dump_pagetables.c 11.5 KB
Newer Older
1 2 3 4 5 6 7 8 9 10 11 12 13 14
/*
 * Debug helper to dump the current kernel pagetables of the system
 * so that we can see what the various memory ranges are set to.
 *
 * (C) Copyright 2008 Intel Corporation
 *
 * Author: Arjan van de Ven <arjan@linux.intel.com>
 *
 * This program is free software; you can redistribute it and/or
 * modify it under the terms of the GNU General Public License
 * as published by the Free Software Foundation; version 2
 * of the License.
 */

15 16
#include <linux/debugfs.h>
#include <linux/mm.h>
17
#include <linux/init.h>
18
#include <linux/sched.h>
19 20 21 22 23 24 25 26 27 28 29 30 31 32
#include <linux/seq_file.h>

#include <asm/pgtable.h>

/*
 * The dumper groups pagetable entries of the same type into one, and for
 * that it needs to keep some state when walking, and flush this state
 * when a "break" in the continuity is found.
 */
struct pg_state {
	int level;
	pgprot_t current_prot;
	unsigned long start_address;
	unsigned long current_address;
33
	const struct addr_marker *marker;
34
	unsigned long lines;
35
	bool to_dmesg;
S
Stephen Smalley 已提交
36 37
	bool check_wx;
	unsigned long wx_pages;
38 39
};

40 41 42
struct addr_marker {
	unsigned long start_address;
	const char *name;
43
	unsigned long max_lines;
44 45
};

46 47 48 49 50 51 52 53
/* indices for address_markers; keep sync'd w/ address_markers below */
enum address_markers_idx {
	USER_SPACE_NR = 0,
#ifdef CONFIG_X86_64
	KERNEL_SPACE_NR,
	LOW_KERNEL_NR,
	VMALLOC_START_NR,
	VMEMMAP_START_NR,
54
# ifdef CONFIG_X86_ESPFIX64
55
	ESPFIX_START_NR,
56
# endif
57 58 59 60 61 62 63 64 65 66 67 68 69 70
	HIGH_KERNEL_NR,
	MODULES_VADDR_NR,
	MODULES_END_NR,
#else
	KERNEL_SPACE_NR,
	VMALLOC_START_NR,
	VMALLOC_END_NR,
# ifdef CONFIG_HIGHMEM
	PKMAP_BASE_NR,
# endif
	FIXADDR_START_NR,
#endif
};

71 72 73 74 75
/* Address space markers hints */
static struct addr_marker address_markers[] = {
	{ 0, "User Space" },
#ifdef CONFIG_X86_64
	{ 0x8000000000000000UL, "Kernel Space" },
76 77 78
	{ 0/* PAGE_OFFSET */,   "Low Kernel Mapping" },
	{ 0/* VMALLOC_START */, "vmalloc() Area" },
	{ 0/* VMEMMAP_START */, "Vmemmap" },
79
# ifdef CONFIG_X86_ESPFIX64
80
	{ ESPFIX_BASE_ADDR,	"ESPfix Area", 16 },
81 82 83
# endif
# ifdef CONFIG_EFI
	{ EFI_VA_END,		"EFI Runtime Services" },
84
# endif
85
	{ __START_KERNEL_map,   "High Kernel Mapping" },
86 87
	{ MODULES_VADDR,        "Modules" },
	{ MODULES_END,          "End Modules" },
88 89 90 91 92
#else
	{ PAGE_OFFSET,          "Kernel Mapping" },
	{ 0/* VMALLOC_START */, "vmalloc() Area" },
	{ 0/*VMALLOC_END*/,     "vmalloc() End" },
# ifdef CONFIG_HIGHMEM
L
Linus Torvalds 已提交
93
	{ 0/*PKMAP_BASE*/,      "Persistent kmap() Area" },
94 95 96 97 98
# endif
	{ 0/*FIXADDR_START*/,   "Fixmap Area" },
#endif
	{ -1, NULL }		/* End of list */
};
99

100 101 102 103 104
/* Multipliers for offsets within the PTEs */
#define PTE_LEVEL_MULT (PAGE_SIZE)
#define PMD_LEVEL_MULT (PTRS_PER_PTE * PTE_LEVEL_MULT)
#define PUD_LEVEL_MULT (PTRS_PER_PMD * PMD_LEVEL_MULT)
#define PGD_LEVEL_MULT (PTRS_PER_PUD * PUD_LEVEL_MULT)
105

106 107 108 109 110 111 112 113 114 115 116 117 118 119 120 121 122 123
#define pt_dump_seq_printf(m, to_dmesg, fmt, args...)		\
({								\
	if (to_dmesg)					\
		printk(KERN_INFO fmt, ##args);			\
	else							\
		if (m)						\
			seq_printf(m, fmt, ##args);		\
})

#define pt_dump_cont_printf(m, to_dmesg, fmt, args...)		\
({								\
	if (to_dmesg)					\
		printk(KERN_CONT fmt, ##args);			\
	else							\
		if (m)						\
			seq_printf(m, fmt, ##args);		\
})

124 125 126
/*
 * Print a readable form of a pgprot_t to the seq_file
 */
127
static void printk_prot(struct seq_file *m, pgprot_t prot, int level, bool dmsg)
128
{
129 130 131 132 133 134
	pgprotval_t pr = pgprot_val(prot);
	static const char * const level_name[] =
		{ "cr3", "pgd", "pud", "pmd", "pte" };

	if (!pgprot_val(prot)) {
		/* Not present */
135
		pt_dump_cont_printf(m, dmsg, "                              ");
136 137
	} else {
		if (pr & _PAGE_USER)
138
			pt_dump_cont_printf(m, dmsg, "USR ");
139
		else
140
			pt_dump_cont_printf(m, dmsg, "    ");
141
		if (pr & _PAGE_RW)
142
			pt_dump_cont_printf(m, dmsg, "RW ");
143
		else
144
			pt_dump_cont_printf(m, dmsg, "ro ");
145
		if (pr & _PAGE_PWT)
146
			pt_dump_cont_printf(m, dmsg, "PWT ");
147
		else
148
			pt_dump_cont_printf(m, dmsg, "    ");
149
		if (pr & _PAGE_PCD)
150
			pt_dump_cont_printf(m, dmsg, "PCD ");
151
		else
152
			pt_dump_cont_printf(m, dmsg, "    ");
153

154 155 156 157 158 159 160
		/* Bit 7 has a different meaning on level 3 vs 4 */
		if (level <= 3 && pr & _PAGE_PSE)
			pt_dump_cont_printf(m, dmsg, "PSE ");
		else
			pt_dump_cont_printf(m, dmsg, "    ");
		if ((level == 4 && pr & _PAGE_PAT) ||
		    ((level == 3 || level == 2) && pr & _PAGE_PAT_LARGE))
161
			pt_dump_cont_printf(m, dmsg, "PAT ");
162 163
		else
			pt_dump_cont_printf(m, dmsg, "    ");
164
		if (pr & _PAGE_GLOBAL)
165
			pt_dump_cont_printf(m, dmsg, "GLB ");
166
		else
167
			pt_dump_cont_printf(m, dmsg, "    ");
168
		if (pr & _PAGE_NX)
169
			pt_dump_cont_printf(m, dmsg, "NX ");
170
		else
171
			pt_dump_cont_printf(m, dmsg, "x  ");
172
	}
173
	pt_dump_cont_printf(m, dmsg, "%s\n", level_name[level]);
174 175 176
}

/*
177
 * On 64 bits, sign-extend the 48 bit address to 64 bit
178
 */
179
static unsigned long normalize_addr(unsigned long u)
180
{
181 182 183
#ifdef CONFIG_X86_64
	return (signed long)(u << 16) >> 16;
#else
184
	return u;
185
#endif
186 187 188 189 190 191 192 193
}

/*
 * This function gets called on a break in a continuous series
 * of PTE entries; the next one is different so we need to
 * print what we collected so far.
 */
static void note_page(struct seq_file *m, struct pg_state *st,
194
		      pgprot_t new_prot, int level)
195
{
196
	pgprotval_t prot, cur;
197
	static const char units[] = "BKMGTPE";
198 199 200

	/*
	 * If we have a "break" in the series, we need to flush the state that
201 202
	 * we have now. "break" is either changing perms, levels or
	 * address space marker.
203
	 */
204 205
	prot = pgprot_val(new_prot);
	cur = pgprot_val(st->current_prot);
206

207 208 209 210 211
	if (!st->level) {
		/* First entry */
		st->current_prot = new_prot;
		st->level = level;
		st->marker = address_markers;
212
		st->lines = 0;
213 214
		pt_dump_seq_printf(m, st->to_dmesg, "---[ %s ]---\n",
				   st->marker->name);
215 216 217
	} else if (prot != cur || level != st->level ||
		   st->current_address >= st->marker[1].start_address) {
		const char *unit = units;
218
		unsigned long delta;
219
		int width = sizeof(unsigned long) * 2;
S
Stephen Smalley 已提交
220 221 222 223 224 225 226 227 228 229
		pgprotval_t pr = pgprot_val(st->current_prot);

		if (st->check_wx && (pr & _PAGE_RW) && !(pr & _PAGE_NX)) {
			WARN_ONCE(1,
				  "x86/mm: Found insecure W+X mapping at address %p/%pS\n",
				  (void *)st->start_address,
				  (void *)st->start_address);
			st->wx_pages += (st->current_address -
					 st->start_address) / PAGE_SIZE;
		}
230 231 232 233

		/*
		 * Now print the actual finished series
		 */
234 235 236 237 238 239
		if (!st->marker->max_lines ||
		    st->lines < st->marker->max_lines) {
			pt_dump_seq_printf(m, st->to_dmesg,
					   "0x%0*lx-0x%0*lx   ",
					   width, st->start_address,
					   width, st->current_address);
240

241 242 243 244 245 246 247 248 249
			delta = st->current_address - st->start_address;
			while (!(delta & 1023) && unit[1]) {
				delta >>= 10;
				unit++;
			}
			pt_dump_cont_printf(m, st->to_dmesg, "%9lu%c ",
					    delta, *unit);
			printk_prot(m, st->current_prot, st->level,
				    st->to_dmesg);
250
		}
251
		st->lines++;
252 253 254 255 256 257 258

		/*
		 * We print markers for special areas of address space,
		 * such as the start of vmalloc space etc.
		 * This helps in the interpretation.
		 */
		if (st->current_address >= st->marker[1].start_address) {
259 260 261 262 263 264 265 266 267
			if (st->marker->max_lines &&
			    st->lines > st->marker->max_lines) {
				unsigned long nskip =
					st->lines - st->marker->max_lines;
				pt_dump_seq_printf(m, st->to_dmesg,
						   "... %lu entr%s skipped ... \n",
						   nskip,
						   nskip == 1 ? "y" : "ies");
			}
268
			st->marker++;
269
			st->lines = 0;
270 271
			pt_dump_seq_printf(m, st->to_dmesg, "---[ %s ]---\n",
					   st->marker->name);
272
		}
273

274 275 276
		st->start_address = st->current_address;
		st->current_prot = new_prot;
		st->level = level;
277
	}
278 279
}

280
static void walk_pte_level(struct seq_file *m, struct pg_state *st, pmd_t addr,
281 282 283 284
							unsigned long P)
{
	int i;
	pte_t *start;
285
	pgprotval_t prot;
286 287 288

	start = (pte_t *) pmd_page_vaddr(addr);
	for (i = 0; i < PTRS_PER_PTE; i++) {
289
		prot = pte_flags(*start);
290
		st->current_address = normalize_addr(P + i * PTE_LEVEL_MULT);
291
		note_page(m, st, __pgprot(prot), 4);
292 293 294 295
		start++;
	}
}

296
#if PTRS_PER_PMD > 1
297

298
static void walk_pmd_level(struct seq_file *m, struct pg_state *st, pud_t addr,
299 300 301 302
							unsigned long P)
{
	int i;
	pmd_t *start;
303
	pgprotval_t prot;
304 305 306

	start = (pmd_t *) pud_page_vaddr(addr);
	for (i = 0; i < PTRS_PER_PMD; i++) {
307
		st->current_address = normalize_addr(P + i * PMD_LEVEL_MULT);
308
		if (!pmd_none(*start)) {
309 310
			if (pmd_large(*start) || !pmd_present(*start)) {
				prot = pmd_flags(*start);
311
				note_page(m, st, __pgprot(prot), 3);
312
			} else {
313 314
				walk_pte_level(m, st, *start,
					       P + i * PMD_LEVEL_MULT);
315
			}
316 317 318 319 320 321
		} else
			note_page(m, st, __pgprot(0), 3);
		start++;
	}
}

322 323 324 325 326
#else
#define walk_pmd_level(m,s,a,p) walk_pte_level(m,s,__pmd(pud_val(a)),p)
#define pud_large(a) pmd_large(__pmd(pud_val(a)))
#define pud_none(a)  pmd_none(__pmd(pud_val(a)))
#endif
327

328 329 330
#if PTRS_PER_PUD > 1

static void walk_pud_level(struct seq_file *m, struct pg_state *st, pgd_t addr,
331 332 333 334
							unsigned long P)
{
	int i;
	pud_t *start;
335
	pgprotval_t prot;
336 337 338 339

	start = (pud_t *) pgd_page_vaddr(addr);

	for (i = 0; i < PTRS_PER_PUD; i++) {
340
		st->current_address = normalize_addr(P + i * PUD_LEVEL_MULT);
341
		if (!pud_none(*start)) {
342 343
			if (pud_large(*start) || !pud_present(*start)) {
				prot = pud_flags(*start);
344
				note_page(m, st, __pgprot(prot), 2);
345
			} else {
346 347
				walk_pmd_level(m, st, *start,
					       P + i * PUD_LEVEL_MULT);
348
			}
349 350 351 352 353 354 355
		} else
			note_page(m, st, __pgprot(0), 2);

		start++;
	}
}

356 357 358 359 360 361
#else
#define walk_pud_level(m,s,a,p) walk_pmd_level(m,s,__pud(pgd_val(a)),p)
#define pgd_large(a) pud_large(__pud(pgd_val(a)))
#define pgd_none(a)  pud_none(__pud(pgd_val(a)))
#endif

362 363
static inline bool is_hypervisor_range(int idx)
{
364
#ifdef CONFIG_X86_64
365 366 367 368
	/*
	 * ffff800000000000 - ffff87ffffffffff is reserved for
	 * the hypervisor.
	 */
369 370
	return	(idx >= pgd_index(__PAGE_OFFSET) - 16) &&
		(idx <  pgd_index(__PAGE_OFFSET));
371
#else
372
	return false;
373
#endif
374
}
375

S
Stephen Smalley 已提交
376 377
static void ptdump_walk_pgd_level_core(struct seq_file *m, pgd_t *pgd,
				       bool checkwx)
378
{
379
#ifdef CONFIG_X86_64
380
	pgd_t *start = (pgd_t *) &init_level4_pgt;
381 382 383
#else
	pgd_t *start = swapper_pg_dir;
#endif
384
	pgprotval_t prot;
385
	int i;
386
	struct pg_state st = {};
387

388 389 390 391
	if (pgd) {
		start = pgd;
		st.to_dmesg = true;
	}
392

S
Stephen Smalley 已提交
393 394 395 396
	st.check_wx = checkwx;
	if (checkwx)
		st.wx_pages = 0;

397
	for (i = 0; i < PTRS_PER_PGD; i++) {
398
		st.current_address = normalize_addr(i * PGD_LEVEL_MULT);
399
		if (!pgd_none(*start) && !is_hypervisor_range(i)) {
400 401
			if (pgd_large(*start) || !pgd_present(*start)) {
				prot = pgd_flags(*start);
402
				note_page(m, &st, __pgprot(prot), 1);
403
			} else {
404 405
				walk_pud_level(m, &st, *start,
					       i * PGD_LEVEL_MULT);
406
			}
407
		} else
408
			note_page(m, &st, __pgprot(0), 1);
409

410
		cond_resched();
411 412
		start++;
	}
413 414 415 416

	/* Flush out the last page */
	st.current_address = normalize_addr(PTRS_PER_PGD*PGD_LEVEL_MULT);
	note_page(m, &st, __pgprot(0), 0);
S
Stephen Smalley 已提交
417 418 419 420 421 422 423 424 425 426 427 428
	if (!checkwx)
		return;
	if (st.wx_pages)
		pr_info("x86/mm: Checked W+X mappings: FAILED, %lu W+X pages found.\n",
			st.wx_pages);
	else
		pr_info("x86/mm: Checked W+X mappings: passed, no W+X pages found.\n");
}

void ptdump_walk_pgd_level(struct seq_file *m, pgd_t *pgd)
{
	ptdump_walk_pgd_level_core(m, pgd, false);
429
}
430
EXPORT_SYMBOL_GPL(ptdump_walk_pgd_level);
431

S
Stephen Smalley 已提交
432 433 434 435 436
void ptdump_walk_pgd_level_checkwx(void)
{
	ptdump_walk_pgd_level_core(NULL, NULL, true);
}

437
static int __init pt_dump_init(void)
438
{
439 440 441 442 443 444 445 446 447
	/*
	 * Various markers are not compile-time constants, so assign them
	 * here.
	 */
#ifdef CONFIG_X86_64
	address_markers[LOW_KERNEL_NR].start_address = PAGE_OFFSET;
	address_markers[VMALLOC_START_NR].start_address = VMALLOC_START;
	address_markers[VMEMMAP_START_NR].start_address = VMEMMAP_START;
#endif
448
#ifdef CONFIG_X86_32
449 450
	address_markers[VMALLOC_START_NR].start_address = VMALLOC_START;
	address_markers[VMALLOC_END_NR].start_address = VMALLOC_END;
451
# ifdef CONFIG_HIGHMEM
452
	address_markers[PKMAP_BASE_NR].start_address = PKMAP_BASE;
453
# endif
454
	address_markers[FIXADDR_START_NR].start_address = FIXADDR_START;
455 456
#endif

457 458 459
	return 0;
}
__initcall(pt_dump_init);