blob: e5d29a112d002f04898a9d32994cf1d4aefc0f17 [file] [log] [blame]
Ingo Molnar9f4c8152008-01-30 13:33:41 +01001/*
2 * Copyright 2002 Andi Kleen, SuSE Labs.
Linus Torvalds1da177e2005-04-16 15:20:36 -07003 * Thanks to Ben LaHaise for precious feedback.
Ingo Molnar9f4c8152008-01-30 13:33:41 +01004 */
Linus Torvalds1da177e2005-04-16 15:20:36 -07005#include <linux/highmem.h>
Ingo Molnar81922062008-01-30 13:34:04 +01006#include <linux/bootmem.h>
Linus Torvalds1da177e2005-04-16 15:20:36 -07007#include <linux/module.h>
Ingo Molnar9f4c8152008-01-30 13:33:41 +01008#include <linux/sched.h>
Linus Torvalds1da177e2005-04-16 15:20:36 -07009#include <linux/slab.h>
Ingo Molnar9f4c8152008-01-30 13:33:41 +010010#include <linux/mm.h>
Thomas Gleixner76ebd052008-02-09 23:24:09 +010011#include <linux/interrupt.h>
Ingo Molnar9f4c8152008-01-30 13:33:41 +010012
Thomas Gleixner950f9d92008-01-30 13:34:06 +010013#include <asm/e820.h>
Linus Torvalds1da177e2005-04-16 15:20:36 -070014#include <asm/processor.h>
15#include <asm/tlbflush.h>
Dave Jonesf8af0952006-01-06 00:12:10 -080016#include <asm/sections.h>
Ingo Molnar9f4c8152008-01-30 13:33:41 +010017#include <asm/uaccess.h>
18#include <asm/pgalloc.h>
Linus Torvalds1da177e2005-04-16 15:20:36 -070019
Ingo Molnar9df84992008-02-04 16:48:09 +010020/*
21 * The current flushing context - we pass it instead of 5 arguments:
22 */
Thomas Gleixner72e458d2008-02-04 16:48:07 +010023struct cpa_data {
24 unsigned long vaddr;
Thomas Gleixner72e458d2008-02-04 16:48:07 +010025 pgprot_t mask_set;
26 pgprot_t mask_clr;
Thomas Gleixner65e074d2008-02-04 16:48:07 +010027 int numpages;
Thomas Gleixnerf4ae5da2008-02-04 16:48:07 +010028 int flushtlb;
Thomas Gleixner72e458d2008-02-04 16:48:07 +010029};
30
Arjan van de Vened724be2008-01-30 13:34:04 +010031static inline int
32within(unsigned long addr, unsigned long start, unsigned long end)
Ingo Molnar687c4822008-01-30 13:34:04 +010033{
Arjan van de Vened724be2008-01-30 13:34:04 +010034 return addr >= start && addr < end;
35}
36
37/*
Thomas Gleixnerd7c8f212008-01-30 13:34:07 +010038 * Flushing functions
39 */
Thomas Gleixnercd8ddf12008-01-30 13:34:08 +010040
Thomas Gleixnercd8ddf12008-01-30 13:34:08 +010041/**
42 * clflush_cache_range - flush a cache range with clflush
43 * @addr: virtual start address
44 * @size: number of bytes to flush
45 *
46 * clflush is an unordered instruction which needs fencing with mfence
47 * to avoid ordering issues.
48 */
Ingo Molnar4c61afc2008-01-30 13:34:09 +010049void clflush_cache_range(void *vaddr, unsigned int size)
Thomas Gleixnerd7c8f212008-01-30 13:34:07 +010050{
Ingo Molnar4c61afc2008-01-30 13:34:09 +010051 void *vend = vaddr + size - 1;
Thomas Gleixnerd7c8f212008-01-30 13:34:07 +010052
Thomas Gleixnercd8ddf12008-01-30 13:34:08 +010053 mb();
Ingo Molnar4c61afc2008-01-30 13:34:09 +010054
55 for (; vaddr < vend; vaddr += boot_cpu_data.x86_clflush_size)
56 clflush(vaddr);
57 /*
58 * Flush any possible final partial cacheline:
59 */
60 clflush(vend);
61
Thomas Gleixnercd8ddf12008-01-30 13:34:08 +010062 mb();
Thomas Gleixnerd7c8f212008-01-30 13:34:07 +010063}
64
Thomas Gleixneraf1e6842008-01-30 13:34:08 +010065static void __cpa_flush_all(void *arg)
Thomas Gleixnerd7c8f212008-01-30 13:34:07 +010066{
Andi Kleen6bb83832008-02-04 16:48:06 +010067 unsigned long cache = (unsigned long)arg;
68
Thomas Gleixnerd7c8f212008-01-30 13:34:07 +010069 /*
70 * Flush all to work around Errata in early athlons regarding
71 * large page flushing.
72 */
73 __flush_tlb_all();
74
Andi Kleen6bb83832008-02-04 16:48:06 +010075 if (cache && boot_cpu_data.x86_model >= 4)
Thomas Gleixnerd7c8f212008-01-30 13:34:07 +010076 wbinvd();
77}
78
Andi Kleen6bb83832008-02-04 16:48:06 +010079static void cpa_flush_all(unsigned long cache)
Thomas Gleixnerd7c8f212008-01-30 13:34:07 +010080{
81 BUG_ON(irqs_disabled());
82
Andi Kleen6bb83832008-02-04 16:48:06 +010083 on_each_cpu(__cpa_flush_all, (void *) cache, 1, 1);
Thomas Gleixnerd7c8f212008-01-30 13:34:07 +010084}
85
Thomas Gleixner57a6a462008-01-30 13:34:08 +010086static void __cpa_flush_range(void *arg)
87{
Thomas Gleixner57a6a462008-01-30 13:34:08 +010088 /*
89 * We could optimize that further and do individual per page
90 * tlb invalidates for a low number of pages. Caveat: we must
91 * flush the high aliases on 64bit as well.
92 */
93 __flush_tlb_all();
Thomas Gleixner57a6a462008-01-30 13:34:08 +010094}
95
Andi Kleen6bb83832008-02-04 16:48:06 +010096static void cpa_flush_range(unsigned long start, int numpages, int cache)
Thomas Gleixner57a6a462008-01-30 13:34:08 +010097{
Ingo Molnar4c61afc2008-01-30 13:34:09 +010098 unsigned int i, level;
99 unsigned long addr;
100
Thomas Gleixner57a6a462008-01-30 13:34:08 +0100101 BUG_ON(irqs_disabled());
Ingo Molnar4c61afc2008-01-30 13:34:09 +0100102 WARN_ON(PAGE_ALIGN(start) != start);
Thomas Gleixner57a6a462008-01-30 13:34:08 +0100103
Thomas Gleixner3b233e52008-01-30 13:34:08 +0100104 on_each_cpu(__cpa_flush_range, NULL, 1, 1);
Thomas Gleixner57a6a462008-01-30 13:34:08 +0100105
Andi Kleen6bb83832008-02-04 16:48:06 +0100106 if (!cache)
107 return;
108
Thomas Gleixner3b233e52008-01-30 13:34:08 +0100109 /*
110 * We only need to flush on one CPU,
111 * clflush is a MESI-coherent instruction that
112 * will cause all other CPUs to flush the same
113 * cachelines:
114 */
Ingo Molnar4c61afc2008-01-30 13:34:09 +0100115 for (i = 0, addr = start; i < numpages; i++, addr += PAGE_SIZE) {
116 pte_t *pte = lookup_address(addr, &level);
117
118 /*
119 * Only flush present addresses:
120 */
Thomas Gleixner7bfb72e2008-02-04 16:48:08 +0100121 if (pte && (pte_val(*pte) & _PAGE_PRESENT))
Ingo Molnar4c61afc2008-01-30 13:34:09 +0100122 clflush_cache_range((void *) addr, PAGE_SIZE);
123 }
Thomas Gleixner57a6a462008-01-30 13:34:08 +0100124}
125
Arjan van de Vencc0f21b2008-02-04 16:48:05 +0100126#define HIGH_MAP_START __START_KERNEL_map
127#define HIGH_MAP_END (__START_KERNEL_map + KERNEL_TEXT_SIZE)
128
129
130/*
131 * Converts a virtual address to a X86-64 highmap address
132 */
133static unsigned long virt_to_highmap(void *address)
134{
135#ifdef CONFIG_X86_64
136 return __pa((unsigned long)address) + HIGH_MAP_START - phys_base;
137#else
138 return (unsigned long)address;
139#endif
140}
141
Thomas Gleixnerd7c8f212008-01-30 13:34:07 +0100142/*
Arjan van de Vened724be2008-01-30 13:34:04 +0100143 * Certain areas of memory on x86 require very specific protection flags,
144 * for example the BIOS area or kernel text. Callers don't always get this
145 * right (again, ioremap() on BIOS memory is not uncommon) so this function
146 * checks and fixes these known static required protection bits.
147 */
148static inline pgprot_t static_protections(pgprot_t prot, unsigned long address)
149{
150 pgprot_t forbidden = __pgprot(0);
151
Ingo Molnar687c4822008-01-30 13:34:04 +0100152 /*
Arjan van de Vened724be2008-01-30 13:34:04 +0100153 * The BIOS area between 640k and 1Mb needs to be executable for
154 * PCI BIOS based config access (CONFIG_PCI_GOBIOS) support.
Ingo Molnar687c4822008-01-30 13:34:04 +0100155 */
Arjan van de Vened724be2008-01-30 13:34:04 +0100156 if (within(__pa(address), BIOS_BEGIN, BIOS_END))
157 pgprot_val(forbidden) |= _PAGE_NX;
158
159 /*
160 * The kernel text needs to be executable for obvious reasons
161 * Does not cover __inittext since that is gone later on
162 */
163 if (within(address, (unsigned long)_text, (unsigned long)_etext))
164 pgprot_val(forbidden) |= _PAGE_NX;
Arjan van de Vencc0f21b2008-02-04 16:48:05 +0100165 /*
166 * Do the same for the x86-64 high kernel mapping
167 */
168 if (within(address, virt_to_highmap(_text), virt_to_highmap(_etext)))
169 pgprot_val(forbidden) |= _PAGE_NX;
170
Arjan van de Vened724be2008-01-30 13:34:04 +0100171 /* The .rodata section needs to be read-only */
172 if (within(address, (unsigned long)__start_rodata,
173 (unsigned long)__end_rodata))
174 pgprot_val(forbidden) |= _PAGE_RW;
Arjan van de Vencc0f21b2008-02-04 16:48:05 +0100175 /*
176 * Do the same for the x86-64 high kernel mapping
177 */
178 if (within(address, virt_to_highmap(__start_rodata),
179 virt_to_highmap(__end_rodata)))
180 pgprot_val(forbidden) |= _PAGE_RW;
Arjan van de Vened724be2008-01-30 13:34:04 +0100181
182 prot = __pgprot(pgprot_val(prot) & ~pgprot_val(forbidden));
Ingo Molnar687c4822008-01-30 13:34:04 +0100183
184 return prot;
185}
186
Thomas Gleixner9a14aef2008-02-04 16:48:07 +0100187/*
188 * Lookup the page table entry for a virtual address. Return a pointer
189 * to the entry and the level of the mapping.
190 *
191 * Note: We return pud and pmd either when the entry is marked large
192 * or when the present bit is not set. Otherwise we would return a
193 * pointer to a nonexisting mapping.
194 */
Harvey Harrisonda7bfc52008-02-09 23:24:08 +0100195pte_t *lookup_address(unsigned long address, unsigned int *level)
Ingo Molnar9f4c8152008-01-30 13:33:41 +0100196{
Linus Torvalds1da177e2005-04-16 15:20:36 -0700197 pgd_t *pgd = pgd_offset_k(address);
198 pud_t *pud;
199 pmd_t *pmd;
Ingo Molnar9f4c8152008-01-30 13:33:41 +0100200
Thomas Gleixner30551bb2008-01-30 13:34:04 +0100201 *level = PG_LEVEL_NONE;
202
Linus Torvalds1da177e2005-04-16 15:20:36 -0700203 if (pgd_none(*pgd))
204 return NULL;
Ingo Molnar9df84992008-02-04 16:48:09 +0100205
Linus Torvalds1da177e2005-04-16 15:20:36 -0700206 pud = pud_offset(pgd, address);
207 if (pud_none(*pud))
208 return NULL;
Andi Kleenc2f71ee2008-02-04 16:48:09 +0100209
210 *level = PG_LEVEL_1G;
211 if (pud_large(*pud) || !pud_present(*pud))
212 return (pte_t *)pud;
213
Linus Torvalds1da177e2005-04-16 15:20:36 -0700214 pmd = pmd_offset(pud, address);
215 if (pmd_none(*pmd))
216 return NULL;
Thomas Gleixner30551bb2008-01-30 13:34:04 +0100217
218 *level = PG_LEVEL_2M;
Thomas Gleixner9a14aef2008-02-04 16:48:07 +0100219 if (pmd_large(*pmd) || !pmd_present(*pmd))
Linus Torvalds1da177e2005-04-16 15:20:36 -0700220 return (pte_t *)pmd;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700221
Thomas Gleixner30551bb2008-01-30 13:34:04 +0100222 *level = PG_LEVEL_4K;
Ingo Molnar9df84992008-02-04 16:48:09 +0100223
Ingo Molnar9f4c8152008-01-30 13:33:41 +0100224 return pte_offset_kernel(pmd, address);
225}
226
Ingo Molnar9df84992008-02-04 16:48:09 +0100227/*
228 * Set the new pmd in all the pgds we know about:
229 */
Ingo Molnar9a3dc782008-01-30 13:33:57 +0100230static void __set_pmd_pte(pte_t *kpte, unsigned long address, pte_t pte)
Ingo Molnar9f4c8152008-01-30 13:33:41 +0100231{
Ingo Molnar9f4c8152008-01-30 13:33:41 +0100232 /* change init_mm */
233 set_pte_atomic(kpte, pte);
Ingo Molnar44af6c42008-01-30 13:34:03 +0100234#ifdef CONFIG_X86_32
Ingo Molnare4b71dc2008-01-30 13:34:04 +0100235 if (!SHARED_KERNEL_PMD) {
Ingo Molnar44af6c42008-01-30 13:34:03 +0100236 struct page *page;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700237
Jeremy Fitzhardingee3ed9102008-01-30 13:34:11 +0100238 list_for_each_entry(page, &pgd_list, lru) {
Ingo Molnar44af6c42008-01-30 13:34:03 +0100239 pgd_t *pgd;
240 pud_t *pud;
241 pmd_t *pmd;
Ingo Molnar9f4c8152008-01-30 13:33:41 +0100242
Ingo Molnar44af6c42008-01-30 13:34:03 +0100243 pgd = (pgd_t *)page_address(page) + pgd_index(address);
244 pud = pud_offset(pgd, address);
245 pmd = pmd_offset(pud, address);
246 set_pte_atomic((pte_t *)pmd, pte);
247 }
Linus Torvalds1da177e2005-04-16 15:20:36 -0700248 }
Ingo Molnar44af6c42008-01-30 13:34:03 +0100249#endif
Linus Torvalds1da177e2005-04-16 15:20:36 -0700250}
251
Ingo Molnar9df84992008-02-04 16:48:09 +0100252static int
253try_preserve_large_page(pte_t *kpte, unsigned long address,
254 struct cpa_data *cpa)
Thomas Gleixner65e074d2008-02-04 16:48:07 +0100255{
256 unsigned long nextpage_addr, numpages, pmask, psize, flags;
257 pte_t new_pte, old_pte, *tmp;
258 pgprot_t old_prot, new_prot;
Harvey Harrisonda7bfc52008-02-09 23:24:08 +0100259 int do_split = 1;
260 unsigned int level;
Thomas Gleixner65e074d2008-02-04 16:48:07 +0100261
262 spin_lock_irqsave(&pgd_lock, flags);
263 /*
264 * Check for races, another CPU might have split this page
265 * up already:
266 */
267 tmp = lookup_address(address, &level);
268 if (tmp != kpte)
269 goto out_unlock;
270
271 switch (level) {
272 case PG_LEVEL_2M:
Andi Kleen31422c52008-02-04 16:48:08 +0100273 psize = PMD_PAGE_SIZE;
274 pmask = PMD_PAGE_MASK;
Thomas Gleixner65e074d2008-02-04 16:48:07 +0100275 break;
Andi Kleenf07333f2008-02-04 16:48:09 +0100276#ifdef CONFIG_X86_64
Thomas Gleixner65e074d2008-02-04 16:48:07 +0100277 case PG_LEVEL_1G:
Andi Kleenf07333f2008-02-04 16:48:09 +0100278 psize = PMD_PAGE_SIZE;
279 pmask = PMD_PAGE_MASK;
280 break;
281#endif
Thomas Gleixner65e074d2008-02-04 16:48:07 +0100282 default:
Ingo Molnarbeaff632008-02-04 16:48:09 +0100283 do_split = -EINVAL;
Thomas Gleixner65e074d2008-02-04 16:48:07 +0100284 goto out_unlock;
285 }
286
287 /*
288 * Calculate the number of pages, which fit into this large
289 * page starting at address:
290 */
291 nextpage_addr = (address + psize) & pmask;
292 numpages = (nextpage_addr - address) >> PAGE_SHIFT;
293 if (numpages < cpa->numpages)
294 cpa->numpages = numpages;
295
296 /*
297 * We are safe now. Check whether the new pgprot is the same:
298 */
299 old_pte = *kpte;
300 old_prot = new_prot = pte_pgprot(old_pte);
301
302 pgprot_val(new_prot) &= ~pgprot_val(cpa->mask_clr);
303 pgprot_val(new_prot) |= pgprot_val(cpa->mask_set);
304 new_prot = static_protections(new_prot, address);
305
306 /*
307 * If there are no changes, return. maxpages has been updated
308 * above:
309 */
310 if (pgprot_val(new_prot) == pgprot_val(old_prot)) {
Ingo Molnarbeaff632008-02-04 16:48:09 +0100311 do_split = 0;
Thomas Gleixner65e074d2008-02-04 16:48:07 +0100312 goto out_unlock;
313 }
314
315 /*
316 * We need to change the attributes. Check, whether we can
317 * change the large page in one go. We request a split, when
318 * the address is not aligned and the number of pages is
319 * smaller than the number of pages in the large page. Note
320 * that we limited the number of possible pages already to
321 * the number of pages in the large page.
322 */
323 if (address == (nextpage_addr - psize) && cpa->numpages == numpages) {
324 /*
325 * The address is aligned and the number of pages
326 * covers the full page.
327 */
328 new_pte = pfn_pte(pte_pfn(old_pte), canon_pgprot(new_prot));
329 __set_pmd_pte(kpte, address, new_pte);
330 cpa->flushtlb = 1;
Ingo Molnarbeaff632008-02-04 16:48:09 +0100331 do_split = 0;
Thomas Gleixner65e074d2008-02-04 16:48:07 +0100332 }
333
334out_unlock:
335 spin_unlock_irqrestore(&pgd_lock, flags);
Ingo Molnar9df84992008-02-04 16:48:09 +0100336
Ingo Molnarbeaff632008-02-04 16:48:09 +0100337 return do_split;
Thomas Gleixner65e074d2008-02-04 16:48:07 +0100338}
339
Thomas Gleixner76ebd052008-02-09 23:24:09 +0100340static LIST_HEAD(page_pool);
341static unsigned long pool_size, pool_pages, pool_low;
342static unsigned long pool_used, pool_failed, pool_refill;
343
344static void cpa_fill_pool(void)
345{
346 struct page *p;
347 gfp_t gfp = GFP_KERNEL;
348
349 /* Do not allocate from interrupt context */
350 if (in_irq() || irqs_disabled())
351 return;
352 /*
353 * Check unlocked. I does not matter when we have one more
354 * page in the pool. The bit lock avoids recursive pool
355 * allocations:
356 */
357 if (pool_pages >= pool_size || test_and_set_bit_lock(0, &pool_refill))
358 return;
359
360#ifdef CONFIG_DEBUG_PAGEALLOC
361 /*
362 * We could do:
363 * gfp = in_atomic() ? GFP_ATOMIC : GFP_KERNEL;
364 * but this fails on !PREEMPT kernels
365 */
366 gfp = GFP_ATOMIC | __GFP_NORETRY | __GFP_NOWARN;
367#endif
368
369 while (pool_pages < pool_size) {
370 p = alloc_pages(gfp, 0);
371 if (!p) {
372 pool_failed++;
373 break;
374 }
375 spin_lock_irq(&pgd_lock);
376 list_add(&p->lru, &page_pool);
377 pool_pages++;
378 spin_unlock_irq(&pgd_lock);
379 }
380 clear_bit_unlock(0, &pool_refill);
381}
382
383#define SHIFT_MB (20 - PAGE_SHIFT)
384#define ROUND_MB_GB ((1 << 10) - 1)
385#define SHIFT_MB_GB 10
386#define POOL_PAGES_PER_GB 16
387
388void __init cpa_init(void)
389{
390 struct sysinfo si;
391 unsigned long gb;
392
393 si_meminfo(&si);
394 /*
395 * Calculate the number of pool pages:
396 *
397 * Convert totalram (nr of pages) to MiB and round to the next
398 * GiB. Shift MiB to Gib and multiply the result by
399 * POOL_PAGES_PER_GB:
400 */
401 gb = ((si.totalram >> SHIFT_MB) + ROUND_MB_GB) >> SHIFT_MB_GB;
402 pool_size = POOL_PAGES_PER_GB * gb;
403 pool_low = pool_size;
404
405 cpa_fill_pool();
406 printk(KERN_DEBUG
407 "CPA: page pool initialized %lu of %lu pages preallocated\n",
408 pool_pages, pool_size);
409}
410
Ingo Molnar7afe15b2008-01-30 13:33:57 +0100411static int split_large_page(pte_t *kpte, unsigned long address)
Ingo Molnarbb5c2db2008-01-30 13:33:56 +0100412{
Thomas Gleixner7b610ee2008-02-04 16:48:10 +0100413 unsigned long flags, pfn, pfninc = 1;
Ingo Molnar86f03982008-01-30 13:34:09 +0100414 unsigned int i, level;
Ingo Molnar9df84992008-02-04 16:48:09 +0100415 pte_t *pbase, *tmp;
416 pgprot_t ref_prot;
417 struct page *base;
Ingo Molnarbb5c2db2008-01-30 13:33:56 +0100418
Thomas Gleixnereb5b5f02008-02-09 23:24:09 +0100419 /*
420 * Get a page from the pool. The pool list is protected by the
421 * pgd_lock, which we have to take anyway for the split
422 * operation:
423 */
Ingo Molnar9a3dc782008-01-30 13:33:57 +0100424 spin_lock_irqsave(&pgd_lock, flags);
Thomas Gleixnereb5b5f02008-02-09 23:24:09 +0100425 if (list_empty(&page_pool)) {
426 spin_unlock_irqrestore(&pgd_lock, flags);
427 return -ENOMEM;
428 }
429
430 base = list_first_entry(&page_pool, struct page, lru);
431 list_del(&base->lru);
432 pool_pages--;
433
434 if (pool_pages < pool_low)
435 pool_low = pool_pages;
436
Ingo Molnarbb5c2db2008-01-30 13:33:56 +0100437 /*
438 * Check for races, another CPU might have split this page
439 * up for us already:
440 */
441 tmp = lookup_address(address, &level);
Ingo Molnar6ce9fc12008-02-04 16:48:08 +0100442 if (tmp != kpte)
Ingo Molnarbb5c2db2008-01-30 13:33:56 +0100443 goto out_unlock;
444
Ingo Molnarbb5c2db2008-01-30 13:33:56 +0100445 pbase = (pte_t *)page_address(base);
Ingo Molnar44af6c42008-01-30 13:34:03 +0100446#ifdef CONFIG_X86_32
Ingo Molnarbb5c2db2008-01-30 13:33:56 +0100447 paravirt_alloc_pt(&init_mm, page_to_pfn(base));
Ingo Molnar44af6c42008-01-30 13:34:03 +0100448#endif
Thomas Gleixner07cf89c2008-02-04 16:48:08 +0100449 ref_prot = pte_pgprot(pte_clrhuge(*kpte));
Ingo Molnarbb5c2db2008-01-30 13:33:56 +0100450
Andi Kleenf07333f2008-02-04 16:48:09 +0100451#ifdef CONFIG_X86_64
452 if (level == PG_LEVEL_1G) {
453 pfninc = PMD_PAGE_SIZE >> PAGE_SHIFT;
454 pgprot_val(ref_prot) |= _PAGE_PSE;
Andi Kleenf07333f2008-02-04 16:48:09 +0100455 }
456#endif
457
Thomas Gleixner63c1dcf2008-02-04 16:48:05 +0100458 /*
459 * Get the target pfn from the original entry:
460 */
461 pfn = pte_pfn(*kpte);
Andi Kleenf07333f2008-02-04 16:48:09 +0100462 for (i = 0; i < PTRS_PER_PTE; i++, pfn += pfninc)
Thomas Gleixner63c1dcf2008-02-04 16:48:05 +0100463 set_pte(&pbase[i], pfn_pte(pfn, ref_prot));
Ingo Molnarbb5c2db2008-01-30 13:33:56 +0100464
465 /*
Thomas Gleixner07cf89c2008-02-04 16:48:08 +0100466 * Install the new, split up pagetable. Important details here:
Huang, Ying4c881ca2008-01-30 13:34:04 +0100467 *
468 * On Intel the NX bit of all levels must be cleared to make a
469 * page executable. See section 4.13.2 of Intel 64 and IA-32
470 * Architectures Software Developer's Manual).
Thomas Gleixner07cf89c2008-02-04 16:48:08 +0100471 *
472 * Mark the entry present. The current mapping might be
473 * set to not present, which we preserved above.
Ingo Molnarbb5c2db2008-01-30 13:33:56 +0100474 */
Huang, Ying4c881ca2008-01-30 13:34:04 +0100475 ref_prot = pte_pgprot(pte_mkexec(pte_clrhuge(*kpte)));
Thomas Gleixner07cf89c2008-02-04 16:48:08 +0100476 pgprot_val(ref_prot) |= _PAGE_PRESENT;
Ingo Molnar9a3dc782008-01-30 13:33:57 +0100477 __set_pmd_pte(kpte, address, mk_pte(base, ref_prot));
Ingo Molnarbb5c2db2008-01-30 13:33:56 +0100478 base = NULL;
479
480out_unlock:
Thomas Gleixnereb5b5f02008-02-09 23:24:09 +0100481 /*
482 * If we dropped out via the lookup_address check under
483 * pgd_lock then stick the page back into the pool:
484 */
485 if (base) {
486 list_add(&base->lru, &page_pool);
487 pool_pages++;
488 } else
489 pool_used++;
Ingo Molnar9a3dc782008-01-30 13:33:57 +0100490 spin_unlock_irqrestore(&pgd_lock, flags);
Ingo Molnarbb5c2db2008-01-30 13:33:56 +0100491
Ingo Molnarbb5c2db2008-01-30 13:33:56 +0100492 return 0;
493}
494
Thomas Gleixner72e458d2008-02-04 16:48:07 +0100495static int __change_page_attr(unsigned long address, struct cpa_data *cpa)
Ingo Molnar9f4c8152008-01-30 13:33:41 +0100496{
Harvey Harrisonda7bfc52008-02-09 23:24:08 +0100497 int do_split, err;
498 unsigned int level;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700499 struct page *kpte_page;
Ingo Molnar9f4c8152008-01-30 13:33:41 +0100500 pte_t *kpte;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700501
Ingo Molnar97f99fe2008-01-30 13:33:55 +0100502repeat:
Ingo Molnarf0646e42008-01-30 13:33:43 +0100503 kpte = lookup_address(address, &level);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700504 if (!kpte)
505 return -EINVAL;
Ingo Molnar9f4c8152008-01-30 13:33:41 +0100506
Linus Torvalds1da177e2005-04-16 15:20:36 -0700507 kpte_page = virt_to_page(kpte);
Andi Kleen65d2f0b2007-07-21 17:09:51 +0200508 BUG_ON(PageLRU(kpte_page));
509 BUG_ON(PageCompound(kpte_page));
510
Thomas Gleixner30551bb2008-01-30 13:34:04 +0100511 if (level == PG_LEVEL_4K) {
Ingo Molnar86f03982008-01-30 13:34:09 +0100512 pte_t new_pte, old_pte = *kpte;
Arjan van de Ven626c2c92008-02-04 16:48:05 +0100513 pgprot_t new_prot = pte_pgprot(old_pte);
514
515 if(!pte_val(old_pte)) {
Thomas Gleixner72e458d2008-02-04 16:48:07 +0100516 printk(KERN_WARNING "CPA: called for zero pte. "
517 "vaddr = %lx cpa->vaddr = %lx\n", address,
518 cpa->vaddr);
519 WARN_ON(1);
Arjan van de Ven626c2c92008-02-04 16:48:05 +0100520 return -EINVAL;
521 }
Thomas Gleixnera72a08a2008-01-30 13:34:07 +0100522
Thomas Gleixner72e458d2008-02-04 16:48:07 +0100523 pgprot_val(new_prot) &= ~pgprot_val(cpa->mask_clr);
524 pgprot_val(new_prot) |= pgprot_val(cpa->mask_set);
Ingo Molnar86f03982008-01-30 13:34:09 +0100525
526 new_prot = static_protections(new_prot, address);
527
Arjan van de Ven626c2c92008-02-04 16:48:05 +0100528 /*
529 * We need to keep the pfn from the existing PTE,
530 * after all we're only going to change it's attributes
531 * not the memory it points to
532 */
533 new_pte = pfn_pte(pte_pfn(old_pte), canon_pgprot(new_prot));
Thomas Gleixnerf4ae5da2008-02-04 16:48:07 +0100534
535 /*
536 * Do we really change anything ?
537 */
538 if (pte_val(old_pte) != pte_val(new_pte)) {
539 set_pte_atomic(kpte, new_pte);
540 cpa->flushtlb = 1;
541 }
Thomas Gleixner65e074d2008-02-04 16:48:07 +0100542 cpa->numpages = 1;
543 return 0;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700544 }
Thomas Gleixner65e074d2008-02-04 16:48:07 +0100545
546 /*
547 * Check, whether we can keep the large page intact
548 * and just change the pte:
549 */
Ingo Molnarbeaff632008-02-04 16:48:09 +0100550 do_split = try_preserve_large_page(kpte, address, cpa);
Thomas Gleixner65e074d2008-02-04 16:48:07 +0100551 /*
552 * When the range fits into the existing large page,
553 * return. cp->numpages and cpa->tlbflush have been updated in
554 * try_large_page:
555 */
Ingo Molnar87f7f8f2008-02-04 16:48:10 +0100556 if (do_split <= 0)
557 return do_split;
Thomas Gleixner65e074d2008-02-04 16:48:07 +0100558
559 /*
560 * We have to split the large page:
561 */
Ingo Molnar87f7f8f2008-02-04 16:48:10 +0100562 err = split_large_page(kpte, address);
563 if (!err) {
564 cpa->flushtlb = 1;
565 goto repeat;
566 }
Ingo Molnarbeaff632008-02-04 16:48:09 +0100567
Ingo Molnar87f7f8f2008-02-04 16:48:10 +0100568 return err;
Ingo Molnar9f4c8152008-01-30 13:33:41 +0100569}
Linus Torvalds1da177e2005-04-16 15:20:36 -0700570
Ingo Molnar44af6c42008-01-30 13:34:03 +0100571/**
572 * change_page_attr_addr - Change page table attributes in linear mapping
573 * @address: Virtual address in linear mapping.
Ingo Molnar44af6c42008-01-30 13:34:03 +0100574 * @prot: New page table attribute (PAGE_*)
575 *
576 * Change page attributes of a page in the direct mapping. This is a variant
577 * of change_page_attr() that also works on memory holes that do not have
578 * mem_map entry (pfn_valid() is false).
579 *
580 * See change_page_attr() documentation for more details.
Arjan van de Ven75cbade2008-01-30 13:34:06 +0100581 *
582 * Modules and drivers should use the set_memory_* APIs instead.
Ingo Molnar44af6c42008-01-30 13:34:03 +0100583 */
Thomas Gleixner72e458d2008-02-04 16:48:07 +0100584static int change_page_attr_addr(struct cpa_data *cpa)
Ingo Molnar44af6c42008-01-30 13:34:03 +0100585{
Thomas Gleixner08797502008-01-30 13:34:09 +0100586 int err;
Thomas Gleixner72e458d2008-02-04 16:48:07 +0100587 unsigned long address = cpa->vaddr;
Ingo Molnar44af6c42008-01-30 13:34:03 +0100588
Arjan van de Ven488fd992008-01-30 13:34:07 +0100589#ifdef CONFIG_X86_64
Arjan van de Ven626c2c92008-02-04 16:48:05 +0100590 unsigned long phys_addr = __pa(address);
591
Arjan van de Ven488fd992008-01-30 13:34:07 +0100592 /*
Thomas Gleixner08797502008-01-30 13:34:09 +0100593 * If we are inside the high mapped kernel range, then we
594 * fixup the low mapping first. __va() returns the virtual
595 * address in the linear mapping:
Arjan van de Ven488fd992008-01-30 13:34:07 +0100596 */
Thomas Gleixner08797502008-01-30 13:34:09 +0100597 if (within(address, HIGH_MAP_START, HIGH_MAP_END))
598 address = (unsigned long) __va(phys_addr);
Arjan van de Ven488fd992008-01-30 13:34:07 +0100599#endif
600
Thomas Gleixner72e458d2008-02-04 16:48:07 +0100601 err = __change_page_attr(address, cpa);
Thomas Gleixner08797502008-01-30 13:34:09 +0100602 if (err)
603 return err;
604
605#ifdef CONFIG_X86_64
606 /*
607 * If the physical address is inside the kernel map, we need
608 * to touch the high mapped kernel as well:
609 */
610 if (within(phys_addr, 0, KERNEL_TEXT_SIZE)) {
611 /*
612 * Calc the high mapping address. See __phys_addr()
613 * for the non obvious details.
Arjan van de Vencc0f21b2008-02-04 16:48:05 +0100614 *
615 * Note that NX and other required permissions are
616 * checked in static_protections().
Thomas Gleixner08797502008-01-30 13:34:09 +0100617 */
618 address = phys_addr + HIGH_MAP_START - phys_base;
Thomas Gleixner08797502008-01-30 13:34:09 +0100619
620 /*
621 * Our high aliases are imprecise, because we check
622 * everything between 0 and KERNEL_TEXT_SIZE, so do
623 * not propagate lookup failures back to users:
624 */
Thomas Gleixner72e458d2008-02-04 16:48:07 +0100625 __change_page_attr(address, cpa);
Thomas Gleixner08797502008-01-30 13:34:09 +0100626 }
627#endif
Ingo Molnar44af6c42008-01-30 13:34:03 +0100628 return err;
629}
630
Thomas Gleixner72e458d2008-02-04 16:48:07 +0100631static int __change_page_attr_set_clr(struct cpa_data *cpa)
Thomas Gleixnerff314522008-01-30 13:34:08 +0100632{
Thomas Gleixner65e074d2008-02-04 16:48:07 +0100633 int ret, numpages = cpa->numpages;
Thomas Gleixnerff314522008-01-30 13:34:08 +0100634
Thomas Gleixner65e074d2008-02-04 16:48:07 +0100635 while (numpages) {
636 /*
637 * Store the remaining nr of pages for the large page
638 * preservation check.
639 */
640 cpa->numpages = numpages;
Thomas Gleixner72e458d2008-02-04 16:48:07 +0100641 ret = change_page_attr_addr(cpa);
Thomas Gleixnerff314522008-01-30 13:34:08 +0100642 if (ret)
643 return ret;
Thomas Gleixnerff314522008-01-30 13:34:08 +0100644
Thomas Gleixner65e074d2008-02-04 16:48:07 +0100645 /*
646 * Adjust the number of pages with the result of the
647 * CPA operation. Either a large page has been
648 * preserved or a single page update happened.
649 */
650 BUG_ON(cpa->numpages > numpages);
651 numpages -= cpa->numpages;
652 cpa->vaddr += cpa->numpages * PAGE_SIZE;
653 }
Thomas Gleixnerff314522008-01-30 13:34:08 +0100654 return 0;
655}
656
Andi Kleen6bb83832008-02-04 16:48:06 +0100657static inline int cache_attr(pgprot_t attr)
658{
659 return pgprot_val(attr) &
660 (_PAGE_PAT | _PAGE_PAT_LARGE | _PAGE_PWT | _PAGE_PCD);
661}
662
Thomas Gleixnerff314522008-01-30 13:34:08 +0100663static int change_page_attr_set_clr(unsigned long addr, int numpages,
664 pgprot_t mask_set, pgprot_t mask_clr)
665{
Thomas Gleixner72e458d2008-02-04 16:48:07 +0100666 struct cpa_data cpa;
Andi Kleen6bb83832008-02-04 16:48:06 +0100667 int ret, cache;
Thomas Gleixner331e4062008-02-04 16:48:06 +0100668
669 /*
670 * Check, if we are requested to change a not supported
671 * feature:
672 */
673 mask_set = canon_pgprot(mask_set);
674 mask_clr = canon_pgprot(mask_clr);
675 if (!pgprot_val(mask_set) && !pgprot_val(mask_clr))
676 return 0;
677
Thomas Gleixner72e458d2008-02-04 16:48:07 +0100678 cpa.vaddr = addr;
679 cpa.numpages = numpages;
680 cpa.mask_set = mask_set;
681 cpa.mask_clr = mask_clr;
Thomas Gleixnerf4ae5da2008-02-04 16:48:07 +0100682 cpa.flushtlb = 0;
Thomas Gleixner72e458d2008-02-04 16:48:07 +0100683
684 ret = __change_page_attr_set_clr(&cpa);
Thomas Gleixnerff314522008-01-30 13:34:08 +0100685
Thomas Gleixner57a6a462008-01-30 13:34:08 +0100686 /*
Thomas Gleixnerf4ae5da2008-02-04 16:48:07 +0100687 * Check whether we really changed something:
688 */
689 if (!cpa.flushtlb)
Thomas Gleixner76ebd052008-02-09 23:24:09 +0100690 goto out;
Thomas Gleixnerf4ae5da2008-02-04 16:48:07 +0100691
692 /*
Andi Kleen6bb83832008-02-04 16:48:06 +0100693 * No need to flush, when we did not set any of the caching
694 * attributes:
695 */
696 cache = cache_attr(mask_set);
697
698 /*
Thomas Gleixner57a6a462008-01-30 13:34:08 +0100699 * On success we use clflush, when the CPU supports it to
700 * avoid the wbindv. If the CPU does not support it and in the
Thomas Gleixneraf1e6842008-01-30 13:34:08 +0100701 * error case we fall back to cpa_flush_all (which uses
Thomas Gleixner57a6a462008-01-30 13:34:08 +0100702 * wbindv):
703 */
704 if (!ret && cpu_has_clflush)
Andi Kleen6bb83832008-02-04 16:48:06 +0100705 cpa_flush_range(addr, numpages, cache);
Thomas Gleixner57a6a462008-01-30 13:34:08 +0100706 else
Andi Kleen6bb83832008-02-04 16:48:06 +0100707 cpa_flush_all(cache);
Thomas Gleixnerff314522008-01-30 13:34:08 +0100708
Thomas Gleixner76ebd052008-02-09 23:24:09 +0100709out:
710 cpa_fill_pool();
Thomas Gleixnerff314522008-01-30 13:34:08 +0100711 return ret;
712}
713
Thomas Gleixner56744542008-01-30 13:34:08 +0100714static inline int change_page_attr_set(unsigned long addr, int numpages,
715 pgprot_t mask)
Arjan van de Ven75cbade2008-01-30 13:34:06 +0100716{
Thomas Gleixner56744542008-01-30 13:34:08 +0100717 return change_page_attr_set_clr(addr, numpages, mask, __pgprot(0));
Arjan van de Ven75cbade2008-01-30 13:34:06 +0100718}
719
Thomas Gleixner56744542008-01-30 13:34:08 +0100720static inline int change_page_attr_clear(unsigned long addr, int numpages,
721 pgprot_t mask)
Thomas Gleixner72932c72008-01-30 13:34:08 +0100722{
Huang, Ying58270402008-01-31 22:05:43 +0100723 return change_page_attr_set_clr(addr, numpages, __pgprot(0), mask);
Thomas Gleixner72932c72008-01-30 13:34:08 +0100724}
725
Arjan van de Ven75cbade2008-01-30 13:34:06 +0100726int set_memory_uc(unsigned long addr, int numpages)
727{
Thomas Gleixner72932c72008-01-30 13:34:08 +0100728 return change_page_attr_set(addr, numpages,
729 __pgprot(_PAGE_PCD | _PAGE_PWT));
Arjan van de Ven75cbade2008-01-30 13:34:06 +0100730}
731EXPORT_SYMBOL(set_memory_uc);
732
733int set_memory_wb(unsigned long addr, int numpages)
734{
Thomas Gleixner72932c72008-01-30 13:34:08 +0100735 return change_page_attr_clear(addr, numpages,
736 __pgprot(_PAGE_PCD | _PAGE_PWT));
Arjan van de Ven75cbade2008-01-30 13:34:06 +0100737}
738EXPORT_SYMBOL(set_memory_wb);
739
740int set_memory_x(unsigned long addr, int numpages)
741{
Thomas Gleixner72932c72008-01-30 13:34:08 +0100742 return change_page_attr_clear(addr, numpages, __pgprot(_PAGE_NX));
Arjan van de Ven75cbade2008-01-30 13:34:06 +0100743}
744EXPORT_SYMBOL(set_memory_x);
745
746int set_memory_nx(unsigned long addr, int numpages)
747{
Thomas Gleixner72932c72008-01-30 13:34:08 +0100748 return change_page_attr_set(addr, numpages, __pgprot(_PAGE_NX));
Arjan van de Ven75cbade2008-01-30 13:34:06 +0100749}
750EXPORT_SYMBOL(set_memory_nx);
751
752int set_memory_ro(unsigned long addr, int numpages)
753{
Thomas Gleixner72932c72008-01-30 13:34:08 +0100754 return change_page_attr_clear(addr, numpages, __pgprot(_PAGE_RW));
Arjan van de Ven75cbade2008-01-30 13:34:06 +0100755}
Arjan van de Ven75cbade2008-01-30 13:34:06 +0100756
757int set_memory_rw(unsigned long addr, int numpages)
758{
Thomas Gleixner72932c72008-01-30 13:34:08 +0100759 return change_page_attr_set(addr, numpages, __pgprot(_PAGE_RW));
Arjan van de Ven75cbade2008-01-30 13:34:06 +0100760}
Ingo Molnarf62d0f02008-01-30 13:34:07 +0100761
762int set_memory_np(unsigned long addr, int numpages)
763{
Thomas Gleixner72932c72008-01-30 13:34:08 +0100764 return change_page_attr_clear(addr, numpages, __pgprot(_PAGE_PRESENT));
Ingo Molnarf62d0f02008-01-30 13:34:07 +0100765}
Arjan van de Ven75cbade2008-01-30 13:34:06 +0100766
767int set_pages_uc(struct page *page, int numpages)
768{
769 unsigned long addr = (unsigned long)page_address(page);
Arjan van de Ven75cbade2008-01-30 13:34:06 +0100770
Thomas Gleixnerd7c8f212008-01-30 13:34:07 +0100771 return set_memory_uc(addr, numpages);
Arjan van de Ven75cbade2008-01-30 13:34:06 +0100772}
773EXPORT_SYMBOL(set_pages_uc);
774
775int set_pages_wb(struct page *page, int numpages)
776{
777 unsigned long addr = (unsigned long)page_address(page);
Arjan van de Ven75cbade2008-01-30 13:34:06 +0100778
Thomas Gleixnerd7c8f212008-01-30 13:34:07 +0100779 return set_memory_wb(addr, numpages);
Arjan van de Ven75cbade2008-01-30 13:34:06 +0100780}
781EXPORT_SYMBOL(set_pages_wb);
782
783int set_pages_x(struct page *page, int numpages)
784{
785 unsigned long addr = (unsigned long)page_address(page);
Arjan van de Ven75cbade2008-01-30 13:34:06 +0100786
Thomas Gleixnerd7c8f212008-01-30 13:34:07 +0100787 return set_memory_x(addr, numpages);
Arjan van de Ven75cbade2008-01-30 13:34:06 +0100788}
789EXPORT_SYMBOL(set_pages_x);
790
791int set_pages_nx(struct page *page, int numpages)
792{
793 unsigned long addr = (unsigned long)page_address(page);
Arjan van de Ven75cbade2008-01-30 13:34:06 +0100794
Thomas Gleixnerd7c8f212008-01-30 13:34:07 +0100795 return set_memory_nx(addr, numpages);
Arjan van de Ven75cbade2008-01-30 13:34:06 +0100796}
797EXPORT_SYMBOL(set_pages_nx);
798
799int set_pages_ro(struct page *page, int numpages)
800{
801 unsigned long addr = (unsigned long)page_address(page);
Arjan van de Ven75cbade2008-01-30 13:34:06 +0100802
Thomas Gleixnerd7c8f212008-01-30 13:34:07 +0100803 return set_memory_ro(addr, numpages);
Arjan van de Ven75cbade2008-01-30 13:34:06 +0100804}
Arjan van de Ven75cbade2008-01-30 13:34:06 +0100805
806int set_pages_rw(struct page *page, int numpages)
807{
808 unsigned long addr = (unsigned long)page_address(page);
Arjan van de Ven75cbade2008-01-30 13:34:06 +0100809
Thomas Gleixnerd7c8f212008-01-30 13:34:07 +0100810 return set_memory_rw(addr, numpages);
Arjan van de Ven75cbade2008-01-30 13:34:06 +0100811}
Arjan van de Ven75cbade2008-01-30 13:34:06 +0100812
Linus Torvalds1da177e2005-04-16 15:20:36 -0700813#ifdef CONFIG_DEBUG_PAGEALLOC
Ingo Molnarf62d0f02008-01-30 13:34:07 +0100814
815static int __set_pages_p(struct page *page, int numpages)
816{
Thomas Gleixner72e458d2008-02-04 16:48:07 +0100817 struct cpa_data cpa = { .vaddr = (unsigned long) page_address(page),
818 .numpages = numpages,
819 .mask_set = __pgprot(_PAGE_PRESENT | _PAGE_RW),
820 .mask_clr = __pgprot(0)};
Thomas Gleixner72932c72008-01-30 13:34:08 +0100821
Thomas Gleixner72e458d2008-02-04 16:48:07 +0100822 return __change_page_attr_set_clr(&cpa);
Ingo Molnarf62d0f02008-01-30 13:34:07 +0100823}
824
825static int __set_pages_np(struct page *page, int numpages)
826{
Thomas Gleixner72e458d2008-02-04 16:48:07 +0100827 struct cpa_data cpa = { .vaddr = (unsigned long) page_address(page),
828 .numpages = numpages,
829 .mask_set = __pgprot(0),
830 .mask_clr = __pgprot(_PAGE_PRESENT | _PAGE_RW)};
Thomas Gleixner72932c72008-01-30 13:34:08 +0100831
Thomas Gleixner72e458d2008-02-04 16:48:07 +0100832 return __change_page_attr_set_clr(&cpa);
Ingo Molnarf62d0f02008-01-30 13:34:07 +0100833}
834
Linus Torvalds1da177e2005-04-16 15:20:36 -0700835void kernel_map_pages(struct page *page, int numpages, int enable)
836{
837 if (PageHighMem(page))
838 return;
Ingo Molnar9f4c8152008-01-30 13:33:41 +0100839 if (!enable) {
Ingo Molnarf9b84042006-06-27 02:54:49 -0700840 debug_check_no_locks_freed(page_address(page),
841 numpages * PAGE_SIZE);
Ingo Molnar9f4c8152008-01-30 13:33:41 +0100842 }
Ingo Molnarde5097c2006-01-09 15:59:21 -0800843
Ingo Molnar9f4c8152008-01-30 13:33:41 +0100844 /*
Ingo Molnar12d6f212008-01-30 13:33:58 +0100845 * If page allocator is not up yet then do not call c_p_a():
846 */
847 if (!debug_pagealloc_enabled)
848 return;
849
850 /*
Ingo Molnare4b71dc2008-01-30 13:34:04 +0100851 * The return value is ignored - the calls cannot fail,
852 * large pages are disabled at boot time:
Linus Torvalds1da177e2005-04-16 15:20:36 -0700853 */
Ingo Molnarf62d0f02008-01-30 13:34:07 +0100854 if (enable)
855 __set_pages_p(page, numpages);
856 else
857 __set_pages_np(page, numpages);
Ingo Molnar9f4c8152008-01-30 13:33:41 +0100858
859 /*
Ingo Molnare4b71dc2008-01-30 13:34:04 +0100860 * We should perform an IPI and flush all tlbs,
861 * but that can deadlock->flush only current cpu:
Linus Torvalds1da177e2005-04-16 15:20:36 -0700862 */
863 __flush_tlb_all();
Thomas Gleixner76ebd052008-02-09 23:24:09 +0100864
865 /*
866 * Try to refill the page pool here. We can do this only after
867 * the tlb flush.
868 */
869 cpa_fill_pool();
Linus Torvalds1da177e2005-04-16 15:20:36 -0700870}
871#endif
Arjan van de Vend1028a12008-01-30 13:34:07 +0100872
873/*
874 * The testcases use internal knowledge of the implementation that shouldn't
875 * be exposed to the rest of the kernel. Include these directly here.
876 */
877#ifdef CONFIG_CPA_DEBUG
878#include "pageattr-test.c"
879#endif