1 // SPDX-License-Identifier: GPL-2.0-only
3 * Based on arch/arm/mm/mmu.c
5 * Copyright (C) 1995-2005 Russell King
6 * Copyright (C) 2012 ARM Ltd.
9 #include <linux/cache.h>
10 #include <linux/export.h>
11 #include <linux/kernel.h>
12 #include <linux/errno.h>
13 #include <linux/init.h>
14 #include <linux/ioport.h>
15 #include <linux/kexec.h>
16 #include <linux/libfdt.h>
17 #include <linux/mman.h>
18 #include <linux/nodemask.h>
19 #include <linux/memblock.h>
23 #include <linux/vmalloc.h>
25 #include <asm/barrier.h>
26 #include <asm/cputype.h>
27 #include <asm/fixmap.h>
28 #include <asm/kasan.h>
29 #include <asm/kernel-pgtable.h>
30 #include <asm/sections.h>
31 #include <asm/setup.h>
32 #include <linux/sizes.h>
34 #include <asm/mmu_context.h>
35 #include <asm/ptdump.h>
36 #include <asm/tlbflush.h>
38 #define NO_BLOCK_MAPPINGS BIT(0)
39 #define NO_CONT_MAPPINGS BIT(1)
41 u64 idmap_t0sz
= TCR_T0SZ(VA_BITS
);
42 u64 idmap_ptrs_per_pgd
= PTRS_PER_PGD
;
44 u64
__section(".mmuoff.data.write") vabits_actual
;
45 EXPORT_SYMBOL(vabits_actual
);
47 u64 kimage_voffset __ro_after_init
;
48 EXPORT_SYMBOL(kimage_voffset
);
51 * Empty_zero_page is a special page that is used for zero-initialized data
54 unsigned long empty_zero_page
[PAGE_SIZE
/ sizeof(unsigned long)] __page_aligned_bss
;
55 EXPORT_SYMBOL(empty_zero_page
);
57 static pte_t bm_pte
[PTRS_PER_PTE
] __page_aligned_bss
;
58 static pmd_t bm_pmd
[PTRS_PER_PMD
] __page_aligned_bss __maybe_unused
;
59 static pud_t bm_pud
[PTRS_PER_PUD
] __page_aligned_bss __maybe_unused
;
61 static DEFINE_SPINLOCK(swapper_pgdir_lock
);
63 void set_swapper_pgd(pgd_t
*pgdp
, pgd_t pgd
)
67 spin_lock(&swapper_pgdir_lock
);
68 fixmap_pgdp
= pgd_set_fixmap(__pa_symbol(pgdp
));
69 WRITE_ONCE(*fixmap_pgdp
, pgd
);
71 * We need dsb(ishst) here to ensure the page-table-walker sees
72 * our new entry before set_p?d() returns. The fixmap's
73 * flush_tlb_kernel_range() via clear_fixmap() does this for us.
76 spin_unlock(&swapper_pgdir_lock
);
79 pgprot_t
phys_mem_access_prot(struct file
*file
, unsigned long pfn
,
80 unsigned long size
, pgprot_t vma_prot
)
83 return pgprot_noncached(vma_prot
);
84 else if (file
->f_flags
& O_SYNC
)
85 return pgprot_writecombine(vma_prot
);
88 EXPORT_SYMBOL(phys_mem_access_prot
);
90 static phys_addr_t __init
early_pgtable_alloc(int shift
)
95 phys
= memblock_phys_alloc(PAGE_SIZE
, PAGE_SIZE
);
97 panic("Failed to allocate page table page\n");
100 * The FIX_{PGD,PUD,PMD} slots may be in active use, but the FIX_PTE
101 * slot will be free, so we can (ab)use the FIX_PTE slot to initialise
102 * any level of table.
104 ptr
= pte_set_fixmap(phys
);
106 memset(ptr
, 0, PAGE_SIZE
);
109 * Implicit barriers also ensure the zeroed page is visible to the page
117 static bool pgattr_change_is_safe(u64 old
, u64
new)
120 * The following mapping attributes may be updated in live
121 * kernel mappings without the need for break-before-make.
123 static const pteval_t mask
= PTE_PXN
| PTE_RDONLY
| PTE_WRITE
| PTE_NG
;
125 /* creating or taking down mappings is always safe */
126 if (old
== 0 || new == 0)
129 /* live contiguous mappings may not be manipulated at all */
130 if ((old
| new) & PTE_CONT
)
133 /* Transitioning from Non-Global to Global is unsafe */
134 if (old
& ~new & PTE_NG
)
137 return ((old
^ new) & ~mask
) == 0;
140 static void init_pte(pmd_t
*pmdp
, unsigned long addr
, unsigned long end
,
141 phys_addr_t phys
, pgprot_t prot
)
145 ptep
= pte_set_fixmap_offset(pmdp
, addr
);
147 pte_t old_pte
= READ_ONCE(*ptep
);
149 set_pte(ptep
, pfn_pte(__phys_to_pfn(phys
), prot
));
152 * After the PTE entry has been populated once, we
153 * only allow updates to the permission attributes.
155 BUG_ON(!pgattr_change_is_safe(pte_val(old_pte
),
156 READ_ONCE(pte_val(*ptep
))));
159 } while (ptep
++, addr
+= PAGE_SIZE
, addr
!= end
);
164 static void alloc_init_cont_pte(pmd_t
*pmdp
, unsigned long addr
,
165 unsigned long end
, phys_addr_t phys
,
167 phys_addr_t (*pgtable_alloc
)(int),
171 pmd_t pmd
= READ_ONCE(*pmdp
);
173 BUG_ON(pmd_sect(pmd
));
175 phys_addr_t pte_phys
;
176 BUG_ON(!pgtable_alloc
);
177 pte_phys
= pgtable_alloc(PAGE_SHIFT
);
178 __pmd_populate(pmdp
, pte_phys
, PMD_TYPE_TABLE
);
179 pmd
= READ_ONCE(*pmdp
);
181 BUG_ON(pmd_bad(pmd
));
184 pgprot_t __prot
= prot
;
186 next
= pte_cont_addr_end(addr
, end
);
188 /* use a contiguous mapping if the range is suitably aligned */
189 if ((((addr
| next
| phys
) & ~CONT_PTE_MASK
) == 0) &&
190 (flags
& NO_CONT_MAPPINGS
) == 0)
191 __prot
= __pgprot(pgprot_val(prot
) | PTE_CONT
);
193 init_pte(pmdp
, addr
, next
, phys
, __prot
);
196 } while (addr
= next
, addr
!= end
);
199 static void init_pmd(pud_t
*pudp
, unsigned long addr
, unsigned long end
,
200 phys_addr_t phys
, pgprot_t prot
,
201 phys_addr_t (*pgtable_alloc
)(int), int flags
)
206 pmdp
= pmd_set_fixmap_offset(pudp
, addr
);
208 pmd_t old_pmd
= READ_ONCE(*pmdp
);
210 next
= pmd_addr_end(addr
, end
);
212 /* try section mapping first */
213 if (((addr
| next
| phys
) & ~SECTION_MASK
) == 0 &&
214 (flags
& NO_BLOCK_MAPPINGS
) == 0) {
215 pmd_set_huge(pmdp
, phys
, prot
);
218 * After the PMD entry has been populated once, we
219 * only allow updates to the permission attributes.
221 BUG_ON(!pgattr_change_is_safe(pmd_val(old_pmd
),
222 READ_ONCE(pmd_val(*pmdp
))));
224 alloc_init_cont_pte(pmdp
, addr
, next
, phys
, prot
,
225 pgtable_alloc
, flags
);
227 BUG_ON(pmd_val(old_pmd
) != 0 &&
228 pmd_val(old_pmd
) != READ_ONCE(pmd_val(*pmdp
)));
231 } while (pmdp
++, addr
= next
, addr
!= end
);
236 static void alloc_init_cont_pmd(pud_t
*pudp
, unsigned long addr
,
237 unsigned long end
, phys_addr_t phys
,
239 phys_addr_t (*pgtable_alloc
)(int), int flags
)
242 pud_t pud
= READ_ONCE(*pudp
);
245 * Check for initial section mappings in the pgd/pud.
247 BUG_ON(pud_sect(pud
));
249 phys_addr_t pmd_phys
;
250 BUG_ON(!pgtable_alloc
);
251 pmd_phys
= pgtable_alloc(PMD_SHIFT
);
252 __pud_populate(pudp
, pmd_phys
, PUD_TYPE_TABLE
);
253 pud
= READ_ONCE(*pudp
);
255 BUG_ON(pud_bad(pud
));
258 pgprot_t __prot
= prot
;
260 next
= pmd_cont_addr_end(addr
, end
);
262 /* use a contiguous mapping if the range is suitably aligned */
263 if ((((addr
| next
| phys
) & ~CONT_PMD_MASK
) == 0) &&
264 (flags
& NO_CONT_MAPPINGS
) == 0)
265 __prot
= __pgprot(pgprot_val(prot
) | PTE_CONT
);
267 init_pmd(pudp
, addr
, next
, phys
, __prot
, pgtable_alloc
, flags
);
270 } while (addr
= next
, addr
!= end
);
273 static inline bool use_1G_block(unsigned long addr
, unsigned long next
,
276 if (PAGE_SHIFT
!= 12)
279 if (((addr
| next
| phys
) & ~PUD_MASK
) != 0)
285 static void alloc_init_pud(pgd_t
*pgdp
, unsigned long addr
, unsigned long end
,
286 phys_addr_t phys
, pgprot_t prot
,
287 phys_addr_t (*pgtable_alloc
)(int),
292 pgd_t pgd
= READ_ONCE(*pgdp
);
295 phys_addr_t pud_phys
;
296 BUG_ON(!pgtable_alloc
);
297 pud_phys
= pgtable_alloc(PUD_SHIFT
);
298 __pgd_populate(pgdp
, pud_phys
, PUD_TYPE_TABLE
);
299 pgd
= READ_ONCE(*pgdp
);
301 BUG_ON(pgd_bad(pgd
));
303 pudp
= pud_set_fixmap_offset(pgdp
, addr
);
305 pud_t old_pud
= READ_ONCE(*pudp
);
307 next
= pud_addr_end(addr
, end
);
310 * For 4K granule only, attempt to put down a 1GB block
312 if (use_1G_block(addr
, next
, phys
) &&
313 (flags
& NO_BLOCK_MAPPINGS
) == 0) {
314 pud_set_huge(pudp
, phys
, prot
);
317 * After the PUD entry has been populated once, we
318 * only allow updates to the permission attributes.
320 BUG_ON(!pgattr_change_is_safe(pud_val(old_pud
),
321 READ_ONCE(pud_val(*pudp
))));
323 alloc_init_cont_pmd(pudp
, addr
, next
, phys
, prot
,
324 pgtable_alloc
, flags
);
326 BUG_ON(pud_val(old_pud
) != 0 &&
327 pud_val(old_pud
) != READ_ONCE(pud_val(*pudp
)));
330 } while (pudp
++, addr
= next
, addr
!= end
);
335 static void __create_pgd_mapping(pgd_t
*pgdir
, phys_addr_t phys
,
336 unsigned long virt
, phys_addr_t size
,
338 phys_addr_t (*pgtable_alloc
)(int),
341 unsigned long addr
, end
, next
;
342 pgd_t
*pgdp
= pgd_offset_raw(pgdir
, virt
);
345 * If the virtual and physical address don't have the same offset
346 * within a page, we cannot map the region as the caller expects.
348 if (WARN_ON((phys
^ virt
) & ~PAGE_MASK
))
352 addr
= virt
& PAGE_MASK
;
353 end
= PAGE_ALIGN(virt
+ size
);
356 next
= pgd_addr_end(addr
, end
);
357 alloc_init_pud(pgdp
, addr
, next
, phys
, prot
, pgtable_alloc
,
360 } while (pgdp
++, addr
= next
, addr
!= end
);
363 static phys_addr_t
__pgd_pgtable_alloc(int shift
)
365 void *ptr
= (void *)__get_free_page(GFP_PGTABLE_KERNEL
);
368 /* Ensure the zeroed page is visible to the page table walker */
373 static phys_addr_t
pgd_pgtable_alloc(int shift
)
375 phys_addr_t pa
= __pgd_pgtable_alloc(shift
);
378 * Call proper page table ctor in case later we need to
379 * call core mm functions like apply_to_page_range() on
380 * this pre-allocated page table.
382 * We don't select ARCH_ENABLE_SPLIT_PMD_PTLOCK if pmd is
383 * folded, and if so pgtable_pmd_page_ctor() becomes nop.
385 if (shift
== PAGE_SHIFT
)
386 BUG_ON(!pgtable_pte_page_ctor(phys_to_page(pa
)));
387 else if (shift
== PMD_SHIFT
)
388 BUG_ON(!pgtable_pmd_page_ctor(phys_to_page(pa
)));
394 * This function can only be used to modify existing table entries,
395 * without allocating new levels of table. Note that this permits the
396 * creation of new section or page entries.
398 static void __init
create_mapping_noalloc(phys_addr_t phys
, unsigned long virt
,
399 phys_addr_t size
, pgprot_t prot
)
401 if ((virt
>= PAGE_END
) && (virt
< VMALLOC_START
)) {
402 pr_warn("BUG: not creating mapping for %pa at 0x%016lx - outside kernel range\n",
406 __create_pgd_mapping(init_mm
.pgd
, phys
, virt
, size
, prot
, NULL
,
410 void __init
create_pgd_mapping(struct mm_struct
*mm
, phys_addr_t phys
,
411 unsigned long virt
, phys_addr_t size
,
412 pgprot_t prot
, bool page_mappings_only
)
416 BUG_ON(mm
== &init_mm
);
418 if (page_mappings_only
)
419 flags
= NO_BLOCK_MAPPINGS
| NO_CONT_MAPPINGS
;
421 __create_pgd_mapping(mm
->pgd
, phys
, virt
, size
, prot
,
422 pgd_pgtable_alloc
, flags
);
425 static void update_mapping_prot(phys_addr_t phys
, unsigned long virt
,
426 phys_addr_t size
, pgprot_t prot
)
428 if ((virt
>= PAGE_END
) && (virt
< VMALLOC_START
)) {
429 pr_warn("BUG: not updating mapping for %pa at 0x%016lx - outside kernel range\n",
434 __create_pgd_mapping(init_mm
.pgd
, phys
, virt
, size
, prot
, NULL
,
437 /* flush the TLBs after updating live kernel mappings */
438 flush_tlb_kernel_range(virt
, virt
+ size
);
441 static void __init
__map_memblock(pgd_t
*pgdp
, phys_addr_t start
,
442 phys_addr_t end
, pgprot_t prot
, int flags
)
444 __create_pgd_mapping(pgdp
, start
, __phys_to_virt(start
), end
- start
,
445 prot
, early_pgtable_alloc
, flags
);
448 void __init
mark_linear_text_alias_ro(void)
451 * Remove the write permissions from the linear alias of .text/.rodata
453 update_mapping_prot(__pa_symbol(_text
), (unsigned long)lm_alias(_text
),
454 (unsigned long)__init_begin
- (unsigned long)_text
,
458 static void __init
map_mem(pgd_t
*pgdp
)
460 phys_addr_t kernel_start
= __pa_symbol(_text
);
461 phys_addr_t kernel_end
= __pa_symbol(__init_begin
);
462 struct memblock_region
*reg
;
465 if (rodata_full
|| debug_pagealloc_enabled())
466 flags
= NO_BLOCK_MAPPINGS
| NO_CONT_MAPPINGS
;
469 * Take care not to create a writable alias for the
470 * read-only text and rodata sections of the kernel image.
471 * So temporarily mark them as NOMAP to skip mappings in
472 * the following for-loop
474 memblock_mark_nomap(kernel_start
, kernel_end
- kernel_start
);
475 #ifdef CONFIG_KEXEC_CORE
477 memblock_mark_nomap(crashk_res
.start
,
478 resource_size(&crashk_res
));
481 /* map all the memory banks */
482 for_each_memblock(memory
, reg
) {
483 phys_addr_t start
= reg
->base
;
484 phys_addr_t end
= start
+ reg
->size
;
488 if (memblock_is_nomap(reg
))
491 __map_memblock(pgdp
, start
, end
, PAGE_KERNEL
, flags
);
495 * Map the linear alias of the [_text, __init_begin) interval
496 * as non-executable now, and remove the write permission in
497 * mark_linear_text_alias_ro() below (which will be called after
498 * alternative patching has completed). This makes the contents
499 * of the region accessible to subsystems such as hibernate,
500 * but protects it from inadvertent modification or execution.
501 * Note that contiguous mappings cannot be remapped in this way,
502 * so we should avoid them here.
504 __map_memblock(pgdp
, kernel_start
, kernel_end
,
505 PAGE_KERNEL
, NO_CONT_MAPPINGS
);
506 memblock_clear_nomap(kernel_start
, kernel_end
- kernel_start
);
508 #ifdef CONFIG_KEXEC_CORE
510 * Use page-level mappings here so that we can shrink the region
511 * in page granularity and put back unused memory to buddy system
512 * through /sys/kernel/kexec_crash_size interface.
514 if (crashk_res
.end
) {
515 __map_memblock(pgdp
, crashk_res
.start
, crashk_res
.end
+ 1,
517 NO_BLOCK_MAPPINGS
| NO_CONT_MAPPINGS
);
518 memblock_clear_nomap(crashk_res
.start
,
519 resource_size(&crashk_res
));
524 void mark_rodata_ro(void)
526 unsigned long section_size
;
529 * mark .rodata as read only. Use __init_begin rather than __end_rodata
530 * to cover NOTES and EXCEPTION_TABLE.
532 section_size
= (unsigned long)__init_begin
- (unsigned long)__start_rodata
;
533 update_mapping_prot(__pa_symbol(__start_rodata
), (unsigned long)__start_rodata
,
534 section_size
, PAGE_KERNEL_RO
);
539 static void __init
map_kernel_segment(pgd_t
*pgdp
, void *va_start
, void *va_end
,
540 pgprot_t prot
, struct vm_struct
*vma
,
541 int flags
, unsigned long vm_flags
)
543 phys_addr_t pa_start
= __pa_symbol(va_start
);
544 unsigned long size
= va_end
- va_start
;
546 BUG_ON(!PAGE_ALIGNED(pa_start
));
547 BUG_ON(!PAGE_ALIGNED(size
));
549 __create_pgd_mapping(pgdp
, pa_start
, (unsigned long)va_start
, size
, prot
,
550 early_pgtable_alloc
, flags
);
552 if (!(vm_flags
& VM_NO_GUARD
))
555 vma
->addr
= va_start
;
556 vma
->phys_addr
= pa_start
;
558 vma
->flags
= VM_MAP
| vm_flags
;
559 vma
->caller
= __builtin_return_address(0);
561 vm_area_add_early(vma
);
564 static int __init
parse_rodata(char *arg
)
566 int ret
= strtobool(arg
, &rodata_enabled
);
572 /* permit 'full' in addition to boolean options */
573 if (strcmp(arg
, "full"))
576 rodata_enabled
= true;
580 early_param("rodata", parse_rodata
);
582 #ifdef CONFIG_UNMAP_KERNEL_AT_EL0
583 static int __init
map_entry_trampoline(void)
585 pgprot_t prot
= rodata_enabled
? PAGE_KERNEL_ROX
: PAGE_KERNEL_EXEC
;
586 phys_addr_t pa_start
= __pa_symbol(__entry_tramp_text_start
);
588 /* The trampoline is always mapped and can therefore be global */
589 pgprot_val(prot
) &= ~PTE_NG
;
591 /* Map only the text into the trampoline page table */
592 memset(tramp_pg_dir
, 0, PGD_SIZE
);
593 __create_pgd_mapping(tramp_pg_dir
, pa_start
, TRAMP_VALIAS
, PAGE_SIZE
,
594 prot
, __pgd_pgtable_alloc
, 0);
596 /* Map both the text and data into the kernel page table */
597 __set_fixmap(FIX_ENTRY_TRAMP_TEXT
, pa_start
, prot
);
598 if (IS_ENABLED(CONFIG_RANDOMIZE_BASE
)) {
599 extern char __entry_tramp_data_start
[];
601 __set_fixmap(FIX_ENTRY_TRAMP_DATA
,
602 __pa_symbol(__entry_tramp_data_start
),
608 core_initcall(map_entry_trampoline
);
612 * Create fine-grained mappings for the kernel.
614 static void __init
map_kernel(pgd_t
*pgdp
)
616 static struct vm_struct vmlinux_text
, vmlinux_rodata
, vmlinux_inittext
,
617 vmlinux_initdata
, vmlinux_data
;
620 * External debuggers may need to write directly to the text
621 * mapping to install SW breakpoints. Allow this (only) when
622 * explicitly requested with rodata=off.
624 pgprot_t text_prot
= rodata_enabled
? PAGE_KERNEL_ROX
: PAGE_KERNEL_EXEC
;
627 * Only rodata will be remapped with different permissions later on,
628 * all other segments are allowed to use contiguous mappings.
630 map_kernel_segment(pgdp
, _text
, _etext
, text_prot
, &vmlinux_text
, 0,
632 map_kernel_segment(pgdp
, __start_rodata
, __inittext_begin
, PAGE_KERNEL
,
633 &vmlinux_rodata
, NO_CONT_MAPPINGS
, VM_NO_GUARD
);
634 map_kernel_segment(pgdp
, __inittext_begin
, __inittext_end
, text_prot
,
635 &vmlinux_inittext
, 0, VM_NO_GUARD
);
636 map_kernel_segment(pgdp
, __initdata_begin
, __initdata_end
, PAGE_KERNEL
,
637 &vmlinux_initdata
, 0, VM_NO_GUARD
);
638 map_kernel_segment(pgdp
, _data
, _end
, PAGE_KERNEL
, &vmlinux_data
, 0, 0);
640 if (!READ_ONCE(pgd_val(*pgd_offset_raw(pgdp
, FIXADDR_START
)))) {
642 * The fixmap falls in a separate pgd to the kernel, and doesn't
643 * live in the carveout for the swapper_pg_dir. We can simply
644 * re-use the existing dir for the fixmap.
646 set_pgd(pgd_offset_raw(pgdp
, FIXADDR_START
),
647 READ_ONCE(*pgd_offset_k(FIXADDR_START
)));
648 } else if (CONFIG_PGTABLE_LEVELS
> 3) {
652 * The fixmap shares its top level pgd entry with the kernel
653 * mapping. This can really only occur when we are running
654 * with 16k/4 levels, so we can simply reuse the pud level
657 BUG_ON(!IS_ENABLED(CONFIG_ARM64_16K_PAGES
));
658 bm_pgdp
= pgd_offset_raw(pgdp
, FIXADDR_START
);
659 bm_pudp
= pud_set_fixmap_offset(bm_pgdp
, FIXADDR_START
);
660 pud_populate(&init_mm
, bm_pudp
, lm_alias(bm_pmd
));
666 kasan_copy_shadow(pgdp
);
669 void __init
paging_init(void)
671 pgd_t
*pgdp
= pgd_set_fixmap(__pa_symbol(swapper_pg_dir
));
678 cpu_replace_ttbr1(lm_alias(swapper_pg_dir
));
679 init_mm
.pgd
= swapper_pg_dir
;
681 memblock_free(__pa_symbol(init_pg_dir
),
682 __pa_symbol(init_pg_end
) - __pa_symbol(init_pg_dir
));
684 memblock_allow_resize();
688 * Check whether a kernel address is valid (derived from arch/x86/).
690 int kern_addr_valid(unsigned long addr
)
697 if ((((long)addr
) >> VA_BITS
) != -1UL)
700 pgdp
= pgd_offset_k(addr
);
701 if (pgd_none(READ_ONCE(*pgdp
)))
704 pudp
= pud_offset(pgdp
, addr
);
705 pud
= READ_ONCE(*pudp
);
710 return pfn_valid(pud_pfn(pud
));
712 pmdp
= pmd_offset(pudp
, addr
);
713 pmd
= READ_ONCE(*pmdp
);
718 return pfn_valid(pmd_pfn(pmd
));
720 ptep
= pte_offset_kernel(pmdp
, addr
);
721 pte
= READ_ONCE(*ptep
);
725 return pfn_valid(pte_pfn(pte
));
727 #ifdef CONFIG_SPARSEMEM_VMEMMAP
728 #if !ARM64_SWAPPER_USES_SECTION_MAPS
729 int __meminit
vmemmap_populate(unsigned long start
, unsigned long end
, int node
,
730 struct vmem_altmap
*altmap
)
732 return vmemmap_populate_basepages(start
, end
, node
);
734 #else /* !ARM64_SWAPPER_USES_SECTION_MAPS */
735 int __meminit
vmemmap_populate(unsigned long start
, unsigned long end
, int node
,
736 struct vmem_altmap
*altmap
)
738 unsigned long addr
= start
;
745 next
= pmd_addr_end(addr
, end
);
747 pgdp
= vmemmap_pgd_populate(addr
, node
);
751 pudp
= vmemmap_pud_populate(pgdp
, addr
, node
);
755 pmdp
= pmd_offset(pudp
, addr
);
756 if (pmd_none(READ_ONCE(*pmdp
))) {
759 p
= vmemmap_alloc_block_buf(PMD_SIZE
, node
);
763 pmd_set_huge(pmdp
, __pa(p
), __pgprot(PROT_SECT_NORMAL
));
765 vmemmap_verify((pte_t
*)pmdp
, node
, addr
, next
);
766 } while (addr
= next
, addr
!= end
);
770 #endif /* !ARM64_SWAPPER_USES_SECTION_MAPS */
771 void vmemmap_free(unsigned long start
, unsigned long end
,
772 struct vmem_altmap
*altmap
)
775 #endif /* CONFIG_SPARSEMEM_VMEMMAP */
777 static inline pud_t
* fixmap_pud(unsigned long addr
)
779 pgd_t
*pgdp
= pgd_offset_k(addr
);
780 pgd_t pgd
= READ_ONCE(*pgdp
);
782 BUG_ON(pgd_none(pgd
) || pgd_bad(pgd
));
784 return pud_offset_kimg(pgdp
, addr
);
787 static inline pmd_t
* fixmap_pmd(unsigned long addr
)
789 pud_t
*pudp
= fixmap_pud(addr
);
790 pud_t pud
= READ_ONCE(*pudp
);
792 BUG_ON(pud_none(pud
) || pud_bad(pud
));
794 return pmd_offset_kimg(pudp
, addr
);
797 static inline pte_t
* fixmap_pte(unsigned long addr
)
799 return &bm_pte
[pte_index(addr
)];
803 * The p*d_populate functions call virt_to_phys implicitly so they can't be used
804 * directly on kernel symbols (bm_p*d). This function is called too early to use
805 * lm_alias so __p*d_populate functions must be used to populate with the
806 * physical address from __pa_symbol.
808 void __init
early_fixmap_init(void)
813 unsigned long addr
= FIXADDR_START
;
815 pgdp
= pgd_offset_k(addr
);
816 pgd
= READ_ONCE(*pgdp
);
817 if (CONFIG_PGTABLE_LEVELS
> 3 &&
818 !(pgd_none(pgd
) || pgd_page_paddr(pgd
) == __pa_symbol(bm_pud
))) {
820 * We only end up here if the kernel mapping and the fixmap
821 * share the top level pgd entry, which should only happen on
822 * 16k/4 levels configurations.
824 BUG_ON(!IS_ENABLED(CONFIG_ARM64_16K_PAGES
));
825 pudp
= pud_offset_kimg(pgdp
, addr
);
828 __pgd_populate(pgdp
, __pa_symbol(bm_pud
), PUD_TYPE_TABLE
);
829 pudp
= fixmap_pud(addr
);
831 if (pud_none(READ_ONCE(*pudp
)))
832 __pud_populate(pudp
, __pa_symbol(bm_pmd
), PMD_TYPE_TABLE
);
833 pmdp
= fixmap_pmd(addr
);
834 __pmd_populate(pmdp
, __pa_symbol(bm_pte
), PMD_TYPE_TABLE
);
837 * The boot-ioremap range spans multiple pmds, for which
838 * we are not prepared:
840 BUILD_BUG_ON((__fix_to_virt(FIX_BTMAP_BEGIN
) >> PMD_SHIFT
)
841 != (__fix_to_virt(FIX_BTMAP_END
) >> PMD_SHIFT
));
843 if ((pmdp
!= fixmap_pmd(fix_to_virt(FIX_BTMAP_BEGIN
)))
844 || pmdp
!= fixmap_pmd(fix_to_virt(FIX_BTMAP_END
))) {
846 pr_warn("pmdp %p != %p, %p\n",
847 pmdp
, fixmap_pmd(fix_to_virt(FIX_BTMAP_BEGIN
)),
848 fixmap_pmd(fix_to_virt(FIX_BTMAP_END
)));
849 pr_warn("fix_to_virt(FIX_BTMAP_BEGIN): %08lx\n",
850 fix_to_virt(FIX_BTMAP_BEGIN
));
851 pr_warn("fix_to_virt(FIX_BTMAP_END): %08lx\n",
852 fix_to_virt(FIX_BTMAP_END
));
854 pr_warn("FIX_BTMAP_END: %d\n", FIX_BTMAP_END
);
855 pr_warn("FIX_BTMAP_BEGIN: %d\n", FIX_BTMAP_BEGIN
);
860 * Unusually, this is also called in IRQ context (ghes_iounmap_irq) so if we
861 * ever need to use IPIs for TLB broadcasting, then we're in trouble here.
863 void __set_fixmap(enum fixed_addresses idx
,
864 phys_addr_t phys
, pgprot_t flags
)
866 unsigned long addr
= __fix_to_virt(idx
);
869 BUG_ON(idx
<= FIX_HOLE
|| idx
>= __end_of_fixed_addresses
);
871 ptep
= fixmap_pte(addr
);
873 if (pgprot_val(flags
)) {
874 set_pte(ptep
, pfn_pte(phys
>> PAGE_SHIFT
, flags
));
876 pte_clear(&init_mm
, addr
, ptep
);
877 flush_tlb_kernel_range(addr
, addr
+PAGE_SIZE
);
881 void *__init
fixmap_remap_fdt(phys_addr_t dt_phys
, int *size
, pgprot_t prot
)
883 const u64 dt_virt_base
= __fix_to_virt(FIX_FDT
);
888 * Check whether the physical FDT address is set and meets the minimum
889 * alignment requirement. Since we are relying on MIN_FDT_ALIGN to be
890 * at least 8 bytes so that we can always access the magic and size
891 * fields of the FDT header after mapping the first chunk, double check
892 * here if that is indeed the case.
894 BUILD_BUG_ON(MIN_FDT_ALIGN
< 8);
895 if (!dt_phys
|| dt_phys
% MIN_FDT_ALIGN
)
899 * Make sure that the FDT region can be mapped without the need to
900 * allocate additional translation table pages, so that it is safe
901 * to call create_mapping_noalloc() this early.
903 * On 64k pages, the FDT will be mapped using PTEs, so we need to
904 * be in the same PMD as the rest of the fixmap.
905 * On 4k pages, we'll use section mappings for the FDT so we only
906 * have to be in the same PUD.
908 BUILD_BUG_ON(dt_virt_base
% SZ_2M
);
910 BUILD_BUG_ON(__fix_to_virt(FIX_FDT_END
) >> SWAPPER_TABLE_SHIFT
!=
911 __fix_to_virt(FIX_BTMAP_BEGIN
) >> SWAPPER_TABLE_SHIFT
);
913 offset
= dt_phys
% SWAPPER_BLOCK_SIZE
;
914 dt_virt
= (void *)dt_virt_base
+ offset
;
916 /* map the first chunk so we can read the size from the header */
917 create_mapping_noalloc(round_down(dt_phys
, SWAPPER_BLOCK_SIZE
),
918 dt_virt_base
, SWAPPER_BLOCK_SIZE
, prot
);
920 if (fdt_magic(dt_virt
) != FDT_MAGIC
)
923 *size
= fdt_totalsize(dt_virt
);
924 if (*size
> MAX_FDT_SIZE
)
927 if (offset
+ *size
> SWAPPER_BLOCK_SIZE
)
928 create_mapping_noalloc(round_down(dt_phys
, SWAPPER_BLOCK_SIZE
), dt_virt_base
,
929 round_up(offset
+ *size
, SWAPPER_BLOCK_SIZE
), prot
);
934 int __init
arch_ioremap_p4d_supported(void)
939 int __init
arch_ioremap_pud_supported(void)
942 * Only 4k granule supports level 1 block mappings.
943 * SW table walks can't handle removal of intermediate entries.
945 return IS_ENABLED(CONFIG_ARM64_4K_PAGES
) &&
946 !IS_ENABLED(CONFIG_PTDUMP_DEBUGFS
);
949 int __init
arch_ioremap_pmd_supported(void)
951 /* See arch_ioremap_pud_supported() */
952 return !IS_ENABLED(CONFIG_PTDUMP_DEBUGFS
);
955 int pud_set_huge(pud_t
*pudp
, phys_addr_t phys
, pgprot_t prot
)
957 pud_t new_pud
= pfn_pud(__phys_to_pfn(phys
), mk_pud_sect_prot(prot
));
959 /* Only allow permission changes for now */
960 if (!pgattr_change_is_safe(READ_ONCE(pud_val(*pudp
)),
964 VM_BUG_ON(phys
& ~PUD_MASK
);
965 set_pud(pudp
, new_pud
);
969 int pmd_set_huge(pmd_t
*pmdp
, phys_addr_t phys
, pgprot_t prot
)
971 pmd_t new_pmd
= pfn_pmd(__phys_to_pfn(phys
), mk_pmd_sect_prot(prot
));
973 /* Only allow permission changes for now */
974 if (!pgattr_change_is_safe(READ_ONCE(pmd_val(*pmdp
)),
978 VM_BUG_ON(phys
& ~PMD_MASK
);
979 set_pmd(pmdp
, new_pmd
);
983 int pud_clear_huge(pud_t
*pudp
)
985 if (!pud_sect(READ_ONCE(*pudp
)))
991 int pmd_clear_huge(pmd_t
*pmdp
)
993 if (!pmd_sect(READ_ONCE(*pmdp
)))
999 int pmd_free_pte_page(pmd_t
*pmdp
, unsigned long addr
)
1004 pmd
= READ_ONCE(*pmdp
);
1006 if (!pmd_table(pmd
)) {
1011 table
= pte_offset_kernel(pmdp
, addr
);
1013 __flush_tlb_kernel_pgtable(addr
);
1014 pte_free_kernel(NULL
, table
);
1018 int pud_free_pmd_page(pud_t
*pudp
, unsigned long addr
)
1023 unsigned long next
, end
;
1025 pud
= READ_ONCE(*pudp
);
1027 if (!pud_table(pud
)) {
1032 table
= pmd_offset(pudp
, addr
);
1035 end
= addr
+ PUD_SIZE
;
1037 pmd_free_pte_page(pmdp
, next
);
1038 } while (pmdp
++, next
+= PMD_SIZE
, next
!= end
);
1041 __flush_tlb_kernel_pgtable(addr
);
1042 pmd_free(NULL
, table
);
1046 int p4d_free_pud_page(p4d_t
*p4d
, unsigned long addr
)
1048 return 0; /* Don't attempt a block mapping */
1051 #ifdef CONFIG_MEMORY_HOTPLUG
1052 int arch_add_memory(int nid
, u64 start
, u64 size
,
1053 struct mhp_restrictions
*restrictions
)
1057 if (rodata_full
|| debug_pagealloc_enabled())
1058 flags
= NO_BLOCK_MAPPINGS
| NO_CONT_MAPPINGS
;
1060 __create_pgd_mapping(swapper_pg_dir
, start
, __phys_to_virt(start
),
1061 size
, PAGE_KERNEL
, __pgd_pgtable_alloc
, flags
);
1063 memblock_clear_nomap(start
, size
);
1065 return __add_pages(nid
, start
>> PAGE_SHIFT
, size
>> PAGE_SHIFT
,
1068 void arch_remove_memory(int nid
, u64 start
, u64 size
,
1069 struct vmem_altmap
*altmap
)
1071 unsigned long start_pfn
= start
>> PAGE_SHIFT
;
1072 unsigned long nr_pages
= size
>> PAGE_SHIFT
;
1075 * FIXME: Cleanup page tables (also in arch_add_memory() in case
1076 * adding fails). Until then, this function should only be used
1077 * during memory hotplug (adding memory), not for memory
1078 * unplug. ARCH_ENABLE_MEMORY_HOTREMOVE must not be
1081 __remove_pages(start_pfn
, nr_pages
, altmap
);