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Merge branch 'next' of git://git.monstr.eu/linux-2.6-microblaze
[linux.git] / arch / x86 / mm / init_64.c
CommitLineData
1da177e4
LT
1/*
2 * linux/arch/x86_64/mm/init.c
3 *
4 * Copyright (C) 1995 Linus Torvalds
a2531293 5 * Copyright (C) 2000 Pavel Machek <[email protected]>
1da177e4
LT
6 * Copyright (C) 2002,2003 Andi Kleen <[email protected]>
7 */
8
1da177e4
LT
9#include <linux/signal.h>
10#include <linux/sched.h>
11#include <linux/kernel.h>
12#include <linux/errno.h>
13#include <linux/string.h>
14#include <linux/types.h>
15#include <linux/ptrace.h>
16#include <linux/mman.h>
17#include <linux/mm.h>
18#include <linux/swap.h>
19#include <linux/smp.h>
20#include <linux/init.h>
11034d55 21#include <linux/initrd.h>
1da177e4
LT
22#include <linux/pagemap.h>
23#include <linux/bootmem.h>
a9ce6bc1 24#include <linux/memblock.h>
1da177e4 25#include <linux/proc_fs.h>
59170891 26#include <linux/pci.h>
6fb14755 27#include <linux/pfn.h>
c9cf5528 28#include <linux/poison.h>
17a941d8 29#include <linux/dma-mapping.h>
44df75e6 30#include <linux/module.h>
a63fdc51 31#include <linux/memory.h>
44df75e6 32#include <linux/memory_hotplug.h>
ae32b129 33#include <linux/nmi.h>
5a0e3ad6 34#include <linux/gfp.h>
1da177e4
LT
35
36#include <asm/processor.h>
46eaa670 37#include <asm/bios_ebda.h>
1da177e4
LT
38#include <asm/uaccess.h>
39#include <asm/pgtable.h>
40#include <asm/pgalloc.h>
41#include <asm/dma.h>
42#include <asm/fixmap.h>
43#include <asm/e820.h>
44#include <asm/apic.h>
45#include <asm/tlb.h>
46#include <asm/mmu_context.h>
47#include <asm/proto.h>
48#include <asm/smp.h>
2bc0414e 49#include <asm/sections.h>
718fc13b 50#include <asm/kdebug.h>
aaa64e04 51#include <asm/numa.h>
7bfeab9a 52#include <asm/cacheflush.h>
4fcb2083 53#include <asm/init.h>
1dc41aa6 54#include <asm/uv/uv.h>
e5f15b45 55#include <asm/setup.h>
1da177e4 56
00d1c5e0
IM
57static int __init parse_direct_gbpages_off(char *arg)
58{
59 direct_gbpages = 0;
60 return 0;
61}
62early_param("nogbpages", parse_direct_gbpages_off);
63
64static int __init parse_direct_gbpages_on(char *arg)
65{
66 direct_gbpages = 1;
67 return 0;
68}
69early_param("gbpages", parse_direct_gbpages_on);
70
1da177e4
LT
71/*
72 * NOTE: pagetable_init alloc all the fixmap pagetables contiguous on the
73 * physical space so we can cache the place of the first one and move
74 * around without checking the pgd every time.
75 */
76
be43d728 77pteval_t __supported_pte_mask __read_mostly = ~_PAGE_IOMAP;
bd220a24
YL
78EXPORT_SYMBOL_GPL(__supported_pte_mask);
79
bd220a24
YL
80int force_personality32;
81
deed05b7
IM
82/*
83 * noexec32=on|off
84 * Control non executable heap for 32bit processes.
85 * To control the stack too use noexec=off
86 *
87 * on PROT_READ does not imply PROT_EXEC for 32-bit processes (default)
88 * off PROT_READ implies PROT_EXEC
89 */
bd220a24
YL
90static int __init nonx32_setup(char *str)
91{
92 if (!strcmp(str, "on"))
93 force_personality32 &= ~READ_IMPLIES_EXEC;
94 else if (!strcmp(str, "off"))
95 force_personality32 |= READ_IMPLIES_EXEC;
96 return 1;
97}
98__setup("noexec32=", nonx32_setup);
99
6afb5157
HL
100/*
101 * When memory was added/removed make sure all the processes MM have
102 * suitable PGD entries in the local PGD level page.
103 */
104void sync_global_pgds(unsigned long start, unsigned long end)
105{
44235dcd
JF
106 unsigned long address;
107
108 for (address = start; address <= end; address += PGDIR_SIZE) {
109 const pgd_t *pgd_ref = pgd_offset_k(address);
44235dcd
JF
110 struct page *page;
111
112 if (pgd_none(*pgd_ref))
113 continue;
114
a79e53d8 115 spin_lock(&pgd_lock);
44235dcd
JF
116 list_for_each_entry(page, &pgd_list, lru) {
117 pgd_t *pgd;
617d34d9
JF
118 spinlock_t *pgt_lock;
119
44235dcd 120 pgd = (pgd_t *)page_address(page) + pgd_index(address);
a79e53d8 121 /* the pgt_lock only for Xen */
617d34d9
JF
122 pgt_lock = &pgd_page_get_mm(page)->page_table_lock;
123 spin_lock(pgt_lock);
124
44235dcd
JF
125 if (pgd_none(*pgd))
126 set_pgd(pgd, *pgd_ref);
127 else
128 BUG_ON(pgd_page_vaddr(*pgd)
129 != pgd_page_vaddr(*pgd_ref));
617d34d9
JF
130
131 spin_unlock(pgt_lock);
44235dcd 132 }
a79e53d8 133 spin_unlock(&pgd_lock);
44235dcd 134 }
6afb5157
HL
135}
136
8d6ea967
MS
137/*
138 * NOTE: This function is marked __ref because it calls __init function
139 * (alloc_bootmem_pages). It's safe to do it ONLY when after_bootmem == 0.
140 */
141static __ref void *spp_getpage(void)
14a62c34 142{
1da177e4 143 void *ptr;
14a62c34 144
1da177e4 145 if (after_bootmem)
9e730237 146 ptr = (void *) get_zeroed_page(GFP_ATOMIC | __GFP_NOTRACK);
1da177e4
LT
147 else
148 ptr = alloc_bootmem_pages(PAGE_SIZE);
14a62c34
TG
149
150 if (!ptr || ((unsigned long)ptr & ~PAGE_MASK)) {
151 panic("set_pte_phys: cannot allocate page data %s\n",
152 after_bootmem ? "after bootmem" : "");
153 }
1da177e4 154
10f22dde 155 pr_debug("spp_getpage %p\n", ptr);
14a62c34 156
1da177e4 157 return ptr;
14a62c34 158}
1da177e4 159
f254f390 160static pud_t *fill_pud(pgd_t *pgd, unsigned long vaddr)
1da177e4 161{
458a3e64
TH
162 if (pgd_none(*pgd)) {
163 pud_t *pud = (pud_t *)spp_getpage();
164 pgd_populate(&init_mm, pgd, pud);
165 if (pud != pud_offset(pgd, 0))
166 printk(KERN_ERR "PAGETABLE BUG #00! %p <-> %p\n",
167 pud, pud_offset(pgd, 0));
168 }
169 return pud_offset(pgd, vaddr);
170}
1da177e4 171
f254f390 172static pmd_t *fill_pmd(pud_t *pud, unsigned long vaddr)
458a3e64 173{
1da177e4 174 if (pud_none(*pud)) {
458a3e64 175 pmd_t *pmd = (pmd_t *) spp_getpage();
bb23e403 176 pud_populate(&init_mm, pud, pmd);
458a3e64 177 if (pmd != pmd_offset(pud, 0))
10f22dde 178 printk(KERN_ERR "PAGETABLE BUG #01! %p <-> %p\n",
458a3e64 179 pmd, pmd_offset(pud, 0));
1da177e4 180 }
458a3e64
TH
181 return pmd_offset(pud, vaddr);
182}
183
f254f390 184static pte_t *fill_pte(pmd_t *pmd, unsigned long vaddr)
458a3e64 185{
1da177e4 186 if (pmd_none(*pmd)) {
458a3e64 187 pte_t *pte = (pte_t *) spp_getpage();
bb23e403 188 pmd_populate_kernel(&init_mm, pmd, pte);
458a3e64 189 if (pte != pte_offset_kernel(pmd, 0))
10f22dde 190 printk(KERN_ERR "PAGETABLE BUG #02!\n");
1da177e4 191 }
458a3e64
TH
192 return pte_offset_kernel(pmd, vaddr);
193}
194
195void set_pte_vaddr_pud(pud_t *pud_page, unsigned long vaddr, pte_t new_pte)
196{
197 pud_t *pud;
198 pmd_t *pmd;
199 pte_t *pte;
200
201 pud = pud_page + pud_index(vaddr);
202 pmd = fill_pmd(pud, vaddr);
203 pte = fill_pte(pmd, vaddr);
1da177e4 204
1da177e4
LT
205 set_pte(pte, new_pte);
206
207 /*
208 * It's enough to flush this one mapping.
209 * (PGE mappings get flushed as well)
210 */
211 __flush_tlb_one(vaddr);
212}
213
458a3e64 214void set_pte_vaddr(unsigned long vaddr, pte_t pteval)
0814e0ba
EH
215{
216 pgd_t *pgd;
217 pud_t *pud_page;
218
219 pr_debug("set_pte_vaddr %lx to %lx\n", vaddr, native_pte_val(pteval));
220
221 pgd = pgd_offset_k(vaddr);
222 if (pgd_none(*pgd)) {
223 printk(KERN_ERR
224 "PGD FIXMAP MISSING, it should be setup in head.S!\n");
225 return;
226 }
227 pud_page = (pud_t*)pgd_page_vaddr(*pgd);
228 set_pte_vaddr_pud(pud_page, vaddr, pteval);
229}
230
458a3e64 231pmd_t * __init populate_extra_pmd(unsigned long vaddr)
11124411
TH
232{
233 pgd_t *pgd;
234 pud_t *pud;
235
236 pgd = pgd_offset_k(vaddr);
458a3e64
TH
237 pud = fill_pud(pgd, vaddr);
238 return fill_pmd(pud, vaddr);
239}
240
241pte_t * __init populate_extra_pte(unsigned long vaddr)
242{
243 pmd_t *pmd;
11124411 244
458a3e64
TH
245 pmd = populate_extra_pmd(vaddr);
246 return fill_pte(pmd, vaddr);
11124411
TH
247}
248
3a9e189d
JS
249/*
250 * Create large page table mappings for a range of physical addresses.
251 */
252static void __init __init_extra_mapping(unsigned long phys, unsigned long size,
253 pgprot_t prot)
254{
255 pgd_t *pgd;
256 pud_t *pud;
257 pmd_t *pmd;
258
259 BUG_ON((phys & ~PMD_MASK) || (size & ~PMD_MASK));
260 for (; size; phys += PMD_SIZE, size -= PMD_SIZE) {
261 pgd = pgd_offset_k((unsigned long)__va(phys));
262 if (pgd_none(*pgd)) {
263 pud = (pud_t *) spp_getpage();
264 set_pgd(pgd, __pgd(__pa(pud) | _KERNPG_TABLE |
265 _PAGE_USER));
266 }
267 pud = pud_offset(pgd, (unsigned long)__va(phys));
268 if (pud_none(*pud)) {
269 pmd = (pmd_t *) spp_getpage();
270 set_pud(pud, __pud(__pa(pmd) | _KERNPG_TABLE |
271 _PAGE_USER));
272 }
273 pmd = pmd_offset(pud, phys);
274 BUG_ON(!pmd_none(*pmd));
275 set_pmd(pmd, __pmd(phys | pgprot_val(prot)));
276 }
277}
278
279void __init init_extra_mapping_wb(unsigned long phys, unsigned long size)
280{
281 __init_extra_mapping(phys, size, PAGE_KERNEL_LARGE);
282}
283
284void __init init_extra_mapping_uc(unsigned long phys, unsigned long size)
285{
286 __init_extra_mapping(phys, size, PAGE_KERNEL_LARGE_NOCACHE);
287}
288
31eedd82 289/*
88f3aec7
IM
290 * The head.S code sets up the kernel high mapping:
291 *
292 * from __START_KERNEL_map to __START_KERNEL_map + size (== _end-_text)
31eedd82
TG
293 *
294 * phys_addr holds the negative offset to the kernel, which is added
295 * to the compile time generated pmds. This results in invalid pmds up
296 * to the point where we hit the physaddr 0 mapping.
297 *
e5f15b45
YL
298 * We limit the mappings to the region from _text to _brk_end. _brk_end
299 * is rounded up to the 2MB boundary. This catches the invalid pmds as
31eedd82
TG
300 * well, as they are located before _text:
301 */
302void __init cleanup_highmap(void)
303{
304 unsigned long vaddr = __START_KERNEL_map;
e5f15b45
YL
305 unsigned long vaddr_end = __START_KERNEL_map + (max_pfn_mapped << PAGE_SHIFT);
306 unsigned long end = roundup((unsigned long)_brk_end, PMD_SIZE) - 1;
31eedd82 307 pmd_t *pmd = level2_kernel_pgt;
31eedd82 308
e5f15b45 309 for (; vaddr + PMD_SIZE - 1 < vaddr_end; pmd++, vaddr += PMD_SIZE) {
2884f110 310 if (pmd_none(*pmd))
31eedd82
TG
311 continue;
312 if (vaddr < (unsigned long) _text || vaddr > end)
313 set_pmd(pmd, __pmd(0));
314 }
315}
316
9482ac6e 317static __ref void *alloc_low_page(unsigned long *phys)
14a62c34 318{
d1b19426 319 unsigned long pfn = pgt_buf_end++;
1da177e4
LT
320 void *adr;
321
44df75e6 322 if (after_bootmem) {
9e730237 323 adr = (void *)get_zeroed_page(GFP_ATOMIC | __GFP_NOTRACK);
44df75e6 324 *phys = __pa(adr);
14a62c34 325
44df75e6
MT
326 return adr;
327 }
328
d1b19426 329 if (pfn >= pgt_buf_top)
14a62c34 330 panic("alloc_low_page: ran out of memory");
dafe41ee 331
14941779 332 adr = early_memremap(pfn * PAGE_SIZE, PAGE_SIZE);
234bb549 333 clear_page(adr);
dafe41ee
VG
334 *phys = pfn * PAGE_SIZE;
335 return adr;
336}
1da177e4 337
4b239f45
YL
338static __ref void *map_low_page(void *virt)
339{
340 void *adr;
341 unsigned long phys, left;
342
343 if (after_bootmem)
344 return virt;
345
346 phys = __pa(virt);
347 left = phys & (PAGE_SIZE - 1);
348 adr = early_memremap(phys & PAGE_MASK, PAGE_SIZE);
349 adr = (void *)(((unsigned long)adr) | left);
350
351 return adr;
352}
353
9482ac6e 354static __ref void unmap_low_page(void *adr)
14a62c34 355{
44df75e6
MT
356 if (after_bootmem)
357 return;
358
4b239f45 359 early_iounmap((void *)((unsigned long)adr & PAGE_MASK), PAGE_SIZE);
14a62c34 360}
1da177e4 361
7b16eb89 362static unsigned long __meminit
b27a43c1
SS
363phys_pte_init(pte_t *pte_page, unsigned long addr, unsigned long end,
364 pgprot_t prot)
4f9c11dd
JF
365{
366 unsigned pages = 0;
7b16eb89 367 unsigned long last_map_addr = end;
4f9c11dd 368 int i;
7b16eb89 369
4f9c11dd
JF
370 pte_t *pte = pte_page + pte_index(addr);
371
372 for(i = pte_index(addr); i < PTRS_PER_PTE; i++, addr += PAGE_SIZE, pte++) {
373
374 if (addr >= end) {
375 if (!after_bootmem) {
376 for(; i < PTRS_PER_PTE; i++, pte++)
377 set_pte(pte, __pte(0));
378 }
379 break;
380 }
381
b27a43c1
SS
382 /*
383 * We will re-use the existing mapping.
384 * Xen for example has some special requirements, like mapping
385 * pagetable pages as RO. So assume someone who pre-setup
386 * these mappings are more intelligent.
387 */
3afa3949
YL
388 if (pte_val(*pte)) {
389 pages++;
4f9c11dd 390 continue;
3afa3949 391 }
4f9c11dd
JF
392
393 if (0)
394 printk(" pte=%p addr=%lx pte=%016lx\n",
395 pte, addr, pfn_pte(addr >> PAGE_SHIFT, PAGE_KERNEL).pte);
4f9c11dd 396 pages++;
b27a43c1 397 set_pte(pte, pfn_pte(addr >> PAGE_SHIFT, prot));
7b16eb89 398 last_map_addr = (addr & PAGE_MASK) + PAGE_SIZE;
4f9c11dd 399 }
a2699e47 400
4f9c11dd 401 update_page_count(PG_LEVEL_4K, pages);
7b16eb89
YL
402
403 return last_map_addr;
4f9c11dd
JF
404}
405
cc615032 406static unsigned long __meminit
b50efd2a 407phys_pmd_init(pmd_t *pmd_page, unsigned long address, unsigned long end,
b27a43c1 408 unsigned long page_size_mask, pgprot_t prot)
44df75e6 409{
20167d34 410 unsigned long pages = 0, next;
7b16eb89 411 unsigned long last_map_addr = end;
ce0c0e50 412
6ad91658 413 int i = pmd_index(address);
44df75e6 414
20167d34 415 for (; i < PTRS_PER_PMD; i++, address = next) {
4f9c11dd 416 unsigned long pte_phys;
6ad91658 417 pmd_t *pmd = pmd_page + pmd_index(address);
4f9c11dd 418 pte_t *pte;
b27a43c1 419 pgprot_t new_prot = prot;
44df75e6 420
5f51e139 421 if (address >= end) {
14a62c34 422 if (!after_bootmem) {
5f51e139
JB
423 for (; i < PTRS_PER_PMD; i++, pmd++)
424 set_pmd(pmd, __pmd(0));
14a62c34 425 }
44df75e6
MT
426 break;
427 }
6ad91658 428
20167d34
JB
429 next = (address & PMD_MASK) + PMD_SIZE;
430
4f9c11dd 431 if (pmd_val(*pmd)) {
8ae3a5a8
JB
432 if (!pmd_large(*pmd)) {
433 spin_lock(&init_mm.page_table_lock);
4b239f45
YL
434 pte = map_low_page((pte_t *)pmd_page_vaddr(*pmd));
435 last_map_addr = phys_pte_init(pte, address,
b27a43c1 436 end, prot);
4b239f45 437 unmap_low_page(pte);
8ae3a5a8 438 spin_unlock(&init_mm.page_table_lock);
a2699e47 439 continue;
8ae3a5a8 440 }
b27a43c1
SS
441 /*
442 * If we are ok with PG_LEVEL_2M mapping, then we will
443 * use the existing mapping,
444 *
445 * Otherwise, we will split the large page mapping but
446 * use the same existing protection bits except for
447 * large page, so that we don't violate Intel's TLB
448 * Application note (317080) which says, while changing
449 * the page sizes, new and old translations should
450 * not differ with respect to page frame and
451 * attributes.
452 */
3afa3949 453 if (page_size_mask & (1 << PG_LEVEL_2M)) {
20167d34 454 last_map_addr = next;
b27a43c1 455 continue;
3afa3949 456 }
b27a43c1 457 new_prot = pte_pgprot(pte_clrhuge(*(pte_t *)pmd));
4f9c11dd
JF
458 }
459
b50efd2a 460 if (page_size_mask & (1<<PG_LEVEL_2M)) {
4f9c11dd 461 pages++;
8ae3a5a8 462 spin_lock(&init_mm.page_table_lock);
4f9c11dd 463 set_pte((pte_t *)pmd,
b27a43c1
SS
464 pfn_pte(address >> PAGE_SHIFT,
465 __pgprot(pgprot_val(prot) | _PAGE_PSE)));
8ae3a5a8 466 spin_unlock(&init_mm.page_table_lock);
20167d34 467 last_map_addr = next;
6ad91658 468 continue;
4f9c11dd 469 }
6ad91658 470
4f9c11dd 471 pte = alloc_low_page(&pte_phys);
b27a43c1 472 last_map_addr = phys_pte_init(pte, address, end, new_prot);
4f9c11dd
JF
473 unmap_low_page(pte);
474
8ae3a5a8 475 spin_lock(&init_mm.page_table_lock);
4f9c11dd 476 pmd_populate_kernel(&init_mm, pmd, __va(pte_phys));
8ae3a5a8 477 spin_unlock(&init_mm.page_table_lock);
44df75e6 478 }
ce0c0e50 479 update_page_count(PG_LEVEL_2M, pages);
7b16eb89 480 return last_map_addr;
44df75e6
MT
481}
482
cc615032 483static unsigned long __meminit
b50efd2a
YL
484phys_pud_init(pud_t *pud_page, unsigned long addr, unsigned long end,
485 unsigned long page_size_mask)
14a62c34 486{
20167d34 487 unsigned long pages = 0, next;
cc615032 488 unsigned long last_map_addr = end;
6ad91658 489 int i = pud_index(addr);
44df75e6 490
20167d34 491 for (; i < PTRS_PER_PUD; i++, addr = next) {
6ad91658
KM
492 unsigned long pmd_phys;
493 pud_t *pud = pud_page + pud_index(addr);
1da177e4 494 pmd_t *pmd;
b27a43c1 495 pgprot_t prot = PAGE_KERNEL;
1da177e4 496
6ad91658 497 if (addr >= end)
1da177e4 498 break;
1da177e4 499
20167d34
JB
500 next = (addr & PUD_MASK) + PUD_SIZE;
501
502 if (!after_bootmem && !e820_any_mapped(addr, next, 0)) {
14a62c34 503 set_pud(pud, __pud(0));
1da177e4 504 continue;
14a62c34 505 }
1da177e4 506
6ad91658 507 if (pud_val(*pud)) {
a2699e47 508 if (!pud_large(*pud)) {
4b239f45
YL
509 pmd = map_low_page(pmd_offset(pud, 0));
510 last_map_addr = phys_pmd_init(pmd, addr, end,
b27a43c1 511 page_size_mask, prot);
4b239f45
YL
512 unmap_low_page(pmd);
513 __flush_tlb_all();
a2699e47
SS
514 continue;
515 }
b27a43c1
SS
516 /*
517 * If we are ok with PG_LEVEL_1G mapping, then we will
518 * use the existing mapping.
519 *
520 * Otherwise, we will split the gbpage mapping but use
521 * the same existing protection bits except for large
522 * page, so that we don't violate Intel's TLB
523 * Application note (317080) which says, while changing
524 * the page sizes, new and old translations should
525 * not differ with respect to page frame and
526 * attributes.
527 */
3afa3949 528 if (page_size_mask & (1 << PG_LEVEL_1G)) {
20167d34 529 last_map_addr = next;
b27a43c1 530 continue;
3afa3949 531 }
b27a43c1 532 prot = pte_pgprot(pte_clrhuge(*(pte_t *)pud));
ef925766
AK
533 }
534
b50efd2a 535 if (page_size_mask & (1<<PG_LEVEL_1G)) {
ce0c0e50 536 pages++;
8ae3a5a8 537 spin_lock(&init_mm.page_table_lock);
ef925766
AK
538 set_pte((pte_t *)pud,
539 pfn_pte(addr >> PAGE_SHIFT, PAGE_KERNEL_LARGE));
8ae3a5a8 540 spin_unlock(&init_mm.page_table_lock);
20167d34 541 last_map_addr = next;
6ad91658
KM
542 continue;
543 }
544
dafe41ee 545 pmd = alloc_low_page(&pmd_phys);
b27a43c1
SS
546 last_map_addr = phys_pmd_init(pmd, addr, end, page_size_mask,
547 prot);
4f9c11dd 548 unmap_low_page(pmd);
8ae3a5a8
JB
549
550 spin_lock(&init_mm.page_table_lock);
4f9c11dd 551 pud_populate(&init_mm, pud, __va(pmd_phys));
44df75e6 552 spin_unlock(&init_mm.page_table_lock);
1da177e4 553 }
1a2b4412 554 __flush_tlb_all();
a2699e47 555
ce0c0e50 556 update_page_count(PG_LEVEL_1G, pages);
cc615032 557
1a0db38e 558 return last_map_addr;
14a62c34 559}
1da177e4 560
41d840e2 561unsigned long __meminit
f765090a
PE
562kernel_physical_mapping_init(unsigned long start,
563 unsigned long end,
564 unsigned long page_size_mask)
14a62c34 565{
9b861528 566 bool pgd_changed = false;
b50efd2a 567 unsigned long next, last_map_addr = end;
9b861528 568 unsigned long addr;
1da177e4
LT
569
570 start = (unsigned long)__va(start);
571 end = (unsigned long)__va(end);
1c5f50ee 572 addr = start;
1da177e4
LT
573
574 for (; start < end; start = next) {
44df75e6 575 pgd_t *pgd = pgd_offset_k(start);
14a62c34 576 unsigned long pud_phys;
44df75e6
MT
577 pud_t *pud;
578
e22146e6 579 next = (start + PGDIR_SIZE) & PGDIR_MASK;
4f9c11dd
JF
580 if (next > end)
581 next = end;
582
583 if (pgd_val(*pgd)) {
4b239f45
YL
584 pud = map_low_page((pud_t *)pgd_page_vaddr(*pgd));
585 last_map_addr = phys_pud_init(pud, __pa(start),
b50efd2a 586 __pa(end), page_size_mask);
4b239f45 587 unmap_low_page(pud);
4f9c11dd
JF
588 continue;
589 }
590
8ae3a5a8 591 pud = alloc_low_page(&pud_phys);
b50efd2a
YL
592 last_map_addr = phys_pud_init(pud, __pa(start), __pa(next),
593 page_size_mask);
4f9c11dd 594 unmap_low_page(pud);
8ae3a5a8
JB
595
596 spin_lock(&init_mm.page_table_lock);
597 pgd_populate(&init_mm, pgd, __va(pud_phys));
598 spin_unlock(&init_mm.page_table_lock);
9b861528 599 pgd_changed = true;
14a62c34 600 }
9b861528
HL
601
602 if (pgd_changed)
603 sync_global_pgds(addr, end);
604
a2699e47 605 __flush_tlb_all();
1da177e4 606
b50efd2a
YL
607 return last_map_addr;
608}
7b16eb89 609
2b97690f 610#ifndef CONFIG_NUMA
d8fc3afc 611void __init initmem_init(void)
1f75d7e3 612{
0608f70c 613 memblock_set_node(0, (phys_addr_t)ULLONG_MAX, 0);
1f75d7e3 614}
3551f88f 615#endif
1f75d7e3 616
1da177e4
LT
617void __init paging_init(void)
618{
3551f88f 619 sparse_memory_present_with_active_regions(MAX_NUMNODES);
44df75e6 620 sparse_init();
44b57280
YL
621
622 /*
623 * clear the default setting with node 0
624 * note: don't use nodes_clear here, that is really clearing when
625 * numa support is not compiled in, and later node_set_state
626 * will not set it back.
627 */
628 node_clear_state(0, N_NORMAL_MEMORY);
629
4c0b2e5f 630 zone_sizes_init();
1da177e4 631}
1da177e4 632
44df75e6
MT
633/*
634 * Memory hotplug specific functions
44df75e6 635 */
bc02af93 636#ifdef CONFIG_MEMORY_HOTPLUG
ea085417
SZ
637/*
638 * After memory hotplug the variables max_pfn, max_low_pfn and high_memory need
639 * updating.
640 */
641static void update_end_of_memory_vars(u64 start, u64 size)
642{
643 unsigned long end_pfn = PFN_UP(start + size);
644
645 if (end_pfn > max_pfn) {
646 max_pfn = end_pfn;
647 max_low_pfn = end_pfn;
648 high_memory = (void *)__va(max_pfn * PAGE_SIZE - 1) + 1;
649 }
650}
651
9d99aaa3
AK
652/*
653 * Memory is added always to NORMAL zone. This means you will never get
654 * additional DMA/DMA32 memory.
655 */
bc02af93 656int arch_add_memory(int nid, u64 start, u64 size)
44df75e6 657{
bc02af93 658 struct pglist_data *pgdat = NODE_DATA(nid);
776ed98b 659 struct zone *zone = pgdat->node_zones + ZONE_NORMAL;
cc615032 660 unsigned long last_mapped_pfn, start_pfn = start >> PAGE_SHIFT;
44df75e6
MT
661 unsigned long nr_pages = size >> PAGE_SHIFT;
662 int ret;
663
60817c9b 664 last_mapped_pfn = init_memory_mapping(start, start + size);
cc615032
AK
665 if (last_mapped_pfn > max_pfn_mapped)
666 max_pfn_mapped = last_mapped_pfn;
45e0b78b 667
c04fc586 668 ret = __add_pages(nid, zone, start_pfn, nr_pages);
fe8b868e 669 WARN_ON_ONCE(ret);
44df75e6 670
ea085417
SZ
671 /* update max_pfn, max_low_pfn and high_memory */
672 update_end_of_memory_vars(start, size);
673
44df75e6 674 return ret;
44df75e6 675}
bc02af93 676EXPORT_SYMBOL_GPL(arch_add_memory);
44df75e6 677
45e0b78b
KM
678#endif /* CONFIG_MEMORY_HOTPLUG */
679
81ac3ad9 680static struct kcore_list kcore_vsyscall;
1da177e4
LT
681
682void __init mem_init(void)
683{
0a43e4bf 684 long codesize, reservedpages, datasize, initsize;
11a6b0c9 685 unsigned long absent_pages;
1da177e4 686
0dc243ae 687 pci_iommu_alloc();
1da177e4 688
48ddb154 689 /* clear_bss() already clear the empty_zero_page */
1da177e4
LT
690
691 reservedpages = 0;
692
693 /* this will put all low memory onto the freelists */
2b97690f 694#ifdef CONFIG_NUMA
0a43e4bf 695 totalram_pages = numa_free_all_bootmem();
1da177e4 696#else
0a43e4bf 697 totalram_pages = free_all_bootmem();
1da177e4 698#endif
11a6b0c9
YL
699
700 absent_pages = absent_pages_in_range(0, max_pfn);
701 reservedpages = max_pfn - totalram_pages - absent_pages;
1da177e4
LT
702 after_bootmem = 1;
703
704 codesize = (unsigned long) &_etext - (unsigned long) &_text;
705 datasize = (unsigned long) &_edata - (unsigned long) &_etext;
706 initsize = (unsigned long) &__init_end - (unsigned long) &__init_begin;
707
708 /* Register memory areas for /proc/kcore */
14a62c34 709 kclist_add(&kcore_vsyscall, (void *)VSYSCALL_START,
c30bb2a2 710 VSYSCALL_END - VSYSCALL_START, KCORE_OTHER);
1da177e4 711
10f22dde 712 printk(KERN_INFO "Memory: %luk/%luk available (%ldk kernel code, "
11a6b0c9 713 "%ldk absent, %ldk reserved, %ldk data, %ldk init)\n",
cc013a88 714 nr_free_pages() << (PAGE_SHIFT-10),
c987d12f 715 max_pfn << (PAGE_SHIFT-10),
1da177e4 716 codesize >> 10,
11a6b0c9 717 absent_pages << (PAGE_SHIFT-10),
1da177e4
LT
718 reservedpages << (PAGE_SHIFT-10),
719 datasize >> 10,
720 initsize >> 10);
1da177e4
LT
721}
722
67df197b 723#ifdef CONFIG_DEBUG_RODATA
edeed305
AV
724const int rodata_test_data = 0xC3;
725EXPORT_SYMBOL_GPL(rodata_test_data);
67df197b 726
502f6604 727int kernel_set_to_readonly;
16239630
SR
728
729void set_kernel_text_rw(void)
730{
b9af7c0d 731 unsigned long start = PFN_ALIGN(_text);
e7d23dde 732 unsigned long end = PFN_ALIGN(__stop___ex_table);
16239630
SR
733
734 if (!kernel_set_to_readonly)
735 return;
736
737 pr_debug("Set kernel text: %lx - %lx for read write\n",
738 start, end);
739
e7d23dde
SS
740 /*
741 * Make the kernel identity mapping for text RW. Kernel text
742 * mapping will always be RO. Refer to the comment in
743 * static_protections() in pageattr.c
744 */
16239630
SR
745 set_memory_rw(start, (end - start) >> PAGE_SHIFT);
746}
747
748void set_kernel_text_ro(void)
749{
b9af7c0d 750 unsigned long start = PFN_ALIGN(_text);
e7d23dde 751 unsigned long end = PFN_ALIGN(__stop___ex_table);
16239630
SR
752
753 if (!kernel_set_to_readonly)
754 return;
755
756 pr_debug("Set kernel text: %lx - %lx for read only\n",
757 start, end);
758
e7d23dde
SS
759 /*
760 * Set the kernel identity mapping for text RO.
761 */
16239630
SR
762 set_memory_ro(start, (end - start) >> PAGE_SHIFT);
763}
764
67df197b
AV
765void mark_rodata_ro(void)
766{
74e08179 767 unsigned long start = PFN_ALIGN(_text);
8f0f996e
SR
768 unsigned long rodata_start =
769 ((unsigned long)__start_rodata + PAGE_SIZE - 1) & PAGE_MASK;
74e08179
SS
770 unsigned long end = (unsigned long) &__end_rodata_hpage_align;
771 unsigned long text_end = PAGE_ALIGN((unsigned long) &__stop___ex_table);
772 unsigned long rodata_end = PAGE_ALIGN((unsigned long) &__end_rodata);
773 unsigned long data_start = (unsigned long) &_sdata;
8f0f996e 774
6fb14755 775 printk(KERN_INFO "Write protecting the kernel read-only data: %luk\n",
e3ebadd9 776 (end - start) >> 10);
984bb80d
AV
777 set_memory_ro(start, (end - start) >> PAGE_SHIFT);
778
16239630
SR
779 kernel_set_to_readonly = 1;
780
984bb80d
AV
781 /*
782 * The rodata section (but not the kernel text!) should also be
783 * not-executable.
784 */
72b59d67 785 set_memory_nx(rodata_start, (end - rodata_start) >> PAGE_SHIFT);
67df197b 786
1a487252
AV
787 rodata_test();
788
0c42f392 789#ifdef CONFIG_CPA_DEBUG
10f22dde 790 printk(KERN_INFO "Testing CPA: undo %lx-%lx\n", start, end);
6d238cc4 791 set_memory_rw(start, (end-start) >> PAGE_SHIFT);
0c42f392 792
10f22dde 793 printk(KERN_INFO "Testing CPA: again\n");
6d238cc4 794 set_memory_ro(start, (end-start) >> PAGE_SHIFT);
0c42f392 795#endif
74e08179
SS
796
797 free_init_pages("unused kernel memory",
798 (unsigned long) page_address(virt_to_page(text_end)),
799 (unsigned long)
800 page_address(virt_to_page(rodata_start)));
801 free_init_pages("unused kernel memory",
802 (unsigned long) page_address(virt_to_page(rodata_end)),
803 (unsigned long) page_address(virt_to_page(data_start)));
67df197b 804}
4e4eee0e 805
67df197b
AV
806#endif
807
14a62c34
TG
808int kern_addr_valid(unsigned long addr)
809{
1da177e4 810 unsigned long above = ((long)addr) >> __VIRTUAL_MASK_SHIFT;
14a62c34
TG
811 pgd_t *pgd;
812 pud_t *pud;
813 pmd_t *pmd;
814 pte_t *pte;
1da177e4
LT
815
816 if (above != 0 && above != -1UL)
14a62c34
TG
817 return 0;
818
1da177e4
LT
819 pgd = pgd_offset_k(addr);
820 if (pgd_none(*pgd))
821 return 0;
822
823 pud = pud_offset(pgd, addr);
824 if (pud_none(*pud))
14a62c34 825 return 0;
1da177e4
LT
826
827 pmd = pmd_offset(pud, addr);
828 if (pmd_none(*pmd))
829 return 0;
14a62c34 830
1da177e4
LT
831 if (pmd_large(*pmd))
832 return pfn_valid(pmd_pfn(*pmd));
833
834 pte = pte_offset_kernel(pmd, addr);
835 if (pte_none(*pte))
836 return 0;
14a62c34 837
1da177e4
LT
838 return pfn_valid(pte_pfn(*pte));
839}
840
14a62c34
TG
841/*
842 * A pseudo VMA to allow ptrace access for the vsyscall page. This only
843 * covers the 64bit vsyscall page now. 32bit has a real VMA now and does
844 * not need special handling anymore:
845 */
1da177e4 846static struct vm_area_struct gate_vma = {
14a62c34
TG
847 .vm_start = VSYSCALL_START,
848 .vm_end = VSYSCALL_START + (VSYSCALL_MAPPED_PAGES * PAGE_SIZE),
849 .vm_page_prot = PAGE_READONLY_EXEC,
850 .vm_flags = VM_READ | VM_EXEC
1da177e4
LT
851};
852
31db58b3 853struct vm_area_struct *get_gate_vma(struct mm_struct *mm)
1da177e4
LT
854{
855#ifdef CONFIG_IA32_EMULATION
31db58b3 856 if (!mm || mm->context.ia32_compat)
1e014410 857 return NULL;
1da177e4
LT
858#endif
859 return &gate_vma;
860}
861
83b964bb 862int in_gate_area(struct mm_struct *mm, unsigned long addr)
1da177e4 863{
83b964bb 864 struct vm_area_struct *vma = get_gate_vma(mm);
14a62c34 865
1e014410
AK
866 if (!vma)
867 return 0;
14a62c34 868
1da177e4
LT
869 return (addr >= vma->vm_start) && (addr < vma->vm_end);
870}
871
14a62c34 872/*
cae5d390
SW
873 * Use this when you have no reliable mm, typically from interrupt
874 * context. It is less reliable than using a task's mm and may give
875 * false positives.
1da177e4 876 */
cae5d390 877int in_gate_area_no_mm(unsigned long addr)
1da177e4 878{
1e014410 879 return (addr >= VSYSCALL_START) && (addr < VSYSCALL_END);
1da177e4 880}
2e1c49db 881
2aae950b
AK
882const char *arch_vma_name(struct vm_area_struct *vma)
883{
884 if (vma->vm_mm && vma->vm_start == (long)vma->vm_mm->context.vdso)
885 return "[vdso]";
886 if (vma == &gate_vma)
887 return "[vsyscall]";
888 return NULL;
889}
0889eba5 890
1dc41aa6 891#ifdef CONFIG_X86_UV
1dc41aa6
NF
892unsigned long memory_block_size_bytes(void)
893{
894 if (is_uv_system()) {
895 printk(KERN_INFO "UV: memory block size 2GB\n");
896 return 2UL * 1024 * 1024 * 1024;
897 }
898 return MIN_MEMORY_BLOCK_SIZE;
899}
900#endif
901
0889eba5
CL
902#ifdef CONFIG_SPARSEMEM_VMEMMAP
903/*
904 * Initialise the sparsemem vmemmap using huge-pages at the PMD level.
905 */
c2b91e2e
YL
906static long __meminitdata addr_start, addr_end;
907static void __meminitdata *p_start, *p_end;
908static int __meminitdata node_start;
909
14a62c34
TG
910int __meminit
911vmemmap_populate(struct page *start_page, unsigned long size, int node)
0889eba5
CL
912{
913 unsigned long addr = (unsigned long)start_page;
914 unsigned long end = (unsigned long)(start_page + size);
915 unsigned long next;
916 pgd_t *pgd;
917 pud_t *pud;
918 pmd_t *pmd;
919
920 for (; addr < end; addr = next) {
7c934d39 921 void *p = NULL;
0889eba5
CL
922
923 pgd = vmemmap_pgd_populate(addr, node);
924 if (!pgd)
925 return -ENOMEM;
14a62c34 926
0889eba5
CL
927 pud = vmemmap_pud_populate(pgd, addr, node);
928 if (!pud)
929 return -ENOMEM;
930
7c934d39
JF
931 if (!cpu_has_pse) {
932 next = (addr + PAGE_SIZE) & PAGE_MASK;
933 pmd = vmemmap_pmd_populate(pud, addr, node);
934
935 if (!pmd)
936 return -ENOMEM;
937
938 p = vmemmap_pte_populate(pmd, addr, node);
14a62c34 939
0889eba5
CL
940 if (!p)
941 return -ENOMEM;
942
7c934d39
JF
943 addr_end = addr + PAGE_SIZE;
944 p_end = p + PAGE_SIZE;
14a62c34 945 } else {
7c934d39
JF
946 next = pmd_addr_end(addr, end);
947
948 pmd = pmd_offset(pud, addr);
949 if (pmd_none(*pmd)) {
950 pte_t entry;
951
9bdac914 952 p = vmemmap_alloc_block_buf(PMD_SIZE, node);
7c934d39
JF
953 if (!p)
954 return -ENOMEM;
955
956 entry = pfn_pte(__pa(p) >> PAGE_SHIFT,
957 PAGE_KERNEL_LARGE);
958 set_pmd(pmd, __pmd(pte_val(entry)));
959
7c934d39
JF
960 /* check to see if we have contiguous blocks */
961 if (p_end != p || node_start != node) {
962 if (p_start)
963 printk(KERN_DEBUG " [%lx-%lx] PMD -> [%p-%p] on node %d\n",
964 addr_start, addr_end-1, p_start, p_end-1, node_start);
965 addr_start = addr;
966 node_start = node;
967 p_start = p;
968 }
49c980df
YL
969
970 addr_end = addr + PMD_SIZE;
971 p_end = p + PMD_SIZE;
7c934d39
JF
972 } else
973 vmemmap_verify((pte_t *)pmd, node, addr, next);
14a62c34 974 }
7c934d39 975
0889eba5 976 }
9b861528 977 sync_global_pgds((unsigned long)start_page, end);
0889eba5
CL
978 return 0;
979}
c2b91e2e
YL
980
981void __meminit vmemmap_populate_print_last(void)
982{
983 if (p_start) {
984 printk(KERN_DEBUG " [%lx-%lx] PMD -> [%p-%p] on node %d\n",
985 addr_start, addr_end-1, p_start, p_end-1, node_start);
986 p_start = NULL;
987 p_end = NULL;
988 node_start = 0;
989 }
990}
0889eba5 991#endif
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