3 * Copyright IBM Corp. 1999
4 * Author(s): Hartmut Penner (hp@de.ibm.com)
5 * Ulrich Weigand (uweigand@de.ibm.com)
7 * Derived from "arch/i386/mm/fault.c"
8 * Copyright (C) 1995 Linus Torvalds
11 #include <linux/kernel_stat.h>
12 #include <linux/perf_event.h>
13 #include <linux/signal.h>
14 #include <linux/sched.h>
15 #include <linux/kernel.h>
16 #include <linux/errno.h>
17 #include <linux/string.h>
18 #include <linux/types.h>
19 #include <linux/ptrace.h>
20 #include <linux/mman.h>
22 #include <linux/compat.h>
23 #include <linux/smp.h>
24 #include <linux/kdebug.h>
25 #include <linux/init.h>
26 #include <linux/console.h>
27 #include <linux/module.h>
28 #include <linux/hardirq.h>
29 #include <linux/kprobes.h>
30 #include <linux/uaccess.h>
31 #include <linux/hugetlb.h>
32 #include <asm/asm-offsets.h>
33 #include <asm/pgtable.h>
35 #include <asm/mmu_context.h>
36 #include <asm/facility.h>
37 #include "../kernel/entry.h"
39 #define __FAIL_ADDR_MASK -4096L
40 #define __SUBCODE_MASK 0x0600
41 #define __PF_RES_FIELD 0x8000000000000000ULL
43 #define VM_FAULT_BADCONTEXT 0x010000
44 #define VM_FAULT_BADMAP 0x020000
45 #define VM_FAULT_BADACCESS 0x040000
46 #define VM_FAULT_SIGNAL 0x080000
47 #define VM_FAULT_PFAULT 0x100000
49 static unsigned long store_indication __read_mostly
;
51 static int __init
fault_init(void)
53 if (test_facility(75))
54 store_indication
= 0xc00;
57 early_initcall(fault_init
);
59 static inline int notify_page_fault(struct pt_regs
*regs
)
63 /* kprobe_running() needs smp_processor_id() */
64 if (kprobes_built_in() && !user_mode(regs
)) {
66 if (kprobe_running() && kprobe_fault_handler(regs
, 14))
75 * Unlock any spinlocks which will prevent us from getting the
78 void bust_spinlocks(int yes
)
83 int loglevel_save
= console_loglevel
;
87 * OK, the message is on the console. Now we call printk()
88 * without oops_in_progress set so that printk will give klogd
89 * a poke. Hold onto your hats...
91 console_loglevel
= 15;
93 console_loglevel
= loglevel_save
;
98 * Returns the address space associated with the fault.
99 * Returns 0 for kernel space and 1 for user space.
101 static inline int user_space_fault(struct pt_regs
*regs
)
103 unsigned long trans_exc_code
;
106 * The lowest two bits of the translation exception
107 * identification indicate which paging table was used.
109 trans_exc_code
= regs
->int_parm_long
& 3;
110 if (trans_exc_code
== 3) /* home space -> kernel */
114 if (trans_exc_code
== 2) /* secondary space -> set_fs */
115 return current
->thread
.mm_segment
.ar4
;
116 if (current
->flags
& PF_VCPU
)
121 static int bad_address(void *p
)
125 return probe_kernel_address((unsigned long *)p
, dummy
);
128 static void dump_pagetable(unsigned long asce
, unsigned long address
)
130 unsigned long *table
= __va(asce
& PAGE_MASK
);
132 pr_alert("AS:%016lx ", asce
);
133 switch (asce
& _ASCE_TYPE_MASK
) {
134 case _ASCE_TYPE_REGION1
:
135 table
= table
+ ((address
>> 53) & 0x7ff);
136 if (bad_address(table
))
138 pr_cont("R1:%016lx ", *table
);
139 if (*table
& _REGION_ENTRY_INVALID
)
141 table
= (unsigned long *)(*table
& _REGION_ENTRY_ORIGIN
);
143 case _ASCE_TYPE_REGION2
:
144 table
= table
+ ((address
>> 42) & 0x7ff);
145 if (bad_address(table
))
147 pr_cont("R2:%016lx ", *table
);
148 if (*table
& _REGION_ENTRY_INVALID
)
150 table
= (unsigned long *)(*table
& _REGION_ENTRY_ORIGIN
);
152 case _ASCE_TYPE_REGION3
:
153 table
= table
+ ((address
>> 31) & 0x7ff);
154 if (bad_address(table
))
156 pr_cont("R3:%016lx ", *table
);
157 if (*table
& (_REGION_ENTRY_INVALID
| _REGION3_ENTRY_LARGE
))
159 table
= (unsigned long *)(*table
& _REGION_ENTRY_ORIGIN
);
161 case _ASCE_TYPE_SEGMENT
:
162 table
= table
+ ((address
>> 20) & 0x7ff);
163 if (bad_address(table
))
165 pr_cont("S:%016lx ", *table
);
166 if (*table
& (_SEGMENT_ENTRY_INVALID
| _SEGMENT_ENTRY_LARGE
))
168 table
= (unsigned long *)(*table
& _SEGMENT_ENTRY_ORIGIN
);
170 table
= table
+ ((address
>> 12) & 0xff);
171 if (bad_address(table
))
173 pr_cont("P:%016lx ", *table
);
181 static void dump_fault_info(struct pt_regs
*regs
)
185 pr_alert("Fault in ");
186 switch (regs
->int_parm_long
& 3) {
188 pr_cont("home space ");
191 pr_cont("secondary space ");
194 pr_cont("access register ");
197 pr_cont("primary space ");
200 pr_cont("mode while using ");
201 if (!user_space_fault(regs
)) {
202 asce
= S390_lowcore
.kernel_asce
;
206 else if ((current
->flags
& PF_VCPU
) && S390_lowcore
.gmap
) {
207 struct gmap
*gmap
= (struct gmap
*)S390_lowcore
.gmap
;
213 asce
= S390_lowcore
.user_asce
;
217 dump_pagetable(asce
, regs
->int_parm_long
& __FAIL_ADDR_MASK
);
220 static inline void report_user_fault(struct pt_regs
*regs
, long signr
)
222 if ((task_pid_nr(current
) > 1) && !show_unhandled_signals
)
224 if (!unhandled_signal(current
, signr
))
226 if (!printk_ratelimit())
228 printk(KERN_ALERT
"User process fault: interruption code %04x ilc:%d ",
229 regs
->int_code
& 0xffff, regs
->int_code
>> 17);
230 print_vma_addr(KERN_CONT
"in ", regs
->psw
.addr
& PSW_ADDR_INSN
);
231 printk(KERN_CONT
"\n");
232 printk(KERN_ALERT
"failing address: %016lx TEID: %016lx\n",
233 regs
->int_parm_long
& __FAIL_ADDR_MASK
, regs
->int_parm_long
);
234 dump_fault_info(regs
);
239 * Send SIGSEGV to task. This is an external routine
240 * to keep the stack usage of do_page_fault small.
242 static noinline
void do_sigsegv(struct pt_regs
*regs
, int si_code
)
246 report_user_fault(regs
, SIGSEGV
);
247 si
.si_signo
= SIGSEGV
;
248 si
.si_code
= si_code
;
249 si
.si_addr
= (void __user
*)(regs
->int_parm_long
& __FAIL_ADDR_MASK
);
250 force_sig_info(SIGSEGV
, &si
, current
);
253 static noinline
void do_no_context(struct pt_regs
*regs
)
255 const struct exception_table_entry
*fixup
;
256 unsigned long address
;
258 /* Are we prepared to handle this kernel fault? */
259 fixup
= search_exception_tables(regs
->psw
.addr
& PSW_ADDR_INSN
);
261 regs
->psw
.addr
= extable_fixup(fixup
) | PSW_ADDR_AMODE
;
266 * Oops. The kernel tried to access some bad page. We'll have to
267 * terminate things with extreme prejudice.
269 address
= regs
->int_parm_long
& __FAIL_ADDR_MASK
;
270 if (!user_space_fault(regs
))
271 printk(KERN_ALERT
"Unable to handle kernel pointer dereference"
272 " in virtual kernel address space\n");
274 printk(KERN_ALERT
"Unable to handle kernel paging request"
275 " in virtual user address space\n");
276 printk(KERN_ALERT
"failing address: %016lx TEID: %016lx\n",
277 regs
->int_parm_long
& __FAIL_ADDR_MASK
, regs
->int_parm_long
);
278 dump_fault_info(regs
);
283 static noinline
void do_low_address(struct pt_regs
*regs
)
285 /* Low-address protection hit in kernel mode means
286 NULL pointer write access in kernel mode. */
287 if (regs
->psw
.mask
& PSW_MASK_PSTATE
) {
288 /* Low-address protection hit in user mode 'cannot happen'. */
289 die (regs
, "Low-address protection");
296 static noinline
void do_sigbus(struct pt_regs
*regs
)
298 struct task_struct
*tsk
= current
;
302 * Send a sigbus, regardless of whether we were in kernel
305 si
.si_signo
= SIGBUS
;
307 si
.si_code
= BUS_ADRERR
;
308 si
.si_addr
= (void __user
*)(regs
->int_parm_long
& __FAIL_ADDR_MASK
);
309 force_sig_info(SIGBUS
, &si
, tsk
);
312 static noinline
void do_fault_error(struct pt_regs
*regs
, int fault
)
317 case VM_FAULT_BADACCESS
:
318 case VM_FAULT_BADMAP
:
319 /* Bad memory access. Check if it is kernel or user space. */
320 if (user_mode(regs
)) {
321 /* User mode accesses just cause a SIGSEGV */
322 si_code
= (fault
== VM_FAULT_BADMAP
) ?
323 SEGV_MAPERR
: SEGV_ACCERR
;
324 do_sigsegv(regs
, si_code
);
327 case VM_FAULT_BADCONTEXT
:
328 case VM_FAULT_PFAULT
:
331 case VM_FAULT_SIGNAL
:
332 if (!user_mode(regs
))
335 default: /* fault & VM_FAULT_ERROR */
336 if (fault
& VM_FAULT_OOM
) {
337 if (!user_mode(regs
))
340 pagefault_out_of_memory();
341 } else if (fault
& VM_FAULT_SIGSEGV
) {
342 /* Kernel mode? Handle exceptions or die */
343 if (!user_mode(regs
))
346 do_sigsegv(regs
, SEGV_MAPERR
);
347 } else if (fault
& VM_FAULT_SIGBUS
) {
348 /* Kernel mode? Handle exceptions or die */
349 if (!user_mode(regs
))
360 * This routine handles page faults. It determines the address,
361 * and the problem, and then passes it off to one of the appropriate
364 * interruption code (int_code):
365 * 04 Protection -> Write-Protection (suprression)
366 * 10 Segment translation -> Not present (nullification)
367 * 11 Page translation -> Not present (nullification)
368 * 3b Region third trans. -> Not present (nullification)
370 static inline int do_exception(struct pt_regs
*regs
, int access
)
375 struct task_struct
*tsk
;
376 struct mm_struct
*mm
;
377 struct vm_area_struct
*vma
;
378 unsigned long trans_exc_code
;
379 unsigned long address
;
385 * The instruction that caused the program check has
386 * been nullified. Don't signal single step via SIGTRAP.
388 clear_pt_regs_flag(regs
, PIF_PER_TRAP
);
390 if (notify_page_fault(regs
))
394 trans_exc_code
= regs
->int_parm_long
;
397 * Verify that the fault happened in user space, that
398 * we are not in an interrupt and that there is a
401 fault
= VM_FAULT_BADCONTEXT
;
402 if (unlikely(!user_space_fault(regs
) || faulthandler_disabled() || !mm
))
405 address
= trans_exc_code
& __FAIL_ADDR_MASK
;
406 perf_sw_event(PERF_COUNT_SW_PAGE_FAULTS
, 1, regs
, address
);
407 flags
= FAULT_FLAG_ALLOW_RETRY
| FAULT_FLAG_KILLABLE
;
409 flags
|= FAULT_FLAG_USER
;
410 if (access
== VM_WRITE
|| (trans_exc_code
& store_indication
) == 0x400)
411 flags
|= FAULT_FLAG_WRITE
;
412 down_read(&mm
->mmap_sem
);
415 gmap
= (current
->flags
& PF_VCPU
) ?
416 (struct gmap
*) S390_lowcore
.gmap
: NULL
;
418 current
->thread
.gmap_addr
= address
;
419 address
= __gmap_translate(gmap
, address
);
420 if (address
== -EFAULT
) {
421 fault
= VM_FAULT_BADMAP
;
424 if (gmap
->pfault_enabled
)
425 flags
|= FAULT_FLAG_RETRY_NOWAIT
;
430 fault
= VM_FAULT_BADMAP
;
431 vma
= find_vma(mm
, address
);
435 if (unlikely(vma
->vm_start
> address
)) {
436 if (!(vma
->vm_flags
& VM_GROWSDOWN
))
438 if (expand_stack(vma
, address
))
443 * Ok, we have a good vm_area for this memory access, so
446 fault
= VM_FAULT_BADACCESS
;
447 if (unlikely(!(vma
->vm_flags
& access
)))
450 if (is_vm_hugetlb_page(vma
))
451 address
&= HPAGE_MASK
;
453 * If for any reason at all we couldn't handle the fault,
454 * make sure we exit gracefully rather than endlessly redo
457 fault
= handle_mm_fault(mm
, vma
, address
, flags
);
458 /* No reason to continue if interrupted by SIGKILL. */
459 if ((fault
& VM_FAULT_RETRY
) && fatal_signal_pending(current
)) {
460 fault
= VM_FAULT_SIGNAL
;
463 if (unlikely(fault
& VM_FAULT_ERROR
))
467 * Major/minor page fault accounting is only done on the
468 * initial attempt. If we go through a retry, it is extremely
469 * likely that the page will be found in page cache at that point.
471 if (flags
& FAULT_FLAG_ALLOW_RETRY
) {
472 if (fault
& VM_FAULT_MAJOR
) {
474 perf_sw_event(PERF_COUNT_SW_PAGE_FAULTS_MAJ
, 1,
478 perf_sw_event(PERF_COUNT_SW_PAGE_FAULTS_MIN
, 1,
481 if (fault
& VM_FAULT_RETRY
) {
483 if (gmap
&& (flags
& FAULT_FLAG_RETRY_NOWAIT
)) {
484 /* FAULT_FLAG_RETRY_NOWAIT has been set,
485 * mmap_sem has not been released */
486 current
->thread
.gmap_pfault
= 1;
487 fault
= VM_FAULT_PFAULT
;
491 /* Clear FAULT_FLAG_ALLOW_RETRY to avoid any risk
493 flags
&= ~(FAULT_FLAG_ALLOW_RETRY
|
494 FAULT_FLAG_RETRY_NOWAIT
);
495 flags
|= FAULT_FLAG_TRIED
;
496 down_read(&mm
->mmap_sem
);
502 address
= __gmap_link(gmap
, current
->thread
.gmap_addr
,
504 if (address
== -EFAULT
) {
505 fault
= VM_FAULT_BADMAP
;
508 if (address
== -ENOMEM
) {
509 fault
= VM_FAULT_OOM
;
516 up_read(&mm
->mmap_sem
);
521 void do_protection_exception(struct pt_regs
*regs
)
523 unsigned long trans_exc_code
;
526 trans_exc_code
= regs
->int_parm_long
;
528 * Protection exceptions are suppressing, decrement psw address.
529 * The exception to this rule are aborted transactions, for these
530 * the PSW already points to the correct location.
532 if (!(regs
->int_code
& 0x200))
533 regs
->psw
.addr
= __rewind_psw(regs
->psw
, regs
->int_code
>> 16);
535 * Check for low-address protection. This needs to be treated
536 * as a special case because the translation exception code
537 * field is not guaranteed to contain valid data in this case.
539 if (unlikely(!(trans_exc_code
& 4))) {
540 do_low_address(regs
);
543 fault
= do_exception(regs
, VM_WRITE
);
545 do_fault_error(regs
, fault
);
547 NOKPROBE_SYMBOL(do_protection_exception
);
549 void do_dat_exception(struct pt_regs
*regs
)
553 access
= VM_READ
| VM_EXEC
| VM_WRITE
;
554 fault
= do_exception(regs
, access
);
556 do_fault_error(regs
, fault
);
558 NOKPROBE_SYMBOL(do_dat_exception
);
562 * 'pfault' pseudo page faults routines.
564 static int pfault_disable
;
566 static int __init
nopfault(char *str
)
572 __setup("nopfault", nopfault
);
574 struct pfault_refbk
{
583 } __attribute__ ((packed
, aligned(8)));
585 int pfault_init(void)
587 struct pfault_refbk refbk
= {
592 .refgaddr
= __LC_CURRENT_PID
,
593 .refselmk
= 1ULL << 48,
594 .refcmpmk
= 1ULL << 48,
595 .reserved
= __PF_RES_FIELD
};
601 " diag %1,%0,0x258\n"
606 : "=d" (rc
) : "a" (&refbk
), "m" (refbk
) : "cc");
610 void pfault_fini(void)
612 struct pfault_refbk refbk
= {
625 : : "a" (&refbk
), "m" (refbk
) : "cc");
628 static DEFINE_SPINLOCK(pfault_lock
);
629 static LIST_HEAD(pfault_list
);
631 static void pfault_interrupt(struct ext_code ext_code
,
632 unsigned int param32
, unsigned long param64
)
634 struct task_struct
*tsk
;
639 * Get the external interruption subcode & pfault
640 * initial/completion signal bit. VM stores this
641 * in the 'cpu address' field associated with the
642 * external interrupt.
644 subcode
= ext_code
.subcode
;
645 if ((subcode
& 0xff00) != __SUBCODE_MASK
)
647 inc_irq_stat(IRQEXT_PFL
);
648 /* Get the token (= pid of the affected task). */
649 pid
= sizeof(void *) == 4 ? param32
: param64
;
651 tsk
= find_task_by_pid_ns(pid
, &init_pid_ns
);
653 get_task_struct(tsk
);
657 spin_lock(&pfault_lock
);
658 if (subcode
& 0x0080) {
659 /* signal bit is set -> a page has been swapped in by VM */
660 if (tsk
->thread
.pfault_wait
== 1) {
661 /* Initial interrupt was faster than the completion
662 * interrupt. pfault_wait is valid. Set pfault_wait
663 * back to zero and wake up the process. This can
664 * safely be done because the task is still sleeping
665 * and can't produce new pfaults. */
666 tsk
->thread
.pfault_wait
= 0;
667 list_del(&tsk
->thread
.list
);
668 wake_up_process(tsk
);
669 put_task_struct(tsk
);
671 /* Completion interrupt was faster than initial
672 * interrupt. Set pfault_wait to -1 so the initial
673 * interrupt doesn't put the task to sleep.
674 * If the task is not running, ignore the completion
675 * interrupt since it must be a leftover of a PFAULT
676 * CANCEL operation which didn't remove all pending
677 * completion interrupts. */
678 if (tsk
->state
== TASK_RUNNING
)
679 tsk
->thread
.pfault_wait
= -1;
682 /* signal bit not set -> a real page is missing. */
683 if (WARN_ON_ONCE(tsk
!= current
))
685 if (tsk
->thread
.pfault_wait
== 1) {
686 /* Already on the list with a reference: put to sleep */
687 __set_task_state(tsk
, TASK_UNINTERRUPTIBLE
);
688 set_tsk_need_resched(tsk
);
689 } else if (tsk
->thread
.pfault_wait
== -1) {
690 /* Completion interrupt was faster than the initial
691 * interrupt (pfault_wait == -1). Set pfault_wait
692 * back to zero and exit. */
693 tsk
->thread
.pfault_wait
= 0;
695 /* Initial interrupt arrived before completion
696 * interrupt. Let the task sleep.
697 * An extra task reference is needed since a different
698 * cpu may set the task state to TASK_RUNNING again
699 * before the scheduler is reached. */
700 get_task_struct(tsk
);
701 tsk
->thread
.pfault_wait
= 1;
702 list_add(&tsk
->thread
.list
, &pfault_list
);
703 __set_task_state(tsk
, TASK_UNINTERRUPTIBLE
);
704 set_tsk_need_resched(tsk
);
708 spin_unlock(&pfault_lock
);
709 put_task_struct(tsk
);
712 static int pfault_cpu_notify(struct notifier_block
*self
, unsigned long action
,
715 struct thread_struct
*thread
, *next
;
716 struct task_struct
*tsk
;
718 switch (action
& ~CPU_TASKS_FROZEN
) {
720 spin_lock_irq(&pfault_lock
);
721 list_for_each_entry_safe(thread
, next
, &pfault_list
, list
) {
722 thread
->pfault_wait
= 0;
723 list_del(&thread
->list
);
724 tsk
= container_of(thread
, struct task_struct
, thread
);
725 wake_up_process(tsk
);
726 put_task_struct(tsk
);
728 spin_unlock_irq(&pfault_lock
);
736 static int __init
pfault_irq_init(void)
740 rc
= register_external_irq(EXT_IRQ_CP_SERVICE
, pfault_interrupt
);
743 rc
= pfault_init() == 0 ? 0 : -EOPNOTSUPP
;
746 irq_subclass_register(IRQ_SUBCLASS_SERVICE_SIGNAL
);
747 hotcpu_notifier(pfault_cpu_notify
, 0);
751 unregister_external_irq(EXT_IRQ_CP_SERVICE
, pfault_interrupt
);
756 early_initcall(pfault_irq_init
);
758 #endif /* CONFIG_PFAULT */