entry_32.S 32 KB

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  1. /*
  2. *
  3. * Copyright (C) 1991, 1992 Linus Torvalds
  4. */
  5. /*
  6. * entry.S contains the system-call and fault low-level handling routines.
  7. * This also contains the timer-interrupt handler, as well as all interrupts
  8. * and faults that can result in a task-switch.
  9. *
  10. * NOTE: This code handles signal-recognition, which happens every time
  11. * after a timer-interrupt and after each system call.
  12. *
  13. * I changed all the .align's to 4 (16 byte alignment), as that's faster
  14. * on a 486.
  15. *
  16. * Stack layout in 'syscall_exit':
  17. * ptrace needs to have all regs on the stack.
  18. * if the order here is changed, it needs to be
  19. * updated in fork.c:copy_process, signal.c:do_signal,
  20. * ptrace.c and ptrace.h
  21. *
  22. * 0(%esp) - %ebx
  23. * 4(%esp) - %ecx
  24. * 8(%esp) - %edx
  25. * C(%esp) - %esi
  26. * 10(%esp) - %edi
  27. * 14(%esp) - %ebp
  28. * 18(%esp) - %eax
  29. * 1C(%esp) - %ds
  30. * 20(%esp) - %es
  31. * 24(%esp) - %fs
  32. * 28(%esp) - %gs saved iff !CONFIG_X86_32_LAZY_GS
  33. * 2C(%esp) - orig_eax
  34. * 30(%esp) - %eip
  35. * 34(%esp) - %cs
  36. * 38(%esp) - %eflags
  37. * 3C(%esp) - %oldesp
  38. * 40(%esp) - %oldss
  39. *
  40. * "current" is in register %ebx during any slow entries.
  41. */
  42. #include <linux/linkage.h>
  43. #include <asm/thread_info.h>
  44. #include <asm/irqflags.h>
  45. #include <asm/errno.h>
  46. #include <asm/segment.h>
  47. #include <asm/smp.h>
  48. #include <asm/page_types.h>
  49. #include <asm/percpu.h>
  50. #include <asm/dwarf2.h>
  51. #include <asm/processor-flags.h>
  52. #include <asm/ftrace.h>
  53. #include <asm/irq_vectors.h>
  54. #include <asm/cpufeature.h>
  55. #include <asm/alternative-asm.h>
  56. /* Avoid __ASSEMBLER__'ifying <linux/audit.h> just for this. */
  57. #include <linux/elf-em.h>
  58. #define AUDIT_ARCH_I386 (EM_386|__AUDIT_ARCH_LE)
  59. #define __AUDIT_ARCH_LE 0x40000000
  60. #ifndef CONFIG_AUDITSYSCALL
  61. #define sysenter_audit syscall_trace_entry
  62. #define sysexit_audit syscall_exit_work
  63. #endif
  64. .section .entry.text, "ax"
  65. /*
  66. * We use macros for low-level operations which need to be overridden
  67. * for paravirtualization. The following will never clobber any registers:
  68. * INTERRUPT_RETURN (aka. "iret")
  69. * GET_CR0_INTO_EAX (aka. "movl %cr0, %eax")
  70. * ENABLE_INTERRUPTS_SYSEXIT (aka "sti; sysexit").
  71. *
  72. * For DISABLE_INTERRUPTS/ENABLE_INTERRUPTS (aka "cli"/"sti"), you must
  73. * specify what registers can be overwritten (CLBR_NONE, CLBR_EAX/EDX/ECX/ANY).
  74. * Allowing a register to be clobbered can shrink the paravirt replacement
  75. * enough to patch inline, increasing performance.
  76. */
  77. #ifdef CONFIG_PREEMPT
  78. #define preempt_stop(clobbers) DISABLE_INTERRUPTS(clobbers); TRACE_IRQS_OFF
  79. #else
  80. #define preempt_stop(clobbers)
  81. #define resume_kernel restore_all
  82. #endif
  83. .macro TRACE_IRQS_IRET
  84. #ifdef CONFIG_TRACE_IRQFLAGS
  85. testl $X86_EFLAGS_IF,PT_EFLAGS(%esp) # interrupts off?
  86. jz 1f
  87. TRACE_IRQS_ON
  88. 1:
  89. #endif
  90. .endm
  91. #ifdef CONFIG_VM86
  92. #define resume_userspace_sig check_userspace
  93. #else
  94. #define resume_userspace_sig resume_userspace
  95. #endif
  96. /*
  97. * User gs save/restore
  98. *
  99. * %gs is used for userland TLS and kernel only uses it for stack
  100. * canary which is required to be at %gs:20 by gcc. Read the comment
  101. * at the top of stackprotector.h for more info.
  102. *
  103. * Local labels 98 and 99 are used.
  104. */
  105. #ifdef CONFIG_X86_32_LAZY_GS
  106. /* unfortunately push/pop can't be no-op */
  107. .macro PUSH_GS
  108. pushl_cfi $0
  109. .endm
  110. .macro POP_GS pop=0
  111. addl $(4 + \pop), %esp
  112. CFI_ADJUST_CFA_OFFSET -(4 + \pop)
  113. .endm
  114. .macro POP_GS_EX
  115. .endm
  116. /* all the rest are no-op */
  117. .macro PTGS_TO_GS
  118. .endm
  119. .macro PTGS_TO_GS_EX
  120. .endm
  121. .macro GS_TO_REG reg
  122. .endm
  123. .macro REG_TO_PTGS reg
  124. .endm
  125. .macro SET_KERNEL_GS reg
  126. .endm
  127. #else /* CONFIG_X86_32_LAZY_GS */
  128. .macro PUSH_GS
  129. pushl_cfi %gs
  130. /*CFI_REL_OFFSET gs, 0*/
  131. .endm
  132. .macro POP_GS pop=0
  133. 98: popl_cfi %gs
  134. /*CFI_RESTORE gs*/
  135. .if \pop <> 0
  136. add $\pop, %esp
  137. CFI_ADJUST_CFA_OFFSET -\pop
  138. .endif
  139. .endm
  140. .macro POP_GS_EX
  141. .pushsection .fixup, "ax"
  142. 99: movl $0, (%esp)
  143. jmp 98b
  144. .section __ex_table, "a"
  145. .align 4
  146. .long 98b, 99b
  147. .popsection
  148. .endm
  149. .macro PTGS_TO_GS
  150. 98: mov PT_GS(%esp), %gs
  151. .endm
  152. .macro PTGS_TO_GS_EX
  153. .pushsection .fixup, "ax"
  154. 99: movl $0, PT_GS(%esp)
  155. jmp 98b
  156. .section __ex_table, "a"
  157. .align 4
  158. .long 98b, 99b
  159. .popsection
  160. .endm
  161. .macro GS_TO_REG reg
  162. movl %gs, \reg
  163. /*CFI_REGISTER gs, \reg*/
  164. .endm
  165. .macro REG_TO_PTGS reg
  166. movl \reg, PT_GS(%esp)
  167. /*CFI_REL_OFFSET gs, PT_GS*/
  168. .endm
  169. .macro SET_KERNEL_GS reg
  170. movl $(__KERNEL_STACK_CANARY), \reg
  171. movl \reg, %gs
  172. .endm
  173. #endif /* CONFIG_X86_32_LAZY_GS */
  174. .macro SAVE_ALL
  175. cld
  176. PUSH_GS
  177. pushl_cfi %fs
  178. /*CFI_REL_OFFSET fs, 0;*/
  179. pushl_cfi %es
  180. /*CFI_REL_OFFSET es, 0;*/
  181. pushl_cfi %ds
  182. /*CFI_REL_OFFSET ds, 0;*/
  183. pushl_cfi %eax
  184. CFI_REL_OFFSET eax, 0
  185. pushl_cfi %ebp
  186. CFI_REL_OFFSET ebp, 0
  187. pushl_cfi %edi
  188. CFI_REL_OFFSET edi, 0
  189. pushl_cfi %esi
  190. CFI_REL_OFFSET esi, 0
  191. pushl_cfi %edx
  192. CFI_REL_OFFSET edx, 0
  193. pushl_cfi %ecx
  194. CFI_REL_OFFSET ecx, 0
  195. pushl_cfi %ebx
  196. CFI_REL_OFFSET ebx, 0
  197. movl $(__USER_DS), %edx
  198. movl %edx, %ds
  199. movl %edx, %es
  200. movl $(__KERNEL_PERCPU), %edx
  201. movl %edx, %fs
  202. SET_KERNEL_GS %edx
  203. .endm
  204. .macro RESTORE_INT_REGS
  205. popl_cfi %ebx
  206. CFI_RESTORE ebx
  207. popl_cfi %ecx
  208. CFI_RESTORE ecx
  209. popl_cfi %edx
  210. CFI_RESTORE edx
  211. popl_cfi %esi
  212. CFI_RESTORE esi
  213. popl_cfi %edi
  214. CFI_RESTORE edi
  215. popl_cfi %ebp
  216. CFI_RESTORE ebp
  217. popl_cfi %eax
  218. CFI_RESTORE eax
  219. .endm
  220. .macro RESTORE_REGS pop=0
  221. RESTORE_INT_REGS
  222. 1: popl_cfi %ds
  223. /*CFI_RESTORE ds;*/
  224. 2: popl_cfi %es
  225. /*CFI_RESTORE es;*/
  226. 3: popl_cfi %fs
  227. /*CFI_RESTORE fs;*/
  228. POP_GS \pop
  229. .pushsection .fixup, "ax"
  230. 4: movl $0, (%esp)
  231. jmp 1b
  232. 5: movl $0, (%esp)
  233. jmp 2b
  234. 6: movl $0, (%esp)
  235. jmp 3b
  236. .section __ex_table, "a"
  237. .align 4
  238. .long 1b, 4b
  239. .long 2b, 5b
  240. .long 3b, 6b
  241. .popsection
  242. POP_GS_EX
  243. .endm
  244. .macro RING0_INT_FRAME
  245. CFI_STARTPROC simple
  246. CFI_SIGNAL_FRAME
  247. CFI_DEF_CFA esp, 3*4
  248. /*CFI_OFFSET cs, -2*4;*/
  249. CFI_OFFSET eip, -3*4
  250. .endm
  251. .macro RING0_EC_FRAME
  252. CFI_STARTPROC simple
  253. CFI_SIGNAL_FRAME
  254. CFI_DEF_CFA esp, 4*4
  255. /*CFI_OFFSET cs, -2*4;*/
  256. CFI_OFFSET eip, -3*4
  257. .endm
  258. .macro RING0_PTREGS_FRAME
  259. CFI_STARTPROC simple
  260. CFI_SIGNAL_FRAME
  261. CFI_DEF_CFA esp, PT_OLDESP-PT_EBX
  262. /*CFI_OFFSET cs, PT_CS-PT_OLDESP;*/
  263. CFI_OFFSET eip, PT_EIP-PT_OLDESP
  264. /*CFI_OFFSET es, PT_ES-PT_OLDESP;*/
  265. /*CFI_OFFSET ds, PT_DS-PT_OLDESP;*/
  266. CFI_OFFSET eax, PT_EAX-PT_OLDESP
  267. CFI_OFFSET ebp, PT_EBP-PT_OLDESP
  268. CFI_OFFSET edi, PT_EDI-PT_OLDESP
  269. CFI_OFFSET esi, PT_ESI-PT_OLDESP
  270. CFI_OFFSET edx, PT_EDX-PT_OLDESP
  271. CFI_OFFSET ecx, PT_ECX-PT_OLDESP
  272. CFI_OFFSET ebx, PT_EBX-PT_OLDESP
  273. .endm
  274. ENTRY(ret_from_fork)
  275. CFI_STARTPROC
  276. pushl_cfi %eax
  277. call schedule_tail
  278. GET_THREAD_INFO(%ebp)
  279. popl_cfi %eax
  280. pushl_cfi $0x0202 # Reset kernel eflags
  281. popfl_cfi
  282. jmp syscall_exit
  283. CFI_ENDPROC
  284. END(ret_from_fork)
  285. /*
  286. * Interrupt exit functions should be protected against kprobes
  287. */
  288. .pushsection .kprobes.text, "ax"
  289. /*
  290. * Return to user mode is not as complex as all this looks,
  291. * but we want the default path for a system call return to
  292. * go as quickly as possible which is why some of this is
  293. * less clear than it otherwise should be.
  294. */
  295. # userspace resumption stub bypassing syscall exit tracing
  296. ALIGN
  297. RING0_PTREGS_FRAME
  298. ret_from_exception:
  299. preempt_stop(CLBR_ANY)
  300. ret_from_intr:
  301. GET_THREAD_INFO(%ebp)
  302. check_userspace:
  303. movl PT_EFLAGS(%esp), %eax # mix EFLAGS and CS
  304. movb PT_CS(%esp), %al
  305. andl $(X86_EFLAGS_VM | SEGMENT_RPL_MASK), %eax
  306. cmpl $USER_RPL, %eax
  307. jb resume_kernel # not returning to v8086 or userspace
  308. ENTRY(resume_userspace)
  309. LOCKDEP_SYS_EXIT
  310. DISABLE_INTERRUPTS(CLBR_ANY) # make sure we don't miss an interrupt
  311. # setting need_resched or sigpending
  312. # between sampling and the iret
  313. TRACE_IRQS_OFF
  314. movl TI_flags(%ebp), %ecx
  315. andl $_TIF_WORK_MASK, %ecx # is there any work to be done on
  316. # int/exception return?
  317. jne work_pending
  318. jmp restore_all
  319. END(ret_from_exception)
  320. #ifdef CONFIG_PREEMPT
  321. ENTRY(resume_kernel)
  322. DISABLE_INTERRUPTS(CLBR_ANY)
  323. cmpl $0,TI_preempt_count(%ebp) # non-zero preempt_count ?
  324. jnz restore_all
  325. need_resched:
  326. movl TI_flags(%ebp), %ecx # need_resched set ?
  327. testb $_TIF_NEED_RESCHED, %cl
  328. jz restore_all
  329. testl $X86_EFLAGS_IF,PT_EFLAGS(%esp) # interrupts off (exception path) ?
  330. jz restore_all
  331. call preempt_schedule_irq
  332. jmp need_resched
  333. END(resume_kernel)
  334. #endif
  335. CFI_ENDPROC
  336. /*
  337. * End of kprobes section
  338. */
  339. .popsection
  340. /* SYSENTER_RETURN points to after the "sysenter" instruction in
  341. the vsyscall page. See vsyscall-sysentry.S, which defines the symbol. */
  342. # sysenter call handler stub
  343. ENTRY(ia32_sysenter_target)
  344. CFI_STARTPROC simple
  345. CFI_SIGNAL_FRAME
  346. CFI_DEF_CFA esp, 0
  347. CFI_REGISTER esp, ebp
  348. movl TSS_sysenter_sp0(%esp),%esp
  349. sysenter_past_esp:
  350. /*
  351. * Interrupts are disabled here, but we can't trace it until
  352. * enough kernel state to call TRACE_IRQS_OFF can be called - but
  353. * we immediately enable interrupts at that point anyway.
  354. */
  355. pushl_cfi $__USER_DS
  356. /*CFI_REL_OFFSET ss, 0*/
  357. pushl_cfi %ebp
  358. CFI_REL_OFFSET esp, 0
  359. pushfl_cfi
  360. orl $X86_EFLAGS_IF, (%esp)
  361. pushl_cfi $__USER_CS
  362. /*CFI_REL_OFFSET cs, 0*/
  363. /*
  364. * Push current_thread_info()->sysenter_return to the stack.
  365. * A tiny bit of offset fixup is necessary - 4*4 means the 4 words
  366. * pushed above; +8 corresponds to copy_thread's esp0 setting.
  367. */
  368. pushl_cfi ((TI_sysenter_return)-THREAD_SIZE+8+4*4)(%esp)
  369. CFI_REL_OFFSET eip, 0
  370. pushl_cfi %eax
  371. SAVE_ALL
  372. ENABLE_INTERRUPTS(CLBR_NONE)
  373. /*
  374. * Load the potential sixth argument from user stack.
  375. * Careful about security.
  376. */
  377. cmpl $__PAGE_OFFSET-3,%ebp
  378. jae syscall_fault
  379. 1: movl (%ebp),%ebp
  380. movl %ebp,PT_EBP(%esp)
  381. .section __ex_table,"a"
  382. .align 4
  383. .long 1b,syscall_fault
  384. .previous
  385. GET_THREAD_INFO(%ebp)
  386. testl $_TIF_WORK_SYSCALL_ENTRY,TI_flags(%ebp)
  387. jnz sysenter_audit
  388. sysenter_do_call:
  389. cmpl $(NR_syscalls), %eax
  390. jae syscall_badsys
  391. call *sys_call_table(,%eax,4)
  392. movl %eax,PT_EAX(%esp)
  393. LOCKDEP_SYS_EXIT
  394. DISABLE_INTERRUPTS(CLBR_ANY)
  395. TRACE_IRQS_OFF
  396. movl TI_flags(%ebp), %ecx
  397. testl $_TIF_ALLWORK_MASK, %ecx
  398. jne sysexit_audit
  399. sysenter_exit:
  400. /* if something modifies registers it must also disable sysexit */
  401. movl PT_EIP(%esp), %edx
  402. movl PT_OLDESP(%esp), %ecx
  403. xorl %ebp,%ebp
  404. TRACE_IRQS_ON
  405. 1: mov PT_FS(%esp), %fs
  406. PTGS_TO_GS
  407. ENABLE_INTERRUPTS_SYSEXIT
  408. #ifdef CONFIG_AUDITSYSCALL
  409. sysenter_audit:
  410. testl $(_TIF_WORK_SYSCALL_ENTRY & ~_TIF_SYSCALL_AUDIT),TI_flags(%ebp)
  411. jnz syscall_trace_entry
  412. addl $4,%esp
  413. CFI_ADJUST_CFA_OFFSET -4
  414. /* %esi already in 8(%esp) 6th arg: 4th syscall arg */
  415. /* %edx already in 4(%esp) 5th arg: 3rd syscall arg */
  416. /* %ecx already in 0(%esp) 4th arg: 2nd syscall arg */
  417. movl %ebx,%ecx /* 3rd arg: 1st syscall arg */
  418. movl %eax,%edx /* 2nd arg: syscall number */
  419. movl $AUDIT_ARCH_I386,%eax /* 1st arg: audit arch */
  420. call audit_syscall_entry
  421. pushl_cfi %ebx
  422. movl PT_EAX(%esp),%eax /* reload syscall number */
  423. jmp sysenter_do_call
  424. sysexit_audit:
  425. testl $(_TIF_ALLWORK_MASK & ~_TIF_SYSCALL_AUDIT), %ecx
  426. jne syscall_exit_work
  427. TRACE_IRQS_ON
  428. ENABLE_INTERRUPTS(CLBR_ANY)
  429. movl %eax,%edx /* second arg, syscall return value */
  430. cmpl $0,%eax /* is it < 0? */
  431. setl %al /* 1 if so, 0 if not */
  432. movzbl %al,%eax /* zero-extend that */
  433. inc %eax /* first arg, 0->1(AUDITSC_SUCCESS), 1->2(AUDITSC_FAILURE) */
  434. call audit_syscall_exit
  435. DISABLE_INTERRUPTS(CLBR_ANY)
  436. TRACE_IRQS_OFF
  437. movl TI_flags(%ebp), %ecx
  438. testl $(_TIF_ALLWORK_MASK & ~_TIF_SYSCALL_AUDIT), %ecx
  439. jne syscall_exit_work
  440. movl PT_EAX(%esp),%eax /* reload syscall return value */
  441. jmp sysenter_exit
  442. #endif
  443. CFI_ENDPROC
  444. .pushsection .fixup,"ax"
  445. 2: movl $0,PT_FS(%esp)
  446. jmp 1b
  447. .section __ex_table,"a"
  448. .align 4
  449. .long 1b,2b
  450. .popsection
  451. PTGS_TO_GS_EX
  452. ENDPROC(ia32_sysenter_target)
  453. /*
  454. * syscall stub including irq exit should be protected against kprobes
  455. */
  456. .pushsection .kprobes.text, "ax"
  457. # system call handler stub
  458. ENTRY(system_call)
  459. RING0_INT_FRAME # can't unwind into user space anyway
  460. pushl_cfi %eax # save orig_eax
  461. SAVE_ALL
  462. GET_THREAD_INFO(%ebp)
  463. # system call tracing in operation / emulation
  464. testl $_TIF_WORK_SYSCALL_ENTRY,TI_flags(%ebp)
  465. jnz syscall_trace_entry
  466. cmpl $(NR_syscalls), %eax
  467. jae syscall_badsys
  468. syscall_call:
  469. call *sys_call_table(,%eax,4)
  470. movl %eax,PT_EAX(%esp) # store the return value
  471. syscall_exit:
  472. LOCKDEP_SYS_EXIT
  473. DISABLE_INTERRUPTS(CLBR_ANY) # make sure we don't miss an interrupt
  474. # setting need_resched or sigpending
  475. # between sampling and the iret
  476. TRACE_IRQS_OFF
  477. movl TI_flags(%ebp), %ecx
  478. testl $_TIF_ALLWORK_MASK, %ecx # current->work
  479. jne syscall_exit_work
  480. restore_all:
  481. TRACE_IRQS_IRET
  482. restore_all_notrace:
  483. movl PT_EFLAGS(%esp), %eax # mix EFLAGS, SS and CS
  484. # Warning: PT_OLDSS(%esp) contains the wrong/random values if we
  485. # are returning to the kernel.
  486. # See comments in process.c:copy_thread() for details.
  487. movb PT_OLDSS(%esp), %ah
  488. movb PT_CS(%esp), %al
  489. andl $(X86_EFLAGS_VM | (SEGMENT_TI_MASK << 8) | SEGMENT_RPL_MASK), %eax
  490. cmpl $((SEGMENT_LDT << 8) | USER_RPL), %eax
  491. CFI_REMEMBER_STATE
  492. je ldt_ss # returning to user-space with LDT SS
  493. restore_nocheck:
  494. RESTORE_REGS 4 # skip orig_eax/error_code
  495. irq_return:
  496. INTERRUPT_RETURN
  497. .section .fixup,"ax"
  498. ENTRY(iret_exc)
  499. pushl $0 # no error code
  500. pushl $do_iret_error
  501. jmp error_code
  502. .previous
  503. .section __ex_table,"a"
  504. .align 4
  505. .long irq_return,iret_exc
  506. .previous
  507. CFI_RESTORE_STATE
  508. ldt_ss:
  509. larl PT_OLDSS(%esp), %eax
  510. jnz restore_nocheck
  511. testl $0x00400000, %eax # returning to 32bit stack?
  512. jnz restore_nocheck # allright, normal return
  513. #ifdef CONFIG_PARAVIRT
  514. /*
  515. * The kernel can't run on a non-flat stack if paravirt mode
  516. * is active. Rather than try to fixup the high bits of
  517. * ESP, bypass this code entirely. This may break DOSemu
  518. * and/or Wine support in a paravirt VM, although the option
  519. * is still available to implement the setting of the high
  520. * 16-bits in the INTERRUPT_RETURN paravirt-op.
  521. */
  522. cmpl $0, pv_info+PARAVIRT_enabled
  523. jne restore_nocheck
  524. #endif
  525. /*
  526. * Setup and switch to ESPFIX stack
  527. *
  528. * We're returning to userspace with a 16 bit stack. The CPU will not
  529. * restore the high word of ESP for us on executing iret... This is an
  530. * "official" bug of all the x86-compatible CPUs, which we can work
  531. * around to make dosemu and wine happy. We do this by preloading the
  532. * high word of ESP with the high word of the userspace ESP while
  533. * compensating for the offset by changing to the ESPFIX segment with
  534. * a base address that matches for the difference.
  535. */
  536. #define GDT_ESPFIX_SS PER_CPU_VAR(gdt_page) + (GDT_ENTRY_ESPFIX_SS * 8)
  537. mov %esp, %edx /* load kernel esp */
  538. mov PT_OLDESP(%esp), %eax /* load userspace esp */
  539. mov %dx, %ax /* eax: new kernel esp */
  540. sub %eax, %edx /* offset (low word is 0) */
  541. shr $16, %edx
  542. mov %dl, GDT_ESPFIX_SS + 4 /* bits 16..23 */
  543. mov %dh, GDT_ESPFIX_SS + 7 /* bits 24..31 */
  544. pushl_cfi $__ESPFIX_SS
  545. pushl_cfi %eax /* new kernel esp */
  546. /* Disable interrupts, but do not irqtrace this section: we
  547. * will soon execute iret and the tracer was already set to
  548. * the irqstate after the iret */
  549. DISABLE_INTERRUPTS(CLBR_EAX)
  550. lss (%esp), %esp /* switch to espfix segment */
  551. CFI_ADJUST_CFA_OFFSET -8
  552. jmp restore_nocheck
  553. CFI_ENDPROC
  554. ENDPROC(system_call)
  555. # perform work that needs to be done immediately before resumption
  556. ALIGN
  557. RING0_PTREGS_FRAME # can't unwind into user space anyway
  558. work_pending:
  559. testb $_TIF_NEED_RESCHED, %cl
  560. jz work_notifysig
  561. work_resched:
  562. call schedule
  563. LOCKDEP_SYS_EXIT
  564. DISABLE_INTERRUPTS(CLBR_ANY) # make sure we don't miss an interrupt
  565. # setting need_resched or sigpending
  566. # between sampling and the iret
  567. TRACE_IRQS_OFF
  568. movl TI_flags(%ebp), %ecx
  569. andl $_TIF_WORK_MASK, %ecx # is there any work to be done other
  570. # than syscall tracing?
  571. jz restore_all
  572. testb $_TIF_NEED_RESCHED, %cl
  573. jnz work_resched
  574. work_notifysig: # deal with pending signals and
  575. # notify-resume requests
  576. #ifdef CONFIG_VM86
  577. testl $X86_EFLAGS_VM, PT_EFLAGS(%esp)
  578. movl %esp, %eax
  579. jne work_notifysig_v86 # returning to kernel-space or
  580. # vm86-space
  581. xorl %edx, %edx
  582. call do_notify_resume
  583. jmp resume_userspace_sig
  584. ALIGN
  585. work_notifysig_v86:
  586. pushl_cfi %ecx # save ti_flags for do_notify_resume
  587. call save_v86_state # %eax contains pt_regs pointer
  588. popl_cfi %ecx
  589. movl %eax, %esp
  590. #else
  591. movl %esp, %eax
  592. #endif
  593. xorl %edx, %edx
  594. call do_notify_resume
  595. jmp resume_userspace_sig
  596. END(work_pending)
  597. # perform syscall exit tracing
  598. ALIGN
  599. syscall_trace_entry:
  600. movl $-ENOSYS,PT_EAX(%esp)
  601. movl %esp, %eax
  602. call syscall_trace_enter
  603. /* What it returned is what we'll actually use. */
  604. cmpl $(NR_syscalls), %eax
  605. jnae syscall_call
  606. jmp syscall_exit
  607. END(syscall_trace_entry)
  608. # perform syscall exit tracing
  609. ALIGN
  610. syscall_exit_work:
  611. testl $_TIF_WORK_SYSCALL_EXIT, %ecx
  612. jz work_pending
  613. TRACE_IRQS_ON
  614. ENABLE_INTERRUPTS(CLBR_ANY) # could let syscall_trace_leave() call
  615. # schedule() instead
  616. movl %esp, %eax
  617. call syscall_trace_leave
  618. jmp resume_userspace
  619. END(syscall_exit_work)
  620. CFI_ENDPROC
  621. RING0_INT_FRAME # can't unwind into user space anyway
  622. syscall_fault:
  623. GET_THREAD_INFO(%ebp)
  624. movl $-EFAULT,PT_EAX(%esp)
  625. jmp resume_userspace
  626. END(syscall_fault)
  627. syscall_badsys:
  628. movl $-ENOSYS,PT_EAX(%esp)
  629. jmp resume_userspace
  630. END(syscall_badsys)
  631. CFI_ENDPROC
  632. /*
  633. * End of kprobes section
  634. */
  635. .popsection
  636. /*
  637. * System calls that need a pt_regs pointer.
  638. */
  639. #define PTREGSCALL0(name) \
  640. ENTRY(ptregs_##name) ; \
  641. leal 4(%esp),%eax; \
  642. jmp sys_##name; \
  643. ENDPROC(ptregs_##name)
  644. #define PTREGSCALL1(name) \
  645. ENTRY(ptregs_##name) ; \
  646. leal 4(%esp),%edx; \
  647. movl (PT_EBX+4)(%esp),%eax; \
  648. jmp sys_##name; \
  649. ENDPROC(ptregs_##name)
  650. #define PTREGSCALL2(name) \
  651. ENTRY(ptregs_##name) ; \
  652. leal 4(%esp),%ecx; \
  653. movl (PT_ECX+4)(%esp),%edx; \
  654. movl (PT_EBX+4)(%esp),%eax; \
  655. jmp sys_##name; \
  656. ENDPROC(ptregs_##name)
  657. #define PTREGSCALL3(name) \
  658. ENTRY(ptregs_##name) ; \
  659. CFI_STARTPROC; \
  660. leal 4(%esp),%eax; \
  661. pushl_cfi %eax; \
  662. movl PT_EDX(%eax),%ecx; \
  663. movl PT_ECX(%eax),%edx; \
  664. movl PT_EBX(%eax),%eax; \
  665. call sys_##name; \
  666. addl $4,%esp; \
  667. CFI_ADJUST_CFA_OFFSET -4; \
  668. ret; \
  669. CFI_ENDPROC; \
  670. ENDPROC(ptregs_##name)
  671. PTREGSCALL1(iopl)
  672. PTREGSCALL0(fork)
  673. PTREGSCALL0(vfork)
  674. PTREGSCALL3(execve)
  675. PTREGSCALL2(sigaltstack)
  676. PTREGSCALL0(sigreturn)
  677. PTREGSCALL0(rt_sigreturn)
  678. PTREGSCALL2(vm86)
  679. PTREGSCALL1(vm86old)
  680. /* Clone is an oddball. The 4th arg is in %edi */
  681. ENTRY(ptregs_clone)
  682. CFI_STARTPROC
  683. leal 4(%esp),%eax
  684. pushl_cfi %eax
  685. pushl_cfi PT_EDI(%eax)
  686. movl PT_EDX(%eax),%ecx
  687. movl PT_ECX(%eax),%edx
  688. movl PT_EBX(%eax),%eax
  689. call sys_clone
  690. addl $8,%esp
  691. CFI_ADJUST_CFA_OFFSET -8
  692. ret
  693. CFI_ENDPROC
  694. ENDPROC(ptregs_clone)
  695. .macro FIXUP_ESPFIX_STACK
  696. /*
  697. * Switch back for ESPFIX stack to the normal zerobased stack
  698. *
  699. * We can't call C functions using the ESPFIX stack. This code reads
  700. * the high word of the segment base from the GDT and swiches to the
  701. * normal stack and adjusts ESP with the matching offset.
  702. */
  703. /* fixup the stack */
  704. mov GDT_ESPFIX_SS + 4, %al /* bits 16..23 */
  705. mov GDT_ESPFIX_SS + 7, %ah /* bits 24..31 */
  706. shl $16, %eax
  707. addl %esp, %eax /* the adjusted stack pointer */
  708. pushl_cfi $__KERNEL_DS
  709. pushl_cfi %eax
  710. lss (%esp), %esp /* switch to the normal stack segment */
  711. CFI_ADJUST_CFA_OFFSET -8
  712. .endm
  713. .macro UNWIND_ESPFIX_STACK
  714. movl %ss, %eax
  715. /* see if on espfix stack */
  716. cmpw $__ESPFIX_SS, %ax
  717. jne 27f
  718. movl $__KERNEL_DS, %eax
  719. movl %eax, %ds
  720. movl %eax, %es
  721. /* switch to normal stack */
  722. FIXUP_ESPFIX_STACK
  723. 27:
  724. .endm
  725. /*
  726. * Build the entry stubs and pointer table with some assembler magic.
  727. * We pack 7 stubs into a single 32-byte chunk, which will fit in a
  728. * single cache line on all modern x86 implementations.
  729. */
  730. .section .init.rodata,"a"
  731. ENTRY(interrupt)
  732. .section .entry.text, "ax"
  733. .p2align 5
  734. .p2align CONFIG_X86_L1_CACHE_SHIFT
  735. ENTRY(irq_entries_start)
  736. RING0_INT_FRAME
  737. vector=FIRST_EXTERNAL_VECTOR
  738. .rept (NR_VECTORS-FIRST_EXTERNAL_VECTOR+6)/7
  739. .balign 32
  740. .rept 7
  741. .if vector < NR_VECTORS
  742. .if vector <> FIRST_EXTERNAL_VECTOR
  743. CFI_ADJUST_CFA_OFFSET -4
  744. .endif
  745. 1: pushl_cfi $(~vector+0x80) /* Note: always in signed byte range */
  746. .if ((vector-FIRST_EXTERNAL_VECTOR)%7) <> 6
  747. jmp 2f
  748. .endif
  749. .previous
  750. .long 1b
  751. .section .entry.text, "ax"
  752. vector=vector+1
  753. .endif
  754. .endr
  755. 2: jmp common_interrupt
  756. .endr
  757. END(irq_entries_start)
  758. .previous
  759. END(interrupt)
  760. .previous
  761. /*
  762. * the CPU automatically disables interrupts when executing an IRQ vector,
  763. * so IRQ-flags tracing has to follow that:
  764. */
  765. .p2align CONFIG_X86_L1_CACHE_SHIFT
  766. common_interrupt:
  767. addl $-0x80,(%esp) /* Adjust vector into the [-256,-1] range */
  768. SAVE_ALL
  769. TRACE_IRQS_OFF
  770. movl %esp,%eax
  771. call do_IRQ
  772. jmp ret_from_intr
  773. ENDPROC(common_interrupt)
  774. CFI_ENDPROC
  775. /*
  776. * Irq entries should be protected against kprobes
  777. */
  778. .pushsection .kprobes.text, "ax"
  779. #define BUILD_INTERRUPT3(name, nr, fn) \
  780. ENTRY(name) \
  781. RING0_INT_FRAME; \
  782. pushl_cfi $~(nr); \
  783. SAVE_ALL; \
  784. TRACE_IRQS_OFF \
  785. movl %esp,%eax; \
  786. call fn; \
  787. jmp ret_from_intr; \
  788. CFI_ENDPROC; \
  789. ENDPROC(name)
  790. #define BUILD_INTERRUPT(name, nr) BUILD_INTERRUPT3(name, nr, smp_##name)
  791. /* The include is where all of the SMP etc. interrupts come from */
  792. #include <asm/entry_arch.h>
  793. ENTRY(coprocessor_error)
  794. RING0_INT_FRAME
  795. pushl_cfi $0
  796. pushl_cfi $do_coprocessor_error
  797. jmp error_code
  798. CFI_ENDPROC
  799. END(coprocessor_error)
  800. ENTRY(simd_coprocessor_error)
  801. RING0_INT_FRAME
  802. pushl_cfi $0
  803. #ifdef CONFIG_X86_INVD_BUG
  804. /* AMD 486 bug: invd from userspace calls exception 19 instead of #GP */
  805. 661: pushl_cfi $do_general_protection
  806. 662:
  807. .section .altinstructions,"a"
  808. altinstruction_entry 661b, 663f, X86_FEATURE_XMM, 662b-661b, 664f-663f
  809. .previous
  810. .section .altinstr_replacement,"ax"
  811. 663: pushl $do_simd_coprocessor_error
  812. 664:
  813. .previous
  814. #else
  815. pushl_cfi $do_simd_coprocessor_error
  816. #endif
  817. jmp error_code
  818. CFI_ENDPROC
  819. END(simd_coprocessor_error)
  820. ENTRY(device_not_available)
  821. RING0_INT_FRAME
  822. pushl_cfi $-1 # mark this as an int
  823. pushl_cfi $do_device_not_available
  824. jmp error_code
  825. CFI_ENDPROC
  826. END(device_not_available)
  827. #ifdef CONFIG_PARAVIRT
  828. ENTRY(native_iret)
  829. iret
  830. .section __ex_table,"a"
  831. .align 4
  832. .long native_iret, iret_exc
  833. .previous
  834. END(native_iret)
  835. ENTRY(native_irq_enable_sysexit)
  836. sti
  837. sysexit
  838. END(native_irq_enable_sysexit)
  839. #endif
  840. ENTRY(overflow)
  841. RING0_INT_FRAME
  842. pushl_cfi $0
  843. pushl_cfi $do_overflow
  844. jmp error_code
  845. CFI_ENDPROC
  846. END(overflow)
  847. ENTRY(bounds)
  848. RING0_INT_FRAME
  849. pushl_cfi $0
  850. pushl_cfi $do_bounds
  851. jmp error_code
  852. CFI_ENDPROC
  853. END(bounds)
  854. ENTRY(invalid_op)
  855. RING0_INT_FRAME
  856. pushl_cfi $0
  857. pushl_cfi $do_invalid_op
  858. jmp error_code
  859. CFI_ENDPROC
  860. END(invalid_op)
  861. ENTRY(coprocessor_segment_overrun)
  862. RING0_INT_FRAME
  863. pushl_cfi $0
  864. pushl_cfi $do_coprocessor_segment_overrun
  865. jmp error_code
  866. CFI_ENDPROC
  867. END(coprocessor_segment_overrun)
  868. ENTRY(invalid_TSS)
  869. RING0_EC_FRAME
  870. pushl_cfi $do_invalid_TSS
  871. jmp error_code
  872. CFI_ENDPROC
  873. END(invalid_TSS)
  874. ENTRY(segment_not_present)
  875. RING0_EC_FRAME
  876. pushl_cfi $do_segment_not_present
  877. jmp error_code
  878. CFI_ENDPROC
  879. END(segment_not_present)
  880. ENTRY(stack_segment)
  881. RING0_EC_FRAME
  882. pushl_cfi $do_stack_segment
  883. jmp error_code
  884. CFI_ENDPROC
  885. END(stack_segment)
  886. ENTRY(alignment_check)
  887. RING0_EC_FRAME
  888. pushl_cfi $do_alignment_check
  889. jmp error_code
  890. CFI_ENDPROC
  891. END(alignment_check)
  892. ENTRY(divide_error)
  893. RING0_INT_FRAME
  894. pushl_cfi $0 # no error code
  895. pushl_cfi $do_divide_error
  896. jmp error_code
  897. CFI_ENDPROC
  898. END(divide_error)
  899. #ifdef CONFIG_X86_MCE
  900. ENTRY(machine_check)
  901. RING0_INT_FRAME
  902. pushl_cfi $0
  903. pushl_cfi machine_check_vector
  904. jmp error_code
  905. CFI_ENDPROC
  906. END(machine_check)
  907. #endif
  908. ENTRY(spurious_interrupt_bug)
  909. RING0_INT_FRAME
  910. pushl_cfi $0
  911. pushl_cfi $do_spurious_interrupt_bug
  912. jmp error_code
  913. CFI_ENDPROC
  914. END(spurious_interrupt_bug)
  915. /*
  916. * End of kprobes section
  917. */
  918. .popsection
  919. ENTRY(kernel_thread_helper)
  920. pushl $0 # fake return address for unwinder
  921. CFI_STARTPROC
  922. movl %edi,%eax
  923. call *%esi
  924. call do_exit
  925. ud2 # padding for call trace
  926. CFI_ENDPROC
  927. ENDPROC(kernel_thread_helper)
  928. #ifdef CONFIG_XEN
  929. /* Xen doesn't set %esp to be precisely what the normal sysenter
  930. entrypoint expects, so fix it up before using the normal path. */
  931. ENTRY(xen_sysenter_target)
  932. RING0_INT_FRAME
  933. addl $5*4, %esp /* remove xen-provided frame */
  934. CFI_ADJUST_CFA_OFFSET -5*4
  935. jmp sysenter_past_esp
  936. CFI_ENDPROC
  937. ENTRY(xen_hypervisor_callback)
  938. CFI_STARTPROC
  939. pushl_cfi $0
  940. SAVE_ALL
  941. TRACE_IRQS_OFF
  942. /* Check to see if we got the event in the critical
  943. region in xen_iret_direct, after we've reenabled
  944. events and checked for pending events. This simulates
  945. iret instruction's behaviour where it delivers a
  946. pending interrupt when enabling interrupts. */
  947. movl PT_EIP(%esp),%eax
  948. cmpl $xen_iret_start_crit,%eax
  949. jb 1f
  950. cmpl $xen_iret_end_crit,%eax
  951. jae 1f
  952. jmp xen_iret_crit_fixup
  953. ENTRY(xen_do_upcall)
  954. 1: mov %esp, %eax
  955. call xen_evtchn_do_upcall
  956. jmp ret_from_intr
  957. CFI_ENDPROC
  958. ENDPROC(xen_hypervisor_callback)
  959. # Hypervisor uses this for application faults while it executes.
  960. # We get here for two reasons:
  961. # 1. Fault while reloading DS, ES, FS or GS
  962. # 2. Fault while executing IRET
  963. # Category 1 we fix up by reattempting the load, and zeroing the segment
  964. # register if the load fails.
  965. # Category 2 we fix up by jumping to do_iret_error. We cannot use the
  966. # normal Linux return path in this case because if we use the IRET hypercall
  967. # to pop the stack frame we end up in an infinite loop of failsafe callbacks.
  968. # We distinguish between categories by maintaining a status value in EAX.
  969. ENTRY(xen_failsafe_callback)
  970. CFI_STARTPROC
  971. pushl_cfi %eax
  972. movl $1,%eax
  973. 1: mov 4(%esp),%ds
  974. 2: mov 8(%esp),%es
  975. 3: mov 12(%esp),%fs
  976. 4: mov 16(%esp),%gs
  977. testl %eax,%eax
  978. popl_cfi %eax
  979. lea 16(%esp),%esp
  980. CFI_ADJUST_CFA_OFFSET -16
  981. jz 5f
  982. addl $16,%esp
  983. jmp iret_exc # EAX != 0 => Category 2 (Bad IRET)
  984. 5: pushl_cfi $0 # EAX == 0 => Category 1 (Bad segment)
  985. SAVE_ALL
  986. jmp ret_from_exception
  987. CFI_ENDPROC
  988. .section .fixup,"ax"
  989. 6: xorl %eax,%eax
  990. movl %eax,4(%esp)
  991. jmp 1b
  992. 7: xorl %eax,%eax
  993. movl %eax,8(%esp)
  994. jmp 2b
  995. 8: xorl %eax,%eax
  996. movl %eax,12(%esp)
  997. jmp 3b
  998. 9: xorl %eax,%eax
  999. movl %eax,16(%esp)
  1000. jmp 4b
  1001. .previous
  1002. .section __ex_table,"a"
  1003. .align 4
  1004. .long 1b,6b
  1005. .long 2b,7b
  1006. .long 3b,8b
  1007. .long 4b,9b
  1008. .previous
  1009. ENDPROC(xen_failsafe_callback)
  1010. BUILD_INTERRUPT3(xen_hvm_callback_vector, XEN_HVM_EVTCHN_CALLBACK,
  1011. xen_evtchn_do_upcall)
  1012. #endif /* CONFIG_XEN */
  1013. #ifdef CONFIG_FUNCTION_TRACER
  1014. #ifdef CONFIG_DYNAMIC_FTRACE
  1015. ENTRY(mcount)
  1016. ret
  1017. END(mcount)
  1018. ENTRY(ftrace_caller)
  1019. cmpl $0, function_trace_stop
  1020. jne ftrace_stub
  1021. pushl %eax
  1022. pushl %ecx
  1023. pushl %edx
  1024. movl 0xc(%esp), %eax
  1025. movl 0x4(%ebp), %edx
  1026. subl $MCOUNT_INSN_SIZE, %eax
  1027. .globl ftrace_call
  1028. ftrace_call:
  1029. call ftrace_stub
  1030. popl %edx
  1031. popl %ecx
  1032. popl %eax
  1033. #ifdef CONFIG_FUNCTION_GRAPH_TRACER
  1034. .globl ftrace_graph_call
  1035. ftrace_graph_call:
  1036. jmp ftrace_stub
  1037. #endif
  1038. .globl ftrace_stub
  1039. ftrace_stub:
  1040. ret
  1041. END(ftrace_caller)
  1042. #else /* ! CONFIG_DYNAMIC_FTRACE */
  1043. ENTRY(mcount)
  1044. cmpl $0, function_trace_stop
  1045. jne ftrace_stub
  1046. cmpl $ftrace_stub, ftrace_trace_function
  1047. jnz trace
  1048. #ifdef CONFIG_FUNCTION_GRAPH_TRACER
  1049. cmpl $ftrace_stub, ftrace_graph_return
  1050. jnz ftrace_graph_caller
  1051. cmpl $ftrace_graph_entry_stub, ftrace_graph_entry
  1052. jnz ftrace_graph_caller
  1053. #endif
  1054. .globl ftrace_stub
  1055. ftrace_stub:
  1056. ret
  1057. /* taken from glibc */
  1058. trace:
  1059. pushl %eax
  1060. pushl %ecx
  1061. pushl %edx
  1062. movl 0xc(%esp), %eax
  1063. movl 0x4(%ebp), %edx
  1064. subl $MCOUNT_INSN_SIZE, %eax
  1065. call *ftrace_trace_function
  1066. popl %edx
  1067. popl %ecx
  1068. popl %eax
  1069. jmp ftrace_stub
  1070. END(mcount)
  1071. #endif /* CONFIG_DYNAMIC_FTRACE */
  1072. #endif /* CONFIG_FUNCTION_TRACER */
  1073. #ifdef CONFIG_FUNCTION_GRAPH_TRACER
  1074. ENTRY(ftrace_graph_caller)
  1075. cmpl $0, function_trace_stop
  1076. jne ftrace_stub
  1077. pushl %eax
  1078. pushl %ecx
  1079. pushl %edx
  1080. movl 0xc(%esp), %edx
  1081. lea 0x4(%ebp), %eax
  1082. movl (%ebp), %ecx
  1083. subl $MCOUNT_INSN_SIZE, %edx
  1084. call prepare_ftrace_return
  1085. popl %edx
  1086. popl %ecx
  1087. popl %eax
  1088. ret
  1089. END(ftrace_graph_caller)
  1090. .globl return_to_handler
  1091. return_to_handler:
  1092. pushl %eax
  1093. pushl %edx
  1094. movl %ebp, %eax
  1095. call ftrace_return_to_handler
  1096. movl %eax, %ecx
  1097. popl %edx
  1098. popl %eax
  1099. jmp *%ecx
  1100. #endif
  1101. /*
  1102. * Some functions should be protected against kprobes
  1103. */
  1104. .pushsection .kprobes.text, "ax"
  1105. ENTRY(page_fault)
  1106. RING0_EC_FRAME
  1107. pushl_cfi $do_page_fault
  1108. ALIGN
  1109. error_code:
  1110. /* the function address is in %gs's slot on the stack */
  1111. pushl_cfi %fs
  1112. /*CFI_REL_OFFSET fs, 0*/
  1113. pushl_cfi %es
  1114. /*CFI_REL_OFFSET es, 0*/
  1115. pushl_cfi %ds
  1116. /*CFI_REL_OFFSET ds, 0*/
  1117. pushl_cfi %eax
  1118. CFI_REL_OFFSET eax, 0
  1119. pushl_cfi %ebp
  1120. CFI_REL_OFFSET ebp, 0
  1121. pushl_cfi %edi
  1122. CFI_REL_OFFSET edi, 0
  1123. pushl_cfi %esi
  1124. CFI_REL_OFFSET esi, 0
  1125. pushl_cfi %edx
  1126. CFI_REL_OFFSET edx, 0
  1127. pushl_cfi %ecx
  1128. CFI_REL_OFFSET ecx, 0
  1129. pushl_cfi %ebx
  1130. CFI_REL_OFFSET ebx, 0
  1131. cld
  1132. movl $(__KERNEL_PERCPU), %ecx
  1133. movl %ecx, %fs
  1134. UNWIND_ESPFIX_STACK
  1135. GS_TO_REG %ecx
  1136. movl PT_GS(%esp), %edi # get the function address
  1137. movl PT_ORIG_EAX(%esp), %edx # get the error code
  1138. movl $-1, PT_ORIG_EAX(%esp) # no syscall to restart
  1139. REG_TO_PTGS %ecx
  1140. SET_KERNEL_GS %ecx
  1141. movl $(__USER_DS), %ecx
  1142. movl %ecx, %ds
  1143. movl %ecx, %es
  1144. TRACE_IRQS_OFF
  1145. movl %esp,%eax # pt_regs pointer
  1146. call *%edi
  1147. jmp ret_from_exception
  1148. CFI_ENDPROC
  1149. END(page_fault)
  1150. /*
  1151. * Debug traps and NMI can happen at the one SYSENTER instruction
  1152. * that sets up the real kernel stack. Check here, since we can't
  1153. * allow the wrong stack to be used.
  1154. *
  1155. * "TSS_sysenter_sp0+12" is because the NMI/debug handler will have
  1156. * already pushed 3 words if it hits on the sysenter instruction:
  1157. * eflags, cs and eip.
  1158. *
  1159. * We just load the right stack, and push the three (known) values
  1160. * by hand onto the new stack - while updating the return eip past
  1161. * the instruction that would have done it for sysenter.
  1162. */
  1163. .macro FIX_STACK offset ok label
  1164. cmpw $__KERNEL_CS, 4(%esp)
  1165. jne \ok
  1166. \label:
  1167. movl TSS_sysenter_sp0 + \offset(%esp), %esp
  1168. CFI_DEF_CFA esp, 0
  1169. CFI_UNDEFINED eip
  1170. pushfl_cfi
  1171. pushl_cfi $__KERNEL_CS
  1172. pushl_cfi $sysenter_past_esp
  1173. CFI_REL_OFFSET eip, 0
  1174. .endm
  1175. ENTRY(debug)
  1176. RING0_INT_FRAME
  1177. cmpl $ia32_sysenter_target,(%esp)
  1178. jne debug_stack_correct
  1179. FIX_STACK 12, debug_stack_correct, debug_esp_fix_insn
  1180. debug_stack_correct:
  1181. pushl_cfi $-1 # mark this as an int
  1182. SAVE_ALL
  1183. TRACE_IRQS_OFF
  1184. xorl %edx,%edx # error code 0
  1185. movl %esp,%eax # pt_regs pointer
  1186. call do_debug
  1187. jmp ret_from_exception
  1188. CFI_ENDPROC
  1189. END(debug)
  1190. /*
  1191. * NMI is doubly nasty. It can happen _while_ we're handling
  1192. * a debug fault, and the debug fault hasn't yet been able to
  1193. * clear up the stack. So we first check whether we got an
  1194. * NMI on the sysenter entry path, but after that we need to
  1195. * check whether we got an NMI on the debug path where the debug
  1196. * fault happened on the sysenter path.
  1197. */
  1198. ENTRY(nmi)
  1199. RING0_INT_FRAME
  1200. pushl_cfi %eax
  1201. movl %ss, %eax
  1202. cmpw $__ESPFIX_SS, %ax
  1203. popl_cfi %eax
  1204. je nmi_espfix_stack
  1205. cmpl $ia32_sysenter_target,(%esp)
  1206. je nmi_stack_fixup
  1207. pushl_cfi %eax
  1208. movl %esp,%eax
  1209. /* Do not access memory above the end of our stack page,
  1210. * it might not exist.
  1211. */
  1212. andl $(THREAD_SIZE-1),%eax
  1213. cmpl $(THREAD_SIZE-20),%eax
  1214. popl_cfi %eax
  1215. jae nmi_stack_correct
  1216. cmpl $ia32_sysenter_target,12(%esp)
  1217. je nmi_debug_stack_check
  1218. nmi_stack_correct:
  1219. /* We have a RING0_INT_FRAME here */
  1220. pushl_cfi %eax
  1221. SAVE_ALL
  1222. xorl %edx,%edx # zero error code
  1223. movl %esp,%eax # pt_regs pointer
  1224. call do_nmi
  1225. jmp restore_all_notrace
  1226. CFI_ENDPROC
  1227. nmi_stack_fixup:
  1228. RING0_INT_FRAME
  1229. FIX_STACK 12, nmi_stack_correct, 1
  1230. jmp nmi_stack_correct
  1231. nmi_debug_stack_check:
  1232. /* We have a RING0_INT_FRAME here */
  1233. cmpw $__KERNEL_CS,16(%esp)
  1234. jne nmi_stack_correct
  1235. cmpl $debug,(%esp)
  1236. jb nmi_stack_correct
  1237. cmpl $debug_esp_fix_insn,(%esp)
  1238. ja nmi_stack_correct
  1239. FIX_STACK 24, nmi_stack_correct, 1
  1240. jmp nmi_stack_correct
  1241. nmi_espfix_stack:
  1242. /* We have a RING0_INT_FRAME here.
  1243. *
  1244. * create the pointer to lss back
  1245. */
  1246. pushl_cfi %ss
  1247. pushl_cfi %esp
  1248. addl $4, (%esp)
  1249. /* copy the iret frame of 12 bytes */
  1250. .rept 3
  1251. pushl_cfi 16(%esp)
  1252. .endr
  1253. pushl_cfi %eax
  1254. SAVE_ALL
  1255. FIXUP_ESPFIX_STACK # %eax == %esp
  1256. xorl %edx,%edx # zero error code
  1257. call do_nmi
  1258. RESTORE_REGS
  1259. lss 12+4(%esp), %esp # back to espfix stack
  1260. CFI_ADJUST_CFA_OFFSET -24
  1261. jmp irq_return
  1262. CFI_ENDPROC
  1263. END(nmi)
  1264. ENTRY(int3)
  1265. RING0_INT_FRAME
  1266. pushl_cfi $-1 # mark this as an int
  1267. SAVE_ALL
  1268. TRACE_IRQS_OFF
  1269. xorl %edx,%edx # zero error code
  1270. movl %esp,%eax # pt_regs pointer
  1271. call do_int3
  1272. jmp ret_from_exception
  1273. CFI_ENDPROC
  1274. END(int3)
  1275. ENTRY(general_protection)
  1276. RING0_EC_FRAME
  1277. pushl_cfi $do_general_protection
  1278. jmp error_code
  1279. CFI_ENDPROC
  1280. END(general_protection)
  1281. #ifdef CONFIG_KVM_GUEST
  1282. ENTRY(async_page_fault)
  1283. RING0_EC_FRAME
  1284. pushl_cfi $do_async_page_fault
  1285. jmp error_code
  1286. CFI_ENDPROC
  1287. END(async_page_fault)
  1288. #endif
  1289. /*
  1290. * End of kprobes section
  1291. */
  1292. .popsection