head_64.S 11 KB

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  1. /*
  2. * linux/arch/x86_64/kernel/head.S -- start in 32bit and switch to 64bit
  3. *
  4. * Copyright (C) 2000 Andrea Arcangeli <andrea@suse.de> SuSE
  5. * Copyright (C) 2000 Pavel Machek <pavel@suse.cz>
  6. * Copyright (C) 2000 Karsten Keil <kkeil@suse.de>
  7. * Copyright (C) 2001,2002 Andi Kleen <ak@suse.de>
  8. * Copyright (C) 2005 Eric Biederman <ebiederm@xmission.com>
  9. */
  10. #include <linux/linkage.h>
  11. #include <linux/threads.h>
  12. #include <linux/init.h>
  13. #include <asm/desc.h>
  14. #include <asm/segment.h>
  15. #include <asm/pgtable.h>
  16. #include <asm/page.h>
  17. #include <asm/msr.h>
  18. #include <asm/cache.h>
  19. /* we are not able to switch in one step to the final KERNEL ADRESS SPACE
  20. * because we need identity-mapped pages.
  21. *
  22. */
  23. .text
  24. .section .text.head
  25. .code64
  26. .globl startup_64
  27. startup_64:
  28. /*
  29. * At this point the CPU runs in 64bit mode CS.L = 1 CS.D = 1,
  30. * and someone has loaded an identity mapped page table
  31. * for us. These identity mapped page tables map all of the
  32. * kernel pages and possibly all of memory.
  33. *
  34. * %esi holds a physical pointer to real_mode_data.
  35. *
  36. * We come here either directly from a 64bit bootloader, or from
  37. * arch/x86_64/boot/compressed/head.S.
  38. *
  39. * We only come here initially at boot nothing else comes here.
  40. *
  41. * Since we may be loaded at an address different from what we were
  42. * compiled to run at we first fixup the physical addresses in our page
  43. * tables and then reload them.
  44. */
  45. /* Compute the delta between the address I am compiled to run at and the
  46. * address I am actually running at.
  47. */
  48. leaq _text(%rip), %rbp
  49. subq $_text - __START_KERNEL_map, %rbp
  50. /* Is the address not 2M aligned? */
  51. movq %rbp, %rax
  52. andl $~LARGE_PAGE_MASK, %eax
  53. testl %eax, %eax
  54. jnz bad_address
  55. /* Is the address too large? */
  56. leaq _text(%rip), %rdx
  57. movq $PGDIR_SIZE, %rax
  58. cmpq %rax, %rdx
  59. jae bad_address
  60. /* Fixup the physical addresses in the page table
  61. */
  62. addq %rbp, init_level4_pgt + 0(%rip)
  63. addq %rbp, init_level4_pgt + (258*8)(%rip)
  64. addq %rbp, init_level4_pgt + (511*8)(%rip)
  65. addq %rbp, level3_ident_pgt + 0(%rip)
  66. addq %rbp, level3_kernel_pgt + (510*8)(%rip)
  67. addq %rbp, level3_kernel_pgt + (511*8)(%rip)
  68. addq %rbp, level2_fixmap_pgt + (506*8)(%rip)
  69. /* Add an Identity mapping if I am above 1G */
  70. leaq _text(%rip), %rdi
  71. andq $LARGE_PAGE_MASK, %rdi
  72. movq %rdi, %rax
  73. shrq $PUD_SHIFT, %rax
  74. andq $(PTRS_PER_PUD - 1), %rax
  75. jz ident_complete
  76. leaq (level2_spare_pgt - __START_KERNEL_map + _KERNPG_TABLE)(%rbp), %rdx
  77. leaq level3_ident_pgt(%rip), %rbx
  78. movq %rdx, 0(%rbx, %rax, 8)
  79. movq %rdi, %rax
  80. shrq $PMD_SHIFT, %rax
  81. andq $(PTRS_PER_PMD - 1), %rax
  82. leaq __PAGE_KERNEL_LARGE_EXEC(%rdi), %rdx
  83. leaq level2_spare_pgt(%rip), %rbx
  84. movq %rdx, 0(%rbx, %rax, 8)
  85. ident_complete:
  86. /* Fixup the kernel text+data virtual addresses
  87. */
  88. leaq level2_kernel_pgt(%rip), %rdi
  89. leaq 4096(%rdi), %r8
  90. /* See if it is a valid page table entry */
  91. 1: testq $1, 0(%rdi)
  92. jz 2f
  93. addq %rbp, 0(%rdi)
  94. /* Go to the next page */
  95. 2: addq $8, %rdi
  96. cmp %r8, %rdi
  97. jne 1b
  98. /* Fixup phys_base */
  99. addq %rbp, phys_base(%rip)
  100. #ifdef CONFIG_SMP
  101. addq %rbp, trampoline_level4_pgt + 0(%rip)
  102. addq %rbp, trampoline_level4_pgt + (511*8)(%rip)
  103. #endif
  104. #ifdef CONFIG_ACPI_SLEEP
  105. addq %rbp, wakeup_level4_pgt + 0(%rip)
  106. addq %rbp, wakeup_level4_pgt + (511*8)(%rip)
  107. #endif
  108. /* Due to ENTRY(), sometimes the empty space gets filled with
  109. * zeros. Better take a jmp than relying on empty space being
  110. * filled with 0x90 (nop)
  111. */
  112. jmp secondary_startup_64
  113. ENTRY(secondary_startup_64)
  114. /*
  115. * At this point the CPU runs in 64bit mode CS.L = 1 CS.D = 1,
  116. * and someone has loaded a mapped page table.
  117. *
  118. * %esi holds a physical pointer to real_mode_data.
  119. *
  120. * We come here either from startup_64 (using physical addresses)
  121. * or from trampoline.S (using virtual addresses).
  122. *
  123. * Using virtual addresses from trampoline.S removes the need
  124. * to have any identity mapped pages in the kernel page table
  125. * after the boot processor executes this code.
  126. */
  127. /* Enable PAE mode and PGE */
  128. xorq %rax, %rax
  129. btsq $5, %rax
  130. btsq $7, %rax
  131. movq %rax, %cr4
  132. /* Setup early boot stage 4 level pagetables. */
  133. movq $(init_level4_pgt - __START_KERNEL_map), %rax
  134. addq phys_base(%rip), %rax
  135. movq %rax, %cr3
  136. /* Ensure I am executing from virtual addresses */
  137. movq $1f, %rax
  138. jmp *%rax
  139. 1:
  140. /* Check if nx is implemented */
  141. movl $0x80000001, %eax
  142. cpuid
  143. movl %edx,%edi
  144. /* Setup EFER (Extended Feature Enable Register) */
  145. movl $MSR_EFER, %ecx
  146. rdmsr
  147. btsl $_EFER_SCE, %eax /* Enable System Call */
  148. btl $20,%edi /* No Execute supported? */
  149. jnc 1f
  150. btsl $_EFER_NX, %eax
  151. 1: wrmsr /* Make changes effective */
  152. /* Setup cr0 */
  153. #define CR0_PM 1 /* protected mode */
  154. #define CR0_MP (1<<1)
  155. #define CR0_ET (1<<4)
  156. #define CR0_NE (1<<5)
  157. #define CR0_WP (1<<16)
  158. #define CR0_AM (1<<18)
  159. #define CR0_PAGING (1<<31)
  160. movl $CR0_PM|CR0_MP|CR0_ET|CR0_NE|CR0_WP|CR0_AM|CR0_PAGING,%eax
  161. /* Make changes effective */
  162. movq %rax, %cr0
  163. /* Setup a boot time stack */
  164. movq init_rsp(%rip),%rsp
  165. /* zero EFLAGS after setting rsp */
  166. pushq $0
  167. popfq
  168. /*
  169. * We must switch to a new descriptor in kernel space for the GDT
  170. * because soon the kernel won't have access anymore to the userspace
  171. * addresses where we're currently running on. We have to do that here
  172. * because in 32bit we couldn't load a 64bit linear address.
  173. */
  174. lgdt cpu_gdt_descr(%rip)
  175. /* set up data segments. actually 0 would do too */
  176. movl $__KERNEL_DS,%eax
  177. movl %eax,%ds
  178. movl %eax,%ss
  179. movl %eax,%es
  180. /*
  181. * We don't really need to load %fs or %gs, but load them anyway
  182. * to kill any stale realmode selectors. This allows execution
  183. * under VT hardware.
  184. */
  185. movl %eax,%fs
  186. movl %eax,%gs
  187. /*
  188. * Setup up a dummy PDA. this is just for some early bootup code
  189. * that does in_interrupt()
  190. */
  191. movl $MSR_GS_BASE,%ecx
  192. movq $empty_zero_page,%rax
  193. movq %rax,%rdx
  194. shrq $32,%rdx
  195. wrmsr
  196. /* esi is pointer to real mode structure with interesting info.
  197. pass it to C */
  198. movl %esi, %edi
  199. /* Finally jump to run C code and to be on real kernel address
  200. * Since we are running on identity-mapped space we have to jump
  201. * to the full 64bit address, this is only possible as indirect
  202. * jump. In addition we need to ensure %cs is set so we make this
  203. * a far return.
  204. */
  205. movq initial_code(%rip),%rax
  206. pushq $0 # fake return address to stop unwinder
  207. pushq $__KERNEL_CS # set correct cs
  208. pushq %rax # target address in negative space
  209. lretq
  210. /* SMP bootup changes these two */
  211. #ifndef CONFIG_HOTPLUG_CPU
  212. .pushsection .init.data
  213. #endif
  214. .align 8
  215. .globl initial_code
  216. initial_code:
  217. .quad x86_64_start_kernel
  218. #ifndef CONFIG_HOTPLUG_CPU
  219. .popsection
  220. #endif
  221. .globl init_rsp
  222. init_rsp:
  223. .quad init_thread_union+THREAD_SIZE-8
  224. bad_address:
  225. jmp bad_address
  226. ENTRY(early_idt_handler)
  227. cmpl $2,early_recursion_flag(%rip)
  228. jz 1f
  229. incl early_recursion_flag(%rip)
  230. xorl %eax,%eax
  231. movq 8(%rsp),%rsi # get rip
  232. movq (%rsp),%rdx
  233. movq %cr2,%rcx
  234. leaq early_idt_msg(%rip),%rdi
  235. call early_printk
  236. cmpl $2,early_recursion_flag(%rip)
  237. jz 1f
  238. call dump_stack
  239. #ifdef CONFIG_KALLSYMS
  240. leaq early_idt_ripmsg(%rip),%rdi
  241. movq 8(%rsp),%rsi # get rip again
  242. call __print_symbol
  243. #endif
  244. 1: hlt
  245. jmp 1b
  246. early_recursion_flag:
  247. .long 0
  248. early_idt_msg:
  249. .asciz "PANIC: early exception rip %lx error %lx cr2 %lx\n"
  250. early_idt_ripmsg:
  251. .asciz "RIP %s\n"
  252. .balign PAGE_SIZE
  253. #define NEXT_PAGE(name) \
  254. .balign PAGE_SIZE; \
  255. ENTRY(name)
  256. /* Automate the creation of 1 to 1 mapping pmd entries */
  257. #define PMDS(START, PERM, COUNT) \
  258. i = 0 ; \
  259. .rept (COUNT) ; \
  260. .quad (START) + (i << 21) + (PERM) ; \
  261. i = i + 1 ; \
  262. .endr
  263. /*
  264. * This default setting generates an ident mapping at address 0x100000
  265. * and a mapping for the kernel that precisely maps virtual address
  266. * 0xffffffff80000000 to physical address 0x000000. (always using
  267. * 2Mbyte large pages provided by PAE mode)
  268. */
  269. NEXT_PAGE(init_level4_pgt)
  270. .quad level3_ident_pgt - __START_KERNEL_map + _KERNPG_TABLE
  271. .fill 257,8,0
  272. .quad level3_ident_pgt - __START_KERNEL_map + _KERNPG_TABLE
  273. .fill 252,8,0
  274. /* (2^48-(2*1024*1024*1024))/(2^39) = 511 */
  275. .quad level3_kernel_pgt - __START_KERNEL_map + _PAGE_TABLE
  276. NEXT_PAGE(level3_ident_pgt)
  277. .quad level2_ident_pgt - __START_KERNEL_map + _KERNPG_TABLE
  278. .fill 511,8,0
  279. NEXT_PAGE(level3_kernel_pgt)
  280. .fill 510,8,0
  281. /* (2^48-(2*1024*1024*1024)-((2^39)*511))/(2^30) = 510 */
  282. .quad level2_kernel_pgt - __START_KERNEL_map + _KERNPG_TABLE
  283. .quad level2_fixmap_pgt - __START_KERNEL_map + _PAGE_TABLE
  284. NEXT_PAGE(level2_fixmap_pgt)
  285. .fill 506,8,0
  286. .quad level1_fixmap_pgt - __START_KERNEL_map + _PAGE_TABLE
  287. /* 8MB reserved for vsyscalls + a 2MB hole = 4 + 1 entries */
  288. .fill 5,8,0
  289. NEXT_PAGE(level1_fixmap_pgt)
  290. .fill 512,8,0
  291. NEXT_PAGE(level2_ident_pgt)
  292. /* Since I easily can, map the first 1G.
  293. * Don't set NX because code runs from these pages.
  294. */
  295. PMDS(0x0000000000000000, __PAGE_KERNEL_LARGE_EXEC, PTRS_PER_PMD)
  296. NEXT_PAGE(level2_kernel_pgt)
  297. /* 40MB kernel mapping. The kernel code cannot be bigger than that.
  298. When you change this change KERNEL_TEXT_SIZE in page.h too. */
  299. /* (2^48-(2*1024*1024*1024)-((2^39)*511)-((2^30)*510)) = 0 */
  300. PMDS(0x0000000000000000, __PAGE_KERNEL_LARGE_EXEC|_PAGE_GLOBAL, KERNEL_TEXT_SIZE/PMD_SIZE)
  301. /* Module mapping starts here */
  302. .fill (PTRS_PER_PMD - (KERNEL_TEXT_SIZE/PMD_SIZE)),8,0
  303. NEXT_PAGE(level2_spare_pgt)
  304. .fill 512,8,0
  305. #undef PMDS
  306. #undef NEXT_PAGE
  307. .data
  308. .align 16
  309. .globl cpu_gdt_descr
  310. cpu_gdt_descr:
  311. .word gdt_end-cpu_gdt_table-1
  312. gdt:
  313. .quad cpu_gdt_table
  314. #ifdef CONFIG_SMP
  315. .rept NR_CPUS-1
  316. .word 0
  317. .quad 0
  318. .endr
  319. #endif
  320. ENTRY(phys_base)
  321. /* This must match the first entry in level2_kernel_pgt */
  322. .quad 0x0000000000000000
  323. /* We need valid kernel segments for data and code in long mode too
  324. * IRET will check the segment types kkeil 2000/10/28
  325. * Also sysret mandates a special GDT layout
  326. */
  327. .section .data.page_aligned, "aw"
  328. .align PAGE_SIZE
  329. /* The TLS descriptors are currently at a different place compared to i386.
  330. Hopefully nobody expects them at a fixed place (Wine?) */
  331. ENTRY(cpu_gdt_table)
  332. .quad 0x0000000000000000 /* NULL descriptor */
  333. .quad 0x00cf9b000000ffff /* __KERNEL32_CS */
  334. .quad 0x00af9b000000ffff /* __KERNEL_CS */
  335. .quad 0x00cf93000000ffff /* __KERNEL_DS */
  336. .quad 0x00cffb000000ffff /* __USER32_CS */
  337. .quad 0x00cff3000000ffff /* __USER_DS, __USER32_DS */
  338. .quad 0x00affb000000ffff /* __USER_CS */
  339. .quad 0x0 /* unused */
  340. .quad 0,0 /* TSS */
  341. .quad 0,0 /* LDT */
  342. .quad 0,0,0 /* three TLS descriptors */
  343. .quad 0x0000f40000000000 /* node/CPU stored in limit */
  344. gdt_end:
  345. /* asm/segment.h:GDT_ENTRIES must match this */
  346. /* This should be a multiple of the cache line size */
  347. /* GDTs of other CPUs are now dynamically allocated */
  348. /* zero the remaining page */
  349. .fill PAGE_SIZE / 8 - GDT_ENTRIES,8,0
  350. .section .bss, "aw", @nobits
  351. .align L1_CACHE_BYTES
  352. ENTRY(idt_table)
  353. .skip 256 * 16
  354. .section .bss.page_aligned, "aw", @nobits
  355. .align PAGE_SIZE
  356. ENTRY(empty_zero_page)
  357. .skip PAGE_SIZE