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Commit | Line | Data |
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5ead97c8 JF |
1 | /* |
2 | * Machine specific setup for xen | |
3 | * | |
4 | * Jeremy Fitzhardinge <[email protected]>, XenSource Inc, 2007 | |
5 | */ | |
6 | ||
7 | #include <linux/module.h> | |
8 | #include <linux/sched.h> | |
9 | #include <linux/mm.h> | |
10 | #include <linux/pm.h> | |
a9ce6bc1 | 11 | #include <linux/memblock.h> |
d91ee586 | 12 | #include <linux/cpuidle.h> |
48cdd828 | 13 | #include <linux/cpufreq.h> |
5ead97c8 JF |
14 | |
15 | #include <asm/elf.h> | |
6c3652ef | 16 | #include <asm/vdso.h> |
5ead97c8 JF |
17 | #include <asm/e820.h> |
18 | #include <asm/setup.h> | |
b792c755 | 19 | #include <asm/acpi.h> |
8d54db79 | 20 | #include <asm/numa.h> |
5ead97c8 JF |
21 | #include <asm/xen/hypervisor.h> |
22 | #include <asm/xen/hypercall.h> | |
23 | ||
45263cb0 | 24 | #include <xen/xen.h> |
8006ec3e | 25 | #include <xen/page.h> |
e2a81baf | 26 | #include <xen/interface/callback.h> |
35ae11fd | 27 | #include <xen/interface/memory.h> |
5ead97c8 JF |
28 | #include <xen/interface/physdev.h> |
29 | #include <xen/features.h> | |
5ead97c8 | 30 | #include "xen-ops.h" |
d2eea68e | 31 | #include "vdso.h" |
5ead97c8 JF |
32 | |
33 | /* These are code, but not functions. Defined in entry.S */ | |
34 | extern const char xen_hypervisor_callback[]; | |
35 | extern const char xen_failsafe_callback[]; | |
f63c2f24 T |
36 | extern void xen_sysenter_target(void); |
37 | extern void xen_syscall_target(void); | |
38 | extern void xen_syscall32_target(void); | |
5ead97c8 | 39 | |
42ee1471 | 40 | /* Amount of extra memory space we add to the e820 ranges */ |
8b5d44a5 | 41 | struct xen_memory_region xen_extra_mem[XEN_EXTRA_MEM_MAX_REGIONS] __initdata; |
42ee1471 | 42 | |
aa24411b DV |
43 | /* Number of pages released from the initial allocation. */ |
44 | unsigned long xen_released_pages; | |
45 | ||
698bb8d1 JF |
46 | /* |
47 | * The maximum amount of extra memory compared to the base size. The | |
48 | * main scaling factor is the size of struct page. At extreme ratios | |
49 | * of base:extra, all the base memory can be filled with page | |
50 | * structures for the extra memory, leaving no space for anything | |
51 | * else. | |
52 | * | |
53 | * 10x seems like a reasonable balance between scaling flexibility and | |
54 | * leaving a practically usable system. | |
55 | */ | |
56 | #define EXTRA_MEM_RATIO (10) | |
57 | ||
dc91c728 | 58 | static void __init xen_add_extra_mem(u64 start, u64 size) |
42ee1471 | 59 | { |
6eaa412f | 60 | unsigned long pfn; |
dc91c728 | 61 | int i; |
6eaa412f | 62 | |
dc91c728 DV |
63 | for (i = 0; i < XEN_EXTRA_MEM_MAX_REGIONS; i++) { |
64 | /* Add new region. */ | |
65 | if (xen_extra_mem[i].size == 0) { | |
66 | xen_extra_mem[i].start = start; | |
67 | xen_extra_mem[i].size = size; | |
68 | break; | |
69 | } | |
70 | /* Append to existing region. */ | |
71 | if (xen_extra_mem[i].start + xen_extra_mem[i].size == start) { | |
72 | xen_extra_mem[i].size += size; | |
73 | break; | |
74 | } | |
75 | } | |
76 | if (i == XEN_EXTRA_MEM_MAX_REGIONS) | |
77 | printk(KERN_WARNING "Warning: not enough extra memory regions\n"); | |
42ee1471 | 78 | |
d4bbf7e7 | 79 | memblock_reserve(start, size); |
2f7acb20 | 80 | |
dc91c728 | 81 | xen_max_p2m_pfn = PFN_DOWN(start + size); |
c96aae1f KRW |
82 | for (pfn = PFN_DOWN(start); pfn < xen_max_p2m_pfn; pfn++) { |
83 | unsigned long mfn = pfn_to_mfn(pfn); | |
84 | ||
85 | if (WARN(mfn == pfn, "Trying to over-write 1-1 mapping (pfn: %lx)\n", pfn)) | |
86 | continue; | |
87 | WARN(mfn != INVALID_P2M_ENTRY, "Trying to remove %lx which has %lx mfn!\n", | |
88 | pfn, mfn); | |
6eaa412f | 89 | |
6eaa412f | 90 | __set_phys_to_machine(pfn, INVALID_P2M_ENTRY); |
c96aae1f | 91 | } |
42ee1471 JF |
92 | } |
93 | ||
96dc08b3 KRW |
94 | static unsigned long __init xen_do_chunk(unsigned long start, |
95 | unsigned long end, bool release) | |
093d7b46 MR |
96 | { |
97 | struct xen_memory_reservation reservation = { | |
98 | .address_bits = 0, | |
99 | .extent_order = 0, | |
100 | .domid = DOMID_SELF | |
101 | }; | |
f89e048e | 102 | unsigned long len = 0; |
093d7b46 MR |
103 | unsigned long pfn; |
104 | int ret; | |
105 | ||
2e2fb754 KRW |
106 | for (pfn = start; pfn < end; pfn++) { |
107 | unsigned long frame; | |
96dc08b3 | 108 | unsigned long mfn = pfn_to_mfn(pfn); |
2e2fb754 | 109 | |
96dc08b3 KRW |
110 | if (release) { |
111 | /* Make sure pfn exists to start with */ | |
112 | if (mfn == INVALID_P2M_ENTRY || mfn_to_pfn(mfn) != pfn) | |
113 | continue; | |
114 | frame = mfn; | |
115 | } else { | |
116 | if (mfn != INVALID_P2M_ENTRY) | |
117 | continue; | |
118 | frame = pfn; | |
119 | } | |
2e2fb754 KRW |
120 | set_xen_guest_handle(reservation.extent_start, &frame); |
121 | reservation.nr_extents = 1; | |
122 | ||
96dc08b3 KRW |
123 | ret = HYPERVISOR_memory_op(release ? XENMEM_decrease_reservation : XENMEM_populate_physmap, |
124 | &reservation); | |
125 | WARN(ret != 1, "Failed to %s pfn %lx err=%d\n", | |
126 | release ? "release" : "populate", pfn, ret); | |
127 | ||
2e2fb754 | 128 | if (ret == 1) { |
96dc08b3 KRW |
129 | if (!early_set_phys_to_machine(pfn, release ? INVALID_P2M_ENTRY : frame)) { |
130 | if (release) | |
131 | break; | |
2e2fb754 KRW |
132 | set_xen_guest_handle(reservation.extent_start, &frame); |
133 | reservation.nr_extents = 1; | |
134 | ret = HYPERVISOR_memory_op(XENMEM_decrease_reservation, | |
96dc08b3 | 135 | &reservation); |
2e2fb754 KRW |
136 | break; |
137 | } | |
138 | len++; | |
139 | } else | |
140 | break; | |
141 | } | |
142 | if (len) | |
96dc08b3 KRW |
143 | printk(KERN_INFO "%s %lx-%lx pfn range: %lu pages %s\n", |
144 | release ? "Freeing" : "Populating", | |
145 | start, end, len, | |
146 | release ? "freed" : "added"); | |
147 | ||
2e2fb754 KRW |
148 | return len; |
149 | } | |
83d51ab4 DV |
150 | |
151 | static unsigned long __init xen_release_chunk(unsigned long start, | |
152 | unsigned long end) | |
153 | { | |
154 | return xen_do_chunk(start, end, true); | |
155 | } | |
156 | ||
2e2fb754 KRW |
157 | static unsigned long __init xen_populate_chunk( |
158 | const struct e820entry *list, size_t map_size, | |
159 | unsigned long max_pfn, unsigned long *last_pfn, | |
160 | unsigned long credits_left) | |
161 | { | |
162 | const struct e820entry *entry; | |
163 | unsigned int i; | |
164 | unsigned long done = 0; | |
165 | unsigned long dest_pfn; | |
166 | ||
167 | for (i = 0, entry = list; i < map_size; i++, entry++) { | |
2e2fb754 KRW |
168 | unsigned long s_pfn; |
169 | unsigned long e_pfn; | |
170 | unsigned long pfns; | |
171 | long capacity; | |
172 | ||
c3d93f88 | 173 | if (credits_left <= 0) |
2e2fb754 KRW |
174 | break; |
175 | ||
176 | if (entry->type != E820_RAM) | |
177 | continue; | |
178 | ||
c3d93f88 | 179 | e_pfn = PFN_DOWN(entry->addr + entry->size); |
2e2fb754 KRW |
180 | |
181 | /* We only care about E820 after the xen_start_info->nr_pages */ | |
182 | if (e_pfn <= max_pfn) | |
183 | continue; | |
184 | ||
c3d93f88 | 185 | s_pfn = PFN_UP(entry->addr); |
2e2fb754 KRW |
186 | /* If the E820 falls within the nr_pages, we want to start |
187 | * at the nr_pages PFN. | |
188 | * If that would mean going past the E820 entry, skip it | |
189 | */ | |
190 | if (s_pfn <= max_pfn) { | |
191 | capacity = e_pfn - max_pfn; | |
192 | dest_pfn = max_pfn; | |
193 | } else { | |
2e2fb754 KRW |
194 | capacity = e_pfn - s_pfn; |
195 | dest_pfn = s_pfn; | |
196 | } | |
2e2fb754 | 197 | |
c3d93f88 | 198 | if (credits_left < capacity) |
199 | capacity = credits_left; | |
2e2fb754 | 200 | |
c3d93f88 | 201 | pfns = xen_do_chunk(dest_pfn, dest_pfn + capacity, false); |
2e2fb754 | 202 | done += pfns; |
2e2fb754 | 203 | *last_pfn = (dest_pfn + pfns); |
c3d93f88 | 204 | if (pfns < capacity) |
205 | break; | |
206 | credits_left -= pfns; | |
2e2fb754 KRW |
207 | } |
208 | return done; | |
209 | } | |
83d51ab4 DV |
210 | |
211 | static void __init xen_set_identity_and_release_chunk( | |
212 | unsigned long start_pfn, unsigned long end_pfn, unsigned long nr_pages, | |
213 | unsigned long *released, unsigned long *identity) | |
214 | { | |
215 | unsigned long pfn; | |
216 | ||
217 | /* | |
218 | * If the PFNs are currently mapped, the VA mapping also needs | |
219 | * to be updated to be 1:1. | |
220 | */ | |
221 | for (pfn = start_pfn; pfn <= max_pfn_mapped && pfn < end_pfn; pfn++) | |
222 | (void)HYPERVISOR_update_va_mapping( | |
223 | (unsigned long)__va(pfn << PAGE_SHIFT), | |
224 | mfn_pte(pfn, PAGE_KERNEL_IO), 0); | |
225 | ||
226 | if (start_pfn < nr_pages) | |
227 | *released += xen_release_chunk( | |
228 | start_pfn, min(end_pfn, nr_pages)); | |
229 | ||
230 | *identity += set_phys_range_identity(start_pfn, end_pfn); | |
231 | } | |
232 | ||
f3f436e3 DV |
233 | static unsigned long __init xen_set_identity_and_release( |
234 | const struct e820entry *list, size_t map_size, unsigned long nr_pages) | |
093d7b46 | 235 | { |
f3f436e3 | 236 | phys_addr_t start = 0; |
093d7b46 | 237 | unsigned long released = 0; |
68df0da7 | 238 | unsigned long identity = 0; |
f3f436e3 | 239 | const struct e820entry *entry; |
68df0da7 KRW |
240 | int i; |
241 | ||
f3f436e3 DV |
242 | /* |
243 | * Combine non-RAM regions and gaps until a RAM region (or the | |
244 | * end of the map) is reached, then set the 1:1 map and | |
245 | * release the pages (if available) in those non-RAM regions. | |
246 | * | |
247 | * The combined non-RAM regions are rounded to a whole number | |
248 | * of pages so any partial pages are accessible via the 1:1 | |
249 | * mapping. This is needed for some BIOSes that put (for | |
250 | * example) the DMI tables in a reserved region that begins on | |
251 | * a non-page boundary. | |
252 | */ | |
68df0da7 | 253 | for (i = 0, entry = list; i < map_size; i++, entry++) { |
f3f436e3 | 254 | phys_addr_t end = entry->addr + entry->size; |
f3f436e3 DV |
255 | if (entry->type == E820_RAM || i == map_size - 1) { |
256 | unsigned long start_pfn = PFN_DOWN(start); | |
257 | unsigned long end_pfn = PFN_UP(end); | |
68df0da7 | 258 | |
f3f436e3 DV |
259 | if (entry->type == E820_RAM) |
260 | end_pfn = PFN_UP(entry->addr); | |
68df0da7 | 261 | |
83d51ab4 DV |
262 | if (start_pfn < end_pfn) |
263 | xen_set_identity_and_release_chunk( | |
264 | start_pfn, end_pfn, nr_pages, | |
265 | &released, &identity); | |
68df0da7 | 266 | |
f3f436e3 | 267 | start = end; |
68df0da7 | 268 | } |
68df0da7 | 269 | } |
f3f436e3 | 270 | |
ca118238 KRW |
271 | if (released) |
272 | printk(KERN_INFO "Released %lu pages of unused memory\n", released); | |
273 | if (identity) | |
274 | printk(KERN_INFO "Set %ld page(s) to 1-1 mapping\n", identity); | |
f3f436e3 DV |
275 | |
276 | return released; | |
68df0da7 | 277 | } |
d312ae87 DV |
278 | |
279 | static unsigned long __init xen_get_max_pages(void) | |
280 | { | |
281 | unsigned long max_pages = MAX_DOMAIN_PAGES; | |
282 | domid_t domid = DOMID_SELF; | |
283 | int ret; | |
284 | ||
d3db7281 IC |
285 | /* |
286 | * For the initial domain we use the maximum reservation as | |
287 | * the maximum page. | |
288 | * | |
289 | * For guest domains the current maximum reservation reflects | |
290 | * the current maximum rather than the static maximum. In this | |
291 | * case the e820 map provided to us will cover the static | |
292 | * maximum region. | |
293 | */ | |
294 | if (xen_initial_domain()) { | |
295 | ret = HYPERVISOR_memory_op(XENMEM_maximum_reservation, &domid); | |
296 | if (ret > 0) | |
297 | max_pages = ret; | |
298 | } | |
299 | ||
d312ae87 DV |
300 | return min(max_pages, MAX_DOMAIN_PAGES); |
301 | } | |
302 | ||
dc91c728 DV |
303 | static void xen_align_and_add_e820_region(u64 start, u64 size, int type) |
304 | { | |
305 | u64 end = start + size; | |
306 | ||
307 | /* Align RAM regions to page boundaries. */ | |
308 | if (type == E820_RAM) { | |
309 | start = PAGE_ALIGN(start); | |
310 | end &= ~((u64)PAGE_SIZE - 1); | |
311 | } | |
312 | ||
313 | e820_add_region(start, end - start, type); | |
314 | } | |
315 | ||
5ead97c8 JF |
316 | /** |
317 | * machine_specific_memory_setup - Hook for machine specific memory setup. | |
318 | **/ | |
5ead97c8 JF |
319 | char * __init xen_memory_setup(void) |
320 | { | |
35ae11fd IC |
321 | static struct e820entry map[E820MAX] __initdata; |
322 | ||
5ead97c8 | 323 | unsigned long max_pfn = xen_start_info->nr_pages; |
35ae11fd IC |
324 | unsigned long long mem_end; |
325 | int rc; | |
326 | struct xen_memory_map memmap; | |
dc91c728 | 327 | unsigned long max_pages; |
2e2fb754 | 328 | unsigned long last_pfn = 0; |
42ee1471 | 329 | unsigned long extra_pages = 0; |
2e2fb754 | 330 | unsigned long populated; |
35ae11fd | 331 | int i; |
9e9a5fcb | 332 | int op; |
5ead97c8 | 333 | |
8006ec3e | 334 | max_pfn = min(MAX_DOMAIN_PAGES, max_pfn); |
35ae11fd IC |
335 | mem_end = PFN_PHYS(max_pfn); |
336 | ||
337 | memmap.nr_entries = E820MAX; | |
338 | set_xen_guest_handle(memmap.buffer, map); | |
339 | ||
9e9a5fcb IC |
340 | op = xen_initial_domain() ? |
341 | XENMEM_machine_memory_map : | |
342 | XENMEM_memory_map; | |
343 | rc = HYPERVISOR_memory_op(op, &memmap); | |
35ae11fd | 344 | if (rc == -ENOSYS) { |
9ec23a7f | 345 | BUG_ON(xen_initial_domain()); |
35ae11fd IC |
346 | memmap.nr_entries = 1; |
347 | map[0].addr = 0ULL; | |
348 | map[0].size = mem_end; | |
349 | /* 8MB slack (to balance backend allocations). */ | |
350 | map[0].size += 8ULL << 20; | |
351 | map[0].type = E820_RAM; | |
352 | rc = 0; | |
353 | } | |
354 | BUG_ON(rc); | |
8006ec3e | 355 | |
dc91c728 DV |
356 | /* Make sure the Xen-supplied memory map is well-ordered. */ |
357 | sanitize_e820_map(map, memmap.nr_entries, &memmap.nr_entries); | |
358 | ||
359 | max_pages = xen_get_max_pages(); | |
360 | if (max_pages > max_pfn) | |
361 | extra_pages += max_pages - max_pfn; | |
362 | ||
f3f436e3 DV |
363 | /* |
364 | * Set P2M for all non-RAM pages and E820 gaps to be identity | |
365 | * type PFNs. Any RAM pages that would be made inaccesible by | |
366 | * this are first released. | |
367 | */ | |
368 | xen_released_pages = xen_set_identity_and_release( | |
369 | map, memmap.nr_entries, max_pfn); | |
dc91c728 | 370 | |
2e2fb754 KRW |
371 | /* |
372 | * Populate back the non-RAM pages and E820 gaps that had been | |
373 | * released. */ | |
374 | populated = xen_populate_chunk(map, memmap.nr_entries, | |
375 | max_pfn, &last_pfn, xen_released_pages); | |
376 | ||
58b7b53a KRW |
377 | xen_released_pages -= populated; |
378 | extra_pages += xen_released_pages; | |
2e2fb754 KRW |
379 | |
380 | if (last_pfn > max_pfn) { | |
381 | max_pfn = min(MAX_DOMAIN_PAGES, last_pfn); | |
382 | mem_end = PFN_PHYS(max_pfn); | |
383 | } | |
dc91c728 DV |
384 | /* |
385 | * Clamp the amount of extra memory to a EXTRA_MEM_RATIO | |
386 | * factor the base size. On non-highmem systems, the base | |
387 | * size is the full initial memory allocation; on highmem it | |
388 | * is limited to the max size of lowmem, so that it doesn't | |
389 | * get completely filled. | |
390 | * | |
391 | * In principle there could be a problem in lowmem systems if | |
392 | * the initial memory is also very large with respect to | |
393 | * lowmem, but we won't try to deal with that here. | |
394 | */ | |
395 | extra_pages = min(EXTRA_MEM_RATIO * min(max_pfn, PFN_DOWN(MAXMEM)), | |
396 | extra_pages); | |
dc91c728 DV |
397 | i = 0; |
398 | while (i < memmap.nr_entries) { | |
399 | u64 addr = map[i].addr; | |
400 | u64 size = map[i].size; | |
401 | u32 type = map[i].type; | |
402 | ||
403 | if (type == E820_RAM) { | |
404 | if (addr < mem_end) { | |
405 | size = min(size, mem_end - addr); | |
406 | } else if (extra_pages) { | |
407 | size = min(size, (u64)extra_pages * PAGE_SIZE); | |
408 | extra_pages -= size / PAGE_SIZE; | |
409 | xen_add_extra_mem(addr, size); | |
410 | } else | |
411 | type = E820_UNUSABLE; | |
3654581e JF |
412 | } |
413 | ||
dc91c728 | 414 | xen_align_and_add_e820_region(addr, size, type); |
b5b43ced | 415 | |
dc91c728 DV |
416 | map[i].addr += size; |
417 | map[i].size -= size; | |
418 | if (map[i].size == 0) | |
419 | i++; | |
35ae11fd | 420 | } |
b792c755 JF |
421 | |
422 | /* | |
9ec23a7f IC |
423 | * In domU, the ISA region is normal, usable memory, but we |
424 | * reserve ISA memory anyway because too many things poke | |
b792c755 JF |
425 | * about in there. |
426 | */ | |
427 | e820_add_region(ISA_START_ADDRESS, ISA_END_ADDRESS - ISA_START_ADDRESS, | |
428 | E820_RESERVED); | |
5ead97c8 | 429 | |
be5bf9fa JF |
430 | /* |
431 | * Reserve Xen bits: | |
432 | * - mfn_list | |
433 | * - xen_start_info | |
434 | * See comment above "struct start_info" in <xen/interface/xen.h> | |
51faaf2b KRW |
435 | * We tried to make the the memblock_reserve more selective so |
436 | * that it would be clear what region is reserved. Sadly we ran | |
437 | * in the problem wherein on a 64-bit hypervisor with a 32-bit | |
438 | * initial domain, the pt_base has the cr3 value which is not | |
439 | * neccessarily where the pagetable starts! As Jan put it: " | |
440 | * Actually, the adjustment turns out to be correct: The page | |
441 | * tables for a 32-on-64 dom0 get allocated in the order "first L1", | |
442 | * "first L2", "first L3", so the offset to the page table base is | |
443 | * indeed 2. When reading xen/include/public/xen.h's comment | |
444 | * very strictly, this is not a violation (since there nothing is said | |
445 | * that the first thing in the page table space is pointed to by | |
446 | * pt_base; I admit that this seems to be implied though, namely | |
447 | * do I think that it is implied that the page table space is the | |
448 | * range [pt_base, pt_base + nt_pt_frames), whereas that | |
449 | * range here indeed is [pt_base - 2, pt_base - 2 + nt_pt_frames), | |
450 | * which - without a priori knowledge - the kernel would have | |
451 | * difficulty to figure out)." - so lets just fall back to the | |
452 | * easy way and reserve the whole region. | |
be5bf9fa | 453 | */ |
24aa0788 TH |
454 | memblock_reserve(__pa(xen_start_info->mfn_list), |
455 | xen_start_info->pt_base - xen_start_info->mfn_list); | |
be5bf9fa JF |
456 | |
457 | sanitize_e820_map(e820.map, ARRAY_SIZE(e820.map), &e820.nr_map); | |
458 | ||
5ead97c8 JF |
459 | return "Xen"; |
460 | } | |
461 | ||
d2eea68e RM |
462 | /* |
463 | * Set the bit indicating "nosegneg" library variants should be used. | |
6a52e4b1 JF |
464 | * We only need to bother in pure 32-bit mode; compat 32-bit processes |
465 | * can have un-truncated segments, so wrapping around is allowed. | |
d2eea68e | 466 | */ |
08b6d290 | 467 | static void __init fiddle_vdso(void) |
d2eea68e | 468 | { |
6a52e4b1 JF |
469 | #ifdef CONFIG_X86_32 |
470 | u32 *mask; | |
471 | mask = VDSO32_SYMBOL(&vdso32_int80_start, NOTE_MASK); | |
472 | *mask |= 1 << VDSO_NOTE_NONEGSEG_BIT; | |
473 | mask = VDSO32_SYMBOL(&vdso32_sysenter_start, NOTE_MASK); | |
d2eea68e | 474 | *mask |= 1 << VDSO_NOTE_NONEGSEG_BIT; |
6fcac6d3 | 475 | #endif |
d2eea68e RM |
476 | } |
477 | ||
ae15a3b4 | 478 | static int __cpuinit register_callback(unsigned type, const void *func) |
e2a81baf | 479 | { |
88459d4c JF |
480 | struct callback_register callback = { |
481 | .type = type, | |
482 | .address = XEN_CALLBACK(__KERNEL_CS, func), | |
e2a81baf JF |
483 | .flags = CALLBACKF_mask_events, |
484 | }; | |
485 | ||
88459d4c JF |
486 | return HYPERVISOR_callback_op(CALLBACKOP_register, &callback); |
487 | } | |
488 | ||
489 | void __cpuinit xen_enable_sysenter(void) | |
490 | { | |
6fcac6d3 | 491 | int ret; |
62541c37 | 492 | unsigned sysenter_feature; |
6fcac6d3 JF |
493 | |
494 | #ifdef CONFIG_X86_32 | |
62541c37 | 495 | sysenter_feature = X86_FEATURE_SEP; |
6fcac6d3 | 496 | #else |
62541c37 | 497 | sysenter_feature = X86_FEATURE_SYSENTER32; |
6fcac6d3 | 498 | #endif |
88459d4c | 499 | |
62541c37 JF |
500 | if (!boot_cpu_has(sysenter_feature)) |
501 | return; | |
502 | ||
6fcac6d3 | 503 | ret = register_callback(CALLBACKTYPE_sysenter, xen_sysenter_target); |
62541c37 JF |
504 | if(ret != 0) |
505 | setup_clear_cpu_cap(sysenter_feature); | |
e2a81baf JF |
506 | } |
507 | ||
6fcac6d3 JF |
508 | void __cpuinit xen_enable_syscall(void) |
509 | { | |
510 | #ifdef CONFIG_X86_64 | |
6fcac6d3 | 511 | int ret; |
6fcac6d3 JF |
512 | |
513 | ret = register_callback(CALLBACKTYPE_syscall, xen_syscall_target); | |
514 | if (ret != 0) { | |
d5303b81 | 515 | printk(KERN_ERR "Failed to set syscall callback: %d\n", ret); |
62541c37 JF |
516 | /* Pretty fatal; 64-bit userspace has no other |
517 | mechanism for syscalls. */ | |
518 | } | |
519 | ||
520 | if (boot_cpu_has(X86_FEATURE_SYSCALL32)) { | |
6fcac6d3 JF |
521 | ret = register_callback(CALLBACKTYPE_syscall32, |
522 | xen_syscall32_target); | |
d5303b81 | 523 | if (ret != 0) |
62541c37 | 524 | setup_clear_cpu_cap(X86_FEATURE_SYSCALL32); |
6fcac6d3 JF |
525 | } |
526 | #endif /* CONFIG_X86_64 */ | |
527 | } | |
528 | ||
5ead97c8 JF |
529 | void __init xen_arch_setup(void) |
530 | { | |
f09f6d19 DD |
531 | xen_panic_handler_init(); |
532 | ||
5ead97c8 JF |
533 | HYPERVISOR_vm_assist(VMASST_CMD_enable, VMASST_TYPE_4gb_segments); |
534 | HYPERVISOR_vm_assist(VMASST_CMD_enable, VMASST_TYPE_writable_pagetables); | |
535 | ||
536 | if (!xen_feature(XENFEAT_auto_translated_physmap)) | |
f63c2f24 T |
537 | HYPERVISOR_vm_assist(VMASST_CMD_enable, |
538 | VMASST_TYPE_pae_extended_cr3); | |
5ead97c8 | 539 | |
88459d4c JF |
540 | if (register_callback(CALLBACKTYPE_event, xen_hypervisor_callback) || |
541 | register_callback(CALLBACKTYPE_failsafe, xen_failsafe_callback)) | |
542 | BUG(); | |
5ead97c8 | 543 | |
e2a81baf | 544 | xen_enable_sysenter(); |
6fcac6d3 | 545 | xen_enable_syscall(); |
e2a81baf | 546 | |
5ead97c8 JF |
547 | #ifdef CONFIG_ACPI |
548 | if (!(xen_start_info->flags & SIF_INITDOMAIN)) { | |
549 | printk(KERN_INFO "ACPI in unprivileged domain disabled\n"); | |
550 | disable_acpi(); | |
551 | } | |
552 | #endif | |
553 | ||
554 | memcpy(boot_command_line, xen_start_info->cmd_line, | |
555 | MAX_GUEST_CMDLINE > COMMAND_LINE_SIZE ? | |
556 | COMMAND_LINE_SIZE : MAX_GUEST_CMDLINE); | |
557 | ||
bc15fde7 JF |
558 | /* Set up idle, making sure it calls safe_halt() pvop */ |
559 | #ifdef CONFIG_X86_32 | |
560 | boot_cpu_data.hlt_works_ok = 1; | |
561 | #endif | |
d91ee586 | 562 | disable_cpuidle(); |
48cdd828 | 563 | disable_cpufreq(); |
e5fd47bf | 564 | WARN_ON(set_pm_idle_to_default()); |
d2eea68e | 565 | fiddle_vdso(); |
8d54db79 KRW |
566 | #ifdef CONFIG_NUMA |
567 | numa_off = 1; | |
568 | #endif | |
5ead97c8 | 569 | } |