2 #include <linux/highmem.h>
3 #include <linux/sched.h>
4 #include <linux/hugetlb.h>
6 static int walk_pte_range(pmd_t
*pmd
, unsigned long addr
, unsigned long end
,
12 pte
= pte_offset_map(pmd
, addr
);
14 err
= walk
->pte_entry(pte
, addr
, addr
+ PAGE_SIZE
, walk
);
27 static int walk_pmd_range(pud_t
*pud
, unsigned long addr
, unsigned long end
,
34 pmd
= pmd_offset(pud
, addr
);
36 next
= pmd_addr_end(addr
, end
);
37 if (pmd_none_or_clear_bad(pmd
)) {
39 err
= walk
->pte_hole(addr
, next
, walk
);
45 err
= walk
->pmd_entry(pmd
, addr
, next
, walk
);
46 if (!err
&& walk
->pte_entry
)
47 err
= walk_pte_range(pmd
, addr
, next
, walk
);
50 } while (pmd
++, addr
= next
, addr
!= end
);
55 static int walk_pud_range(pgd_t
*pgd
, unsigned long addr
, unsigned long end
,
62 pud
= pud_offset(pgd
, addr
);
64 next
= pud_addr_end(addr
, end
);
65 if (pud_none_or_clear_bad(pud
)) {
67 err
= walk
->pte_hole(addr
, next
, walk
);
73 err
= walk
->pud_entry(pud
, addr
, next
, walk
);
74 if (!err
&& (walk
->pmd_entry
|| walk
->pte_entry
))
75 err
= walk_pmd_range(pud
, addr
, next
, walk
);
78 } while (pud
++, addr
= next
, addr
!= end
);
83 #ifdef CONFIG_HUGETLB_PAGE
84 static unsigned long hugetlb_entry_end(struct hstate
*h
, unsigned long addr
,
87 unsigned long boundary
= (addr
& huge_page_mask(h
)) + huge_page_size(h
);
88 return boundary
< end
? boundary
: end
;
91 static int walk_hugetlb_range(struct vm_area_struct
*vma
,
92 unsigned long addr
, unsigned long end
,
95 struct hstate
*h
= hstate_vma(vma
);
97 unsigned long hmask
= huge_page_mask(h
);
102 next
= hugetlb_entry_end(h
, addr
, end
);
103 pte
= huge_pte_offset(walk
->mm
, addr
& hmask
);
104 if (pte
&& walk
->hugetlb_entry
)
105 err
= walk
->hugetlb_entry(pte
, hmask
, addr
, next
, walk
);
108 } while (addr
= next
, addr
!= end
);
115 * walk_page_range - walk a memory map's page tables with a callback
116 * @mm: memory map to walk
117 * @addr: starting address
118 * @end: ending address
119 * @walk: set of callbacks to invoke for each level of the tree
121 * Recursively walk the page table for the memory area in a VMA,
122 * calling supplied callbacks. Callbacks are called in-order (first
123 * PGD, first PUD, first PMD, first PTE, second PTE... second PMD,
124 * etc.). If lower-level callbacks are omitted, walking depth is reduced.
126 * Each callback receives an entry pointer and the start and end of the
127 * associated range, and a copy of the original mm_walk for access to
128 * the ->private or ->mm fields.
130 * No locks are taken, but the bottom level iterator will map PTE
131 * directories from highmem if necessary.
133 * If any callback returns a non-zero value, the walk is aborted and
134 * the return value is propagated back to the caller. Otherwise 0 is returned.
136 int walk_page_range(unsigned long addr
, unsigned long end
,
137 struct mm_walk
*walk
)
142 struct vm_area_struct
*vma
;
150 pgd
= pgd_offset(walk
->mm
, addr
);
152 next
= pgd_addr_end(addr
, end
);
155 * handle hugetlb vma individually because pagetable walk for
156 * the hugetlb page is dependent on the architecture and
157 * we can't handled it in the same manner as non-huge pages.
159 vma
= find_vma(walk
->mm
, addr
);
160 #ifdef CONFIG_HUGETLB_PAGE
161 if (vma
&& is_vm_hugetlb_page(vma
)) {
162 if (vma
->vm_end
< next
)
165 * Hugepage is very tightly coupled with vma, so
166 * walk through hugetlb entries within a given vma.
168 err
= walk_hugetlb_range(vma
, addr
, next
, walk
);
171 pgd
= pgd_offset(walk
->mm
, next
);
175 if (pgd_none_or_clear_bad(pgd
)) {
177 err
= walk
->pte_hole(addr
, next
, walk
);
184 err
= walk
->pgd_entry(pgd
, addr
, next
, walk
);
186 (walk
->pud_entry
|| walk
->pmd_entry
|| walk
->pte_entry
))
187 err
= walk_pud_range(pgd
, addr
, next
, walk
);
191 } while (addr
= next
, addr
!= end
);