mem.c 18.5 KB
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/*
 *  linux/drivers/char/mem.c
 *
 *  Copyright (C) 1991, 1992  Linus Torvalds
 *
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 *  Added devfs support.
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 *    Jan-11-1998, C. Scott Ananian <cananian@alumni.princeton.edu>
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 *  Shared /dev/zero mmapping support, Feb 2000, Kanoj Sarcar <kanoj@sgi.com>
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 */

#include <linux/mm.h>
#include <linux/miscdevice.h>
#include <linux/slab.h>
#include <linux/vmalloc.h>
#include <linux/mman.h>
#include <linux/random.h>
#include <linux/init.h>
#include <linux/raw.h>
#include <linux/tty.h>
#include <linux/capability.h>
#include <linux/ptrace.h>
#include <linux/device.h>
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#include <linux/highmem.h>
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#include <linux/backing-dev.h>
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#include <linux/splice.h>
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#include <linux/pfn.h>
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#include <linux/export.h>
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#include <linux/io.h>
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#include <linux/aio.h>
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#include <asm/uaccess.h>

#ifdef CONFIG_IA64
# include <linux/efi.h>
#endif

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#define DEVPORT_MINOR	4

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static inline unsigned long size_inside_page(unsigned long start,
					     unsigned long size)
{
	unsigned long sz;

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	sz = PAGE_SIZE - (start & (PAGE_SIZE - 1));
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	return min(sz, size);
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}

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#ifndef ARCH_HAS_VALID_PHYS_ADDR_RANGE
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static inline int valid_phys_addr_range(phys_addr_t addr, size_t count)
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{
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	return addr + count <= __pa(high_memory);
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}
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static inline int valid_mmap_phys_addr_range(unsigned long pfn, size_t size)
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{
	return 1;
}
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#endif

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#ifdef CONFIG_STRICT_DEVMEM
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static inline int range_is_allowed(unsigned long pfn, unsigned long size)
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{
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	u64 from = ((u64)pfn) << PAGE_SHIFT;
	u64 to = from + size;
	u64 cursor = from;

	while (cursor < to) {
		if (!devmem_is_allowed(pfn)) {
			printk(KERN_INFO
		"Program %s tried to access /dev/mem between %Lx->%Lx.\n",
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				current->comm, from, to);
			return 0;
		}
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		cursor += PAGE_SIZE;
		pfn++;
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	}
	return 1;
}
#else
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static inline int range_is_allowed(unsigned long pfn, unsigned long size)
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{
	return 1;
}
#endif

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#ifndef unxlate_dev_mem_ptr
#define unxlate_dev_mem_ptr unxlate_dev_mem_ptr
void __weak unxlate_dev_mem_ptr(phys_addr_t phys, void *addr)
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{
}
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#endif
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/*
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 * This funcion reads the *physical* memory. The f_pos points directly to the
 * memory location.
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 */
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static ssize_t read_mem(struct file *file, char __user *buf,
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			size_t count, loff_t *ppos)
{
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	phys_addr_t p = *ppos;
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	ssize_t read, sz;
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	void *ptr;
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	if (p != *ppos)
		return 0;

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	if (!valid_phys_addr_range(p, count))
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		return -EFAULT;
	read = 0;
#ifdef __ARCH_HAS_NO_PAGE_ZERO_MAPPED
	/* we don't have page 0 mapped on sparc and m68k.. */
	if (p < PAGE_SIZE) {
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		sz = size_inside_page(p, count);
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		if (sz > 0) {
			if (clear_user(buf, sz))
				return -EFAULT;
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			buf += sz;
			p += sz;
			count -= sz;
			read += sz;
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		}
	}
#endif

	while (count > 0) {
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		unsigned long remaining;

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		sz = size_inside_page(p, count);
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		if (!range_is_allowed(p >> PAGE_SHIFT, count))
			return -EPERM;

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		/*
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		 * On ia64 if a page has been mapped somewhere as uncached, then
		 * it must also be accessed uncached by the kernel or data
		 * corruption may occur.
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		 */
		ptr = xlate_dev_mem_ptr(p);
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		if (!ptr)
			return -EFAULT;
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		remaining = copy_to_user(buf, ptr, sz);
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		unxlate_dev_mem_ptr(p, ptr);
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		if (remaining)
			return -EFAULT;
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		buf += sz;
		p += sz;
		count -= sz;
		read += sz;
	}

	*ppos += read;
	return read;
}

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static ssize_t write_mem(struct file *file, const char __user *buf,
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			 size_t count, loff_t *ppos)
{
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	phys_addr_t p = *ppos;
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	ssize_t written, sz;
	unsigned long copied;
	void *ptr;

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	if (p != *ppos)
		return -EFBIG;

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	if (!valid_phys_addr_range(p, count))
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		return -EFAULT;

	written = 0;

#ifdef __ARCH_HAS_NO_PAGE_ZERO_MAPPED
	/* we don't have page 0 mapped on sparc and m68k.. */
	if (p < PAGE_SIZE) {
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		sz = size_inside_page(p, count);
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		/* Hmm. Do something? */
		buf += sz;
		p += sz;
		count -= sz;
		written += sz;
	}
#endif

	while (count > 0) {
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		sz = size_inside_page(p, count);
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		if (!range_is_allowed(p >> PAGE_SHIFT, sz))
			return -EPERM;

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		/*
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		 * On ia64 if a page has been mapped somewhere as uncached, then
		 * it must also be accessed uncached by the kernel or data
		 * corruption may occur.
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		 */
		ptr = xlate_dev_mem_ptr(p);
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		if (!ptr) {
			if (written)
				break;
			return -EFAULT;
		}
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		copied = copy_from_user(ptr, buf, sz);
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		unxlate_dev_mem_ptr(p, ptr);
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		if (copied) {
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			written += sz - copied;
			if (written)
				break;
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			return -EFAULT;
		}
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		buf += sz;
		p += sz;
		count -= sz;
		written += sz;
	}

	*ppos += written;
	return written;
}

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int __weak phys_mem_access_prot_allowed(struct file *file,
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	unsigned long pfn, unsigned long size, pgprot_t *vma_prot)
{
	return 1;
}

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#ifndef __HAVE_PHYS_MEM_ACCESS_PROT
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/*
 * Architectures vary in how they handle caching for addresses
 * outside of main memory.
 *
 */
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#ifdef pgprot_noncached
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static int uncached_access(struct file *file, phys_addr_t addr)
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{
#if defined(CONFIG_IA64)
	/*
	 * On ia64, we ignore O_DSYNC because we cannot tolerate memory
	 * attribute aliases.
	 */
	return !(efi_mem_attributes(addr) & EFI_MEMORY_WB);
#elif defined(CONFIG_MIPS)
	{
		extern int __uncached_access(struct file *file,
					     unsigned long addr);

		return __uncached_access(file, addr);
	}
#else
	/*
	 * Accessing memory above the top the kernel knows about or through a
	 * file pointer
	 * that was marked O_DSYNC will be done non-cached.
	 */
	if (file->f_flags & O_DSYNC)
		return 1;
	return addr >= __pa(high_memory);
#endif
}
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#endif
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static pgprot_t phys_mem_access_prot(struct file *file, unsigned long pfn,
				     unsigned long size, pgprot_t vma_prot)
{
#ifdef pgprot_noncached
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	phys_addr_t offset = pfn << PAGE_SHIFT;
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	if (uncached_access(file, offset))
		return pgprot_noncached(vma_prot);
#endif
	return vma_prot;
}
#endif

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#ifndef CONFIG_MMU
static unsigned long get_unmapped_area_mem(struct file *file,
					   unsigned long addr,
					   unsigned long len,
					   unsigned long pgoff,
					   unsigned long flags)
{
	if (!valid_mmap_phys_addr_range(pgoff, len))
		return (unsigned long) -EINVAL;
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	return pgoff << PAGE_SHIFT;
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}

/* can't do an in-place private mapping if there's no MMU */
static inline int private_mapping_ok(struct vm_area_struct *vma)
{
	return vma->vm_flags & VM_MAYSHARE;
}
#else
#define get_unmapped_area_mem	NULL

static inline int private_mapping_ok(struct vm_area_struct *vma)
{
	return 1;
}
#endif

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static const struct vm_operations_struct mmap_mem_ops = {
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#ifdef CONFIG_HAVE_IOREMAP_PROT
	.access = generic_access_phys
#endif
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};

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static int mmap_mem(struct file *file, struct vm_area_struct *vma)
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{
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	size_t size = vma->vm_end - vma->vm_start;

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	if (!valid_mmap_phys_addr_range(vma->vm_pgoff, size))
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		return -EINVAL;

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	if (!private_mapping_ok(vma))
		return -ENOSYS;

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	if (!range_is_allowed(vma->vm_pgoff, size))
		return -EPERM;

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	if (!phys_mem_access_prot_allowed(file, vma->vm_pgoff, size,
						&vma->vm_page_prot))
		return -EINVAL;

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	vma->vm_page_prot = phys_mem_access_prot(file, vma->vm_pgoff,
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						 size,
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						 vma->vm_page_prot);

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	vma->vm_ops = &mmap_mem_ops;

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	/* Remap-pfn-range will mark the range VM_IO */
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	if (remap_pfn_range(vma,
			    vma->vm_start,
			    vma->vm_pgoff,
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			    size,
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			    vma->vm_page_prot)) {
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		return -EAGAIN;
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	}
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	return 0;
}

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static int mmap_kmem(struct file *file, struct vm_area_struct *vma)
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{
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	unsigned long pfn;

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	/* Turn a kernel-virtual address into a physical page frame */
	pfn = __pa((u64)vma->vm_pgoff << PAGE_SHIFT) >> PAGE_SHIFT;
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	/*
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	 * RED-PEN: on some architectures there is more mapped memory than
	 * available in mem_map which pfn_valid checks for. Perhaps should add a
	 * new macro here.
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	 *
	 * RED-PEN: vmalloc is not supported right now.
	 */
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	if (!pfn_valid(pfn))
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		return -EIO;
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	vma->vm_pgoff = pfn;
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	return mmap_mem(file, vma);
}

/*
 * This function reads the *virtual* memory as seen by the kernel.
 */
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static ssize_t read_kmem(struct file *file, char __user *buf,
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			 size_t count, loff_t *ppos)
{
	unsigned long p = *ppos;
	ssize_t low_count, read, sz;
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	char *kbuf; /* k-addr because vread() takes vmlist_lock rwlock */
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	int err = 0;
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	read = 0;
	if (p < (unsigned long) high_memory) {
		low_count = count;
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		if (count > (unsigned long)high_memory - p)
			low_count = (unsigned long)high_memory - p;
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#ifdef __ARCH_HAS_NO_PAGE_ZERO_MAPPED
		/* we don't have page 0 mapped on sparc and m68k.. */
		if (p < PAGE_SIZE && low_count > 0) {
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			sz = size_inside_page(p, low_count);
			if (clear_user(buf, sz))
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				return -EFAULT;
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			buf += sz;
			p += sz;
			read += sz;
			low_count -= sz;
			count -= sz;
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		}
#endif
		while (low_count > 0) {
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			sz = size_inside_page(p, low_count);
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			/*
			 * On ia64 if a page has been mapped somewhere as
			 * uncached, then it must also be accessed uncached
			 * by the kernel or data corruption may occur
			 */
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			kbuf = xlate_dev_kmem_ptr((void *)p);
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			if (copy_to_user(buf, kbuf, sz))
				return -EFAULT;
			buf += sz;
			p += sz;
			read += sz;
			low_count -= sz;
			count -= sz;
		}
	}

	if (count > 0) {
		kbuf = (char *)__get_free_page(GFP_KERNEL);
		if (!kbuf)
			return -ENOMEM;
		while (count > 0) {
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			sz = size_inside_page(p, count);
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			if (!is_vmalloc_or_module_addr((void *)p)) {
				err = -ENXIO;
				break;
			}
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			sz = vread(kbuf, (char *)p, sz);
			if (!sz)
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				break;
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			if (copy_to_user(buf, kbuf, sz)) {
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				err = -EFAULT;
				break;
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			}
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			count -= sz;
			buf += sz;
			read += sz;
			p += sz;
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		}
		free_page((unsigned long)kbuf);
	}
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	*ppos = p;
	return read ? read : err;
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}


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static ssize_t do_write_kmem(unsigned long p, const char __user *buf,
				size_t count, loff_t *ppos)
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{
	ssize_t written, sz;
	unsigned long copied;

	written = 0;
#ifdef __ARCH_HAS_NO_PAGE_ZERO_MAPPED
	/* we don't have page 0 mapped on sparc and m68k.. */
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	if (p < PAGE_SIZE) {
		sz = size_inside_page(p, count);
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		/* Hmm. Do something? */
		buf += sz;
		p += sz;
		count -= sz;
		written += sz;
	}
#endif

	while (count > 0) {
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		void *ptr;
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		sz = size_inside_page(p, count);
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		/*
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		 * On ia64 if a page has been mapped somewhere as uncached, then
		 * it must also be accessed uncached by the kernel or data
		 * corruption may occur.
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		 */
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		ptr = xlate_dev_kmem_ptr((void *)p);
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		copied = copy_from_user(ptr, buf, sz);
		if (copied) {
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			written += sz - copied;
			if (written)
				break;
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			return -EFAULT;
		}
		buf += sz;
		p += sz;
		count -= sz;
		written += sz;
	}

	*ppos += written;
	return written;
}

/*
 * This function writes to the *virtual* memory as seen by the kernel.
 */
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static ssize_t write_kmem(struct file *file, const char __user *buf,
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			  size_t count, loff_t *ppos)
{
	unsigned long p = *ppos;
	ssize_t wrote = 0;
	ssize_t virtr = 0;
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	char *kbuf; /* k-addr because vwrite() takes vmlist_lock rwlock */
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	int err = 0;
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	if (p < (unsigned long) high_memory) {
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		unsigned long to_write = min_t(unsigned long, count,
					       (unsigned long)high_memory - p);
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		wrote = do_write_kmem(p, buf, to_write, ppos);
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		if (wrote != to_write)
			return wrote;
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		p += wrote;
		buf += wrote;
		count -= wrote;
	}

	if (count > 0) {
		kbuf = (char *)__get_free_page(GFP_KERNEL);
		if (!kbuf)
			return wrote ? wrote : -ENOMEM;
		while (count > 0) {
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			unsigned long sz = size_inside_page(p, count);
			unsigned long n;
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			if (!is_vmalloc_or_module_addr((void *)p)) {
				err = -ENXIO;
				break;
			}
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			n = copy_from_user(kbuf, buf, sz);
			if (n) {
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				err = -EFAULT;
				break;
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			}
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			vwrite(kbuf, (char *)p, sz);
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			count -= sz;
			buf += sz;
			virtr += sz;
			p += sz;
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		}
		free_page((unsigned long)kbuf);
	}

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	*ppos = p;
	return virtr + wrote ? : err;
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}

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static ssize_t read_port(struct file *file, char __user *buf,
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			 size_t count, loff_t *ppos)
{
	unsigned long i = *ppos;
	char __user *tmp = buf;

	if (!access_ok(VERIFY_WRITE, buf, count))
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		return -EFAULT;
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	while (count-- > 0 && i < 65536) {
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		if (__put_user(inb(i), tmp) < 0)
			return -EFAULT;
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		i++;
		tmp++;
	}
	*ppos = i;
	return tmp-buf;
}

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static ssize_t write_port(struct file *file, const char __user *buf,
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			  size_t count, loff_t *ppos)
{
	unsigned long i = *ppos;
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	const char __user *tmp = buf;
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	if (!access_ok(VERIFY_READ, buf, count))
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		return -EFAULT;
	while (count-- > 0 && i < 65536) {
		char c;
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		if (__get_user(c, tmp)) {
			if (tmp > buf)
				break;
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			return -EFAULT;
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		}
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		outb(c, i);
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		i++;
		tmp++;
	}
	*ppos = i;
	return tmp-buf;
}

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static ssize_t read_null(struct file *file, char __user *buf,
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			 size_t count, loff_t *ppos)
{
	return 0;
}

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static ssize_t write_null(struct file *file, const char __user *buf,
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			  size_t count, loff_t *ppos)
{
	return count;
}

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static ssize_t aio_read_null(struct kiocb *iocb, const struct iovec *iov,
			     unsigned long nr_segs, loff_t pos)
{
	return 0;
}

static ssize_t aio_write_null(struct kiocb *iocb, const struct iovec *iov,
			      unsigned long nr_segs, loff_t pos)
{
	return iov_length(iov, nr_segs);
}

610 611 612 613 614 615
static int pipe_to_null(struct pipe_inode_info *info, struct pipe_buffer *buf,
			struct splice_desc *sd)
{
	return sd->len;
}

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static ssize_t splice_write_null(struct pipe_inode_info *pipe, struct file *out,
617 618 619 620 621
				 loff_t *ppos, size_t len, unsigned int flags)
{
	return splice_from_pipe(pipe, out, ppos, len, flags, pipe_to_null);
}

622
static ssize_t read_iter_zero(struct kiocb *iocb, struct iov_iter *iter)
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{
624
	size_t written = 0;
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626 627
	while (iov_iter_count(iter)) {
		size_t chunk = iov_iter_count(iter), n;
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		if (chunk > PAGE_SIZE)
			chunk = PAGE_SIZE;	/* Just for latency reasons */
630 631 632 633
		n = iov_iter_zero(chunk, iter);
		if (!n && iov_iter_count(iter))
			return written ? written : -EFAULT;
		written += n;
634 635
		if (signal_pending(current))
			return written ? written : -ERESTARTSYS;
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		cond_resched();
	}
638
	return written;
639 640
}

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static int mmap_zero(struct file *file, struct vm_area_struct *vma)
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{
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#ifndef CONFIG_MMU
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	return -ENOSYS;
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#endif
	if (vma->vm_flags & VM_SHARED)
		return shmem_zero_setup(vma);
	return 0;
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}

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static ssize_t write_full(struct file *file, const char __user *buf,
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			  size_t count, loff_t *ppos)
{
	return -ENOSPC;
}

/*
 * Special lseek() function for /dev/null and /dev/zero.  Most notably, you
 * can fopen() both devices with "a" now.  This was previously impossible.
 * -- SRB.
 */
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static loff_t null_lseek(struct file *file, loff_t offset, int orig)
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{
	return file->f_pos = 0;
}

/*
 * The memory devices use the full 32/64 bits of the offset, and so we cannot
 * check against negative addresses: they are ok. The return value is weird,
 * though, in that case (0).
 *
 * also note that seeking relative to the "end of file" isn't supported:
 * it has no meaning, so it returns -EINVAL.
 */
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static loff_t memory_lseek(struct file *file, loff_t offset, int orig)
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{
	loff_t ret;

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	mutex_lock(&file_inode(file)->i_mutex);
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	switch (orig) {
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	case SEEK_CUR:
		offset += file->f_pos;
	case SEEK_SET:
		/* to avoid userland mistaking f_pos=-9 as -EBADF=-9 */
685
		if (IS_ERR_VALUE((unsigned long long)offset)) {
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			ret = -EOVERFLOW;
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			break;
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		}
		file->f_pos = offset;
		ret = file->f_pos;
		force_successful_syscall_return();
		break;
	default:
		ret = -EINVAL;
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	}
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	mutex_unlock(&file_inode(file)->i_mutex);
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	return ret;
}

700
static int open_port(struct inode *inode, struct file *filp)
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{
	return capable(CAP_SYS_RAWIO) ? 0 : -EPERM;
}

#define zero_lseek	null_lseek
#define full_lseek      null_lseek
#define write_zero	write_null
708
#define aio_write_zero	aio_write_null
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#define open_mem	open_port
#define open_kmem	open_mem

712
static const struct file_operations __maybe_unused mem_fops = {
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	.llseek		= memory_lseek,
	.read		= read_mem,
	.write		= write_mem,
	.mmap		= mmap_mem,
	.open		= open_mem,
718
	.get_unmapped_area = get_unmapped_area_mem,
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};

721
static const struct file_operations __maybe_unused kmem_fops = {
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	.llseek		= memory_lseek,
	.read		= read_kmem,
	.write		= write_kmem,
	.mmap		= mmap_kmem,
	.open		= open_kmem,
727
	.get_unmapped_area = get_unmapped_area_mem,
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};

730
static const struct file_operations null_fops = {
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	.llseek		= null_lseek,
	.read		= read_null,
	.write		= write_null,
734 735
	.aio_read	= aio_read_null,
	.aio_write	= aio_write_null,
736
	.splice_write	= splice_write_null,
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};

739
static const struct file_operations __maybe_unused port_fops = {
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	.llseek		= memory_lseek,
	.read		= read_port,
	.write		= write_port,
	.open		= open_port,
};

746
static const struct file_operations zero_fops = {
L
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747
	.llseek		= zero_lseek,
748
	.read		= new_sync_read,
L
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749
	.write		= write_zero,
750
	.read_iter	= read_iter_zero,
751
	.aio_write	= aio_write_zero,
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	.mmap		= mmap_zero,
};

755 756 757
/*
 * capabilities for /dev/zero
 * - permits private mappings, "copies" are taken of the source of zeros
758
 * - no writeback happens
759
 */
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static struct backing_dev_info zero_bdi = {
761
	.name		= "char/mem",
762
	.capabilities	= BDI_CAP_MAP_COPY | BDI_CAP_NO_ACCT_AND_WRITEBACK,
L
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};

765
static const struct file_operations full_fops = {
L
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766
	.llseek		= full_lseek,
767 768
	.read		= new_sync_read,
	.read_iter	= read_iter_zero,
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769 770 771
	.write		= write_full,
};

772 773
static const struct memdev {
	const char *name;
774
	umode_t mode;
775 776 777
	const struct file_operations *fops;
	struct backing_dev_info *dev_info;
} devlist[] = {
778
#ifdef CONFIG_DEVMEM
779
	 [1] = { "mem", 0, &mem_fops, &directly_mappable_cdev_bdi },
780
#endif
781
#ifdef CONFIG_DEVKMEM
782
	 [2] = { "kmem", 0, &kmem_fops, &directly_mappable_cdev_bdi },
783
#endif
784
	 [3] = { "null", 0666, &null_fops, NULL },
785
#ifdef CONFIG_DEVPORT
786
	 [4] = { "port", 0, &port_fops, NULL },
L
Linus Torvalds 已提交
787
#endif
788 789 790 791
	 [5] = { "zero", 0666, &zero_fops, &zero_bdi },
	 [7] = { "full", 0666, &full_fops, NULL },
	 [8] = { "random", 0666, &random_fops, NULL },
	 [9] = { "urandom", 0666, &urandom_fops, NULL },
792
#ifdef CONFIG_PRINTK
793
	[11] = { "kmsg", 0644, &kmsg_fops, NULL },
794
#endif
795 796 797 798
};

static int memory_open(struct inode *inode, struct file *filp)
{
799 800
	int minor;
	const struct memdev *dev;
801

802 803
	minor = iminor(inode);
	if (minor >= ARRAY_SIZE(devlist))
804
		return -ENXIO;
805

806 807
	dev = &devlist[minor];
	if (!dev->fops)
808
		return -ENXIO;
809

810 811 812
	filp->f_op = dev->fops;
	if (dev->dev_info)
		filp->f_mapping->backing_dev_info = dev->dev_info;
813

814 815 816 817
	/* Is /dev/mem or /dev/kmem ? */
	if (dev->dev_info == &directly_mappable_cdev_bdi)
		filp->f_mode |= FMODE_UNSIGNED_OFFSET;

818
	if (dev->fops->open)
819 820 821
		return dev->fops->open(inode, filp);

	return 0;
L
Linus Torvalds 已提交
822 823
}

824
static const struct file_operations memory_fops = {
A
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825
	.open = memory_open,
826
	.llseek = noop_llseek,
L
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827 828
};

829
static char *mem_devnode(struct device *dev, umode_t *mode)
830 831 832 833 834 835
{
	if (mode && devlist[MINOR(dev->devt)].mode)
		*mode = devlist[MINOR(dev->devt)].mode;
	return NULL;
}

836
static struct class *mem_class;
L
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837 838 839

static int __init chr_dev_init(void)
{
840
	int minor;
P
Peter Zijlstra 已提交
841 842 843 844 845
	int err;

	err = bdi_init(&zero_bdi);
	if (err)
		return err;
L
Linus Torvalds 已提交
846

A
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847
	if (register_chrdev(MEM_MAJOR, "mem", &memory_fops))
L
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848 849
		printk("unable to get major %d for memory devs\n", MEM_MAJOR);

850
	mem_class = class_create(THIS_MODULE, "mem");
851 852 853
	if (IS_ERR(mem_class))
		return PTR_ERR(mem_class);

854
	mem_class->devnode = mem_devnode;
855 856 857
	for (minor = 1; minor < ARRAY_SIZE(devlist); minor++) {
		if (!devlist[minor].name)
			continue;
858 859

		/*
860
		 * Create /dev/port?
861 862 863 864
		 */
		if ((minor == DEVPORT_MINOR) && !arch_has_dev_port())
			continue;

865 866 867
		device_create(mem_class, NULL, MKDEV(MEM_MAJOR, minor),
			      NULL, devlist[minor].name);
	}
868

869
	return tty_init();
L
Linus Torvalds 已提交
870 871 872
}

fs_initcall(chr_dev_init);