From f13b83fdd996409e3dbf6f34c7629a9d13fdb9c1 Mon Sep 17 00:00:00 2001 From: Joao Martins Date: Wed, 18 Oct 2023 19:31:09 -0700 Subject: [PATCH] hugetlb: batch TLB flushes when freeing vmemmap Now that a list of pages is deduplicated at once, the TLB flush can be batched for all vmemmap pages that got remapped. Expand the flags field value to pass whether to skip the TLB flush on remap of the PTE. The TLB flush is global as we don't have guarantees from caller that the set of folios is contiguous, or to add complexity in composing a list of kVAs to flush. Modified by Mike Kravetz to perform TLB flush on single folio if an error is encountered. Link: https://lkml.kernel.org/r/20231019023113.345257-8-mike.kravetz@oracle.com Signed-off-by: Joao Martins Signed-off-by: Mike Kravetz Reviewed-by: Muchun Song Cc: Anshuman Khandual Cc: Barry Song <21cnbao@gmail.com> Cc: David Hildenbrand Cc: David Rientjes Cc: James Houghton Cc: Konrad Dybcio Cc: Matthew Wilcox (Oracle) Cc: Miaohe Lin Cc: Michal Hocko Cc: Naoya Horiguchi Cc: Oscar Salvador Cc: Sergey Senozhatsky Cc: Usama Arif Cc: Xiongchun Duan Signed-off-by: Andrew Morton --- mm/hugetlb_vmemmap.c | 49 ++++++++++++++++++++++++++++++++++---------- 1 file changed, 38 insertions(+), 11 deletions(-) diff --git a/mm/hugetlb_vmemmap.c b/mm/hugetlb_vmemmap.c index 10739e4285d5..9df350372046 100644 --- a/mm/hugetlb_vmemmap.c +++ b/mm/hugetlb_vmemmap.c @@ -40,6 +40,8 @@ struct vmemmap_remap_walk { /* Skip the TLB flush when we split the PMD */ #define VMEMMAP_SPLIT_NO_TLB_FLUSH BIT(0) +/* Skip the TLB flush when we remap the PTE */ +#define VMEMMAP_REMAP_NO_TLB_FLUSH BIT(1) unsigned long flags; }; @@ -214,7 +216,7 @@ static int vmemmap_remap_range(unsigned long start, unsigned long end, return ret; } while (pgd++, addr = next, addr != end); - if (walk->remap_pte) + if (walk->remap_pte && !(walk->flags & VMEMMAP_REMAP_NO_TLB_FLUSH)) flush_tlb_kernel_range(start, end); return 0; @@ -355,19 +357,21 @@ static int vmemmap_remap_split(unsigned long start, unsigned long end, * @reuse: reuse address. * @vmemmap_pages: list to deposit vmemmap pages to be freed. It is callers * responsibility to free pages. + * @flags: modifications to vmemmap_remap_walk flags * * Return: %0 on success, negative error code otherwise. */ static int vmemmap_remap_free(unsigned long start, unsigned long end, unsigned long reuse, - struct list_head *vmemmap_pages) + struct list_head *vmemmap_pages, + unsigned long flags) { int ret; struct vmemmap_remap_walk walk = { .remap_pte = vmemmap_remap_pte, .reuse_addr = reuse, .vmemmap_pages = vmemmap_pages, - .flags = 0, + .flags = flags, }; int nid = page_to_nid((struct page *)reuse); gfp_t gfp_mask = GFP_KERNEL | __GFP_NORETRY | __GFP_NOWARN; @@ -629,7 +633,8 @@ static bool vmemmap_should_optimize(const struct hstate *h, const struct page *h static int __hugetlb_vmemmap_optimize(const struct hstate *h, struct page *head, - struct list_head *vmemmap_pages) + struct list_head *vmemmap_pages, + unsigned long flags) { int ret = 0; unsigned long vmemmap_start = (unsigned long)head, vmemmap_end; @@ -640,6 +645,18 @@ static int __hugetlb_vmemmap_optimize(const struct hstate *h, return ret; static_branch_inc(&hugetlb_optimize_vmemmap_key); + /* + * Very Subtle + * If VMEMMAP_REMAP_NO_TLB_FLUSH is set, TLB flushing is not performed + * immediately after remapping. As a result, subsequent accesses + * and modifications to struct pages associated with the hugetlb + * page could be to the OLD struct pages. Set the vmemmap optimized + * flag here so that it is copied to the new head page. This keeps + * the old and new struct pages in sync. + * If there is an error during optimization, we will immediately FLUSH + * the TLB and clear the flag below. + */ + SetHPageVmemmapOptimized(head); vmemmap_end = vmemmap_start + hugetlb_vmemmap_size(h); vmemmap_reuse = vmemmap_start; @@ -651,11 +668,12 @@ static int __hugetlb_vmemmap_optimize(const struct hstate *h, * mapping the range to vmemmap_pages list so that they can be freed by * the caller. */ - ret = vmemmap_remap_free(vmemmap_start, vmemmap_end, vmemmap_reuse, vmemmap_pages); - if (ret) + ret = vmemmap_remap_free(vmemmap_start, vmemmap_end, vmemmap_reuse, + vmemmap_pages, flags); + if (ret) { static_branch_dec(&hugetlb_optimize_vmemmap_key); - else - SetHPageVmemmapOptimized(head); + ClearHPageVmemmapOptimized(head); + } return ret; } @@ -674,7 +692,7 @@ void hugetlb_vmemmap_optimize(const struct hstate *h, struct page *head) { LIST_HEAD(vmemmap_pages); - __hugetlb_vmemmap_optimize(h, head, &vmemmap_pages); + __hugetlb_vmemmap_optimize(h, head, &vmemmap_pages, 0); free_vmemmap_page_list(&vmemmap_pages); } @@ -719,19 +737,28 @@ void hugetlb_vmemmap_optimize_folios(struct hstate *h, struct list_head *folio_l list_for_each_entry(folio, folio_list, lru) { int ret = __hugetlb_vmemmap_optimize(h, &folio->page, - &vmemmap_pages); + &vmemmap_pages, + VMEMMAP_REMAP_NO_TLB_FLUSH); /* * Pages to be freed may have been accumulated. If we * encounter an ENOMEM, free what we have and try again. + * This can occur in the case that both spliting fails + * halfway and head page allocation also failed. In this + * case __hugetlb_vmemmap_optimize() would free memory + * allowing more vmemmap remaps to occur. */ if (ret == -ENOMEM && !list_empty(&vmemmap_pages)) { + flush_tlb_all(); free_vmemmap_page_list(&vmemmap_pages); INIT_LIST_HEAD(&vmemmap_pages); - __hugetlb_vmemmap_optimize(h, &folio->page, &vmemmap_pages); + __hugetlb_vmemmap_optimize(h, &folio->page, + &vmemmap_pages, + VMEMMAP_REMAP_NO_TLB_FLUSH); } } + flush_tlb_all(); free_vmemmap_page_list(&vmemmap_pages); }