page fault handle


 
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Operating Systems Linux page fault handle
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Old 09-28-2009
page fault handle

For zero-copy communication among the processor, I allocated a pool in the kernel. From user space, it may mmap the virtual memory device into user space i.e 0x80000000. the client may send a message to the server, it may request a buffer, kernel will allocate a block for it and register it into the pool. After that, the client(user space) will got an address(that has been translated into user space address) for example: it will be 0x80003ffe4, the kernel will record the offset 0x3ffe4 into pool. But during write the the user space address 0x80003ffe4, I track the memory fault handle process, I got the vmf->virtual_address - vma->start = 0x3f000, I follow the offset 0x3f000 to find the page, in fact, the offset is not right.
So, why is the offset 0x3f000 other than 0x3ffe4?

The call flow:

char *buf = ipczalloc(6); // buf = 0x80003ffe4.
memcpy(buf, "12345", 5); // will enter vma fault handle


The code as below:
static int ipcmem_vm_nopage(struct vm_area_struct* vma, struct vm_fault * vmf)
{
unsigned long offset;
offset = vmf->virtual_address - vma->start;
printk("the offset is %x.\n", offset);
}

---------- Post updated 09-28-09 at 12:52 AM ---------- Previous update was 09-27-09 at 11:23 PM ----------

I got the answer, since the kernel before do the page fault,
the vmf.virtual_address = (void __user *)(address & PAGE_MASK)


PAGE_MASK = ~(0xFFF)

From the kernel source code, there is no way to get the real user address from vm fault handler.

So, are there any better to handle that?
a2156z
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mem(7D) 							      Devices								   mem(7D)

NAME
mem, kmem, allkmem - physical or virtual memory access SYNOPSIS
/dev/mem /dev/kmem /dev/allkmem DESCRIPTION
The file /dev/mem is a special file that provides access to the physical memory of the computer. The file /dev/kmem is a special file that provides access to the virtual address space of the operating system kernel, excluding memory that is associated with an I/O device. The file /dev/allkmem is a special file that provides access to the virtual address space of the operating system kernel, including memory that is associated with an I/O device. You can use any of these devices to examine and modify the system. Byte addresses in /dev/mem are interpreted as physical memory addresses. Byte addresses in /dev/kmem and /dev/allkmem are interpreted as kernel virtual memory addresses. A reference to a non-existent location returns an error. See ERRORS for more information. The file /dev/mem accesses physical memory; the size of the file is equal to the amount of physical memory in the computer. This size may be larger than 4GB on a system running the 32-bit operating environment. In this case, you can access memory beyond 4GB using a series of read(2) and write(2) calls, a pread64() or pwrite64() call, or a combination of llseek(2) and read(2) or write(2). ERRORS
EFAULT Occurs when trying to write(2) a read-only location (allkmem), read(2) a write-only location (allkmem), or read(2) or write(2) a non-existent or unimplemented location (mem, kmem, allkmem). EIO Occurs when trying to read(2) or write(2) a memory location that is associated with an I/O device using the /dev/kmem spe- cial file. ENXIO Results from attempting to mmap(2) a non-existent physical (mem) or virtual (kmem, allkmem) memory address. FILES
/dev/mem Provides access to the computer's physical memory. /dev/kmem Provides access to the virtual address space of the operating system kernel, excluding memory that is associated with an I/O device. /dev/allkmem Provides access to the virtual address space of the operating system kernel, including memory that is associated with an I/O device. SEE ALSO
llseek(2), mmap(2), read(2), write(2) WARNINGS
Using these devices to modify (that is, write to) the address space of a live running operating system or to modify the state of a hardware device is extremely dangerous and may result in a system panic if kernel data structures are damaged or if device state is changed. SunOS 5.10 18 Feb 2002 mem(7D)