head.S 14 KB

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  1. /*
  2. * linux/arch/i386/kernel/head.S -- the 32-bit startup code.
  3. *
  4. * Copyright (C) 1991, 1992 Linus Torvalds
  5. *
  6. * Enhanced CPU detection and feature setting code by Mike Jagdis
  7. * and Martin Mares, November 1997.
  8. */
  9. .text
  10. #include <linux/threads.h>
  11. #include <linux/linkage.h>
  12. #include <asm/segment.h>
  13. #include <asm/page.h>
  14. #include <asm/pgtable.h>
  15. #include <asm/desc.h>
  16. #include <asm/cache.h>
  17. #include <asm/thread_info.h>
  18. #include <asm/asm-offsets.h>
  19. #include <asm/setup.h>
  20. /*
  21. * References to members of the new_cpu_data structure.
  22. */
  23. #define X86 new_cpu_data+CPUINFO_x86
  24. #define X86_VENDOR new_cpu_data+CPUINFO_x86_vendor
  25. #define X86_MODEL new_cpu_data+CPUINFO_x86_model
  26. #define X86_MASK new_cpu_data+CPUINFO_x86_mask
  27. #define X86_HARD_MATH new_cpu_data+CPUINFO_hard_math
  28. #define X86_CPUID new_cpu_data+CPUINFO_cpuid_level
  29. #define X86_CAPABILITY new_cpu_data+CPUINFO_x86_capability
  30. #define X86_VENDOR_ID new_cpu_data+CPUINFO_x86_vendor_id
  31. /*
  32. * This is how much memory *in addition to the memory covered up to
  33. * and including _end* we need mapped initially.
  34. * We need:
  35. * - one bit for each possible page, but only in low memory, which means
  36. * 2^32/4096/8 = 128K worst case (4G/4G split.)
  37. * - enough space to map all low memory, which means
  38. * (2^32/4096) / 1024 pages (worst case, non PAE)
  39. * (2^32/4096) / 512 + 4 pages (worst case for PAE)
  40. * - a few pages for allocator use before the kernel pagetable has
  41. * been set up
  42. *
  43. * Modulo rounding, each megabyte assigned here requires a kilobyte of
  44. * memory, which is currently unreclaimed.
  45. *
  46. * This should be a multiple of a page.
  47. */
  48. LOW_PAGES = 1<<(32-PAGE_SHIFT_asm)
  49. #if PTRS_PER_PMD > 1
  50. PAGE_TABLE_SIZE = (LOW_PAGES / PTRS_PER_PMD) + PTRS_PER_PGD
  51. #else
  52. PAGE_TABLE_SIZE = (LOW_PAGES / PTRS_PER_PGD)
  53. #endif
  54. BOOTBITMAP_SIZE = LOW_PAGES / 8
  55. ALLOCATOR_SLOP = 4
  56. INIT_MAP_BEYOND_END = BOOTBITMAP_SIZE + (PAGE_TABLE_SIZE + ALLOCATOR_SLOP)*PAGE_SIZE_asm
  57. /*
  58. * 32-bit kernel entrypoint; only used by the boot CPU. On entry,
  59. * %esi points to the real-mode code as a 32-bit pointer.
  60. * CS and DS must be 4 GB flat segments, but we don't depend on
  61. * any particular GDT layout, because we load our own as soon as we
  62. * can.
  63. */
  64. .section .text.head,"ax",@progbits
  65. ENTRY(startup_32)
  66. /*
  67. * Set segments to known values.
  68. */
  69. cld
  70. lgdt boot_gdt_descr - __PAGE_OFFSET
  71. movl $(__BOOT_DS),%eax
  72. movl %eax,%ds
  73. movl %eax,%es
  74. movl %eax,%fs
  75. movl %eax,%gs
  76. /*
  77. * Clear BSS first so that there are no surprises...
  78. * No need to cld as DF is already clear from cld above...
  79. */
  80. xorl %eax,%eax
  81. movl $__bss_start - __PAGE_OFFSET,%edi
  82. movl $__bss_stop - __PAGE_OFFSET,%ecx
  83. subl %edi,%ecx
  84. shrl $2,%ecx
  85. rep ; stosl
  86. /*
  87. * Copy bootup parameters out of the way.
  88. * Note: %esi still has the pointer to the real-mode data.
  89. * With the kexec as boot loader, parameter segment might be loaded beyond
  90. * kernel image and might not even be addressable by early boot page tables.
  91. * (kexec on panic case). Hence copy out the parameters before initializing
  92. * page tables.
  93. */
  94. movl $(boot_params - __PAGE_OFFSET),%edi
  95. movl $(PARAM_SIZE/4),%ecx
  96. cld
  97. rep
  98. movsl
  99. movl boot_params - __PAGE_OFFSET + NEW_CL_POINTER,%esi
  100. andl %esi,%esi
  101. jnz 2f # New command line protocol
  102. cmpw $(OLD_CL_MAGIC),OLD_CL_MAGIC_ADDR
  103. jne 1f
  104. movzwl OLD_CL_OFFSET,%esi
  105. addl $(OLD_CL_BASE_ADDR),%esi
  106. 2:
  107. movl $(boot_command_line - __PAGE_OFFSET),%edi
  108. movl $(COMMAND_LINE_SIZE/4),%ecx
  109. rep
  110. movsl
  111. 1:
  112. /*
  113. * Initialize page tables. This creates a PDE and a set of page
  114. * tables, which are located immediately beyond _end. The variable
  115. * init_pg_tables_end is set up to point to the first "safe" location.
  116. * Mappings are created both at virtual address 0 (identity mapping)
  117. * and PAGE_OFFSET for up to _end+sizeof(page tables)+INIT_MAP_BEYOND_END.
  118. *
  119. * Warning: don't use %esi or the stack in this code. However, %esp
  120. * can be used as a GPR if you really need it...
  121. */
  122. page_pde_offset = (__PAGE_OFFSET >> 20);
  123. movl $(pg0 - __PAGE_OFFSET), %edi
  124. movl $(swapper_pg_dir - __PAGE_OFFSET), %edx
  125. movl $0x007, %eax /* 0x007 = PRESENT+RW+USER */
  126. 10:
  127. leal 0x007(%edi),%ecx /* Create PDE entry */
  128. movl %ecx,(%edx) /* Store identity PDE entry */
  129. movl %ecx,page_pde_offset(%edx) /* Store kernel PDE entry */
  130. addl $4,%edx
  131. movl $1024, %ecx
  132. 11:
  133. stosl
  134. addl $0x1000,%eax
  135. loop 11b
  136. /* End condition: we must map up to and including INIT_MAP_BEYOND_END */
  137. /* bytes beyond the end of our own page tables; the +0x007 is the attribute bits */
  138. leal (INIT_MAP_BEYOND_END+0x007)(%edi),%ebp
  139. cmpl %ebp,%eax
  140. jb 10b
  141. movl %edi,(init_pg_tables_end - __PAGE_OFFSET)
  142. xorl %ebx,%ebx /* This is the boot CPU (BSP) */
  143. jmp 3f
  144. /*
  145. * Non-boot CPU entry point; entered from trampoline.S
  146. * We can't lgdt here, because lgdt itself uses a data segment, but
  147. * we know the trampoline has already loaded the boot_gdt for us.
  148. *
  149. * If cpu hotplug is not supported then this code can go in init section
  150. * which will be freed later
  151. */
  152. #ifdef CONFIG_HOTPLUG_CPU
  153. .section .text,"ax",@progbits
  154. #else
  155. .section .init.text,"ax",@progbits
  156. #endif
  157. /* Do an early initialization of the fixmap area */
  158. movl $(swapper_pg_dir - __PAGE_OFFSET), %edx
  159. movl $(swapper_pg_pmd - __PAGE_OFFSET), %eax
  160. addl $0x007, %eax /* 0x007 = PRESENT+RW+USER */
  161. movl %eax, 4092(%edx)
  162. #ifdef CONFIG_SMP
  163. ENTRY(startup_32_smp)
  164. cld
  165. movl $(__BOOT_DS),%eax
  166. movl %eax,%ds
  167. movl %eax,%es
  168. movl %eax,%fs
  169. movl %eax,%gs
  170. /*
  171. * New page tables may be in 4Mbyte page mode and may
  172. * be using the global pages.
  173. *
  174. * NOTE! If we are on a 486 we may have no cr4 at all!
  175. * So we do not try to touch it unless we really have
  176. * some bits in it to set. This won't work if the BSP
  177. * implements cr4 but this AP does not -- very unlikely
  178. * but be warned! The same applies to the pse feature
  179. * if not equally supported. --macro
  180. *
  181. * NOTE! We have to correct for the fact that we're
  182. * not yet offset PAGE_OFFSET..
  183. */
  184. #define cr4_bits mmu_cr4_features-__PAGE_OFFSET
  185. movl cr4_bits,%edx
  186. andl %edx,%edx
  187. jz 6f
  188. movl %cr4,%eax # Turn on paging options (PSE,PAE,..)
  189. orl %edx,%eax
  190. movl %eax,%cr4
  191. btl $5, %eax # check if PAE is enabled
  192. jnc 6f
  193. /* Check if extended functions are implemented */
  194. movl $0x80000000, %eax
  195. cpuid
  196. cmpl $0x80000000, %eax
  197. jbe 6f
  198. mov $0x80000001, %eax
  199. cpuid
  200. /* Execute Disable bit supported? */
  201. btl $20, %edx
  202. jnc 6f
  203. /* Setup EFER (Extended Feature Enable Register) */
  204. movl $0xc0000080, %ecx
  205. rdmsr
  206. btsl $11, %eax
  207. /* Make changes effective */
  208. wrmsr
  209. 6:
  210. /* This is a secondary processor (AP) */
  211. xorl %ebx,%ebx
  212. incl %ebx
  213. #endif /* CONFIG_SMP */
  214. 3:
  215. /*
  216. * Enable paging
  217. */
  218. movl $swapper_pg_dir-__PAGE_OFFSET,%eax
  219. movl %eax,%cr3 /* set the page table pointer.. */
  220. movl %cr0,%eax
  221. orl $0x80000000,%eax
  222. movl %eax,%cr0 /* ..and set paging (PG) bit */
  223. ljmp $__BOOT_CS,$1f /* Clear prefetch and normalize %eip */
  224. 1:
  225. /* Set up the stack pointer */
  226. lss stack_start,%esp
  227. /*
  228. * Initialize eflags. Some BIOS's leave bits like NT set. This would
  229. * confuse the debugger if this code is traced.
  230. * XXX - best to initialize before switching to protected mode.
  231. */
  232. pushl $0
  233. popfl
  234. #ifdef CONFIG_SMP
  235. andl %ebx,%ebx
  236. jz 1f /* Initial CPU cleans BSS */
  237. jmp checkCPUtype
  238. 1:
  239. #endif /* CONFIG_SMP */
  240. /*
  241. * start system 32-bit setup. We need to re-do some of the things done
  242. * in 16-bit mode for the "real" operations.
  243. */
  244. call setup_idt
  245. checkCPUtype:
  246. movl $-1,X86_CPUID # -1 for no CPUID initially
  247. /* check if it is 486 or 386. */
  248. /*
  249. * XXX - this does a lot of unnecessary setup. Alignment checks don't
  250. * apply at our cpl of 0 and the stack ought to be aligned already, and
  251. * we don't need to preserve eflags.
  252. */
  253. movb $3,X86 # at least 386
  254. pushfl # push EFLAGS
  255. popl %eax # get EFLAGS
  256. movl %eax,%ecx # save original EFLAGS
  257. xorl $0x240000,%eax # flip AC and ID bits in EFLAGS
  258. pushl %eax # copy to EFLAGS
  259. popfl # set EFLAGS
  260. pushfl # get new EFLAGS
  261. popl %eax # put it in eax
  262. xorl %ecx,%eax # change in flags
  263. pushl %ecx # restore original EFLAGS
  264. popfl
  265. testl $0x40000,%eax # check if AC bit changed
  266. je is386
  267. movb $4,X86 # at least 486
  268. testl $0x200000,%eax # check if ID bit changed
  269. je is486
  270. /* get vendor info */
  271. xorl %eax,%eax # call CPUID with 0 -> return vendor ID
  272. cpuid
  273. movl %eax,X86_CPUID # save CPUID level
  274. movl %ebx,X86_VENDOR_ID # lo 4 chars
  275. movl %edx,X86_VENDOR_ID+4 # next 4 chars
  276. movl %ecx,X86_VENDOR_ID+8 # last 4 chars
  277. orl %eax,%eax # do we have processor info as well?
  278. je is486
  279. movl $1,%eax # Use the CPUID instruction to get CPU type
  280. cpuid
  281. movb %al,%cl # save reg for future use
  282. andb $0x0f,%ah # mask processor family
  283. movb %ah,X86
  284. andb $0xf0,%al # mask model
  285. shrb $4,%al
  286. movb %al,X86_MODEL
  287. andb $0x0f,%cl # mask mask revision
  288. movb %cl,X86_MASK
  289. movl %edx,X86_CAPABILITY
  290. is486: movl $0x50022,%ecx # set AM, WP, NE and MP
  291. jmp 2f
  292. is386: movl $2,%ecx # set MP
  293. 2: movl %cr0,%eax
  294. andl $0x80000011,%eax # Save PG,PE,ET
  295. orl %ecx,%eax
  296. movl %eax,%cr0
  297. call check_x87
  298. lgdt early_gdt_descr
  299. lidt idt_descr
  300. ljmp $(__KERNEL_CS),$1f
  301. 1: movl $(__KERNEL_DS),%eax # reload all the segment registers
  302. movl %eax,%ss # after changing gdt.
  303. movl %eax,%fs # gets reset once there's real percpu
  304. movl $(__USER_DS),%eax # DS/ES contains default USER segment
  305. movl %eax,%ds
  306. movl %eax,%es
  307. xorl %eax,%eax # Clear GS and LDT
  308. movl %eax,%gs
  309. lldt %ax
  310. cld # gcc2 wants the direction flag cleared at all times
  311. pushl $0 # fake return address for unwinder
  312. #ifdef CONFIG_SMP
  313. movb ready, %cl
  314. movb $1, ready
  315. cmpb $0,%cl # the first CPU calls start_kernel
  316. je 1f
  317. movl $(__KERNEL_PERCPU), %eax
  318. movl %eax,%fs # set this cpu's percpu
  319. jmp initialize_secondary # all other CPUs call initialize_secondary
  320. 1:
  321. #endif /* CONFIG_SMP */
  322. jmp start_kernel
  323. /*
  324. * We depend on ET to be correct. This checks for 287/387.
  325. */
  326. check_x87:
  327. movb $0,X86_HARD_MATH
  328. clts
  329. fninit
  330. fstsw %ax
  331. cmpb $0,%al
  332. je 1f
  333. movl %cr0,%eax /* no coprocessor: have to set bits */
  334. xorl $4,%eax /* set EM */
  335. movl %eax,%cr0
  336. ret
  337. ALIGN
  338. 1: movb $1,X86_HARD_MATH
  339. .byte 0xDB,0xE4 /* fsetpm for 287, ignored by 387 */
  340. ret
  341. /*
  342. * setup_idt
  343. *
  344. * sets up a idt with 256 entries pointing to
  345. * ignore_int, interrupt gates. It doesn't actually load
  346. * idt - that can be done only after paging has been enabled
  347. * and the kernel moved to PAGE_OFFSET. Interrupts
  348. * are enabled elsewhere, when we can be relatively
  349. * sure everything is ok.
  350. *
  351. * Warning: %esi is live across this function.
  352. */
  353. setup_idt:
  354. lea ignore_int,%edx
  355. movl $(__KERNEL_CS << 16),%eax
  356. movw %dx,%ax /* selector = 0x0010 = cs */
  357. movw $0x8E00,%dx /* interrupt gate - dpl=0, present */
  358. lea idt_table,%edi
  359. mov $256,%ecx
  360. rp_sidt:
  361. movl %eax,(%edi)
  362. movl %edx,4(%edi)
  363. addl $8,%edi
  364. dec %ecx
  365. jne rp_sidt
  366. .macro set_early_handler handler,trapno
  367. lea \handler,%edx
  368. movl $(__KERNEL_CS << 16),%eax
  369. movw %dx,%ax
  370. movw $0x8E00,%dx /* interrupt gate - dpl=0, present */
  371. lea idt_table,%edi
  372. movl %eax,8*\trapno(%edi)
  373. movl %edx,8*\trapno+4(%edi)
  374. .endm
  375. set_early_handler handler=early_divide_err,trapno=0
  376. set_early_handler handler=early_illegal_opcode,trapno=6
  377. set_early_handler handler=early_protection_fault,trapno=13
  378. set_early_handler handler=early_page_fault,trapno=14
  379. ret
  380. early_divide_err:
  381. xor %edx,%edx
  382. pushl $0 /* fake errcode */
  383. jmp early_fault
  384. early_illegal_opcode:
  385. movl $6,%edx
  386. pushl $0 /* fake errcode */
  387. jmp early_fault
  388. early_protection_fault:
  389. movl $13,%edx
  390. jmp early_fault
  391. early_page_fault:
  392. movl $14,%edx
  393. jmp early_fault
  394. early_fault:
  395. cld
  396. #ifdef CONFIG_PRINTK
  397. movl $(__KERNEL_DS),%eax
  398. movl %eax,%ds
  399. movl %eax,%es
  400. cmpl $2,early_recursion_flag
  401. je hlt_loop
  402. incl early_recursion_flag
  403. movl %cr2,%eax
  404. pushl %eax
  405. pushl %edx /* trapno */
  406. pushl $fault_msg
  407. #ifdef CONFIG_EARLY_PRINTK
  408. call early_printk
  409. #else
  410. call printk
  411. #endif
  412. #endif
  413. hlt_loop:
  414. hlt
  415. jmp hlt_loop
  416. /* This is the default interrupt "handler" :-) */
  417. ALIGN
  418. ignore_int:
  419. cld
  420. #ifdef CONFIG_PRINTK
  421. pushl %eax
  422. pushl %ecx
  423. pushl %edx
  424. pushl %es
  425. pushl %ds
  426. movl $(__KERNEL_DS),%eax
  427. movl %eax,%ds
  428. movl %eax,%es
  429. cmpl $2,early_recursion_flag
  430. je hlt_loop
  431. incl early_recursion_flag
  432. pushl 16(%esp)
  433. pushl 24(%esp)
  434. pushl 32(%esp)
  435. pushl 40(%esp)
  436. pushl $int_msg
  437. #ifdef CONFIG_EARLY_PRINTK
  438. call early_printk
  439. #else
  440. call printk
  441. #endif
  442. addl $(5*4),%esp
  443. popl %ds
  444. popl %es
  445. popl %edx
  446. popl %ecx
  447. popl %eax
  448. #endif
  449. iret
  450. .section .text
  451. /*
  452. * Real beginning of normal "text" segment
  453. */
  454. ENTRY(stext)
  455. ENTRY(_stext)
  456. /*
  457. * BSS section
  458. */
  459. .section ".bss.page_aligned","wa"
  460. .align PAGE_SIZE_asm
  461. ENTRY(swapper_pg_dir)
  462. .fill 1024,4,0
  463. ENTRY(swapper_pg_pmd)
  464. .fill 1024,4,0
  465. ENTRY(empty_zero_page)
  466. .fill 4096,1,0
  467. /*
  468. * This starts the data section.
  469. */
  470. .data
  471. ENTRY(stack_start)
  472. .long init_thread_union+THREAD_SIZE
  473. .long __BOOT_DS
  474. ready: .byte 0
  475. early_recursion_flag:
  476. .long 0
  477. int_msg:
  478. .asciz "Unknown interrupt or fault at EIP %p %p %p\n"
  479. fault_msg:
  480. .ascii "Int %d: CR2 %p err %p EIP %p CS %p flags %p\n"
  481. .asciz "Stack: %p %p %p %p %p %p %p %p\n"
  482. #include "../xen/xen-head.S"
  483. /*
  484. * The IDT and GDT 'descriptors' are a strange 48-bit object
  485. * only used by the lidt and lgdt instructions. They are not
  486. * like usual segment descriptors - they consist of a 16-bit
  487. * segment size, and 32-bit linear address value:
  488. */
  489. .globl boot_gdt_descr
  490. .globl idt_descr
  491. ALIGN
  492. # early boot GDT descriptor (must use 1:1 address mapping)
  493. .word 0 # 32 bit align gdt_desc.address
  494. boot_gdt_descr:
  495. .word __BOOT_DS+7
  496. .long boot_gdt - __PAGE_OFFSET
  497. .word 0 # 32-bit align idt_desc.address
  498. idt_descr:
  499. .word IDT_ENTRIES*8-1 # idt contains 256 entries
  500. .long idt_table
  501. # boot GDT descriptor (later on used by CPU#0):
  502. .word 0 # 32 bit align gdt_desc.address
  503. ENTRY(early_gdt_descr)
  504. .word GDT_ENTRIES*8-1
  505. .long per_cpu__gdt_page /* Overwritten for secondary CPUs */
  506. /*
  507. * The boot_gdt must mirror the equivalent in setup.S and is
  508. * used only for booting.
  509. */
  510. .align L1_CACHE_BYTES
  511. ENTRY(boot_gdt)
  512. .fill GDT_ENTRY_BOOT_CS,8,0
  513. .quad 0x00cf9a000000ffff /* kernel 4GB code at 0x00000000 */
  514. .quad 0x00cf92000000ffff /* kernel 4GB data at 0x00000000 */