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Commit | Line | Data |
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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> | |
24 | #include <linux/proc_fs.h> | |
59170891 | 25 | #include <linux/pci.h> |
6fb14755 | 26 | #include <linux/pfn.h> |
c9cf5528 | 27 | #include <linux/poison.h> |
17a941d8 | 28 | #include <linux/dma-mapping.h> |
44df75e6 MT |
29 | #include <linux/module.h> |
30 | #include <linux/memory_hotplug.h> | |
ae32b129 | 31 | #include <linux/nmi.h> |
5a0e3ad6 | 32 | #include <linux/gfp.h> |
1da177e4 LT |
33 | |
34 | #include <asm/processor.h> | |
46eaa670 | 35 | #include <asm/bios_ebda.h> |
1da177e4 LT |
36 | #include <asm/system.h> |
37 | #include <asm/uaccess.h> | |
38 | #include <asm/pgtable.h> | |
39 | #include <asm/pgalloc.h> | |
40 | #include <asm/dma.h> | |
41 | #include <asm/fixmap.h> | |
42 | #include <asm/e820.h> | |
43 | #include <asm/apic.h> | |
44 | #include <asm/tlb.h> | |
45 | #include <asm/mmu_context.h> | |
46 | #include <asm/proto.h> | |
47 | #include <asm/smp.h> | |
2bc0414e | 48 | #include <asm/sections.h> |
718fc13b | 49 | #include <asm/kdebug.h> |
aaa64e04 | 50 | #include <asm/numa.h> |
7bfeab9a | 51 | #include <asm/cacheflush.h> |
4fcb2083 | 52 | #include <asm/init.h> |
ea085417 | 53 | #include <linux/bootmem.h> |
1da177e4 | 54 | |
e18c6874 AK |
55 | static unsigned long dma_reserve __initdata; |
56 | ||
00d1c5e0 IM |
57 | static int __init parse_direct_gbpages_off(char *arg) |
58 | { | |
59 | direct_gbpages = 0; | |
60 | return 0; | |
61 | } | |
62 | early_param("nogbpages", parse_direct_gbpages_off); | |
63 | ||
64 | static int __init parse_direct_gbpages_on(char *arg) | |
65 | { | |
66 | direct_gbpages = 1; | |
67 | return 0; | |
68 | } | |
69 | early_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 | 77 | pteval_t __supported_pte_mask __read_mostly = ~_PAGE_IOMAP; |
bd220a24 YL |
78 | EXPORT_SYMBOL_GPL(__supported_pte_mask); |
79 | ||
bd220a24 YL |
80 | int 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 |
90 | static 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 | */ | |
104 | void sync_global_pgds(unsigned long start, unsigned long end) | |
105 | { | |
106 | unsigned long address; | |
107 | ||
108 | for (address = start; address <= end; address += PGDIR_SIZE) { | |
109 | const pgd_t *pgd_ref = pgd_offset_k(address); | |
110 | unsigned long flags; | |
111 | struct page *page; | |
112 | ||
113 | if (pgd_none(*pgd_ref)) | |
114 | continue; | |
115 | ||
116 | spin_lock_irqsave(&pgd_lock, flags); | |
117 | list_for_each_entry(page, &pgd_list, lru) { | |
118 | pgd_t *pgd; | |
119 | pgd = (pgd_t *)page_address(page) + pgd_index(address); | |
120 | if (pgd_none(*pgd)) | |
121 | set_pgd(pgd, *pgd_ref); | |
122 | else | |
123 | BUG_ON(pgd_page_vaddr(*pgd) | |
124 | != pgd_page_vaddr(*pgd_ref)); | |
125 | } | |
126 | spin_unlock_irqrestore(&pgd_lock, flags); | |
127 | } | |
128 | } | |
129 | ||
8d6ea967 MS |
130 | /* |
131 | * NOTE: This function is marked __ref because it calls __init function | |
132 | * (alloc_bootmem_pages). It's safe to do it ONLY when after_bootmem == 0. | |
133 | */ | |
134 | static __ref void *spp_getpage(void) | |
14a62c34 | 135 | { |
1da177e4 | 136 | void *ptr; |
14a62c34 | 137 | |
1da177e4 | 138 | if (after_bootmem) |
9e730237 | 139 | ptr = (void *) get_zeroed_page(GFP_ATOMIC | __GFP_NOTRACK); |
1da177e4 LT |
140 | else |
141 | ptr = alloc_bootmem_pages(PAGE_SIZE); | |
14a62c34 TG |
142 | |
143 | if (!ptr || ((unsigned long)ptr & ~PAGE_MASK)) { | |
144 | panic("set_pte_phys: cannot allocate page data %s\n", | |
145 | after_bootmem ? "after bootmem" : ""); | |
146 | } | |
1da177e4 | 147 | |
10f22dde | 148 | pr_debug("spp_getpage %p\n", ptr); |
14a62c34 | 149 | |
1da177e4 | 150 | return ptr; |
14a62c34 | 151 | } |
1da177e4 | 152 | |
f254f390 | 153 | static pud_t *fill_pud(pgd_t *pgd, unsigned long vaddr) |
1da177e4 | 154 | { |
458a3e64 TH |
155 | if (pgd_none(*pgd)) { |
156 | pud_t *pud = (pud_t *)spp_getpage(); | |
157 | pgd_populate(&init_mm, pgd, pud); | |
158 | if (pud != pud_offset(pgd, 0)) | |
159 | printk(KERN_ERR "PAGETABLE BUG #00! %p <-> %p\n", | |
160 | pud, pud_offset(pgd, 0)); | |
161 | } | |
162 | return pud_offset(pgd, vaddr); | |
163 | } | |
1da177e4 | 164 | |
f254f390 | 165 | static pmd_t *fill_pmd(pud_t *pud, unsigned long vaddr) |
458a3e64 | 166 | { |
1da177e4 | 167 | if (pud_none(*pud)) { |
458a3e64 | 168 | pmd_t *pmd = (pmd_t *) spp_getpage(); |
bb23e403 | 169 | pud_populate(&init_mm, pud, pmd); |
458a3e64 | 170 | if (pmd != pmd_offset(pud, 0)) |
10f22dde | 171 | printk(KERN_ERR "PAGETABLE BUG #01! %p <-> %p\n", |
458a3e64 | 172 | pmd, pmd_offset(pud, 0)); |
1da177e4 | 173 | } |
458a3e64 TH |
174 | return pmd_offset(pud, vaddr); |
175 | } | |
176 | ||
f254f390 | 177 | static pte_t *fill_pte(pmd_t *pmd, unsigned long vaddr) |
458a3e64 | 178 | { |
1da177e4 | 179 | if (pmd_none(*pmd)) { |
458a3e64 | 180 | pte_t *pte = (pte_t *) spp_getpage(); |
bb23e403 | 181 | pmd_populate_kernel(&init_mm, pmd, pte); |
458a3e64 | 182 | if (pte != pte_offset_kernel(pmd, 0)) |
10f22dde | 183 | printk(KERN_ERR "PAGETABLE BUG #02!\n"); |
1da177e4 | 184 | } |
458a3e64 TH |
185 | return pte_offset_kernel(pmd, vaddr); |
186 | } | |
187 | ||
188 | void set_pte_vaddr_pud(pud_t *pud_page, unsigned long vaddr, pte_t new_pte) | |
189 | { | |
190 | pud_t *pud; | |
191 | pmd_t *pmd; | |
192 | pte_t *pte; | |
193 | ||
194 | pud = pud_page + pud_index(vaddr); | |
195 | pmd = fill_pmd(pud, vaddr); | |
196 | pte = fill_pte(pmd, vaddr); | |
1da177e4 | 197 | |
1da177e4 LT |
198 | set_pte(pte, new_pte); |
199 | ||
200 | /* | |
201 | * It's enough to flush this one mapping. | |
202 | * (PGE mappings get flushed as well) | |
203 | */ | |
204 | __flush_tlb_one(vaddr); | |
205 | } | |
206 | ||
458a3e64 | 207 | void set_pte_vaddr(unsigned long vaddr, pte_t pteval) |
0814e0ba EH |
208 | { |
209 | pgd_t *pgd; | |
210 | pud_t *pud_page; | |
211 | ||
212 | pr_debug("set_pte_vaddr %lx to %lx\n", vaddr, native_pte_val(pteval)); | |
213 | ||
214 | pgd = pgd_offset_k(vaddr); | |
215 | if (pgd_none(*pgd)) { | |
216 | printk(KERN_ERR | |
217 | "PGD FIXMAP MISSING, it should be setup in head.S!\n"); | |
218 | return; | |
219 | } | |
220 | pud_page = (pud_t*)pgd_page_vaddr(*pgd); | |
221 | set_pte_vaddr_pud(pud_page, vaddr, pteval); | |
222 | } | |
223 | ||
458a3e64 | 224 | pmd_t * __init populate_extra_pmd(unsigned long vaddr) |
11124411 TH |
225 | { |
226 | pgd_t *pgd; | |
227 | pud_t *pud; | |
228 | ||
229 | pgd = pgd_offset_k(vaddr); | |
458a3e64 TH |
230 | pud = fill_pud(pgd, vaddr); |
231 | return fill_pmd(pud, vaddr); | |
232 | } | |
233 | ||
234 | pte_t * __init populate_extra_pte(unsigned long vaddr) | |
235 | { | |
236 | pmd_t *pmd; | |
11124411 | 237 | |
458a3e64 TH |
238 | pmd = populate_extra_pmd(vaddr); |
239 | return fill_pte(pmd, vaddr); | |
11124411 TH |
240 | } |
241 | ||
3a9e189d JS |
242 | /* |
243 | * Create large page table mappings for a range of physical addresses. | |
244 | */ | |
245 | static void __init __init_extra_mapping(unsigned long phys, unsigned long size, | |
246 | pgprot_t prot) | |
247 | { | |
248 | pgd_t *pgd; | |
249 | pud_t *pud; | |
250 | pmd_t *pmd; | |
251 | ||
252 | BUG_ON((phys & ~PMD_MASK) || (size & ~PMD_MASK)); | |
253 | for (; size; phys += PMD_SIZE, size -= PMD_SIZE) { | |
254 | pgd = pgd_offset_k((unsigned long)__va(phys)); | |
255 | if (pgd_none(*pgd)) { | |
256 | pud = (pud_t *) spp_getpage(); | |
257 | set_pgd(pgd, __pgd(__pa(pud) | _KERNPG_TABLE | | |
258 | _PAGE_USER)); | |
259 | } | |
260 | pud = pud_offset(pgd, (unsigned long)__va(phys)); | |
261 | if (pud_none(*pud)) { | |
262 | pmd = (pmd_t *) spp_getpage(); | |
263 | set_pud(pud, __pud(__pa(pmd) | _KERNPG_TABLE | | |
264 | _PAGE_USER)); | |
265 | } | |
266 | pmd = pmd_offset(pud, phys); | |
267 | BUG_ON(!pmd_none(*pmd)); | |
268 | set_pmd(pmd, __pmd(phys | pgprot_val(prot))); | |
269 | } | |
270 | } | |
271 | ||
272 | void __init init_extra_mapping_wb(unsigned long phys, unsigned long size) | |
273 | { | |
274 | __init_extra_mapping(phys, size, PAGE_KERNEL_LARGE); | |
275 | } | |
276 | ||
277 | void __init init_extra_mapping_uc(unsigned long phys, unsigned long size) | |
278 | { | |
279 | __init_extra_mapping(phys, size, PAGE_KERNEL_LARGE_NOCACHE); | |
280 | } | |
281 | ||
31eedd82 | 282 | /* |
88f3aec7 IM |
283 | * The head.S code sets up the kernel high mapping: |
284 | * | |
285 | * from __START_KERNEL_map to __START_KERNEL_map + size (== _end-_text) | |
31eedd82 TG |
286 | * |
287 | * phys_addr holds the negative offset to the kernel, which is added | |
288 | * to the compile time generated pmds. This results in invalid pmds up | |
289 | * to the point where we hit the physaddr 0 mapping. | |
290 | * | |
291 | * We limit the mappings to the region from _text to _end. _end is | |
292 | * rounded up to the 2MB boundary. This catches the invalid pmds as | |
293 | * well, as they are located before _text: | |
294 | */ | |
295 | void __init cleanup_highmap(void) | |
296 | { | |
297 | unsigned long vaddr = __START_KERNEL_map; | |
d86bb0da | 298 | unsigned long end = roundup((unsigned long)_end, PMD_SIZE) - 1; |
31eedd82 TG |
299 | pmd_t *pmd = level2_kernel_pgt; |
300 | pmd_t *last_pmd = pmd + PTRS_PER_PMD; | |
301 | ||
302 | for (; pmd < last_pmd; pmd++, vaddr += PMD_SIZE) { | |
2884f110 | 303 | if (pmd_none(*pmd)) |
31eedd82 TG |
304 | continue; |
305 | if (vaddr < (unsigned long) _text || vaddr > end) | |
306 | set_pmd(pmd, __pmd(0)); | |
307 | } | |
308 | } | |
309 | ||
9482ac6e | 310 | static __ref void *alloc_low_page(unsigned long *phys) |
14a62c34 | 311 | { |
298af9d8 | 312 | unsigned long pfn = e820_table_end++; |
1da177e4 LT |
313 | void *adr; |
314 | ||
44df75e6 | 315 | if (after_bootmem) { |
9e730237 | 316 | adr = (void *)get_zeroed_page(GFP_ATOMIC | __GFP_NOTRACK); |
44df75e6 | 317 | *phys = __pa(adr); |
14a62c34 | 318 | |
44df75e6 MT |
319 | return adr; |
320 | } | |
321 | ||
298af9d8 | 322 | if (pfn >= e820_table_top) |
14a62c34 | 323 | panic("alloc_low_page: ran out of memory"); |
dafe41ee | 324 | |
14941779 | 325 | adr = early_memremap(pfn * PAGE_SIZE, PAGE_SIZE); |
44df75e6 | 326 | memset(adr, 0, PAGE_SIZE); |
dafe41ee VG |
327 | *phys = pfn * PAGE_SIZE; |
328 | return adr; | |
329 | } | |
1da177e4 | 330 | |
9482ac6e | 331 | static __ref void unmap_low_page(void *adr) |
14a62c34 | 332 | { |
44df75e6 MT |
333 | if (after_bootmem) |
334 | return; | |
335 | ||
dafe41ee | 336 | early_iounmap(adr, PAGE_SIZE); |
14a62c34 | 337 | } |
1da177e4 | 338 | |
7b16eb89 | 339 | static unsigned long __meminit |
b27a43c1 SS |
340 | phys_pte_init(pte_t *pte_page, unsigned long addr, unsigned long end, |
341 | pgprot_t prot) | |
4f9c11dd JF |
342 | { |
343 | unsigned pages = 0; | |
7b16eb89 | 344 | unsigned long last_map_addr = end; |
4f9c11dd | 345 | int i; |
7b16eb89 | 346 | |
4f9c11dd JF |
347 | pte_t *pte = pte_page + pte_index(addr); |
348 | ||
349 | for(i = pte_index(addr); i < PTRS_PER_PTE; i++, addr += PAGE_SIZE, pte++) { | |
350 | ||
351 | if (addr >= end) { | |
352 | if (!after_bootmem) { | |
353 | for(; i < PTRS_PER_PTE; i++, pte++) | |
354 | set_pte(pte, __pte(0)); | |
355 | } | |
356 | break; | |
357 | } | |
358 | ||
b27a43c1 SS |
359 | /* |
360 | * We will re-use the existing mapping. | |
361 | * Xen for example has some special requirements, like mapping | |
362 | * pagetable pages as RO. So assume someone who pre-setup | |
363 | * these mappings are more intelligent. | |
364 | */ | |
3afa3949 YL |
365 | if (pte_val(*pte)) { |
366 | pages++; | |
4f9c11dd | 367 | continue; |
3afa3949 | 368 | } |
4f9c11dd JF |
369 | |
370 | if (0) | |
371 | printk(" pte=%p addr=%lx pte=%016lx\n", | |
372 | pte, addr, pfn_pte(addr >> PAGE_SHIFT, PAGE_KERNEL).pte); | |
4f9c11dd | 373 | pages++; |
b27a43c1 | 374 | set_pte(pte, pfn_pte(addr >> PAGE_SHIFT, prot)); |
7b16eb89 | 375 | last_map_addr = (addr & PAGE_MASK) + PAGE_SIZE; |
4f9c11dd | 376 | } |
a2699e47 | 377 | |
4f9c11dd | 378 | update_page_count(PG_LEVEL_4K, pages); |
7b16eb89 YL |
379 | |
380 | return last_map_addr; | |
4f9c11dd JF |
381 | } |
382 | ||
7b16eb89 | 383 | static unsigned long __meminit |
b27a43c1 SS |
384 | phys_pte_update(pmd_t *pmd, unsigned long address, unsigned long end, |
385 | pgprot_t prot) | |
4f9c11dd JF |
386 | { |
387 | pte_t *pte = (pte_t *)pmd_page_vaddr(*pmd); | |
388 | ||
b27a43c1 | 389 | return phys_pte_init(pte, address, end, prot); |
4f9c11dd JF |
390 | } |
391 | ||
cc615032 | 392 | static unsigned long __meminit |
b50efd2a | 393 | phys_pmd_init(pmd_t *pmd_page, unsigned long address, unsigned long end, |
b27a43c1 | 394 | unsigned long page_size_mask, pgprot_t prot) |
44df75e6 | 395 | { |
ce0c0e50 | 396 | unsigned long pages = 0; |
7b16eb89 | 397 | unsigned long last_map_addr = end; |
ce0c0e50 | 398 | |
6ad91658 | 399 | int i = pmd_index(address); |
44df75e6 | 400 | |
6ad91658 | 401 | for (; i < PTRS_PER_PMD; i++, address += PMD_SIZE) { |
4f9c11dd | 402 | unsigned long pte_phys; |
6ad91658 | 403 | pmd_t *pmd = pmd_page + pmd_index(address); |
4f9c11dd | 404 | pte_t *pte; |
b27a43c1 | 405 | pgprot_t new_prot = prot; |
44df75e6 | 406 | |
5f51e139 | 407 | if (address >= end) { |
14a62c34 | 408 | if (!after_bootmem) { |
5f51e139 JB |
409 | for (; i < PTRS_PER_PMD; i++, pmd++) |
410 | set_pmd(pmd, __pmd(0)); | |
14a62c34 | 411 | } |
44df75e6 MT |
412 | break; |
413 | } | |
6ad91658 | 414 | |
4f9c11dd | 415 | if (pmd_val(*pmd)) { |
8ae3a5a8 JB |
416 | if (!pmd_large(*pmd)) { |
417 | spin_lock(&init_mm.page_table_lock); | |
7b16eb89 | 418 | last_map_addr = phys_pte_update(pmd, address, |
b27a43c1 | 419 | end, prot); |
8ae3a5a8 | 420 | spin_unlock(&init_mm.page_table_lock); |
a2699e47 | 421 | continue; |
8ae3a5a8 | 422 | } |
b27a43c1 SS |
423 | /* |
424 | * If we are ok with PG_LEVEL_2M mapping, then we will | |
425 | * use the existing mapping, | |
426 | * | |
427 | * Otherwise, we will split the large page mapping but | |
428 | * use the same existing protection bits except for | |
429 | * large page, so that we don't violate Intel's TLB | |
430 | * Application note (317080) which says, while changing | |
431 | * the page sizes, new and old translations should | |
432 | * not differ with respect to page frame and | |
433 | * attributes. | |
434 | */ | |
3afa3949 YL |
435 | if (page_size_mask & (1 << PG_LEVEL_2M)) { |
436 | pages++; | |
b27a43c1 | 437 | continue; |
3afa3949 | 438 | } |
b27a43c1 | 439 | new_prot = pte_pgprot(pte_clrhuge(*(pte_t *)pmd)); |
4f9c11dd JF |
440 | } |
441 | ||
b50efd2a | 442 | if (page_size_mask & (1<<PG_LEVEL_2M)) { |
4f9c11dd | 443 | pages++; |
8ae3a5a8 | 444 | spin_lock(&init_mm.page_table_lock); |
4f9c11dd | 445 | set_pte((pte_t *)pmd, |
b27a43c1 SS |
446 | pfn_pte(address >> PAGE_SHIFT, |
447 | __pgprot(pgprot_val(prot) | _PAGE_PSE))); | |
8ae3a5a8 | 448 | spin_unlock(&init_mm.page_table_lock); |
7b16eb89 | 449 | last_map_addr = (address & PMD_MASK) + PMD_SIZE; |
6ad91658 | 450 | continue; |
4f9c11dd | 451 | } |
6ad91658 | 452 | |
4f9c11dd | 453 | pte = alloc_low_page(&pte_phys); |
b27a43c1 | 454 | last_map_addr = phys_pte_init(pte, address, end, new_prot); |
4f9c11dd JF |
455 | unmap_low_page(pte); |
456 | ||
8ae3a5a8 | 457 | spin_lock(&init_mm.page_table_lock); |
4f9c11dd | 458 | pmd_populate_kernel(&init_mm, pmd, __va(pte_phys)); |
8ae3a5a8 | 459 | spin_unlock(&init_mm.page_table_lock); |
44df75e6 | 460 | } |
ce0c0e50 | 461 | update_page_count(PG_LEVEL_2M, pages); |
7b16eb89 | 462 | return last_map_addr; |
44df75e6 MT |
463 | } |
464 | ||
cc615032 | 465 | static unsigned long __meminit |
b50efd2a | 466 | phys_pmd_update(pud_t *pud, unsigned long address, unsigned long end, |
b27a43c1 | 467 | unsigned long page_size_mask, pgprot_t prot) |
44df75e6 | 468 | { |
14a62c34 | 469 | pmd_t *pmd = pmd_offset(pud, 0); |
cc615032 AK |
470 | unsigned long last_map_addr; |
471 | ||
b27a43c1 | 472 | last_map_addr = phys_pmd_init(pmd, address, end, page_size_mask, prot); |
6ad91658 | 473 | __flush_tlb_all(); |
cc615032 | 474 | return last_map_addr; |
44df75e6 MT |
475 | } |
476 | ||
cc615032 | 477 | static unsigned long __meminit |
b50efd2a YL |
478 | phys_pud_init(pud_t *pud_page, unsigned long addr, unsigned long end, |
479 | unsigned long page_size_mask) | |
14a62c34 | 480 | { |
ce0c0e50 | 481 | unsigned long pages = 0; |
cc615032 | 482 | unsigned long last_map_addr = end; |
6ad91658 | 483 | int i = pud_index(addr); |
44df75e6 | 484 | |
14a62c34 | 485 | for (; i < PTRS_PER_PUD; i++, addr = (addr & PUD_MASK) + PUD_SIZE) { |
6ad91658 KM |
486 | unsigned long pmd_phys; |
487 | pud_t *pud = pud_page + pud_index(addr); | |
1da177e4 | 488 | pmd_t *pmd; |
b27a43c1 | 489 | pgprot_t prot = PAGE_KERNEL; |
1da177e4 | 490 | |
6ad91658 | 491 | if (addr >= end) |
1da177e4 | 492 | break; |
1da177e4 | 493 | |
14a62c34 TG |
494 | if (!after_bootmem && |
495 | !e820_any_mapped(addr, addr+PUD_SIZE, 0)) { | |
496 | set_pud(pud, __pud(0)); | |
1da177e4 | 497 | continue; |
14a62c34 | 498 | } |
1da177e4 | 499 | |
6ad91658 | 500 | if (pud_val(*pud)) { |
a2699e47 | 501 | if (!pud_large(*pud)) { |
b50efd2a | 502 | last_map_addr = phys_pmd_update(pud, addr, end, |
b27a43c1 | 503 | page_size_mask, prot); |
a2699e47 SS |
504 | continue; |
505 | } | |
b27a43c1 SS |
506 | /* |
507 | * If we are ok with PG_LEVEL_1G mapping, then we will | |
508 | * use the existing mapping. | |
509 | * | |
510 | * Otherwise, we will split the gbpage mapping but use | |
511 | * the same existing protection bits except for large | |
512 | * page, so that we don't violate Intel's TLB | |
513 | * Application note (317080) which says, while changing | |
514 | * the page sizes, new and old translations should | |
515 | * not differ with respect to page frame and | |
516 | * attributes. | |
517 | */ | |
3afa3949 YL |
518 | if (page_size_mask & (1 << PG_LEVEL_1G)) { |
519 | pages++; | |
b27a43c1 | 520 | continue; |
3afa3949 | 521 | } |
b27a43c1 | 522 | prot = pte_pgprot(pte_clrhuge(*(pte_t *)pud)); |
ef925766 AK |
523 | } |
524 | ||
b50efd2a | 525 | if (page_size_mask & (1<<PG_LEVEL_1G)) { |
ce0c0e50 | 526 | pages++; |
8ae3a5a8 | 527 | spin_lock(&init_mm.page_table_lock); |
ef925766 AK |
528 | set_pte((pte_t *)pud, |
529 | pfn_pte(addr >> PAGE_SHIFT, PAGE_KERNEL_LARGE)); | |
8ae3a5a8 | 530 | spin_unlock(&init_mm.page_table_lock); |
cc615032 | 531 | last_map_addr = (addr & PUD_MASK) + PUD_SIZE; |
6ad91658 KM |
532 | continue; |
533 | } | |
534 | ||
dafe41ee | 535 | pmd = alloc_low_page(&pmd_phys); |
b27a43c1 SS |
536 | last_map_addr = phys_pmd_init(pmd, addr, end, page_size_mask, |
537 | prot); | |
4f9c11dd | 538 | unmap_low_page(pmd); |
8ae3a5a8 JB |
539 | |
540 | spin_lock(&init_mm.page_table_lock); | |
4f9c11dd | 541 | pud_populate(&init_mm, pud, __va(pmd_phys)); |
44df75e6 | 542 | spin_unlock(&init_mm.page_table_lock); |
1da177e4 | 543 | } |
1a2b4412 | 544 | __flush_tlb_all(); |
a2699e47 | 545 | |
ce0c0e50 | 546 | update_page_count(PG_LEVEL_1G, pages); |
cc615032 | 547 | |
1a0db38e | 548 | return last_map_addr; |
14a62c34 | 549 | } |
1da177e4 | 550 | |
4f9c11dd | 551 | static unsigned long __meminit |
b50efd2a YL |
552 | phys_pud_update(pgd_t *pgd, unsigned long addr, unsigned long end, |
553 | unsigned long page_size_mask) | |
4f9c11dd JF |
554 | { |
555 | pud_t *pud; | |
556 | ||
557 | pud = (pud_t *)pgd_page_vaddr(*pgd); | |
558 | ||
b50efd2a | 559 | return phys_pud_init(pud, addr, end, page_size_mask); |
4f9c11dd JF |
560 | } |
561 | ||
41d840e2 | 562 | unsigned long __meminit |
f765090a PE |
563 | kernel_physical_mapping_init(unsigned long start, |
564 | unsigned long end, | |
565 | unsigned long page_size_mask) | |
14a62c34 | 566 | { |
9b861528 | 567 | bool pgd_changed = false; |
b50efd2a | 568 | unsigned long next, last_map_addr = end; |
9b861528 | 569 | unsigned long addr; |
1da177e4 LT |
570 | |
571 | start = (unsigned long)__va(start); | |
572 | end = (unsigned long)__va(end); | |
1c5f50ee | 573 | addr = start; |
1da177e4 LT |
574 | |
575 | for (; start < end; start = next) { | |
44df75e6 | 576 | pgd_t *pgd = pgd_offset_k(start); |
14a62c34 | 577 | unsigned long pud_phys; |
44df75e6 MT |
578 | pud_t *pud; |
579 | ||
e22146e6 | 580 | next = (start + PGDIR_SIZE) & PGDIR_MASK; |
4f9c11dd JF |
581 | if (next > end) |
582 | next = end; | |
583 | ||
584 | if (pgd_val(*pgd)) { | |
b50efd2a YL |
585 | last_map_addr = phys_pud_update(pgd, __pa(start), |
586 | __pa(end), page_size_mask); | |
4f9c11dd JF |
587 | continue; |
588 | } | |
589 | ||
8ae3a5a8 | 590 | pud = alloc_low_page(&pud_phys); |
b50efd2a YL |
591 | last_map_addr = phys_pud_init(pud, __pa(start), __pa(next), |
592 | page_size_mask); | |
4f9c11dd | 593 | unmap_low_page(pud); |
8ae3a5a8 JB |
594 | |
595 | spin_lock(&init_mm.page_table_lock); | |
596 | pgd_populate(&init_mm, pgd, __va(pud_phys)); | |
597 | spin_unlock(&init_mm.page_table_lock); | |
9b861528 | 598 | pgd_changed = true; |
14a62c34 | 599 | } |
9b861528 HL |
600 | |
601 | if (pgd_changed) | |
602 | sync_global_pgds(addr, end); | |
603 | ||
a2699e47 | 604 | __flush_tlb_all(); |
1da177e4 | 605 | |
b50efd2a YL |
606 | return last_map_addr; |
607 | } | |
7b16eb89 | 608 | |
2b97690f | 609 | #ifndef CONFIG_NUMA |
8ee2debc DR |
610 | void __init initmem_init(unsigned long start_pfn, unsigned long end_pfn, |
611 | int acpi, int k8) | |
1f75d7e3 | 612 | { |
08677214 | 613 | #ifndef CONFIG_NO_BOOTMEM |
1f75d7e3 YL |
614 | unsigned long bootmap_size, bootmap; |
615 | ||
616 | bootmap_size = bootmem_bootmap_pages(end_pfn)<<PAGE_SHIFT; | |
617 | bootmap = find_e820_area(0, end_pfn<<PAGE_SHIFT, bootmap_size, | |
618 | PAGE_SIZE); | |
619 | if (bootmap == -1L) | |
620 | panic("Cannot find bootmem map of size %ld\n", bootmap_size); | |
1842f90c | 621 | reserve_early(bootmap, bootmap + bootmap_size, "BOOTMAP"); |
346cafec YL |
622 | /* don't touch min_low_pfn */ |
623 | bootmap_size = init_bootmem_node(NODE_DATA(0), bootmap >> PAGE_SHIFT, | |
624 | 0, end_pfn); | |
1f75d7e3 YL |
625 | e820_register_active_regions(0, start_pfn, end_pfn); |
626 | free_bootmem_with_active_regions(0, end_pfn); | |
08677214 YL |
627 | #else |
628 | e820_register_active_regions(0, start_pfn, end_pfn); | |
629 | #endif | |
1f75d7e3 | 630 | } |
3551f88f | 631 | #endif |
1f75d7e3 | 632 | |
1da177e4 LT |
633 | void __init paging_init(void) |
634 | { | |
6391af17 | 635 | unsigned long max_zone_pfns[MAX_NR_ZONES]; |
14a62c34 | 636 | |
6391af17 MG |
637 | memset(max_zone_pfns, 0, sizeof(max_zone_pfns)); |
638 | max_zone_pfns[ZONE_DMA] = MAX_DMA_PFN; | |
639 | max_zone_pfns[ZONE_DMA32] = MAX_DMA32_PFN; | |
c987d12f | 640 | max_zone_pfns[ZONE_NORMAL] = max_pfn; |
6391af17 | 641 | |
3551f88f | 642 | sparse_memory_present_with_active_regions(MAX_NUMNODES); |
44df75e6 | 643 | sparse_init(); |
44b57280 YL |
644 | |
645 | /* | |
646 | * clear the default setting with node 0 | |
647 | * note: don't use nodes_clear here, that is really clearing when | |
648 | * numa support is not compiled in, and later node_set_state | |
649 | * will not set it back. | |
650 | */ | |
651 | node_clear_state(0, N_NORMAL_MEMORY); | |
652 | ||
5cb248ab | 653 | free_area_init_nodes(max_zone_pfns); |
1da177e4 | 654 | } |
1da177e4 | 655 | |
44df75e6 MT |
656 | /* |
657 | * Memory hotplug specific functions | |
44df75e6 | 658 | */ |
bc02af93 | 659 | #ifdef CONFIG_MEMORY_HOTPLUG |
ea085417 SZ |
660 | /* |
661 | * After memory hotplug the variables max_pfn, max_low_pfn and high_memory need | |
662 | * updating. | |
663 | */ | |
664 | static void update_end_of_memory_vars(u64 start, u64 size) | |
665 | { | |
666 | unsigned long end_pfn = PFN_UP(start + size); | |
667 | ||
668 | if (end_pfn > max_pfn) { | |
669 | max_pfn = end_pfn; | |
670 | max_low_pfn = end_pfn; | |
671 | high_memory = (void *)__va(max_pfn * PAGE_SIZE - 1) + 1; | |
672 | } | |
673 | } | |
674 | ||
9d99aaa3 AK |
675 | /* |
676 | * Memory is added always to NORMAL zone. This means you will never get | |
677 | * additional DMA/DMA32 memory. | |
678 | */ | |
bc02af93 | 679 | int arch_add_memory(int nid, u64 start, u64 size) |
44df75e6 | 680 | { |
bc02af93 | 681 | struct pglist_data *pgdat = NODE_DATA(nid); |
776ed98b | 682 | struct zone *zone = pgdat->node_zones + ZONE_NORMAL; |
cc615032 | 683 | unsigned long last_mapped_pfn, start_pfn = start >> PAGE_SHIFT; |
44df75e6 MT |
684 | unsigned long nr_pages = size >> PAGE_SHIFT; |
685 | int ret; | |
686 | ||
60817c9b | 687 | last_mapped_pfn = init_memory_mapping(start, start + size); |
cc615032 AK |
688 | if (last_mapped_pfn > max_pfn_mapped) |
689 | max_pfn_mapped = last_mapped_pfn; | |
45e0b78b | 690 | |
c04fc586 | 691 | ret = __add_pages(nid, zone, start_pfn, nr_pages); |
fe8b868e | 692 | WARN_ON_ONCE(ret); |
44df75e6 | 693 | |
ea085417 SZ |
694 | /* update max_pfn, max_low_pfn and high_memory */ |
695 | update_end_of_memory_vars(start, size); | |
696 | ||
44df75e6 | 697 | return ret; |
44df75e6 | 698 | } |
bc02af93 | 699 | EXPORT_SYMBOL_GPL(arch_add_memory); |
44df75e6 | 700 | |
8243229f | 701 | #if !defined(CONFIG_ACPI_NUMA) && defined(CONFIG_NUMA) |
4942e998 KM |
702 | int memory_add_physaddr_to_nid(u64 start) |
703 | { | |
704 | return 0; | |
705 | } | |
8c2676a5 | 706 | EXPORT_SYMBOL_GPL(memory_add_physaddr_to_nid); |
4942e998 KM |
707 | #endif |
708 | ||
45e0b78b KM |
709 | #endif /* CONFIG_MEMORY_HOTPLUG */ |
710 | ||
81ac3ad9 | 711 | static struct kcore_list kcore_vsyscall; |
1da177e4 LT |
712 | |
713 | void __init mem_init(void) | |
714 | { | |
0a43e4bf | 715 | long codesize, reservedpages, datasize, initsize; |
11a6b0c9 | 716 | unsigned long absent_pages; |
1da177e4 | 717 | |
0dc243ae | 718 | pci_iommu_alloc(); |
1da177e4 | 719 | |
48ddb154 | 720 | /* clear_bss() already clear the empty_zero_page */ |
1da177e4 LT |
721 | |
722 | reservedpages = 0; | |
723 | ||
724 | /* this will put all low memory onto the freelists */ | |
2b97690f | 725 | #ifdef CONFIG_NUMA |
0a43e4bf | 726 | totalram_pages = numa_free_all_bootmem(); |
1da177e4 | 727 | #else |
0a43e4bf | 728 | totalram_pages = free_all_bootmem(); |
1da177e4 | 729 | #endif |
11a6b0c9 YL |
730 | |
731 | absent_pages = absent_pages_in_range(0, max_pfn); | |
732 | reservedpages = max_pfn - totalram_pages - absent_pages; | |
1da177e4 LT |
733 | after_bootmem = 1; |
734 | ||
735 | codesize = (unsigned long) &_etext - (unsigned long) &_text; | |
736 | datasize = (unsigned long) &_edata - (unsigned long) &_etext; | |
737 | initsize = (unsigned long) &__init_end - (unsigned long) &__init_begin; | |
738 | ||
739 | /* Register memory areas for /proc/kcore */ | |
14a62c34 | 740 | kclist_add(&kcore_vsyscall, (void *)VSYSCALL_START, |
c30bb2a2 | 741 | VSYSCALL_END - VSYSCALL_START, KCORE_OTHER); |
1da177e4 | 742 | |
10f22dde | 743 | printk(KERN_INFO "Memory: %luk/%luk available (%ldk kernel code, " |
11a6b0c9 | 744 | "%ldk absent, %ldk reserved, %ldk data, %ldk init)\n", |
cc013a88 | 745 | nr_free_pages() << (PAGE_SHIFT-10), |
c987d12f | 746 | max_pfn << (PAGE_SHIFT-10), |
1da177e4 | 747 | codesize >> 10, |
11a6b0c9 | 748 | absent_pages << (PAGE_SHIFT-10), |
1da177e4 LT |
749 | reservedpages << (PAGE_SHIFT-10), |
750 | datasize >> 10, | |
751 | initsize >> 10); | |
1da177e4 LT |
752 | } |
753 | ||
67df197b | 754 | #ifdef CONFIG_DEBUG_RODATA |
edeed305 AV |
755 | const int rodata_test_data = 0xC3; |
756 | EXPORT_SYMBOL_GPL(rodata_test_data); | |
67df197b | 757 | |
502f6604 | 758 | int kernel_set_to_readonly; |
16239630 SR |
759 | |
760 | void set_kernel_text_rw(void) | |
761 | { | |
b9af7c0d | 762 | unsigned long start = PFN_ALIGN(_text); |
e7d23dde | 763 | unsigned long end = PFN_ALIGN(__stop___ex_table); |
16239630 SR |
764 | |
765 | if (!kernel_set_to_readonly) | |
766 | return; | |
767 | ||
768 | pr_debug("Set kernel text: %lx - %lx for read write\n", | |
769 | start, end); | |
770 | ||
e7d23dde SS |
771 | /* |
772 | * Make the kernel identity mapping for text RW. Kernel text | |
773 | * mapping will always be RO. Refer to the comment in | |
774 | * static_protections() in pageattr.c | |
775 | */ | |
16239630 SR |
776 | set_memory_rw(start, (end - start) >> PAGE_SHIFT); |
777 | } | |
778 | ||
779 | void set_kernel_text_ro(void) | |
780 | { | |
b9af7c0d | 781 | unsigned long start = PFN_ALIGN(_text); |
e7d23dde | 782 | unsigned long end = PFN_ALIGN(__stop___ex_table); |
16239630 SR |
783 | |
784 | if (!kernel_set_to_readonly) | |
785 | return; | |
786 | ||
787 | pr_debug("Set kernel text: %lx - %lx for read only\n", | |
788 | start, end); | |
789 | ||
e7d23dde SS |
790 | /* |
791 | * Set the kernel identity mapping for text RO. | |
792 | */ | |
16239630 SR |
793 | set_memory_ro(start, (end - start) >> PAGE_SHIFT); |
794 | } | |
795 | ||
67df197b AV |
796 | void mark_rodata_ro(void) |
797 | { | |
74e08179 | 798 | unsigned long start = PFN_ALIGN(_text); |
8f0f996e SR |
799 | unsigned long rodata_start = |
800 | ((unsigned long)__start_rodata + PAGE_SIZE - 1) & PAGE_MASK; | |
74e08179 SS |
801 | unsigned long end = (unsigned long) &__end_rodata_hpage_align; |
802 | unsigned long text_end = PAGE_ALIGN((unsigned long) &__stop___ex_table); | |
803 | unsigned long rodata_end = PAGE_ALIGN((unsigned long) &__end_rodata); | |
804 | unsigned long data_start = (unsigned long) &_sdata; | |
8f0f996e | 805 | |
6fb14755 | 806 | printk(KERN_INFO "Write protecting the kernel read-only data: %luk\n", |
e3ebadd9 | 807 | (end - start) >> 10); |
984bb80d AV |
808 | set_memory_ro(start, (end - start) >> PAGE_SHIFT); |
809 | ||
16239630 SR |
810 | kernel_set_to_readonly = 1; |
811 | ||
984bb80d AV |
812 | /* |
813 | * The rodata section (but not the kernel text!) should also be | |
814 | * not-executable. | |
815 | */ | |
72b59d67 | 816 | set_memory_nx(rodata_start, (end - rodata_start) >> PAGE_SHIFT); |
67df197b | 817 | |
1a487252 AV |
818 | rodata_test(); |
819 | ||
0c42f392 | 820 | #ifdef CONFIG_CPA_DEBUG |
10f22dde | 821 | printk(KERN_INFO "Testing CPA: undo %lx-%lx\n", start, end); |
6d238cc4 | 822 | set_memory_rw(start, (end-start) >> PAGE_SHIFT); |
0c42f392 | 823 | |
10f22dde | 824 | printk(KERN_INFO "Testing CPA: again\n"); |
6d238cc4 | 825 | set_memory_ro(start, (end-start) >> PAGE_SHIFT); |
0c42f392 | 826 | #endif |
74e08179 SS |
827 | |
828 | free_init_pages("unused kernel memory", | |
829 | (unsigned long) page_address(virt_to_page(text_end)), | |
830 | (unsigned long) | |
831 | page_address(virt_to_page(rodata_start))); | |
832 | free_init_pages("unused kernel memory", | |
833 | (unsigned long) page_address(virt_to_page(rodata_end)), | |
834 | (unsigned long) page_address(virt_to_page(data_start))); | |
67df197b | 835 | } |
4e4eee0e | 836 | |
67df197b AV |
837 | #endif |
838 | ||
d2dbf343 YL |
839 | int __init reserve_bootmem_generic(unsigned long phys, unsigned long len, |
840 | int flags) | |
14a62c34 | 841 | { |
2b97690f | 842 | #ifdef CONFIG_NUMA |
8b3cd09e | 843 | int nid, next_nid; |
6a07a0ed | 844 | int ret; |
5e58a02a AK |
845 | #endif |
846 | unsigned long pfn = phys >> PAGE_SHIFT; | |
14a62c34 | 847 | |
c987d12f | 848 | if (pfn >= max_pfn) { |
14a62c34 TG |
849 | /* |
850 | * This can happen with kdump kernels when accessing | |
851 | * firmware tables: | |
852 | */ | |
67794292 | 853 | if (pfn < max_pfn_mapped) |
8b2ef1d7 | 854 | return -EFAULT; |
14a62c34 | 855 | |
6a07a0ed | 856 | printk(KERN_ERR "reserve_bootmem: illegal reserve %lx %lu\n", |
5e58a02a | 857 | phys, len); |
8b2ef1d7 | 858 | return -EFAULT; |
5e58a02a AK |
859 | } |
860 | ||
861 | /* Should check here against the e820 map to avoid double free */ | |
862 | #ifdef CONFIG_NUMA | |
8b3cd09e YL |
863 | nid = phys_to_nid(phys); |
864 | next_nid = phys_to_nid(phys + len - 1); | |
865 | if (nid == next_nid) | |
8b2ef1d7 | 866 | ret = reserve_bootmem_node(NODE_DATA(nid), phys, len, flags); |
8b3cd09e | 867 | else |
8b2ef1d7 BW |
868 | ret = reserve_bootmem(phys, len, flags); |
869 | ||
870 | if (ret != 0) | |
871 | return ret; | |
872 | ||
14a62c34 | 873 | #else |
a6a06f7b | 874 | reserve_bootmem(phys, len, flags); |
1da177e4 | 875 | #endif |
8b3cd09e | 876 | |
0e0b864e | 877 | if (phys+len <= MAX_DMA_PFN*PAGE_SIZE) { |
e18c6874 | 878 | dma_reserve += len / PAGE_SIZE; |
0e0b864e MG |
879 | set_dma_reserve(dma_reserve); |
880 | } | |
8b2ef1d7 BW |
881 | |
882 | return 0; | |
1da177e4 LT |
883 | } |
884 | ||
14a62c34 TG |
885 | int kern_addr_valid(unsigned long addr) |
886 | { | |
1da177e4 | 887 | unsigned long above = ((long)addr) >> __VIRTUAL_MASK_SHIFT; |
14a62c34 TG |
888 | pgd_t *pgd; |
889 | pud_t *pud; | |
890 | pmd_t *pmd; | |
891 | pte_t *pte; | |
1da177e4 LT |
892 | |
893 | if (above != 0 && above != -1UL) | |
14a62c34 TG |
894 | return 0; |
895 | ||
1da177e4 LT |
896 | pgd = pgd_offset_k(addr); |
897 | if (pgd_none(*pgd)) | |
898 | return 0; | |
899 | ||
900 | pud = pud_offset(pgd, addr); | |
901 | if (pud_none(*pud)) | |
14a62c34 | 902 | return 0; |
1da177e4 LT |
903 | |
904 | pmd = pmd_offset(pud, addr); | |
905 | if (pmd_none(*pmd)) | |
906 | return 0; | |
14a62c34 | 907 | |
1da177e4 LT |
908 | if (pmd_large(*pmd)) |
909 | return pfn_valid(pmd_pfn(*pmd)); | |
910 | ||
911 | pte = pte_offset_kernel(pmd, addr); | |
912 | if (pte_none(*pte)) | |
913 | return 0; | |
14a62c34 | 914 | |
1da177e4 LT |
915 | return pfn_valid(pte_pfn(*pte)); |
916 | } | |
917 | ||
14a62c34 TG |
918 | /* |
919 | * A pseudo VMA to allow ptrace access for the vsyscall page. This only | |
920 | * covers the 64bit vsyscall page now. 32bit has a real VMA now and does | |
921 | * not need special handling anymore: | |
922 | */ | |
1da177e4 | 923 | static struct vm_area_struct gate_vma = { |
14a62c34 TG |
924 | .vm_start = VSYSCALL_START, |
925 | .vm_end = VSYSCALL_START + (VSYSCALL_MAPPED_PAGES * PAGE_SIZE), | |
926 | .vm_page_prot = PAGE_READONLY_EXEC, | |
927 | .vm_flags = VM_READ | VM_EXEC | |
1da177e4 LT |
928 | }; |
929 | ||
1da177e4 LT |
930 | struct vm_area_struct *get_gate_vma(struct task_struct *tsk) |
931 | { | |
932 | #ifdef CONFIG_IA32_EMULATION | |
1e014410 AK |
933 | if (test_tsk_thread_flag(tsk, TIF_IA32)) |
934 | return NULL; | |
1da177e4 LT |
935 | #endif |
936 | return &gate_vma; | |
937 | } | |
938 | ||
939 | int in_gate_area(struct task_struct *task, unsigned long addr) | |
940 | { | |
941 | struct vm_area_struct *vma = get_gate_vma(task); | |
14a62c34 | 942 | |
1e014410 AK |
943 | if (!vma) |
944 | return 0; | |
14a62c34 | 945 | |
1da177e4 LT |
946 | return (addr >= vma->vm_start) && (addr < vma->vm_end); |
947 | } | |
948 | ||
14a62c34 TG |
949 | /* |
950 | * Use this when you have no reliable task/vma, typically from interrupt | |
951 | * context. It is less reliable than using the task's vma and may give | |
952 | * false positives: | |
1da177e4 LT |
953 | */ |
954 | int in_gate_area_no_task(unsigned long addr) | |
955 | { | |
1e014410 | 956 | return (addr >= VSYSCALL_START) && (addr < VSYSCALL_END); |
1da177e4 | 957 | } |
2e1c49db | 958 | |
2aae950b AK |
959 | const char *arch_vma_name(struct vm_area_struct *vma) |
960 | { | |
961 | if (vma->vm_mm && vma->vm_start == (long)vma->vm_mm->context.vdso) | |
962 | return "[vdso]"; | |
963 | if (vma == &gate_vma) | |
964 | return "[vsyscall]"; | |
965 | return NULL; | |
966 | } | |
0889eba5 CL |
967 | |
968 | #ifdef CONFIG_SPARSEMEM_VMEMMAP | |
969 | /* | |
970 | * Initialise the sparsemem vmemmap using huge-pages at the PMD level. | |
971 | */ | |
c2b91e2e YL |
972 | static long __meminitdata addr_start, addr_end; |
973 | static void __meminitdata *p_start, *p_end; | |
974 | static int __meminitdata node_start; | |
975 | ||
14a62c34 TG |
976 | int __meminit |
977 | vmemmap_populate(struct page *start_page, unsigned long size, int node) | |
0889eba5 CL |
978 | { |
979 | unsigned long addr = (unsigned long)start_page; | |
980 | unsigned long end = (unsigned long)(start_page + size); | |
981 | unsigned long next; | |
982 | pgd_t *pgd; | |
983 | pud_t *pud; | |
984 | pmd_t *pmd; | |
985 | ||
986 | for (; addr < end; addr = next) { | |
7c934d39 | 987 | void *p = NULL; |
0889eba5 CL |
988 | |
989 | pgd = vmemmap_pgd_populate(addr, node); | |
990 | if (!pgd) | |
991 | return -ENOMEM; | |
14a62c34 | 992 | |
0889eba5 CL |
993 | pud = vmemmap_pud_populate(pgd, addr, node); |
994 | if (!pud) | |
995 | return -ENOMEM; | |
996 | ||
7c934d39 JF |
997 | if (!cpu_has_pse) { |
998 | next = (addr + PAGE_SIZE) & PAGE_MASK; | |
999 | pmd = vmemmap_pmd_populate(pud, addr, node); | |
1000 | ||
1001 | if (!pmd) | |
1002 | return -ENOMEM; | |
1003 | ||
1004 | p = vmemmap_pte_populate(pmd, addr, node); | |
14a62c34 | 1005 | |
0889eba5 CL |
1006 | if (!p) |
1007 | return -ENOMEM; | |
1008 | ||
7c934d39 JF |
1009 | addr_end = addr + PAGE_SIZE; |
1010 | p_end = p + PAGE_SIZE; | |
14a62c34 | 1011 | } else { |
7c934d39 JF |
1012 | next = pmd_addr_end(addr, end); |
1013 | ||
1014 | pmd = pmd_offset(pud, addr); | |
1015 | if (pmd_none(*pmd)) { | |
1016 | pte_t entry; | |
1017 | ||
9bdac914 | 1018 | p = vmemmap_alloc_block_buf(PMD_SIZE, node); |
7c934d39 JF |
1019 | if (!p) |
1020 | return -ENOMEM; | |
1021 | ||
1022 | entry = pfn_pte(__pa(p) >> PAGE_SHIFT, | |
1023 | PAGE_KERNEL_LARGE); | |
1024 | set_pmd(pmd, __pmd(pte_val(entry))); | |
1025 | ||
7c934d39 JF |
1026 | /* check to see if we have contiguous blocks */ |
1027 | if (p_end != p || node_start != node) { | |
1028 | if (p_start) | |
1029 | printk(KERN_DEBUG " [%lx-%lx] PMD -> [%p-%p] on node %d\n", | |
1030 | addr_start, addr_end-1, p_start, p_end-1, node_start); | |
1031 | addr_start = addr; | |
1032 | node_start = node; | |
1033 | p_start = p; | |
1034 | } | |
49c980df YL |
1035 | |
1036 | addr_end = addr + PMD_SIZE; | |
1037 | p_end = p + PMD_SIZE; | |
7c934d39 JF |
1038 | } else |
1039 | vmemmap_verify((pte_t *)pmd, node, addr, next); | |
14a62c34 | 1040 | } |
7c934d39 | 1041 | |
0889eba5 | 1042 | } |
9b861528 | 1043 | sync_global_pgds((unsigned long)start_page, end); |
0889eba5 CL |
1044 | return 0; |
1045 | } | |
c2b91e2e YL |
1046 | |
1047 | void __meminit vmemmap_populate_print_last(void) | |
1048 | { | |
1049 | if (p_start) { | |
1050 | printk(KERN_DEBUG " [%lx-%lx] PMD -> [%p-%p] on node %d\n", | |
1051 | addr_start, addr_end-1, p_start, p_end-1, node_start); | |
1052 | p_start = NULL; | |
1053 | p_end = NULL; | |
1054 | node_start = 0; | |
1055 | } | |
1056 | } | |
0889eba5 | 1057 | #endif |