blob: c96314abd144ca91cfcccaba72352ad0fdc6cf5b [file] [log] [blame]
Jeremy Fitzhardinge4f76cd32008-03-17 16:36:55 -07001#include <linux/mm.h>
Tejun Heo5a0e3ad2010-03-24 17:04:11 +09002#include <linux/gfp.h>
Jeremy Fitzhardinge4f76cd32008-03-17 16:36:55 -07003#include <asm/pgalloc.h>
Jeremy Fitzhardingeee5aa8d2008-03-17 16:37:03 -07004#include <asm/pgtable.h>
Jeremy Fitzhardinge4f76cd32008-03-17 16:36:55 -07005#include <asm/tlb.h>
Ingo Molnara1d5a862008-06-20 15:34:46 +02006#include <asm/fixmap.h>
Jeremy Fitzhardinge4f76cd32008-03-17 16:36:55 -07007
Vegard Nossum9e730232009-02-22 11:28:25 +01008#define PGALLOC_GFP GFP_KERNEL | __GFP_NOTRACK | __GFP_REPEAT | __GFP_ZERO
9
Ian Campbell14315592010-02-17 10:38:10 +000010#ifdef CONFIG_HIGHPTE
11#define PGALLOC_USER_GFP __GFP_HIGHMEM
12#else
13#define PGALLOC_USER_GFP 0
14#endif
15
16gfp_t __userpte_alloc_gfp = PGALLOC_GFP | PGALLOC_USER_GFP;
17
Jeremy Fitzhardinge4f76cd32008-03-17 16:36:55 -070018pte_t *pte_alloc_one_kernel(struct mm_struct *mm, unsigned long address)
19{
Vegard Nossum9e730232009-02-22 11:28:25 +010020 return (pte_t *)__get_free_page(PGALLOC_GFP);
Jeremy Fitzhardinge4f76cd32008-03-17 16:36:55 -070021}
22
23pgtable_t pte_alloc_one(struct mm_struct *mm, unsigned long address)
24{
25 struct page *pte;
26
Ian Campbell14315592010-02-17 10:38:10 +000027 pte = alloc_pages(__userpte_alloc_gfp, 0);
Kirill A. Shutemovcecbd1b2013-11-14 14:31:47 -080028 if (!pte)
29 return NULL;
30 if (!pgtable_page_ctor(pte)) {
31 __free_page(pte);
32 return NULL;
33 }
Jeremy Fitzhardinge4f76cd32008-03-17 16:36:55 -070034 return pte;
35}
36
Ian Campbell14315592010-02-17 10:38:10 +000037static int __init setup_userpte(char *arg)
38{
39 if (!arg)
40 return -EINVAL;
41
42 /*
43 * "userpte=nohigh" disables allocation of user pagetables in
44 * high memory.
45 */
46 if (strcmp(arg, "nohigh") == 0)
47 __userpte_alloc_gfp &= ~__GFP_HIGHMEM;
48 else
49 return -EINVAL;
50 return 0;
51}
52early_param("userpte", setup_userpte);
53
Benjamin Herrenschmidt9e1b32c2009-07-22 15:44:28 +100054void ___pte_free_tlb(struct mmu_gather *tlb, struct page *pte)
Jeremy Fitzhardinge397f6872008-03-17 16:36:57 -070055{
56 pgtable_page_dtor(pte);
Jeremy Fitzhardinge6944a9c2008-03-17 16:37:01 -070057 paravirt_release_pte(page_to_pfn(pte));
Jeremy Fitzhardinge397f6872008-03-17 16:36:57 -070058 tlb_remove_page(tlb, pte);
59}
60
Jeremy Fitzhardinge170fdff2008-03-17 16:36:58 -070061#if PAGETABLE_LEVELS > 2
Benjamin Herrenschmidt9e1b32c2009-07-22 15:44:28 +100062void ___pmd_free_tlb(struct mmu_gather *tlb, pmd_t *pmd)
Jeremy Fitzhardinge170fdff2008-03-17 16:36:58 -070063{
Kirill A. Shutemovc2836102013-11-21 14:32:09 -080064 struct page *page = virt_to_page(pmd);
Jeremy Fitzhardinge6944a9c2008-03-17 16:37:01 -070065 paravirt_release_pmd(__pa(pmd) >> PAGE_SHIFT);
Dave Hansen1de14c32013-04-12 16:23:54 -070066 /*
67 * NOTE! For PAE, any changes to the top page-directory-pointer-table
68 * entries need a full cr3 reload to flush.
69 */
70#ifdef CONFIG_X86_PAE
71 tlb->need_flush_all = 1;
72#endif
Kirill A. Shutemovc2836102013-11-21 14:32:09 -080073 pgtable_pmd_page_dtor(page);
74 tlb_remove_page(tlb, page);
Jeremy Fitzhardinge170fdff2008-03-17 16:36:58 -070075}
Jeremy Fitzhardinge5a5f8f42008-03-17 16:36:59 -070076
77#if PAGETABLE_LEVELS > 3
Benjamin Herrenschmidt9e1b32c2009-07-22 15:44:28 +100078void ___pud_free_tlb(struct mmu_gather *tlb, pud_t *pud)
Jeremy Fitzhardinge5a5f8f42008-03-17 16:36:59 -070079{
Jeremy Fitzhardinge2761fa02008-03-17 16:37:02 -070080 paravirt_release_pud(__pa(pud) >> PAGE_SHIFT);
Jeremy Fitzhardinge5a5f8f42008-03-17 16:36:59 -070081 tlb_remove_page(tlb, virt_to_page(pud));
82}
83#endif /* PAGETABLE_LEVELS > 3 */
Jeremy Fitzhardinge170fdff2008-03-17 16:36:58 -070084#endif /* PAGETABLE_LEVELS > 2 */
85
Jeremy Fitzhardinge4f76cd32008-03-17 16:36:55 -070086static inline void pgd_list_add(pgd_t *pgd)
87{
88 struct page *page = virt_to_page(pgd);
Jeremy Fitzhardinge4f76cd32008-03-17 16:36:55 -070089
Jeremy Fitzhardinge4f76cd32008-03-17 16:36:55 -070090 list_add(&page->lru, &pgd_list);
Jeremy Fitzhardinge4f76cd32008-03-17 16:36:55 -070091}
92
93static inline void pgd_list_del(pgd_t *pgd)
94{
95 struct page *page = virt_to_page(pgd);
Jeremy Fitzhardinge4f76cd32008-03-17 16:36:55 -070096
Jeremy Fitzhardinge4f76cd32008-03-17 16:36:55 -070097 list_del(&page->lru);
Jeremy Fitzhardinge4f76cd32008-03-17 16:36:55 -070098}
99
Jeremy Fitzhardinge4f76cd32008-03-17 16:36:55 -0700100#define UNSHARED_PTRS_PER_PGD \
Jeremy Fitzhardinge68db0652008-03-17 16:37:13 -0700101 (SHARED_KERNEL_PMD ? KERNEL_PGD_BOUNDARY : PTRS_PER_PGD)
Jeremy Fitzhardinge4f76cd32008-03-17 16:36:55 -0700102
Jeremy Fitzhardinge617d34d2010-09-21 12:01:51 -0700103
104static void pgd_set_mm(pgd_t *pgd, struct mm_struct *mm)
105{
106 BUILD_BUG_ON(sizeof(virt_to_page(pgd)->index) < sizeof(mm));
107 virt_to_page(pgd)->index = (pgoff_t)mm;
108}
109
110struct mm_struct *pgd_page_get_mm(struct page *page)
111{
112 return (struct mm_struct *)page->index;
113}
114
115static void pgd_ctor(struct mm_struct *mm, pgd_t *pgd)
Jeremy Fitzhardinge4f76cd32008-03-17 16:36:55 -0700116{
Jeremy Fitzhardinge4f76cd32008-03-17 16:36:55 -0700117 /* If the pgd points to a shared pagetable level (either the
118 ptes in non-PAE, or shared PMD in PAE), then just copy the
119 references from swapper_pg_dir. */
120 if (PAGETABLE_LEVELS == 2 ||
Jeremy Fitzhardinge85958b42008-03-17 16:37:14 -0700121 (PAGETABLE_LEVELS == 3 && SHARED_KERNEL_PMD) ||
122 PAGETABLE_LEVELS == 4) {
Jeremy Fitzhardinge68db0652008-03-17 16:37:13 -0700123 clone_pgd_range(pgd + KERNEL_PGD_BOUNDARY,
124 swapper_pg_dir + KERNEL_PGD_BOUNDARY,
Jeremy Fitzhardinge4f76cd32008-03-17 16:36:55 -0700125 KERNEL_PGD_PTRS);
Jeremy Fitzhardinge4f76cd32008-03-17 16:36:55 -0700126 }
127
128 /* list required to sync kernel mapping updates */
Jeremy Fitzhardinge617d34d2010-09-21 12:01:51 -0700129 if (!SHARED_KERNEL_PMD) {
130 pgd_set_mm(pgd, mm);
Jeremy Fitzhardinge4f76cd32008-03-17 16:36:55 -0700131 pgd_list_add(pgd);
Jeremy Fitzhardinge617d34d2010-09-21 12:01:51 -0700132 }
Jeremy Fitzhardinge4f76cd32008-03-17 16:36:55 -0700133}
134
Jan Beulich17b74622008-08-29 12:51:32 +0100135static void pgd_dtor(pgd_t *pgd)
Jeremy Fitzhardinge4f76cd32008-03-17 16:36:55 -0700136{
Jeremy Fitzhardinge4f76cd32008-03-17 16:36:55 -0700137 if (SHARED_KERNEL_PMD)
138 return;
139
Andrea Arcangelia79e53d2011-02-16 15:45:22 -0800140 spin_lock(&pgd_lock);
Jeremy Fitzhardinge4f76cd32008-03-17 16:36:55 -0700141 pgd_list_del(pgd);
Andrea Arcangelia79e53d2011-02-16 15:45:22 -0800142 spin_unlock(&pgd_lock);
Jeremy Fitzhardinge4f76cd32008-03-17 16:36:55 -0700143}
144
Jeremy Fitzhardinge85958b42008-03-17 16:37:14 -0700145/*
146 * List of all pgd's needed for non-PAE so it can invalidate entries
147 * in both cached and uncached pgd's; not needed for PAE since the
148 * kernel pmd is shared. If PAE were not to share the pmd a similar
149 * tactic would be needed. This is essentially codepath-based locking
150 * against pageattr.c; it is the unique case in which a valid change
151 * of kernel pagetables can't be lazily synchronized by vmalloc faults.
152 * vmalloc faults work because attached pagetables are never freed.
Nadia Yvette Chambers6d49e352012-12-06 10:39:54 +0100153 * -- nyc
Jeremy Fitzhardinge85958b42008-03-17 16:37:14 -0700154 */
155
Jeremy Fitzhardinge4f76cd32008-03-17 16:36:55 -0700156#ifdef CONFIG_X86_PAE
157/*
Jeremy Fitzhardinge4f76cd32008-03-17 16:36:55 -0700158 * In PAE mode, we need to do a cr3 reload (=tlb flush) when
159 * updating the top-level pagetable entries to guarantee the
160 * processor notices the update. Since this is expensive, and
161 * all 4 top-level entries are used almost immediately in a
162 * new process's life, we just pre-populate them here.
163 *
164 * Also, if we're in a paravirt environment where the kernel pmd is
165 * not shared between pagetables (!SHARED_KERNEL_PMDS), we allocate
166 * and initialize the kernel pmds here.
167 */
Jeremy Fitzhardinged8d59002008-06-25 00:19:13 -0400168#define PREALLOCATED_PMDS UNSHARED_PTRS_PER_PGD
Ingo Molnar1ec1fe72008-03-19 20:30:40 +0100169
170void pud_populate(struct mm_struct *mm, pud_t *pudp, pmd_t *pmd)
171{
Jeremy Fitzhardinge6944a9c2008-03-17 16:37:01 -0700172 paravirt_alloc_pmd(mm, __pa(pmd) >> PAGE_SHIFT);
Ingo Molnar1ec1fe72008-03-19 20:30:40 +0100173
174 /* Note: almost everything apart from _PAGE_PRESENT is
175 reserved at the pmd (PDPT) level. */
176 set_pud(pudp, __pud(__pa(pmd) | _PAGE_PRESENT));
177
178 /*
179 * According to Intel App note "TLBs, Paging-Structure Caches,
180 * and Their Invalidation", April 2007, document 317080-001,
181 * section 8.1: in PAE mode we explicitly have to flush the
182 * TLB via cr3 if the top-level pgd is changed...
183 */
Shaohua Li4981d012011-03-16 11:37:29 +0800184 flush_tlb_mm(mm);
Ingo Molnar1ec1fe72008-03-19 20:30:40 +0100185}
Jeremy Fitzhardinge4f76cd32008-03-17 16:36:55 -0700186#else /* !CONFIG_X86_PAE */
Jeremy Fitzhardinged8d59002008-06-25 00:19:13 -0400187
Jeremy Fitzhardinge4f76cd32008-03-17 16:36:55 -0700188/* No need to prepopulate any pagetable entries in non-PAE modes. */
Jeremy Fitzhardinged8d59002008-06-25 00:19:13 -0400189#define PREALLOCATED_PMDS 0
190
191#endif /* CONFIG_X86_PAE */
192
193static void free_pmds(pmd_t *pmds[])
Jeremy Fitzhardinge4f76cd32008-03-17 16:36:55 -0700194{
Jeremy Fitzhardinged8d59002008-06-25 00:19:13 -0400195 int i;
196
197 for(i = 0; i < PREALLOCATED_PMDS; i++)
Kirill A. Shutemov09ef4932013-11-14 14:31:13 -0800198 if (pmds[i]) {
199 pgtable_pmd_page_dtor(virt_to_page(pmds[i]));
Jeremy Fitzhardinged8d59002008-06-25 00:19:13 -0400200 free_page((unsigned long)pmds[i]);
Kirill A. Shutemov09ef4932013-11-14 14:31:13 -0800201 }
Jeremy Fitzhardinge4f76cd32008-03-17 16:36:55 -0700202}
203
Jeremy Fitzhardinged8d59002008-06-25 00:19:13 -0400204static int preallocate_pmds(pmd_t *pmds[])
Jeremy Fitzhardinge4f76cd32008-03-17 16:36:55 -0700205{
Jeremy Fitzhardinged8d59002008-06-25 00:19:13 -0400206 int i;
207 bool failed = false;
208
209 for(i = 0; i < PREALLOCATED_PMDS; i++) {
Vegard Nossum9e730232009-02-22 11:28:25 +0100210 pmd_t *pmd = (pmd_t *)__get_free_page(PGALLOC_GFP);
Kirill A. Shutemov09ef4932013-11-14 14:31:13 -0800211 if (!pmd)
Jeremy Fitzhardinged8d59002008-06-25 00:19:13 -0400212 failed = true;
Kirill A. Shutemov09ef4932013-11-14 14:31:13 -0800213 if (pmd && !pgtable_pmd_page_ctor(virt_to_page(pmd))) {
Al Viro2a46eed2013-11-20 22:16:36 +0000214 free_page((unsigned long)pmd);
Kirill A. Shutemov09ef4932013-11-14 14:31:13 -0800215 pmd = NULL;
216 failed = true;
217 }
Jeremy Fitzhardinged8d59002008-06-25 00:19:13 -0400218 pmds[i] = pmd;
219 }
220
221 if (failed) {
222 free_pmds(pmds);
223 return -ENOMEM;
224 }
225
226 return 0;
Jeremy Fitzhardinge4f76cd32008-03-17 16:36:55 -0700227}
Jeremy Fitzhardinged8d59002008-06-25 00:19:13 -0400228
229/*
230 * Mop up any pmd pages which may still be attached to the pgd.
231 * Normally they will be freed by munmap/exit_mmap, but any pmd we
232 * preallocate which never got a corresponding vma will need to be
233 * freed manually.
234 */
235static void pgd_mop_up_pmds(struct mm_struct *mm, pgd_t *pgdp)
236{
237 int i;
238
239 for(i = 0; i < PREALLOCATED_PMDS; i++) {
240 pgd_t pgd = pgdp[i];
241
242 if (pgd_val(pgd) != 0) {
243 pmd_t *pmd = (pmd_t *)pgd_page_vaddr(pgd);
244
245 pgdp[i] = native_make_pgd(0);
246
247 paravirt_release_pmd(pgd_val(pgd) >> PAGE_SHIFT);
248 pmd_free(mm, pmd);
249 }
250 }
251}
252
253static void pgd_prepopulate_pmd(struct mm_struct *mm, pgd_t *pgd, pmd_t *pmds[])
254{
255 pud_t *pud;
Jeremy Fitzhardinged8d59002008-06-25 00:19:13 -0400256 int i;
257
Jeremy Fitzhardingecf3e5052008-08-08 13:46:07 -0700258 if (PREALLOCATED_PMDS == 0) /* Work around gcc-3.4.x bug */
259 return;
260
Jeremy Fitzhardinged8d59002008-06-25 00:19:13 -0400261 pud = pud_offset(pgd, 0);
262
Wanpeng Li73b44ff2013-07-08 16:00:17 -0700263 for (i = 0; i < PREALLOCATED_PMDS; i++, pud++) {
Jeremy Fitzhardinged8d59002008-06-25 00:19:13 -0400264 pmd_t *pmd = pmds[i];
265
266 if (i >= KERNEL_PGD_BOUNDARY)
267 memcpy(pmd, (pmd_t *)pgd_page_vaddr(swapper_pg_dir[i]),
268 sizeof(pmd_t) * PTRS_PER_PMD);
269
270 pud_populate(mm, pud, pmd);
271 }
272}
Jeremy Fitzhardinge4f76cd32008-03-17 16:36:55 -0700273
274pgd_t *pgd_alloc(struct mm_struct *mm)
275{
Jeremy Fitzhardinged8d59002008-06-25 00:19:13 -0400276 pgd_t *pgd;
277 pmd_t *pmds[PREALLOCATED_PMDS];
Jeremy Fitzhardinge4f76cd32008-03-17 16:36:55 -0700278
Vegard Nossum9e730232009-02-22 11:28:25 +0100279 pgd = (pgd_t *)__get_free_page(PGALLOC_GFP);
Jeremy Fitzhardinged8d59002008-06-25 00:19:13 -0400280
281 if (pgd == NULL)
282 goto out;
283
Jeremy Fitzhardinge4f76cd32008-03-17 16:36:55 -0700284 mm->pgd = pgd;
Jeremy Fitzhardinge4f76cd32008-03-17 16:36:55 -0700285
Jeremy Fitzhardinged8d59002008-06-25 00:19:13 -0400286 if (preallocate_pmds(pmds) != 0)
287 goto out_free_pgd;
288
289 if (paravirt_pgd_alloc(mm) != 0)
290 goto out_free_pmds;
291
292 /*
293 * Make sure that pre-populating the pmds is atomic with
294 * respect to anything walking the pgd_list, so that they
295 * never see a partially populated pgd.
296 */
Andrea Arcangelia79e53d2011-02-16 15:45:22 -0800297 spin_lock(&pgd_lock);
Jeremy Fitzhardinged8d59002008-06-25 00:19:13 -0400298
Jeremy Fitzhardinge617d34d2010-09-21 12:01:51 -0700299 pgd_ctor(mm, pgd);
Jeremy Fitzhardinged8d59002008-06-25 00:19:13 -0400300 pgd_prepopulate_pmd(mm, pgd, pmds);
301
Andrea Arcangelia79e53d2011-02-16 15:45:22 -0800302 spin_unlock(&pgd_lock);
Jeremy Fitzhardinge4f76cd32008-03-17 16:36:55 -0700303
304 return pgd;
Jeremy Fitzhardinged8d59002008-06-25 00:19:13 -0400305
306out_free_pmds:
307 free_pmds(pmds);
308out_free_pgd:
309 free_page((unsigned long)pgd);
310out:
311 return NULL;
Jeremy Fitzhardinge4f76cd32008-03-17 16:36:55 -0700312}
313
314void pgd_free(struct mm_struct *mm, pgd_t *pgd)
315{
316 pgd_mop_up_pmds(mm, pgd);
317 pgd_dtor(pgd);
Jeremy Fitzhardingeeba00452008-06-25 00:19:12 -0400318 paravirt_pgd_free(mm, pgd);
Jeremy Fitzhardinge4f76cd32008-03-17 16:36:55 -0700319 free_page((unsigned long)pgd);
320}
Jeremy Fitzhardingeee5aa8d2008-03-17 16:37:03 -0700321
Rik van Riel0f9a9212012-11-06 09:54:47 +0000322/*
323 * Used to set accessed or dirty bits in the page table entries
324 * on other architectures. On x86, the accessed and dirty bits
325 * are tracked by hardware. However, do_wp_page calls this function
326 * to also make the pte writeable at the same time the dirty bit is
327 * set. In that case we do actually need to write the PTE.
328 */
Jeremy Fitzhardingeee5aa8d2008-03-17 16:37:03 -0700329int ptep_set_access_flags(struct vm_area_struct *vma,
330 unsigned long address, pte_t *ptep,
331 pte_t entry, int dirty)
332{
333 int changed = !pte_same(*ptep, entry);
334
335 if (changed && dirty) {
336 *ptep = entry;
337 pte_update_defer(vma->vm_mm, address, ptep);
Jeremy Fitzhardingeee5aa8d2008-03-17 16:37:03 -0700338 }
339
340 return changed;
341}
Jeremy Fitzhardingef9fbf1a2008-03-17 16:37:04 -0700342
Andrea Arcangelidb3eb96f2011-01-13 15:46:41 -0800343#ifdef CONFIG_TRANSPARENT_HUGEPAGE
344int pmdp_set_access_flags(struct vm_area_struct *vma,
345 unsigned long address, pmd_t *pmdp,
346 pmd_t entry, int dirty)
347{
348 int changed = !pmd_same(*pmdp, entry);
349
350 VM_BUG_ON(address & ~HPAGE_PMD_MASK);
351
352 if (changed && dirty) {
353 *pmdp = entry;
354 pmd_update_defer(vma->vm_mm, address, pmdp);
Ingo Molnar5e4bf1a2012-11-20 13:02:51 +0100355 /*
356 * We had a write-protection fault here and changed the pmd
357 * to to more permissive. No need to flush the TLB for that,
358 * #PF is architecturally guaranteed to do that and in the
359 * worst-case we'll generate a spurious fault.
360 */
Andrea Arcangelidb3eb96f2011-01-13 15:46:41 -0800361 }
362
363 return changed;
364}
365#endif
366
Jeremy Fitzhardingef9fbf1a2008-03-17 16:37:04 -0700367int ptep_test_and_clear_young(struct vm_area_struct *vma,
368 unsigned long addr, pte_t *ptep)
369{
370 int ret = 0;
371
372 if (pte_young(*ptep))
373 ret = test_and_clear_bit(_PAGE_BIT_ACCESSED,
Thomas Gleixner48e23952008-05-24 17:24:34 +0200374 (unsigned long *) &ptep->pte);
Jeremy Fitzhardingef9fbf1a2008-03-17 16:37:04 -0700375
376 if (ret)
377 pte_update(vma->vm_mm, addr, ptep);
378
379 return ret;
380}
Jeremy Fitzhardingec20311e2008-03-17 16:37:05 -0700381
Andrea Arcangelidb3eb96f2011-01-13 15:46:41 -0800382#ifdef CONFIG_TRANSPARENT_HUGEPAGE
383int pmdp_test_and_clear_young(struct vm_area_struct *vma,
384 unsigned long addr, pmd_t *pmdp)
385{
386 int ret = 0;
387
388 if (pmd_young(*pmdp))
389 ret = test_and_clear_bit(_PAGE_BIT_ACCESSED,
Johannes Weinerf2d6bfe2011-01-13 15:47:01 -0800390 (unsigned long *)pmdp);
Andrea Arcangelidb3eb96f2011-01-13 15:46:41 -0800391
392 if (ret)
393 pmd_update(vma->vm_mm, addr, pmdp);
394
395 return ret;
396}
397#endif
398
Jeremy Fitzhardingec20311e2008-03-17 16:37:05 -0700399int ptep_clear_flush_young(struct vm_area_struct *vma,
400 unsigned long address, pte_t *ptep)
401{
402 int young;
403
404 young = ptep_test_and_clear_young(vma, address, ptep);
405 if (young)
406 flush_tlb_page(vma, address);
407
408 return young;
409}
Jeremy Fitzhardinge7c7e6e02008-06-17 11:41:54 -0700410
Andrea Arcangelidb3eb96f2011-01-13 15:46:41 -0800411#ifdef CONFIG_TRANSPARENT_HUGEPAGE
412int pmdp_clear_flush_young(struct vm_area_struct *vma,
413 unsigned long address, pmd_t *pmdp)
414{
415 int young;
416
417 VM_BUG_ON(address & ~HPAGE_PMD_MASK);
418
419 young = pmdp_test_and_clear_young(vma, address, pmdp);
420 if (young)
421 flush_tlb_range(vma, address, address + HPAGE_PMD_SIZE);
422
423 return young;
424}
425
426void pmdp_splitting_flush(struct vm_area_struct *vma,
427 unsigned long address, pmd_t *pmdp)
428{
429 int set;
430 VM_BUG_ON(address & ~HPAGE_PMD_MASK);
431 set = !test_and_set_bit(_PAGE_BIT_SPLITTING,
Johannes Weinerf2d6bfe2011-01-13 15:47:01 -0800432 (unsigned long *)pmdp);
Andrea Arcangelidb3eb96f2011-01-13 15:46:41 -0800433 if (set) {
434 pmd_update(vma->vm_mm, address, pmdp);
435 /* need tlb flush only to serialize against gup-fast */
436 flush_tlb_range(vma, address, address + HPAGE_PMD_SIZE);
437 }
438}
439#endif
440
Gustavo F. Padovanfd862dd2009-02-15 21:48:54 -0300441/**
442 * reserve_top_address - reserves a hole in the top of kernel address space
443 * @reserve - size of hole to reserve
444 *
445 * Can be used to relocate the fixmap area and poke a hole in the top
446 * of kernel address space to make room for a hypervisor.
447 */
448void __init reserve_top_address(unsigned long reserve)
449{
450#ifdef CONFIG_X86_32
451 BUG_ON(fixmaps_set > 0);
452 printk(KERN_INFO "Reserving virtual address space above 0x%08x\n",
453 (int)-reserve);
454 __FIXADDR_TOP = -reserve - PAGE_SIZE;
Gustavo F. Padovanfd862dd2009-02-15 21:48:54 -0300455#endif
456}
457
Jeremy Fitzhardinge7c7e6e02008-06-17 11:41:54 -0700458int fixmaps_set;
459
Jeremy Fitzhardingeaeaaa592008-06-17 11:42:01 -0700460void __native_set_fixmap(enum fixed_addresses idx, pte_t pte)
Jeremy Fitzhardinge7c7e6e02008-06-17 11:41:54 -0700461{
462 unsigned long address = __fix_to_virt(idx);
463
464 if (idx >= __end_of_fixed_addresses) {
465 BUG();
466 return;
467 }
Jeremy Fitzhardingeaeaaa592008-06-17 11:42:01 -0700468 set_pte_vaddr(address, pte);
Jeremy Fitzhardinge7c7e6e02008-06-17 11:41:54 -0700469 fixmaps_set++;
470}
Jeremy Fitzhardingeaeaaa592008-06-17 11:42:01 -0700471
Masami Hiramatsu3b3809a2009-04-09 10:55:33 -0700472void native_set_fixmap(enum fixed_addresses idx, phys_addr_t phys,
473 pgprot_t flags)
Jeremy Fitzhardingeaeaaa592008-06-17 11:42:01 -0700474{
475 __native_set_fixmap(idx, pfn_pte(phys >> PAGE_SHIFT, flags));
476}