task_mmu.c 44.0 KB
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#include <linux/mm.h>
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#include <linux/vmacache.h>
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#include <linux/hugetlb.h>
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#include <linux/huge_mm.h>
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#include <linux/mount.h>
#include <linux/seq_file.h>
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#include <linux/highmem.h>
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#include <linux/ptrace.h>
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#include <linux/slab.h>
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#include <linux/pagemap.h>
#include <linux/mempolicy.h>
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#include <linux/rmap.h>
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#include <linux/swap.h>
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#include <linux/sched/mm.h>
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#include <linux/swapops.h>
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#include <linux/mmu_notifier.h>
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#include <linux/page_idle.h>
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#include <linux/shmem_fs.h>
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#include <linux/uaccess.h>
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#include <asm/elf.h>
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#include <asm/tlb.h>
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#include <asm/tlbflush.h>
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#include "internal.h"

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void task_mem(struct seq_file *m, struct mm_struct *mm)
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{
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	unsigned long text, lib, swap, ptes, pmds, anon, file, shmem;
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	unsigned long hiwater_vm, total_vm, hiwater_rss, total_rss;

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	anon = get_mm_counter(mm, MM_ANONPAGES);
	file = get_mm_counter(mm, MM_FILEPAGES);
	shmem = get_mm_counter(mm, MM_SHMEMPAGES);

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	/*
	 * Note: to minimize their overhead, mm maintains hiwater_vm and
	 * hiwater_rss only when about to *lower* total_vm or rss.  Any
	 * collector of these hiwater stats must therefore get total_vm
	 * and rss too, which will usually be the higher.  Barriers? not
	 * worth the effort, such snapshots can always be inconsistent.
	 */
	hiwater_vm = total_vm = mm->total_vm;
	if (hiwater_vm < mm->hiwater_vm)
		hiwater_vm = mm->hiwater_vm;
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	hiwater_rss = total_rss = anon + file + shmem;
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	if (hiwater_rss < mm->hiwater_rss)
		hiwater_rss = mm->hiwater_rss;
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	text = (PAGE_ALIGN(mm->end_code) - (mm->start_code & PAGE_MASK)) >> 10;
	lib = (mm->exec_vm << (PAGE_SHIFT-10)) - text;
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	swap = get_mm_counter(mm, MM_SWAPENTS);
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	ptes = PTRS_PER_PTE * sizeof(pte_t) * atomic_long_read(&mm->nr_ptes);
	pmds = PTRS_PER_PMD * sizeof(pmd_t) * mm_nr_pmds(mm);
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	seq_printf(m,
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		"VmPeak:\t%8lu kB\n"
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		"VmSize:\t%8lu kB\n"
		"VmLck:\t%8lu kB\n"
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		"VmPin:\t%8lu kB\n"
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		"VmHWM:\t%8lu kB\n"
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		"VmRSS:\t%8lu kB\n"
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		"RssAnon:\t%8lu kB\n"
		"RssFile:\t%8lu kB\n"
		"RssShmem:\t%8lu kB\n"
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		"VmData:\t%8lu kB\n"
		"VmStk:\t%8lu kB\n"
		"VmExe:\t%8lu kB\n"
		"VmLib:\t%8lu kB\n"
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		"VmPTE:\t%8lu kB\n"
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		"VmPMD:\t%8lu kB\n"
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		"VmSwap:\t%8lu kB\n",
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		hiwater_vm << (PAGE_SHIFT-10),
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		total_vm << (PAGE_SHIFT-10),
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		mm->locked_vm << (PAGE_SHIFT-10),
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		mm->pinned_vm << (PAGE_SHIFT-10),
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		hiwater_rss << (PAGE_SHIFT-10),
		total_rss << (PAGE_SHIFT-10),
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		anon << (PAGE_SHIFT-10),
		file << (PAGE_SHIFT-10),
		shmem << (PAGE_SHIFT-10),
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		mm->data_vm << (PAGE_SHIFT-10),
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		mm->stack_vm << (PAGE_SHIFT-10), text, lib,
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		ptes >> 10,
		pmds >> 10,
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		swap << (PAGE_SHIFT-10));
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	hugetlb_report_usage(m, mm);
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}

unsigned long task_vsize(struct mm_struct *mm)
{
	return PAGE_SIZE * mm->total_vm;
}

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unsigned long task_statm(struct mm_struct *mm,
			 unsigned long *shared, unsigned long *text,
			 unsigned long *data, unsigned long *resident)
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{
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	*shared = get_mm_counter(mm, MM_FILEPAGES) +
			get_mm_counter(mm, MM_SHMEMPAGES);
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	*text = (PAGE_ALIGN(mm->end_code) - (mm->start_code & PAGE_MASK))
								>> PAGE_SHIFT;
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	*data = mm->data_vm + mm->stack_vm;
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	*resident = *shared + get_mm_counter(mm, MM_ANONPAGES);
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	return mm->total_vm;
}

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#ifdef CONFIG_NUMA
/*
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 * Save get_task_policy() for show_numa_map().
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 */
static void hold_task_mempolicy(struct proc_maps_private *priv)
{
	struct task_struct *task = priv->task;

	task_lock(task);
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	priv->task_mempolicy = get_task_policy(task);
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	mpol_get(priv->task_mempolicy);
	task_unlock(task);
}
static void release_task_mempolicy(struct proc_maps_private *priv)
{
	mpol_put(priv->task_mempolicy);
}
#else
static void hold_task_mempolicy(struct proc_maps_private *priv)
{
}
static void release_task_mempolicy(struct proc_maps_private *priv)
{
}
#endif

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static void vma_stop(struct proc_maps_private *priv)
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{
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	struct mm_struct *mm = priv->mm;

	release_task_mempolicy(priv);
	up_read(&mm->mmap_sem);
	mmput(mm);
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}
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static struct vm_area_struct *
m_next_vma(struct proc_maps_private *priv, struct vm_area_struct *vma)
{
	if (vma == priv->tail_vma)
		return NULL;
	return vma->vm_next ?: priv->tail_vma;
}

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static void m_cache_vma(struct seq_file *m, struct vm_area_struct *vma)
{
	if (m->count < m->size)	/* vma is copied successfully */
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		m->version = m_next_vma(m->private, vma) ? vma->vm_end : -1UL;
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}

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static void *m_start(struct seq_file *m, loff_t *ppos)
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{
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	struct proc_maps_private *priv = m->private;
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	unsigned long last_addr = m->version;
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	struct mm_struct *mm;
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	struct vm_area_struct *vma;
	unsigned int pos = *ppos;
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	/* See m_cache_vma(). Zero at the start or after lseek. */
	if (last_addr == -1UL)
		return NULL;

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	priv->task = get_proc_task(priv->inode);
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	if (!priv->task)
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		return ERR_PTR(-ESRCH);
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	mm = priv->mm;
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	if (!mm || !mmget_not_zero(mm))
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		return NULL;
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	down_read(&mm->mmap_sem);
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	hold_task_mempolicy(priv);
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	priv->tail_vma = get_gate_vma(mm);
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	if (last_addr) {
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		vma = find_vma(mm, last_addr - 1);
		if (vma && vma->vm_start <= last_addr)
			vma = m_next_vma(priv, vma);
		if (vma)
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			return vma;
	}

	m->version = 0;
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	if (pos < mm->map_count) {
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		for (vma = mm->mmap; pos; pos--) {
			m->version = vma->vm_start;
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			vma = vma->vm_next;
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		}
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		return vma;
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	}
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	/* we do not bother to update m->version in this case */
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	if (pos == mm->map_count && priv->tail_vma)
		return priv->tail_vma;
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	vma_stop(priv);
	return NULL;
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}

static void *m_next(struct seq_file *m, void *v, loff_t *pos)
{
	struct proc_maps_private *priv = m->private;
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	struct vm_area_struct *next;
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	(*pos)++;
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	next = m_next_vma(priv, v);
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	if (!next)
		vma_stop(priv);
	return next;
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}

static void m_stop(struct seq_file *m, void *v)
{
	struct proc_maps_private *priv = m->private;

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	if (!IS_ERR_OR_NULL(v))
		vma_stop(priv);
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	if (priv->task) {
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		put_task_struct(priv->task);
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		priv->task = NULL;
	}
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}

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static int proc_maps_open(struct inode *inode, struct file *file,
			const struct seq_operations *ops, int psize)
{
	struct proc_maps_private *priv = __seq_open_private(file, ops, psize);

	if (!priv)
		return -ENOMEM;

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	priv->inode = inode;
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	priv->mm = proc_mem_open(inode, PTRACE_MODE_READ);
	if (IS_ERR(priv->mm)) {
		int err = PTR_ERR(priv->mm);

		seq_release_private(inode, file);
		return err;
	}

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	return 0;
}

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static int proc_map_release(struct inode *inode, struct file *file)
{
	struct seq_file *seq = file->private_data;
	struct proc_maps_private *priv = seq->private;

	if (priv->mm)
		mmdrop(priv->mm);

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	kfree(priv->rollup);
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	return seq_release_private(inode, file);
}

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static int do_maps_open(struct inode *inode, struct file *file,
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			const struct seq_operations *ops)
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{
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	return proc_maps_open(inode, file, ops,
				sizeof(struct proc_maps_private));
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}
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/*
 * Indicate if the VMA is a stack for the given task; for
 * /proc/PID/maps that is the stack of the main task.
 */
static int is_stack(struct proc_maps_private *priv,
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		    struct vm_area_struct *vma)
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{
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	/*
	 * We make no effort to guess what a given thread considers to be
	 * its "stack".  It's not even well-defined for programs written
	 * languages like Go.
	 */
	return vma->vm_start <= vma->vm_mm->start_stack &&
		vma->vm_end >= vma->vm_mm->start_stack;
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}

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static void show_vma_header_prefix(struct seq_file *m,
				   unsigned long start, unsigned long end,
				   vm_flags_t flags, unsigned long long pgoff,
				   dev_t dev, unsigned long ino)
{
	seq_setwidth(m, 25 + sizeof(void *) * 6 - 1);
	seq_printf(m, "%08lx-%08lx %c%c%c%c %08llx %02x:%02x %lu ",
		   start,
		   end,
		   flags & VM_READ ? 'r' : '-',
		   flags & VM_WRITE ? 'w' : '-',
		   flags & VM_EXEC ? 'x' : '-',
		   flags & VM_MAYSHARE ? 's' : 'p',
		   pgoff,
		   MAJOR(dev), MINOR(dev), ino);
}

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static void
show_map_vma(struct seq_file *m, struct vm_area_struct *vma, int is_pid)
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{
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	struct mm_struct *mm = vma->vm_mm;
	struct file *file = vma->vm_file;
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	struct proc_maps_private *priv = m->private;
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	vm_flags_t flags = vma->vm_flags;
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	unsigned long ino = 0;
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	unsigned long long pgoff = 0;
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	unsigned long start, end;
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	dev_t dev = 0;
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	const char *name = NULL;
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	if (file) {
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		struct inode *inode = file_inode(vma->vm_file);
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		dev = inode->i_sb->s_dev;
		ino = inode->i_ino;
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		pgoff = ((loff_t)vma->vm_pgoff) << PAGE_SHIFT;
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	}

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	start = vma->vm_start;
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	end = vma->vm_end;
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	show_vma_header_prefix(m, start, end, flags, pgoff, dev, ino);
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	/*
	 * Print the dentry name for named mappings, and a
	 * special [heap] marker for the heap:
	 */
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	if (file) {
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		seq_pad(m, ' ');
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		seq_file_path(m, file, "\n");
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		goto done;
	}

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	if (vma->vm_ops && vma->vm_ops->name) {
		name = vma->vm_ops->name(vma);
		if (name)
			goto done;
	}

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	name = arch_vma_name(vma);
	if (!name) {
		if (!mm) {
			name = "[vdso]";
			goto done;
		}

		if (vma->vm_start <= mm->brk &&
		    vma->vm_end >= mm->start_brk) {
			name = "[heap]";
			goto done;
		}

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		if (is_stack(priv, vma))
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			name = "[stack]";
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	}

done:
	if (name) {
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		seq_pad(m, ' ');
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		seq_puts(m, name);
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	}
	seq_putc(m, '\n');
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}

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static int show_map(struct seq_file *m, void *v, int is_pid)
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{
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	show_map_vma(m, v, is_pid);
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	m_cache_vma(m, v);
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	return 0;
}

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static int show_pid_map(struct seq_file *m, void *v)
{
	return show_map(m, v, 1);
}

static int show_tid_map(struct seq_file *m, void *v)
{
	return show_map(m, v, 0);
}

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static const struct seq_operations proc_pid_maps_op = {
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	.start	= m_start,
	.next	= m_next,
	.stop	= m_stop,
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	.show	= show_pid_map
};

static const struct seq_operations proc_tid_maps_op = {
	.start	= m_start,
	.next	= m_next,
	.stop	= m_stop,
	.show	= show_tid_map
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};

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static int pid_maps_open(struct inode *inode, struct file *file)
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{
	return do_maps_open(inode, file, &proc_pid_maps_op);
}

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static int tid_maps_open(struct inode *inode, struct file *file)
{
	return do_maps_open(inode, file, &proc_tid_maps_op);
}

const struct file_operations proc_pid_maps_operations = {
	.open		= pid_maps_open,
	.read		= seq_read,
	.llseek		= seq_lseek,
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	.release	= proc_map_release,
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};

const struct file_operations proc_tid_maps_operations = {
	.open		= tid_maps_open,
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	.read		= seq_read,
	.llseek		= seq_lseek,
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	.release	= proc_map_release,
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};

/*
 * Proportional Set Size(PSS): my share of RSS.
 *
 * PSS of a process is the count of pages it has in memory, where each
 * page is divided by the number of processes sharing it.  So if a
 * process has 1000 pages all to itself, and 1000 shared with one other
 * process, its PSS will be 1500.
 *
 * To keep (accumulated) division errors low, we adopt a 64bit
 * fixed-point pss counter to minimize division errors. So (pss >>
 * PSS_SHIFT) would be the real byte count.
 *
 * A shift of 12 before division means (assuming 4K page size):
 * 	- 1M 3-user-pages add up to 8KB errors;
 * 	- supports mapcount up to 2^24, or 16M;
 * 	- supports PSS up to 2^52 bytes, or 4PB.
 */
#define PSS_SHIFT 12

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#ifdef CONFIG_PROC_PAGE_MONITOR
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struct mem_size_stats {
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	bool first;
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	unsigned long resident;
	unsigned long shared_clean;
	unsigned long shared_dirty;
	unsigned long private_clean;
	unsigned long private_dirty;
	unsigned long referenced;
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	unsigned long anonymous;
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	unsigned long lazyfree;
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	unsigned long anonymous_thp;
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	unsigned long shmem_thp;
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	unsigned long swap;
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	unsigned long shared_hugetlb;
	unsigned long private_hugetlb;
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	unsigned long first_vma_start;
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	u64 pss;
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	u64 pss_locked;
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	u64 swap_pss;
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	bool check_shmem_swap;
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};

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static void smaps_account(struct mem_size_stats *mss, struct page *page,
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		bool compound, bool young, bool dirty)
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{
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	int i, nr = compound ? 1 << compound_order(page) : 1;
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	unsigned long size = nr * PAGE_SIZE;
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	if (PageAnon(page)) {
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		mss->anonymous += size;
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		if (!PageSwapBacked(page) && !dirty && !PageDirty(page))
			mss->lazyfree += size;
	}
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	mss->resident += size;
	/* Accumulate the size in pages that have been accessed. */
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	if (young || page_is_young(page) || PageReferenced(page))
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		mss->referenced += size;

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	/*
	 * page_count(page) == 1 guarantees the page is mapped exactly once.
	 * If any subpage of the compound page mapped with PTE it would elevate
	 * page_count().
	 */
	if (page_count(page) == 1) {
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		if (dirty || PageDirty(page))
			mss->private_dirty += size;
		else
			mss->private_clean += size;
		mss->pss += (u64)size << PSS_SHIFT;
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		return;
	}

	for (i = 0; i < nr; i++, page++) {
		int mapcount = page_mapcount(page);

		if (mapcount >= 2) {
			if (dirty || PageDirty(page))
				mss->shared_dirty += PAGE_SIZE;
			else
				mss->shared_clean += PAGE_SIZE;
			mss->pss += (PAGE_SIZE << PSS_SHIFT) / mapcount;
		} else {
			if (dirty || PageDirty(page))
				mss->private_dirty += PAGE_SIZE;
			else
				mss->private_clean += PAGE_SIZE;
			mss->pss += PAGE_SIZE << PSS_SHIFT;
		}
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	}
}
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#ifdef CONFIG_SHMEM
static int smaps_pte_hole(unsigned long addr, unsigned long end,
		struct mm_walk *walk)
{
	struct mem_size_stats *mss = walk->private;

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	mss->swap += shmem_partial_swap_usage(
			walk->vma->vm_file->f_mapping, addr, end);
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	return 0;
}
#endif

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static void smaps_pte_entry(pte_t *pte, unsigned long addr,
		struct mm_walk *walk)
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{
	struct mem_size_stats *mss = walk->private;
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	struct vm_area_struct *vma = walk->vma;
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	struct page *page = NULL;
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	if (pte_present(*pte)) {
		page = vm_normal_page(vma, addr, *pte);
	} else if (is_swap_pte(*pte)) {
		swp_entry_t swpent = pte_to_swp_entry(*pte);
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		if (!non_swap_entry(swpent)) {
			int mapcount;

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			mss->swap += PAGE_SIZE;
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			mapcount = swp_swapcount(swpent);
			if (mapcount >= 2) {
				u64 pss_delta = (u64)PAGE_SIZE << PSS_SHIFT;

				do_div(pss_delta, mapcount);
				mss->swap_pss += pss_delta;
			} else {
				mss->swap_pss += (u64)PAGE_SIZE << PSS_SHIFT;
			}
		} else if (is_migration_entry(swpent))
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			page = migration_entry_to_page(swpent);
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	} else if (unlikely(IS_ENABLED(CONFIG_SHMEM) && mss->check_shmem_swap
							&& pte_none(*pte))) {
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		page = find_get_entry(vma->vm_file->f_mapping,
						linear_page_index(vma, addr));
		if (!page)
			return;

		if (radix_tree_exceptional_entry(page))
			mss->swap += PAGE_SIZE;
		else
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			put_page(page);
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		return;
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	}
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	if (!page)
		return;
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	smaps_account(mss, page, false, pte_young(*pte), pte_dirty(*pte));
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}

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#ifdef CONFIG_TRANSPARENT_HUGEPAGE
static void smaps_pmd_entry(pmd_t *pmd, unsigned long addr,
		struct mm_walk *walk)
{
	struct mem_size_stats *mss = walk->private;
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	struct vm_area_struct *vma = walk->vma;
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	struct page *page;

	/* FOLL_DUMP will return -EFAULT on huge zero page */
	page = follow_trans_huge_pmd(vma, addr, pmd, FOLL_DUMP);
	if (IS_ERR_OR_NULL(page))
		return;
585 586 587 588
	if (PageAnon(page))
		mss->anonymous_thp += HPAGE_PMD_SIZE;
	else if (PageSwapBacked(page))
		mss->shmem_thp += HPAGE_PMD_SIZE;
589 590
	else if (is_zone_device_page(page))
		/* pass */;
591 592
	else
		VM_BUG_ON_PAGE(1, page);
593
	smaps_account(mss, page, true, pmd_young(*pmd), pmd_dirty(*pmd));
594 595 596 597 598 599 600 601
}
#else
static void smaps_pmd_entry(pmd_t *pmd, unsigned long addr,
		struct mm_walk *walk)
{
}
#endif

602
static int smaps_pte_range(pmd_t *pmd, unsigned long addr, unsigned long end,
D
Dave Hansen 已提交
603
			   struct mm_walk *walk)
M
Mauricio Lin 已提交
604
{
605
	struct vm_area_struct *vma = walk->vma;
606
	pte_t *pte;
607
	spinlock_t *ptl;
M
Mauricio Lin 已提交
608

609 610
	ptl = pmd_trans_huge_lock(pmd, vma);
	if (ptl) {
611 612
		if (pmd_present(*pmd))
			smaps_pmd_entry(pmd, addr, walk);
613
		spin_unlock(ptl);
614
		return 0;
615
	}
616 617 618

	if (pmd_trans_unstable(pmd))
		return 0;
619 620 621 622 623
	/*
	 * The mmap_sem held all the way back in m_start() is what
	 * keeps khugepaged out of here and from collapsing things
	 * in here.
	 */
624
	pte = pte_offset_map_lock(vma->vm_mm, pmd, addr, &ptl);
625
	for (; addr != end; pte++, addr += PAGE_SIZE)
626
		smaps_pte_entry(pte, addr, walk);
627 628
	pte_unmap_unlock(pte - 1, ptl);
	cond_resched();
629
	return 0;
M
Mauricio Lin 已提交
630 631
}

632 633 634 635 636 637 638 639 640 641 642 643 644 645 646 647 648 649 650 651 652 653
static void show_smap_vma_flags(struct seq_file *m, struct vm_area_struct *vma)
{
	/*
	 * Don't forget to update Documentation/ on changes.
	 */
	static const char mnemonics[BITS_PER_LONG][2] = {
		/*
		 * In case if we meet a flag we don't know about.
		 */
		[0 ... (BITS_PER_LONG-1)] = "??",

		[ilog2(VM_READ)]	= "rd",
		[ilog2(VM_WRITE)]	= "wr",
		[ilog2(VM_EXEC)]	= "ex",
		[ilog2(VM_SHARED)]	= "sh",
		[ilog2(VM_MAYREAD)]	= "mr",
		[ilog2(VM_MAYWRITE)]	= "mw",
		[ilog2(VM_MAYEXEC)]	= "me",
		[ilog2(VM_MAYSHARE)]	= "ms",
		[ilog2(VM_GROWSDOWN)]	= "gd",
		[ilog2(VM_PFNMAP)]	= "pf",
		[ilog2(VM_DENYWRITE)]	= "dw",
654 655 656
#ifdef CONFIG_X86_INTEL_MPX
		[ilog2(VM_MPX)]		= "mp",
#endif
657 658 659 660 661 662 663 664 665 666
		[ilog2(VM_LOCKED)]	= "lo",
		[ilog2(VM_IO)]		= "io",
		[ilog2(VM_SEQ_READ)]	= "sr",
		[ilog2(VM_RAND_READ)]	= "rr",
		[ilog2(VM_DONTCOPY)]	= "dc",
		[ilog2(VM_DONTEXPAND)]	= "de",
		[ilog2(VM_ACCOUNT)]	= "ac",
		[ilog2(VM_NORESERVE)]	= "nr",
		[ilog2(VM_HUGETLB)]	= "ht",
		[ilog2(VM_ARCH_1)]	= "ar",
667
		[ilog2(VM_WIPEONFORK)]	= "wf",
668
		[ilog2(VM_DONTDUMP)]	= "dd",
669 670 671
#ifdef CONFIG_MEM_SOFT_DIRTY
		[ilog2(VM_SOFTDIRTY)]	= "sd",
#endif
672 673 674 675
		[ilog2(VM_MIXEDMAP)]	= "mm",
		[ilog2(VM_HUGEPAGE)]	= "hg",
		[ilog2(VM_NOHUGEPAGE)]	= "nh",
		[ilog2(VM_MERGEABLE)]	= "mg",
676 677
		[ilog2(VM_UFFD_MISSING)]= "um",
		[ilog2(VM_UFFD_WP)]	= "uw",
678 679 680 681 682 683 684
#ifdef CONFIG_X86_INTEL_MEMORY_PROTECTION_KEYS
		/* These come out via ProtectionKey: */
		[ilog2(VM_PKEY_BIT0)]	= "",
		[ilog2(VM_PKEY_BIT1)]	= "",
		[ilog2(VM_PKEY_BIT2)]	= "",
		[ilog2(VM_PKEY_BIT3)]	= "",
#endif
685 686 687 688 689
	};
	size_t i;

	seq_puts(m, "VmFlags: ");
	for (i = 0; i < BITS_PER_LONG; i++) {
690 691
		if (!mnemonics[i][0])
			continue;
692 693 694 695 696 697 698 699
		if (vma->vm_flags & (1UL << i)) {
			seq_printf(m, "%c%c ",
				   mnemonics[i][0], mnemonics[i][1]);
		}
	}
	seq_putc(m, '\n');
}

700 701 702 703 704 705 706 707 708 709 710 711 712 713 714 715 716 717 718 719 720 721 722 723 724 725 726 727 728
#ifdef CONFIG_HUGETLB_PAGE
static int smaps_hugetlb_range(pte_t *pte, unsigned long hmask,
				 unsigned long addr, unsigned long end,
				 struct mm_walk *walk)
{
	struct mem_size_stats *mss = walk->private;
	struct vm_area_struct *vma = walk->vma;
	struct page *page = NULL;

	if (pte_present(*pte)) {
		page = vm_normal_page(vma, addr, *pte);
	} else if (is_swap_pte(*pte)) {
		swp_entry_t swpent = pte_to_swp_entry(*pte);

		if (is_migration_entry(swpent))
			page = migration_entry_to_page(swpent);
	}
	if (page) {
		int mapcount = page_mapcount(page);

		if (mapcount >= 2)
			mss->shared_hugetlb += huge_page_size(hstate_vma(vma));
		else
			mss->private_hugetlb += huge_page_size(hstate_vma(vma));
	}
	return 0;
}
#endif /* HUGETLB_PAGE */

729 730 731 732
void __weak arch_show_smap(struct seq_file *m, struct vm_area_struct *vma)
{
}

733
static int show_smap(struct seq_file *m, void *v, int is_pid)
M
Mauricio Lin 已提交
734
{
735
	struct proc_maps_private *priv = m->private;
M
Mauricio Lin 已提交
736
	struct vm_area_struct *vma = v;
737 738
	struct mem_size_stats mss_stack;
	struct mem_size_stats *mss;
D
Dave Hansen 已提交
739 740
	struct mm_walk smaps_walk = {
		.pmd_entry = smaps_pte_range,
741 742 743
#ifdef CONFIG_HUGETLB_PAGE
		.hugetlb_entry = smaps_hugetlb_range,
#endif
D
Dave Hansen 已提交
744 745
		.mm = vma->vm_mm,
	};
746 747 748 749 750 751 752 753 754 755 756 757 758 759 760 761 762
	int ret = 0;
	bool rollup_mode;
	bool last_vma;

	if (priv->rollup) {
		rollup_mode = true;
		mss = priv->rollup;
		if (mss->first) {
			mss->first_vma_start = vma->vm_start;
			mss->first = false;
		}
		last_vma = !m_next_vma(priv, vma);
	} else {
		rollup_mode = false;
		memset(&mss_stack, 0, sizeof(mss_stack));
		mss = &mss_stack;
	}
M
Mauricio Lin 已提交
763

764
	smaps_walk.private = mss;
765 766 767

#ifdef CONFIG_SHMEM
	if (vma->vm_file && shmem_mapping(vma->vm_file->f_mapping)) {
768 769 770 771 772 773 774 775 776 777 778 779 780 781
		/*
		 * For shared or readonly shmem mappings we know that all
		 * swapped out pages belong to the shmem object, and we can
		 * obtain the swap value much more efficiently. For private
		 * writable mappings, we might have COW pages that are
		 * not affected by the parent swapped out pages of the shmem
		 * object, so we have to distinguish them during the page walk.
		 * Unless we know that the shmem object (or the part mapped by
		 * our VMA) has no swapped out pages at all.
		 */
		unsigned long shmem_swapped = shmem_swap_usage(vma);

		if (!shmem_swapped || (vma->vm_flags & VM_SHARED) ||
					!(vma->vm_flags & VM_WRITE)) {
782
			mss->swap = shmem_swapped;
783
		} else {
784
			mss->check_shmem_swap = true;
785 786
			smaps_walk.pte_hole = smaps_pte_hole;
		}
787 788 789
	}
#endif

790
	/* mmap_sem is held in m_start */
791
	walk_page_vma(vma, &smaps_walk);
792 793 794 795 796 797 798 799 800 801 802 803 804
	if (vma->vm_flags & VM_LOCKED)
		mss->pss_locked += mss->pss;

	if (!rollup_mode) {
		show_map_vma(m, vma, is_pid);
	} else if (last_vma) {
		show_vma_header_prefix(
			m, mss->first_vma_start, vma->vm_end, 0, 0, 0, 0);
		seq_pad(m, ' ');
		seq_puts(m, "[rollup]\n");
	} else {
		ret = SEQ_SKIP;
	}
805

806 807 808 809 810 811 812 813 814 815 816 817 818 819 820 821 822 823 824 825 826 827 828 829 830 831 832 833 834 835 836 837 838 839 840 841 842 843 844 845 846 847 848 849 850 851 852 853 854
	if (!rollup_mode)
		seq_printf(m,
			   "Size:           %8lu kB\n"
			   "KernelPageSize: %8lu kB\n"
			   "MMUPageSize:    %8lu kB\n",
			   (vma->vm_end - vma->vm_start) >> 10,
			   vma_kernel_pagesize(vma) >> 10,
			   vma_mmu_pagesize(vma) >> 10);


	if (!rollup_mode || last_vma)
		seq_printf(m,
			   "Rss:            %8lu kB\n"
			   "Pss:            %8lu kB\n"
			   "Shared_Clean:   %8lu kB\n"
			   "Shared_Dirty:   %8lu kB\n"
			   "Private_Clean:  %8lu kB\n"
			   "Private_Dirty:  %8lu kB\n"
			   "Referenced:     %8lu kB\n"
			   "Anonymous:      %8lu kB\n"
			   "LazyFree:       %8lu kB\n"
			   "AnonHugePages:  %8lu kB\n"
			   "ShmemPmdMapped: %8lu kB\n"
			   "Shared_Hugetlb: %8lu kB\n"
			   "Private_Hugetlb: %7lu kB\n"
			   "Swap:           %8lu kB\n"
			   "SwapPss:        %8lu kB\n"
			   "Locked:         %8lu kB\n",
			   mss->resident >> 10,
			   (unsigned long)(mss->pss >> (10 + PSS_SHIFT)),
			   mss->shared_clean  >> 10,
			   mss->shared_dirty  >> 10,
			   mss->private_clean >> 10,
			   mss->private_dirty >> 10,
			   mss->referenced >> 10,
			   mss->anonymous >> 10,
			   mss->lazyfree >> 10,
			   mss->anonymous_thp >> 10,
			   mss->shmem_thp >> 10,
			   mss->shared_hugetlb >> 10,
			   mss->private_hugetlb >> 10,
			   mss->swap >> 10,
			   (unsigned long)(mss->swap_pss >> (10 + PSS_SHIFT)),
			   (unsigned long)(mss->pss >> (10 + PSS_SHIFT)));

	if (!rollup_mode) {
		arch_show_smap(m, vma);
		show_smap_vma_flags(m, vma);
	}
855
	m_cache_vma(m, vma);
856
	return ret;
M
Mauricio Lin 已提交
857 858
}

859 860 861 862 863 864 865 866 867 868
static int show_pid_smap(struct seq_file *m, void *v)
{
	return show_smap(m, v, 1);
}

static int show_tid_smap(struct seq_file *m, void *v)
{
	return show_smap(m, v, 0);
}

869
static const struct seq_operations proc_pid_smaps_op = {
870 871 872
	.start	= m_start,
	.next	= m_next,
	.stop	= m_stop,
873 874 875 876 877 878 879 880
	.show	= show_pid_smap
};

static const struct seq_operations proc_tid_smaps_op = {
	.start	= m_start,
	.next	= m_next,
	.stop	= m_stop,
	.show	= show_tid_smap
881 882
};

883
static int pid_smaps_open(struct inode *inode, struct file *file)
884 885 886 887
{
	return do_maps_open(inode, file, &proc_pid_smaps_op);
}

888 889 890 891 892 893 894 895 896 897 898 899 900 901 902 903 904 905 906
static int pid_smaps_rollup_open(struct inode *inode, struct file *file)
{
	struct seq_file *seq;
	struct proc_maps_private *priv;
	int ret = do_maps_open(inode, file, &proc_pid_smaps_op);

	if (ret < 0)
		return ret;
	seq = file->private_data;
	priv = seq->private;
	priv->rollup = kzalloc(sizeof(*priv->rollup), GFP_KERNEL);
	if (!priv->rollup) {
		proc_map_release(inode, file);
		return -ENOMEM;
	}
	priv->rollup->first = true;
	return 0;
}

907 908 909 910 911 912 913 914 915
static int tid_smaps_open(struct inode *inode, struct file *file)
{
	return do_maps_open(inode, file, &proc_tid_smaps_op);
}

const struct file_operations proc_pid_smaps_operations = {
	.open		= pid_smaps_open,
	.read		= seq_read,
	.llseek		= seq_lseek,
916
	.release	= proc_map_release,
917 918
};

919 920 921 922 923 924 925
const struct file_operations proc_pid_smaps_rollup_operations = {
	.open		= pid_smaps_rollup_open,
	.read		= seq_read,
	.llseek		= seq_lseek,
	.release	= proc_map_release,
};

926 927
const struct file_operations proc_tid_smaps_operations = {
	.open		= tid_smaps_open,
928 929
	.read		= seq_read,
	.llseek		= seq_lseek,
930
	.release	= proc_map_release,
931 932
};

933 934 935 936
enum clear_refs_types {
	CLEAR_REFS_ALL = 1,
	CLEAR_REFS_ANON,
	CLEAR_REFS_MAPPED,
937
	CLEAR_REFS_SOFT_DIRTY,
938
	CLEAR_REFS_MM_HIWATER_RSS,
939 940 941
	CLEAR_REFS_LAST,
};

942
struct clear_refs_private {
943
	enum clear_refs_types type;
944 945
};

946
#ifdef CONFIG_MEM_SOFT_DIRTY
947 948 949 950 951 952 953 954 955 956
static inline void clear_soft_dirty(struct vm_area_struct *vma,
		unsigned long addr, pte_t *pte)
{
	/*
	 * The soft-dirty tracker uses #PF-s to catch writes
	 * to pages, so write-protect the pte as well. See the
	 * Documentation/vm/soft-dirty.txt for full description
	 * of how soft-dirty works.
	 */
	pte_t ptent = *pte;
957 958

	if (pte_present(ptent)) {
959
		ptent = ptep_modify_prot_start(vma->vm_mm, addr, pte);
960
		ptent = pte_wrprotect(ptent);
961
		ptent = pte_clear_soft_dirty(ptent);
962
		ptep_modify_prot_commit(vma->vm_mm, addr, pte, ptent);
963 964
	} else if (is_swap_pte(ptent)) {
		ptent = pte_swp_clear_soft_dirty(ptent);
965
		set_pte_at(vma->vm_mm, addr, pte, ptent);
966
	}
967
}
968 969 970 971 972 973
#else
static inline void clear_soft_dirty(struct vm_area_struct *vma,
		unsigned long addr, pte_t *pte)
{
}
#endif
974

975
#if defined(CONFIG_MEM_SOFT_DIRTY) && defined(CONFIG_TRANSPARENT_HUGEPAGE)
976 977 978
static inline void clear_soft_dirty_pmd(struct vm_area_struct *vma,
		unsigned long addr, pmd_t *pmdp)
{
979 980
	pmd_t pmd = *pmdp;

981 982 983 984 985 986 987 988 989 990 991 992 993 994 995 996
	if (pmd_present(pmd)) {
		/* See comment in change_huge_pmd() */
		pmdp_invalidate(vma, addr, pmdp);
		if (pmd_dirty(*pmdp))
			pmd = pmd_mkdirty(pmd);
		if (pmd_young(*pmdp))
			pmd = pmd_mkyoung(pmd);

		pmd = pmd_wrprotect(pmd);
		pmd = pmd_clear_soft_dirty(pmd);

		set_pmd_at(vma->vm_mm, addr, pmdp, pmd);
	} else if (is_migration_entry(pmd_to_swp_entry(pmd))) {
		pmd = pmd_swp_clear_soft_dirty(pmd);
		set_pmd_at(vma->vm_mm, addr, pmdp, pmd);
	}
997 998 999 1000 1001 1002 1003 1004
}
#else
static inline void clear_soft_dirty_pmd(struct vm_area_struct *vma,
		unsigned long addr, pmd_t *pmdp)
{
}
#endif

1005
static int clear_refs_pte_range(pmd_t *pmd, unsigned long addr,
D
Dave Hansen 已提交
1006
				unsigned long end, struct mm_walk *walk)
1007
{
1008
	struct clear_refs_private *cp = walk->private;
1009
	struct vm_area_struct *vma = walk->vma;
1010 1011 1012 1013
	pte_t *pte, ptent;
	spinlock_t *ptl;
	struct page *page;

1014 1015
	ptl = pmd_trans_huge_lock(pmd, vma);
	if (ptl) {
1016 1017 1018 1019 1020
		if (cp->type == CLEAR_REFS_SOFT_DIRTY) {
			clear_soft_dirty_pmd(vma, addr, pmd);
			goto out;
		}

1021 1022 1023
		if (!pmd_present(*pmd))
			goto out;

1024 1025 1026 1027
		page = pmd_page(*pmd);

		/* Clear accessed and referenced bits. */
		pmdp_test_and_clear_young(vma, addr, pmd);
1028
		test_and_clear_page_young(page);
1029 1030 1031 1032 1033 1034
		ClearPageReferenced(page);
out:
		spin_unlock(ptl);
		return 0;
	}

1035 1036
	if (pmd_trans_unstable(pmd))
		return 0;
1037

1038 1039 1040 1041
	pte = pte_offset_map_lock(vma->vm_mm, pmd, addr, &ptl);
	for (; addr != end; pte++, addr += PAGE_SIZE) {
		ptent = *pte;

1042 1043 1044 1045 1046
		if (cp->type == CLEAR_REFS_SOFT_DIRTY) {
			clear_soft_dirty(vma, addr, pte);
			continue;
		}

1047 1048 1049
		if (!pte_present(ptent))
			continue;

1050 1051 1052 1053 1054 1055
		page = vm_normal_page(vma, addr, ptent);
		if (!page)
			continue;

		/* Clear accessed and referenced bits. */
		ptep_test_and_clear_young(vma, addr, pte);
1056
		test_and_clear_page_young(page);
1057 1058 1059 1060 1061 1062 1063
		ClearPageReferenced(page);
	}
	pte_unmap_unlock(pte - 1, ptl);
	cond_resched();
	return 0;
}

1064 1065 1066 1067 1068 1069
static int clear_refs_test_walk(unsigned long start, unsigned long end,
				struct mm_walk *walk)
{
	struct clear_refs_private *cp = walk->private;
	struct vm_area_struct *vma = walk->vma;

1070 1071 1072
	if (vma->vm_flags & VM_PFNMAP)
		return 1;

1073 1074 1075 1076 1077 1078 1079 1080 1081 1082 1083 1084 1085
	/*
	 * Writing 1 to /proc/pid/clear_refs affects all pages.
	 * Writing 2 to /proc/pid/clear_refs only affects anonymous pages.
	 * Writing 3 to /proc/pid/clear_refs only affects file mapped pages.
	 * Writing 4 to /proc/pid/clear_refs affects all pages.
	 */
	if (cp->type == CLEAR_REFS_ANON && vma->vm_file)
		return 1;
	if (cp->type == CLEAR_REFS_MAPPED && !vma->vm_file)
		return 1;
	return 0;
}

1086 1087
static ssize_t clear_refs_write(struct file *file, const char __user *buf,
				size_t count, loff_t *ppos)
1088
{
1089
	struct task_struct *task;
1090
	char buffer[PROC_NUMBUF];
1091
	struct mm_struct *mm;
1092
	struct vm_area_struct *vma;
1093
	enum clear_refs_types type;
M
Minchan Kim 已提交
1094
	struct mmu_gather tlb;
1095
	int itype;
A
Alexey Dobriyan 已提交
1096
	int rv;
1097

1098 1099 1100 1101 1102
	memset(buffer, 0, sizeof(buffer));
	if (count > sizeof(buffer) - 1)
		count = sizeof(buffer) - 1;
	if (copy_from_user(buffer, buf, count))
		return -EFAULT;
1103
	rv = kstrtoint(strstrip(buffer), 10, &itype);
A
Alexey Dobriyan 已提交
1104 1105
	if (rv < 0)
		return rv;
1106 1107
	type = (enum clear_refs_types)itype;
	if (type < CLEAR_REFS_ALL || type >= CLEAR_REFS_LAST)
1108
		return -EINVAL;
1109

A
Al Viro 已提交
1110
	task = get_proc_task(file_inode(file));
1111 1112 1113 1114
	if (!task)
		return -ESRCH;
	mm = get_task_mm(task);
	if (mm) {
1115
		struct clear_refs_private cp = {
1116
			.type = type,
1117
		};
1118 1119
		struct mm_walk clear_refs_walk = {
			.pmd_entry = clear_refs_pte_range,
1120
			.test_walk = clear_refs_test_walk,
1121
			.mm = mm,
1122
			.private = &cp,
1123
		};
1124 1125

		if (type == CLEAR_REFS_MM_HIWATER_RSS) {
1126 1127 1128 1129 1130
			if (down_write_killable(&mm->mmap_sem)) {
				count = -EINTR;
				goto out_mm;
			}

1131 1132 1133 1134 1135 1136 1137 1138 1139
			/*
			 * Writing 5 to /proc/pid/clear_refs resets the peak
			 * resident set size to this mm's current rss value.
			 */
			reset_mm_hiwater_rss(mm);
			up_write(&mm->mmap_sem);
			goto out_mm;
		}

1140
		down_read(&mm->mmap_sem);
M
Minchan Kim 已提交
1141
		tlb_gather_mmu(&tlb, mm, 0, -1);
1142 1143 1144 1145 1146
		if (type == CLEAR_REFS_SOFT_DIRTY) {
			for (vma = mm->mmap; vma; vma = vma->vm_next) {
				if (!(vma->vm_flags & VM_SOFTDIRTY))
					continue;
				up_read(&mm->mmap_sem);
1147 1148 1149 1150
				if (down_write_killable(&mm->mmap_sem)) {
					count = -EINTR;
					goto out_mm;
				}
1151 1152 1153 1154 1155 1156 1157
				for (vma = mm->mmap; vma; vma = vma->vm_next) {
					vma->vm_flags &= ~VM_SOFTDIRTY;
					vma_set_page_prot(vma);
				}
				downgrade_write(&mm->mmap_sem);
				break;
			}
1158
			mmu_notifier_invalidate_range_start(mm, 0, -1);
1159
		}
1160
		walk_page_range(0, mm->highest_vm_end, &clear_refs_walk);
1161 1162
		if (type == CLEAR_REFS_SOFT_DIRTY)
			mmu_notifier_invalidate_range_end(mm, 0, -1);
M
Minchan Kim 已提交
1163
		tlb_finish_mmu(&tlb, 0, -1);
1164
		up_read(&mm->mmap_sem);
1165
out_mm:
1166 1167 1168
		mmput(mm);
	}
	put_task_struct(task);
1169 1170

	return count;
1171 1172
}

1173 1174
const struct file_operations proc_clear_refs_operations = {
	.write		= clear_refs_write,
1175
	.llseek		= noop_llseek,
1176 1177
};

1178 1179 1180 1181
typedef struct {
	u64 pme;
} pagemap_entry_t;

1182
struct pagemapread {
1183
	int pos, len;		/* units: PM_ENTRY_BYTES, not bytes */
1184
	pagemap_entry_t *buffer;
1185
	bool show_pfn;
1186 1187
};

1188 1189 1190
#define PAGEMAP_WALK_SIZE	(PMD_SIZE)
#define PAGEMAP_WALK_MASK	(PMD_MASK)

1191 1192 1193 1194
#define PM_ENTRY_BYTES		sizeof(pagemap_entry_t)
#define PM_PFRAME_BITS		55
#define PM_PFRAME_MASK		GENMASK_ULL(PM_PFRAME_BITS - 1, 0)
#define PM_SOFT_DIRTY		BIT_ULL(55)
1195
#define PM_MMAP_EXCLUSIVE	BIT_ULL(56)
1196 1197 1198 1199
#define PM_FILE			BIT_ULL(61)
#define PM_SWAP			BIT_ULL(62)
#define PM_PRESENT		BIT_ULL(63)

1200 1201
#define PM_END_OF_BUFFER    1

1202
static inline pagemap_entry_t make_pme(u64 frame, u64 flags)
1203
{
1204
	return (pagemap_entry_t) { .pme = (frame & PM_PFRAME_MASK) | flags };
1205 1206 1207
}

static int add_to_pagemap(unsigned long addr, pagemap_entry_t *pme,
1208 1209
			  struct pagemapread *pm)
{
1210
	pm->buffer[pm->pos++] = *pme;
1211
	if (pm->pos >= pm->len)
1212
		return PM_END_OF_BUFFER;
1213 1214 1215 1216
	return 0;
}

static int pagemap_pte_hole(unsigned long start, unsigned long end,
D
Dave Hansen 已提交
1217
				struct mm_walk *walk)
1218
{
D
Dave Hansen 已提交
1219
	struct pagemapread *pm = walk->private;
1220
	unsigned long addr = start;
1221
	int err = 0;
1222

1223 1224
	while (addr < end) {
		struct vm_area_struct *vma = find_vma(walk->mm, addr);
1225
		pagemap_entry_t pme = make_pme(0, 0);
1226 1227
		/* End of address space hole, which we mark as non-present. */
		unsigned long hole_end;
1228

1229 1230 1231 1232 1233 1234 1235 1236 1237
		if (vma)
			hole_end = min(end, vma->vm_start);
		else
			hole_end = end;

		for (; addr < hole_end; addr += PAGE_SIZE) {
			err = add_to_pagemap(addr, &pme, pm);
			if (err)
				goto out;
1238 1239
		}

1240 1241 1242 1243 1244
		if (!vma)
			break;

		/* Addresses in the VMA. */
		if (vma->vm_flags & VM_SOFTDIRTY)
1245
			pme = make_pme(0, PM_SOFT_DIRTY);
1246
		for (; addr < min(end, vma->vm_end); addr += PAGE_SIZE) {
1247 1248 1249 1250
			err = add_to_pagemap(addr, &pme, pm);
			if (err)
				goto out;
		}
1251
	}
1252
out:
1253 1254 1255
	return err;
}

1256
static pagemap_entry_t pte_to_pagemap_entry(struct pagemapread *pm,
1257
		struct vm_area_struct *vma, unsigned long addr, pte_t pte)
1258
{
1259
	u64 frame = 0, flags = 0;
1260
	struct page *page = NULL;
1261

1262
	if (pte_present(pte)) {
1263 1264
		if (pm->show_pfn)
			frame = pte_pfn(pte);
1265
		flags |= PM_PRESENT;
1266
		page = vm_normal_page(vma, addr, pte);
1267
		if (pte_soft_dirty(pte))
1268
			flags |= PM_SOFT_DIRTY;
1269
	} else if (is_swap_pte(pte)) {
1270 1271
		swp_entry_t entry;
		if (pte_swp_soft_dirty(pte))
1272
			flags |= PM_SOFT_DIRTY;
1273
		entry = pte_to_swp_entry(pte);
1274 1275
		frame = swp_type(entry) |
			(swp_offset(entry) << MAX_SWAPFILES_SHIFT);
1276
		flags |= PM_SWAP;
1277 1278 1279 1280 1281 1282
		if (is_migration_entry(entry))
			page = migration_entry_to_page(entry);
	}

	if (page && !PageAnon(page))
		flags |= PM_FILE;
1283 1284
	if (page && page_mapcount(page) == 1)
		flags |= PM_MMAP_EXCLUSIVE;
1285 1286
	if (vma->vm_flags & VM_SOFTDIRTY)
		flags |= PM_SOFT_DIRTY;
1287

1288
	return make_pme(frame, flags);
1289 1290
}

1291
static int pagemap_pmd_range(pmd_t *pmdp, unsigned long addr, unsigned long end,
D
Dave Hansen 已提交
1292
			     struct mm_walk *walk)
1293
{
1294
	struct vm_area_struct *vma = walk->vma;
D
Dave Hansen 已提交
1295
	struct pagemapread *pm = walk->private;
1296
	spinlock_t *ptl;
1297
	pte_t *pte, *orig_pte;
1298 1299
	int err = 0;

1300
#ifdef CONFIG_TRANSPARENT_HUGEPAGE
1301 1302
	ptl = pmd_trans_huge_lock(pmdp, vma);
	if (ptl) {
1303 1304
		u64 flags = 0, frame = 0;
		pmd_t pmd = *pmdp;
1305
		struct page *page = NULL;
1306

1307
		if ((vma->vm_flags & VM_SOFTDIRTY) || pmd_soft_dirty(pmd))
1308
			flags |= PM_SOFT_DIRTY;
1309

1310
		if (pmd_present(pmd)) {
1311
			page = pmd_page(pmd);
1312

1313
			flags |= PM_PRESENT;
1314 1315 1316
			if (pm->show_pfn)
				frame = pmd_pfn(pmd) +
					((addr & ~PMD_MASK) >> PAGE_SHIFT);
1317
		}
1318 1319 1320 1321 1322 1323 1324 1325 1326 1327 1328 1329 1330 1331
#ifdef CONFIG_ARCH_ENABLE_THP_MIGRATION
		else if (is_swap_pmd(pmd)) {
			swp_entry_t entry = pmd_to_swp_entry(pmd);

			frame = swp_type(entry) |
				(swp_offset(entry) << MAX_SWAPFILES_SHIFT);
			flags |= PM_SWAP;
			VM_BUG_ON(!is_pmd_migration_entry(pmd));
			page = migration_entry_to_page(entry);
		}
#endif

		if (page && page_mapcount(page) == 1)
			flags |= PM_MMAP_EXCLUSIVE;
1332

1333
		for (; addr != end; addr += PAGE_SIZE) {
1334
			pagemap_entry_t pme = make_pme(frame, flags);
1335

1336
			err = add_to_pagemap(addr, &pme, pm);
1337 1338
			if (err)
				break;
1339
			if (pm->show_pfn && (flags & PM_PRESENT))
1340
				frame++;
1341
		}
1342
		spin_unlock(ptl);
1343
		return err;
1344 1345
	}

1346
	if (pmd_trans_unstable(pmdp))
1347
		return 0;
1348
#endif /* CONFIG_TRANSPARENT_HUGEPAGE */
1349

1350 1351 1352 1353
	/*
	 * We can assume that @vma always points to a valid one and @end never
	 * goes beyond vma->vm_end.
	 */
1354
	orig_pte = pte = pte_offset_map_lock(walk->mm, pmdp, addr, &ptl);
1355 1356
	for (; addr < end; pte++, addr += PAGE_SIZE) {
		pagemap_entry_t pme;
1357

1358
		pme = pte_to_pagemap_entry(pm, vma, addr, *pte);
1359
		err = add_to_pagemap(addr, &pme, pm);
1360
		if (err)
1361
			break;
1362
	}
1363
	pte_unmap_unlock(orig_pte, ptl);
1364 1365 1366 1367 1368 1369

	cond_resched();

	return err;
}

1370
#ifdef CONFIG_HUGETLB_PAGE
1371
/* This function walks within one hugetlb entry in the single call */
1372
static int pagemap_hugetlb_range(pte_t *ptep, unsigned long hmask,
1373 1374
				 unsigned long addr, unsigned long end,
				 struct mm_walk *walk)
1375 1376
{
	struct pagemapread *pm = walk->private;
1377
	struct vm_area_struct *vma = walk->vma;
1378
	u64 flags = 0, frame = 0;
1379
	int err = 0;
1380
	pte_t pte;
1381

1382
	if (vma->vm_flags & VM_SOFTDIRTY)
1383
		flags |= PM_SOFT_DIRTY;
1384

1385 1386 1387 1388 1389 1390 1391
	pte = huge_ptep_get(ptep);
	if (pte_present(pte)) {
		struct page *page = pte_page(pte);

		if (!PageAnon(page))
			flags |= PM_FILE;

1392 1393 1394
		if (page_mapcount(page) == 1)
			flags |= PM_MMAP_EXCLUSIVE;

1395
		flags |= PM_PRESENT;
1396 1397 1398
		if (pm->show_pfn)
			frame = pte_pfn(pte) +
				((addr & ~hmask) >> PAGE_SHIFT);
1399 1400
	}

1401
	for (; addr != end; addr += PAGE_SIZE) {
1402 1403
		pagemap_entry_t pme = make_pme(frame, flags);

1404
		err = add_to_pagemap(addr, &pme, pm);
1405 1406
		if (err)
			return err;
1407
		if (pm->show_pfn && (flags & PM_PRESENT))
1408
			frame++;
1409 1410 1411 1412 1413 1414
	}

	cond_resched();

	return err;
}
1415
#endif /* HUGETLB_PAGE */
1416

1417 1418 1419
/*
 * /proc/pid/pagemap - an array mapping virtual pages to pfns
 *
1420 1421 1422
 * For each page in the address space, this file contains one 64-bit entry
 * consisting of the following:
 *
1423
 * Bits 0-54  page frame number (PFN) if present
1424
 * Bits 0-4   swap type if swapped
1425
 * Bits 5-54  swap offset if swapped
1426
 * Bit  55    pte is soft-dirty (see Documentation/vm/soft-dirty.txt)
1427 1428
 * Bit  56    page exclusively mapped
 * Bits 57-60 zero
1429
 * Bit  61    page is file-page or shared-anon
1430 1431 1432 1433 1434 1435
 * Bit  62    page swapped
 * Bit  63    page present
 *
 * If the page is not present but in swap, then the PFN contains an
 * encoding of the swap file number and the page's offset into the
 * swap. Unmapped pages return a null PFN. This allows determining
1436 1437 1438 1439 1440 1441 1442 1443 1444 1445
 * precisely which pages are mapped (or in swap) and comparing mapped
 * pages between processes.
 *
 * Efficient users of this interface will use /proc/pid/maps to
 * determine which areas of memory are actually mapped and llseek to
 * skip over unmapped regions.
 */
static ssize_t pagemap_read(struct file *file, char __user *buf,
			    size_t count, loff_t *ppos)
{
1446
	struct mm_struct *mm = file->private_data;
1447
	struct pagemapread pm;
1448
	struct mm_walk pagemap_walk = {};
1449 1450 1451 1452
	unsigned long src;
	unsigned long svpfn;
	unsigned long start_vaddr;
	unsigned long end_vaddr;
1453
	int ret = 0, copied = 0;
1454

V
Vegard Nossum 已提交
1455
	if (!mm || !mmget_not_zero(mm))
1456 1457 1458 1459
		goto out;

	ret = -EINVAL;
	/* file position must be aligned */
1460
	if ((*ppos % PM_ENTRY_BYTES) || (count % PM_ENTRY_BYTES))
1461
		goto out_mm;
1462 1463

	ret = 0;
1464
	if (!count)
1465
		goto out_mm;
1466

1467 1468 1469
	/* do not disclose physical addresses: attack vector */
	pm.show_pfn = file_ns_capable(file, &init_user_ns, CAP_SYS_ADMIN);

1470 1471
	pm.len = (PAGEMAP_WALK_SIZE >> PAGE_SHIFT);
	pm.buffer = kmalloc(pm.len * PM_ENTRY_BYTES, GFP_TEMPORARY);
1472
	ret = -ENOMEM;
1473
	if (!pm.buffer)
1474
		goto out_mm;
1475

1476
	pagemap_walk.pmd_entry = pagemap_pmd_range;
1477
	pagemap_walk.pte_hole = pagemap_pte_hole;
1478
#ifdef CONFIG_HUGETLB_PAGE
1479
	pagemap_walk.hugetlb_entry = pagemap_hugetlb_range;
1480
#endif
1481 1482 1483 1484 1485 1486
	pagemap_walk.mm = mm;
	pagemap_walk.private = &pm;

	src = *ppos;
	svpfn = src / PM_ENTRY_BYTES;
	start_vaddr = svpfn << PAGE_SHIFT;
1487
	end_vaddr = mm->task_size;
1488 1489

	/* watch out for wraparound */
1490
	if (svpfn > mm->task_size >> PAGE_SHIFT)
1491 1492 1493 1494 1495 1496 1497 1498
		start_vaddr = end_vaddr;

	/*
	 * The odds are that this will stop walking way
	 * before end_vaddr, because the length of the
	 * user buffer is tracked in "pm", and the walk
	 * will stop when we hit the end of the buffer.
	 */
1499 1500 1501 1502 1503 1504
	ret = 0;
	while (count && (start_vaddr < end_vaddr)) {
		int len;
		unsigned long end;

		pm.pos = 0;
1505
		end = (start_vaddr + PAGEMAP_WALK_SIZE) & PAGEMAP_WALK_MASK;
1506 1507 1508 1509 1510 1511 1512 1513 1514
		/* overflow ? */
		if (end < start_vaddr || end > end_vaddr)
			end = end_vaddr;
		down_read(&mm->mmap_sem);
		ret = walk_page_range(start_vaddr, end, &pagemap_walk);
		up_read(&mm->mmap_sem);
		start_vaddr = end;

		len = min(count, PM_ENTRY_BYTES * pm.pos);
1515
		if (copy_to_user(buf, pm.buffer, len)) {
1516
			ret = -EFAULT;
1517
			goto out_free;
1518 1519 1520 1521
		}
		copied += len;
		buf += len;
		count -= len;
1522
	}
1523 1524 1525 1526
	*ppos += copied;
	if (!ret || ret == PM_END_OF_BUFFER)
		ret = copied;

1527 1528
out_free:
	kfree(pm.buffer);
1529 1530
out_mm:
	mmput(mm);
1531 1532 1533 1534
out:
	return ret;
}

1535 1536
static int pagemap_open(struct inode *inode, struct file *file)
{
1537 1538 1539 1540 1541 1542 1543 1544 1545 1546 1547 1548 1549 1550 1551
	struct mm_struct *mm;

	mm = proc_mem_open(inode, PTRACE_MODE_READ);
	if (IS_ERR(mm))
		return PTR_ERR(mm);
	file->private_data = mm;
	return 0;
}

static int pagemap_release(struct inode *inode, struct file *file)
{
	struct mm_struct *mm = file->private_data;

	if (mm)
		mmdrop(mm);
1552 1553 1554
	return 0;
}

1555 1556 1557
const struct file_operations proc_pagemap_operations = {
	.llseek		= mem_lseek, /* borrow this */
	.read		= pagemap_read,
1558
	.open		= pagemap_open,
1559
	.release	= pagemap_release,
1560
};
1561
#endif /* CONFIG_PROC_PAGE_MONITOR */
1562

1563 1564
#ifdef CONFIG_NUMA

1565 1566 1567 1568 1569 1570 1571 1572 1573 1574 1575
struct numa_maps {
	unsigned long pages;
	unsigned long anon;
	unsigned long active;
	unsigned long writeback;
	unsigned long mapcount_max;
	unsigned long dirty;
	unsigned long swapcache;
	unsigned long node[MAX_NUMNODES];
};

1576 1577 1578 1579 1580
struct numa_maps_private {
	struct proc_maps_private proc_maps;
	struct numa_maps md;
};

1581 1582
static void gather_stats(struct page *page, struct numa_maps *md, int pte_dirty,
			unsigned long nr_pages)
1583 1584 1585
{
	int count = page_mapcount(page);

1586
	md->pages += nr_pages;
1587
	if (pte_dirty || PageDirty(page))
1588
		md->dirty += nr_pages;
1589 1590

	if (PageSwapCache(page))
1591
		md->swapcache += nr_pages;
1592 1593

	if (PageActive(page) || PageUnevictable(page))
1594
		md->active += nr_pages;
1595 1596

	if (PageWriteback(page))
1597
		md->writeback += nr_pages;
1598 1599

	if (PageAnon(page))
1600
		md->anon += nr_pages;
1601 1602 1603 1604

	if (count > md->mapcount_max)
		md->mapcount_max = count;

1605
	md->node[page_to_nid(page)] += nr_pages;
1606 1607
}

1608 1609 1610 1611 1612 1613 1614 1615 1616 1617 1618 1619 1620 1621 1622 1623 1624
static struct page *can_gather_numa_stats(pte_t pte, struct vm_area_struct *vma,
		unsigned long addr)
{
	struct page *page;
	int nid;

	if (!pte_present(pte))
		return NULL;

	page = vm_normal_page(vma, addr, pte);
	if (!page)
		return NULL;

	if (PageReserved(page))
		return NULL;

	nid = page_to_nid(page);
1625
	if (!node_isset(nid, node_states[N_MEMORY]))
1626 1627 1628 1629 1630
		return NULL;

	return page;
}

1631 1632 1633 1634 1635 1636 1637 1638 1639 1640 1641 1642 1643 1644 1645 1646 1647 1648 1649 1650 1651 1652 1653 1654 1655 1656
#ifdef CONFIG_TRANSPARENT_HUGEPAGE
static struct page *can_gather_numa_stats_pmd(pmd_t pmd,
					      struct vm_area_struct *vma,
					      unsigned long addr)
{
	struct page *page;
	int nid;

	if (!pmd_present(pmd))
		return NULL;

	page = vm_normal_page_pmd(vma, addr, pmd);
	if (!page)
		return NULL;

	if (PageReserved(page))
		return NULL;

	nid = page_to_nid(page);
	if (!node_isset(nid, node_states[N_MEMORY]))
		return NULL;

	return page;
}
#endif

1657 1658 1659
static int gather_pte_stats(pmd_t *pmd, unsigned long addr,
		unsigned long end, struct mm_walk *walk)
{
1660 1661
	struct numa_maps *md = walk->private;
	struct vm_area_struct *vma = walk->vma;
1662 1663 1664 1665
	spinlock_t *ptl;
	pte_t *orig_pte;
	pte_t *pte;

1666
#ifdef CONFIG_TRANSPARENT_HUGEPAGE
1667 1668
	ptl = pmd_trans_huge_lock(pmd, vma);
	if (ptl) {
1669 1670
		struct page *page;

1671
		page = can_gather_numa_stats_pmd(*pmd, vma, addr);
1672
		if (page)
1673
			gather_stats(page, md, pmd_dirty(*pmd),
1674
				     HPAGE_PMD_SIZE/PAGE_SIZE);
1675
		spin_unlock(ptl);
1676
		return 0;
1677 1678
	}

1679 1680
	if (pmd_trans_unstable(pmd))
		return 0;
1681
#endif
1682 1683
	orig_pte = pte = pte_offset_map_lock(walk->mm, pmd, addr, &ptl);
	do {
1684
		struct page *page = can_gather_numa_stats(*pte, vma, addr);
1685 1686
		if (!page)
			continue;
1687
		gather_stats(page, md, pte_dirty(*pte), 1);
1688 1689 1690

	} while (pte++, addr += PAGE_SIZE, addr != end);
	pte_unmap_unlock(orig_pte, ptl);
1691
	cond_resched();
1692 1693 1694
	return 0;
}
#ifdef CONFIG_HUGETLB_PAGE
1695
static int gather_hugetlb_stats(pte_t *pte, unsigned long hmask,
1696 1697
		unsigned long addr, unsigned long end, struct mm_walk *walk)
{
1698
	pte_t huge_pte = huge_ptep_get(pte);
1699 1700 1701
	struct numa_maps *md;
	struct page *page;

1702
	if (!pte_present(huge_pte))
1703 1704
		return 0;

1705
	page = pte_page(huge_pte);
1706 1707 1708 1709
	if (!page)
		return 0;

	md = walk->private;
1710
	gather_stats(page, md, pte_dirty(huge_pte), 1);
1711 1712 1713 1714
	return 0;
}

#else
1715
static int gather_hugetlb_stats(pte_t *pte, unsigned long hmask,
1716 1717 1718 1719 1720 1721 1722 1723 1724
		unsigned long addr, unsigned long end, struct mm_walk *walk)
{
	return 0;
}
#endif

/*
 * Display pages allocated per node and memory policy via /proc.
 */
1725
static int show_numa_map(struct seq_file *m, void *v, int is_pid)
1726
{
1727 1728
	struct numa_maps_private *numa_priv = m->private;
	struct proc_maps_private *proc_priv = &numa_priv->proc_maps;
1729
	struct vm_area_struct *vma = v;
1730
	struct numa_maps *md = &numa_priv->md;
1731 1732
	struct file *file = vma->vm_file;
	struct mm_struct *mm = vma->vm_mm;
1733 1734 1735 1736 1737 1738
	struct mm_walk walk = {
		.hugetlb_entry = gather_hugetlb_stats,
		.pmd_entry = gather_pte_stats,
		.private = md,
		.mm = mm,
	};
1739
	struct mempolicy *pol;
1740 1741
	char buffer[64];
	int nid;
1742 1743 1744 1745

	if (!mm)
		return 0;

1746 1747
	/* Ensure we start with an empty set of numa_maps statistics. */
	memset(md, 0, sizeof(*md));
1748

1749 1750 1751 1752 1753 1754 1755
	pol = __get_vma_policy(vma, vma->vm_start);
	if (pol) {
		mpol_to_str(buffer, sizeof(buffer), pol);
		mpol_cond_put(pol);
	} else {
		mpol_to_str(buffer, sizeof(buffer), proc_priv->task_mempolicy);
	}
1756 1757 1758 1759

	seq_printf(m, "%08lx %s", vma->vm_start, buffer);

	if (file) {
1760
		seq_puts(m, " file=");
M
Miklos Szeredi 已提交
1761
		seq_file_path(m, file, "\n\t= ");
1762
	} else if (vma->vm_start <= mm->brk && vma->vm_end >= mm->start_brk) {
1763
		seq_puts(m, " heap");
1764
	} else if (is_stack(proc_priv, vma)) {
1765
		seq_puts(m, " stack");
1766 1767
	}

1768
	if (is_vm_hugetlb_page(vma))
1769
		seq_puts(m, " huge");
1770

1771 1772
	/* mmap_sem is held by m_start */
	walk_page_vma(vma, &walk);
1773 1774 1775 1776 1777 1778 1779 1780 1781 1782 1783 1784 1785 1786 1787 1788 1789 1790 1791 1792 1793 1794 1795 1796 1797

	if (!md->pages)
		goto out;

	if (md->anon)
		seq_printf(m, " anon=%lu", md->anon);

	if (md->dirty)
		seq_printf(m, " dirty=%lu", md->dirty);

	if (md->pages != md->anon && md->pages != md->dirty)
		seq_printf(m, " mapped=%lu", md->pages);

	if (md->mapcount_max > 1)
		seq_printf(m, " mapmax=%lu", md->mapcount_max);

	if (md->swapcache)
		seq_printf(m, " swapcache=%lu", md->swapcache);

	if (md->active < md->pages && !is_vm_hugetlb_page(vma))
		seq_printf(m, " active=%lu", md->active);

	if (md->writeback)
		seq_printf(m, " writeback=%lu", md->writeback);

1798 1799 1800
	for_each_node_state(nid, N_MEMORY)
		if (md->node[nid])
			seq_printf(m, " N%d=%lu", nid, md->node[nid]);
1801 1802

	seq_printf(m, " kernelpagesize_kB=%lu", vma_kernel_pagesize(vma) >> 10);
1803 1804
out:
	seq_putc(m, '\n');
1805
	m_cache_vma(m, vma);
1806 1807
	return 0;
}
1808

1809 1810 1811 1812 1813 1814 1815 1816 1817 1818
static int show_pid_numa_map(struct seq_file *m, void *v)
{
	return show_numa_map(m, v, 1);
}

static int show_tid_numa_map(struct seq_file *m, void *v)
{
	return show_numa_map(m, v, 0);
}

1819
static const struct seq_operations proc_pid_numa_maps_op = {
1820 1821 1822 1823
	.start  = m_start,
	.next   = m_next,
	.stop   = m_stop,
	.show   = show_pid_numa_map,
1824
};
1825

1826 1827 1828 1829 1830 1831 1832 1833 1834
static const struct seq_operations proc_tid_numa_maps_op = {
	.start  = m_start,
	.next   = m_next,
	.stop   = m_stop,
	.show   = show_tid_numa_map,
};

static int numa_maps_open(struct inode *inode, struct file *file,
			  const struct seq_operations *ops)
1835
{
1836 1837
	return proc_maps_open(inode, file, ops,
				sizeof(struct numa_maps_private));
1838 1839
}

1840 1841 1842 1843 1844 1845 1846 1847 1848 1849 1850 1851 1852 1853
static int pid_numa_maps_open(struct inode *inode, struct file *file)
{
	return numa_maps_open(inode, file, &proc_pid_numa_maps_op);
}

static int tid_numa_maps_open(struct inode *inode, struct file *file)
{
	return numa_maps_open(inode, file, &proc_tid_numa_maps_op);
}

const struct file_operations proc_pid_numa_maps_operations = {
	.open		= pid_numa_maps_open,
	.read		= seq_read,
	.llseek		= seq_lseek,
1854
	.release	= proc_map_release,
1855 1856 1857 1858
};

const struct file_operations proc_tid_numa_maps_operations = {
	.open		= tid_numa_maps_open,
1859 1860
	.read		= seq_read,
	.llseek		= seq_lseek,
1861
	.release	= proc_map_release,
1862
};
1863
#endif /* CONFIG_NUMA */