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c942fddf | 1 | // SPDX-License-Identifier: GPL-2.0-or-later |
133ff0ea JG |
2 | /* |
3 | * Copyright 2013 Red Hat Inc. | |
4 | * | |
f813f219 | 5 | * Authors: Jérôme Glisse <[email protected]> |
133ff0ea JG |
6 | */ |
7 | /* | |
8 | * Refer to include/linux/hmm.h for information about heterogeneous memory | |
9 | * management or HMM for short. | |
10 | */ | |
a520110e | 11 | #include <linux/pagewalk.h> |
133ff0ea | 12 | #include <linux/hmm.h> |
858b54da | 13 | #include <linux/init.h> |
da4c3c73 JG |
14 | #include <linux/rmap.h> |
15 | #include <linux/swap.h> | |
133ff0ea JG |
16 | #include <linux/slab.h> |
17 | #include <linux/sched.h> | |
4ef589dc JG |
18 | #include <linux/mmzone.h> |
19 | #include <linux/pagemap.h> | |
da4c3c73 JG |
20 | #include <linux/swapops.h> |
21 | #include <linux/hugetlb.h> | |
4ef589dc | 22 | #include <linux/memremap.h> |
c8a53b2d | 23 | #include <linux/sched/mm.h> |
7b2d55d2 | 24 | #include <linux/jump_label.h> |
55c0ece8 | 25 | #include <linux/dma-mapping.h> |
c0b12405 | 26 | #include <linux/mmu_notifier.h> |
4ef589dc JG |
27 | #include <linux/memory_hotplug.h> |
28 | ||
74eee180 JG |
29 | struct hmm_vma_walk { |
30 | struct hmm_range *range; | |
31 | unsigned long last; | |
74eee180 JG |
32 | }; |
33 | ||
a3eb13c1 JG |
34 | enum { |
35 | HMM_NEED_FAULT = 1 << 0, | |
36 | HMM_NEED_WRITE_FAULT = 1 << 1, | |
37 | HMM_NEED_ALL_BITS = HMM_NEED_FAULT | HMM_NEED_WRITE_FAULT, | |
38 | }; | |
39 | ||
f970b977 JG |
40 | /* |
41 | * hmm_device_entry_from_pfn() - create a valid device entry value from pfn | |
42 | * @range: range use to encode HMM pfn value | |
43 | * @pfn: pfn value for which to create the device entry | |
44 | * Return: valid device entry for the pfn | |
45 | */ | |
46 | static uint64_t hmm_device_entry_from_pfn(const struct hmm_range *range, | |
47 | unsigned long pfn) | |
48 | { | |
49 | return (pfn << range->pfn_shift) | range->flags[HMM_PFN_VALID]; | |
50 | } | |
51 | ||
d28c2c9a RC |
52 | static int hmm_pfns_fill(unsigned long addr, unsigned long end, |
53 | struct hmm_range *range, enum hmm_pfn_value_e value) | |
da4c3c73 | 54 | { |
ff05c0c6 | 55 | uint64_t *pfns = range->pfns; |
da4c3c73 JG |
56 | unsigned long i; |
57 | ||
58 | i = (addr - range->start) >> PAGE_SHIFT; | |
59 | for (; addr < end; addr += PAGE_SIZE, i++) | |
d28c2c9a | 60 | pfns[i] = range->values[value]; |
da4c3c73 JG |
61 | |
62 | return 0; | |
63 | } | |
64 | ||
5504ed29 | 65 | /* |
f8c888a3 | 66 | * hmm_vma_fault() - fault in a range lacking valid pmd or pte(s) |
d2e8d551 | 67 | * @addr: range virtual start address (inclusive) |
5504ed29 | 68 | * @end: range virtual end address (exclusive) |
a3eb13c1 | 69 | * @required_fault: HMM_NEED_* flags |
5504ed29 | 70 | * @walk: mm_walk structure |
f8c888a3 | 71 | * Return: -EBUSY after page fault, or page fault error |
5504ed29 JG |
72 | * |
73 | * This function will be called whenever pmd_none() or pte_none() returns true, | |
74 | * or whenever there is no page directory covering the virtual address range. | |
75 | */ | |
f8c888a3 | 76 | static int hmm_vma_fault(unsigned long addr, unsigned long end, |
a3eb13c1 | 77 | unsigned int required_fault, struct mm_walk *walk) |
da4c3c73 | 78 | { |
74eee180 | 79 | struct hmm_vma_walk *hmm_vma_walk = walk->private; |
5a0c38d3 | 80 | struct vm_area_struct *vma = walk->vma; |
5a0c38d3 | 81 | unsigned int fault_flags = FAULT_FLAG_REMOTE; |
da4c3c73 | 82 | |
a3eb13c1 | 83 | WARN_ON_ONCE(!required_fault); |
74eee180 | 84 | hmm_vma_walk->last = addr; |
63d5066f | 85 | |
a3eb13c1 | 86 | if (required_fault & HMM_NEED_WRITE_FAULT) { |
5a0c38d3 CH |
87 | if (!(vma->vm_flags & VM_WRITE)) |
88 | return -EPERM; | |
89 | fault_flags |= FAULT_FLAG_WRITE; | |
74eee180 JG |
90 | } |
91 | ||
53bfe17f | 92 | for (; addr < end; addr += PAGE_SIZE) |
5a0c38d3 | 93 | if (handle_mm_fault(vma, addr, fault_flags) & VM_FAULT_ERROR) |
53bfe17f | 94 | return -EFAULT; |
f8c888a3 | 95 | return -EBUSY; |
2aee09d8 JG |
96 | } |
97 | ||
a3eb13c1 JG |
98 | static unsigned int hmm_pte_need_fault(const struct hmm_vma_walk *hmm_vma_walk, |
99 | uint64_t pfns, uint64_t cpu_flags) | |
2aee09d8 | 100 | { |
f88a1e90 JG |
101 | struct hmm_range *range = hmm_vma_walk->range; |
102 | ||
023a019a JG |
103 | /* |
104 | * So we not only consider the individual per page request we also | |
105 | * consider the default flags requested for the range. The API can | |
d2e8d551 RC |
106 | * be used 2 ways. The first one where the HMM user coalesces |
107 | * multiple page faults into one request and sets flags per pfn for | |
108 | * those faults. The second one where the HMM user wants to pre- | |
023a019a JG |
109 | * fault a range with specific flags. For the latter one it is a |
110 | * waste to have the user pre-fill the pfn arrays with a default | |
111 | * flags value. | |
112 | */ | |
113 | pfns = (pfns & range->pfn_flags_mask) | range->default_flags; | |
114 | ||
2aee09d8 | 115 | /* We aren't ask to do anything ... */ |
f88a1e90 | 116 | if (!(pfns & range->flags[HMM_PFN_VALID])) |
a3eb13c1 | 117 | return 0; |
f88a1e90 | 118 | |
f88a1e90 JG |
119 | /* Need to write fault ? */ |
120 | if ((pfns & range->flags[HMM_PFN_WRITE]) && | |
a3eb13c1 JG |
121 | !(cpu_flags & range->flags[HMM_PFN_WRITE])) |
122 | return HMM_NEED_FAULT | HMM_NEED_WRITE_FAULT; | |
123 | ||
124 | /* If CPU page table is not valid then we need to fault */ | |
125 | if (!(cpu_flags & range->flags[HMM_PFN_VALID])) | |
126 | return HMM_NEED_FAULT; | |
127 | return 0; | |
2aee09d8 JG |
128 | } |
129 | ||
a3eb13c1 JG |
130 | static unsigned int |
131 | hmm_range_need_fault(const struct hmm_vma_walk *hmm_vma_walk, | |
132 | const uint64_t *pfns, unsigned long npages, | |
133 | uint64_t cpu_flags) | |
2aee09d8 | 134 | { |
6bfef2f9 | 135 | struct hmm_range *range = hmm_vma_walk->range; |
a3eb13c1 | 136 | unsigned int required_fault = 0; |
2aee09d8 JG |
137 | unsigned long i; |
138 | ||
6bfef2f9 JG |
139 | /* |
140 | * If the default flags do not request to fault pages, and the mask does | |
141 | * not allow for individual pages to be faulted, then | |
142 | * hmm_pte_need_fault() will always return 0. | |
143 | */ | |
144 | if (!((range->default_flags | range->pfn_flags_mask) & | |
145 | range->flags[HMM_PFN_VALID])) | |
a3eb13c1 | 146 | return 0; |
2aee09d8 JG |
147 | |
148 | for (i = 0; i < npages; ++i) { | |
a3eb13c1 JG |
149 | required_fault |= |
150 | hmm_pte_need_fault(hmm_vma_walk, pfns[i], cpu_flags); | |
151 | if (required_fault == HMM_NEED_ALL_BITS) | |
152 | return required_fault; | |
2aee09d8 | 153 | } |
a3eb13c1 | 154 | return required_fault; |
2aee09d8 JG |
155 | } |
156 | ||
157 | static int hmm_vma_walk_hole(unsigned long addr, unsigned long end, | |
b7a16c7a | 158 | __always_unused int depth, struct mm_walk *walk) |
2aee09d8 JG |
159 | { |
160 | struct hmm_vma_walk *hmm_vma_walk = walk->private; | |
161 | struct hmm_range *range = hmm_vma_walk->range; | |
a3eb13c1 | 162 | unsigned int required_fault; |
2aee09d8 JG |
163 | unsigned long i, npages; |
164 | uint64_t *pfns; | |
165 | ||
166 | i = (addr - range->start) >> PAGE_SHIFT; | |
167 | npages = (end - addr) >> PAGE_SHIFT; | |
168 | pfns = &range->pfns[i]; | |
a3eb13c1 | 169 | required_fault = hmm_range_need_fault(hmm_vma_walk, pfns, npages, 0); |
bd5d3587 JG |
170 | if (!walk->vma) { |
171 | if (required_fault) | |
172 | return -EFAULT; | |
173 | return hmm_pfns_fill(addr, end, range, HMM_PFN_ERROR); | |
174 | } | |
a3eb13c1 JG |
175 | if (required_fault) |
176 | return hmm_vma_fault(addr, end, required_fault, walk); | |
f8c888a3 CH |
177 | hmm_vma_walk->last = addr; |
178 | return hmm_pfns_fill(addr, end, range, HMM_PFN_NONE); | |
2aee09d8 JG |
179 | } |
180 | ||
f88a1e90 | 181 | static inline uint64_t pmd_to_hmm_pfn_flags(struct hmm_range *range, pmd_t pmd) |
2aee09d8 JG |
182 | { |
183 | if (pmd_protnone(pmd)) | |
184 | return 0; | |
f88a1e90 JG |
185 | return pmd_write(pmd) ? range->flags[HMM_PFN_VALID] | |
186 | range->flags[HMM_PFN_WRITE] : | |
187 | range->flags[HMM_PFN_VALID]; | |
da4c3c73 JG |
188 | } |
189 | ||
992de9a8 | 190 | #ifdef CONFIG_TRANSPARENT_HUGEPAGE |
9d3973d6 CH |
191 | static int hmm_vma_handle_pmd(struct mm_walk *walk, unsigned long addr, |
192 | unsigned long end, uint64_t *pfns, pmd_t pmd) | |
193 | { | |
53f5c3f4 | 194 | struct hmm_vma_walk *hmm_vma_walk = walk->private; |
f88a1e90 | 195 | struct hmm_range *range = hmm_vma_walk->range; |
2aee09d8 | 196 | unsigned long pfn, npages, i; |
a3eb13c1 | 197 | unsigned int required_fault; |
f88a1e90 | 198 | uint64_t cpu_flags; |
53f5c3f4 | 199 | |
2aee09d8 | 200 | npages = (end - addr) >> PAGE_SHIFT; |
f88a1e90 | 201 | cpu_flags = pmd_to_hmm_pfn_flags(range, pmd); |
a3eb13c1 JG |
202 | required_fault = |
203 | hmm_range_need_fault(hmm_vma_walk, pfns, npages, cpu_flags); | |
204 | if (required_fault) | |
205 | return hmm_vma_fault(addr, end, required_fault, walk); | |
53f5c3f4 | 206 | |
309f9a4f | 207 | pfn = pmd_pfn(pmd) + ((addr & ~PMD_MASK) >> PAGE_SHIFT); |
068354ad | 208 | for (i = 0; addr < end; addr += PAGE_SIZE, i++, pfn++) |
391aab11 | 209 | pfns[i] = hmm_device_entry_from_pfn(range, pfn) | cpu_flags; |
53f5c3f4 JG |
210 | hmm_vma_walk->last = end; |
211 | return 0; | |
212 | } | |
9d3973d6 CH |
213 | #else /* CONFIG_TRANSPARENT_HUGEPAGE */ |
214 | /* stub to allow the code below to compile */ | |
215 | int hmm_vma_handle_pmd(struct mm_walk *walk, unsigned long addr, | |
216 | unsigned long end, uint64_t *pfns, pmd_t pmd); | |
217 | #endif /* CONFIG_TRANSPARENT_HUGEPAGE */ | |
53f5c3f4 | 218 | |
08ddddda CH |
219 | static inline bool hmm_is_device_private_entry(struct hmm_range *range, |
220 | swp_entry_t entry) | |
221 | { | |
222 | return is_device_private_entry(entry) && | |
223 | device_private_entry_to_page(entry)->pgmap->owner == | |
224 | range->dev_private_owner; | |
225 | } | |
226 | ||
f88a1e90 | 227 | static inline uint64_t pte_to_hmm_pfn_flags(struct hmm_range *range, pte_t pte) |
2aee09d8 | 228 | { |
789c2af8 | 229 | if (pte_none(pte) || !pte_present(pte) || pte_protnone(pte)) |
2aee09d8 | 230 | return 0; |
f88a1e90 JG |
231 | return pte_write(pte) ? range->flags[HMM_PFN_VALID] | |
232 | range->flags[HMM_PFN_WRITE] : | |
233 | range->flags[HMM_PFN_VALID]; | |
2aee09d8 JG |
234 | } |
235 | ||
53f5c3f4 JG |
236 | static int hmm_vma_handle_pte(struct mm_walk *walk, unsigned long addr, |
237 | unsigned long end, pmd_t *pmdp, pte_t *ptep, | |
238 | uint64_t *pfn) | |
239 | { | |
240 | struct hmm_vma_walk *hmm_vma_walk = walk->private; | |
f88a1e90 | 241 | struct hmm_range *range = hmm_vma_walk->range; |
a3eb13c1 | 242 | unsigned int required_fault; |
2aee09d8 | 243 | uint64_t cpu_flags; |
53f5c3f4 | 244 | pte_t pte = *ptep; |
f88a1e90 | 245 | uint64_t orig_pfn = *pfn; |
53f5c3f4 | 246 | |
53f5c3f4 | 247 | if (pte_none(pte)) { |
a3eb13c1 JG |
248 | required_fault = hmm_pte_need_fault(hmm_vma_walk, orig_pfn, 0); |
249 | if (required_fault) | |
53f5c3f4 | 250 | goto fault; |
846babe8 | 251 | *pfn = range->values[HMM_PFN_NONE]; |
53f5c3f4 JG |
252 | return 0; |
253 | } | |
254 | ||
255 | if (!pte_present(pte)) { | |
256 | swp_entry_t entry = pte_to_swp_entry(pte); | |
257 | ||
53f5c3f4 | 258 | /* |
17ffdc48 CH |
259 | * Never fault in device private pages pages, but just report |
260 | * the PFN even if not present. | |
53f5c3f4 | 261 | */ |
08ddddda | 262 | if (hmm_is_device_private_entry(range, entry)) { |
391aab11 | 263 | *pfn = hmm_device_entry_from_pfn(range, |
f66c9a33 | 264 | device_private_entry_to_pfn(entry)); |
17ffdc48 CH |
265 | *pfn |= range->flags[HMM_PFN_VALID]; |
266 | if (is_write_device_private_entry(entry)) | |
267 | *pfn |= range->flags[HMM_PFN_WRITE]; | |
53f5c3f4 JG |
268 | return 0; |
269 | } | |
270 | ||
a3eb13c1 | 271 | required_fault = hmm_pte_need_fault(hmm_vma_walk, orig_pfn, 0); |
846babe8 JG |
272 | if (!required_fault) { |
273 | *pfn = range->values[HMM_PFN_NONE]; | |
53f5c3f4 | 274 | return 0; |
846babe8 | 275 | } |
76612d6c JG |
276 | |
277 | if (!non_swap_entry(entry)) | |
278 | goto fault; | |
279 | ||
280 | if (is_migration_entry(entry)) { | |
281 | pte_unmap(ptep); | |
282 | hmm_vma_walk->last = addr; | |
283 | migration_entry_wait(walk->mm, pmdp, addr); | |
284 | return -EBUSY; | |
53f5c3f4 JG |
285 | } |
286 | ||
287 | /* Report error for everything else */ | |
dfdc2207 | 288 | pte_unmap(ptep); |
53f5c3f4 JG |
289 | return -EFAULT; |
290 | } | |
291 | ||
76612d6c | 292 | cpu_flags = pte_to_hmm_pfn_flags(range, pte); |
a3eb13c1 JG |
293 | required_fault = hmm_pte_need_fault(hmm_vma_walk, orig_pfn, cpu_flags); |
294 | if (required_fault) | |
53f5c3f4 JG |
295 | goto fault; |
296 | ||
40550627 JG |
297 | /* |
298 | * Since each architecture defines a struct page for the zero page, just | |
299 | * fall through and treat it like a normal page. | |
300 | */ | |
301 | if (pte_special(pte) && !is_zero_pfn(pte_pfn(pte))) { | |
a3eb13c1 | 302 | if (hmm_pte_need_fault(hmm_vma_walk, orig_pfn, 0)) { |
dfdc2207 | 303 | pte_unmap(ptep); |
ac541f25 RC |
304 | return -EFAULT; |
305 | } | |
40550627 JG |
306 | *pfn = range->values[HMM_PFN_SPECIAL]; |
307 | return 0; | |
992de9a8 JG |
308 | } |
309 | ||
391aab11 | 310 | *pfn = hmm_device_entry_from_pfn(range, pte_pfn(pte)) | cpu_flags; |
53f5c3f4 JG |
311 | return 0; |
312 | ||
313 | fault: | |
314 | pte_unmap(ptep); | |
315 | /* Fault any virtual address we were asked to fault */ | |
a3eb13c1 | 316 | return hmm_vma_fault(addr, end, required_fault, walk); |
53f5c3f4 JG |
317 | } |
318 | ||
da4c3c73 JG |
319 | static int hmm_vma_walk_pmd(pmd_t *pmdp, |
320 | unsigned long start, | |
321 | unsigned long end, | |
322 | struct mm_walk *walk) | |
323 | { | |
74eee180 JG |
324 | struct hmm_vma_walk *hmm_vma_walk = walk->private; |
325 | struct hmm_range *range = hmm_vma_walk->range; | |
2288a9a6 JG |
326 | uint64_t *pfns = &range->pfns[(start - range->start) >> PAGE_SHIFT]; |
327 | unsigned long npages = (end - start) >> PAGE_SHIFT; | |
328 | unsigned long addr = start; | |
da4c3c73 | 329 | pte_t *ptep; |
d08faca0 | 330 | pmd_t pmd; |
da4c3c73 | 331 | |
da4c3c73 | 332 | again: |
d08faca0 JG |
333 | pmd = READ_ONCE(*pmdp); |
334 | if (pmd_none(pmd)) | |
b7a16c7a | 335 | return hmm_vma_walk_hole(start, end, -1, walk); |
da4c3c73 | 336 | |
d08faca0 | 337 | if (thp_migration_supported() && is_pmd_migration_entry(pmd)) { |
a3eb13c1 | 338 | if (hmm_range_need_fault(hmm_vma_walk, pfns, npages, 0)) { |
d08faca0 | 339 | hmm_vma_walk->last = addr; |
d2e8d551 | 340 | pmd_migration_entry_wait(walk->mm, pmdp); |
73231612 | 341 | return -EBUSY; |
d08faca0 | 342 | } |
7d082987 | 343 | return hmm_pfns_fill(start, end, range, HMM_PFN_NONE); |
2288a9a6 JG |
344 | } |
345 | ||
346 | if (!pmd_present(pmd)) { | |
a3eb13c1 | 347 | if (hmm_range_need_fault(hmm_vma_walk, pfns, npages, 0)) |
2288a9a6 | 348 | return -EFAULT; |
d28c2c9a | 349 | return hmm_pfns_fill(start, end, range, HMM_PFN_ERROR); |
2288a9a6 | 350 | } |
da4c3c73 | 351 | |
d08faca0 | 352 | if (pmd_devmap(pmd) || pmd_trans_huge(pmd)) { |
da4c3c73 | 353 | /* |
d2e8d551 | 354 | * No need to take pmd_lock here, even if some other thread |
da4c3c73 JG |
355 | * is splitting the huge pmd we will get that event through |
356 | * mmu_notifier callback. | |
357 | * | |
d2e8d551 | 358 | * So just read pmd value and check again it's a transparent |
da4c3c73 JG |
359 | * huge or device mapping one and compute corresponding pfn |
360 | * values. | |
361 | */ | |
362 | pmd = pmd_read_atomic(pmdp); | |
363 | barrier(); | |
364 | if (!pmd_devmap(pmd) && !pmd_trans_huge(pmd)) | |
365 | goto again; | |
74eee180 | 366 | |
2288a9a6 | 367 | return hmm_vma_handle_pmd(walk, addr, end, pfns, pmd); |
da4c3c73 JG |
368 | } |
369 | ||
d08faca0 | 370 | /* |
d2e8d551 | 371 | * We have handled all the valid cases above ie either none, migration, |
d08faca0 JG |
372 | * huge or transparent huge. At this point either it is a valid pmd |
373 | * entry pointing to pte directory or it is a bad pmd that will not | |
374 | * recover. | |
375 | */ | |
2288a9a6 | 376 | if (pmd_bad(pmd)) { |
a3eb13c1 | 377 | if (hmm_range_need_fault(hmm_vma_walk, pfns, npages, 0)) |
2288a9a6 | 378 | return -EFAULT; |
d28c2c9a | 379 | return hmm_pfns_fill(start, end, range, HMM_PFN_ERROR); |
2288a9a6 | 380 | } |
da4c3c73 JG |
381 | |
382 | ptep = pte_offset_map(pmdp, addr); | |
2288a9a6 | 383 | for (; addr < end; addr += PAGE_SIZE, ptep++, pfns++) { |
53f5c3f4 | 384 | int r; |
74eee180 | 385 | |
2288a9a6 | 386 | r = hmm_vma_handle_pte(walk, addr, end, pmdp, ptep, pfns); |
53f5c3f4 | 387 | if (r) { |
dfdc2207 | 388 | /* hmm_vma_handle_pte() did pte_unmap() */ |
53f5c3f4 JG |
389 | hmm_vma_walk->last = addr; |
390 | return r; | |
74eee180 | 391 | } |
da4c3c73 JG |
392 | } |
393 | pte_unmap(ptep - 1); | |
394 | ||
53f5c3f4 | 395 | hmm_vma_walk->last = addr; |
da4c3c73 JG |
396 | return 0; |
397 | } | |
398 | ||
f0b3c45c CH |
399 | #if defined(CONFIG_ARCH_HAS_PTE_DEVMAP) && \ |
400 | defined(CONFIG_HAVE_ARCH_TRANSPARENT_HUGEPAGE_PUD) | |
401 | static inline uint64_t pud_to_hmm_pfn_flags(struct hmm_range *range, pud_t pud) | |
402 | { | |
403 | if (!pud_present(pud)) | |
404 | return 0; | |
405 | return pud_write(pud) ? range->flags[HMM_PFN_VALID] | | |
406 | range->flags[HMM_PFN_WRITE] : | |
407 | range->flags[HMM_PFN_VALID]; | |
408 | } | |
409 | ||
410 | static int hmm_vma_walk_pud(pud_t *pudp, unsigned long start, unsigned long end, | |
411 | struct mm_walk *walk) | |
992de9a8 JG |
412 | { |
413 | struct hmm_vma_walk *hmm_vma_walk = walk->private; | |
414 | struct hmm_range *range = hmm_vma_walk->range; | |
3afc4236 | 415 | unsigned long addr = start; |
992de9a8 | 416 | pud_t pud; |
3afc4236 SP |
417 | int ret = 0; |
418 | spinlock_t *ptl = pud_trans_huge_lock(pudp, walk->vma); | |
419 | ||
420 | if (!ptl) | |
421 | return 0; | |
422 | ||
423 | /* Normally we don't want to split the huge page */ | |
424 | walk->action = ACTION_CONTINUE; | |
992de9a8 | 425 | |
992de9a8 | 426 | pud = READ_ONCE(*pudp); |
3afc4236 | 427 | if (pud_none(pud)) { |
05fc1df9 JG |
428 | spin_unlock(ptl); |
429 | return hmm_vma_walk_hole(start, end, -1, walk); | |
3afc4236 | 430 | } |
992de9a8 JG |
431 | |
432 | if (pud_huge(pud) && pud_devmap(pud)) { | |
433 | unsigned long i, npages, pfn; | |
a3eb13c1 | 434 | unsigned int required_fault; |
992de9a8 | 435 | uint64_t *pfns, cpu_flags; |
992de9a8 | 436 | |
3afc4236 | 437 | if (!pud_present(pud)) { |
05fc1df9 JG |
438 | spin_unlock(ptl); |
439 | return hmm_vma_walk_hole(start, end, -1, walk); | |
3afc4236 | 440 | } |
992de9a8 JG |
441 | |
442 | i = (addr - range->start) >> PAGE_SHIFT; | |
443 | npages = (end - addr) >> PAGE_SHIFT; | |
444 | pfns = &range->pfns[i]; | |
445 | ||
446 | cpu_flags = pud_to_hmm_pfn_flags(range, pud); | |
a3eb13c1 JG |
447 | required_fault = hmm_range_need_fault(hmm_vma_walk, pfns, |
448 | npages, cpu_flags); | |
449 | if (required_fault) { | |
05fc1df9 | 450 | spin_unlock(ptl); |
a3eb13c1 | 451 | return hmm_vma_fault(addr, end, required_fault, walk); |
3afc4236 | 452 | } |
992de9a8 | 453 | |
992de9a8 | 454 | pfn = pud_pfn(pud) + ((addr & ~PUD_MASK) >> PAGE_SHIFT); |
068354ad | 455 | for (i = 0; i < npages; ++i, ++pfn) |
391aab11 JG |
456 | pfns[i] = hmm_device_entry_from_pfn(range, pfn) | |
457 | cpu_flags; | |
992de9a8 | 458 | hmm_vma_walk->last = end; |
3afc4236 | 459 | goto out_unlock; |
992de9a8 JG |
460 | } |
461 | ||
3afc4236 SP |
462 | /* Ask for the PUD to be split */ |
463 | walk->action = ACTION_SUBTREE; | |
992de9a8 | 464 | |
3afc4236 SP |
465 | out_unlock: |
466 | spin_unlock(ptl); | |
467 | return ret; | |
992de9a8 | 468 | } |
f0b3c45c CH |
469 | #else |
470 | #define hmm_vma_walk_pud NULL | |
471 | #endif | |
992de9a8 | 472 | |
251bbe59 | 473 | #ifdef CONFIG_HUGETLB_PAGE |
63d5066f JG |
474 | static int hmm_vma_walk_hugetlb_entry(pte_t *pte, unsigned long hmask, |
475 | unsigned long start, unsigned long end, | |
476 | struct mm_walk *walk) | |
477 | { | |
05c23af4 | 478 | unsigned long addr = start, i, pfn; |
63d5066f JG |
479 | struct hmm_vma_walk *hmm_vma_walk = walk->private; |
480 | struct hmm_range *range = hmm_vma_walk->range; | |
481 | struct vm_area_struct *vma = walk->vma; | |
63d5066f | 482 | uint64_t orig_pfn, cpu_flags; |
a3eb13c1 | 483 | unsigned int required_fault; |
63d5066f JG |
484 | spinlock_t *ptl; |
485 | pte_t entry; | |
63d5066f | 486 | |
d2e8d551 | 487 | ptl = huge_pte_lock(hstate_vma(vma), walk->mm, pte); |
63d5066f JG |
488 | entry = huge_ptep_get(pte); |
489 | ||
7f08263d | 490 | i = (start - range->start) >> PAGE_SHIFT; |
63d5066f | 491 | orig_pfn = range->pfns[i]; |
63d5066f | 492 | cpu_flags = pte_to_hmm_pfn_flags(range, entry); |
a3eb13c1 JG |
493 | required_fault = hmm_pte_need_fault(hmm_vma_walk, orig_pfn, cpu_flags); |
494 | if (required_fault) { | |
45050692 | 495 | spin_unlock(ptl); |
a3eb13c1 | 496 | return hmm_vma_fault(addr, end, required_fault, walk); |
63d5066f JG |
497 | } |
498 | ||
05c23af4 | 499 | pfn = pte_pfn(entry) + ((start & ~hmask) >> PAGE_SHIFT); |
7f08263d | 500 | for (; addr < end; addr += PAGE_SIZE, i++, pfn++) |
391aab11 JG |
501 | range->pfns[i] = hmm_device_entry_from_pfn(range, pfn) | |
502 | cpu_flags; | |
63d5066f | 503 | hmm_vma_walk->last = end; |
63d5066f | 504 | spin_unlock(ptl); |
45050692 | 505 | return 0; |
63d5066f | 506 | } |
251bbe59 CH |
507 | #else |
508 | #define hmm_vma_walk_hugetlb_entry NULL | |
509 | #endif /* CONFIG_HUGETLB_PAGE */ | |
63d5066f | 510 | |
d28c2c9a RC |
511 | static int hmm_vma_walk_test(unsigned long start, unsigned long end, |
512 | struct mm_walk *walk) | |
33cd47dc | 513 | { |
d28c2c9a RC |
514 | struct hmm_vma_walk *hmm_vma_walk = walk->private; |
515 | struct hmm_range *range = hmm_vma_walk->range; | |
516 | struct vm_area_struct *vma = walk->vma; | |
517 | ||
a3eb13c1 JG |
518 | if (!(vma->vm_flags & (VM_IO | VM_PFNMAP | VM_MIXEDMAP)) && |
519 | vma->vm_flags & VM_READ) | |
520 | return 0; | |
521 | ||
d28c2c9a | 522 | /* |
a3eb13c1 JG |
523 | * vma ranges that don't have struct page backing them or map I/O |
524 | * devices directly cannot be handled by hmm_range_fault(). | |
c2579c9c | 525 | * |
d28c2c9a | 526 | * If the vma does not allow read access, then assume that it does not |
c2579c9c JG |
527 | * allow write access either. HMM does not support architectures that |
528 | * allow write without read. | |
a3eb13c1 JG |
529 | * |
530 | * If a fault is requested for an unsupported range then it is a hard | |
531 | * failure. | |
d28c2c9a | 532 | */ |
a3eb13c1 JG |
533 | if (hmm_range_need_fault(hmm_vma_walk, |
534 | range->pfns + | |
535 | ((start - range->start) >> PAGE_SHIFT), | |
536 | (end - start) >> PAGE_SHIFT, 0)) | |
537 | return -EFAULT; | |
d28c2c9a | 538 | |
a3eb13c1 JG |
539 | hmm_pfns_fill(start, end, range, HMM_PFN_ERROR); |
540 | hmm_vma_walk->last = end; | |
d28c2c9a | 541 | |
a3eb13c1 JG |
542 | /* Skip this vma and continue processing the next vma. */ |
543 | return 1; | |
33cd47dc JG |
544 | } |
545 | ||
7b86ac33 CH |
546 | static const struct mm_walk_ops hmm_walk_ops = { |
547 | .pud_entry = hmm_vma_walk_pud, | |
548 | .pmd_entry = hmm_vma_walk_pmd, | |
549 | .pte_hole = hmm_vma_walk_hole, | |
550 | .hugetlb_entry = hmm_vma_walk_hugetlb_entry, | |
d28c2c9a | 551 | .test_walk = hmm_vma_walk_test, |
7b86ac33 CH |
552 | }; |
553 | ||
9a4903e4 CH |
554 | /** |
555 | * hmm_range_fault - try to fault some address in a virtual address range | |
f970b977 | 556 | * @range: argument structure |
9a4903e4 CH |
557 | * |
558 | * Return: the number of valid pages in range->pfns[] (from range start | |
559 | * address), which may be zero. On error one of the following status codes | |
560 | * can be returned: | |
73231612 | 561 | * |
9a4903e4 CH |
562 | * -EINVAL: Invalid arguments or mm or virtual address is in an invalid vma |
563 | * (e.g., device file vma). | |
564 | * -ENOMEM: Out of memory. | |
565 | * -EPERM: Invalid permission (e.g., asking for write and range is read | |
566 | * only). | |
9a4903e4 CH |
567 | * -EBUSY: The range has been invalidated and the caller needs to wait for |
568 | * the invalidation to finish. | |
f970b977 JG |
569 | * -EFAULT: A page was requested to be valid and could not be made valid |
570 | * ie it has no backing VMA or it is illegal to access | |
74eee180 | 571 | * |
f970b977 JG |
572 | * This is similar to get_user_pages(), except that it can read the page tables |
573 | * without mutating them (ie causing faults). | |
74eee180 | 574 | */ |
6bfef2f9 | 575 | long hmm_range_fault(struct hmm_range *range) |
74eee180 | 576 | { |
d28c2c9a RC |
577 | struct hmm_vma_walk hmm_vma_walk = { |
578 | .range = range, | |
579 | .last = range->start, | |
d28c2c9a | 580 | }; |
a22dd506 | 581 | struct mm_struct *mm = range->notifier->mm; |
74eee180 JG |
582 | int ret; |
583 | ||
04ec32fb | 584 | lockdep_assert_held(&mm->mmap_sem); |
704f3f2c | 585 | |
a3e0d41c JG |
586 | do { |
587 | /* If range is no longer valid force retry. */ | |
a22dd506 JG |
588 | if (mmu_interval_check_retry(range->notifier, |
589 | range->notifier_seq)) | |
2bcbeaef | 590 | return -EBUSY; |
d28c2c9a RC |
591 | ret = walk_page_range(mm, hmm_vma_walk.last, range->end, |
592 | &hmm_walk_ops, &hmm_vma_walk); | |
593 | } while (ret == -EBUSY); | |
74eee180 | 594 | |
d28c2c9a RC |
595 | if (ret) |
596 | return ret; | |
73231612 | 597 | return (hmm_vma_walk.last - range->start) >> PAGE_SHIFT; |
74eee180 | 598 | } |
73231612 | 599 | EXPORT_SYMBOL(hmm_range_fault); |