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WARM1d

[PATCH 06/11] mm/sparse-vmemmap: switch device DAX to shared tail vmemmap pages

From: Muchun Song <hidden>
Date: 2026-08-31 07:54:56
Also in: linux-doc, linux-mm, lkml
Subsystem: memory hot(un)plug, memory management, memory management - core, memory management - mglru (multi-gen lru), the rest · Maintainers: David Hildenbrand, Oscar Salvador, Andrew Morton, Linus Torvalds

HugeTLB vmemmap optimization now uses per-zone shared tail vmemmap pages.
Device DAX has not been switched to that mechanism yet.

Switch device DAX to vmemmap_shared_tail_page() as well. This aligns DAX
with HugeTLB by using the common per-zone shared tail vmemmap page.

Since the shared tail page can now back ZONE_DEVICE vmemmap mappings,
initialize its entries with PG_reserved for device zones. Also skip
poisoning vmemmap-optimizable sections while their struct pages may be
shared.

Signed-off-by: Muchun Song <redacted>
---
 include/linux/mmzone.h | 10 +++++++++
 mm/memory_hotplug.c    |  5 +++--
 mm/sparse-vmemmap.c    | 47 ++++++++++++++----------------------------
 3 files changed, 28 insertions(+), 34 deletions(-)
diff --git a/include/linux/mmzone.h b/include/linux/mmzone.h
index d3778ba976a5..03ed9232f186 100644
--- a/include/linux/mmzone.h
+++ b/include/linux/mmzone.h
@@ -1686,11 +1686,21 @@ static inline bool zone_is_zone_device(const struct zone *zone)
 {
 	return zone_idx(zone) == ZONE_DEVICE;
 }
+
+static inline struct zone *device_zone(int nid)
+{
+	return &NODE_DATA(nid)->node_zones[ZONE_DEVICE];
+}
 #else
 static inline bool zone_is_zone_device(const struct zone *zone)
 {
 	return false;
 }
+
+static inline struct zone *device_zone(int nid)
+{
+	return NULL;
+}
 #endif
 
 /*
diff --git a/mm/memory_hotplug.c b/mm/memory_hotplug.c
index 226ab9cb078a..d28bafb6fd53 100644
--- a/mm/memory_hotplug.c
+++ b/mm/memory_hotplug.c
@@ -554,8 +554,9 @@ void remove_pfn_range_from_zone(struct zone *zone,
 		/* Select all remaining pages up to the next section boundary */
 		cur_nr_pages =
 			min(end_pfn - pfn, SECTION_ALIGN_UP(pfn + 1) - pfn);
-		page_init_poison(pfn_to_page(pfn),
-				 sizeof(struct page) * cur_nr_pages);
+		if (!section_vmemmap_optimizable(__pfn_to_section(pfn)))
+			page_init_poison(pfn_to_page(pfn),
+					 sizeof(struct page) * cur_nr_pages);
 	}
 
 	/*
diff --git a/mm/sparse-vmemmap.c b/mm/sparse-vmemmap.c
index aed1e7429daa..0201877a7f80 100644
--- a/mm/sparse-vmemmap.c
+++ b/mm/sparse-vmemmap.c
@@ -193,6 +193,8 @@ struct page __ref *vmemmap_shared_tail_page(unsigned int order, struct zone *zon
 		set_page_node(page, zone_to_nid(zone));
 		set_page_zone(page, zone_idx(zone));
 		prep_compound_tail(page, NULL, order);
+		if (zone_is_zone_device(zone))
+			__SetPageReserved(page);
 	}
 
 	page = virt_to_page(addr);
@@ -490,23 +492,6 @@ static bool __meminit reuse_compound_section(unsigned long start_pfn,
 	return !IS_ALIGNED(offset, nr_pages) && nr_pages > PAGES_PER_SUBSECTION;
 }
 
-static pte_t * __meminit compound_section_tail_page(unsigned long addr)
-{
-	pte_t *pte;
-
-	addr -= PAGE_SIZE;
-
-	/*
-	 * Assuming sections are populated sequentially, the previous section's
-	 * page data can be reused.
-	 */
-	pte = pte_offset_kernel(pmd_off_k(addr), addr);
-	if (!pte)
-		return NULL;
-
-	return pte;
-}
-
 static int __meminit vmemmap_populate_compound_pages(unsigned long start_pfn,
 						     unsigned long start,
 						     unsigned long end, int node,
@@ -516,21 +501,18 @@ static int __meminit vmemmap_populate_compound_pages(unsigned long start_pfn,
 	pte_t *pte;
 	int rc;
 	unsigned long flags = VMEMMAP_POPULATE_DAX;
+	struct page *page;
+	unsigned int order = pfn_to_section_order(start_pfn);
 
-	if (reuse_compound_section(start_pfn, pgmap)) {
-		pte = compound_section_tail_page(start);
-		if (!pte)
-			return -ENOMEM;
+	page = vmemmap_shared_tail_page(order, device_zone(node));
+	if (!page)
+		return -ENOMEM;
 
-		/*
-		 * Reuse the page that was populated in the prior iteration
-		 * with just tail struct pages.
-		 */
+	if (reuse_compound_section(start_pfn, pgmap))
 		return vmemmap_populate_range(start, end, node, NULL,
-					      pte_pfn(ptep_get(pte)), flags);
-	}
+					      page_to_pfn(page), flags);
 
-	size = min(end - start, pgmap_vmemmap_nr(pgmap) * sizeof(struct page));
+	size = min(end - start, (1UL << order) * sizeof(struct page));
 	for (addr = start; addr < end; addr += size) {
 		unsigned long next, last = addr + size;
 
@@ -546,12 +528,12 @@ static int __meminit vmemmap_populate_compound_pages(unsigned long start_pfn,
 			return -ENOMEM;
 
 		/*
-		 * Reuse the previous page for the rest of tail pages
+		 * Reuse the shared page for the rest of tail pages
 		 * See layout diagram in Documentation/mm/vmemmap_dedup.rst
 		 */
 		next += PAGE_SIZE;
 		rc = vmemmap_populate_range(next, last, node, NULL,
-					    pte_pfn(ptep_get(pte)), flags);
+					    page_to_pfn(page), flags);
 		if (rc)
 			return -ENOMEM;
 	}
@@ -883,13 +865,14 @@ int __meminit sparse_add_section(int nid, unsigned long start_pfn,
 	if (IS_ERR(memmap))
 		return PTR_ERR(memmap);
 
+	ms = __nr_to_section(section_nr);
 	/*
 	 * Poison uninitialized struct pages in order to catch invalid flags
 	 * combinations.
 	 */
-	page_init_poison(memmap, sizeof(struct page) * nr_pages);
+	if (!section_vmemmap_optimizable(ms))
+		page_init_poison(memmap, sizeof(struct page) * nr_pages);
 
-	ms = __nr_to_section(section_nr);
 	__section_mark_present(ms, section_nr);
 
 	/* Align memmap to section boundary in the subsection case */
-- 
2.54.0

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