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mm/thp: fix __split_huge_pmd_locked() for migration PMD
A migrating transparent huge page has to already be unmapped. Otherwise,
the page could be modified while it is being copied to a new page and data
could be lost. The function __split_huge_pmd() checks for a PMD migration
entry before calling __split_huge_pmd_locked() leading one to think that
__split_huge_pmd_locked() can handle splitting a migrating PMD.
However, the code always increments the page->_mapcount and adjusts the
memory control group accounting assuming the page is mapped.
Also, if the PMD entry is a migration PMD entry, the call to
is_huge_zero_pmd(*pmd) is incorrect because it calls pmd_pfn(pmd) instead
of migration_entry_to_pfn(pmd_to_swp_entry(pmd)). Fix these problems by
checking for a PMD migration entry.
Fixes: 84c3fc4e9c
("mm: thp: check pmd migration entry in common path")
Signed-off-by: Ralph Campbell <rcampbell@nvidia.com>
Signed-off-by: Andrew Morton <akpm@linux-foundation.org>
Reviewed-by: Yang Shi <shy828301@gmail.com>
Reviewed-by: Zi Yan <ziy@nvidia.com>
Cc: Jerome Glisse <jglisse@redhat.com>
Cc: John Hubbard <jhubbard@nvidia.com>
Cc: Alistair Popple <apopple@nvidia.com>
Cc: Christoph Hellwig <hch@lst.de>
Cc: Jason Gunthorpe <jgg@nvidia.com>
Cc: Bharata B Rao <bharata@linux.ibm.com>
Cc: Ben Skeggs <bskeggs@redhat.com>
Cc: Shuah Khan <shuah@kernel.org>
Cc: <stable@vger.kernel.org> [4.14+]
Link: https://lkml.kernel.org/r/20200903183140.19055-1-rcampbell@nvidia.com
Signed-off-by: Linus Torvalds <torvalds@linux-foundation.org>
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@ -2022,7 +2022,7 @@ static void __split_huge_pmd_locked(struct vm_area_struct *vma, pmd_t *pmd,
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put_page(page);
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add_mm_counter(mm, mm_counter_file(page), -HPAGE_PMD_NR);
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return;
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} else if (is_huge_zero_pmd(*pmd)) {
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} else if (pmd_trans_huge(*pmd) && is_huge_zero_pmd(*pmd)) {
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/*
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* FIXME: Do we want to invalidate secondary mmu by calling
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* mmu_notifier_invalidate_range() see comments below inside
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@ -2116,30 +2116,34 @@ static void __split_huge_pmd_locked(struct vm_area_struct *vma, pmd_t *pmd,
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pte = pte_offset_map(&_pmd, addr);
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BUG_ON(!pte_none(*pte));
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set_pte_at(mm, addr, pte, entry);
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atomic_inc(&page[i]._mapcount);
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if (!pmd_migration)
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atomic_inc(&page[i]._mapcount);
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pte_unmap(pte);
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}
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/*
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* Set PG_double_map before dropping compound_mapcount to avoid
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* false-negative page_mapped().
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*/
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if (compound_mapcount(page) > 1 && !TestSetPageDoubleMap(page)) {
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for (i = 0; i < HPAGE_PMD_NR; i++)
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atomic_inc(&page[i]._mapcount);
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}
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lock_page_memcg(page);
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if (atomic_add_negative(-1, compound_mapcount_ptr(page))) {
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/* Last compound_mapcount is gone. */
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__dec_lruvec_page_state(page, NR_ANON_THPS);
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if (TestClearPageDoubleMap(page)) {
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/* No need in mapcount reference anymore */
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if (!pmd_migration) {
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/*
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* Set PG_double_map before dropping compound_mapcount to avoid
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* false-negative page_mapped().
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*/
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if (compound_mapcount(page) > 1 &&
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!TestSetPageDoubleMap(page)) {
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for (i = 0; i < HPAGE_PMD_NR; i++)
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atomic_dec(&page[i]._mapcount);
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atomic_inc(&page[i]._mapcount);
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}
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lock_page_memcg(page);
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if (atomic_add_negative(-1, compound_mapcount_ptr(page))) {
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/* Last compound_mapcount is gone. */
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__dec_lruvec_page_state(page, NR_ANON_THPS);
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if (TestClearPageDoubleMap(page)) {
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/* No need in mapcount reference anymore */
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for (i = 0; i < HPAGE_PMD_NR; i++)
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atomic_dec(&page[i]._mapcount);
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}
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}
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unlock_page_memcg(page);
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}
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unlock_page_memcg(page);
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smp_wmb(); /* make pte visible before pmd */
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pmd_populate(mm, pmd, pgtable);
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