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20c8ccb1 | 1 | // SPDX-License-Identifier: GPL-2.0-only |
71e3aac0 AA |
2 | /* |
3 | * Copyright (C) 2009 Red Hat, Inc. | |
71e3aac0 AA |
4 | */ |
5 | ||
ae3a8c1c AM |
6 | #define pr_fmt(fmt) KBUILD_MODNAME ": " fmt |
7 | ||
71e3aac0 AA |
8 | #include <linux/mm.h> |
9 | #include <linux/sched.h> | |
fa6c0231 | 10 | #include <linux/sched/mm.h> |
f7ccbae4 | 11 | #include <linux/sched/coredump.h> |
6a3827d7 | 12 | #include <linux/sched/numa_balancing.h> |
71e3aac0 AA |
13 | #include <linux/highmem.h> |
14 | #include <linux/hugetlb.h> | |
15 | #include <linux/mmu_notifier.h> | |
16 | #include <linux/rmap.h> | |
17 | #include <linux/swap.h> | |
97ae1749 | 18 | #include <linux/shrinker.h> |
ba76149f | 19 | #include <linux/mm_inline.h> |
e9b61f19 | 20 | #include <linux/swapops.h> |
fb5c2029 | 21 | #include <linux/backing-dev.h> |
4897c765 | 22 | #include <linux/dax.h> |
ba76149f | 23 | #include <linux/khugepaged.h> |
878aee7d | 24 | #include <linux/freezer.h> |
f25748e3 | 25 | #include <linux/pfn_t.h> |
a664b2d8 | 26 | #include <linux/mman.h> |
3565fce3 | 27 | #include <linux/memremap.h> |
325adeb5 | 28 | #include <linux/pagemap.h> |
49071d43 | 29 | #include <linux/debugfs.h> |
4daae3b4 | 30 | #include <linux/migrate.h> |
43b5fbbd | 31 | #include <linux/hashtable.h> |
6b251fc9 | 32 | #include <linux/userfaultfd_k.h> |
33c3fc71 | 33 | #include <linux/page_idle.h> |
baa355fd | 34 | #include <linux/shmem_fs.h> |
6b31d595 | 35 | #include <linux/oom.h> |
98fa15f3 | 36 | #include <linux/numa.h> |
f7da677b | 37 | #include <linux/page_owner.h> |
a1a3a2fc | 38 | #include <linux/sched/sysctl.h> |
467b171a | 39 | #include <linux/memory-tiers.h> |
97ae1749 | 40 | |
71e3aac0 AA |
41 | #include <asm/tlb.h> |
42 | #include <asm/pgalloc.h> | |
43 | #include "internal.h" | |
014bb1de | 44 | #include "swap.h" |
71e3aac0 | 45 | |
283fd6fe AK |
46 | #define CREATE_TRACE_POINTS |
47 | #include <trace/events/thp.h> | |
48 | ||
ba76149f | 49 | /* |
b14d595a MD |
50 | * By default, transparent hugepage support is disabled in order to avoid |
51 | * risking an increased memory footprint for applications that are not | |
52 | * guaranteed to benefit from it. When transparent hugepage support is | |
53 | * enabled, it is for all mappings, and khugepaged scans all mappings. | |
8bfa3f9a JW |
54 | * Defrag is invoked by khugepaged hugepage allocations and by page faults |
55 | * for all hugepage allocations. | |
ba76149f | 56 | */ |
71e3aac0 | 57 | unsigned long transparent_hugepage_flags __read_mostly = |
13ece886 | 58 | #ifdef CONFIG_TRANSPARENT_HUGEPAGE_ALWAYS |
ba76149f | 59 | (1<<TRANSPARENT_HUGEPAGE_FLAG)| |
13ece886 AA |
60 | #endif |
61 | #ifdef CONFIG_TRANSPARENT_HUGEPAGE_MADVISE | |
62 | (1<<TRANSPARENT_HUGEPAGE_REQ_MADV_FLAG)| | |
63 | #endif | |
444eb2a4 | 64 | (1<<TRANSPARENT_HUGEPAGE_DEFRAG_REQ_MADV_FLAG)| |
79da5407 KS |
65 | (1<<TRANSPARENT_HUGEPAGE_DEFRAG_KHUGEPAGED_FLAG)| |
66 | (1<<TRANSPARENT_HUGEPAGE_USE_ZERO_PAGE_FLAG); | |
ba76149f | 67 | |
9a982250 | 68 | static struct shrinker deferred_split_shrinker; |
f000565a | 69 | |
97ae1749 | 70 | static atomic_t huge_zero_refcount; |
56873f43 | 71 | struct page *huge_zero_page __read_mostly; |
3b77e8c8 | 72 | unsigned long huge_zero_pfn __read_mostly = ~0UL; |
4a6c1297 | 73 | |
a7f4e6e4 ZK |
74 | bool hugepage_vma_check(struct vm_area_struct *vma, unsigned long vm_flags, |
75 | bool smaps, bool in_pf, bool enforce_sysfs) | |
7635d9cb | 76 | { |
9fec5168 YS |
77 | if (!vma->vm_mm) /* vdso */ |
78 | return false; | |
79 | ||
7da4e2cb YS |
80 | /* |
81 | * Explicitly disabled through madvise or prctl, or some | |
82 | * architectures may disable THP for some mappings, for | |
83 | * example, s390 kvm. | |
84 | * */ | |
85 | if ((vm_flags & VM_NOHUGEPAGE) || | |
86 | test_bit(MMF_DISABLE_THP, &vma->vm_mm->flags)) | |
9fec5168 | 87 | return false; |
7da4e2cb YS |
88 | /* |
89 | * If the hardware/firmware marked hugepage support disabled. | |
90 | */ | |
3c556d24 | 91 | if (transparent_hugepage_flags & (1 << TRANSPARENT_HUGEPAGE_UNSUPPORTED)) |
c0630669 | 92 | return false; |
c0630669 | 93 | |
7da4e2cb | 94 | /* khugepaged doesn't collapse DAX vma, but page fault is fine. */ |
9fec5168 | 95 | if (vma_is_dax(vma)) |
7da4e2cb YS |
96 | return in_pf; |
97 | ||
98 | /* | |
99 | * Special VMA and hugetlb VMA. | |
100 | * Must be checked after dax since some dax mappings may have | |
101 | * VM_MIXEDMAP set. | |
102 | */ | |
103 | if (vm_flags & VM_NO_KHUGEPAGED) | |
c0630669 | 104 | return false; |
9fec5168 | 105 | |
7da4e2cb YS |
106 | /* |
107 | * Check alignment for file vma and size for both file and anon vma. | |
108 | * | |
109 | * Skip the check for page fault. Huge fault does the check in fault | |
110 | * handlers. And this check is not suitable for huge PUD fault. | |
111 | */ | |
112 | if (!in_pf && | |
113 | !transhuge_vma_suitable(vma, (vma->vm_end - HPAGE_PMD_SIZE))) | |
9fec5168 YS |
114 | return false; |
115 | ||
7da4e2cb YS |
116 | /* |
117 | * Enabled via shmem mount options or sysfs settings. | |
118 | * Must be done before hugepage flags check since shmem has its | |
119 | * own flags. | |
120 | */ | |
121 | if (!in_pf && shmem_file(vma->vm_file)) | |
2cf13384 DS |
122 | return shmem_is_huge(file_inode(vma->vm_file), vma->vm_pgoff, |
123 | !enforce_sysfs, vma->vm_mm, vm_flags); | |
9fec5168 | 124 | |
a7f4e6e4 ZK |
125 | /* Enforce sysfs THP requirements as necessary */ |
126 | if (enforce_sysfs && | |
127 | (!hugepage_flags_enabled() || (!(vm_flags & VM_HUGEPAGE) && | |
128 | !hugepage_flags_always()))) | |
9fec5168 YS |
129 | return false; |
130 | ||
131 | /* Only regular file is valid */ | |
7da4e2cb | 132 | if (!in_pf && file_thp_enabled(vma)) |
78d12c19 | 133 | return true; |
7635d9cb | 134 | |
9fec5168 YS |
135 | if (!vma_is_anonymous(vma)) |
136 | return false; | |
137 | ||
138 | if (vma_is_temporary_stack(vma)) | |
139 | return false; | |
140 | ||
141 | /* | |
142 | * THPeligible bit of smaps should show 1 for proper VMAs even | |
143 | * though anon_vma is not initialized yet. | |
7da4e2cb YS |
144 | * |
145 | * Allow page fault since anon_vma may be not initialized until | |
146 | * the first page fault. | |
9fec5168 YS |
147 | */ |
148 | if (!vma->anon_vma) | |
7da4e2cb | 149 | return (smaps || in_pf); |
9fec5168 YS |
150 | |
151 | return true; | |
7635d9cb MH |
152 | } |
153 | ||
aaa9705b | 154 | static bool get_huge_zero_page(void) |
97ae1749 KS |
155 | { |
156 | struct page *zero_page; | |
157 | retry: | |
158 | if (likely(atomic_inc_not_zero(&huge_zero_refcount))) | |
aaa9705b | 159 | return true; |
97ae1749 KS |
160 | |
161 | zero_page = alloc_pages((GFP_TRANSHUGE | __GFP_ZERO) & ~__GFP_MOVABLE, | |
4a6c1297 | 162 | HPAGE_PMD_ORDER); |
d8a8e1f0 KS |
163 | if (!zero_page) { |
164 | count_vm_event(THP_ZERO_PAGE_ALLOC_FAILED); | |
aaa9705b | 165 | return false; |
d8a8e1f0 | 166 | } |
97ae1749 | 167 | preempt_disable(); |
5918d10a | 168 | if (cmpxchg(&huge_zero_page, NULL, zero_page)) { |
97ae1749 | 169 | preempt_enable(); |
5ddacbe9 | 170 | __free_pages(zero_page, compound_order(zero_page)); |
97ae1749 KS |
171 | goto retry; |
172 | } | |
3b77e8c8 | 173 | WRITE_ONCE(huge_zero_pfn, page_to_pfn(zero_page)); |
97ae1749 KS |
174 | |
175 | /* We take additional reference here. It will be put back by shrinker */ | |
176 | atomic_set(&huge_zero_refcount, 2); | |
177 | preempt_enable(); | |
f4981502 | 178 | count_vm_event(THP_ZERO_PAGE_ALLOC); |
aaa9705b | 179 | return true; |
4a6c1297 KS |
180 | } |
181 | ||
6fcb52a5 | 182 | static void put_huge_zero_page(void) |
4a6c1297 | 183 | { |
97ae1749 KS |
184 | /* |
185 | * Counter should never go to zero here. Only shrinker can put | |
186 | * last reference. | |
187 | */ | |
188 | BUG_ON(atomic_dec_and_test(&huge_zero_refcount)); | |
4a6c1297 KS |
189 | } |
190 | ||
6fcb52a5 AL |
191 | struct page *mm_get_huge_zero_page(struct mm_struct *mm) |
192 | { | |
193 | if (test_bit(MMF_HUGE_ZERO_PAGE, &mm->flags)) | |
194 | return READ_ONCE(huge_zero_page); | |
195 | ||
196 | if (!get_huge_zero_page()) | |
197 | return NULL; | |
198 | ||
199 | if (test_and_set_bit(MMF_HUGE_ZERO_PAGE, &mm->flags)) | |
200 | put_huge_zero_page(); | |
201 | ||
202 | return READ_ONCE(huge_zero_page); | |
203 | } | |
204 | ||
205 | void mm_put_huge_zero_page(struct mm_struct *mm) | |
206 | { | |
207 | if (test_bit(MMF_HUGE_ZERO_PAGE, &mm->flags)) | |
208 | put_huge_zero_page(); | |
209 | } | |
210 | ||
48896466 GC |
211 | static unsigned long shrink_huge_zero_page_count(struct shrinker *shrink, |
212 | struct shrink_control *sc) | |
4a6c1297 | 213 | { |
48896466 GC |
214 | /* we can free zero page only if last reference remains */ |
215 | return atomic_read(&huge_zero_refcount) == 1 ? HPAGE_PMD_NR : 0; | |
216 | } | |
97ae1749 | 217 | |
48896466 GC |
218 | static unsigned long shrink_huge_zero_page_scan(struct shrinker *shrink, |
219 | struct shrink_control *sc) | |
220 | { | |
97ae1749 | 221 | if (atomic_cmpxchg(&huge_zero_refcount, 1, 0) == 1) { |
5918d10a KS |
222 | struct page *zero_page = xchg(&huge_zero_page, NULL); |
223 | BUG_ON(zero_page == NULL); | |
3b77e8c8 | 224 | WRITE_ONCE(huge_zero_pfn, ~0UL); |
5ddacbe9 | 225 | __free_pages(zero_page, compound_order(zero_page)); |
48896466 | 226 | return HPAGE_PMD_NR; |
97ae1749 KS |
227 | } |
228 | ||
229 | return 0; | |
4a6c1297 KS |
230 | } |
231 | ||
97ae1749 | 232 | static struct shrinker huge_zero_page_shrinker = { |
48896466 GC |
233 | .count_objects = shrink_huge_zero_page_count, |
234 | .scan_objects = shrink_huge_zero_page_scan, | |
97ae1749 KS |
235 | .seeks = DEFAULT_SEEKS, |
236 | }; | |
237 | ||
71e3aac0 | 238 | #ifdef CONFIG_SYSFS |
71e3aac0 AA |
239 | static ssize_t enabled_show(struct kobject *kobj, |
240 | struct kobj_attribute *attr, char *buf) | |
241 | { | |
bfb0ffeb JP |
242 | const char *output; |
243 | ||
444eb2a4 | 244 | if (test_bit(TRANSPARENT_HUGEPAGE_FLAG, &transparent_hugepage_flags)) |
bfb0ffeb JP |
245 | output = "[always] madvise never"; |
246 | else if (test_bit(TRANSPARENT_HUGEPAGE_REQ_MADV_FLAG, | |
247 | &transparent_hugepage_flags)) | |
248 | output = "always [madvise] never"; | |
444eb2a4 | 249 | else |
bfb0ffeb JP |
250 | output = "always madvise [never]"; |
251 | ||
252 | return sysfs_emit(buf, "%s\n", output); | |
71e3aac0 | 253 | } |
444eb2a4 | 254 | |
71e3aac0 AA |
255 | static ssize_t enabled_store(struct kobject *kobj, |
256 | struct kobj_attribute *attr, | |
257 | const char *buf, size_t count) | |
258 | { | |
21440d7e | 259 | ssize_t ret = count; |
ba76149f | 260 | |
f42f2552 | 261 | if (sysfs_streq(buf, "always")) { |
21440d7e DR |
262 | clear_bit(TRANSPARENT_HUGEPAGE_REQ_MADV_FLAG, &transparent_hugepage_flags); |
263 | set_bit(TRANSPARENT_HUGEPAGE_FLAG, &transparent_hugepage_flags); | |
f42f2552 | 264 | } else if (sysfs_streq(buf, "madvise")) { |
21440d7e DR |
265 | clear_bit(TRANSPARENT_HUGEPAGE_FLAG, &transparent_hugepage_flags); |
266 | set_bit(TRANSPARENT_HUGEPAGE_REQ_MADV_FLAG, &transparent_hugepage_flags); | |
f42f2552 | 267 | } else if (sysfs_streq(buf, "never")) { |
21440d7e DR |
268 | clear_bit(TRANSPARENT_HUGEPAGE_FLAG, &transparent_hugepage_flags); |
269 | clear_bit(TRANSPARENT_HUGEPAGE_REQ_MADV_FLAG, &transparent_hugepage_flags); | |
270 | } else | |
271 | ret = -EINVAL; | |
ba76149f AA |
272 | |
273 | if (ret > 0) { | |
b46e756f | 274 | int err = start_stop_khugepaged(); |
ba76149f AA |
275 | if (err) |
276 | ret = err; | |
277 | } | |
ba76149f | 278 | return ret; |
71e3aac0 | 279 | } |
37139bb0 ML |
280 | |
281 | static struct kobj_attribute enabled_attr = __ATTR_RW(enabled); | |
71e3aac0 | 282 | |
b46e756f | 283 | ssize_t single_hugepage_flag_show(struct kobject *kobj, |
bfb0ffeb JP |
284 | struct kobj_attribute *attr, char *buf, |
285 | enum transparent_hugepage_flag flag) | |
71e3aac0 | 286 | { |
bfb0ffeb JP |
287 | return sysfs_emit(buf, "%d\n", |
288 | !!test_bit(flag, &transparent_hugepage_flags)); | |
71e3aac0 | 289 | } |
e27e6151 | 290 | |
b46e756f | 291 | ssize_t single_hugepage_flag_store(struct kobject *kobj, |
71e3aac0 AA |
292 | struct kobj_attribute *attr, |
293 | const char *buf, size_t count, | |
294 | enum transparent_hugepage_flag flag) | |
295 | { | |
e27e6151 BH |
296 | unsigned long value; |
297 | int ret; | |
298 | ||
299 | ret = kstrtoul(buf, 10, &value); | |
300 | if (ret < 0) | |
301 | return ret; | |
302 | if (value > 1) | |
303 | return -EINVAL; | |
304 | ||
305 | if (value) | |
71e3aac0 | 306 | set_bit(flag, &transparent_hugepage_flags); |
e27e6151 | 307 | else |
71e3aac0 | 308 | clear_bit(flag, &transparent_hugepage_flags); |
71e3aac0 AA |
309 | |
310 | return count; | |
311 | } | |
312 | ||
71e3aac0 AA |
313 | static ssize_t defrag_show(struct kobject *kobj, |
314 | struct kobj_attribute *attr, char *buf) | |
315 | { | |
bfb0ffeb JP |
316 | const char *output; |
317 | ||
318 | if (test_bit(TRANSPARENT_HUGEPAGE_DEFRAG_DIRECT_FLAG, | |
319 | &transparent_hugepage_flags)) | |
320 | output = "[always] defer defer+madvise madvise never"; | |
321 | else if (test_bit(TRANSPARENT_HUGEPAGE_DEFRAG_KSWAPD_FLAG, | |
322 | &transparent_hugepage_flags)) | |
323 | output = "always [defer] defer+madvise madvise never"; | |
324 | else if (test_bit(TRANSPARENT_HUGEPAGE_DEFRAG_KSWAPD_OR_MADV_FLAG, | |
325 | &transparent_hugepage_flags)) | |
326 | output = "always defer [defer+madvise] madvise never"; | |
327 | else if (test_bit(TRANSPARENT_HUGEPAGE_DEFRAG_REQ_MADV_FLAG, | |
328 | &transparent_hugepage_flags)) | |
329 | output = "always defer defer+madvise [madvise] never"; | |
330 | else | |
331 | output = "always defer defer+madvise madvise [never]"; | |
332 | ||
333 | return sysfs_emit(buf, "%s\n", output); | |
71e3aac0 | 334 | } |
21440d7e | 335 | |
71e3aac0 AA |
336 | static ssize_t defrag_store(struct kobject *kobj, |
337 | struct kobj_attribute *attr, | |
338 | const char *buf, size_t count) | |
339 | { | |
f42f2552 | 340 | if (sysfs_streq(buf, "always")) { |
21440d7e DR |
341 | clear_bit(TRANSPARENT_HUGEPAGE_DEFRAG_KSWAPD_FLAG, &transparent_hugepage_flags); |
342 | clear_bit(TRANSPARENT_HUGEPAGE_DEFRAG_KSWAPD_OR_MADV_FLAG, &transparent_hugepage_flags); | |
343 | clear_bit(TRANSPARENT_HUGEPAGE_DEFRAG_REQ_MADV_FLAG, &transparent_hugepage_flags); | |
344 | set_bit(TRANSPARENT_HUGEPAGE_DEFRAG_DIRECT_FLAG, &transparent_hugepage_flags); | |
f42f2552 | 345 | } else if (sysfs_streq(buf, "defer+madvise")) { |
21440d7e DR |
346 | clear_bit(TRANSPARENT_HUGEPAGE_DEFRAG_DIRECT_FLAG, &transparent_hugepage_flags); |
347 | clear_bit(TRANSPARENT_HUGEPAGE_DEFRAG_KSWAPD_FLAG, &transparent_hugepage_flags); | |
348 | clear_bit(TRANSPARENT_HUGEPAGE_DEFRAG_REQ_MADV_FLAG, &transparent_hugepage_flags); | |
349 | set_bit(TRANSPARENT_HUGEPAGE_DEFRAG_KSWAPD_OR_MADV_FLAG, &transparent_hugepage_flags); | |
f42f2552 | 350 | } else if (sysfs_streq(buf, "defer")) { |
4fad7fb6 DR |
351 | clear_bit(TRANSPARENT_HUGEPAGE_DEFRAG_DIRECT_FLAG, &transparent_hugepage_flags); |
352 | clear_bit(TRANSPARENT_HUGEPAGE_DEFRAG_KSWAPD_OR_MADV_FLAG, &transparent_hugepage_flags); | |
353 | clear_bit(TRANSPARENT_HUGEPAGE_DEFRAG_REQ_MADV_FLAG, &transparent_hugepage_flags); | |
354 | set_bit(TRANSPARENT_HUGEPAGE_DEFRAG_KSWAPD_FLAG, &transparent_hugepage_flags); | |
f42f2552 | 355 | } else if (sysfs_streq(buf, "madvise")) { |
21440d7e DR |
356 | clear_bit(TRANSPARENT_HUGEPAGE_DEFRAG_DIRECT_FLAG, &transparent_hugepage_flags); |
357 | clear_bit(TRANSPARENT_HUGEPAGE_DEFRAG_KSWAPD_FLAG, &transparent_hugepage_flags); | |
358 | clear_bit(TRANSPARENT_HUGEPAGE_DEFRAG_KSWAPD_OR_MADV_FLAG, &transparent_hugepage_flags); | |
359 | set_bit(TRANSPARENT_HUGEPAGE_DEFRAG_REQ_MADV_FLAG, &transparent_hugepage_flags); | |
f42f2552 | 360 | } else if (sysfs_streq(buf, "never")) { |
21440d7e DR |
361 | clear_bit(TRANSPARENT_HUGEPAGE_DEFRAG_DIRECT_FLAG, &transparent_hugepage_flags); |
362 | clear_bit(TRANSPARENT_HUGEPAGE_DEFRAG_KSWAPD_FLAG, &transparent_hugepage_flags); | |
363 | clear_bit(TRANSPARENT_HUGEPAGE_DEFRAG_KSWAPD_OR_MADV_FLAG, &transparent_hugepage_flags); | |
364 | clear_bit(TRANSPARENT_HUGEPAGE_DEFRAG_REQ_MADV_FLAG, &transparent_hugepage_flags); | |
365 | } else | |
366 | return -EINVAL; | |
367 | ||
368 | return count; | |
71e3aac0 | 369 | } |
37139bb0 | 370 | static struct kobj_attribute defrag_attr = __ATTR_RW(defrag); |
71e3aac0 | 371 | |
79da5407 | 372 | static ssize_t use_zero_page_show(struct kobject *kobj, |
ae7a927d | 373 | struct kobj_attribute *attr, char *buf) |
79da5407 | 374 | { |
b46e756f | 375 | return single_hugepage_flag_show(kobj, attr, buf, |
ae7a927d | 376 | TRANSPARENT_HUGEPAGE_USE_ZERO_PAGE_FLAG); |
79da5407 KS |
377 | } |
378 | static ssize_t use_zero_page_store(struct kobject *kobj, | |
379 | struct kobj_attribute *attr, const char *buf, size_t count) | |
380 | { | |
b46e756f | 381 | return single_hugepage_flag_store(kobj, attr, buf, count, |
79da5407 KS |
382 | TRANSPARENT_HUGEPAGE_USE_ZERO_PAGE_FLAG); |
383 | } | |
37139bb0 | 384 | static struct kobj_attribute use_zero_page_attr = __ATTR_RW(use_zero_page); |
49920d28 HD |
385 | |
386 | static ssize_t hpage_pmd_size_show(struct kobject *kobj, | |
ae7a927d | 387 | struct kobj_attribute *attr, char *buf) |
49920d28 | 388 | { |
ae7a927d | 389 | return sysfs_emit(buf, "%lu\n", HPAGE_PMD_SIZE); |
49920d28 HD |
390 | } |
391 | static struct kobj_attribute hpage_pmd_size_attr = | |
392 | __ATTR_RO(hpage_pmd_size); | |
393 | ||
71e3aac0 AA |
394 | static struct attribute *hugepage_attr[] = { |
395 | &enabled_attr.attr, | |
396 | &defrag_attr.attr, | |
79da5407 | 397 | &use_zero_page_attr.attr, |
49920d28 | 398 | &hpage_pmd_size_attr.attr, |
396bcc52 | 399 | #ifdef CONFIG_SHMEM |
5a6e75f8 | 400 | &shmem_enabled_attr.attr, |
71e3aac0 AA |
401 | #endif |
402 | NULL, | |
403 | }; | |
404 | ||
8aa95a21 | 405 | static const struct attribute_group hugepage_attr_group = { |
71e3aac0 | 406 | .attrs = hugepage_attr, |
ba76149f AA |
407 | }; |
408 | ||
569e5590 | 409 | static int __init hugepage_init_sysfs(struct kobject **hugepage_kobj) |
71e3aac0 | 410 | { |
71e3aac0 AA |
411 | int err; |
412 | ||
569e5590 SL |
413 | *hugepage_kobj = kobject_create_and_add("transparent_hugepage", mm_kobj); |
414 | if (unlikely(!*hugepage_kobj)) { | |
ae3a8c1c | 415 | pr_err("failed to create transparent hugepage kobject\n"); |
569e5590 | 416 | return -ENOMEM; |
ba76149f AA |
417 | } |
418 | ||
569e5590 | 419 | err = sysfs_create_group(*hugepage_kobj, &hugepage_attr_group); |
ba76149f | 420 | if (err) { |
ae3a8c1c | 421 | pr_err("failed to register transparent hugepage group\n"); |
569e5590 | 422 | goto delete_obj; |
ba76149f AA |
423 | } |
424 | ||
569e5590 | 425 | err = sysfs_create_group(*hugepage_kobj, &khugepaged_attr_group); |
ba76149f | 426 | if (err) { |
ae3a8c1c | 427 | pr_err("failed to register transparent hugepage group\n"); |
569e5590 | 428 | goto remove_hp_group; |
ba76149f | 429 | } |
569e5590 SL |
430 | |
431 | return 0; | |
432 | ||
433 | remove_hp_group: | |
434 | sysfs_remove_group(*hugepage_kobj, &hugepage_attr_group); | |
435 | delete_obj: | |
436 | kobject_put(*hugepage_kobj); | |
437 | return err; | |
438 | } | |
439 | ||
440 | static void __init hugepage_exit_sysfs(struct kobject *hugepage_kobj) | |
441 | { | |
442 | sysfs_remove_group(hugepage_kobj, &khugepaged_attr_group); | |
443 | sysfs_remove_group(hugepage_kobj, &hugepage_attr_group); | |
444 | kobject_put(hugepage_kobj); | |
445 | } | |
446 | #else | |
447 | static inline int hugepage_init_sysfs(struct kobject **hugepage_kobj) | |
448 | { | |
449 | return 0; | |
450 | } | |
451 | ||
452 | static inline void hugepage_exit_sysfs(struct kobject *hugepage_kobj) | |
453 | { | |
454 | } | |
455 | #endif /* CONFIG_SYSFS */ | |
456 | ||
457 | static int __init hugepage_init(void) | |
458 | { | |
459 | int err; | |
460 | struct kobject *hugepage_kobj; | |
461 | ||
462 | if (!has_transparent_hugepage()) { | |
3c556d24 | 463 | transparent_hugepage_flags = 1 << TRANSPARENT_HUGEPAGE_UNSUPPORTED; |
569e5590 SL |
464 | return -EINVAL; |
465 | } | |
466 | ||
ff20c2e0 KS |
467 | /* |
468 | * hugepages can't be allocated by the buddy allocator | |
469 | */ | |
23baf831 | 470 | MAYBE_BUILD_BUG_ON(HPAGE_PMD_ORDER > MAX_ORDER); |
ff20c2e0 KS |
471 | /* |
472 | * we use page->mapping and page->index in second tail page | |
473 | * as list_head: assuming THP order >= 2 | |
474 | */ | |
475 | MAYBE_BUILD_BUG_ON(HPAGE_PMD_ORDER < 2); | |
476 | ||
569e5590 SL |
477 | err = hugepage_init_sysfs(&hugepage_kobj); |
478 | if (err) | |
65ebb64f | 479 | goto err_sysfs; |
ba76149f | 480 | |
b46e756f | 481 | err = khugepaged_init(); |
ba76149f | 482 | if (err) |
65ebb64f | 483 | goto err_slab; |
ba76149f | 484 | |
e33c267a | 485 | err = register_shrinker(&huge_zero_page_shrinker, "thp-zero"); |
65ebb64f KS |
486 | if (err) |
487 | goto err_hzp_shrinker; | |
e33c267a | 488 | err = register_shrinker(&deferred_split_shrinker, "thp-deferred_split"); |
9a982250 KS |
489 | if (err) |
490 | goto err_split_shrinker; | |
97ae1749 | 491 | |
97562cd2 RR |
492 | /* |
493 | * By default disable transparent hugepages on smaller systems, | |
494 | * where the extra memory used could hurt more than TLB overhead | |
495 | * is likely to save. The admin can still enable it through /sys. | |
496 | */ | |
ca79b0c2 | 497 | if (totalram_pages() < (512 << (20 - PAGE_SHIFT))) { |
97562cd2 | 498 | transparent_hugepage_flags = 0; |
79553da2 KS |
499 | return 0; |
500 | } | |
97562cd2 | 501 | |
79553da2 | 502 | err = start_stop_khugepaged(); |
65ebb64f KS |
503 | if (err) |
504 | goto err_khugepaged; | |
ba76149f | 505 | |
569e5590 | 506 | return 0; |
65ebb64f | 507 | err_khugepaged: |
9a982250 KS |
508 | unregister_shrinker(&deferred_split_shrinker); |
509 | err_split_shrinker: | |
65ebb64f KS |
510 | unregister_shrinker(&huge_zero_page_shrinker); |
511 | err_hzp_shrinker: | |
b46e756f | 512 | khugepaged_destroy(); |
65ebb64f | 513 | err_slab: |
569e5590 | 514 | hugepage_exit_sysfs(hugepage_kobj); |
65ebb64f | 515 | err_sysfs: |
ba76149f | 516 | return err; |
71e3aac0 | 517 | } |
a64fb3cd | 518 | subsys_initcall(hugepage_init); |
71e3aac0 AA |
519 | |
520 | static int __init setup_transparent_hugepage(char *str) | |
521 | { | |
522 | int ret = 0; | |
523 | if (!str) | |
524 | goto out; | |
525 | if (!strcmp(str, "always")) { | |
526 | set_bit(TRANSPARENT_HUGEPAGE_FLAG, | |
527 | &transparent_hugepage_flags); | |
528 | clear_bit(TRANSPARENT_HUGEPAGE_REQ_MADV_FLAG, | |
529 | &transparent_hugepage_flags); | |
530 | ret = 1; | |
531 | } else if (!strcmp(str, "madvise")) { | |
532 | clear_bit(TRANSPARENT_HUGEPAGE_FLAG, | |
533 | &transparent_hugepage_flags); | |
534 | set_bit(TRANSPARENT_HUGEPAGE_REQ_MADV_FLAG, | |
535 | &transparent_hugepage_flags); | |
536 | ret = 1; | |
537 | } else if (!strcmp(str, "never")) { | |
538 | clear_bit(TRANSPARENT_HUGEPAGE_FLAG, | |
539 | &transparent_hugepage_flags); | |
540 | clear_bit(TRANSPARENT_HUGEPAGE_REQ_MADV_FLAG, | |
541 | &transparent_hugepage_flags); | |
542 | ret = 1; | |
543 | } | |
544 | out: | |
545 | if (!ret) | |
ae3a8c1c | 546 | pr_warn("transparent_hugepage= cannot parse, ignored\n"); |
71e3aac0 AA |
547 | return ret; |
548 | } | |
549 | __setup("transparent_hugepage=", setup_transparent_hugepage); | |
550 | ||
f55e1014 | 551 | pmd_t maybe_pmd_mkwrite(pmd_t pmd, struct vm_area_struct *vma) |
71e3aac0 | 552 | { |
f55e1014 | 553 | if (likely(vma->vm_flags & VM_WRITE)) |
161e393c | 554 | pmd = pmd_mkwrite(pmd, vma); |
71e3aac0 AA |
555 | return pmd; |
556 | } | |
557 | ||
87eaceb3 | 558 | #ifdef CONFIG_MEMCG |
f8baa6be MWO |
559 | static inline |
560 | struct deferred_split *get_deferred_split_queue(struct folio *folio) | |
9a982250 | 561 | { |
f8baa6be MWO |
562 | struct mem_cgroup *memcg = folio_memcg(folio); |
563 | struct pglist_data *pgdat = NODE_DATA(folio_nid(folio)); | |
87eaceb3 YS |
564 | |
565 | if (memcg) | |
566 | return &memcg->deferred_split_queue; | |
567 | else | |
568 | return &pgdat->deferred_split_queue; | |
9a982250 | 569 | } |
87eaceb3 | 570 | #else |
f8baa6be MWO |
571 | static inline |
572 | struct deferred_split *get_deferred_split_queue(struct folio *folio) | |
87eaceb3 | 573 | { |
f8baa6be | 574 | struct pglist_data *pgdat = NODE_DATA(folio_nid(folio)); |
87eaceb3 YS |
575 | |
576 | return &pgdat->deferred_split_queue; | |
577 | } | |
578 | #endif | |
9a982250 | 579 | |
da6e7bf3 | 580 | void folio_prep_large_rmappable(struct folio *folio) |
9a982250 | 581 | { |
8991de90 MWO |
582 | VM_BUG_ON_FOLIO(folio_order(folio) < 2, folio); |
583 | INIT_LIST_HEAD(&folio->_deferred_list); | |
de53c05f | 584 | folio_set_large_rmappable(folio); |
9a982250 KS |
585 | } |
586 | ||
a644b0ab | 587 | static inline bool is_transparent_hugepage(struct folio *folio) |
005ba37c | 588 | { |
a644b0ab | 589 | if (!folio_test_large(folio)) |
fa1f68cc | 590 | return false; |
005ba37c | 591 | |
f04029f3 | 592 | return is_huge_zero_page(&folio->page) || |
de53c05f | 593 | folio_test_large_rmappable(folio); |
005ba37c | 594 | } |
005ba37c | 595 | |
97d3d0f9 KS |
596 | static unsigned long __thp_get_unmapped_area(struct file *filp, |
597 | unsigned long addr, unsigned long len, | |
74d2fad1 TK |
598 | loff_t off, unsigned long flags, unsigned long size) |
599 | { | |
74d2fad1 TK |
600 | loff_t off_end = off + len; |
601 | loff_t off_align = round_up(off, size); | |
97d3d0f9 | 602 | unsigned long len_pad, ret; |
74d2fad1 TK |
603 | |
604 | if (off_end <= off_align || (off_end - off_align) < size) | |
605 | return 0; | |
606 | ||
607 | len_pad = len + size; | |
608 | if (len_pad < len || (off + len_pad) < off) | |
609 | return 0; | |
610 | ||
97d3d0f9 | 611 | ret = current->mm->get_unmapped_area(filp, addr, len_pad, |
74d2fad1 | 612 | off >> PAGE_SHIFT, flags); |
97d3d0f9 KS |
613 | |
614 | /* | |
615 | * The failure might be due to length padding. The caller will retry | |
616 | * without the padding. | |
617 | */ | |
618 | if (IS_ERR_VALUE(ret)) | |
74d2fad1 TK |
619 | return 0; |
620 | ||
97d3d0f9 KS |
621 | /* |
622 | * Do not try to align to THP boundary if allocation at the address | |
623 | * hint succeeds. | |
624 | */ | |
625 | if (ret == addr) | |
626 | return addr; | |
627 | ||
628 | ret += (off - ret) & (size - 1); | |
629 | return ret; | |
74d2fad1 TK |
630 | } |
631 | ||
632 | unsigned long thp_get_unmapped_area(struct file *filp, unsigned long addr, | |
633 | unsigned long len, unsigned long pgoff, unsigned long flags) | |
634 | { | |
97d3d0f9 | 635 | unsigned long ret; |
74d2fad1 TK |
636 | loff_t off = (loff_t)pgoff << PAGE_SHIFT; |
637 | ||
97d3d0f9 KS |
638 | ret = __thp_get_unmapped_area(filp, addr, len, off, flags, PMD_SIZE); |
639 | if (ret) | |
640 | return ret; | |
1854bc6e | 641 | |
74d2fad1 TK |
642 | return current->mm->get_unmapped_area(filp, addr, len, pgoff, flags); |
643 | } | |
644 | EXPORT_SYMBOL_GPL(thp_get_unmapped_area); | |
645 | ||
2b740303 SJ |
646 | static vm_fault_t __do_huge_pmd_anonymous_page(struct vm_fault *vmf, |
647 | struct page *page, gfp_t gfp) | |
71e3aac0 | 648 | { |
82b0f8c3 | 649 | struct vm_area_struct *vma = vmf->vma; |
cfe3236d | 650 | struct folio *folio = page_folio(page); |
71e3aac0 | 651 | pgtable_t pgtable; |
82b0f8c3 | 652 | unsigned long haddr = vmf->address & HPAGE_PMD_MASK; |
2b740303 | 653 | vm_fault_t ret = 0; |
71e3aac0 | 654 | |
cfe3236d | 655 | VM_BUG_ON_FOLIO(!folio_test_large(folio), folio); |
00501b53 | 656 | |
cfe3236d KW |
657 | if (mem_cgroup_charge(folio, vma->vm_mm, gfp)) { |
658 | folio_put(folio); | |
6b251fc9 | 659 | count_vm_event(THP_FAULT_FALLBACK); |
85b9f46e | 660 | count_vm_event(THP_FAULT_FALLBACK_CHARGE); |
6b251fc9 AA |
661 | return VM_FAULT_FALLBACK; |
662 | } | |
cfe3236d | 663 | folio_throttle_swaprate(folio, gfp); |
00501b53 | 664 | |
4cf58924 | 665 | pgtable = pte_alloc_one(vma->vm_mm); |
00501b53 | 666 | if (unlikely(!pgtable)) { |
6b31d595 MH |
667 | ret = VM_FAULT_OOM; |
668 | goto release; | |
00501b53 | 669 | } |
71e3aac0 | 670 | |
c79b57e4 | 671 | clear_huge_page(page, vmf->address, HPAGE_PMD_NR); |
52f37629 | 672 | /* |
cfe3236d | 673 | * The memory barrier inside __folio_mark_uptodate makes sure that |
52f37629 MK |
674 | * clear_huge_page writes become visible before the set_pmd_at() |
675 | * write. | |
676 | */ | |
cfe3236d | 677 | __folio_mark_uptodate(folio); |
71e3aac0 | 678 | |
82b0f8c3 JK |
679 | vmf->ptl = pmd_lock(vma->vm_mm, vmf->pmd); |
680 | if (unlikely(!pmd_none(*vmf->pmd))) { | |
6b31d595 | 681 | goto unlock_release; |
71e3aac0 AA |
682 | } else { |
683 | pmd_t entry; | |
6b251fc9 | 684 | |
6b31d595 MH |
685 | ret = check_stable_address_space(vma->vm_mm); |
686 | if (ret) | |
687 | goto unlock_release; | |
688 | ||
6b251fc9 AA |
689 | /* Deliver the page fault to userland */ |
690 | if (userfaultfd_missing(vma)) { | |
82b0f8c3 | 691 | spin_unlock(vmf->ptl); |
cfe3236d | 692 | folio_put(folio); |
bae473a4 | 693 | pte_free(vma->vm_mm, pgtable); |
8fd5eda4 ML |
694 | ret = handle_userfault(vmf, VM_UFFD_MISSING); |
695 | VM_BUG_ON(ret & VM_FAULT_FALLBACK); | |
696 | return ret; | |
6b251fc9 AA |
697 | } |
698 | ||
3122359a | 699 | entry = mk_huge_pmd(page, vma->vm_page_prot); |
f55e1014 | 700 | entry = maybe_pmd_mkwrite(pmd_mkdirty(entry), vma); |
cfe3236d KW |
701 | folio_add_new_anon_rmap(folio, vma, haddr); |
702 | folio_add_lru_vma(folio, vma); | |
82b0f8c3 JK |
703 | pgtable_trans_huge_deposit(vma->vm_mm, vmf->pmd, pgtable); |
704 | set_pmd_at(vma->vm_mm, haddr, vmf->pmd, entry); | |
fca40573 | 705 | update_mmu_cache_pmd(vma, vmf->address, vmf->pmd); |
bae473a4 | 706 | add_mm_counter(vma->vm_mm, MM_ANONPAGES, HPAGE_PMD_NR); |
c4812909 | 707 | mm_inc_nr_ptes(vma->vm_mm); |
82b0f8c3 | 708 | spin_unlock(vmf->ptl); |
6b251fc9 | 709 | count_vm_event(THP_FAULT_ALLOC); |
9d82c694 | 710 | count_memcg_event_mm(vma->vm_mm, THP_FAULT_ALLOC); |
71e3aac0 AA |
711 | } |
712 | ||
aa2e878e | 713 | return 0; |
6b31d595 MH |
714 | unlock_release: |
715 | spin_unlock(vmf->ptl); | |
716 | release: | |
717 | if (pgtable) | |
718 | pte_free(vma->vm_mm, pgtable); | |
cfe3236d | 719 | folio_put(folio); |
6b31d595 MH |
720 | return ret; |
721 | ||
71e3aac0 AA |
722 | } |
723 | ||
444eb2a4 | 724 | /* |
21440d7e DR |
725 | * always: directly stall for all thp allocations |
726 | * defer: wake kswapd and fail if not immediately available | |
727 | * defer+madvise: wake kswapd and directly stall for MADV_HUGEPAGE, otherwise | |
728 | * fail if not immediately available | |
729 | * madvise: directly stall for MADV_HUGEPAGE, otherwise fail if not immediately | |
730 | * available | |
731 | * never: never stall for any thp allocation | |
444eb2a4 | 732 | */ |
164cc4fe | 733 | gfp_t vma_thp_gfp_mask(struct vm_area_struct *vma) |
444eb2a4 | 734 | { |
164cc4fe | 735 | const bool vma_madvised = vma && (vma->vm_flags & VM_HUGEPAGE); |
2f0799a0 | 736 | |
ac79f78d | 737 | /* Always do synchronous compaction */ |
a8282608 AA |
738 | if (test_bit(TRANSPARENT_HUGEPAGE_DEFRAG_DIRECT_FLAG, &transparent_hugepage_flags)) |
739 | return GFP_TRANSHUGE | (vma_madvised ? 0 : __GFP_NORETRY); | |
ac79f78d DR |
740 | |
741 | /* Kick kcompactd and fail quickly */ | |
21440d7e | 742 | if (test_bit(TRANSPARENT_HUGEPAGE_DEFRAG_KSWAPD_FLAG, &transparent_hugepage_flags)) |
19deb769 | 743 | return GFP_TRANSHUGE_LIGHT | __GFP_KSWAPD_RECLAIM; |
ac79f78d DR |
744 | |
745 | /* Synchronous compaction if madvised, otherwise kick kcompactd */ | |
21440d7e | 746 | if (test_bit(TRANSPARENT_HUGEPAGE_DEFRAG_KSWAPD_OR_MADV_FLAG, &transparent_hugepage_flags)) |
19deb769 DR |
747 | return GFP_TRANSHUGE_LIGHT | |
748 | (vma_madvised ? __GFP_DIRECT_RECLAIM : | |
749 | __GFP_KSWAPD_RECLAIM); | |
ac79f78d DR |
750 | |
751 | /* Only do synchronous compaction if madvised */ | |
21440d7e | 752 | if (test_bit(TRANSPARENT_HUGEPAGE_DEFRAG_REQ_MADV_FLAG, &transparent_hugepage_flags)) |
19deb769 DR |
753 | return GFP_TRANSHUGE_LIGHT | |
754 | (vma_madvised ? __GFP_DIRECT_RECLAIM : 0); | |
ac79f78d | 755 | |
19deb769 | 756 | return GFP_TRANSHUGE_LIGHT; |
444eb2a4 MG |
757 | } |
758 | ||
c4088ebd | 759 | /* Caller must hold page table lock. */ |
2efeb8da | 760 | static void set_huge_zero_page(pgtable_t pgtable, struct mm_struct *mm, |
97ae1749 | 761 | struct vm_area_struct *vma, unsigned long haddr, pmd_t *pmd, |
5918d10a | 762 | struct page *zero_page) |
fc9fe822 KS |
763 | { |
764 | pmd_t entry; | |
7c414164 | 765 | if (!pmd_none(*pmd)) |
2efeb8da | 766 | return; |
5918d10a | 767 | entry = mk_pmd(zero_page, vma->vm_page_prot); |
fc9fe822 | 768 | entry = pmd_mkhuge(entry); |
c8bb4163 | 769 | pgtable_trans_huge_deposit(mm, pmd, pgtable); |
fc9fe822 | 770 | set_pmd_at(mm, haddr, pmd, entry); |
c4812909 | 771 | mm_inc_nr_ptes(mm); |
fc9fe822 KS |
772 | } |
773 | ||
2b740303 | 774 | vm_fault_t do_huge_pmd_anonymous_page(struct vm_fault *vmf) |
71e3aac0 | 775 | { |
82b0f8c3 | 776 | struct vm_area_struct *vma = vmf->vma; |
077fcf11 | 777 | gfp_t gfp; |
cb196ee1 | 778 | struct folio *folio; |
82b0f8c3 | 779 | unsigned long haddr = vmf->address & HPAGE_PMD_MASK; |
71e3aac0 | 780 | |
43675e6f | 781 | if (!transhuge_vma_suitable(vma, haddr)) |
c0292554 | 782 | return VM_FAULT_FALLBACK; |
128ec037 KS |
783 | if (unlikely(anon_vma_prepare(vma))) |
784 | return VM_FAULT_OOM; | |
4fa6893f | 785 | khugepaged_enter_vma(vma, vma->vm_flags); |
d2081b2b | 786 | |
82b0f8c3 | 787 | if (!(vmf->flags & FAULT_FLAG_WRITE) && |
bae473a4 | 788 | !mm_forbids_zeropage(vma->vm_mm) && |
128ec037 KS |
789 | transparent_hugepage_use_zero_page()) { |
790 | pgtable_t pgtable; | |
791 | struct page *zero_page; | |
2b740303 | 792 | vm_fault_t ret; |
4cf58924 | 793 | pgtable = pte_alloc_one(vma->vm_mm); |
128ec037 | 794 | if (unlikely(!pgtable)) |
ba76149f | 795 | return VM_FAULT_OOM; |
6fcb52a5 | 796 | zero_page = mm_get_huge_zero_page(vma->vm_mm); |
128ec037 | 797 | if (unlikely(!zero_page)) { |
bae473a4 | 798 | pte_free(vma->vm_mm, pgtable); |
81ab4201 | 799 | count_vm_event(THP_FAULT_FALLBACK); |
c0292554 | 800 | return VM_FAULT_FALLBACK; |
b9bbfbe3 | 801 | } |
82b0f8c3 | 802 | vmf->ptl = pmd_lock(vma->vm_mm, vmf->pmd); |
6b251fc9 | 803 | ret = 0; |
82b0f8c3 | 804 | if (pmd_none(*vmf->pmd)) { |
6b31d595 MH |
805 | ret = check_stable_address_space(vma->vm_mm); |
806 | if (ret) { | |
807 | spin_unlock(vmf->ptl); | |
bfe8cc1d | 808 | pte_free(vma->vm_mm, pgtable); |
6b31d595 | 809 | } else if (userfaultfd_missing(vma)) { |
82b0f8c3 | 810 | spin_unlock(vmf->ptl); |
bfe8cc1d | 811 | pte_free(vma->vm_mm, pgtable); |
82b0f8c3 | 812 | ret = handle_userfault(vmf, VM_UFFD_MISSING); |
6b251fc9 AA |
813 | VM_BUG_ON(ret & VM_FAULT_FALLBACK); |
814 | } else { | |
bae473a4 | 815 | set_huge_zero_page(pgtable, vma->vm_mm, vma, |
82b0f8c3 | 816 | haddr, vmf->pmd, zero_page); |
fca40573 | 817 | update_mmu_cache_pmd(vma, vmf->address, vmf->pmd); |
82b0f8c3 | 818 | spin_unlock(vmf->ptl); |
6b251fc9 | 819 | } |
bfe8cc1d | 820 | } else { |
82b0f8c3 | 821 | spin_unlock(vmf->ptl); |
bae473a4 | 822 | pte_free(vma->vm_mm, pgtable); |
bfe8cc1d | 823 | } |
6b251fc9 | 824 | return ret; |
71e3aac0 | 825 | } |
164cc4fe | 826 | gfp = vma_thp_gfp_mask(vma); |
cb196ee1 MWO |
827 | folio = vma_alloc_folio(gfp, HPAGE_PMD_ORDER, vma, haddr, true); |
828 | if (unlikely(!folio)) { | |
128ec037 | 829 | count_vm_event(THP_FAULT_FALLBACK); |
c0292554 | 830 | return VM_FAULT_FALLBACK; |
128ec037 | 831 | } |
cb196ee1 | 832 | return __do_huge_pmd_anonymous_page(vmf, &folio->page, gfp); |
71e3aac0 AA |
833 | } |
834 | ||
ae18d6dc | 835 | static void insert_pfn_pmd(struct vm_area_struct *vma, unsigned long addr, |
3b6521f5 OH |
836 | pmd_t *pmd, pfn_t pfn, pgprot_t prot, bool write, |
837 | pgtable_t pgtable) | |
5cad465d MW |
838 | { |
839 | struct mm_struct *mm = vma->vm_mm; | |
840 | pmd_t entry; | |
841 | spinlock_t *ptl; | |
842 | ||
843 | ptl = pmd_lock(mm, pmd); | |
c6f3c5ee AK |
844 | if (!pmd_none(*pmd)) { |
845 | if (write) { | |
846 | if (pmd_pfn(*pmd) != pfn_t_to_pfn(pfn)) { | |
847 | WARN_ON_ONCE(!is_huge_zero_pmd(*pmd)); | |
848 | goto out_unlock; | |
849 | } | |
850 | entry = pmd_mkyoung(*pmd); | |
851 | entry = maybe_pmd_mkwrite(pmd_mkdirty(entry), vma); | |
852 | if (pmdp_set_access_flags(vma, addr, pmd, entry, 1)) | |
853 | update_mmu_cache_pmd(vma, addr, pmd); | |
854 | } | |
855 | ||
856 | goto out_unlock; | |
857 | } | |
858 | ||
f25748e3 DW |
859 | entry = pmd_mkhuge(pfn_t_pmd(pfn, prot)); |
860 | if (pfn_t_devmap(pfn)) | |
861 | entry = pmd_mkdevmap(entry); | |
01871e59 | 862 | if (write) { |
f55e1014 LT |
863 | entry = pmd_mkyoung(pmd_mkdirty(entry)); |
864 | entry = maybe_pmd_mkwrite(entry, vma); | |
5cad465d | 865 | } |
3b6521f5 OH |
866 | |
867 | if (pgtable) { | |
868 | pgtable_trans_huge_deposit(mm, pmd, pgtable); | |
c4812909 | 869 | mm_inc_nr_ptes(mm); |
c6f3c5ee | 870 | pgtable = NULL; |
3b6521f5 OH |
871 | } |
872 | ||
01871e59 RZ |
873 | set_pmd_at(mm, addr, pmd, entry); |
874 | update_mmu_cache_pmd(vma, addr, pmd); | |
c6f3c5ee AK |
875 | |
876 | out_unlock: | |
5cad465d | 877 | spin_unlock(ptl); |
c6f3c5ee AK |
878 | if (pgtable) |
879 | pte_free(mm, pgtable); | |
5cad465d MW |
880 | } |
881 | ||
9a9731b1 | 882 | /** |
7b806d22 | 883 | * vmf_insert_pfn_pmd - insert a pmd size pfn |
9a9731b1 THV |
884 | * @vmf: Structure describing the fault |
885 | * @pfn: pfn to insert | |
9a9731b1 THV |
886 | * @write: whether it's a write fault |
887 | * | |
7b806d22 | 888 | * Insert a pmd size pfn. See vmf_insert_pfn() for additional info. |
9a9731b1 THV |
889 | * |
890 | * Return: vm_fault_t value. | |
891 | */ | |
7b806d22 | 892 | vm_fault_t vmf_insert_pfn_pmd(struct vm_fault *vmf, pfn_t pfn, bool write) |
5cad465d | 893 | { |
fce86ff5 DW |
894 | unsigned long addr = vmf->address & PMD_MASK; |
895 | struct vm_area_struct *vma = vmf->vma; | |
7b806d22 | 896 | pgprot_t pgprot = vma->vm_page_prot; |
3b6521f5 | 897 | pgtable_t pgtable = NULL; |
fce86ff5 | 898 | |
5cad465d MW |
899 | /* |
900 | * If we had pmd_special, we could avoid all these restrictions, | |
901 | * but we need to be consistent with PTEs and architectures that | |
902 | * can't support a 'special' bit. | |
903 | */ | |
e1fb4a08 DJ |
904 | BUG_ON(!(vma->vm_flags & (VM_PFNMAP|VM_MIXEDMAP)) && |
905 | !pfn_t_devmap(pfn)); | |
5cad465d MW |
906 | BUG_ON((vma->vm_flags & (VM_PFNMAP|VM_MIXEDMAP)) == |
907 | (VM_PFNMAP|VM_MIXEDMAP)); | |
908 | BUG_ON((vma->vm_flags & VM_PFNMAP) && is_cow_mapping(vma->vm_flags)); | |
5cad465d MW |
909 | |
910 | if (addr < vma->vm_start || addr >= vma->vm_end) | |
911 | return VM_FAULT_SIGBUS; | |
308a047c | 912 | |
3b6521f5 | 913 | if (arch_needs_pgtable_deposit()) { |
4cf58924 | 914 | pgtable = pte_alloc_one(vma->vm_mm); |
3b6521f5 OH |
915 | if (!pgtable) |
916 | return VM_FAULT_OOM; | |
917 | } | |
918 | ||
308a047c BP |
919 | track_pfn_insert(vma, &pgprot, pfn); |
920 | ||
fce86ff5 | 921 | insert_pfn_pmd(vma, addr, vmf->pmd, pfn, pgprot, write, pgtable); |
ae18d6dc | 922 | return VM_FAULT_NOPAGE; |
5cad465d | 923 | } |
7b806d22 | 924 | EXPORT_SYMBOL_GPL(vmf_insert_pfn_pmd); |
5cad465d | 925 | |
a00cc7d9 | 926 | #ifdef CONFIG_HAVE_ARCH_TRANSPARENT_HUGEPAGE_PUD |
f55e1014 | 927 | static pud_t maybe_pud_mkwrite(pud_t pud, struct vm_area_struct *vma) |
a00cc7d9 | 928 | { |
f55e1014 | 929 | if (likely(vma->vm_flags & VM_WRITE)) |
a00cc7d9 MW |
930 | pud = pud_mkwrite(pud); |
931 | return pud; | |
932 | } | |
933 | ||
934 | static void insert_pfn_pud(struct vm_area_struct *vma, unsigned long addr, | |
7b806d22 | 935 | pud_t *pud, pfn_t pfn, bool write) |
a00cc7d9 MW |
936 | { |
937 | struct mm_struct *mm = vma->vm_mm; | |
7b806d22 | 938 | pgprot_t prot = vma->vm_page_prot; |
a00cc7d9 MW |
939 | pud_t entry; |
940 | spinlock_t *ptl; | |
941 | ||
942 | ptl = pud_lock(mm, pud); | |
c6f3c5ee AK |
943 | if (!pud_none(*pud)) { |
944 | if (write) { | |
945 | if (pud_pfn(*pud) != pfn_t_to_pfn(pfn)) { | |
946 | WARN_ON_ONCE(!is_huge_zero_pud(*pud)); | |
947 | goto out_unlock; | |
948 | } | |
949 | entry = pud_mkyoung(*pud); | |
950 | entry = maybe_pud_mkwrite(pud_mkdirty(entry), vma); | |
951 | if (pudp_set_access_flags(vma, addr, pud, entry, 1)) | |
952 | update_mmu_cache_pud(vma, addr, pud); | |
953 | } | |
954 | goto out_unlock; | |
955 | } | |
956 | ||
a00cc7d9 MW |
957 | entry = pud_mkhuge(pfn_t_pud(pfn, prot)); |
958 | if (pfn_t_devmap(pfn)) | |
959 | entry = pud_mkdevmap(entry); | |
960 | if (write) { | |
f55e1014 LT |
961 | entry = pud_mkyoung(pud_mkdirty(entry)); |
962 | entry = maybe_pud_mkwrite(entry, vma); | |
a00cc7d9 MW |
963 | } |
964 | set_pud_at(mm, addr, pud, entry); | |
965 | update_mmu_cache_pud(vma, addr, pud); | |
c6f3c5ee AK |
966 | |
967 | out_unlock: | |
a00cc7d9 MW |
968 | spin_unlock(ptl); |
969 | } | |
970 | ||
9a9731b1 | 971 | /** |
7b806d22 | 972 | * vmf_insert_pfn_pud - insert a pud size pfn |
9a9731b1 THV |
973 | * @vmf: Structure describing the fault |
974 | * @pfn: pfn to insert | |
9a9731b1 THV |
975 | * @write: whether it's a write fault |
976 | * | |
7b806d22 | 977 | * Insert a pud size pfn. See vmf_insert_pfn() for additional info. |
9a9731b1 THV |
978 | * |
979 | * Return: vm_fault_t value. | |
980 | */ | |
7b806d22 | 981 | vm_fault_t vmf_insert_pfn_pud(struct vm_fault *vmf, pfn_t pfn, bool write) |
a00cc7d9 | 982 | { |
fce86ff5 DW |
983 | unsigned long addr = vmf->address & PUD_MASK; |
984 | struct vm_area_struct *vma = vmf->vma; | |
7b806d22 | 985 | pgprot_t pgprot = vma->vm_page_prot; |
fce86ff5 | 986 | |
a00cc7d9 MW |
987 | /* |
988 | * If we had pud_special, we could avoid all these restrictions, | |
989 | * but we need to be consistent with PTEs and architectures that | |
990 | * can't support a 'special' bit. | |
991 | */ | |
62ec0d8c DJ |
992 | BUG_ON(!(vma->vm_flags & (VM_PFNMAP|VM_MIXEDMAP)) && |
993 | !pfn_t_devmap(pfn)); | |
a00cc7d9 MW |
994 | BUG_ON((vma->vm_flags & (VM_PFNMAP|VM_MIXEDMAP)) == |
995 | (VM_PFNMAP|VM_MIXEDMAP)); | |
996 | BUG_ON((vma->vm_flags & VM_PFNMAP) && is_cow_mapping(vma->vm_flags)); | |
a00cc7d9 MW |
997 | |
998 | if (addr < vma->vm_start || addr >= vma->vm_end) | |
999 | return VM_FAULT_SIGBUS; | |
1000 | ||
1001 | track_pfn_insert(vma, &pgprot, pfn); | |
1002 | ||
7b806d22 | 1003 | insert_pfn_pud(vma, addr, vmf->pud, pfn, write); |
a00cc7d9 MW |
1004 | return VM_FAULT_NOPAGE; |
1005 | } | |
7b806d22 | 1006 | EXPORT_SYMBOL_GPL(vmf_insert_pfn_pud); |
a00cc7d9 MW |
1007 | #endif /* CONFIG_HAVE_ARCH_TRANSPARENT_HUGEPAGE_PUD */ |
1008 | ||
3565fce3 | 1009 | static void touch_pmd(struct vm_area_struct *vma, unsigned long addr, |
a69e4717 | 1010 | pmd_t *pmd, bool write) |
3565fce3 DW |
1011 | { |
1012 | pmd_t _pmd; | |
1013 | ||
a8f97366 | 1014 | _pmd = pmd_mkyoung(*pmd); |
a69e4717 | 1015 | if (write) |
a8f97366 | 1016 | _pmd = pmd_mkdirty(_pmd); |
3565fce3 | 1017 | if (pmdp_set_access_flags(vma, addr & HPAGE_PMD_MASK, |
a69e4717 | 1018 | pmd, _pmd, write)) |
3565fce3 DW |
1019 | update_mmu_cache_pmd(vma, addr, pmd); |
1020 | } | |
1021 | ||
1022 | struct page *follow_devmap_pmd(struct vm_area_struct *vma, unsigned long addr, | |
df06b37f | 1023 | pmd_t *pmd, int flags, struct dev_pagemap **pgmap) |
3565fce3 DW |
1024 | { |
1025 | unsigned long pfn = pmd_pfn(*pmd); | |
1026 | struct mm_struct *mm = vma->vm_mm; | |
3565fce3 | 1027 | struct page *page; |
0f089235 | 1028 | int ret; |
3565fce3 DW |
1029 | |
1030 | assert_spin_locked(pmd_lockptr(mm, pmd)); | |
1031 | ||
f6f37321 | 1032 | if (flags & FOLL_WRITE && !pmd_write(*pmd)) |
3565fce3 DW |
1033 | return NULL; |
1034 | ||
1035 | if (pmd_present(*pmd) && pmd_devmap(*pmd)) | |
1036 | /* pass */; | |
1037 | else | |
1038 | return NULL; | |
1039 | ||
1040 | if (flags & FOLL_TOUCH) | |
a69e4717 | 1041 | touch_pmd(vma, addr, pmd, flags & FOLL_WRITE); |
3565fce3 DW |
1042 | |
1043 | /* | |
1044 | * device mapped pages can only be returned if the | |
1045 | * caller will manage the page reference count. | |
1046 | */ | |
3faa52c0 | 1047 | if (!(flags & (FOLL_GET | FOLL_PIN))) |
3565fce3 DW |
1048 | return ERR_PTR(-EEXIST); |
1049 | ||
1050 | pfn += (addr & ~PMD_MASK) >> PAGE_SHIFT; | |
df06b37f KB |
1051 | *pgmap = get_dev_pagemap(pfn, *pgmap); |
1052 | if (!*pgmap) | |
3565fce3 DW |
1053 | return ERR_PTR(-EFAULT); |
1054 | page = pfn_to_page(pfn); | |
0f089235 LG |
1055 | ret = try_grab_page(page, flags); |
1056 | if (ret) | |
1057 | page = ERR_PTR(ret); | |
3565fce3 DW |
1058 | |
1059 | return page; | |
1060 | } | |
1061 | ||
71e3aac0 AA |
1062 | int copy_huge_pmd(struct mm_struct *dst_mm, struct mm_struct *src_mm, |
1063 | pmd_t *dst_pmd, pmd_t *src_pmd, unsigned long addr, | |
8f34f1ea | 1064 | struct vm_area_struct *dst_vma, struct vm_area_struct *src_vma) |
71e3aac0 | 1065 | { |
c4088ebd | 1066 | spinlock_t *dst_ptl, *src_ptl; |
71e3aac0 AA |
1067 | struct page *src_page; |
1068 | pmd_t pmd; | |
12c9d70b | 1069 | pgtable_t pgtable = NULL; |
628d47ce | 1070 | int ret = -ENOMEM; |
71e3aac0 | 1071 | |
628d47ce | 1072 | /* Skip if can be re-fill on fault */ |
8f34f1ea | 1073 | if (!vma_is_anonymous(dst_vma)) |
628d47ce KS |
1074 | return 0; |
1075 | ||
4cf58924 | 1076 | pgtable = pte_alloc_one(dst_mm); |
628d47ce KS |
1077 | if (unlikely(!pgtable)) |
1078 | goto out; | |
71e3aac0 | 1079 | |
c4088ebd KS |
1080 | dst_ptl = pmd_lock(dst_mm, dst_pmd); |
1081 | src_ptl = pmd_lockptr(src_mm, src_pmd); | |
1082 | spin_lock_nested(src_ptl, SINGLE_DEPTH_NESTING); | |
71e3aac0 AA |
1083 | |
1084 | ret = -EAGAIN; | |
1085 | pmd = *src_pmd; | |
84c3fc4e ZY |
1086 | |
1087 | #ifdef CONFIG_ARCH_ENABLE_THP_MIGRATION | |
1088 | if (unlikely(is_swap_pmd(pmd))) { | |
1089 | swp_entry_t entry = pmd_to_swp_entry(pmd); | |
1090 | ||
1091 | VM_BUG_ON(!is_pmd_migration_entry(pmd)); | |
6c287605 | 1092 | if (!is_readable_migration_entry(entry)) { |
4dd845b5 AP |
1093 | entry = make_readable_migration_entry( |
1094 | swp_offset(entry)); | |
84c3fc4e | 1095 | pmd = swp_entry_to_pmd(entry); |
ab6e3d09 NH |
1096 | if (pmd_swp_soft_dirty(*src_pmd)) |
1097 | pmd = pmd_swp_mksoft_dirty(pmd); | |
8f34f1ea PX |
1098 | if (pmd_swp_uffd_wp(*src_pmd)) |
1099 | pmd = pmd_swp_mkuffd_wp(pmd); | |
84c3fc4e ZY |
1100 | set_pmd_at(src_mm, addr, src_pmd, pmd); |
1101 | } | |
dd8a67f9 | 1102 | add_mm_counter(dst_mm, MM_ANONPAGES, HPAGE_PMD_NR); |
af5b0f6a | 1103 | mm_inc_nr_ptes(dst_mm); |
dd8a67f9 | 1104 | pgtable_trans_huge_deposit(dst_mm, dst_pmd, pgtable); |
8f34f1ea PX |
1105 | if (!userfaultfd_wp(dst_vma)) |
1106 | pmd = pmd_swp_clear_uffd_wp(pmd); | |
84c3fc4e ZY |
1107 | set_pmd_at(dst_mm, addr, dst_pmd, pmd); |
1108 | ret = 0; | |
1109 | goto out_unlock; | |
1110 | } | |
1111 | #endif | |
1112 | ||
628d47ce | 1113 | if (unlikely(!pmd_trans_huge(pmd))) { |
71e3aac0 AA |
1114 | pte_free(dst_mm, pgtable); |
1115 | goto out_unlock; | |
1116 | } | |
fc9fe822 | 1117 | /* |
c4088ebd | 1118 | * When page table lock is held, the huge zero pmd should not be |
fc9fe822 KS |
1119 | * under splitting since we don't split the page itself, only pmd to |
1120 | * a page table. | |
1121 | */ | |
1122 | if (is_huge_zero_pmd(pmd)) { | |
97ae1749 KS |
1123 | /* |
1124 | * get_huge_zero_page() will never allocate a new page here, | |
1125 | * since we already have a zero page to copy. It just takes a | |
1126 | * reference. | |
1127 | */ | |
5fc7a5f6 PX |
1128 | mm_get_huge_zero_page(dst_mm); |
1129 | goto out_zero_page; | |
fc9fe822 | 1130 | } |
de466bd6 | 1131 | |
628d47ce KS |
1132 | src_page = pmd_page(pmd); |
1133 | VM_BUG_ON_PAGE(!PageHead(src_page), src_page); | |
d042035e | 1134 | |
fb3d824d DH |
1135 | get_page(src_page); |
1136 | if (unlikely(page_try_dup_anon_rmap(src_page, true, src_vma))) { | |
1137 | /* Page maybe pinned: split and retry the fault on PTEs. */ | |
1138 | put_page(src_page); | |
d042035e PX |
1139 | pte_free(dst_mm, pgtable); |
1140 | spin_unlock(src_ptl); | |
1141 | spin_unlock(dst_ptl); | |
8f34f1ea | 1142 | __split_huge_pmd(src_vma, src_pmd, addr, false, NULL); |
d042035e PX |
1143 | return -EAGAIN; |
1144 | } | |
628d47ce | 1145 | add_mm_counter(dst_mm, MM_ANONPAGES, HPAGE_PMD_NR); |
5fc7a5f6 | 1146 | out_zero_page: |
c4812909 | 1147 | mm_inc_nr_ptes(dst_mm); |
628d47ce | 1148 | pgtable_trans_huge_deposit(dst_mm, dst_pmd, pgtable); |
71e3aac0 | 1149 | pmdp_set_wrprotect(src_mm, addr, src_pmd); |
8f34f1ea PX |
1150 | if (!userfaultfd_wp(dst_vma)) |
1151 | pmd = pmd_clear_uffd_wp(pmd); | |
71e3aac0 AA |
1152 | pmd = pmd_mkold(pmd_wrprotect(pmd)); |
1153 | set_pmd_at(dst_mm, addr, dst_pmd, pmd); | |
71e3aac0 AA |
1154 | |
1155 | ret = 0; | |
1156 | out_unlock: | |
c4088ebd KS |
1157 | spin_unlock(src_ptl); |
1158 | spin_unlock(dst_ptl); | |
71e3aac0 AA |
1159 | out: |
1160 | return ret; | |
1161 | } | |
1162 | ||
a00cc7d9 MW |
1163 | #ifdef CONFIG_HAVE_ARCH_TRANSPARENT_HUGEPAGE_PUD |
1164 | static void touch_pud(struct vm_area_struct *vma, unsigned long addr, | |
5fe653e9 | 1165 | pud_t *pud, bool write) |
a00cc7d9 MW |
1166 | { |
1167 | pud_t _pud; | |
1168 | ||
a8f97366 | 1169 | _pud = pud_mkyoung(*pud); |
5fe653e9 | 1170 | if (write) |
a8f97366 | 1171 | _pud = pud_mkdirty(_pud); |
a00cc7d9 | 1172 | if (pudp_set_access_flags(vma, addr & HPAGE_PUD_MASK, |
5fe653e9 | 1173 | pud, _pud, write)) |
a00cc7d9 MW |
1174 | update_mmu_cache_pud(vma, addr, pud); |
1175 | } | |
1176 | ||
1177 | struct page *follow_devmap_pud(struct vm_area_struct *vma, unsigned long addr, | |
df06b37f | 1178 | pud_t *pud, int flags, struct dev_pagemap **pgmap) |
a00cc7d9 MW |
1179 | { |
1180 | unsigned long pfn = pud_pfn(*pud); | |
1181 | struct mm_struct *mm = vma->vm_mm; | |
a00cc7d9 | 1182 | struct page *page; |
0f089235 | 1183 | int ret; |
a00cc7d9 MW |
1184 | |
1185 | assert_spin_locked(pud_lockptr(mm, pud)); | |
1186 | ||
f6f37321 | 1187 | if (flags & FOLL_WRITE && !pud_write(*pud)) |
a00cc7d9 MW |
1188 | return NULL; |
1189 | ||
1190 | if (pud_present(*pud) && pud_devmap(*pud)) | |
1191 | /* pass */; | |
1192 | else | |
1193 | return NULL; | |
1194 | ||
1195 | if (flags & FOLL_TOUCH) | |
5fe653e9 | 1196 | touch_pud(vma, addr, pud, flags & FOLL_WRITE); |
a00cc7d9 MW |
1197 | |
1198 | /* | |
1199 | * device mapped pages can only be returned if the | |
1200 | * caller will manage the page reference count. | |
3faa52c0 JH |
1201 | * |
1202 | * At least one of FOLL_GET | FOLL_PIN must be set, so assert that here: | |
a00cc7d9 | 1203 | */ |
3faa52c0 | 1204 | if (!(flags & (FOLL_GET | FOLL_PIN))) |
a00cc7d9 MW |
1205 | return ERR_PTR(-EEXIST); |
1206 | ||
1207 | pfn += (addr & ~PUD_MASK) >> PAGE_SHIFT; | |
df06b37f KB |
1208 | *pgmap = get_dev_pagemap(pfn, *pgmap); |
1209 | if (!*pgmap) | |
a00cc7d9 MW |
1210 | return ERR_PTR(-EFAULT); |
1211 | page = pfn_to_page(pfn); | |
0f089235 LG |
1212 | |
1213 | ret = try_grab_page(page, flags); | |
1214 | if (ret) | |
1215 | page = ERR_PTR(ret); | |
a00cc7d9 MW |
1216 | |
1217 | return page; | |
1218 | } | |
1219 | ||
1220 | int copy_huge_pud(struct mm_struct *dst_mm, struct mm_struct *src_mm, | |
1221 | pud_t *dst_pud, pud_t *src_pud, unsigned long addr, | |
1222 | struct vm_area_struct *vma) | |
1223 | { | |
1224 | spinlock_t *dst_ptl, *src_ptl; | |
1225 | pud_t pud; | |
1226 | int ret; | |
1227 | ||
1228 | dst_ptl = pud_lock(dst_mm, dst_pud); | |
1229 | src_ptl = pud_lockptr(src_mm, src_pud); | |
1230 | spin_lock_nested(src_ptl, SINGLE_DEPTH_NESTING); | |
1231 | ||
1232 | ret = -EAGAIN; | |
1233 | pud = *src_pud; | |
1234 | if (unlikely(!pud_trans_huge(pud) && !pud_devmap(pud))) | |
1235 | goto out_unlock; | |
1236 | ||
1237 | /* | |
1238 | * When page table lock is held, the huge zero pud should not be | |
1239 | * under splitting since we don't split the page itself, only pud to | |
1240 | * a page table. | |
1241 | */ | |
1242 | if (is_huge_zero_pud(pud)) { | |
1243 | /* No huge zero pud yet */ | |
1244 | } | |
1245 | ||
fb3d824d DH |
1246 | /* |
1247 | * TODO: once we support anonymous pages, use page_try_dup_anon_rmap() | |
1248 | * and split if duplicating fails. | |
1249 | */ | |
a00cc7d9 MW |
1250 | pudp_set_wrprotect(src_mm, addr, src_pud); |
1251 | pud = pud_mkold(pud_wrprotect(pud)); | |
1252 | set_pud_at(dst_mm, addr, dst_pud, pud); | |
1253 | ||
1254 | ret = 0; | |
1255 | out_unlock: | |
1256 | spin_unlock(src_ptl); | |
1257 | spin_unlock(dst_ptl); | |
1258 | return ret; | |
1259 | } | |
1260 | ||
1261 | void huge_pud_set_accessed(struct vm_fault *vmf, pud_t orig_pud) | |
1262 | { | |
a00cc7d9 MW |
1263 | bool write = vmf->flags & FAULT_FLAG_WRITE; |
1264 | ||
1265 | vmf->ptl = pud_lock(vmf->vma->vm_mm, vmf->pud); | |
1266 | if (unlikely(!pud_same(*vmf->pud, orig_pud))) | |
1267 | goto unlock; | |
1268 | ||
5fe653e9 | 1269 | touch_pud(vmf->vma, vmf->address, vmf->pud, write); |
a00cc7d9 MW |
1270 | unlock: |
1271 | spin_unlock(vmf->ptl); | |
1272 | } | |
1273 | #endif /* CONFIG_HAVE_ARCH_TRANSPARENT_HUGEPAGE_PUD */ | |
1274 | ||
5db4f15c | 1275 | void huge_pmd_set_accessed(struct vm_fault *vmf) |
a1dd450b | 1276 | { |
20f664aa | 1277 | bool write = vmf->flags & FAULT_FLAG_WRITE; |
a1dd450b | 1278 | |
82b0f8c3 | 1279 | vmf->ptl = pmd_lock(vmf->vma->vm_mm, vmf->pmd); |
a69e4717 | 1280 | if (unlikely(!pmd_same(*vmf->pmd, vmf->orig_pmd))) |
a1dd450b WD |
1281 | goto unlock; |
1282 | ||
a69e4717 | 1283 | touch_pmd(vmf->vma, vmf->address, vmf->pmd, write); |
a1dd450b WD |
1284 | |
1285 | unlock: | |
82b0f8c3 | 1286 | spin_unlock(vmf->ptl); |
a1dd450b WD |
1287 | } |
1288 | ||
5db4f15c | 1289 | vm_fault_t do_huge_pmd_wp_page(struct vm_fault *vmf) |
71e3aac0 | 1290 | { |
c89357e2 | 1291 | const bool unshare = vmf->flags & FAULT_FLAG_UNSHARE; |
82b0f8c3 | 1292 | struct vm_area_struct *vma = vmf->vma; |
2fad3d14 | 1293 | struct folio *folio; |
3917c802 | 1294 | struct page *page; |
82b0f8c3 | 1295 | unsigned long haddr = vmf->address & HPAGE_PMD_MASK; |
5db4f15c | 1296 | pmd_t orig_pmd = vmf->orig_pmd; |
71e3aac0 | 1297 | |
82b0f8c3 | 1298 | vmf->ptl = pmd_lockptr(vma->vm_mm, vmf->pmd); |
81d1b09c | 1299 | VM_BUG_ON_VMA(!vma->anon_vma, vma); |
3917c802 | 1300 | |
93b4796d | 1301 | if (is_huge_zero_pmd(orig_pmd)) |
3917c802 KS |
1302 | goto fallback; |
1303 | ||
82b0f8c3 | 1304 | spin_lock(vmf->ptl); |
3917c802 KS |
1305 | |
1306 | if (unlikely(!pmd_same(*vmf->pmd, orig_pmd))) { | |
1307 | spin_unlock(vmf->ptl); | |
1308 | return 0; | |
1309 | } | |
71e3aac0 AA |
1310 | |
1311 | page = pmd_page(orig_pmd); | |
2fad3d14 | 1312 | folio = page_folio(page); |
f6004e73 | 1313 | VM_BUG_ON_PAGE(!PageHead(page), page); |
3917c802 | 1314 | |
6c287605 DH |
1315 | /* Early check when only holding the PT lock. */ |
1316 | if (PageAnonExclusive(page)) | |
1317 | goto reuse; | |
1318 | ||
2fad3d14 MWO |
1319 | if (!folio_trylock(folio)) { |
1320 | folio_get(folio); | |
ba3c4ce6 | 1321 | spin_unlock(vmf->ptl); |
2fad3d14 | 1322 | folio_lock(folio); |
ba3c4ce6 YH |
1323 | spin_lock(vmf->ptl); |
1324 | if (unlikely(!pmd_same(*vmf->pmd, orig_pmd))) { | |
3917c802 | 1325 | spin_unlock(vmf->ptl); |
2fad3d14 MWO |
1326 | folio_unlock(folio); |
1327 | folio_put(folio); | |
3917c802 | 1328 | return 0; |
ba3c4ce6 | 1329 | } |
2fad3d14 | 1330 | folio_put(folio); |
ba3c4ce6 | 1331 | } |
3917c802 | 1332 | |
6c287605 DH |
1333 | /* Recheck after temporarily dropping the PT lock. */ |
1334 | if (PageAnonExclusive(page)) { | |
2fad3d14 | 1335 | folio_unlock(folio); |
6c287605 DH |
1336 | goto reuse; |
1337 | } | |
1338 | ||
3917c802 | 1339 | /* |
2fad3d14 MWO |
1340 | * See do_wp_page(): we can only reuse the folio exclusively if |
1341 | * there are no additional references. Note that we always drain | |
1fec6890 | 1342 | * the LRU cache immediately after adding a THP. |
3917c802 | 1343 | */ |
2fad3d14 MWO |
1344 | if (folio_ref_count(folio) > |
1345 | 1 + folio_test_swapcache(folio) * folio_nr_pages(folio)) | |
3bff7e3f | 1346 | goto unlock_fallback; |
2fad3d14 MWO |
1347 | if (folio_test_swapcache(folio)) |
1348 | folio_free_swap(folio); | |
1349 | if (folio_ref_count(folio) == 1) { | |
71e3aac0 | 1350 | pmd_t entry; |
6c54dc6c DH |
1351 | |
1352 | page_move_anon_rmap(page, vma); | |
2fad3d14 | 1353 | folio_unlock(folio); |
6c287605 | 1354 | reuse: |
c89357e2 DH |
1355 | if (unlikely(unshare)) { |
1356 | spin_unlock(vmf->ptl); | |
1357 | return 0; | |
1358 | } | |
71e3aac0 | 1359 | entry = pmd_mkyoung(orig_pmd); |
f55e1014 | 1360 | entry = maybe_pmd_mkwrite(pmd_mkdirty(entry), vma); |
3917c802 | 1361 | if (pmdp_set_access_flags(vma, haddr, vmf->pmd, entry, 1)) |
82b0f8c3 | 1362 | update_mmu_cache_pmd(vma, vmf->address, vmf->pmd); |
82b0f8c3 | 1363 | spin_unlock(vmf->ptl); |
cb8d8633 | 1364 | return 0; |
71e3aac0 | 1365 | } |
3917c802 | 1366 | |
3bff7e3f | 1367 | unlock_fallback: |
2fad3d14 | 1368 | folio_unlock(folio); |
82b0f8c3 | 1369 | spin_unlock(vmf->ptl); |
3917c802 KS |
1370 | fallback: |
1371 | __split_huge_pmd(vma, vmf->pmd, vmf->address, false, NULL); | |
1372 | return VM_FAULT_FALLBACK; | |
71e3aac0 AA |
1373 | } |
1374 | ||
c27f479e DH |
1375 | static inline bool can_change_pmd_writable(struct vm_area_struct *vma, |
1376 | unsigned long addr, pmd_t pmd) | |
1377 | { | |
1378 | struct page *page; | |
1379 | ||
1380 | if (WARN_ON_ONCE(!(vma->vm_flags & VM_WRITE))) | |
1381 | return false; | |
1382 | ||
1383 | /* Don't touch entries that are not even readable (NUMA hinting). */ | |
1384 | if (pmd_protnone(pmd)) | |
1385 | return false; | |
1386 | ||
1387 | /* Do we need write faults for softdirty tracking? */ | |
1388 | if (vma_soft_dirty_enabled(vma) && !pmd_soft_dirty(pmd)) | |
1389 | return false; | |
1390 | ||
1391 | /* Do we need write faults for uffd-wp tracking? */ | |
1392 | if (userfaultfd_huge_pmd_wp(vma, pmd)) | |
1393 | return false; | |
1394 | ||
1395 | if (!(vma->vm_flags & VM_SHARED)) { | |
1396 | /* See can_change_pte_writable(). */ | |
1397 | page = vm_normal_page_pmd(vma, addr, pmd); | |
1398 | return page && PageAnon(page) && PageAnonExclusive(page); | |
1399 | } | |
1400 | ||
1401 | /* See can_change_pte_writable(). */ | |
1402 | return pmd_dirty(pmd); | |
1403 | } | |
1404 | ||
5535be30 DH |
1405 | /* FOLL_FORCE can write to even unwritable PMDs in COW mappings. */ |
1406 | static inline bool can_follow_write_pmd(pmd_t pmd, struct page *page, | |
1407 | struct vm_area_struct *vma, | |
1408 | unsigned int flags) | |
8310d48b | 1409 | { |
5535be30 DH |
1410 | /* If the pmd is writable, we can write to the page. */ |
1411 | if (pmd_write(pmd)) | |
1412 | return true; | |
1413 | ||
1414 | /* Maybe FOLL_FORCE is set to override it? */ | |
1415 | if (!(flags & FOLL_FORCE)) | |
1416 | return false; | |
1417 | ||
1418 | /* But FOLL_FORCE has no effect on shared mappings */ | |
1419 | if (vma->vm_flags & (VM_MAYSHARE | VM_SHARED)) | |
1420 | return false; | |
1421 | ||
1422 | /* ... or read-only private ones */ | |
1423 | if (!(vma->vm_flags & VM_MAYWRITE)) | |
1424 | return false; | |
1425 | ||
1426 | /* ... or already writable ones that just need to take a write fault */ | |
1427 | if (vma->vm_flags & VM_WRITE) | |
1428 | return false; | |
1429 | ||
1430 | /* | |
1431 | * See can_change_pte_writable(): we broke COW and could map the page | |
1432 | * writable if we have an exclusive anonymous page ... | |
1433 | */ | |
1434 | if (!page || !PageAnon(page) || !PageAnonExclusive(page)) | |
1435 | return false; | |
1436 | ||
1437 | /* ... and a write-fault isn't required for other reasons. */ | |
1438 | if (vma_soft_dirty_enabled(vma) && !pmd_soft_dirty(pmd)) | |
1439 | return false; | |
1440 | return !userfaultfd_huge_pmd_wp(vma, pmd); | |
8310d48b KF |
1441 | } |
1442 | ||
b676b293 | 1443 | struct page *follow_trans_huge_pmd(struct vm_area_struct *vma, |
71e3aac0 AA |
1444 | unsigned long addr, |
1445 | pmd_t *pmd, | |
1446 | unsigned int flags) | |
1447 | { | |
b676b293 | 1448 | struct mm_struct *mm = vma->vm_mm; |
5535be30 | 1449 | struct page *page; |
0f089235 | 1450 | int ret; |
71e3aac0 | 1451 | |
c4088ebd | 1452 | assert_spin_locked(pmd_lockptr(mm, pmd)); |
71e3aac0 | 1453 | |
5535be30 DH |
1454 | page = pmd_page(*pmd); |
1455 | VM_BUG_ON_PAGE(!PageHead(page) && !is_zone_device_page(page), page); | |
1456 | ||
1457 | if ((flags & FOLL_WRITE) && | |
1458 | !can_follow_write_pmd(*pmd, page, vma, flags)) | |
1459 | return NULL; | |
71e3aac0 | 1460 | |
85facf25 KS |
1461 | /* Avoid dumping huge zero page */ |
1462 | if ((flags & FOLL_DUMP) && is_huge_zero_pmd(*pmd)) | |
1463 | return ERR_PTR(-EFAULT); | |
1464 | ||
d74943a2 | 1465 | if (pmd_protnone(*pmd) && !gup_can_follow_protnone(vma, flags)) |
5535be30 | 1466 | return NULL; |
3faa52c0 | 1467 | |
84209e87 | 1468 | if (!pmd_write(*pmd) && gup_must_unshare(vma, flags, page)) |
a7f22660 DH |
1469 | return ERR_PTR(-EMLINK); |
1470 | ||
b6a2619c DH |
1471 | VM_BUG_ON_PAGE((flags & FOLL_PIN) && PageAnon(page) && |
1472 | !PageAnonExclusive(page), page); | |
1473 | ||
0f089235 LG |
1474 | ret = try_grab_page(page, flags); |
1475 | if (ret) | |
1476 | return ERR_PTR(ret); | |
3faa52c0 | 1477 | |
3565fce3 | 1478 | if (flags & FOLL_TOUCH) |
a69e4717 | 1479 | touch_pmd(vma, addr, pmd, flags & FOLL_WRITE); |
3faa52c0 | 1480 | |
71e3aac0 | 1481 | page += (addr & ~HPAGE_PMD_MASK) >> PAGE_SHIFT; |
ca120cf6 | 1482 | VM_BUG_ON_PAGE(!PageCompound(page) && !is_zone_device_page(page), page); |
71e3aac0 | 1483 | |
71e3aac0 AA |
1484 | return page; |
1485 | } | |
1486 | ||
d10e63f2 | 1487 | /* NUMA hinting page fault entry point for trans huge pmds */ |
5db4f15c | 1488 | vm_fault_t do_huge_pmd_numa_page(struct vm_fault *vmf) |
d10e63f2 | 1489 | { |
82b0f8c3 | 1490 | struct vm_area_struct *vma = vmf->vma; |
c5b5a3dd YS |
1491 | pmd_t oldpmd = vmf->orig_pmd; |
1492 | pmd_t pmd; | |
b32967ff | 1493 | struct page *page; |
82b0f8c3 | 1494 | unsigned long haddr = vmf->address & HPAGE_PMD_MASK; |
c5b5a3dd | 1495 | int page_nid = NUMA_NO_NODE; |
33024536 | 1496 | int target_nid, last_cpupid = (-1 & LAST_CPUPID_MASK); |
6a56ccbc | 1497 | bool migrated = false, writable = false; |
6688cc05 | 1498 | int flags = 0; |
d10e63f2 | 1499 | |
82b0f8c3 | 1500 | vmf->ptl = pmd_lock(vma->vm_mm, vmf->pmd); |
c5b5a3dd | 1501 | if (unlikely(!pmd_same(oldpmd, *vmf->pmd))) { |
82b0f8c3 | 1502 | spin_unlock(vmf->ptl); |
de466bd6 MG |
1503 | goto out; |
1504 | } | |
1505 | ||
c5b5a3dd | 1506 | pmd = pmd_modify(oldpmd, vma->vm_page_prot); |
6a56ccbc DH |
1507 | |
1508 | /* | |
1509 | * Detect now whether the PMD could be writable; this information | |
1510 | * is only valid while holding the PT lock. | |
1511 | */ | |
1512 | writable = pmd_write(pmd); | |
1513 | if (!writable && vma_wants_manual_pte_write_upgrade(vma) && | |
1514 | can_change_pmd_writable(vma, vmf->address, pmd)) | |
1515 | writable = true; | |
1516 | ||
c5b5a3dd YS |
1517 | page = vm_normal_page_pmd(vma, haddr, pmd); |
1518 | if (!page) | |
1519 | goto out_map; | |
1520 | ||
1521 | /* See similar comment in do_numa_page for explanation */ | |
6a56ccbc | 1522 | if (!writable) |
c5b5a3dd YS |
1523 | flags |= TNF_NO_GROUP; |
1524 | ||
1525 | page_nid = page_to_nid(page); | |
33024536 YH |
1526 | /* |
1527 | * For memory tiering mode, cpupid of slow memory page is used | |
1528 | * to record page access time. So use default value. | |
1529 | */ | |
1530 | if (node_is_toptier(page_nid)) | |
1531 | last_cpupid = page_cpupid_last(page); | |
c5b5a3dd YS |
1532 | target_nid = numa_migrate_prep(page, vma, haddr, page_nid, |
1533 | &flags); | |
1534 | ||
1535 | if (target_nid == NUMA_NO_NODE) { | |
1536 | put_page(page); | |
1537 | goto out_map; | |
1538 | } | |
1539 | ||
82b0f8c3 | 1540 | spin_unlock(vmf->ptl); |
6a56ccbc | 1541 | writable = false; |
8b1b436d | 1542 | |
c5b5a3dd | 1543 | migrated = migrate_misplaced_page(page, vma, target_nid); |
6688cc05 PZ |
1544 | if (migrated) { |
1545 | flags |= TNF_MIGRATED; | |
8191acbd | 1546 | page_nid = target_nid; |
c5b5a3dd | 1547 | } else { |
074c2381 | 1548 | flags |= TNF_MIGRATE_FAIL; |
c5b5a3dd YS |
1549 | vmf->ptl = pmd_lock(vma->vm_mm, vmf->pmd); |
1550 | if (unlikely(!pmd_same(oldpmd, *vmf->pmd))) { | |
1551 | spin_unlock(vmf->ptl); | |
1552 | goto out; | |
1553 | } | |
1554 | goto out_map; | |
1555 | } | |
b8916634 MG |
1556 | |
1557 | out: | |
98fa15f3 | 1558 | if (page_nid != NUMA_NO_NODE) |
82b0f8c3 | 1559 | task_numa_fault(last_cpupid, page_nid, HPAGE_PMD_NR, |
9a8b300f | 1560 | flags); |
8191acbd | 1561 | |
d10e63f2 | 1562 | return 0; |
c5b5a3dd YS |
1563 | |
1564 | out_map: | |
1565 | /* Restore the PMD */ | |
1566 | pmd = pmd_modify(oldpmd, vma->vm_page_prot); | |
1567 | pmd = pmd_mkyoung(pmd); | |
6a56ccbc | 1568 | if (writable) |
161e393c | 1569 | pmd = pmd_mkwrite(pmd, vma); |
c5b5a3dd YS |
1570 | set_pmd_at(vma->vm_mm, haddr, vmf->pmd, pmd); |
1571 | update_mmu_cache_pmd(vma, vmf->address, vmf->pmd); | |
1572 | spin_unlock(vmf->ptl); | |
1573 | goto out; | |
d10e63f2 MG |
1574 | } |
1575 | ||
319904ad YH |
1576 | /* |
1577 | * Return true if we do MADV_FREE successfully on entire pmd page. | |
1578 | * Otherwise, return false. | |
1579 | */ | |
1580 | bool madvise_free_huge_pmd(struct mmu_gather *tlb, struct vm_area_struct *vma, | |
b8d3c4c3 | 1581 | pmd_t *pmd, unsigned long addr, unsigned long next) |
b8d3c4c3 MK |
1582 | { |
1583 | spinlock_t *ptl; | |
1584 | pmd_t orig_pmd; | |
fc986a38 | 1585 | struct folio *folio; |
b8d3c4c3 | 1586 | struct mm_struct *mm = tlb->mm; |
319904ad | 1587 | bool ret = false; |
b8d3c4c3 | 1588 | |
ed6a7935 | 1589 | tlb_change_page_size(tlb, HPAGE_PMD_SIZE); |
07e32661 | 1590 | |
b6ec57f4 KS |
1591 | ptl = pmd_trans_huge_lock(pmd, vma); |
1592 | if (!ptl) | |
25eedabe | 1593 | goto out_unlocked; |
b8d3c4c3 MK |
1594 | |
1595 | orig_pmd = *pmd; | |
319904ad | 1596 | if (is_huge_zero_pmd(orig_pmd)) |
b8d3c4c3 | 1597 | goto out; |
b8d3c4c3 | 1598 | |
84c3fc4e ZY |
1599 | if (unlikely(!pmd_present(orig_pmd))) { |
1600 | VM_BUG_ON(thp_migration_supported() && | |
1601 | !is_pmd_migration_entry(orig_pmd)); | |
1602 | goto out; | |
1603 | } | |
1604 | ||
fc986a38 | 1605 | folio = pfn_folio(pmd_pfn(orig_pmd)); |
b8d3c4c3 | 1606 | /* |
fc986a38 KW |
1607 | * If other processes are mapping this folio, we couldn't discard |
1608 | * the folio unless they all do MADV_FREE so let's skip the folio. | |
b8d3c4c3 | 1609 | */ |
20b18aad | 1610 | if (folio_estimated_sharers(folio) != 1) |
b8d3c4c3 MK |
1611 | goto out; |
1612 | ||
fc986a38 | 1613 | if (!folio_trylock(folio)) |
b8d3c4c3 MK |
1614 | goto out; |
1615 | ||
1616 | /* | |
1617 | * If user want to discard part-pages of THP, split it so MADV_FREE | |
1618 | * will deactivate only them. | |
1619 | */ | |
1620 | if (next - addr != HPAGE_PMD_SIZE) { | |
fc986a38 | 1621 | folio_get(folio); |
b8d3c4c3 | 1622 | spin_unlock(ptl); |
fc986a38 KW |
1623 | split_folio(folio); |
1624 | folio_unlock(folio); | |
1625 | folio_put(folio); | |
b8d3c4c3 MK |
1626 | goto out_unlocked; |
1627 | } | |
1628 | ||
fc986a38 KW |
1629 | if (folio_test_dirty(folio)) |
1630 | folio_clear_dirty(folio); | |
1631 | folio_unlock(folio); | |
b8d3c4c3 | 1632 | |
b8d3c4c3 | 1633 | if (pmd_young(orig_pmd) || pmd_dirty(orig_pmd)) { |
58ceeb6b | 1634 | pmdp_invalidate(vma, addr, pmd); |
b8d3c4c3 MK |
1635 | orig_pmd = pmd_mkold(orig_pmd); |
1636 | orig_pmd = pmd_mkclean(orig_pmd); | |
1637 | ||
1638 | set_pmd_at(mm, addr, pmd, orig_pmd); | |
1639 | tlb_remove_pmd_tlb_entry(tlb, pmd, addr); | |
1640 | } | |
802a3a92 | 1641 | |
6a6fe9eb | 1642 | folio_mark_lazyfree(folio); |
319904ad | 1643 | ret = true; |
b8d3c4c3 MK |
1644 | out: |
1645 | spin_unlock(ptl); | |
1646 | out_unlocked: | |
1647 | return ret; | |
1648 | } | |
1649 | ||
953c66c2 AK |
1650 | static inline void zap_deposited_table(struct mm_struct *mm, pmd_t *pmd) |
1651 | { | |
1652 | pgtable_t pgtable; | |
1653 | ||
1654 | pgtable = pgtable_trans_huge_withdraw(mm, pmd); | |
1655 | pte_free(mm, pgtable); | |
c4812909 | 1656 | mm_dec_nr_ptes(mm); |
953c66c2 AK |
1657 | } |
1658 | ||
71e3aac0 | 1659 | int zap_huge_pmd(struct mmu_gather *tlb, struct vm_area_struct *vma, |
f21760b1 | 1660 | pmd_t *pmd, unsigned long addr) |
71e3aac0 | 1661 | { |
da146769 | 1662 | pmd_t orig_pmd; |
bf929152 | 1663 | spinlock_t *ptl; |
71e3aac0 | 1664 | |
ed6a7935 | 1665 | tlb_change_page_size(tlb, HPAGE_PMD_SIZE); |
07e32661 | 1666 | |
b6ec57f4 KS |
1667 | ptl = __pmd_trans_huge_lock(pmd, vma); |
1668 | if (!ptl) | |
da146769 KS |
1669 | return 0; |
1670 | /* | |
1671 | * For architectures like ppc64 we look at deposited pgtable | |
1672 | * when calling pmdp_huge_get_and_clear. So do the | |
1673 | * pgtable_trans_huge_withdraw after finishing pmdp related | |
1674 | * operations. | |
1675 | */ | |
93a98695 AK |
1676 | orig_pmd = pmdp_huge_get_and_clear_full(vma, addr, pmd, |
1677 | tlb->fullmm); | |
e5136e87 | 1678 | arch_check_zapped_pmd(vma, orig_pmd); |
da146769 | 1679 | tlb_remove_pmd_tlb_entry(tlb, pmd, addr); |
2484ca9b | 1680 | if (vma_is_special_huge(vma)) { |
3b6521f5 OH |
1681 | if (arch_needs_pgtable_deposit()) |
1682 | zap_deposited_table(tlb->mm, pmd); | |
da146769 | 1683 | spin_unlock(ptl); |
da146769 | 1684 | } else if (is_huge_zero_pmd(orig_pmd)) { |
c14a6eb4 | 1685 | zap_deposited_table(tlb->mm, pmd); |
da146769 | 1686 | spin_unlock(ptl); |
da146769 | 1687 | } else { |
616b8371 ZY |
1688 | struct page *page = NULL; |
1689 | int flush_needed = 1; | |
1690 | ||
1691 | if (pmd_present(orig_pmd)) { | |
1692 | page = pmd_page(orig_pmd); | |
cea86fe2 | 1693 | page_remove_rmap(page, vma, true); |
616b8371 ZY |
1694 | VM_BUG_ON_PAGE(page_mapcount(page) < 0, page); |
1695 | VM_BUG_ON_PAGE(!PageHead(page), page); | |
1696 | } else if (thp_migration_supported()) { | |
1697 | swp_entry_t entry; | |
1698 | ||
1699 | VM_BUG_ON(!is_pmd_migration_entry(orig_pmd)); | |
1700 | entry = pmd_to_swp_entry(orig_pmd); | |
af5cdaf8 | 1701 | page = pfn_swap_entry_to_page(entry); |
616b8371 ZY |
1702 | flush_needed = 0; |
1703 | } else | |
1704 | WARN_ONCE(1, "Non present huge pmd without pmd migration enabled!"); | |
1705 | ||
b5072380 | 1706 | if (PageAnon(page)) { |
c14a6eb4 | 1707 | zap_deposited_table(tlb->mm, pmd); |
b5072380 KS |
1708 | add_mm_counter(tlb->mm, MM_ANONPAGES, -HPAGE_PMD_NR); |
1709 | } else { | |
953c66c2 AK |
1710 | if (arch_needs_pgtable_deposit()) |
1711 | zap_deposited_table(tlb->mm, pmd); | |
fadae295 | 1712 | add_mm_counter(tlb->mm, mm_counter_file(page), -HPAGE_PMD_NR); |
b5072380 | 1713 | } |
616b8371 | 1714 | |
da146769 | 1715 | spin_unlock(ptl); |
616b8371 ZY |
1716 | if (flush_needed) |
1717 | tlb_remove_page_size(tlb, page, HPAGE_PMD_SIZE); | |
025c5b24 | 1718 | } |
da146769 | 1719 | return 1; |
71e3aac0 AA |
1720 | } |
1721 | ||
1dd38b6c AK |
1722 | #ifndef pmd_move_must_withdraw |
1723 | static inline int pmd_move_must_withdraw(spinlock_t *new_pmd_ptl, | |
1724 | spinlock_t *old_pmd_ptl, | |
1725 | struct vm_area_struct *vma) | |
1726 | { | |
1727 | /* | |
1728 | * With split pmd lock we also need to move preallocated | |
1729 | * PTE page table if new_pmd is on different PMD page table. | |
1730 | * | |
1731 | * We also don't deposit and withdraw tables for file pages. | |
1732 | */ | |
1733 | return (new_pmd_ptl != old_pmd_ptl) && vma_is_anonymous(vma); | |
1734 | } | |
1735 | #endif | |
1736 | ||
ab6e3d09 NH |
1737 | static pmd_t move_soft_dirty_pmd(pmd_t pmd) |
1738 | { | |
1739 | #ifdef CONFIG_MEM_SOFT_DIRTY | |
1740 | if (unlikely(is_pmd_migration_entry(pmd))) | |
1741 | pmd = pmd_swp_mksoft_dirty(pmd); | |
1742 | else if (pmd_present(pmd)) | |
1743 | pmd = pmd_mksoft_dirty(pmd); | |
1744 | #endif | |
1745 | return pmd; | |
1746 | } | |
1747 | ||
bf8616d5 | 1748 | bool move_huge_pmd(struct vm_area_struct *vma, unsigned long old_addr, |
b8aa9d9d | 1749 | unsigned long new_addr, pmd_t *old_pmd, pmd_t *new_pmd) |
37a1c49a | 1750 | { |
bf929152 | 1751 | spinlock_t *old_ptl, *new_ptl; |
37a1c49a | 1752 | pmd_t pmd; |
37a1c49a | 1753 | struct mm_struct *mm = vma->vm_mm; |
5d190420 | 1754 | bool force_flush = false; |
37a1c49a | 1755 | |
37a1c49a AA |
1756 | /* |
1757 | * The destination pmd shouldn't be established, free_pgtables() | |
a5be621e HD |
1758 | * should have released it; but move_page_tables() might have already |
1759 | * inserted a page table, if racing against shmem/file collapse. | |
37a1c49a | 1760 | */ |
a5be621e | 1761 | if (!pmd_none(*new_pmd)) { |
37a1c49a | 1762 | VM_BUG_ON(pmd_trans_huge(*new_pmd)); |
4b471e88 | 1763 | return false; |
37a1c49a AA |
1764 | } |
1765 | ||
bf929152 KS |
1766 | /* |
1767 | * We don't have to worry about the ordering of src and dst | |
c1e8d7c6 | 1768 | * ptlocks because exclusive mmap_lock prevents deadlock. |
bf929152 | 1769 | */ |
b6ec57f4 KS |
1770 | old_ptl = __pmd_trans_huge_lock(old_pmd, vma); |
1771 | if (old_ptl) { | |
bf929152 KS |
1772 | new_ptl = pmd_lockptr(mm, new_pmd); |
1773 | if (new_ptl != old_ptl) | |
1774 | spin_lock_nested(new_ptl, SINGLE_DEPTH_NESTING); | |
8809aa2d | 1775 | pmd = pmdp_huge_get_and_clear(mm, old_addr, old_pmd); |
eb66ae03 | 1776 | if (pmd_present(pmd)) |
a2ce2666 | 1777 | force_flush = true; |
025c5b24 | 1778 | VM_BUG_ON(!pmd_none(*new_pmd)); |
3592806c | 1779 | |
1dd38b6c | 1780 | if (pmd_move_must_withdraw(new_ptl, old_ptl, vma)) { |
b3084f4d | 1781 | pgtable_t pgtable; |
3592806c KS |
1782 | pgtable = pgtable_trans_huge_withdraw(mm, old_pmd); |
1783 | pgtable_trans_huge_deposit(mm, new_pmd, pgtable); | |
3592806c | 1784 | } |
ab6e3d09 NH |
1785 | pmd = move_soft_dirty_pmd(pmd); |
1786 | set_pmd_at(mm, new_addr, new_pmd, pmd); | |
5d190420 | 1787 | if (force_flush) |
7c38f181 | 1788 | flush_pmd_tlb_range(vma, old_addr, old_addr + PMD_SIZE); |
eb66ae03 LT |
1789 | if (new_ptl != old_ptl) |
1790 | spin_unlock(new_ptl); | |
bf929152 | 1791 | spin_unlock(old_ptl); |
4b471e88 | 1792 | return true; |
37a1c49a | 1793 | } |
4b471e88 | 1794 | return false; |
37a1c49a AA |
1795 | } |
1796 | ||
f123d74a MG |
1797 | /* |
1798 | * Returns | |
1799 | * - 0 if PMD could not be locked | |
f0953a1b | 1800 | * - 1 if PMD was locked but protections unchanged and TLB flush unnecessary |
e346e668 | 1801 | * or if prot_numa but THP migration is not supported |
f0953a1b | 1802 | * - HPAGE_PMD_NR if protections changed and TLB flush necessary |
f123d74a | 1803 | */ |
4a18419f NA |
1804 | int change_huge_pmd(struct mmu_gather *tlb, struct vm_area_struct *vma, |
1805 | pmd_t *pmd, unsigned long addr, pgprot_t newprot, | |
1806 | unsigned long cp_flags) | |
cd7548ab JW |
1807 | { |
1808 | struct mm_struct *mm = vma->vm_mm; | |
bf929152 | 1809 | spinlock_t *ptl; |
c9fe6656 | 1810 | pmd_t oldpmd, entry; |
58705444 | 1811 | bool prot_numa = cp_flags & MM_CP_PROT_NUMA; |
292924b2 PX |
1812 | bool uffd_wp = cp_flags & MM_CP_UFFD_WP; |
1813 | bool uffd_wp_resolve = cp_flags & MM_CP_UFFD_WP_RESOLVE; | |
6a56ccbc | 1814 | int ret = 1; |
cd7548ab | 1815 | |
4a18419f NA |
1816 | tlb_change_page_size(tlb, HPAGE_PMD_SIZE); |
1817 | ||
e346e668 YS |
1818 | if (prot_numa && !thp_migration_supported()) |
1819 | return 1; | |
1820 | ||
b6ec57f4 | 1821 | ptl = __pmd_trans_huge_lock(pmd, vma); |
0a85e51d KS |
1822 | if (!ptl) |
1823 | return 0; | |
e944fd67 | 1824 | |
84c3fc4e ZY |
1825 | #ifdef CONFIG_ARCH_ENABLE_THP_MIGRATION |
1826 | if (is_swap_pmd(*pmd)) { | |
1827 | swp_entry_t entry = pmd_to_swp_entry(*pmd); | |
6c287605 | 1828 | struct page *page = pfn_swap_entry_to_page(entry); |
24bf08c4 | 1829 | pmd_t newpmd; |
84c3fc4e ZY |
1830 | |
1831 | VM_BUG_ON(!is_pmd_migration_entry(*pmd)); | |
4dd845b5 | 1832 | if (is_writable_migration_entry(entry)) { |
84c3fc4e ZY |
1833 | /* |
1834 | * A protection check is difficult so | |
1835 | * just be safe and disable write | |
1836 | */ | |
6c287605 DH |
1837 | if (PageAnon(page)) |
1838 | entry = make_readable_exclusive_migration_entry(swp_offset(entry)); | |
1839 | else | |
1840 | entry = make_readable_migration_entry(swp_offset(entry)); | |
84c3fc4e | 1841 | newpmd = swp_entry_to_pmd(entry); |
ab6e3d09 NH |
1842 | if (pmd_swp_soft_dirty(*pmd)) |
1843 | newpmd = pmd_swp_mksoft_dirty(newpmd); | |
24bf08c4 DH |
1844 | } else { |
1845 | newpmd = *pmd; | |
84c3fc4e | 1846 | } |
24bf08c4 DH |
1847 | |
1848 | if (uffd_wp) | |
1849 | newpmd = pmd_swp_mkuffd_wp(newpmd); | |
1850 | else if (uffd_wp_resolve) | |
1851 | newpmd = pmd_swp_clear_uffd_wp(newpmd); | |
1852 | if (!pmd_same(*pmd, newpmd)) | |
1853 | set_pmd_at(mm, addr, pmd, newpmd); | |
84c3fc4e ZY |
1854 | goto unlock; |
1855 | } | |
1856 | #endif | |
1857 | ||
a1a3a2fc YH |
1858 | if (prot_numa) { |
1859 | struct page *page; | |
33024536 | 1860 | bool toptier; |
a1a3a2fc YH |
1861 | /* |
1862 | * Avoid trapping faults against the zero page. The read-only | |
1863 | * data is likely to be read-cached on the local CPU and | |
1864 | * local/remote hits to the zero page are not interesting. | |
1865 | */ | |
1866 | if (is_huge_zero_pmd(*pmd)) | |
1867 | goto unlock; | |
025c5b24 | 1868 | |
a1a3a2fc YH |
1869 | if (pmd_protnone(*pmd)) |
1870 | goto unlock; | |
0a85e51d | 1871 | |
a1a3a2fc | 1872 | page = pmd_page(*pmd); |
33024536 | 1873 | toptier = node_is_toptier(page_to_nid(page)); |
a1a3a2fc YH |
1874 | /* |
1875 | * Skip scanning top tier node if normal numa | |
1876 | * balancing is disabled | |
1877 | */ | |
1878 | if (!(sysctl_numa_balancing_mode & NUMA_BALANCING_NORMAL) && | |
33024536 | 1879 | toptier) |
a1a3a2fc | 1880 | goto unlock; |
33024536 YH |
1881 | |
1882 | if (sysctl_numa_balancing_mode & NUMA_BALANCING_MEMORY_TIERING && | |
1883 | !toptier) | |
1884 | xchg_page_access_time(page, jiffies_to_msecs(jiffies)); | |
a1a3a2fc | 1885 | } |
ced10803 | 1886 | /* |
3e4e28c5 | 1887 | * In case prot_numa, we are under mmap_read_lock(mm). It's critical |
ced10803 | 1888 | * to not clear pmd intermittently to avoid race with MADV_DONTNEED |
3e4e28c5 | 1889 | * which is also under mmap_read_lock(mm): |
ced10803 KS |
1890 | * |
1891 | * CPU0: CPU1: | |
1892 | * change_huge_pmd(prot_numa=1) | |
1893 | * pmdp_huge_get_and_clear_notify() | |
1894 | * madvise_dontneed() | |
1895 | * zap_pmd_range() | |
1896 | * pmd_trans_huge(*pmd) == 0 (without ptl) | |
1897 | * // skip the pmd | |
1898 | * set_pmd_at(); | |
1899 | * // pmd is re-established | |
1900 | * | |
1901 | * The race makes MADV_DONTNEED miss the huge pmd and don't clear it | |
1902 | * which may break userspace. | |
1903 | * | |
4f831457 | 1904 | * pmdp_invalidate_ad() is required to make sure we don't miss |
ced10803 KS |
1905 | * dirty/young flags set by hardware. |
1906 | */ | |
4f831457 | 1907 | oldpmd = pmdp_invalidate_ad(vma, addr, pmd); |
ced10803 | 1908 | |
c9fe6656 | 1909 | entry = pmd_modify(oldpmd, newprot); |
f1eb1bac | 1910 | if (uffd_wp) |
292924b2 | 1911 | entry = pmd_mkuffd_wp(entry); |
f1eb1bac | 1912 | else if (uffd_wp_resolve) |
292924b2 PX |
1913 | /* |
1914 | * Leave the write bit to be handled by PF interrupt | |
1915 | * handler, then things like COW could be properly | |
1916 | * handled. | |
1917 | */ | |
1918 | entry = pmd_clear_uffd_wp(entry); | |
c27f479e DH |
1919 | |
1920 | /* See change_pte_range(). */ | |
1921 | if ((cp_flags & MM_CP_TRY_CHANGE_WRITABLE) && !pmd_write(entry) && | |
1922 | can_change_pmd_writable(vma, addr, entry)) | |
161e393c | 1923 | entry = pmd_mkwrite(entry, vma); |
c27f479e | 1924 | |
0a85e51d KS |
1925 | ret = HPAGE_PMD_NR; |
1926 | set_pmd_at(mm, addr, pmd, entry); | |
4a18419f | 1927 | |
c9fe6656 NA |
1928 | if (huge_pmd_needs_flush(oldpmd, entry)) |
1929 | tlb_flush_pmd_range(tlb, addr, HPAGE_PMD_SIZE); | |
0a85e51d KS |
1930 | unlock: |
1931 | spin_unlock(ptl); | |
025c5b24 NH |
1932 | return ret; |
1933 | } | |
1934 | ||
1935 | /* | |
8f19b0c0 | 1936 | * Returns page table lock pointer if a given pmd maps a thp, NULL otherwise. |
025c5b24 | 1937 | * |
8f19b0c0 YH |
1938 | * Note that if it returns page table lock pointer, this routine returns without |
1939 | * unlocking page table lock. So callers must unlock it. | |
025c5b24 | 1940 | */ |
b6ec57f4 | 1941 | spinlock_t *__pmd_trans_huge_lock(pmd_t *pmd, struct vm_area_struct *vma) |
025c5b24 | 1942 | { |
b6ec57f4 KS |
1943 | spinlock_t *ptl; |
1944 | ptl = pmd_lock(vma->vm_mm, pmd); | |
84c3fc4e ZY |
1945 | if (likely(is_swap_pmd(*pmd) || pmd_trans_huge(*pmd) || |
1946 | pmd_devmap(*pmd))) | |
b6ec57f4 KS |
1947 | return ptl; |
1948 | spin_unlock(ptl); | |
1949 | return NULL; | |
cd7548ab JW |
1950 | } |
1951 | ||
a00cc7d9 | 1952 | /* |
d965e390 | 1953 | * Returns page table lock pointer if a given pud maps a thp, NULL otherwise. |
a00cc7d9 | 1954 | * |
d965e390 ML |
1955 | * Note that if it returns page table lock pointer, this routine returns without |
1956 | * unlocking page table lock. So callers must unlock it. | |
a00cc7d9 MW |
1957 | */ |
1958 | spinlock_t *__pud_trans_huge_lock(pud_t *pud, struct vm_area_struct *vma) | |
1959 | { | |
1960 | spinlock_t *ptl; | |
1961 | ||
1962 | ptl = pud_lock(vma->vm_mm, pud); | |
1963 | if (likely(pud_trans_huge(*pud) || pud_devmap(*pud))) | |
1964 | return ptl; | |
1965 | spin_unlock(ptl); | |
1966 | return NULL; | |
1967 | } | |
1968 | ||
1969 | #ifdef CONFIG_HAVE_ARCH_TRANSPARENT_HUGEPAGE_PUD | |
1970 | int zap_huge_pud(struct mmu_gather *tlb, struct vm_area_struct *vma, | |
1971 | pud_t *pud, unsigned long addr) | |
1972 | { | |
a00cc7d9 MW |
1973 | spinlock_t *ptl; |
1974 | ||
1975 | ptl = __pud_trans_huge_lock(pud, vma); | |
1976 | if (!ptl) | |
1977 | return 0; | |
74929079 | 1978 | |
f32928ab | 1979 | pudp_huge_get_and_clear_full(vma, addr, pud, tlb->fullmm); |
a00cc7d9 | 1980 | tlb_remove_pud_tlb_entry(tlb, pud, addr); |
2484ca9b | 1981 | if (vma_is_special_huge(vma)) { |
a00cc7d9 MW |
1982 | spin_unlock(ptl); |
1983 | /* No zero page support yet */ | |
1984 | } else { | |
1985 | /* No support for anonymous PUD pages yet */ | |
1986 | BUG(); | |
1987 | } | |
1988 | return 1; | |
1989 | } | |
1990 | ||
1991 | static void __split_huge_pud_locked(struct vm_area_struct *vma, pud_t *pud, | |
1992 | unsigned long haddr) | |
1993 | { | |
1994 | VM_BUG_ON(haddr & ~HPAGE_PUD_MASK); | |
1995 | VM_BUG_ON_VMA(vma->vm_start > haddr, vma); | |
1996 | VM_BUG_ON_VMA(vma->vm_end < haddr + HPAGE_PUD_SIZE, vma); | |
1997 | VM_BUG_ON(!pud_trans_huge(*pud) && !pud_devmap(*pud)); | |
1998 | ||
ce9311cf | 1999 | count_vm_event(THP_SPLIT_PUD); |
a00cc7d9 | 2000 | |
ec8832d0 | 2001 | pudp_huge_clear_flush(vma, haddr, pud); |
a00cc7d9 MW |
2002 | } |
2003 | ||
2004 | void __split_huge_pud(struct vm_area_struct *vma, pud_t *pud, | |
2005 | unsigned long address) | |
2006 | { | |
2007 | spinlock_t *ptl; | |
ac46d4f3 | 2008 | struct mmu_notifier_range range; |
a00cc7d9 | 2009 | |
7d4a8be0 | 2010 | mmu_notifier_range_init(&range, MMU_NOTIFY_CLEAR, 0, vma->vm_mm, |
6f4f13e8 | 2011 | address & HPAGE_PUD_MASK, |
ac46d4f3 JG |
2012 | (address & HPAGE_PUD_MASK) + HPAGE_PUD_SIZE); |
2013 | mmu_notifier_invalidate_range_start(&range); | |
2014 | ptl = pud_lock(vma->vm_mm, pud); | |
a00cc7d9 MW |
2015 | if (unlikely(!pud_trans_huge(*pud) && !pud_devmap(*pud))) |
2016 | goto out; | |
ac46d4f3 | 2017 | __split_huge_pud_locked(vma, pud, range.start); |
a00cc7d9 MW |
2018 | |
2019 | out: | |
2020 | spin_unlock(ptl); | |
ec8832d0 | 2021 | mmu_notifier_invalidate_range_end(&range); |
a00cc7d9 MW |
2022 | } |
2023 | #endif /* CONFIG_HAVE_ARCH_TRANSPARENT_HUGEPAGE_PUD */ | |
2024 | ||
eef1b3ba KS |
2025 | static void __split_huge_zero_page_pmd(struct vm_area_struct *vma, |
2026 | unsigned long haddr, pmd_t *pmd) | |
2027 | { | |
2028 | struct mm_struct *mm = vma->vm_mm; | |
2029 | pgtable_t pgtable; | |
42b2af2c | 2030 | pmd_t _pmd, old_pmd; |
c9c1ee20 HD |
2031 | unsigned long addr; |
2032 | pte_t *pte; | |
eef1b3ba KS |
2033 | int i; |
2034 | ||
0f10851e JG |
2035 | /* |
2036 | * Leave pmd empty until pte is filled note that it is fine to delay | |
2037 | * notification until mmu_notifier_invalidate_range_end() as we are | |
2038 | * replacing a zero pmd write protected page with a zero pte write | |
2039 | * protected page. | |
2040 | * | |
ee65728e | 2041 | * See Documentation/mm/mmu_notifier.rst |
0f10851e | 2042 | */ |
42b2af2c | 2043 | old_pmd = pmdp_huge_clear_flush(vma, haddr, pmd); |
eef1b3ba KS |
2044 | |
2045 | pgtable = pgtable_trans_huge_withdraw(mm, pmd); | |
2046 | pmd_populate(mm, &_pmd, pgtable); | |
2047 | ||
c9c1ee20 HD |
2048 | pte = pte_offset_map(&_pmd, haddr); |
2049 | VM_BUG_ON(!pte); | |
2050 | for (i = 0, addr = haddr; i < HPAGE_PMD_NR; i++, addr += PAGE_SIZE) { | |
2051 | pte_t entry; | |
2052 | ||
2053 | entry = pfn_pte(my_zero_pfn(addr), vma->vm_page_prot); | |
eef1b3ba | 2054 | entry = pte_mkspecial(entry); |
42b2af2c DH |
2055 | if (pmd_uffd_wp(old_pmd)) |
2056 | entry = pte_mkuffd_wp(entry); | |
c33c7948 | 2057 | VM_BUG_ON(!pte_none(ptep_get(pte))); |
c9c1ee20 HD |
2058 | set_pte_at(mm, addr, pte, entry); |
2059 | pte++; | |
eef1b3ba | 2060 | } |
c9c1ee20 | 2061 | pte_unmap(pte - 1); |
eef1b3ba KS |
2062 | smp_wmb(); /* make pte visible before pmd */ |
2063 | pmd_populate(mm, pmd, pgtable); | |
eef1b3ba KS |
2064 | } |
2065 | ||
2066 | static void __split_huge_pmd_locked(struct vm_area_struct *vma, pmd_t *pmd, | |
ba988280 | 2067 | unsigned long haddr, bool freeze) |
eef1b3ba KS |
2068 | { |
2069 | struct mm_struct *mm = vma->vm_mm; | |
2070 | struct page *page; | |
2071 | pgtable_t pgtable; | |
423ac9af | 2072 | pmd_t old_pmd, _pmd; |
292924b2 | 2073 | bool young, write, soft_dirty, pmd_migration = false, uffd_wp = false; |
0ccf7f16 | 2074 | bool anon_exclusive = false, dirty = false; |
2ac015e2 | 2075 | unsigned long addr; |
c9c1ee20 | 2076 | pte_t *pte; |
eef1b3ba KS |
2077 | int i; |
2078 | ||
2079 | VM_BUG_ON(haddr & ~HPAGE_PMD_MASK); | |
2080 | VM_BUG_ON_VMA(vma->vm_start > haddr, vma); | |
2081 | VM_BUG_ON_VMA(vma->vm_end < haddr + HPAGE_PMD_SIZE, vma); | |
84c3fc4e ZY |
2082 | VM_BUG_ON(!is_pmd_migration_entry(*pmd) && !pmd_trans_huge(*pmd) |
2083 | && !pmd_devmap(*pmd)); | |
eef1b3ba KS |
2084 | |
2085 | count_vm_event(THP_SPLIT_PMD); | |
2086 | ||
d21b9e57 | 2087 | if (!vma_is_anonymous(vma)) { |
ec8832d0 | 2088 | old_pmd = pmdp_huge_clear_flush(vma, haddr, pmd); |
953c66c2 AK |
2089 | /* |
2090 | * We are going to unmap this huge page. So | |
2091 | * just go ahead and zap it | |
2092 | */ | |
2093 | if (arch_needs_pgtable_deposit()) | |
2094 | zap_deposited_table(mm, pmd); | |
2484ca9b | 2095 | if (vma_is_special_huge(vma)) |
d21b9e57 | 2096 | return; |
99fa8a48 HD |
2097 | if (unlikely(is_pmd_migration_entry(old_pmd))) { |
2098 | swp_entry_t entry; | |
2099 | ||
2100 | entry = pmd_to_swp_entry(old_pmd); | |
af5cdaf8 | 2101 | page = pfn_swap_entry_to_page(entry); |
99fa8a48 HD |
2102 | } else { |
2103 | page = pmd_page(old_pmd); | |
2104 | if (!PageDirty(page) && pmd_dirty(old_pmd)) | |
2105 | set_page_dirty(page); | |
2106 | if (!PageReferenced(page) && pmd_young(old_pmd)) | |
2107 | SetPageReferenced(page); | |
cea86fe2 | 2108 | page_remove_rmap(page, vma, true); |
99fa8a48 HD |
2109 | put_page(page); |
2110 | } | |
fadae295 | 2111 | add_mm_counter(mm, mm_counter_file(page), -HPAGE_PMD_NR); |
eef1b3ba | 2112 | return; |
99fa8a48 HD |
2113 | } |
2114 | ||
3b77e8c8 | 2115 | if (is_huge_zero_pmd(*pmd)) { |
4645b9fe JG |
2116 | /* |
2117 | * FIXME: Do we want to invalidate secondary mmu by calling | |
1af5a810 AP |
2118 | * mmu_notifier_arch_invalidate_secondary_tlbs() see comments below |
2119 | * inside __split_huge_pmd() ? | |
4645b9fe JG |
2120 | * |
2121 | * We are going from a zero huge page write protected to zero | |
2122 | * small page also write protected so it does not seems useful | |
2123 | * to invalidate secondary mmu at this time. | |
2124 | */ | |
eef1b3ba KS |
2125 | return __split_huge_zero_page_pmd(vma, haddr, pmd); |
2126 | } | |
2127 | ||
423ac9af AK |
2128 | /* |
2129 | * Up to this point the pmd is present and huge and userland has the | |
2130 | * whole access to the hugepage during the split (which happens in | |
2131 | * place). If we overwrite the pmd with the not-huge version pointing | |
2132 | * to the pte here (which of course we could if all CPUs were bug | |
2133 | * free), userland could trigger a small page size TLB miss on the | |
2134 | * small sized TLB while the hugepage TLB entry is still established in | |
2135 | * the huge TLB. Some CPU doesn't like that. | |
42742d9b AK |
2136 | * See http://support.amd.com/TechDocs/41322_10h_Rev_Gd.pdf, Erratum |
2137 | * 383 on page 105. Intel should be safe but is also warns that it's | |
423ac9af AK |
2138 | * only safe if the permission and cache attributes of the two entries |
2139 | * loaded in the two TLB is identical (which should be the case here). | |
2140 | * But it is generally safer to never allow small and huge TLB entries | |
2141 | * for the same virtual address to be loaded simultaneously. So instead | |
2142 | * of doing "pmd_populate(); flush_pmd_tlb_range();" we first mark the | |
2143 | * current pmd notpresent (atomically because here the pmd_trans_huge | |
2144 | * must remain set at all times on the pmd until the split is complete | |
2145 | * for this pmd), then we flush the SMP TLB and finally we write the | |
2146 | * non-huge version of the pmd entry with pmd_populate. | |
2147 | */ | |
2148 | old_pmd = pmdp_invalidate(vma, haddr, pmd); | |
2149 | ||
423ac9af | 2150 | pmd_migration = is_pmd_migration_entry(old_pmd); |
2e83ee1d | 2151 | if (unlikely(pmd_migration)) { |
84c3fc4e ZY |
2152 | swp_entry_t entry; |
2153 | ||
423ac9af | 2154 | entry = pmd_to_swp_entry(old_pmd); |
af5cdaf8 | 2155 | page = pfn_swap_entry_to_page(entry); |
4dd845b5 | 2156 | write = is_writable_migration_entry(entry); |
6c287605 DH |
2157 | if (PageAnon(page)) |
2158 | anon_exclusive = is_readable_exclusive_migration_entry(entry); | |
2e346877 PX |
2159 | young = is_migration_entry_young(entry); |
2160 | dirty = is_migration_entry_dirty(entry); | |
2e83ee1d | 2161 | soft_dirty = pmd_swp_soft_dirty(old_pmd); |
f45ec5ff | 2162 | uffd_wp = pmd_swp_uffd_wp(old_pmd); |
2e83ee1d | 2163 | } else { |
423ac9af | 2164 | page = pmd_page(old_pmd); |
0ccf7f16 PX |
2165 | if (pmd_dirty(old_pmd)) { |
2166 | dirty = true; | |
2e83ee1d | 2167 | SetPageDirty(page); |
0ccf7f16 | 2168 | } |
2e83ee1d PX |
2169 | write = pmd_write(old_pmd); |
2170 | young = pmd_young(old_pmd); | |
2171 | soft_dirty = pmd_soft_dirty(old_pmd); | |
292924b2 | 2172 | uffd_wp = pmd_uffd_wp(old_pmd); |
6c287605 | 2173 | |
9d84604b | 2174 | VM_BUG_ON_PAGE(!page_count(page), page); |
6c287605 DH |
2175 | |
2176 | /* | |
2177 | * Without "freeze", we'll simply split the PMD, propagating the | |
2178 | * PageAnonExclusive() flag for each PTE by setting it for | |
2179 | * each subpage -- no need to (temporarily) clear. | |
2180 | * | |
2181 | * With "freeze" we want to replace mapped pages by | |
2182 | * migration entries right away. This is only possible if we | |
2183 | * managed to clear PageAnonExclusive() -- see | |
2184 | * set_pmd_migration_entry(). | |
2185 | * | |
2186 | * In case we cannot clear PageAnonExclusive(), split the PMD | |
2187 | * only and let try_to_migrate_one() fail later. | |
088b8aa5 DH |
2188 | * |
2189 | * See page_try_share_anon_rmap(): invalidate PMD first. | |
6c287605 DH |
2190 | */ |
2191 | anon_exclusive = PageAnon(page) && PageAnonExclusive(page); | |
2192 | if (freeze && anon_exclusive && page_try_share_anon_rmap(page)) | |
2193 | freeze = false; | |
96d82deb HD |
2194 | if (!freeze) |
2195 | page_ref_add(page, HPAGE_PMD_NR - 1); | |
2e83ee1d | 2196 | } |
eef1b3ba | 2197 | |
423ac9af AK |
2198 | /* |
2199 | * Withdraw the table only after we mark the pmd entry invalid. | |
2200 | * This's critical for some architectures (Power). | |
2201 | */ | |
eef1b3ba KS |
2202 | pgtable = pgtable_trans_huge_withdraw(mm, pmd); |
2203 | pmd_populate(mm, &_pmd, pgtable); | |
2204 | ||
c9c1ee20 HD |
2205 | pte = pte_offset_map(&_pmd, haddr); |
2206 | VM_BUG_ON(!pte); | |
2ac015e2 | 2207 | for (i = 0, addr = haddr; i < HPAGE_PMD_NR; i++, addr += PAGE_SIZE) { |
c9c1ee20 | 2208 | pte_t entry; |
eef1b3ba KS |
2209 | /* |
2210 | * Note that NUMA hinting access restrictions are not | |
2211 | * transferred to avoid any possibility of altering | |
2212 | * permissions across VMAs. | |
2213 | */ | |
84c3fc4e | 2214 | if (freeze || pmd_migration) { |
ba988280 | 2215 | swp_entry_t swp_entry; |
4dd845b5 AP |
2216 | if (write) |
2217 | swp_entry = make_writable_migration_entry( | |
2218 | page_to_pfn(page + i)); | |
6c287605 DH |
2219 | else if (anon_exclusive) |
2220 | swp_entry = make_readable_exclusive_migration_entry( | |
2221 | page_to_pfn(page + i)); | |
4dd845b5 AP |
2222 | else |
2223 | swp_entry = make_readable_migration_entry( | |
2224 | page_to_pfn(page + i)); | |
2e346877 PX |
2225 | if (young) |
2226 | swp_entry = make_migration_entry_young(swp_entry); | |
2227 | if (dirty) | |
2228 | swp_entry = make_migration_entry_dirty(swp_entry); | |
ba988280 | 2229 | entry = swp_entry_to_pte(swp_entry); |
804dd150 AA |
2230 | if (soft_dirty) |
2231 | entry = pte_swp_mksoft_dirty(entry); | |
f45ec5ff PX |
2232 | if (uffd_wp) |
2233 | entry = pte_swp_mkuffd_wp(entry); | |
ba988280 | 2234 | } else { |
6d2329f8 | 2235 | entry = mk_pte(page + i, READ_ONCE(vma->vm_page_prot)); |
1462c52e | 2236 | if (write) |
161e393c | 2237 | entry = pte_mkwrite(entry, vma); |
6c287605 DH |
2238 | if (anon_exclusive) |
2239 | SetPageAnonExclusive(page + i); | |
ba988280 KS |
2240 | if (!young) |
2241 | entry = pte_mkold(entry); | |
e833bc50 PX |
2242 | /* NOTE: this may set soft-dirty too on some archs */ |
2243 | if (dirty) | |
2244 | entry = pte_mkdirty(entry); | |
804dd150 AA |
2245 | if (soft_dirty) |
2246 | entry = pte_mksoft_dirty(entry); | |
292924b2 PX |
2247 | if (uffd_wp) |
2248 | entry = pte_mkuffd_wp(entry); | |
5ba72b4d | 2249 | page_add_anon_rmap(page + i, vma, addr, RMAP_NONE); |
ba988280 | 2250 | } |
c33c7948 | 2251 | VM_BUG_ON(!pte_none(ptep_get(pte))); |
2ac015e2 | 2252 | set_pte_at(mm, addr, pte, entry); |
c9c1ee20 | 2253 | pte++; |
eef1b3ba | 2254 | } |
c9c1ee20 | 2255 | pte_unmap(pte - 1); |
eef1b3ba | 2256 | |
cb67f428 HD |
2257 | if (!pmd_migration) |
2258 | page_remove_rmap(page, vma, true); | |
96d82deb HD |
2259 | if (freeze) |
2260 | put_page(page); | |
eef1b3ba KS |
2261 | |
2262 | smp_wmb(); /* make pte visible before pmd */ | |
2263 | pmd_populate(mm, pmd, pgtable); | |
2264 | } | |
2265 | ||
2266 | void __split_huge_pmd(struct vm_area_struct *vma, pmd_t *pmd, | |
af28a988 | 2267 | unsigned long address, bool freeze, struct folio *folio) |
eef1b3ba KS |
2268 | { |
2269 | spinlock_t *ptl; | |
ac46d4f3 | 2270 | struct mmu_notifier_range range; |
eef1b3ba | 2271 | |
7d4a8be0 | 2272 | mmu_notifier_range_init(&range, MMU_NOTIFY_CLEAR, 0, vma->vm_mm, |
6f4f13e8 | 2273 | address & HPAGE_PMD_MASK, |
ac46d4f3 JG |
2274 | (address & HPAGE_PMD_MASK) + HPAGE_PMD_SIZE); |
2275 | mmu_notifier_invalidate_range_start(&range); | |
2276 | ptl = pmd_lock(vma->vm_mm, pmd); | |
33f4751e NH |
2277 | |
2278 | /* | |
af28a988 MWO |
2279 | * If caller asks to setup a migration entry, we need a folio to check |
2280 | * pmd against. Otherwise we can end up replacing wrong folio. | |
33f4751e | 2281 | */ |
af28a988 | 2282 | VM_BUG_ON(freeze && !folio); |
83a8441f | 2283 | VM_WARN_ON_ONCE(folio && !folio_test_locked(folio)); |
33f4751e | 2284 | |
7f760917 | 2285 | if (pmd_trans_huge(*pmd) || pmd_devmap(*pmd) || |
83a8441f | 2286 | is_pmd_migration_entry(*pmd)) { |
cea33328 ML |
2287 | /* |
2288 | * It's safe to call pmd_page when folio is set because it's | |
2289 | * guaranteed that pmd is present. | |
2290 | */ | |
83a8441f MWO |
2291 | if (folio && folio != page_folio(pmd_page(*pmd))) |
2292 | goto out; | |
7f760917 | 2293 | __split_huge_pmd_locked(vma, pmd, range.start, freeze); |
83a8441f | 2294 | } |
7f760917 | 2295 | |
e90309c9 | 2296 | out: |
eef1b3ba | 2297 | spin_unlock(ptl); |
ec8832d0 | 2298 | mmu_notifier_invalidate_range_end(&range); |
eef1b3ba KS |
2299 | } |
2300 | ||
fec89c10 | 2301 | void split_huge_pmd_address(struct vm_area_struct *vma, unsigned long address, |
af28a988 | 2302 | bool freeze, struct folio *folio) |
94fcc585 | 2303 | { |
50722804 | 2304 | pmd_t *pmd = mm_find_pmd(vma->vm_mm, address); |
94fcc585 | 2305 | |
50722804 | 2306 | if (!pmd) |
f72e7dcd HD |
2307 | return; |
2308 | ||
af28a988 | 2309 | __split_huge_pmd(vma, pmd, address, freeze, folio); |
94fcc585 AA |
2310 | } |
2311 | ||
71f9e58e ML |
2312 | static inline void split_huge_pmd_if_needed(struct vm_area_struct *vma, unsigned long address) |
2313 | { | |
2314 | /* | |
2315 | * If the new address isn't hpage aligned and it could previously | |
2316 | * contain an hugepage: check if we need to split an huge pmd. | |
2317 | */ | |
2318 | if (!IS_ALIGNED(address, HPAGE_PMD_SIZE) && | |
2319 | range_in_vma(vma, ALIGN_DOWN(address, HPAGE_PMD_SIZE), | |
2320 | ALIGN(address, HPAGE_PMD_SIZE))) | |
2321 | split_huge_pmd_address(vma, address, false, NULL); | |
2322 | } | |
2323 | ||
e1b9996b | 2324 | void vma_adjust_trans_huge(struct vm_area_struct *vma, |
94fcc585 AA |
2325 | unsigned long start, |
2326 | unsigned long end, | |
2327 | long adjust_next) | |
2328 | { | |
71f9e58e ML |
2329 | /* Check if we need to split start first. */ |
2330 | split_huge_pmd_if_needed(vma, start); | |
94fcc585 | 2331 | |
71f9e58e ML |
2332 | /* Check if we need to split end next. */ |
2333 | split_huge_pmd_if_needed(vma, end); | |
94fcc585 AA |
2334 | |
2335 | /* | |
68540502 | 2336 | * If we're also updating the next vma vm_start, |
71f9e58e | 2337 | * check if we need to split it. |
94fcc585 AA |
2338 | */ |
2339 | if (adjust_next > 0) { | |
68540502 | 2340 | struct vm_area_struct *next = find_vma(vma->vm_mm, vma->vm_end); |
94fcc585 | 2341 | unsigned long nstart = next->vm_start; |
f9d86a60 | 2342 | nstart += adjust_next; |
71f9e58e | 2343 | split_huge_pmd_if_needed(next, nstart); |
94fcc585 AA |
2344 | } |
2345 | } | |
e9b61f19 | 2346 | |
684555aa | 2347 | static void unmap_folio(struct folio *folio) |
e9b61f19 | 2348 | { |
a98a2f0c AP |
2349 | enum ttu_flags ttu_flags = TTU_RMAP_LOCKED | TTU_SPLIT_HUGE_PMD | |
2350 | TTU_SYNC; | |
e9b61f19 | 2351 | |
684555aa | 2352 | VM_BUG_ON_FOLIO(!folio_test_large(folio), folio); |
e9b61f19 | 2353 | |
a98a2f0c AP |
2354 | /* |
2355 | * Anon pages need migration entries to preserve them, but file | |
2356 | * pages can simply be left unmapped, then faulted back on demand. | |
2357 | * If that is ever changed (perhaps for mlock), update remap_page(). | |
2358 | */ | |
4b8554c5 MWO |
2359 | if (folio_test_anon(folio)) |
2360 | try_to_migrate(folio, ttu_flags); | |
a98a2f0c | 2361 | else |
869f7ee6 | 2362 | try_to_unmap(folio, ttu_flags | TTU_IGNORE_MLOCK); |
e9b61f19 KS |
2363 | } |
2364 | ||
4eecb8b9 | 2365 | static void remap_page(struct folio *folio, unsigned long nr) |
e9b61f19 | 2366 | { |
4eecb8b9 | 2367 | int i = 0; |
ab02c252 | 2368 | |
684555aa | 2369 | /* If unmap_folio() uses try_to_migrate() on file, remove this check */ |
4eecb8b9 | 2370 | if (!folio_test_anon(folio)) |
ab02c252 | 2371 | return; |
4eecb8b9 MWO |
2372 | for (;;) { |
2373 | remove_migration_ptes(folio, folio, true); | |
2374 | i += folio_nr_pages(folio); | |
2375 | if (i >= nr) | |
2376 | break; | |
2377 | folio = folio_next(folio); | |
ace71a19 | 2378 | } |
e9b61f19 KS |
2379 | } |
2380 | ||
94866635 | 2381 | static void lru_add_page_tail(struct page *head, struct page *tail, |
88dcb9a3 AS |
2382 | struct lruvec *lruvec, struct list_head *list) |
2383 | { | |
94866635 AS |
2384 | VM_BUG_ON_PAGE(!PageHead(head), head); |
2385 | VM_BUG_ON_PAGE(PageCompound(tail), head); | |
2386 | VM_BUG_ON_PAGE(PageLRU(tail), head); | |
6168d0da | 2387 | lockdep_assert_held(&lruvec->lru_lock); |
88dcb9a3 | 2388 | |
6dbb5741 | 2389 | if (list) { |
88dcb9a3 | 2390 | /* page reclaim is reclaiming a huge page */ |
6dbb5741 | 2391 | VM_WARN_ON(PageLRU(head)); |
94866635 AS |
2392 | get_page(tail); |
2393 | list_add_tail(&tail->lru, list); | |
88dcb9a3 | 2394 | } else { |
6dbb5741 AS |
2395 | /* head is still on lru (and we have it frozen) */ |
2396 | VM_WARN_ON(!PageLRU(head)); | |
07ca7606 HD |
2397 | if (PageUnevictable(tail)) |
2398 | tail->mlock_count = 0; | |
2399 | else | |
2400 | list_add_tail(&tail->lru, &head->lru); | |
6dbb5741 | 2401 | SetPageLRU(tail); |
88dcb9a3 AS |
2402 | } |
2403 | } | |
2404 | ||
07e09c48 | 2405 | static void __split_huge_page_tail(struct folio *folio, int tail, |
e9b61f19 KS |
2406 | struct lruvec *lruvec, struct list_head *list) |
2407 | { | |
07e09c48 | 2408 | struct page *head = &folio->page; |
e9b61f19 | 2409 | struct page *page_tail = head + tail; |
07e09c48 DH |
2410 | /* |
2411 | * Careful: new_folio is not a "real" folio before we cleared PageTail. | |
2412 | * Don't pass it around before clear_compound_head(). | |
2413 | */ | |
2414 | struct folio *new_folio = (struct folio *)page_tail; | |
e9b61f19 | 2415 | |
8df651c7 | 2416 | VM_BUG_ON_PAGE(atomic_read(&page_tail->_mapcount) != -1, page_tail); |
e9b61f19 KS |
2417 | |
2418 | /* | |
605ca5ed KK |
2419 | * Clone page flags before unfreezing refcount. |
2420 | * | |
2421 | * After successful get_page_unless_zero() might follow flags change, | |
8958b249 | 2422 | * for example lock_page() which set PG_waiters. |
6c287605 DH |
2423 | * |
2424 | * Note that for mapped sub-pages of an anonymous THP, | |
684555aa | 2425 | * PG_anon_exclusive has been cleared in unmap_folio() and is stored in |
6c287605 DH |
2426 | * the migration entry instead from where remap_page() will restore it. |
2427 | * We can still have PG_anon_exclusive set on effectively unmapped and | |
2428 | * unreferenced sub-pages of an anonymous THP: we can simply drop | |
2429 | * PG_anon_exclusive (-> PG_mappedtodisk) for these here. | |
e9b61f19 | 2430 | */ |
e9b61f19 KS |
2431 | page_tail->flags &= ~PAGE_FLAGS_CHECK_AT_PREP; |
2432 | page_tail->flags |= (head->flags & | |
2433 | ((1L << PG_referenced) | | |
2434 | (1L << PG_swapbacked) | | |
38d8b4e6 | 2435 | (1L << PG_swapcache) | |
e9b61f19 KS |
2436 | (1L << PG_mlocked) | |
2437 | (1L << PG_uptodate) | | |
2438 | (1L << PG_active) | | |
1899ad18 | 2439 | (1L << PG_workingset) | |
e9b61f19 | 2440 | (1L << PG_locked) | |
b8d3c4c3 | 2441 | (1L << PG_unevictable) | |
b0284cd2 | 2442 | #ifdef CONFIG_ARCH_USES_PG_ARCH_X |
72e6afa0 | 2443 | (1L << PG_arch_2) | |
ef6458b1 | 2444 | (1L << PG_arch_3) | |
72e6afa0 | 2445 | #endif |
ec1c86b2 YZ |
2446 | (1L << PG_dirty) | |
2447 | LRU_GEN_MASK | LRU_REFS_MASK)); | |
e9b61f19 | 2448 | |
cb67f428 | 2449 | /* ->mapping in first and second tail page is replaced by other uses */ |
173d9d9f HD |
2450 | VM_BUG_ON_PAGE(tail > 2 && page_tail->mapping != TAIL_MAPPING, |
2451 | page_tail); | |
2452 | page_tail->mapping = head->mapping; | |
2453 | page_tail->index = head->index + tail; | |
71e2d666 MG |
2454 | |
2455 | /* | |
cfeed8ff DH |
2456 | * page->private should not be set in tail pages. Fix up and warn once |
2457 | * if private is unexpectedly set. | |
71e2d666 | 2458 | */ |
cfeed8ff DH |
2459 | if (unlikely(page_tail->private)) { |
2460 | VM_WARN_ON_ONCE_PAGE(true, page_tail); | |
71e2d666 MG |
2461 | page_tail->private = 0; |
2462 | } | |
07e09c48 DH |
2463 | if (folio_test_swapcache(folio)) |
2464 | new_folio->swap.val = folio->swap.val + tail; | |
173d9d9f | 2465 | |
605ca5ed | 2466 | /* Page flags must be visible before we make the page non-compound. */ |
e9b61f19 KS |
2467 | smp_wmb(); |
2468 | ||
605ca5ed KK |
2469 | /* |
2470 | * Clear PageTail before unfreezing page refcount. | |
2471 | * | |
2472 | * After successful get_page_unless_zero() might follow put_page() | |
2473 | * which needs correct compound_head(). | |
2474 | */ | |
e9b61f19 KS |
2475 | clear_compound_head(page_tail); |
2476 | ||
605ca5ed KK |
2477 | /* Finally unfreeze refcount. Additional reference from page cache. */ |
2478 | page_ref_unfreeze(page_tail, 1 + (!PageAnon(head) || | |
2479 | PageSwapCache(head))); | |
2480 | ||
e9b61f19 KS |
2481 | if (page_is_young(head)) |
2482 | set_page_young(page_tail); | |
2483 | if (page_is_idle(head)) | |
2484 | set_page_idle(page_tail); | |
2485 | ||
e9b61f19 | 2486 | page_cpupid_xchg_last(page_tail, page_cpupid_last(head)); |
94723aaf MH |
2487 | |
2488 | /* | |
2489 | * always add to the tail because some iterators expect new | |
2490 | * pages to show after the currently processed elements - e.g. | |
2491 | * migrate_pages | |
2492 | */ | |
e9b61f19 | 2493 | lru_add_page_tail(head, page_tail, lruvec, list); |
e9b61f19 KS |
2494 | } |
2495 | ||
baa355fd | 2496 | static void __split_huge_page(struct page *page, struct list_head *list, |
b6769834 | 2497 | pgoff_t end) |
e9b61f19 | 2498 | { |
e809c3fe MWO |
2499 | struct folio *folio = page_folio(page); |
2500 | struct page *head = &folio->page; | |
e9b61f19 | 2501 | struct lruvec *lruvec; |
4101196b MWO |
2502 | struct address_space *swap_cache = NULL; |
2503 | unsigned long offset = 0; | |
8cce5475 | 2504 | unsigned int nr = thp_nr_pages(head); |
509f0069 | 2505 | int i, nr_dropped = 0; |
e9b61f19 | 2506 | |
e9b61f19 | 2507 | /* complete memcg works before add pages to LRU */ |
be6c8982 | 2508 | split_page_memcg(head, nr); |
e9b61f19 | 2509 | |
07e09c48 DH |
2510 | if (folio_test_anon(folio) && folio_test_swapcache(folio)) { |
2511 | offset = swp_offset(folio->swap); | |
2512 | swap_cache = swap_address_space(folio->swap); | |
4101196b MWO |
2513 | xa_lock(&swap_cache->i_pages); |
2514 | } | |
2515 | ||
f0953a1b | 2516 | /* lock lru list/PageCompound, ref frozen by page_ref_freeze */ |
e809c3fe | 2517 | lruvec = folio_lruvec_lock(folio); |
b6769834 | 2518 | |
eac96c3e YS |
2519 | ClearPageHasHWPoisoned(head); |
2520 | ||
8cce5475 | 2521 | for (i = nr - 1; i >= 1; i--) { |
07e09c48 | 2522 | __split_huge_page_tail(folio, i, lruvec, list); |
d144bf62 | 2523 | /* Some pages can be beyond EOF: drop them from page cache */ |
baa355fd | 2524 | if (head[i].index >= end) { |
fb5c2029 MWO |
2525 | struct folio *tail = page_folio(head + i); |
2526 | ||
d144bf62 | 2527 | if (shmem_mapping(head->mapping)) |
509f0069 | 2528 | nr_dropped++; |
fb5c2029 MWO |
2529 | else if (folio_test_clear_dirty(tail)) |
2530 | folio_account_cleaned(tail, | |
2531 | inode_to_wb(folio->mapping->host)); | |
2532 | __filemap_remove_folio(tail, NULL); | |
2533 | folio_put(tail); | |
4101196b MWO |
2534 | } else if (!PageAnon(page)) { |
2535 | __xa_store(&head->mapping->i_pages, head[i].index, | |
2536 | head + i, 0); | |
2537 | } else if (swap_cache) { | |
2538 | __xa_store(&swap_cache->i_pages, offset + i, | |
2539 | head + i, 0); | |
baa355fd KS |
2540 | } |
2541 | } | |
e9b61f19 KS |
2542 | |
2543 | ClearPageCompound(head); | |
6168d0da | 2544 | unlock_page_lruvec(lruvec); |
b6769834 | 2545 | /* Caller disabled irqs, so they are still disabled here */ |
f7da677b | 2546 | |
8cce5475 | 2547 | split_page_owner(head, nr); |
f7da677b | 2548 | |
baa355fd KS |
2549 | /* See comment in __split_huge_page_tail() */ |
2550 | if (PageAnon(head)) { | |
aa5dc07f | 2551 | /* Additional pin to swap cache */ |
4101196b | 2552 | if (PageSwapCache(head)) { |
38d8b4e6 | 2553 | page_ref_add(head, 2); |
4101196b MWO |
2554 | xa_unlock(&swap_cache->i_pages); |
2555 | } else { | |
38d8b4e6 | 2556 | page_ref_inc(head); |
4101196b | 2557 | } |
baa355fd | 2558 | } else { |
aa5dc07f | 2559 | /* Additional pin to page cache */ |
baa355fd | 2560 | page_ref_add(head, 2); |
b93b0163 | 2561 | xa_unlock(&head->mapping->i_pages); |
baa355fd | 2562 | } |
b6769834 | 2563 | local_irq_enable(); |
e9b61f19 | 2564 | |
509f0069 HD |
2565 | if (nr_dropped) |
2566 | shmem_uncharge(head->mapping->host, nr_dropped); | |
4eecb8b9 | 2567 | remap_page(folio, nr); |
e9b61f19 | 2568 | |
07e09c48 DH |
2569 | if (folio_test_swapcache(folio)) |
2570 | split_swap_cluster(folio->swap); | |
c4f9c701 | 2571 | |
8cce5475 | 2572 | for (i = 0; i < nr; i++) { |
e9b61f19 KS |
2573 | struct page *subpage = head + i; |
2574 | if (subpage == page) | |
2575 | continue; | |
2576 | unlock_page(subpage); | |
2577 | ||
2578 | /* | |
2579 | * Subpages may be freed if there wasn't any mapping | |
2580 | * like if add_to_swap() is running on a lru page that | |
2581 | * had its mapping zapped. And freeing these pages | |
2582 | * requires taking the lru_lock so we do the put_page | |
2583 | * of the tail pages after the split is complete. | |
2584 | */ | |
0b175468 | 2585 | free_page_and_swap_cache(subpage); |
e9b61f19 KS |
2586 | } |
2587 | } | |
2588 | ||
b8f593cd | 2589 | /* Racy check whether the huge page can be split */ |
d4b4084a | 2590 | bool can_split_folio(struct folio *folio, int *pextra_pins) |
b8f593cd YH |
2591 | { |
2592 | int extra_pins; | |
2593 | ||
aa5dc07f | 2594 | /* Additional pins from page cache */ |
d4b4084a MWO |
2595 | if (folio_test_anon(folio)) |
2596 | extra_pins = folio_test_swapcache(folio) ? | |
2597 | folio_nr_pages(folio) : 0; | |
b8f593cd | 2598 | else |
d4b4084a | 2599 | extra_pins = folio_nr_pages(folio); |
b8f593cd YH |
2600 | if (pextra_pins) |
2601 | *pextra_pins = extra_pins; | |
d4b4084a | 2602 | return folio_mapcount(folio) == folio_ref_count(folio) - extra_pins - 1; |
b8f593cd YH |
2603 | } |
2604 | ||
e9b61f19 KS |
2605 | /* |
2606 | * This function splits huge page into normal pages. @page can point to any | |
2607 | * subpage of huge page to split. Split doesn't change the position of @page. | |
2608 | * | |
2609 | * Only caller must hold pin on the @page, otherwise split fails with -EBUSY. | |
2610 | * The huge page must be locked. | |
2611 | * | |
2612 | * If @list is null, tail pages will be added to LRU list, otherwise, to @list. | |
2613 | * | |
2614 | * Both head page and tail pages will inherit mapping, flags, and so on from | |
2615 | * the hugepage. | |
2616 | * | |
2617 | * GUP pin and PG_locked transferred to @page. Rest subpages can be freed if | |
2618 | * they are not mapped. | |
2619 | * | |
2620 | * Returns 0 if the hugepage is split successfully. | |
2621 | * Returns -EBUSY if the page is pinned or if anon_vma disappeared from under | |
2622 | * us. | |
2623 | */ | |
2624 | int split_huge_page_to_list(struct page *page, struct list_head *list) | |
2625 | { | |
4eecb8b9 | 2626 | struct folio *folio = page_folio(page); |
f8baa6be | 2627 | struct deferred_split *ds_queue = get_deferred_split_queue(folio); |
3e9a13da | 2628 | XA_STATE(xas, &folio->mapping->i_pages, folio->index); |
baa355fd KS |
2629 | struct anon_vma *anon_vma = NULL; |
2630 | struct address_space *mapping = NULL; | |
504e070d | 2631 | int extra_pins, ret; |
006d3ff2 | 2632 | pgoff_t end; |
478d134e | 2633 | bool is_hzp; |
e9b61f19 | 2634 | |
3e9a13da MWO |
2635 | VM_BUG_ON_FOLIO(!folio_test_locked(folio), folio); |
2636 | VM_BUG_ON_FOLIO(!folio_test_large(folio), folio); | |
e9b61f19 | 2637 | |
3e9a13da | 2638 | is_hzp = is_huge_zero_page(&folio->page); |
4737edbb NH |
2639 | if (is_hzp) { |
2640 | pr_warn_ratelimited("Called split_huge_page for huge zero page\n"); | |
478d134e | 2641 | return -EBUSY; |
4737edbb | 2642 | } |
478d134e | 2643 | |
3e9a13da | 2644 | if (folio_test_writeback(folio)) |
59807685 YH |
2645 | return -EBUSY; |
2646 | ||
3e9a13da | 2647 | if (folio_test_anon(folio)) { |
baa355fd | 2648 | /* |
c1e8d7c6 | 2649 | * The caller does not necessarily hold an mmap_lock that would |
baa355fd KS |
2650 | * prevent the anon_vma disappearing so we first we take a |
2651 | * reference to it and then lock the anon_vma for write. This | |
2f031c6f | 2652 | * is similar to folio_lock_anon_vma_read except the write lock |
baa355fd KS |
2653 | * is taken to serialise against parallel split or collapse |
2654 | * operations. | |
2655 | */ | |
29eea9b5 | 2656 | anon_vma = folio_get_anon_vma(folio); |
baa355fd KS |
2657 | if (!anon_vma) { |
2658 | ret = -EBUSY; | |
2659 | goto out; | |
2660 | } | |
006d3ff2 | 2661 | end = -1; |
baa355fd KS |
2662 | mapping = NULL; |
2663 | anon_vma_lock_write(anon_vma); | |
2664 | } else { | |
6a3edd29 YF |
2665 | gfp_t gfp; |
2666 | ||
3e9a13da | 2667 | mapping = folio->mapping; |
baa355fd KS |
2668 | |
2669 | /* Truncated ? */ | |
2670 | if (!mapping) { | |
2671 | ret = -EBUSY; | |
2672 | goto out; | |
2673 | } | |
2674 | ||
6a3edd29 YF |
2675 | gfp = current_gfp_context(mapping_gfp_mask(mapping) & |
2676 | GFP_RECLAIM_MASK); | |
2677 | ||
0201ebf2 | 2678 | if (!filemap_release_folio(folio, gfp)) { |
6a3edd29 YF |
2679 | ret = -EBUSY; |
2680 | goto out; | |
2681 | } | |
2682 | ||
3e9a13da | 2683 | xas_split_alloc(&xas, folio, folio_order(folio), gfp); |
6b24ca4a MWO |
2684 | if (xas_error(&xas)) { |
2685 | ret = xas_error(&xas); | |
2686 | goto out; | |
2687 | } | |
2688 | ||
baa355fd KS |
2689 | anon_vma = NULL; |
2690 | i_mmap_lock_read(mapping); | |
006d3ff2 HD |
2691 | |
2692 | /* | |
2693 | *__split_huge_page() may need to trim off pages beyond EOF: | |
2694 | * but on 32-bit, i_size_read() takes an irq-unsafe seqlock, | |
2695 | * which cannot be nested inside the page tree lock. So note | |
2696 | * end now: i_size itself may be changed at any moment, but | |
3e9a13da | 2697 | * folio lock is good enough to serialize the trimming. |
006d3ff2 HD |
2698 | */ |
2699 | end = DIV_ROUND_UP(i_size_read(mapping->host), PAGE_SIZE); | |
d144bf62 HD |
2700 | if (shmem_mapping(mapping)) |
2701 | end = shmem_fallocend(mapping->host, end); | |
e9b61f19 | 2702 | } |
e9b61f19 KS |
2703 | |
2704 | /* | |
684555aa | 2705 | * Racy check if we can split the page, before unmap_folio() will |
e9b61f19 KS |
2706 | * split PMDs |
2707 | */ | |
d4b4084a | 2708 | if (!can_split_folio(folio, &extra_pins)) { |
fd4a7ac3 | 2709 | ret = -EAGAIN; |
e9b61f19 KS |
2710 | goto out_unlock; |
2711 | } | |
2712 | ||
684555aa | 2713 | unmap_folio(folio); |
e9b61f19 | 2714 | |
b6769834 AS |
2715 | /* block interrupt reentry in xa_lock and spinlock */ |
2716 | local_irq_disable(); | |
baa355fd | 2717 | if (mapping) { |
baa355fd | 2718 | /* |
3e9a13da MWO |
2719 | * Check if the folio is present in page cache. |
2720 | * We assume all tail are present too, if folio is there. | |
baa355fd | 2721 | */ |
6b24ca4a MWO |
2722 | xas_lock(&xas); |
2723 | xas_reset(&xas); | |
3e9a13da | 2724 | if (xas_load(&xas) != folio) |
baa355fd KS |
2725 | goto fail; |
2726 | } | |
2727 | ||
0139aa7b | 2728 | /* Prevent deferred_split_scan() touching ->_refcount */ |
364c1eeb | 2729 | spin_lock(&ds_queue->split_queue_lock); |
3e9a13da | 2730 | if (folio_ref_freeze(folio, 1 + extra_pins)) { |
4375a553 | 2731 | if (!list_empty(&folio->_deferred_list)) { |
364c1eeb | 2732 | ds_queue->split_queue_len--; |
4375a553 | 2733 | list_del(&folio->_deferred_list); |
9a982250 | 2734 | } |
afb97172 | 2735 | spin_unlock(&ds_queue->split_queue_lock); |
06d3eff6 | 2736 | if (mapping) { |
3e9a13da | 2737 | int nr = folio_nr_pages(folio); |
bf9ecead | 2738 | |
3e9a13da MWO |
2739 | xas_split(&xas, folio, folio_order(folio)); |
2740 | if (folio_test_swapbacked(folio)) { | |
2741 | __lruvec_stat_mod_folio(folio, NR_SHMEM_THPS, | |
57b2847d | 2742 | -nr); |
1ca7554d | 2743 | } else { |
3e9a13da | 2744 | __lruvec_stat_mod_folio(folio, NR_FILE_THPS, |
bf9ecead | 2745 | -nr); |
1ca7554d MS |
2746 | filemap_nr_thps_dec(mapping); |
2747 | } | |
06d3eff6 KS |
2748 | } |
2749 | ||
b6769834 | 2750 | __split_huge_page(page, list, end); |
c4f9c701 | 2751 | ret = 0; |
e9b61f19 | 2752 | } else { |
364c1eeb | 2753 | spin_unlock(&ds_queue->split_queue_lock); |
504e070d YS |
2754 | fail: |
2755 | if (mapping) | |
6b24ca4a | 2756 | xas_unlock(&xas); |
b6769834 | 2757 | local_irq_enable(); |
4eecb8b9 | 2758 | remap_page(folio, folio_nr_pages(folio)); |
fd4a7ac3 | 2759 | ret = -EAGAIN; |
e9b61f19 KS |
2760 | } |
2761 | ||
2762 | out_unlock: | |
baa355fd KS |
2763 | if (anon_vma) { |
2764 | anon_vma_unlock_write(anon_vma); | |
2765 | put_anon_vma(anon_vma); | |
2766 | } | |
2767 | if (mapping) | |
2768 | i_mmap_unlock_read(mapping); | |
e9b61f19 | 2769 | out: |
69a37a8b | 2770 | xas_destroy(&xas); |
e9b61f19 KS |
2771 | count_vm_event(!ret ? THP_SPLIT_PAGE : THP_SPLIT_PAGE_FAILED); |
2772 | return ret; | |
2773 | } | |
9a982250 | 2774 | |
8dc4a8f1 | 2775 | void folio_undo_large_rmappable(struct folio *folio) |
9a982250 | 2776 | { |
8dc4a8f1 | 2777 | struct deferred_split *ds_queue; |
9a982250 KS |
2778 | unsigned long flags; |
2779 | ||
deedad80 YF |
2780 | /* |
2781 | * At this point, there is no one trying to add the folio to | |
2782 | * deferred_list. If folio is not in deferred_list, it's safe | |
2783 | * to check without acquiring the split_queue_lock. | |
2784 | */ | |
8dc4a8f1 MWO |
2785 | if (data_race(list_empty(&folio->_deferred_list))) |
2786 | return; | |
2787 | ||
2788 | ds_queue = get_deferred_split_queue(folio); | |
2789 | spin_lock_irqsave(&ds_queue->split_queue_lock, flags); | |
2790 | if (!list_empty(&folio->_deferred_list)) { | |
2791 | ds_queue->split_queue_len--; | |
2792 | list_del(&folio->_deferred_list); | |
9a982250 | 2793 | } |
8dc4a8f1 | 2794 | spin_unlock_irqrestore(&ds_queue->split_queue_lock, flags); |
9a982250 KS |
2795 | } |
2796 | ||
f158ed61 | 2797 | void deferred_split_folio(struct folio *folio) |
9a982250 | 2798 | { |
f8baa6be | 2799 | struct deferred_split *ds_queue = get_deferred_split_queue(folio); |
87eaceb3 | 2800 | #ifdef CONFIG_MEMCG |
8991de90 | 2801 | struct mem_cgroup *memcg = folio_memcg(folio); |
87eaceb3 | 2802 | #endif |
9a982250 KS |
2803 | unsigned long flags; |
2804 | ||
8991de90 | 2805 | VM_BUG_ON_FOLIO(folio_order(folio) < 2, folio); |
9a982250 | 2806 | |
87eaceb3 YS |
2807 | /* |
2808 | * The try_to_unmap() in page reclaim path might reach here too, | |
2809 | * this may cause a race condition to corrupt deferred split queue. | |
8991de90 | 2810 | * And, if page reclaim is already handling the same folio, it is |
87eaceb3 YS |
2811 | * unnecessary to handle it again in shrinker. |
2812 | * | |
8991de90 MWO |
2813 | * Check the swapcache flag to determine if the folio is being |
2814 | * handled by page reclaim since THP swap would add the folio into | |
87eaceb3 YS |
2815 | * swap cache before calling try_to_unmap(). |
2816 | */ | |
8991de90 | 2817 | if (folio_test_swapcache(folio)) |
87eaceb3 YS |
2818 | return; |
2819 | ||
8991de90 | 2820 | if (!list_empty(&folio->_deferred_list)) |
87eaceb3 YS |
2821 | return; |
2822 | ||
364c1eeb | 2823 | spin_lock_irqsave(&ds_queue->split_queue_lock, flags); |
8991de90 | 2824 | if (list_empty(&folio->_deferred_list)) { |
f9719a03 | 2825 | count_vm_event(THP_DEFERRED_SPLIT_PAGE); |
8991de90 | 2826 | list_add_tail(&folio->_deferred_list, &ds_queue->split_queue); |
364c1eeb | 2827 | ds_queue->split_queue_len++; |
87eaceb3 YS |
2828 | #ifdef CONFIG_MEMCG |
2829 | if (memcg) | |
8991de90 | 2830 | set_shrinker_bit(memcg, folio_nid(folio), |
2bfd3637 | 2831 | deferred_split_shrinker.id); |
87eaceb3 | 2832 | #endif |
9a982250 | 2833 | } |
364c1eeb | 2834 | spin_unlock_irqrestore(&ds_queue->split_queue_lock, flags); |
9a982250 KS |
2835 | } |
2836 | ||
2837 | static unsigned long deferred_split_count(struct shrinker *shrink, | |
2838 | struct shrink_control *sc) | |
2839 | { | |
a3d0a918 | 2840 | struct pglist_data *pgdata = NODE_DATA(sc->nid); |
364c1eeb | 2841 | struct deferred_split *ds_queue = &pgdata->deferred_split_queue; |
87eaceb3 YS |
2842 | |
2843 | #ifdef CONFIG_MEMCG | |
2844 | if (sc->memcg) | |
2845 | ds_queue = &sc->memcg->deferred_split_queue; | |
2846 | #endif | |
364c1eeb | 2847 | return READ_ONCE(ds_queue->split_queue_len); |
9a982250 KS |
2848 | } |
2849 | ||
2850 | static unsigned long deferred_split_scan(struct shrinker *shrink, | |
2851 | struct shrink_control *sc) | |
2852 | { | |
a3d0a918 | 2853 | struct pglist_data *pgdata = NODE_DATA(sc->nid); |
364c1eeb | 2854 | struct deferred_split *ds_queue = &pgdata->deferred_split_queue; |
9a982250 | 2855 | unsigned long flags; |
4375a553 MWO |
2856 | LIST_HEAD(list); |
2857 | struct folio *folio, *next; | |
9a982250 KS |
2858 | int split = 0; |
2859 | ||
87eaceb3 YS |
2860 | #ifdef CONFIG_MEMCG |
2861 | if (sc->memcg) | |
2862 | ds_queue = &sc->memcg->deferred_split_queue; | |
2863 | #endif | |
2864 | ||
364c1eeb | 2865 | spin_lock_irqsave(&ds_queue->split_queue_lock, flags); |
9a982250 | 2866 | /* Take pin on all head pages to avoid freeing them under us */ |
4375a553 MWO |
2867 | list_for_each_entry_safe(folio, next, &ds_queue->split_queue, |
2868 | _deferred_list) { | |
2869 | if (folio_try_get(folio)) { | |
2870 | list_move(&folio->_deferred_list, &list); | |
e3ae1953 | 2871 | } else { |
4375a553 MWO |
2872 | /* We lost race with folio_put() */ |
2873 | list_del_init(&folio->_deferred_list); | |
364c1eeb | 2874 | ds_queue->split_queue_len--; |
9a982250 | 2875 | } |
e3ae1953 KS |
2876 | if (!--sc->nr_to_scan) |
2877 | break; | |
9a982250 | 2878 | } |
364c1eeb | 2879 | spin_unlock_irqrestore(&ds_queue->split_queue_lock, flags); |
9a982250 | 2880 | |
4375a553 MWO |
2881 | list_for_each_entry_safe(folio, next, &list, _deferred_list) { |
2882 | if (!folio_trylock(folio)) | |
fa41b900 | 2883 | goto next; |
9a982250 | 2884 | /* split_huge_page() removes page from list on success */ |
4375a553 | 2885 | if (!split_folio(folio)) |
9a982250 | 2886 | split++; |
4375a553 | 2887 | folio_unlock(folio); |
fa41b900 | 2888 | next: |
4375a553 | 2889 | folio_put(folio); |
9a982250 KS |
2890 | } |
2891 | ||
364c1eeb YS |
2892 | spin_lock_irqsave(&ds_queue->split_queue_lock, flags); |
2893 | list_splice_tail(&list, &ds_queue->split_queue); | |
2894 | spin_unlock_irqrestore(&ds_queue->split_queue_lock, flags); | |
9a982250 | 2895 | |
cb8d68ec KS |
2896 | /* |
2897 | * Stop shrinker if we didn't split any page, but the queue is empty. | |
2898 | * This can happen if pages were freed under us. | |
2899 | */ | |
364c1eeb | 2900 | if (!split && list_empty(&ds_queue->split_queue)) |
cb8d68ec KS |
2901 | return SHRINK_STOP; |
2902 | return split; | |
9a982250 KS |
2903 | } |
2904 | ||
2905 | static struct shrinker deferred_split_shrinker = { | |
2906 | .count_objects = deferred_split_count, | |
2907 | .scan_objects = deferred_split_scan, | |
2908 | .seeks = DEFAULT_SEEKS, | |
87eaceb3 YS |
2909 | .flags = SHRINKER_NUMA_AWARE | SHRINKER_MEMCG_AWARE | |
2910 | SHRINKER_NONSLAB, | |
9a982250 | 2911 | }; |
49071d43 KS |
2912 | |
2913 | #ifdef CONFIG_DEBUG_FS | |
fa6c0231 | 2914 | static void split_huge_pages_all(void) |
49071d43 KS |
2915 | { |
2916 | struct zone *zone; | |
2917 | struct page *page; | |
630e7c5e | 2918 | struct folio *folio; |
49071d43 KS |
2919 | unsigned long pfn, max_zone_pfn; |
2920 | unsigned long total = 0, split = 0; | |
2921 | ||
fa6c0231 | 2922 | pr_debug("Split all THPs\n"); |
a17206da ML |
2923 | for_each_zone(zone) { |
2924 | if (!managed_zone(zone)) | |
2925 | continue; | |
49071d43 KS |
2926 | max_zone_pfn = zone_end_pfn(zone); |
2927 | for (pfn = zone->zone_start_pfn; pfn < max_zone_pfn; pfn++) { | |
a17206da | 2928 | int nr_pages; |
49071d43 | 2929 | |
2b7aa91b | 2930 | page = pfn_to_online_page(pfn); |
630e7c5e KW |
2931 | if (!page || PageTail(page)) |
2932 | continue; | |
2933 | folio = page_folio(page); | |
2934 | if (!folio_try_get(folio)) | |
49071d43 KS |
2935 | continue; |
2936 | ||
630e7c5e | 2937 | if (unlikely(page_folio(page) != folio)) |
49071d43 KS |
2938 | goto next; |
2939 | ||
630e7c5e | 2940 | if (zone != folio_zone(folio)) |
49071d43 KS |
2941 | goto next; |
2942 | ||
630e7c5e KW |
2943 | if (!folio_test_large(folio) |
2944 | || folio_test_hugetlb(folio) | |
2945 | || !folio_test_lru(folio)) | |
49071d43 KS |
2946 | goto next; |
2947 | ||
2948 | total++; | |
630e7c5e KW |
2949 | folio_lock(folio); |
2950 | nr_pages = folio_nr_pages(folio); | |
2951 | if (!split_folio(folio)) | |
49071d43 | 2952 | split++; |
a17206da | 2953 | pfn += nr_pages - 1; |
630e7c5e | 2954 | folio_unlock(folio); |
49071d43 | 2955 | next: |
630e7c5e | 2956 | folio_put(folio); |
fa6c0231 | 2957 | cond_resched(); |
49071d43 KS |
2958 | } |
2959 | } | |
2960 | ||
fa6c0231 ZY |
2961 | pr_debug("%lu of %lu THP split\n", split, total); |
2962 | } | |
49071d43 | 2963 | |
fa6c0231 ZY |
2964 | static inline bool vma_not_suitable_for_thp_split(struct vm_area_struct *vma) |
2965 | { | |
2966 | return vma_is_special_huge(vma) || (vma->vm_flags & VM_IO) || | |
2967 | is_vm_hugetlb_page(vma); | |
2968 | } | |
2969 | ||
2970 | static int split_huge_pages_pid(int pid, unsigned long vaddr_start, | |
2971 | unsigned long vaddr_end) | |
2972 | { | |
2973 | int ret = 0; | |
2974 | struct task_struct *task; | |
2975 | struct mm_struct *mm; | |
2976 | unsigned long total = 0, split = 0; | |
2977 | unsigned long addr; | |
2978 | ||
2979 | vaddr_start &= PAGE_MASK; | |
2980 | vaddr_end &= PAGE_MASK; | |
2981 | ||
2982 | /* Find the task_struct from pid */ | |
2983 | rcu_read_lock(); | |
2984 | task = find_task_by_vpid(pid); | |
2985 | if (!task) { | |
2986 | rcu_read_unlock(); | |
2987 | ret = -ESRCH; | |
2988 | goto out; | |
2989 | } | |
2990 | get_task_struct(task); | |
2991 | rcu_read_unlock(); | |
2992 | ||
2993 | /* Find the mm_struct */ | |
2994 | mm = get_task_mm(task); | |
2995 | put_task_struct(task); | |
2996 | ||
2997 | if (!mm) { | |
2998 | ret = -EINVAL; | |
2999 | goto out; | |
3000 | } | |
3001 | ||
3002 | pr_debug("Split huge pages in pid: %d, vaddr: [0x%lx - 0x%lx]\n", | |
3003 | pid, vaddr_start, vaddr_end); | |
3004 | ||
3005 | mmap_read_lock(mm); | |
3006 | /* | |
3007 | * always increase addr by PAGE_SIZE, since we could have a PTE page | |
3008 | * table filled with PTE-mapped THPs, each of which is distinct. | |
3009 | */ | |
3010 | for (addr = vaddr_start; addr < vaddr_end; addr += PAGE_SIZE) { | |
74ba2b38 | 3011 | struct vm_area_struct *vma = vma_lookup(mm, addr); |
fa6c0231 | 3012 | struct page *page; |
a644b0ab | 3013 | struct folio *folio; |
fa6c0231 | 3014 | |
74ba2b38 | 3015 | if (!vma) |
fa6c0231 ZY |
3016 | break; |
3017 | ||
3018 | /* skip special VMA and hugetlb VMA */ | |
3019 | if (vma_not_suitable_for_thp_split(vma)) { | |
3020 | addr = vma->vm_end; | |
3021 | continue; | |
3022 | } | |
3023 | ||
3024 | /* FOLL_DUMP to ignore special (like zero) pages */ | |
87d2762e | 3025 | page = follow_page(vma, addr, FOLL_GET | FOLL_DUMP); |
fa6c0231 | 3026 | |
f7091ed6 | 3027 | if (IS_ERR_OR_NULL(page)) |
fa6c0231 ZY |
3028 | continue; |
3029 | ||
a644b0ab MWO |
3030 | folio = page_folio(page); |
3031 | if (!is_transparent_hugepage(folio)) | |
fa6c0231 ZY |
3032 | goto next; |
3033 | ||
3034 | total++; | |
a644b0ab | 3035 | if (!can_split_folio(folio, NULL)) |
fa6c0231 ZY |
3036 | goto next; |
3037 | ||
a644b0ab | 3038 | if (!folio_trylock(folio)) |
fa6c0231 ZY |
3039 | goto next; |
3040 | ||
a644b0ab | 3041 | if (!split_folio(folio)) |
fa6c0231 ZY |
3042 | split++; |
3043 | ||
a644b0ab | 3044 | folio_unlock(folio); |
fa6c0231 | 3045 | next: |
a644b0ab | 3046 | folio_put(folio); |
fa6c0231 ZY |
3047 | cond_resched(); |
3048 | } | |
3049 | mmap_read_unlock(mm); | |
3050 | mmput(mm); | |
3051 | ||
3052 | pr_debug("%lu of %lu THP split\n", split, total); | |
3053 | ||
3054 | out: | |
3055 | return ret; | |
49071d43 | 3056 | } |
fa6c0231 | 3057 | |
fbe37501 ZY |
3058 | static int split_huge_pages_in_file(const char *file_path, pgoff_t off_start, |
3059 | pgoff_t off_end) | |
3060 | { | |
3061 | struct filename *file; | |
3062 | struct file *candidate; | |
3063 | struct address_space *mapping; | |
3064 | int ret = -EINVAL; | |
3065 | pgoff_t index; | |
3066 | int nr_pages = 1; | |
3067 | unsigned long total = 0, split = 0; | |
3068 | ||
3069 | file = getname_kernel(file_path); | |
3070 | if (IS_ERR(file)) | |
3071 | return ret; | |
3072 | ||
3073 | candidate = file_open_name(file, O_RDONLY, 0); | |
3074 | if (IS_ERR(candidate)) | |
3075 | goto out; | |
3076 | ||
3077 | pr_debug("split file-backed THPs in file: %s, page offset: [0x%lx - 0x%lx]\n", | |
3078 | file_path, off_start, off_end); | |
3079 | ||
3080 | mapping = candidate->f_mapping; | |
3081 | ||
3082 | for (index = off_start; index < off_end; index += nr_pages) { | |
1fb130b2 | 3083 | struct folio *folio = filemap_get_folio(mapping, index); |
fbe37501 ZY |
3084 | |
3085 | nr_pages = 1; | |
66dabbb6 | 3086 | if (IS_ERR(folio)) |
fbe37501 ZY |
3087 | continue; |
3088 | ||
9ee2c086 | 3089 | if (!folio_test_large(folio)) |
fbe37501 ZY |
3090 | goto next; |
3091 | ||
3092 | total++; | |
9ee2c086 | 3093 | nr_pages = folio_nr_pages(folio); |
fbe37501 | 3094 | |
9ee2c086 | 3095 | if (!folio_trylock(folio)) |
fbe37501 ZY |
3096 | goto next; |
3097 | ||
9ee2c086 | 3098 | if (!split_folio(folio)) |
fbe37501 ZY |
3099 | split++; |
3100 | ||
9ee2c086 | 3101 | folio_unlock(folio); |
fbe37501 | 3102 | next: |
9ee2c086 | 3103 | folio_put(folio); |
fbe37501 ZY |
3104 | cond_resched(); |
3105 | } | |
3106 | ||
3107 | filp_close(candidate, NULL); | |
3108 | ret = 0; | |
3109 | ||
3110 | pr_debug("%lu of %lu file-backed THP split\n", split, total); | |
3111 | out: | |
3112 | putname(file); | |
3113 | return ret; | |
3114 | } | |
3115 | ||
fa6c0231 ZY |
3116 | #define MAX_INPUT_BUF_SZ 255 |
3117 | ||
3118 | static ssize_t split_huge_pages_write(struct file *file, const char __user *buf, | |
3119 | size_t count, loff_t *ppops) | |
3120 | { | |
3121 | static DEFINE_MUTEX(split_debug_mutex); | |
3122 | ssize_t ret; | |
fbe37501 ZY |
3123 | /* hold pid, start_vaddr, end_vaddr or file_path, off_start, off_end */ |
3124 | char input_buf[MAX_INPUT_BUF_SZ]; | |
fa6c0231 ZY |
3125 | int pid; |
3126 | unsigned long vaddr_start, vaddr_end; | |
3127 | ||
3128 | ret = mutex_lock_interruptible(&split_debug_mutex); | |
3129 | if (ret) | |
3130 | return ret; | |
3131 | ||
3132 | ret = -EFAULT; | |
3133 | ||
3134 | memset(input_buf, 0, MAX_INPUT_BUF_SZ); | |
3135 | if (copy_from_user(input_buf, buf, min_t(size_t, count, MAX_INPUT_BUF_SZ))) | |
3136 | goto out; | |
3137 | ||
3138 | input_buf[MAX_INPUT_BUF_SZ - 1] = '\0'; | |
fbe37501 ZY |
3139 | |
3140 | if (input_buf[0] == '/') { | |
3141 | char *tok; | |
3142 | char *buf = input_buf; | |
3143 | char file_path[MAX_INPUT_BUF_SZ]; | |
3144 | pgoff_t off_start = 0, off_end = 0; | |
3145 | size_t input_len = strlen(input_buf); | |
3146 | ||
3147 | tok = strsep(&buf, ","); | |
3148 | if (tok) { | |
1212e00c | 3149 | strcpy(file_path, tok); |
fbe37501 ZY |
3150 | } else { |
3151 | ret = -EINVAL; | |
3152 | goto out; | |
3153 | } | |
3154 | ||
3155 | ret = sscanf(buf, "0x%lx,0x%lx", &off_start, &off_end); | |
3156 | if (ret != 2) { | |
3157 | ret = -EINVAL; | |
3158 | goto out; | |
3159 | } | |
3160 | ret = split_huge_pages_in_file(file_path, off_start, off_end); | |
3161 | if (!ret) | |
3162 | ret = input_len; | |
3163 | ||
3164 | goto out; | |
3165 | } | |
3166 | ||
fa6c0231 ZY |
3167 | ret = sscanf(input_buf, "%d,0x%lx,0x%lx", &pid, &vaddr_start, &vaddr_end); |
3168 | if (ret == 1 && pid == 1) { | |
3169 | split_huge_pages_all(); | |
3170 | ret = strlen(input_buf); | |
3171 | goto out; | |
3172 | } else if (ret != 3) { | |
3173 | ret = -EINVAL; | |
3174 | goto out; | |
3175 | } | |
3176 | ||
3177 | ret = split_huge_pages_pid(pid, vaddr_start, vaddr_end); | |
3178 | if (!ret) | |
3179 | ret = strlen(input_buf); | |
3180 | out: | |
3181 | mutex_unlock(&split_debug_mutex); | |
3182 | return ret; | |
3183 | ||
3184 | } | |
3185 | ||
3186 | static const struct file_operations split_huge_pages_fops = { | |
3187 | .owner = THIS_MODULE, | |
3188 | .write = split_huge_pages_write, | |
3189 | .llseek = no_llseek, | |
3190 | }; | |
49071d43 KS |
3191 | |
3192 | static int __init split_huge_pages_debugfs(void) | |
3193 | { | |
d9f7979c GKH |
3194 | debugfs_create_file("split_huge_pages", 0200, NULL, NULL, |
3195 | &split_huge_pages_fops); | |
49071d43 KS |
3196 | return 0; |
3197 | } | |
3198 | late_initcall(split_huge_pages_debugfs); | |
3199 | #endif | |
616b8371 ZY |
3200 | |
3201 | #ifdef CONFIG_ARCH_ENABLE_THP_MIGRATION | |
7f5abe60 | 3202 | int set_pmd_migration_entry(struct page_vma_mapped_walk *pvmw, |
616b8371 ZY |
3203 | struct page *page) |
3204 | { | |
3205 | struct vm_area_struct *vma = pvmw->vma; | |
3206 | struct mm_struct *mm = vma->vm_mm; | |
3207 | unsigned long address = pvmw->address; | |
6c287605 | 3208 | bool anon_exclusive; |
616b8371 ZY |
3209 | pmd_t pmdval; |
3210 | swp_entry_t entry; | |
ab6e3d09 | 3211 | pmd_t pmdswp; |
616b8371 ZY |
3212 | |
3213 | if (!(pvmw->pmd && !pvmw->pte)) | |
7f5abe60 | 3214 | return 0; |
616b8371 | 3215 | |
616b8371 | 3216 | flush_cache_range(vma, address, address + HPAGE_PMD_SIZE); |
8a8683ad | 3217 | pmdval = pmdp_invalidate(vma, address, pvmw->pmd); |
6c287605 | 3218 | |
088b8aa5 | 3219 | /* See page_try_share_anon_rmap(): invalidate PMD first. */ |
6c287605 DH |
3220 | anon_exclusive = PageAnon(page) && PageAnonExclusive(page); |
3221 | if (anon_exclusive && page_try_share_anon_rmap(page)) { | |
3222 | set_pmd_at(mm, address, pvmw->pmd, pmdval); | |
7f5abe60 | 3223 | return -EBUSY; |
6c287605 DH |
3224 | } |
3225 | ||
616b8371 ZY |
3226 | if (pmd_dirty(pmdval)) |
3227 | set_page_dirty(page); | |
4dd845b5 AP |
3228 | if (pmd_write(pmdval)) |
3229 | entry = make_writable_migration_entry(page_to_pfn(page)); | |
6c287605 DH |
3230 | else if (anon_exclusive) |
3231 | entry = make_readable_exclusive_migration_entry(page_to_pfn(page)); | |
4dd845b5 AP |
3232 | else |
3233 | entry = make_readable_migration_entry(page_to_pfn(page)); | |
2e346877 PX |
3234 | if (pmd_young(pmdval)) |
3235 | entry = make_migration_entry_young(entry); | |
3236 | if (pmd_dirty(pmdval)) | |
3237 | entry = make_migration_entry_dirty(entry); | |
ab6e3d09 NH |
3238 | pmdswp = swp_entry_to_pmd(entry); |
3239 | if (pmd_soft_dirty(pmdval)) | |
3240 | pmdswp = pmd_swp_mksoft_dirty(pmdswp); | |
24bf08c4 DH |
3241 | if (pmd_uffd_wp(pmdval)) |
3242 | pmdswp = pmd_swp_mkuffd_wp(pmdswp); | |
ab6e3d09 | 3243 | set_pmd_at(mm, address, pvmw->pmd, pmdswp); |
cea86fe2 | 3244 | page_remove_rmap(page, vma, true); |
616b8371 | 3245 | put_page(page); |
283fd6fe | 3246 | trace_set_migration_pmd(address, pmd_val(pmdswp)); |
7f5abe60 DH |
3247 | |
3248 | return 0; | |
616b8371 ZY |
3249 | } |
3250 | ||
3251 | void remove_migration_pmd(struct page_vma_mapped_walk *pvmw, struct page *new) | |
3252 | { | |
3253 | struct vm_area_struct *vma = pvmw->vma; | |
3254 | struct mm_struct *mm = vma->vm_mm; | |
3255 | unsigned long address = pvmw->address; | |
4fba8f2a | 3256 | unsigned long haddr = address & HPAGE_PMD_MASK; |
616b8371 ZY |
3257 | pmd_t pmde; |
3258 | swp_entry_t entry; | |
3259 | ||
3260 | if (!(pvmw->pmd && !pvmw->pte)) | |
3261 | return; | |
3262 | ||
3263 | entry = pmd_to_swp_entry(*pvmw->pmd); | |
3264 | get_page(new); | |
2e346877 | 3265 | pmde = mk_huge_pmd(new, READ_ONCE(vma->vm_page_prot)); |
ab6e3d09 NH |
3266 | if (pmd_swp_soft_dirty(*pvmw->pmd)) |
3267 | pmde = pmd_mksoft_dirty(pmde); | |
3c811f78 | 3268 | if (is_writable_migration_entry(entry)) |
161e393c | 3269 | pmde = pmd_mkwrite(pmde, vma); |
8f34f1ea | 3270 | if (pmd_swp_uffd_wp(*pvmw->pmd)) |
f1eb1bac | 3271 | pmde = pmd_mkuffd_wp(pmde); |
2e346877 PX |
3272 | if (!is_migration_entry_young(entry)) |
3273 | pmde = pmd_mkold(pmde); | |
3274 | /* NOTE: this may contain setting soft-dirty on some archs */ | |
3275 | if (PageDirty(new) && is_migration_entry_dirty(entry)) | |
3276 | pmde = pmd_mkdirty(pmde); | |
616b8371 | 3277 | |
6c287605 DH |
3278 | if (PageAnon(new)) { |
3279 | rmap_t rmap_flags = RMAP_COMPOUND; | |
3280 | ||
3281 | if (!is_readable_migration_entry(entry)) | |
3282 | rmap_flags |= RMAP_EXCLUSIVE; | |
3283 | ||
4fba8f2a | 3284 | page_add_anon_rmap(new, vma, haddr, rmap_flags); |
6c287605 | 3285 | } else { |
cea86fe2 | 3286 | page_add_file_rmap(new, vma, true); |
6c287605 DH |
3287 | } |
3288 | VM_BUG_ON(pmd_write(pmde) && PageAnon(new) && !PageAnonExclusive(new)); | |
4fba8f2a | 3289 | set_pmd_at(mm, haddr, pvmw->pmd, pmde); |
5cbcf225 MS |
3290 | |
3291 | /* No need to invalidate - it was non-present before */ | |
616b8371 | 3292 | update_mmu_cache_pmd(vma, address, pvmw->pmd); |
283fd6fe | 3293 | trace_remove_migration_pmd(address, pmd_val(pmde)); |
616b8371 ZY |
3294 | } |
3295 | #endif |