2 * Debug helper to dump the current kernel pagetables of the system
3 * so that we can see what the various memory ranges are set to.
5 * Derived from x86 implementation:
6 * (C) Copyright 2008 Intel Corporation
10 * This program is free software; you can redistribute it and/or
11 * modify it under the terms of the GNU General Public License
12 * as published by the Free Software Foundation; version 2
15 #include <linux/debugfs.h>
18 #include <linux/seq_file.h>
20 #include <asm/fixmap.h>
21 #include <asm/pgtable.h>
24 unsigned long start_address;
28 static struct addr_marker address_markers[] = {
29 { MODULES_VADDR, "Modules" },
30 { PAGE_OFFSET, "Kernel Mapping" },
31 { 0, "vmalloc() Area" },
32 { VMALLOC_END, "vmalloc() End" },
33 { FIXADDR_START, "Fixmap Area" },
34 { CONFIG_VECTORS_BASE, "Vectors" },
35 { CONFIG_VECTORS_BASE + PAGE_SIZE * 2, "Vectors End" },
41 const struct addr_marker *marker;
42 unsigned long start_address;
54 static const struct prot_bits pte_bits[] = {
76 .mask = L_PTE_MT_MASK,
77 .val = L_PTE_MT_UNCACHED,
80 .mask = L_PTE_MT_MASK,
81 .val = L_PTE_MT_BUFFERABLE,
82 .set = "MEM/BUFFERABLE/WC",
84 .mask = L_PTE_MT_MASK,
85 .val = L_PTE_MT_WRITETHROUGH,
86 .set = "MEM/CACHED/WT",
88 .mask = L_PTE_MT_MASK,
89 .val = L_PTE_MT_WRITEBACK,
90 .set = "MEM/CACHED/WBRA",
91 #ifndef CONFIG_ARM_LPAE
93 .mask = L_PTE_MT_MASK,
94 .val = L_PTE_MT_MINICACHE,
95 .set = "MEM/MINICACHE",
98 .mask = L_PTE_MT_MASK,
99 .val = L_PTE_MT_WRITEALLOC,
100 .set = "MEM/CACHED/WBWA",
102 .mask = L_PTE_MT_MASK,
103 .val = L_PTE_MT_DEV_SHARED,
105 #ifndef CONFIG_ARM_LPAE
107 .mask = L_PTE_MT_MASK,
108 .val = L_PTE_MT_DEV_NONSHARED,
109 .set = "DEV/NONSHARED",
112 .mask = L_PTE_MT_MASK,
113 .val = L_PTE_MT_DEV_WC,
116 .mask = L_PTE_MT_MASK,
117 .val = L_PTE_MT_DEV_CACHED,
122 static const struct prot_bits section_bits[] = {
123 #ifdef CONFIG_ARM_LPAE
125 .mask = PMD_SECT_USER,
126 .val = PMD_SECT_USER,
129 .mask = L_PMD_SECT_RDONLY,
130 .val = L_PMD_SECT_RDONLY,
133 #elif __LINUX_ARM_ARCH__ >= 6
135 .mask = PMD_SECT_APX | PMD_SECT_AP_READ | PMD_SECT_AP_WRITE,
136 .val = PMD_SECT_APX | PMD_SECT_AP_WRITE,
139 .mask = PMD_SECT_APX | PMD_SECT_AP_READ | PMD_SECT_AP_WRITE,
140 .val = PMD_SECT_AP_WRITE,
143 .mask = PMD_SECT_APX | PMD_SECT_AP_READ | PMD_SECT_AP_WRITE,
144 .val = PMD_SECT_AP_READ,
147 .mask = PMD_SECT_APX | PMD_SECT_AP_READ | PMD_SECT_AP_WRITE,
148 .val = PMD_SECT_AP_READ | PMD_SECT_AP_WRITE,
150 #else /* ARMv4/ARMv5 */
151 /* These are approximate */
153 .mask = PMD_SECT_AP_READ | PMD_SECT_AP_WRITE,
157 .mask = PMD_SECT_AP_READ | PMD_SECT_AP_WRITE,
158 .val = PMD_SECT_AP_WRITE,
161 .mask = PMD_SECT_AP_READ | PMD_SECT_AP_WRITE,
162 .val = PMD_SECT_AP_READ,
165 .mask = PMD_SECT_AP_READ | PMD_SECT_AP_WRITE,
166 .val = PMD_SECT_AP_READ | PMD_SECT_AP_WRITE,
183 const struct prot_bits *bits;
188 static struct pg_level pg_level[] = {
193 .bits = section_bits,
194 .num = ARRAY_SIZE(section_bits),
197 .num = ARRAY_SIZE(pte_bits),
201 static void dump_prot(struct pg_state *st, const struct prot_bits *bits, size_t num)
205 for (i = 0; i < num; i++, bits++) {
208 if ((st->current_prot & bits->mask) == bits->val)
214 seq_printf(st->seq, " %s", s);
218 static void note_page(struct pg_state *st, unsigned long addr, unsigned level, u64 val)
220 static const char units[] = "KMGTPE";
221 u64 prot = val & pg_level[level].mask;
225 st->current_prot = prot;
226 seq_printf(st->seq, "---[ %s ]---\n", st->marker->name);
227 } else if (prot != st->current_prot || level != st->level ||
228 addr >= st->marker[1].start_address) {
229 const char *unit = units;
232 if (st->current_prot) {
233 seq_printf(st->seq, "0x%08lx-0x%08lx ",
234 st->start_address, addr);
236 delta = (addr - st->start_address) >> 10;
237 while (!(delta & 1023) && unit[1]) {
241 seq_printf(st->seq, "%9lu%c", delta, *unit);
242 if (pg_level[st->level].bits)
243 dump_prot(st, pg_level[st->level].bits, pg_level[st->level].num);
244 seq_printf(st->seq, "\n");
247 if (addr >= st->marker[1].start_address) {
249 seq_printf(st->seq, "---[ %s ]---\n", st->marker->name);
251 st->start_address = addr;
252 st->current_prot = prot;
257 static void walk_pte(struct pg_state *st, pmd_t *pmd, unsigned long start)
259 pte_t *pte = pte_offset_kernel(pmd, 0);
263 for (i = 0; i < PTRS_PER_PTE; i++, pte++) {
264 addr = start + i * PAGE_SIZE;
265 note_page(st, addr, 4, pte_val(*pte));
269 static void walk_pmd(struct pg_state *st, pud_t *pud, unsigned long start)
271 pmd_t *pmd = pmd_offset(pud, 0);
275 for (i = 0; i < PTRS_PER_PMD; i++, pmd++) {
276 addr = start + i * PMD_SIZE;
277 if (pmd_none(*pmd) || pmd_large(*pmd) || !pmd_present(*pmd))
278 note_page(st, addr, 3, pmd_val(*pmd));
280 walk_pte(st, pmd, addr);
282 if (SECTION_SIZE < PMD_SIZE && pmd_large(pmd[1]))
283 note_page(st, addr + SECTION_SIZE, 3, pmd_val(pmd[1]));
287 static void walk_pud(struct pg_state *st, pgd_t *pgd, unsigned long start)
289 pud_t *pud = pud_offset(pgd, 0);
293 for (i = 0; i < PTRS_PER_PUD; i++, pud++) {
294 addr = start + i * PUD_SIZE;
295 if (!pud_none(*pud)) {
296 walk_pmd(st, pud, addr);
298 note_page(st, addr, 2, pud_val(*pud));
303 static void walk_pgd(struct seq_file *m)
305 pgd_t *pgd = swapper_pg_dir;
310 memset(&st, 0, sizeof(st));
312 st.marker = address_markers;
314 for (i = 0; i < PTRS_PER_PGD; i++, pgd++) {
315 addr = i * PGDIR_SIZE;
316 if (!pgd_none(*pgd)) {
317 walk_pud(&st, pgd, addr);
319 note_page(&st, addr, 1, pgd_val(*pgd));
323 note_page(&st, 0, 0, 0);
326 static int ptdump_show(struct seq_file *m, void *v)
332 static int ptdump_open(struct inode *inode, struct file *file)
334 return single_open(file, ptdump_show, NULL);
337 static const struct file_operations ptdump_fops = {
341 .release = single_release,
344 static int ptdump_init(void)
349 for (i = 0; i < ARRAY_SIZE(pg_level); i++)
350 if (pg_level[i].bits)
351 for (j = 0; j < pg_level[i].num; j++)
352 pg_level[i].mask |= pg_level[i].bits[j].mask;
354 address_markers[2].start_address = VMALLOC_START;
356 pe = debugfs_create_file("kernel_page_tables", 0400, NULL, NULL,
358 return pe ? 0 : -ENOMEM;
360 __initcall(ptdump_init);