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Jeremy Fitzhardinge3b827c12007-07-17 18:37:04 -07001/*
2 * Xen mmu operations
3 *
4 * This file contains the various mmu fetch and update operations.
5 * The most important job they must perform is the mapping between the
6 * domain's pfn and the overall machine mfns.
7 *
8 * Xen allows guests to directly update the pagetable, in a controlled
9 * fashion. In other words, the guest modifies the same pagetable
10 * that the CPU actually uses, which eliminates the overhead of having
11 * a separate shadow pagetable.
12 *
13 * In order to allow this, it falls on the guest domain to map its
14 * notion of a "physical" pfn - which is just a domain-local linear
15 * address - into a real "machine address" which the CPU's MMU can
16 * use.
17 *
18 * A pgd_t/pmd_t/pte_t will typically contain an mfn, and so can be
19 * inserted directly into the pagetable. When creating a new
20 * pte/pmd/pgd, it converts the passed pfn into an mfn. Conversely,
21 * when reading the content back with __(pgd|pmd|pte)_val, it converts
22 * the mfn back into a pfn.
23 *
24 * The other constraint is that all pages which make up a pagetable
25 * must be mapped read-only in the guest. This prevents uncontrolled
26 * guest updates to the pagetable. Xen strictly enforces this, and
27 * will disallow any pagetable update which will end up mapping a
28 * pagetable page RW, and will disallow using any writable page as a
29 * pagetable.
30 *
31 * Naively, when loading %cr3 with the base of a new pagetable, Xen
32 * would need to validate the whole pagetable before going on.
33 * Naturally, this is quite slow. The solution is to "pin" a
34 * pagetable, which enforces all the constraints on the pagetable even
35 * when it is not actively in use. This menas that Xen can be assured
36 * that it is still valid when you do load it into %cr3, and doesn't
37 * need to revalidate it.
38 *
39 * Jeremy Fitzhardinge <jeremy@xensource.com>, XenSource Inc, 2007
40 */
Jeremy Fitzhardingef120f132007-07-17 18:37:06 -070041#include <linux/sched.h>
Jeremy Fitzhardingef4f97b32007-07-17 18:37:05 -070042#include <linux/highmem.h>
Jeremy Fitzhardinge994025c2008-08-20 17:02:19 -070043#include <linux/debugfs.h>
Jeremy Fitzhardinge3b827c12007-07-17 18:37:04 -070044#include <linux/bug.h>
Jeremy Fitzhardinge3b827c12007-07-17 18:37:04 -070045
46#include <asm/pgtable.h>
47#include <asm/tlbflush.h>
Jeremy Fitzhardinge5deb30d2008-07-08 15:07:06 -070048#include <asm/fixmap.h>
Jeremy Fitzhardinge3b827c12007-07-17 18:37:04 -070049#include <asm/mmu_context.h>
Jeremy Fitzhardinge319f3ba2009-01-28 14:35:01 -080050#include <asm/setup.h>
Jeremy Fitzhardingef4f97b32007-07-17 18:37:05 -070051#include <asm/paravirt.h>
Jeremy Fitzhardingecbcd79c2008-07-08 15:06:27 -070052#include <asm/linkage.h>
Jeremy Fitzhardinge3b827c12007-07-17 18:37:04 -070053
54#include <asm/xen/hypercall.h>
Jeremy Fitzhardingef4f97b32007-07-17 18:37:05 -070055#include <asm/xen/hypervisor.h>
Jeremy Fitzhardinge3b827c12007-07-17 18:37:04 -070056
57#include <xen/page.h>
58#include <xen/interface/xen.h>
Jeremy Fitzhardinge319f3ba2009-01-28 14:35:01 -080059#include <xen/interface/version.h>
60#include <xen/hvc-console.h>
Jeremy Fitzhardinge3b827c12007-07-17 18:37:04 -070061
Jeremy Fitzhardingef4f97b32007-07-17 18:37:05 -070062#include "multicalls.h"
Jeremy Fitzhardinge3b827c12007-07-17 18:37:04 -070063#include "mmu.h"
Jeremy Fitzhardinge994025c2008-08-20 17:02:19 -070064#include "debugfs.h"
65
66#define MMU_UPDATE_HISTO 30
67
68#ifdef CONFIG_XEN_DEBUG_FS
69
70static struct {
71 u32 pgd_update;
72 u32 pgd_update_pinned;
73 u32 pgd_update_batched;
74
75 u32 pud_update;
76 u32 pud_update_pinned;
77 u32 pud_update_batched;
78
79 u32 pmd_update;
80 u32 pmd_update_pinned;
81 u32 pmd_update_batched;
82
83 u32 pte_update;
84 u32 pte_update_pinned;
85 u32 pte_update_batched;
86
87 u32 mmu_update;
88 u32 mmu_update_extended;
89 u32 mmu_update_histo[MMU_UPDATE_HISTO];
90
91 u32 prot_commit;
92 u32 prot_commit_batched;
93
94 u32 set_pte_at;
95 u32 set_pte_at_batched;
96 u32 set_pte_at_pinned;
97 u32 set_pte_at_current;
98 u32 set_pte_at_kernel;
99} mmu_stats;
100
101static u8 zero_stats;
102
103static inline void check_zero(void)
104{
105 if (unlikely(zero_stats)) {
106 memset(&mmu_stats, 0, sizeof(mmu_stats));
107 zero_stats = 0;
108 }
109}
110
111#define ADD_STATS(elem, val) \
112 do { check_zero(); mmu_stats.elem += (val); } while(0)
113
114#else /* !CONFIG_XEN_DEBUG_FS */
115
116#define ADD_STATS(elem, val) do { (void)(val); } while(0)
117
118#endif /* CONFIG_XEN_DEBUG_FS */
Jeremy Fitzhardinge3b827c12007-07-17 18:37:04 -0700119
Jeremy Fitzhardinge319f3ba2009-01-28 14:35:01 -0800120
121/*
122 * Identity map, in addition to plain kernel map. This needs to be
123 * large enough to allocate page table pages to allocate the rest.
124 * Each page can map 2MB.
125 */
126static pte_t level1_ident_pgt[PTRS_PER_PTE * 4] __page_aligned_bss;
127
128#ifdef CONFIG_X86_64
129/* l3 pud for userspace vsyscall mapping */
130static pud_t level3_user_vsyscall[PTRS_PER_PUD] __page_aligned_bss;
131#endif /* CONFIG_X86_64 */
132
133/*
134 * Note about cr3 (pagetable base) values:
135 *
136 * xen_cr3 contains the current logical cr3 value; it contains the
137 * last set cr3. This may not be the current effective cr3, because
138 * its update may be being lazily deferred. However, a vcpu looking
139 * at its own cr3 can use this value knowing that it everything will
140 * be self-consistent.
141 *
142 * xen_current_cr3 contains the actual vcpu cr3; it is set once the
143 * hypercall to set the vcpu cr3 is complete (so it may be a little
144 * out of date, but it will never be set early). If one vcpu is
145 * looking at another vcpu's cr3 value, it should use this variable.
146 */
147DEFINE_PER_CPU(unsigned long, xen_cr3); /* cr3 stored as physaddr */
148DEFINE_PER_CPU(unsigned long, xen_current_cr3); /* actual vcpu cr3 */
149
150
Jeremy Fitzhardinged6182fb2008-07-08 15:07:13 -0700151/*
152 * Just beyond the highest usermode address. STACK_TOP_MAX has a
153 * redzone above it, so round it up to a PGD boundary.
154 */
155#define USER_LIMIT ((STACK_TOP_MAX + PGDIR_SIZE - 1) & PGDIR_MASK)
156
157
Jeremy Fitzhardinged451bb72008-05-26 23:31:18 +0100158#define P2M_ENTRIES_PER_PAGE (PAGE_SIZE / sizeof(unsigned long))
Jeremy Fitzhardingecf0923e2008-05-26 23:31:20 +0100159#define TOP_ENTRIES (MAX_DOMAIN_PAGES / P2M_ENTRIES_PER_PAGE)
Jeremy Fitzhardinged451bb72008-05-26 23:31:18 +0100160
Jeremy Fitzhardingecf0923e2008-05-26 23:31:20 +0100161/* Placeholder for holes in the address space */
Jeremy Fitzhardingecbcd79c2008-07-08 15:06:27 -0700162static unsigned long p2m_missing[P2M_ENTRIES_PER_PAGE] __page_aligned_data =
Jeremy Fitzhardingecf0923e2008-05-26 23:31:20 +0100163 { [ 0 ... P2M_ENTRIES_PER_PAGE-1 ] = ~0UL };
164
165 /* Array of pointers to pages containing p2m entries */
Jeremy Fitzhardingecbcd79c2008-07-08 15:06:27 -0700166static unsigned long *p2m_top[TOP_ENTRIES] __page_aligned_data =
Jeremy Fitzhardingecf0923e2008-05-26 23:31:20 +0100167 { [ 0 ... TOP_ENTRIES - 1] = &p2m_missing[0] };
Jeremy Fitzhardinged451bb72008-05-26 23:31:18 +0100168
Jeremy Fitzhardinged5edbc1f2008-05-26 23:31:22 +0100169/* Arrays of p2m arrays expressed in mfns used for save/restore */
Jeremy Fitzhardingecbcd79c2008-07-08 15:06:27 -0700170static unsigned long p2m_top_mfn[TOP_ENTRIES] __page_aligned_bss;
Jeremy Fitzhardinged5edbc1f2008-05-26 23:31:22 +0100171
Jeremy Fitzhardingecbcd79c2008-07-08 15:06:27 -0700172static unsigned long p2m_top_mfn_list[TOP_ENTRIES / P2M_ENTRIES_PER_PAGE]
173 __page_aligned_bss;
Jeremy Fitzhardinged5edbc1f2008-05-26 23:31:22 +0100174
Jeremy Fitzhardinged451bb72008-05-26 23:31:18 +0100175static inline unsigned p2m_top_index(unsigned long pfn)
176{
Jeremy Fitzhardinge8006ec32008-05-26 23:31:19 +0100177 BUG_ON(pfn >= MAX_DOMAIN_PAGES);
Jeremy Fitzhardinged451bb72008-05-26 23:31:18 +0100178 return pfn / P2M_ENTRIES_PER_PAGE;
179}
180
181static inline unsigned p2m_index(unsigned long pfn)
182{
183 return pfn % P2M_ENTRIES_PER_PAGE;
184}
185
Jeremy Fitzhardinged5edbc1f2008-05-26 23:31:22 +0100186/* Build the parallel p2m_top_mfn structures */
187void xen_setup_mfn_list_list(void)
188{
189 unsigned pfn, idx;
190
Tejf63c2f22008-12-16 11:56:06 -0800191 for (pfn = 0; pfn < MAX_DOMAIN_PAGES; pfn += P2M_ENTRIES_PER_PAGE) {
Jeremy Fitzhardinged5edbc1f2008-05-26 23:31:22 +0100192 unsigned topidx = p2m_top_index(pfn);
193
194 p2m_top_mfn[topidx] = virt_to_mfn(p2m_top[topidx]);
195 }
196
Tejf63c2f22008-12-16 11:56:06 -0800197 for (idx = 0; idx < ARRAY_SIZE(p2m_top_mfn_list); idx++) {
Jeremy Fitzhardinged5edbc1f2008-05-26 23:31:22 +0100198 unsigned topidx = idx * P2M_ENTRIES_PER_PAGE;
199 p2m_top_mfn_list[idx] = virt_to_mfn(&p2m_top_mfn[topidx]);
200 }
201
202 BUG_ON(HYPERVISOR_shared_info == &xen_dummy_shared_info);
203
204 HYPERVISOR_shared_info->arch.pfn_to_mfn_frame_list_list =
205 virt_to_mfn(p2m_top_mfn_list);
206 HYPERVISOR_shared_info->arch.max_pfn = xen_start_info->nr_pages;
207}
208
209/* Set up p2m_top to point to the domain-builder provided p2m pages */
Jeremy Fitzhardinged451bb72008-05-26 23:31:18 +0100210void __init xen_build_dynamic_phys_to_machine(void)
211{
Jeremy Fitzhardinged451bb72008-05-26 23:31:18 +0100212 unsigned long *mfn_list = (unsigned long *)xen_start_info->mfn_list;
Jeremy Fitzhardinge8006ec32008-05-26 23:31:19 +0100213 unsigned long max_pfn = min(MAX_DOMAIN_PAGES, xen_start_info->nr_pages);
Jeremy Fitzhardinged5edbc1f2008-05-26 23:31:22 +0100214 unsigned pfn;
Jeremy Fitzhardinged451bb72008-05-26 23:31:18 +0100215
Tejf63c2f22008-12-16 11:56:06 -0800216 for (pfn = 0; pfn < max_pfn; pfn += P2M_ENTRIES_PER_PAGE) {
Jeremy Fitzhardinged451bb72008-05-26 23:31:18 +0100217 unsigned topidx = p2m_top_index(pfn);
218
219 p2m_top[topidx] = &mfn_list[pfn];
220 }
221}
222
223unsigned long get_phys_to_machine(unsigned long pfn)
224{
225 unsigned topidx, idx;
226
Jeremy Fitzhardinge8006ec32008-05-26 23:31:19 +0100227 if (unlikely(pfn >= MAX_DOMAIN_PAGES))
228 return INVALID_P2M_ENTRY;
229
Jeremy Fitzhardinged451bb72008-05-26 23:31:18 +0100230 topidx = p2m_top_index(pfn);
Jeremy Fitzhardinged451bb72008-05-26 23:31:18 +0100231 idx = p2m_index(pfn);
232 return p2m_top[topidx][idx];
233}
Ingo Molnar15ce60052008-06-02 13:20:11 +0200234EXPORT_SYMBOL_GPL(get_phys_to_machine);
Jeremy Fitzhardinged451bb72008-05-26 23:31:18 +0100235
Jeremy Fitzhardingee791ca02009-02-26 15:48:33 -0800236/* install a new p2m_top page */
237bool install_p2mtop_page(unsigned long pfn, unsigned long *p)
Jeremy Fitzhardinged451bb72008-05-26 23:31:18 +0100238{
Jeremy Fitzhardingee791ca02009-02-26 15:48:33 -0800239 unsigned topidx = p2m_top_index(pfn);
240 unsigned long **pfnp, *mfnp;
Jeremy Fitzhardinged451bb72008-05-26 23:31:18 +0100241 unsigned i;
242
Jeremy Fitzhardingee791ca02009-02-26 15:48:33 -0800243 pfnp = &p2m_top[topidx];
244 mfnp = &p2m_top_mfn[topidx];
Jeremy Fitzhardinged451bb72008-05-26 23:31:18 +0100245
Tejf63c2f22008-12-16 11:56:06 -0800246 for (i = 0; i < P2M_ENTRIES_PER_PAGE; i++)
Jeremy Fitzhardinged451bb72008-05-26 23:31:18 +0100247 p[i] = INVALID_P2M_ENTRY;
248
Jeremy Fitzhardingee791ca02009-02-26 15:48:33 -0800249 if (cmpxchg(pfnp, p2m_missing, p) == p2m_missing) {
Jeremy Fitzhardinged5edbc1f2008-05-26 23:31:22 +0100250 *mfnp = virt_to_mfn(p);
Jeremy Fitzhardingee791ca02009-02-26 15:48:33 -0800251 return true;
252 }
253
254 return false;
255}
256
257static void alloc_p2m(unsigned long pfn)
258{
259 unsigned long *p;
260
261 p = (void *)__get_free_page(GFP_KERNEL | __GFP_NOFAIL);
262 BUG_ON(p == NULL);
263
264 if (!install_p2mtop_page(pfn, p))
265 free_page((unsigned long)p);
266}
267
268/* Try to install p2m mapping; fail if intermediate bits missing */
269bool __set_phys_to_machine(unsigned long pfn, unsigned long mfn)
270{
271 unsigned topidx, idx;
272
273 if (unlikely(pfn >= MAX_DOMAIN_PAGES)) {
274 BUG_ON(mfn != INVALID_P2M_ENTRY);
275 return true;
276 }
277
278 topidx = p2m_top_index(pfn);
279 if (p2m_top[topidx] == p2m_missing) {
280 if (mfn == INVALID_P2M_ENTRY)
281 return true;
282 return false;
283 }
284
285 idx = p2m_index(pfn);
286 p2m_top[topidx][idx] = mfn;
287
288 return true;
Jeremy Fitzhardinged451bb72008-05-26 23:31:18 +0100289}
290
291void set_phys_to_machine(unsigned long pfn, unsigned long mfn)
292{
Jeremy Fitzhardinged451bb72008-05-26 23:31:18 +0100293 if (unlikely(xen_feature(XENFEAT_auto_translated_physmap))) {
294 BUG_ON(pfn != mfn && mfn != INVALID_P2M_ENTRY);
295 return;
296 }
297
Jeremy Fitzhardingee791ca02009-02-26 15:48:33 -0800298 if (unlikely(!__set_phys_to_machine(pfn, mfn))) {
299 alloc_p2m(pfn);
Jeremy Fitzhardinge8006ec32008-05-26 23:31:19 +0100300
Jeremy Fitzhardingee791ca02009-02-26 15:48:33 -0800301 if (!__set_phys_to_machine(pfn, mfn))
302 BUG();
Jeremy Fitzhardinged451bb72008-05-26 23:31:18 +0100303 }
Jeremy Fitzhardinged451bb72008-05-26 23:31:18 +0100304}
305
Jeremy Fitzhardinge9976b392009-02-27 09:19:26 -0800306unsigned long arbitrary_virt_to_mfn(void *vaddr)
307{
308 xmaddr_t maddr = arbitrary_virt_to_machine(vaddr);
309
310 return PFN_DOWN(maddr.maddr);
311}
312
Jeremy Fitzhardingece803e72008-07-08 15:06:55 -0700313xmaddr_t arbitrary_virt_to_machine(void *vaddr)
Jeremy Fitzhardinge3b827c12007-07-17 18:37:04 -0700314{
Jeremy Fitzhardingece803e72008-07-08 15:06:55 -0700315 unsigned long address = (unsigned long)vaddr;
Harvey Harrisonda7bfc52008-02-09 23:24:08 +0100316 unsigned int level;
Chris Lalancette9f32d212008-10-23 17:40:25 -0700317 pte_t *pte;
318 unsigned offset;
Jeremy Fitzhardinge3b827c12007-07-17 18:37:04 -0700319
Chris Lalancette9f32d212008-10-23 17:40:25 -0700320 /*
321 * if the PFN is in the linear mapped vaddr range, we can just use
322 * the (quick) virt_to_machine() p2m lookup
323 */
324 if (virt_addr_valid(vaddr))
325 return virt_to_machine(vaddr);
326
327 /* otherwise we have to do a (slower) full page-table walk */
328
329 pte = lookup_address(address, &level);
Jeremy Fitzhardinge3b827c12007-07-17 18:37:04 -0700330 BUG_ON(pte == NULL);
Chris Lalancette9f32d212008-10-23 17:40:25 -0700331 offset = address & ~PAGE_MASK;
Jeremy Fitzhardingeebd879e2008-07-08 15:06:54 -0700332 return XMADDR(((phys_addr_t)pte_mfn(*pte) << PAGE_SHIFT) + offset);
Jeremy Fitzhardinge3b827c12007-07-17 18:37:04 -0700333}
334
335void make_lowmem_page_readonly(void *vaddr)
336{
337 pte_t *pte, ptev;
338 unsigned long address = (unsigned long)vaddr;
Harvey Harrisonda7bfc52008-02-09 23:24:08 +0100339 unsigned int level;
Jeremy Fitzhardinge3b827c12007-07-17 18:37:04 -0700340
Ingo Molnarf0646e42008-01-30 13:33:43 +0100341 pte = lookup_address(address, &level);
Jeremy Fitzhardinge3b827c12007-07-17 18:37:04 -0700342 BUG_ON(pte == NULL);
343
344 ptev = pte_wrprotect(*pte);
345
346 if (HYPERVISOR_update_va_mapping(address, ptev, 0))
347 BUG();
348}
349
350void make_lowmem_page_readwrite(void *vaddr)
351{
352 pte_t *pte, ptev;
353 unsigned long address = (unsigned long)vaddr;
Harvey Harrisonda7bfc52008-02-09 23:24:08 +0100354 unsigned int level;
Jeremy Fitzhardinge3b827c12007-07-17 18:37:04 -0700355
Ingo Molnarf0646e42008-01-30 13:33:43 +0100356 pte = lookup_address(address, &level);
Jeremy Fitzhardinge3b827c12007-07-17 18:37:04 -0700357 BUG_ON(pte == NULL);
358
359 ptev = pte_mkwrite(*pte);
360
361 if (HYPERVISOR_update_va_mapping(address, ptev, 0))
362 BUG();
363}
364
365
Jeremy Fitzhardinge7708ad62008-08-19 13:34:22 -0700366static bool xen_page_pinned(void *ptr)
Jeremy Fitzhardingee2426cf2008-05-31 01:24:27 +0100367{
368 struct page *page = virt_to_page(ptr);
369
370 return PagePinned(page);
371}
372
Jeremy Fitzhardinge7708ad62008-08-19 13:34:22 -0700373static void xen_extend_mmu_update(const struct mmu_update *update)
Jeremy Fitzhardinge3b827c12007-07-17 18:37:04 -0700374{
Jeremy Fitzhardinged66bf8f2007-07-17 18:37:06 -0700375 struct multicall_space mcs;
376 struct mmu_update *u;
Jeremy Fitzhardinge3b827c12007-07-17 18:37:04 -0700377
Jeremy Fitzhardinge400d3492008-06-16 04:30:03 -0700378 mcs = xen_mc_extend_args(__HYPERVISOR_mmu_update, sizeof(*u));
379
Jeremy Fitzhardinge994025c2008-08-20 17:02:19 -0700380 if (mcs.mc != NULL) {
381 ADD_STATS(mmu_update_extended, 1);
382 ADD_STATS(mmu_update_histo[mcs.mc->args[1]], -1);
383
Jeremy Fitzhardinge400d3492008-06-16 04:30:03 -0700384 mcs.mc->args[1]++;
Jeremy Fitzhardinge994025c2008-08-20 17:02:19 -0700385
386 if (mcs.mc->args[1] < MMU_UPDATE_HISTO)
387 ADD_STATS(mmu_update_histo[mcs.mc->args[1]], 1);
388 else
389 ADD_STATS(mmu_update_histo[0], 1);
390 } else {
391 ADD_STATS(mmu_update, 1);
Jeremy Fitzhardinge400d3492008-06-16 04:30:03 -0700392 mcs = __xen_mc_entry(sizeof(*u));
393 MULTI_mmu_update(mcs.mc, mcs.args, 1, NULL, DOMID_SELF);
Jeremy Fitzhardinge994025c2008-08-20 17:02:19 -0700394 ADD_STATS(mmu_update_histo[1], 1);
Jeremy Fitzhardinge400d3492008-06-16 04:30:03 -0700395 }
396
397 u = mcs.args;
398 *u = *update;
399}
400
401void xen_set_pmd_hyper(pmd_t *ptr, pmd_t val)
402{
403 struct mmu_update u;
404
Jeremy Fitzhardinged66bf8f2007-07-17 18:37:06 -0700405 preempt_disable();
406
Jeremy Fitzhardinge400d3492008-06-16 04:30:03 -0700407 xen_mc_batch();
408
Jeremy Fitzhardingece803e72008-07-08 15:06:55 -0700409 /* ptr may be ioremapped for 64-bit pagetable setup */
410 u.ptr = arbitrary_virt_to_machine(ptr).maddr;
Jeremy Fitzhardinge400d3492008-06-16 04:30:03 -0700411 u.val = pmd_val_ma(val);
Jeremy Fitzhardinge7708ad62008-08-19 13:34:22 -0700412 xen_extend_mmu_update(&u);
Jeremy Fitzhardinged66bf8f2007-07-17 18:37:06 -0700413
Jeremy Fitzhardinge994025c2008-08-20 17:02:19 -0700414 ADD_STATS(pmd_update_batched, paravirt_get_lazy_mode() == PARAVIRT_LAZY_MMU);
415
Jeremy Fitzhardinged66bf8f2007-07-17 18:37:06 -0700416 xen_mc_issue(PARAVIRT_LAZY_MMU);
417
418 preempt_enable();
Jeremy Fitzhardinge3b827c12007-07-17 18:37:04 -0700419}
420
Jeremy Fitzhardingee2426cf2008-05-31 01:24:27 +0100421void xen_set_pmd(pmd_t *ptr, pmd_t val)
422{
Jeremy Fitzhardinge994025c2008-08-20 17:02:19 -0700423 ADD_STATS(pmd_update, 1);
424
Jeremy Fitzhardingee2426cf2008-05-31 01:24:27 +0100425 /* If page is not pinned, we can just update the entry
426 directly */
Jeremy Fitzhardinge7708ad62008-08-19 13:34:22 -0700427 if (!xen_page_pinned(ptr)) {
Jeremy Fitzhardingee2426cf2008-05-31 01:24:27 +0100428 *ptr = val;
429 return;
430 }
431
Jeremy Fitzhardinge994025c2008-08-20 17:02:19 -0700432 ADD_STATS(pmd_update_pinned, 1);
433
Jeremy Fitzhardingee2426cf2008-05-31 01:24:27 +0100434 xen_set_pmd_hyper(ptr, val);
435}
436
Jeremy Fitzhardinge3b827c12007-07-17 18:37:04 -0700437/*
438 * Associate a virtual page frame with a given physical page frame
439 * and protection flags for that frame.
440 */
441void set_pte_mfn(unsigned long vaddr, unsigned long mfn, pgprot_t flags)
442{
Jeremy Fitzhardinge836fe2f2008-07-08 15:06:58 -0700443 set_pte_vaddr(vaddr, mfn_pte(mfn, flags));
Jeremy Fitzhardinge3b827c12007-07-17 18:37:04 -0700444}
445
446void xen_set_pte_at(struct mm_struct *mm, unsigned long addr,
447 pte_t *ptep, pte_t pteval)
448{
Jeremy Fitzhardinge2bd50032008-04-02 10:54:10 -0700449 /* updates to init_mm may be done without lock */
450 if (mm == &init_mm)
451 preempt_disable();
452
Jeremy Fitzhardinge994025c2008-08-20 17:02:19 -0700453 ADD_STATS(set_pte_at, 1);
454// ADD_STATS(set_pte_at_pinned, xen_page_pinned(ptep));
455 ADD_STATS(set_pte_at_current, mm == current->mm);
456 ADD_STATS(set_pte_at_kernel, mm == &init_mm);
457
Jeremy Fitzhardinged66bf8f2007-07-17 18:37:06 -0700458 if (mm == current->mm || mm == &init_mm) {
Jeremy Fitzhardinge8965c1c02007-10-16 11:51:29 -0700459 if (paravirt_get_lazy_mode() == PARAVIRT_LAZY_MMU) {
Jeremy Fitzhardinged66bf8f2007-07-17 18:37:06 -0700460 struct multicall_space mcs;
461 mcs = xen_mc_entry(0);
462
463 MULTI_update_va_mapping(mcs.mc, addr, pteval, 0);
Jeremy Fitzhardinge994025c2008-08-20 17:02:19 -0700464 ADD_STATS(set_pte_at_batched, 1);
Jeremy Fitzhardinged66bf8f2007-07-17 18:37:06 -0700465 xen_mc_issue(PARAVIRT_LAZY_MMU);
Jeremy Fitzhardinge2bd50032008-04-02 10:54:10 -0700466 goto out;
Jeremy Fitzhardinged66bf8f2007-07-17 18:37:06 -0700467 } else
468 if (HYPERVISOR_update_va_mapping(addr, pteval, 0) == 0)
Jeremy Fitzhardinge2bd50032008-04-02 10:54:10 -0700469 goto out;
Jeremy Fitzhardinged66bf8f2007-07-17 18:37:06 -0700470 }
471 xen_set_pte(ptep, pteval);
Jeremy Fitzhardinge2bd50032008-04-02 10:54:10 -0700472
473out:
474 if (mm == &init_mm)
475 preempt_enable();
Jeremy Fitzhardinge3b827c12007-07-17 18:37:04 -0700476}
477
Tejf63c2f22008-12-16 11:56:06 -0800478pte_t xen_ptep_modify_prot_start(struct mm_struct *mm,
479 unsigned long addr, pte_t *ptep)
Jeremy Fitzhardingee57778a2008-06-16 04:30:02 -0700480{
481 /* Just return the pte as-is. We preserve the bits on commit */
482 return *ptep;
483}
484
485void xen_ptep_modify_prot_commit(struct mm_struct *mm, unsigned long addr,
486 pte_t *ptep, pte_t pte)
487{
Jeremy Fitzhardinge400d3492008-06-16 04:30:03 -0700488 struct mmu_update u;
Jeremy Fitzhardingee57778a2008-06-16 04:30:02 -0700489
Jeremy Fitzhardinge400d3492008-06-16 04:30:03 -0700490 xen_mc_batch();
491
Chris Lalancette9f32d212008-10-23 17:40:25 -0700492 u.ptr = arbitrary_virt_to_machine(ptep).maddr | MMU_PT_UPDATE_PRESERVE_AD;
Jeremy Fitzhardinge400d3492008-06-16 04:30:03 -0700493 u.val = pte_val_ma(pte);
Jeremy Fitzhardinge7708ad62008-08-19 13:34:22 -0700494 xen_extend_mmu_update(&u);
Jeremy Fitzhardingee57778a2008-06-16 04:30:02 -0700495
Jeremy Fitzhardinge994025c2008-08-20 17:02:19 -0700496 ADD_STATS(prot_commit, 1);
497 ADD_STATS(prot_commit_batched, paravirt_get_lazy_mode() == PARAVIRT_LAZY_MMU);
498
Jeremy Fitzhardingee57778a2008-06-16 04:30:02 -0700499 xen_mc_issue(PARAVIRT_LAZY_MMU);
500}
501
Jeremy Fitzhardingeebb9cfe2008-06-16 15:01:56 -0700502/* Assume pteval_t is equivalent to all the other *val_t types. */
503static pteval_t pte_mfn_to_pfn(pteval_t val)
504{
505 if (val & _PAGE_PRESENT) {
Jeremy Fitzhardinge59438c92008-07-21 22:59:42 -0700506 unsigned long mfn = (val & PTE_PFN_MASK) >> PAGE_SHIFT;
Jeremy Fitzhardinge77be1fa2008-07-21 22:59:56 -0700507 pteval_t flags = val & PTE_FLAGS_MASK;
Jeremy Fitzhardinged8355ac2008-07-03 22:10:18 -0700508 val = ((pteval_t)mfn_to_pfn(mfn) << PAGE_SHIFT) | flags;
Jeremy Fitzhardingeebb9cfe2008-06-16 15:01:56 -0700509 }
510
511 return val;
512}
513
514static pteval_t pte_pfn_to_mfn(pteval_t val)
515{
516 if (val & _PAGE_PRESENT) {
Jeremy Fitzhardinge59438c92008-07-21 22:59:42 -0700517 unsigned long pfn = (val & PTE_PFN_MASK) >> PAGE_SHIFT;
Jeremy Fitzhardinge77be1fa2008-07-21 22:59:56 -0700518 pteval_t flags = val & PTE_FLAGS_MASK;
Jeremy Fitzhardinged8355ac2008-07-03 22:10:18 -0700519 val = ((pteval_t)pfn_to_mfn(pfn) << PAGE_SHIFT) | flags;
Jeremy Fitzhardingeebb9cfe2008-06-16 15:01:56 -0700520 }
521
522 return val;
523}
524
Jeremy Fitzhardinge947a69c2008-03-17 16:37:09 -0700525pteval_t xen_pte_val(pte_t pte)
526{
Jeremy Fitzhardingeebb9cfe2008-06-16 15:01:56 -0700527 return pte_mfn_to_pfn(pte.pte);
Jeremy Fitzhardinge947a69c2008-03-17 16:37:09 -0700528}
Jeremy Fitzhardingeda5de7c2009-01-28 14:35:07 -0800529PV_CALLEE_SAVE_REGS_THUNK(xen_pte_val);
Jeremy Fitzhardinge947a69c2008-03-17 16:37:09 -0700530
531pgdval_t xen_pgd_val(pgd_t pgd)
532{
Jeremy Fitzhardingeebb9cfe2008-06-16 15:01:56 -0700533 return pte_mfn_to_pfn(pgd.pgd);
Jeremy Fitzhardinge947a69c2008-03-17 16:37:09 -0700534}
Jeremy Fitzhardingeda5de7c2009-01-28 14:35:07 -0800535PV_CALLEE_SAVE_REGS_THUNK(xen_pgd_val);
Jeremy Fitzhardinge947a69c2008-03-17 16:37:09 -0700536
537pte_t xen_make_pte(pteval_t pte)
538{
Jeremy Fitzhardingeebb9cfe2008-06-16 15:01:56 -0700539 pte = pte_pfn_to_mfn(pte);
540 return native_make_pte(pte);
Jeremy Fitzhardinge947a69c2008-03-17 16:37:09 -0700541}
Jeremy Fitzhardingeda5de7c2009-01-28 14:35:07 -0800542PV_CALLEE_SAVE_REGS_THUNK(xen_make_pte);
Jeremy Fitzhardinge947a69c2008-03-17 16:37:09 -0700543
544pgd_t xen_make_pgd(pgdval_t pgd)
545{
Jeremy Fitzhardingeebb9cfe2008-06-16 15:01:56 -0700546 pgd = pte_pfn_to_mfn(pgd);
547 return native_make_pgd(pgd);
Jeremy Fitzhardinge947a69c2008-03-17 16:37:09 -0700548}
Jeremy Fitzhardingeda5de7c2009-01-28 14:35:07 -0800549PV_CALLEE_SAVE_REGS_THUNK(xen_make_pgd);
Jeremy Fitzhardinge947a69c2008-03-17 16:37:09 -0700550
551pmdval_t xen_pmd_val(pmd_t pmd)
552{
Jeremy Fitzhardingeebb9cfe2008-06-16 15:01:56 -0700553 return pte_mfn_to_pfn(pmd.pmd);
Jeremy Fitzhardinge947a69c2008-03-17 16:37:09 -0700554}
Jeremy Fitzhardingeda5de7c2009-01-28 14:35:07 -0800555PV_CALLEE_SAVE_REGS_THUNK(xen_pmd_val);
Jeremy Fitzhardinge28499142008-05-09 12:05:57 +0100556
Jeremy Fitzhardingee2426cf2008-05-31 01:24:27 +0100557void xen_set_pud_hyper(pud_t *ptr, pud_t val)
Jeremy Fitzhardingef4f97b32007-07-17 18:37:05 -0700558{
Jeremy Fitzhardinge400d3492008-06-16 04:30:03 -0700559 struct mmu_update u;
Jeremy Fitzhardingef4f97b32007-07-17 18:37:05 -0700560
Jeremy Fitzhardinged66bf8f2007-07-17 18:37:06 -0700561 preempt_disable();
562
Jeremy Fitzhardinge400d3492008-06-16 04:30:03 -0700563 xen_mc_batch();
564
Jeremy Fitzhardingece803e72008-07-08 15:06:55 -0700565 /* ptr may be ioremapped for 64-bit pagetable setup */
566 u.ptr = arbitrary_virt_to_machine(ptr).maddr;
Jeremy Fitzhardinge400d3492008-06-16 04:30:03 -0700567 u.val = pud_val_ma(val);
Jeremy Fitzhardinge7708ad62008-08-19 13:34:22 -0700568 xen_extend_mmu_update(&u);
Jeremy Fitzhardinged66bf8f2007-07-17 18:37:06 -0700569
Jeremy Fitzhardinge994025c2008-08-20 17:02:19 -0700570 ADD_STATS(pud_update_batched, paravirt_get_lazy_mode() == PARAVIRT_LAZY_MMU);
571
Jeremy Fitzhardinged66bf8f2007-07-17 18:37:06 -0700572 xen_mc_issue(PARAVIRT_LAZY_MMU);
573
574 preempt_enable();
Jeremy Fitzhardingef4f97b32007-07-17 18:37:05 -0700575}
576
Jeremy Fitzhardingee2426cf2008-05-31 01:24:27 +0100577void xen_set_pud(pud_t *ptr, pud_t val)
578{
Jeremy Fitzhardinge994025c2008-08-20 17:02:19 -0700579 ADD_STATS(pud_update, 1);
580
Jeremy Fitzhardingee2426cf2008-05-31 01:24:27 +0100581 /* If page is not pinned, we can just update the entry
582 directly */
Jeremy Fitzhardinge7708ad62008-08-19 13:34:22 -0700583 if (!xen_page_pinned(ptr)) {
Jeremy Fitzhardingee2426cf2008-05-31 01:24:27 +0100584 *ptr = val;
585 return;
586 }
587
Jeremy Fitzhardinge994025c2008-08-20 17:02:19 -0700588 ADD_STATS(pud_update_pinned, 1);
589
Jeremy Fitzhardingee2426cf2008-05-31 01:24:27 +0100590 xen_set_pud_hyper(ptr, val);
591}
592
Jeremy Fitzhardingef4f97b32007-07-17 18:37:05 -0700593void xen_set_pte(pte_t *ptep, pte_t pte)
594{
Jeremy Fitzhardinge994025c2008-08-20 17:02:19 -0700595 ADD_STATS(pte_update, 1);
596// ADD_STATS(pte_update_pinned, xen_page_pinned(ptep));
597 ADD_STATS(pte_update_batched, paravirt_get_lazy_mode() == PARAVIRT_LAZY_MMU);
598
Jeremy Fitzhardingef6e58732008-07-08 15:06:38 -0700599#ifdef CONFIG_X86_PAE
Jeremy Fitzhardingef4f97b32007-07-17 18:37:05 -0700600 ptep->pte_high = pte.pte_high;
601 smp_wmb();
602 ptep->pte_low = pte.pte_low;
Jeremy Fitzhardingef6e58732008-07-08 15:06:38 -0700603#else
604 *ptep = pte;
605#endif
Jeremy Fitzhardingef4f97b32007-07-17 18:37:05 -0700606}
607
Jeremy Fitzhardingef6e58732008-07-08 15:06:38 -0700608#ifdef CONFIG_X86_PAE
Jeremy Fitzhardinge3b827c12007-07-17 18:37:04 -0700609void xen_set_pte_atomic(pte_t *ptep, pte_t pte)
610{
Jeremy Fitzhardingef6e58732008-07-08 15:06:38 -0700611 set_64bit((u64 *)ptep, native_pte_val(pte));
Jeremy Fitzhardinge3b827c12007-07-17 18:37:04 -0700612}
613
614void xen_pte_clear(struct mm_struct *mm, unsigned long addr, pte_t *ptep)
615{
616 ptep->pte_low = 0;
617 smp_wmb(); /* make sure low gets written first */
618 ptep->pte_high = 0;
619}
620
621void xen_pmd_clear(pmd_t *pmdp)
622{
Jeremy Fitzhardingee2426cf2008-05-31 01:24:27 +0100623 set_pmd(pmdp, __pmd(0));
Jeremy Fitzhardinge3b827c12007-07-17 18:37:04 -0700624}
Jeremy Fitzhardingef6e58732008-07-08 15:06:38 -0700625#endif /* CONFIG_X86_PAE */
Jeremy Fitzhardinge3b827c12007-07-17 18:37:04 -0700626
Jeremy Fitzhardingeabf33032008-03-17 16:37:07 -0700627pmd_t xen_make_pmd(pmdval_t pmd)
Jeremy Fitzhardinge3b827c12007-07-17 18:37:04 -0700628{
Jeremy Fitzhardingeebb9cfe2008-06-16 15:01:56 -0700629 pmd = pte_pfn_to_mfn(pmd);
Jeremy Fitzhardinge947a69c2008-03-17 16:37:09 -0700630 return native_make_pmd(pmd);
Jeremy Fitzhardinge3b827c12007-07-17 18:37:04 -0700631}
Jeremy Fitzhardingeda5de7c2009-01-28 14:35:07 -0800632PV_CALLEE_SAVE_REGS_THUNK(xen_make_pmd);
Jeremy Fitzhardinge3b827c12007-07-17 18:37:04 -0700633
Jeremy Fitzhardingef6e58732008-07-08 15:06:38 -0700634#if PAGETABLE_LEVELS == 4
635pudval_t xen_pud_val(pud_t pud)
636{
637 return pte_mfn_to_pfn(pud.pud);
638}
Jeremy Fitzhardingeda5de7c2009-01-28 14:35:07 -0800639PV_CALLEE_SAVE_REGS_THUNK(xen_pud_val);
Jeremy Fitzhardingef6e58732008-07-08 15:06:38 -0700640
641pud_t xen_make_pud(pudval_t pud)
642{
643 pud = pte_pfn_to_mfn(pud);
644
645 return native_make_pud(pud);
646}
Jeremy Fitzhardingeda5de7c2009-01-28 14:35:07 -0800647PV_CALLEE_SAVE_REGS_THUNK(xen_make_pud);
Jeremy Fitzhardingef6e58732008-07-08 15:06:38 -0700648
Jeremy Fitzhardinged6182fb2008-07-08 15:07:13 -0700649pgd_t *xen_get_user_pgd(pgd_t *pgd)
650{
651 pgd_t *pgd_page = (pgd_t *)(((unsigned long)pgd) & PAGE_MASK);
652 unsigned offset = pgd - pgd_page;
653 pgd_t *user_ptr = NULL;
654
655 if (offset < pgd_index(USER_LIMIT)) {
656 struct page *page = virt_to_page(pgd_page);
657 user_ptr = (pgd_t *)page->private;
658 if (user_ptr)
659 user_ptr += offset;
660 }
661
662 return user_ptr;
663}
664
665static void __xen_set_pgd_hyper(pgd_t *ptr, pgd_t val)
Jeremy Fitzhardingef6e58732008-07-08 15:06:38 -0700666{
667 struct mmu_update u;
668
Jeremy Fitzhardingef6e58732008-07-08 15:06:38 -0700669 u.ptr = virt_to_machine(ptr).maddr;
670 u.val = pgd_val_ma(val);
Jeremy Fitzhardinge7708ad62008-08-19 13:34:22 -0700671 xen_extend_mmu_update(&u);
Jeremy Fitzhardinged6182fb2008-07-08 15:07:13 -0700672}
673
674/*
675 * Raw hypercall-based set_pgd, intended for in early boot before
676 * there's a page structure. This implies:
677 * 1. The only existing pagetable is the kernel's
678 * 2. It is always pinned
679 * 3. It has no user pagetable attached to it
680 */
681void __init xen_set_pgd_hyper(pgd_t *ptr, pgd_t val)
682{
683 preempt_disable();
684
685 xen_mc_batch();
686
687 __xen_set_pgd_hyper(ptr, val);
Jeremy Fitzhardingef6e58732008-07-08 15:06:38 -0700688
689 xen_mc_issue(PARAVIRT_LAZY_MMU);
690
691 preempt_enable();
692}
693
694void xen_set_pgd(pgd_t *ptr, pgd_t val)
695{
Jeremy Fitzhardinged6182fb2008-07-08 15:07:13 -0700696 pgd_t *user_ptr = xen_get_user_pgd(ptr);
697
Jeremy Fitzhardinge994025c2008-08-20 17:02:19 -0700698 ADD_STATS(pgd_update, 1);
699
Jeremy Fitzhardingef6e58732008-07-08 15:06:38 -0700700 /* If page is not pinned, we can just update the entry
701 directly */
Jeremy Fitzhardinge7708ad62008-08-19 13:34:22 -0700702 if (!xen_page_pinned(ptr)) {
Jeremy Fitzhardingef6e58732008-07-08 15:06:38 -0700703 *ptr = val;
Jeremy Fitzhardinged6182fb2008-07-08 15:07:13 -0700704 if (user_ptr) {
Jeremy Fitzhardinge7708ad62008-08-19 13:34:22 -0700705 WARN_ON(xen_page_pinned(user_ptr));
Jeremy Fitzhardinged6182fb2008-07-08 15:07:13 -0700706 *user_ptr = val;
707 }
Jeremy Fitzhardingef6e58732008-07-08 15:06:38 -0700708 return;
709 }
710
Jeremy Fitzhardinge994025c2008-08-20 17:02:19 -0700711 ADD_STATS(pgd_update_pinned, 1);
712 ADD_STATS(pgd_update_batched, paravirt_get_lazy_mode() == PARAVIRT_LAZY_MMU);
713
Jeremy Fitzhardinged6182fb2008-07-08 15:07:13 -0700714 /* If it's pinned, then we can at least batch the kernel and
715 user updates together. */
716 xen_mc_batch();
717
718 __xen_set_pgd_hyper(ptr, val);
719 if (user_ptr)
720 __xen_set_pgd_hyper(user_ptr, val);
721
722 xen_mc_issue(PARAVIRT_LAZY_MMU);
Jeremy Fitzhardingef6e58732008-07-08 15:06:38 -0700723}
724#endif /* PAGETABLE_LEVELS == 4 */
725
Jeremy Fitzhardingef4f97b32007-07-17 18:37:05 -0700726/*
Jeremy Fitzhardinge5deb30d2008-07-08 15:07:06 -0700727 * (Yet another) pagetable walker. This one is intended for pinning a
728 * pagetable. This means that it walks a pagetable and calls the
729 * callback function on each page it finds making up the page table,
730 * at every level. It walks the entire pagetable, but it only bothers
731 * pinning pte pages which are below limit. In the normal case this
732 * will be STACK_TOP_MAX, but at boot we need to pin up to
733 * FIXADDR_TOP.
734 *
735 * For 32-bit the important bit is that we don't pin beyond there,
736 * because then we start getting into Xen's ptes.
737 *
738 * For 64-bit, we must skip the Xen hole in the middle of the address
739 * space, just after the big x86-64 virtual hole.
740 */
Ian Campbell86bbc2c2008-11-21 10:21:33 +0000741static int __xen_pgd_walk(struct mm_struct *mm, pgd_t *pgd,
742 int (*func)(struct mm_struct *mm, struct page *,
743 enum pt_level),
744 unsigned long limit)
Jeremy Fitzhardinge3b827c12007-07-17 18:37:04 -0700745{
Jeremy Fitzhardingef4f97b32007-07-17 18:37:05 -0700746 int flush = 0;
Jeremy Fitzhardinge5deb30d2008-07-08 15:07:06 -0700747 unsigned hole_low, hole_high;
748 unsigned pgdidx_limit, pudidx_limit, pmdidx_limit;
749 unsigned pgdidx, pudidx, pmdidx;
Jeremy Fitzhardingef4f97b32007-07-17 18:37:05 -0700750
Jeremy Fitzhardinge5deb30d2008-07-08 15:07:06 -0700751 /* The limit is the last byte to be touched */
752 limit--;
753 BUG_ON(limit >= FIXADDR_TOP);
Jeremy Fitzhardinge3b827c12007-07-17 18:37:04 -0700754
755 if (xen_feature(XENFEAT_auto_translated_physmap))
Jeremy Fitzhardingef4f97b32007-07-17 18:37:05 -0700756 return 0;
Jeremy Fitzhardinge3b827c12007-07-17 18:37:04 -0700757
Jeremy Fitzhardinge5deb30d2008-07-08 15:07:06 -0700758 /*
759 * 64-bit has a great big hole in the middle of the address
760 * space, which contains the Xen mappings. On 32-bit these
761 * will end up making a zero-sized hole and so is a no-op.
762 */
Jeremy Fitzhardinged6182fb2008-07-08 15:07:13 -0700763 hole_low = pgd_index(USER_LIMIT);
Jeremy Fitzhardinge5deb30d2008-07-08 15:07:06 -0700764 hole_high = pgd_index(PAGE_OFFSET);
765
766 pgdidx_limit = pgd_index(limit);
767#if PTRS_PER_PUD > 1
768 pudidx_limit = pud_index(limit);
769#else
770 pudidx_limit = 0;
771#endif
772#if PTRS_PER_PMD > 1
773 pmdidx_limit = pmd_index(limit);
774#else
775 pmdidx_limit = 0;
776#endif
777
Jeremy Fitzhardinge5deb30d2008-07-08 15:07:06 -0700778 for (pgdidx = 0; pgdidx <= pgdidx_limit; pgdidx++) {
Jeremy Fitzhardingef4f97b32007-07-17 18:37:05 -0700779 pud_t *pud;
Jeremy Fitzhardingef4f97b32007-07-17 18:37:05 -0700780
Jeremy Fitzhardinge5deb30d2008-07-08 15:07:06 -0700781 if (pgdidx >= hole_low && pgdidx < hole_high)
Jeremy Fitzhardinge3b827c12007-07-17 18:37:04 -0700782 continue;
Jeremy Fitzhardingef4f97b32007-07-17 18:37:05 -0700783
Jeremy Fitzhardinge5deb30d2008-07-08 15:07:06 -0700784 if (!pgd_val(pgd[pgdidx]))
785 continue;
786
787 pud = pud_offset(&pgd[pgdidx], 0);
Jeremy Fitzhardinge3b827c12007-07-17 18:37:04 -0700788
789 if (PTRS_PER_PUD > 1) /* not folded */
Jeremy Fitzhardingeeefb47f2008-10-08 13:01:39 -0700790 flush |= (*func)(mm, virt_to_page(pud), PT_PUD);
Jeremy Fitzhardinge3b827c12007-07-17 18:37:04 -0700791
Jeremy Fitzhardinge5deb30d2008-07-08 15:07:06 -0700792 for (pudidx = 0; pudidx < PTRS_PER_PUD; pudidx++) {
Jeremy Fitzhardingef4f97b32007-07-17 18:37:05 -0700793 pmd_t *pmd;
Jeremy Fitzhardingef4f97b32007-07-17 18:37:05 -0700794
Jeremy Fitzhardinge5deb30d2008-07-08 15:07:06 -0700795 if (pgdidx == pgdidx_limit &&
796 pudidx > pudidx_limit)
797 goto out;
Jeremy Fitzhardingef4f97b32007-07-17 18:37:05 -0700798
Jeremy Fitzhardinge5deb30d2008-07-08 15:07:06 -0700799 if (pud_none(pud[pudidx]))
Jeremy Fitzhardinge3b827c12007-07-17 18:37:04 -0700800 continue;
Jeremy Fitzhardingef4f97b32007-07-17 18:37:05 -0700801
Jeremy Fitzhardinge5deb30d2008-07-08 15:07:06 -0700802 pmd = pmd_offset(&pud[pudidx], 0);
Jeremy Fitzhardinge3b827c12007-07-17 18:37:04 -0700803
804 if (PTRS_PER_PMD > 1) /* not folded */
Jeremy Fitzhardingeeefb47f2008-10-08 13:01:39 -0700805 flush |= (*func)(mm, virt_to_page(pmd), PT_PMD);
Jeremy Fitzhardinge3b827c12007-07-17 18:37:04 -0700806
Jeremy Fitzhardinge5deb30d2008-07-08 15:07:06 -0700807 for (pmdidx = 0; pmdidx < PTRS_PER_PMD; pmdidx++) {
808 struct page *pte;
Jeremy Fitzhardingef4f97b32007-07-17 18:37:05 -0700809
Jeremy Fitzhardinge5deb30d2008-07-08 15:07:06 -0700810 if (pgdidx == pgdidx_limit &&
811 pudidx == pudidx_limit &&
812 pmdidx > pmdidx_limit)
813 goto out;
814
815 if (pmd_none(pmd[pmdidx]))
Jeremy Fitzhardinge3b827c12007-07-17 18:37:04 -0700816 continue;
817
Jeremy Fitzhardinge5deb30d2008-07-08 15:07:06 -0700818 pte = pmd_page(pmd[pmdidx]);
Jeremy Fitzhardingeeefb47f2008-10-08 13:01:39 -0700819 flush |= (*func)(mm, pte, PT_PTE);
Jeremy Fitzhardinge3b827c12007-07-17 18:37:04 -0700820 }
821 }
822 }
Jeremy Fitzhardinge11ad93e2008-08-19 13:32:51 -0700823
Jeremy Fitzhardinge5deb30d2008-07-08 15:07:06 -0700824out:
Jeremy Fitzhardinge11ad93e2008-08-19 13:32:51 -0700825 /* Do the top level last, so that the callbacks can use it as
826 a cue to do final things like tlb flushes. */
Jeremy Fitzhardingeeefb47f2008-10-08 13:01:39 -0700827 flush |= (*func)(mm, virt_to_page(pgd), PT_PGD);
Jeremy Fitzhardingef4f97b32007-07-17 18:37:05 -0700828
829 return flush;
Jeremy Fitzhardinge3b827c12007-07-17 18:37:04 -0700830}
831
Ian Campbell86bbc2c2008-11-21 10:21:33 +0000832static int xen_pgd_walk(struct mm_struct *mm,
833 int (*func)(struct mm_struct *mm, struct page *,
834 enum pt_level),
835 unsigned long limit)
836{
837 return __xen_pgd_walk(mm, mm->pgd, func, limit);
838}
839
Jeremy Fitzhardinge7708ad62008-08-19 13:34:22 -0700840/* If we're using split pte locks, then take the page's lock and
841 return a pointer to it. Otherwise return NULL. */
Jeremy Fitzhardingeeefb47f2008-10-08 13:01:39 -0700842static spinlock_t *xen_pte_lock(struct page *page, struct mm_struct *mm)
Jeremy Fitzhardinge74260712007-10-16 11:51:30 -0700843{
844 spinlock_t *ptl = NULL;
845
Jeremy Fitzhardingef7d0b922008-09-09 15:43:22 -0700846#if USE_SPLIT_PTLOCKS
Jeremy Fitzhardinge74260712007-10-16 11:51:30 -0700847 ptl = __pte_lockptr(page);
Jeremy Fitzhardingeeefb47f2008-10-08 13:01:39 -0700848 spin_lock_nest_lock(ptl, &mm->page_table_lock);
Jeremy Fitzhardinge74260712007-10-16 11:51:30 -0700849#endif
850
851 return ptl;
852}
853
Jeremy Fitzhardinge7708ad62008-08-19 13:34:22 -0700854static void xen_pte_unlock(void *v)
Jeremy Fitzhardinge74260712007-10-16 11:51:30 -0700855{
856 spinlock_t *ptl = v;
857 spin_unlock(ptl);
858}
859
860static void xen_do_pin(unsigned level, unsigned long pfn)
861{
862 struct mmuext_op *op;
863 struct multicall_space mcs;
864
865 mcs = __xen_mc_entry(sizeof(*op));
866 op = mcs.args;
867 op->cmd = level;
868 op->arg1.mfn = pfn_to_mfn(pfn);
869 MULTI_mmuext_op(mcs.mc, op, 1, NULL, DOMID_SELF);
870}
871
Jeremy Fitzhardingeeefb47f2008-10-08 13:01:39 -0700872static int xen_pin_page(struct mm_struct *mm, struct page *page,
873 enum pt_level level)
Jeremy Fitzhardingef4f97b32007-07-17 18:37:05 -0700874{
Christoph Lameterd60cd462008-04-28 02:12:51 -0700875 unsigned pgfl = TestSetPagePinned(page);
Jeremy Fitzhardingef4f97b32007-07-17 18:37:05 -0700876 int flush;
Jeremy Fitzhardinge3b827c12007-07-17 18:37:04 -0700877
Jeremy Fitzhardingef4f97b32007-07-17 18:37:05 -0700878 if (pgfl)
879 flush = 0; /* already pinned */
880 else if (PageHighMem(page))
881 /* kmaps need flushing if we found an unpinned
882 highpage */
883 flush = 1;
884 else {
885 void *pt = lowmem_page_address(page);
886 unsigned long pfn = page_to_pfn(page);
887 struct multicall_space mcs = __xen_mc_entry(0);
Jeremy Fitzhardinge74260712007-10-16 11:51:30 -0700888 spinlock_t *ptl;
Jeremy Fitzhardingef4f97b32007-07-17 18:37:05 -0700889
890 flush = 0;
891
Jeremy Fitzhardinge11ad93e2008-08-19 13:32:51 -0700892 /*
893 * We need to hold the pagetable lock between the time
894 * we make the pagetable RO and when we actually pin
895 * it. If we don't, then other users may come in and
896 * attempt to update the pagetable by writing it,
897 * which will fail because the memory is RO but not
898 * pinned, so Xen won't do the trap'n'emulate.
899 *
900 * If we're using split pte locks, we can't hold the
901 * entire pagetable's worth of locks during the
902 * traverse, because we may wrap the preempt count (8
903 * bits). The solution is to mark RO and pin each PTE
904 * page while holding the lock. This means the number
905 * of locks we end up holding is never more than a
906 * batch size (~32 entries, at present).
907 *
908 * If we're not using split pte locks, we needn't pin
909 * the PTE pages independently, because we're
910 * protected by the overall pagetable lock.
911 */
Jeremy Fitzhardinge74260712007-10-16 11:51:30 -0700912 ptl = NULL;
913 if (level == PT_PTE)
Jeremy Fitzhardingeeefb47f2008-10-08 13:01:39 -0700914 ptl = xen_pte_lock(page, mm);
Jeremy Fitzhardinge74260712007-10-16 11:51:30 -0700915
Jeremy Fitzhardingef4f97b32007-07-17 18:37:05 -0700916 MULTI_update_va_mapping(mcs.mc, (unsigned long)pt,
917 pfn_pte(pfn, PAGE_KERNEL_RO),
Jeremy Fitzhardinge74260712007-10-16 11:51:30 -0700918 level == PT_PGD ? UVMF_TLB_FLUSH : 0);
919
Jeremy Fitzhardinge11ad93e2008-08-19 13:32:51 -0700920 if (ptl) {
Jeremy Fitzhardinge74260712007-10-16 11:51:30 -0700921 xen_do_pin(MMUEXT_PIN_L1_TABLE, pfn);
922
Jeremy Fitzhardinge74260712007-10-16 11:51:30 -0700923 /* Queue a deferred unlock for when this batch
924 is completed. */
Jeremy Fitzhardinge7708ad62008-08-19 13:34:22 -0700925 xen_mc_callback(xen_pte_unlock, ptl);
Jeremy Fitzhardinge74260712007-10-16 11:51:30 -0700926 }
Jeremy Fitzhardingef4f97b32007-07-17 18:37:05 -0700927 }
928
929 return flush;
930}
931
932/* This is called just after a mm has been created, but it has not
933 been used yet. We need to make sure that its pagetable is all
934 read-only, and can be pinned. */
Jeremy Fitzhardingeeefb47f2008-10-08 13:01:39 -0700935static void __xen_pgd_pin(struct mm_struct *mm, pgd_t *pgd)
Jeremy Fitzhardinge3b827c12007-07-17 18:37:04 -0700936{
Jeremy Fitzhardinged05fdf32008-10-28 19:23:06 +1100937 vm_unmap_aliases();
938
Jeremy Fitzhardingef4f97b32007-07-17 18:37:05 -0700939 xen_mc_batch();
Jeremy Fitzhardinge3b827c12007-07-17 18:37:04 -0700940
Ian Campbell86bbc2c2008-11-21 10:21:33 +0000941 if (__xen_pgd_walk(mm, pgd, xen_pin_page, USER_LIMIT)) {
Jeremy Fitzhardinged05fdf32008-10-28 19:23:06 +1100942 /* re-enable interrupts for flushing */
Jeremy Fitzhardingef87e4ca2007-07-17 18:37:06 -0700943 xen_mc_issue(0);
Jeremy Fitzhardinged05fdf32008-10-28 19:23:06 +1100944
Jeremy Fitzhardingef4f97b32007-07-17 18:37:05 -0700945 kmap_flush_unused();
Jeremy Fitzhardinged05fdf32008-10-28 19:23:06 +1100946
Jeremy Fitzhardingef87e4ca2007-07-17 18:37:06 -0700947 xen_mc_batch();
948 }
Jeremy Fitzhardingef4f97b32007-07-17 18:37:05 -0700949
Jeremy Fitzhardinged6182fb2008-07-08 15:07:13 -0700950#ifdef CONFIG_X86_64
951 {
952 pgd_t *user_pgd = xen_get_user_pgd(pgd);
953
954 xen_do_pin(MMUEXT_PIN_L4_TABLE, PFN_DOWN(__pa(pgd)));
955
956 if (user_pgd) {
Jeremy Fitzhardingeeefb47f2008-10-08 13:01:39 -0700957 xen_pin_page(mm, virt_to_page(user_pgd), PT_PGD);
Tejf63c2f22008-12-16 11:56:06 -0800958 xen_do_pin(MMUEXT_PIN_L4_TABLE,
959 PFN_DOWN(__pa(user_pgd)));
Jeremy Fitzhardinged6182fb2008-07-08 15:07:13 -0700960 }
961 }
962#else /* CONFIG_X86_32 */
Jeremy Fitzhardinge5deb30d2008-07-08 15:07:06 -0700963#ifdef CONFIG_X86_PAE
964 /* Need to make sure unshared kernel PMD is pinnable */
Jeremy Fitzhardinge47cb2ed2008-11-06 13:48:24 -0800965 xen_pin_page(mm, pgd_page(pgd[pgd_index(TASK_SIZE)]),
Jeremy Fitzhardingeeefb47f2008-10-08 13:01:39 -0700966 PT_PMD);
Jeremy Fitzhardinge5deb30d2008-07-08 15:07:06 -0700967#endif
Jeremy Fitzhardinge28499142008-05-09 12:05:57 +0100968 xen_do_pin(MMUEXT_PIN_L3_TABLE, PFN_DOWN(__pa(pgd)));
Jeremy Fitzhardinged6182fb2008-07-08 15:07:13 -0700969#endif /* CONFIG_X86_64 */
Jeremy Fitzhardingef4f97b32007-07-17 18:37:05 -0700970 xen_mc_issue(0);
971}
972
Jeremy Fitzhardingeeefb47f2008-10-08 13:01:39 -0700973static void xen_pgd_pin(struct mm_struct *mm)
974{
975 __xen_pgd_pin(mm, mm->pgd);
976}
977
Jeremy Fitzhardinge0e913982008-05-26 23:31:27 +0100978/*
979 * On save, we need to pin all pagetables to make sure they get their
980 * mfns turned into pfns. Search the list for any unpinned pgds and pin
981 * them (unpinned pgds are not currently in use, probably because the
982 * process is under construction or destruction).
Jeremy Fitzhardingeeefb47f2008-10-08 13:01:39 -0700983 *
984 * Expected to be called in stop_machine() ("equivalent to taking
985 * every spinlock in the system"), so the locking doesn't really
986 * matter all that much.
Jeremy Fitzhardinge0e913982008-05-26 23:31:27 +0100987 */
988void xen_mm_pin_all(void)
989{
990 unsigned long flags;
991 struct page *page;
992
993 spin_lock_irqsave(&pgd_lock, flags);
994
995 list_for_each_entry(page, &pgd_list, lru) {
996 if (!PagePinned(page)) {
Jeremy Fitzhardingeeefb47f2008-10-08 13:01:39 -0700997 __xen_pgd_pin(&init_mm, (pgd_t *)page_address(page));
Jeremy Fitzhardinge0e913982008-05-26 23:31:27 +0100998 SetPageSavePinned(page);
999 }
1000 }
1001
1002 spin_unlock_irqrestore(&pgd_lock, flags);
1003}
1004
Eduardo Habkostc1f2f092008-07-08 15:06:24 -07001005/*
1006 * The init_mm pagetable is really pinned as soon as its created, but
1007 * that's before we have page structures to store the bits. So do all
1008 * the book-keeping now.
1009 */
Jeremy Fitzhardingeeefb47f2008-10-08 13:01:39 -07001010static __init int xen_mark_pinned(struct mm_struct *mm, struct page *page,
1011 enum pt_level level)
Jeremy Fitzhardingef4f97b32007-07-17 18:37:05 -07001012{
1013 SetPagePinned(page);
1014 return 0;
1015}
1016
1017void __init xen_mark_init_mm_pinned(void)
1018{
Jeremy Fitzhardingeeefb47f2008-10-08 13:01:39 -07001019 xen_pgd_walk(&init_mm, xen_mark_pinned, FIXADDR_TOP);
Jeremy Fitzhardingef4f97b32007-07-17 18:37:05 -07001020}
1021
Jeremy Fitzhardingeeefb47f2008-10-08 13:01:39 -07001022static int xen_unpin_page(struct mm_struct *mm, struct page *page,
1023 enum pt_level level)
Jeremy Fitzhardingef4f97b32007-07-17 18:37:05 -07001024{
Christoph Lameterd60cd462008-04-28 02:12:51 -07001025 unsigned pgfl = TestClearPagePinned(page);
Jeremy Fitzhardingef4f97b32007-07-17 18:37:05 -07001026
1027 if (pgfl && !PageHighMem(page)) {
1028 void *pt = lowmem_page_address(page);
1029 unsigned long pfn = page_to_pfn(page);
Jeremy Fitzhardinge74260712007-10-16 11:51:30 -07001030 spinlock_t *ptl = NULL;
1031 struct multicall_space mcs;
1032
Jeremy Fitzhardinge11ad93e2008-08-19 13:32:51 -07001033 /*
1034 * Do the converse to pin_page. If we're using split
1035 * pte locks, we must be holding the lock for while
1036 * the pte page is unpinned but still RO to prevent
1037 * concurrent updates from seeing it in this
1038 * partially-pinned state.
1039 */
Jeremy Fitzhardinge74260712007-10-16 11:51:30 -07001040 if (level == PT_PTE) {
Jeremy Fitzhardingeeefb47f2008-10-08 13:01:39 -07001041 ptl = xen_pte_lock(page, mm);
Jeremy Fitzhardinge74260712007-10-16 11:51:30 -07001042
Jeremy Fitzhardinge11ad93e2008-08-19 13:32:51 -07001043 if (ptl)
1044 xen_do_pin(MMUEXT_UNPIN_TABLE, pfn);
Jeremy Fitzhardinge74260712007-10-16 11:51:30 -07001045 }
1046
1047 mcs = __xen_mc_entry(0);
Jeremy Fitzhardingef4f97b32007-07-17 18:37:05 -07001048
1049 MULTI_update_va_mapping(mcs.mc, (unsigned long)pt,
1050 pfn_pte(pfn, PAGE_KERNEL),
Jeremy Fitzhardinge74260712007-10-16 11:51:30 -07001051 level == PT_PGD ? UVMF_TLB_FLUSH : 0);
1052
1053 if (ptl) {
1054 /* unlock when batch completed */
Jeremy Fitzhardinge7708ad62008-08-19 13:34:22 -07001055 xen_mc_callback(xen_pte_unlock, ptl);
Jeremy Fitzhardinge74260712007-10-16 11:51:30 -07001056 }
Jeremy Fitzhardingef4f97b32007-07-17 18:37:05 -07001057 }
1058
1059 return 0; /* never need to flush on unpin */
Jeremy Fitzhardinge3b827c12007-07-17 18:37:04 -07001060}
1061
1062/* Release a pagetables pages back as normal RW */
Jeremy Fitzhardingeeefb47f2008-10-08 13:01:39 -07001063static void __xen_pgd_unpin(struct mm_struct *mm, pgd_t *pgd)
Jeremy Fitzhardinge3b827c12007-07-17 18:37:04 -07001064{
Jeremy Fitzhardingef4f97b32007-07-17 18:37:05 -07001065 xen_mc_batch();
Jeremy Fitzhardinge3b827c12007-07-17 18:37:04 -07001066
Jeremy Fitzhardinge74260712007-10-16 11:51:30 -07001067 xen_do_pin(MMUEXT_UNPIN_TABLE, PFN_DOWN(__pa(pgd)));
Jeremy Fitzhardingef4f97b32007-07-17 18:37:05 -07001068
Jeremy Fitzhardinged6182fb2008-07-08 15:07:13 -07001069#ifdef CONFIG_X86_64
1070 {
1071 pgd_t *user_pgd = xen_get_user_pgd(pgd);
1072
1073 if (user_pgd) {
Tejf63c2f22008-12-16 11:56:06 -08001074 xen_do_pin(MMUEXT_UNPIN_TABLE,
1075 PFN_DOWN(__pa(user_pgd)));
Jeremy Fitzhardingeeefb47f2008-10-08 13:01:39 -07001076 xen_unpin_page(mm, virt_to_page(user_pgd), PT_PGD);
Jeremy Fitzhardinged6182fb2008-07-08 15:07:13 -07001077 }
1078 }
1079#endif
1080
Jeremy Fitzhardinge5deb30d2008-07-08 15:07:06 -07001081#ifdef CONFIG_X86_PAE
1082 /* Need to make sure unshared kernel PMD is unpinned */
Jeremy Fitzhardinge47cb2ed2008-11-06 13:48:24 -08001083 xen_unpin_page(mm, pgd_page(pgd[pgd_index(TASK_SIZE)]),
Jeremy Fitzhardingeeefb47f2008-10-08 13:01:39 -07001084 PT_PMD);
Jeremy Fitzhardinge5deb30d2008-07-08 15:07:06 -07001085#endif
Jeremy Fitzhardinged6182fb2008-07-08 15:07:13 -07001086
Ian Campbell86bbc2c2008-11-21 10:21:33 +00001087 __xen_pgd_walk(mm, pgd, xen_unpin_page, USER_LIMIT);
Jeremy Fitzhardingef4f97b32007-07-17 18:37:05 -07001088
1089 xen_mc_issue(0);
Jeremy Fitzhardinge3b827c12007-07-17 18:37:04 -07001090}
1091
Jeremy Fitzhardingeeefb47f2008-10-08 13:01:39 -07001092static void xen_pgd_unpin(struct mm_struct *mm)
1093{
1094 __xen_pgd_unpin(mm, mm->pgd);
1095}
1096
Jeremy Fitzhardinge0e913982008-05-26 23:31:27 +01001097/*
1098 * On resume, undo any pinning done at save, so that the rest of the
1099 * kernel doesn't see any unexpected pinned pagetables.
1100 */
1101void xen_mm_unpin_all(void)
1102{
1103 unsigned long flags;
1104 struct page *page;
1105
1106 spin_lock_irqsave(&pgd_lock, flags);
1107
1108 list_for_each_entry(page, &pgd_list, lru) {
1109 if (PageSavePinned(page)) {
1110 BUG_ON(!PagePinned(page));
Jeremy Fitzhardingeeefb47f2008-10-08 13:01:39 -07001111 __xen_pgd_unpin(&init_mm, (pgd_t *)page_address(page));
Jeremy Fitzhardinge0e913982008-05-26 23:31:27 +01001112 ClearPageSavePinned(page);
1113 }
1114 }
1115
1116 spin_unlock_irqrestore(&pgd_lock, flags);
1117}
1118
Jeremy Fitzhardinge3b827c12007-07-17 18:37:04 -07001119void xen_activate_mm(struct mm_struct *prev, struct mm_struct *next)
1120{
Jeremy Fitzhardingef4f97b32007-07-17 18:37:05 -07001121 spin_lock(&next->page_table_lock);
Jeremy Fitzhardingeeefb47f2008-10-08 13:01:39 -07001122 xen_pgd_pin(next);
Jeremy Fitzhardingef4f97b32007-07-17 18:37:05 -07001123 spin_unlock(&next->page_table_lock);
Jeremy Fitzhardinge3b827c12007-07-17 18:37:04 -07001124}
1125
1126void xen_dup_mmap(struct mm_struct *oldmm, struct mm_struct *mm)
1127{
Jeremy Fitzhardingef4f97b32007-07-17 18:37:05 -07001128 spin_lock(&mm->page_table_lock);
Jeremy Fitzhardingeeefb47f2008-10-08 13:01:39 -07001129 xen_pgd_pin(mm);
Jeremy Fitzhardingef4f97b32007-07-17 18:37:05 -07001130 spin_unlock(&mm->page_table_lock);
Jeremy Fitzhardinge3b827c12007-07-17 18:37:04 -07001131}
1132
Jeremy Fitzhardingef87e4ca2007-07-17 18:37:06 -07001133
1134#ifdef CONFIG_SMP
1135/* Another cpu may still have their %cr3 pointing at the pagetable, so
1136 we need to repoint it somewhere else before we can unpin it. */
1137static void drop_other_mm_ref(void *info)
Jeremy Fitzhardinge3b827c12007-07-17 18:37:04 -07001138{
Jeremy Fitzhardingef87e4ca2007-07-17 18:37:06 -07001139 struct mm_struct *mm = info;
Jeremy Fitzhardingece87b3d2008-07-08 15:06:40 -07001140 struct mm_struct *active_mm;
Jeremy Fitzhardinge3b827c12007-07-17 18:37:04 -07001141
Brian Gerst9eb912d2009-01-19 00:38:57 +09001142 active_mm = percpu_read(cpu_tlbstate.active_mm);
Jeremy Fitzhardingece87b3d2008-07-08 15:06:40 -07001143
1144 if (active_mm == mm)
Jeremy Fitzhardingef87e4ca2007-07-17 18:37:06 -07001145 leave_mm(smp_processor_id());
Jeremy Fitzhardinge9f799912007-10-16 11:51:30 -07001146
1147 /* If this cpu still has a stale cr3 reference, then make sure
1148 it has been flushed. */
Ingo Molnar6dbde352009-01-15 22:15:53 +09001149 if (percpu_read(xen_current_cr3) == __pa(mm->pgd)) {
Jeremy Fitzhardinge9f799912007-10-16 11:51:30 -07001150 load_cr3(swapper_pg_dir);
1151 arch_flush_lazy_cpu_mode();
1152 }
Jeremy Fitzhardingef87e4ca2007-07-17 18:37:06 -07001153}
Jeremy Fitzhardinge3b827c12007-07-17 18:37:04 -07001154
Jeremy Fitzhardinge7708ad62008-08-19 13:34:22 -07001155static void xen_drop_mm_ref(struct mm_struct *mm)
Jeremy Fitzhardingef87e4ca2007-07-17 18:37:06 -07001156{
Mike Travise4d98202008-12-16 17:34:05 -08001157 cpumask_var_t mask;
Jeremy Fitzhardinge9f799912007-10-16 11:51:30 -07001158 unsigned cpu;
1159
Jeremy Fitzhardingef87e4ca2007-07-17 18:37:06 -07001160 if (current->active_mm == mm) {
1161 if (current->mm == mm)
1162 load_cr3(swapper_pg_dir);
1163 else
1164 leave_mm(smp_processor_id());
Jeremy Fitzhardinge9f799912007-10-16 11:51:30 -07001165 arch_flush_lazy_cpu_mode();
Jeremy Fitzhardinge3b827c12007-07-17 18:37:04 -07001166 }
1167
Jeremy Fitzhardinge9f799912007-10-16 11:51:30 -07001168 /* Get the "official" set of cpus referring to our pagetable. */
Mike Travise4d98202008-12-16 17:34:05 -08001169 if (!alloc_cpumask_var(&mask, GFP_ATOMIC)) {
1170 for_each_online_cpu(cpu) {
1171 if (!cpumask_test_cpu(cpu, &mm->cpu_vm_mask)
1172 && per_cpu(xen_current_cr3, cpu) != __pa(mm->pgd))
1173 continue;
1174 smp_call_function_single(cpu, drop_other_mm_ref, mm, 1);
1175 }
1176 return;
1177 }
1178 cpumask_copy(mask, &mm->cpu_vm_mask);
Jeremy Fitzhardinge9f799912007-10-16 11:51:30 -07001179
1180 /* It's possible that a vcpu may have a stale reference to our
1181 cr3, because its in lazy mode, and it hasn't yet flushed
1182 its set of pending hypercalls yet. In this case, we can
1183 look at its actual current cr3 value, and force it to flush
1184 if needed. */
1185 for_each_online_cpu(cpu) {
1186 if (per_cpu(xen_current_cr3, cpu) == __pa(mm->pgd))
Mike Travise4d98202008-12-16 17:34:05 -08001187 cpumask_set_cpu(cpu, mask);
Jeremy Fitzhardinge9f799912007-10-16 11:51:30 -07001188 }
1189
Mike Travise4d98202008-12-16 17:34:05 -08001190 if (!cpumask_empty(mask))
1191 smp_call_function_many(mask, drop_other_mm_ref, mm, 1);
1192 free_cpumask_var(mask);
Jeremy Fitzhardingef87e4ca2007-07-17 18:37:06 -07001193}
1194#else
Jeremy Fitzhardinge7708ad62008-08-19 13:34:22 -07001195static void xen_drop_mm_ref(struct mm_struct *mm)
Jeremy Fitzhardingef87e4ca2007-07-17 18:37:06 -07001196{
1197 if (current->active_mm == mm)
1198 load_cr3(swapper_pg_dir);
1199}
1200#endif
1201
1202/*
1203 * While a process runs, Xen pins its pagetables, which means that the
1204 * hypervisor forces it to be read-only, and it controls all updates
1205 * to it. This means that all pagetable updates have to go via the
1206 * hypervisor, which is moderately expensive.
1207 *
1208 * Since we're pulling the pagetable down, we switch to use init_mm,
1209 * unpin old process pagetable and mark it all read-write, which
1210 * allows further operations on it to be simple memory accesses.
1211 *
1212 * The only subtle point is that another CPU may be still using the
1213 * pagetable because of lazy tlb flushing. This means we need need to
1214 * switch all CPUs off this pagetable before we can unpin it.
1215 */
1216void xen_exit_mmap(struct mm_struct *mm)
1217{
1218 get_cpu(); /* make sure we don't move around */
Jeremy Fitzhardinge7708ad62008-08-19 13:34:22 -07001219 xen_drop_mm_ref(mm);
Jeremy Fitzhardingef87e4ca2007-07-17 18:37:06 -07001220 put_cpu();
Jeremy Fitzhardinge3b827c12007-07-17 18:37:04 -07001221
Jeremy Fitzhardingef120f132007-07-17 18:37:06 -07001222 spin_lock(&mm->page_table_lock);
Jeremy Fitzhardingedf912ea2007-09-25 11:50:00 -07001223
1224 /* pgd may not be pinned in the error exit path of execve */
Jeremy Fitzhardinge7708ad62008-08-19 13:34:22 -07001225 if (xen_page_pinned(mm->pgd))
Jeremy Fitzhardingeeefb47f2008-10-08 13:01:39 -07001226 xen_pgd_unpin(mm);
Jeremy Fitzhardinge74260712007-10-16 11:51:30 -07001227
Jeremy Fitzhardingef120f132007-07-17 18:37:06 -07001228 spin_unlock(&mm->page_table_lock);
Jeremy Fitzhardinge3b827c12007-07-17 18:37:04 -07001229}
Jeremy Fitzhardinge994025c2008-08-20 17:02:19 -07001230
Jeremy Fitzhardinge319f3ba2009-01-28 14:35:01 -08001231static __init void xen_pagetable_setup_start(pgd_t *base)
1232{
1233}
1234
1235static __init void xen_pagetable_setup_done(pgd_t *base)
1236{
1237 xen_setup_shared_info();
1238}
1239
1240static void xen_write_cr2(unsigned long cr2)
1241{
1242 percpu_read(xen_vcpu)->arch.cr2 = cr2;
1243}
1244
1245static unsigned long xen_read_cr2(void)
1246{
1247 return percpu_read(xen_vcpu)->arch.cr2;
1248}
1249
1250unsigned long xen_read_cr2_direct(void)
1251{
1252 return percpu_read(xen_vcpu_info.arch.cr2);
1253}
1254
1255static void xen_flush_tlb(void)
1256{
1257 struct mmuext_op *op;
1258 struct multicall_space mcs;
1259
1260 preempt_disable();
1261
1262 mcs = xen_mc_entry(sizeof(*op));
1263
1264 op = mcs.args;
1265 op->cmd = MMUEXT_TLB_FLUSH_LOCAL;
1266 MULTI_mmuext_op(mcs.mc, op, 1, NULL, DOMID_SELF);
1267
1268 xen_mc_issue(PARAVIRT_LAZY_MMU);
1269
1270 preempt_enable();
1271}
1272
1273static void xen_flush_tlb_single(unsigned long addr)
1274{
1275 struct mmuext_op *op;
1276 struct multicall_space mcs;
1277
1278 preempt_disable();
1279
1280 mcs = xen_mc_entry(sizeof(*op));
1281 op = mcs.args;
1282 op->cmd = MMUEXT_INVLPG_LOCAL;
1283 op->arg1.linear_addr = addr & PAGE_MASK;
1284 MULTI_mmuext_op(mcs.mc, op, 1, NULL, DOMID_SELF);
1285
1286 xen_mc_issue(PARAVIRT_LAZY_MMU);
1287
1288 preempt_enable();
1289}
1290
1291static void xen_flush_tlb_others(const struct cpumask *cpus,
1292 struct mm_struct *mm, unsigned long va)
1293{
1294 struct {
1295 struct mmuext_op op;
1296 DECLARE_BITMAP(mask, NR_CPUS);
1297 } *args;
1298 struct multicall_space mcs;
1299
1300 BUG_ON(cpumask_empty(cpus));
1301 BUG_ON(!mm);
1302
1303 mcs = xen_mc_entry(sizeof(*args));
1304 args = mcs.args;
1305 args->op.arg2.vcpumask = to_cpumask(args->mask);
1306
1307 /* Remove us, and any offline CPUS. */
1308 cpumask_and(to_cpumask(args->mask), cpus, cpu_online_mask);
1309 cpumask_clear_cpu(smp_processor_id(), to_cpumask(args->mask));
Jeremy Fitzhardinge319f3ba2009-01-28 14:35:01 -08001310
1311 if (va == TLB_FLUSH_ALL) {
1312 args->op.cmd = MMUEXT_TLB_FLUSH_MULTI;
1313 } else {
1314 args->op.cmd = MMUEXT_INVLPG_MULTI;
1315 args->op.arg1.linear_addr = va;
1316 }
1317
1318 MULTI_mmuext_op(mcs.mc, &args->op, 1, NULL, DOMID_SELF);
1319
Jeremy Fitzhardinge319f3ba2009-01-28 14:35:01 -08001320 xen_mc_issue(PARAVIRT_LAZY_MMU);
1321}
1322
1323static unsigned long xen_read_cr3(void)
1324{
1325 return percpu_read(xen_cr3);
1326}
1327
1328static void set_current_cr3(void *v)
1329{
1330 percpu_write(xen_current_cr3, (unsigned long)v);
1331}
1332
1333static void __xen_write_cr3(bool kernel, unsigned long cr3)
1334{
1335 struct mmuext_op *op;
1336 struct multicall_space mcs;
1337 unsigned long mfn;
1338
1339 if (cr3)
1340 mfn = pfn_to_mfn(PFN_DOWN(cr3));
1341 else
1342 mfn = 0;
1343
1344 WARN_ON(mfn == 0 && kernel);
1345
1346 mcs = __xen_mc_entry(sizeof(*op));
1347
1348 op = mcs.args;
1349 op->cmd = kernel ? MMUEXT_NEW_BASEPTR : MMUEXT_NEW_USER_BASEPTR;
1350 op->arg1.mfn = mfn;
1351
1352 MULTI_mmuext_op(mcs.mc, op, 1, NULL, DOMID_SELF);
1353
1354 if (kernel) {
1355 percpu_write(xen_cr3, cr3);
1356
1357 /* Update xen_current_cr3 once the batch has actually
1358 been submitted. */
1359 xen_mc_callback(set_current_cr3, (void *)cr3);
1360 }
1361}
1362
1363static void xen_write_cr3(unsigned long cr3)
1364{
1365 BUG_ON(preemptible());
1366
1367 xen_mc_batch(); /* disables interrupts */
1368
1369 /* Update while interrupts are disabled, so its atomic with
1370 respect to ipis */
1371 percpu_write(xen_cr3, cr3);
1372
1373 __xen_write_cr3(true, cr3);
1374
1375#ifdef CONFIG_X86_64
1376 {
1377 pgd_t *user_pgd = xen_get_user_pgd(__va(cr3));
1378 if (user_pgd)
1379 __xen_write_cr3(false, __pa(user_pgd));
1380 else
1381 __xen_write_cr3(false, 0);
1382 }
1383#endif
1384
1385 xen_mc_issue(PARAVIRT_LAZY_CPU); /* interrupts restored */
1386}
1387
1388static int xen_pgd_alloc(struct mm_struct *mm)
1389{
1390 pgd_t *pgd = mm->pgd;
1391 int ret = 0;
1392
1393 BUG_ON(PagePinned(virt_to_page(pgd)));
1394
1395#ifdef CONFIG_X86_64
1396 {
1397 struct page *page = virt_to_page(pgd);
1398 pgd_t *user_pgd;
1399
1400 BUG_ON(page->private != 0);
1401
1402 ret = -ENOMEM;
1403
1404 user_pgd = (pgd_t *)__get_free_page(GFP_KERNEL | __GFP_ZERO);
1405 page->private = (unsigned long)user_pgd;
1406
1407 if (user_pgd != NULL) {
1408 user_pgd[pgd_index(VSYSCALL_START)] =
1409 __pgd(__pa(level3_user_vsyscall) | _PAGE_TABLE);
1410 ret = 0;
1411 }
1412
1413 BUG_ON(PagePinned(virt_to_page(xen_get_user_pgd(pgd))));
1414 }
1415#endif
1416
1417 return ret;
1418}
1419
1420static void xen_pgd_free(struct mm_struct *mm, pgd_t *pgd)
1421{
1422#ifdef CONFIG_X86_64
1423 pgd_t *user_pgd = xen_get_user_pgd(pgd);
1424
1425 if (user_pgd)
1426 free_page((unsigned long)user_pgd);
1427#endif
1428}
1429
Jeremy Fitzhardinge1f4f9312009-02-02 13:58:06 -08001430#ifdef CONFIG_HIGHPTE
1431static void *xen_kmap_atomic_pte(struct page *page, enum km_type type)
1432{
1433 pgprot_t prot = PAGE_KERNEL;
1434
1435 if (PagePinned(page))
1436 prot = PAGE_KERNEL_RO;
1437
1438 if (0 && PageHighMem(page))
1439 printk("mapping highpte %lx type %d prot %s\n",
1440 page_to_pfn(page), type,
1441 (unsigned long)pgprot_val(prot) & _PAGE_RW ? "WRITE" : "READ");
1442
1443 return kmap_atomic_prot(page, type, prot);
1444}
1445#endif
1446
1447#ifdef CONFIG_X86_32
1448static __init pte_t mask_rw_pte(pte_t *ptep, pte_t pte)
1449{
1450 /* If there's an existing pte, then don't allow _PAGE_RW to be set */
1451 if (pte_val_ma(*ptep) & _PAGE_PRESENT)
1452 pte = __pte_ma(((pte_val_ma(*ptep) & _PAGE_RW) | ~_PAGE_RW) &
1453 pte_val_ma(pte));
1454
1455 return pte;
1456}
1457
1458/* Init-time set_pte while constructing initial pagetables, which
1459 doesn't allow RO pagetable pages to be remapped RW */
1460static __init void xen_set_pte_init(pte_t *ptep, pte_t pte)
1461{
1462 pte = mask_rw_pte(ptep, pte);
1463
1464 xen_set_pte(ptep, pte);
1465}
1466#endif
Jeremy Fitzhardinge319f3ba2009-01-28 14:35:01 -08001467
1468/* Early in boot, while setting up the initial pagetable, assume
1469 everything is pinned. */
1470static __init void xen_alloc_pte_init(struct mm_struct *mm, unsigned long pfn)
1471{
1472#ifdef CONFIG_FLATMEM
1473 BUG_ON(mem_map); /* should only be used early */
1474#endif
1475 make_lowmem_page_readonly(__va(PFN_PHYS(pfn)));
1476}
1477
1478/* Early release_pte assumes that all pts are pinned, since there's
1479 only init_mm and anything attached to that is pinned. */
1480static void xen_release_pte_init(unsigned long pfn)
1481{
1482 make_lowmem_page_readwrite(__va(PFN_PHYS(pfn)));
1483}
1484
1485static void pin_pagetable_pfn(unsigned cmd, unsigned long pfn)
1486{
1487 struct mmuext_op op;
1488 op.cmd = cmd;
1489 op.arg1.mfn = pfn_to_mfn(pfn);
1490 if (HYPERVISOR_mmuext_op(&op, 1, NULL, DOMID_SELF))
1491 BUG();
1492}
1493
1494/* This needs to make sure the new pte page is pinned iff its being
1495 attached to a pinned pagetable. */
1496static void xen_alloc_ptpage(struct mm_struct *mm, unsigned long pfn, unsigned level)
1497{
1498 struct page *page = pfn_to_page(pfn);
1499
1500 if (PagePinned(virt_to_page(mm->pgd))) {
1501 SetPagePinned(page);
1502
1503 vm_unmap_aliases();
1504 if (!PageHighMem(page)) {
1505 make_lowmem_page_readonly(__va(PFN_PHYS((unsigned long)pfn)));
1506 if (level == PT_PTE && USE_SPLIT_PTLOCKS)
1507 pin_pagetable_pfn(MMUEXT_PIN_L1_TABLE, pfn);
1508 } else {
1509 /* make sure there are no stray mappings of
1510 this page */
1511 kmap_flush_unused();
1512 }
1513 }
1514}
1515
1516static void xen_alloc_pte(struct mm_struct *mm, unsigned long pfn)
1517{
1518 xen_alloc_ptpage(mm, pfn, PT_PTE);
1519}
1520
1521static void xen_alloc_pmd(struct mm_struct *mm, unsigned long pfn)
1522{
1523 xen_alloc_ptpage(mm, pfn, PT_PMD);
1524}
1525
1526/* This should never happen until we're OK to use struct page */
1527static void xen_release_ptpage(unsigned long pfn, unsigned level)
1528{
1529 struct page *page = pfn_to_page(pfn);
1530
1531 if (PagePinned(page)) {
1532 if (!PageHighMem(page)) {
1533 if (level == PT_PTE && USE_SPLIT_PTLOCKS)
1534 pin_pagetable_pfn(MMUEXT_UNPIN_TABLE, pfn);
1535 make_lowmem_page_readwrite(__va(PFN_PHYS(pfn)));
1536 }
1537 ClearPagePinned(page);
1538 }
1539}
1540
1541static void xen_release_pte(unsigned long pfn)
1542{
1543 xen_release_ptpage(pfn, PT_PTE);
1544}
1545
1546static void xen_release_pmd(unsigned long pfn)
1547{
1548 xen_release_ptpage(pfn, PT_PMD);
1549}
1550
1551#if PAGETABLE_LEVELS == 4
1552static void xen_alloc_pud(struct mm_struct *mm, unsigned long pfn)
1553{
1554 xen_alloc_ptpage(mm, pfn, PT_PUD);
1555}
1556
1557static void xen_release_pud(unsigned long pfn)
1558{
1559 xen_release_ptpage(pfn, PT_PUD);
1560}
1561#endif
1562
1563void __init xen_reserve_top(void)
1564{
1565#ifdef CONFIG_X86_32
1566 unsigned long top = HYPERVISOR_VIRT_START;
1567 struct xen_platform_parameters pp;
1568
1569 if (HYPERVISOR_xen_version(XENVER_platform_parameters, &pp) == 0)
1570 top = pp.virt_start;
1571
1572 reserve_top_address(-top);
1573#endif /* CONFIG_X86_32 */
1574}
1575
1576/*
1577 * Like __va(), but returns address in the kernel mapping (which is
1578 * all we have until the physical memory mapping has been set up.
1579 */
1580static void *__ka(phys_addr_t paddr)
1581{
1582#ifdef CONFIG_X86_64
1583 return (void *)(paddr + __START_KERNEL_map);
1584#else
1585 return __va(paddr);
1586#endif
1587}
1588
1589/* Convert a machine address to physical address */
1590static unsigned long m2p(phys_addr_t maddr)
1591{
1592 phys_addr_t paddr;
1593
1594 maddr &= PTE_PFN_MASK;
1595 paddr = mfn_to_pfn(maddr >> PAGE_SHIFT) << PAGE_SHIFT;
1596
1597 return paddr;
1598}
1599
1600/* Convert a machine address to kernel virtual */
1601static void *m2v(phys_addr_t maddr)
1602{
1603 return __ka(m2p(maddr));
1604}
1605
1606static void set_page_prot(void *addr, pgprot_t prot)
1607{
1608 unsigned long pfn = __pa(addr) >> PAGE_SHIFT;
1609 pte_t pte = pfn_pte(pfn, prot);
1610
1611 if (HYPERVISOR_update_va_mapping((unsigned long)addr, pte, 0))
1612 BUG();
1613}
1614
1615static __init void xen_map_identity_early(pmd_t *pmd, unsigned long max_pfn)
1616{
1617 unsigned pmdidx, pteidx;
1618 unsigned ident_pte;
1619 unsigned long pfn;
1620
1621 ident_pte = 0;
1622 pfn = 0;
1623 for (pmdidx = 0; pmdidx < PTRS_PER_PMD && pfn < max_pfn; pmdidx++) {
1624 pte_t *pte_page;
1625
1626 /* Reuse or allocate a page of ptes */
1627 if (pmd_present(pmd[pmdidx]))
1628 pte_page = m2v(pmd[pmdidx].pmd);
1629 else {
1630 /* Check for free pte pages */
1631 if (ident_pte == ARRAY_SIZE(level1_ident_pgt))
1632 break;
1633
1634 pte_page = &level1_ident_pgt[ident_pte];
1635 ident_pte += PTRS_PER_PTE;
1636
1637 pmd[pmdidx] = __pmd(__pa(pte_page) | _PAGE_TABLE);
1638 }
1639
1640 /* Install mappings */
1641 for (pteidx = 0; pteidx < PTRS_PER_PTE; pteidx++, pfn++) {
1642 pte_t pte;
1643
1644 if (pfn > max_pfn_mapped)
1645 max_pfn_mapped = pfn;
1646
1647 if (!pte_none(pte_page[pteidx]))
1648 continue;
1649
1650 pte = pfn_pte(pfn, PAGE_KERNEL_EXEC);
1651 pte_page[pteidx] = pte;
1652 }
1653 }
1654
1655 for (pteidx = 0; pteidx < ident_pte; pteidx += PTRS_PER_PTE)
1656 set_page_prot(&level1_ident_pgt[pteidx], PAGE_KERNEL_RO);
1657
1658 set_page_prot(pmd, PAGE_KERNEL_RO);
1659}
1660
1661#ifdef CONFIG_X86_64
1662static void convert_pfn_mfn(void *v)
1663{
1664 pte_t *pte = v;
1665 int i;
1666
1667 /* All levels are converted the same way, so just treat them
1668 as ptes. */
1669 for (i = 0; i < PTRS_PER_PTE; i++)
1670 pte[i] = xen_make_pte(pte[i].pte);
1671}
1672
1673/*
1674 * Set up the inital kernel pagetable.
1675 *
1676 * We can construct this by grafting the Xen provided pagetable into
1677 * head_64.S's preconstructed pagetables. We copy the Xen L2's into
1678 * level2_ident_pgt, level2_kernel_pgt and level2_fixmap_pgt. This
1679 * means that only the kernel has a physical mapping to start with -
1680 * but that's enough to get __va working. We need to fill in the rest
1681 * of the physical mapping once some sort of allocator has been set
1682 * up.
1683 */
1684__init pgd_t *xen_setup_kernel_pagetable(pgd_t *pgd,
1685 unsigned long max_pfn)
1686{
1687 pud_t *l3;
1688 pmd_t *l2;
1689
1690 /* Zap identity mapping */
1691 init_level4_pgt[0] = __pgd(0);
1692
1693 /* Pre-constructed entries are in pfn, so convert to mfn */
1694 convert_pfn_mfn(init_level4_pgt);
1695 convert_pfn_mfn(level3_ident_pgt);
1696 convert_pfn_mfn(level3_kernel_pgt);
1697
1698 l3 = m2v(pgd[pgd_index(__START_KERNEL_map)].pgd);
1699 l2 = m2v(l3[pud_index(__START_KERNEL_map)].pud);
1700
1701 memcpy(level2_ident_pgt, l2, sizeof(pmd_t) * PTRS_PER_PMD);
1702 memcpy(level2_kernel_pgt, l2, sizeof(pmd_t) * PTRS_PER_PMD);
1703
1704 l3 = m2v(pgd[pgd_index(__START_KERNEL_map + PMD_SIZE)].pgd);
1705 l2 = m2v(l3[pud_index(__START_KERNEL_map + PMD_SIZE)].pud);
1706 memcpy(level2_fixmap_pgt, l2, sizeof(pmd_t) * PTRS_PER_PMD);
1707
1708 /* Set up identity map */
1709 xen_map_identity_early(level2_ident_pgt, max_pfn);
1710
1711 /* Make pagetable pieces RO */
1712 set_page_prot(init_level4_pgt, PAGE_KERNEL_RO);
1713 set_page_prot(level3_ident_pgt, PAGE_KERNEL_RO);
1714 set_page_prot(level3_kernel_pgt, PAGE_KERNEL_RO);
1715 set_page_prot(level3_user_vsyscall, PAGE_KERNEL_RO);
1716 set_page_prot(level2_kernel_pgt, PAGE_KERNEL_RO);
1717 set_page_prot(level2_fixmap_pgt, PAGE_KERNEL_RO);
1718
1719 /* Pin down new L4 */
1720 pin_pagetable_pfn(MMUEXT_PIN_L4_TABLE,
1721 PFN_DOWN(__pa_symbol(init_level4_pgt)));
1722
1723 /* Unpin Xen-provided one */
1724 pin_pagetable_pfn(MMUEXT_UNPIN_TABLE, PFN_DOWN(__pa(pgd)));
1725
1726 /* Switch over */
1727 pgd = init_level4_pgt;
1728
1729 /*
1730 * At this stage there can be no user pgd, and no page
1731 * structure to attach it to, so make sure we just set kernel
1732 * pgd.
1733 */
1734 xen_mc_batch();
1735 __xen_write_cr3(true, __pa(pgd));
1736 xen_mc_issue(PARAVIRT_LAZY_CPU);
1737
1738 reserve_early(__pa(xen_start_info->pt_base),
1739 __pa(xen_start_info->pt_base +
1740 xen_start_info->nr_pt_frames * PAGE_SIZE),
1741 "XEN PAGETABLES");
1742
1743 return pgd;
1744}
1745#else /* !CONFIG_X86_64 */
1746static pmd_t level2_kernel_pgt[PTRS_PER_PMD] __page_aligned_bss;
1747
1748__init pgd_t *xen_setup_kernel_pagetable(pgd_t *pgd,
1749 unsigned long max_pfn)
1750{
1751 pmd_t *kernel_pmd;
1752
Jeremy Fitzhardinge93dbda72009-02-26 17:35:44 -08001753 max_pfn_mapped = PFN_DOWN(__pa(xen_start_info->pt_base) +
1754 xen_start_info->nr_pt_frames * PAGE_SIZE +
1755 512*1024);
Jeremy Fitzhardinge319f3ba2009-01-28 14:35:01 -08001756
1757 kernel_pmd = m2v(pgd[KERNEL_PGD_BOUNDARY].pgd);
1758 memcpy(level2_kernel_pgt, kernel_pmd, sizeof(pmd_t) * PTRS_PER_PMD);
1759
1760 xen_map_identity_early(level2_kernel_pgt, max_pfn);
1761
1762 memcpy(swapper_pg_dir, pgd, sizeof(pgd_t) * PTRS_PER_PGD);
1763 set_pgd(&swapper_pg_dir[KERNEL_PGD_BOUNDARY],
1764 __pgd(__pa(level2_kernel_pgt) | _PAGE_PRESENT));
1765
1766 set_page_prot(level2_kernel_pgt, PAGE_KERNEL_RO);
1767 set_page_prot(swapper_pg_dir, PAGE_KERNEL_RO);
1768 set_page_prot(empty_zero_page, PAGE_KERNEL_RO);
1769
1770 pin_pagetable_pfn(MMUEXT_UNPIN_TABLE, PFN_DOWN(__pa(pgd)));
1771
1772 xen_write_cr3(__pa(swapper_pg_dir));
1773
1774 pin_pagetable_pfn(MMUEXT_PIN_L3_TABLE, PFN_DOWN(__pa(swapper_pg_dir)));
1775
1776 return swapper_pg_dir;
1777}
1778#endif /* CONFIG_X86_64 */
1779
1780static void xen_set_fixmap(unsigned idx, unsigned long phys, pgprot_t prot)
1781{
1782 pte_t pte;
1783
1784 phys >>= PAGE_SHIFT;
1785
1786 switch (idx) {
1787 case FIX_BTMAP_END ... FIX_BTMAP_BEGIN:
1788#ifdef CONFIG_X86_F00F_BUG
1789 case FIX_F00F_IDT:
1790#endif
1791#ifdef CONFIG_X86_32
1792 case FIX_WP_TEST:
1793 case FIX_VDSO:
1794# ifdef CONFIG_HIGHMEM
1795 case FIX_KMAP_BEGIN ... FIX_KMAP_END:
1796# endif
1797#else
1798 case VSYSCALL_LAST_PAGE ... VSYSCALL_FIRST_PAGE:
1799#endif
1800#ifdef CONFIG_X86_LOCAL_APIC
1801 case FIX_APIC_BASE: /* maps dummy local APIC */
1802#endif
1803 pte = pfn_pte(phys, prot);
1804 break;
1805
1806 default:
1807 pte = mfn_pte(phys, prot);
1808 break;
1809 }
1810
1811 __native_set_fixmap(idx, pte);
1812
1813#ifdef CONFIG_X86_64
1814 /* Replicate changes to map the vsyscall page into the user
1815 pagetable vsyscall mapping. */
1816 if (idx >= VSYSCALL_LAST_PAGE && idx <= VSYSCALL_FIRST_PAGE) {
1817 unsigned long vaddr = __fix_to_virt(idx);
1818 set_pte_vaddr_pud(level3_user_vsyscall, vaddr, pte);
1819 }
1820#endif
1821}
1822
1823__init void xen_post_allocator_init(void)
1824{
1825 pv_mmu_ops.set_pte = xen_set_pte;
1826 pv_mmu_ops.set_pmd = xen_set_pmd;
1827 pv_mmu_ops.set_pud = xen_set_pud;
1828#if PAGETABLE_LEVELS == 4
1829 pv_mmu_ops.set_pgd = xen_set_pgd;
1830#endif
1831
1832 /* This will work as long as patching hasn't happened yet
1833 (which it hasn't) */
1834 pv_mmu_ops.alloc_pte = xen_alloc_pte;
1835 pv_mmu_ops.alloc_pmd = xen_alloc_pmd;
1836 pv_mmu_ops.release_pte = xen_release_pte;
1837 pv_mmu_ops.release_pmd = xen_release_pmd;
1838#if PAGETABLE_LEVELS == 4
1839 pv_mmu_ops.alloc_pud = xen_alloc_pud;
1840 pv_mmu_ops.release_pud = xen_release_pud;
1841#endif
1842
1843#ifdef CONFIG_X86_64
1844 SetPagePinned(virt_to_page(level3_user_vsyscall));
1845#endif
1846 xen_mark_init_mm_pinned();
1847}
1848
Jeremy Fitzhardinge319f3ba2009-01-28 14:35:01 -08001849const struct pv_mmu_ops xen_mmu_ops __initdata = {
1850 .pagetable_setup_start = xen_pagetable_setup_start,
1851 .pagetable_setup_done = xen_pagetable_setup_done,
1852
1853 .read_cr2 = xen_read_cr2,
1854 .write_cr2 = xen_write_cr2,
1855
1856 .read_cr3 = xen_read_cr3,
1857 .write_cr3 = xen_write_cr3,
1858
1859 .flush_tlb_user = xen_flush_tlb,
1860 .flush_tlb_kernel = xen_flush_tlb,
1861 .flush_tlb_single = xen_flush_tlb_single,
1862 .flush_tlb_others = xen_flush_tlb_others,
1863
1864 .pte_update = paravirt_nop,
1865 .pte_update_defer = paravirt_nop,
1866
1867 .pgd_alloc = xen_pgd_alloc,
1868 .pgd_free = xen_pgd_free,
1869
1870 .alloc_pte = xen_alloc_pte_init,
1871 .release_pte = xen_release_pte_init,
1872 .alloc_pmd = xen_alloc_pte_init,
1873 .alloc_pmd_clone = paravirt_nop,
1874 .release_pmd = xen_release_pte_init,
1875
1876#ifdef CONFIG_HIGHPTE
1877 .kmap_atomic_pte = xen_kmap_atomic_pte,
1878#endif
1879
1880#ifdef CONFIG_X86_64
1881 .set_pte = xen_set_pte,
1882#else
1883 .set_pte = xen_set_pte_init,
1884#endif
1885 .set_pte_at = xen_set_pte_at,
1886 .set_pmd = xen_set_pmd_hyper,
1887
1888 .ptep_modify_prot_start = __ptep_modify_prot_start,
1889 .ptep_modify_prot_commit = __ptep_modify_prot_commit,
1890
Jeremy Fitzhardingeda5de7c2009-01-28 14:35:07 -08001891 .pte_val = PV_CALLEE_SAVE(xen_pte_val),
1892 .pgd_val = PV_CALLEE_SAVE(xen_pgd_val),
Jeremy Fitzhardinge319f3ba2009-01-28 14:35:01 -08001893
Jeremy Fitzhardingeda5de7c2009-01-28 14:35:07 -08001894 .make_pte = PV_CALLEE_SAVE(xen_make_pte),
1895 .make_pgd = PV_CALLEE_SAVE(xen_make_pgd),
Jeremy Fitzhardinge319f3ba2009-01-28 14:35:01 -08001896
1897#ifdef CONFIG_X86_PAE
1898 .set_pte_atomic = xen_set_pte_atomic,
Jeremy Fitzhardinge319f3ba2009-01-28 14:35:01 -08001899 .pte_clear = xen_pte_clear,
1900 .pmd_clear = xen_pmd_clear,
1901#endif /* CONFIG_X86_PAE */
1902 .set_pud = xen_set_pud_hyper,
1903
Jeremy Fitzhardingeda5de7c2009-01-28 14:35:07 -08001904 .make_pmd = PV_CALLEE_SAVE(xen_make_pmd),
1905 .pmd_val = PV_CALLEE_SAVE(xen_pmd_val),
Jeremy Fitzhardinge319f3ba2009-01-28 14:35:01 -08001906
1907#if PAGETABLE_LEVELS == 4
Jeremy Fitzhardingeda5de7c2009-01-28 14:35:07 -08001908 .pud_val = PV_CALLEE_SAVE(xen_pud_val),
1909 .make_pud = PV_CALLEE_SAVE(xen_make_pud),
Jeremy Fitzhardinge319f3ba2009-01-28 14:35:01 -08001910 .set_pgd = xen_set_pgd_hyper,
1911
1912 .alloc_pud = xen_alloc_pte_init,
1913 .release_pud = xen_release_pte_init,
1914#endif /* PAGETABLE_LEVELS == 4 */
1915
1916 .activate_mm = xen_activate_mm,
1917 .dup_mmap = xen_dup_mmap,
1918 .exit_mmap = xen_exit_mmap,
1919
1920 .lazy_mode = {
1921 .enter = paravirt_enter_lazy_mmu,
1922 .leave = xen_leave_lazy,
1923 },
1924
1925 .set_fixmap = xen_set_fixmap,
1926};
1927
1928
Jeremy Fitzhardinge994025c2008-08-20 17:02:19 -07001929#ifdef CONFIG_XEN_DEBUG_FS
1930
1931static struct dentry *d_mmu_debug;
1932
1933static int __init xen_mmu_debugfs(void)
1934{
1935 struct dentry *d_xen = xen_init_debugfs();
1936
1937 if (d_xen == NULL)
1938 return -ENOMEM;
1939
1940 d_mmu_debug = debugfs_create_dir("mmu", d_xen);
1941
1942 debugfs_create_u8("zero_stats", 0644, d_mmu_debug, &zero_stats);
1943
1944 debugfs_create_u32("pgd_update", 0444, d_mmu_debug, &mmu_stats.pgd_update);
1945 debugfs_create_u32("pgd_update_pinned", 0444, d_mmu_debug,
1946 &mmu_stats.pgd_update_pinned);
1947 debugfs_create_u32("pgd_update_batched", 0444, d_mmu_debug,
1948 &mmu_stats.pgd_update_pinned);
1949
1950 debugfs_create_u32("pud_update", 0444, d_mmu_debug, &mmu_stats.pud_update);
1951 debugfs_create_u32("pud_update_pinned", 0444, d_mmu_debug,
1952 &mmu_stats.pud_update_pinned);
1953 debugfs_create_u32("pud_update_batched", 0444, d_mmu_debug,
1954 &mmu_stats.pud_update_pinned);
1955
1956 debugfs_create_u32("pmd_update", 0444, d_mmu_debug, &mmu_stats.pmd_update);
1957 debugfs_create_u32("pmd_update_pinned", 0444, d_mmu_debug,
1958 &mmu_stats.pmd_update_pinned);
1959 debugfs_create_u32("pmd_update_batched", 0444, d_mmu_debug,
1960 &mmu_stats.pmd_update_pinned);
1961
1962 debugfs_create_u32("pte_update", 0444, d_mmu_debug, &mmu_stats.pte_update);
1963// debugfs_create_u32("pte_update_pinned", 0444, d_mmu_debug,
1964// &mmu_stats.pte_update_pinned);
1965 debugfs_create_u32("pte_update_batched", 0444, d_mmu_debug,
1966 &mmu_stats.pte_update_pinned);
1967
1968 debugfs_create_u32("mmu_update", 0444, d_mmu_debug, &mmu_stats.mmu_update);
1969 debugfs_create_u32("mmu_update_extended", 0444, d_mmu_debug,
1970 &mmu_stats.mmu_update_extended);
1971 xen_debugfs_create_u32_array("mmu_update_histo", 0444, d_mmu_debug,
1972 mmu_stats.mmu_update_histo, 20);
1973
1974 debugfs_create_u32("set_pte_at", 0444, d_mmu_debug, &mmu_stats.set_pte_at);
1975 debugfs_create_u32("set_pte_at_batched", 0444, d_mmu_debug,
1976 &mmu_stats.set_pte_at_batched);
1977 debugfs_create_u32("set_pte_at_current", 0444, d_mmu_debug,
1978 &mmu_stats.set_pte_at_current);
1979 debugfs_create_u32("set_pte_at_kernel", 0444, d_mmu_debug,
1980 &mmu_stats.set_pte_at_kernel);
1981
1982 debugfs_create_u32("prot_commit", 0444, d_mmu_debug, &mmu_stats.prot_commit);
1983 debugfs_create_u32("prot_commit_batched", 0444, d_mmu_debug,
1984 &mmu_stats.prot_commit_batched);
1985
1986 return 0;
1987}
1988fs_initcall(xen_mmu_debugfs);
1989
1990#endif /* CONFIG_XEN_DEBUG_FS */