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b2441318 | 1 | // SPDX-License-Identifier: GPL-2.0 |
e2cda322 AA |
2 | /* |
3 | * mm/pgtable-generic.c | |
4 | * | |
5 | * Generic pgtable methods declared in asm-generic/pgtable.h | |
6 | * | |
7 | * Copyright (C) 2010 Linus Torvalds | |
8 | */ | |
9 | ||
f95ba941 | 10 | #include <linux/pagemap.h> |
e2cda322 AA |
11 | #include <asm/tlb.h> |
12 | #include <asm-generic/pgtable.h> | |
13 | ||
bc4b4448 JK |
14 | /* |
15 | * If a p?d_bad entry is found while walking page tables, report | |
16 | * the error, before resetting entry to p?d_none. Usually (but | |
17 | * very seldom) called out from the p?d_none_or_clear_bad macros. | |
18 | */ | |
19 | ||
20 | void pgd_clear_bad(pgd_t *pgd) | |
21 | { | |
22 | pgd_ERROR(*pgd); | |
23 | pgd_clear(pgd); | |
24 | } | |
25 | ||
c2febafc KS |
26 | void p4d_clear_bad(p4d_t *p4d) |
27 | { | |
28 | p4d_ERROR(*p4d); | |
29 | p4d_clear(p4d); | |
30 | } | |
31 | ||
bc4b4448 JK |
32 | void pud_clear_bad(pud_t *pud) |
33 | { | |
34 | pud_ERROR(*pud); | |
35 | pud_clear(pud); | |
36 | } | |
37 | ||
38 | void pmd_clear_bad(pmd_t *pmd) | |
39 | { | |
40 | pmd_ERROR(*pmd); | |
41 | pmd_clear(pmd); | |
42 | } | |
43 | ||
e2cda322 AA |
44 | #ifndef __HAVE_ARCH_PTEP_SET_ACCESS_FLAGS |
45 | /* | |
cef23d9d RR |
46 | * Only sets the access flags (dirty, accessed), as well as write |
47 | * permission. Furthermore, we know it always gets set to a "more | |
e2cda322 AA |
48 | * permissive" setting, which allows most architectures to optimize |
49 | * this. We return whether the PTE actually changed, which in turn | |
50 | * instructs the caller to do things like update__mmu_cache. This | |
51 | * used to be done in the caller, but sparc needs minor faults to | |
52 | * force that call on sun4c so we changed this macro slightly | |
53 | */ | |
54 | int ptep_set_access_flags(struct vm_area_struct *vma, | |
55 | unsigned long address, pte_t *ptep, | |
56 | pte_t entry, int dirty) | |
57 | { | |
58 | int changed = !pte_same(*ptep, entry); | |
59 | if (changed) { | |
60 | set_pte_at(vma->vm_mm, address, ptep, entry); | |
cef23d9d | 61 | flush_tlb_fix_spurious_fault(vma, address); |
e2cda322 AA |
62 | } |
63 | return changed; | |
64 | } | |
65 | #endif | |
66 | ||
52585bcc VG |
67 | #ifndef __HAVE_ARCH_PTEP_CLEAR_YOUNG_FLUSH |
68 | int ptep_clear_flush_young(struct vm_area_struct *vma, | |
69 | unsigned long address, pte_t *ptep) | |
70 | { | |
71 | int young; | |
72 | young = ptep_test_and_clear_young(vma, address, ptep); | |
73 | if (young) | |
74 | flush_tlb_page(vma, address); | |
75 | return young; | |
76 | } | |
77 | #endif | |
78 | ||
79 | #ifndef __HAVE_ARCH_PTEP_CLEAR_FLUSH | |
80 | pte_t ptep_clear_flush(struct vm_area_struct *vma, unsigned long address, | |
81 | pte_t *ptep) | |
82 | { | |
83 | struct mm_struct *mm = (vma)->vm_mm; | |
84 | pte_t pte; | |
85 | pte = ptep_get_and_clear(mm, address, ptep); | |
86 | if (pte_accessible(mm, pte)) | |
87 | flush_tlb_page(vma, address); | |
88 | return pte; | |
89 | } | |
90 | #endif | |
91 | ||
bd5e88ad VG |
92 | #ifdef CONFIG_TRANSPARENT_HUGEPAGE |
93 | ||
e2cda322 AA |
94 | #ifndef __HAVE_ARCH_PMDP_SET_ACCESS_FLAGS |
95 | int pmdp_set_access_flags(struct vm_area_struct *vma, | |
96 | unsigned long address, pmd_t *pmdp, | |
97 | pmd_t entry, int dirty) | |
98 | { | |
e2cda322 AA |
99 | int changed = !pmd_same(*pmdp, entry); |
100 | VM_BUG_ON(address & ~HPAGE_PMD_MASK); | |
101 | if (changed) { | |
102 | set_pmd_at(vma->vm_mm, address, pmdp, entry); | |
12ebc158 | 103 | flush_pmd_tlb_range(vma, address, address + HPAGE_PMD_SIZE); |
e2cda322 AA |
104 | } |
105 | return changed; | |
e2cda322 AA |
106 | } |
107 | #endif | |
108 | ||
e2cda322 AA |
109 | #ifndef __HAVE_ARCH_PMDP_CLEAR_YOUNG_FLUSH |
110 | int pmdp_clear_flush_young(struct vm_area_struct *vma, | |
111 | unsigned long address, pmd_t *pmdp) | |
112 | { | |
113 | int young; | |
d8c37c48 | 114 | VM_BUG_ON(address & ~HPAGE_PMD_MASK); |
e2cda322 AA |
115 | young = pmdp_test_and_clear_young(vma, address, pmdp); |
116 | if (young) | |
12ebc158 | 117 | flush_pmd_tlb_range(vma, address, address + HPAGE_PMD_SIZE); |
e2cda322 AA |
118 | return young; |
119 | } | |
120 | #endif | |
121 | ||
8809aa2d | 122 | #ifndef __HAVE_ARCH_PMDP_HUGE_CLEAR_FLUSH |
8809aa2d AK |
123 | pmd_t pmdp_huge_clear_flush(struct vm_area_struct *vma, unsigned long address, |
124 | pmd_t *pmdp) | |
e2cda322 AA |
125 | { |
126 | pmd_t pmd; | |
e2cda322 | 127 | VM_BUG_ON(address & ~HPAGE_PMD_MASK); |
616b8371 ZY |
128 | VM_BUG_ON((pmd_present(*pmdp) && !pmd_trans_huge(*pmdp) && |
129 | !pmd_devmap(*pmdp)) || !pmd_present(*pmdp)); | |
8809aa2d | 130 | pmd = pmdp_huge_get_and_clear(vma->vm_mm, address, pmdp); |
12ebc158 | 131 | flush_pmd_tlb_range(vma, address, address + HPAGE_PMD_SIZE); |
e2cda322 AA |
132 | return pmd; |
133 | } | |
a00cc7d9 MW |
134 | |
135 | #ifdef CONFIG_HAVE_ARCH_TRANSPARENT_HUGEPAGE_PUD | |
136 | pud_t pudp_huge_clear_flush(struct vm_area_struct *vma, unsigned long address, | |
137 | pud_t *pudp) | |
138 | { | |
139 | pud_t pud; | |
140 | ||
141 | VM_BUG_ON(address & ~HPAGE_PUD_MASK); | |
142 | VM_BUG_ON(!pud_trans_huge(*pudp) && !pud_devmap(*pudp)); | |
143 | pud = pudp_huge_get_and_clear(vma->vm_mm, address, pudp); | |
144 | flush_pud_tlb_range(vma, address, address + HPAGE_PUD_SIZE); | |
145 | return pud; | |
146 | } | |
147 | #endif | |
e2cda322 AA |
148 | #endif |
149 | ||
e3ebcf64 | 150 | #ifndef __HAVE_ARCH_PGTABLE_DEPOSIT |
6b0b50b0 AK |
151 | void pgtable_trans_huge_deposit(struct mm_struct *mm, pmd_t *pmdp, |
152 | pgtable_t pgtable) | |
e3ebcf64 | 153 | { |
c4088ebd | 154 | assert_spin_locked(pmd_lockptr(mm, pmdp)); |
e3ebcf64 GS |
155 | |
156 | /* FIFO */ | |
c389a250 | 157 | if (!pmd_huge_pte(mm, pmdp)) |
e3ebcf64 GS |
158 | INIT_LIST_HEAD(&pgtable->lru); |
159 | else | |
c389a250 KS |
160 | list_add(&pgtable->lru, &pmd_huge_pte(mm, pmdp)->lru); |
161 | pmd_huge_pte(mm, pmdp) = pgtable; | |
e3ebcf64 | 162 | } |
e3ebcf64 GS |
163 | #endif |
164 | ||
165 | #ifndef __HAVE_ARCH_PGTABLE_WITHDRAW | |
e3ebcf64 | 166 | /* no "address" argument so destroys page coloring of some arch */ |
6b0b50b0 | 167 | pgtable_t pgtable_trans_huge_withdraw(struct mm_struct *mm, pmd_t *pmdp) |
e3ebcf64 GS |
168 | { |
169 | pgtable_t pgtable; | |
170 | ||
c4088ebd | 171 | assert_spin_locked(pmd_lockptr(mm, pmdp)); |
e3ebcf64 GS |
172 | |
173 | /* FIFO */ | |
c389a250 | 174 | pgtable = pmd_huge_pte(mm, pmdp); |
14669347 GT |
175 | pmd_huge_pte(mm, pmdp) = list_first_entry_or_null(&pgtable->lru, |
176 | struct page, lru); | |
177 | if (pmd_huge_pte(mm, pmdp)) | |
e3ebcf64 | 178 | list_del(&pgtable->lru); |
e3ebcf64 GS |
179 | return pgtable; |
180 | } | |
e3ebcf64 | 181 | #endif |
46dcde73 GS |
182 | |
183 | #ifndef __HAVE_ARCH_PMDP_INVALIDATE | |
d52605d7 | 184 | pmd_t pmdp_invalidate(struct vm_area_struct *vma, unsigned long address, |
46dcde73 GS |
185 | pmd_t *pmdp) |
186 | { | |
d52605d7 | 187 | pmd_t old = pmdp_establish(vma, address, pmdp, pmd_mknotpresent(*pmdp)); |
12ebc158 | 188 | flush_pmd_tlb_range(vma, address, address + HPAGE_PMD_SIZE); |
d52605d7 | 189 | return old; |
46dcde73 | 190 | } |
46dcde73 | 191 | #endif |
f28b6ff8 AK |
192 | |
193 | #ifndef pmdp_collapse_flush | |
f28b6ff8 AK |
194 | pmd_t pmdp_collapse_flush(struct vm_area_struct *vma, unsigned long address, |
195 | pmd_t *pmdp) | |
196 | { | |
8809aa2d AK |
197 | /* |
198 | * pmd and hugepage pte format are same. So we could | |
199 | * use the same function. | |
200 | */ | |
f28b6ff8 AK |
201 | pmd_t pmd; |
202 | ||
203 | VM_BUG_ON(address & ~HPAGE_PMD_MASK); | |
204 | VM_BUG_ON(pmd_trans_huge(*pmdp)); | |
8809aa2d | 205 | pmd = pmdp_huge_get_and_clear(vma->vm_mm, address, pmdp); |
6a6ac72f VG |
206 | |
207 | /* collapse entails shooting down ptes not pmd */ | |
208 | flush_tlb_range(vma, address, address + HPAGE_PMD_SIZE); | |
f28b6ff8 AK |
209 | return pmd; |
210 | } | |
f28b6ff8 | 211 | #endif |
bd5e88ad | 212 | #endif /* CONFIG_TRANSPARENT_HUGEPAGE */ |