7 +900,7 @@ static int loop_prepare_queue(struct loop_device *lo)
36309  static int loop_set_fd(struct loop_device *lo, fmode_t mode,
36310                        struct block_device *bdev, unsigned int arg)
36311  {
36312 -       struct file     *file, *f;
36313 +       struct file     *file, *f, *virt_file = NULL;
36314         struct inode    *inode;
36315         struct address_space *mapping;
36316         unsigned lo_blocksize;
36317 @@ -891,6 +915,12 @@ static int loop_set_fd(struct loop_device *lo, fmode_t mode,
36318         file = fget(arg);
36319         if (!file)
36320                 goto out;
36321 +       f = loop_real_file(file);
36322 +       if (f) {
36323 +               virt_file = file;
36324 +               file = f;
36325 +               get_file(file);
36326 +       }
36327  
36328         error = -EBUSY;
36329         if (lo->lo_state != Lo_unbound)
36330 @@ -943,6 +973,7 @@ static int loop_set_fd(struct loop_device *lo, fmode_t mode,
36331         lo->lo_device = bdev;
36332         lo->lo_flags = lo_flags;
36333         lo->lo_backing_file = file;
36334 +       lo->lo_backing_virt_file = virt_file;
36335         lo->transfer = NULL;
36336         lo->ioctl = NULL;
36337         lo->lo_sizelimit = 0;
36338 @@ -975,6 +1006,8 @@ static int loop_set_fd(struct loop_device *lo, fmode_t mode,
36339  
36340   out_putf:
36341         fput(file);
36342 +       if (virt_file)
36343 +               fput(virt_file);
36344   out:
36345         /* This is safe: open() is still holding a reference. */
36346         module_put(THIS_MODULE);
36347 @@ -1021,6 +1054,7 @@ static int loop_set_fd(struct loop_device *lo, fmode_t mode,
36348  static int loop_clr_fd(struct loop_device *lo)
36349  {
36350         struct file *filp = lo->lo_backing_file;
36351 +       struct file *virt_filp = lo->lo_backing_virt_file;
36352         gfp_t gfp = lo->old_gfp_mask;
36353         struct block_device *bdev = lo->lo_device;
36354  
36355 @@ -1052,6 +1086,7 @@ static int loop_clr_fd(struct loop_device *lo)
36356         spin_lock_irq(&lo->lo_lock);
36357         lo->lo_state = Lo_rundown;
36358         lo->lo_backing_file = NULL;
36359 +       lo->lo_backing_virt_file = NULL;
36360         spin_unlock_irq(&lo->lo_lock);
36361  
36362         loop_release_xfer(lo);
36363 @@ -1096,6 +1131,8 @@ static int loop_clr_fd(struct loop_device *lo)
36364          * bd_mutex which is usually taken before lo_ctl_mutex.
36365          */
36366         fput(filp);
36367 +       if (virt_filp)
36368 +               fput(virt_filp);
36369         return 0;
36370  }
36371  
36372 diff --git a/drivers/block/loop.h b/drivers/block/loop.h
36373 index fb2237c..c3888c5 100644
36374 --- a/drivers/block/loop.h
36375 +++ b/drivers/block/loop.h
36376 @@ -46,7 +46,7 @@ struct loop_device {
36377         int             (*ioctl)(struct loop_device *, int cmd, 
36378                                  unsigned long arg); 
36379  
36380 -       struct file *   lo_backing_file;
36381 +       struct file *   lo_backing_file, *lo_backing_virt_file;
36382         struct block_device *lo_device;
36383         unsigned        lo_blocksize;
36384         void            *key_data; 
36385 diff --git a/fs/aufs/f_op.c b/fs/aufs/f_op.c
36386 index d2a9a1d..d7519d0 100644
36387 --- a/fs/aufs/f_op.c
36388 +++ b/fs/aufs/f_op.c
36389 @@ -351,7 +351,7 @@ static ssize_t aufs_read_iter(struct kiocb *kio, struct iov_iter *iov_iter)
36390         if (IS_ERR(h_file))
36391                 goto out;
36392  
36393 -       if (au_test_loopback_kthread()) {
36394 +       if (0 && au_test_loopback_kthread()) {
36395                 au_warn_loopback(h_file->f_path.dentry->d_sb);
36396                 if (file->f_mapping != h_file->f_mapping) {
36397                         file->f_mapping = h_file->f_mapping;
36398 diff --git a/fs/aufs/loop.c b/fs/aufs/loop.c
36399 index c3ca50f..a3dbdaf 100644
36400 --- a/fs/aufs/loop.c
36401 +++ b/fs/aufs/loop.c
36402 @@ -132,3 +132,19 @@ void au_loopback_fin(void)
36403                 symbol_put(loop_backing_file);
36404         au_delayed_kfree(au_warn_loopback_array);
36405  }
36406 +
36407 +/* ---------------------------------------------------------------------- */
36408 +
36409 +/* support the loopback block device insude aufs */
36410 +
36411 +struct file *aufs_real_loop(struct file *file)
36412 +{
36413 +       struct file *f;
36414 +
36415 +       BUG_ON(!au_test_aufs(file->f_path.dentry->d_sb));
36416 +       fi_read_lock(file);
36417 +       f = au_hf_top(file);
36418 +       fi_read_unlock(file);
36419 +       AuDebugOn(!f);
36420 +       return f;
36421 +}
36422 diff --git a/fs/aufs/loop.h b/fs/aufs/loop.h
36423 index 48bf070..66afec7 100644
36424 --- a/fs/aufs/loop.h
36425 +++ b/fs/aufs/loop.h
36426 @@ -25,7 +25,11 @@
36427  
36428  int au_loopback_init(void);
36429  void au_loopback_fin(void);
36430 +
36431 +struct file *aufs_real_loop(struct file *file);
36432  #else
36433 +AuStub(struct file *, loop_backing_file, return NULL)
36434 +
36435  AuStubInt0(au_test_loopback_overlap, struct super_block *sb,
36436            struct dentry *h_adding)
36437  AuStubInt0(au_test_loopback_kthread, void)
36438 @@ -33,6 +37,8 @@
36439  
36440  AuStubInt0(au_loopback_init, void)
36441  AuStubVoid(au_loopback_fin, void)
36442 +
36443 +AuStub(struct file *, aufs_real_loop, return NULL, struct file *file)
36444  #endif /* BLK_DEV_LOOP */
36445  
36446  #endif /* __KERNEL__ */
36447 diff --git a/fs/aufs/super.c b/fs/aufs/super.c
36448 index 0082ce4..5085378 100644
36449 --- a/fs/aufs/super.c
36450 +++ b/fs/aufs/super.c
36451 @@ -839,7 +839,10 @@ static int aufs_remount_fs(struct super_block *sb, int *flags, char *data)
36452         .statfs         = aufs_statfs,
36453         .put_super      = aufs_put_super,
36454         .sync_fs        = aufs_sync_fs,
36455 -       .remount_fs     = aufs_remount_fs
36456 +       .remount_fs     = aufs_remount_fs,
36457 +#ifdef CONFIG_AUFS_BDEV_LOOP
36458 +       .real_loop      = aufs_real_loop
36459 +#endif
36460  };
36461  
36462  /* ---------------------------------------------------------------------- */
36463 diff --git a/include/linux/fs.h b/include/linux/fs.h
36464 index a903bc3..db820e3 100644
36465 --- a/include/linux/fs.h
36466 +++ b/include/linux/fs.h
36467 @@ -1823,6 +1823,10 @@ struct super_operations {
36468                                   struct shrink_control *);
36469         long (*free_cached_objects)(struct super_block *,
36470                                     struct shrink_control *);
36471 +#if defined(CONFIG_BLK_DEV_LOOP) ||  defined(CONFIG_BLK_DEV_LOOP_MODULE)
36472 +       /* and aufs */
36473 +       struct file *(*real_loop)(struct file *);
36474 +#endif
36475  };
36476  
36477  /*
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