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Compound page (folio) mapcount calculations have been different for anon and file (or shmem) THPs, and involved the obscure PageDoubleMap flag. And each huge mapping and unmapping of a file (or shmem) THP involved atomically incrementing and decrementing the mapcount of every subpage of that huge page, dirtying many struct page cachelines. Add subpages_mapcount field to the struct folio and first tail page, so that the total of subpage mapcounts is available in one place near the head: then page_mapcount() and total_mapcount() and page_mapped(), and their folio equivalents, are so quick that anon and file and hugetlb don't need to be optimized differently. Delete the unloved PageDoubleMap. page_add and page_remove rmap functions must now maintain the subpages_mapcount as well as the subpage _mapcount, when dealing with pte mappings of huge pages; and correct maintenance of NR_ANON_MAPPED and NR_FILE_MAPPED statistics still needs reading through the subpages, using nr_subpages_unmapped() - but only when first or last pmd mapping finds subpages_mapcount raised (double-map case, not the common case). But are those counts (used to decide when to split an anon THP, and in vmscan's pagecache_reclaimable heuristic) correctly maintained? Not quite: since page_remove_rmap() (and also split_huge_pmd()) is often called without page lock, there can be races when a subpage pte mapcount 0<->1 while compound pmd mapcount 0<->1 is scanning - races which the previous implementation had prevented. The statistics might become inaccurate, and even drift down until they underflow through 0. That is not good enough, but is better dealt with in a followup patch. Update a few comments on first and second tail page overlaid fields. hugepage_add_new_anon_rmap() has to "increment" compound_mapcount, but subpages_mapcount and compound_pincount are already correctly at 0, so delete its reinitialization of compound_pincount. A simple 100 X munmap(mmap(2GB, MAP_SHARED|MAP_POPULATE, tmpfs), 2GB) took 18 seconds on small pages, and used to take 1 second on huge pages, but now takes 119 milliseconds on huge pages. Mapping by pmds a second time used to take 860ms and now takes 92ms; mapping by pmds after mapping by ptes (when the scan is needed) used to take 870ms and now takes 495ms. But there might be some benchmarks which would show a slowdown, because tail struct pages now fall out of cache until final freeing checks them. Link: https://lkml.kernel.org/r/47ad693-717-79c8-e1ba-46c3a6602e48@google.com Signed-off-by: Hugh Dickins <hughd@google.com> Acked-by: Kirill A. Shutemov <kirill.shutemov@linux.intel.com> Cc: David Hildenbrand <david@redhat.com> Cc: James Houghton <jthoughton@google.com> Cc: John Hubbard <jhubbard@nvidia.com> Cc: Matthew Wilcox (Oracle) <willy@infradead.org> Cc: Miaohe Lin <linmiaohe@huawei.com> Cc: Mike Kravetz <mike.kravetz@oracle.com> Cc: Mina Almasry <almasrymina@google.com> Cc: Muchun Song <songmuchun@bytedance.com> Cc: Naoya Horiguchi <naoya.horiguchi@linux.dev> Cc: Peter Xu <peterx@redhat.com> Cc: Sidhartha Kumar <sidhartha.kumar@oracle.com> Cc: Vlastimil Babka <vbabka@suse.cz> Cc: Yang Shi <shy828301@gmail.com> Cc: Zach O'Keefe <zokeefe@google.com> Signed-off-by: Andrew Morton <akpm@linux-foundation.org>
264 lines
6.7 KiB
C
264 lines
6.7 KiB
C
// SPDX-License-Identifier: GPL-2.0
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/*
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* mm/debug.c
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*
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* mm/ specific debug routines.
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*
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*/
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#include <linux/kernel.h>
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#include <linux/mm.h>
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#include <linux/trace_events.h>
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#include <linux/memcontrol.h>
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#include <trace/events/mmflags.h>
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#include <linux/migrate.h>
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#include <linux/page_owner.h>
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#include <linux/ctype.h>
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#include "internal.h"
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#include <trace/events/migrate.h>
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/*
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* Define EM() and EMe() so that MIGRATE_REASON from trace/events/migrate.h can
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* be used to populate migrate_reason_names[].
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*/
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#undef EM
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#undef EMe
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#define EM(a, b) b,
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#define EMe(a, b) b
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const char *migrate_reason_names[MR_TYPES] = {
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MIGRATE_REASON
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};
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const struct trace_print_flags pageflag_names[] = {
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__def_pageflag_names,
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{0, NULL}
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};
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const struct trace_print_flags gfpflag_names[] = {
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__def_gfpflag_names,
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{0, NULL}
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};
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const struct trace_print_flags vmaflag_names[] = {
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__def_vmaflag_names,
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{0, NULL}
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};
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static void __dump_page(struct page *page)
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{
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struct folio *folio = page_folio(page);
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struct page *head = &folio->page;
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struct address_space *mapping;
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bool compound = PageCompound(page);
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/*
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* Accessing the pageblock without the zone lock. It could change to
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* "isolate" again in the meantime, but since we are just dumping the
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* state for debugging, it should be fine to accept a bit of
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* inaccuracy here due to racing.
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*/
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bool page_cma = is_migrate_cma_page(page);
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int mapcount;
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char *type = "";
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if (page < head || (page >= head + MAX_ORDER_NR_PAGES)) {
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/*
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* Corrupt page, so we cannot call page_mapping. Instead, do a
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* safe subset of the steps that page_mapping() does. Caution:
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* this will be misleading for tail pages, PageSwapCache pages,
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* and potentially other situations. (See the page_mapping()
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* implementation for what's missing here.)
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*/
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unsigned long tmp = (unsigned long)page->mapping;
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if (tmp & PAGE_MAPPING_ANON)
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mapping = NULL;
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else
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mapping = (void *)(tmp & ~PAGE_MAPPING_FLAGS);
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head = page;
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folio = (struct folio *)page;
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compound = false;
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} else {
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mapping = page_mapping(page);
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}
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/*
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* Avoid VM_BUG_ON() in page_mapcount().
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* page->_mapcount space in struct page is used by sl[aou]b pages to
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* encode own info.
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*/
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mapcount = PageSlab(head) ? 0 : page_mapcount(page);
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pr_warn("page:%p refcount:%d mapcount:%d mapping:%p index:%#lx pfn:%#lx\n",
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page, page_ref_count(head), mapcount, mapping,
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page_to_pgoff(page), page_to_pfn(page));
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if (compound) {
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pr_warn("head:%p order:%u compound_mapcount:%d subpages_mapcount:%d compound_pincount:%d\n",
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head, compound_order(head),
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head_compound_mapcount(head),
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head_subpages_mapcount(head),
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head_compound_pincount(head));
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}
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#ifdef CONFIG_MEMCG
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if (head->memcg_data)
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pr_warn("memcg:%lx\n", head->memcg_data);
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#endif
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if (PageKsm(page))
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type = "ksm ";
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else if (PageAnon(page))
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type = "anon ";
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else if (mapping)
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dump_mapping(mapping);
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BUILD_BUG_ON(ARRAY_SIZE(pageflag_names) != __NR_PAGEFLAGS + 1);
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pr_warn("%sflags: %pGp%s\n", type, &head->flags,
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page_cma ? " CMA" : "");
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print_hex_dump(KERN_WARNING, "raw: ", DUMP_PREFIX_NONE, 32,
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sizeof(unsigned long), page,
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sizeof(struct page), false);
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if (head != page)
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print_hex_dump(KERN_WARNING, "head: ", DUMP_PREFIX_NONE, 32,
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sizeof(unsigned long), head,
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sizeof(struct page), false);
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}
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void dump_page(struct page *page, const char *reason)
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{
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if (PagePoisoned(page))
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pr_warn("page:%p is uninitialized and poisoned", page);
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else
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__dump_page(page);
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if (reason)
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pr_warn("page dumped because: %s\n", reason);
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dump_page_owner(page);
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}
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EXPORT_SYMBOL(dump_page);
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#ifdef CONFIG_DEBUG_VM
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void dump_vma(const struct vm_area_struct *vma)
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{
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pr_emerg("vma %px start %px end %px mm %px\n"
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"prot %lx anon_vma %px vm_ops %px\n"
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"pgoff %lx file %px private_data %px\n"
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"flags: %#lx(%pGv)\n",
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vma, (void *)vma->vm_start, (void *)vma->vm_end, vma->vm_mm,
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(unsigned long)pgprot_val(vma->vm_page_prot),
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vma->anon_vma, vma->vm_ops, vma->vm_pgoff,
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vma->vm_file, vma->vm_private_data,
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vma->vm_flags, &vma->vm_flags);
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}
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EXPORT_SYMBOL(dump_vma);
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void dump_mm(const struct mm_struct *mm)
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{
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pr_emerg("mm %px task_size %lu\n"
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#ifdef CONFIG_MMU
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"get_unmapped_area %px\n"
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#endif
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"mmap_base %lu mmap_legacy_base %lu\n"
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"pgd %px mm_users %d mm_count %d pgtables_bytes %lu map_count %d\n"
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"hiwater_rss %lx hiwater_vm %lx total_vm %lx locked_vm %lx\n"
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"pinned_vm %llx data_vm %lx exec_vm %lx stack_vm %lx\n"
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"start_code %lx end_code %lx start_data %lx end_data %lx\n"
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"start_brk %lx brk %lx start_stack %lx\n"
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"arg_start %lx arg_end %lx env_start %lx env_end %lx\n"
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"binfmt %px flags %lx\n"
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#ifdef CONFIG_AIO
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"ioctx_table %px\n"
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#endif
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#ifdef CONFIG_MEMCG
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"owner %px "
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#endif
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"exe_file %px\n"
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#ifdef CONFIG_MMU_NOTIFIER
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"notifier_subscriptions %px\n"
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#endif
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#ifdef CONFIG_NUMA_BALANCING
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"numa_next_scan %lu numa_scan_offset %lu numa_scan_seq %d\n"
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#endif
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"tlb_flush_pending %d\n"
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"def_flags: %#lx(%pGv)\n",
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mm, mm->task_size,
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#ifdef CONFIG_MMU
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mm->get_unmapped_area,
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#endif
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mm->mmap_base, mm->mmap_legacy_base,
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mm->pgd, atomic_read(&mm->mm_users),
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atomic_read(&mm->mm_count),
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mm_pgtables_bytes(mm),
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mm->map_count,
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mm->hiwater_rss, mm->hiwater_vm, mm->total_vm, mm->locked_vm,
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(u64)atomic64_read(&mm->pinned_vm),
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mm->data_vm, mm->exec_vm, mm->stack_vm,
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mm->start_code, mm->end_code, mm->start_data, mm->end_data,
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mm->start_brk, mm->brk, mm->start_stack,
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mm->arg_start, mm->arg_end, mm->env_start, mm->env_end,
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mm->binfmt, mm->flags,
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#ifdef CONFIG_AIO
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mm->ioctx_table,
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#endif
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#ifdef CONFIG_MEMCG
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mm->owner,
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#endif
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mm->exe_file,
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#ifdef CONFIG_MMU_NOTIFIER
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mm->notifier_subscriptions,
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#endif
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#ifdef CONFIG_NUMA_BALANCING
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mm->numa_next_scan, mm->numa_scan_offset, mm->numa_scan_seq,
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#endif
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atomic_read(&mm->tlb_flush_pending),
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mm->def_flags, &mm->def_flags
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);
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}
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static bool page_init_poisoning __read_mostly = true;
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static int __init setup_vm_debug(char *str)
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{
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bool __page_init_poisoning = true;
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/*
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* Calling vm_debug with no arguments is equivalent to requesting
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* to enable all debugging options we can control.
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*/
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if (*str++ != '=' || !*str)
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goto out;
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__page_init_poisoning = false;
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if (*str == '-')
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goto out;
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while (*str) {
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switch (tolower(*str)) {
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case'p':
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__page_init_poisoning = true;
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break;
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default:
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pr_err("vm_debug option '%c' unknown. skipped\n",
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*str);
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}
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str++;
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}
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out:
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if (page_init_poisoning && !__page_init_poisoning)
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pr_warn("Page struct poisoning disabled by kernel command line option 'vm_debug'\n");
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page_init_poisoning = __page_init_poisoning;
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return 1;
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}
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__setup("vm_debug", setup_vm_debug);
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void page_init_poison(struct page *page, size_t size)
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{
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if (page_init_poisoning)
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memset(page, PAGE_POISON_PATTERN, size);
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}
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#endif /* CONFIG_DEBUG_VM */
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