memory.c 118.7 KB
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/*
 *  linux/mm/memory.c
 *
 *  Copyright (C) 1991, 1992, 1993, 1994  Linus Torvalds
 */

/*
 * demand-loading started 01.12.91 - seems it is high on the list of
 * things wanted, and it should be easy to implement. - Linus
 */

/*
 * Ok, demand-loading was easy, shared pages a little bit tricker. Shared
 * pages started 02.12.91, seems to work. - Linus.
 *
 * Tested sharing by executing about 30 /bin/sh: under the old kernel it
 * would have taken more than the 6M I have free, but it worked well as
 * far as I could see.
 *
 * Also corrected some "invalidate()"s - I wasn't doing enough of them.
 */

/*
 * Real VM (paging to/from disk) started 18.12.91. Much more work and
 * thought has to go into this. Oh, well..
 * 19.12.91  -  works, somewhat. Sometimes I get faults, don't know why.
 *		Found it. Everything seems to work now.
 * 20.12.91  -  Ok, making the swap-device changeable like the root.
 */

/*
 * 05.04.94  -  Multi-page memory management added for v1.1.
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 *              Idea by Alex Bligh (alex@cconcepts.co.uk)
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 *
 * 16.07.99  -  Support of BIGMEM added by Gerhard Wichert, Siemens AG
 *		(Gerhard.Wichert@pdb.siemens.de)
 *
 * Aug/Sep 2004 Changed to four level page tables (Andi Kleen)
 */

#include <linux/kernel_stat.h>
#include <linux/mm.h>
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#include <linux/sched/mm.h>
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#include <linux/sched/coredump.h>
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#include <linux/sched/numa_balancing.h>
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#include <linux/sched/task.h>
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#include <linux/hugetlb.h>
#include <linux/mman.h>
#include <linux/swap.h>
#include <linux/highmem.h>
#include <linux/pagemap.h>
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#include <linux/ksm.h>
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#include <linux/rmap.h>
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#include <linux/export.h>
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#include <linux/delayacct.h>
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#include <linux/init.h>
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#include <linux/pfn_t.h>
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#include <linux/writeback.h>
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#include <linux/memcontrol.h>
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#include <linux/mmu_notifier.h>
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#include <linux/kallsyms.h>
#include <linux/swapops.h>
#include <linux/elf.h>
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#include <linux/gfp.h>
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#include <linux/migrate.h>
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#include <linux/string.h>
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#include <linux/dma-debug.h>
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#include <linux/debugfs.h>
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#include <linux/userfaultfd_k.h>
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#include <linux/dax.h>
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#include <asm/io.h>
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#include <asm/mmu_context.h>
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#include <asm/pgalloc.h>
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#include <linux/uaccess.h>
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#include <asm/tlb.h>
#include <asm/tlbflush.h>
#include <asm/pgtable.h>

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#include "internal.h"

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#ifdef LAST_CPUPID_NOT_IN_PAGE_FLAGS
#warning Unfortunate NUMA and NUMA Balancing config, growing page-frame for last_cpupid.
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#endif

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#ifndef CONFIG_NEED_MULTIPLE_NODES
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/* use the per-pgdat data instead for discontigmem - mbligh */
unsigned long max_mapnr;
EXPORT_SYMBOL(max_mapnr);
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struct page *mem_map;
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EXPORT_SYMBOL(mem_map);
#endif

/*
 * A number of key systems in x86 including ioremap() rely on the assumption
 * that high_memory defines the upper bound on direct map memory, then end
 * of ZONE_NORMAL.  Under CONFIG_DISCONTIG this means that max_low_pfn and
 * highstart_pfn must be the same; there must be no gap between ZONE_NORMAL
 * and ZONE_HIGHMEM.
 */
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void *high_memory;
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EXPORT_SYMBOL(high_memory);

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/*
 * Randomize the address space (stacks, mmaps, brk, etc.).
 *
 * ( When CONFIG_COMPAT_BRK=y we exclude brk from randomization,
 *   as ancient (libc5 based) binaries can segfault. )
 */
int randomize_va_space __read_mostly =
#ifdef CONFIG_COMPAT_BRK
					1;
#else
					2;
#endif
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static int __init disable_randmaps(char *s)
{
	randomize_va_space = 0;
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	return 1;
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}
__setup("norandmaps", disable_randmaps);

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unsigned long zero_pfn __read_mostly;
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EXPORT_SYMBOL(zero_pfn);

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unsigned long highest_memmap_pfn __read_mostly;

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/*
 * CONFIG_MMU architectures set up ZERO_PAGE in their paging_init()
 */
static int __init init_zero_pfn(void)
{
	zero_pfn = page_to_pfn(ZERO_PAGE(0));
	return 0;
}
core_initcall(init_zero_pfn);
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#if defined(SPLIT_RSS_COUNTING)

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void sync_mm_rss(struct mm_struct *mm)
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{
	int i;

	for (i = 0; i < NR_MM_COUNTERS; i++) {
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		if (current->rss_stat.count[i]) {
			add_mm_counter(mm, i, current->rss_stat.count[i]);
			current->rss_stat.count[i] = 0;
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		}
	}
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	current->rss_stat.events = 0;
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}

static void add_mm_counter_fast(struct mm_struct *mm, int member, int val)
{
	struct task_struct *task = current;

	if (likely(task->mm == mm))
		task->rss_stat.count[member] += val;
	else
		add_mm_counter(mm, member, val);
}
#define inc_mm_counter_fast(mm, member) add_mm_counter_fast(mm, member, 1)
#define dec_mm_counter_fast(mm, member) add_mm_counter_fast(mm, member, -1)

/* sync counter once per 64 page faults */
#define TASK_RSS_EVENTS_THRESH	(64)
static void check_sync_rss_stat(struct task_struct *task)
{
	if (unlikely(task != current))
		return;
	if (unlikely(task->rss_stat.events++ > TASK_RSS_EVENTS_THRESH))
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		sync_mm_rss(task->mm);
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}
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#else /* SPLIT_RSS_COUNTING */
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#define inc_mm_counter_fast(mm, member) inc_mm_counter(mm, member)
#define dec_mm_counter_fast(mm, member) dec_mm_counter(mm, member)

static void check_sync_rss_stat(struct task_struct *task)
{
}

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#endif /* SPLIT_RSS_COUNTING */

#ifdef HAVE_GENERIC_MMU_GATHER

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static bool tlb_next_batch(struct mmu_gather *tlb)
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{
	struct mmu_gather_batch *batch;

	batch = tlb->active;
	if (batch->next) {
		tlb->active = batch->next;
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		return true;
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	}

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	if (tlb->batch_count == MAX_GATHER_BATCH_COUNT)
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		return false;
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	batch = (void *)__get_free_pages(GFP_NOWAIT | __GFP_NOWARN, 0);
	if (!batch)
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		return false;
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	tlb->batch_count++;
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	batch->next = NULL;
	batch->nr   = 0;
	batch->max  = MAX_GATHER_BATCH;

	tlb->active->next = batch;
	tlb->active = batch;

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	return true;
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}

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void arch_tlb_gather_mmu(struct mmu_gather *tlb, struct mm_struct *mm,
				unsigned long start, unsigned long end)
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{
	tlb->mm = mm;

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	/* Is it from 0 to ~0? */
	tlb->fullmm     = !(start | (end+1));
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	tlb->need_flush_all = 0;
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	tlb->local.next = NULL;
	tlb->local.nr   = 0;
	tlb->local.max  = ARRAY_SIZE(tlb->__pages);
	tlb->active     = &tlb->local;
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	tlb->batch_count = 0;
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#ifdef CONFIG_HAVE_RCU_TABLE_FREE
	tlb->batch = NULL;
#endif
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	tlb->page_size = 0;
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	__tlb_reset_range(tlb);
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}

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static void tlb_flush_mmu_tlbonly(struct mmu_gather *tlb)
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{
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	if (!tlb->end)
		return;

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	tlb_flush(tlb);
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	mmu_notifier_invalidate_range(tlb->mm, tlb->start, tlb->end);
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#ifdef CONFIG_HAVE_RCU_TABLE_FREE
	tlb_table_flush(tlb);
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#endif
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	__tlb_reset_range(tlb);
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}

static void tlb_flush_mmu_free(struct mmu_gather *tlb)
{
	struct mmu_gather_batch *batch;
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	for (batch = &tlb->local; batch && batch->nr; batch = batch->next) {
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		free_pages_and_swap_cache(batch->pages, batch->nr);
		batch->nr = 0;
	}
	tlb->active = &tlb->local;
}

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void tlb_flush_mmu(struct mmu_gather *tlb)
{
	tlb_flush_mmu_tlbonly(tlb);
	tlb_flush_mmu_free(tlb);
}

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/* tlb_finish_mmu
 *	Called at the end of the shootdown operation to free up any resources
 *	that were required.
 */
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void arch_tlb_finish_mmu(struct mmu_gather *tlb,
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		unsigned long start, unsigned long end, bool force)
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{
	struct mmu_gather_batch *batch, *next;

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	if (force)
		__tlb_adjust_range(tlb, start, end - start);

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	tlb_flush_mmu(tlb);

	/* keep the page table cache within bounds */
	check_pgt_cache();

	for (batch = tlb->local.next; batch; batch = next) {
		next = batch->next;
		free_pages((unsigned long)batch, 0);
	}
	tlb->local.next = NULL;
}

/* __tlb_remove_page
 *	Must perform the equivalent to __free_pte(pte_get_and_clear(ptep)), while
 *	handling the additional races in SMP caused by other CPUs caching valid
 *	mappings in their TLBs. Returns the number of free page slots left.
 *	When out of page slots we must call tlb_flush_mmu().
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 *returns true if the caller should flush.
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 */
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bool __tlb_remove_page_size(struct mmu_gather *tlb, struct page *page, int page_size)
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{
	struct mmu_gather_batch *batch;

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	VM_BUG_ON(!tlb->end);
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	VM_WARN_ON(tlb->page_size != page_size);
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	batch = tlb->active;
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	/*
	 * Add the page and check if we are full. If so
	 * force a flush.
	 */
	batch->pages[batch->nr++] = page;
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	if (batch->nr == batch->max) {
		if (!tlb_next_batch(tlb))
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			return true;
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		batch = tlb->active;
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	}
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	VM_BUG_ON_PAGE(batch->nr > batch->max, page);
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	return false;
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}

#endif /* HAVE_GENERIC_MMU_GATHER */

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#ifdef CONFIG_HAVE_RCU_TABLE_FREE

/*
 * See the comment near struct mmu_table_batch.
 */

static void tlb_remove_table_smp_sync(void *arg)
{
	/* Simply deliver the interrupt */
}

static void tlb_remove_table_one(void *table)
{
	/*
	 * This isn't an RCU grace period and hence the page-tables cannot be
	 * assumed to be actually RCU-freed.
	 *
	 * It is however sufficient for software page-table walkers that rely on
	 * IRQ disabling. See the comment near struct mmu_table_batch.
	 */
	smp_call_function(tlb_remove_table_smp_sync, NULL, 1);
	__tlb_remove_table(table);
}

static void tlb_remove_table_rcu(struct rcu_head *head)
{
	struct mmu_table_batch *batch;
	int i;

	batch = container_of(head, struct mmu_table_batch, rcu);

	for (i = 0; i < batch->nr; i++)
		__tlb_remove_table(batch->tables[i]);

	free_page((unsigned long)batch);
}

void tlb_table_flush(struct mmu_gather *tlb)
{
	struct mmu_table_batch **batch = &tlb->batch;

	if (*batch) {
		call_rcu_sched(&(*batch)->rcu, tlb_remove_table_rcu);
		*batch = NULL;
	}
}

void tlb_remove_table(struct mmu_gather *tlb, void *table)
{
	struct mmu_table_batch **batch = &tlb->batch;

	/*
	 * When there's less then two users of this mm there cannot be a
	 * concurrent page-table walk.
	 */
	if (atomic_read(&tlb->mm->mm_users) < 2) {
		__tlb_remove_table(table);
		return;
	}

	if (*batch == NULL) {
		*batch = (struct mmu_table_batch *)__get_free_page(GFP_NOWAIT | __GFP_NOWARN);
		if (*batch == NULL) {
			tlb_remove_table_one(table);
			return;
		}
		(*batch)->nr = 0;
	}
	(*batch)->tables[(*batch)->nr++] = table;
	if ((*batch)->nr == MAX_TABLE_BATCH)
		tlb_table_flush(tlb);
}

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#endif /* CONFIG_HAVE_RCU_TABLE_FREE */
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/* tlb_gather_mmu
 *	Called to initialize an (on-stack) mmu_gather structure for page-table
 *	tear-down from @mm. The @fullmm argument is used when @mm is without
 *	users and we're going to destroy the full address space (exit/execve).
 */
void tlb_gather_mmu(struct mmu_gather *tlb, struct mm_struct *mm,
			unsigned long start, unsigned long end)
{
	arch_tlb_gather_mmu(tlb, mm, start, end);
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	inc_tlb_flush_pending(tlb->mm);
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}

void tlb_finish_mmu(struct mmu_gather *tlb,
		unsigned long start, unsigned long end)
{
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	/*
	 * If there are parallel threads are doing PTE changes on same range
	 * under non-exclusive lock(e.g., mmap_sem read-side) but defer TLB
	 * flush by batching, a thread has stable TLB entry can fail to flush
	 * the TLB by observing pte_none|!pte_dirty, for example so flush TLB
	 * forcefully if we detect parallel PTE batching threads.
	 */
	bool force = mm_tlb_flush_nested(tlb->mm);

	arch_tlb_finish_mmu(tlb, start, end, force);
	dec_tlb_flush_pending(tlb->mm);
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}

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/*
 * Note: this doesn't free the actual pages themselves. That
 * has been handled earlier when unmapping all the memory regions.
 */
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static void free_pte_range(struct mmu_gather *tlb, pmd_t *pmd,
			   unsigned long addr)
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{
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	pgtable_t token = pmd_pgtable(*pmd);
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	pmd_clear(pmd);
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	pte_free_tlb(tlb, token, addr);
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	atomic_long_dec(&tlb->mm->nr_ptes);
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}

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static inline void free_pmd_range(struct mmu_gather *tlb, pud_t *pud,
				unsigned long addr, unsigned long end,
				unsigned long floor, unsigned long ceiling)
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{
	pmd_t *pmd;
	unsigned long next;
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	unsigned long start;
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	start = addr;
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	pmd = pmd_offset(pud, addr);
	do {
		next = pmd_addr_end(addr, end);
		if (pmd_none_or_clear_bad(pmd))
			continue;
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		free_pte_range(tlb, pmd, addr);
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	} while (pmd++, addr = next, addr != end);

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	start &= PUD_MASK;
	if (start < floor)
		return;
	if (ceiling) {
		ceiling &= PUD_MASK;
		if (!ceiling)
			return;
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	}
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	if (end - 1 > ceiling - 1)
		return;

	pmd = pmd_offset(pud, start);
	pud_clear(pud);
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	pmd_free_tlb(tlb, pmd, start);
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	mm_dec_nr_pmds(tlb->mm);
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}

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static inline void free_pud_range(struct mmu_gather *tlb, p4d_t *p4d,
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				unsigned long addr, unsigned long end,
				unsigned long floor, unsigned long ceiling)
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{
	pud_t *pud;
	unsigned long next;
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	unsigned long start;
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	start = addr;
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	pud = pud_offset(p4d, addr);
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	do {
		next = pud_addr_end(addr, end);
		if (pud_none_or_clear_bad(pud))
			continue;
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		free_pmd_range(tlb, pud, addr, next, floor, ceiling);
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	} while (pud++, addr = next, addr != end);

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	start &= P4D_MASK;
	if (start < floor)
		return;
	if (ceiling) {
		ceiling &= P4D_MASK;
		if (!ceiling)
			return;
	}
	if (end - 1 > ceiling - 1)
		return;

	pud = pud_offset(p4d, start);
	p4d_clear(p4d);
	pud_free_tlb(tlb, pud, start);
}

static inline void free_p4d_range(struct mmu_gather *tlb, pgd_t *pgd,
				unsigned long addr, unsigned long end,
				unsigned long floor, unsigned long ceiling)
{
	p4d_t *p4d;
	unsigned long next;
	unsigned long start;

	start = addr;
	p4d = p4d_offset(pgd, addr);
	do {
		next = p4d_addr_end(addr, end);
		if (p4d_none_or_clear_bad(p4d))
			continue;
		free_pud_range(tlb, p4d, addr, next, floor, ceiling);
	} while (p4d++, addr = next, addr != end);

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	start &= PGDIR_MASK;
	if (start < floor)
		return;
	if (ceiling) {
		ceiling &= PGDIR_MASK;
		if (!ceiling)
			return;
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	}
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	if (end - 1 > ceiling - 1)
		return;

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	p4d = p4d_offset(pgd, start);
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	pgd_clear(pgd);
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	p4d_free_tlb(tlb, p4d, start);
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}

/*
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 * This function frees user-level page tables of a process.
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 */
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void free_pgd_range(struct mmu_gather *tlb,
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			unsigned long addr, unsigned long end,
			unsigned long floor, unsigned long ceiling)
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{
	pgd_t *pgd;
	unsigned long next;
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	/*
	 * The next few lines have given us lots of grief...
	 *
	 * Why are we testing PMD* at this top level?  Because often
	 * there will be no work to do at all, and we'd prefer not to
	 * go all the way down to the bottom just to discover that.
	 *
	 * Why all these "- 1"s?  Because 0 represents both the bottom
	 * of the address space and the top of it (using -1 for the
	 * top wouldn't help much: the masks would do the wrong thing).
	 * The rule is that addr 0 and floor 0 refer to the bottom of
	 * the address space, but end 0 and ceiling 0 refer to the top
	 * Comparisons need to use "end - 1" and "ceiling - 1" (though
	 * that end 0 case should be mythical).
	 *
	 * Wherever addr is brought up or ceiling brought down, we must
	 * be careful to reject "the opposite 0" before it confuses the
	 * subsequent tests.  But what about where end is brought down
	 * by PMD_SIZE below? no, end can't go down to 0 there.
	 *
	 * Whereas we round start (addr) and ceiling down, by different
	 * masks at different levels, in order to test whether a table
	 * now has no other vmas using it, so can be freed, we don't
	 * bother to round floor or end up - the tests don't need that.
	 */
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	addr &= PMD_MASK;
	if (addr < floor) {
		addr += PMD_SIZE;
		if (!addr)
			return;
	}
	if (ceiling) {
		ceiling &= PMD_MASK;
		if (!ceiling)
			return;
	}
	if (end - 1 > ceiling - 1)
		end -= PMD_SIZE;
	if (addr > end - 1)
		return;
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	/*
	 * We add page table cache pages with PAGE_SIZE,
	 * (see pte_free_tlb()), flush the tlb if we need
	 */
	tlb_remove_check_page_size_change(tlb, PAGE_SIZE);
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	pgd = pgd_offset(tlb->mm, addr);
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	do {
		next = pgd_addr_end(addr, end);
		if (pgd_none_or_clear_bad(pgd))
			continue;
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		free_p4d_range(tlb, pgd, addr, next, floor, ceiling);
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	} while (pgd++, addr = next, addr != end);
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}

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void free_pgtables(struct mmu_gather *tlb, struct vm_area_struct *vma,
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		unsigned long floor, unsigned long ceiling)
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{
	while (vma) {
		struct vm_area_struct *next = vma->vm_next;
		unsigned long addr = vma->vm_start;

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		/*
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npiggin@suse.de 已提交
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		 * Hide vma from rmap and truncate_pagecache before freeing
		 * pgtables
617
		 */
618
		unlink_anon_vmas(vma);
619 620
		unlink_file_vma(vma);

621
		if (is_vm_hugetlb_page(vma)) {
622
			hugetlb_free_pgd_range(tlb, addr, vma->vm_end,
T
Tobin C Harding 已提交
623
				floor, next ? next->vm_start : ceiling);
624 625 626 627 628
		} else {
			/*
			 * Optimization: gather nearby vmas into one call down
			 */
			while (next && next->vm_start <= vma->vm_end + PMD_SIZE
629
			       && !is_vm_hugetlb_page(next)) {
630 631
				vma = next;
				next = vma->vm_next;
632
				unlink_anon_vmas(vma);
633
				unlink_file_vma(vma);
634 635
			}
			free_pgd_range(tlb, addr, vma->vm_end,
T
Tobin C Harding 已提交
636
				floor, next ? next->vm_start : ceiling);
637
		}
638 639
		vma = next;
	}
L
Linus Torvalds 已提交
640 641
}

642
int __pte_alloc(struct mm_struct *mm, pmd_t *pmd, unsigned long address)
L
Linus Torvalds 已提交
643
{
644
	spinlock_t *ptl;
645
	pgtable_t new = pte_alloc_one(mm, address);
646 647 648
	if (!new)
		return -ENOMEM;

649 650 651 652 653 654 655 656 657 658 659 660 661 662 663
	/*
	 * Ensure all pte setup (eg. pte page lock and page clearing) are
	 * visible before the pte is made visible to other CPUs by being
	 * put into page tables.
	 *
	 * The other side of the story is the pointer chasing in the page
	 * table walking code (when walking the page table without locking;
	 * ie. most of the time). Fortunately, these data accesses consist
	 * of a chain of data-dependent loads, meaning most CPUs (alpha
	 * being the notable exception) will already guarantee loads are
	 * seen in-order. See the alpha page table accessors for the
	 * smp_read_barrier_depends() barriers in page table walking code.
	 */
	smp_wmb(); /* Could be smp_wmb__xxx(before|after)_spin_lock */

664
	ptl = pmd_lock(mm, pmd);
665
	if (likely(pmd_none(*pmd))) {	/* Has another populated it ? */
666
		atomic_long_inc(&mm->nr_ptes);
L
Linus Torvalds 已提交
667
		pmd_populate(mm, pmd, new);
668
		new = NULL;
669
	}
670
	spin_unlock(ptl);
671 672
	if (new)
		pte_free(mm, new);
673
	return 0;
L
Linus Torvalds 已提交
674 675
}

676
int __pte_alloc_kernel(pmd_t *pmd, unsigned long address)
L
Linus Torvalds 已提交
677
{
678 679 680 681
	pte_t *new = pte_alloc_one_kernel(&init_mm, address);
	if (!new)
		return -ENOMEM;

682 683
	smp_wmb(); /* See comment in __pte_alloc */

684
	spin_lock(&init_mm.page_table_lock);
685
	if (likely(pmd_none(*pmd))) {	/* Has another populated it ? */
686
		pmd_populate_kernel(&init_mm, pmd, new);
687
		new = NULL;
688
	}
689
	spin_unlock(&init_mm.page_table_lock);
690 691
	if (new)
		pte_free_kernel(&init_mm, new);
692
	return 0;
L
Linus Torvalds 已提交
693 694
}

K
KAMEZAWA Hiroyuki 已提交
695 696 697 698 699 700
static inline void init_rss_vec(int *rss)
{
	memset(rss, 0, sizeof(int) * NR_MM_COUNTERS);
}

static inline void add_mm_rss_vec(struct mm_struct *mm, int *rss)
701
{
K
KAMEZAWA Hiroyuki 已提交
702 703
	int i;

704
	if (current->mm == mm)
705
		sync_mm_rss(mm);
K
KAMEZAWA Hiroyuki 已提交
706 707 708
	for (i = 0; i < NR_MM_COUNTERS; i++)
		if (rss[i])
			add_mm_counter(mm, i, rss[i]);
709 710
}

N
Nick Piggin 已提交
711
/*
712 713 714
 * This function is called to print an error when a bad pte
 * is found. For example, we might have a PFN-mapped pte in
 * a region that doesn't allow it.
N
Nick Piggin 已提交
715 716 717
 *
 * The calling function must still handle the error.
 */
718 719
static void print_bad_pte(struct vm_area_struct *vma, unsigned long addr,
			  pte_t pte, struct page *page)
N
Nick Piggin 已提交
720
{
721
	pgd_t *pgd = pgd_offset(vma->vm_mm, addr);
722 723
	p4d_t *p4d = p4d_offset(pgd, addr);
	pud_t *pud = pud_offset(p4d, addr);
724 725 726
	pmd_t *pmd = pmd_offset(pud, addr);
	struct address_space *mapping;
	pgoff_t index;
727 728 729 730 731 732 733 734 735 736 737 738 739 740
	static unsigned long resume;
	static unsigned long nr_shown;
	static unsigned long nr_unshown;

	/*
	 * Allow a burst of 60 reports, then keep quiet for that minute;
	 * or allow a steady drip of one report per second.
	 */
	if (nr_shown == 60) {
		if (time_before(jiffies, resume)) {
			nr_unshown++;
			return;
		}
		if (nr_unshown) {
741 742
			pr_alert("BUG: Bad page map: %lu messages suppressed\n",
				 nr_unshown);
743 744 745 746 747 748
			nr_unshown = 0;
		}
		nr_shown = 0;
	}
	if (nr_shown++ == 0)
		resume = jiffies + 60 * HZ;
749 750 751 752

	mapping = vma->vm_file ? vma->vm_file->f_mapping : NULL;
	index = linear_page_index(vma, addr);

753 754 755
	pr_alert("BUG: Bad page map in process %s  pte:%08llx pmd:%08llx\n",
		 current->comm,
		 (long long)pte_val(pte), (long long)pmd_val(*pmd));
756
	if (page)
757
		dump_page(page, "bad pte");
758 759
	pr_alert("addr:%p vm_flags:%08lx anon_vma:%p mapping:%p index:%lx\n",
		 (void *)addr, vma->vm_flags, vma->anon_vma, mapping, index);
760 761 762
	/*
	 * Choose text because data symbols depend on CONFIG_KALLSYMS_ALL=y
	 */
763 764 765 766 767
	pr_alert("file:%pD fault:%pf mmap:%pf readpage:%pf\n",
		 vma->vm_file,
		 vma->vm_ops ? vma->vm_ops->fault : NULL,
		 vma->vm_file ? vma->vm_file->f_op->mmap : NULL,
		 mapping ? mapping->a_ops->readpage : NULL);
N
Nick Piggin 已提交
768
	dump_stack();
769
	add_taint(TAINT_BAD_PAGE, LOCKDEP_NOW_UNRELIABLE);
N
Nick Piggin 已提交
770 771
}

H
Hugh Dickins 已提交
772
/*
N
Nick Piggin 已提交
773
 * vm_normal_page -- This function gets the "struct page" associated with a pte.
774
 *
N
Nick Piggin 已提交
775 776 777
 * "Special" mappings do not wish to be associated with a "struct page" (either
 * it doesn't exist, or it exists but they don't want to touch it). In this
 * case, NULL is returned here. "Normal" mappings do have a struct page.
J
Jared Hulbert 已提交
778
 *
N
Nick Piggin 已提交
779 780 781 782 783 784 785 786
 * There are 2 broad cases. Firstly, an architecture may define a pte_special()
 * pte bit, in which case this function is trivial. Secondly, an architecture
 * may not have a spare pte bit, which requires a more complicated scheme,
 * described below.
 *
 * A raw VM_PFNMAP mapping (ie. one that is not COWed) is always considered a
 * special mapping (even if there are underlying and valid "struct pages").
 * COWed pages of a VM_PFNMAP are always normal.
787
 *
J
Jared Hulbert 已提交
788 789
 * The way we recognize COWed pages within VM_PFNMAP mappings is through the
 * rules set up by "remap_pfn_range()": the vma will have the VM_PFNMAP bit
N
Nick Piggin 已提交
790 791
 * set, and the vm_pgoff will point to the first PFN mapped: thus every special
 * mapping will always honor the rule
792 793 794
 *
 *	pfn_of_page == vma->vm_pgoff + ((addr - vma->vm_start) >> PAGE_SHIFT)
 *
N
Nick Piggin 已提交
795 796 797 798 799 800
 * And for normal mappings this is false.
 *
 * This restricts such mappings to be a linear translation from virtual address
 * to pfn. To get around this restriction, we allow arbitrary mappings so long
 * as the vma is not a COW mapping; in that case, we know that all ptes are
 * special (because none can have been COWed).
J
Jared Hulbert 已提交
801 802
 *
 *
N
Nick Piggin 已提交
803
 * In order to support COW of arbitrary special mappings, we have VM_MIXEDMAP.
J
Jared Hulbert 已提交
804 805 806 807 808 809 810 811 812
 *
 * VM_MIXEDMAP mappings can likewise contain memory with or without "struct
 * page" backing, however the difference is that _all_ pages with a struct
 * page (that is, those where pfn_valid is true) are refcounted and considered
 * normal pages by the VM. The disadvantage is that pages are refcounted
 * (which can be slower and simply not an option for some PFNMAP users). The
 * advantage is that we don't have to follow the strict linearity rule of
 * PFNMAP mappings in order to support COWable mappings.
 *
H
Hugh Dickins 已提交
813
 */
N
Nick Piggin 已提交
814 815 816 817 818 819 820
#ifdef __HAVE_ARCH_PTE_SPECIAL
# define HAVE_PTE_SPECIAL 1
#else
# define HAVE_PTE_SPECIAL 0
#endif
struct page *vm_normal_page(struct vm_area_struct *vma, unsigned long addr,
				pte_t pte)
H
Hugh Dickins 已提交
821
{
822
	unsigned long pfn = pte_pfn(pte);
N
Nick Piggin 已提交
823 824

	if (HAVE_PTE_SPECIAL) {
825
		if (likely(!pte_special(pte)))
826
			goto check_pfn;
827 828
		if (vma->vm_ops && vma->vm_ops->find_special_page)
			return vma->vm_ops->find_special_page(vma, addr);
H
Hugh Dickins 已提交
829 830
		if (vma->vm_flags & (VM_PFNMAP | VM_MIXEDMAP))
			return NULL;
H
Hugh Dickins 已提交
831
		if (!is_zero_pfn(pfn))
832
			print_bad_pte(vma, addr, pte, NULL);
N
Nick Piggin 已提交
833 834 835 836 837
		return NULL;
	}

	/* !HAVE_PTE_SPECIAL case follows: */

J
Jared Hulbert 已提交
838 839 840 841 842 843
	if (unlikely(vma->vm_flags & (VM_PFNMAP|VM_MIXEDMAP))) {
		if (vma->vm_flags & VM_MIXEDMAP) {
			if (!pfn_valid(pfn))
				return NULL;
			goto out;
		} else {
N
Nick Piggin 已提交
844 845
			unsigned long off;
			off = (addr - vma->vm_start) >> PAGE_SHIFT;
J
Jared Hulbert 已提交
846 847 848 849 850
			if (pfn == vma->vm_pgoff + off)
				return NULL;
			if (!is_cow_mapping(vma->vm_flags))
				return NULL;
		}
851 852
	}

853 854
	if (is_zero_pfn(pfn))
		return NULL;
855 856 857 858 859
check_pfn:
	if (unlikely(pfn > highest_memmap_pfn)) {
		print_bad_pte(vma, addr, pte, NULL);
		return NULL;
	}
860 861

	/*
N
Nick Piggin 已提交
862 863
	 * NOTE! We still have PageReserved() pages in the page tables.
	 * eg. VDSO mappings can cause them to exist.
864
	 */
J
Jared Hulbert 已提交
865
out:
866
	return pfn_to_page(pfn);
H
Hugh Dickins 已提交
867 868
}

869 870 871 872 873 874 875 876 877 878 879 880 881 882 883 884 885 886 887 888 889 890 891 892 893 894 895 896 897 898 899 900 901 902 903 904 905 906 907 908
#ifdef CONFIG_TRANSPARENT_HUGEPAGE
struct page *vm_normal_page_pmd(struct vm_area_struct *vma, unsigned long addr,
				pmd_t pmd)
{
	unsigned long pfn = pmd_pfn(pmd);

	/*
	 * There is no pmd_special() but there may be special pmds, e.g.
	 * in a direct-access (dax) mapping, so let's just replicate the
	 * !HAVE_PTE_SPECIAL case from vm_normal_page() here.
	 */
	if (unlikely(vma->vm_flags & (VM_PFNMAP|VM_MIXEDMAP))) {
		if (vma->vm_flags & VM_MIXEDMAP) {
			if (!pfn_valid(pfn))
				return NULL;
			goto out;
		} else {
			unsigned long off;
			off = (addr - vma->vm_start) >> PAGE_SHIFT;
			if (pfn == vma->vm_pgoff + off)
				return NULL;
			if (!is_cow_mapping(vma->vm_flags))
				return NULL;
		}
	}

	if (is_zero_pfn(pfn))
		return NULL;
	if (unlikely(pfn > highest_memmap_pfn))
		return NULL;

	/*
	 * NOTE! We still have PageReserved() pages in the page tables.
	 * eg. VDSO mappings can cause them to exist.
	 */
out:
	return pfn_to_page(pfn);
}
#endif

L
Linus Torvalds 已提交
909 910 911 912 913 914
/*
 * copy one vm_area from one task to the other. Assumes the page tables
 * already present in the new task to be cleared in the whole range
 * covered by this vma.
 */

H
Hugh Dickins 已提交
915
static inline unsigned long
L
Linus Torvalds 已提交
916
copy_one_pte(struct mm_struct *dst_mm, struct mm_struct *src_mm,
N
Nick Piggin 已提交
917
		pte_t *dst_pte, pte_t *src_pte, struct vm_area_struct *vma,
H
Hugh Dickins 已提交
918
		unsigned long addr, int *rss)
L
Linus Torvalds 已提交
919
{
N
Nick Piggin 已提交
920
	unsigned long vm_flags = vma->vm_flags;
L
Linus Torvalds 已提交
921 922 923 924 925
	pte_t pte = *src_pte;
	struct page *page;

	/* pte contains position in swap or file, so copy. */
	if (unlikely(!pte_present(pte))) {
926 927 928 929 930 931 932 933 934 935 936 937 938 939 940 941 942 943
		swp_entry_t entry = pte_to_swp_entry(pte);

		if (likely(!non_swap_entry(entry))) {
			if (swap_duplicate(entry) < 0)
				return entry.val;

			/* make sure dst_mm is on swapoff's mmlist. */
			if (unlikely(list_empty(&dst_mm->mmlist))) {
				spin_lock(&mmlist_lock);
				if (list_empty(&dst_mm->mmlist))
					list_add(&dst_mm->mmlist,
							&src_mm->mmlist);
				spin_unlock(&mmlist_lock);
			}
			rss[MM_SWAPENTS]++;
		} else if (is_migration_entry(entry)) {
			page = migration_entry_to_page(entry);

944
			rss[mm_counter(page)]++;
945 946 947 948 949 950 951 952 953 954 955 956

			if (is_write_migration_entry(entry) &&
					is_cow_mapping(vm_flags)) {
				/*
				 * COW mappings require pages in both
				 * parent and child to be set to read.
				 */
				make_migration_entry_read(&entry);
				pte = swp_entry_to_pte(entry);
				if (pte_swp_soft_dirty(*src_pte))
					pte = pte_swp_mksoft_dirty(pte);
				set_pte_at(src_mm, addr, src_pte, pte);
957
			}
L
Linus Torvalds 已提交
958
		}
959
		goto out_set_pte;
L
Linus Torvalds 已提交
960 961 962 963 964 965
	}

	/*
	 * If it's a COW mapping, write protect it both
	 * in the parent and the child
	 */
966
	if (is_cow_mapping(vm_flags)) {
L
Linus Torvalds 已提交
967
		ptep_set_wrprotect(src_mm, addr, src_pte);
968
		pte = pte_wrprotect(pte);
L
Linus Torvalds 已提交
969 970 971 972 973 974 975 976 977
	}

	/*
	 * If it's a shared mapping, mark it clean in
	 * the child
	 */
	if (vm_flags & VM_SHARED)
		pte = pte_mkclean(pte);
	pte = pte_mkold(pte);
978 979 980 981

	page = vm_normal_page(vma, addr, pte);
	if (page) {
		get_page(page);
982
		page_dup_rmap(page, false);
983
		rss[mm_counter(page)]++;
984
	}
985 986 987

out_set_pte:
	set_pte_at(dst_mm, addr, dst_pte, pte);
H
Hugh Dickins 已提交
988
	return 0;
L
Linus Torvalds 已提交
989 990
}

991
static int copy_pte_range(struct mm_struct *dst_mm, struct mm_struct *src_mm,
992 993
		   pmd_t *dst_pmd, pmd_t *src_pmd, struct vm_area_struct *vma,
		   unsigned long addr, unsigned long end)
L
Linus Torvalds 已提交
994
{
995
	pte_t *orig_src_pte, *orig_dst_pte;
L
Linus Torvalds 已提交
996
	pte_t *src_pte, *dst_pte;
H
Hugh Dickins 已提交
997
	spinlock_t *src_ptl, *dst_ptl;
998
	int progress = 0;
K
KAMEZAWA Hiroyuki 已提交
999
	int rss[NR_MM_COUNTERS];
H
Hugh Dickins 已提交
1000
	swp_entry_t entry = (swp_entry_t){0};
L
Linus Torvalds 已提交
1001 1002

again:
K
KAMEZAWA Hiroyuki 已提交
1003 1004
	init_rss_vec(rss);

H
Hugh Dickins 已提交
1005
	dst_pte = pte_alloc_map_lock(dst_mm, dst_pmd, addr, &dst_ptl);
L
Linus Torvalds 已提交
1006 1007
	if (!dst_pte)
		return -ENOMEM;
P
Peter Zijlstra 已提交
1008
	src_pte = pte_offset_map(src_pmd, addr);
H
Hugh Dickins 已提交
1009
	src_ptl = pte_lockptr(src_mm, src_pmd);
I
Ingo Molnar 已提交
1010
	spin_lock_nested(src_ptl, SINGLE_DEPTH_NESTING);
1011 1012
	orig_src_pte = src_pte;
	orig_dst_pte = dst_pte;
1013
	arch_enter_lazy_mmu_mode();
L
Linus Torvalds 已提交
1014 1015 1016 1017 1018 1019

	do {
		/*
		 * We are holding two locks at this point - either of them
		 * could generate latencies in another task on another CPU.
		 */
1020 1021 1022
		if (progress >= 32) {
			progress = 0;
			if (need_resched() ||
N
Nick Piggin 已提交
1023
			    spin_needbreak(src_ptl) || spin_needbreak(dst_ptl))
1024 1025
				break;
		}
L
Linus Torvalds 已提交
1026 1027 1028 1029
		if (pte_none(*src_pte)) {
			progress++;
			continue;
		}
H
Hugh Dickins 已提交
1030 1031 1032 1033
		entry.val = copy_one_pte(dst_mm, src_mm, dst_pte, src_pte,
							vma, addr, rss);
		if (entry.val)
			break;
L
Linus Torvalds 已提交
1034 1035 1036
		progress += 8;
	} while (dst_pte++, src_pte++, addr += PAGE_SIZE, addr != end);

1037
	arch_leave_lazy_mmu_mode();
H
Hugh Dickins 已提交
1038
	spin_unlock(src_ptl);
P
Peter Zijlstra 已提交
1039
	pte_unmap(orig_src_pte);
K
KAMEZAWA Hiroyuki 已提交
1040
	add_mm_rss_vec(dst_mm, rss);
1041
	pte_unmap_unlock(orig_dst_pte, dst_ptl);
H
Hugh Dickins 已提交
1042
	cond_resched();
H
Hugh Dickins 已提交
1043 1044 1045 1046 1047 1048

	if (entry.val) {
		if (add_swap_count_continuation(entry, GFP_KERNEL) < 0)
			return -ENOMEM;
		progress = 0;
	}
L
Linus Torvalds 已提交
1049 1050 1051 1052 1053 1054 1055 1056 1057 1058 1059 1060 1061 1062 1063 1064 1065 1066
	if (addr != end)
		goto again;
	return 0;
}

static inline int copy_pmd_range(struct mm_struct *dst_mm, struct mm_struct *src_mm,
		pud_t *dst_pud, pud_t *src_pud, struct vm_area_struct *vma,
		unsigned long addr, unsigned long end)
{
	pmd_t *src_pmd, *dst_pmd;
	unsigned long next;

	dst_pmd = pmd_alloc(dst_mm, dst_pud, addr);
	if (!dst_pmd)
		return -ENOMEM;
	src_pmd = pmd_offset(src_pud, addr);
	do {
		next = pmd_addr_end(addr, end);
1067
		if (pmd_trans_huge(*src_pmd) || pmd_devmap(*src_pmd)) {
1068
			int err;
1069
			VM_BUG_ON_VMA(next-addr != HPAGE_PMD_SIZE, vma);
1070 1071 1072 1073 1074 1075 1076 1077
			err = copy_huge_pmd(dst_mm, src_mm,
					    dst_pmd, src_pmd, addr, vma);
			if (err == -ENOMEM)
				return -ENOMEM;
			if (!err)
				continue;
			/* fall through */
		}
L
Linus Torvalds 已提交
1078 1079 1080 1081 1082 1083 1084 1085 1086 1087
		if (pmd_none_or_clear_bad(src_pmd))
			continue;
		if (copy_pte_range(dst_mm, src_mm, dst_pmd, src_pmd,
						vma, addr, next))
			return -ENOMEM;
	} while (dst_pmd++, src_pmd++, addr = next, addr != end);
	return 0;
}

static inline int copy_pud_range(struct mm_struct *dst_mm, struct mm_struct *src_mm,
1088
		p4d_t *dst_p4d, p4d_t *src_p4d, struct vm_area_struct *vma,
L
Linus Torvalds 已提交
1089 1090 1091 1092 1093
		unsigned long addr, unsigned long end)
{
	pud_t *src_pud, *dst_pud;
	unsigned long next;

1094
	dst_pud = pud_alloc(dst_mm, dst_p4d, addr);
L
Linus Torvalds 已提交
1095 1096
	if (!dst_pud)
		return -ENOMEM;
1097
	src_pud = pud_offset(src_p4d, addr);
L
Linus Torvalds 已提交
1098 1099
	do {
		next = pud_addr_end(addr, end);
1100 1101 1102 1103 1104 1105 1106 1107 1108 1109 1110 1111
		if (pud_trans_huge(*src_pud) || pud_devmap(*src_pud)) {
			int err;

			VM_BUG_ON_VMA(next-addr != HPAGE_PUD_SIZE, vma);
			err = copy_huge_pud(dst_mm, src_mm,
					    dst_pud, src_pud, addr, vma);
			if (err == -ENOMEM)
				return -ENOMEM;
			if (!err)
				continue;
			/* fall through */
		}
L
Linus Torvalds 已提交
1112 1113 1114 1115 1116 1117 1118 1119 1120
		if (pud_none_or_clear_bad(src_pud))
			continue;
		if (copy_pmd_range(dst_mm, src_mm, dst_pud, src_pud,
						vma, addr, next))
			return -ENOMEM;
	} while (dst_pud++, src_pud++, addr = next, addr != end);
	return 0;
}

1121 1122 1123 1124 1125 1126 1127 1128 1129 1130 1131 1132 1133 1134 1135 1136 1137 1138 1139 1140 1141 1142
static inline int copy_p4d_range(struct mm_struct *dst_mm, struct mm_struct *src_mm,
		pgd_t *dst_pgd, pgd_t *src_pgd, struct vm_area_struct *vma,
		unsigned long addr, unsigned long end)
{
	p4d_t *src_p4d, *dst_p4d;
	unsigned long next;

	dst_p4d = p4d_alloc(dst_mm, dst_pgd, addr);
	if (!dst_p4d)
		return -ENOMEM;
	src_p4d = p4d_offset(src_pgd, addr);
	do {
		next = p4d_addr_end(addr, end);
		if (p4d_none_or_clear_bad(src_p4d))
			continue;
		if (copy_pud_range(dst_mm, src_mm, dst_p4d, src_p4d,
						vma, addr, next))
			return -ENOMEM;
	} while (dst_p4d++, src_p4d++, addr = next, addr != end);
	return 0;
}

L
Linus Torvalds 已提交
1143 1144 1145 1146 1147 1148 1149
int copy_page_range(struct mm_struct *dst_mm, struct mm_struct *src_mm,
		struct vm_area_struct *vma)
{
	pgd_t *src_pgd, *dst_pgd;
	unsigned long next;
	unsigned long addr = vma->vm_start;
	unsigned long end = vma->vm_end;
1150 1151 1152
	unsigned long mmun_start;	/* For mmu_notifiers */
	unsigned long mmun_end;		/* For mmu_notifiers */
	bool is_cow;
A
Andrea Arcangeli 已提交
1153
	int ret;
L
Linus Torvalds 已提交
1154

1155 1156 1157 1158 1159 1160
	/*
	 * Don't copy ptes where a page fault will fill them correctly.
	 * Fork becomes much lighter when there are big shared or private
	 * readonly mappings. The tradeoff is that copy_page_range is more
	 * efficient than faulting.
	 */
1161 1162 1163
	if (!(vma->vm_flags & (VM_HUGETLB | VM_PFNMAP | VM_MIXEDMAP)) &&
			!vma->anon_vma)
		return 0;
1164

L
Linus Torvalds 已提交
1165 1166 1167
	if (is_vm_hugetlb_page(vma))
		return copy_hugetlb_page_range(dst_mm, src_mm, vma);

1168
	if (unlikely(vma->vm_flags & VM_PFNMAP)) {
1169 1170 1171 1172
		/*
		 * We do not free on error cases below as remove_vma
		 * gets called on error from higher level routine
		 */
1173
		ret = track_pfn_copy(vma);
1174 1175 1176 1177
		if (ret)
			return ret;
	}

A
Andrea Arcangeli 已提交
1178 1179 1180 1181 1182 1183
	/*
	 * We need to invalidate the secondary MMU mappings only when
	 * there could be a permission downgrade on the ptes of the
	 * parent mm. And a permission downgrade will only happen if
	 * is_cow_mapping() returns true.
	 */
1184 1185 1186 1187 1188 1189
	is_cow = is_cow_mapping(vma->vm_flags);
	mmun_start = addr;
	mmun_end   = end;
	if (is_cow)
		mmu_notifier_invalidate_range_start(src_mm, mmun_start,
						    mmun_end);
A
Andrea Arcangeli 已提交
1190 1191

	ret = 0;
L
Linus Torvalds 已提交
1192 1193 1194 1195 1196 1197
	dst_pgd = pgd_offset(dst_mm, addr);
	src_pgd = pgd_offset(src_mm, addr);
	do {
		next = pgd_addr_end(addr, end);
		if (pgd_none_or_clear_bad(src_pgd))
			continue;
1198
		if (unlikely(copy_p4d_range(dst_mm, src_mm, dst_pgd, src_pgd,
A
Andrea Arcangeli 已提交
1199 1200 1201 1202
					    vma, addr, next))) {
			ret = -ENOMEM;
			break;
		}
L
Linus Torvalds 已提交
1203
	} while (dst_pgd++, src_pgd++, addr = next, addr != end);
A
Andrea Arcangeli 已提交
1204

1205 1206
	if (is_cow)
		mmu_notifier_invalidate_range_end(src_mm, mmun_start, mmun_end);
A
Andrea Arcangeli 已提交
1207
	return ret;
L
Linus Torvalds 已提交
1208 1209
}

1210
static unsigned long zap_pte_range(struct mmu_gather *tlb,
N
Nick Piggin 已提交
1211
				struct vm_area_struct *vma, pmd_t *pmd,
L
Linus Torvalds 已提交
1212
				unsigned long addr, unsigned long end,
1213
				struct zap_details *details)
L
Linus Torvalds 已提交
1214
{
N
Nick Piggin 已提交
1215
	struct mm_struct *mm = tlb->mm;
P
Peter Zijlstra 已提交
1216
	int force_flush = 0;
K
KAMEZAWA Hiroyuki 已提交
1217
	int rss[NR_MM_COUNTERS];
1218
	spinlock_t *ptl;
1219
	pte_t *start_pte;
1220
	pte_t *pte;
1221
	swp_entry_t entry;
K
KAMEZAWA Hiroyuki 已提交
1222

1223
	tlb_remove_check_page_size_change(tlb, PAGE_SIZE);
P
Peter Zijlstra 已提交
1224
again:
1225
	init_rss_vec(rss);
1226 1227
	start_pte = pte_offset_map_lock(mm, pmd, addr, &ptl);
	pte = start_pte;
1228
	flush_tlb_batched_pending(mm);
1229
	arch_enter_lazy_mmu_mode();
L
Linus Torvalds 已提交
1230 1231
	do {
		pte_t ptent = *pte;
T
Tobin C Harding 已提交
1232
		if (pte_none(ptent))
L
Linus Torvalds 已提交
1233
			continue;
1234

L
Linus Torvalds 已提交
1235
		if (pte_present(ptent)) {
H
Hugh Dickins 已提交
1236
			struct page *page;
1237

1238
			page = vm_normal_page(vma, addr, ptent);
L
Linus Torvalds 已提交
1239 1240 1241 1242 1243 1244 1245
			if (unlikely(details) && page) {
				/*
				 * unmap_shared_mapping_pages() wants to
				 * invalidate cache without truncating:
				 * unmap shared but keep private pages.
				 */
				if (details->check_mapping &&
1246
				    details->check_mapping != page_rmapping(page))
L
Linus Torvalds 已提交
1247 1248
					continue;
			}
N
Nick Piggin 已提交
1249
			ptent = ptep_get_and_clear_full(mm, addr, pte,
1250
							tlb->fullmm);
L
Linus Torvalds 已提交
1251 1252 1253
			tlb_remove_tlb_entry(tlb, pte, addr);
			if (unlikely(!page))
				continue;
1254 1255

			if (!PageAnon(page)) {
1256 1257
				if (pte_dirty(ptent)) {
					force_flush = 1;
1258
					set_page_dirty(page);
1259
				}
1260
				if (pte_young(ptent) &&
1261
				    likely(!(vma->vm_flags & VM_SEQ_READ)))
1262
					mark_page_accessed(page);
1263
			}
1264
			rss[mm_counter(page)]--;
1265
			page_remove_rmap(page, false);
1266 1267
			if (unlikely(page_mapcount(page) < 0))
				print_bad_pte(vma, addr, ptent, page);
1268
			if (unlikely(__tlb_remove_page(tlb, page))) {
1269
				force_flush = 1;
1270
				addr += PAGE_SIZE;
P
Peter Zijlstra 已提交
1271
				break;
1272
			}
L
Linus Torvalds 已提交
1273 1274
			continue;
		}
1275 1276
		/* If details->check_mapping, we leave swap entries. */
		if (unlikely(details))
L
Linus Torvalds 已提交
1277
			continue;
K
KAMEZAWA Hiroyuki 已提交
1278

1279 1280 1281 1282 1283
		entry = pte_to_swp_entry(ptent);
		if (!non_swap_entry(entry))
			rss[MM_SWAPENTS]--;
		else if (is_migration_entry(entry)) {
			struct page *page;
1284

1285
			page = migration_entry_to_page(entry);
1286
			rss[mm_counter(page)]--;
K
KAMEZAWA Hiroyuki 已提交
1287
		}
1288 1289
		if (unlikely(!free_swap_and_cache(entry)))
			print_bad_pte(vma, addr, ptent, NULL);
1290
		pte_clear_not_present_full(mm, addr, pte, tlb->fullmm);
1291
	} while (pte++, addr += PAGE_SIZE, addr != end);
1292

K
KAMEZAWA Hiroyuki 已提交
1293
	add_mm_rss_vec(mm, rss);
1294
	arch_leave_lazy_mmu_mode();
1295

1296
	/* Do the actual TLB flush before dropping ptl */
1297
	if (force_flush)
1298 1299 1300 1301 1302 1303 1304 1305 1306 1307 1308 1309
		tlb_flush_mmu_tlbonly(tlb);
	pte_unmap_unlock(start_pte, ptl);

	/*
	 * If we forced a TLB flush (either due to running out of
	 * batch buffers or because we needed to flush dirty TLB
	 * entries before releasing the ptl), free the batched
	 * memory too. Restart if we didn't do everything.
	 */
	if (force_flush) {
		force_flush = 0;
		tlb_flush_mmu_free(tlb);
1310
		if (addr != end)
P
Peter Zijlstra 已提交
1311 1312 1313
			goto again;
	}

1314
	return addr;
L
Linus Torvalds 已提交
1315 1316
}

1317
static inline unsigned long zap_pmd_range(struct mmu_gather *tlb,
N
Nick Piggin 已提交
1318
				struct vm_area_struct *vma, pud_t *pud,
L
Linus Torvalds 已提交
1319
				unsigned long addr, unsigned long end,
1320
				struct zap_details *details)
L
Linus Torvalds 已提交
1321 1322 1323 1324 1325 1326 1327
{
	pmd_t *pmd;
	unsigned long next;

	pmd = pmd_offset(pud, addr);
	do {
		next = pmd_addr_end(addr, end);
1328
		if (pmd_trans_huge(*pmd) || pmd_devmap(*pmd)) {
1329
			if (next - addr != HPAGE_PMD_SIZE) {
1330 1331
				VM_BUG_ON_VMA(vma_is_anonymous(vma) &&
				    !rwsem_is_locked(&tlb->mm->mmap_sem), vma);
1332
				__split_huge_pmd(vma, pmd, addr, false, NULL);
S
Shaohua Li 已提交
1333
			} else if (zap_huge_pmd(tlb, vma, pmd, addr))
1334
				goto next;
1335 1336
			/* fall through */
		}
1337 1338 1339 1340 1341 1342 1343 1344 1345
		/*
		 * Here there can be other concurrent MADV_DONTNEED or
		 * trans huge page faults running, and if the pmd is
		 * none or trans huge it can change under us. This is
		 * because MADV_DONTNEED holds the mmap_sem in read
		 * mode.
		 */
		if (pmd_none_or_trans_huge_or_clear_bad(pmd))
			goto next;
1346
		next = zap_pte_range(tlb, vma, pmd, addr, next, details);
1347
next:
1348 1349
		cond_resched();
	} while (pmd++, addr = next, addr != end);
1350 1351

	return addr;
L
Linus Torvalds 已提交
1352 1353
}

1354
static inline unsigned long zap_pud_range(struct mmu_gather *tlb,
1355
				struct vm_area_struct *vma, p4d_t *p4d,
L
Linus Torvalds 已提交
1356
				unsigned long addr, unsigned long end,
1357
				struct zap_details *details)
L
Linus Torvalds 已提交
1358 1359 1360 1361
{
	pud_t *pud;
	unsigned long next;

1362
	pud = pud_offset(p4d, addr);
L
Linus Torvalds 已提交
1363 1364
	do {
		next = pud_addr_end(addr, end);
1365 1366 1367 1368 1369 1370 1371 1372
		if (pud_trans_huge(*pud) || pud_devmap(*pud)) {
			if (next - addr != HPAGE_PUD_SIZE) {
				VM_BUG_ON_VMA(!rwsem_is_locked(&tlb->mm->mmap_sem), vma);
				split_huge_pud(vma, pud, addr);
			} else if (zap_huge_pud(tlb, vma, pud, addr))
				goto next;
			/* fall through */
		}
1373
		if (pud_none_or_clear_bad(pud))
L
Linus Torvalds 已提交
1374
			continue;
1375
		next = zap_pmd_range(tlb, vma, pud, addr, next, details);
1376 1377
next:
		cond_resched();
1378
	} while (pud++, addr = next, addr != end);
1379 1380

	return addr;
L
Linus Torvalds 已提交
1381 1382
}

1383 1384 1385 1386 1387 1388 1389 1390 1391 1392 1393 1394 1395 1396 1397 1398 1399 1400 1401
static inline unsigned long zap_p4d_range(struct mmu_gather *tlb,
				struct vm_area_struct *vma, pgd_t *pgd,
				unsigned long addr, unsigned long end,
				struct zap_details *details)
{
	p4d_t *p4d;
	unsigned long next;

	p4d = p4d_offset(pgd, addr);
	do {
		next = p4d_addr_end(addr, end);
		if (p4d_none_or_clear_bad(p4d))
			continue;
		next = zap_pud_range(tlb, vma, p4d, addr, next, details);
	} while (p4d++, addr = next, addr != end);

	return addr;
}

M
Michal Hocko 已提交
1402
void unmap_page_range(struct mmu_gather *tlb,
A
Al Viro 已提交
1403 1404 1405
			     struct vm_area_struct *vma,
			     unsigned long addr, unsigned long end,
			     struct zap_details *details)
L
Linus Torvalds 已提交
1406 1407 1408 1409 1410 1411 1412 1413 1414
{
	pgd_t *pgd;
	unsigned long next;

	BUG_ON(addr >= end);
	tlb_start_vma(tlb, vma);
	pgd = pgd_offset(vma->vm_mm, addr);
	do {
		next = pgd_addr_end(addr, end);
1415
		if (pgd_none_or_clear_bad(pgd))
L
Linus Torvalds 已提交
1416
			continue;
1417
		next = zap_p4d_range(tlb, vma, pgd, addr, next, details);
1418
	} while (pgd++, addr = next, addr != end);
L
Linus Torvalds 已提交
1419 1420
	tlb_end_vma(tlb, vma);
}
1421

1422 1423 1424

static void unmap_single_vma(struct mmu_gather *tlb,
		struct vm_area_struct *vma, unsigned long start_addr,
1425
		unsigned long end_addr,
1426 1427 1428 1429 1430 1431 1432 1433 1434 1435 1436
		struct zap_details *details)
{
	unsigned long start = max(vma->vm_start, start_addr);
	unsigned long end;

	if (start >= vma->vm_end)
		return;
	end = min(vma->vm_end, end_addr);
	if (end <= vma->vm_start)
		return;

1437 1438 1439
	if (vma->vm_file)
		uprobe_munmap(vma, start, end);

1440
	if (unlikely(vma->vm_flags & VM_PFNMAP))
1441
		untrack_pfn(vma, 0, 0);
1442 1443 1444 1445 1446 1447 1448

	if (start != end) {
		if (unlikely(is_vm_hugetlb_page(vma))) {
			/*
			 * It is undesirable to test vma->vm_file as it
			 * should be non-null for valid hugetlb area.
			 * However, vm_file will be NULL in the error
1449
			 * cleanup path of mmap_region. When
1450
			 * hugetlbfs ->mmap method fails,
1451
			 * mmap_region() nullifies vma->vm_file
1452 1453 1454 1455
			 * before calling this function to clean up.
			 * Since no pte has actually been setup, it is
			 * safe to do nothing in this case.
			 */
1456
			if (vma->vm_file) {
1457
				i_mmap_lock_write(vma->vm_file->f_mapping);
1458
				__unmap_hugepage_range_final(tlb, vma, start, end, NULL);
1459
				i_mmap_unlock_write(vma->vm_file->f_mapping);
1460
			}
1461 1462 1463
		} else
			unmap_page_range(tlb, vma, start, end, details);
	}
L
Linus Torvalds 已提交
1464 1465 1466 1467
}

/**
 * unmap_vmas - unmap a range of memory covered by a list of vma's
1468
 * @tlb: address of the caller's struct mmu_gather
L
Linus Torvalds 已提交
1469 1470 1471 1472
 * @vma: the starting vma
 * @start_addr: virtual address at which to start unmapping
 * @end_addr: virtual address at which to end unmapping
 *
1473
 * Unmap all pages in the vma list.
L
Linus Torvalds 已提交
1474 1475 1476 1477 1478 1479 1480 1481 1482 1483
 *
 * Only addresses between `start' and `end' will be unmapped.
 *
 * The VMA list must be sorted in ascending virtual address order.
 *
 * unmap_vmas() assumes that the caller will flush the whole unmapped address
 * range after unmap_vmas() returns.  So the only responsibility here is to
 * ensure that any thus-far unmapped pages are flushed before unmap_vmas()
 * drops the lock and schedules.
 */
A
Al Viro 已提交
1484
void unmap_vmas(struct mmu_gather *tlb,
L
Linus Torvalds 已提交
1485
		struct vm_area_struct *vma, unsigned long start_addr,
1486
		unsigned long end_addr)
L
Linus Torvalds 已提交
1487
{
A
Andrea Arcangeli 已提交
1488
	struct mm_struct *mm = vma->vm_mm;
L
Linus Torvalds 已提交
1489

A
Andrea Arcangeli 已提交
1490
	mmu_notifier_invalidate_range_start(mm, start_addr, end_addr);
1491
	for ( ; vma && vma->vm_start < end_addr; vma = vma->vm_next)
1492
		unmap_single_vma(tlb, vma, start_addr, end_addr, NULL);
A
Andrea Arcangeli 已提交
1493
	mmu_notifier_invalidate_range_end(mm, start_addr, end_addr);
L
Linus Torvalds 已提交
1494 1495 1496 1497 1498
}

/**
 * zap_page_range - remove user pages in a given range
 * @vma: vm_area_struct holding the applicable pages
1499
 * @start: starting address of pages to zap
L
Linus Torvalds 已提交
1500
 * @size: number of bytes to zap
1501 1502
 *
 * Caller must protect the VMA list
L
Linus Torvalds 已提交
1503
 */
1504
void zap_page_range(struct vm_area_struct *vma, unsigned long start,
1505
		unsigned long size)
L
Linus Torvalds 已提交
1506 1507
{
	struct mm_struct *mm = vma->vm_mm;
P
Peter Zijlstra 已提交
1508
	struct mmu_gather tlb;
1509
	unsigned long end = start + size;
L
Linus Torvalds 已提交
1510 1511

	lru_add_drain();
1512
	tlb_gather_mmu(&tlb, mm, start, end);
1513
	update_hiwater_rss(mm);
1514 1515
	mmu_notifier_invalidate_range_start(mm, start, end);
	for ( ; vma && vma->vm_start < end; vma = vma->vm_next)
1516
		unmap_single_vma(&tlb, vma, start, end, NULL);
1517 1518
	mmu_notifier_invalidate_range_end(mm, start, end);
	tlb_finish_mmu(&tlb, start, end);
L
Linus Torvalds 已提交
1519 1520
}

1521 1522 1523 1524 1525
/**
 * zap_page_range_single - remove user pages in a given range
 * @vma: vm_area_struct holding the applicable pages
 * @address: starting address of pages to zap
 * @size: number of bytes to zap
1526
 * @details: details of shared cache invalidation
1527 1528
 *
 * The range must fit into one VMA.
L
Linus Torvalds 已提交
1529
 */
1530
static void zap_page_range_single(struct vm_area_struct *vma, unsigned long address,
L
Linus Torvalds 已提交
1531 1532 1533
		unsigned long size, struct zap_details *details)
{
	struct mm_struct *mm = vma->vm_mm;
P
Peter Zijlstra 已提交
1534
	struct mmu_gather tlb;
L
Linus Torvalds 已提交
1535 1536 1537
	unsigned long end = address + size;

	lru_add_drain();
1538
	tlb_gather_mmu(&tlb, mm, address, end);
1539
	update_hiwater_rss(mm);
1540
	mmu_notifier_invalidate_range_start(mm, address, end);
1541
	unmap_single_vma(&tlb, vma, address, end, details);
1542
	mmu_notifier_invalidate_range_end(mm, address, end);
P
Peter Zijlstra 已提交
1543
	tlb_finish_mmu(&tlb, address, end);
L
Linus Torvalds 已提交
1544 1545
}

1546 1547 1548 1549 1550 1551 1552 1553 1554 1555 1556 1557 1558 1559 1560 1561 1562 1563
/**
 * zap_vma_ptes - remove ptes mapping the vma
 * @vma: vm_area_struct holding ptes to be zapped
 * @address: starting address of pages to zap
 * @size: number of bytes to zap
 *
 * This function only unmaps ptes assigned to VM_PFNMAP vmas.
 *
 * The entire address range must be fully contained within the vma.
 *
 * Returns 0 if successful.
 */
int zap_vma_ptes(struct vm_area_struct *vma, unsigned long address,
		unsigned long size)
{
	if (address < vma->vm_start || address + size > vma->vm_end ||
	    		!(vma->vm_flags & VM_PFNMAP))
		return -1;
1564
	zap_page_range_single(vma, address, size, NULL);
1565 1566 1567 1568
	return 0;
}
EXPORT_SYMBOL_GPL(zap_vma_ptes);

1569
pte_t *__get_locked_pte(struct mm_struct *mm, unsigned long addr,
H
Harvey Harrison 已提交
1570
			spinlock_t **ptl)
1571
{
1572 1573 1574 1575 1576 1577 1578 1579 1580 1581 1582 1583 1584 1585 1586 1587 1588 1589
	pgd_t *pgd;
	p4d_t *p4d;
	pud_t *pud;
	pmd_t *pmd;

	pgd = pgd_offset(mm, addr);
	p4d = p4d_alloc(mm, pgd, addr);
	if (!p4d)
		return NULL;
	pud = pud_alloc(mm, p4d, addr);
	if (!pud)
		return NULL;
	pmd = pmd_alloc(mm, pud, addr);
	if (!pmd)
		return NULL;

	VM_BUG_ON(pmd_trans_huge(*pmd));
	return pte_alloc_map_lock(mm, pmd, addr, ptl);
1590 1591
}

1592 1593 1594 1595 1596 1597 1598
/*
 * This is the old fallback for page remapping.
 *
 * For historical reasons, it only allows reserved pages. Only
 * old drivers should use this, and they needed to mark their
 * pages reserved for the old functions anyway.
 */
N
Nick Piggin 已提交
1599 1600
static int insert_page(struct vm_area_struct *vma, unsigned long addr,
			struct page *page, pgprot_t prot)
1601
{
N
Nick Piggin 已提交
1602
	struct mm_struct *mm = vma->vm_mm;
1603
	int retval;
1604
	pte_t *pte;
1605 1606
	spinlock_t *ptl;

1607
	retval = -EINVAL;
1608
	if (PageAnon(page))
1609
		goto out;
1610 1611
	retval = -ENOMEM;
	flush_dcache_page(page);
1612
	pte = get_locked_pte(mm, addr, &ptl);
1613
	if (!pte)
1614
		goto out;
1615 1616 1617 1618 1619 1620
	retval = -EBUSY;
	if (!pte_none(*pte))
		goto out_unlock;

	/* Ok, finally just insert the thing.. */
	get_page(page);
1621
	inc_mm_counter_fast(mm, mm_counter_file(page));
K
Kirill A. Shutemov 已提交
1622
	page_add_file_rmap(page, false);
1623 1624 1625
	set_pte_at(mm, addr, pte, mk_pte(page, prot));

	retval = 0;
1626 1627
	pte_unmap_unlock(pte, ptl);
	return retval;
1628 1629 1630 1631 1632 1633
out_unlock:
	pte_unmap_unlock(pte, ptl);
out:
	return retval;
}

1634 1635 1636 1637 1638 1639
/**
 * vm_insert_page - insert single page into user vma
 * @vma: user vma to map to
 * @addr: target user address of this page
 * @page: source kernel page
 *
1640 1641 1642 1643 1644 1645
 * This allows drivers to insert individual pages they've allocated
 * into a user vma.
 *
 * The page has to be a nice clean _individual_ kernel allocation.
 * If you allocate a compound page, you need to have marked it as
 * such (__GFP_COMP), or manually just split the page up yourself
N
Nick Piggin 已提交
1646
 * (see split_page()).
1647 1648 1649 1650 1651 1652 1653 1654
 *
 * NOTE! Traditionally this was done with "remap_pfn_range()" which
 * took an arbitrary page protection parameter. This doesn't allow
 * that. Your vma protection will have to be set up correctly, which
 * means that if you want a shared writable mapping, you'd better
 * ask for a shared writable mapping!
 *
 * The page does not need to be reserved.
1655 1656 1657 1658 1659
 *
 * Usually this function is called from f_op->mmap() handler
 * under mm->mmap_sem write-lock, so it can change vma->vm_flags.
 * Caller must set VM_MIXEDMAP on vma if it wants to call this
 * function from other places, for example from page-fault handler.
1660
 */
N
Nick Piggin 已提交
1661 1662
int vm_insert_page(struct vm_area_struct *vma, unsigned long addr,
			struct page *page)
1663 1664 1665 1666 1667
{
	if (addr < vma->vm_start || addr >= vma->vm_end)
		return -EFAULT;
	if (!page_count(page))
		return -EINVAL;
1668 1669 1670 1671 1672
	if (!(vma->vm_flags & VM_MIXEDMAP)) {
		BUG_ON(down_read_trylock(&vma->vm_mm->mmap_sem));
		BUG_ON(vma->vm_flags & VM_PFNMAP);
		vma->vm_flags |= VM_MIXEDMAP;
	}
N
Nick Piggin 已提交
1673
	return insert_page(vma, addr, page, vma->vm_page_prot);
1674
}
1675
EXPORT_SYMBOL(vm_insert_page);
1676

N
Nick Piggin 已提交
1677
static int insert_pfn(struct vm_area_struct *vma, unsigned long addr,
1678
			pfn_t pfn, pgprot_t prot)
N
Nick Piggin 已提交
1679 1680 1681 1682 1683 1684 1685 1686 1687 1688 1689 1690 1691 1692 1693
{
	struct mm_struct *mm = vma->vm_mm;
	int retval;
	pte_t *pte, entry;
	spinlock_t *ptl;

	retval = -ENOMEM;
	pte = get_locked_pte(mm, addr, &ptl);
	if (!pte)
		goto out;
	retval = -EBUSY;
	if (!pte_none(*pte))
		goto out_unlock;

	/* Ok, finally just insert the thing.. */
1694 1695 1696 1697
	if (pfn_t_devmap(pfn))
		entry = pte_mkdevmap(pfn_t_pte(pfn, prot));
	else
		entry = pte_mkspecial(pfn_t_pte(pfn, prot));
N
Nick Piggin 已提交
1698
	set_pte_at(mm, addr, pte, entry);
1699
	update_mmu_cache(vma, addr, pte); /* XXX: why not for insert_page? */
N
Nick Piggin 已提交
1700 1701 1702 1703 1704 1705 1706 1707

	retval = 0;
out_unlock:
	pte_unmap_unlock(pte, ptl);
out:
	return retval;
}

N
Nick Piggin 已提交
1708 1709 1710 1711 1712 1713
/**
 * vm_insert_pfn - insert single pfn into user vma
 * @vma: user vma to map to
 * @addr: target user address of this page
 * @pfn: source kernel pfn
 *
1714
 * Similar to vm_insert_page, this allows drivers to insert individual pages
N
Nick Piggin 已提交
1715 1716 1717 1718
 * they've allocated into a user vma. Same comments apply.
 *
 * This function should only be called from a vm_ops->fault handler, and
 * in that case the handler should return NULL.
N
Nick Piggin 已提交
1719 1720 1721 1722 1723
 *
 * vma cannot be a COW mapping.
 *
 * As this is called only for pages that do not currently exist, we
 * do not need to flush old virtual caches or the TLB.
N
Nick Piggin 已提交
1724 1725
 */
int vm_insert_pfn(struct vm_area_struct *vma, unsigned long addr,
N
Nick Piggin 已提交
1726
			unsigned long pfn)
A
Andy Lutomirski 已提交
1727 1728 1729 1730 1731 1732 1733 1734 1735 1736 1737 1738 1739 1740 1741 1742 1743 1744 1745 1746 1747 1748
{
	return vm_insert_pfn_prot(vma, addr, pfn, vma->vm_page_prot);
}
EXPORT_SYMBOL(vm_insert_pfn);

/**
 * vm_insert_pfn_prot - insert single pfn into user vma with specified pgprot
 * @vma: user vma to map to
 * @addr: target user address of this page
 * @pfn: source kernel pfn
 * @pgprot: pgprot flags for the inserted page
 *
 * This is exactly like vm_insert_pfn, except that it allows drivers to
 * to override pgprot on a per-page basis.
 *
 * This only makes sense for IO mappings, and it makes no sense for
 * cow mappings.  In general, using multiple vmas is preferable;
 * vm_insert_pfn_prot should only be used if using multiple VMAs is
 * impractical.
 */
int vm_insert_pfn_prot(struct vm_area_struct *vma, unsigned long addr,
			unsigned long pfn, pgprot_t pgprot)
N
Nick Piggin 已提交
1749
{
1750
	int ret;
N
Nick Piggin 已提交
1751 1752 1753 1754 1755 1756
	/*
	 * Technically, architectures with pte_special can avoid all these
	 * restrictions (same for remap_pfn_range).  However we would like
	 * consistency in testing and feature parity among all, so we should
	 * try to keep these invariants in place for everybody.
	 */
J
Jared Hulbert 已提交
1757 1758 1759 1760 1761
	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));
N
Nick Piggin 已提交
1762

N
Nick Piggin 已提交
1763 1764
	if (addr < vma->vm_start || addr >= vma->vm_end)
		return -EFAULT;
1765 1766

	track_pfn_insert(vma, &pgprot, __pfn_to_pfn_t(pfn, PFN_DEV));
1767

1768
	ret = insert_pfn(vma, addr, __pfn_to_pfn_t(pfn, PFN_DEV), pgprot);
1769 1770

	return ret;
N
Nick Piggin 已提交
1771
}
A
Andy Lutomirski 已提交
1772
EXPORT_SYMBOL(vm_insert_pfn_prot);
N
Nick Piggin 已提交
1773

N
Nick Piggin 已提交
1774
int vm_insert_mixed(struct vm_area_struct *vma, unsigned long addr,
1775
			pfn_t pfn)
N
Nick Piggin 已提交
1776
{
1777 1778
	pgprot_t pgprot = vma->vm_page_prot;

N
Nick Piggin 已提交
1779
	BUG_ON(!(vma->vm_flags & VM_MIXEDMAP));
N
Nick Piggin 已提交
1780

N
Nick Piggin 已提交
1781 1782
	if (addr < vma->vm_start || addr >= vma->vm_end)
		return -EFAULT;
1783 1784

	track_pfn_insert(vma, &pgprot, pfn);
N
Nick Piggin 已提交
1785

N
Nick Piggin 已提交
1786 1787 1788 1789
	/*
	 * If we don't have pte special, then we have to use the pfn_valid()
	 * based VM_MIXEDMAP scheme (see vm_normal_page), and thus we *must*
	 * refcount the page if pfn_valid is true (hence insert_page rather
H
Hugh Dickins 已提交
1790 1791
	 * than insert_pfn).  If a zero_pfn were inserted into a VM_MIXEDMAP
	 * without pte special, it would there be refcounted as a normal page.
N
Nick Piggin 已提交
1792
	 */
1793
	if (!HAVE_PTE_SPECIAL && !pfn_t_devmap(pfn) && pfn_t_valid(pfn)) {
N
Nick Piggin 已提交
1794 1795
		struct page *page;

1796 1797 1798 1799 1800 1801
		/*
		 * At this point we are committed to insert_page()
		 * regardless of whether the caller specified flags that
		 * result in pfn_t_has_page() == false.
		 */
		page = pfn_to_page(pfn_t_to_pfn(pfn));
1802
		return insert_page(vma, addr, page, pgprot);
N
Nick Piggin 已提交
1803
	}
1804
	return insert_pfn(vma, addr, pfn, pgprot);
N
Nick Piggin 已提交
1805
}
N
Nick Piggin 已提交
1806
EXPORT_SYMBOL(vm_insert_mixed);
N
Nick Piggin 已提交
1807

L
Linus Torvalds 已提交
1808 1809 1810 1811 1812 1813 1814 1815 1816 1817
/*
 * maps a range of physical memory into the requested pages. the old
 * mappings are removed. any references to nonexistent pages results
 * in null mappings (currently treated as "copy-on-access")
 */
static int remap_pte_range(struct mm_struct *mm, pmd_t *pmd,
			unsigned long addr, unsigned long end,
			unsigned long pfn, pgprot_t prot)
{
	pte_t *pte;
H
Hugh Dickins 已提交
1818
	spinlock_t *ptl;
L
Linus Torvalds 已提交
1819

H
Hugh Dickins 已提交
1820
	pte = pte_alloc_map_lock(mm, pmd, addr, &ptl);
L
Linus Torvalds 已提交
1821 1822
	if (!pte)
		return -ENOMEM;
1823
	arch_enter_lazy_mmu_mode();
L
Linus Torvalds 已提交
1824 1825
	do {
		BUG_ON(!pte_none(*pte));
N
Nick Piggin 已提交
1826
		set_pte_at(mm, addr, pte, pte_mkspecial(pfn_pte(pfn, prot)));
L
Linus Torvalds 已提交
1827 1828
		pfn++;
	} while (pte++, addr += PAGE_SIZE, addr != end);
1829
	arch_leave_lazy_mmu_mode();
H
Hugh Dickins 已提交
1830
	pte_unmap_unlock(pte - 1, ptl);
L
Linus Torvalds 已提交
1831 1832 1833 1834 1835 1836 1837 1838 1839 1840 1841 1842 1843 1844
	return 0;
}

static inline int remap_pmd_range(struct mm_struct *mm, pud_t *pud,
			unsigned long addr, unsigned long end,
			unsigned long pfn, pgprot_t prot)
{
	pmd_t *pmd;
	unsigned long next;

	pfn -= addr >> PAGE_SHIFT;
	pmd = pmd_alloc(mm, pud, addr);
	if (!pmd)
		return -ENOMEM;
1845
	VM_BUG_ON(pmd_trans_huge(*pmd));
L
Linus Torvalds 已提交
1846 1847 1848 1849 1850 1851 1852 1853 1854
	do {
		next = pmd_addr_end(addr, end);
		if (remap_pte_range(mm, pmd, addr, next,
				pfn + (addr >> PAGE_SHIFT), prot))
			return -ENOMEM;
	} while (pmd++, addr = next, addr != end);
	return 0;
}

1855
static inline int remap_pud_range(struct mm_struct *mm, p4d_t *p4d,
L
Linus Torvalds 已提交
1856 1857 1858 1859 1860 1861 1862
			unsigned long addr, unsigned long end,
			unsigned long pfn, pgprot_t prot)
{
	pud_t *pud;
	unsigned long next;

	pfn -= addr >> PAGE_SHIFT;
1863
	pud = pud_alloc(mm, p4d, addr);
L
Linus Torvalds 已提交
1864 1865 1866 1867 1868 1869 1870 1871 1872 1873 1874
	if (!pud)
		return -ENOMEM;
	do {
		next = pud_addr_end(addr, end);
		if (remap_pmd_range(mm, pud, addr, next,
				pfn + (addr >> PAGE_SHIFT), prot))
			return -ENOMEM;
	} while (pud++, addr = next, addr != end);
	return 0;
}

1875 1876 1877 1878 1879 1880 1881 1882 1883 1884 1885 1886 1887 1888 1889 1890 1891 1892 1893 1894
static inline int remap_p4d_range(struct mm_struct *mm, pgd_t *pgd,
			unsigned long addr, unsigned long end,
			unsigned long pfn, pgprot_t prot)
{
	p4d_t *p4d;
	unsigned long next;

	pfn -= addr >> PAGE_SHIFT;
	p4d = p4d_alloc(mm, pgd, addr);
	if (!p4d)
		return -ENOMEM;
	do {
		next = p4d_addr_end(addr, end);
		if (remap_pud_range(mm, p4d, addr, next,
				pfn + (addr >> PAGE_SHIFT), prot))
			return -ENOMEM;
	} while (p4d++, addr = next, addr != end);
	return 0;
}

1895 1896 1897 1898 1899 1900 1901 1902 1903 1904
/**
 * remap_pfn_range - remap kernel memory to userspace
 * @vma: user vma to map to
 * @addr: target user address to start at
 * @pfn: physical address of kernel memory
 * @size: size of map area
 * @prot: page protection flags for this mapping
 *
 *  Note: this is only safe if the mm semaphore is held when called.
 */
L
Linus Torvalds 已提交
1905 1906 1907 1908 1909
int remap_pfn_range(struct vm_area_struct *vma, unsigned long addr,
		    unsigned long pfn, unsigned long size, pgprot_t prot)
{
	pgd_t *pgd;
	unsigned long next;
1910
	unsigned long end = addr + PAGE_ALIGN(size);
L
Linus Torvalds 已提交
1911
	struct mm_struct *mm = vma->vm_mm;
1912
	unsigned long remap_pfn = pfn;
L
Linus Torvalds 已提交
1913 1914 1915 1916 1917 1918 1919
	int err;

	/*
	 * Physically remapped pages are special. Tell the
	 * rest of the world about it:
	 *   VM_IO tells people not to look at these pages
	 *	(accesses can have side effects).
1920 1921 1922
	 *   VM_PFNMAP tells the core MM that the base pages are just
	 *	raw PFN mappings, and do not have a "struct page" associated
	 *	with them.
1923 1924 1925 1926
	 *   VM_DONTEXPAND
	 *      Disable vma merging and expanding with mremap().
	 *   VM_DONTDUMP
	 *      Omit vma from core dump, even when VM_IO turned off.
L
Linus Torvalds 已提交
1927 1928 1929 1930
	 *
	 * There's a horrible special case to handle copy-on-write
	 * behaviour that some programs depend on. We mark the "original"
	 * un-COW'ed pages by matching them up with "vma->vm_pgoff".
1931
	 * See vm_normal_page() for details.
L
Linus Torvalds 已提交
1932
	 */
1933 1934 1935
	if (is_cow_mapping(vma->vm_flags)) {
		if (addr != vma->vm_start || end != vma->vm_end)
			return -EINVAL;
L
Linus Torvalds 已提交
1936
		vma->vm_pgoff = pfn;
1937 1938
	}

1939
	err = track_pfn_remap(vma, &prot, remap_pfn, addr, PAGE_ALIGN(size));
1940
	if (err)
1941
		return -EINVAL;
L
Linus Torvalds 已提交
1942

1943
	vma->vm_flags |= VM_IO | VM_PFNMAP | VM_DONTEXPAND | VM_DONTDUMP;
L
Linus Torvalds 已提交
1944 1945 1946 1947 1948 1949 1950

	BUG_ON(addr >= end);
	pfn -= addr >> PAGE_SHIFT;
	pgd = pgd_offset(mm, addr);
	flush_cache_range(vma, addr, end);
	do {
		next = pgd_addr_end(addr, end);
1951
		err = remap_p4d_range(mm, pgd, addr, next,
L
Linus Torvalds 已提交
1952 1953 1954 1955
				pfn + (addr >> PAGE_SHIFT), prot);
		if (err)
			break;
	} while (pgd++, addr = next, addr != end);
1956 1957

	if (err)
1958
		untrack_pfn(vma, remap_pfn, PAGE_ALIGN(size));
1959

L
Linus Torvalds 已提交
1960 1961 1962 1963
	return err;
}
EXPORT_SYMBOL(remap_pfn_range);

1964 1965 1966 1967 1968 1969 1970 1971 1972 1973 1974 1975 1976 1977 1978 1979 1980 1981 1982 1983 1984 1985 1986 1987 1988 1989 1990 1991 1992 1993 1994 1995 1996 1997 1998 1999 2000 2001 2002 2003 2004 2005 2006 2007 2008 2009 2010
/**
 * vm_iomap_memory - remap memory to userspace
 * @vma: user vma to map to
 * @start: start of area
 * @len: size of area
 *
 * This is a simplified io_remap_pfn_range() for common driver use. The
 * driver just needs to give us the physical memory range to be mapped,
 * we'll figure out the rest from the vma information.
 *
 * NOTE! Some drivers might want to tweak vma->vm_page_prot first to get
 * whatever write-combining details or similar.
 */
int vm_iomap_memory(struct vm_area_struct *vma, phys_addr_t start, unsigned long len)
{
	unsigned long vm_len, pfn, pages;

	/* Check that the physical memory area passed in looks valid */
	if (start + len < start)
		return -EINVAL;
	/*
	 * You *really* shouldn't map things that aren't page-aligned,
	 * but we've historically allowed it because IO memory might
	 * just have smaller alignment.
	 */
	len += start & ~PAGE_MASK;
	pfn = start >> PAGE_SHIFT;
	pages = (len + ~PAGE_MASK) >> PAGE_SHIFT;
	if (pfn + pages < pfn)
		return -EINVAL;

	/* We start the mapping 'vm_pgoff' pages into the area */
	if (vma->vm_pgoff > pages)
		return -EINVAL;
	pfn += vma->vm_pgoff;
	pages -= vma->vm_pgoff;

	/* Can we fit all of the mapping? */
	vm_len = vma->vm_end - vma->vm_start;
	if (vm_len >> PAGE_SHIFT > pages)
		return -EINVAL;

	/* Ok, let it rip */
	return io_remap_pfn_range(vma, vma->vm_start, pfn, vm_len, vma->vm_page_prot);
}
EXPORT_SYMBOL(vm_iomap_memory);

2011 2012 2013 2014 2015 2016
static int apply_to_pte_range(struct mm_struct *mm, pmd_t *pmd,
				     unsigned long addr, unsigned long end,
				     pte_fn_t fn, void *data)
{
	pte_t *pte;
	int err;
2017
	pgtable_t token;
2018
	spinlock_t *uninitialized_var(ptl);
2019 2020 2021 2022 2023 2024 2025 2026 2027

	pte = (mm == &init_mm) ?
		pte_alloc_kernel(pmd, addr) :
		pte_alloc_map_lock(mm, pmd, addr, &ptl);
	if (!pte)
		return -ENOMEM;

	BUG_ON(pmd_huge(*pmd));

2028 2029
	arch_enter_lazy_mmu_mode();

2030
	token = pmd_pgtable(*pmd);
2031 2032

	do {
2033
		err = fn(pte++, token, addr, data);
2034 2035
		if (err)
			break;
2036
	} while (addr += PAGE_SIZE, addr != end);
2037

2038 2039
	arch_leave_lazy_mmu_mode();

2040 2041 2042 2043 2044 2045 2046 2047 2048 2049 2050 2051 2052
	if (mm != &init_mm)
		pte_unmap_unlock(pte-1, ptl);
	return err;
}

static int apply_to_pmd_range(struct mm_struct *mm, pud_t *pud,
				     unsigned long addr, unsigned long end,
				     pte_fn_t fn, void *data)
{
	pmd_t *pmd;
	unsigned long next;
	int err;

A
Andi Kleen 已提交
2053 2054
	BUG_ON(pud_huge(*pud));

2055 2056 2057 2058 2059 2060 2061 2062 2063 2064 2065 2066
	pmd = pmd_alloc(mm, pud, addr);
	if (!pmd)
		return -ENOMEM;
	do {
		next = pmd_addr_end(addr, end);
		err = apply_to_pte_range(mm, pmd, addr, next, fn, data);
		if (err)
			break;
	} while (pmd++, addr = next, addr != end);
	return err;
}

2067
static int apply_to_pud_range(struct mm_struct *mm, p4d_t *p4d,
2068 2069 2070 2071 2072 2073 2074
				     unsigned long addr, unsigned long end,
				     pte_fn_t fn, void *data)
{
	pud_t *pud;
	unsigned long next;
	int err;

2075
	pud = pud_alloc(mm, p4d, addr);
2076 2077 2078 2079 2080 2081 2082 2083 2084 2085 2086
	if (!pud)
		return -ENOMEM;
	do {
		next = pud_addr_end(addr, end);
		err = apply_to_pmd_range(mm, pud, addr, next, fn, data);
		if (err)
			break;
	} while (pud++, addr = next, addr != end);
	return err;
}

2087 2088 2089 2090 2091 2092 2093 2094 2095 2096 2097 2098 2099 2100 2101 2102 2103 2104 2105 2106
static int apply_to_p4d_range(struct mm_struct *mm, pgd_t *pgd,
				     unsigned long addr, unsigned long end,
				     pte_fn_t fn, void *data)
{
	p4d_t *p4d;
	unsigned long next;
	int err;

	p4d = p4d_alloc(mm, pgd, addr);
	if (!p4d)
		return -ENOMEM;
	do {
		next = p4d_addr_end(addr, end);
		err = apply_to_pud_range(mm, p4d, addr, next, fn, data);
		if (err)
			break;
	} while (p4d++, addr = next, addr != end);
	return err;
}

2107 2108 2109 2110 2111 2112 2113 2114 2115
/*
 * Scan a region of virtual memory, filling in page tables as necessary
 * and calling a provided function on each leaf page table.
 */
int apply_to_page_range(struct mm_struct *mm, unsigned long addr,
			unsigned long size, pte_fn_t fn, void *data)
{
	pgd_t *pgd;
	unsigned long next;
2116
	unsigned long end = addr + size;
2117 2118
	int err;

2119 2120 2121
	if (WARN_ON(addr >= end))
		return -EINVAL;

2122 2123 2124
	pgd = pgd_offset(mm, addr);
	do {
		next = pgd_addr_end(addr, end);
2125
		err = apply_to_p4d_range(mm, pgd, addr, next, fn, data);
2126 2127 2128
		if (err)
			break;
	} while (pgd++, addr = next, addr != end);
2129

2130 2131 2132 2133
	return err;
}
EXPORT_SYMBOL_GPL(apply_to_page_range);

2134
/*
2135 2136 2137 2138 2139
 * handle_pte_fault chooses page fault handler according to an entry which was
 * read non-atomically.  Before making any commitment, on those architectures
 * or configurations (e.g. i386 with PAE) which might give a mix of unmatched
 * parts, do_swap_page must check under lock before unmapping the pte and
 * proceeding (but do_wp_page is only called after already making such a check;
2140
 * and do_anonymous_page can safely check later on).
2141
 */
H
Hugh Dickins 已提交
2142
static inline int pte_unmap_same(struct mm_struct *mm, pmd_t *pmd,
2143 2144 2145 2146 2147
				pte_t *page_table, pte_t orig_pte)
{
	int same = 1;
#if defined(CONFIG_SMP) || defined(CONFIG_PREEMPT)
	if (sizeof(pte_t) > sizeof(unsigned long)) {
H
Hugh Dickins 已提交
2148 2149
		spinlock_t *ptl = pte_lockptr(mm, pmd);
		spin_lock(ptl);
2150
		same = pte_same(*page_table, orig_pte);
H
Hugh Dickins 已提交
2151
		spin_unlock(ptl);
2152 2153 2154 2155 2156 2157
	}
#endif
	pte_unmap(page_table);
	return same;
}

2158
static inline void cow_user_page(struct page *dst, struct page *src, unsigned long va, struct vm_area_struct *vma)
2159
{
2160 2161
	debug_dma_assert_idle(src);

2162 2163 2164 2165 2166 2167 2168
	/*
	 * If the source page was a PFN mapping, we don't have
	 * a "struct page" for it. We do a best-effort copy by
	 * just copying from the original user address. If that
	 * fails, we just zero-fill it. Live with it.
	 */
	if (unlikely(!src)) {
2169
		void *kaddr = kmap_atomic(dst);
L
Linus Torvalds 已提交
2170 2171 2172 2173 2174 2175 2176 2177 2178
		void __user *uaddr = (void __user *)(va & PAGE_MASK);

		/*
		 * This really shouldn't fail, because the page is there
		 * in the page tables. But it might just be unreadable,
		 * in which case we just give up and fill the result with
		 * zeroes.
		 */
		if (__copy_from_user_inatomic(kaddr, uaddr, PAGE_SIZE))
2179
			clear_page(kaddr);
2180
		kunmap_atomic(kaddr);
2181
		flush_dcache_page(dst);
N
Nick Piggin 已提交
2182 2183
	} else
		copy_user_highpage(dst, src, va, vma);
2184 2185
}

2186 2187 2188 2189 2190 2191 2192 2193 2194 2195 2196 2197 2198 2199
static gfp_t __get_fault_gfp_mask(struct vm_area_struct *vma)
{
	struct file *vm_file = vma->vm_file;

	if (vm_file)
		return mapping_gfp_mask(vm_file->f_mapping) | __GFP_FS | __GFP_IO;

	/*
	 * Special mappings (e.g. VDSO) do not have any file so fake
	 * a default GFP_KERNEL for them.
	 */
	return GFP_KERNEL;
}

2200 2201 2202 2203 2204 2205
/*
 * Notify the address space that the page is about to become writable so that
 * it can prohibit this or wait for the page to get into an appropriate state.
 *
 * We do this without the lock held, so that it can sleep if it needs to.
 */
2206
static int do_page_mkwrite(struct vm_fault *vmf)
2207 2208
{
	int ret;
2209 2210
	struct page *page = vmf->page;
	unsigned int old_flags = vmf->flags;
2211

2212
	vmf->flags = FAULT_FLAG_WRITE|FAULT_FLAG_MKWRITE;
2213

2214
	ret = vmf->vma->vm_ops->page_mkwrite(vmf);
2215 2216
	/* Restore original flags so that caller is not surprised */
	vmf->flags = old_flags;
2217 2218 2219 2220 2221 2222 2223 2224 2225 2226 2227 2228 2229 2230
	if (unlikely(ret & (VM_FAULT_ERROR | VM_FAULT_NOPAGE)))
		return ret;
	if (unlikely(!(ret & VM_FAULT_LOCKED))) {
		lock_page(page);
		if (!page->mapping) {
			unlock_page(page);
			return 0; /* retry */
		}
		ret |= VM_FAULT_LOCKED;
	} else
		VM_BUG_ON_PAGE(!PageLocked(page), page);
	return ret;
}

2231 2232 2233 2234 2235 2236 2237 2238 2239 2240 2241 2242 2243 2244 2245 2246 2247 2248 2249 2250 2251 2252 2253 2254 2255 2256 2257 2258 2259 2260 2261 2262 2263 2264 2265
/*
 * Handle dirtying of a page in shared file mapping on a write fault.
 *
 * The function expects the page to be locked and unlocks it.
 */
static void fault_dirty_shared_page(struct vm_area_struct *vma,
				    struct page *page)
{
	struct address_space *mapping;
	bool dirtied;
	bool page_mkwrite = vma->vm_ops && vma->vm_ops->page_mkwrite;

	dirtied = set_page_dirty(page);
	VM_BUG_ON_PAGE(PageAnon(page), page);
	/*
	 * Take a local copy of the address_space - page.mapping may be zeroed
	 * by truncate after unlock_page().   The address_space itself remains
	 * pinned by vma->vm_file's reference.  We rely on unlock_page()'s
	 * release semantics to prevent the compiler from undoing this copying.
	 */
	mapping = page_rmapping(page);
	unlock_page(page);

	if ((dirtied || page_mkwrite) && mapping) {
		/*
		 * Some device drivers do not set page.mapping
		 * but still dirty their pages
		 */
		balance_dirty_pages_ratelimited(mapping);
	}

	if (!page_mkwrite)
		file_update_time(vma->vm_file);
}

2266 2267 2268 2269 2270 2271 2272 2273
/*
 * Handle write page faults for pages that can be reused in the current vma
 *
 * This can happen either due to the mapping being with the VM_SHARED flag,
 * or due to us being the last reference standing to the page. In either
 * case, all we need to do here is to mark the page as writable and update
 * any related book-keeping.
 */
2274
static inline void wp_page_reuse(struct vm_fault *vmf)
J
Jan Kara 已提交
2275
	__releases(vmf->ptl)
2276
{
J
Jan Kara 已提交
2277
	struct vm_area_struct *vma = vmf->vma;
J
Jan Kara 已提交
2278
	struct page *page = vmf->page;
2279 2280 2281 2282 2283 2284 2285 2286 2287
	pte_t entry;
	/*
	 * Clear the pages cpupid information as the existing
	 * information potentially belongs to a now completely
	 * unrelated process.
	 */
	if (page)
		page_cpupid_xchg_last(page, (1 << LAST_CPUPID_SHIFT) - 1);

J
Jan Kara 已提交
2288 2289
	flush_cache_page(vma, vmf->address, pte_pfn(vmf->orig_pte));
	entry = pte_mkyoung(vmf->orig_pte);
2290
	entry = maybe_mkwrite(pte_mkdirty(entry), vma);
J
Jan Kara 已提交
2291 2292 2293
	if (ptep_set_access_flags(vma, vmf->address, vmf->pte, entry, 1))
		update_mmu_cache(vma, vmf->address, vmf->pte);
	pte_unmap_unlock(vmf->pte, vmf->ptl);
2294 2295
}

2296 2297 2298 2299 2300 2301 2302 2303 2304 2305 2306 2307 2308 2309 2310 2311
/*
 * Handle the case of a page which we actually need to copy to a new page.
 *
 * Called with mmap_sem locked and the old page referenced, but
 * without the ptl held.
 *
 * High level logic flow:
 *
 * - Allocate a page, copy the content of the old page to the new one.
 * - Handle book keeping and accounting - cgroups, mmu-notifiers, etc.
 * - Take the PTL. If the pte changed, bail out and release the allocated page
 * - If the pte is still the way we remember it, update the page table and all
 *   relevant references. This includes dropping the reference the page-table
 *   held to the old page, as well as updating the rmap.
 * - In any case, unlock the PTL and drop the reference we took to the old page.
 */
J
Jan Kara 已提交
2312
static int wp_page_copy(struct vm_fault *vmf)
2313
{
J
Jan Kara 已提交
2314
	struct vm_area_struct *vma = vmf->vma;
K
Kirill A. Shutemov 已提交
2315
	struct mm_struct *mm = vma->vm_mm;
J
Jan Kara 已提交
2316
	struct page *old_page = vmf->page;
2317 2318 2319
	struct page *new_page = NULL;
	pte_t entry;
	int page_copied = 0;
J
Jan Kara 已提交
2320
	const unsigned long mmun_start = vmf->address & PAGE_MASK;
K
Kirill A. Shutemov 已提交
2321
	const unsigned long mmun_end = mmun_start + PAGE_SIZE;
2322 2323 2324 2325 2326
	struct mem_cgroup *memcg;

	if (unlikely(anon_vma_prepare(vma)))
		goto oom;

J
Jan Kara 已提交
2327
	if (is_zero_pfn(pte_pfn(vmf->orig_pte))) {
J
Jan Kara 已提交
2328 2329
		new_page = alloc_zeroed_user_highpage_movable(vma,
							      vmf->address);
2330 2331 2332
		if (!new_page)
			goto oom;
	} else {
K
Kirill A. Shutemov 已提交
2333
		new_page = alloc_page_vma(GFP_HIGHUSER_MOVABLE, vma,
J
Jan Kara 已提交
2334
				vmf->address);
2335 2336
		if (!new_page)
			goto oom;
J
Jan Kara 已提交
2337
		cow_user_page(new_page, old_page, vmf->address, vma);
2338 2339
	}

2340
	if (mem_cgroup_try_charge(new_page, mm, GFP_KERNEL, &memcg, false))
2341 2342
		goto oom_free_new;

2343 2344
	__SetPageUptodate(new_page);

2345 2346 2347 2348 2349
	mmu_notifier_invalidate_range_start(mm, mmun_start, mmun_end);

	/*
	 * Re-check the pte - we dropped the lock
	 */
J
Jan Kara 已提交
2350
	vmf->pte = pte_offset_map_lock(mm, vmf->pmd, vmf->address, &vmf->ptl);
J
Jan Kara 已提交
2351
	if (likely(pte_same(*vmf->pte, vmf->orig_pte))) {
2352 2353
		if (old_page) {
			if (!PageAnon(old_page)) {
2354 2355
				dec_mm_counter_fast(mm,
						mm_counter_file(old_page));
2356 2357 2358 2359 2360
				inc_mm_counter_fast(mm, MM_ANONPAGES);
			}
		} else {
			inc_mm_counter_fast(mm, MM_ANONPAGES);
		}
J
Jan Kara 已提交
2361
		flush_cache_page(vma, vmf->address, pte_pfn(vmf->orig_pte));
2362 2363 2364 2365 2366 2367 2368 2369
		entry = mk_pte(new_page, vma->vm_page_prot);
		entry = maybe_mkwrite(pte_mkdirty(entry), vma);
		/*
		 * Clear the pte entry and flush it first, before updating the
		 * pte with the new entry. This will avoid a race condition
		 * seen in the presence of one thread doing SMC and another
		 * thread doing COW.
		 */
J
Jan Kara 已提交
2370 2371
		ptep_clear_flush_notify(vma, vmf->address, vmf->pte);
		page_add_new_anon_rmap(new_page, vma, vmf->address, false);
2372
		mem_cgroup_commit_charge(new_page, memcg, false, false);
2373 2374 2375 2376 2377 2378
		lru_cache_add_active_or_unevictable(new_page, vma);
		/*
		 * We call the notify macro here because, when using secondary
		 * mmu page tables (such as kvm shadow page tables), we want the
		 * new page to be mapped directly into the secondary page table.
		 */
J
Jan Kara 已提交
2379 2380
		set_pte_at_notify(mm, vmf->address, vmf->pte, entry);
		update_mmu_cache(vma, vmf->address, vmf->pte);
2381 2382 2383 2384 2385 2386 2387 2388 2389 2390 2391 2392 2393 2394 2395 2396 2397 2398 2399 2400 2401 2402 2403
		if (old_page) {
			/*
			 * Only after switching the pte to the new page may
			 * we remove the mapcount here. Otherwise another
			 * process may come and find the rmap count decremented
			 * before the pte is switched to the new page, and
			 * "reuse" the old page writing into it while our pte
			 * here still points into it and can be read by other
			 * threads.
			 *
			 * The critical issue is to order this
			 * page_remove_rmap with the ptp_clear_flush above.
			 * Those stores are ordered by (if nothing else,)
			 * the barrier present in the atomic_add_negative
			 * in page_remove_rmap.
			 *
			 * Then the TLB flush in ptep_clear_flush ensures that
			 * no process can access the old page before the
			 * decremented mapcount is visible. And the old page
			 * cannot be reused until after the decremented
			 * mapcount is visible. So transitively, TLBs to
			 * old page will be flushed before it can be reused.
			 */
2404
			page_remove_rmap(old_page, false);
2405 2406 2407 2408 2409 2410
		}

		/* Free the old page.. */
		new_page = old_page;
		page_copied = 1;
	} else {
2411
		mem_cgroup_cancel_charge(new_page, memcg, false);
2412 2413 2414
	}

	if (new_page)
2415
		put_page(new_page);
2416

J
Jan Kara 已提交
2417
	pte_unmap_unlock(vmf->pte, vmf->ptl);
2418 2419 2420 2421 2422 2423 2424 2425
	mmu_notifier_invalidate_range_end(mm, mmun_start, mmun_end);
	if (old_page) {
		/*
		 * Don't let another task, with possibly unlocked vma,
		 * keep the mlocked page.
		 */
		if (page_copied && (vma->vm_flags & VM_LOCKED)) {
			lock_page(old_page);	/* LRU manipulation */
2426 2427
			if (PageMlocked(old_page))
				munlock_vma_page(old_page);
2428 2429
			unlock_page(old_page);
		}
2430
		put_page(old_page);
2431 2432 2433
	}
	return page_copied ? VM_FAULT_WRITE : 0;
oom_free_new:
2434
	put_page(new_page);
2435 2436
oom:
	if (old_page)
2437
		put_page(old_page);
2438 2439 2440
	return VM_FAULT_OOM;
}

2441 2442 2443 2444 2445 2446 2447 2448 2449 2450 2451 2452 2453 2454 2455 2456 2457 2458 2459 2460 2461 2462 2463 2464 2465 2466
/**
 * finish_mkwrite_fault - finish page fault for a shared mapping, making PTE
 *			  writeable once the page is prepared
 *
 * @vmf: structure describing the fault
 *
 * This function handles all that is needed to finish a write page fault in a
 * shared mapping due to PTE being read-only once the mapped page is prepared.
 * It handles locking of PTE and modifying it. The function returns
 * VM_FAULT_WRITE on success, 0 when PTE got changed before we acquired PTE
 * lock.
 *
 * The function expects the page to be locked or other protection against
 * concurrent faults / writeback (such as DAX radix tree locks).
 */
int finish_mkwrite_fault(struct vm_fault *vmf)
{
	WARN_ON_ONCE(!(vmf->vma->vm_flags & VM_SHARED));
	vmf->pte = pte_offset_map_lock(vmf->vma->vm_mm, vmf->pmd, vmf->address,
				       &vmf->ptl);
	/*
	 * We might have raced with another page fault while we released the
	 * pte_offset_map_lock.
	 */
	if (!pte_same(*vmf->pte, vmf->orig_pte)) {
		pte_unmap_unlock(vmf->pte, vmf->ptl);
2467
		return VM_FAULT_NOPAGE;
2468 2469
	}
	wp_page_reuse(vmf);
2470
	return 0;
2471 2472
}

2473 2474 2475 2476
/*
 * Handle write page faults for VM_MIXEDMAP or VM_PFNMAP for a VM_SHARED
 * mapping
 */
J
Jan Kara 已提交
2477
static int wp_pfn_shared(struct vm_fault *vmf)
2478
{
J
Jan Kara 已提交
2479
	struct vm_area_struct *vma = vmf->vma;
K
Kirill A. Shutemov 已提交
2480

2481 2482 2483
	if (vma->vm_ops && vma->vm_ops->pfn_mkwrite) {
		int ret;

J
Jan Kara 已提交
2484
		pte_unmap_unlock(vmf->pte, vmf->ptl);
2485
		vmf->flags |= FAULT_FLAG_MKWRITE;
2486
		ret = vma->vm_ops->pfn_mkwrite(vmf);
2487
		if (ret & (VM_FAULT_ERROR | VM_FAULT_NOPAGE))
2488
			return ret;
2489
		return finish_mkwrite_fault(vmf);
2490
	}
2491 2492
	wp_page_reuse(vmf);
	return VM_FAULT_WRITE;
2493 2494
}

J
Jan Kara 已提交
2495
static int wp_page_shared(struct vm_fault *vmf)
J
Jan Kara 已提交
2496
	__releases(vmf->ptl)
2497
{
J
Jan Kara 已提交
2498
	struct vm_area_struct *vma = vmf->vma;
2499

J
Jan Kara 已提交
2500
	get_page(vmf->page);
2501 2502 2503 2504

	if (vma->vm_ops && vma->vm_ops->page_mkwrite) {
		int tmp;

J
Jan Kara 已提交
2505
		pte_unmap_unlock(vmf->pte, vmf->ptl);
2506
		tmp = do_page_mkwrite(vmf);
2507 2508
		if (unlikely(!tmp || (tmp &
				      (VM_FAULT_ERROR | VM_FAULT_NOPAGE)))) {
J
Jan Kara 已提交
2509
			put_page(vmf->page);
2510 2511
			return tmp;
		}
2512
		tmp = finish_mkwrite_fault(vmf);
2513
		if (unlikely(tmp & (VM_FAULT_ERROR | VM_FAULT_NOPAGE))) {
J
Jan Kara 已提交
2514 2515
			unlock_page(vmf->page);
			put_page(vmf->page);
2516
			return tmp;
2517
		}
2518 2519
	} else {
		wp_page_reuse(vmf);
2520
		lock_page(vmf->page);
2521
	}
2522 2523
	fault_dirty_shared_page(vma, vmf->page);
	put_page(vmf->page);
2524

2525
	return VM_FAULT_WRITE;
2526 2527
}

L
Linus Torvalds 已提交
2528 2529 2530 2531 2532 2533 2534 2535 2536 2537 2538 2539 2540 2541
/*
 * This routine handles present pages, when users try to write
 * to a shared page. It is done by copying the page to a new address
 * and decrementing the shared-page counter for the old page.
 *
 * Note that this routine assumes that the protection checks have been
 * done by the caller (the low-level page fault routine in most cases).
 * Thus we can safely just mark it writable once we've done any necessary
 * COW.
 *
 * We also mark the page dirty at this point even though the page will
 * change only once the write actually happens. This avoids a few races,
 * and potentially makes it more efficient.
 *
2542 2543 2544
 * We enter with non-exclusive mmap_sem (to exclude vma changes,
 * but allow concurrent faults), with pte both mapped and locked.
 * We return with mmap_sem still held, but pte unmapped and unlocked.
L
Linus Torvalds 已提交
2545
 */
J
Jan Kara 已提交
2546
static int do_wp_page(struct vm_fault *vmf)
J
Jan Kara 已提交
2547
	__releases(vmf->ptl)
L
Linus Torvalds 已提交
2548
{
J
Jan Kara 已提交
2549
	struct vm_area_struct *vma = vmf->vma;
L
Linus Torvalds 已提交
2550

J
Jan Kara 已提交
2551 2552
	vmf->page = vm_normal_page(vma, vmf->address, vmf->orig_pte);
	if (!vmf->page) {
2553
		/*
2554 2555
		 * VM_MIXEDMAP !pfn_valid() case, or VM_SOFTDIRTY clear on a
		 * VM_PFNMAP VMA.
2556 2557
		 *
		 * We should not cow pages in a shared writeable mapping.
2558
		 * Just mark the pages writable and/or call ops->pfn_mkwrite.
2559 2560 2561
		 */
		if ((vma->vm_flags & (VM_WRITE|VM_SHARED)) ==
				     (VM_WRITE|VM_SHARED))
J
Jan Kara 已提交
2562
			return wp_pfn_shared(vmf);
2563

J
Jan Kara 已提交
2564
		pte_unmap_unlock(vmf->pte, vmf->ptl);
J
Jan Kara 已提交
2565
		return wp_page_copy(vmf);
2566
	}
L
Linus Torvalds 已提交
2567

2568
	/*
P
Peter Zijlstra 已提交
2569 2570
	 * Take out anonymous pages first, anonymous shared vmas are
	 * not dirty accountable.
2571
	 */
J
Jan Kara 已提交
2572
	if (PageAnon(vmf->page) && !PageKsm(vmf->page)) {
2573
		int total_mapcount;
J
Jan Kara 已提交
2574 2575
		if (!trylock_page(vmf->page)) {
			get_page(vmf->page);
J
Jan Kara 已提交
2576
			pte_unmap_unlock(vmf->pte, vmf->ptl);
J
Jan Kara 已提交
2577
			lock_page(vmf->page);
J
Jan Kara 已提交
2578 2579
			vmf->pte = pte_offset_map_lock(vma->vm_mm, vmf->pmd,
					vmf->address, &vmf->ptl);
J
Jan Kara 已提交
2580
			if (!pte_same(*vmf->pte, vmf->orig_pte)) {
J
Jan Kara 已提交
2581
				unlock_page(vmf->page);
J
Jan Kara 已提交
2582
				pte_unmap_unlock(vmf->pte, vmf->ptl);
J
Jan Kara 已提交
2583
				put_page(vmf->page);
2584
				return 0;
2585
			}
J
Jan Kara 已提交
2586
			put_page(vmf->page);
P
Peter Zijlstra 已提交
2587
		}
J
Jan Kara 已提交
2588
		if (reuse_swap_page(vmf->page, &total_mapcount)) {
2589 2590 2591 2592 2593 2594 2595 2596
			if (total_mapcount == 1) {
				/*
				 * The page is all ours. Move it to
				 * our anon_vma so the rmap code will
				 * not search our parent or siblings.
				 * Protected against the rmap code by
				 * the page lock.
				 */
J
Jan Kara 已提交
2597
				page_move_anon_rmap(vmf->page, vma);
2598
			}
J
Jan Kara 已提交
2599
			unlock_page(vmf->page);
2600 2601
			wp_page_reuse(vmf);
			return VM_FAULT_WRITE;
2602
		}
J
Jan Kara 已提交
2603
		unlock_page(vmf->page);
P
Peter Zijlstra 已提交
2604
	} else if (unlikely((vma->vm_flags & (VM_WRITE|VM_SHARED)) ==
2605
					(VM_WRITE|VM_SHARED))) {
J
Jan Kara 已提交
2606
		return wp_page_shared(vmf);
L
Linus Torvalds 已提交
2607 2608 2609 2610 2611
	}

	/*
	 * Ok, we need to copy. Oh, well..
	 */
J
Jan Kara 已提交
2612
	get_page(vmf->page);
2613

J
Jan Kara 已提交
2614
	pte_unmap_unlock(vmf->pte, vmf->ptl);
J
Jan Kara 已提交
2615
	return wp_page_copy(vmf);
L
Linus Torvalds 已提交
2616 2617
}

2618
static void unmap_mapping_range_vma(struct vm_area_struct *vma,
L
Linus Torvalds 已提交
2619 2620 2621
		unsigned long start_addr, unsigned long end_addr,
		struct zap_details *details)
{
2622
	zap_page_range_single(vma, start_addr, end_addr - start_addr, details);
L
Linus Torvalds 已提交
2623 2624
}

2625
static inline void unmap_mapping_range_tree(struct rb_root *root,
L
Linus Torvalds 已提交
2626 2627 2628 2629 2630
					    struct zap_details *details)
{
	struct vm_area_struct *vma;
	pgoff_t vba, vea, zba, zea;

2631
	vma_interval_tree_foreach(vma, root,
L
Linus Torvalds 已提交
2632 2633 2634
			details->first_index, details->last_index) {

		vba = vma->vm_pgoff;
2635
		vea = vba + vma_pages(vma) - 1;
L
Linus Torvalds 已提交
2636 2637 2638 2639 2640 2641 2642
		zba = details->first_index;
		if (zba < vba)
			zba = vba;
		zea = details->last_index;
		if (zea > vea)
			zea = vea;

2643
		unmap_mapping_range_vma(vma,
L
Linus Torvalds 已提交
2644 2645
			((zba - vba) << PAGE_SHIFT) + vma->vm_start,
			((zea - vba + 1) << PAGE_SHIFT) + vma->vm_start,
2646
				details);
L
Linus Torvalds 已提交
2647 2648 2649 2650
	}
}

/**
2651 2652 2653 2654
 * unmap_mapping_range - unmap the portion of all mmaps in the specified
 * address_space corresponding to the specified page range in the underlying
 * file.
 *
M
Martin Waitz 已提交
2655
 * @mapping: the address space containing mmaps to be unmapped.
L
Linus Torvalds 已提交
2656 2657
 * @holebegin: byte in first page to unmap, relative to the start of
 * the underlying file.  This will be rounded down to a PAGE_SIZE
N
npiggin@suse.de 已提交
2658
 * boundary.  Note that this is different from truncate_pagecache(), which
L
Linus Torvalds 已提交
2659 2660 2661 2662 2663 2664 2665 2666 2667 2668 2669
 * must keep the partial page.  In contrast, we must get rid of
 * partial pages.
 * @holelen: size of prospective hole in bytes.  This will be rounded
 * up to a PAGE_SIZE boundary.  A holelen of zero truncates to the
 * end of the file.
 * @even_cows: 1 when truncating a file, unmap even private COWed pages;
 * but 0 when invalidating pagecache, don't throw away private data.
 */
void unmap_mapping_range(struct address_space *mapping,
		loff_t const holebegin, loff_t const holelen, int even_cows)
{
M
Michal Hocko 已提交
2670
	struct zap_details details = { };
L
Linus Torvalds 已提交
2671 2672 2673 2674 2675 2676 2677 2678 2679 2680 2681
	pgoff_t hba = holebegin >> PAGE_SHIFT;
	pgoff_t hlen = (holelen + PAGE_SIZE - 1) >> PAGE_SHIFT;

	/* Check for overflow. */
	if (sizeof(holelen) > sizeof(hlen)) {
		long long holeend =
			(holebegin + holelen + PAGE_SIZE - 1) >> PAGE_SHIFT;
		if (holeend & ~(long long)ULONG_MAX)
			hlen = ULONG_MAX - hba + 1;
	}

T
Tobin C Harding 已提交
2682
	details.check_mapping = even_cows ? NULL : mapping;
L
Linus Torvalds 已提交
2683 2684 2685 2686 2687
	details.first_index = hba;
	details.last_index = hba + hlen - 1;
	if (details.last_index < details.first_index)
		details.last_index = ULONG_MAX;

2688
	i_mmap_lock_write(mapping);
2689
	if (unlikely(!RB_EMPTY_ROOT(&mapping->i_mmap)))
L
Linus Torvalds 已提交
2690
		unmap_mapping_range_tree(&mapping->i_mmap, &details);
2691
	i_mmap_unlock_write(mapping);
L
Linus Torvalds 已提交
2692 2693 2694 2695
}
EXPORT_SYMBOL(unmap_mapping_range);

/*
2696 2697
 * We enter with non-exclusive mmap_sem (to exclude vma changes,
 * but allow concurrent faults), and pte mapped but not yet locked.
2698 2699 2700 2701
 * We return with pte unmapped and unlocked.
 *
 * We return with the mmap_sem locked or unlocked in the same cases
 * as does filemap_fault().
L
Linus Torvalds 已提交
2702
 */
J
Jan Kara 已提交
2703
int do_swap_page(struct vm_fault *vmf)
L
Linus Torvalds 已提交
2704
{
J
Jan Kara 已提交
2705
	struct vm_area_struct *vma = vmf->vma;
2706
	struct page *page, *swapcache;
2707
	struct mem_cgroup *memcg;
2708
	swp_entry_t entry;
L
Linus Torvalds 已提交
2709
	pte_t pte;
2710
	int locked;
2711
	int exclusive = 0;
N
Nick Piggin 已提交
2712
	int ret = 0;
L
Linus Torvalds 已提交
2713

J
Jan Kara 已提交
2714
	if (!pte_unmap_same(vma->vm_mm, vmf->pmd, vmf->pte, vmf->orig_pte))
2715
		goto out;
2716

J
Jan Kara 已提交
2717
	entry = pte_to_swp_entry(vmf->orig_pte);
2718 2719
	if (unlikely(non_swap_entry(entry))) {
		if (is_migration_entry(entry)) {
J
Jan Kara 已提交
2720 2721
			migration_entry_wait(vma->vm_mm, vmf->pmd,
					     vmf->address);
2722 2723 2724
		} else if (is_hwpoison_entry(entry)) {
			ret = VM_FAULT_HWPOISON;
		} else {
J
Jan Kara 已提交
2725
			print_bad_pte(vma, vmf->address, vmf->orig_pte, NULL);
H
Hugh Dickins 已提交
2726
			ret = VM_FAULT_SIGBUS;
2727
		}
2728 2729
		goto out;
	}
2730
	delayacct_set_flag(DELAYACCT_PF_SWAPIN);
L
Linus Torvalds 已提交
2731 2732
	page = lookup_swap_cache(entry);
	if (!page) {
J
Jan Kara 已提交
2733 2734
		page = swapin_readahead(entry, GFP_HIGHUSER_MOVABLE, vma,
					vmf->address);
L
Linus Torvalds 已提交
2735 2736
		if (!page) {
			/*
2737 2738
			 * Back out if somebody else faulted in this pte
			 * while we released the pte lock.
L
Linus Torvalds 已提交
2739
			 */
J
Jan Kara 已提交
2740 2741
			vmf->pte = pte_offset_map_lock(vma->vm_mm, vmf->pmd,
					vmf->address, &vmf->ptl);
J
Jan Kara 已提交
2742
			if (likely(pte_same(*vmf->pte, vmf->orig_pte)))
L
Linus Torvalds 已提交
2743
				ret = VM_FAULT_OOM;
2744
			delayacct_clear_flag(DELAYACCT_PF_SWAPIN);
2745
			goto unlock;
L
Linus Torvalds 已提交
2746 2747 2748 2749
		}

		/* Had to read the page from swap area: Major fault */
		ret = VM_FAULT_MAJOR;
2750
		count_vm_event(PGMAJFAULT);
2751
		count_memcg_event_mm(vma->vm_mm, PGMAJFAULT);
2752
	} else if (PageHWPoison(page)) {
2753 2754 2755 2756
		/*
		 * hwpoisoned dirty swapcache pages are kept for killing
		 * owner processes (which may be unknown at hwpoison time)
		 */
2757 2758
		ret = VM_FAULT_HWPOISON;
		delayacct_clear_flag(DELAYACCT_PF_SWAPIN);
2759
		swapcache = page;
2760
		goto out_release;
L
Linus Torvalds 已提交
2761 2762
	}

2763
	swapcache = page;
J
Jan Kara 已提交
2764
	locked = lock_page_or_retry(page, vma->vm_mm, vmf->flags);
R
Rik van Riel 已提交
2765

2766
	delayacct_clear_flag(DELAYACCT_PF_SWAPIN);
2767 2768 2769 2770
	if (!locked) {
		ret |= VM_FAULT_RETRY;
		goto out_release;
	}
2771

A
Andrea Arcangeli 已提交
2772
	/*
2773 2774 2775 2776
	 * Make sure try_to_free_swap or reuse_swap_page or swapoff did not
	 * release the swapcache from under us.  The page pin, and pte_same
	 * test below, are not enough to exclude that.  Even if it is still
	 * swapcache, we need to check that the page's swap has not changed.
A
Andrea Arcangeli 已提交
2777
	 */
2778
	if (unlikely(!PageSwapCache(page) || page_private(page) != entry.val))
A
Andrea Arcangeli 已提交
2779 2780
		goto out_page;

J
Jan Kara 已提交
2781
	page = ksm_might_need_to_copy(page, vma, vmf->address);
2782 2783 2784 2785
	if (unlikely(!page)) {
		ret = VM_FAULT_OOM;
		page = swapcache;
		goto out_page;
H
Hugh Dickins 已提交
2786 2787
	}

K
Kirill A. Shutemov 已提交
2788 2789
	if (mem_cgroup_try_charge(page, vma->vm_mm, GFP_KERNEL,
				&memcg, false)) {
2790
		ret = VM_FAULT_OOM;
2791
		goto out_page;
2792 2793
	}

L
Linus Torvalds 已提交
2794
	/*
2795
	 * Back out if somebody else already faulted in this pte.
L
Linus Torvalds 已提交
2796
	 */
J
Jan Kara 已提交
2797 2798
	vmf->pte = pte_offset_map_lock(vma->vm_mm, vmf->pmd, vmf->address,
			&vmf->ptl);
J
Jan Kara 已提交
2799
	if (unlikely(!pte_same(*vmf->pte, vmf->orig_pte)))
2800 2801 2802 2803 2804
		goto out_nomap;

	if (unlikely(!PageUptodate(page))) {
		ret = VM_FAULT_SIGBUS;
		goto out_nomap;
L
Linus Torvalds 已提交
2805 2806
	}

2807 2808 2809 2810 2811 2812 2813 2814 2815
	/*
	 * The page isn't present yet, go ahead with the fault.
	 *
	 * Be careful about the sequence of operations here.
	 * To get its accounting right, reuse_swap_page() must be called
	 * while the page is counted on swap but not yet in mapcount i.e.
	 * before page_add_anon_rmap() and swap_free(); try_to_free_swap()
	 * must be called after the swap_free(), or it will never succeed.
	 */
L
Linus Torvalds 已提交
2816

K
Kirill A. Shutemov 已提交
2817 2818
	inc_mm_counter_fast(vma->vm_mm, MM_ANONPAGES);
	dec_mm_counter_fast(vma->vm_mm, MM_SWAPENTS);
L
Linus Torvalds 已提交
2819
	pte = mk_pte(page, vma->vm_page_prot);
J
Jan Kara 已提交
2820
	if ((vmf->flags & FAULT_FLAG_WRITE) && reuse_swap_page(page, NULL)) {
L
Linus Torvalds 已提交
2821
		pte = maybe_mkwrite(pte_mkdirty(pte), vma);
J
Jan Kara 已提交
2822
		vmf->flags &= ~FAULT_FLAG_WRITE;
2823
		ret |= VM_FAULT_WRITE;
2824
		exclusive = RMAP_EXCLUSIVE;
L
Linus Torvalds 已提交
2825 2826
	}
	flush_icache_page(vma, page);
J
Jan Kara 已提交
2827
	if (pte_swp_soft_dirty(vmf->orig_pte))
2828
		pte = pte_mksoft_dirty(pte);
J
Jan Kara 已提交
2829
	set_pte_at(vma->vm_mm, vmf->address, vmf->pte, pte);
J
Jan Kara 已提交
2830
	vmf->orig_pte = pte;
2831
	if (page == swapcache) {
J
Jan Kara 已提交
2832
		do_page_add_anon_rmap(page, vma, vmf->address, exclusive);
2833
		mem_cgroup_commit_charge(page, memcg, true, false);
2834
		activate_page(page);
2835
	} else { /* ksm created a completely new copy */
J
Jan Kara 已提交
2836
		page_add_new_anon_rmap(page, vma, vmf->address, false);
2837
		mem_cgroup_commit_charge(page, memcg, false, false);
2838 2839
		lru_cache_add_active_or_unevictable(page, vma);
	}
L
Linus Torvalds 已提交
2840

2841
	swap_free(entry);
2842 2843
	if (mem_cgroup_swap_full(page) ||
	    (vma->vm_flags & VM_LOCKED) || PageMlocked(page))
2844
		try_to_free_swap(page);
2845
	unlock_page(page);
2846
	if (page != swapcache) {
A
Andrea Arcangeli 已提交
2847 2848 2849 2850 2851 2852 2853 2854 2855
		/*
		 * Hold the lock to avoid the swap entry to be reused
		 * until we take the PT lock for the pte_same() check
		 * (to avoid false positives from pte_same). For
		 * further safety release the lock after the swap_free
		 * so that the swap count won't change under a
		 * parallel locked swapcache.
		 */
		unlock_page(swapcache);
2856
		put_page(swapcache);
A
Andrea Arcangeli 已提交
2857
	}
2858

J
Jan Kara 已提交
2859
	if (vmf->flags & FAULT_FLAG_WRITE) {
J
Jan Kara 已提交
2860
		ret |= do_wp_page(vmf);
2861 2862
		if (ret & VM_FAULT_ERROR)
			ret &= VM_FAULT_ERROR;
L
Linus Torvalds 已提交
2863 2864 2865 2866
		goto out;
	}

	/* No need to invalidate - it was non-present before */
J
Jan Kara 已提交
2867
	update_mmu_cache(vma, vmf->address, vmf->pte);
2868
unlock:
J
Jan Kara 已提交
2869
	pte_unmap_unlock(vmf->pte, vmf->ptl);
L
Linus Torvalds 已提交
2870 2871
out:
	return ret;
2872
out_nomap:
2873
	mem_cgroup_cancel_charge(page, memcg, false);
J
Jan Kara 已提交
2874
	pte_unmap_unlock(vmf->pte, vmf->ptl);
2875
out_page:
2876
	unlock_page(page);
2877
out_release:
2878
	put_page(page);
2879
	if (page != swapcache) {
A
Andrea Arcangeli 已提交
2880
		unlock_page(swapcache);
2881
		put_page(swapcache);
A
Andrea Arcangeli 已提交
2882
	}
2883
	return ret;
L
Linus Torvalds 已提交
2884 2885 2886
}

/*
2887 2888 2889
 * We enter with non-exclusive mmap_sem (to exclude vma changes,
 * but allow concurrent faults), and pte mapped but not yet locked.
 * We return with mmap_sem still held, but pte unmapped and unlocked.
L
Linus Torvalds 已提交
2890
 */
J
Jan Kara 已提交
2891
static int do_anonymous_page(struct vm_fault *vmf)
L
Linus Torvalds 已提交
2892
{
J
Jan Kara 已提交
2893
	struct vm_area_struct *vma = vmf->vma;
2894
	struct mem_cgroup *memcg;
2895
	struct page *page;
L
Linus Torvalds 已提交
2896 2897
	pte_t entry;

2898 2899 2900 2901
	/* File mapping without ->vm_ops ? */
	if (vma->vm_flags & VM_SHARED)
		return VM_FAULT_SIGBUS;

2902 2903 2904 2905 2906 2907 2908 2909 2910 2911
	/*
	 * Use pte_alloc() instead of pte_alloc_map().  We can't run
	 * pte_offset_map() on pmds where a huge pmd might be created
	 * from a different thread.
	 *
	 * pte_alloc_map() is safe to use under down_write(mmap_sem) or when
	 * parallel threads are excluded by other means.
	 *
	 * Here we only have down_read(mmap_sem).
	 */
J
Jan Kara 已提交
2912
	if (pte_alloc(vma->vm_mm, vmf->pmd, vmf->address))
2913 2914 2915
		return VM_FAULT_OOM;

	/* See the comment in pte_alloc_one_map() */
J
Jan Kara 已提交
2916
	if (unlikely(pmd_trans_unstable(vmf->pmd)))
2917 2918
		return 0;

2919
	/* Use the zero-page for reads */
J
Jan Kara 已提交
2920
	if (!(vmf->flags & FAULT_FLAG_WRITE) &&
K
Kirill A. Shutemov 已提交
2921
			!mm_forbids_zeropage(vma->vm_mm)) {
J
Jan Kara 已提交
2922
		entry = pte_mkspecial(pfn_pte(my_zero_pfn(vmf->address),
H
Hugh Dickins 已提交
2923
						vma->vm_page_prot));
J
Jan Kara 已提交
2924 2925 2926
		vmf->pte = pte_offset_map_lock(vma->vm_mm, vmf->pmd,
				vmf->address, &vmf->ptl);
		if (!pte_none(*vmf->pte))
H
Hugh Dickins 已提交
2927
			goto unlock;
2928 2929
		/* Deliver the page fault to userland, check inside PT lock */
		if (userfaultfd_missing(vma)) {
J
Jan Kara 已提交
2930 2931
			pte_unmap_unlock(vmf->pte, vmf->ptl);
			return handle_userfault(vmf, VM_UFFD_MISSING);
2932
		}
H
Hugh Dickins 已提交
2933 2934 2935
		goto setpte;
	}

N
Nick Piggin 已提交
2936 2937 2938
	/* Allocate our own private page. */
	if (unlikely(anon_vma_prepare(vma)))
		goto oom;
J
Jan Kara 已提交
2939
	page = alloc_zeroed_user_highpage_movable(vma, vmf->address);
N
Nick Piggin 已提交
2940 2941
	if (!page)
		goto oom;
2942

K
Kirill A. Shutemov 已提交
2943
	if (mem_cgroup_try_charge(page, vma->vm_mm, GFP_KERNEL, &memcg, false))
2944 2945
		goto oom_free_page;

2946 2947 2948 2949 2950
	/*
	 * The memory barrier inside __SetPageUptodate makes sure that
	 * preceeding stores to the page contents become visible before
	 * the set_pte_at() write.
	 */
N
Nick Piggin 已提交
2951
	__SetPageUptodate(page);
2952

N
Nick Piggin 已提交
2953
	entry = mk_pte(page, vma->vm_page_prot);
H
Hugh Dickins 已提交
2954 2955
	if (vma->vm_flags & VM_WRITE)
		entry = pte_mkwrite(pte_mkdirty(entry));
L
Linus Torvalds 已提交
2956

J
Jan Kara 已提交
2957 2958 2959
	vmf->pte = pte_offset_map_lock(vma->vm_mm, vmf->pmd, vmf->address,
			&vmf->ptl);
	if (!pte_none(*vmf->pte))
N
Nick Piggin 已提交
2960
		goto release;
H
Hugh Dickins 已提交
2961

2962 2963
	/* Deliver the page fault to userland, check inside PT lock */
	if (userfaultfd_missing(vma)) {
J
Jan Kara 已提交
2964
		pte_unmap_unlock(vmf->pte, vmf->ptl);
2965
		mem_cgroup_cancel_charge(page, memcg, false);
2966
		put_page(page);
J
Jan Kara 已提交
2967
		return handle_userfault(vmf, VM_UFFD_MISSING);
2968 2969
	}

K
Kirill A. Shutemov 已提交
2970
	inc_mm_counter_fast(vma->vm_mm, MM_ANONPAGES);
J
Jan Kara 已提交
2971
	page_add_new_anon_rmap(page, vma, vmf->address, false);
2972
	mem_cgroup_commit_charge(page, memcg, false, false);
2973
	lru_cache_add_active_or_unevictable(page, vma);
H
Hugh Dickins 已提交
2974
setpte:
J
Jan Kara 已提交
2975
	set_pte_at(vma->vm_mm, vmf->address, vmf->pte, entry);
L
Linus Torvalds 已提交
2976 2977

	/* No need to invalidate - it was non-present before */
J
Jan Kara 已提交
2978
	update_mmu_cache(vma, vmf->address, vmf->pte);
2979
unlock:
J
Jan Kara 已提交
2980
	pte_unmap_unlock(vmf->pte, vmf->ptl);
N
Nick Piggin 已提交
2981
	return 0;
2982
release:
2983
	mem_cgroup_cancel_charge(page, memcg, false);
2984
	put_page(page);
2985
	goto unlock;
2986
oom_free_page:
2987
	put_page(page);
2988
oom:
L
Linus Torvalds 已提交
2989 2990 2991
	return VM_FAULT_OOM;
}

2992 2993 2994 2995 2996
/*
 * The mmap_sem must have been held on entry, and may have been
 * released depending on flags and vma->vm_ops->fault() return value.
 * See filemap_fault() and __lock_page_retry().
 */
J
Jan Kara 已提交
2997
static int __do_fault(struct vm_fault *vmf)
2998
{
J
Jan Kara 已提交
2999
	struct vm_area_struct *vma = vmf->vma;
3000 3001
	int ret;

3002
	ret = vma->vm_ops->fault(vmf);
3003
	if (unlikely(ret & (VM_FAULT_ERROR | VM_FAULT_NOPAGE | VM_FAULT_RETRY |
3004
			    VM_FAULT_DONE_COW)))
3005
		return ret;
3006

3007
	if (unlikely(PageHWPoison(vmf->page))) {
3008
		if (ret & VM_FAULT_LOCKED)
3009 3010
			unlock_page(vmf->page);
		put_page(vmf->page);
J
Jan Kara 已提交
3011
		vmf->page = NULL;
3012 3013 3014 3015
		return VM_FAULT_HWPOISON;
	}

	if (unlikely(!(ret & VM_FAULT_LOCKED)))
3016
		lock_page(vmf->page);
3017
	else
3018
		VM_BUG_ON_PAGE(!PageLocked(vmf->page), vmf->page);
3019 3020 3021 3022

	return ret;
}

3023 3024 3025 3026 3027 3028 3029 3030 3031 3032 3033
/*
 * The ordering of these checks is important for pmds with _PAGE_DEVMAP set.
 * If we check pmd_trans_unstable() first we will trip the bad_pmd() check
 * inside of pmd_none_or_trans_huge_or_clear_bad(). This will end up correctly
 * returning 1 but not before it spams dmesg with the pmd_clear_bad() output.
 */
static int pmd_devmap_trans_unstable(pmd_t *pmd)
{
	return pmd_devmap(*pmd) || pmd_trans_unstable(pmd);
}

J
Jan Kara 已提交
3034
static int pte_alloc_one_map(struct vm_fault *vmf)
3035
{
J
Jan Kara 已提交
3036
	struct vm_area_struct *vma = vmf->vma;
3037

J
Jan Kara 已提交
3038
	if (!pmd_none(*vmf->pmd))
3039
		goto map_pte;
J
Jan Kara 已提交
3040 3041 3042 3043
	if (vmf->prealloc_pte) {
		vmf->ptl = pmd_lock(vma->vm_mm, vmf->pmd);
		if (unlikely(!pmd_none(*vmf->pmd))) {
			spin_unlock(vmf->ptl);
3044 3045 3046 3047
			goto map_pte;
		}

		atomic_long_inc(&vma->vm_mm->nr_ptes);
J
Jan Kara 已提交
3048 3049
		pmd_populate(vma->vm_mm, vmf->pmd, vmf->prealloc_pte);
		spin_unlock(vmf->ptl);
3050
		vmf->prealloc_pte = NULL;
J
Jan Kara 已提交
3051
	} else if (unlikely(pte_alloc(vma->vm_mm, vmf->pmd, vmf->address))) {
3052 3053 3054 3055 3056
		return VM_FAULT_OOM;
	}
map_pte:
	/*
	 * If a huge pmd materialized under us just retry later.  Use
3057 3058 3059 3060 3061 3062 3063 3064
	 * pmd_trans_unstable() via pmd_devmap_trans_unstable() instead of
	 * pmd_trans_huge() to ensure the pmd didn't become pmd_trans_huge
	 * under us and then back to pmd_none, as a result of MADV_DONTNEED
	 * running immediately after a huge pmd fault in a different thread of
	 * this mm, in turn leading to a misleading pmd_trans_huge() retval.
	 * All we have to ensure is that it is a regular pmd that we can walk
	 * with pte_offset_map() and we can do that through an atomic read in
	 * C, which is what pmd_trans_unstable() provides.
3065
	 */
3066
	if (pmd_devmap_trans_unstable(vmf->pmd))
3067 3068
		return VM_FAULT_NOPAGE;

3069 3070 3071 3072 3073 3074 3075 3076 3077
	/*
	 * At this point we know that our vmf->pmd points to a page of ptes
	 * and it cannot become pmd_none(), pmd_devmap() or pmd_trans_huge()
	 * for the duration of the fault.  If a racing MADV_DONTNEED runs and
	 * we zap the ptes pointed to by our vmf->pmd, the vmf->ptl will still
	 * be valid and we will re-check to make sure the vmf->pte isn't
	 * pte_none() under vmf->ptl protection when we return to
	 * alloc_set_pte().
	 */
J
Jan Kara 已提交
3078 3079
	vmf->pte = pte_offset_map_lock(vma->vm_mm, vmf->pmd, vmf->address,
			&vmf->ptl);
3080 3081 3082
	return 0;
}

3083
#ifdef CONFIG_TRANSPARENT_HUGE_PAGECACHE
K
Kirill A. Shutemov 已提交
3084 3085 3086 3087 3088 3089 3090 3091 3092 3093 3094 3095 3096

#define HPAGE_CACHE_INDEX_MASK (HPAGE_PMD_NR - 1)
static inline bool transhuge_vma_suitable(struct vm_area_struct *vma,
		unsigned long haddr)
{
	if (((vma->vm_start >> PAGE_SHIFT) & HPAGE_CACHE_INDEX_MASK) !=
			(vma->vm_pgoff & HPAGE_CACHE_INDEX_MASK))
		return false;
	if (haddr < vma->vm_start || haddr + HPAGE_PMD_SIZE > vma->vm_end)
		return false;
	return true;
}

J
Jan Kara 已提交
3097
static void deposit_prealloc_pte(struct vm_fault *vmf)
3098
{
J
Jan Kara 已提交
3099
	struct vm_area_struct *vma = vmf->vma;
3100

J
Jan Kara 已提交
3101
	pgtable_trans_huge_deposit(vma->vm_mm, vmf->pmd, vmf->prealloc_pte);
3102 3103 3104 3105 3106
	/*
	 * We are going to consume the prealloc table,
	 * count that as nr_ptes.
	 */
	atomic_long_inc(&vma->vm_mm->nr_ptes);
3107
	vmf->prealloc_pte = NULL;
3108 3109
}

J
Jan Kara 已提交
3110
static int do_set_pmd(struct vm_fault *vmf, struct page *page)
K
Kirill A. Shutemov 已提交
3111
{
J
Jan Kara 已提交
3112 3113 3114
	struct vm_area_struct *vma = vmf->vma;
	bool write = vmf->flags & FAULT_FLAG_WRITE;
	unsigned long haddr = vmf->address & HPAGE_PMD_MASK;
K
Kirill A. Shutemov 已提交
3115 3116 3117 3118 3119 3120 3121 3122 3123
	pmd_t entry;
	int i, ret;

	if (!transhuge_vma_suitable(vma, haddr))
		return VM_FAULT_FALLBACK;

	ret = VM_FAULT_FALLBACK;
	page = compound_head(page);

3124 3125 3126 3127
	/*
	 * Archs like ppc64 need additonal space to store information
	 * related to pte entry. Use the preallocated table for that.
	 */
J
Jan Kara 已提交
3128 3129 3130
	if (arch_needs_pgtable_deposit() && !vmf->prealloc_pte) {
		vmf->prealloc_pte = pte_alloc_one(vma->vm_mm, vmf->address);
		if (!vmf->prealloc_pte)
3131 3132 3133 3134
			return VM_FAULT_OOM;
		smp_wmb(); /* See comment in __pte_alloc() */
	}

J
Jan Kara 已提交
3135 3136
	vmf->ptl = pmd_lock(vma->vm_mm, vmf->pmd);
	if (unlikely(!pmd_none(*vmf->pmd)))
K
Kirill A. Shutemov 已提交
3137 3138 3139 3140 3141 3142 3143 3144 3145 3146 3147
		goto out;

	for (i = 0; i < HPAGE_PMD_NR; i++)
		flush_icache_page(vma, page + i);

	entry = mk_huge_pmd(page, vma->vm_page_prot);
	if (write)
		entry = maybe_pmd_mkwrite(pmd_mkdirty(entry), vma);

	add_mm_counter(vma->vm_mm, MM_FILEPAGES, HPAGE_PMD_NR);
	page_add_file_rmap(page, true);
3148 3149 3150 3151
	/*
	 * deposit and withdraw with pmd lock held
	 */
	if (arch_needs_pgtable_deposit())
J
Jan Kara 已提交
3152
		deposit_prealloc_pte(vmf);
K
Kirill A. Shutemov 已提交
3153

J
Jan Kara 已提交
3154
	set_pmd_at(vma->vm_mm, haddr, vmf->pmd, entry);
K
Kirill A. Shutemov 已提交
3155

J
Jan Kara 已提交
3156
	update_mmu_cache_pmd(vma, haddr, vmf->pmd);
K
Kirill A. Shutemov 已提交
3157 3158 3159

	/* fault is handled */
	ret = 0;
3160
	count_vm_event(THP_FILE_MAPPED);
K
Kirill A. Shutemov 已提交
3161
out:
J
Jan Kara 已提交
3162
	spin_unlock(vmf->ptl);
K
Kirill A. Shutemov 已提交
3163 3164 3165
	return ret;
}
#else
J
Jan Kara 已提交
3166
static int do_set_pmd(struct vm_fault *vmf, struct page *page)
K
Kirill A. Shutemov 已提交
3167 3168 3169 3170 3171 3172
{
	BUILD_BUG();
	return 0;
}
#endif

3173
/**
3174 3175
 * alloc_set_pte - setup new PTE entry for given page and add reverse page
 * mapping. If needed, the fucntion allocates page table or use pre-allocated.
3176
 *
J
Jan Kara 已提交
3177
 * @vmf: fault environment
3178
 * @memcg: memcg to charge page (only for private mappings)
3179 3180
 * @page: page to map
 *
J
Jan Kara 已提交
3181 3182
 * Caller must take care of unlocking vmf->ptl, if vmf->pte is non-NULL on
 * return.
3183 3184 3185 3186
 *
 * Target users are page handler itself and implementations of
 * vm_ops->map_pages.
 */
J
Jan Kara 已提交
3187
int alloc_set_pte(struct vm_fault *vmf, struct mem_cgroup *memcg,
3188
		struct page *page)
3189
{
J
Jan Kara 已提交
3190 3191
	struct vm_area_struct *vma = vmf->vma;
	bool write = vmf->flags & FAULT_FLAG_WRITE;
3192
	pte_t entry;
K
Kirill A. Shutemov 已提交
3193 3194
	int ret;

J
Jan Kara 已提交
3195
	if (pmd_none(*vmf->pmd) && PageTransCompound(page) &&
3196
			IS_ENABLED(CONFIG_TRANSPARENT_HUGE_PAGECACHE)) {
K
Kirill A. Shutemov 已提交
3197 3198 3199
		/* THP on COW? */
		VM_BUG_ON_PAGE(memcg, page);

J
Jan Kara 已提交
3200
		ret = do_set_pmd(vmf, page);
K
Kirill A. Shutemov 已提交
3201
		if (ret != VM_FAULT_FALLBACK)
H
Hugh Dickins 已提交
3202
			return ret;
K
Kirill A. Shutemov 已提交
3203
	}
3204

J
Jan Kara 已提交
3205 3206
	if (!vmf->pte) {
		ret = pte_alloc_one_map(vmf);
3207
		if (ret)
H
Hugh Dickins 已提交
3208
			return ret;
3209 3210 3211
	}

	/* Re-check under ptl */
H
Hugh Dickins 已提交
3212 3213
	if (unlikely(!pte_none(*vmf->pte)))
		return VM_FAULT_NOPAGE;
3214

3215 3216 3217 3218
	flush_icache_page(vma, page);
	entry = mk_pte(page, vma->vm_page_prot);
	if (write)
		entry = maybe_mkwrite(pte_mkdirty(entry), vma);
K
Kirill A. Shutemov 已提交
3219 3220
	/* copy-on-write page */
	if (write && !(vma->vm_flags & VM_SHARED)) {
3221
		inc_mm_counter_fast(vma->vm_mm, MM_ANONPAGES);
J
Jan Kara 已提交
3222
		page_add_new_anon_rmap(page, vma, vmf->address, false);
3223 3224
		mem_cgroup_commit_charge(page, memcg, false, false);
		lru_cache_add_active_or_unevictable(page, vma);
3225
	} else {
3226
		inc_mm_counter_fast(vma->vm_mm, mm_counter_file(page));
K
Kirill A. Shutemov 已提交
3227
		page_add_file_rmap(page, false);
3228
	}
J
Jan Kara 已提交
3229
	set_pte_at(vma->vm_mm, vmf->address, vmf->pte, entry);
3230 3231

	/* no need to invalidate: a not-present page won't be cached */
J
Jan Kara 已提交
3232
	update_mmu_cache(vma, vmf->address, vmf->pte);
3233

H
Hugh Dickins 已提交
3234
	return 0;
3235 3236
}

3237 3238 3239 3240 3241 3242 3243 3244 3245 3246 3247 3248 3249 3250 3251 3252 3253 3254 3255 3256 3257 3258 3259 3260 3261 3262 3263 3264 3265 3266 3267 3268

/**
 * finish_fault - finish page fault once we have prepared the page to fault
 *
 * @vmf: structure describing the fault
 *
 * This function handles all that is needed to finish a page fault once the
 * page to fault in is prepared. It handles locking of PTEs, inserts PTE for
 * given page, adds reverse page mapping, handles memcg charges and LRU
 * addition. The function returns 0 on success, VM_FAULT_ code in case of
 * error.
 *
 * The function expects the page to be locked and on success it consumes a
 * reference of a page being mapped (for the PTE which maps it).
 */
int finish_fault(struct vm_fault *vmf)
{
	struct page *page;
	int ret;

	/* Did we COW the page? */
	if ((vmf->flags & FAULT_FLAG_WRITE) &&
	    !(vmf->vma->vm_flags & VM_SHARED))
		page = vmf->cow_page;
	else
		page = vmf->page;
	ret = alloc_set_pte(vmf, vmf->memcg, page);
	if (vmf->pte)
		pte_unmap_unlock(vmf->pte, vmf->ptl);
	return ret;
}

3269 3270
static unsigned long fault_around_bytes __read_mostly =
	rounddown_pow_of_two(65536);
3271 3272 3273

#ifdef CONFIG_DEBUG_FS
static int fault_around_bytes_get(void *data, u64 *val)
3274
{
3275
	*val = fault_around_bytes;
3276 3277 3278
	return 0;
}

3279 3280 3281 3282 3283
/*
 * fault_around_pages() and fault_around_mask() expects fault_around_bytes
 * rounded down to nearest page order. It's what do_fault_around() expects to
 * see.
 */
3284
static int fault_around_bytes_set(void *data, u64 val)
3285
{
3286
	if (val / PAGE_SIZE > PTRS_PER_PTE)
3287
		return -EINVAL;
3288 3289 3290 3291
	if (val > PAGE_SIZE)
		fault_around_bytes = rounddown_pow_of_two(val);
	else
		fault_around_bytes = PAGE_SIZE; /* rounddown_pow_of_two(0) is undefined */
3292 3293
	return 0;
}
3294
DEFINE_DEBUGFS_ATTRIBUTE(fault_around_bytes_fops,
3295
		fault_around_bytes_get, fault_around_bytes_set, "%llu\n");
3296 3297 3298 3299 3300

static int __init fault_around_debugfs(void)
{
	void *ret;

3301
	ret = debugfs_create_file_unsafe("fault_around_bytes", 0644, NULL, NULL,
3302
			&fault_around_bytes_fops);
3303
	if (!ret)
3304
		pr_warn("Failed to create fault_around_bytes in debugfs");
3305 3306 3307 3308
	return 0;
}
late_initcall(fault_around_debugfs);
#endif
3309

3310 3311 3312 3313 3314 3315 3316 3317 3318 3319 3320 3321 3322 3323 3324 3325 3326 3327 3328 3329 3330 3331 3332
/*
 * do_fault_around() tries to map few pages around the fault address. The hope
 * is that the pages will be needed soon and this will lower the number of
 * faults to handle.
 *
 * It uses vm_ops->map_pages() to map the pages, which skips the page if it's
 * not ready to be mapped: not up-to-date, locked, etc.
 *
 * This function is called with the page table lock taken. In the split ptlock
 * case the page table lock only protects only those entries which belong to
 * the page table corresponding to the fault address.
 *
 * This function doesn't cross the VMA boundaries, in order to call map_pages()
 * only once.
 *
 * fault_around_pages() defines how many pages we'll try to map.
 * do_fault_around() expects it to return a power of two less than or equal to
 * PTRS_PER_PTE.
 *
 * The virtual address of the area that we map is naturally aligned to the
 * fault_around_pages() value (and therefore to page order).  This way it's
 * easier to guarantee that we don't cross page table boundaries.
 */
3333
static int do_fault_around(struct vm_fault *vmf)
3334
{
J
Jan Kara 已提交
3335
	unsigned long address = vmf->address, nr_pages, mask;
3336
	pgoff_t start_pgoff = vmf->pgoff;
K
Kirill A. Shutemov 已提交
3337
	pgoff_t end_pgoff;
3338
	int off, ret = 0;
3339

3340
	nr_pages = READ_ONCE(fault_around_bytes) >> PAGE_SHIFT;
3341 3342
	mask = ~(nr_pages * PAGE_SIZE - 1) & PAGE_MASK;

J
Jan Kara 已提交
3343 3344
	vmf->address = max(address & mask, vmf->vma->vm_start);
	off = ((address - vmf->address) >> PAGE_SHIFT) & (PTRS_PER_PTE - 1);
K
Kirill A. Shutemov 已提交
3345
	start_pgoff -= off;
3346 3347

	/*
K
Kirill A. Shutemov 已提交
3348 3349
	 *  end_pgoff is either end of page table or end of vma
	 *  or fault_around_pages() from start_pgoff, depending what is nearest.
3350
	 */
K
Kirill A. Shutemov 已提交
3351
	end_pgoff = start_pgoff -
J
Jan Kara 已提交
3352
		((vmf->address >> PAGE_SHIFT) & (PTRS_PER_PTE - 1)) +
3353
		PTRS_PER_PTE - 1;
J
Jan Kara 已提交
3354
	end_pgoff = min3(end_pgoff, vma_pages(vmf->vma) + vmf->vma->vm_pgoff - 1,
K
Kirill A. Shutemov 已提交
3355
			start_pgoff + nr_pages - 1);
3356

J
Jan Kara 已提交
3357 3358 3359 3360
	if (pmd_none(*vmf->pmd)) {
		vmf->prealloc_pte = pte_alloc_one(vmf->vma->vm_mm,
						  vmf->address);
		if (!vmf->prealloc_pte)
3361
			goto out;
3362
		smp_wmb(); /* See comment in __pte_alloc() */
3363 3364
	}

J
Jan Kara 已提交
3365
	vmf->vma->vm_ops->map_pages(vmf, start_pgoff, end_pgoff);
3366 3367

	/* Huge page is mapped? Page fault is solved */
J
Jan Kara 已提交
3368
	if (pmd_trans_huge(*vmf->pmd)) {
3369 3370 3371 3372 3373
		ret = VM_FAULT_NOPAGE;
		goto out;
	}

	/* ->map_pages() haven't done anything useful. Cold page cache? */
J
Jan Kara 已提交
3374
	if (!vmf->pte)
3375 3376 3377
		goto out;

	/* check if the page fault is solved */
J
Jan Kara 已提交
3378 3379
	vmf->pte -= (vmf->address >> PAGE_SHIFT) - (address >> PAGE_SHIFT);
	if (!pte_none(*vmf->pte))
3380
		ret = VM_FAULT_NOPAGE;
J
Jan Kara 已提交
3381
	pte_unmap_unlock(vmf->pte, vmf->ptl);
K
Kirill A. Shutemov 已提交
3382
out:
J
Jan Kara 已提交
3383 3384
	vmf->address = address;
	vmf->pte = NULL;
3385
	return ret;
3386 3387
}

3388
static int do_read_fault(struct vm_fault *vmf)
3389
{
J
Jan Kara 已提交
3390
	struct vm_area_struct *vma = vmf->vma;
3391 3392 3393 3394 3395 3396 3397
	int ret = 0;

	/*
	 * Let's call ->map_pages() first and use ->fault() as fallback
	 * if page by the offset is not ready to be mapped (cold cache or
	 * something).
	 */
3398
	if (vma->vm_ops->map_pages && fault_around_bytes >> PAGE_SHIFT > 1) {
3399
		ret = do_fault_around(vmf);
3400 3401
		if (ret)
			return ret;
3402
	}
3403

J
Jan Kara 已提交
3404
	ret = __do_fault(vmf);
3405 3406 3407
	if (unlikely(ret & (VM_FAULT_ERROR | VM_FAULT_NOPAGE | VM_FAULT_RETRY)))
		return ret;

3408
	ret |= finish_fault(vmf);
J
Jan Kara 已提交
3409
	unlock_page(vmf->page);
3410
	if (unlikely(ret & (VM_FAULT_ERROR | VM_FAULT_NOPAGE | VM_FAULT_RETRY)))
J
Jan Kara 已提交
3411
		put_page(vmf->page);
3412 3413 3414
	return ret;
}

3415
static int do_cow_fault(struct vm_fault *vmf)
3416
{
J
Jan Kara 已提交
3417
	struct vm_area_struct *vma = vmf->vma;
3418 3419 3420 3421 3422
	int ret;

	if (unlikely(anon_vma_prepare(vma)))
		return VM_FAULT_OOM;

J
Jan Kara 已提交
3423 3424
	vmf->cow_page = alloc_page_vma(GFP_HIGHUSER_MOVABLE, vma, vmf->address);
	if (!vmf->cow_page)
3425 3426
		return VM_FAULT_OOM;

J
Jan Kara 已提交
3427
	if (mem_cgroup_try_charge(vmf->cow_page, vma->vm_mm, GFP_KERNEL,
3428
				&vmf->memcg, false)) {
J
Jan Kara 已提交
3429
		put_page(vmf->cow_page);
3430 3431 3432
		return VM_FAULT_OOM;
	}

J
Jan Kara 已提交
3433
	ret = __do_fault(vmf);
3434 3435
	if (unlikely(ret & (VM_FAULT_ERROR | VM_FAULT_NOPAGE | VM_FAULT_RETRY)))
		goto uncharge_out;
3436 3437
	if (ret & VM_FAULT_DONE_COW)
		return ret;
3438

3439
	copy_user_highpage(vmf->cow_page, vmf->page, vmf->address, vma);
J
Jan Kara 已提交
3440
	__SetPageUptodate(vmf->cow_page);
3441

3442
	ret |= finish_fault(vmf);
3443 3444
	unlock_page(vmf->page);
	put_page(vmf->page);
3445 3446
	if (unlikely(ret & (VM_FAULT_ERROR | VM_FAULT_NOPAGE | VM_FAULT_RETRY)))
		goto uncharge_out;
3447 3448
	return ret;
uncharge_out:
3449
	mem_cgroup_cancel_charge(vmf->cow_page, vmf->memcg, false);
J
Jan Kara 已提交
3450
	put_page(vmf->cow_page);
3451 3452 3453
	return ret;
}

3454
static int do_shared_fault(struct vm_fault *vmf)
L
Linus Torvalds 已提交
3455
{
J
Jan Kara 已提交
3456
	struct vm_area_struct *vma = vmf->vma;
3457
	int ret, tmp;
3458

J
Jan Kara 已提交
3459
	ret = __do_fault(vmf);
3460
	if (unlikely(ret & (VM_FAULT_ERROR | VM_FAULT_NOPAGE | VM_FAULT_RETRY)))
3461
		return ret;
L
Linus Torvalds 已提交
3462 3463

	/*
3464 3465
	 * Check if the backing address space wants to know that the page is
	 * about to become writable
L
Linus Torvalds 已提交
3466
	 */
3467
	if (vma->vm_ops->page_mkwrite) {
J
Jan Kara 已提交
3468
		unlock_page(vmf->page);
3469
		tmp = do_page_mkwrite(vmf);
3470 3471
		if (unlikely(!tmp ||
				(tmp & (VM_FAULT_ERROR | VM_FAULT_NOPAGE)))) {
J
Jan Kara 已提交
3472
			put_page(vmf->page);
3473
			return tmp;
3474
		}
3475 3476
	}

3477
	ret |= finish_fault(vmf);
3478 3479
	if (unlikely(ret & (VM_FAULT_ERROR | VM_FAULT_NOPAGE |
					VM_FAULT_RETRY))) {
J
Jan Kara 已提交
3480 3481
		unlock_page(vmf->page);
		put_page(vmf->page);
3482
		return ret;
L
Linus Torvalds 已提交
3483
	}
N
Nick Piggin 已提交
3484

3485
	fault_dirty_shared_page(vma, vmf->page);
3486
	return ret;
3487
}
3488

3489 3490 3491 3492 3493 3494
/*
 * We enter with non-exclusive mmap_sem (to exclude vma changes,
 * but allow concurrent faults).
 * The mmap_sem may have been released depending on flags and our
 * return value.  See filemap_fault() and __lock_page_or_retry().
 */
J
Jan Kara 已提交
3495
static int do_fault(struct vm_fault *vmf)
3496
{
J
Jan Kara 已提交
3497
	struct vm_area_struct *vma = vmf->vma;
H
Hugh Dickins 已提交
3498
	int ret;
3499

3500 3501
	/* The VMA was not fully populated on mmap() or missing VM_DONTEXPAND */
	if (!vma->vm_ops->fault)
H
Hugh Dickins 已提交
3502 3503 3504 3505 3506 3507 3508 3509 3510 3511 3512
		ret = VM_FAULT_SIGBUS;
	else if (!(vmf->flags & FAULT_FLAG_WRITE))
		ret = do_read_fault(vmf);
	else if (!(vma->vm_flags & VM_SHARED))
		ret = do_cow_fault(vmf);
	else
		ret = do_shared_fault(vmf);

	/* preallocated pagetable is unused: free it */
	if (vmf->prealloc_pte) {
		pte_free(vma->vm_mm, vmf->prealloc_pte);
3513
		vmf->prealloc_pte = NULL;
H
Hugh Dickins 已提交
3514 3515
	}
	return ret;
3516 3517
}

3518
static int numa_migrate_prep(struct page *page, struct vm_area_struct *vma,
3519 3520
				unsigned long addr, int page_nid,
				int *flags)
3521 3522 3523 3524
{
	get_page(page);

	count_vm_numa_event(NUMA_HINT_FAULTS);
3525
	if (page_nid == numa_node_id()) {
3526
		count_vm_numa_event(NUMA_HINT_FAULTS_LOCAL);
3527 3528
		*flags |= TNF_FAULT_LOCAL;
	}
3529 3530 3531 3532

	return mpol_misplaced(page, vma, addr);
}

J
Jan Kara 已提交
3533
static int do_numa_page(struct vm_fault *vmf)
3534
{
J
Jan Kara 已提交
3535
	struct vm_area_struct *vma = vmf->vma;
3536
	struct page *page = NULL;
3537
	int page_nid = -1;
3538
	int last_cpupid;
3539
	int target_nid;
3540
	bool migrated = false;
3541
	pte_t pte;
3542
	bool was_writable = pte_savedwrite(vmf->orig_pte);
3543
	int flags = 0;
3544 3545

	/*
T
Tobin C Harding 已提交
3546 3547 3548 3549
	 * The "pte" at this point cannot be used safely without
	 * validation through pte_unmap_same(). It's of NUMA type but
	 * the pfn may be screwed if the read is non atomic.
	 */
J
Jan Kara 已提交
3550 3551
	vmf->ptl = pte_lockptr(vma->vm_mm, vmf->pmd);
	spin_lock(vmf->ptl);
3552
	if (unlikely(!pte_same(*vmf->pte, vmf->orig_pte))) {
J
Jan Kara 已提交
3553
		pte_unmap_unlock(vmf->pte, vmf->ptl);
3554 3555 3556
		goto out;
	}

3557 3558 3559 3560 3561
	/*
	 * Make it present again, Depending on how arch implementes non
	 * accessible ptes, some can allow access by kernel mode.
	 */
	pte = ptep_modify_prot_start(vma->vm_mm, vmf->address, vmf->pte);
3562 3563
	pte = pte_modify(pte, vma->vm_page_prot);
	pte = pte_mkyoung(pte);
3564 3565
	if (was_writable)
		pte = pte_mkwrite(pte);
3566
	ptep_modify_prot_commit(vma->vm_mm, vmf->address, vmf->pte, pte);
J
Jan Kara 已提交
3567
	update_mmu_cache(vma, vmf->address, vmf->pte);
3568

J
Jan Kara 已提交
3569
	page = vm_normal_page(vma, vmf->address, pte);
3570
	if (!page) {
J
Jan Kara 已提交
3571
		pte_unmap_unlock(vmf->pte, vmf->ptl);
3572 3573 3574
		return 0;
	}

3575 3576
	/* TODO: handle PTE-mapped THP */
	if (PageCompound(page)) {
J
Jan Kara 已提交
3577
		pte_unmap_unlock(vmf->pte, vmf->ptl);
3578 3579 3580
		return 0;
	}

3581
	/*
3582 3583 3584 3585 3586 3587
	 * Avoid grouping on RO pages in general. RO pages shouldn't hurt as
	 * much anyway since they can be in shared cache state. This misses
	 * the case where a mapping is writable but the process never writes
	 * to it but pte_write gets cleared during protection updates and
	 * pte_dirty has unpredictable behaviour between PTE scan updates,
	 * background writeback, dirty balancing and application behaviour.
3588
	 */
3589
	if (!pte_write(pte))
3590 3591
		flags |= TNF_NO_GROUP;

3592 3593 3594 3595 3596 3597 3598
	/*
	 * Flag if the page is shared between multiple address spaces. This
	 * is later used when determining whether to group tasks together
	 */
	if (page_mapcount(page) > 1 && (vma->vm_flags & VM_SHARED))
		flags |= TNF_SHARED;

3599
	last_cpupid = page_cpupid_last(page);
3600
	page_nid = page_to_nid(page);
J
Jan Kara 已提交
3601
	target_nid = numa_migrate_prep(page, vma, vmf->address, page_nid,
K
Kirill A. Shutemov 已提交
3602
			&flags);
J
Jan Kara 已提交
3603
	pte_unmap_unlock(vmf->pte, vmf->ptl);
3604 3605 3606 3607 3608 3609
	if (target_nid == -1) {
		put_page(page);
		goto out;
	}

	/* Migrate to the requested node */
3610
	migrated = migrate_misplaced_page(page, vma, target_nid);
3611
	if (migrated) {
3612
		page_nid = target_nid;
3613
		flags |= TNF_MIGRATED;
3614 3615
	} else
		flags |= TNF_MIGRATE_FAIL;
3616 3617

out:
3618
	if (page_nid != -1)
3619
		task_numa_fault(last_cpupid, page_nid, 1, flags);
3620 3621 3622
	return 0;
}

3623
static inline int create_huge_pmd(struct vm_fault *vmf)
M
Matthew Wilcox 已提交
3624
{
3625
	if (vma_is_anonymous(vmf->vma))
J
Jan Kara 已提交
3626
		return do_huge_pmd_anonymous_page(vmf);
3627
	if (vmf->vma->vm_ops->huge_fault)
3628
		return vmf->vma->vm_ops->huge_fault(vmf, PE_SIZE_PMD);
M
Matthew Wilcox 已提交
3629 3630 3631
	return VM_FAULT_FALLBACK;
}

J
Jan Kara 已提交
3632
static int wp_huge_pmd(struct vm_fault *vmf, pmd_t orig_pmd)
M
Matthew Wilcox 已提交
3633
{
J
Jan Kara 已提交
3634 3635
	if (vma_is_anonymous(vmf->vma))
		return do_huge_pmd_wp_page(vmf, orig_pmd);
3636
	if (vmf->vma->vm_ops->huge_fault)
3637
		return vmf->vma->vm_ops->huge_fault(vmf, PE_SIZE_PMD);
K
Kirill A. Shutemov 已提交
3638 3639

	/* COW handled on pte level: split pmd */
J
Jan Kara 已提交
3640 3641
	VM_BUG_ON_VMA(vmf->vma->vm_flags & VM_SHARED, vmf->vma);
	__split_huge_pmd(vmf->vma, vmf->pmd, vmf->address, false, NULL);
K
Kirill A. Shutemov 已提交
3642

M
Matthew Wilcox 已提交
3643 3644 3645
	return VM_FAULT_FALLBACK;
}

3646 3647 3648 3649 3650
static inline bool vma_is_accessible(struct vm_area_struct *vma)
{
	return vma->vm_flags & (VM_READ | VM_EXEC | VM_WRITE);
}

3651 3652 3653 3654 3655 3656 3657
static int create_huge_pud(struct vm_fault *vmf)
{
#ifdef CONFIG_TRANSPARENT_HUGEPAGE
	/* No support for anonymous transparent PUD pages yet */
	if (vma_is_anonymous(vmf->vma))
		return VM_FAULT_FALLBACK;
	if (vmf->vma->vm_ops->huge_fault)
3658
		return vmf->vma->vm_ops->huge_fault(vmf, PE_SIZE_PUD);
3659 3660 3661 3662 3663 3664 3665 3666 3667 3668 3669
#endif /* CONFIG_TRANSPARENT_HUGEPAGE */
	return VM_FAULT_FALLBACK;
}

static int wp_huge_pud(struct vm_fault *vmf, pud_t orig_pud)
{
#ifdef CONFIG_TRANSPARENT_HUGEPAGE
	/* No support for anonymous transparent PUD pages yet */
	if (vma_is_anonymous(vmf->vma))
		return VM_FAULT_FALLBACK;
	if (vmf->vma->vm_ops->huge_fault)
3670
		return vmf->vma->vm_ops->huge_fault(vmf, PE_SIZE_PUD);
3671 3672 3673 3674
#endif /* CONFIG_TRANSPARENT_HUGEPAGE */
	return VM_FAULT_FALLBACK;
}

L
Linus Torvalds 已提交
3675 3676 3677 3678 3679 3680 3681 3682 3683
/*
 * These routines also need to handle stuff like marking pages dirty
 * and/or accessed for architectures that don't do it in hardware (most
 * RISC architectures).  The early dirtying is also good on the i386.
 *
 * There is also a hook called "update_mmu_cache()" that architectures
 * with external mmu caches can use to update those (ie the Sparc or
 * PowerPC hashed page tables that act as extended TLBs).
 *
3684 3685
 * We enter with non-exclusive mmap_sem (to exclude vma changes, but allow
 * concurrent faults).
3686
 *
3687 3688
 * The mmap_sem may have been released depending on flags and our return value.
 * See filemap_fault() and __lock_page_or_retry().
L
Linus Torvalds 已提交
3689
 */
J
Jan Kara 已提交
3690
static int handle_pte_fault(struct vm_fault *vmf)
L
Linus Torvalds 已提交
3691 3692 3693
{
	pte_t entry;

J
Jan Kara 已提交
3694
	if (unlikely(pmd_none(*vmf->pmd))) {
3695 3696 3697 3698 3699 3700
		/*
		 * Leave __pte_alloc() until later: because vm_ops->fault may
		 * want to allocate huge page, and if we expose page table
		 * for an instant, it will be difficult to retract from
		 * concurrent faults and from rmap lookups.
		 */
J
Jan Kara 已提交
3701
		vmf->pte = NULL;
3702 3703
	} else {
		/* See comment in pte_alloc_one_map() */
3704
		if (pmd_devmap_trans_unstable(vmf->pmd))
3705 3706 3707 3708 3709 3710 3711
			return 0;
		/*
		 * A regular pmd is established and it can't morph into a huge
		 * pmd from under us anymore at this point because we hold the
		 * mmap_sem read mode and khugepaged takes it in write mode.
		 * So now it's safe to run pte_offset_map().
		 */
J
Jan Kara 已提交
3712
		vmf->pte = pte_offset_map(vmf->pmd, vmf->address);
J
Jan Kara 已提交
3713
		vmf->orig_pte = *vmf->pte;
3714 3715 3716 3717 3718 3719 3720 3721 3722 3723

		/*
		 * some architectures can have larger ptes than wordsize,
		 * e.g.ppc44x-defconfig has CONFIG_PTE_64BIT=y and
		 * CONFIG_32BIT=y, so READ_ONCE or ACCESS_ONCE cannot guarantee
		 * atomic accesses.  The code below just needs a consistent
		 * view for the ifs and we later double check anyway with the
		 * ptl lock held. So here a barrier will do.
		 */
		barrier();
J
Jan Kara 已提交
3724
		if (pte_none(vmf->orig_pte)) {
J
Jan Kara 已提交
3725 3726
			pte_unmap(vmf->pte);
			vmf->pte = NULL;
3727
		}
L
Linus Torvalds 已提交
3728 3729
	}

J
Jan Kara 已提交
3730 3731 3732
	if (!vmf->pte) {
		if (vma_is_anonymous(vmf->vma))
			return do_anonymous_page(vmf);
3733
		else
J
Jan Kara 已提交
3734
			return do_fault(vmf);
3735 3736
	}

J
Jan Kara 已提交
3737 3738
	if (!pte_present(vmf->orig_pte))
		return do_swap_page(vmf);
3739

J
Jan Kara 已提交
3740 3741
	if (pte_protnone(vmf->orig_pte) && vma_is_accessible(vmf->vma))
		return do_numa_page(vmf);
3742

J
Jan Kara 已提交
3743 3744
	vmf->ptl = pte_lockptr(vmf->vma->vm_mm, vmf->pmd);
	spin_lock(vmf->ptl);
J
Jan Kara 已提交
3745
	entry = vmf->orig_pte;
J
Jan Kara 已提交
3746
	if (unlikely(!pte_same(*vmf->pte, entry)))
3747
		goto unlock;
J
Jan Kara 已提交
3748
	if (vmf->flags & FAULT_FLAG_WRITE) {
L
Linus Torvalds 已提交
3749
		if (!pte_write(entry))
J
Jan Kara 已提交
3750
			return do_wp_page(vmf);
L
Linus Torvalds 已提交
3751 3752 3753
		entry = pte_mkdirty(entry);
	}
	entry = pte_mkyoung(entry);
J
Jan Kara 已提交
3754 3755 3756
	if (ptep_set_access_flags(vmf->vma, vmf->address, vmf->pte, entry,
				vmf->flags & FAULT_FLAG_WRITE)) {
		update_mmu_cache(vmf->vma, vmf->address, vmf->pte);
3757 3758 3759 3760 3761 3762 3763
	} else {
		/*
		 * This is needed only for protection faults but the arch code
		 * is not yet telling us if this is a protection fault or not.
		 * This still avoids useless tlb flushes for .text page faults
		 * with threads.
		 */
J
Jan Kara 已提交
3764 3765
		if (vmf->flags & FAULT_FLAG_WRITE)
			flush_tlb_fix_spurious_fault(vmf->vma, vmf->address);
3766
	}
3767
unlock:
J
Jan Kara 已提交
3768
	pte_unmap_unlock(vmf->pte, vmf->ptl);
N
Nick Piggin 已提交
3769
	return 0;
L
Linus Torvalds 已提交
3770 3771 3772 3773
}

/*
 * By the time we get here, we already hold the mm semaphore
3774 3775 3776
 *
 * The mmap_sem may have been released depending on flags and our
 * return value.  See filemap_fault() and __lock_page_or_retry().
L
Linus Torvalds 已提交
3777
 */
3778 3779
static int __handle_mm_fault(struct vm_area_struct *vma, unsigned long address,
		unsigned int flags)
L
Linus Torvalds 已提交
3780
{
J
Jan Kara 已提交
3781
	struct vm_fault vmf = {
K
Kirill A. Shutemov 已提交
3782
		.vma = vma,
3783
		.address = address & PAGE_MASK,
K
Kirill A. Shutemov 已提交
3784
		.flags = flags,
3785
		.pgoff = linear_page_index(vma, address),
3786
		.gfp_mask = __get_fault_gfp_mask(vma),
K
Kirill A. Shutemov 已提交
3787
	};
3788
	struct mm_struct *mm = vma->vm_mm;
L
Linus Torvalds 已提交
3789
	pgd_t *pgd;
3790
	p4d_t *p4d;
3791
	int ret;
L
Linus Torvalds 已提交
3792 3793

	pgd = pgd_offset(mm, address);
3794 3795 3796
	p4d = p4d_alloc(mm, pgd, address);
	if (!p4d)
		return VM_FAULT_OOM;
3797

3798
	vmf.pud = pud_alloc(mm, p4d, address);
3799
	if (!vmf.pud)
H
Hugh Dickins 已提交
3800
		return VM_FAULT_OOM;
3801 3802 3803 3804 3805 3806 3807 3808 3809 3810 3811 3812 3813 3814 3815 3816 3817 3818 3819 3820 3821 3822 3823 3824 3825
	if (pud_none(*vmf.pud) && transparent_hugepage_enabled(vma)) {
		ret = create_huge_pud(&vmf);
		if (!(ret & VM_FAULT_FALLBACK))
			return ret;
	} else {
		pud_t orig_pud = *vmf.pud;

		barrier();
		if (pud_trans_huge(orig_pud) || pud_devmap(orig_pud)) {
			unsigned int dirty = flags & FAULT_FLAG_WRITE;

			/* NUMA case for anonymous PUDs would go here */

			if (dirty && !pud_write(orig_pud)) {
				ret = wp_huge_pud(&vmf, orig_pud);
				if (!(ret & VM_FAULT_FALLBACK))
					return ret;
			} else {
				huge_pud_set_accessed(&vmf, orig_pud);
				return 0;
			}
		}
	}

	vmf.pmd = pmd_alloc(mm, vmf.pud, address);
J
Jan Kara 已提交
3826
	if (!vmf.pmd)
H
Hugh Dickins 已提交
3827
		return VM_FAULT_OOM;
J
Jan Kara 已提交
3828
	if (pmd_none(*vmf.pmd) && transparent_hugepage_enabled(vma)) {
3829
		ret = create_huge_pmd(&vmf);
3830 3831
		if (!(ret & VM_FAULT_FALLBACK))
			return ret;
3832
	} else {
J
Jan Kara 已提交
3833
		pmd_t orig_pmd = *vmf.pmd;
3834

3835
		barrier();
3836
		if (pmd_trans_huge(orig_pmd) || pmd_devmap(orig_pmd)) {
3837
			if (pmd_protnone(orig_pmd) && vma_is_accessible(vma))
J
Jan Kara 已提交
3838
				return do_huge_pmd_numa_page(&vmf, orig_pmd);
3839

J
Jan Kara 已提交
3840
			if ((vmf.flags & FAULT_FLAG_WRITE) &&
K
Kirill A. Shutemov 已提交
3841
					!pmd_write(orig_pmd)) {
J
Jan Kara 已提交
3842
				ret = wp_huge_pmd(&vmf, orig_pmd);
3843 3844
				if (!(ret & VM_FAULT_FALLBACK))
					return ret;
3845
			} else {
J
Jan Kara 已提交
3846
				huge_pmd_set_accessed(&vmf, orig_pmd);
3847
				return 0;
3848
			}
3849 3850 3851
		}
	}

J
Jan Kara 已提交
3852
	return handle_pte_fault(&vmf);
L
Linus Torvalds 已提交
3853 3854
}

3855 3856 3857 3858 3859 3860
/*
 * By the time we get here, we already hold the mm semaphore
 *
 * The mmap_sem may have been released depending on flags and our
 * return value.  See filemap_fault() and __lock_page_or_retry().
 */
3861 3862
int handle_mm_fault(struct vm_area_struct *vma, unsigned long address,
		unsigned int flags)
3863 3864 3865 3866 3867 3868
{
	int ret;

	__set_current_state(TASK_RUNNING);

	count_vm_event(PGFAULT);
3869
	count_memcg_event_mm(vma->vm_mm, PGFAULT);
3870 3871 3872 3873 3874 3875 3876 3877 3878

	/* do counter updates before entering really critical section. */
	check_sync_rss_stat(current);

	/*
	 * Enable the memcg OOM handling for faults triggered in user
	 * space.  Kernel faults are handled more gracefully.
	 */
	if (flags & FAULT_FLAG_USER)
3879
		mem_cgroup_oom_enable();
3880

K
Kirill A. Shutemov 已提交
3881 3882 3883 3884 3885 3886 3887 3888 3889
	if (!arch_vma_access_permitted(vma, flags & FAULT_FLAG_WRITE,
					    flags & FAULT_FLAG_INSTRUCTION,
					    flags & FAULT_FLAG_REMOTE))
		return VM_FAULT_SIGSEGV;

	if (unlikely(is_vm_hugetlb_page(vma)))
		ret = hugetlb_fault(vma->vm_mm, vma, address, flags);
	else
		ret = __handle_mm_fault(vma, address, flags);
3890

3891 3892
	if (flags & FAULT_FLAG_USER) {
		mem_cgroup_oom_disable();
T
Tobin C Harding 已提交
3893 3894 3895 3896 3897 3898 3899 3900
		/*
		 * The task may have entered a memcg OOM situation but
		 * if the allocation error was handled gracefully (no
		 * VM_FAULT_OOM), there is no need to kill anything.
		 * Just clean up the OOM state peacefully.
		 */
		if (task_in_memcg_oom(current) && !(ret & VM_FAULT_OOM))
			mem_cgroup_oom_synchronize(false);
3901
	}
3902

3903 3904 3905 3906 3907 3908 3909 3910 3911 3912
	/*
	 * This mm has been already reaped by the oom reaper and so the
	 * refault cannot be trusted in general. Anonymous refaults would
	 * lose data and give a zero page instead e.g. This is especially
	 * problem for use_mm() because regular tasks will just die and
	 * the corrupted data will not be visible anywhere while kthread
	 * will outlive the oom victim and potentially propagate the date
	 * further.
	 */
	if (unlikely((current->flags & PF_KTHREAD) && !(ret & VM_FAULT_ERROR)
3913 3914 3915 3916 3917 3918 3919 3920 3921 3922
				&& test_bit(MMF_UNSTABLE, &vma->vm_mm->flags))) {

		/*
		 * We are going to enforce SIGBUS but the PF path might have
		 * dropped the mmap_sem already so take it again so that
		 * we do not break expectations of all arch specific PF paths
		 * and g-u-p
		 */
		if (ret & VM_FAULT_RETRY)
			down_read(&vma->vm_mm->mmap_sem);
3923
		ret = VM_FAULT_SIGBUS;
3924
	}
3925

3926 3927
	return ret;
}
3928
EXPORT_SYMBOL_GPL(handle_mm_fault);
3929

K
Kirill A. Shutemov 已提交
3930 3931 3932 3933 3934 3935 3936 3937 3938 3939 3940 3941 3942 3943 3944 3945 3946 3947 3948 3949 3950 3951 3952
#ifndef __PAGETABLE_P4D_FOLDED
/*
 * Allocate p4d page table.
 * We've already handled the fast-path in-line.
 */
int __p4d_alloc(struct mm_struct *mm, pgd_t *pgd, unsigned long address)
{
	p4d_t *new = p4d_alloc_one(mm, address);
	if (!new)
		return -ENOMEM;

	smp_wmb(); /* See comment in __pte_alloc */

	spin_lock(&mm->page_table_lock);
	if (pgd_present(*pgd))		/* Another has populated it */
		p4d_free(mm, new);
	else
		pgd_populate(mm, pgd, new);
	spin_unlock(&mm->page_table_lock);
	return 0;
}
#endif /* __PAGETABLE_P4D_FOLDED */

L
Linus Torvalds 已提交
3953 3954 3955
#ifndef __PAGETABLE_PUD_FOLDED
/*
 * Allocate page upper directory.
H
Hugh Dickins 已提交
3956
 * We've already handled the fast-path in-line.
L
Linus Torvalds 已提交
3957
 */
3958
int __pud_alloc(struct mm_struct *mm, p4d_t *p4d, unsigned long address)
L
Linus Torvalds 已提交
3959
{
H
Hugh Dickins 已提交
3960 3961
	pud_t *new = pud_alloc_one(mm, address);
	if (!new)
3962
		return -ENOMEM;
L
Linus Torvalds 已提交
3963

3964 3965
	smp_wmb(); /* See comment in __pte_alloc */

H
Hugh Dickins 已提交
3966
	spin_lock(&mm->page_table_lock);
3967 3968
#ifndef __ARCH_HAS_5LEVEL_HACK
	if (p4d_present(*p4d))		/* Another has populated it */
3969
		pud_free(mm, new);
3970
	else
3971 3972 3973
		p4d_populate(mm, p4d, new);
#else
	if (pgd_present(*p4d))		/* Another has populated it */
3974
		pud_free(mm, new);
3975
	else
3976 3977
		pgd_populate(mm, p4d, new);
#endif /* __ARCH_HAS_5LEVEL_HACK */
H
Hugh Dickins 已提交
3978
	spin_unlock(&mm->page_table_lock);
3979
	return 0;
L
Linus Torvalds 已提交
3980 3981 3982 3983 3984 3985
}
#endif /* __PAGETABLE_PUD_FOLDED */

#ifndef __PAGETABLE_PMD_FOLDED
/*
 * Allocate page middle directory.
H
Hugh Dickins 已提交
3986
 * We've already handled the fast-path in-line.
L
Linus Torvalds 已提交
3987
 */
3988
int __pmd_alloc(struct mm_struct *mm, pud_t *pud, unsigned long address)
L
Linus Torvalds 已提交
3989
{
3990
	spinlock_t *ptl;
H
Hugh Dickins 已提交
3991 3992
	pmd_t *new = pmd_alloc_one(mm, address);
	if (!new)
3993
		return -ENOMEM;
L
Linus Torvalds 已提交
3994

3995 3996
	smp_wmb(); /* See comment in __pte_alloc */

3997
	ptl = pud_lock(mm, pud);
L
Linus Torvalds 已提交
3998
#ifndef __ARCH_HAS_4LEVEL_HACK
3999 4000
	if (!pud_present(*pud)) {
		mm_inc_nr_pmds(mm);
4001
		pud_populate(mm, pud, new);
4002
	} else	/* Another has populated it */
4003
		pmd_free(mm, new);
4004 4005 4006
#else
	if (!pgd_present(*pud)) {
		mm_inc_nr_pmds(mm);
4007
		pgd_populate(mm, pud, new);
4008 4009
	} else /* Another has populated it */
		pmd_free(mm, new);
L
Linus Torvalds 已提交
4010
#endif /* __ARCH_HAS_4LEVEL_HACK */
4011
	spin_unlock(ptl);
4012
	return 0;
4013
}
L
Linus Torvalds 已提交
4014 4015
#endif /* __PAGETABLE_PMD_FOLDED */

R
Ross Zwisler 已提交
4016 4017
static int __follow_pte_pmd(struct mm_struct *mm, unsigned long address,
		pte_t **ptepp, pmd_t **pmdpp, spinlock_t **ptlp)
J
Johannes Weiner 已提交
4018 4019
{
	pgd_t *pgd;
4020
	p4d_t *p4d;
J
Johannes Weiner 已提交
4021 4022 4023 4024 4025 4026 4027 4028
	pud_t *pud;
	pmd_t *pmd;
	pte_t *ptep;

	pgd = pgd_offset(mm, address);
	if (pgd_none(*pgd) || unlikely(pgd_bad(*pgd)))
		goto out;

4029 4030 4031 4032 4033
	p4d = p4d_offset(pgd, address);
	if (p4d_none(*p4d) || unlikely(p4d_bad(*p4d)))
		goto out;

	pud = pud_offset(p4d, address);
J
Johannes Weiner 已提交
4034 4035 4036 4037
	if (pud_none(*pud) || unlikely(pud_bad(*pud)))
		goto out;

	pmd = pmd_offset(pud, address);
4038
	VM_BUG_ON(pmd_trans_huge(*pmd));
J
Johannes Weiner 已提交
4039

R
Ross Zwisler 已提交
4040 4041 4042 4043 4044 4045 4046 4047 4048 4049 4050 4051 4052
	if (pmd_huge(*pmd)) {
		if (!pmdpp)
			goto out;

		*ptlp = pmd_lock(mm, pmd);
		if (pmd_huge(*pmd)) {
			*pmdpp = pmd;
			return 0;
		}
		spin_unlock(*ptlp);
	}

	if (pmd_none(*pmd) || unlikely(pmd_bad(*pmd)))
J
Johannes Weiner 已提交
4053 4054 4055 4056 4057 4058 4059 4060 4061 4062 4063 4064 4065
		goto out;

	ptep = pte_offset_map_lock(mm, pmd, address, ptlp);
	if (!pte_present(*ptep))
		goto unlock;
	*ptepp = ptep;
	return 0;
unlock:
	pte_unmap_unlock(ptep, *ptlp);
out:
	return -EINVAL;
}

4066 4067
static inline int follow_pte(struct mm_struct *mm, unsigned long address,
			     pte_t **ptepp, spinlock_t **ptlp)
4068 4069 4070 4071 4072
{
	int res;

	/* (void) is needed to make gcc happy */
	(void) __cond_lock(*ptlp,
R
Ross Zwisler 已提交
4073 4074 4075 4076 4077 4078 4079 4080 4081 4082 4083 4084 4085 4086
			   !(res = __follow_pte_pmd(mm, address, ptepp, NULL,
					   ptlp)));
	return res;
}

int follow_pte_pmd(struct mm_struct *mm, unsigned long address,
			     pte_t **ptepp, pmd_t **pmdpp, spinlock_t **ptlp)
{
	int res;

	/* (void) is needed to make gcc happy */
	(void) __cond_lock(*ptlp,
			   !(res = __follow_pte_pmd(mm, address, ptepp, pmdpp,
					   ptlp)));
4087 4088
	return res;
}
R
Ross Zwisler 已提交
4089
EXPORT_SYMBOL(follow_pte_pmd);
4090

J
Johannes Weiner 已提交
4091 4092 4093 4094 4095 4096 4097 4098 4099 4100 4101 4102 4103 4104 4105 4106 4107 4108 4109 4110 4111 4112 4113 4114 4115 4116 4117 4118 4119
/**
 * follow_pfn - look up PFN at a user virtual address
 * @vma: memory mapping
 * @address: user virtual address
 * @pfn: location to store found PFN
 *
 * Only IO mappings and raw PFN mappings are allowed.
 *
 * Returns zero and the pfn at @pfn on success, -ve otherwise.
 */
int follow_pfn(struct vm_area_struct *vma, unsigned long address,
	unsigned long *pfn)
{
	int ret = -EINVAL;
	spinlock_t *ptl;
	pte_t *ptep;

	if (!(vma->vm_flags & (VM_IO | VM_PFNMAP)))
		return ret;

	ret = follow_pte(vma->vm_mm, address, &ptep, &ptl);
	if (ret)
		return ret;
	*pfn = pte_pfn(*ptep);
	pte_unmap_unlock(ptep, ptl);
	return 0;
}
EXPORT_SYMBOL(follow_pfn);

4120
#ifdef CONFIG_HAVE_IOREMAP_PROT
4121 4122 4123
int follow_phys(struct vm_area_struct *vma,
		unsigned long address, unsigned int flags,
		unsigned long *prot, resource_size_t *phys)
4124
{
4125
	int ret = -EINVAL;
4126 4127 4128
	pte_t *ptep, pte;
	spinlock_t *ptl;

4129 4130
	if (!(vma->vm_flags & (VM_IO | VM_PFNMAP)))
		goto out;
4131

4132
	if (follow_pte(vma->vm_mm, address, &ptep, &ptl))
4133
		goto out;
4134
	pte = *ptep;
4135

4136 4137 4138 4139
	if ((flags & FOLL_WRITE) && !pte_write(pte))
		goto unlock;

	*prot = pgprot_val(pte_pgprot(pte));
4140
	*phys = (resource_size_t)pte_pfn(pte) << PAGE_SHIFT;
4141

4142
	ret = 0;
4143 4144 4145
unlock:
	pte_unmap_unlock(ptep, ptl);
out:
4146
	return ret;
4147 4148 4149 4150 4151 4152 4153
}

int generic_access_phys(struct vm_area_struct *vma, unsigned long addr,
			void *buf, int len, int write)
{
	resource_size_t phys_addr;
	unsigned long prot = 0;
K
KOSAKI Motohiro 已提交
4154
	void __iomem *maddr;
4155 4156
	int offset = addr & (PAGE_SIZE-1);

4157
	if (follow_phys(vma, addr, write, &prot, &phys_addr))
4158 4159
		return -EINVAL;

4160
	maddr = ioremap_prot(phys_addr, PAGE_ALIGN(len + offset), prot);
4161 4162 4163 4164 4165 4166 4167 4168
	if (write)
		memcpy_toio(maddr + offset, buf, len);
	else
		memcpy_fromio(buf, maddr + offset, len);
	iounmap(maddr);

	return len;
}
4169
EXPORT_SYMBOL_GPL(generic_access_phys);
4170 4171
#endif

4172
/*
4173 4174
 * Access another process' address space as given in mm.  If non-NULL, use the
 * given task for page fault accounting.
4175
 */
4176
int __access_remote_vm(struct task_struct *tsk, struct mm_struct *mm,
4177
		unsigned long addr, void *buf, int len, unsigned int gup_flags)
4178 4179 4180
{
	struct vm_area_struct *vma;
	void *old_buf = buf;
4181
	int write = gup_flags & FOLL_WRITE;
4182 4183

	down_read(&mm->mmap_sem);
S
Simon Arlott 已提交
4184
	/* ignore errors, just check how much was successfully transferred */
4185 4186 4187
	while (len) {
		int bytes, ret, offset;
		void *maddr;
4188
		struct page *page = NULL;
4189

4190
		ret = get_user_pages_remote(tsk, mm, addr, 1,
4191
				gup_flags, &page, &vma, NULL);
4192
		if (ret <= 0) {
4193 4194 4195
#ifndef CONFIG_HAVE_IOREMAP_PROT
			break;
#else
4196 4197 4198 4199 4200
			/*
			 * Check if this is a VM_IO | VM_PFNMAP VMA, which
			 * we can access using slightly different code.
			 */
			vma = find_vma(mm, addr);
4201
			if (!vma || vma->vm_start > addr)
4202 4203 4204 4205 4206 4207 4208
				break;
			if (vma->vm_ops && vma->vm_ops->access)
				ret = vma->vm_ops->access(vma, addr, buf,
							  len, write);
			if (ret <= 0)
				break;
			bytes = ret;
4209
#endif
4210
		} else {
4211 4212 4213 4214 4215 4216 4217 4218 4219 4220 4221 4222 4223 4224 4225
			bytes = len;
			offset = addr & (PAGE_SIZE-1);
			if (bytes > PAGE_SIZE-offset)
				bytes = PAGE_SIZE-offset;

			maddr = kmap(page);
			if (write) {
				copy_to_user_page(vma, page, addr,
						  maddr + offset, buf, bytes);
				set_page_dirty_lock(page);
			} else {
				copy_from_user_page(vma, page, addr,
						    buf, maddr + offset, bytes);
			}
			kunmap(page);
4226
			put_page(page);
4227 4228 4229 4230 4231 4232 4233 4234 4235
		}
		len -= bytes;
		buf += bytes;
		addr += bytes;
	}
	up_read(&mm->mmap_sem);

	return buf - old_buf;
}
4236

S
Stephen Wilson 已提交
4237
/**
4238
 * access_remote_vm - access another process' address space
S
Stephen Wilson 已提交
4239 4240 4241 4242
 * @mm:		the mm_struct of the target address space
 * @addr:	start address to access
 * @buf:	source or destination buffer
 * @len:	number of bytes to transfer
4243
 * @gup_flags:	flags modifying lookup behaviour
S
Stephen Wilson 已提交
4244 4245 4246 4247
 *
 * The caller must hold a reference on @mm.
 */
int access_remote_vm(struct mm_struct *mm, unsigned long addr,
4248
		void *buf, int len, unsigned int gup_flags)
S
Stephen Wilson 已提交
4249
{
4250
	return __access_remote_vm(NULL, mm, addr, buf, len, gup_flags);
S
Stephen Wilson 已提交
4251 4252
}

4253 4254 4255 4256 4257 4258
/*
 * Access another process' address space.
 * Source/target buffer must be kernel space,
 * Do not walk the page table directly, use get_user_pages
 */
int access_process_vm(struct task_struct *tsk, unsigned long addr,
4259
		void *buf, int len, unsigned int gup_flags)
4260 4261 4262 4263 4264 4265 4266 4267
{
	struct mm_struct *mm;
	int ret;

	mm = get_task_mm(tsk);
	if (!mm)
		return 0;

4268
	ret = __access_remote_vm(tsk, mm, addr, buf, len, gup_flags);
4269

4270 4271 4272 4273
	mmput(mm);

	return ret;
}
4274
EXPORT_SYMBOL_GPL(access_process_vm);
4275

4276 4277 4278 4279 4280 4281 4282 4283
/*
 * Print the name of a VMA.
 */
void print_vma_addr(char *prefix, unsigned long ip)
{
	struct mm_struct *mm = current->mm;
	struct vm_area_struct *vma;

4284 4285 4286 4287 4288 4289 4290
	/*
	 * Do not print if we are in atomic
	 * contexts (in exception stacks, etc.):
	 */
	if (preempt_count())
		return;

4291 4292 4293 4294 4295 4296
	down_read(&mm->mmap_sem);
	vma = find_vma(mm, ip);
	if (vma && vma->vm_file) {
		struct file *f = vma->vm_file;
		char *buf = (char *)__get_free_page(GFP_KERNEL);
		if (buf) {
A
Andy Shevchenko 已提交
4297
			char *p;
4298

M
Miklos Szeredi 已提交
4299
			p = file_path(f, buf, PAGE_SIZE);
4300 4301
			if (IS_ERR(p))
				p = "?";
A
Andy Shevchenko 已提交
4302
			printk("%s%s[%lx+%lx]", prefix, kbasename(p),
4303 4304 4305 4306 4307
					vma->vm_start,
					vma->vm_end - vma->vm_start);
			free_page((unsigned long)buf);
		}
	}
4308
	up_read(&mm->mmap_sem);
4309
}
4310

4311
#if defined(CONFIG_PROVE_LOCKING) || defined(CONFIG_DEBUG_ATOMIC_SLEEP)
4312
void __might_fault(const char *file, int line)
4313
{
4314 4315 4316 4317 4318 4319
	/*
	 * Some code (nfs/sunrpc) uses socket ops on kernel memory while
	 * holding the mmap_sem, this is safe because kernel memory doesn't
	 * get paged out, therefore we'll never actually fault, and the
	 * below annotations will generate false positives.
	 */
A
Al Viro 已提交
4320
	if (uaccess_kernel())
4321
		return;
4322
	if (pagefault_disabled())
4323
		return;
4324 4325
	__might_sleep(file, line, 0);
#if defined(CONFIG_DEBUG_ATOMIC_SLEEP)
4326
	if (current->mm)
4327
		might_lock_read(&current->mm->mmap_sem);
4328
#endif
4329
}
4330
EXPORT_SYMBOL(__might_fault);
4331
#endif
A
Andrea Arcangeli 已提交
4332 4333 4334 4335 4336 4337 4338 4339 4340 4341 4342 4343 4344 4345 4346 4347 4348 4349 4350 4351 4352 4353 4354 4355 4356 4357 4358 4359 4360 4361 4362 4363 4364 4365 4366 4367 4368 4369 4370 4371 4372 4373 4374 4375 4376 4377 4378 4379 4380 4381 4382 4383 4384 4385 4386 4387 4388 4389 4390 4391 4392 4393 4394 4395 4396 4397 4398 4399 4400 4401

#if defined(CONFIG_TRANSPARENT_HUGEPAGE) || defined(CONFIG_HUGETLBFS)
static void clear_gigantic_page(struct page *page,
				unsigned long addr,
				unsigned int pages_per_huge_page)
{
	int i;
	struct page *p = page;

	might_sleep();
	for (i = 0; i < pages_per_huge_page;
	     i++, p = mem_map_next(p, page, i)) {
		cond_resched();
		clear_user_highpage(p, addr + i * PAGE_SIZE);
	}
}
void clear_huge_page(struct page *page,
		     unsigned long addr, unsigned int pages_per_huge_page)
{
	int i;

	if (unlikely(pages_per_huge_page > MAX_ORDER_NR_PAGES)) {
		clear_gigantic_page(page, addr, pages_per_huge_page);
		return;
	}

	might_sleep();
	for (i = 0; i < pages_per_huge_page; i++) {
		cond_resched();
		clear_user_highpage(page + i, addr + i * PAGE_SIZE);
	}
}

static void copy_user_gigantic_page(struct page *dst, struct page *src,
				    unsigned long addr,
				    struct vm_area_struct *vma,
				    unsigned int pages_per_huge_page)
{
	int i;
	struct page *dst_base = dst;
	struct page *src_base = src;

	for (i = 0; i < pages_per_huge_page; ) {
		cond_resched();
		copy_user_highpage(dst, src, addr + i*PAGE_SIZE, vma);

		i++;
		dst = mem_map_next(dst, dst_base, i);
		src = mem_map_next(src, src_base, i);
	}
}

void copy_user_huge_page(struct page *dst, struct page *src,
			 unsigned long addr, struct vm_area_struct *vma,
			 unsigned int pages_per_huge_page)
{
	int i;

	if (unlikely(pages_per_huge_page > MAX_ORDER_NR_PAGES)) {
		copy_user_gigantic_page(dst, src, addr, vma,
					pages_per_huge_page);
		return;
	}

	might_sleep();
	for (i = 0; i < pages_per_huge_page; i++) {
		cond_resched();
		copy_user_highpage(dst + i, src + i, addr + i*PAGE_SIZE, vma);
	}
}
4402 4403 4404

long copy_huge_page_from_user(struct page *dst_page,
				const void __user *usr_src,
4405 4406
				unsigned int pages_per_huge_page,
				bool allow_pagefault)
4407 4408 4409 4410 4411 4412 4413
{
	void *src = (void *)usr_src;
	void *page_kaddr;
	unsigned long i, rc = 0;
	unsigned long ret_val = pages_per_huge_page * PAGE_SIZE;

	for (i = 0; i < pages_per_huge_page; i++) {
4414 4415 4416 4417
		if (allow_pagefault)
			page_kaddr = kmap(dst_page + i);
		else
			page_kaddr = kmap_atomic(dst_page + i);
4418 4419 4420
		rc = copy_from_user(page_kaddr,
				(const void __user *)(src + i * PAGE_SIZE),
				PAGE_SIZE);
4421 4422 4423 4424
		if (allow_pagefault)
			kunmap(dst_page + i);
		else
			kunmap_atomic(page_kaddr);
4425 4426 4427 4428 4429 4430 4431 4432 4433

		ret_val -= (PAGE_SIZE - rc);
		if (rc)
			break;

		cond_resched();
	}
	return ret_val;
}
A
Andrea Arcangeli 已提交
4434
#endif /* CONFIG_TRANSPARENT_HUGEPAGE || CONFIG_HUGETLBFS */
4435

4436
#if USE_SPLIT_PTE_PTLOCKS && ALLOC_SPLIT_PTLOCKS
4437 4438 4439 4440 4441 4442 4443 4444 4445

static struct kmem_cache *page_ptl_cachep;

void __init ptlock_cache_init(void)
{
	page_ptl_cachep = kmem_cache_create("page->ptl", sizeof(spinlock_t), 0,
			SLAB_PANIC, NULL);
}

4446
bool ptlock_alloc(struct page *page)
4447 4448 4449
{
	spinlock_t *ptl;

4450
	ptl = kmem_cache_alloc(page_ptl_cachep, GFP_KERNEL);
4451 4452
	if (!ptl)
		return false;
4453
	page->ptl = ptl;
4454 4455 4456
	return true;
}

4457
void ptlock_free(struct page *page)
4458
{
4459
	kmem_cache_free(page_ptl_cachep, page->ptl);
4460 4461
}
#endif