setup.c 11 KB

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  1. /*
  2. * Machine specific setup for xen
  3. *
  4. * Jeremy Fitzhardinge <jeremy@xensource.com>, XenSource Inc, 2007
  5. */
  6. #include <linux/module.h>
  7. #include <linux/sched.h>
  8. #include <linux/mm.h>
  9. #include <linux/pm.h>
  10. #include <linux/memblock.h>
  11. #include <linux/cpuidle.h>
  12. #include <linux/cpufreq.h>
  13. #include <asm/elf.h>
  14. #include <asm/vdso.h>
  15. #include <asm/e820.h>
  16. #include <asm/setup.h>
  17. #include <asm/acpi.h>
  18. #include <asm/xen/hypervisor.h>
  19. #include <asm/xen/hypercall.h>
  20. #include <xen/xen.h>
  21. #include <xen/page.h>
  22. #include <xen/interface/callback.h>
  23. #include <xen/interface/memory.h>
  24. #include <xen/interface/physdev.h>
  25. #include <xen/features.h>
  26. #include "xen-ops.h"
  27. #include "vdso.h"
  28. /* These are code, but not functions. Defined in entry.S */
  29. extern const char xen_hypervisor_callback[];
  30. extern const char xen_failsafe_callback[];
  31. extern void xen_sysenter_target(void);
  32. extern void xen_syscall_target(void);
  33. extern void xen_syscall32_target(void);
  34. /* Amount of extra memory space we add to the e820 ranges */
  35. struct xen_memory_region xen_extra_mem[XEN_EXTRA_MEM_MAX_REGIONS] __initdata;
  36. /* Number of pages released from the initial allocation. */
  37. unsigned long xen_released_pages;
  38. /*
  39. * The maximum amount of extra memory compared to the base size. The
  40. * main scaling factor is the size of struct page. At extreme ratios
  41. * of base:extra, all the base memory can be filled with page
  42. * structures for the extra memory, leaving no space for anything
  43. * else.
  44. *
  45. * 10x seems like a reasonable balance between scaling flexibility and
  46. * leaving a practically usable system.
  47. */
  48. #define EXTRA_MEM_RATIO (10)
  49. static void __init xen_add_extra_mem(u64 start, u64 size)
  50. {
  51. unsigned long pfn;
  52. int i;
  53. for (i = 0; i < XEN_EXTRA_MEM_MAX_REGIONS; i++) {
  54. /* Add new region. */
  55. if (xen_extra_mem[i].size == 0) {
  56. xen_extra_mem[i].start = start;
  57. xen_extra_mem[i].size = size;
  58. break;
  59. }
  60. /* Append to existing region. */
  61. if (xen_extra_mem[i].start + xen_extra_mem[i].size == start) {
  62. xen_extra_mem[i].size += size;
  63. break;
  64. }
  65. }
  66. if (i == XEN_EXTRA_MEM_MAX_REGIONS)
  67. printk(KERN_WARNING "Warning: not enough extra memory regions\n");
  68. memblock_reserve(start, size);
  69. xen_max_p2m_pfn = PFN_DOWN(start + size);
  70. for (pfn = PFN_DOWN(start); pfn <= xen_max_p2m_pfn; pfn++)
  71. __set_phys_to_machine(pfn, INVALID_P2M_ENTRY);
  72. }
  73. static unsigned long __init xen_release_chunk(unsigned long start,
  74. unsigned long end)
  75. {
  76. struct xen_memory_reservation reservation = {
  77. .address_bits = 0,
  78. .extent_order = 0,
  79. .domid = DOMID_SELF
  80. };
  81. unsigned long len = 0;
  82. unsigned long pfn;
  83. int ret;
  84. for(pfn = start; pfn < end; pfn++) {
  85. unsigned long mfn = pfn_to_mfn(pfn);
  86. /* Make sure pfn exists to start with */
  87. if (mfn == INVALID_P2M_ENTRY || mfn_to_pfn(mfn) != pfn)
  88. continue;
  89. set_xen_guest_handle(reservation.extent_start, &mfn);
  90. reservation.nr_extents = 1;
  91. ret = HYPERVISOR_memory_op(XENMEM_decrease_reservation,
  92. &reservation);
  93. WARN(ret != 1, "Failed to release pfn %lx err=%d\n", pfn, ret);
  94. if (ret == 1) {
  95. __set_phys_to_machine(pfn, INVALID_P2M_ENTRY);
  96. len++;
  97. }
  98. }
  99. printk(KERN_INFO "Freeing %lx-%lx pfn range: %lu pages freed\n",
  100. start, end, len);
  101. return len;
  102. }
  103. static unsigned long __init xen_set_identity_and_release(
  104. const struct e820entry *list, size_t map_size, unsigned long nr_pages)
  105. {
  106. phys_addr_t start = 0;
  107. unsigned long released = 0;
  108. unsigned long identity = 0;
  109. const struct e820entry *entry;
  110. int i;
  111. /*
  112. * Combine non-RAM regions and gaps until a RAM region (or the
  113. * end of the map) is reached, then set the 1:1 map and
  114. * release the pages (if available) in those non-RAM regions.
  115. *
  116. * The combined non-RAM regions are rounded to a whole number
  117. * of pages so any partial pages are accessible via the 1:1
  118. * mapping. This is needed for some BIOSes that put (for
  119. * example) the DMI tables in a reserved region that begins on
  120. * a non-page boundary.
  121. */
  122. for (i = 0, entry = list; i < map_size; i++, entry++) {
  123. phys_addr_t end = entry->addr + entry->size;
  124. if (entry->type == E820_RAM || i == map_size - 1) {
  125. unsigned long start_pfn = PFN_DOWN(start);
  126. unsigned long end_pfn = PFN_UP(end);
  127. if (entry->type == E820_RAM)
  128. end_pfn = PFN_UP(entry->addr);
  129. if (start_pfn < end_pfn) {
  130. if (start_pfn < nr_pages)
  131. released += xen_release_chunk(
  132. start_pfn, min(end_pfn, nr_pages));
  133. identity += set_phys_range_identity(
  134. start_pfn, end_pfn);
  135. }
  136. start = end;
  137. }
  138. }
  139. printk(KERN_INFO "Released %lu pages of unused memory\n", released);
  140. printk(KERN_INFO "Set %ld page(s) to 1-1 mapping\n", identity);
  141. return released;
  142. }
  143. static unsigned long __init xen_get_max_pages(void)
  144. {
  145. unsigned long max_pages = MAX_DOMAIN_PAGES;
  146. domid_t domid = DOMID_SELF;
  147. int ret;
  148. /*
  149. * For the initial domain we use the maximum reservation as
  150. * the maximum page.
  151. *
  152. * For guest domains the current maximum reservation reflects
  153. * the current maximum rather than the static maximum. In this
  154. * case the e820 map provided to us will cover the static
  155. * maximum region.
  156. */
  157. if (xen_initial_domain()) {
  158. ret = HYPERVISOR_memory_op(XENMEM_maximum_reservation, &domid);
  159. if (ret > 0)
  160. max_pages = ret;
  161. }
  162. return min(max_pages, MAX_DOMAIN_PAGES);
  163. }
  164. static void xen_align_and_add_e820_region(u64 start, u64 size, int type)
  165. {
  166. u64 end = start + size;
  167. /* Align RAM regions to page boundaries. */
  168. if (type == E820_RAM) {
  169. start = PAGE_ALIGN(start);
  170. end &= ~((u64)PAGE_SIZE - 1);
  171. }
  172. e820_add_region(start, end - start, type);
  173. }
  174. /**
  175. * machine_specific_memory_setup - Hook for machine specific memory setup.
  176. **/
  177. char * __init xen_memory_setup(void)
  178. {
  179. static struct e820entry map[E820MAX] __initdata;
  180. unsigned long max_pfn = xen_start_info->nr_pages;
  181. unsigned long long mem_end;
  182. int rc;
  183. struct xen_memory_map memmap;
  184. unsigned long max_pages;
  185. unsigned long extra_pages = 0;
  186. int i;
  187. int op;
  188. max_pfn = min(MAX_DOMAIN_PAGES, max_pfn);
  189. mem_end = PFN_PHYS(max_pfn);
  190. memmap.nr_entries = E820MAX;
  191. set_xen_guest_handle(memmap.buffer, map);
  192. op = xen_initial_domain() ?
  193. XENMEM_machine_memory_map :
  194. XENMEM_memory_map;
  195. rc = HYPERVISOR_memory_op(op, &memmap);
  196. if (rc == -ENOSYS) {
  197. BUG_ON(xen_initial_domain());
  198. memmap.nr_entries = 1;
  199. map[0].addr = 0ULL;
  200. map[0].size = mem_end;
  201. /* 8MB slack (to balance backend allocations). */
  202. map[0].size += 8ULL << 20;
  203. map[0].type = E820_RAM;
  204. rc = 0;
  205. }
  206. BUG_ON(rc);
  207. /* Make sure the Xen-supplied memory map is well-ordered. */
  208. sanitize_e820_map(map, memmap.nr_entries, &memmap.nr_entries);
  209. max_pages = xen_get_max_pages();
  210. if (max_pages > max_pfn)
  211. extra_pages += max_pages - max_pfn;
  212. /*
  213. * Set P2M for all non-RAM pages and E820 gaps to be identity
  214. * type PFNs. Any RAM pages that would be made inaccesible by
  215. * this are first released.
  216. */
  217. xen_released_pages = xen_set_identity_and_release(
  218. map, memmap.nr_entries, max_pfn);
  219. extra_pages += xen_released_pages;
  220. /*
  221. * Clamp the amount of extra memory to a EXTRA_MEM_RATIO
  222. * factor the base size. On non-highmem systems, the base
  223. * size is the full initial memory allocation; on highmem it
  224. * is limited to the max size of lowmem, so that it doesn't
  225. * get completely filled.
  226. *
  227. * In principle there could be a problem in lowmem systems if
  228. * the initial memory is also very large with respect to
  229. * lowmem, but we won't try to deal with that here.
  230. */
  231. extra_pages = min(EXTRA_MEM_RATIO * min(max_pfn, PFN_DOWN(MAXMEM)),
  232. extra_pages);
  233. i = 0;
  234. while (i < memmap.nr_entries) {
  235. u64 addr = map[i].addr;
  236. u64 size = map[i].size;
  237. u32 type = map[i].type;
  238. if (type == E820_RAM) {
  239. if (addr < mem_end) {
  240. size = min(size, mem_end - addr);
  241. } else if (extra_pages) {
  242. size = min(size, (u64)extra_pages * PAGE_SIZE);
  243. extra_pages -= size / PAGE_SIZE;
  244. xen_add_extra_mem(addr, size);
  245. } else
  246. type = E820_UNUSABLE;
  247. }
  248. xen_align_and_add_e820_region(addr, size, type);
  249. map[i].addr += size;
  250. map[i].size -= size;
  251. if (map[i].size == 0)
  252. i++;
  253. }
  254. /*
  255. * In domU, the ISA region is normal, usable memory, but we
  256. * reserve ISA memory anyway because too many things poke
  257. * about in there.
  258. */
  259. e820_add_region(ISA_START_ADDRESS, ISA_END_ADDRESS - ISA_START_ADDRESS,
  260. E820_RESERVED);
  261. /*
  262. * Reserve Xen bits:
  263. * - mfn_list
  264. * - xen_start_info
  265. * See comment above "struct start_info" in <xen/interface/xen.h>
  266. */
  267. memblock_reserve(__pa(xen_start_info->mfn_list),
  268. xen_start_info->pt_base - xen_start_info->mfn_list);
  269. sanitize_e820_map(e820.map, ARRAY_SIZE(e820.map), &e820.nr_map);
  270. return "Xen";
  271. }
  272. /*
  273. * Set the bit indicating "nosegneg" library variants should be used.
  274. * We only need to bother in pure 32-bit mode; compat 32-bit processes
  275. * can have un-truncated segments, so wrapping around is allowed.
  276. */
  277. static void __init fiddle_vdso(void)
  278. {
  279. #ifdef CONFIG_X86_32
  280. u32 *mask;
  281. mask = VDSO32_SYMBOL(&vdso32_int80_start, NOTE_MASK);
  282. *mask |= 1 << VDSO_NOTE_NONEGSEG_BIT;
  283. mask = VDSO32_SYMBOL(&vdso32_sysenter_start, NOTE_MASK);
  284. *mask |= 1 << VDSO_NOTE_NONEGSEG_BIT;
  285. #endif
  286. }
  287. static int __cpuinit register_callback(unsigned type, const void *func)
  288. {
  289. struct callback_register callback = {
  290. .type = type,
  291. .address = XEN_CALLBACK(__KERNEL_CS, func),
  292. .flags = CALLBACKF_mask_events,
  293. };
  294. return HYPERVISOR_callback_op(CALLBACKOP_register, &callback);
  295. }
  296. void __cpuinit xen_enable_sysenter(void)
  297. {
  298. int ret;
  299. unsigned sysenter_feature;
  300. #ifdef CONFIG_X86_32
  301. sysenter_feature = X86_FEATURE_SEP;
  302. #else
  303. sysenter_feature = X86_FEATURE_SYSENTER32;
  304. #endif
  305. if (!boot_cpu_has(sysenter_feature))
  306. return;
  307. ret = register_callback(CALLBACKTYPE_sysenter, xen_sysenter_target);
  308. if(ret != 0)
  309. setup_clear_cpu_cap(sysenter_feature);
  310. }
  311. void __cpuinit xen_enable_syscall(void)
  312. {
  313. #ifdef CONFIG_X86_64
  314. int ret;
  315. ret = register_callback(CALLBACKTYPE_syscall, xen_syscall_target);
  316. if (ret != 0) {
  317. printk(KERN_ERR "Failed to set syscall callback: %d\n", ret);
  318. /* Pretty fatal; 64-bit userspace has no other
  319. mechanism for syscalls. */
  320. }
  321. if (boot_cpu_has(X86_FEATURE_SYSCALL32)) {
  322. ret = register_callback(CALLBACKTYPE_syscall32,
  323. xen_syscall32_target);
  324. if (ret != 0)
  325. setup_clear_cpu_cap(X86_FEATURE_SYSCALL32);
  326. }
  327. #endif /* CONFIG_X86_64 */
  328. }
  329. void __init xen_arch_setup(void)
  330. {
  331. xen_panic_handler_init();
  332. HYPERVISOR_vm_assist(VMASST_CMD_enable, VMASST_TYPE_4gb_segments);
  333. HYPERVISOR_vm_assist(VMASST_CMD_enable, VMASST_TYPE_writable_pagetables);
  334. if (!xen_feature(XENFEAT_auto_translated_physmap))
  335. HYPERVISOR_vm_assist(VMASST_CMD_enable,
  336. VMASST_TYPE_pae_extended_cr3);
  337. if (register_callback(CALLBACKTYPE_event, xen_hypervisor_callback) ||
  338. register_callback(CALLBACKTYPE_failsafe, xen_failsafe_callback))
  339. BUG();
  340. xen_enable_sysenter();
  341. xen_enable_syscall();
  342. #ifdef CONFIG_ACPI
  343. if (!(xen_start_info->flags & SIF_INITDOMAIN)) {
  344. printk(KERN_INFO "ACPI in unprivileged domain disabled\n");
  345. disable_acpi();
  346. }
  347. #endif
  348. memcpy(boot_command_line, xen_start_info->cmd_line,
  349. MAX_GUEST_CMDLINE > COMMAND_LINE_SIZE ?
  350. COMMAND_LINE_SIZE : MAX_GUEST_CMDLINE);
  351. /* Set up idle, making sure it calls safe_halt() pvop */
  352. #ifdef CONFIG_X86_32
  353. boot_cpu_data.hlt_works_ok = 1;
  354. #endif
  355. disable_cpuidle();
  356. disable_cpufreq();
  357. WARN_ON(set_pm_idle_to_default());
  358. fiddle_vdso();
  359. }