huge_memory.c 70.9 KB
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/*
 *  Copyright (C) 2009  Red Hat, Inc.
 *
 *  This work is licensed under the terms of the GNU GPL, version 2. See
 *  the COPYING file in the top-level directory.
 */

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#define pr_fmt(fmt) KBUILD_MODNAME ": " fmt

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#include <linux/mm.h>
#include <linux/sched.h>
#include <linux/highmem.h>
#include <linux/hugetlb.h>
#include <linux/mmu_notifier.h>
#include <linux/rmap.h>
#include <linux/swap.h>
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#include <linux/shrinker.h>
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#include <linux/mm_inline.h>
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#include <linux/dax.h>
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#include <linux/kthread.h>
#include <linux/khugepaged.h>
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#include <linux/freezer.h>
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#include <linux/mman.h>
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#include <linux/pagemap.h>
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#include <linux/migrate.h>
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#include <linux/hashtable.h>
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#include <linux/userfaultfd_k.h>
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#include <linux/page_idle.h>
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#include <asm/tlb.h>
#include <asm/pgalloc.h>
#include "internal.h"

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enum scan_result {
	SCAN_FAIL,
	SCAN_SUCCEED,
	SCAN_PMD_NULL,
	SCAN_EXCEED_NONE_PTE,
	SCAN_PTE_NON_PRESENT,
	SCAN_PAGE_RO,
	SCAN_NO_REFERENCED_PAGE,
	SCAN_PAGE_NULL,
	SCAN_SCAN_ABORT,
	SCAN_PAGE_COUNT,
	SCAN_PAGE_LRU,
	SCAN_PAGE_LOCK,
	SCAN_PAGE_ANON,
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	SCAN_PAGE_COMPOUND,
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	SCAN_ANY_PROCESS,
	SCAN_VMA_NULL,
	SCAN_VMA_CHECK,
	SCAN_ADDRESS_RANGE,
	SCAN_SWAP_CACHE_PAGE,
	SCAN_DEL_PAGE_LRU,
	SCAN_ALLOC_HUGE_PAGE_FAIL,
	SCAN_CGROUP_CHARGE_FAIL
};

#define CREATE_TRACE_POINTS
#include <trace/events/huge_memory.h>

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/*
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 * By default transparent hugepage support is disabled in order that avoid
 * to risk increase the memory footprint of applications without a guaranteed
 * benefit. When transparent hugepage support is enabled, is for all mappings,
 * and khugepaged scans all mappings.
 * Defrag is invoked by khugepaged hugepage allocations and by page faults
 * for all hugepage allocations.
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 */
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unsigned long transparent_hugepage_flags __read_mostly =
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#ifdef CONFIG_TRANSPARENT_HUGEPAGE_ALWAYS
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	(1<<TRANSPARENT_HUGEPAGE_FLAG)|
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#endif
#ifdef CONFIG_TRANSPARENT_HUGEPAGE_MADVISE
	(1<<TRANSPARENT_HUGEPAGE_REQ_MADV_FLAG)|
#endif
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	(1<<TRANSPARENT_HUGEPAGE_DEFRAG_FLAG)|
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	(1<<TRANSPARENT_HUGEPAGE_DEFRAG_KHUGEPAGED_FLAG)|
	(1<<TRANSPARENT_HUGEPAGE_USE_ZERO_PAGE_FLAG);
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/* default scan 8*512 pte (or vmas) every 30 second */
static unsigned int khugepaged_pages_to_scan __read_mostly = HPAGE_PMD_NR*8;
static unsigned int khugepaged_pages_collapsed;
static unsigned int khugepaged_full_scans;
static unsigned int khugepaged_scan_sleep_millisecs __read_mostly = 10000;
/* during fragmentation poll the hugepage allocator once every minute */
static unsigned int khugepaged_alloc_sleep_millisecs __read_mostly = 60000;
static struct task_struct *khugepaged_thread __read_mostly;
static DEFINE_MUTEX(khugepaged_mutex);
static DEFINE_SPINLOCK(khugepaged_mm_lock);
static DECLARE_WAIT_QUEUE_HEAD(khugepaged_wait);
/*
 * default collapse hugepages if there is at least one pte mapped like
 * it would have happened if the vma was large enough during page
 * fault.
 */
static unsigned int khugepaged_max_ptes_none __read_mostly = HPAGE_PMD_NR-1;

static int khugepaged(void *none);
static int khugepaged_slab_init(void);
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static void khugepaged_slab_exit(void);
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#define MM_SLOTS_HASH_BITS 10
static __read_mostly DEFINE_HASHTABLE(mm_slots_hash, MM_SLOTS_HASH_BITS);

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static struct kmem_cache *mm_slot_cache __read_mostly;

/**
 * struct mm_slot - hash lookup from mm to mm_slot
 * @hash: hash collision list
 * @mm_node: khugepaged scan list headed in khugepaged_scan.mm_head
 * @mm: the mm that this information is valid for
 */
struct mm_slot {
	struct hlist_node hash;
	struct list_head mm_node;
	struct mm_struct *mm;
};

/**
 * struct khugepaged_scan - cursor for scanning
 * @mm_head: the head of the mm list to scan
 * @mm_slot: the current mm_slot we are scanning
 * @address: the next address inside that to be scanned
 *
 * There is only the one khugepaged_scan instance of this cursor structure.
 */
struct khugepaged_scan {
	struct list_head mm_head;
	struct mm_slot *mm_slot;
	unsigned long address;
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};
static struct khugepaged_scan khugepaged_scan = {
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	.mm_head = LIST_HEAD_INIT(khugepaged_scan.mm_head),
};

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static void set_recommended_min_free_kbytes(void)
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{
	struct zone *zone;
	int nr_zones = 0;
	unsigned long recommended_min;

	for_each_populated_zone(zone)
		nr_zones++;

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	/* Ensure 2 pageblocks are free to assist fragmentation avoidance */
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	recommended_min = pageblock_nr_pages * nr_zones * 2;

	/*
	 * Make sure that on average at least two pageblocks are almost free
	 * of another type, one for a migratetype to fall back to and a
	 * second to avoid subsequent fallbacks of other types There are 3
	 * MIGRATE_TYPES we care about.
	 */
	recommended_min += pageblock_nr_pages * nr_zones *
			   MIGRATE_PCPTYPES * MIGRATE_PCPTYPES;

	/* don't ever allow to reserve more than 5% of the lowmem */
	recommended_min = min(recommended_min,
			      (unsigned long) nr_free_buffer_pages() / 20);
	recommended_min <<= (PAGE_SHIFT-10);

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	if (recommended_min > min_free_kbytes) {
		if (user_min_free_kbytes >= 0)
			pr_info("raising min_free_kbytes from %d to %lu "
				"to help transparent hugepage allocations\n",
				min_free_kbytes, recommended_min);

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		min_free_kbytes = recommended_min;
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	}
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	setup_per_zone_wmarks();
}

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static int start_stop_khugepaged(void)
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{
	int err = 0;
	if (khugepaged_enabled()) {
		if (!khugepaged_thread)
			khugepaged_thread = kthread_run(khugepaged, NULL,
							"khugepaged");
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		if (IS_ERR(khugepaged_thread)) {
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			pr_err("khugepaged: kthread_run(khugepaged) failed\n");
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			err = PTR_ERR(khugepaged_thread);
			khugepaged_thread = NULL;
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			goto fail;
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		}
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		if (!list_empty(&khugepaged_scan.mm_head))
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			wake_up_interruptible(&khugepaged_wait);
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		set_recommended_min_free_kbytes();
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	} else if (khugepaged_thread) {
		kthread_stop(khugepaged_thread);
		khugepaged_thread = NULL;
	}
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fail:
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	return err;
}
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static atomic_t huge_zero_refcount;
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struct page *huge_zero_page __read_mostly;
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struct page *get_huge_zero_page(void)
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{
	struct page *zero_page;
retry:
	if (likely(atomic_inc_not_zero(&huge_zero_refcount)))
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		return READ_ONCE(huge_zero_page);
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	zero_page = alloc_pages((GFP_TRANSHUGE | __GFP_ZERO) & ~__GFP_MOVABLE,
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			HPAGE_PMD_ORDER);
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	if (!zero_page) {
		count_vm_event(THP_ZERO_PAGE_ALLOC_FAILED);
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		return NULL;
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	}
	count_vm_event(THP_ZERO_PAGE_ALLOC);
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	preempt_disable();
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	if (cmpxchg(&huge_zero_page, NULL, zero_page)) {
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		preempt_enable();
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		__free_pages(zero_page, compound_order(zero_page));
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		goto retry;
	}

	/* We take additional reference here. It will be put back by shrinker */
	atomic_set(&huge_zero_refcount, 2);
	preempt_enable();
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	return READ_ONCE(huge_zero_page);
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}

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static void put_huge_zero_page(void)
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{
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	/*
	 * Counter should never go to zero here. Only shrinker can put
	 * last reference.
	 */
	BUG_ON(atomic_dec_and_test(&huge_zero_refcount));
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}

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static unsigned long shrink_huge_zero_page_count(struct shrinker *shrink,
					struct shrink_control *sc)
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{
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	/* we can free zero page only if last reference remains */
	return atomic_read(&huge_zero_refcount) == 1 ? HPAGE_PMD_NR : 0;
}
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static unsigned long shrink_huge_zero_page_scan(struct shrinker *shrink,
				       struct shrink_control *sc)
{
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	if (atomic_cmpxchg(&huge_zero_refcount, 1, 0) == 1) {
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		struct page *zero_page = xchg(&huge_zero_page, NULL);
		BUG_ON(zero_page == NULL);
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		__free_pages(zero_page, compound_order(zero_page));
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		return HPAGE_PMD_NR;
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	}

	return 0;
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}

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static struct shrinker huge_zero_page_shrinker = {
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	.count_objects = shrink_huge_zero_page_count,
	.scan_objects = shrink_huge_zero_page_scan,
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	.seeks = DEFAULT_SEEKS,
};

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#ifdef CONFIG_SYSFS
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static ssize_t double_flag_show(struct kobject *kobj,
				struct kobj_attribute *attr, char *buf,
				enum transparent_hugepage_flag enabled,
				enum transparent_hugepage_flag req_madv)
{
	if (test_bit(enabled, &transparent_hugepage_flags)) {
		VM_BUG_ON(test_bit(req_madv, &transparent_hugepage_flags));
		return sprintf(buf, "[always] madvise never\n");
	} else if (test_bit(req_madv, &transparent_hugepage_flags))
		return sprintf(buf, "always [madvise] never\n");
	else
		return sprintf(buf, "always madvise [never]\n");
}
static ssize_t double_flag_store(struct kobject *kobj,
				 struct kobj_attribute *attr,
				 const char *buf, size_t count,
				 enum transparent_hugepage_flag enabled,
				 enum transparent_hugepage_flag req_madv)
{
	if (!memcmp("always", buf,
		    min(sizeof("always")-1, count))) {
		set_bit(enabled, &transparent_hugepage_flags);
		clear_bit(req_madv, &transparent_hugepage_flags);
	} else if (!memcmp("madvise", buf,
			   min(sizeof("madvise")-1, count))) {
		clear_bit(enabled, &transparent_hugepage_flags);
		set_bit(req_madv, &transparent_hugepage_flags);
	} else if (!memcmp("never", buf,
			   min(sizeof("never")-1, count))) {
		clear_bit(enabled, &transparent_hugepage_flags);
		clear_bit(req_madv, &transparent_hugepage_flags);
	} else
		return -EINVAL;

	return count;
}

static ssize_t enabled_show(struct kobject *kobj,
			    struct kobj_attribute *attr, char *buf)
{
	return double_flag_show(kobj, attr, buf,
				TRANSPARENT_HUGEPAGE_FLAG,
				TRANSPARENT_HUGEPAGE_REQ_MADV_FLAG);
}
static ssize_t enabled_store(struct kobject *kobj,
			     struct kobj_attribute *attr,
			     const char *buf, size_t count)
{
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	ssize_t ret;

	ret = double_flag_store(kobj, attr, buf, count,
				TRANSPARENT_HUGEPAGE_FLAG,
				TRANSPARENT_HUGEPAGE_REQ_MADV_FLAG);

	if (ret > 0) {
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		int err;

		mutex_lock(&khugepaged_mutex);
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		err = start_stop_khugepaged();
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		mutex_unlock(&khugepaged_mutex);

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		if (err)
			ret = err;
	}

	return ret;
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}
static struct kobj_attribute enabled_attr =
	__ATTR(enabled, 0644, enabled_show, enabled_store);

static ssize_t single_flag_show(struct kobject *kobj,
				struct kobj_attribute *attr, char *buf,
				enum transparent_hugepage_flag flag)
{
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	return sprintf(buf, "%d\n",
		       !!test_bit(flag, &transparent_hugepage_flags));
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}
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static ssize_t single_flag_store(struct kobject *kobj,
				 struct kobj_attribute *attr,
				 const char *buf, size_t count,
				 enum transparent_hugepage_flag flag)
{
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	unsigned long value;
	int ret;

	ret = kstrtoul(buf, 10, &value);
	if (ret < 0)
		return ret;
	if (value > 1)
		return -EINVAL;

	if (value)
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		set_bit(flag, &transparent_hugepage_flags);
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	else
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		clear_bit(flag, &transparent_hugepage_flags);

	return count;
}

/*
 * Currently defrag only disables __GFP_NOWAIT for allocation. A blind
 * __GFP_REPEAT is too aggressive, it's never worth swapping tons of
 * memory just to allocate one more hugepage.
 */
static ssize_t defrag_show(struct kobject *kobj,
			   struct kobj_attribute *attr, char *buf)
{
	return double_flag_show(kobj, attr, buf,
				TRANSPARENT_HUGEPAGE_DEFRAG_FLAG,
				TRANSPARENT_HUGEPAGE_DEFRAG_REQ_MADV_FLAG);
}
static ssize_t defrag_store(struct kobject *kobj,
			    struct kobj_attribute *attr,
			    const char *buf, size_t count)
{
	return double_flag_store(kobj, attr, buf, count,
				 TRANSPARENT_HUGEPAGE_DEFRAG_FLAG,
				 TRANSPARENT_HUGEPAGE_DEFRAG_REQ_MADV_FLAG);
}
static struct kobj_attribute defrag_attr =
	__ATTR(defrag, 0644, defrag_show, defrag_store);

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static ssize_t use_zero_page_show(struct kobject *kobj,
		struct kobj_attribute *attr, char *buf)
{
	return single_flag_show(kobj, attr, buf,
				TRANSPARENT_HUGEPAGE_USE_ZERO_PAGE_FLAG);
}
static ssize_t use_zero_page_store(struct kobject *kobj,
		struct kobj_attribute *attr, const char *buf, size_t count)
{
	return single_flag_store(kobj, attr, buf, count,
				 TRANSPARENT_HUGEPAGE_USE_ZERO_PAGE_FLAG);
}
static struct kobj_attribute use_zero_page_attr =
	__ATTR(use_zero_page, 0644, use_zero_page_show, use_zero_page_store);
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#ifdef CONFIG_DEBUG_VM
static ssize_t debug_cow_show(struct kobject *kobj,
				struct kobj_attribute *attr, char *buf)
{
	return single_flag_show(kobj, attr, buf,
				TRANSPARENT_HUGEPAGE_DEBUG_COW_FLAG);
}
static ssize_t debug_cow_store(struct kobject *kobj,
			       struct kobj_attribute *attr,
			       const char *buf, size_t count)
{
	return single_flag_store(kobj, attr, buf, count,
				 TRANSPARENT_HUGEPAGE_DEBUG_COW_FLAG);
}
static struct kobj_attribute debug_cow_attr =
	__ATTR(debug_cow, 0644, debug_cow_show, debug_cow_store);
#endif /* CONFIG_DEBUG_VM */

static struct attribute *hugepage_attr[] = {
	&enabled_attr.attr,
	&defrag_attr.attr,
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	&use_zero_page_attr.attr,
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#ifdef CONFIG_DEBUG_VM
	&debug_cow_attr.attr,
#endif
	NULL,
};

static struct attribute_group hugepage_attr_group = {
	.attrs = hugepage_attr,
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};

static ssize_t scan_sleep_millisecs_show(struct kobject *kobj,
					 struct kobj_attribute *attr,
					 char *buf)
{
	return sprintf(buf, "%u\n", khugepaged_scan_sleep_millisecs);
}

static ssize_t scan_sleep_millisecs_store(struct kobject *kobj,
					  struct kobj_attribute *attr,
					  const char *buf, size_t count)
{
	unsigned long msecs;
	int err;

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	err = kstrtoul(buf, 10, &msecs);
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	if (err || msecs > UINT_MAX)
		return -EINVAL;

	khugepaged_scan_sleep_millisecs = msecs;
	wake_up_interruptible(&khugepaged_wait);

	return count;
}
static struct kobj_attribute scan_sleep_millisecs_attr =
	__ATTR(scan_sleep_millisecs, 0644, scan_sleep_millisecs_show,
	       scan_sleep_millisecs_store);

static ssize_t alloc_sleep_millisecs_show(struct kobject *kobj,
					  struct kobj_attribute *attr,
					  char *buf)
{
	return sprintf(buf, "%u\n", khugepaged_alloc_sleep_millisecs);
}

static ssize_t alloc_sleep_millisecs_store(struct kobject *kobj,
					   struct kobj_attribute *attr,
					   const char *buf, size_t count)
{
	unsigned long msecs;
	int err;

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	err = kstrtoul(buf, 10, &msecs);
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	if (err || msecs > UINT_MAX)
		return -EINVAL;

	khugepaged_alloc_sleep_millisecs = msecs;
	wake_up_interruptible(&khugepaged_wait);

	return count;
}
static struct kobj_attribute alloc_sleep_millisecs_attr =
	__ATTR(alloc_sleep_millisecs, 0644, alloc_sleep_millisecs_show,
	       alloc_sleep_millisecs_store);

static ssize_t pages_to_scan_show(struct kobject *kobj,
				  struct kobj_attribute *attr,
				  char *buf)
{
	return sprintf(buf, "%u\n", khugepaged_pages_to_scan);
}
static ssize_t pages_to_scan_store(struct kobject *kobj,
				   struct kobj_attribute *attr,
				   const char *buf, size_t count)
{
	int err;
	unsigned long pages;

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	err = kstrtoul(buf, 10, &pages);
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	if (err || !pages || pages > UINT_MAX)
		return -EINVAL;

	khugepaged_pages_to_scan = pages;

	return count;
}
static struct kobj_attribute pages_to_scan_attr =
	__ATTR(pages_to_scan, 0644, pages_to_scan_show,
	       pages_to_scan_store);

static ssize_t pages_collapsed_show(struct kobject *kobj,
				    struct kobj_attribute *attr,
				    char *buf)
{
	return sprintf(buf, "%u\n", khugepaged_pages_collapsed);
}
static struct kobj_attribute pages_collapsed_attr =
	__ATTR_RO(pages_collapsed);

static ssize_t full_scans_show(struct kobject *kobj,
			       struct kobj_attribute *attr,
			       char *buf)
{
	return sprintf(buf, "%u\n", khugepaged_full_scans);
}
static struct kobj_attribute full_scans_attr =
	__ATTR_RO(full_scans);

static ssize_t khugepaged_defrag_show(struct kobject *kobj,
				      struct kobj_attribute *attr, char *buf)
{
	return single_flag_show(kobj, attr, buf,
				TRANSPARENT_HUGEPAGE_DEFRAG_KHUGEPAGED_FLAG);
}
static ssize_t khugepaged_defrag_store(struct kobject *kobj,
				       struct kobj_attribute *attr,
				       const char *buf, size_t count)
{
	return single_flag_store(kobj, attr, buf, count,
				 TRANSPARENT_HUGEPAGE_DEFRAG_KHUGEPAGED_FLAG);
}
static struct kobj_attribute khugepaged_defrag_attr =
	__ATTR(defrag, 0644, khugepaged_defrag_show,
	       khugepaged_defrag_store);

/*
 * max_ptes_none controls if khugepaged should collapse hugepages over
 * any unmapped ptes in turn potentially increasing the memory
 * footprint of the vmas. When max_ptes_none is 0 khugepaged will not
 * reduce the available free memory in the system as it
 * runs. Increasing max_ptes_none will instead potentially reduce the
 * free memory in the system during the khugepaged scan.
 */
static ssize_t khugepaged_max_ptes_none_show(struct kobject *kobj,
					     struct kobj_attribute *attr,
					     char *buf)
{
	return sprintf(buf, "%u\n", khugepaged_max_ptes_none);
}
static ssize_t khugepaged_max_ptes_none_store(struct kobject *kobj,
					      struct kobj_attribute *attr,
					      const char *buf, size_t count)
{
	int err;
	unsigned long max_ptes_none;

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	err = kstrtoul(buf, 10, &max_ptes_none);
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	if (err || max_ptes_none > HPAGE_PMD_NR-1)
		return -EINVAL;

	khugepaged_max_ptes_none = max_ptes_none;

	return count;
}
static struct kobj_attribute khugepaged_max_ptes_none_attr =
	__ATTR(max_ptes_none, 0644, khugepaged_max_ptes_none_show,
	       khugepaged_max_ptes_none_store);

static struct attribute *khugepaged_attr[] = {
	&khugepaged_defrag_attr.attr,
	&khugepaged_max_ptes_none_attr.attr,
	&pages_to_scan_attr.attr,
	&pages_collapsed_attr.attr,
	&full_scans_attr.attr,
	&scan_sleep_millisecs_attr.attr,
	&alloc_sleep_millisecs_attr.attr,
	NULL,
};

static struct attribute_group khugepaged_attr_group = {
	.attrs = khugepaged_attr,
	.name = "khugepaged",
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};

S
Shaohua Li 已提交
600
static int __init hugepage_init_sysfs(struct kobject **hugepage_kobj)
601 602 603
{
	int err;

S
Shaohua Li 已提交
604 605
	*hugepage_kobj = kobject_create_and_add("transparent_hugepage", mm_kobj);
	if (unlikely(!*hugepage_kobj)) {
606
		pr_err("failed to create transparent hugepage kobject\n");
S
Shaohua Li 已提交
607
		return -ENOMEM;
A
Andrea Arcangeli 已提交
608 609
	}

S
Shaohua Li 已提交
610
	err = sysfs_create_group(*hugepage_kobj, &hugepage_attr_group);
A
Andrea Arcangeli 已提交
611
	if (err) {
612
		pr_err("failed to register transparent hugepage group\n");
S
Shaohua Li 已提交
613
		goto delete_obj;
A
Andrea Arcangeli 已提交
614 615
	}

S
Shaohua Li 已提交
616
	err = sysfs_create_group(*hugepage_kobj, &khugepaged_attr_group);
A
Andrea Arcangeli 已提交
617
	if (err) {
618
		pr_err("failed to register transparent hugepage group\n");
S
Shaohua Li 已提交
619
		goto remove_hp_group;
A
Andrea Arcangeli 已提交
620
	}
S
Shaohua Li 已提交
621 622 623 624 625 626 627 628 629 630 631 632 633 634 635 636 637 638 639 640 641 642 643 644 645 646 647 648 649 650 651 652 653 654 655 656 657 658 659

	return 0;

remove_hp_group:
	sysfs_remove_group(*hugepage_kobj, &hugepage_attr_group);
delete_obj:
	kobject_put(*hugepage_kobj);
	return err;
}

static void __init hugepage_exit_sysfs(struct kobject *hugepage_kobj)
{
	sysfs_remove_group(hugepage_kobj, &khugepaged_attr_group);
	sysfs_remove_group(hugepage_kobj, &hugepage_attr_group);
	kobject_put(hugepage_kobj);
}
#else
static inline int hugepage_init_sysfs(struct kobject **hugepage_kobj)
{
	return 0;
}

static inline void hugepage_exit_sysfs(struct kobject *hugepage_kobj)
{
}
#endif /* CONFIG_SYSFS */

static int __init hugepage_init(void)
{
	int err;
	struct kobject *hugepage_kobj;

	if (!has_transparent_hugepage()) {
		transparent_hugepage_flags = 0;
		return -EINVAL;
	}

	err = hugepage_init_sysfs(&hugepage_kobj);
	if (err)
660
		goto err_sysfs;
A
Andrea Arcangeli 已提交
661 662 663

	err = khugepaged_slab_init();
	if (err)
664
		goto err_slab;
A
Andrea Arcangeli 已提交
665

666 667 668
	err = register_shrinker(&huge_zero_page_shrinker);
	if (err)
		goto err_hzp_shrinker;
669

670 671 672 673 674
	/*
	 * By default disable transparent hugepages on smaller systems,
	 * where the extra memory used could hurt more than TLB overhead
	 * is likely to save.  The admin can still enable it through /sys.
	 */
675
	if (totalram_pages < (512 << (20 - PAGE_SHIFT))) {
676
		transparent_hugepage_flags = 0;
677 678
		return 0;
	}
679

680
	err = start_stop_khugepaged();
681 682
	if (err)
		goto err_khugepaged;
A
Andrea Arcangeli 已提交
683

S
Shaohua Li 已提交
684
	return 0;
685 686 687 688 689
err_khugepaged:
	unregister_shrinker(&huge_zero_page_shrinker);
err_hzp_shrinker:
	khugepaged_slab_exit();
err_slab:
S
Shaohua Li 已提交
690
	hugepage_exit_sysfs(hugepage_kobj);
691
err_sysfs:
A
Andrea Arcangeli 已提交
692
	return err;
693
}
694
subsys_initcall(hugepage_init);
695 696 697 698 699 700 701 702 703 704 705 706 707 708 709 710 711 712 713 714 715 716 717 718 719 720 721

static int __init setup_transparent_hugepage(char *str)
{
	int ret = 0;
	if (!str)
		goto out;
	if (!strcmp(str, "always")) {
		set_bit(TRANSPARENT_HUGEPAGE_FLAG,
			&transparent_hugepage_flags);
		clear_bit(TRANSPARENT_HUGEPAGE_REQ_MADV_FLAG,
			  &transparent_hugepage_flags);
		ret = 1;
	} else if (!strcmp(str, "madvise")) {
		clear_bit(TRANSPARENT_HUGEPAGE_FLAG,
			  &transparent_hugepage_flags);
		set_bit(TRANSPARENT_HUGEPAGE_REQ_MADV_FLAG,
			&transparent_hugepage_flags);
		ret = 1;
	} else if (!strcmp(str, "never")) {
		clear_bit(TRANSPARENT_HUGEPAGE_FLAG,
			  &transparent_hugepage_flags);
		clear_bit(TRANSPARENT_HUGEPAGE_REQ_MADV_FLAG,
			  &transparent_hugepage_flags);
		ret = 1;
	}
out:
	if (!ret)
722
		pr_warn("transparent_hugepage= cannot parse, ignored\n");
723 724 725 726
	return ret;
}
__setup("transparent_hugepage=", setup_transparent_hugepage);

727
pmd_t maybe_pmd_mkwrite(pmd_t pmd, struct vm_area_struct *vma)
728 729 730 731 732 733
{
	if (likely(vma->vm_flags & VM_WRITE))
		pmd = pmd_mkwrite(pmd);
	return pmd;
}

734
static inline pmd_t mk_huge_pmd(struct page *page, pgprot_t prot)
B
Bob Liu 已提交
735 736
{
	pmd_t entry;
737
	entry = mk_pmd(page, prot);
B
Bob Liu 已提交
738 739 740 741
	entry = pmd_mkhuge(entry);
	return entry;
}

742 743
static int __do_huge_pmd_anonymous_page(struct mm_struct *mm,
					struct vm_area_struct *vma,
744
					unsigned long address, pmd_t *pmd,
745 746
					struct page *page, gfp_t gfp,
					unsigned int flags)
747
{
748
	struct mem_cgroup *memcg;
749
	pgtable_t pgtable;
750
	spinlock_t *ptl;
751
	unsigned long haddr = address & HPAGE_PMD_MASK;
752

753
	VM_BUG_ON_PAGE(!PageCompound(page), page);
754

755
	if (mem_cgroup_try_charge(page, mm, gfp, &memcg, true)) {
756 757 758 759
		put_page(page);
		count_vm_event(THP_FAULT_FALLBACK);
		return VM_FAULT_FALLBACK;
	}
760

761
	pgtable = pte_alloc_one(mm, haddr);
762
	if (unlikely(!pgtable)) {
763
		mem_cgroup_cancel_charge(page, memcg, true);
764
		put_page(page);
765
		return VM_FAULT_OOM;
766
	}
767 768

	clear_huge_page(page, haddr, HPAGE_PMD_NR);
769 770 771 772 773
	/*
	 * The memory barrier inside __SetPageUptodate makes sure that
	 * clear_huge_page writes become visible before the set_pmd_at()
	 * write.
	 */
774 775
	__SetPageUptodate(page);

776
	ptl = pmd_lock(mm, pmd);
777
	if (unlikely(!pmd_none(*pmd))) {
778
		spin_unlock(ptl);
779
		mem_cgroup_cancel_charge(page, memcg, true);
780 781 782 783
		put_page(page);
		pte_free(mm, pgtable);
	} else {
		pmd_t entry;
784 785 786 787 788 789

		/* Deliver the page fault to userland */
		if (userfaultfd_missing(vma)) {
			int ret;

			spin_unlock(ptl);
790
			mem_cgroup_cancel_charge(page, memcg, true);
791 792
			put_page(page);
			pte_free(mm, pgtable);
793
			ret = handle_userfault(vma, address, flags,
794 795 796 797 798
					       VM_UFFD_MISSING);
			VM_BUG_ON(ret & VM_FAULT_FALLBACK);
			return ret;
		}

799 800
		entry = mk_huge_pmd(page, vma->vm_page_prot);
		entry = maybe_pmd_mkwrite(pmd_mkdirty(entry), vma);
801
		page_add_new_anon_rmap(page, vma, haddr, true);
802
		mem_cgroup_commit_charge(page, memcg, false, true);
803
		lru_cache_add_active_or_unevictable(page, vma);
804
		pgtable_trans_huge_deposit(mm, pmd, pgtable);
805 806
		set_pmd_at(mm, haddr, pmd, entry);
		add_mm_counter(mm, MM_ANONPAGES, HPAGE_PMD_NR);
807
		atomic_long_inc(&mm->nr_ptes);
808
		spin_unlock(ptl);
809
		count_vm_event(THP_FAULT_ALLOC);
810 811
	}

812
	return 0;
813 814
}

815
static inline gfp_t alloc_hugepage_gfpmask(int defrag, gfp_t extra_gfp)
816
{
817
	return (GFP_TRANSHUGE & ~(defrag ? 0 : __GFP_RECLAIM)) | extra_gfp;
818 819
}

820
/* Caller must hold page table lock. */
821
static bool set_huge_zero_page(pgtable_t pgtable, struct mm_struct *mm,
822
		struct vm_area_struct *vma, unsigned long haddr, pmd_t *pmd,
823
		struct page *zero_page)
824 825
{
	pmd_t entry;
A
Andrew Morton 已提交
826 827
	if (!pmd_none(*pmd))
		return false;
828
	entry = mk_pmd(zero_page, vma->vm_page_prot);
829
	entry = pmd_mkhuge(entry);
830
	pgtable_trans_huge_deposit(mm, pmd, pgtable);
831
	set_pmd_at(mm, haddr, pmd, entry);
832
	atomic_long_inc(&mm->nr_ptes);
A
Andrew Morton 已提交
833
	return true;
834 835
}

836 837 838 839
int do_huge_pmd_anonymous_page(struct mm_struct *mm, struct vm_area_struct *vma,
			       unsigned long address, pmd_t *pmd,
			       unsigned int flags)
{
840
	gfp_t gfp;
841 842 843
	struct page *page;
	unsigned long haddr = address & HPAGE_PMD_MASK;

844
	if (haddr < vma->vm_start || haddr + HPAGE_PMD_SIZE > vma->vm_end)
845
		return VM_FAULT_FALLBACK;
846 847
	if (vma->vm_flags & VM_LOCKED)
		return VM_FAULT_FALLBACK;
848 849
	if (unlikely(anon_vma_prepare(vma)))
		return VM_FAULT_OOM;
850
	if (unlikely(khugepaged_enter(vma, vma->vm_flags)))
851
		return VM_FAULT_OOM;
852
	if (!(flags & FAULT_FLAG_WRITE) && !mm_forbids_zeropage(mm) &&
853
			transparent_hugepage_use_zero_page()) {
854
		spinlock_t *ptl;
855 856 857
		pgtable_t pgtable;
		struct page *zero_page;
		bool set;
858
		int ret;
859 860
		pgtable = pte_alloc_one(mm, haddr);
		if (unlikely(!pgtable))
A
Andrea Arcangeli 已提交
861
			return VM_FAULT_OOM;
862 863 864
		zero_page = get_huge_zero_page();
		if (unlikely(!zero_page)) {
			pte_free(mm, pgtable);
865
			count_vm_event(THP_FAULT_FALLBACK);
866
			return VM_FAULT_FALLBACK;
A
Andrea Arcangeli 已提交
867
		}
868
		ptl = pmd_lock(mm, pmd);
869 870 871 872 873
		ret = 0;
		set = false;
		if (pmd_none(*pmd)) {
			if (userfaultfd_missing(vma)) {
				spin_unlock(ptl);
874
				ret = handle_userfault(vma, address, flags,
875 876 877 878 879 880 881 882 883 884 885
						       VM_UFFD_MISSING);
				VM_BUG_ON(ret & VM_FAULT_FALLBACK);
			} else {
				set_huge_zero_page(pgtable, mm, vma,
						   haddr, pmd,
						   zero_page);
				spin_unlock(ptl);
				set = true;
			}
		} else
			spin_unlock(ptl);
886 887 888
		if (!set) {
			pte_free(mm, pgtable);
			put_huge_zero_page();
889
		}
890
		return ret;
891
	}
892 893
	gfp = alloc_hugepage_gfpmask(transparent_hugepage_defrag(vma), 0);
	page = alloc_hugepage_vma(gfp, vma, haddr, HPAGE_PMD_ORDER);
894 895
	if (unlikely(!page)) {
		count_vm_event(THP_FAULT_FALLBACK);
896
		return VM_FAULT_FALLBACK;
897
	}
898 899
	return __do_huge_pmd_anonymous_page(mm, vma, address, pmd, page, gfp,
					    flags);
900 901
}

902
static void insert_pfn_pmd(struct vm_area_struct *vma, unsigned long addr,
M
Matthew Wilcox 已提交
903 904 905 906 907 908 909 910 911 912 913 914 915 916 917 918 919 920 921 922 923 924 925 926 927 928 929 930 931 932 933 934 935 936 937 938 939 940
		pmd_t *pmd, unsigned long pfn, pgprot_t prot, bool write)
{
	struct mm_struct *mm = vma->vm_mm;
	pmd_t entry;
	spinlock_t *ptl;

	ptl = pmd_lock(mm, pmd);
	if (pmd_none(*pmd)) {
		entry = pmd_mkhuge(pfn_pmd(pfn, prot));
		if (write) {
			entry = pmd_mkyoung(pmd_mkdirty(entry));
			entry = maybe_pmd_mkwrite(entry, vma);
		}
		set_pmd_at(mm, addr, pmd, entry);
		update_mmu_cache_pmd(vma, addr, pmd);
	}
	spin_unlock(ptl);
}

int vmf_insert_pfn_pmd(struct vm_area_struct *vma, unsigned long addr,
			pmd_t *pmd, unsigned long pfn, bool write)
{
	pgprot_t pgprot = vma->vm_page_prot;
	/*
	 * If we had pmd_special, we could avoid all these restrictions,
	 * but we need to be consistent with PTEs and architectures that
	 * can't support a 'special' bit.
	 */
	BUG_ON(!(vma->vm_flags & (VM_PFNMAP|VM_MIXEDMAP)));
	BUG_ON((vma->vm_flags & (VM_PFNMAP|VM_MIXEDMAP)) ==
						(VM_PFNMAP|VM_MIXEDMAP));
	BUG_ON((vma->vm_flags & VM_PFNMAP) && is_cow_mapping(vma->vm_flags));
	BUG_ON((vma->vm_flags & VM_MIXEDMAP) && pfn_valid(pfn));

	if (addr < vma->vm_start || addr >= vma->vm_end)
		return VM_FAULT_SIGBUS;
	if (track_pfn_insert(vma, &pgprot, pfn))
		return VM_FAULT_SIGBUS;
941 942
	insert_pfn_pmd(vma, addr, pmd, pfn, pgprot, write);
	return VM_FAULT_NOPAGE;
M
Matthew Wilcox 已提交
943 944
}

945 946 947 948
int copy_huge_pmd(struct mm_struct *dst_mm, struct mm_struct *src_mm,
		  pmd_t *dst_pmd, pmd_t *src_pmd, unsigned long addr,
		  struct vm_area_struct *vma)
{
949
	spinlock_t *dst_ptl, *src_ptl;
950 951 952 953 954 955 956 957 958 959
	struct page *src_page;
	pmd_t pmd;
	pgtable_t pgtable;
	int ret;

	ret = -ENOMEM;
	pgtable = pte_alloc_one(dst_mm, addr);
	if (unlikely(!pgtable))
		goto out;

960 961 962
	dst_ptl = pmd_lock(dst_mm, dst_pmd);
	src_ptl = pmd_lockptr(src_mm, src_pmd);
	spin_lock_nested(src_ptl, SINGLE_DEPTH_NESTING);
963 964 965 966 967 968 969

	ret = -EAGAIN;
	pmd = *src_pmd;
	if (unlikely(!pmd_trans_huge(pmd))) {
		pte_free(dst_mm, pgtable);
		goto out_unlock;
	}
970
	/*
971
	 * When page table lock is held, the huge zero pmd should not be
972 973 974 975
	 * under splitting since we don't split the page itself, only pmd to
	 * a page table.
	 */
	if (is_huge_zero_pmd(pmd)) {
976
		struct page *zero_page;
977 978 979 980 981
		/*
		 * get_huge_zero_page() will never allocate a new page here,
		 * since we already have a zero page to copy. It just takes a
		 * reference.
		 */
982
		zero_page = get_huge_zero_page();
983
		set_huge_zero_page(pgtable, dst_mm, vma, addr, dst_pmd,
984
				zero_page);
985 986 987
		ret = 0;
		goto out_unlock;
	}
988

989 990
	if (unlikely(pmd_trans_splitting(pmd))) {
		/* split huge page running from under us */
991 992
		spin_unlock(src_ptl);
		spin_unlock(dst_ptl);
993 994 995 996 997 998
		pte_free(dst_mm, pgtable);

		wait_split_huge_page(vma->anon_vma, src_pmd); /* src_vma */
		goto out;
	}
	src_page = pmd_page(pmd);
999
	VM_BUG_ON_PAGE(!PageHead(src_page), src_page);
1000 1001 1002 1003 1004 1005
	get_page(src_page);
	page_dup_rmap(src_page);
	add_mm_counter(dst_mm, MM_ANONPAGES, HPAGE_PMD_NR);

	pmdp_set_wrprotect(src_mm, addr, src_pmd);
	pmd = pmd_mkold(pmd_wrprotect(pmd));
1006
	pgtable_trans_huge_deposit(dst_mm, dst_pmd, pgtable);
1007
	set_pmd_at(dst_mm, addr, dst_pmd, pmd);
1008
	atomic_long_inc(&dst_mm->nr_ptes);
1009 1010 1011

	ret = 0;
out_unlock:
1012 1013
	spin_unlock(src_ptl);
	spin_unlock(dst_ptl);
1014 1015 1016 1017
out:
	return ret;
}

1018 1019 1020 1021 1022 1023
void huge_pmd_set_accessed(struct mm_struct *mm,
			   struct vm_area_struct *vma,
			   unsigned long address,
			   pmd_t *pmd, pmd_t orig_pmd,
			   int dirty)
{
1024
	spinlock_t *ptl;
1025 1026 1027
	pmd_t entry;
	unsigned long haddr;

1028
	ptl = pmd_lock(mm, pmd);
1029 1030 1031 1032 1033 1034 1035 1036 1037
	if (unlikely(!pmd_same(*pmd, orig_pmd)))
		goto unlock;

	entry = pmd_mkyoung(orig_pmd);
	haddr = address & HPAGE_PMD_MASK;
	if (pmdp_set_access_flags(vma, haddr, pmd, entry, dirty))
		update_mmu_cache_pmd(vma, address, pmd);

unlock:
1038
	spin_unlock(ptl);
1039 1040
}

1041 1042 1043 1044 1045 1046 1047
static int do_huge_pmd_wp_page_fallback(struct mm_struct *mm,
					struct vm_area_struct *vma,
					unsigned long address,
					pmd_t *pmd, pmd_t orig_pmd,
					struct page *page,
					unsigned long haddr)
{
1048
	struct mem_cgroup *memcg;
1049
	spinlock_t *ptl;
1050 1051 1052 1053
	pgtable_t pgtable;
	pmd_t _pmd;
	int ret = 0, i;
	struct page **pages;
1054 1055
	unsigned long mmun_start;	/* For mmu_notifiers */
	unsigned long mmun_end;		/* For mmu_notifiers */
1056 1057 1058 1059 1060 1061 1062 1063 1064

	pages = kmalloc(sizeof(struct page *) * HPAGE_PMD_NR,
			GFP_KERNEL);
	if (unlikely(!pages)) {
		ret |= VM_FAULT_OOM;
		goto out;
	}

	for (i = 0; i < HPAGE_PMD_NR; i++) {
1065 1066
		pages[i] = alloc_page_vma_node(GFP_HIGHUSER_MOVABLE |
					       __GFP_OTHER_NODE,
1067
					       vma, address, page_to_nid(page));
A
Andrea Arcangeli 已提交
1068
		if (unlikely(!pages[i] ||
1069
			     mem_cgroup_try_charge(pages[i], mm, GFP_KERNEL,
1070
						   &memcg, false))) {
A
Andrea Arcangeli 已提交
1071
			if (pages[i])
1072
				put_page(pages[i]);
A
Andrea Arcangeli 已提交
1073
			while (--i >= 0) {
1074 1075
				memcg = (void *)page_private(pages[i]);
				set_page_private(pages[i], 0);
1076 1077
				mem_cgroup_cancel_charge(pages[i], memcg,
						false);
A
Andrea Arcangeli 已提交
1078 1079
				put_page(pages[i]);
			}
1080 1081 1082 1083
			kfree(pages);
			ret |= VM_FAULT_OOM;
			goto out;
		}
1084
		set_page_private(pages[i], (unsigned long)memcg);
1085 1086 1087 1088
	}

	for (i = 0; i < HPAGE_PMD_NR; i++) {
		copy_user_highpage(pages[i], page + i,
1089
				   haddr + PAGE_SIZE * i, vma);
1090 1091 1092 1093
		__SetPageUptodate(pages[i]);
		cond_resched();
	}

1094 1095 1096 1097
	mmun_start = haddr;
	mmun_end   = haddr + HPAGE_PMD_SIZE;
	mmu_notifier_invalidate_range_start(mm, mmun_start, mmun_end);

1098
	ptl = pmd_lock(mm, pmd);
1099 1100
	if (unlikely(!pmd_same(*pmd, orig_pmd)))
		goto out_free_pages;
1101
	VM_BUG_ON_PAGE(!PageHead(page), page);
1102

1103
	pmdp_huge_clear_flush_notify(vma, haddr, pmd);
1104 1105
	/* leave pmd empty until pte is filled */

1106
	pgtable = pgtable_trans_huge_withdraw(mm, pmd);
1107 1108 1109 1110 1111 1112
	pmd_populate(mm, &_pmd, pgtable);

	for (i = 0; i < HPAGE_PMD_NR; i++, haddr += PAGE_SIZE) {
		pte_t *pte, entry;
		entry = mk_pte(pages[i], vma->vm_page_prot);
		entry = maybe_mkwrite(pte_mkdirty(entry), vma);
1113 1114
		memcg = (void *)page_private(pages[i]);
		set_page_private(pages[i], 0);
1115
		page_add_new_anon_rmap(pages[i], vma, haddr, false);
1116
		mem_cgroup_commit_charge(pages[i], memcg, false, false);
1117
		lru_cache_add_active_or_unevictable(pages[i], vma);
1118 1119 1120 1121 1122 1123 1124 1125 1126
		pte = pte_offset_map(&_pmd, haddr);
		VM_BUG_ON(!pte_none(*pte));
		set_pte_at(mm, haddr, pte, entry);
		pte_unmap(pte);
	}
	kfree(pages);

	smp_wmb(); /* make pte visible before pmd */
	pmd_populate(mm, pmd, pgtable);
1127
	page_remove_rmap(page, true);
1128
	spin_unlock(ptl);
1129

1130 1131
	mmu_notifier_invalidate_range_end(mm, mmun_start, mmun_end);

1132 1133 1134 1135 1136 1137 1138
	ret |= VM_FAULT_WRITE;
	put_page(page);

out:
	return ret;

out_free_pages:
1139
	spin_unlock(ptl);
1140
	mmu_notifier_invalidate_range_end(mm, mmun_start, mmun_end);
A
Andrea Arcangeli 已提交
1141
	for (i = 0; i < HPAGE_PMD_NR; i++) {
1142 1143
		memcg = (void *)page_private(pages[i]);
		set_page_private(pages[i], 0);
1144
		mem_cgroup_cancel_charge(pages[i], memcg, false);
1145
		put_page(pages[i]);
A
Andrea Arcangeli 已提交
1146
	}
1147 1148 1149 1150 1151 1152 1153
	kfree(pages);
	goto out;
}

int do_huge_pmd_wp_page(struct mm_struct *mm, struct vm_area_struct *vma,
			unsigned long address, pmd_t *pmd, pmd_t orig_pmd)
{
1154
	spinlock_t *ptl;
1155
	int ret = 0;
1156
	struct page *page = NULL, *new_page;
1157
	struct mem_cgroup *memcg;
1158
	unsigned long haddr;
1159 1160
	unsigned long mmun_start;	/* For mmu_notifiers */
	unsigned long mmun_end;		/* For mmu_notifiers */
1161
	gfp_t huge_gfp;			/* for allocation and charge */
1162

1163
	ptl = pmd_lockptr(mm, pmd);
1164
	VM_BUG_ON_VMA(!vma->anon_vma, vma);
1165 1166 1167
	haddr = address & HPAGE_PMD_MASK;
	if (is_huge_zero_pmd(orig_pmd))
		goto alloc;
1168
	spin_lock(ptl);
1169 1170 1171 1172
	if (unlikely(!pmd_same(*pmd, orig_pmd)))
		goto out_unlock;

	page = pmd_page(orig_pmd);
1173
	VM_BUG_ON_PAGE(!PageCompound(page) || !PageHead(page), page);
1174 1175 1176 1177 1178 1179 1180 1181 1182 1183 1184
	/*
	 * We can only reuse the page if nobody else maps the huge page or it's
	 * part. We can do it by checking page_mapcount() on each sub-page, but
	 * it's expensive.
	 * The cheaper way is to check page_count() to be equal 1: every
	 * mapcount takes page reference reference, so this way we can
	 * guarantee, that the PMD is the only mapping.
	 * This can give false negative if somebody pinned the page, but that's
	 * fine.
	 */
	if (page_mapcount(page) == 1 && page_count(page) == 1) {
1185 1186 1187 1188
		pmd_t entry;
		entry = pmd_mkyoung(orig_pmd);
		entry = maybe_pmd_mkwrite(pmd_mkdirty(entry), vma);
		if (pmdp_set_access_flags(vma, haddr, pmd, entry,  1))
1189
			update_mmu_cache_pmd(vma, address, pmd);
1190 1191 1192
		ret |= VM_FAULT_WRITE;
		goto out_unlock;
	}
1193
	get_page(page);
1194
	spin_unlock(ptl);
1195
alloc:
1196
	if (transparent_hugepage_enabled(vma) &&
1197
	    !transparent_hugepage_debug_cow()) {
1198 1199
		huge_gfp = alloc_hugepage_gfpmask(transparent_hugepage_defrag(vma), 0);
		new_page = alloc_hugepage_vma(huge_gfp, vma, haddr, HPAGE_PMD_ORDER);
1200
	} else
1201 1202 1203
		new_page = NULL;

	if (unlikely(!new_page)) {
1204
		if (!page) {
1205
			split_huge_pmd(vma, pmd, address);
1206
			ret |= VM_FAULT_FALLBACK;
1207 1208 1209
		} else {
			ret = do_huge_pmd_wp_page_fallback(mm, vma, address,
					pmd, orig_pmd, page, haddr);
1210
			if (ret & VM_FAULT_OOM) {
1211
				split_huge_pmd(vma, pmd, address);
1212 1213
				ret |= VM_FAULT_FALLBACK;
			}
1214
			put_page(page);
1215
		}
1216
		count_vm_event(THP_FAULT_FALLBACK);
1217 1218 1219
		goto out;
	}

1220 1221
	if (unlikely(mem_cgroup_try_charge(new_page, mm, huge_gfp, &memcg,
					   true))) {
A
Andrea Arcangeli 已提交
1222
		put_page(new_page);
1223
		if (page) {
1224
			split_huge_pmd(vma, pmd, address);
1225
			put_page(page);
1226
		} else
1227
			split_huge_pmd(vma, pmd, address);
1228
		ret |= VM_FAULT_FALLBACK;
1229
		count_vm_event(THP_FAULT_FALLBACK);
A
Andrea Arcangeli 已提交
1230 1231 1232
		goto out;
	}

1233 1234
	count_vm_event(THP_FAULT_ALLOC);

1235
	if (!page)
1236 1237 1238
		clear_huge_page(new_page, haddr, HPAGE_PMD_NR);
	else
		copy_user_huge_page(new_page, page, haddr, vma, HPAGE_PMD_NR);
1239 1240
	__SetPageUptodate(new_page);

1241 1242 1243 1244
	mmun_start = haddr;
	mmun_end   = haddr + HPAGE_PMD_SIZE;
	mmu_notifier_invalidate_range_start(mm, mmun_start, mmun_end);

1245
	spin_lock(ptl);
1246
	if (page)
1247
		put_page(page);
A
Andrea Arcangeli 已提交
1248
	if (unlikely(!pmd_same(*pmd, orig_pmd))) {
1249
		spin_unlock(ptl);
1250
		mem_cgroup_cancel_charge(new_page, memcg, true);
1251
		put_page(new_page);
1252
		goto out_mn;
A
Andrea Arcangeli 已提交
1253
	} else {
1254
		pmd_t entry;
1255 1256
		entry = mk_huge_pmd(new_page, vma->vm_page_prot);
		entry = maybe_pmd_mkwrite(pmd_mkdirty(entry), vma);
1257
		pmdp_huge_clear_flush_notify(vma, haddr, pmd);
1258
		page_add_new_anon_rmap(new_page, vma, haddr, true);
1259
		mem_cgroup_commit_charge(new_page, memcg, false, true);
1260
		lru_cache_add_active_or_unevictable(new_page, vma);
1261
		set_pmd_at(mm, haddr, pmd, entry);
1262
		update_mmu_cache_pmd(vma, address, pmd);
1263
		if (!page) {
1264
			add_mm_counter(mm, MM_ANONPAGES, HPAGE_PMD_NR);
1265 1266
			put_huge_zero_page();
		} else {
1267
			VM_BUG_ON_PAGE(!PageHead(page), page);
1268
			page_remove_rmap(page, true);
1269 1270
			put_page(page);
		}
1271 1272
		ret |= VM_FAULT_WRITE;
	}
1273
	spin_unlock(ptl);
1274 1275
out_mn:
	mmu_notifier_invalidate_range_end(mm, mmun_start, mmun_end);
1276 1277
out:
	return ret;
1278
out_unlock:
1279
	spin_unlock(ptl);
1280
	return ret;
1281 1282
}

1283
struct page *follow_trans_huge_pmd(struct vm_area_struct *vma,
1284 1285 1286 1287
				   unsigned long addr,
				   pmd_t *pmd,
				   unsigned int flags)
{
1288
	struct mm_struct *mm = vma->vm_mm;
1289 1290
	struct page *page = NULL;

1291
	assert_spin_locked(pmd_lockptr(mm, pmd));
1292 1293 1294 1295

	if (flags & FOLL_WRITE && !pmd_write(*pmd))
		goto out;

1296 1297 1298 1299
	/* Avoid dumping huge zero page */
	if ((flags & FOLL_DUMP) && is_huge_zero_pmd(*pmd))
		return ERR_PTR(-EFAULT);

1300
	/* Full NUMA hinting faults to serialise migration in fault paths */
1301
	if ((flags & FOLL_NUMA) && pmd_protnone(*pmd))
1302 1303
		goto out;

1304
	page = pmd_page(*pmd);
1305
	VM_BUG_ON_PAGE(!PageHead(page), page);
1306 1307 1308 1309 1310 1311 1312 1313 1314 1315 1316
	if (flags & FOLL_TOUCH) {
		pmd_t _pmd;
		/*
		 * We should set the dirty bit only for FOLL_WRITE but
		 * for now the dirty bit in the pmd is meaningless.
		 * And if the dirty bit will become meaningful and
		 * we'll only set it with FOLL_WRITE, an atomic
		 * set_bit will be required on the pmd to set the
		 * young bit, instead of the current set_pmd_at.
		 */
		_pmd = pmd_mkyoung(pmd_mkdirty(*pmd));
1317 1318 1319
		if (pmdp_set_access_flags(vma, addr & HPAGE_PMD_MASK,
					  pmd, _pmd,  1))
			update_mmu_cache_pmd(vma, addr, pmd);
1320
	}
E
Eric B Munson 已提交
1321
	if ((flags & FOLL_MLOCK) && (vma->vm_flags & VM_LOCKED)) {
1322 1323 1324 1325 1326 1327 1328
		if (page->mapping && trylock_page(page)) {
			lru_add_drain();
			if (page->mapping)
				mlock_vma_page(page);
			unlock_page(page);
		}
	}
1329
	page += (addr & ~HPAGE_PMD_MASK) >> PAGE_SHIFT;
1330
	VM_BUG_ON_PAGE(!PageCompound(page), page);
1331
	if (flags & FOLL_GET)
1332
		get_page(page);
1333 1334 1335 1336 1337

out:
	return page;
}

1338
/* NUMA hinting page fault entry point for trans huge pmds */
1339 1340
int do_huge_pmd_numa_page(struct mm_struct *mm, struct vm_area_struct *vma,
				unsigned long addr, pmd_t pmd, pmd_t *pmdp)
1341
{
1342
	spinlock_t *ptl;
1343
	struct anon_vma *anon_vma = NULL;
1344
	struct page *page;
1345
	unsigned long haddr = addr & HPAGE_PMD_MASK;
1346
	int page_nid = -1, this_nid = numa_node_id();
1347
	int target_nid, last_cpupid = -1;
1348 1349
	bool page_locked;
	bool migrated = false;
1350
	bool was_writable;
1351
	int flags = 0;
1352

1353 1354 1355
	/* A PROT_NONE fault should not end up here */
	BUG_ON(!(vma->vm_flags & (VM_READ | VM_EXEC | VM_WRITE)));

1356
	ptl = pmd_lock(mm, pmdp);
1357 1358 1359
	if (unlikely(!pmd_same(pmd, *pmdp)))
		goto out_unlock;

1360 1361 1362 1363 1364 1365
	/*
	 * If there are potential migrations, wait for completion and retry
	 * without disrupting NUMA hinting information. Do not relock and
	 * check_same as the page may no longer be mapped.
	 */
	if (unlikely(pmd_trans_migrating(*pmdp))) {
1366
		page = pmd_page(*pmdp);
1367
		spin_unlock(ptl);
1368
		wait_on_page_locked(page);
1369 1370 1371
		goto out;
	}

1372
	page = pmd_page(pmd);
1373
	BUG_ON(is_huge_zero_page(page));
1374
	page_nid = page_to_nid(page);
1375
	last_cpupid = page_cpupid_last(page);
1376
	count_vm_numa_event(NUMA_HINT_FAULTS);
1377
	if (page_nid == this_nid) {
1378
		count_vm_numa_event(NUMA_HINT_FAULTS_LOCAL);
1379 1380
		flags |= TNF_FAULT_LOCAL;
	}
1381

1382 1383
	/* See similar comment in do_numa_page for explanation */
	if (!(vma->vm_flags & VM_WRITE))
1384 1385
		flags |= TNF_NO_GROUP;

1386 1387 1388 1389
	/*
	 * Acquire the page lock to serialise THP migrations but avoid dropping
	 * page_table_lock if at all possible
	 */
1390 1391 1392 1393
	page_locked = trylock_page(page);
	target_nid = mpol_misplaced(page, vma, haddr);
	if (target_nid == -1) {
		/* If the page was locked, there are no parallel migrations */
1394
		if (page_locked)
1395
			goto clear_pmdnuma;
1396
	}
1397

1398
	/* Migration could have started since the pmd_trans_migrating check */
1399
	if (!page_locked) {
1400
		spin_unlock(ptl);
1401
		wait_on_page_locked(page);
1402
		page_nid = -1;
1403 1404 1405
		goto out;
	}

1406 1407 1408 1409
	/*
	 * Page is misplaced. Page lock serialises migrations. Acquire anon_vma
	 * to serialises splits
	 */
1410
	get_page(page);
1411
	spin_unlock(ptl);
1412
	anon_vma = page_lock_anon_vma_read(page);
1413

P
Peter Zijlstra 已提交
1414
	/* Confirm the PMD did not change while page_table_lock was released */
1415
	spin_lock(ptl);
1416 1417 1418
	if (unlikely(!pmd_same(pmd, *pmdp))) {
		unlock_page(page);
		put_page(page);
1419
		page_nid = -1;
1420
		goto out_unlock;
1421
	}
1422

1423 1424 1425 1426 1427 1428 1429
	/* Bail if we fail to protect against THP splits for any reason */
	if (unlikely(!anon_vma)) {
		put_page(page);
		page_nid = -1;
		goto clear_pmdnuma;
	}

1430 1431
	/*
	 * Migrate the THP to the requested node, returns with page unlocked
1432
	 * and access rights restored.
1433
	 */
1434
	spin_unlock(ptl);
1435
	migrated = migrate_misplaced_transhuge_page(mm, vma,
1436
				pmdp, pmd, addr, page, target_nid);
1437 1438
	if (migrated) {
		flags |= TNF_MIGRATED;
1439
		page_nid = target_nid;
1440 1441
	} else
		flags |= TNF_MIGRATE_FAIL;
1442

1443
	goto out;
1444
clear_pmdnuma:
1445
	BUG_ON(!PageLocked(page));
1446
	was_writable = pmd_write(pmd);
1447
	pmd = pmd_modify(pmd, vma->vm_page_prot);
1448
	pmd = pmd_mkyoung(pmd);
1449 1450
	if (was_writable)
		pmd = pmd_mkwrite(pmd);
1451 1452
	set_pmd_at(mm, haddr, pmdp, pmd);
	update_mmu_cache_pmd(vma, addr, pmdp);
1453
	unlock_page(page);
1454
out_unlock:
1455
	spin_unlock(ptl);
1456 1457 1458 1459 1460

out:
	if (anon_vma)
		page_unlock_anon_vma_read(anon_vma);

1461
	if (page_nid != -1)
1462
		task_numa_fault(last_cpupid, page_nid, HPAGE_PMD_NR, flags);
1463

1464 1465 1466
	return 0;
}

1467
int zap_huge_pmd(struct mmu_gather *tlb, struct vm_area_struct *vma,
S
Shaohua Li 已提交
1468
		 pmd_t *pmd, unsigned long addr)
1469
{
1470
	pmd_t orig_pmd;
1471
	spinlock_t *ptl;
1472

1473 1474 1475 1476 1477 1478 1479 1480 1481 1482 1483 1484 1485 1486
	if (__pmd_trans_huge_lock(pmd, vma, &ptl) != 1)
		return 0;
	/*
	 * For architectures like ppc64 we look at deposited pgtable
	 * when calling pmdp_huge_get_and_clear. So do the
	 * pgtable_trans_huge_withdraw after finishing pmdp related
	 * operations.
	 */
	orig_pmd = pmdp_huge_get_and_clear_full(tlb->mm, addr, pmd,
			tlb->fullmm);
	tlb_remove_pmd_tlb_entry(tlb, pmd, addr);
	if (vma_is_dax(vma)) {
		spin_unlock(ptl);
		if (is_huge_zero_pmd(orig_pmd))
1487
			put_huge_zero_page();
1488 1489 1490 1491 1492 1493 1494
	} else if (is_huge_zero_pmd(orig_pmd)) {
		pte_free(tlb->mm, pgtable_trans_huge_withdraw(tlb->mm, pmd));
		atomic_long_dec(&tlb->mm->nr_ptes);
		spin_unlock(ptl);
		put_huge_zero_page();
	} else {
		struct page *page = pmd_page(orig_pmd);
1495
		page_remove_rmap(page, true);
1496 1497 1498 1499 1500 1501 1502
		VM_BUG_ON_PAGE(page_mapcount(page) < 0, page);
		add_mm_counter(tlb->mm, MM_ANONPAGES, -HPAGE_PMD_NR);
		VM_BUG_ON_PAGE(!PageHead(page), page);
		pte_free(tlb->mm, pgtable_trans_huge_withdraw(tlb->mm, pmd));
		atomic_long_dec(&tlb->mm->nr_ptes);
		spin_unlock(ptl);
		tlb_remove_page(tlb, page);
1503
	}
1504
	return 1;
1505 1506
}

1507 1508 1509 1510 1511
int move_huge_pmd(struct vm_area_struct *vma, struct vm_area_struct *new_vma,
		  unsigned long old_addr,
		  unsigned long new_addr, unsigned long old_end,
		  pmd_t *old_pmd, pmd_t *new_pmd)
{
1512
	spinlock_t *old_ptl, *new_ptl;
1513 1514 1515 1516 1517 1518 1519 1520 1521 1522 1523 1524 1525 1526 1527 1528 1529 1530 1531 1532
	int ret = 0;
	pmd_t pmd;

	struct mm_struct *mm = vma->vm_mm;

	if ((old_addr & ~HPAGE_PMD_MASK) ||
	    (new_addr & ~HPAGE_PMD_MASK) ||
	    old_end - old_addr < HPAGE_PMD_SIZE ||
	    (new_vma->vm_flags & VM_NOHUGEPAGE))
		goto out;

	/*
	 * The destination pmd shouldn't be established, free_pgtables()
	 * should have release it.
	 */
	if (WARN_ON(!pmd_none(*new_pmd))) {
		VM_BUG_ON(pmd_trans_huge(*new_pmd));
		goto out;
	}

1533 1534 1535 1536 1537
	/*
	 * We don't have to worry about the ordering of src and dst
	 * ptlocks because exclusive mmap_sem prevents deadlock.
	 */
	ret = __pmd_trans_huge_lock(old_pmd, vma, &old_ptl);
1538
	if (ret == 1) {
1539 1540 1541
		new_ptl = pmd_lockptr(mm, new_pmd);
		if (new_ptl != old_ptl)
			spin_lock_nested(new_ptl, SINGLE_DEPTH_NESTING);
1542
		pmd = pmdp_huge_get_and_clear(mm, old_addr, old_pmd);
1543
		VM_BUG_ON(!pmd_none(*new_pmd));
1544

1545 1546
		if (pmd_move_must_withdraw(new_ptl, old_ptl)) {
			pgtable_t pgtable;
1547 1548 1549
			pgtable = pgtable_trans_huge_withdraw(mm, old_pmd);
			pgtable_trans_huge_deposit(mm, new_pmd, pgtable);
		}
1550 1551 1552
		set_pmd_at(mm, new_addr, new_pmd, pmd_mksoft_dirty(pmd));
		if (new_ptl != old_ptl)
			spin_unlock(new_ptl);
1553
		spin_unlock(old_ptl);
1554 1555 1556 1557 1558
	}
out:
	return ret;
}

1559 1560 1561 1562 1563 1564
/*
 * Returns
 *  - 0 if PMD could not be locked
 *  - 1 if PMD was locked but protections unchange and TLB flush unnecessary
 *  - HPAGE_PMD_NR is protections changed and TLB flush necessary
 */
1565
int change_huge_pmd(struct vm_area_struct *vma, pmd_t *pmd,
1566
		unsigned long addr, pgprot_t newprot, int prot_numa)
1567 1568
{
	struct mm_struct *mm = vma->vm_mm;
1569
	spinlock_t *ptl;
1570 1571
	int ret = 0;

1572
	if (__pmd_trans_huge_lock(pmd, vma, &ptl) == 1) {
1573
		pmd_t entry;
1574
		bool preserve_write = prot_numa && pmd_write(*pmd);
1575
		ret = 1;
1576 1577 1578 1579 1580 1581 1582 1583

		/*
		 * Avoid trapping faults against the zero page. The read-only
		 * data is likely to be read-cached on the local CPU and
		 * local/remote hits to the zero page are not interesting.
		 */
		if (prot_numa && is_huge_zero_pmd(*pmd)) {
			spin_unlock(ptl);
1584
			return ret;
1585 1586
		}

1587
		if (!prot_numa || !pmd_protnone(*pmd)) {
1588
			entry = pmdp_huge_get_and_clear_notify(mm, addr, pmd);
1589
			entry = pmd_modify(entry, newprot);
1590 1591
			if (preserve_write)
				entry = pmd_mkwrite(entry);
1592 1593
			ret = HPAGE_PMD_NR;
			set_pmd_at(mm, addr, pmd, entry);
1594
			BUG_ON(!preserve_write && pmd_write(entry));
1595
		}
1596
		spin_unlock(ptl);
1597 1598 1599 1600 1601 1602 1603 1604 1605 1606 1607 1608
	}

	return ret;
}

/*
 * Returns 1 if a given pmd maps a stable (not under splitting) thp.
 * Returns -1 if it maps a thp under splitting. Returns 0 otherwise.
 *
 * Note that if it returns 1, this routine returns without unlocking page
 * table locks. So callers must unlock them.
 */
1609 1610
int __pmd_trans_huge_lock(pmd_t *pmd, struct vm_area_struct *vma,
		spinlock_t **ptl)
1611
{
1612
	*ptl = pmd_lock(vma->vm_mm, pmd);
1613 1614
	if (likely(pmd_trans_huge(*pmd))) {
		if (unlikely(pmd_trans_splitting(*pmd))) {
1615
			spin_unlock(*ptl);
1616
			wait_split_huge_page(vma->anon_vma, pmd);
1617
			return -1;
1618
		} else {
1619 1620 1621
			/* Thp mapped by 'pmd' is stable, so we can
			 * handle it as it is. */
			return 1;
1622
		}
1623
	}
1624
	spin_unlock(*ptl);
1625
	return 0;
1626 1627
}

1628 1629 1630 1631 1632 1633 1634 1635
/*
 * This function returns whether a given @page is mapped onto the @address
 * in the virtual space of @mm.
 *
 * When it's true, this function returns *pmd with holding the page table lock
 * and passing it back to the caller via @ptl.
 * If it's false, returns NULL without holding the page table lock.
 */
1636 1637 1638
pmd_t *page_check_address_pmd(struct page *page,
			      struct mm_struct *mm,
			      unsigned long address,
1639 1640
			      enum page_check_address_pmd_flag flag,
			      spinlock_t **ptl)
1641
{
1642 1643
	pgd_t *pgd;
	pud_t *pud;
1644
	pmd_t *pmd;
1645 1646

	if (address & ~HPAGE_PMD_MASK)
1647
		return NULL;
1648

1649 1650
	pgd = pgd_offset(mm, address);
	if (!pgd_present(*pgd))
1651
		return NULL;
1652 1653 1654 1655 1656
	pud = pud_offset(pgd, address);
	if (!pud_present(*pud))
		return NULL;
	pmd = pmd_offset(pud, address);

1657
	*ptl = pmd_lock(mm, pmd);
1658
	if (!pmd_present(*pmd))
1659
		goto unlock;
1660
	if (pmd_page(*pmd) != page)
1661
		goto unlock;
1662 1663 1664 1665 1666 1667 1668 1669 1670
	/*
	 * split_vma() may create temporary aliased mappings. There is
	 * no risk as long as all huge pmd are found and have their
	 * splitting bit set before __split_huge_page_refcount
	 * runs. Finding the same huge pmd more than once during the
	 * same rmap walk is not a problem.
	 */
	if (flag == PAGE_CHECK_ADDRESS_PMD_NOTSPLITTING_FLAG &&
	    pmd_trans_splitting(*pmd))
1671
		goto unlock;
1672 1673 1674
	if (pmd_trans_huge(*pmd)) {
		VM_BUG_ON(flag == PAGE_CHECK_ADDRESS_PMD_SPLITTING_FLAG &&
			  !pmd_trans_splitting(*pmd));
1675
		return pmd;
1676
	}
1677 1678 1679
unlock:
	spin_unlock(*ptl);
	return NULL;
1680 1681
}

1682
#define VM_NO_THP (VM_SPECIAL | VM_HUGETLB | VM_SHARED | VM_MAYSHARE)
1683

1684 1685
int hugepage_madvise(struct vm_area_struct *vma,
		     unsigned long *vm_flags, int advice)
A
Andrea Arcangeli 已提交
1686
{
A
Andrea Arcangeli 已提交
1687 1688
	switch (advice) {
	case MADV_HUGEPAGE:
1689 1690 1691 1692 1693 1694 1695 1696 1697
#ifdef CONFIG_S390
		/*
		 * qemu blindly sets MADV_HUGEPAGE on all allocations, but s390
		 * can't handle this properly after s390_enable_sie, so we simply
		 * ignore the madvise to prevent qemu from causing a SIGSEGV.
		 */
		if (mm_has_pgste(vma->vm_mm))
			return 0;
#endif
A
Andrea Arcangeli 已提交
1698 1699 1700
		/*
		 * Be somewhat over-protective like KSM for now!
		 */
1701
		if (*vm_flags & VM_NO_THP)
A
Andrea Arcangeli 已提交
1702 1703 1704
			return -EINVAL;
		*vm_flags &= ~VM_NOHUGEPAGE;
		*vm_flags |= VM_HUGEPAGE;
1705 1706 1707 1708 1709
		/*
		 * If the vma become good for khugepaged to scan,
		 * register it here without waiting a page fault that
		 * may not happen any time soon.
		 */
1710
		if (unlikely(khugepaged_enter_vma_merge(vma, *vm_flags)))
1711
			return -ENOMEM;
A
Andrea Arcangeli 已提交
1712 1713 1714 1715 1716
		break;
	case MADV_NOHUGEPAGE:
		/*
		 * Be somewhat over-protective like KSM for now!
		 */
1717
		if (*vm_flags & VM_NO_THP)
A
Andrea Arcangeli 已提交
1718 1719 1720
			return -EINVAL;
		*vm_flags &= ~VM_HUGEPAGE;
		*vm_flags |= VM_NOHUGEPAGE;
1721 1722 1723 1724 1725
		/*
		 * Setting VM_NOHUGEPAGE will prevent khugepaged from scanning
		 * this vma even if we leave the mm registered in khugepaged if
		 * it got registered before VM_NOHUGEPAGE was set.
		 */
A
Andrea Arcangeli 已提交
1726 1727
		break;
	}
A
Andrea Arcangeli 已提交
1728 1729 1730 1731

	return 0;
}

A
Andrea Arcangeli 已提交
1732 1733 1734 1735 1736 1737 1738 1739 1740 1741 1742
static int __init khugepaged_slab_init(void)
{
	mm_slot_cache = kmem_cache_create("khugepaged_mm_slot",
					  sizeof(struct mm_slot),
					  __alignof__(struct mm_slot), 0, NULL);
	if (!mm_slot_cache)
		return -ENOMEM;

	return 0;
}

1743 1744 1745 1746 1747
static void __init khugepaged_slab_exit(void)
{
	kmem_cache_destroy(mm_slot_cache);
}

A
Andrea Arcangeli 已提交
1748 1749 1750 1751 1752 1753 1754 1755 1756 1757 1758 1759 1760 1761 1762 1763
static inline struct mm_slot *alloc_mm_slot(void)
{
	if (!mm_slot_cache)	/* initialization failed */
		return NULL;
	return kmem_cache_zalloc(mm_slot_cache, GFP_KERNEL);
}

static inline void free_mm_slot(struct mm_slot *mm_slot)
{
	kmem_cache_free(mm_slot_cache, mm_slot);
}

static struct mm_slot *get_mm_slot(struct mm_struct *mm)
{
	struct mm_slot *mm_slot;

1764
	hash_for_each_possible(mm_slots_hash, mm_slot, hash, (unsigned long)mm)
A
Andrea Arcangeli 已提交
1765 1766
		if (mm == mm_slot->mm)
			return mm_slot;
1767

A
Andrea Arcangeli 已提交
1768 1769 1770 1771 1772 1773 1774
	return NULL;
}

static void insert_to_mm_slots_hash(struct mm_struct *mm,
				    struct mm_slot *mm_slot)
{
	mm_slot->mm = mm;
1775
	hash_add(mm_slots_hash, &mm_slot->hash, (long)mm);
A
Andrea Arcangeli 已提交
1776 1777 1778 1779 1780 1781 1782 1783 1784 1785 1786 1787 1788 1789 1790 1791 1792
}

static inline int khugepaged_test_exit(struct mm_struct *mm)
{
	return atomic_read(&mm->mm_users) == 0;
}

int __khugepaged_enter(struct mm_struct *mm)
{
	struct mm_slot *mm_slot;
	int wakeup;

	mm_slot = alloc_mm_slot();
	if (!mm_slot)
		return -ENOMEM;

	/* __khugepaged_exit() must not run from under us */
S
Sasha Levin 已提交
1793
	VM_BUG_ON_MM(khugepaged_test_exit(mm), mm);
A
Andrea Arcangeli 已提交
1794 1795 1796 1797 1798 1799 1800 1801 1802 1803 1804 1805 1806 1807 1808 1809 1810 1811 1812 1813 1814 1815
	if (unlikely(test_and_set_bit(MMF_VM_HUGEPAGE, &mm->flags))) {
		free_mm_slot(mm_slot);
		return 0;
	}

	spin_lock(&khugepaged_mm_lock);
	insert_to_mm_slots_hash(mm, mm_slot);
	/*
	 * Insert just behind the scanning cursor, to let the area settle
	 * down a little.
	 */
	wakeup = list_empty(&khugepaged_scan.mm_head);
	list_add_tail(&mm_slot->mm_node, &khugepaged_scan.mm_head);
	spin_unlock(&khugepaged_mm_lock);

	atomic_inc(&mm->mm_count);
	if (wakeup)
		wake_up_interruptible(&khugepaged_wait);

	return 0;
}

1816 1817
int khugepaged_enter_vma_merge(struct vm_area_struct *vma,
			       unsigned long vm_flags)
A
Andrea Arcangeli 已提交
1818 1819 1820 1821 1822 1823 1824 1825
{
	unsigned long hstart, hend;
	if (!vma->anon_vma)
		/*
		 * Not yet faulted in so we will register later in the
		 * page fault if needed.
		 */
		return 0;
1826
	if (vma->vm_ops)
A
Andrea Arcangeli 已提交
1827 1828
		/* khugepaged not yet working on file or special mappings */
		return 0;
1829
	VM_BUG_ON_VMA(vm_flags & VM_NO_THP, vma);
A
Andrea Arcangeli 已提交
1830 1831 1832
	hstart = (vma->vm_start + ~HPAGE_PMD_MASK) & HPAGE_PMD_MASK;
	hend = vma->vm_end & HPAGE_PMD_MASK;
	if (hstart < hend)
1833
		return khugepaged_enter(vma, vm_flags);
A
Andrea Arcangeli 已提交
1834 1835 1836 1837 1838 1839 1840 1841 1842 1843 1844
	return 0;
}

void __khugepaged_exit(struct mm_struct *mm)
{
	struct mm_slot *mm_slot;
	int free = 0;

	spin_lock(&khugepaged_mm_lock);
	mm_slot = get_mm_slot(mm);
	if (mm_slot && khugepaged_scan.mm_slot != mm_slot) {
1845
		hash_del(&mm_slot->hash);
A
Andrea Arcangeli 已提交
1846 1847 1848
		list_del(&mm_slot->mm_node);
		free = 1;
	}
1849
	spin_unlock(&khugepaged_mm_lock);
A
Andrea Arcangeli 已提交
1850 1851 1852 1853 1854 1855 1856 1857 1858 1859 1860 1861 1862 1863 1864 1865

	if (free) {
		clear_bit(MMF_VM_HUGEPAGE, &mm->flags);
		free_mm_slot(mm_slot);
		mmdrop(mm);
	} else if (mm_slot) {
		/*
		 * This is required to serialize against
		 * khugepaged_test_exit() (which is guaranteed to run
		 * under mmap sem read mode). Stop here (after we
		 * return all pagetables will be destroyed) until
		 * khugepaged has finished working on the pagetables
		 * under the mmap_sem.
		 */
		down_write(&mm->mmap_sem);
		up_write(&mm->mmap_sem);
1866
	}
A
Andrea Arcangeli 已提交
1867 1868 1869 1870 1871 1872 1873 1874 1875 1876 1877 1878 1879 1880
}

static void release_pte_page(struct page *page)
{
	/* 0 stands for page_is_file_cache(page) == false */
	dec_zone_page_state(page, NR_ISOLATED_ANON + 0);
	unlock_page(page);
	putback_lru_page(page);
}

static void release_pte_pages(pte_t *pte, pte_t *_pte)
{
	while (--_pte >= pte) {
		pte_t pteval = *_pte;
1881
		if (!pte_none(pteval) && !is_zero_pfn(pte_pfn(pteval)))
A
Andrea Arcangeli 已提交
1882 1883 1884 1885 1886 1887 1888 1889
			release_pte_page(pte_page(pteval));
	}
}

static int __collapse_huge_page_isolate(struct vm_area_struct *vma,
					unsigned long address,
					pte_t *pte)
{
1890
	struct page *page = NULL;
A
Andrea Arcangeli 已提交
1891
	pte_t *_pte;
1892
	int none_or_zero = 0, result = 0;
1893
	bool referenced = false, writable = false;
1894

A
Andrea Arcangeli 已提交
1895 1896 1897
	for (_pte = pte; _pte < pte+HPAGE_PMD_NR;
	     _pte++, address += PAGE_SIZE) {
		pte_t pteval = *_pte;
1898 1899
		if (pte_none(pteval) || (pte_present(pteval) &&
				is_zero_pfn(pte_pfn(pteval)))) {
1900
			if (!userfaultfd_armed(vma) &&
1901
			    ++none_or_zero <= khugepaged_max_ptes_none) {
A
Andrea Arcangeli 已提交
1902
				continue;
1903 1904
			} else {
				result = SCAN_EXCEED_NONE_PTE;
A
Andrea Arcangeli 已提交
1905
				goto out;
1906
			}
A
Andrea Arcangeli 已提交
1907
		}
1908 1909
		if (!pte_present(pteval)) {
			result = SCAN_PTE_NON_PRESENT;
A
Andrea Arcangeli 已提交
1910
			goto out;
1911
		}
A
Andrea Arcangeli 已提交
1912
		page = vm_normal_page(vma, address, pteval);
1913 1914
		if (unlikely(!page)) {
			result = SCAN_PAGE_NULL;
A
Andrea Arcangeli 已提交
1915
			goto out;
1916
		}
1917

1918 1919 1920
		VM_BUG_ON_PAGE(PageCompound(page), page);
		VM_BUG_ON_PAGE(!PageAnon(page), page);
		VM_BUG_ON_PAGE(!PageSwapBacked(page), page);
A
Andrea Arcangeli 已提交
1921 1922 1923 1924 1925 1926 1927

		/*
		 * We can do it before isolate_lru_page because the
		 * page can't be freed from under us. NOTE: PG_lock
		 * is needed to serialize against split_huge_page
		 * when invoked from the VM.
		 */
1928 1929
		if (!trylock_page(page)) {
			result = SCAN_PAGE_LOCK;
A
Andrea Arcangeli 已提交
1930
			goto out;
1931
		}
1932 1933 1934 1935 1936 1937 1938 1939

		/*
		 * cannot use mapcount: can't collapse if there's a gup pin.
		 * The page must only be referenced by the scanned process
		 * and page swap cache.
		 */
		if (page_count(page) != 1 + !!PageSwapCache(page)) {
			unlock_page(page);
1940
			result = SCAN_PAGE_COUNT;
1941 1942 1943 1944 1945 1946 1947
			goto out;
		}
		if (pte_write(pteval)) {
			writable = true;
		} else {
			if (PageSwapCache(page) && !reuse_swap_page(page)) {
				unlock_page(page);
1948
				result = SCAN_SWAP_CACHE_PAGE;
1949 1950 1951 1952 1953 1954 1955 1956
				goto out;
			}
			/*
			 * Page is not in the swap cache. It can be collapsed
			 * into a THP.
			 */
		}

A
Andrea Arcangeli 已提交
1957 1958 1959 1960 1961 1962
		/*
		 * Isolate the page to avoid collapsing an hugepage
		 * currently in use by the VM.
		 */
		if (isolate_lru_page(page)) {
			unlock_page(page);
1963
			result = SCAN_DEL_PAGE_LRU;
A
Andrea Arcangeli 已提交
1964 1965 1966 1967
			goto out;
		}
		/* 0 stands for page_is_file_cache(page) == false */
		inc_zone_page_state(page, NR_ISOLATED_ANON + 0);
1968 1969
		VM_BUG_ON_PAGE(!PageLocked(page), page);
		VM_BUG_ON_PAGE(PageLRU(page), page);
A
Andrea Arcangeli 已提交
1970 1971

		/* If there is no mapped pte young don't collapse the page */
1972 1973
		if (pte_young(pteval) ||
		    page_is_young(page) || PageReferenced(page) ||
A
Andrea Arcangeli 已提交
1974
		    mmu_notifier_test_young(vma->vm_mm, address))
1975
			referenced = true;
A
Andrea Arcangeli 已提交
1976
	}
1977 1978 1979 1980 1981 1982 1983 1984 1985 1986 1987
	if (likely(writable)) {
		if (likely(referenced)) {
			result = SCAN_SUCCEED;
			trace_mm_collapse_huge_page_isolate(page_to_pfn(page), none_or_zero,
							    referenced, writable, result);
			return 1;
		}
	} else {
		result = SCAN_PAGE_RO;
	}

A
Andrea Arcangeli 已提交
1988
out:
1989
	release_pte_pages(pte, _pte);
1990 1991
	trace_mm_collapse_huge_page_isolate(page_to_pfn(page), none_or_zero,
					    referenced, writable, result);
1992
	return 0;
A
Andrea Arcangeli 已提交
1993 1994 1995 1996 1997 1998 1999 2000 2001 2002 2003 2004
}

static void __collapse_huge_page_copy(pte_t *pte, struct page *page,
				      struct vm_area_struct *vma,
				      unsigned long address,
				      spinlock_t *ptl)
{
	pte_t *_pte;
	for (_pte = pte; _pte < pte+HPAGE_PMD_NR; _pte++) {
		pte_t pteval = *_pte;
		struct page *src_page;

2005
		if (pte_none(pteval) || is_zero_pfn(pte_pfn(pteval))) {
A
Andrea Arcangeli 已提交
2006 2007
			clear_user_highpage(page, address);
			add_mm_counter(vma->vm_mm, MM_ANONPAGES, 1);
2008 2009 2010 2011 2012 2013 2014 2015 2016 2017 2018 2019
			if (is_zero_pfn(pte_pfn(pteval))) {
				/*
				 * ptl mostly unnecessary.
				 */
				spin_lock(ptl);
				/*
				 * paravirt calls inside pte_clear here are
				 * superfluous.
				 */
				pte_clear(vma->vm_mm, address, _pte);
				spin_unlock(ptl);
			}
A
Andrea Arcangeli 已提交
2020 2021 2022
		} else {
			src_page = pte_page(pteval);
			copy_user_highpage(page, src_page, address, vma);
2023
			VM_BUG_ON_PAGE(page_mapcount(src_page) != 1, src_page);
A
Andrea Arcangeli 已提交
2024 2025 2026 2027 2028 2029 2030 2031 2032 2033 2034 2035
			release_pte_page(src_page);
			/*
			 * ptl mostly unnecessary, but preempt has to
			 * be disabled to update the per-cpu stats
			 * inside page_remove_rmap().
			 */
			spin_lock(ptl);
			/*
			 * paravirt calls inside pte_clear here are
			 * superfluous.
			 */
			pte_clear(vma->vm_mm, address, _pte);
2036
			page_remove_rmap(src_page, false);
A
Andrea Arcangeli 已提交
2037 2038 2039 2040 2041 2042 2043 2044 2045
			spin_unlock(ptl);
			free_page_and_swap_cache(src_page);
		}

		address += PAGE_SIZE;
		page++;
	}
}

2046
static void khugepaged_alloc_sleep(void)
A
Andrea Arcangeli 已提交
2047
{
2048 2049 2050 2051 2052 2053
	DEFINE_WAIT(wait);

	add_wait_queue(&khugepaged_wait, &wait);
	freezable_schedule_timeout_interruptible(
		msecs_to_jiffies(khugepaged_alloc_sleep_millisecs));
	remove_wait_queue(&khugepaged_wait, &wait);
2054
}
A
Andrea Arcangeli 已提交
2055

2056 2057
static int khugepaged_node_load[MAX_NUMNODES];

2058 2059 2060 2061 2062 2063 2064 2065 2066 2067 2068 2069 2070 2071 2072 2073 2074 2075 2076 2077 2078 2079 2080 2081
static bool khugepaged_scan_abort(int nid)
{
	int i;

	/*
	 * If zone_reclaim_mode is disabled, then no extra effort is made to
	 * allocate memory locally.
	 */
	if (!zone_reclaim_mode)
		return false;

	/* If there is a count for this node already, it must be acceptable */
	if (khugepaged_node_load[nid])
		return false;

	for (i = 0; i < MAX_NUMNODES; i++) {
		if (!khugepaged_node_load[i])
			continue;
		if (node_distance(nid, i) > RECLAIM_DISTANCE)
			return true;
	}
	return false;
}

2082
#ifdef CONFIG_NUMA
2083 2084 2085 2086 2087 2088 2089 2090 2091 2092 2093 2094 2095 2096 2097 2098 2099 2100 2101 2102 2103 2104 2105 2106 2107
static int khugepaged_find_target_node(void)
{
	static int last_khugepaged_target_node = NUMA_NO_NODE;
	int nid, target_node = 0, max_value = 0;

	/* find first node with max normal pages hit */
	for (nid = 0; nid < MAX_NUMNODES; nid++)
		if (khugepaged_node_load[nid] > max_value) {
			max_value = khugepaged_node_load[nid];
			target_node = nid;
		}

	/* do some balance if several nodes have the same hit record */
	if (target_node <= last_khugepaged_target_node)
		for (nid = last_khugepaged_target_node + 1; nid < MAX_NUMNODES;
				nid++)
			if (max_value == khugepaged_node_load[nid]) {
				target_node = nid;
				break;
			}

	last_khugepaged_target_node = target_node;
	return target_node;
}

2108 2109 2110 2111 2112 2113 2114
static bool khugepaged_prealloc_page(struct page **hpage, bool *wait)
{
	if (IS_ERR(*hpage)) {
		if (!*wait)
			return false;

		*wait = false;
2115
		*hpage = NULL;
2116 2117 2118 2119 2120 2121 2122 2123 2124
		khugepaged_alloc_sleep();
	} else if (*hpage) {
		put_page(*hpage);
		*hpage = NULL;
	}

	return true;
}

2125 2126
static struct page *
khugepaged_alloc_page(struct page **hpage, gfp_t gfp, struct mm_struct *mm,
2127
		       unsigned long address, int node)
2128
{
2129
	VM_BUG_ON_PAGE(*hpage, *hpage);
2130

2131
	/*
2132 2133 2134 2135
	 * Before allocating the hugepage, release the mmap_sem read lock.
	 * The allocation can take potentially a long time if it involves
	 * sync compaction, and we do not need to hold the mmap_sem during
	 * that. We will recheck the vma after taking it again in write mode.
2136
	 */
2137 2138
	up_read(&mm->mmap_sem);

2139
	*hpage = __alloc_pages_node(node, gfp, HPAGE_PMD_ORDER);
2140
	if (unlikely(!*hpage)) {
2141
		count_vm_event(THP_COLLAPSE_ALLOC_FAILED);
2142
		*hpage = ERR_PTR(-ENOMEM);
2143
		return NULL;
2144
	}
2145

2146
	count_vm_event(THP_COLLAPSE_ALLOC);
2147 2148 2149
	return *hpage;
}
#else
2150 2151 2152 2153 2154
static int khugepaged_find_target_node(void)
{
	return 0;
}

2155 2156 2157 2158 2159 2160
static inline struct page *alloc_hugepage(int defrag)
{
	return alloc_pages(alloc_hugepage_gfpmask(defrag, 0),
			   HPAGE_PMD_ORDER);
}

2161 2162 2163 2164 2165 2166 2167 2168 2169 2170 2171 2172 2173 2174 2175 2176 2177 2178 2179 2180 2181 2182 2183 2184 2185 2186 2187 2188 2189 2190 2191
static struct page *khugepaged_alloc_hugepage(bool *wait)
{
	struct page *hpage;

	do {
		hpage = alloc_hugepage(khugepaged_defrag());
		if (!hpage) {
			count_vm_event(THP_COLLAPSE_ALLOC_FAILED);
			if (!*wait)
				return NULL;

			*wait = false;
			khugepaged_alloc_sleep();
		} else
			count_vm_event(THP_COLLAPSE_ALLOC);
	} while (unlikely(!hpage) && likely(khugepaged_enabled()));

	return hpage;
}

static bool khugepaged_prealloc_page(struct page **hpage, bool *wait)
{
	if (!*hpage)
		*hpage = khugepaged_alloc_hugepage(wait);

	if (unlikely(!*hpage))
		return false;

	return true;
}

2192 2193
static struct page *
khugepaged_alloc_page(struct page **hpage, gfp_t gfp, struct mm_struct *mm,
2194
		       unsigned long address, int node)
2195 2196 2197
{
	up_read(&mm->mmap_sem);
	VM_BUG_ON(!*hpage);
2198

2199 2200
	return  *hpage;
}
2201 2202
#endif

B
Bob Liu 已提交
2203 2204 2205 2206 2207
static bool hugepage_vma_check(struct vm_area_struct *vma)
{
	if ((!(vma->vm_flags & VM_HUGEPAGE) && !khugepaged_always()) ||
	    (vma->vm_flags & VM_NOHUGEPAGE))
		return false;
2208 2209
	if (vma->vm_flags & VM_LOCKED)
		return false;
B
Bob Liu 已提交
2210 2211 2212 2213
	if (!vma->anon_vma || vma->vm_ops)
		return false;
	if (is_vma_temporary_stack(vma))
		return false;
2214
	VM_BUG_ON_VMA(vma->vm_flags & VM_NO_THP, vma);
B
Bob Liu 已提交
2215 2216 2217
	return true;
}

2218 2219 2220 2221 2222 2223 2224 2225 2226 2227
static void collapse_huge_page(struct mm_struct *mm,
				   unsigned long address,
				   struct page **hpage,
				   struct vm_area_struct *vma,
				   int node)
{
	pmd_t *pmd, _pmd;
	pte_t *pte;
	pgtable_t pgtable;
	struct page *new_page;
2228
	spinlock_t *pmd_ptl, *pte_ptl;
2229
	int isolated, result = 0;
2230
	unsigned long hstart, hend;
2231
	struct mem_cgroup *memcg;
2232 2233
	unsigned long mmun_start;	/* For mmu_notifiers */
	unsigned long mmun_end;		/* For mmu_notifiers */
2234
	gfp_t gfp;
2235 2236 2237

	VM_BUG_ON(address & ~HPAGE_PMD_MASK);

2238 2239 2240 2241
	/* Only allocate from the target node */
	gfp = alloc_hugepage_gfpmask(khugepaged_defrag(), __GFP_OTHER_NODE) |
		__GFP_THISNODE;

2242
	/* release the mmap_sem read lock. */
2243
	new_page = khugepaged_alloc_page(hpage, gfp, mm, address, node);
2244 2245 2246 2247
	if (!new_page) {
		result = SCAN_ALLOC_HUGE_PAGE_FAIL;
		goto out_nolock;
	}
2248

2249
	if (unlikely(mem_cgroup_try_charge(new_page, mm, gfp, &memcg, true))) {
2250 2251 2252
		result = SCAN_CGROUP_CHARGE_FAIL;
		goto out_nolock;
	}
A
Andrea Arcangeli 已提交
2253 2254 2255 2256 2257 2258 2259

	/*
	 * Prevent all access to pagetables with the exception of
	 * gup_fast later hanlded by the ptep_clear_flush and the VM
	 * handled by the anon_vma lock + PG_lock.
	 */
	down_write(&mm->mmap_sem);
2260 2261
	if (unlikely(khugepaged_test_exit(mm))) {
		result = SCAN_ANY_PROCESS;
A
Andrea Arcangeli 已提交
2262
		goto out;
2263
	}
A
Andrea Arcangeli 已提交
2264 2265

	vma = find_vma(mm, address);
2266 2267
	if (!vma) {
		result = SCAN_VMA_NULL;
2268
		goto out;
2269
	}
A
Andrea Arcangeli 已提交
2270 2271
	hstart = (vma->vm_start + ~HPAGE_PMD_MASK) & HPAGE_PMD_MASK;
	hend = vma->vm_end & HPAGE_PMD_MASK;
2272 2273
	if (address < hstart || address + HPAGE_PMD_SIZE > hend) {
		result = SCAN_ADDRESS_RANGE;
A
Andrea Arcangeli 已提交
2274
		goto out;
2275 2276 2277
	}
	if (!hugepage_vma_check(vma)) {
		result = SCAN_VMA_CHECK;
2278
		goto out;
2279
	}
B
Bob Liu 已提交
2280
	pmd = mm_find_pmd(mm, address);
2281 2282
	if (!pmd) {
		result = SCAN_PMD_NULL;
A
Andrea Arcangeli 已提交
2283
		goto out;
2284
	}
A
Andrea Arcangeli 已提交
2285

2286
	anon_vma_lock_write(vma->anon_vma);
A
Andrea Arcangeli 已提交
2287 2288

	pte = pte_offset_map(pmd, address);
2289
	pte_ptl = pte_lockptr(mm, pmd);
A
Andrea Arcangeli 已提交
2290

2291 2292 2293
	mmun_start = address;
	mmun_end   = address + HPAGE_PMD_SIZE;
	mmu_notifier_invalidate_range_start(mm, mmun_start, mmun_end);
2294
	pmd_ptl = pmd_lock(mm, pmd); /* probably unnecessary */
A
Andrea Arcangeli 已提交
2295 2296 2297 2298 2299 2300
	/*
	 * After this gup_fast can't run anymore. This also removes
	 * any huge TLB entry from the CPU so we won't allow
	 * huge and small TLB entries for the same virtual address
	 * to avoid the risk of CPU bugs in that area.
	 */
2301
	_pmd = pmdp_collapse_flush(vma, address, pmd);
2302
	spin_unlock(pmd_ptl);
2303
	mmu_notifier_invalidate_range_end(mm, mmun_start, mmun_end);
A
Andrea Arcangeli 已提交
2304

2305
	spin_lock(pte_ptl);
A
Andrea Arcangeli 已提交
2306
	isolated = __collapse_huge_page_isolate(vma, address, pte);
2307
	spin_unlock(pte_ptl);
A
Andrea Arcangeli 已提交
2308 2309

	if (unlikely(!isolated)) {
2310
		pte_unmap(pte);
2311
		spin_lock(pmd_ptl);
A
Andrea Arcangeli 已提交
2312
		BUG_ON(!pmd_none(*pmd));
2313 2314 2315 2316 2317 2318
		/*
		 * We can only use set_pmd_at when establishing
		 * hugepmds and never for establishing regular pmds that
		 * points to regular pagetables. Use pmd_populate for that
		 */
		pmd_populate(mm, pmd, pmd_pgtable(_pmd));
2319
		spin_unlock(pmd_ptl);
2320
		anon_vma_unlock_write(vma->anon_vma);
2321
		result = SCAN_FAIL;
2322
		goto out;
A
Andrea Arcangeli 已提交
2323 2324 2325 2326 2327 2328
	}

	/*
	 * All pages are isolated and locked so anon_vma rmap
	 * can't run anymore.
	 */
2329
	anon_vma_unlock_write(vma->anon_vma);
A
Andrea Arcangeli 已提交
2330

2331
	__collapse_huge_page_copy(pte, new_page, vma, address, pte_ptl);
2332
	pte_unmap(pte);
A
Andrea Arcangeli 已提交
2333 2334 2335
	__SetPageUptodate(new_page);
	pgtable = pmd_pgtable(_pmd);

2336 2337
	_pmd = mk_huge_pmd(new_page, vma->vm_page_prot);
	_pmd = maybe_pmd_mkwrite(pmd_mkdirty(_pmd), vma);
A
Andrea Arcangeli 已提交
2338 2339 2340 2341 2342 2343 2344 2345

	/*
	 * spin_lock() below is not the equivalent of smp_wmb(), so
	 * this is needed to avoid the copy_huge_page writes to become
	 * visible after the set_pmd_at() write.
	 */
	smp_wmb();

2346
	spin_lock(pmd_ptl);
A
Andrea Arcangeli 已提交
2347
	BUG_ON(!pmd_none(*pmd));
2348
	page_add_new_anon_rmap(new_page, vma, address, true);
2349
	mem_cgroup_commit_charge(new_page, memcg, false, true);
2350
	lru_cache_add_active_or_unevictable(new_page, vma);
2351
	pgtable_trans_huge_deposit(mm, pmd, pgtable);
A
Andrea Arcangeli 已提交
2352
	set_pmd_at(mm, address, pmd, _pmd);
2353
	update_mmu_cache_pmd(vma, address, pmd);
2354
	spin_unlock(pmd_ptl);
A
Andrea Arcangeli 已提交
2355 2356

	*hpage = NULL;
2357

A
Andrea Arcangeli 已提交
2358
	khugepaged_pages_collapsed++;
2359
	result = SCAN_SUCCEED;
2360
out_up_write:
A
Andrea Arcangeli 已提交
2361
	up_write(&mm->mmap_sem);
2362
	trace_mm_collapse_huge_page(mm, isolated, result);
2363 2364
	return;

2365 2366 2367
out_nolock:
	trace_mm_collapse_huge_page(mm, isolated, result);
	return;
2368
out:
2369
	mem_cgroup_cancel_charge(new_page, memcg, true);
2370
	goto out_up_write;
A
Andrea Arcangeli 已提交
2371 2372 2373 2374 2375 2376 2377 2378 2379
}

static int khugepaged_scan_pmd(struct mm_struct *mm,
			       struct vm_area_struct *vma,
			       unsigned long address,
			       struct page **hpage)
{
	pmd_t *pmd;
	pte_t *pte, *_pte;
2380 2381
	int ret = 0, none_or_zero = 0, result = 0;
	struct page *page = NULL;
A
Andrea Arcangeli 已提交
2382 2383
	unsigned long _address;
	spinlock_t *ptl;
D
David Rientjes 已提交
2384
	int node = NUMA_NO_NODE;
2385
	bool writable = false, referenced = false;
A
Andrea Arcangeli 已提交
2386 2387 2388

	VM_BUG_ON(address & ~HPAGE_PMD_MASK);

B
Bob Liu 已提交
2389
	pmd = mm_find_pmd(mm, address);
2390 2391
	if (!pmd) {
		result = SCAN_PMD_NULL;
A
Andrea Arcangeli 已提交
2392
		goto out;
2393
	}
A
Andrea Arcangeli 已提交
2394

2395
	memset(khugepaged_node_load, 0, sizeof(khugepaged_node_load));
A
Andrea Arcangeli 已提交
2396 2397 2398 2399
	pte = pte_offset_map_lock(mm, pmd, address, &ptl);
	for (_address = address, _pte = pte; _pte < pte+HPAGE_PMD_NR;
	     _pte++, _address += PAGE_SIZE) {
		pte_t pteval = *_pte;
2400
		if (pte_none(pteval) || is_zero_pfn(pte_pfn(pteval))) {
2401
			if (!userfaultfd_armed(vma) &&
2402
			    ++none_or_zero <= khugepaged_max_ptes_none) {
A
Andrea Arcangeli 已提交
2403
				continue;
2404 2405
			} else {
				result = SCAN_EXCEED_NONE_PTE;
A
Andrea Arcangeli 已提交
2406
				goto out_unmap;
2407
			}
A
Andrea Arcangeli 已提交
2408
		}
2409 2410
		if (!pte_present(pteval)) {
			result = SCAN_PTE_NON_PRESENT;
A
Andrea Arcangeli 已提交
2411
			goto out_unmap;
2412
		}
2413 2414 2415
		if (pte_write(pteval))
			writable = true;

A
Andrea Arcangeli 已提交
2416
		page = vm_normal_page(vma, _address, pteval);
2417 2418
		if (unlikely(!page)) {
			result = SCAN_PAGE_NULL;
A
Andrea Arcangeli 已提交
2419
			goto out_unmap;
2420
		}
2421 2422 2423 2424 2425 2426 2427

		/* TODO: teach khugepaged to collapse THP mapped with pte */
		if (PageCompound(page)) {
			result = SCAN_PAGE_COMPOUND;
			goto out_unmap;
		}

2428
		/*
2429 2430 2431 2432
		 * Record which node the original page is from and save this
		 * information to khugepaged_node_load[].
		 * Khupaged will allocate hugepage from the node has the max
		 * hit record.
2433
		 */
2434
		node = page_to_nid(page);
2435 2436
		if (khugepaged_scan_abort(node)) {
			result = SCAN_SCAN_ABORT;
2437
			goto out_unmap;
2438
		}
2439
		khugepaged_node_load[node]++;
2440 2441 2442 2443 2444 2445
		if (!PageLRU(page)) {
			result = SCAN_SCAN_ABORT;
			goto out_unmap;
		}
		if (PageLocked(page)) {
			result = SCAN_PAGE_LOCK;
A
Andrea Arcangeli 已提交
2446
			goto out_unmap;
2447 2448 2449 2450 2451 2452
		}
		if (!PageAnon(page)) {
			result = SCAN_PAGE_ANON;
			goto out_unmap;
		}

2453 2454 2455 2456 2457
		/*
		 * cannot use mapcount: can't collapse if there's a gup pin.
		 * The page must only be referenced by the scanned process
		 * and page swap cache.
		 */
2458 2459
		if (page_count(page) != 1 + !!PageSwapCache(page)) {
			result = SCAN_PAGE_COUNT;
A
Andrea Arcangeli 已提交
2460
			goto out_unmap;
2461
		}
2462 2463
		if (pte_young(pteval) ||
		    page_is_young(page) || PageReferenced(page) ||
A
Andrea Arcangeli 已提交
2464
		    mmu_notifier_test_young(vma->vm_mm, address))
2465
			referenced = true;
A
Andrea Arcangeli 已提交
2466
	}
2467 2468 2469 2470 2471 2472 2473 2474 2475 2476
	if (writable) {
		if (referenced) {
			result = SCAN_SUCCEED;
			ret = 1;
		} else {
			result = SCAN_NO_REFERENCED_PAGE;
		}
	} else {
		result = SCAN_PAGE_RO;
	}
A
Andrea Arcangeli 已提交
2477 2478
out_unmap:
	pte_unmap_unlock(pte, ptl);
2479 2480
	if (ret) {
		node = khugepaged_find_target_node();
2481
		/* collapse_huge_page will return with the mmap_sem released */
2482
		collapse_huge_page(mm, address, hpage, vma, node);
2483
	}
A
Andrea Arcangeli 已提交
2484
out:
2485 2486
	trace_mm_khugepaged_scan_pmd(mm, page_to_pfn(page), writable, referenced,
				     none_or_zero, result);
A
Andrea Arcangeli 已提交
2487 2488 2489 2490 2491 2492 2493
	return ret;
}

static void collect_mm_slot(struct mm_slot *mm_slot)
{
	struct mm_struct *mm = mm_slot->mm;

2494
	VM_BUG_ON(NR_CPUS != 1 && !spin_is_locked(&khugepaged_mm_lock));
A
Andrea Arcangeli 已提交
2495 2496 2497

	if (khugepaged_test_exit(mm)) {
		/* free mm_slot */
2498
		hash_del(&mm_slot->hash);
A
Andrea Arcangeli 已提交
2499 2500 2501 2502 2503 2504 2505 2506 2507 2508 2509 2510 2511 2512 2513 2514
		list_del(&mm_slot->mm_node);

		/*
		 * Not strictly needed because the mm exited already.
		 *
		 * clear_bit(MMF_VM_HUGEPAGE, &mm->flags);
		 */

		/* khugepaged_mm_lock actually not necessary for the below */
		free_mm_slot(mm_slot);
		mmdrop(mm);
	}
}

static unsigned int khugepaged_scan_mm_slot(unsigned int pages,
					    struct page **hpage)
2515 2516
	__releases(&khugepaged_mm_lock)
	__acquires(&khugepaged_mm_lock)
A
Andrea Arcangeli 已提交
2517 2518 2519 2520 2521 2522 2523
{
	struct mm_slot *mm_slot;
	struct mm_struct *mm;
	struct vm_area_struct *vma;
	int progress = 0;

	VM_BUG_ON(!pages);
2524
	VM_BUG_ON(NR_CPUS != 1 && !spin_is_locked(&khugepaged_mm_lock));
A
Andrea Arcangeli 已提交
2525 2526 2527 2528 2529 2530 2531 2532 2533 2534 2535 2536 2537 2538 2539 2540 2541 2542 2543 2544 2545 2546 2547 2548 2549 2550 2551

	if (khugepaged_scan.mm_slot)
		mm_slot = khugepaged_scan.mm_slot;
	else {
		mm_slot = list_entry(khugepaged_scan.mm_head.next,
				     struct mm_slot, mm_node);
		khugepaged_scan.address = 0;
		khugepaged_scan.mm_slot = mm_slot;
	}
	spin_unlock(&khugepaged_mm_lock);

	mm = mm_slot->mm;
	down_read(&mm->mmap_sem);
	if (unlikely(khugepaged_test_exit(mm)))
		vma = NULL;
	else
		vma = find_vma(mm, khugepaged_scan.address);

	progress++;
	for (; vma; vma = vma->vm_next) {
		unsigned long hstart, hend;

		cond_resched();
		if (unlikely(khugepaged_test_exit(mm))) {
			progress++;
			break;
		}
B
Bob Liu 已提交
2552 2553
		if (!hugepage_vma_check(vma)) {
skip:
A
Andrea Arcangeli 已提交
2554 2555 2556 2557 2558
			progress++;
			continue;
		}
		hstart = (vma->vm_start + ~HPAGE_PMD_MASK) & HPAGE_PMD_MASK;
		hend = vma->vm_end & HPAGE_PMD_MASK;
2559 2560 2561 2562
		if (hstart >= hend)
			goto skip;
		if (khugepaged_scan.address > hend)
			goto skip;
A
Andrea Arcangeli 已提交
2563 2564
		if (khugepaged_scan.address < hstart)
			khugepaged_scan.address = hstart;
2565
		VM_BUG_ON(khugepaged_scan.address & ~HPAGE_PMD_MASK);
A
Andrea Arcangeli 已提交
2566 2567 2568 2569 2570 2571 2572 2573 2574 2575 2576 2577 2578 2579 2580 2581 2582 2583 2584 2585 2586 2587 2588 2589 2590 2591 2592 2593

		while (khugepaged_scan.address < hend) {
			int ret;
			cond_resched();
			if (unlikely(khugepaged_test_exit(mm)))
				goto breakouterloop;

			VM_BUG_ON(khugepaged_scan.address < hstart ||
				  khugepaged_scan.address + HPAGE_PMD_SIZE >
				  hend);
			ret = khugepaged_scan_pmd(mm, vma,
						  khugepaged_scan.address,
						  hpage);
			/* move to next address */
			khugepaged_scan.address += HPAGE_PMD_SIZE;
			progress += HPAGE_PMD_NR;
			if (ret)
				/* we released mmap_sem so break loop */
				goto breakouterloop_mmap_sem;
			if (progress >= pages)
				goto breakouterloop;
		}
	}
breakouterloop:
	up_read(&mm->mmap_sem); /* exit_mmap will destroy ptes after this */
breakouterloop_mmap_sem:

	spin_lock(&khugepaged_mm_lock);
2594
	VM_BUG_ON(khugepaged_scan.mm_slot != mm_slot);
A
Andrea Arcangeli 已提交
2595 2596 2597 2598 2599 2600 2601 2602 2603 2604 2605 2606 2607 2608 2609 2610 2611 2612 2613 2614 2615 2616 2617 2618 2619 2620 2621 2622 2623 2624 2625 2626 2627 2628 2629
	/*
	 * Release the current mm_slot if this mm is about to die, or
	 * if we scanned all vmas of this mm.
	 */
	if (khugepaged_test_exit(mm) || !vma) {
		/*
		 * Make sure that if mm_users is reaching zero while
		 * khugepaged runs here, khugepaged_exit will find
		 * mm_slot not pointing to the exiting mm.
		 */
		if (mm_slot->mm_node.next != &khugepaged_scan.mm_head) {
			khugepaged_scan.mm_slot = list_entry(
				mm_slot->mm_node.next,
				struct mm_slot, mm_node);
			khugepaged_scan.address = 0;
		} else {
			khugepaged_scan.mm_slot = NULL;
			khugepaged_full_scans++;
		}

		collect_mm_slot(mm_slot);
	}

	return progress;
}

static int khugepaged_has_work(void)
{
	return !list_empty(&khugepaged_scan.mm_head) &&
		khugepaged_enabled();
}

static int khugepaged_wait_event(void)
{
	return !list_empty(&khugepaged_scan.mm_head) ||
2630
		kthread_should_stop();
A
Andrea Arcangeli 已提交
2631 2632
}

2633
static void khugepaged_do_scan(void)
A
Andrea Arcangeli 已提交
2634
{
2635
	struct page *hpage = NULL;
A
Andrea Arcangeli 已提交
2636 2637
	unsigned int progress = 0, pass_through_head = 0;
	unsigned int pages = khugepaged_pages_to_scan;
2638
	bool wait = true;
A
Andrea Arcangeli 已提交
2639 2640 2641 2642

	barrier(); /* write khugepaged_pages_to_scan to local stack */

	while (progress < pages) {
2643
		if (!khugepaged_prealloc_page(&hpage, &wait))
2644
			break;
2645

2646
		cond_resched();
A
Andrea Arcangeli 已提交
2647

2648
		if (unlikely(kthread_should_stop() || try_to_freeze()))
2649 2650
			break;

A
Andrea Arcangeli 已提交
2651 2652 2653 2654 2655 2656
		spin_lock(&khugepaged_mm_lock);
		if (!khugepaged_scan.mm_slot)
			pass_through_head++;
		if (khugepaged_has_work() &&
		    pass_through_head < 2)
			progress += khugepaged_scan_mm_slot(pages - progress,
2657
							    &hpage);
A
Andrea Arcangeli 已提交
2658 2659 2660 2661 2662
		else
			progress = pages;
		spin_unlock(&khugepaged_mm_lock);
	}

2663 2664
	if (!IS_ERR_OR_NULL(hpage))
		put_page(hpage);
2665 2666
}

2667 2668 2669 2670 2671 2672 2673 2674 2675 2676 2677 2678 2679 2680 2681 2682
static void khugepaged_wait_work(void)
{
	if (khugepaged_has_work()) {
		if (!khugepaged_scan_sleep_millisecs)
			return;

		wait_event_freezable_timeout(khugepaged_wait,
					     kthread_should_stop(),
			msecs_to_jiffies(khugepaged_scan_sleep_millisecs));
		return;
	}

	if (khugepaged_enabled())
		wait_event_freezable(khugepaged_wait, khugepaged_wait_event());
}

A
Andrea Arcangeli 已提交
2683 2684 2685 2686
static int khugepaged(void *none)
{
	struct mm_slot *mm_slot;

2687
	set_freezable();
2688
	set_user_nice(current, MAX_NICE);
A
Andrea Arcangeli 已提交
2689

X
Xiao Guangrong 已提交
2690 2691 2692 2693
	while (!kthread_should_stop()) {
		khugepaged_do_scan();
		khugepaged_wait_work();
	}
A
Andrea Arcangeli 已提交
2694 2695 2696 2697 2698 2699 2700 2701 2702 2703

	spin_lock(&khugepaged_mm_lock);
	mm_slot = khugepaged_scan.mm_slot;
	khugepaged_scan.mm_slot = NULL;
	if (mm_slot)
		collect_mm_slot(mm_slot);
	spin_unlock(&khugepaged_mm_lock);
	return 0;
}

2704
static void split_huge_pmd_address(struct vm_area_struct *vma,
2705 2706
				    unsigned long address)
{
2707 2708
	pgd_t *pgd;
	pud_t *pud;
2709 2710 2711 2712
	pmd_t *pmd;

	VM_BUG_ON(!(address & ~HPAGE_PMD_MASK));

2713
	pgd = pgd_offset(vma->vm_mm, address);
2714 2715 2716 2717 2718 2719 2720 2721
	if (!pgd_present(*pgd))
		return;

	pud = pud_offset(pgd, address);
	if (!pud_present(*pud))
		return;

	pmd = pmd_offset(pud, address);
2722
	if (!pmd_present(*pmd) || !pmd_trans_huge(*pmd))
2723 2724 2725 2726 2727
		return;
	/*
	 * Caller holds the mmap_sem write mode, so a huge pmd cannot
	 * materialize from under us.
	 */
2728
	split_huge_pmd(vma, pmd, address);
2729 2730
}

2731
void vma_adjust_trans_huge(struct vm_area_struct *vma,
2732 2733 2734 2735 2736 2737 2738 2739 2740 2741 2742 2743
			     unsigned long start,
			     unsigned long end,
			     long adjust_next)
{
	/*
	 * If the new start address isn't hpage aligned and it could
	 * previously contain an hugepage: check if we need to split
	 * an huge pmd.
	 */
	if (start & ~HPAGE_PMD_MASK &&
	    (start & HPAGE_PMD_MASK) >= vma->vm_start &&
	    (start & HPAGE_PMD_MASK) + HPAGE_PMD_SIZE <= vma->vm_end)
2744
		split_huge_pmd_address(vma, start);
2745 2746 2747 2748 2749 2750 2751 2752 2753

	/*
	 * If the new end address isn't hpage aligned and it could
	 * previously contain an hugepage: check if we need to split
	 * an huge pmd.
	 */
	if (end & ~HPAGE_PMD_MASK &&
	    (end & HPAGE_PMD_MASK) >= vma->vm_start &&
	    (end & HPAGE_PMD_MASK) + HPAGE_PMD_SIZE <= vma->vm_end)
2754
		split_huge_pmd_address(vma, end);
2755 2756 2757 2758 2759 2760 2761 2762 2763 2764 2765 2766 2767

	/*
	 * If we're also updating the vma->vm_next->vm_start, if the new
	 * vm_next->vm_start isn't page aligned and it could previously
	 * contain an hugepage: check if we need to split an huge pmd.
	 */
	if (adjust_next > 0) {
		struct vm_area_struct *next = vma->vm_next;
		unsigned long nstart = next->vm_start;
		nstart += adjust_next << PAGE_SHIFT;
		if (nstart & ~HPAGE_PMD_MASK &&
		    (nstart & HPAGE_PMD_MASK) >= next->vm_start &&
		    (nstart & HPAGE_PMD_MASK) + HPAGE_PMD_SIZE <= next->vm_end)
2768
			split_huge_pmd_address(next, nstart);
2769 2770
	}
}