setup.c 21 KB

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  1. /*
  2. * Copyright (C) 1995 Linus Torvalds
  3. *
  4. * Support of BIGMEM added by Gerhard Wichert, Siemens AG, July 1999
  5. *
  6. * Memory region support
  7. * David Parsons <orc@pell.chi.il.us>, July-August 1999
  8. *
  9. * Added E820 sanitization routine (removes overlapping memory regions);
  10. * Brian Moyle <bmoyle@mvista.com>, February 2001
  11. *
  12. * Moved CPU detection code to cpu/${cpu}.c
  13. * Patrick Mochel <mochel@osdl.org>, March 2002
  14. *
  15. * Provisions for empty E820 memory regions (reported by certain BIOSes).
  16. * Alex Achenbach <xela@slit.de>, December 2002.
  17. *
  18. */
  19. /*
  20. * This file handles the architecture-dependent parts of initialization
  21. */
  22. #include <linux/sched.h>
  23. #include <linux/mm.h>
  24. #include <linux/mmzone.h>
  25. #include <linux/screen_info.h>
  26. #include <linux/ioport.h>
  27. #include <linux/acpi.h>
  28. #include <linux/apm_bios.h>
  29. #include <linux/initrd.h>
  30. #include <linux/bootmem.h>
  31. #include <linux/seq_file.h>
  32. #include <linux/console.h>
  33. #include <linux/mca.h>
  34. #include <linux/root_dev.h>
  35. #include <linux/highmem.h>
  36. #include <linux/module.h>
  37. #include <linux/efi.h>
  38. #include <linux/init.h>
  39. #include <linux/edd.h>
  40. #include <linux/iscsi_ibft.h>
  41. #include <linux/nodemask.h>
  42. #include <linux/kexec.h>
  43. #include <linux/dmi.h>
  44. #include <linux/pfn.h>
  45. #include <linux/pci.h>
  46. #include <asm/pci-direct.h>
  47. #include <linux/init_ohci1394_dma.h>
  48. #include <linux/kvm_para.h>
  49. #include <linux/errno.h>
  50. #include <linux/kernel.h>
  51. #include <linux/stddef.h>
  52. #include <linux/unistd.h>
  53. #include <linux/ptrace.h>
  54. #include <linux/slab.h>
  55. #include <linux/user.h>
  56. #include <linux/delay.h>
  57. #include <linux/highmem.h>
  58. #include <linux/kallsyms.h>
  59. #include <linux/edd.h>
  60. #include <linux/iscsi_ibft.h>
  61. #include <linux/kexec.h>
  62. #include <linux/cpufreq.h>
  63. #include <linux/dma-mapping.h>
  64. #include <linux/ctype.h>
  65. #include <linux/uaccess.h>
  66. #include <linux/percpu.h>
  67. #include <linux/crash_dump.h>
  68. #include <video/edid.h>
  69. #include <asm/mtrr.h>
  70. #include <asm/apic.h>
  71. #include <asm/e820.h>
  72. #include <asm/mpspec.h>
  73. #include <asm/setup.h>
  74. #include <asm/arch_hooks.h>
  75. #include <asm/efi.h>
  76. #include <asm/sections.h>
  77. #include <asm/dmi.h>
  78. #include <asm/io_apic.h>
  79. #include <asm/ist.h>
  80. #include <asm/vmi.h>
  81. #include <setup_arch.h>
  82. #include <asm/bios_ebda.h>
  83. #include <asm/cacheflush.h>
  84. #include <asm/processor.h>
  85. #include <asm/bugs.h>
  86. #include <asm/system.h>
  87. #include <asm/vsyscall.h>
  88. #include <asm/smp.h>
  89. #include <asm/desc.h>
  90. #include <asm/dma.h>
  91. #include <asm/gart.h>
  92. #include <asm/mmu_context.h>
  93. #include <asm/proto.h>
  94. #include <mach_apic.h>
  95. #include <asm/paravirt.h>
  96. #include <asm/percpu.h>
  97. #include <asm/sections.h>
  98. #include <asm/topology.h>
  99. #include <asm/apicdef.h>
  100. #ifdef CONFIG_X86_64
  101. #include <asm/numa_64.h>
  102. #endif
  103. #ifndef ARCH_SETUP
  104. #define ARCH_SETUP
  105. #endif
  106. #ifndef CONFIG_DEBUG_BOOT_PARAMS
  107. struct boot_params __initdata boot_params;
  108. #else
  109. struct boot_params boot_params;
  110. #endif
  111. /*
  112. * Machine setup..
  113. */
  114. static struct resource data_resource = {
  115. .name = "Kernel data",
  116. .start = 0,
  117. .end = 0,
  118. .flags = IORESOURCE_BUSY | IORESOURCE_MEM
  119. };
  120. static struct resource code_resource = {
  121. .name = "Kernel code",
  122. .start = 0,
  123. .end = 0,
  124. .flags = IORESOURCE_BUSY | IORESOURCE_MEM
  125. };
  126. static struct resource bss_resource = {
  127. .name = "Kernel bss",
  128. .start = 0,
  129. .end = 0,
  130. .flags = IORESOURCE_BUSY | IORESOURCE_MEM
  131. };
  132. #ifdef CONFIG_X86_32
  133. /* This value is set up by the early boot code to point to the value
  134. immediately after the boot time page tables. It contains a *physical*
  135. address, and must not be in the .bss segment! */
  136. unsigned long init_pg_tables_start __initdata = ~0UL;
  137. unsigned long init_pg_tables_end __initdata = ~0UL;
  138. static struct resource video_ram_resource = {
  139. .name = "Video RAM area",
  140. .start = 0xa0000,
  141. .end = 0xbffff,
  142. .flags = IORESOURCE_BUSY | IORESOURCE_MEM
  143. };
  144. /* cpu data as detected by the assembly code in head.S */
  145. struct cpuinfo_x86 new_cpu_data __cpuinitdata = {0, 0, 0, 0, -1, 1, 0, 0, -1};
  146. /* common cpu data for all cpus */
  147. struct cpuinfo_x86 boot_cpu_data __read_mostly = {0, 0, 0, 0, -1, 1, 0, 0, -1};
  148. EXPORT_SYMBOL(boot_cpu_data);
  149. static void set_mca_bus(int x)
  150. {
  151. #ifdef CONFIG_MCA
  152. MCA_bus = x;
  153. #endif
  154. }
  155. unsigned int def_to_bigsmp;
  156. /* for MCA, but anyone else can use it if they want */
  157. unsigned int machine_id;
  158. unsigned int machine_submodel_id;
  159. unsigned int BIOS_revision;
  160. struct apm_info apm_info;
  161. EXPORT_SYMBOL(apm_info);
  162. #if defined(CONFIG_X86_SPEEDSTEP_SMI) || \
  163. defined(CONFIG_X86_SPEEDSTEP_SMI_MODULE)
  164. struct ist_info ist_info;
  165. EXPORT_SYMBOL(ist_info);
  166. #else
  167. struct ist_info ist_info;
  168. #endif
  169. #else
  170. struct cpuinfo_x86 boot_cpu_data __read_mostly;
  171. EXPORT_SYMBOL(boot_cpu_data);
  172. #endif
  173. #if !defined(CONFIG_X86_PAE) || defined(CONFIG_X86_64)
  174. unsigned long mmu_cr4_features;
  175. #else
  176. unsigned long mmu_cr4_features = X86_CR4_PAE;
  177. #endif
  178. /* Boot loader ID as an integer, for the benefit of proc_dointvec */
  179. int bootloader_type;
  180. /*
  181. * Early DMI memory
  182. */
  183. int dmi_alloc_index;
  184. char dmi_alloc_data[DMI_MAX_DATA];
  185. /*
  186. * Setup options
  187. */
  188. struct screen_info screen_info;
  189. EXPORT_SYMBOL(screen_info);
  190. struct edid_info edid_info;
  191. EXPORT_SYMBOL_GPL(edid_info);
  192. extern int root_mountflags;
  193. unsigned long saved_video_mode;
  194. #define RAMDISK_IMAGE_START_MASK 0x07FF
  195. #define RAMDISK_PROMPT_FLAG 0x8000
  196. #define RAMDISK_LOAD_FLAG 0x4000
  197. static char __initdata command_line[COMMAND_LINE_SIZE];
  198. #if defined(CONFIG_EDD) || defined(CONFIG_EDD_MODULE)
  199. struct edd edd;
  200. #ifdef CONFIG_EDD_MODULE
  201. EXPORT_SYMBOL(edd);
  202. #endif
  203. /**
  204. * copy_edd() - Copy the BIOS EDD information
  205. * from boot_params into a safe place.
  206. *
  207. */
  208. static inline void copy_edd(void)
  209. {
  210. memcpy(edd.mbr_signature, boot_params.edd_mbr_sig_buffer,
  211. sizeof(edd.mbr_signature));
  212. memcpy(edd.edd_info, boot_params.eddbuf, sizeof(edd.edd_info));
  213. edd.mbr_signature_nr = boot_params.edd_mbr_sig_buf_entries;
  214. edd.edd_info_nr = boot_params.eddbuf_entries;
  215. }
  216. #else
  217. static inline void copy_edd(void)
  218. {
  219. }
  220. #endif
  221. #ifdef CONFIG_BLK_DEV_INITRD
  222. #ifdef CONFIG_X86_32
  223. #define MAX_MAP_CHUNK (NR_FIX_BTMAPS << PAGE_SHIFT)
  224. static void __init relocate_initrd(void)
  225. {
  226. u64 ramdisk_image = boot_params.hdr.ramdisk_image;
  227. u64 ramdisk_size = boot_params.hdr.ramdisk_size;
  228. u64 end_of_lowmem = max_low_pfn << PAGE_SHIFT;
  229. u64 ramdisk_here;
  230. unsigned long slop, clen, mapaddr;
  231. char *p, *q;
  232. /* We need to move the initrd down into lowmem */
  233. ramdisk_here = find_e820_area(0, end_of_lowmem, ramdisk_size,
  234. PAGE_SIZE);
  235. if (ramdisk_here == -1ULL)
  236. panic("Cannot find place for new RAMDISK of size %lld\n",
  237. ramdisk_size);
  238. /* Note: this includes all the lowmem currently occupied by
  239. the initrd, we rely on that fact to keep the data intact. */
  240. reserve_early(ramdisk_here, ramdisk_here + ramdisk_size,
  241. "NEW RAMDISK");
  242. initrd_start = ramdisk_here + PAGE_OFFSET;
  243. initrd_end = initrd_start + ramdisk_size;
  244. printk(KERN_INFO "Allocated new RAMDISK: %08llx - %08llx\n",
  245. ramdisk_here, ramdisk_here + ramdisk_size);
  246. q = (char *)initrd_start;
  247. /* Copy any lowmem portion of the initrd */
  248. if (ramdisk_image < end_of_lowmem) {
  249. clen = end_of_lowmem - ramdisk_image;
  250. p = (char *)__va(ramdisk_image);
  251. memcpy(q, p, clen);
  252. q += clen;
  253. ramdisk_image += clen;
  254. ramdisk_size -= clen;
  255. }
  256. /* Copy the highmem portion of the initrd */
  257. while (ramdisk_size) {
  258. slop = ramdisk_image & ~PAGE_MASK;
  259. clen = ramdisk_size;
  260. if (clen > MAX_MAP_CHUNK-slop)
  261. clen = MAX_MAP_CHUNK-slop;
  262. mapaddr = ramdisk_image & PAGE_MASK;
  263. p = early_ioremap(mapaddr, clen+slop);
  264. memcpy(q, p+slop, clen);
  265. early_iounmap(p, clen+slop);
  266. q += clen;
  267. ramdisk_image += clen;
  268. ramdisk_size -= clen;
  269. }
  270. /* high pages is not converted by early_res_to_bootmem */
  271. ramdisk_image = boot_params.hdr.ramdisk_image;
  272. ramdisk_size = boot_params.hdr.ramdisk_size;
  273. printk(KERN_INFO "Move RAMDISK from %016llx - %016llx to"
  274. " %08llx - %08llx\n",
  275. ramdisk_image, ramdisk_image + ramdisk_size - 1,
  276. ramdisk_here, ramdisk_here + ramdisk_size - 1);
  277. }
  278. #endif
  279. static void __init reserve_initrd(void)
  280. {
  281. u64 ramdisk_image = boot_params.hdr.ramdisk_image;
  282. u64 ramdisk_size = boot_params.hdr.ramdisk_size;
  283. u64 ramdisk_end = ramdisk_image + ramdisk_size;
  284. u64 end_of_lowmem = max_low_pfn << PAGE_SHIFT;
  285. if (!boot_params.hdr.type_of_loader ||
  286. !ramdisk_image || !ramdisk_size)
  287. return; /* No initrd provided by bootloader */
  288. initrd_start = 0;
  289. if (ramdisk_size >= (end_of_lowmem>>1)) {
  290. free_early(ramdisk_image, ramdisk_end);
  291. printk(KERN_ERR "initrd too large to handle, "
  292. "disabling initrd\n");
  293. return;
  294. }
  295. printk(KERN_INFO "RAMDISK: %08llx - %08llx\n", ramdisk_image,
  296. ramdisk_end);
  297. if (ramdisk_end <= end_of_lowmem) {
  298. /* All in lowmem, easy case */
  299. /*
  300. * don't need to reserve again, already reserved early
  301. * in i386_start_kernel
  302. */
  303. initrd_start = ramdisk_image + PAGE_OFFSET;
  304. initrd_end = initrd_start + ramdisk_size;
  305. return;
  306. }
  307. #ifdef CONFIG_X86_32
  308. relocate_initrd();
  309. #else
  310. printk(KERN_ERR "initrd extends beyond end of memory "
  311. "(0x%08llx > 0x%08llx)\ndisabling initrd\n",
  312. ramdisk_end, end_of_lowmem);
  313. initrd_start = 0;
  314. #endif
  315. free_early(ramdisk_image, ramdisk_end);
  316. }
  317. #else
  318. static void __init reserve_initrd(void)
  319. {
  320. }
  321. #endif /* CONFIG_BLK_DEV_INITRD */
  322. static void __init parse_setup_data(void)
  323. {
  324. struct setup_data *data;
  325. u64 pa_data;
  326. if (boot_params.hdr.version < 0x0209)
  327. return;
  328. pa_data = boot_params.hdr.setup_data;
  329. while (pa_data) {
  330. data = early_ioremap(pa_data, PAGE_SIZE);
  331. switch (data->type) {
  332. case SETUP_E820_EXT:
  333. parse_e820_ext(data, pa_data);
  334. break;
  335. default:
  336. break;
  337. }
  338. pa_data = data->next;
  339. early_iounmap(data, PAGE_SIZE);
  340. }
  341. }
  342. static void __init e820_reserve_setup_data(void)
  343. {
  344. struct setup_data *data;
  345. u64 pa_data;
  346. int found = 0;
  347. if (boot_params.hdr.version < 0x0209)
  348. return;
  349. pa_data = boot_params.hdr.setup_data;
  350. while (pa_data) {
  351. data = early_ioremap(pa_data, sizeof(*data));
  352. e820_update_range(pa_data, sizeof(*data)+data->len,
  353. E820_RAM, E820_RESERVED_KERN);
  354. found = 1;
  355. pa_data = data->next;
  356. early_iounmap(data, sizeof(*data));
  357. }
  358. if (!found)
  359. return;
  360. sanitize_e820_map(e820.map, ARRAY_SIZE(e820.map), &e820.nr_map);
  361. memcpy(&e820_saved, &e820, sizeof(struct e820map));
  362. printk(KERN_INFO "extended physical RAM map:\n");
  363. e820_print_map("reserve setup_data");
  364. }
  365. static void __init reserve_early_setup_data(void)
  366. {
  367. struct setup_data *data;
  368. u64 pa_data;
  369. char buf[32];
  370. if (boot_params.hdr.version < 0x0209)
  371. return;
  372. pa_data = boot_params.hdr.setup_data;
  373. while (pa_data) {
  374. data = early_ioremap(pa_data, sizeof(*data));
  375. sprintf(buf, "setup data %x", data->type);
  376. reserve_early(pa_data, pa_data+sizeof(*data)+data->len, buf);
  377. pa_data = data->next;
  378. early_iounmap(data, sizeof(*data));
  379. }
  380. }
  381. /*
  382. * --------- Crashkernel reservation ------------------------------
  383. */
  384. #ifdef CONFIG_KEXEC
  385. /**
  386. * Reserve @size bytes of crashkernel memory at any suitable offset.
  387. *
  388. * @size: Size of the crashkernel memory to reserve.
  389. * Returns the base address on success, and -1ULL on failure.
  390. */
  391. unsigned long long find_and_reserve_crashkernel(unsigned long long size)
  392. {
  393. const unsigned long long alignment = 16<<20; /* 16M */
  394. unsigned long long start = 0LL;
  395. while (1) {
  396. int ret;
  397. start = find_e820_area(start, ULONG_MAX, size, alignment);
  398. if (start == -1ULL)
  399. return start;
  400. /* try to reserve it */
  401. ret = reserve_bootmem_generic(start, size, BOOTMEM_EXCLUSIVE);
  402. if (ret >= 0)
  403. return start;
  404. start += alignment;
  405. }
  406. }
  407. static inline unsigned long long get_total_mem(void)
  408. {
  409. unsigned long long total;
  410. total = max_low_pfn - min_low_pfn;
  411. #ifdef CONFIG_HIGHMEM
  412. total += highend_pfn - highstart_pfn;
  413. #endif
  414. return total << PAGE_SHIFT;
  415. }
  416. static void __init reserve_crashkernel(void)
  417. {
  418. unsigned long long total_mem;
  419. unsigned long long crash_size, crash_base;
  420. int ret;
  421. total_mem = get_total_mem();
  422. ret = parse_crashkernel(boot_command_line, total_mem,
  423. &crash_size, &crash_base);
  424. if (ret != 0 || crash_size <= 0)
  425. return;
  426. /* 0 means: find the address automatically */
  427. if (crash_base <= 0) {
  428. crash_base = find_and_reserve_crashkernel(crash_size);
  429. if (crash_base == -1ULL) {
  430. pr_info("crashkernel reservation failed. "
  431. "No suitable area found.\n");
  432. return;
  433. }
  434. } else {
  435. ret = reserve_bootmem_generic(crash_base, crash_size,
  436. BOOTMEM_EXCLUSIVE);
  437. if (ret < 0) {
  438. pr_info("crashkernel reservation failed - "
  439. "memory is in use\n");
  440. return;
  441. }
  442. }
  443. printk(KERN_INFO "Reserving %ldMB of memory at %ldMB "
  444. "for crashkernel (System RAM: %ldMB)\n",
  445. (unsigned long)(crash_size >> 20),
  446. (unsigned long)(crash_base >> 20),
  447. (unsigned long)(total_mem >> 20));
  448. crashk_res.start = crash_base;
  449. crashk_res.end = crash_base + crash_size - 1;
  450. insert_resource(&iomem_resource, &crashk_res);
  451. }
  452. #else
  453. static void __init reserve_crashkernel(void)
  454. {
  455. }
  456. #endif
  457. static struct resource standard_io_resources[] = {
  458. { .name = "dma1", .start = 0x00, .end = 0x1f,
  459. .flags = IORESOURCE_BUSY | IORESOURCE_IO },
  460. { .name = "pic1", .start = 0x20, .end = 0x21,
  461. .flags = IORESOURCE_BUSY | IORESOURCE_IO },
  462. { .name = "timer0", .start = 0x40, .end = 0x43,
  463. .flags = IORESOURCE_BUSY | IORESOURCE_IO },
  464. { .name = "timer1", .start = 0x50, .end = 0x53,
  465. .flags = IORESOURCE_BUSY | IORESOURCE_IO },
  466. { .name = "keyboard", .start = 0x60, .end = 0x60,
  467. .flags = IORESOURCE_BUSY | IORESOURCE_IO },
  468. { .name = "keyboard", .start = 0x64, .end = 0x64,
  469. .flags = IORESOURCE_BUSY | IORESOURCE_IO },
  470. { .name = "dma page reg", .start = 0x80, .end = 0x8f,
  471. .flags = IORESOURCE_BUSY | IORESOURCE_IO },
  472. { .name = "pic2", .start = 0xa0, .end = 0xa1,
  473. .flags = IORESOURCE_BUSY | IORESOURCE_IO },
  474. { .name = "dma2", .start = 0xc0, .end = 0xdf,
  475. .flags = IORESOURCE_BUSY | IORESOURCE_IO },
  476. { .name = "fpu", .start = 0xf0, .end = 0xff,
  477. .flags = IORESOURCE_BUSY | IORESOURCE_IO }
  478. };
  479. static void __init reserve_standard_io_resources(void)
  480. {
  481. int i;
  482. /* request I/O space for devices used on all i[345]86 PCs */
  483. for (i = 0; i < ARRAY_SIZE(standard_io_resources); i++)
  484. request_resource(&ioport_resource, &standard_io_resources[i]);
  485. }
  486. #ifdef CONFIG_PROC_VMCORE
  487. /* elfcorehdr= specifies the location of elf core header
  488. * stored by the crashed kernel. This option will be passed
  489. * by kexec loader to the capture kernel.
  490. */
  491. static int __init setup_elfcorehdr(char *arg)
  492. {
  493. char *end;
  494. if (!arg)
  495. return -EINVAL;
  496. elfcorehdr_addr = memparse(arg, &end);
  497. return end > arg ? 0 : -EINVAL;
  498. }
  499. early_param("elfcorehdr", setup_elfcorehdr);
  500. #endif
  501. /*
  502. * Determine if we were loaded by an EFI loader. If so, then we have also been
  503. * passed the efi memmap, systab, etc., so we should use these data structures
  504. * for initialization. Note, the efi init code path is determined by the
  505. * global efi_enabled. This allows the same kernel image to be used on existing
  506. * systems (with a traditional BIOS) as well as on EFI systems.
  507. */
  508. /*
  509. * setup_arch - architecture-specific boot-time initializations
  510. *
  511. * Note: On x86_64, fixmaps are ready for use even before this is called.
  512. */
  513. void __init setup_arch(char **cmdline_p)
  514. {
  515. #ifdef CONFIG_X86_32
  516. memcpy(&boot_cpu_data, &new_cpu_data, sizeof(new_cpu_data));
  517. visws_early_detect();
  518. pre_setup_arch_hook();
  519. early_cpu_init();
  520. #else
  521. printk(KERN_INFO "Command line: %s\n", boot_command_line);
  522. #endif
  523. early_ioremap_init();
  524. ROOT_DEV = old_decode_dev(boot_params.hdr.root_dev);
  525. screen_info = boot_params.screen_info;
  526. edid_info = boot_params.edid_info;
  527. #ifdef CONFIG_X86_32
  528. apm_info.bios = boot_params.apm_bios_info;
  529. ist_info = boot_params.ist_info;
  530. if (boot_params.sys_desc_table.length != 0) {
  531. set_mca_bus(boot_params.sys_desc_table.table[3] & 0x2);
  532. machine_id = boot_params.sys_desc_table.table[0];
  533. machine_submodel_id = boot_params.sys_desc_table.table[1];
  534. BIOS_revision = boot_params.sys_desc_table.table[2];
  535. }
  536. #endif
  537. saved_video_mode = boot_params.hdr.vid_mode;
  538. bootloader_type = boot_params.hdr.type_of_loader;
  539. #ifdef CONFIG_BLK_DEV_RAM
  540. rd_image_start = boot_params.hdr.ram_size & RAMDISK_IMAGE_START_MASK;
  541. rd_prompt = ((boot_params.hdr.ram_size & RAMDISK_PROMPT_FLAG) != 0);
  542. rd_doload = ((boot_params.hdr.ram_size & RAMDISK_LOAD_FLAG) != 0);
  543. #endif
  544. #ifdef CONFIG_EFI
  545. if (!strncmp((char *)&boot_params.efi_info.efi_loader_signature,
  546. #ifdef CONFIG_X86_32
  547. "EL32",
  548. #else
  549. "EL64",
  550. #endif
  551. 4)) {
  552. efi_enabled = 1;
  553. efi_reserve_early();
  554. }
  555. #endif
  556. ARCH_SETUP
  557. setup_memory_map();
  558. parse_setup_data();
  559. /* update the e820_saved too */
  560. e820_reserve_setup_data();
  561. copy_edd();
  562. if (!boot_params.hdr.root_flags)
  563. root_mountflags &= ~MS_RDONLY;
  564. init_mm.start_code = (unsigned long) _text;
  565. init_mm.end_code = (unsigned long) _etext;
  566. init_mm.end_data = (unsigned long) _edata;
  567. #ifdef CONFIG_X86_32
  568. init_mm.brk = init_pg_tables_end + PAGE_OFFSET;
  569. #else
  570. init_mm.brk = (unsigned long) &_end;
  571. #endif
  572. code_resource.start = virt_to_phys(_text);
  573. code_resource.end = virt_to_phys(_etext)-1;
  574. data_resource.start = virt_to_phys(_etext);
  575. data_resource.end = virt_to_phys(_edata)-1;
  576. bss_resource.start = virt_to_phys(&__bss_start);
  577. bss_resource.end = virt_to_phys(&__bss_stop)-1;
  578. #ifdef CONFIG_X86_64
  579. early_cpu_init();
  580. #endif
  581. strlcpy(command_line, boot_command_line, COMMAND_LINE_SIZE);
  582. *cmdline_p = command_line;
  583. parse_early_param();
  584. /* after early param, so could get panic from serial */
  585. reserve_early_setup_data();
  586. if (acpi_mps_check()) {
  587. #ifdef CONFIG_X86_LOCAL_APIC
  588. disable_apic = 1;
  589. #endif
  590. clear_cpu_cap(&boot_cpu_data, X86_FEATURE_APIC);
  591. }
  592. #ifdef CONFIG_PCI
  593. if (pci_early_dump_regs)
  594. early_dump_pci_devices();
  595. #endif
  596. finish_e820_parsing();
  597. #ifdef CONFIG_X86_32
  598. probe_roms();
  599. #endif
  600. /* after parse_early_param, so could debug it */
  601. insert_resource(&iomem_resource, &code_resource);
  602. insert_resource(&iomem_resource, &data_resource);
  603. insert_resource(&iomem_resource, &bss_resource);
  604. if (efi_enabled)
  605. efi_init();
  606. #ifdef CONFIG_X86_32
  607. if (ppro_with_ram_bug()) {
  608. e820_update_range(0x70000000ULL, 0x40000ULL, E820_RAM,
  609. E820_RESERVED);
  610. sanitize_e820_map(e820.map, ARRAY_SIZE(e820.map), &e820.nr_map);
  611. printk(KERN_INFO "fixed physical RAM map:\n");
  612. e820_print_map("bad_ppro");
  613. }
  614. #else
  615. early_gart_iommu_check();
  616. #endif
  617. /*
  618. * partially used pages are not usable - thus
  619. * we are rounding upwards:
  620. */
  621. max_pfn = e820_end_of_ram_pfn();
  622. /* preallocate 4k for mptable mpc */
  623. early_reserve_e820_mpc_new();
  624. /* update e820 for memory not covered by WB MTRRs */
  625. mtrr_bp_init();
  626. if (mtrr_trim_uncached_memory(max_pfn))
  627. max_pfn = e820_end_of_ram_pfn();
  628. #ifdef CONFIG_X86_32
  629. /* max_low_pfn get updated here */
  630. find_low_pfn_range();
  631. #else
  632. num_physpages = max_pfn;
  633. check_efer();
  634. /* How many end-of-memory variables you have, grandma! */
  635. /* need this before calling reserve_initrd */
  636. if (max_pfn > (1UL<<(32 - PAGE_SHIFT)))
  637. max_low_pfn = e820_end_of_low_ram_pfn();
  638. else
  639. max_low_pfn = max_pfn;
  640. high_memory = (void *)__va(max_pfn * PAGE_SIZE - 1) + 1;
  641. #endif
  642. /* max_pfn_mapped is updated here */
  643. max_low_pfn_mapped = init_memory_mapping(0, max_low_pfn<<PAGE_SHIFT);
  644. max_pfn_mapped = max_low_pfn_mapped;
  645. #ifdef CONFIG_X86_64
  646. if (max_pfn > max_low_pfn) {
  647. max_pfn_mapped = init_memory_mapping(1UL<<32,
  648. max_pfn<<PAGE_SHIFT);
  649. /* can we preseve max_low_pfn ?*/
  650. max_low_pfn = max_pfn;
  651. }
  652. #endif
  653. /*
  654. * NOTE: On x86-32, only from this point on, fixmaps are ready for use.
  655. */
  656. #ifdef CONFIG_PROVIDE_OHCI1394_DMA_INIT
  657. if (init_ohci1394_dma_early)
  658. init_ohci1394_dma_on_all_controllers();
  659. #endif
  660. reserve_initrd();
  661. #ifdef CONFIG_X86_64
  662. vsmp_init();
  663. #endif
  664. dmi_scan_machine();
  665. io_delay_init();
  666. /*
  667. * Parse the ACPI tables for possible boot-time SMP configuration.
  668. */
  669. acpi_boot_table_init();
  670. #ifdef CONFIG_ACPI_NUMA
  671. /*
  672. * Parse SRAT to discover nodes.
  673. */
  674. acpi_numa_init();
  675. #endif
  676. initmem_init(0, max_pfn);
  677. #ifdef CONFIG_X86_64
  678. dma32_reserve_bootmem();
  679. #endif
  680. #ifdef CONFIG_ACPI_SLEEP
  681. /*
  682. * Reserve low memory region for sleep support.
  683. */
  684. acpi_reserve_bootmem();
  685. #endif
  686. #ifdef CONFIG_X86_FIND_SMP_CONFIG
  687. /*
  688. * Find and reserve possible boot-time SMP configuration:
  689. */
  690. find_smp_config();
  691. #endif
  692. reserve_crashkernel();
  693. reserve_ibft_region();
  694. #ifdef CONFIG_KVM_CLOCK
  695. kvmclock_init();
  696. #endif
  697. #if defined(CONFIG_VMI) && defined(CONFIG_X86_32)
  698. /*
  699. * Must be after max_low_pfn is determined, and before kernel
  700. * pagetables are setup.
  701. */
  702. vmi_init();
  703. #endif
  704. paging_init();
  705. #ifdef CONFIG_X86_64
  706. map_vsyscall();
  707. #endif
  708. #ifdef CONFIG_X86_GENERICARCH
  709. generic_apic_probe();
  710. #endif
  711. early_quirks();
  712. /*
  713. * Read APIC and some other early information from ACPI tables.
  714. */
  715. acpi_boot_init();
  716. #if defined(CONFIG_X86_MPPARSE) || defined(CONFIG_X86_VISWS)
  717. /*
  718. * get boot-time SMP configuration:
  719. */
  720. if (smp_found_config)
  721. get_smp_config();
  722. #endif
  723. prefill_possible_map();
  724. #ifdef CONFIG_X86_64
  725. init_cpu_to_node();
  726. #endif
  727. #ifdef CONFIG_X86_NUMAQ
  728. /*
  729. * need to check online nodes num, call it
  730. * here before time_init/tsc_init
  731. */
  732. numaq_tsc_disable();
  733. #endif
  734. init_apic_mappings();
  735. ioapic_init_mappings();
  736. #if defined(CONFIG_SMP) && defined(CONFIG_X86_PC) && defined(CONFIG_X86_32)
  737. if (def_to_bigsmp)
  738. printk(KERN_WARNING "More than 8 CPUs detected and "
  739. "CONFIG_X86_PC cannot handle it.\nUse "
  740. "CONFIG_X86_GENERICARCH or CONFIG_X86_BIGSMP.\n");
  741. #endif
  742. kvm_guest_init();
  743. e820_reserve_resources();
  744. e820_mark_nosave_regions(max_low_pfn);
  745. #ifdef CONFIG_X86_32
  746. request_resource(&iomem_resource, &video_ram_resource);
  747. #endif
  748. reserve_standard_io_resources();
  749. e820_setup_gap();
  750. #ifdef CONFIG_VT
  751. #if defined(CONFIG_VGA_CONSOLE)
  752. if (!efi_enabled || (efi_mem_type(0xa0000) != EFI_CONVENTIONAL_MEMORY))
  753. conswitchp = &vga_con;
  754. #elif defined(CONFIG_DUMMY_CONSOLE)
  755. conswitchp = &dummy_con;
  756. #endif
  757. #endif
  758. }