xref: /openbmc/linux/arch/x86/mm/fault.c (revision 81fd9c18444ed1199b5a6f6776a395292d4256fb)
1b2441318SGreg Kroah-Hartman // SPDX-License-Identifier: GPL-2.0
2c61e211dSHarvey Harrison /*
3c61e211dSHarvey Harrison  *  Copyright (C) 1995  Linus Torvalds
4c61e211dSHarvey Harrison  *  Copyright (C) 2001, 2002 Andi Kleen, SuSE Labs.
5f8eeb2e6SIngo Molnar  *  Copyright (C) 2008-2009, Red Hat Inc., Ingo Molnar
6c61e211dSHarvey Harrison  */
7a2bcd473SIngo Molnar #include <linux/sched.h>		/* test_thread_flag(), ...	*/
868db0cf1SIngo Molnar #include <linux/sched/task_stack.h>	/* task_stack_*(), ...		*/
9a2bcd473SIngo Molnar #include <linux/kdebug.h>		/* oops_begin/end, ...		*/
104cdf8dbeSLinus Torvalds #include <linux/extable.h>		/* search_exception_tables	*/
11a2bcd473SIngo Molnar #include <linux/bootmem.h>		/* max_low_pfn			*/
129326638cSMasami Hiramatsu #include <linux/kprobes.h>		/* NOKPROBE_SYMBOL, ...		*/
13a2bcd473SIngo Molnar #include <linux/mmiotrace.h>		/* kmmio_handler, ...		*/
14cdd6c482SIngo Molnar #include <linux/perf_event.h>		/* perf_sw_event		*/
15f672b49bSAndi Kleen #include <linux/hugetlb.h>		/* hstate_index_to_shift	*/
16268bb0ceSLinus Torvalds #include <linux/prefetch.h>		/* prefetchw			*/
1756dd9470SFrederic Weisbecker #include <linux/context_tracking.h>	/* exception_enter(), ...	*/
1870ffdb93SDavid Hildenbrand #include <linux/uaccess.h>		/* faulthandler_disabled()	*/
1950a7ca3cSSouptick Joarder #include <linux/mm_types.h>
20c61e211dSHarvey Harrison 
21019132ffSDave Hansen #include <asm/cpufeature.h>		/* boot_cpu_has, ...		*/
22a2bcd473SIngo Molnar #include <asm/traps.h>			/* dotraplinkage, ...		*/
23a2bcd473SIngo Molnar #include <asm/pgalloc.h>		/* pgd_*(), ...			*/
24f40c3300SAndy Lutomirski #include <asm/fixmap.h>			/* VSYSCALL_ADDR		*/
25f40c3300SAndy Lutomirski #include <asm/vsyscall.h>		/* emulate_vsyscall		*/
26ba3e127eSBrian Gerst #include <asm/vm86.h>			/* struct vm86			*/
27019132ffSDave Hansen #include <asm/mmu_context.h>		/* vma_pkey()			*/
28c61e211dSHarvey Harrison 
29d34603b0SSeiji Aguchi #define CREATE_TRACE_POINTS
30d34603b0SSeiji Aguchi #include <asm/trace/exceptions.h>
31d34603b0SSeiji Aguchi 
32c61e211dSHarvey Harrison /*
33b319eed0SIngo Molnar  * Returns 0 if mmiotrace is disabled, or if the fault is not
34b319eed0SIngo Molnar  * handled by mmiotrace:
35b814d41fSIngo Molnar  */
369326638cSMasami Hiramatsu static nokprobe_inline int
3762c9295fSMasami Hiramatsu kmmio_fault(struct pt_regs *regs, unsigned long addr)
3886069782SPekka Paalanen {
390fd0e3daSPekka Paalanen 	if (unlikely(is_kmmio_active()))
400fd0e3daSPekka Paalanen 		if (kmmio_handler(regs, addr) == 1)
410fd0e3daSPekka Paalanen 			return -1;
420fd0e3daSPekka Paalanen 	return 0;
4386069782SPekka Paalanen }
4486069782SPekka Paalanen 
459326638cSMasami Hiramatsu static nokprobe_inline int kprobes_fault(struct pt_regs *regs)
46c61e211dSHarvey Harrison {
47a980c0efSJann Horn 	if (!kprobes_built_in())
48a980c0efSJann Horn 		return 0;
49a980c0efSJann Horn 	if (user_mode(regs))
50a980c0efSJann Horn 		return 0;
51a980c0efSJann Horn 	/*
52a980c0efSJann Horn 	 * To be potentially processing a kprobe fault and to be allowed to call
53a980c0efSJann Horn 	 * kprobe_running(), we have to be non-preemptible.
54a980c0efSJann Horn 	 */
55a980c0efSJann Horn 	if (preemptible())
56a980c0efSJann Horn 		return 0;
57a980c0efSJann Horn 	if (!kprobe_running())
58a980c0efSJann Horn 		return 0;
59a980c0efSJann Horn 	return kprobe_fault_handler(regs, X86_TRAP_PF);
60c61e211dSHarvey Harrison }
61c61e211dSHarvey Harrison 
62c61e211dSHarvey Harrison /*
632d4a7167SIngo Molnar  * Prefetch quirks:
642d4a7167SIngo Molnar  *
652d4a7167SIngo Molnar  * 32-bit mode:
662d4a7167SIngo Molnar  *
67c61e211dSHarvey Harrison  *   Sometimes AMD Athlon/Opteron CPUs report invalid exceptions on prefetch.
68c61e211dSHarvey Harrison  *   Check that here and ignore it.
69c61e211dSHarvey Harrison  *
702d4a7167SIngo Molnar  * 64-bit mode:
712d4a7167SIngo Molnar  *
72c61e211dSHarvey Harrison  *   Sometimes the CPU reports invalid exceptions on prefetch.
73c61e211dSHarvey Harrison  *   Check that here and ignore it.
74c61e211dSHarvey Harrison  *
752d4a7167SIngo Molnar  * Opcode checker based on code by Richard Brunner.
76c61e211dSHarvey Harrison  */
77107a0367SIngo Molnar static inline int
78107a0367SIngo Molnar check_prefetch_opcode(struct pt_regs *regs, unsigned char *instr,
79107a0367SIngo Molnar 		      unsigned char opcode, int *prefetch)
80c61e211dSHarvey Harrison {
81107a0367SIngo Molnar 	unsigned char instr_hi = opcode & 0xf0;
82107a0367SIngo Molnar 	unsigned char instr_lo = opcode & 0x0f;
83c61e211dSHarvey Harrison 
84c61e211dSHarvey Harrison 	switch (instr_hi) {
85c61e211dSHarvey Harrison 	case 0x20:
86c61e211dSHarvey Harrison 	case 0x30:
87c61e211dSHarvey Harrison 		/*
88c61e211dSHarvey Harrison 		 * Values 0x26,0x2E,0x36,0x3E are valid x86 prefixes.
89c61e211dSHarvey Harrison 		 * In X86_64 long mode, the CPU will signal invalid
90c61e211dSHarvey Harrison 		 * opcode if some of these prefixes are present so
91c61e211dSHarvey Harrison 		 * X86_64 will never get here anyway
92c61e211dSHarvey Harrison 		 */
93107a0367SIngo Molnar 		return ((instr_lo & 7) == 0x6);
94c61e211dSHarvey Harrison #ifdef CONFIG_X86_64
95c61e211dSHarvey Harrison 	case 0x40:
96c61e211dSHarvey Harrison 		/*
97c61e211dSHarvey Harrison 		 * In AMD64 long mode 0x40..0x4F are valid REX prefixes
98c61e211dSHarvey Harrison 		 * Need to figure out under what instruction mode the
99c61e211dSHarvey Harrison 		 * instruction was issued. Could check the LDT for lm,
100c61e211dSHarvey Harrison 		 * but for now it's good enough to assume that long
101c61e211dSHarvey Harrison 		 * mode only uses well known segments or kernel.
102c61e211dSHarvey Harrison 		 */
103318f5a2aSAndy Lutomirski 		return (!user_mode(regs) || user_64bit_mode(regs));
104c61e211dSHarvey Harrison #endif
105c61e211dSHarvey Harrison 	case 0x60:
106c61e211dSHarvey Harrison 		/* 0x64 thru 0x67 are valid prefixes in all modes. */
107107a0367SIngo Molnar 		return (instr_lo & 0xC) == 0x4;
108c61e211dSHarvey Harrison 	case 0xF0:
109c61e211dSHarvey Harrison 		/* 0xF0, 0xF2, 0xF3 are valid prefixes in all modes. */
110107a0367SIngo Molnar 		return !instr_lo || (instr_lo>>1) == 1;
111c61e211dSHarvey Harrison 	case 0x00:
112c61e211dSHarvey Harrison 		/* Prefetch instruction is 0x0F0D or 0x0F18 */
113107a0367SIngo Molnar 		if (probe_kernel_address(instr, opcode))
114107a0367SIngo Molnar 			return 0;
115107a0367SIngo Molnar 
116107a0367SIngo Molnar 		*prefetch = (instr_lo == 0xF) &&
117107a0367SIngo Molnar 			(opcode == 0x0D || opcode == 0x18);
118107a0367SIngo Molnar 		return 0;
119107a0367SIngo Molnar 	default:
120107a0367SIngo Molnar 		return 0;
121107a0367SIngo Molnar 	}
122107a0367SIngo Molnar }
123107a0367SIngo Molnar 
124107a0367SIngo Molnar static int
125107a0367SIngo Molnar is_prefetch(struct pt_regs *regs, unsigned long error_code, unsigned long addr)
126107a0367SIngo Molnar {
127107a0367SIngo Molnar 	unsigned char *max_instr;
128107a0367SIngo Molnar 	unsigned char *instr;
129107a0367SIngo Molnar 	int prefetch = 0;
130107a0367SIngo Molnar 
131107a0367SIngo Molnar 	/*
132107a0367SIngo Molnar 	 * If it was a exec (instruction fetch) fault on NX page, then
133107a0367SIngo Molnar 	 * do not ignore the fault:
134107a0367SIngo Molnar 	 */
1351067f030SRicardo Neri 	if (error_code & X86_PF_INSTR)
136107a0367SIngo Molnar 		return 0;
137107a0367SIngo Molnar 
138107a0367SIngo Molnar 	instr = (void *)convert_ip_to_linear(current, regs);
139107a0367SIngo Molnar 	max_instr = instr + 15;
140107a0367SIngo Molnar 
141d31bf07fSAndy Lutomirski 	if (user_mode(regs) && instr >= (unsigned char *)TASK_SIZE_MAX)
142107a0367SIngo Molnar 		return 0;
143107a0367SIngo Molnar 
144107a0367SIngo Molnar 	while (instr < max_instr) {
145107a0367SIngo Molnar 		unsigned char opcode;
146c61e211dSHarvey Harrison 
147c61e211dSHarvey Harrison 		if (probe_kernel_address(instr, opcode))
148c61e211dSHarvey Harrison 			break;
149107a0367SIngo Molnar 
150107a0367SIngo Molnar 		instr++;
151107a0367SIngo Molnar 
152107a0367SIngo Molnar 		if (!check_prefetch_opcode(regs, instr, opcode, &prefetch))
153c61e211dSHarvey Harrison 			break;
154c61e211dSHarvey Harrison 	}
155c61e211dSHarvey Harrison 	return prefetch;
156c61e211dSHarvey Harrison }
157c61e211dSHarvey Harrison 
158019132ffSDave Hansen /*
159019132ffSDave Hansen  * A protection key fault means that the PKRU value did not allow
160019132ffSDave Hansen  * access to some PTE.  Userspace can figure out what PKRU was
161019132ffSDave Hansen  * from the XSAVE state, and this function fills out a field in
162019132ffSDave Hansen  * siginfo so userspace can discover which protection key was set
163019132ffSDave Hansen  * on the PTE.
164019132ffSDave Hansen  *
1651067f030SRicardo Neri  * If we get here, we know that the hardware signaled a X86_PF_PK
166019132ffSDave Hansen  * fault and that there was a VMA once we got in the fault
167019132ffSDave Hansen  * handler.  It does *not* guarantee that the VMA we find here
168019132ffSDave Hansen  * was the one that we faulted on.
169019132ffSDave Hansen  *
170019132ffSDave Hansen  * 1. T1   : mprotect_key(foo, PAGE_SIZE, pkey=4);
171019132ffSDave Hansen  * 2. T1   : set PKRU to deny access to pkey=4, touches page
172019132ffSDave Hansen  * 3. T1   : faults...
173019132ffSDave Hansen  * 4.    T2: mprotect_key(foo, PAGE_SIZE, pkey=5);
174019132ffSDave Hansen  * 5. T1   : enters fault handler, takes mmap_sem, etc...
175019132ffSDave Hansen  * 6. T1   : reaches here, sees vma_pkey(vma)=5, when we really
176019132ffSDave Hansen  *	     faulted on a pte with its pkey=4.
177019132ffSDave Hansen  */
178beacd6f7SEric W. Biederman static void fill_sig_info_pkey(int si_signo, int si_code, siginfo_t *info,
179beacd6f7SEric W. Biederman 		u32 *pkey)
180019132ffSDave Hansen {
181019132ffSDave Hansen 	/* This is effectively an #ifdef */
182019132ffSDave Hansen 	if (!boot_cpu_has(X86_FEATURE_OSPKE))
183019132ffSDave Hansen 		return;
184019132ffSDave Hansen 
185019132ffSDave Hansen 	/* Fault not from Protection Keys: nothing to do */
186beacd6f7SEric W. Biederman 	if ((si_code != SEGV_PKUERR) || (si_signo != SIGSEGV))
187019132ffSDave Hansen 		return;
188019132ffSDave Hansen 	/*
189019132ffSDave Hansen 	 * force_sig_info_fault() is called from a number of
190019132ffSDave Hansen 	 * contexts, some of which have a VMA and some of which
1911067f030SRicardo Neri 	 * do not.  The X86_PF_PK handing happens after we have a
192019132ffSDave Hansen 	 * valid VMA, so we should never reach this without a
193019132ffSDave Hansen 	 * valid VMA.
194019132ffSDave Hansen 	 */
195a3c4fb7cSLaurent Dufour 	if (!pkey) {
196019132ffSDave Hansen 		WARN_ONCE(1, "PKU fault with no VMA passed in");
197019132ffSDave Hansen 		info->si_pkey = 0;
198019132ffSDave Hansen 		return;
199019132ffSDave Hansen 	}
200019132ffSDave Hansen 	/*
201019132ffSDave Hansen 	 * si_pkey should be thought of as a strong hint, but not
202019132ffSDave Hansen 	 * absolutely guranteed to be 100% accurate because of
203019132ffSDave Hansen 	 * the race explained above.
204019132ffSDave Hansen 	 */
205a3c4fb7cSLaurent Dufour 	info->si_pkey = *pkey;
206019132ffSDave Hansen }
207019132ffSDave Hansen 
2082d4a7167SIngo Molnar static void
2092d4a7167SIngo Molnar force_sig_info_fault(int si_signo, int si_code, unsigned long address,
210a3c4fb7cSLaurent Dufour 		     struct task_struct *tsk, u32 *pkey, int fault)
211c61e211dSHarvey Harrison {
212f672b49bSAndi Kleen 	unsigned lsb = 0;
213c61e211dSHarvey Harrison 	siginfo_t info;
214c61e211dSHarvey Harrison 
2153eb0f519SEric W. Biederman 	clear_siginfo(&info);
216c61e211dSHarvey Harrison 	info.si_signo	= si_signo;
217c61e211dSHarvey Harrison 	info.si_errno	= 0;
218c61e211dSHarvey Harrison 	info.si_code	= si_code;
219c61e211dSHarvey Harrison 	info.si_addr	= (void __user *)address;
220f672b49bSAndi Kleen 	if (fault & VM_FAULT_HWPOISON_LARGE)
221f672b49bSAndi Kleen 		lsb = hstate_index_to_shift(VM_FAULT_GET_HINDEX(fault));
222f672b49bSAndi Kleen 	if (fault & VM_FAULT_HWPOISON)
223f672b49bSAndi Kleen 		lsb = PAGE_SHIFT;
224f672b49bSAndi Kleen 	info.si_addr_lsb = lsb;
2252d4a7167SIngo Molnar 
226beacd6f7SEric W. Biederman 	fill_sig_info_pkey(si_signo, si_code, &info, pkey);
227019132ffSDave Hansen 
228c61e211dSHarvey Harrison 	force_sig_info(si_signo, &info, tsk);
229c61e211dSHarvey Harrison }
230c61e211dSHarvey Harrison 
231f2f13a85SIngo Molnar DEFINE_SPINLOCK(pgd_lock);
232f2f13a85SIngo Molnar LIST_HEAD(pgd_list);
2332d4a7167SIngo Molnar 
234f2f13a85SIngo Molnar #ifdef CONFIG_X86_32
235f2f13a85SIngo Molnar static inline pmd_t *vmalloc_sync_one(pgd_t *pgd, unsigned long address)
236f2f13a85SIngo Molnar {
237f2f13a85SIngo Molnar 	unsigned index = pgd_index(address);
238f2f13a85SIngo Molnar 	pgd_t *pgd_k;
239e0c4f675SKirill A. Shutemov 	p4d_t *p4d, *p4d_k;
240f2f13a85SIngo Molnar 	pud_t *pud, *pud_k;
241f2f13a85SIngo Molnar 	pmd_t *pmd, *pmd_k;
242f2f13a85SIngo Molnar 
243f2f13a85SIngo Molnar 	pgd += index;
244f2f13a85SIngo Molnar 	pgd_k = init_mm.pgd + index;
245f2f13a85SIngo Molnar 
246f2f13a85SIngo Molnar 	if (!pgd_present(*pgd_k))
247f2f13a85SIngo Molnar 		return NULL;
248f2f13a85SIngo Molnar 
249f2f13a85SIngo Molnar 	/*
250f2f13a85SIngo Molnar 	 * set_pgd(pgd, *pgd_k); here would be useless on PAE
251f2f13a85SIngo Molnar 	 * and redundant with the set_pmd() on non-PAE. As would
252e0c4f675SKirill A. Shutemov 	 * set_p4d/set_pud.
253f2f13a85SIngo Molnar 	 */
254e0c4f675SKirill A. Shutemov 	p4d = p4d_offset(pgd, address);
255e0c4f675SKirill A. Shutemov 	p4d_k = p4d_offset(pgd_k, address);
256e0c4f675SKirill A. Shutemov 	if (!p4d_present(*p4d_k))
257e0c4f675SKirill A. Shutemov 		return NULL;
258e0c4f675SKirill A. Shutemov 
259e0c4f675SKirill A. Shutemov 	pud = pud_offset(p4d, address);
260e0c4f675SKirill A. Shutemov 	pud_k = pud_offset(p4d_k, address);
261f2f13a85SIngo Molnar 	if (!pud_present(*pud_k))
262f2f13a85SIngo Molnar 		return NULL;
263f2f13a85SIngo Molnar 
264f2f13a85SIngo Molnar 	pmd = pmd_offset(pud, address);
265f2f13a85SIngo Molnar 	pmd_k = pmd_offset(pud_k, address);
266f2f13a85SIngo Molnar 	if (!pmd_present(*pmd_k))
267f2f13a85SIngo Molnar 		return NULL;
268f2f13a85SIngo Molnar 
269b8bcfe99SJeremy Fitzhardinge 	if (!pmd_present(*pmd))
270f2f13a85SIngo Molnar 		set_pmd(pmd, *pmd_k);
271b8bcfe99SJeremy Fitzhardinge 	else
272f2f13a85SIngo Molnar 		BUG_ON(pmd_page(*pmd) != pmd_page(*pmd_k));
273f2f13a85SIngo Molnar 
274f2f13a85SIngo Molnar 	return pmd_k;
275f2f13a85SIngo Molnar }
276f2f13a85SIngo Molnar 
277f2f13a85SIngo Molnar void vmalloc_sync_all(void)
278f2f13a85SIngo Molnar {
279f2f13a85SIngo Molnar 	unsigned long address;
280f2f13a85SIngo Molnar 
281f2f13a85SIngo Molnar 	if (SHARED_KERNEL_PMD)
282f2f13a85SIngo Molnar 		return;
283f2f13a85SIngo Molnar 
284f2f13a85SIngo Molnar 	for (address = VMALLOC_START & PMD_MASK;
285dc4fac84SAndy Lutomirski 	     address >= TASK_SIZE_MAX && address < FIXADDR_TOP;
286f2f13a85SIngo Molnar 	     address += PMD_SIZE) {
287f2f13a85SIngo Molnar 		struct page *page;
288f2f13a85SIngo Molnar 
289a79e53d8SAndrea Arcangeli 		spin_lock(&pgd_lock);
290f2f13a85SIngo Molnar 		list_for_each_entry(page, &pgd_list, lru) {
291617d34d9SJeremy Fitzhardinge 			spinlock_t *pgt_lock;
292f01f7c56SBorislav Petkov 			pmd_t *ret;
293617d34d9SJeremy Fitzhardinge 
294a79e53d8SAndrea Arcangeli 			/* the pgt_lock only for Xen */
295617d34d9SJeremy Fitzhardinge 			pgt_lock = &pgd_page_get_mm(page)->page_table_lock;
296617d34d9SJeremy Fitzhardinge 
297617d34d9SJeremy Fitzhardinge 			spin_lock(pgt_lock);
298617d34d9SJeremy Fitzhardinge 			ret = vmalloc_sync_one(page_address(page), address);
299617d34d9SJeremy Fitzhardinge 			spin_unlock(pgt_lock);
300617d34d9SJeremy Fitzhardinge 
301617d34d9SJeremy Fitzhardinge 			if (!ret)
302f2f13a85SIngo Molnar 				break;
303f2f13a85SIngo Molnar 		}
304a79e53d8SAndrea Arcangeli 		spin_unlock(&pgd_lock);
305f2f13a85SIngo Molnar 	}
306f2f13a85SIngo Molnar }
307f2f13a85SIngo Molnar 
308f2f13a85SIngo Molnar /*
309f2f13a85SIngo Molnar  * 32-bit:
310f2f13a85SIngo Molnar  *
311f2f13a85SIngo Molnar  *   Handle a fault on the vmalloc or module mapping area
312f2f13a85SIngo Molnar  */
3139326638cSMasami Hiramatsu static noinline int vmalloc_fault(unsigned long address)
314f2f13a85SIngo Molnar {
315f2f13a85SIngo Molnar 	unsigned long pgd_paddr;
316f2f13a85SIngo Molnar 	pmd_t *pmd_k;
317f2f13a85SIngo Molnar 	pte_t *pte_k;
318f2f13a85SIngo Molnar 
319f2f13a85SIngo Molnar 	/* Make sure we are in vmalloc area: */
320f2f13a85SIngo Molnar 	if (!(address >= VMALLOC_START && address < VMALLOC_END))
321f2f13a85SIngo Molnar 		return -1;
322f2f13a85SIngo Molnar 
323f2f13a85SIngo Molnar 	/*
324f2f13a85SIngo Molnar 	 * Synchronize this task's top level page-table
325f2f13a85SIngo Molnar 	 * with the 'reference' page table.
326f2f13a85SIngo Molnar 	 *
327f2f13a85SIngo Molnar 	 * Do _not_ use "current" here. We might be inside
328f2f13a85SIngo Molnar 	 * an interrupt in the middle of a task switch..
329f2f13a85SIngo Molnar 	 */
3306c690ee1SAndy Lutomirski 	pgd_paddr = read_cr3_pa();
331f2f13a85SIngo Molnar 	pmd_k = vmalloc_sync_one(__va(pgd_paddr), address);
332f2f13a85SIngo Molnar 	if (!pmd_k)
333f2f13a85SIngo Molnar 		return -1;
334f2f13a85SIngo Molnar 
33518a95521SToshi Kani 	if (pmd_large(*pmd_k))
336f4eafd8bSToshi Kani 		return 0;
337f4eafd8bSToshi Kani 
338f2f13a85SIngo Molnar 	pte_k = pte_offset_kernel(pmd_k, address);
339f2f13a85SIngo Molnar 	if (!pte_present(*pte_k))
340f2f13a85SIngo Molnar 		return -1;
341f2f13a85SIngo Molnar 
342f2f13a85SIngo Molnar 	return 0;
343f2f13a85SIngo Molnar }
3449326638cSMasami Hiramatsu NOKPROBE_SYMBOL(vmalloc_fault);
345f2f13a85SIngo Molnar 
346f2f13a85SIngo Molnar /*
347f2f13a85SIngo Molnar  * Did it hit the DOS screen memory VA from vm86 mode?
348f2f13a85SIngo Molnar  */
349f2f13a85SIngo Molnar static inline void
350f2f13a85SIngo Molnar check_v8086_mode(struct pt_regs *regs, unsigned long address,
351f2f13a85SIngo Molnar 		 struct task_struct *tsk)
352f2f13a85SIngo Molnar {
3539fda6a06SBrian Gerst #ifdef CONFIG_VM86
354f2f13a85SIngo Molnar 	unsigned long bit;
355f2f13a85SIngo Molnar 
3569fda6a06SBrian Gerst 	if (!v8086_mode(regs) || !tsk->thread.vm86)
357f2f13a85SIngo Molnar 		return;
358f2f13a85SIngo Molnar 
359f2f13a85SIngo Molnar 	bit = (address - 0xA0000) >> PAGE_SHIFT;
360f2f13a85SIngo Molnar 	if (bit < 32)
3619fda6a06SBrian Gerst 		tsk->thread.vm86->screen_bitmap |= 1 << bit;
3629fda6a06SBrian Gerst #endif
363f2f13a85SIngo Molnar }
364c61e211dSHarvey Harrison 
365087975b0SAkinobu Mita static bool low_pfn(unsigned long pfn)
366087975b0SAkinobu Mita {
367087975b0SAkinobu Mita 	return pfn < max_low_pfn;
368087975b0SAkinobu Mita }
369087975b0SAkinobu Mita 
370cae30f82SAdrian Bunk static void dump_pagetable(unsigned long address)
371c61e211dSHarvey Harrison {
3726c690ee1SAndy Lutomirski 	pgd_t *base = __va(read_cr3_pa());
373087975b0SAkinobu Mita 	pgd_t *pgd = &base[pgd_index(address)];
374e0c4f675SKirill A. Shutemov 	p4d_t *p4d;
375e0c4f675SKirill A. Shutemov 	pud_t *pud;
376087975b0SAkinobu Mita 	pmd_t *pmd;
377087975b0SAkinobu Mita 	pte_t *pte;
3782d4a7167SIngo Molnar 
379c61e211dSHarvey Harrison #ifdef CONFIG_X86_PAE
38039e48d9bSJan Beulich 	pr_info("*pdpt = %016Lx ", pgd_val(*pgd));
381087975b0SAkinobu Mita 	if (!low_pfn(pgd_val(*pgd) >> PAGE_SHIFT) || !pgd_present(*pgd))
382087975b0SAkinobu Mita 		goto out;
38339e48d9bSJan Beulich #define pr_pde pr_cont
38439e48d9bSJan Beulich #else
38539e48d9bSJan Beulich #define pr_pde pr_info
386c61e211dSHarvey Harrison #endif
387e0c4f675SKirill A. Shutemov 	p4d = p4d_offset(pgd, address);
388e0c4f675SKirill A. Shutemov 	pud = pud_offset(p4d, address);
389e0c4f675SKirill A. Shutemov 	pmd = pmd_offset(pud, address);
39039e48d9bSJan Beulich 	pr_pde("*pde = %0*Lx ", sizeof(*pmd) * 2, (u64)pmd_val(*pmd));
39139e48d9bSJan Beulich #undef pr_pde
392c61e211dSHarvey Harrison 
393c61e211dSHarvey Harrison 	/*
394c61e211dSHarvey Harrison 	 * We must not directly access the pte in the highpte
395c61e211dSHarvey Harrison 	 * case if the page table is located in highmem.
396c61e211dSHarvey Harrison 	 * And let's rather not kmap-atomic the pte, just in case
3972d4a7167SIngo Molnar 	 * it's allocated already:
398c61e211dSHarvey Harrison 	 */
399087975b0SAkinobu Mita 	if (!low_pfn(pmd_pfn(*pmd)) || !pmd_present(*pmd) || pmd_large(*pmd))
400087975b0SAkinobu Mita 		goto out;
4012d4a7167SIngo Molnar 
402087975b0SAkinobu Mita 	pte = pte_offset_kernel(pmd, address);
40339e48d9bSJan Beulich 	pr_cont("*pte = %0*Lx ", sizeof(*pte) * 2, (u64)pte_val(*pte));
404087975b0SAkinobu Mita out:
40539e48d9bSJan Beulich 	pr_cont("\n");
406f2f13a85SIngo Molnar }
407f2f13a85SIngo Molnar 
408f2f13a85SIngo Molnar #else /* CONFIG_X86_64: */
409f2f13a85SIngo Molnar 
410f2f13a85SIngo Molnar void vmalloc_sync_all(void)
411f2f13a85SIngo Molnar {
4125372e155SKirill A. Shutemov 	sync_global_pgds(VMALLOC_START & PGDIR_MASK, VMALLOC_END);
413f2f13a85SIngo Molnar }
414f2f13a85SIngo Molnar 
415f2f13a85SIngo Molnar /*
416f2f13a85SIngo Molnar  * 64-bit:
417f2f13a85SIngo Molnar  *
418f2f13a85SIngo Molnar  *   Handle a fault on the vmalloc area
419f2f13a85SIngo Molnar  */
4209326638cSMasami Hiramatsu static noinline int vmalloc_fault(unsigned long address)
421f2f13a85SIngo Molnar {
422565977a3SToshi Kani 	pgd_t *pgd, *pgd_k;
423565977a3SToshi Kani 	p4d_t *p4d, *p4d_k;
424565977a3SToshi Kani 	pud_t *pud;
425565977a3SToshi Kani 	pmd_t *pmd;
426565977a3SToshi Kani 	pte_t *pte;
427f2f13a85SIngo Molnar 
428f2f13a85SIngo Molnar 	/* Make sure we are in vmalloc area: */
429f2f13a85SIngo Molnar 	if (!(address >= VMALLOC_START && address < VMALLOC_END))
430f2f13a85SIngo Molnar 		return -1;
431f2f13a85SIngo Molnar 
432ebc8827fSFrederic Weisbecker 	WARN_ON_ONCE(in_nmi());
433ebc8827fSFrederic Weisbecker 
434f2f13a85SIngo Molnar 	/*
435f2f13a85SIngo Molnar 	 * Copy kernel mappings over when needed. This can also
436f2f13a85SIngo Molnar 	 * happen within a race in page table update. In the later
437f2f13a85SIngo Molnar 	 * case just flush:
438f2f13a85SIngo Molnar 	 */
4396c690ee1SAndy Lutomirski 	pgd = (pgd_t *)__va(read_cr3_pa()) + pgd_index(address);
440565977a3SToshi Kani 	pgd_k = pgd_offset_k(address);
441565977a3SToshi Kani 	if (pgd_none(*pgd_k))
442f2f13a85SIngo Molnar 		return -1;
443f2f13a85SIngo Molnar 
444ed7588d5SKirill A. Shutemov 	if (pgtable_l5_enabled()) {
4451160c277SSamu Kallio 		if (pgd_none(*pgd)) {
446565977a3SToshi Kani 			set_pgd(pgd, *pgd_k);
4471160c277SSamu Kallio 			arch_flush_lazy_mmu_mode();
44836b3a772SAndy Lutomirski 		} else {
449565977a3SToshi Kani 			BUG_ON(pgd_page_vaddr(*pgd) != pgd_page_vaddr(*pgd_k));
4501160c277SSamu Kallio 		}
45136b3a772SAndy Lutomirski 	}
452f2f13a85SIngo Molnar 
453b50858ceSKirill A. Shutemov 	/* With 4-level paging, copying happens on the p4d level. */
454b50858ceSKirill A. Shutemov 	p4d = p4d_offset(pgd, address);
455565977a3SToshi Kani 	p4d_k = p4d_offset(pgd_k, address);
456565977a3SToshi Kani 	if (p4d_none(*p4d_k))
457b50858ceSKirill A. Shutemov 		return -1;
458b50858ceSKirill A. Shutemov 
459ed7588d5SKirill A. Shutemov 	if (p4d_none(*p4d) && !pgtable_l5_enabled()) {
460565977a3SToshi Kani 		set_p4d(p4d, *p4d_k);
461b50858ceSKirill A. Shutemov 		arch_flush_lazy_mmu_mode();
462b50858ceSKirill A. Shutemov 	} else {
463565977a3SToshi Kani 		BUG_ON(p4d_pfn(*p4d) != p4d_pfn(*p4d_k));
464b50858ceSKirill A. Shutemov 	}
465b50858ceSKirill A. Shutemov 
46636b3a772SAndy Lutomirski 	BUILD_BUG_ON(CONFIG_PGTABLE_LEVELS < 4);
467f2f13a85SIngo Molnar 
468b50858ceSKirill A. Shutemov 	pud = pud_offset(p4d, address);
469565977a3SToshi Kani 	if (pud_none(*pud))
470f2f13a85SIngo Molnar 		return -1;
471f2f13a85SIngo Molnar 
47218a95521SToshi Kani 	if (pud_large(*pud))
473f4eafd8bSToshi Kani 		return 0;
474f4eafd8bSToshi Kani 
475f2f13a85SIngo Molnar 	pmd = pmd_offset(pud, address);
476565977a3SToshi Kani 	if (pmd_none(*pmd))
477f2f13a85SIngo Molnar 		return -1;
478f2f13a85SIngo Molnar 
47918a95521SToshi Kani 	if (pmd_large(*pmd))
480f4eafd8bSToshi Kani 		return 0;
481f4eafd8bSToshi Kani 
482f2f13a85SIngo Molnar 	pte = pte_offset_kernel(pmd, address);
483565977a3SToshi Kani 	if (!pte_present(*pte))
484565977a3SToshi Kani 		return -1;
485f2f13a85SIngo Molnar 
486f2f13a85SIngo Molnar 	return 0;
487f2f13a85SIngo Molnar }
4889326638cSMasami Hiramatsu NOKPROBE_SYMBOL(vmalloc_fault);
489f2f13a85SIngo Molnar 
490e05139f2SJan Beulich #ifdef CONFIG_CPU_SUP_AMD
491f2f13a85SIngo Molnar static const char errata93_warning[] =
492ad361c98SJoe Perches KERN_ERR
493ad361c98SJoe Perches "******* Your BIOS seems to not contain a fix for K8 errata #93\n"
494ad361c98SJoe Perches "******* Working around it, but it may cause SEGVs or burn power.\n"
495ad361c98SJoe Perches "******* Please consider a BIOS update.\n"
496ad361c98SJoe Perches "******* Disabling USB legacy in the BIOS may also help.\n";
497e05139f2SJan Beulich #endif
498f2f13a85SIngo Molnar 
499f2f13a85SIngo Molnar /*
500f2f13a85SIngo Molnar  * No vm86 mode in 64-bit mode:
501f2f13a85SIngo Molnar  */
502f2f13a85SIngo Molnar static inline void
503f2f13a85SIngo Molnar check_v8086_mode(struct pt_regs *regs, unsigned long address,
504f2f13a85SIngo Molnar 		 struct task_struct *tsk)
505f2f13a85SIngo Molnar {
506f2f13a85SIngo Molnar }
507f2f13a85SIngo Molnar 
508f2f13a85SIngo Molnar static int bad_address(void *p)
509f2f13a85SIngo Molnar {
510f2f13a85SIngo Molnar 	unsigned long dummy;
511f2f13a85SIngo Molnar 
512f2f13a85SIngo Molnar 	return probe_kernel_address((unsigned long *)p, dummy);
513f2f13a85SIngo Molnar }
514f2f13a85SIngo Molnar 
515f2f13a85SIngo Molnar static void dump_pagetable(unsigned long address)
516f2f13a85SIngo Molnar {
5176c690ee1SAndy Lutomirski 	pgd_t *base = __va(read_cr3_pa());
518087975b0SAkinobu Mita 	pgd_t *pgd = base + pgd_index(address);
519e0c4f675SKirill A. Shutemov 	p4d_t *p4d;
520c61e211dSHarvey Harrison 	pud_t *pud;
521c61e211dSHarvey Harrison 	pmd_t *pmd;
522c61e211dSHarvey Harrison 	pte_t *pte;
523c61e211dSHarvey Harrison 
5242d4a7167SIngo Molnar 	if (bad_address(pgd))
5252d4a7167SIngo Molnar 		goto bad;
5262d4a7167SIngo Molnar 
52739e48d9bSJan Beulich 	pr_info("PGD %lx ", pgd_val(*pgd));
5282d4a7167SIngo Molnar 
5292d4a7167SIngo Molnar 	if (!pgd_present(*pgd))
5302d4a7167SIngo Molnar 		goto out;
531c61e211dSHarvey Harrison 
532e0c4f675SKirill A. Shutemov 	p4d = p4d_offset(pgd, address);
533e0c4f675SKirill A. Shutemov 	if (bad_address(p4d))
534e0c4f675SKirill A. Shutemov 		goto bad;
535e0c4f675SKirill A. Shutemov 
53639e48d9bSJan Beulich 	pr_cont("P4D %lx ", p4d_val(*p4d));
537e0c4f675SKirill A. Shutemov 	if (!p4d_present(*p4d) || p4d_large(*p4d))
538e0c4f675SKirill A. Shutemov 		goto out;
539e0c4f675SKirill A. Shutemov 
540e0c4f675SKirill A. Shutemov 	pud = pud_offset(p4d, address);
5412d4a7167SIngo Molnar 	if (bad_address(pud))
5422d4a7167SIngo Molnar 		goto bad;
5432d4a7167SIngo Molnar 
54439e48d9bSJan Beulich 	pr_cont("PUD %lx ", pud_val(*pud));
545b5360222SAndi Kleen 	if (!pud_present(*pud) || pud_large(*pud))
5462d4a7167SIngo Molnar 		goto out;
547c61e211dSHarvey Harrison 
548c61e211dSHarvey Harrison 	pmd = pmd_offset(pud, address);
5492d4a7167SIngo Molnar 	if (bad_address(pmd))
5502d4a7167SIngo Molnar 		goto bad;
5512d4a7167SIngo Molnar 
55239e48d9bSJan Beulich 	pr_cont("PMD %lx ", pmd_val(*pmd));
5532d4a7167SIngo Molnar 	if (!pmd_present(*pmd) || pmd_large(*pmd))
5542d4a7167SIngo Molnar 		goto out;
555c61e211dSHarvey Harrison 
556c61e211dSHarvey Harrison 	pte = pte_offset_kernel(pmd, address);
5572d4a7167SIngo Molnar 	if (bad_address(pte))
5582d4a7167SIngo Molnar 		goto bad;
5592d4a7167SIngo Molnar 
56039e48d9bSJan Beulich 	pr_cont("PTE %lx", pte_val(*pte));
5612d4a7167SIngo Molnar out:
56239e48d9bSJan Beulich 	pr_cont("\n");
563c61e211dSHarvey Harrison 	return;
564c61e211dSHarvey Harrison bad:
56539e48d9bSJan Beulich 	pr_info("BAD\n");
566c61e211dSHarvey Harrison }
567c61e211dSHarvey Harrison 
568f2f13a85SIngo Molnar #endif /* CONFIG_X86_64 */
569c61e211dSHarvey Harrison 
5702d4a7167SIngo Molnar /*
5712d4a7167SIngo Molnar  * Workaround for K8 erratum #93 & buggy BIOS.
5722d4a7167SIngo Molnar  *
5732d4a7167SIngo Molnar  * BIOS SMM functions are required to use a specific workaround
5742d4a7167SIngo Molnar  * to avoid corruption of the 64bit RIP register on C stepping K8.
5752d4a7167SIngo Molnar  *
5762d4a7167SIngo Molnar  * A lot of BIOS that didn't get tested properly miss this.
5772d4a7167SIngo Molnar  *
5782d4a7167SIngo Molnar  * The OS sees this as a page fault with the upper 32bits of RIP cleared.
5792d4a7167SIngo Molnar  * Try to work around it here.
5802d4a7167SIngo Molnar  *
5812d4a7167SIngo Molnar  * Note we only handle faults in kernel here.
5822d4a7167SIngo Molnar  * Does nothing on 32-bit.
583c61e211dSHarvey Harrison  */
584c61e211dSHarvey Harrison static int is_errata93(struct pt_regs *regs, unsigned long address)
585c61e211dSHarvey Harrison {
586e05139f2SJan Beulich #if defined(CONFIG_X86_64) && defined(CONFIG_CPU_SUP_AMD)
587e05139f2SJan Beulich 	if (boot_cpu_data.x86_vendor != X86_VENDOR_AMD
588e05139f2SJan Beulich 	    || boot_cpu_data.x86 != 0xf)
589e05139f2SJan Beulich 		return 0;
590e05139f2SJan Beulich 
591c61e211dSHarvey Harrison 	if (address != regs->ip)
592c61e211dSHarvey Harrison 		return 0;
5932d4a7167SIngo Molnar 
594c61e211dSHarvey Harrison 	if ((address >> 32) != 0)
595c61e211dSHarvey Harrison 		return 0;
5962d4a7167SIngo Molnar 
597c61e211dSHarvey Harrison 	address |= 0xffffffffUL << 32;
598c61e211dSHarvey Harrison 	if ((address >= (u64)_stext && address <= (u64)_etext) ||
599c61e211dSHarvey Harrison 	    (address >= MODULES_VADDR && address <= MODULES_END)) {
600a454ab31SIngo Molnar 		printk_once(errata93_warning);
601c61e211dSHarvey Harrison 		regs->ip = address;
602c61e211dSHarvey Harrison 		return 1;
603c61e211dSHarvey Harrison 	}
604c61e211dSHarvey Harrison #endif
605c61e211dSHarvey Harrison 	return 0;
606c61e211dSHarvey Harrison }
607c61e211dSHarvey Harrison 
608c61e211dSHarvey Harrison /*
6092d4a7167SIngo Molnar  * Work around K8 erratum #100 K8 in compat mode occasionally jumps
6102d4a7167SIngo Molnar  * to illegal addresses >4GB.
6112d4a7167SIngo Molnar  *
6122d4a7167SIngo Molnar  * We catch this in the page fault handler because these addresses
6132d4a7167SIngo Molnar  * are not reachable. Just detect this case and return.  Any code
614c61e211dSHarvey Harrison  * segment in LDT is compatibility mode.
615c61e211dSHarvey Harrison  */
616c61e211dSHarvey Harrison static int is_errata100(struct pt_regs *regs, unsigned long address)
617c61e211dSHarvey Harrison {
618c61e211dSHarvey Harrison #ifdef CONFIG_X86_64
6192d4a7167SIngo Molnar 	if ((regs->cs == __USER32_CS || (regs->cs & (1<<2))) && (address >> 32))
620c61e211dSHarvey Harrison 		return 1;
621c61e211dSHarvey Harrison #endif
622c61e211dSHarvey Harrison 	return 0;
623c61e211dSHarvey Harrison }
624c61e211dSHarvey Harrison 
625c61e211dSHarvey Harrison static int is_f00f_bug(struct pt_regs *regs, unsigned long address)
626c61e211dSHarvey Harrison {
627c61e211dSHarvey Harrison #ifdef CONFIG_X86_F00F_BUG
628c61e211dSHarvey Harrison 	unsigned long nr;
6292d4a7167SIngo Molnar 
630c61e211dSHarvey Harrison 	/*
6312d4a7167SIngo Molnar 	 * Pentium F0 0F C7 C8 bug workaround:
632c61e211dSHarvey Harrison 	 */
633e2604b49SBorislav Petkov 	if (boot_cpu_has_bug(X86_BUG_F00F)) {
634c61e211dSHarvey Harrison 		nr = (address - idt_descr.address) >> 3;
635c61e211dSHarvey Harrison 
636c61e211dSHarvey Harrison 		if (nr == 6) {
637c61e211dSHarvey Harrison 			do_invalid_op(regs, 0);
638c61e211dSHarvey Harrison 			return 1;
639c61e211dSHarvey Harrison 		}
640c61e211dSHarvey Harrison 	}
641c61e211dSHarvey Harrison #endif
642c61e211dSHarvey Harrison 	return 0;
643c61e211dSHarvey Harrison }
644c61e211dSHarvey Harrison 
6452d4a7167SIngo Molnar static void
6462d4a7167SIngo Molnar show_fault_oops(struct pt_regs *regs, unsigned long error_code,
647c61e211dSHarvey Harrison 		unsigned long address)
648c61e211dSHarvey Harrison {
649c61e211dSHarvey Harrison 	if (!oops_may_print())
650c61e211dSHarvey Harrison 		return;
651c61e211dSHarvey Harrison 
6521067f030SRicardo Neri 	if (error_code & X86_PF_INSTR) {
65393809be8SHarvey Harrison 		unsigned int level;
654426e34ccSMatt Fleming 		pgd_t *pgd;
655426e34ccSMatt Fleming 		pte_t *pte;
6562d4a7167SIngo Molnar 
6576c690ee1SAndy Lutomirski 		pgd = __va(read_cr3_pa());
658426e34ccSMatt Fleming 		pgd += pgd_index(address);
659426e34ccSMatt Fleming 
660426e34ccSMatt Fleming 		pte = lookup_address_in_pgd(pgd, address, &level);
661c61e211dSHarvey Harrison 
6628f766149SIngo Molnar 		if (pte && pte_present(*pte) && !pte_exec(*pte))
663d79d0d8aSDmitry Vyukov 			pr_crit("kernel tried to execute NX-protected page - exploit attempt? (uid: %d)\n",
664d79d0d8aSDmitry Vyukov 				from_kuid(&init_user_ns, current_uid()));
665eff50c34SJiri Kosina 		if (pte && pte_present(*pte) && pte_exec(*pte) &&
666eff50c34SJiri Kosina 				(pgd_flags(*pgd) & _PAGE_USER) &&
6671e02ce4cSAndy Lutomirski 				(__read_cr4() & X86_CR4_SMEP))
668d79d0d8aSDmitry Vyukov 			pr_crit("unable to execute userspace code (SMEP?) (uid: %d)\n",
669d79d0d8aSDmitry Vyukov 				from_kuid(&init_user_ns, current_uid()));
670c61e211dSHarvey Harrison 	}
671fd40d6e3SHarvey Harrison 
6724188f063SDmitry Vyukov 	pr_alert("BUG: unable to handle kernel %s at %px\n",
6734188f063SDmitry Vyukov 		 address < PAGE_SIZE ? "NULL pointer dereference" : "paging request",
6744188f063SDmitry Vyukov 		 (void *)address);
6752d4a7167SIngo Molnar 
676c61e211dSHarvey Harrison 	dump_pagetable(address);
677c61e211dSHarvey Harrison }
678c61e211dSHarvey Harrison 
6792d4a7167SIngo Molnar static noinline void
6802d4a7167SIngo Molnar pgtable_bad(struct pt_regs *regs, unsigned long error_code,
6812d4a7167SIngo Molnar 	    unsigned long address)
682c61e211dSHarvey Harrison {
6832d4a7167SIngo Molnar 	struct task_struct *tsk;
6842d4a7167SIngo Molnar 	unsigned long flags;
6852d4a7167SIngo Molnar 	int sig;
6862d4a7167SIngo Molnar 
6872d4a7167SIngo Molnar 	flags = oops_begin();
6882d4a7167SIngo Molnar 	tsk = current;
6892d4a7167SIngo Molnar 	sig = SIGKILL;
690c61e211dSHarvey Harrison 
691c61e211dSHarvey Harrison 	printk(KERN_ALERT "%s: Corrupted page table at address %lx\n",
69292181f19SNick Piggin 	       tsk->comm, address);
693c61e211dSHarvey Harrison 	dump_pagetable(address);
6942d4a7167SIngo Molnar 
695c61e211dSHarvey Harrison 	tsk->thread.cr2		= address;
69651e7dc70SSrikar Dronamraju 	tsk->thread.trap_nr	= X86_TRAP_PF;
697c61e211dSHarvey Harrison 	tsk->thread.error_code	= error_code;
6982d4a7167SIngo Molnar 
699c61e211dSHarvey Harrison 	if (__die("Bad pagetable", regs, error_code))
700874d93d1SAlexander van Heukelum 		sig = 0;
7012d4a7167SIngo Molnar 
702874d93d1SAlexander van Heukelum 	oops_end(flags, regs, sig);
703c61e211dSHarvey Harrison }
704c61e211dSHarvey Harrison 
7052d4a7167SIngo Molnar static noinline void
7062d4a7167SIngo Molnar no_context(struct pt_regs *regs, unsigned long error_code,
7074fc34901SAndy Lutomirski 	   unsigned long address, int signal, int si_code)
70892181f19SNick Piggin {
70992181f19SNick Piggin 	struct task_struct *tsk = current;
71092181f19SNick Piggin 	unsigned long flags;
71192181f19SNick Piggin 	int sig;
71292181f19SNick Piggin 
71392181f19SNick Piggin 	/* Are we prepared to handle this kernel fault? */
714*81fd9c18SJann Horn 	if (fixup_exception(regs, X86_TRAP_PF, error_code, address)) {
715c026b359SPeter Zijlstra 		/*
716c026b359SPeter Zijlstra 		 * Any interrupt that takes a fault gets the fixup. This makes
717c026b359SPeter Zijlstra 		 * the below recursive fault logic only apply to a faults from
718c026b359SPeter Zijlstra 		 * task context.
719c026b359SPeter Zijlstra 		 */
720c026b359SPeter Zijlstra 		if (in_interrupt())
721c026b359SPeter Zijlstra 			return;
722c026b359SPeter Zijlstra 
723c026b359SPeter Zijlstra 		/*
724c026b359SPeter Zijlstra 		 * Per the above we're !in_interrupt(), aka. task context.
725c026b359SPeter Zijlstra 		 *
726c026b359SPeter Zijlstra 		 * In this case we need to make sure we're not recursively
727c026b359SPeter Zijlstra 		 * faulting through the emulate_vsyscall() logic.
728c026b359SPeter Zijlstra 		 */
7292a53ccbcSIngo Molnar 		if (current->thread.sig_on_uaccess_err && signal) {
73051e7dc70SSrikar Dronamraju 			tsk->thread.trap_nr = X86_TRAP_PF;
7311067f030SRicardo Neri 			tsk->thread.error_code = error_code | X86_PF_USER;
7324fc34901SAndy Lutomirski 			tsk->thread.cr2 = address;
7334fc34901SAndy Lutomirski 
7344fc34901SAndy Lutomirski 			/* XXX: hwpoison faults will set the wrong code. */
7357b2d0dbaSDave Hansen 			force_sig_info_fault(signal, si_code, address,
736a3c4fb7cSLaurent Dufour 					     tsk, NULL, 0);
7374fc34901SAndy Lutomirski 		}
738c026b359SPeter Zijlstra 
739c026b359SPeter Zijlstra 		/*
740c026b359SPeter Zijlstra 		 * Barring that, we can do the fixup and be happy.
741c026b359SPeter Zijlstra 		 */
74292181f19SNick Piggin 		return;
7434fc34901SAndy Lutomirski 	}
74492181f19SNick Piggin 
7456271cfdfSAndy Lutomirski #ifdef CONFIG_VMAP_STACK
7466271cfdfSAndy Lutomirski 	/*
7476271cfdfSAndy Lutomirski 	 * Stack overflow?  During boot, we can fault near the initial
7486271cfdfSAndy Lutomirski 	 * stack in the direct map, but that's not an overflow -- check
7496271cfdfSAndy Lutomirski 	 * that we're in vmalloc space to avoid this.
7506271cfdfSAndy Lutomirski 	 */
7516271cfdfSAndy Lutomirski 	if (is_vmalloc_addr((void *)address) &&
7526271cfdfSAndy Lutomirski 	    (((unsigned long)tsk->stack - 1 - address < PAGE_SIZE) ||
7536271cfdfSAndy Lutomirski 	     address - ((unsigned long)tsk->stack + THREAD_SIZE) < PAGE_SIZE)) {
7546271cfdfSAndy Lutomirski 		unsigned long stack = this_cpu_read(orig_ist.ist[DOUBLEFAULT_STACK]) - sizeof(void *);
7556271cfdfSAndy Lutomirski 		/*
7566271cfdfSAndy Lutomirski 		 * We're likely to be running with very little stack space
7576271cfdfSAndy Lutomirski 		 * left.  It's plausible that we'd hit this condition but
7586271cfdfSAndy Lutomirski 		 * double-fault even before we get this far, in which case
7596271cfdfSAndy Lutomirski 		 * we're fine: the double-fault handler will deal with it.
7606271cfdfSAndy Lutomirski 		 *
7616271cfdfSAndy Lutomirski 		 * We don't want to make it all the way into the oops code
7626271cfdfSAndy Lutomirski 		 * and then double-fault, though, because we're likely to
7636271cfdfSAndy Lutomirski 		 * break the console driver and lose most of the stack dump.
7646271cfdfSAndy Lutomirski 		 */
7656271cfdfSAndy Lutomirski 		asm volatile ("movq %[stack], %%rsp\n\t"
7666271cfdfSAndy Lutomirski 			      "call handle_stack_overflow\n\t"
7676271cfdfSAndy Lutomirski 			      "1: jmp 1b"
768f5caf621SJosh Poimboeuf 			      : ASM_CALL_CONSTRAINT
7696271cfdfSAndy Lutomirski 			      : "D" ("kernel stack overflow (page fault)"),
7706271cfdfSAndy Lutomirski 				"S" (regs), "d" (address),
7716271cfdfSAndy Lutomirski 				[stack] "rm" (stack));
7726271cfdfSAndy Lutomirski 		unreachable();
7736271cfdfSAndy Lutomirski 	}
7746271cfdfSAndy Lutomirski #endif
7756271cfdfSAndy Lutomirski 
77692181f19SNick Piggin 	/*
7772d4a7167SIngo Molnar 	 * 32-bit:
7782d4a7167SIngo Molnar 	 *
77992181f19SNick Piggin 	 *   Valid to do another page fault here, because if this fault
78092181f19SNick Piggin 	 *   had been triggered by is_prefetch fixup_exception would have
78192181f19SNick Piggin 	 *   handled it.
78292181f19SNick Piggin 	 *
7832d4a7167SIngo Molnar 	 * 64-bit:
7842d4a7167SIngo Molnar 	 *
78592181f19SNick Piggin 	 *   Hall of shame of CPU/BIOS bugs.
78692181f19SNick Piggin 	 */
78792181f19SNick Piggin 	if (is_prefetch(regs, error_code, address))
78892181f19SNick Piggin 		return;
78992181f19SNick Piggin 
79092181f19SNick Piggin 	if (is_errata93(regs, address))
79192181f19SNick Piggin 		return;
79292181f19SNick Piggin 
79392181f19SNick Piggin 	/*
79492181f19SNick Piggin 	 * Oops. The kernel tried to access some bad page. We'll have to
7952d4a7167SIngo Molnar 	 * terminate things with extreme prejudice:
79692181f19SNick Piggin 	 */
79792181f19SNick Piggin 	flags = oops_begin();
79892181f19SNick Piggin 
79992181f19SNick Piggin 	show_fault_oops(regs, error_code, address);
80092181f19SNick Piggin 
801a70857e4SAaron Tomlin 	if (task_stack_end_corrupted(tsk))
802b0f4c4b3SPrarit Bhargava 		printk(KERN_EMERG "Thread overran stack, or stack corrupted\n");
80319803078SIngo Molnar 
80492181f19SNick Piggin 	tsk->thread.cr2		= address;
80551e7dc70SSrikar Dronamraju 	tsk->thread.trap_nr	= X86_TRAP_PF;
80692181f19SNick Piggin 	tsk->thread.error_code	= error_code;
80792181f19SNick Piggin 
80892181f19SNick Piggin 	sig = SIGKILL;
80992181f19SNick Piggin 	if (__die("Oops", regs, error_code))
81092181f19SNick Piggin 		sig = 0;
8112d4a7167SIngo Molnar 
81292181f19SNick Piggin 	/* Executive summary in case the body of the oops scrolled away */
813b0f4c4b3SPrarit Bhargava 	printk(KERN_DEFAULT "CR2: %016lx\n", address);
8142d4a7167SIngo Molnar 
81592181f19SNick Piggin 	oops_end(flags, regs, sig);
81692181f19SNick Piggin }
81792181f19SNick Piggin 
8182d4a7167SIngo Molnar /*
8192d4a7167SIngo Molnar  * Print out info about fatal segfaults, if the show_unhandled_signals
8202d4a7167SIngo Molnar  * sysctl is set:
8212d4a7167SIngo Molnar  */
8222d4a7167SIngo Molnar static inline void
8232d4a7167SIngo Molnar show_signal_msg(struct pt_regs *regs, unsigned long error_code,
8242d4a7167SIngo Molnar 		unsigned long address, struct task_struct *tsk)
8252d4a7167SIngo Molnar {
826ba54d856SBorislav Petkov 	const char *loglvl = task_pid_nr(tsk) > 1 ? KERN_INFO : KERN_EMERG;
827ba54d856SBorislav Petkov 
8282d4a7167SIngo Molnar 	if (!unhandled_signal(tsk, SIGSEGV))
8292d4a7167SIngo Molnar 		return;
8302d4a7167SIngo Molnar 
8312d4a7167SIngo Molnar 	if (!printk_ratelimit())
8322d4a7167SIngo Molnar 		return;
8332d4a7167SIngo Molnar 
83410a7e9d8SKees Cook 	printk("%s%s[%d]: segfault at %lx ip %px sp %px error %lx",
835ba54d856SBorislav Petkov 		loglvl, tsk->comm, task_pid_nr(tsk), address,
8362d4a7167SIngo Molnar 		(void *)regs->ip, (void *)regs->sp, error_code);
8372d4a7167SIngo Molnar 
8382d4a7167SIngo Molnar 	print_vma_addr(KERN_CONT " in ", regs->ip);
8392d4a7167SIngo Molnar 
8402d4a7167SIngo Molnar 	printk(KERN_CONT "\n");
841ba54d856SBorislav Petkov 
842342db04aSJann Horn 	show_opcodes(regs, loglvl);
8432d4a7167SIngo Molnar }
8442d4a7167SIngo Molnar 
8452d4a7167SIngo Molnar static void
8462d4a7167SIngo Molnar __bad_area_nosemaphore(struct pt_regs *regs, unsigned long error_code,
847a3c4fb7cSLaurent Dufour 		       unsigned long address, u32 *pkey, int si_code)
84892181f19SNick Piggin {
84992181f19SNick Piggin 	struct task_struct *tsk = current;
85092181f19SNick Piggin 
85192181f19SNick Piggin 	/* User mode accesses just cause a SIGSEGV */
8521067f030SRicardo Neri 	if (error_code & X86_PF_USER) {
85392181f19SNick Piggin 		/*
8542d4a7167SIngo Molnar 		 * It's possible to have interrupts off here:
85592181f19SNick Piggin 		 */
85692181f19SNick Piggin 		local_irq_enable();
85792181f19SNick Piggin 
85892181f19SNick Piggin 		/*
85992181f19SNick Piggin 		 * Valid to do another page fault here because this one came
8602d4a7167SIngo Molnar 		 * from user space:
86192181f19SNick Piggin 		 */
86292181f19SNick Piggin 		if (is_prefetch(regs, error_code, address))
86392181f19SNick Piggin 			return;
86492181f19SNick Piggin 
86592181f19SNick Piggin 		if (is_errata100(regs, address))
86692181f19SNick Piggin 			return;
86792181f19SNick Piggin 
8683ae36655SAndy Lutomirski #ifdef CONFIG_X86_64
8693ae36655SAndy Lutomirski 		/*
8703ae36655SAndy Lutomirski 		 * Instruction fetch faults in the vsyscall page might need
8713ae36655SAndy Lutomirski 		 * emulation.
8723ae36655SAndy Lutomirski 		 */
8731067f030SRicardo Neri 		if (unlikely((error_code & X86_PF_INSTR) &&
874f40c3300SAndy Lutomirski 			     ((address & ~0xfff) == VSYSCALL_ADDR))) {
8753ae36655SAndy Lutomirski 			if (emulate_vsyscall(regs, address))
8763ae36655SAndy Lutomirski 				return;
8773ae36655SAndy Lutomirski 		}
8783ae36655SAndy Lutomirski #endif
879dc4fac84SAndy Lutomirski 
880dc4fac84SAndy Lutomirski 		/*
881dc4fac84SAndy Lutomirski 		 * To avoid leaking information about the kernel page table
882dc4fac84SAndy Lutomirski 		 * layout, pretend that user-mode accesses to kernel addresses
883dc4fac84SAndy Lutomirski 		 * are always protection faults.
884dc4fac84SAndy Lutomirski 		 */
885dc4fac84SAndy Lutomirski 		if (address >= TASK_SIZE_MAX)
8861067f030SRicardo Neri 			error_code |= X86_PF_PROT;
8873ae36655SAndy Lutomirski 
888e575a86fSKees Cook 		if (likely(show_unhandled_signals))
8892d4a7167SIngo Molnar 			show_signal_msg(regs, error_code, address, tsk);
89092181f19SNick Piggin 
89192181f19SNick Piggin 		tsk->thread.cr2		= address;
892e575a86fSKees Cook 		tsk->thread.error_code	= error_code;
89351e7dc70SSrikar Dronamraju 		tsk->thread.trap_nr	= X86_TRAP_PF;
8942d4a7167SIngo Molnar 
895a3c4fb7cSLaurent Dufour 		force_sig_info_fault(SIGSEGV, si_code, address, tsk, pkey, 0);
8962d4a7167SIngo Molnar 
89792181f19SNick Piggin 		return;
89892181f19SNick Piggin 	}
89992181f19SNick Piggin 
90092181f19SNick Piggin 	if (is_f00f_bug(regs, address))
90192181f19SNick Piggin 		return;
90292181f19SNick Piggin 
9034fc34901SAndy Lutomirski 	no_context(regs, error_code, address, SIGSEGV, si_code);
90492181f19SNick Piggin }
90592181f19SNick Piggin 
9062d4a7167SIngo Molnar static noinline void
9072d4a7167SIngo Molnar bad_area_nosemaphore(struct pt_regs *regs, unsigned long error_code,
908a3c4fb7cSLaurent Dufour 		     unsigned long address, u32 *pkey)
90992181f19SNick Piggin {
910a3c4fb7cSLaurent Dufour 	__bad_area_nosemaphore(regs, error_code, address, pkey, SEGV_MAPERR);
91192181f19SNick Piggin }
91292181f19SNick Piggin 
9132d4a7167SIngo Molnar static void
9142d4a7167SIngo Molnar __bad_area(struct pt_regs *regs, unsigned long error_code,
9157b2d0dbaSDave Hansen 	   unsigned long address,  struct vm_area_struct *vma, int si_code)
91692181f19SNick Piggin {
91792181f19SNick Piggin 	struct mm_struct *mm = current->mm;
918a3c4fb7cSLaurent Dufour 	u32 pkey;
919a3c4fb7cSLaurent Dufour 
920a3c4fb7cSLaurent Dufour 	if (vma)
921a3c4fb7cSLaurent Dufour 		pkey = vma_pkey(vma);
92292181f19SNick Piggin 
92392181f19SNick Piggin 	/*
92492181f19SNick Piggin 	 * Something tried to access memory that isn't in our memory map..
92592181f19SNick Piggin 	 * Fix it, but check if it's kernel or user first..
92692181f19SNick Piggin 	 */
92792181f19SNick Piggin 	up_read(&mm->mmap_sem);
92892181f19SNick Piggin 
929a3c4fb7cSLaurent Dufour 	__bad_area_nosemaphore(regs, error_code, address,
930a3c4fb7cSLaurent Dufour 			       (vma) ? &pkey : NULL, si_code);
93192181f19SNick Piggin }
93292181f19SNick Piggin 
9332d4a7167SIngo Molnar static noinline void
9342d4a7167SIngo Molnar bad_area(struct pt_regs *regs, unsigned long error_code, unsigned long address)
93592181f19SNick Piggin {
9367b2d0dbaSDave Hansen 	__bad_area(regs, error_code, address, NULL, SEGV_MAPERR);
93792181f19SNick Piggin }
93892181f19SNick Piggin 
93933a709b2SDave Hansen static inline bool bad_area_access_from_pkeys(unsigned long error_code,
94033a709b2SDave Hansen 		struct vm_area_struct *vma)
94133a709b2SDave Hansen {
94207f146f5SDave Hansen 	/* This code is always called on the current mm */
94307f146f5SDave Hansen 	bool foreign = false;
94407f146f5SDave Hansen 
94533a709b2SDave Hansen 	if (!boot_cpu_has(X86_FEATURE_OSPKE))
94633a709b2SDave Hansen 		return false;
9471067f030SRicardo Neri 	if (error_code & X86_PF_PK)
94833a709b2SDave Hansen 		return true;
94907f146f5SDave Hansen 	/* this checks permission keys on the VMA: */
9501067f030SRicardo Neri 	if (!arch_vma_access_permitted(vma, (error_code & X86_PF_WRITE),
9511067f030SRicardo Neri 				       (error_code & X86_PF_INSTR), foreign))
95207f146f5SDave Hansen 		return true;
95333a709b2SDave Hansen 	return false;
95492181f19SNick Piggin }
95592181f19SNick Piggin 
9562d4a7167SIngo Molnar static noinline void
9572d4a7167SIngo Molnar bad_area_access_error(struct pt_regs *regs, unsigned long error_code,
9587b2d0dbaSDave Hansen 		      unsigned long address, struct vm_area_struct *vma)
95992181f19SNick Piggin {
960019132ffSDave Hansen 	/*
961019132ffSDave Hansen 	 * This OSPKE check is not strictly necessary at runtime.
962019132ffSDave Hansen 	 * But, doing it this way allows compiler optimizations
963019132ffSDave Hansen 	 * if pkeys are compiled out.
964019132ffSDave Hansen 	 */
96533a709b2SDave Hansen 	if (bad_area_access_from_pkeys(error_code, vma))
966019132ffSDave Hansen 		__bad_area(regs, error_code, address, vma, SEGV_PKUERR);
967019132ffSDave Hansen 	else
9687b2d0dbaSDave Hansen 		__bad_area(regs, error_code, address, vma, SEGV_ACCERR);
96992181f19SNick Piggin }
97092181f19SNick Piggin 
9712d4a7167SIngo Molnar static void
972a6e04aa9SAndi Kleen do_sigbus(struct pt_regs *regs, unsigned long error_code, unsigned long address,
973a3c4fb7cSLaurent Dufour 	  u32 *pkey, unsigned int fault)
97492181f19SNick Piggin {
97592181f19SNick Piggin 	struct task_struct *tsk = current;
976a6e04aa9SAndi Kleen 	int code = BUS_ADRERR;
97792181f19SNick Piggin 
9782d4a7167SIngo Molnar 	/* Kernel mode? Handle exceptions or die: */
9791067f030SRicardo Neri 	if (!(error_code & X86_PF_USER)) {
9804fc34901SAndy Lutomirski 		no_context(regs, error_code, address, SIGBUS, BUS_ADRERR);
98196054569SLinus Torvalds 		return;
98296054569SLinus Torvalds 	}
9832d4a7167SIngo Molnar 
984cd1b68f0SIngo Molnar 	/* User-space => ok to do another page fault: */
98592181f19SNick Piggin 	if (is_prefetch(regs, error_code, address))
98692181f19SNick Piggin 		return;
9872d4a7167SIngo Molnar 
98892181f19SNick Piggin 	tsk->thread.cr2		= address;
98992181f19SNick Piggin 	tsk->thread.error_code	= error_code;
99051e7dc70SSrikar Dronamraju 	tsk->thread.trap_nr	= X86_TRAP_PF;
9912d4a7167SIngo Molnar 
992a6e04aa9SAndi Kleen #ifdef CONFIG_MEMORY_FAILURE
993f672b49bSAndi Kleen 	if (fault & (VM_FAULT_HWPOISON|VM_FAULT_HWPOISON_LARGE)) {
994a6e04aa9SAndi Kleen 		printk(KERN_ERR
995a6e04aa9SAndi Kleen 	"MCE: Killing %s:%d due to hardware memory corruption fault at %lx\n",
996a6e04aa9SAndi Kleen 			tsk->comm, tsk->pid, address);
997a6e04aa9SAndi Kleen 		code = BUS_MCEERR_AR;
998a6e04aa9SAndi Kleen 	}
999a6e04aa9SAndi Kleen #endif
1000a3c4fb7cSLaurent Dufour 	force_sig_info_fault(SIGBUS, code, address, tsk, pkey, fault);
100192181f19SNick Piggin }
100292181f19SNick Piggin 
10033a13c4d7SJohannes Weiner static noinline void
10042d4a7167SIngo Molnar mm_fault_error(struct pt_regs *regs, unsigned long error_code,
100550a7ca3cSSouptick Joarder 	       unsigned long address, u32 *pkey, vm_fault_t fault)
100692181f19SNick Piggin {
10071067f030SRicardo Neri 	if (fatal_signal_pending(current) && !(error_code & X86_PF_USER)) {
10084fc34901SAndy Lutomirski 		no_context(regs, error_code, address, 0, 0);
10093a13c4d7SJohannes Weiner 		return;
1010b80ef10eSKOSAKI Motohiro 	}
1011b80ef10eSKOSAKI Motohiro 
10122d4a7167SIngo Molnar 	if (fault & VM_FAULT_OOM) {
1013f8626854SAndrey Vagin 		/* Kernel mode? Handle exceptions or die: */
10141067f030SRicardo Neri 		if (!(error_code & X86_PF_USER)) {
10154fc34901SAndy Lutomirski 			no_context(regs, error_code, address,
10164fc34901SAndy Lutomirski 				   SIGSEGV, SEGV_MAPERR);
10173a13c4d7SJohannes Weiner 			return;
1018f8626854SAndrey Vagin 		}
1019f8626854SAndrey Vagin 
1020c2d23f91SDavid Rientjes 		/*
1021c2d23f91SDavid Rientjes 		 * We ran out of memory, call the OOM killer, and return the
1022c2d23f91SDavid Rientjes 		 * userspace (which will retry the fault, or kill us if we got
1023c2d23f91SDavid Rientjes 		 * oom-killed):
1024c2d23f91SDavid Rientjes 		 */
1025c2d23f91SDavid Rientjes 		pagefault_out_of_memory();
10262d4a7167SIngo Molnar 	} else {
1027f672b49bSAndi Kleen 		if (fault & (VM_FAULT_SIGBUS|VM_FAULT_HWPOISON|
1028f672b49bSAndi Kleen 			     VM_FAULT_HWPOISON_LARGE))
1029a3c4fb7cSLaurent Dufour 			do_sigbus(regs, error_code, address, pkey, fault);
103033692f27SLinus Torvalds 		else if (fault & VM_FAULT_SIGSEGV)
1031a3c4fb7cSLaurent Dufour 			bad_area_nosemaphore(regs, error_code, address, pkey);
103292181f19SNick Piggin 		else
103392181f19SNick Piggin 			BUG();
103492181f19SNick Piggin 	}
10352d4a7167SIngo Molnar }
103692181f19SNick Piggin 
1037d8b57bb7SThomas Gleixner static int spurious_fault_check(unsigned long error_code, pte_t *pte)
1038d8b57bb7SThomas Gleixner {
10391067f030SRicardo Neri 	if ((error_code & X86_PF_WRITE) && !pte_write(*pte))
1040d8b57bb7SThomas Gleixner 		return 0;
10412d4a7167SIngo Molnar 
10421067f030SRicardo Neri 	if ((error_code & X86_PF_INSTR) && !pte_exec(*pte))
1043d8b57bb7SThomas Gleixner 		return 0;
1044b3ecd515SDave Hansen 	/*
1045b3ecd515SDave Hansen 	 * Note: We do not do lazy flushing on protection key
10461067f030SRicardo Neri 	 * changes, so no spurious fault will ever set X86_PF_PK.
1047b3ecd515SDave Hansen 	 */
10481067f030SRicardo Neri 	if ((error_code & X86_PF_PK))
1049b3ecd515SDave Hansen 		return 1;
1050d8b57bb7SThomas Gleixner 
1051d8b57bb7SThomas Gleixner 	return 1;
1052d8b57bb7SThomas Gleixner }
1053d8b57bb7SThomas Gleixner 
1054c61e211dSHarvey Harrison /*
10552d4a7167SIngo Molnar  * Handle a spurious fault caused by a stale TLB entry.
10562d4a7167SIngo Molnar  *
10572d4a7167SIngo Molnar  * This allows us to lazily refresh the TLB when increasing the
10582d4a7167SIngo Molnar  * permissions of a kernel page (RO -> RW or NX -> X).  Doing it
10592d4a7167SIngo Molnar  * eagerly is very expensive since that implies doing a full
10602d4a7167SIngo Molnar  * cross-processor TLB flush, even if no stale TLB entries exist
10612d4a7167SIngo Molnar  * on other processors.
10622d4a7167SIngo Molnar  *
106331668511SDavid Vrabel  * Spurious faults may only occur if the TLB contains an entry with
106431668511SDavid Vrabel  * fewer permission than the page table entry.  Non-present (P = 0)
106531668511SDavid Vrabel  * and reserved bit (R = 1) faults are never spurious.
106631668511SDavid Vrabel  *
10675b727a3bSJeremy Fitzhardinge  * There are no security implications to leaving a stale TLB when
10685b727a3bSJeremy Fitzhardinge  * increasing the permissions on a page.
106931668511SDavid Vrabel  *
107031668511SDavid Vrabel  * Returns non-zero if a spurious fault was handled, zero otherwise.
107131668511SDavid Vrabel  *
107231668511SDavid Vrabel  * See Intel Developer's Manual Vol 3 Section 4.10.4.3, bullet 3
107331668511SDavid Vrabel  * (Optional Invalidation).
10745b727a3bSJeremy Fitzhardinge  */
10759326638cSMasami Hiramatsu static noinline int
10762d4a7167SIngo Molnar spurious_fault(unsigned long error_code, unsigned long address)
10775b727a3bSJeremy Fitzhardinge {
10785b727a3bSJeremy Fitzhardinge 	pgd_t *pgd;
1079e0c4f675SKirill A. Shutemov 	p4d_t *p4d;
10805b727a3bSJeremy Fitzhardinge 	pud_t *pud;
10815b727a3bSJeremy Fitzhardinge 	pmd_t *pmd;
10825b727a3bSJeremy Fitzhardinge 	pte_t *pte;
10833c3e5694SSteven Rostedt 	int ret;
10845b727a3bSJeremy Fitzhardinge 
108531668511SDavid Vrabel 	/*
108631668511SDavid Vrabel 	 * Only writes to RO or instruction fetches from NX may cause
108731668511SDavid Vrabel 	 * spurious faults.
108831668511SDavid Vrabel 	 *
108931668511SDavid Vrabel 	 * These could be from user or supervisor accesses but the TLB
109031668511SDavid Vrabel 	 * is only lazily flushed after a kernel mapping protection
109131668511SDavid Vrabel 	 * change, so user accesses are not expected to cause spurious
109231668511SDavid Vrabel 	 * faults.
109331668511SDavid Vrabel 	 */
10941067f030SRicardo Neri 	if (error_code != (X86_PF_WRITE | X86_PF_PROT) &&
10951067f030SRicardo Neri 	    error_code != (X86_PF_INSTR | X86_PF_PROT))
10965b727a3bSJeremy Fitzhardinge 		return 0;
10975b727a3bSJeremy Fitzhardinge 
10985b727a3bSJeremy Fitzhardinge 	pgd = init_mm.pgd + pgd_index(address);
10995b727a3bSJeremy Fitzhardinge 	if (!pgd_present(*pgd))
11005b727a3bSJeremy Fitzhardinge 		return 0;
11015b727a3bSJeremy Fitzhardinge 
1102e0c4f675SKirill A. Shutemov 	p4d = p4d_offset(pgd, address);
1103e0c4f675SKirill A. Shutemov 	if (!p4d_present(*p4d))
1104e0c4f675SKirill A. Shutemov 		return 0;
1105e0c4f675SKirill A. Shutemov 
1106e0c4f675SKirill A. Shutemov 	if (p4d_large(*p4d))
1107e0c4f675SKirill A. Shutemov 		return spurious_fault_check(error_code, (pte_t *) p4d);
1108e0c4f675SKirill A. Shutemov 
1109e0c4f675SKirill A. Shutemov 	pud = pud_offset(p4d, address);
11105b727a3bSJeremy Fitzhardinge 	if (!pud_present(*pud))
11115b727a3bSJeremy Fitzhardinge 		return 0;
11125b727a3bSJeremy Fitzhardinge 
1113d8b57bb7SThomas Gleixner 	if (pud_large(*pud))
1114d8b57bb7SThomas Gleixner 		return spurious_fault_check(error_code, (pte_t *) pud);
1115d8b57bb7SThomas Gleixner 
11165b727a3bSJeremy Fitzhardinge 	pmd = pmd_offset(pud, address);
11175b727a3bSJeremy Fitzhardinge 	if (!pmd_present(*pmd))
11185b727a3bSJeremy Fitzhardinge 		return 0;
11195b727a3bSJeremy Fitzhardinge 
1120d8b57bb7SThomas Gleixner 	if (pmd_large(*pmd))
1121d8b57bb7SThomas Gleixner 		return spurious_fault_check(error_code, (pte_t *) pmd);
1122d8b57bb7SThomas Gleixner 
11235b727a3bSJeremy Fitzhardinge 	pte = pte_offset_kernel(pmd, address);
1124954f8571SAndrea Arcangeli 	if (!pte_present(*pte))
11255b727a3bSJeremy Fitzhardinge 		return 0;
11265b727a3bSJeremy Fitzhardinge 
11273c3e5694SSteven Rostedt 	ret = spurious_fault_check(error_code, pte);
11283c3e5694SSteven Rostedt 	if (!ret)
11293c3e5694SSteven Rostedt 		return 0;
11303c3e5694SSteven Rostedt 
11313c3e5694SSteven Rostedt 	/*
11322d4a7167SIngo Molnar 	 * Make sure we have permissions in PMD.
11332d4a7167SIngo Molnar 	 * If not, then there's a bug in the page tables:
11343c3e5694SSteven Rostedt 	 */
11353c3e5694SSteven Rostedt 	ret = spurious_fault_check(error_code, (pte_t *) pmd);
11363c3e5694SSteven Rostedt 	WARN_ONCE(!ret, "PMD has incorrect permission bits\n");
11372d4a7167SIngo Molnar 
11383c3e5694SSteven Rostedt 	return ret;
11395b727a3bSJeremy Fitzhardinge }
11409326638cSMasami Hiramatsu NOKPROBE_SYMBOL(spurious_fault);
11415b727a3bSJeremy Fitzhardinge 
1142c61e211dSHarvey Harrison int show_unhandled_signals = 1;
1143c61e211dSHarvey Harrison 
11442d4a7167SIngo Molnar static inline int
114568da336aSMichel Lespinasse access_error(unsigned long error_code, struct vm_area_struct *vma)
114692181f19SNick Piggin {
114707f146f5SDave Hansen 	/* This is only called for the current mm, so: */
114807f146f5SDave Hansen 	bool foreign = false;
1149e8c6226dSDave Hansen 
1150e8c6226dSDave Hansen 	/*
1151e8c6226dSDave Hansen 	 * Read or write was blocked by protection keys.  This is
1152e8c6226dSDave Hansen 	 * always an unconditional error and can never result in
1153e8c6226dSDave Hansen 	 * a follow-up action to resolve the fault, like a COW.
1154e8c6226dSDave Hansen 	 */
11551067f030SRicardo Neri 	if (error_code & X86_PF_PK)
1156e8c6226dSDave Hansen 		return 1;
1157e8c6226dSDave Hansen 
115833a709b2SDave Hansen 	/*
115907f146f5SDave Hansen 	 * Make sure to check the VMA so that we do not perform
11601067f030SRicardo Neri 	 * faults just to hit a X86_PF_PK as soon as we fill in a
116107f146f5SDave Hansen 	 * page.
116207f146f5SDave Hansen 	 */
11631067f030SRicardo Neri 	if (!arch_vma_access_permitted(vma, (error_code & X86_PF_WRITE),
11641067f030SRicardo Neri 				       (error_code & X86_PF_INSTR), foreign))
116507f146f5SDave Hansen 		return 1;
116633a709b2SDave Hansen 
11671067f030SRicardo Neri 	if (error_code & X86_PF_WRITE) {
11682d4a7167SIngo Molnar 		/* write, present and write, not present: */
116992181f19SNick Piggin 		if (unlikely(!(vma->vm_flags & VM_WRITE)))
117092181f19SNick Piggin 			return 1;
11712d4a7167SIngo Molnar 		return 0;
11722d4a7167SIngo Molnar 	}
11732d4a7167SIngo Molnar 
11742d4a7167SIngo Molnar 	/* read, present: */
11751067f030SRicardo Neri 	if (unlikely(error_code & X86_PF_PROT))
117692181f19SNick Piggin 		return 1;
11772d4a7167SIngo Molnar 
11782d4a7167SIngo Molnar 	/* read, not present: */
117992181f19SNick Piggin 	if (unlikely(!(vma->vm_flags & (VM_READ | VM_EXEC | VM_WRITE))))
118092181f19SNick Piggin 		return 1;
118192181f19SNick Piggin 
118292181f19SNick Piggin 	return 0;
118392181f19SNick Piggin }
118492181f19SNick Piggin 
11850973a06cSHiroshi Shimamoto static int fault_in_kernel_space(unsigned long address)
11860973a06cSHiroshi Shimamoto {
1187d9517346SIngo Molnar 	return address >= TASK_SIZE_MAX;
11880973a06cSHiroshi Shimamoto }
11890973a06cSHiroshi Shimamoto 
119040d3cd66SH. Peter Anvin static inline bool smap_violation(int error_code, struct pt_regs *regs)
119140d3cd66SH. Peter Anvin {
11924640c7eeSH. Peter Anvin 	if (!IS_ENABLED(CONFIG_X86_SMAP))
11934640c7eeSH. Peter Anvin 		return false;
11944640c7eeSH. Peter Anvin 
11954640c7eeSH. Peter Anvin 	if (!static_cpu_has(X86_FEATURE_SMAP))
11964640c7eeSH. Peter Anvin 		return false;
11974640c7eeSH. Peter Anvin 
11981067f030SRicardo Neri 	if (error_code & X86_PF_USER)
119940d3cd66SH. Peter Anvin 		return false;
120040d3cd66SH. Peter Anvin 
1201f39b6f0eSAndy Lutomirski 	if (!user_mode(regs) && (regs->flags & X86_EFLAGS_AC))
120240d3cd66SH. Peter Anvin 		return false;
120340d3cd66SH. Peter Anvin 
120440d3cd66SH. Peter Anvin 	return true;
120540d3cd66SH. Peter Anvin }
120640d3cd66SH. Peter Anvin 
1207c61e211dSHarvey Harrison /*
1208c61e211dSHarvey Harrison  * This routine handles page faults.  It determines the address,
1209c61e211dSHarvey Harrison  * and the problem, and then passes it off to one of the appropriate
1210c61e211dSHarvey Harrison  * routines.
1211c61e211dSHarvey Harrison  */
12129326638cSMasami Hiramatsu static noinline void
12130ac09f9fSJiri Olsa __do_page_fault(struct pt_regs *regs, unsigned long error_code,
12140ac09f9fSJiri Olsa 		unsigned long address)
1215c61e211dSHarvey Harrison {
1216c61e211dSHarvey Harrison 	struct vm_area_struct *vma;
12172d4a7167SIngo Molnar 	struct task_struct *tsk;
12182d4a7167SIngo Molnar 	struct mm_struct *mm;
121950a7ca3cSSouptick Joarder 	vm_fault_t fault, major = 0;
1220759496baSJohannes Weiner 	unsigned int flags = FAULT_FLAG_ALLOW_RETRY | FAULT_FLAG_KILLABLE;
1221a3c4fb7cSLaurent Dufour 	u32 pkey;
1222c61e211dSHarvey Harrison 
1223c61e211dSHarvey Harrison 	tsk = current;
1224c61e211dSHarvey Harrison 	mm = tsk->mm;
12252d4a7167SIngo Molnar 
12265dfaf90fSIngo Molnar 	prefetchw(&mm->mmap_sem);
1227f8561296SVegard Nossum 
12280fd0e3daSPekka Paalanen 	if (unlikely(kmmio_fault(regs, address)))
122986069782SPekka Paalanen 		return;
1230c61e211dSHarvey Harrison 
1231c61e211dSHarvey Harrison 	/*
1232c61e211dSHarvey Harrison 	 * We fault-in kernel-space virtual memory on-demand. The
1233c61e211dSHarvey Harrison 	 * 'reference' page table is init_mm.pgd.
1234c61e211dSHarvey Harrison 	 *
1235c61e211dSHarvey Harrison 	 * NOTE! We MUST NOT take any locks for this case. We may
1236c61e211dSHarvey Harrison 	 * be in an interrupt or a critical region, and should
1237c61e211dSHarvey Harrison 	 * only copy the information from the master page table,
1238c61e211dSHarvey Harrison 	 * nothing more.
1239c61e211dSHarvey Harrison 	 *
1240c61e211dSHarvey Harrison 	 * This verifies that the fault happens in kernel space
1241c61e211dSHarvey Harrison 	 * (error_code & 4) == 0, and that the fault was not a
1242c61e211dSHarvey Harrison 	 * protection error (error_code & 9) == 0.
1243c61e211dSHarvey Harrison 	 */
12440973a06cSHiroshi Shimamoto 	if (unlikely(fault_in_kernel_space(address))) {
12451067f030SRicardo Neri 		if (!(error_code & (X86_PF_RSVD | X86_PF_USER | X86_PF_PROT))) {
1246f8561296SVegard Nossum 			if (vmalloc_fault(address) >= 0)
1247c61e211dSHarvey Harrison 				return;
1248f8561296SVegard Nossum 		}
1249f8561296SVegard Nossum 
12502d4a7167SIngo Molnar 		/* Can handle a stale RO->RW TLB: */
125192181f19SNick Piggin 		if (spurious_fault(error_code, address))
12525b727a3bSJeremy Fitzhardinge 			return;
12535b727a3bSJeremy Fitzhardinge 
12542d4a7167SIngo Molnar 		/* kprobes don't want to hook the spurious faults: */
1255e00b12e6SPeter Zijlstra 		if (kprobes_fault(regs))
12569be260a6SMasami Hiramatsu 			return;
1257c61e211dSHarvey Harrison 		/*
1258c61e211dSHarvey Harrison 		 * Don't take the mm semaphore here. If we fixup a prefetch
12592d4a7167SIngo Molnar 		 * fault we could otherwise deadlock:
1260c61e211dSHarvey Harrison 		 */
12617b2d0dbaSDave Hansen 		bad_area_nosemaphore(regs, error_code, address, NULL);
12622d4a7167SIngo Molnar 
126392181f19SNick Piggin 		return;
1264c61e211dSHarvey Harrison 	}
1265c61e211dSHarvey Harrison 
12662d4a7167SIngo Molnar 	/* kprobes don't want to hook the spurious faults: */
1267e00b12e6SPeter Zijlstra 	if (unlikely(kprobes_fault(regs)))
12689be260a6SMasami Hiramatsu 		return;
1269e00b12e6SPeter Zijlstra 
12701067f030SRicardo Neri 	if (unlikely(error_code & X86_PF_RSVD))
1271e00b12e6SPeter Zijlstra 		pgtable_bad(regs, error_code, address);
1272e00b12e6SPeter Zijlstra 
1273e00b12e6SPeter Zijlstra 	if (unlikely(smap_violation(error_code, regs))) {
12747b2d0dbaSDave Hansen 		bad_area_nosemaphore(regs, error_code, address, NULL);
1275e00b12e6SPeter Zijlstra 		return;
1276e00b12e6SPeter Zijlstra 	}
1277e00b12e6SPeter Zijlstra 
1278e00b12e6SPeter Zijlstra 	/*
1279e00b12e6SPeter Zijlstra 	 * If we're in an interrupt, have no user context or are running
128070ffdb93SDavid Hildenbrand 	 * in a region with pagefaults disabled then we must not take the fault
1281e00b12e6SPeter Zijlstra 	 */
128270ffdb93SDavid Hildenbrand 	if (unlikely(faulthandler_disabled() || !mm)) {
12837b2d0dbaSDave Hansen 		bad_area_nosemaphore(regs, error_code, address, NULL);
1284e00b12e6SPeter Zijlstra 		return;
1285e00b12e6SPeter Zijlstra 	}
1286e00b12e6SPeter Zijlstra 
1287c61e211dSHarvey Harrison 	/*
1288891cffbdSLinus Torvalds 	 * It's safe to allow irq's after cr2 has been saved and the
1289891cffbdSLinus Torvalds 	 * vmalloc fault has been handled.
1290891cffbdSLinus Torvalds 	 *
1291891cffbdSLinus Torvalds 	 * User-mode registers count as a user access even for any
12922d4a7167SIngo Molnar 	 * potential system fault or CPU buglet:
1293c61e211dSHarvey Harrison 	 */
1294f39b6f0eSAndy Lutomirski 	if (user_mode(regs)) {
1295891cffbdSLinus Torvalds 		local_irq_enable();
12961067f030SRicardo Neri 		error_code |= X86_PF_USER;
1297759496baSJohannes Weiner 		flags |= FAULT_FLAG_USER;
12982d4a7167SIngo Molnar 	} else {
12992d4a7167SIngo Molnar 		if (regs->flags & X86_EFLAGS_IF)
1300c61e211dSHarvey Harrison 			local_irq_enable();
13012d4a7167SIngo Molnar 	}
1302c61e211dSHarvey Harrison 
1303a8b0ca17SPeter Zijlstra 	perf_sw_event(PERF_COUNT_SW_PAGE_FAULTS, 1, regs, address);
13047dd1fcc2SPeter Zijlstra 
13051067f030SRicardo Neri 	if (error_code & X86_PF_WRITE)
1306759496baSJohannes Weiner 		flags |= FAULT_FLAG_WRITE;
13071067f030SRicardo Neri 	if (error_code & X86_PF_INSTR)
1308d61172b4SDave Hansen 		flags |= FAULT_FLAG_INSTRUCTION;
1309759496baSJohannes Weiner 
13103a1dfe6eSIngo Molnar 	/*
13113a1dfe6eSIngo Molnar 	 * When running in the kernel we expect faults to occur only to
13122d4a7167SIngo Molnar 	 * addresses in user space.  All other faults represent errors in
13132d4a7167SIngo Molnar 	 * the kernel and should generate an OOPS.  Unfortunately, in the
13142d4a7167SIngo Molnar 	 * case of an erroneous fault occurring in a code path which already
13152d4a7167SIngo Molnar 	 * holds mmap_sem we will deadlock attempting to validate the fault
13162d4a7167SIngo Molnar 	 * against the address space.  Luckily the kernel only validly
13172d4a7167SIngo Molnar 	 * references user space from well defined areas of code, which are
13182d4a7167SIngo Molnar 	 * listed in the exceptions table.
1319c61e211dSHarvey Harrison 	 *
1320c61e211dSHarvey Harrison 	 * As the vast majority of faults will be valid we will only perform
13212d4a7167SIngo Molnar 	 * the source reference check when there is a possibility of a
13222d4a7167SIngo Molnar 	 * deadlock. Attempt to lock the address space, if we cannot we then
13232d4a7167SIngo Molnar 	 * validate the source. If this is invalid we can skip the address
13242d4a7167SIngo Molnar 	 * space check, thus avoiding the deadlock:
1325c61e211dSHarvey Harrison 	 */
132692181f19SNick Piggin 	if (unlikely(!down_read_trylock(&mm->mmap_sem))) {
13271067f030SRicardo Neri 		if (!(error_code & X86_PF_USER) &&
132892181f19SNick Piggin 		    !search_exception_tables(regs->ip)) {
13297b2d0dbaSDave Hansen 			bad_area_nosemaphore(regs, error_code, address, NULL);
133092181f19SNick Piggin 			return;
133192181f19SNick Piggin 		}
1332d065bd81SMichel Lespinasse retry:
1333c61e211dSHarvey Harrison 		down_read(&mm->mmap_sem);
133401006074SPeter Zijlstra 	} else {
133501006074SPeter Zijlstra 		/*
13362d4a7167SIngo Molnar 		 * The above down_read_trylock() might have succeeded in
13372d4a7167SIngo Molnar 		 * which case we'll have missed the might_sleep() from
13382d4a7167SIngo Molnar 		 * down_read():
133901006074SPeter Zijlstra 		 */
134001006074SPeter Zijlstra 		might_sleep();
1341c61e211dSHarvey Harrison 	}
1342c61e211dSHarvey Harrison 
1343c61e211dSHarvey Harrison 	vma = find_vma(mm, address);
134492181f19SNick Piggin 	if (unlikely(!vma)) {
134592181f19SNick Piggin 		bad_area(regs, error_code, address);
134692181f19SNick Piggin 		return;
134792181f19SNick Piggin 	}
134892181f19SNick Piggin 	if (likely(vma->vm_start <= address))
1349c61e211dSHarvey Harrison 		goto good_area;
135092181f19SNick Piggin 	if (unlikely(!(vma->vm_flags & VM_GROWSDOWN))) {
135192181f19SNick Piggin 		bad_area(regs, error_code, address);
135292181f19SNick Piggin 		return;
135392181f19SNick Piggin 	}
13541067f030SRicardo Neri 	if (error_code & X86_PF_USER) {
1355c61e211dSHarvey Harrison 		/*
1356c61e211dSHarvey Harrison 		 * Accessing the stack below %sp is always a bug.
1357c61e211dSHarvey Harrison 		 * The large cushion allows instructions like enter
1358c61e211dSHarvey Harrison 		 * and pusha to work. ("enter $65535, $31" pushes
1359c61e211dSHarvey Harrison 		 * 32 pointers and then decrements %sp by 65535.)
1360c61e211dSHarvey Harrison 		 */
136192181f19SNick Piggin 		if (unlikely(address + 65536 + 32 * sizeof(unsigned long) < regs->sp)) {
136292181f19SNick Piggin 			bad_area(regs, error_code, address);
136392181f19SNick Piggin 			return;
1364c61e211dSHarvey Harrison 		}
136592181f19SNick Piggin 	}
136692181f19SNick Piggin 	if (unlikely(expand_stack(vma, address))) {
136792181f19SNick Piggin 		bad_area(regs, error_code, address);
136892181f19SNick Piggin 		return;
136992181f19SNick Piggin 	}
137092181f19SNick Piggin 
1371c61e211dSHarvey Harrison 	/*
1372c61e211dSHarvey Harrison 	 * Ok, we have a good vm_area for this memory access, so
1373c61e211dSHarvey Harrison 	 * we can handle it..
1374c61e211dSHarvey Harrison 	 */
1375c61e211dSHarvey Harrison good_area:
137668da336aSMichel Lespinasse 	if (unlikely(access_error(error_code, vma))) {
13777b2d0dbaSDave Hansen 		bad_area_access_error(regs, error_code, address, vma);
137892181f19SNick Piggin 		return;
1379c61e211dSHarvey Harrison 	}
1380c61e211dSHarvey Harrison 
1381c61e211dSHarvey Harrison 	/*
1382c61e211dSHarvey Harrison 	 * If for any reason at all we couldn't handle the fault,
1383c61e211dSHarvey Harrison 	 * make sure we exit gracefully rather than endlessly redo
13849a95f3cfSPaul Cassella 	 * the fault.  Since we never set FAULT_FLAG_RETRY_NOWAIT, if
13859a95f3cfSPaul Cassella 	 * we get VM_FAULT_RETRY back, the mmap_sem has been unlocked.
1386cb0631fdSVlastimil Babka 	 *
1387cb0631fdSVlastimil Babka 	 * Note that handle_userfault() may also release and reacquire mmap_sem
1388cb0631fdSVlastimil Babka 	 * (and not return with VM_FAULT_RETRY), when returning to userland to
1389cb0631fdSVlastimil Babka 	 * repeat the page fault later with a VM_FAULT_NOPAGE retval
1390cb0631fdSVlastimil Babka 	 * (potentially after handling any pending signal during the return to
1391cb0631fdSVlastimil Babka 	 * userland). The return to userland is identified whenever
1392cb0631fdSVlastimil Babka 	 * FAULT_FLAG_USER|FAULT_FLAG_KILLABLE are both set in flags.
1393cb0631fdSVlastimil Babka 	 * Thus we have to be careful about not touching vma after handling the
1394cb0631fdSVlastimil Babka 	 * fault, so we read the pkey beforehand.
1395c61e211dSHarvey Harrison 	 */
1396cb0631fdSVlastimil Babka 	pkey = vma_pkey(vma);
1397dcddffd4SKirill A. Shutemov 	fault = handle_mm_fault(vma, address, flags);
139826178ec1SLinus Torvalds 	major |= fault & VM_FAULT_MAJOR;
13992d4a7167SIngo Molnar 
14003a13c4d7SJohannes Weiner 	/*
140126178ec1SLinus Torvalds 	 * If we need to retry the mmap_sem has already been released,
140226178ec1SLinus Torvalds 	 * and if there is a fatal signal pending there is no guarantee
140326178ec1SLinus Torvalds 	 * that we made any progress. Handle this case first.
14043a13c4d7SJohannes Weiner 	 */
140526178ec1SLinus Torvalds 	if (unlikely(fault & VM_FAULT_RETRY)) {
140626178ec1SLinus Torvalds 		/* Retry at most once */
140726178ec1SLinus Torvalds 		if (flags & FAULT_FLAG_ALLOW_RETRY) {
140826178ec1SLinus Torvalds 			flags &= ~FAULT_FLAG_ALLOW_RETRY;
140926178ec1SLinus Torvalds 			flags |= FAULT_FLAG_TRIED;
141026178ec1SLinus Torvalds 			if (!fatal_signal_pending(tsk))
141126178ec1SLinus Torvalds 				goto retry;
141226178ec1SLinus Torvalds 		}
141326178ec1SLinus Torvalds 
141426178ec1SLinus Torvalds 		/* User mode? Just return to handle the fatal exception */
1415cf3c0a15SLinus Torvalds 		if (flags & FAULT_FLAG_USER)
14163a13c4d7SJohannes Weiner 			return;
14173a13c4d7SJohannes Weiner 
141826178ec1SLinus Torvalds 		/* Not returning to user mode? Handle exceptions or die: */
141926178ec1SLinus Torvalds 		no_context(regs, error_code, address, SIGBUS, BUS_ADRERR);
142026178ec1SLinus Torvalds 		return;
142126178ec1SLinus Torvalds 	}
142226178ec1SLinus Torvalds 
14237fb08ecaSLinus Torvalds 	up_read(&mm->mmap_sem);
142426178ec1SLinus Torvalds 	if (unlikely(fault & VM_FAULT_ERROR)) {
1425a3c4fb7cSLaurent Dufour 		mm_fault_error(regs, error_code, address, &pkey, fault);
142637b23e05SKOSAKI Motohiro 		return;
142737b23e05SKOSAKI Motohiro 	}
142837b23e05SKOSAKI Motohiro 
142937b23e05SKOSAKI Motohiro 	/*
143026178ec1SLinus Torvalds 	 * Major/minor page fault accounting. If any of the events
143126178ec1SLinus Torvalds 	 * returned VM_FAULT_MAJOR, we account it as a major fault.
1432d065bd81SMichel Lespinasse 	 */
143326178ec1SLinus Torvalds 	if (major) {
1434c61e211dSHarvey Harrison 		tsk->maj_flt++;
143526178ec1SLinus Torvalds 		perf_sw_event(PERF_COUNT_SW_PAGE_FAULTS_MAJ, 1, regs, address);
1436ac17dc8eSPeter Zijlstra 	} else {
1437c61e211dSHarvey Harrison 		tsk->min_flt++;
143826178ec1SLinus Torvalds 		perf_sw_event(PERF_COUNT_SW_PAGE_FAULTS_MIN, 1, regs, address);
1439d065bd81SMichel Lespinasse 	}
1440c61e211dSHarvey Harrison 
14418c938f9fSIngo Molnar 	check_v8086_mode(regs, address, tsk);
1442c61e211dSHarvey Harrison }
14439326638cSMasami Hiramatsu NOKPROBE_SYMBOL(__do_page_fault);
14446ba3c97aSFrederic Weisbecker 
14459326638cSMasami Hiramatsu static nokprobe_inline void
14469326638cSMasami Hiramatsu trace_page_fault_entries(unsigned long address, struct pt_regs *regs,
1447d34603b0SSeiji Aguchi 			 unsigned long error_code)
1448d34603b0SSeiji Aguchi {
1449d34603b0SSeiji Aguchi 	if (user_mode(regs))
1450d4078e23SPeter Zijlstra 		trace_page_fault_user(address, regs, error_code);
1451d34603b0SSeiji Aguchi 	else
1452d4078e23SPeter Zijlstra 		trace_page_fault_kernel(address, regs, error_code);
1453d34603b0SSeiji Aguchi }
1454d34603b0SSeiji Aguchi 
14550ac09f9fSJiri Olsa /*
145611a7ffb0SThomas Gleixner  * We must have this function blacklisted from kprobes, tagged with notrace
145711a7ffb0SThomas Gleixner  * and call read_cr2() before calling anything else. To avoid calling any
145811a7ffb0SThomas Gleixner  * kind of tracing machinery before we've observed the CR2 value.
145911a7ffb0SThomas Gleixner  *
146011a7ffb0SThomas Gleixner  * exception_{enter,exit}() contains all sorts of tracepoints.
14610ac09f9fSJiri Olsa  */
146211a7ffb0SThomas Gleixner dotraplinkage void notrace
146311a7ffb0SThomas Gleixner do_page_fault(struct pt_regs *regs, unsigned long error_code)
146411a7ffb0SThomas Gleixner {
146511a7ffb0SThomas Gleixner 	unsigned long address = read_cr2(); /* Get the faulting address */
1466d4078e23SPeter Zijlstra 	enum ctx_state prev_state;
146725c74b10SSeiji Aguchi 
146825c74b10SSeiji Aguchi 	prev_state = exception_enter();
146980954747SThomas Gleixner 	if (trace_pagefault_enabled())
1470d4078e23SPeter Zijlstra 		trace_page_fault_entries(address, regs, error_code);
147111a7ffb0SThomas Gleixner 
14720ac09f9fSJiri Olsa 	__do_page_fault(regs, error_code, address);
147325c74b10SSeiji Aguchi 	exception_exit(prev_state);
147425c74b10SSeiji Aguchi }
147511a7ffb0SThomas Gleixner NOKPROBE_SYMBOL(do_page_fault);
1476