Merge tag 'for-linus-20181207' of git://git.kernel.dk/linux-block
[linux-2.6-block.git] / mm / mmu_notifier.c
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1/*
2 * linux/mm/mmu_notifier.c
3 *
4 * Copyright (C) 2008 Qumranet, Inc.
5 * Copyright (C) 2008 SGI
93e205a7 6 * Christoph Lameter <cl@linux.com>
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7 *
8 * This work is licensed under the terms of the GNU GPL, version 2. See
9 * the COPYING file in the top-level directory.
10 */
11
12#include <linux/rculist.h>
13#include <linux/mmu_notifier.h>
b95f1b31 14#include <linux/export.h>
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15#include <linux/mm.h>
16#include <linux/err.h>
21a92735 17#include <linux/srcu.h>
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18#include <linux/rcupdate.h>
19#include <linux/sched.h>
6e84f315 20#include <linux/sched/mm.h>
5a0e3ad6 21#include <linux/slab.h>
cddb8a5c 22
21a92735 23/* global SRCU for all MMs */
dde8da6c 24DEFINE_STATIC_SRCU(srcu);
21a92735 25
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26/*
27 * This function allows mmu_notifier::release callback to delay a call to
28 * a function that will free appropriate resources. The function must be
29 * quick and must not block.
30 */
31void mmu_notifier_call_srcu(struct rcu_head *rcu,
32 void (*func)(struct rcu_head *rcu))
33{
34 call_srcu(&srcu, rcu, func);
35}
36EXPORT_SYMBOL_GPL(mmu_notifier_call_srcu);
37
38void mmu_notifier_synchronize(void)
39{
40 /* Wait for any running method to finish. */
41 srcu_barrier(&srcu);
42}
43EXPORT_SYMBOL_GPL(mmu_notifier_synchronize);
44
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45/*
46 * This function can't run concurrently against mmu_notifier_register
47 * because mm->mm_users > 0 during mmu_notifier_register and exit_mmap
48 * runs with mm_users == 0. Other tasks may still invoke mmu notifiers
49 * in parallel despite there being no task using this mm any more,
50 * through the vmas outside of the exit_mmap context, such as with
51 * vmtruncate. This serializes against mmu_notifier_unregister with
21a92735
SG
52 * the mmu_notifier_mm->lock in addition to SRCU and it serializes
53 * against the other mmu notifiers with SRCU. struct mmu_notifier_mm
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54 * can't go away from under us as exit_mmap holds an mm_count pin
55 * itself.
56 */
57void __mmu_notifier_release(struct mm_struct *mm)
58{
59 struct mmu_notifier *mn;
21a92735 60 int id;
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61
62 /*
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63 * SRCU here will block mmu_notifier_unregister until
64 * ->release returns.
3ad3d901 65 */
21a92735 66 id = srcu_read_lock(&srcu);
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67 hlist_for_each_entry_rcu(mn, &mm->mmu_notifier_mm->list, hlist)
68 /*
69 * If ->release runs before mmu_notifier_unregister it must be
70 * handled, as it's the only way for the driver to flush all
71 * existing sptes and stop the driver from establishing any more
72 * sptes before all the pages in the mm are freed.
73 */
74 if (mn->ops->release)
75 mn->ops->release(mn, mm);
d34883d4 76
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77 spin_lock(&mm->mmu_notifier_mm->lock);
78 while (unlikely(!hlist_empty(&mm->mmu_notifier_mm->list))) {
79 mn = hlist_entry(mm->mmu_notifier_mm->list.first,
80 struct mmu_notifier,
81 hlist);
82 /*
d34883d4
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83 * We arrived before mmu_notifier_unregister so
84 * mmu_notifier_unregister will do nothing other than to wait
85 * for ->release to finish and for mmu_notifier_unregister to
86 * return.
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87 */
88 hlist_del_init_rcu(&mn->hlist);
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89 }
90 spin_unlock(&mm->mmu_notifier_mm->lock);
b972216e 91 srcu_read_unlock(&srcu, id);
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92
93 /*
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94 * synchronize_srcu here prevents mmu_notifier_release from returning to
95 * exit_mmap (which would proceed with freeing all pages in the mm)
96 * until the ->release method returns, if it was invoked by
97 * mmu_notifier_unregister.
98 *
99 * The mmu_notifier_mm can't go away from under us because one mm_count
100 * is held by exit_mmap.
cddb8a5c 101 */
21a92735 102 synchronize_srcu(&srcu);
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103}
104
105/*
106 * If no young bitflag is supported by the hardware, ->clear_flush_young can
107 * unmap the address and return 1 or 0 depending if the mapping previously
108 * existed or not.
109 */
110int __mmu_notifier_clear_flush_young(struct mm_struct *mm,
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ALC
111 unsigned long start,
112 unsigned long end)
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113{
114 struct mmu_notifier *mn;
21a92735 115 int young = 0, id;
cddb8a5c 116
21a92735 117 id = srcu_read_lock(&srcu);
b67bfe0d 118 hlist_for_each_entry_rcu(mn, &mm->mmu_notifier_mm->list, hlist) {
cddb8a5c 119 if (mn->ops->clear_flush_young)
57128468 120 young |= mn->ops->clear_flush_young(mn, mm, start, end);
cddb8a5c 121 }
21a92735 122 srcu_read_unlock(&srcu, id);
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123
124 return young;
125}
126
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127int __mmu_notifier_clear_young(struct mm_struct *mm,
128 unsigned long start,
129 unsigned long end)
130{
131 struct mmu_notifier *mn;
132 int young = 0, id;
133
134 id = srcu_read_lock(&srcu);
135 hlist_for_each_entry_rcu(mn, &mm->mmu_notifier_mm->list, hlist) {
136 if (mn->ops->clear_young)
137 young |= mn->ops->clear_young(mn, mm, start, end);
138 }
139 srcu_read_unlock(&srcu, id);
140
141 return young;
142}
143
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144int __mmu_notifier_test_young(struct mm_struct *mm,
145 unsigned long address)
146{
147 struct mmu_notifier *mn;
21a92735 148 int young = 0, id;
8ee53820 149
21a92735 150 id = srcu_read_lock(&srcu);
b67bfe0d 151 hlist_for_each_entry_rcu(mn, &mm->mmu_notifier_mm->list, hlist) {
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152 if (mn->ops->test_young) {
153 young = mn->ops->test_young(mn, mm, address);
154 if (young)
155 break;
156 }
157 }
21a92735 158 srcu_read_unlock(&srcu, id);
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159
160 return young;
161}
162
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163void __mmu_notifier_change_pte(struct mm_struct *mm, unsigned long address,
164 pte_t pte)
165{
166 struct mmu_notifier *mn;
21a92735 167 int id;
828502d3 168
21a92735 169 id = srcu_read_lock(&srcu);
b67bfe0d 170 hlist_for_each_entry_rcu(mn, &mm->mmu_notifier_mm->list, hlist) {
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171 if (mn->ops->change_pte)
172 mn->ops->change_pte(mn, mm, address, pte);
828502d3 173 }
21a92735 174 srcu_read_unlock(&srcu, id);
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175}
176
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177int __mmu_notifier_invalidate_range_start(struct mm_struct *mm,
178 unsigned long start, unsigned long end,
179 bool blockable)
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180{
181 struct mmu_notifier *mn;
93065ac7 182 int ret = 0;
21a92735 183 int id;
cddb8a5c 184
21a92735 185 id = srcu_read_lock(&srcu);
b67bfe0d 186 hlist_for_each_entry_rcu(mn, &mm->mmu_notifier_mm->list, hlist) {
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187 if (mn->ops->invalidate_range_start) {
188 int _ret = mn->ops->invalidate_range_start(mn, mm, start, end, blockable);
189 if (_ret) {
190 pr_info("%pS callback failed with %d in %sblockable context.\n",
191 mn->ops->invalidate_range_start, _ret,
192 !blockable ? "non-" : "");
193 ret = _ret;
194 }
195 }
cddb8a5c 196 }
21a92735 197 srcu_read_unlock(&srcu, id);
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198
199 return ret;
cddb8a5c 200}
fa794199 201EXPORT_SYMBOL_GPL(__mmu_notifier_invalidate_range_start);
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202
203void __mmu_notifier_invalidate_range_end(struct mm_struct *mm,
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204 unsigned long start,
205 unsigned long end,
206 bool only_end)
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207{
208 struct mmu_notifier *mn;
21a92735 209 int id;
cddb8a5c 210
21a92735 211 id = srcu_read_lock(&srcu);
b67bfe0d 212 hlist_for_each_entry_rcu(mn, &mm->mmu_notifier_mm->list, hlist) {
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213 /*
214 * Call invalidate_range here too to avoid the need for the
215 * subsystem of having to register an invalidate_range_end
216 * call-back when there is invalidate_range already. Usually a
217 * subsystem registers either invalidate_range_start()/end() or
218 * invalidate_range(), so this will be no additional overhead
219 * (besides the pointer check).
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220 *
221 * We skip call to invalidate_range() if we know it is safe ie
222 * call site use mmu_notifier_invalidate_range_only_end() which
223 * is safe to do when we know that a call to invalidate_range()
224 * already happen under page table lock.
0f0a327f 225 */
4645b9fe 226 if (!only_end && mn->ops->invalidate_range)
0f0a327f 227 mn->ops->invalidate_range(mn, mm, start, end);
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228 if (mn->ops->invalidate_range_end)
229 mn->ops->invalidate_range_end(mn, mm, start, end);
230 }
21a92735 231 srcu_read_unlock(&srcu, id);
cddb8a5c 232}
fa794199 233EXPORT_SYMBOL_GPL(__mmu_notifier_invalidate_range_end);
cddb8a5c 234
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235void __mmu_notifier_invalidate_range(struct mm_struct *mm,
236 unsigned long start, unsigned long end)
237{
238 struct mmu_notifier *mn;
239 int id;
240
241 id = srcu_read_lock(&srcu);
242 hlist_for_each_entry_rcu(mn, &mm->mmu_notifier_mm->list, hlist) {
243 if (mn->ops->invalidate_range)
244 mn->ops->invalidate_range(mn, mm, start, end);
245 }
246 srcu_read_unlock(&srcu, id);
247}
248EXPORT_SYMBOL_GPL(__mmu_notifier_invalidate_range);
249
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250static int do_mmu_notifier_register(struct mmu_notifier *mn,
251 struct mm_struct *mm,
252 int take_mmap_sem)
253{
254 struct mmu_notifier_mm *mmu_notifier_mm;
255 int ret;
256
257 BUG_ON(atomic_read(&mm->mm_users) <= 0);
258
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259 ret = -ENOMEM;
260 mmu_notifier_mm = kmalloc(sizeof(struct mmu_notifier_mm), GFP_KERNEL);
261 if (unlikely(!mmu_notifier_mm))
262 goto out;
263
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264 if (take_mmap_sem)
265 down_write(&mm->mmap_sem);
266 ret = mm_take_all_locks(mm);
267 if (unlikely(ret))
35cfa2b0 268 goto out_clean;
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269
270 if (!mm_has_notifiers(mm)) {
271 INIT_HLIST_HEAD(&mmu_notifier_mm->list);
272 spin_lock_init(&mmu_notifier_mm->lock);
e0f3c3f7 273
cddb8a5c 274 mm->mmu_notifier_mm = mmu_notifier_mm;
35cfa2b0 275 mmu_notifier_mm = NULL;
cddb8a5c 276 }
f1f10076 277 mmgrab(mm);
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278
279 /*
280 * Serialize the update against mmu_notifier_unregister. A
281 * side note: mmu_notifier_release can't run concurrently with
282 * us because we hold the mm_users pin (either implicitly as
283 * current->mm or explicitly with get_task_mm() or similar).
284 * We can't race against any other mmu notifier method either
285 * thanks to mm_take_all_locks().
286 */
287 spin_lock(&mm->mmu_notifier_mm->lock);
288 hlist_add_head(&mn->hlist, &mm->mmu_notifier_mm->list);
289 spin_unlock(&mm->mmu_notifier_mm->lock);
290
291 mm_drop_all_locks(mm);
35cfa2b0 292out_clean:
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293 if (take_mmap_sem)
294 up_write(&mm->mmap_sem);
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295 kfree(mmu_notifier_mm);
296out:
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297 BUG_ON(atomic_read(&mm->mm_users) <= 0);
298 return ret;
299}
300
301/*
302 * Must not hold mmap_sem nor any other VM related lock when calling
303 * this registration function. Must also ensure mm_users can't go down
304 * to zero while this runs to avoid races with mmu_notifier_release,
305 * so mm has to be current->mm or the mm should be pinned safely such
306 * as with get_task_mm(). If the mm is not current->mm, the mm_users
307 * pin should be released by calling mmput after mmu_notifier_register
308 * returns. mmu_notifier_unregister must be always called to
309 * unregister the notifier. mm_count is automatically pinned to allow
310 * mmu_notifier_unregister to safely run at any time later, before or
311 * after exit_mmap. ->release will always be called before exit_mmap
312 * frees the pages.
313 */
314int mmu_notifier_register(struct mmu_notifier *mn, struct mm_struct *mm)
315{
316 return do_mmu_notifier_register(mn, mm, 1);
317}
318EXPORT_SYMBOL_GPL(mmu_notifier_register);
319
320/*
321 * Same as mmu_notifier_register but here the caller must hold the
322 * mmap_sem in write mode.
323 */
324int __mmu_notifier_register(struct mmu_notifier *mn, struct mm_struct *mm)
325{
326 return do_mmu_notifier_register(mn, mm, 0);
327}
328EXPORT_SYMBOL_GPL(__mmu_notifier_register);
329
330/* this is called after the last mmu_notifier_unregister() returned */
331void __mmu_notifier_mm_destroy(struct mm_struct *mm)
332{
333 BUG_ON(!hlist_empty(&mm->mmu_notifier_mm->list));
334 kfree(mm->mmu_notifier_mm);
335 mm->mmu_notifier_mm = LIST_POISON1; /* debug */
336}
337
338/*
339 * This releases the mm_count pin automatically and frees the mm
340 * structure if it was the last user of it. It serializes against
21a92735
SG
341 * running mmu notifiers with SRCU and against mmu_notifier_unregister
342 * with the unregister lock + SRCU. All sptes must be dropped before
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343 * calling mmu_notifier_unregister. ->release or any other notifier
344 * method may be invoked concurrently with mmu_notifier_unregister,
345 * and only after mmu_notifier_unregister returned we're guaranteed
346 * that ->release or any other method can't run anymore.
347 */
348void mmu_notifier_unregister(struct mmu_notifier *mn, struct mm_struct *mm)
349{
350 BUG_ON(atomic_read(&mm->mm_count) <= 0);
351
cddb8a5c 352 if (!hlist_unhashed(&mn->hlist)) {
d34883d4
XG
353 /*
354 * SRCU here will force exit_mmap to wait for ->release to
355 * finish before freeing the pages.
356 */
21a92735 357 int id;
3ad3d901 358
d34883d4 359 id = srcu_read_lock(&srcu);
cddb8a5c 360 /*
d34883d4
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361 * exit_mmap will block in mmu_notifier_release to guarantee
362 * that ->release is called before freeing the pages.
cddb8a5c
AA
363 */
364 if (mn->ops->release)
365 mn->ops->release(mn, mm);
d34883d4 366 srcu_read_unlock(&srcu, id);
3ad3d901 367
d34883d4 368 spin_lock(&mm->mmu_notifier_mm->lock);
751efd86 369 /*
d34883d4
XG
370 * Can not use list_del_rcu() since __mmu_notifier_release
371 * can delete it before we hold the lock.
751efd86 372 */
d34883d4 373 hlist_del_init_rcu(&mn->hlist);
cddb8a5c 374 spin_unlock(&mm->mmu_notifier_mm->lock);
d34883d4 375 }
cddb8a5c
AA
376
377 /*
d34883d4 378 * Wait for any running method to finish, of course including
83a35e36 379 * ->release if it was run by mmu_notifier_release instead of us.
cddb8a5c 380 */
21a92735 381 synchronize_srcu(&srcu);
cddb8a5c
AA
382
383 BUG_ON(atomic_read(&mm->mm_count) <= 0);
384
385 mmdrop(mm);
386}
387EXPORT_SYMBOL_GPL(mmu_notifier_unregister);
21a92735 388
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389/*
390 * Same as mmu_notifier_unregister but no callback and no srcu synchronization.
391 */
392void mmu_notifier_unregister_no_release(struct mmu_notifier *mn,
393 struct mm_struct *mm)
394{
395 spin_lock(&mm->mmu_notifier_mm->lock);
396 /*
397 * Can not use list_del_rcu() since __mmu_notifier_release
398 * can delete it before we hold the lock.
399 */
400 hlist_del_init_rcu(&mn->hlist);
401 spin_unlock(&mm->mmu_notifier_mm->lock);
402
403 BUG_ON(atomic_read(&mm->mm_count) <= 0);
404 mmdrop(mm);
405}
406EXPORT_SYMBOL_GPL(mmu_notifier_unregister_no_release);