Re: [PATCH linux-next v3] mm, page_pool: introduce a new page type for page pool in page type
From: Zi Yan <ziy@nvidia.com>
Date: 2025-07-29 14:20:47
Also in:
bpf, linux-mm, linux-rdma, lkml
On 29 Jul 2025, at 7:02, Byungchul Park wrote:
Changes from v2: 1. Rebase on linux-next as of Jul 29. 2. Skip 'niov->pp = NULL' when it's allocated using __GFP_ZERO. 3. Change trivial coding style. (feedbacked by Mina) 4. Add Co-developed-by, Acked-by, and Reviewed-by properly. Thanks to all. Changes from v1: 1. Rebase on linux-next. 2. Initialize net_iov->pp = NULL when allocating net_iov in net_devmem_bind_dmabuf() and io_zcrx_create_area(). 3. Use ->pp for net_iov to identify if it's pp rather than always consider net_iov as pp. 4. Add Suggested-by: David Hildenbrand [off-list ref]. ---8<--- From 88bcb9907a0cef65a9c0adf35e144f9eb67e0542 Mon Sep 17 00:00:00 2001 From: Byungchul Park <byungchul@sk.com> Date: Tue, 29 Jul 2025 19:49:44 +0900 Subject: [PATCH linux-next v3] mm, page_pool: introduce a new page type for page pool in page type ->pp_magic field in struct page is current used to identify if a page belongs to a page pool. However, ->pp_magic will be removed and page type bit in struct page e.i. PGTY_netpp can be used for that purpose. Introduce and use the page type APIs e.g. PageNetpp(), __SetPageNetpp(), and __ClearPageNetpp() instead, and remove the existing APIs accessing ->pp_magic e.g. page_pool_page_is_pp(), netmem_or_pp_magic(), and netmem_clear_pp_magic(). For net_iov, use ->pp to identify if it's pp, with making sure that ->pp is NULL for non-pp net_iov. This work was inspired by the following link: [1] https://lore.kernel.org/all/582f41c0-2742-4400-9c81-0d46bf4e8314@gmail.com/ (local) While at it, move the sanity check for page pool to on free. Suggested-by: David Hildenbrand <redacted> Co-developed-by: Pavel Begunkov <asml.silence@gmail.com> Signed-off-by: Pavel Begunkov <asml.silence@gmail.com> Signed-off-by: Byungchul Park <byungchul@sk.com> Acked-by: David Hildenbrand <redacted> Reviewed-by: Mina Almasry <redacted> --- .../net/ethernet/mellanox/mlx5/core/en/xdp.c | 2 +- include/linux/mm.h | 27 +++---------------- include/linux/page-flags.h | 6 +++++ include/net/netmem.h | 2 +- io_uring/zcrx.c | 4 +++ mm/page_alloc.c | 7 +++-- net/core/devmem.c | 1 + net/core/netmem_priv.h | 23 +++++++--------- net/core/page_pool.c | 10 +++++-- 9 files changed, 37 insertions(+), 45 deletions(-)
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diff --git a/include/linux/mm.h b/include/linux/mm.h index 0d4ee569aa6b..d01b296e7184 100644 --- a/include/linux/mm.h +++ b/include/linux/mm.h@@ -4171,10 +4171,9 @@ int arch_lock_shadow_stack_status(struct task_struct *t, unsigned long status); * DMA mapping IDs for page_pool * * When DMA-mapping a page, page_pool allocates an ID (from an xarray) and - * stashes it in the upper bits of page->pp_magic. We always want to be able to - * unambiguously identify page pool pages (using page_pool_page_is_pp()). Non-PP - * pages can have arbitrary kernel pointers stored in the same field as pp_magic - * (since it overlaps with page->lru.next), so we must ensure that we cannot + * stashes it in the upper bits of page->pp_magic. Non-PP pages can have + * arbitrary kernel pointers stored in the same field as pp_magic (since + * it overlaps with page->lru.next), so we must ensure that we cannot * mistake a valid kernel pointer with any of the values we write into this * field. *@@ -4205,26 +4204,6 @@ int arch_lock_shadow_stack_status(struct task_struct *t, unsigned long status); #define PP_DMA_INDEX_MASK GENMASK(PP_DMA_INDEX_BITS + PP_DMA_INDEX_SHIFT - 1, \ PP_DMA_INDEX_SHIFT) -/* Mask used for checking in page_pool_page_is_pp() below. page->pp_magic is - * OR'ed with PP_SIGNATURE after the allocation in order to preserve bit 0 for - * the head page of compound page and bit 1 for pfmemalloc page, as well as the - * bits used for the DMA index. page_is_pfmemalloc() is checked in - * __page_pool_put_page() to avoid recycling the pfmemalloc page. - */ -#define PP_MAGIC_MASK ~(PP_DMA_INDEX_MASK | 0x3UL) - -#ifdef CONFIG_PAGE_POOL -static inline bool page_pool_page_is_pp(const struct page *page) -{ - return (page->pp_magic & PP_MAGIC_MASK) == PP_SIGNATURE; -} -#else -static inline bool page_pool_page_is_pp(const struct page *page) -{ - return false; -} -#endif - #define PAGE_SNAPSHOT_FAITHFUL (1 << 0) #define PAGE_SNAPSHOT_PG_BUDDY (1 << 1) #define PAGE_SNAPSHOT_PG_IDLE (1 << 2)diff --git a/include/linux/page-flags.h b/include/linux/page-flags.h index 8d3fa3a91ce4..84247e39e9e7 100644 --- a/include/linux/page-flags.h +++ b/include/linux/page-flags.h@@ -933,6 +933,7 @@ enum pagetype { PGTY_zsmalloc = 0xf6, PGTY_unaccepted = 0xf7, PGTY_large_kmalloc = 0xf8, + PGTY_netpp = 0xf9, PGTY_mapcount_underflow = 0xff };@@ -1077,6 +1078,11 @@ PAGE_TYPE_OPS(Zsmalloc, zsmalloc, zsmalloc) PAGE_TYPE_OPS(Unaccepted, unaccepted, unaccepted) FOLIO_TYPE_OPS(large_kmalloc, large_kmalloc) +/* + * Marks page_pool allocated pages. + */ +PAGE_TYPE_OPS(Netpp, netpp, netpp) + /** * PageHuge - Determine if the page belongs to hugetlbfs * @page: The page to test.
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diff --git a/mm/page_alloc.c b/mm/page_alloc.c index d1d037f97c5f..2f6a55fab942 100644 --- a/mm/page_alloc.c +++ b/mm/page_alloc.c@@ -1042,7 +1042,6 @@ static inline bool page_expected_state(struct page *page, #ifdef CONFIG_MEMCG page->memcg_data | #endif - page_pool_page_is_pp(page) | (page->flags & check_flags))) return false;@@ -1069,8 +1068,6 @@ static const char *page_bad_reason(struct page *page, unsigned long flags) if (unlikely(page->memcg_data)) bad_reason = "page still charged to cgroup"; #endif - if (unlikely(page_pool_page_is_pp(page))) - bad_reason = "page_pool leak"; return bad_reason; }@@ -1379,9 +1376,11 @@ __always_inline bool free_pages_prepare(struct page *page, mod_mthp_stat(order, MTHP_STAT_NR_ANON, -1); folio->mapping = NULL; } - if (unlikely(page_has_type(page))) + if (unlikely(page_has_type(page))) { + WARN_ON_ONCE(PageNetpp(page)); /* Reset the page_type (which overlays _mapcount) */ page->page_type = UINT_MAX; + } if (is_check_pages_enabled()) { if (free_page_is_bad(page))
The mm part looks good to me. Acked-by: Zi Yan <ziy@nvidia.com> Best Regards, Yan, Zi