mm: swap: SWP_SYNCHRONOUS_IO: skip swapcache only if swapped page has no other reference
When SWP_SYNCHRONOUS_IO swapped-in pages are shared by several processes, it can cause unnecessary memory wastage by skipping swap cache. Because, with swapin fault by read, they could share a page if the page were in swap cache. Thus, it avoids allocating same content new pages. This patch makes the swapcache skipping work only if the swap pte is non-sharable. [akpm@linux-foundation.org: coding-style fixes] Link: http://lkml.kernel.org/r/1507620825-5537-1-git-send-email-minchan@kernel.org Signed-off-by: Minchan Kim <minchan@kernel.org> Cc: Dan Williams <dan.j.williams@intel.com> Cc: Ross Zwisler <ross.zwisler@linux.intel.com> Cc: Hugh Dickins <hughd@google.com> Cc: Christoph Hellwig <hch@lst.de> Cc: Ilya Dryomov <idryomov@gmail.com> Cc: Jens Axboe <axboe@kernel.dk> Cc: Sergey Senozhatsky <sergey.senozhatsky@gmail.com> Cc: Huang Ying <ying.huang@intel.com> Signed-off-by: Andrew Morton <akpm@linux-foundation.org> Signed-off-by: Linus Torvalds <torvalds@linux-foundation.org>
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@ -463,6 +463,7 @@ extern unsigned int count_swap_pages(int, int);
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extern sector_t map_swap_page(struct page *, struct block_device **);
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extern sector_t swapdev_block(int, pgoff_t);
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extern int page_swapcount(struct page *);
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extern int __swap_count(struct swap_info_struct *si, swp_entry_t entry);
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extern int __swp_swapcount(swp_entry_t entry);
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extern int swp_swapcount(swp_entry_t entry);
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extern struct swap_info_struct *page_swap_info(struct page *);
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@ -589,6 +590,11 @@ static inline int page_swapcount(struct page *page)
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return 0;
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}
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static inline int __swap_count(struct swap_info_struct *si, swp_entry_t entry)
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{
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return 0;
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}
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static inline int __swp_swapcount(swp_entry_t entry)
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{
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return 0;
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19
mm/memory.c
19
mm/memory.c
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@ -2890,15 +2890,8 @@ int do_swap_page(struct vm_fault *vmf)
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if (!page) {
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struct swap_info_struct *si = swp_swap_info(entry);
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if (!(si->flags & SWP_SYNCHRONOUS_IO)) {
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if (vma_readahead)
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page = do_swap_page_readahead(entry,
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GFP_HIGHUSER_MOVABLE, vmf, &swap_ra);
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else
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page = swapin_readahead(entry,
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GFP_HIGHUSER_MOVABLE, vma, vmf->address);
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swapcache = page;
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} else {
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if (si->flags & SWP_SYNCHRONOUS_IO &&
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__swap_count(si, entry) == 1) {
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/* skip swapcache */
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page = alloc_page_vma(GFP_HIGHUSER_MOVABLE, vma, vmf->address);
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if (page) {
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@ -2908,6 +2901,14 @@ int do_swap_page(struct vm_fault *vmf)
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lru_cache_add_anon(page);
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swap_readpage(page, true);
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}
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} else {
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if (vma_readahead)
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page = do_swap_page_readahead(entry,
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GFP_HIGHUSER_MOVABLE, vmf, &swap_ra);
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else
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page = swapin_readahead(entry,
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GFP_HIGHUSER_MOVABLE, vma, vmf->address);
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swapcache = page;
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}
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if (!page) {
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@ -1328,6 +1328,13 @@ int page_swapcount(struct page *page)
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return count;
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}
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int __swap_count(struct swap_info_struct *si, swp_entry_t entry)
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{
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pgoff_t offset = swp_offset(entry);
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return swap_count(si->swap_map[offset]);
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}
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static int swap_swapcount(struct swap_info_struct *si, swp_entry_t entry)
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{
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int count = 0;
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