2 * Copyright (C) 2000 - 2007 Jeff Dike (jdike@{addtoit,linux.intel}.com)
3 * Licensed under the GPL
7 #include <linux/sched.h>
8 #include <linux/hardirq.h>
9 #include <asm/current.h>
10 #include <asm/pgtable.h>
11 #include <asm/tlbflush.h>
13 #include "as-layout.h"
14 #include "kern_util.h"
17 #include "sysdep/sigcontext.h"
20 * Note this is constrained to return 0, -EFAULT, -EACCESS, -ENOMEM by
23 int handle_page_fault(unsigned long address
, unsigned long ip
,
24 int is_write
, int is_user
, int *code_out
)
26 struct mm_struct
*mm
= current
->mm
;
27 struct vm_area_struct
*vma
;
34 *code_out
= SEGV_MAPERR
;
37 * If the fault was during atomic operation, don't take the fault, just
43 down_read(&mm
->mmap_sem
);
44 vma
= find_vma(mm
, address
);
47 else if (vma
->vm_start
<= address
)
49 else if (!(vma
->vm_flags
& VM_GROWSDOWN
))
51 else if (is_user
&& !ARCH_IS_STACKGROW(address
))
53 else if (expand_stack(vma
, address
))
57 *code_out
= SEGV_ACCERR
;
58 if (is_write
&& !(vma
->vm_flags
& VM_WRITE
))
61 /* Don't require VM_READ|VM_EXEC for write faults! */
62 if (!is_write
&& !(vma
->vm_flags
& (VM_READ
| VM_EXEC
)))
68 fault
= handle_mm_fault(mm
, vma
, address
, is_write
);
69 if (unlikely(fault
& VM_FAULT_ERROR
)) {
70 if (fault
& VM_FAULT_OOM
) {
73 } else if (fault
& VM_FAULT_SIGBUS
) {
79 if (fault
& VM_FAULT_MAJOR
)
84 pgd
= pgd_offset(mm
, address
);
85 pud
= pud_offset(pgd
, address
);
86 pmd
= pmd_offset(pud
, address
);
87 pte
= pte_offset_kernel(pmd
, address
);
88 } while (!pte_present(*pte
));
91 * The below warning was added in place of
92 * pte_mkyoung(); if (is_write) pte_mkdirty();
93 * If it's triggered, we'd see normally a hang here (a clean pte is
94 * marked read-only to emulate the dirty bit).
95 * However, the generic code can mark a PTE writable but clean on a
96 * concurrent read fault, triggering this harmlessly. So comment it out.
99 WARN_ON(!pte_young(*pte
) || (is_write
&& !pte_dirty(*pte
)));
101 flush_tlb_page(vma
, address
);
103 up_read(&mm
->mmap_sem
);
108 * We ran out of memory, or some other thing happened to us that made
109 * us unable to handle the page fault gracefully.
112 if (is_global_init(current
)) {
113 up_read(&mm
->mmap_sem
);
115 down_read(&mm
->mmap_sem
);
121 static void bad_segv(struct faultinfo fi
, unsigned long ip
)
125 si
.si_signo
= SIGSEGV
;
126 si
.si_code
= SEGV_ACCERR
;
127 si
.si_addr
= (void __user
*) FAULT_ADDRESS(fi
);
128 current
->thread
.arch
.faultinfo
= fi
;
129 force_sig_info(SIGSEGV
, &si
, current
);
132 void fatal_sigsegv(void)
134 force_sigsegv(SIGSEGV
, current
);
137 * This is to tell gcc that we're not returning - do_signal
138 * can, in general, return, but in this case, it's not, since
139 * we just got a fatal SIGSEGV queued.
144 void segv_handler(int sig
, struct uml_pt_regs
*regs
)
146 struct faultinfo
* fi
= UPT_FAULTINFO(regs
);
148 if (UPT_IS_USER(regs
) && !SEGV_IS_FIXABLE(fi
)) {
149 bad_segv(*fi
, UPT_IP(regs
));
152 segv(*fi
, UPT_IP(regs
), UPT_IS_USER(regs
), regs
);
156 * We give a *copy* of the faultinfo in the regs to segv.
157 * This must be done, since nesting SEGVs could overwrite
158 * the info in the regs. A pointer to the info then would
161 unsigned long segv(struct faultinfo fi
, unsigned long ip
, int is_user
,
162 struct uml_pt_regs
*regs
)
167 int is_write
= FAULT_WRITE(fi
);
168 unsigned long address
= FAULT_ADDRESS(fi
);
170 if (!is_user
&& (address
>= start_vm
) && (address
< end_vm
)) {
171 flush_tlb_kernel_vm();
174 else if (current
->mm
== NULL
) {
175 show_regs(container_of(regs
, struct pt_regs
, regs
));
176 panic("Segfault with no mm");
179 if (SEGV_IS_FIXABLE(&fi
) || SEGV_MAYBE_FIXABLE(&fi
))
180 err
= handle_page_fault(address
, ip
, is_write
, is_user
,
185 * A thread accessed NULL, we get a fault, but CR2 is invalid.
186 * This code is used in __do_copy_from_user() of TT mode.
187 * XXX tt mode is gone, so maybe this isn't needed any more
192 catcher
= current
->thread
.fault_catcher
;
195 else if (catcher
!= NULL
) {
196 current
->thread
.fault_addr
= (void *) address
;
197 UML_LONGJMP(catcher
, 1);
199 else if (current
->thread
.fault_addr
!= NULL
)
200 panic("fault_addr set but no fault catcher");
201 else if (!is_user
&& arch_fixup(ip
, regs
))
205 show_regs(container_of(regs
, struct pt_regs
, regs
));
206 panic("Kernel mode fault at addr 0x%lx, ip 0x%lx",
210 if (err
== -EACCES
) {
211 si
.si_signo
= SIGBUS
;
213 si
.si_code
= BUS_ADRERR
;
214 si
.si_addr
= (void __user
*)address
;
215 current
->thread
.arch
.faultinfo
= fi
;
216 force_sig_info(SIGBUS
, &si
, current
);
217 } else if (err
== -ENOMEM
) {
218 printk(KERN_INFO
"VM: killing process %s\n", current
->comm
);
221 BUG_ON(err
!= -EFAULT
);
222 si
.si_signo
= SIGSEGV
;
223 si
.si_addr
= (void __user
*) address
;
224 current
->thread
.arch
.faultinfo
= fi
;
225 force_sig_info(SIGSEGV
, &si
, current
);
230 void relay_signal(int sig
, struct uml_pt_regs
*regs
)
232 if (!UPT_IS_USER(regs
)) {
234 printk(KERN_ERR
"Bus error - the host /dev/shm or /tmp "
235 "mount likely just ran out of space\n");
236 panic("Kernel mode signal %d", sig
);
239 arch_examine_signal(sig
, regs
);
241 current
->thread
.arch
.faultinfo
= *UPT_FAULTINFO(regs
);
242 force_sig(sig
, current
);
245 void bus_handler(int sig
, struct uml_pt_regs
*regs
)
247 if (current
->thread
.fault_catcher
!= NULL
)
248 UML_LONGJMP(current
->thread
.fault_catcher
, 1);
249 else relay_signal(sig
, regs
);
252 void winch(int sig
, struct uml_pt_regs
*regs
)
254 do_IRQ(WINCH_IRQ
, regs
);