memory_hotplug.c 49.4 KB
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/*
 *  linux/mm/memory_hotplug.c
 *
 *  Copyright (C)
 */

#include <linux/stddef.h>
#include <linux/mm.h>
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#include <linux/sched/signal.h>
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#include <linux/swap.h>
#include <linux/interrupt.h>
#include <linux/pagemap.h>
#include <linux/compiler.h>
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#include <linux/export.h>
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#include <linux/pagevec.h>
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#include <linux/writeback.h>
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#include <linux/slab.h>
#include <linux/sysctl.h>
#include <linux/cpu.h>
#include <linux/memory.h>
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#include <linux/memremap.h>
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#include <linux/memory_hotplug.h>
#include <linux/highmem.h>
#include <linux/vmalloc.h>
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#include <linux/ioport.h>
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#include <linux/delay.h>
#include <linux/migrate.h>
#include <linux/page-isolation.h>
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#include <linux/pfn.h>
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#include <linux/suspend.h>
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#include <linux/mm_inline.h>
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#include <linux/firmware-map.h>
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#include <linux/stop_machine.h>
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#include <linux/hugetlb.h>
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#include <linux/memblock.h>
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#include <linux/bootmem.h>
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#include <linux/compaction.h>
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#include <asm/tlbflush.h>

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#include "internal.h"

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/*
 * online_page_callback contains pointer to current page onlining function.
 * Initially it is generic_online_page(). If it is required it could be
 * changed by calling set_online_page_callback() for callback registration
 * and restore_online_page_callback() for generic callback restore.
 */

static void generic_online_page(struct page *page);

static online_page_callback_t online_page_callback = generic_online_page;
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static DEFINE_MUTEX(online_page_callback_lock);
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DEFINE_STATIC_PERCPU_RWSEM(mem_hotplug_lock);
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void get_online_mems(void)
{
	percpu_down_read(&mem_hotplug_lock);
}
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void put_online_mems(void)
{
	percpu_up_read(&mem_hotplug_lock);
}
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bool movable_node_enabled = false;

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#ifndef CONFIG_MEMORY_HOTPLUG_DEFAULT_ONLINE
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bool memhp_auto_online;
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#else
bool memhp_auto_online = true;
#endif
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EXPORT_SYMBOL_GPL(memhp_auto_online);

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static int __init setup_memhp_default_state(char *str)
{
	if (!strcmp(str, "online"))
		memhp_auto_online = true;
	else if (!strcmp(str, "offline"))
		memhp_auto_online = false;

	return 1;
}
__setup("memhp_default_state=", setup_memhp_default_state);

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void mem_hotplug_begin(void)
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{
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	cpus_read_lock();
	percpu_down_write(&mem_hotplug_lock);
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}

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void mem_hotplug_done(void)
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{
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	percpu_up_write(&mem_hotplug_lock);
	cpus_read_unlock();
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}
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/* add this memory to iomem resource */
static struct resource *register_memory_resource(u64 start, u64 size)
{
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	struct resource *res, *conflict;
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	res = kzalloc(sizeof(struct resource), GFP_KERNEL);
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	if (!res)
		return ERR_PTR(-ENOMEM);
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	res->name = "System RAM";
	res->start = start;
	res->end = start + size - 1;
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	res->flags = IORESOURCE_SYSTEM_RAM | IORESOURCE_BUSY;
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	conflict =  request_resource_conflict(&iomem_resource, res);
	if (conflict) {
		if (conflict->desc == IORES_DESC_DEVICE_PRIVATE_MEMORY) {
			pr_debug("Device unaddressable memory block "
				 "memory hotplug at %#010llx !\n",
				 (unsigned long long)start);
		}
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		pr_debug("System RAM resource %pR cannot be added\n", res);
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		kfree(res);
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		return ERR_PTR(-EEXIST);
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	}
	return res;
}

static void release_memory_resource(struct resource *res)
{
	if (!res)
		return;
	release_resource(res);
	kfree(res);
	return;
}

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#ifdef CONFIG_MEMORY_HOTPLUG_SPARSE
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void get_page_bootmem(unsigned long info,  struct page *page,
		      unsigned long type)
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{
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	page->freelist = (void *)type;
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	SetPagePrivate(page);
	set_page_private(page, info);
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	page_ref_inc(page);
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}

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void put_page_bootmem(struct page *page)
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{
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	unsigned long type;
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	type = (unsigned long) page->freelist;
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	BUG_ON(type < MEMORY_HOTPLUG_MIN_BOOTMEM_TYPE ||
	       type > MEMORY_HOTPLUG_MAX_BOOTMEM_TYPE);
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	if (page_ref_dec_return(page) == 1) {
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		page->freelist = NULL;
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		ClearPagePrivate(page);
		set_page_private(page, 0);
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		INIT_LIST_HEAD(&page->lru);
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		free_reserved_page(page);
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	}
}

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#ifdef CONFIG_HAVE_BOOTMEM_INFO_NODE
#ifndef CONFIG_SPARSEMEM_VMEMMAP
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static void register_page_bootmem_info_section(unsigned long start_pfn)
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{
	unsigned long *usemap, mapsize, section_nr, i;
	struct mem_section *ms;
	struct page *page, *memmap;

	section_nr = pfn_to_section_nr(start_pfn);
	ms = __nr_to_section(section_nr);

	/* Get section's memmap address */
	memmap = sparse_decode_mem_map(ms->section_mem_map, section_nr);

	/*
	 * Get page for the memmap's phys address
	 * XXX: need more consideration for sparse_vmemmap...
	 */
	page = virt_to_page(memmap);
	mapsize = sizeof(struct page) * PAGES_PER_SECTION;
	mapsize = PAGE_ALIGN(mapsize) >> PAGE_SHIFT;

	/* remember memmap's page */
	for (i = 0; i < mapsize; i++, page++)
		get_page_bootmem(section_nr, page, SECTION_INFO);

	usemap = __nr_to_section(section_nr)->pageblock_flags;
	page = virt_to_page(usemap);

	mapsize = PAGE_ALIGN(usemap_size()) >> PAGE_SHIFT;

	for (i = 0; i < mapsize; i++, page++)
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		get_page_bootmem(section_nr, page, MIX_SECTION_INFO);
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}
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#else /* CONFIG_SPARSEMEM_VMEMMAP */
static void register_page_bootmem_info_section(unsigned long start_pfn)
{
	unsigned long *usemap, mapsize, section_nr, i;
	struct mem_section *ms;
	struct page *page, *memmap;

	if (!pfn_valid(start_pfn))
		return;

	section_nr = pfn_to_section_nr(start_pfn);
	ms = __nr_to_section(section_nr);

	memmap = sparse_decode_mem_map(ms->section_mem_map, section_nr);

	register_page_bootmem_memmap(section_nr, memmap, PAGES_PER_SECTION);

	usemap = __nr_to_section(section_nr)->pageblock_flags;
	page = virt_to_page(usemap);

	mapsize = PAGE_ALIGN(usemap_size()) >> PAGE_SHIFT;

	for (i = 0; i < mapsize; i++, page++)
		get_page_bootmem(section_nr, page, MIX_SECTION_INFO);
}
#endif /* !CONFIG_SPARSEMEM_VMEMMAP */
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void __init register_page_bootmem_info_node(struct pglist_data *pgdat)
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{
	unsigned long i, pfn, end_pfn, nr_pages;
	int node = pgdat->node_id;
	struct page *page;

	nr_pages = PAGE_ALIGN(sizeof(struct pglist_data)) >> PAGE_SHIFT;
	page = virt_to_page(pgdat);

	for (i = 0; i < nr_pages; i++, page++)
		get_page_bootmem(node, page, NODE_INFO);

	pfn = pgdat->node_start_pfn;
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	end_pfn = pgdat_end_pfn(pgdat);
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	/* register section info */
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	for (; pfn < end_pfn; pfn += PAGES_PER_SECTION) {
		/*
		 * Some platforms can assign the same pfn to multiple nodes - on
		 * node0 as well as nodeN.  To avoid registering a pfn against
		 * multiple nodes we check that this pfn does not already
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		 * reside in some other nodes.
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		 */
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		if (pfn_valid(pfn) && (early_pfn_to_nid(pfn) == node))
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			register_page_bootmem_info_section(pfn);
	}
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}
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#endif /* CONFIG_HAVE_BOOTMEM_INFO_NODE */
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static int __meminit __add_section(int nid, unsigned long phys_start_pfn,
		bool want_memblock)
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{
	int ret;
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	int i;
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	if (pfn_valid(phys_start_pfn))
		return -EEXIST;

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	ret = sparse_add_one_section(NODE_DATA(nid), phys_start_pfn);
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	if (ret < 0)
		return ret;

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	/*
	 * Make all the pages reserved so that nobody will stumble over half
	 * initialized state.
	 * FIXME: We also have to associate it with a node because pfn_to_node
	 * relies on having page with the proper node.
	 */
	for (i = 0; i < PAGES_PER_SECTION; i++) {
		unsigned long pfn = phys_start_pfn + i;
		struct page *page;
		if (!pfn_valid(pfn))
			continue;
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		page = pfn_to_page(pfn);
		set_page_node(page, nid);
		SetPageReserved(page);
	}
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	if (!want_memblock)
		return 0;

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	return register_new_memory(nid, __pfn_to_section(phys_start_pfn));
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}

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/*
 * Reasonably generic function for adding memory.  It is
 * expected that archs that support memory hotplug will
 * call this function after deciding the zone to which to
 * add the new pages.
 */
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int __ref __add_pages(int nid, unsigned long phys_start_pfn,
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			unsigned long nr_pages, bool want_memblock)
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{
	unsigned long i;
	int err = 0;
	int start_sec, end_sec;
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	struct vmem_altmap *altmap;

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	/* during initialize mem_map, align hot-added range to section */
	start_sec = pfn_to_section_nr(phys_start_pfn);
	end_sec = pfn_to_section_nr(phys_start_pfn + nr_pages - 1);

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	altmap = to_vmem_altmap((unsigned long) pfn_to_page(phys_start_pfn));
	if (altmap) {
		/*
		 * Validate altmap is within bounds of the total request
		 */
		if (altmap->base_pfn != phys_start_pfn
				|| vmem_altmap_offset(altmap) > nr_pages) {
			pr_warn_once("memory add fail, invalid altmap\n");
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			err = -EINVAL;
			goto out;
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		}
		altmap->alloc = 0;
	}

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	for (i = start_sec; i <= end_sec; i++) {
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		err = __add_section(nid, section_nr_to_pfn(i), want_memblock);
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		/*
		 * EEXIST is finally dealt with by ioresource collision
		 * check. see add_memory() => register_memory_resource()
		 * Warning will be printed if there is collision.
		 */
		if (err && (err != -EEXIST))
			break;
		err = 0;
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		cond_resched();
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	}
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	vmemmap_populate_print_last();
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out:
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	return err;
}
EXPORT_SYMBOL_GPL(__add_pages);

#ifdef CONFIG_MEMORY_HOTREMOVE
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/* find the smallest valid pfn in the range [start_pfn, end_pfn) */
static int find_smallest_section_pfn(int nid, struct zone *zone,
				     unsigned long start_pfn,
				     unsigned long end_pfn)
{
	struct mem_section *ms;

	for (; start_pfn < end_pfn; start_pfn += PAGES_PER_SECTION) {
		ms = __pfn_to_section(start_pfn);

		if (unlikely(!valid_section(ms)))
			continue;

		if (unlikely(pfn_to_nid(start_pfn) != nid))
			continue;

		if (zone && zone != page_zone(pfn_to_page(start_pfn)))
			continue;

		return start_pfn;
	}

	return 0;
}

/* find the biggest valid pfn in the range [start_pfn, end_pfn). */
static int find_biggest_section_pfn(int nid, struct zone *zone,
				    unsigned long start_pfn,
				    unsigned long end_pfn)
{
	struct mem_section *ms;
	unsigned long pfn;

	/* pfn is the end pfn of a memory section. */
	pfn = end_pfn - 1;
	for (; pfn >= start_pfn; pfn -= PAGES_PER_SECTION) {
		ms = __pfn_to_section(pfn);

		if (unlikely(!valid_section(ms)))
			continue;

		if (unlikely(pfn_to_nid(pfn) != nid))
			continue;

		if (zone && zone != page_zone(pfn_to_page(pfn)))
			continue;

		return pfn;
	}

	return 0;
}

static void shrink_zone_span(struct zone *zone, unsigned long start_pfn,
			     unsigned long end_pfn)
{
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	unsigned long zone_start_pfn = zone->zone_start_pfn;
	unsigned long z = zone_end_pfn(zone); /* zone_end_pfn namespace clash */
	unsigned long zone_end_pfn = z;
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	unsigned long pfn;
	struct mem_section *ms;
	int nid = zone_to_nid(zone);

	zone_span_writelock(zone);
	if (zone_start_pfn == start_pfn) {
		/*
		 * If the section is smallest section in the zone, it need
		 * shrink zone->zone_start_pfn and zone->zone_spanned_pages.
		 * In this case, we find second smallest valid mem_section
		 * for shrinking zone.
		 */
		pfn = find_smallest_section_pfn(nid, zone, end_pfn,
						zone_end_pfn);
		if (pfn) {
			zone->zone_start_pfn = pfn;
			zone->spanned_pages = zone_end_pfn - pfn;
		}
	} else if (zone_end_pfn == end_pfn) {
		/*
		 * If the section is biggest section in the zone, it need
		 * shrink zone->spanned_pages.
		 * In this case, we find second biggest valid mem_section for
		 * shrinking zone.
		 */
		pfn = find_biggest_section_pfn(nid, zone, zone_start_pfn,
					       start_pfn);
		if (pfn)
			zone->spanned_pages = pfn - zone_start_pfn + 1;
	}

	/*
	 * The section is not biggest or smallest mem_section in the zone, it
	 * only creates a hole in the zone. So in this case, we need not
	 * change the zone. But perhaps, the zone has only hole data. Thus
	 * it check the zone has only hole or not.
	 */
	pfn = zone_start_pfn;
	for (; pfn < zone_end_pfn; pfn += PAGES_PER_SECTION) {
		ms = __pfn_to_section(pfn);

		if (unlikely(!valid_section(ms)))
			continue;

		if (page_zone(pfn_to_page(pfn)) != zone)
			continue;

		 /* If the section is current section, it continues the loop */
		if (start_pfn == pfn)
			continue;

		/* If we find valid section, we have nothing to do */
		zone_span_writeunlock(zone);
		return;
	}

	/* The zone has no valid section */
	zone->zone_start_pfn = 0;
	zone->spanned_pages = 0;
	zone_span_writeunlock(zone);
}

static void shrink_pgdat_span(struct pglist_data *pgdat,
			      unsigned long start_pfn, unsigned long end_pfn)
{
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	unsigned long pgdat_start_pfn = pgdat->node_start_pfn;
	unsigned long p = pgdat_end_pfn(pgdat); /* pgdat_end_pfn namespace clash */
	unsigned long pgdat_end_pfn = p;
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	unsigned long pfn;
	struct mem_section *ms;
	int nid = pgdat->node_id;

	if (pgdat_start_pfn == start_pfn) {
		/*
		 * If the section is smallest section in the pgdat, it need
		 * shrink pgdat->node_start_pfn and pgdat->node_spanned_pages.
		 * In this case, we find second smallest valid mem_section
		 * for shrinking zone.
		 */
		pfn = find_smallest_section_pfn(nid, NULL, end_pfn,
						pgdat_end_pfn);
		if (pfn) {
			pgdat->node_start_pfn = pfn;
			pgdat->node_spanned_pages = pgdat_end_pfn - pfn;
		}
	} else if (pgdat_end_pfn == end_pfn) {
		/*
		 * If the section is biggest section in the pgdat, it need
		 * shrink pgdat->node_spanned_pages.
		 * In this case, we find second biggest valid mem_section for
		 * shrinking zone.
		 */
		pfn = find_biggest_section_pfn(nid, NULL, pgdat_start_pfn,
					       start_pfn);
		if (pfn)
			pgdat->node_spanned_pages = pfn - pgdat_start_pfn + 1;
	}

	/*
	 * If the section is not biggest or smallest mem_section in the pgdat,
	 * it only creates a hole in the pgdat. So in this case, we need not
	 * change the pgdat.
	 * But perhaps, the pgdat has only hole data. Thus it check the pgdat
	 * has only hole or not.
	 */
	pfn = pgdat_start_pfn;
	for (; pfn < pgdat_end_pfn; pfn += PAGES_PER_SECTION) {
		ms = __pfn_to_section(pfn);

		if (unlikely(!valid_section(ms)))
			continue;

		if (pfn_to_nid(pfn) != nid)
			continue;

		 /* If the section is current section, it continues the loop */
		if (start_pfn == pfn)
			continue;

		/* If we find valid section, we have nothing to do */
		return;
	}

	/* The pgdat has no valid section */
	pgdat->node_start_pfn = 0;
	pgdat->node_spanned_pages = 0;
}

static void __remove_zone(struct zone *zone, unsigned long start_pfn)
{
	struct pglist_data *pgdat = zone->zone_pgdat;
	int nr_pages = PAGES_PER_SECTION;
	unsigned long flags;

	pgdat_resize_lock(zone->zone_pgdat, &flags);
	shrink_zone_span(zone, start_pfn, start_pfn + nr_pages);
	shrink_pgdat_span(pgdat, start_pfn, start_pfn + nr_pages);
	pgdat_resize_unlock(zone->zone_pgdat, &flags);
}

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static int __remove_section(struct zone *zone, struct mem_section *ms,
		unsigned long map_offset)
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{
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	unsigned long start_pfn;
	int scn_nr;
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	int ret = -EINVAL;

	if (!valid_section(ms))
		return ret;

	ret = unregister_memory_section(ms);
	if (ret)
		return ret;

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	scn_nr = __section_nr(ms);
	start_pfn = section_nr_to_pfn(scn_nr);
	__remove_zone(zone, start_pfn);

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	sparse_remove_one_section(zone, ms, map_offset);
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	return 0;
}

/**
 * __remove_pages() - remove sections of pages from a zone
 * @zone: zone from which pages need to be removed
 * @phys_start_pfn: starting pageframe (must be aligned to start of a section)
 * @nr_pages: number of pages to remove (must be multiple of section size)
 *
 * Generic helper function to remove section mappings and sysfs entries
 * for the section of the memory we are removing. Caller needs to make
 * sure that pages are marked reserved and zones are adjust properly by
 * calling offline_pages().
 */
int __remove_pages(struct zone *zone, unsigned long phys_start_pfn,
		 unsigned long nr_pages)
{
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	unsigned long i;
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	unsigned long map_offset = 0;
	int sections_to_remove, ret = 0;

	/* In the ZONE_DEVICE case device driver owns the memory region */
	if (is_dev_zone(zone)) {
		struct page *page = pfn_to_page(phys_start_pfn);
		struct vmem_altmap *altmap;

		altmap = to_vmem_altmap((unsigned long) page);
		if (altmap)
			map_offset = vmem_altmap_offset(altmap);
	} else {
		resource_size_t start, size;

		start = phys_start_pfn << PAGE_SHIFT;
		size = nr_pages * PAGE_SIZE;

		ret = release_mem_region_adjustable(&iomem_resource, start,
					size);
		if (ret) {
			resource_size_t endres = start + size - 1;

			pr_warn("Unable to release resource <%pa-%pa> (%d)\n",
					&start, &endres, ret);
		}
	}
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	clear_zone_contiguous(zone);

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	/*
	 * We can only remove entire sections
	 */
	BUG_ON(phys_start_pfn & ~PAGE_SECTION_MASK);
	BUG_ON(nr_pages % PAGES_PER_SECTION);

	sections_to_remove = nr_pages / PAGES_PER_SECTION;
	for (i = 0; i < sections_to_remove; i++) {
		unsigned long pfn = phys_start_pfn + i*PAGES_PER_SECTION;
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		ret = __remove_section(zone, __pfn_to_section(pfn), map_offset);
		map_offset = 0;
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		if (ret)
			break;
	}
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	set_zone_contiguous(zone);

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	return ret;
}
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#endif /* CONFIG_MEMORY_HOTREMOVE */
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int set_online_page_callback(online_page_callback_t callback)
{
	int rc = -EINVAL;

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	get_online_mems();
	mutex_lock(&online_page_callback_lock);
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	if (online_page_callback == generic_online_page) {
		online_page_callback = callback;
		rc = 0;
	}

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	mutex_unlock(&online_page_callback_lock);
	put_online_mems();
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	return rc;
}
EXPORT_SYMBOL_GPL(set_online_page_callback);

int restore_online_page_callback(online_page_callback_t callback)
{
	int rc = -EINVAL;

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	get_online_mems();
	mutex_lock(&online_page_callback_lock);
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	if (online_page_callback == callback) {
		online_page_callback = generic_online_page;
		rc = 0;
	}

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	mutex_unlock(&online_page_callback_lock);
	put_online_mems();
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	return rc;
}
EXPORT_SYMBOL_GPL(restore_online_page_callback);

void __online_page_set_limits(struct page *page)
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{
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}
EXPORT_SYMBOL_GPL(__online_page_set_limits);

void __online_page_increment_counters(struct page *page)
{
672
	adjust_managed_page_count(page, 1);
673 674
}
EXPORT_SYMBOL_GPL(__online_page_increment_counters);
675

676 677
void __online_page_free(struct page *page)
{
678
	__free_reserved_page(page);
679
}
680 681 682 683 684 685 686 687
EXPORT_SYMBOL_GPL(__online_page_free);

static void generic_online_page(struct page *page)
{
	__online_page_set_limits(page);
	__online_page_increment_counters(page);
	__online_page_free(page);
}
688

689 690
static int online_pages_range(unsigned long start_pfn, unsigned long nr_pages,
			void *arg)
691 692
{
	unsigned long i;
693 694
	unsigned long onlined_pages = *(unsigned long *)arg;
	struct page *page;
695

696 697 698
	if (PageReserved(pfn_to_page(start_pfn)))
		for (i = 0; i < nr_pages; i++) {
			page = pfn_to_page(start_pfn + i);
699
			(*online_page_callback)(page);
700 701
			onlined_pages++;
		}
702 703 704

	online_mem_sections(start_pfn, start_pfn + nr_pages);

705 706 707 708
	*(unsigned long *)arg = onlined_pages;
	return 0;
}

709 710 711 712 713 714 715 716
/* check which state of node_states will be changed when online memory */
static void node_states_check_changes_online(unsigned long nr_pages,
	struct zone *zone, struct memory_notify *arg)
{
	int nid = zone_to_nid(zone);
	enum zone_type zone_last = ZONE_NORMAL;

	/*
717 718 719
	 * If we have HIGHMEM or movable node, node_states[N_NORMAL_MEMORY]
	 * contains nodes which have zones of 0...ZONE_NORMAL,
	 * set zone_last to ZONE_NORMAL.
720
	 *
721 722 723
	 * If we don't have HIGHMEM nor movable node,
	 * node_states[N_NORMAL_MEMORY] contains nodes which have zones of
	 * 0...ZONE_MOVABLE, set zone_last to ZONE_MOVABLE.
724
	 */
725
	if (N_MEMORY == N_NORMAL_MEMORY)
726 727 728 729 730 731 732 733 734 735 736 737 738
		zone_last = ZONE_MOVABLE;

	/*
	 * if the memory to be online is in a zone of 0...zone_last, and
	 * the zones of 0...zone_last don't have memory before online, we will
	 * need to set the node to node_states[N_NORMAL_MEMORY] after
	 * the memory is online.
	 */
	if (zone_idx(zone) <= zone_last && !node_state(nid, N_NORMAL_MEMORY))
		arg->status_change_nid_normal = nid;
	else
		arg->status_change_nid_normal = -1;

739 740 741 742 743 744 745 746 747 748 749 750 751 752 753 754 755 756 757 758 759 760
#ifdef CONFIG_HIGHMEM
	/*
	 * If we have movable node, node_states[N_HIGH_MEMORY]
	 * contains nodes which have zones of 0...ZONE_HIGHMEM,
	 * set zone_last to ZONE_HIGHMEM.
	 *
	 * If we don't have movable node, node_states[N_NORMAL_MEMORY]
	 * contains nodes which have zones of 0...ZONE_MOVABLE,
	 * set zone_last to ZONE_MOVABLE.
	 */
	zone_last = ZONE_HIGHMEM;
	if (N_MEMORY == N_HIGH_MEMORY)
		zone_last = ZONE_MOVABLE;

	if (zone_idx(zone) <= zone_last && !node_state(nid, N_HIGH_MEMORY))
		arg->status_change_nid_high = nid;
	else
		arg->status_change_nid_high = -1;
#else
	arg->status_change_nid_high = arg->status_change_nid_normal;
#endif

761 762
	/*
	 * if the node don't have memory befor online, we will need to
763
	 * set the node to node_states[N_MEMORY] after the memory
764 765
	 * is online.
	 */
766
	if (!node_state(nid, N_MEMORY))
767 768 769 770 771 772 773 774 775 776
		arg->status_change_nid = nid;
	else
		arg->status_change_nid = -1;
}

static void node_states_set_node(int node, struct memory_notify *arg)
{
	if (arg->status_change_nid_normal >= 0)
		node_set_state(node, N_NORMAL_MEMORY);

777 778 779 780
	if (arg->status_change_nid_high >= 0)
		node_set_state(node, N_HIGH_MEMORY);

	node_set_state(node, N_MEMORY);
781 782
}

783 784 785 786 787 788 789 790 791 792 793 794 795 796 797 798 799 800 801 802 803 804
static void __meminit resize_zone_range(struct zone *zone, unsigned long start_pfn,
		unsigned long nr_pages)
{
	unsigned long old_end_pfn = zone_end_pfn(zone);

	if (zone_is_empty(zone) || start_pfn < zone->zone_start_pfn)
		zone->zone_start_pfn = start_pfn;

	zone->spanned_pages = max(start_pfn + nr_pages, old_end_pfn) - zone->zone_start_pfn;
}

static void __meminit resize_pgdat_range(struct pglist_data *pgdat, unsigned long start_pfn,
                                     unsigned long nr_pages)
{
	unsigned long old_end_pfn = pgdat_end_pfn(pgdat);

	if (!pgdat->node_spanned_pages || start_pfn < pgdat->node_start_pfn)
		pgdat->node_start_pfn = start_pfn;

	pgdat->node_spanned_pages = max(start_pfn + nr_pages, old_end_pfn) - pgdat->node_start_pfn;
}

805
void __ref move_pfn_range_to_zone(struct zone *zone,
806 807 808 809 810
		unsigned long start_pfn, unsigned long nr_pages)
{
	struct pglist_data *pgdat = zone->zone_pgdat;
	int nid = pgdat->node_id;
	unsigned long flags;
811

812 813
	if (zone_is_empty(zone))
		init_currently_empty_zone(zone, start_pfn, nr_pages);
814

815 816 817 818 819 820 821 822 823 824 825 826 827 828 829 830 831 832 833 834 835
	clear_zone_contiguous(zone);

	/* TODO Huh pgdat is irqsave while zone is not. It used to be like that before */
	pgdat_resize_lock(pgdat, &flags);
	zone_span_writelock(zone);
	resize_zone_range(zone, start_pfn, nr_pages);
	zone_span_writeunlock(zone);
	resize_pgdat_range(pgdat, start_pfn, nr_pages);
	pgdat_resize_unlock(pgdat, &flags);

	/*
	 * TODO now we have a visible range of pages which are not associated
	 * with their zone properly. Not nice but set_pfnblock_flags_mask
	 * expects the zone spans the pfn range. All the pages in the range
	 * are reserved so nobody should be touching them so we should be safe
	 */
	memmap_init_zone(nr_pages, nid, zone_idx(zone), start_pfn, MEMMAP_HOTPLUG);

	set_zone_contiguous(zone);
}

836 837 838 839 840
/*
 * Returns a default kernel memory zone for the given pfn range.
 * If no kernel zone covers this pfn range it will automatically go
 * to the ZONE_NORMAL.
 */
841
static struct zone *default_kernel_zone_for_pfn(int nid, unsigned long start_pfn,
842 843 844 845 846 847 848 849 850 851 852 853 854 855 856
		unsigned long nr_pages)
{
	struct pglist_data *pgdat = NODE_DATA(nid);
	int zid;

	for (zid = 0; zid <= ZONE_NORMAL; zid++) {
		struct zone *zone = &pgdat->node_zones[zid];

		if (zone_intersects(zone, start_pfn, nr_pages))
			return zone;
	}

	return &pgdat->node_zones[ZONE_NORMAL];
}

857 858
static inline struct zone *default_zone_for_pfn(int nid, unsigned long start_pfn,
		unsigned long nr_pages)
859
{
860 861 862 863 864
	struct zone *kernel_zone = default_kernel_zone_for_pfn(nid, start_pfn,
			nr_pages);
	struct zone *movable_zone = &NODE_DATA(nid)->node_zones[ZONE_MOVABLE];
	bool in_kernel = zone_intersects(kernel_zone, start_pfn, nr_pages);
	bool in_movable = zone_intersects(movable_zone, start_pfn, nr_pages);
865 866

	/*
867 868
	 * We inherit the existing zone in a simple case where zones do not
	 * overlap in the given range
869
	 */
870 871
	if (in_kernel ^ in_movable)
		return (in_kernel) ? kernel_zone : movable_zone;
872

873 874 875 876 877 878
	/*
	 * If the range doesn't belong to any zone or two zones overlap in the
	 * given range then we use movable zone only if movable_node is
	 * enabled because we always online to a kernel zone by default.
	 */
	return movable_node_enabled ? movable_zone : kernel_zone;
879 880
}

881 882
struct zone * zone_for_pfn_range(int online_type, int nid, unsigned start_pfn,
		unsigned long nr_pages)
883
{
884 885
	if (online_type == MMOP_ONLINE_KERNEL)
		return default_kernel_zone_for_pfn(nid, start_pfn, nr_pages);
886

887 888
	if (online_type == MMOP_ONLINE_MOVABLE)
		return &NODE_DATA(nid)->node_zones[ZONE_MOVABLE];
889

890
	return default_zone_for_pfn(nid, start_pfn, nr_pages);
891 892 893 894 895 896 897 898 899 900 901 902
}

/*
 * Associates the given pfn range with the given node and the zone appropriate
 * for the given online type.
 */
static struct zone * __meminit move_pfn_range(int online_type, int nid,
		unsigned long start_pfn, unsigned long nr_pages)
{
	struct zone *zone;

	zone = zone_for_pfn_range(online_type, nid, start_pfn, nr_pages);
903 904
	move_pfn_range_to_zone(zone, start_pfn, nr_pages);
	return zone;
905
}
906

907
/* Must be protected by mem_hotplug_begin() or a device_lock */
908
int __ref online_pages(unsigned long pfn, unsigned long nr_pages, int online_type)
909
{
910
	unsigned long flags;
911 912
	unsigned long onlined_pages = 0;
	struct zone *zone;
913
	int need_zonelists_rebuild = 0;
914 915 916 917
	int nid;
	int ret;
	struct memory_notify arg;

918 919 920 921
	nid = pfn_to_nid(pfn);
	/* associate pfn range with the zone */
	zone = move_pfn_range(online_type, nid, pfn, nr_pages);

922 923
	arg.start_pfn = pfn;
	arg.nr_pages = nr_pages;
924
	node_states_check_changes_online(nr_pages, zone, &arg);
925 926 927

	ret = memory_notify(MEM_GOING_ONLINE, &arg);
	ret = notifier_to_errno(ret);
928 929 930
	if (ret)
		goto failed_addition;

931 932 933 934 935
	/*
	 * If this zone is not populated, then it is not in zonelist.
	 * This means the page allocator ignores this zone.
	 * So, zonelist must be updated after online.
	 */
936
	if (!populated_zone(zone)) {
937
		need_zonelists_rebuild = 1;
938
		setup_zone_pageset(zone);
939
	}
940

K
KAMEZAWA Hiroyuki 已提交
941
	ret = walk_system_ram_range(pfn, nr_pages, &onlined_pages,
942
		online_pages_range);
943
	if (ret) {
944 945
		if (need_zonelists_rebuild)
			zone_pcp_reset(zone);
946
		goto failed_addition;
947 948
	}

949
	zone->present_pages += onlined_pages;
950 951

	pgdat_resize_lock(zone->zone_pgdat, &flags);
952
	zone->zone_pgdat->node_present_pages += onlined_pages;
953 954
	pgdat_resize_unlock(zone->zone_pgdat, &flags);

955
	if (onlined_pages) {
956
		node_states_set_node(nid, &arg);
957
		if (need_zonelists_rebuild)
958
			build_all_zonelists(NULL);
959 960 961
		else
			zone_pcp_update(zone);
	}
962

963 964
	init_per_zone_wmark_min();

965
	if (onlined_pages) {
966
		kswapd_run(nid);
967 968
		kcompactd_run(nid);
	}
969

970
	vm_total_pages = nr_free_pagecache_pages();
971

972
	writeback_set_ratelimit();
973 974 975

	if (onlined_pages)
		memory_notify(MEM_ONLINE, &arg);
976
	return 0;
977 978 979 980 981 982 983

failed_addition:
	pr_debug("online_pages [mem %#010llx-%#010llx] failed\n",
		 (unsigned long long) pfn << PAGE_SHIFT,
		 (((unsigned long long) pfn + nr_pages) << PAGE_SHIFT) - 1);
	memory_notify(MEM_CANCEL_ONLINE, &arg);
	return ret;
984
}
985
#endif /* CONFIG_MEMORY_HOTPLUG_SPARSE */
986

987 988 989 990 991 992 993 994 995 996
static void reset_node_present_pages(pg_data_t *pgdat)
{
	struct zone *z;

	for (z = pgdat->node_zones; z < pgdat->node_zones + MAX_NR_ZONES; z++)
		z->present_pages = 0;

	pgdat->node_present_pages = 0;
}

997 998
/* we are OK calling __meminit stuff here - we have CONFIG_MEMORY_HOTPLUG */
static pg_data_t __ref *hotadd_new_pgdat(int nid, u64 start)
999 1000 1001 1002
{
	struct pglist_data *pgdat;
	unsigned long zones_size[MAX_NR_ZONES] = {0};
	unsigned long zholes_size[MAX_NR_ZONES] = {0};
1003
	unsigned long start_pfn = PFN_DOWN(start);
1004

1005 1006 1007 1008 1009
	pgdat = NODE_DATA(nid);
	if (!pgdat) {
		pgdat = arch_alloc_nodedata(nid);
		if (!pgdat)
			return NULL;
1010

1011
		arch_refresh_nodedata(nid, pgdat);
1012
	} else {
1013 1014 1015 1016 1017
		/*
		 * Reset the nr_zones, order and classzone_idx before reuse.
		 * Note that kswapd will init kswapd_classzone_idx properly
		 * when it starts in the near future.
		 */
1018
		pgdat->nr_zones = 0;
1019 1020
		pgdat->kswapd_order = 0;
		pgdat->kswapd_classzone_idx = 0;
1021
	}
1022 1023 1024 1025

	/* we can use NODE_DATA(nid) from here */

	/* init node's zones as empty zones, we don't have any present pages.*/
1026
	free_area_init_node(nid, zones_size, start_pfn, zholes_size);
1027
	pgdat->per_cpu_nodestats = alloc_percpu(struct per_cpu_nodestat);
1028

1029 1030 1031 1032
	/*
	 * The node we allocated has no zone fallback lists. For avoiding
	 * to access not-initialized zonelist, build here.
	 */
1033
	build_all_zonelists(pgdat);
1034

1035 1036 1037 1038 1039 1040 1041 1042
	/*
	 * zone->managed_pages is set to an approximate value in
	 * free_area_init_core(), which will cause
	 * /sys/device/system/node/nodeX/meminfo has wrong data.
	 * So reset it to 0 before any memory is onlined.
	 */
	reset_node_managed_pages(pgdat);

1043 1044 1045 1046 1047 1048 1049
	/*
	 * When memory is hot-added, all the memory is in offline state. So
	 * clear all zones' present_pages because they will be updated in
	 * online_pages() and offline_pages().
	 */
	reset_node_present_pages(pgdat);

1050 1051 1052 1053 1054 1055
	return pgdat;
}

static void rollback_node_hotadd(int nid, pg_data_t *pgdat)
{
	arch_refresh_nodedata(nid, NULL);
1056
	free_percpu(pgdat->per_cpu_nodestats);
1057 1058 1059 1060
	arch_free_nodedata(pgdat);
	return;
}

1061

1062 1063 1064
/**
 * try_online_node - online a node if offlined
 *
1065 1066
 * called by cpu_up() to online a node without onlined memory.
 */
1067
int try_online_node(int nid)
1068 1069 1070 1071
{
	pg_data_t	*pgdat;
	int	ret;

1072 1073 1074
	if (node_online(nid))
		return 0;

1075
	mem_hotplug_begin();
1076
	pgdat = hotadd_new_pgdat(nid, 0);
1077
	if (!pgdat) {
1078
		pr_err("Cannot online node %d due to NULL pgdat\n", nid);
1079 1080 1081 1082 1083 1084 1085
		ret = -ENOMEM;
		goto out;
	}
	node_set_online(nid);
	ret = register_one_node(nid);
	BUG_ON(ret);
out:
1086
	mem_hotplug_done();
1087 1088 1089
	return ret;
}

1090 1091
static int check_hotplug_memory_range(u64 start, u64 size)
{
1092
	u64 start_pfn = PFN_DOWN(start);
1093 1094 1095 1096 1097 1098 1099 1100 1101 1102 1103 1104 1105 1106
	u64 nr_pages = size >> PAGE_SHIFT;

	/* Memory range must be aligned with section */
	if ((start_pfn & ~PAGE_SECTION_MASK) ||
	    (nr_pages % PAGES_PER_SECTION) || (!nr_pages)) {
		pr_err("Section-unaligned hotplug range: start 0x%llx, size 0x%llx\n",
				(unsigned long long)start,
				(unsigned long long)size);
		return -EINVAL;
	}

	return 0;
}

1107 1108
static int online_memory_block(struct memory_block *mem, void *arg)
{
1109
	return device_online(&mem->dev);
1110 1111
}

A
Al Viro 已提交
1112
/* we are OK calling __meminit stuff here - we have CONFIG_MEMORY_HOTPLUG */
1113
int __ref add_memory_resource(int nid, struct resource *res, bool online)
1114
{
1115
	u64 start, size;
1116
	pg_data_t *pgdat = NULL;
1117 1118
	bool new_pgdat;
	bool new_node;
1119 1120
	int ret;

1121 1122 1123
	start = res->start;
	size = resource_size(res);

1124 1125 1126 1127
	ret = check_hotplug_memory_range(start, size);
	if (ret)
		return ret;

1128 1129 1130 1131
	{	/* Stupid hack to suppress address-never-null warning */
		void *p = NODE_DATA(nid);
		new_pgdat = !p;
	}
1132

1133
	mem_hotplug_begin();
1134

1135 1136 1137 1138 1139 1140 1141 1142
	/*
	 * Add new range to memblock so that when hotadd_new_pgdat() is called
	 * to allocate new pgdat, get_pfn_range_for_nid() will be able to find
	 * this new range and calculate total pages correctly.  The range will
	 * be removed at hot-remove time.
	 */
	memblock_add_node(start, size, nid);

1143 1144
	new_node = !node_online(nid);
	if (new_node) {
1145
		pgdat = hotadd_new_pgdat(nid, start);
1146
		ret = -ENOMEM;
1147
		if (!pgdat)
1148
			goto error;
1149 1150
	}

1151
	/* call arch's memory hotadd */
1152
	ret = arch_add_memory(nid, start, size, true);
1153

1154 1155 1156
	if (ret < 0)
		goto error;

1157
	/* we online node here. we can't roll back from here. */
1158 1159
	node_set_online(nid);

1160
	if (new_node) {
1161 1162 1163 1164 1165 1166 1167 1168 1169 1170 1171 1172 1173 1174 1175 1176
		unsigned long start_pfn = start >> PAGE_SHIFT;
		unsigned long nr_pages = size >> PAGE_SHIFT;

		ret = __register_one_node(nid);
		if (ret)
			goto register_fail;

		/*
		 * link memory sections under this node. This is already
		 * done when creatig memory section in register_new_memory
		 * but that depends to have the node registered so offline
		 * nodes have to go through register_node.
		 * TODO clean up this mess.
		 */
		ret = link_mem_sections(nid, start_pfn, nr_pages);
register_fail:
1177 1178 1179 1180 1181 1182 1183 1184
		/*
		 * If sysfs file of new node can't create, cpu on the node
		 * can't be hot-added. There is no rollback way now.
		 * So, check by BUG_ON() to catch it reluctantly..
		 */
		BUG_ON(ret);
	}

1185 1186 1187
	/* create new memmap entry */
	firmware_map_add_hotplug(start, start + size, "System RAM");

1188 1189 1190 1191 1192
	/* online pages if requested */
	if (online)
		walk_memory_range(PFN_DOWN(start), PFN_UP(start + size - 1),
				  NULL, online_memory_block);

1193 1194
	goto out;

1195 1196
error:
	/* rollback pgdat allocation and others */
1197
	if (new_pgdat && pgdat)
1198
		rollback_node_hotadd(nid, pgdat);
1199
	memblock_remove(start, size);
1200

1201
out:
1202
	mem_hotplug_done();
1203 1204
	return ret;
}
1205 1206 1207 1208 1209 1210 1211 1212
EXPORT_SYMBOL_GPL(add_memory_resource);

int __ref add_memory(int nid, u64 start, u64 size)
{
	struct resource *res;
	int ret;

	res = register_memory_resource(start, size);
1213 1214
	if (IS_ERR(res))
		return PTR_ERR(res);
1215

1216
	ret = add_memory_resource(nid, res, memhp_auto_online);
1217 1218 1219 1220
	if (ret < 0)
		release_memory_resource(res);
	return ret;
}
1221
EXPORT_SYMBOL_GPL(add_memory);
K
KAMEZAWA Hiroyuki 已提交
1222 1223

#ifdef CONFIG_MEMORY_HOTREMOVE
1224 1225 1226 1227 1228 1229 1230 1231 1232 1233 1234 1235 1236 1237 1238 1239 1240 1241 1242
/*
 * A free page on the buddy free lists (not the per-cpu lists) has PageBuddy
 * set and the size of the free page is given by page_order(). Using this,
 * the function determines if the pageblock contains only free pages.
 * Due to buddy contraints, a free page at least the size of a pageblock will
 * be located at the start of the pageblock
 */
static inline int pageblock_free(struct page *page)
{
	return PageBuddy(page) && page_order(page) >= pageblock_order;
}

/* Return the start of the next active pageblock after a given page */
static struct page *next_active_pageblock(struct page *page)
{
	/* Ensure the starting page is pageblock-aligned */
	BUG_ON(page_to_pfn(page) & (pageblock_nr_pages - 1));

	/* If the entire pageblock is free, move to the end of free page */
1243 1244 1245 1246 1247 1248 1249
	if (pageblock_free(page)) {
		int order;
		/* be careful. we don't have locks, page_order can be changed.*/
		order = page_order(page);
		if ((order < MAX_ORDER) && (order >= pageblock_order))
			return page + (1 << order);
	}
1250

1251
	return page + pageblock_nr_pages;
1252 1253 1254
}

/* Checks if this range of memory is likely to be hot-removable. */
1255
bool is_mem_section_removable(unsigned long start_pfn, unsigned long nr_pages)
1256 1257 1258 1259 1260 1261
{
	struct page *page = pfn_to_page(start_pfn);
	struct page *end_page = page + nr_pages;

	/* Check the starting page of each pageblock within the range */
	for (; page < end_page; page = next_active_pageblock(page)) {
1262
		if (!is_pageblock_removable_nolock(page))
1263
			return false;
1264
		cond_resched();
1265 1266 1267
	}

	/* All pageblocks in the memory block are likely to be hot-removable */
1268
	return true;
1269 1270
}

K
KAMEZAWA Hiroyuki 已提交
1271
/*
1272
 * Confirm all pages in a range [start, end) belong to the same zone.
1273
 * When true, return its valid [start, end).
K
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1274
 */
1275 1276
int test_pages_in_a_zone(unsigned long start_pfn, unsigned long end_pfn,
			 unsigned long *valid_start, unsigned long *valid_end)
K
KAMEZAWA Hiroyuki 已提交
1277
{
1278
	unsigned long pfn, sec_end_pfn;
1279
	unsigned long start, end;
K
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1280 1281 1282
	struct zone *zone = NULL;
	struct page *page;
	int i;
1283
	for (pfn = start_pfn, sec_end_pfn = SECTION_ALIGN_UP(start_pfn + 1);
K
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1284
	     pfn < end_pfn;
1285
	     pfn = sec_end_pfn, sec_end_pfn += PAGES_PER_SECTION) {
1286 1287
		/* Make sure the memory section is present first */
		if (!present_section_nr(pfn_to_section_nr(pfn)))
K
KAMEZAWA Hiroyuki 已提交
1288
			continue;
1289 1290 1291 1292 1293 1294 1295
		for (; pfn < sec_end_pfn && pfn < end_pfn;
		     pfn += MAX_ORDER_NR_PAGES) {
			i = 0;
			/* This is just a CONFIG_HOLES_IN_ZONE check.*/
			while ((i < MAX_ORDER_NR_PAGES) &&
				!pfn_valid_within(pfn + i))
				i++;
1296
			if (i == MAX_ORDER_NR_PAGES || pfn + i >= end_pfn)
1297 1298 1299 1300
				continue;
			page = pfn_to_page(pfn + i);
			if (zone && page_zone(page) != zone)
				return 0;
1301 1302
			if (!zone)
				start = pfn + i;
1303
			zone = page_zone(page);
1304
			end = pfn + MAX_ORDER_NR_PAGES;
1305
		}
K
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1306
	}
1307

1308 1309
	if (zone) {
		*valid_start = start;
1310
		*valid_end = min(end, end_pfn);
1311
		return 1;
1312
	} else {
1313
		return 0;
1314
	}
K
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1315 1316 1317
}

/*
1318 1319 1320 1321
 * Scan pfn range [start,end) to find movable/migratable pages (LRU pages,
 * non-lru movable pages and hugepages). We scan pfn because it's much
 * easier than scanning over linked list. This function returns the pfn
 * of the first found movable page if it's found, otherwise 0.
K
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1322
 */
1323
static unsigned long scan_movable_pages(unsigned long start, unsigned long end)
K
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1324 1325 1326 1327 1328 1329 1330 1331
{
	unsigned long pfn;
	struct page *page;
	for (pfn = start; pfn < end; pfn++) {
		if (pfn_valid(pfn)) {
			page = pfn_to_page(pfn);
			if (PageLRU(page))
				return pfn;
1332 1333
			if (__PageMovable(page))
				return pfn;
1334
			if (PageHuge(page)) {
1335
				if (page_huge_active(page))
1336 1337 1338 1339 1340
					return pfn;
				else
					pfn = round_up(pfn + 1,
						1 << compound_order(page)) - 1;
			}
K
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1341 1342 1343 1344 1345
		}
	}
	return 0;
}

1346 1347 1348 1349
static struct page *new_node_page(struct page *page, unsigned long private,
		int **result)
{
	int nid = page_to_nid(page);
1350
	nodemask_t nmask = node_states[N_MEMORY];
1351 1352 1353 1354 1355 1356 1357 1358 1359

	/*
	 * try to allocate from a different node but reuse this node if there
	 * are no other online nodes to be used (e.g. we are offlining a part
	 * of the only existing node)
	 */
	node_clear(nid, nmask);
	if (nodes_empty(nmask))
		node_set(nid, nmask);
1360

1361
	return new_page_nodemask(page, nid, &nmask);
1362 1363
}

K
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1364 1365 1366 1367 1368 1369 1370 1371 1372 1373 1374 1375 1376 1377 1378
#define NR_OFFLINE_AT_ONCE_PAGES	(256)
static int
do_migrate_range(unsigned long start_pfn, unsigned long end_pfn)
{
	unsigned long pfn;
	struct page *page;
	int move_pages = NR_OFFLINE_AT_ONCE_PAGES;
	int not_managed = 0;
	int ret = 0;
	LIST_HEAD(source);

	for (pfn = start_pfn; pfn < end_pfn && move_pages > 0; pfn++) {
		if (!pfn_valid(pfn))
			continue;
		page = pfn_to_page(pfn);
1379 1380 1381 1382 1383 1384 1385 1386 1387 1388 1389

		if (PageHuge(page)) {
			struct page *head = compound_head(page);
			pfn = page_to_pfn(head) + (1<<compound_order(head)) - 1;
			if (compound_order(head) > PFN_SECTION_SHIFT) {
				ret = -EBUSY;
				break;
			}
			if (isolate_huge_page(page, &source))
				move_pages -= 1 << compound_order(head);
			continue;
1390 1391 1392
		} else if (thp_migration_supported() && PageTransHuge(page))
			pfn = page_to_pfn(compound_head(page))
				+ hpage_nr_pages(page) - 1;
1393

1394
		if (!get_page_unless_zero(page))
K
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1395 1396
			continue;
		/*
1397 1398
		 * We can skip free pages. And we can deal with pages on
		 * LRU and non-lru movable pages.
K
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1399
		 */
1400 1401 1402 1403
		if (PageLRU(page))
			ret = isolate_lru_page(page);
		else
			ret = isolate_movable_page(page, ISOLATE_UNEVICTABLE);
K
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1404
		if (!ret) { /* Success */
1405
			put_page(page);
1406
			list_add_tail(&page->lru, &source);
K
KAMEZAWA Hiroyuki 已提交
1407
			move_pages--;
1408 1409 1410
			if (!__PageMovable(page))
				inc_node_page_state(page, NR_ISOLATED_ANON +
						    page_is_file_cache(page));
1411

K
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1412 1413
		} else {
#ifdef CONFIG_DEBUG_VM
1414 1415
			pr_alert("failed to isolate pfn %lx\n", pfn);
			dump_page(page, "isolation failed");
K
KAMEZAWA Hiroyuki 已提交
1416
#endif
1417
			put_page(page);
L
Lucas De Marchi 已提交
1418
			/* Because we don't have big zone->lock. we should
1419 1420 1421
			   check this again here. */
			if (page_count(page)) {
				not_managed++;
1422
				ret = -EBUSY;
1423 1424
				break;
			}
K
KAMEZAWA Hiroyuki 已提交
1425 1426
		}
	}
1427 1428
	if (!list_empty(&source)) {
		if (not_managed) {
1429
			putback_movable_pages(&source);
1430 1431
			goto out;
		}
1432

1433 1434
		/* Allocate a new page from the nearest neighbor node */
		ret = migrate_pages(&source, new_node_page, NULL, 0,
1435
					MIGRATE_SYNC, MR_MEMORY_HOTPLUG);
1436
		if (ret)
1437
			putback_movable_pages(&source);
K
KAMEZAWA Hiroyuki 已提交
1438 1439 1440 1441 1442 1443 1444 1445 1446 1447 1448 1449 1450 1451 1452 1453 1454 1455 1456
	}
out:
	return ret;
}

/*
 * remove from free_area[] and mark all as Reserved.
 */
static int
offline_isolated_pages_cb(unsigned long start, unsigned long nr_pages,
			void *data)
{
	__offline_isolated_pages(start, start + nr_pages);
	return 0;
}

static void
offline_isolated_pages(unsigned long start_pfn, unsigned long end_pfn)
{
K
KAMEZAWA Hiroyuki 已提交
1457
	walk_system_ram_range(start_pfn, end_pfn - start_pfn, NULL,
K
KAMEZAWA Hiroyuki 已提交
1458 1459 1460 1461 1462 1463 1464 1465 1466 1467 1468 1469
				offline_isolated_pages_cb);
}

/*
 * Check all pages in range, recoreded as memory resource, are isolated.
 */
static int
check_pages_isolated_cb(unsigned long start_pfn, unsigned long nr_pages,
			void *data)
{
	int ret;
	long offlined = *(long *)data;
1470
	ret = test_pages_isolated(start_pfn, start_pfn + nr_pages, true);
K
KAMEZAWA Hiroyuki 已提交
1471 1472 1473 1474 1475 1476 1477 1478 1479 1480 1481 1482
	offlined = nr_pages;
	if (!ret)
		*(long *)data += offlined;
	return ret;
}

static long
check_pages_isolated(unsigned long start_pfn, unsigned long end_pfn)
{
	long offlined = 0;
	int ret;

K
KAMEZAWA Hiroyuki 已提交
1483
	ret = walk_system_ram_range(start_pfn, end_pfn - start_pfn, &offlined,
K
KAMEZAWA Hiroyuki 已提交
1484 1485 1486 1487 1488 1489
			check_pages_isolated_cb);
	if (ret < 0)
		offlined = (long)ret;
	return offlined;
}

1490 1491
static int __init cmdline_parse_movable_node(char *p)
{
1492
#ifdef CONFIG_HAVE_MEMBLOCK_NODE_MAP
1493
	movable_node_enabled = true;
1494 1495 1496
#else
	pr_warn("movable_node parameter depends on CONFIG_HAVE_MEMBLOCK_NODE_MAP to work properly\n");
#endif
1497 1498 1499 1500
	return 0;
}
early_param("movable_node", cmdline_parse_movable_node);

1501 1502 1503 1504 1505 1506 1507 1508 1509
/* check which state of node_states will be changed when offline memory */
static void node_states_check_changes_offline(unsigned long nr_pages,
		struct zone *zone, struct memory_notify *arg)
{
	struct pglist_data *pgdat = zone->zone_pgdat;
	unsigned long present_pages = 0;
	enum zone_type zt, zone_last = ZONE_NORMAL;

	/*
1510 1511 1512
	 * If we have HIGHMEM or movable node, node_states[N_NORMAL_MEMORY]
	 * contains nodes which have zones of 0...ZONE_NORMAL,
	 * set zone_last to ZONE_NORMAL.
1513
	 *
1514 1515 1516
	 * If we don't have HIGHMEM nor movable node,
	 * node_states[N_NORMAL_MEMORY] contains nodes which have zones of
	 * 0...ZONE_MOVABLE, set zone_last to ZONE_MOVABLE.
1517
	 */
1518
	if (N_MEMORY == N_NORMAL_MEMORY)
1519 1520 1521 1522 1523 1524 1525 1526 1527 1528 1529 1530 1531 1532 1533 1534
		zone_last = ZONE_MOVABLE;

	/*
	 * check whether node_states[N_NORMAL_MEMORY] will be changed.
	 * If the memory to be offline is in a zone of 0...zone_last,
	 * and it is the last present memory, 0...zone_last will
	 * become empty after offline , thus we can determind we will
	 * need to clear the node from node_states[N_NORMAL_MEMORY].
	 */
	for (zt = 0; zt <= zone_last; zt++)
		present_pages += pgdat->node_zones[zt].present_pages;
	if (zone_idx(zone) <= zone_last && nr_pages >= present_pages)
		arg->status_change_nid_normal = zone_to_nid(zone);
	else
		arg->status_change_nid_normal = -1;

1535 1536 1537 1538 1539 1540 1541 1542 1543 1544 1545 1546 1547 1548 1549 1550 1551 1552 1553 1554 1555 1556 1557 1558
#ifdef CONFIG_HIGHMEM
	/*
	 * If we have movable node, node_states[N_HIGH_MEMORY]
	 * contains nodes which have zones of 0...ZONE_HIGHMEM,
	 * set zone_last to ZONE_HIGHMEM.
	 *
	 * If we don't have movable node, node_states[N_NORMAL_MEMORY]
	 * contains nodes which have zones of 0...ZONE_MOVABLE,
	 * set zone_last to ZONE_MOVABLE.
	 */
	zone_last = ZONE_HIGHMEM;
	if (N_MEMORY == N_HIGH_MEMORY)
		zone_last = ZONE_MOVABLE;

	for (; zt <= zone_last; zt++)
		present_pages += pgdat->node_zones[zt].present_pages;
	if (zone_idx(zone) <= zone_last && nr_pages >= present_pages)
		arg->status_change_nid_high = zone_to_nid(zone);
	else
		arg->status_change_nid_high = -1;
#else
	arg->status_change_nid_high = arg->status_change_nid_normal;
#endif

1559 1560 1561 1562 1563 1564 1565 1566 1567 1568 1569 1570 1571 1572 1573 1574 1575 1576 1577 1578 1579 1580 1581 1582
	/*
	 * node_states[N_HIGH_MEMORY] contains nodes which have 0...ZONE_MOVABLE
	 */
	zone_last = ZONE_MOVABLE;

	/*
	 * check whether node_states[N_HIGH_MEMORY] will be changed
	 * If we try to offline the last present @nr_pages from the node,
	 * we can determind we will need to clear the node from
	 * node_states[N_HIGH_MEMORY].
	 */
	for (; zt <= zone_last; zt++)
		present_pages += pgdat->node_zones[zt].present_pages;
	if (nr_pages >= present_pages)
		arg->status_change_nid = zone_to_nid(zone);
	else
		arg->status_change_nid = -1;
}

static void node_states_clear_node(int node, struct memory_notify *arg)
{
	if (arg->status_change_nid_normal >= 0)
		node_clear_state(node, N_NORMAL_MEMORY);

1583 1584
	if ((N_MEMORY != N_NORMAL_MEMORY) &&
	    (arg->status_change_nid_high >= 0))
1585
		node_clear_state(node, N_HIGH_MEMORY);
1586 1587 1588 1589

	if ((N_MEMORY != N_HIGH_MEMORY) &&
	    (arg->status_change_nid >= 0))
		node_clear_state(node, N_MEMORY);
1590 1591
}

1592
static int __ref __offline_pages(unsigned long start_pfn,
K
KAMEZAWA Hiroyuki 已提交
1593 1594 1595 1596
		  unsigned long end_pfn, unsigned long timeout)
{
	unsigned long pfn, nr_pages, expire;
	long offlined_pages;
1597
	int ret, drain, retry_max, node;
1598
	unsigned long flags;
1599
	unsigned long valid_start, valid_end;
K
KAMEZAWA Hiroyuki 已提交
1600
	struct zone *zone;
1601
	struct memory_notify arg;
K
KAMEZAWA Hiroyuki 已提交
1602 1603 1604 1605 1606 1607 1608 1609

	/* at least, alignment against pageblock is necessary */
	if (!IS_ALIGNED(start_pfn, pageblock_nr_pages))
		return -EINVAL;
	if (!IS_ALIGNED(end_pfn, pageblock_nr_pages))
		return -EINVAL;
	/* This makes hotplug much easier...and readable.
	   we assume this for now. .*/
1610
	if (!test_pages_in_a_zone(start_pfn, end_pfn, &valid_start, &valid_end))
K
KAMEZAWA Hiroyuki 已提交
1611
		return -EINVAL;
1612

1613
	zone = page_zone(pfn_to_page(valid_start));
1614 1615 1616
	node = zone_to_nid(zone);
	nr_pages = end_pfn - start_pfn;

K
KAMEZAWA Hiroyuki 已提交
1617
	/* set above range as isolated */
1618 1619
	ret = start_isolate_page_range(start_pfn, end_pfn,
				       MIGRATE_MOVABLE, true);
K
KAMEZAWA Hiroyuki 已提交
1620
	if (ret)
1621
		return ret;
1622 1623 1624

	arg.start_pfn = start_pfn;
	arg.nr_pages = nr_pages;
1625
	node_states_check_changes_offline(nr_pages, zone, &arg);
1626 1627 1628 1629 1630 1631

	ret = memory_notify(MEM_GOING_OFFLINE, &arg);
	ret = notifier_to_errno(ret);
	if (ret)
		goto failed_removal;

K
KAMEZAWA Hiroyuki 已提交
1632 1633 1634 1635 1636 1637 1638 1639 1640 1641 1642 1643 1644 1645
	pfn = start_pfn;
	expire = jiffies + timeout;
	drain = 0;
	retry_max = 5;
repeat:
	/* start memory hot removal */
	ret = -EAGAIN;
	if (time_after(jiffies, expire))
		goto failed_removal;
	ret = -EINTR;
	if (signal_pending(current))
		goto failed_removal;
	ret = 0;
	if (drain) {
1646
		lru_add_drain_all_cpuslocked();
K
KAMEZAWA Hiroyuki 已提交
1647
		cond_resched();
1648
		drain_all_pages(zone);
K
KAMEZAWA Hiroyuki 已提交
1649 1650
	}

1651 1652
	pfn = scan_movable_pages(start_pfn, end_pfn);
	if (pfn) { /* We have movable pages */
K
KAMEZAWA Hiroyuki 已提交
1653 1654 1655 1656 1657 1658 1659 1660 1661 1662 1663 1664 1665
		ret = do_migrate_range(pfn, end_pfn);
		if (!ret) {
			drain = 1;
			goto repeat;
		} else {
			if (ret < 0)
				if (--retry_max == 0)
					goto failed_removal;
			yield();
			drain = 1;
			goto repeat;
		}
	}
1666
	/* drain all zone's lru pagevec, this is asynchronous... */
1667
	lru_add_drain_all_cpuslocked();
K
KAMEZAWA Hiroyuki 已提交
1668
	yield();
1669
	/* drain pcp pages, this is synchronous. */
1670
	drain_all_pages(zone);
1671 1672 1673 1674
	/*
	 * dissolve free hugepages in the memory block before doing offlining
	 * actually in order to make hugetlbfs's object counting consistent.
	 */
1675 1676 1677
	ret = dissolve_free_huge_pages(start_pfn, end_pfn);
	if (ret)
		goto failed_removal;
K
KAMEZAWA Hiroyuki 已提交
1678 1679 1680 1681 1682 1683
	/* check again */
	offlined_pages = check_pages_isolated(start_pfn, end_pfn);
	if (offlined_pages < 0) {
		ret = -EBUSY;
		goto failed_removal;
	}
1684
	pr_info("Offlined Pages %ld\n", offlined_pages);
1685
	/* Ok, all of our target is isolated.
K
KAMEZAWA Hiroyuki 已提交
1686 1687
	   We cannot do rollback at this point. */
	offline_isolated_pages(start_pfn, end_pfn);
1688
	/* reset pagetype flags and makes migrate type to be MOVABLE */
1689
	undo_isolate_page_range(start_pfn, end_pfn, MIGRATE_MOVABLE);
K
KAMEZAWA Hiroyuki 已提交
1690
	/* removal success */
1691
	adjust_managed_page_count(pfn_to_page(start_pfn), -offlined_pages);
K
KAMEZAWA Hiroyuki 已提交
1692
	zone->present_pages -= offlined_pages;
1693 1694

	pgdat_resize_lock(zone->zone_pgdat, &flags);
K
KAMEZAWA Hiroyuki 已提交
1695
	zone->zone_pgdat->node_present_pages -= offlined_pages;
1696
	pgdat_resize_unlock(zone->zone_pgdat, &flags);
1697

1698 1699
	init_per_zone_wmark_min();

1700
	if (!populated_zone(zone)) {
1701
		zone_pcp_reset(zone);
1702
		build_all_zonelists(NULL);
1703 1704
	} else
		zone_pcp_update(zone);
1705

1706
	node_states_clear_node(node, &arg);
1707
	if (arg.status_change_nid >= 0) {
1708
		kswapd_stop(node);
1709 1710
		kcompactd_stop(node);
	}
1711

K
KAMEZAWA Hiroyuki 已提交
1712 1713
	vm_total_pages = nr_free_pagecache_pages();
	writeback_set_ratelimit();
1714 1715

	memory_notify(MEM_OFFLINE, &arg);
K
KAMEZAWA Hiroyuki 已提交
1716 1717 1718
	return 0;

failed_removal:
1719 1720 1721
	pr_debug("memory offlining [mem %#010llx-%#010llx] failed\n",
		 (unsigned long long) start_pfn << PAGE_SHIFT,
		 ((unsigned long long) end_pfn << PAGE_SHIFT) - 1);
1722
	memory_notify(MEM_CANCEL_OFFLINE, &arg);
K
KAMEZAWA Hiroyuki 已提交
1723
	/* pushback to free area */
1724
	undo_isolate_page_range(start_pfn, end_pfn, MIGRATE_MOVABLE);
K
KAMEZAWA Hiroyuki 已提交
1725 1726
	return ret;
}
1727

1728
/* Must be protected by mem_hotplug_begin() or a device_lock */
1729 1730 1731 1732
int offline_pages(unsigned long start_pfn, unsigned long nr_pages)
{
	return __offline_pages(start_pfn, start_pfn + nr_pages, 120 * HZ);
}
1733
#endif /* CONFIG_MEMORY_HOTREMOVE */
1734

1735 1736 1737
/**
 * walk_memory_range - walks through all mem sections in [start_pfn, end_pfn)
 * @start_pfn: start pfn of the memory range
1738
 * @end_pfn: end pfn of the memory range
1739 1740 1741 1742 1743 1744 1745 1746
 * @arg: argument passed to func
 * @func: callback for each memory section walked
 *
 * This function walks through all present mem sections in range
 * [start_pfn, end_pfn) and call func on each mem section.
 *
 * Returns the return value of func.
 */
1747
int walk_memory_range(unsigned long start_pfn, unsigned long end_pfn,
1748
		void *arg, int (*func)(struct memory_block *, void *))
1749
{
1750 1751 1752 1753 1754 1755 1756 1757 1758 1759 1760 1761 1762 1763 1764 1765 1766 1767 1768 1769 1770
	struct memory_block *mem = NULL;
	struct mem_section *section;
	unsigned long pfn, section_nr;
	int ret;

	for (pfn = start_pfn; pfn < end_pfn; pfn += PAGES_PER_SECTION) {
		section_nr = pfn_to_section_nr(pfn);
		if (!present_section_nr(section_nr))
			continue;

		section = __nr_to_section(section_nr);
		/* same memblock? */
		if (mem)
			if ((section_nr >= mem->start_section_nr) &&
			    (section_nr <= mem->end_section_nr))
				continue;

		mem = find_memory_block_hinted(section, mem);
		if (!mem)
			continue;

1771
		ret = func(mem, arg);
1772
		if (ret) {
1773 1774
			kobject_put(&mem->dev.kobj);
			return ret;
1775 1776 1777 1778 1779 1780
		}
	}

	if (mem)
		kobject_put(&mem->dev.kobj);

1781 1782 1783
	return 0;
}

1784
#ifdef CONFIG_MEMORY_HOTREMOVE
1785
static int check_memblock_offlined_cb(struct memory_block *mem, void *arg)
1786 1787 1788
{
	int ret = !is_memblock_offlined(mem);

1789 1790 1791 1792 1793
	if (unlikely(ret)) {
		phys_addr_t beginpa, endpa;

		beginpa = PFN_PHYS(section_nr_to_pfn(mem->start_section_nr));
		endpa = PFN_PHYS(section_nr_to_pfn(mem->end_section_nr + 1))-1;
J
Joe Perches 已提交
1794
		pr_warn("removing memory fails, because memory [%pa-%pa] is onlined\n",
1795 1796
			&beginpa, &endpa);
	}
1797 1798 1799 1800

	return ret;
}

1801
static int check_cpu_on_node(pg_data_t *pgdat)
1802 1803 1804 1805 1806 1807 1808 1809 1810 1811 1812 1813 1814 1815 1816
{
	int cpu;

	for_each_present_cpu(cpu) {
		if (cpu_to_node(cpu) == pgdat->node_id)
			/*
			 * the cpu on this node isn't removed, and we can't
			 * offline this node.
			 */
			return -EBUSY;
	}

	return 0;
}

1817
static void unmap_cpu_on_node(pg_data_t *pgdat)
1818 1819 1820 1821 1822 1823 1824 1825 1826 1827
{
#ifdef CONFIG_ACPI_NUMA
	int cpu;

	for_each_possible_cpu(cpu)
		if (cpu_to_node(cpu) == pgdat->node_id)
			numa_clear_node(cpu);
#endif
}

1828
static int check_and_unmap_cpu_on_node(pg_data_t *pgdat)
1829
{
1830
	int ret;
1831

1832
	ret = check_cpu_on_node(pgdat);
1833 1834 1835 1836 1837 1838 1839 1840
	if (ret)
		return ret;

	/*
	 * the node will be offlined when we come here, so we can clear
	 * the cpu_to_node() now.
	 */

1841
	unmap_cpu_on_node(pgdat);
1842 1843 1844
	return 0;
}

1845 1846 1847 1848 1849 1850 1851 1852
/**
 * try_offline_node
 *
 * Offline a node if all memory sections and cpus of the node are removed.
 *
 * NOTE: The caller must call lock_device_hotplug() to serialize hotplug
 * and online/offline operations before this call.
 */
1853
void try_offline_node(int nid)
1854
{
1855 1856 1857
	pg_data_t *pgdat = NODE_DATA(nid);
	unsigned long start_pfn = pgdat->node_start_pfn;
	unsigned long end_pfn = start_pfn + pgdat->node_spanned_pages;
1858 1859 1860 1861 1862 1863 1864 1865 1866 1867 1868 1869 1870 1871 1872 1873 1874 1875
	unsigned long pfn;

	for (pfn = start_pfn; pfn < end_pfn; pfn += PAGES_PER_SECTION) {
		unsigned long section_nr = pfn_to_section_nr(pfn);

		if (!present_section_nr(section_nr))
			continue;

		if (pfn_to_nid(pfn) != nid)
			continue;

		/*
		 * some memory sections of this node are not removed, and we
		 * can't offline node now.
		 */
		return;
	}

1876
	if (check_and_unmap_cpu_on_node(pgdat))
1877 1878 1879 1880 1881 1882 1883 1884 1885
		return;

	/*
	 * all memory/cpu of this node are removed, we can offline this
	 * node now.
	 */
	node_set_offline(nid);
	unregister_one_node(nid);
}
1886
EXPORT_SYMBOL(try_offline_node);
1887

1888 1889 1890 1891 1892 1893 1894
/**
 * remove_memory
 *
 * NOTE: The caller must call lock_device_hotplug() to serialize hotplug
 * and online/offline operations before this call, as required by
 * try_offline_node().
 */
1895
void __ref remove_memory(int nid, u64 start, u64 size)
1896
{
1897
	int ret;
1898

1899 1900
	BUG_ON(check_hotplug_memory_range(start, size));

1901
	mem_hotplug_begin();
1902 1903

	/*
1904 1905 1906
	 * All memory blocks must be offlined before removing memory.  Check
	 * whether all memory blocks in question are offline and trigger a BUG()
	 * if this is not the case.
1907
	 */
1908
	ret = walk_memory_range(PFN_DOWN(start), PFN_UP(start + size - 1), NULL,
1909
				check_memblock_offlined_cb);
1910
	if (ret)
1911
		BUG();
1912

1913 1914
	/* remove memmap entry */
	firmware_map_remove(start, start + size, "System RAM");
1915 1916
	memblock_free(start, size);
	memblock_remove(start, size);
1917

1918 1919
	arch_remove_memory(start, size);

1920 1921
	try_offline_node(nid);

1922
	mem_hotplug_done();
1923 1924
}
EXPORT_SYMBOL_GPL(remove_memory);
1925
#endif /* CONFIG_MEMORY_HOTREMOVE */