On Wed, Oct 1, 2014 at 7:17 PM, mind entropy <mindentropy@gmail.com> wrote:
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Message: 5 Date: Mon, 29 Sep 2014 23:05:44 +0530 From: mind entropy <mindentropy@gmail.com> Subject: On Page table walk. To: kernelnewbies <kernelnewbies@kernelnewbies.org> Message-ID: <CAM2a4uyLDgFztL+xpos3GG76K3i71vp+63PpZKyVErrVUPU8XA@mail.gmail.com> Content-Type: text/plain; charset=UTF-8
Hi,
I am experimenting with page table walking. I run a user space program and set the device attribute (of my sample device driver) in the sysfs. (DEVICE_ATTR) which is the address of the variable in the user space. I get the current->mm to get the current task memory descriptor and use it to walk the pages. Once I get the pte address I reboot and dump the memory at that point using u-boot. (md.b <addr> 1) but I do not find the value present there.
Sample code: (This is just for illustration and experimenting and does not contain error checks etc.).
-------------------------------------------------------------------------------------------- ssize_t process_mem_test_attr_store(struct device *dev, struct device_attribute *attr, const char *buf, size_t count) {
struct task_struct *current_task; unsigned long addr_res; struct vm_area_struct *vmarea_struct_addr; pgd_t *pgd; pmd_t *pmd; pud_t *pud; pte_t *ptep, pte; struct page *page; int kval; int uval;
DEFINE_SPINLOCK(test_lock);
spin_lock_irq(&test_lock);
current_task = current;
if(current_task != NULL) {
printk(KERN_ALERT "\nCurrent task pid: %d\n", current_task->pid);
printk(KERN_ALERT "mm: 0x%lx, active_mm 0x%lx\n", current_task->mm,current_task->active_mm); printk(KERN_ALERT "Page global directory : 0x%lx\n", current_task->mm->pgd); printk(KERN_ALERT "mmap base : 0x%lx", current_task->mm->mmap_base);
vmarea_struct_addr = current_task->mm->mmap;
while(vmarea_struct_addr != NULL) { printk(KERN_ALERT "vm_start : 0x%lx, vm_end : 0x%lx\n", vmarea_struct_addr->vm_start, vmarea_struct_addr->vm_end);
vmarea_struct_addr = vmarea_struct_addr->vm_next; }
} else { printk(KERN_ALERT "Current task NULL\n"); }
if(kstrtol(buf,10,&addr_res) != 0) { printk(KERN_ALERT "Error converting to long\n"); return count; }
copy_from_user(&kval,(unsigned int *)addr_res,4);
printk(KERN_ALERT "kval : %x\n",kval); printk(KERN_ALERT "addr: %lx\n",addr_res);
pgd = pgd_offset(current_task->mm,addr_res);
if(pgd_none(*pgd) || pgd_bad(*pgd)) { printk(KERN_ALERT "pgd bad\n"); return count; } else { printk(KERN_ALERT "pgd 0x%lx\n",pgd); }
pud = pud_offset(pgd,addr_res);
if(pud_none(*pud) || pud_bad(*pud)) { printk(KERN_ALERT "pud bad\n"); return count; } else { printk(KERN_ALERT "pud 0x%lx\n",pud); }
pmd = pmd_offset(pud,addr_res);
if(pmd_none(*pmd) || pmd_bad(*pmd)) { printk(KERN_ALERT "pmd bad\n"); return count; } else { printk(KERN_ALERT "pmd 0x%lx\n",pmd); }
ptep = pte_offset_map(pmd,addr_res); if(!ptep) { printk(KERN_ALERT "ptep bad\n"); } else { printk(KERN_ALERT "ptep 0x%lx\n",ptep); }
pte = *ptep;
if(pte_present(pte)) { printk(KERN_ALERT "pte : 0x%lx\n",pte); page = pte_page(pte);
} else { printk(KERN_ALERT "pte not present\n"); }
printk(KERN_ALERT "pte with offset 0x%lx offset : 0x%lx\n", pte+((addr_res) & ((1<<PAGE_SHIFT)-1)), addr_res & ((1<<PAGE_SHIFT)-1));
while(1) ;
printk(KERN_ALERT "After lock\n"); //Should not print this.
return count; } --------------------------------------------------------------------------------------------
I use a spinlock to prevent the process from getting swapped. I disable the irq and make it spin on while(1); after which I reboot. After doing a memoy dump I find the value in the address but at an offset from pte value printed. What seems to be wrong with my approach?
Thanks in advance.
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Hope somebody can give me some clue. My PHYS_OFFSET starts at 0x30000000.
A sample output in the dmesg is as follows:
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Sample session:
[ 92.086535] Current task pid: 2382 [ 92.086632] mm: 0xc2d79480, active_mm 0xc2d79480 [ 92.090522] Page global directory : 0xc2cb4000 [ 92.094783] mmap base : 0xb6fe0000 [ 92.097896] vm_start : 0x8000, vm_end : 0x9000 [ 92.102454] vm_start : 0x10000, vm_end : 0x11000 [ 92.106942] vm_start : 0xb6e7c000, vm_end : 0xb6fa5000 [ 92.111983] vm_start : 0xb6fa5000, vm_end : 0xb6fac000 [ 92.116995] vm_start : 0xb6fac000, vm_end : 0xb6fae000 [ 92.122054] vm_start : 0xb6fae000, vm_end : 0xb6faf000 [ 92.127062] vm_start : 0xb6faf000, vm_end : 0xb6fb2000 [ 92.132121] vm_start : 0xb6fba000, vm_end : 0xb6fd7000 [ 92.137177] vm_start : 0xb6fda000, vm_end : 0xb6fdd000 [ 92.142223] vm_start : 0xb6fdd000, vm_end : 0xb6fde000 [ 92.147203] vm_start : 0xb6fde000, vm_end : 0xb6fdf000 [ 92.152275] vm_start : 0xb6fdf000, vm_end : 0xb6fe0000 [ 92.157291] vm_start : 0xbe852000, vm_end : 0xbe874000 [ 92.162345] kval : 1234 [ 92.164670] addr: 10830 [ 92.167145] pgd 0xc2cb4000 [ 92.169705] pud 0xc2cb4000 [ 92.172407] pmd 0xc2cb4000 [ 92.174995] ptep 0xc3b78040 [ 92.177774] pte : 0x326dc14f [ 92.180545] pte with offset 0x326dc97f offset : 0x830
[Solved]. If anybody is interested I had some help in the "mm" list. Cross post here http://marc.info/?l=linux-mm&m=141261100710499&w=2