traps.c 19 KB

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  1. /*
  2. * Copyright (C) 1991, 1992 Linus Torvalds
  3. * Copyright (C) 2000, 2001, 2002 Andi Kleen, SuSE Labs
  4. *
  5. * Pentium III FXSR, SSE support
  6. * Gareth Hughes <gareth@valinux.com>, May 2000
  7. */
  8. /*
  9. * Handle hardware traps and faults.
  10. */
  11. #include <linux/interrupt.h>
  12. #include <linux/kallsyms.h>
  13. #include <linux/spinlock.h>
  14. #include <linux/kprobes.h>
  15. #include <linux/uaccess.h>
  16. #include <linux/kdebug.h>
  17. #include <linux/kgdb.h>
  18. #include <linux/kernel.h>
  19. #include <linux/module.h>
  20. #include <linux/ptrace.h>
  21. #include <linux/string.h>
  22. #include <linux/delay.h>
  23. #include <linux/errno.h>
  24. #include <linux/kexec.h>
  25. #include <linux/sched.h>
  26. #include <linux/timer.h>
  27. #include <linux/init.h>
  28. #include <linux/bug.h>
  29. #include <linux/nmi.h>
  30. #include <linux/mm.h>
  31. #include <linux/smp.h>
  32. #include <linux/io.h>
  33. #ifdef CONFIG_EISA
  34. #include <linux/ioport.h>
  35. #include <linux/eisa.h>
  36. #endif
  37. #ifdef CONFIG_MCA
  38. #include <linux/mca.h>
  39. #endif
  40. #if defined(CONFIG_EDAC)
  41. #include <linux/edac.h>
  42. #endif
  43. #include <asm/kmemcheck.h>
  44. #include <asm/stacktrace.h>
  45. #include <asm/processor.h>
  46. #include <asm/debugreg.h>
  47. #include <linux/atomic.h>
  48. #include <asm/traps.h>
  49. #include <asm/desc.h>
  50. #include <asm/i387.h>
  51. #include <asm/fpu-internal.h>
  52. #include <asm/mce.h>
  53. #include <asm/mach_traps.h>
  54. #ifdef CONFIG_X86_64
  55. #include <asm/x86_init.h>
  56. #include <asm/pgalloc.h>
  57. #include <asm/proto.h>
  58. #else
  59. #include <asm/processor-flags.h>
  60. #include <asm/setup.h>
  61. asmlinkage int system_call(void);
  62. /* Do we ignore FPU interrupts ? */
  63. char ignore_fpu_irq;
  64. /*
  65. * The IDT has to be page-aligned to simplify the Pentium
  66. * F0 0F bug workaround.
  67. */
  68. gate_desc idt_table[NR_VECTORS] __page_aligned_data = { { { { 0, 0 } } }, };
  69. #endif
  70. DECLARE_BITMAP(used_vectors, NR_VECTORS);
  71. EXPORT_SYMBOL_GPL(used_vectors);
  72. static inline void conditional_sti(struct pt_regs *regs)
  73. {
  74. if (regs->flags & X86_EFLAGS_IF)
  75. local_irq_enable();
  76. }
  77. static inline void preempt_conditional_sti(struct pt_regs *regs)
  78. {
  79. inc_preempt_count();
  80. if (regs->flags & X86_EFLAGS_IF)
  81. local_irq_enable();
  82. }
  83. static inline void conditional_cli(struct pt_regs *regs)
  84. {
  85. if (regs->flags & X86_EFLAGS_IF)
  86. local_irq_disable();
  87. }
  88. static inline void preempt_conditional_cli(struct pt_regs *regs)
  89. {
  90. if (regs->flags & X86_EFLAGS_IF)
  91. local_irq_disable();
  92. dec_preempt_count();
  93. }
  94. static void __kprobes
  95. do_trap(int trapnr, int signr, char *str, struct pt_regs *regs,
  96. long error_code, siginfo_t *info)
  97. {
  98. struct task_struct *tsk = current;
  99. #ifdef CONFIG_X86_32
  100. if (regs->flags & X86_VM_MASK) {
  101. /*
  102. * traps 0, 1, 3, 4, and 5 should be forwarded to vm86.
  103. * On nmi (interrupt 2), do_trap should not be called.
  104. */
  105. if (trapnr < X86_TRAP_UD)
  106. goto vm86_trap;
  107. goto trap_signal;
  108. }
  109. #endif
  110. if (!user_mode(regs))
  111. goto kernel_trap;
  112. #ifdef CONFIG_X86_32
  113. trap_signal:
  114. #endif
  115. /*
  116. * We want error_code and trap_nr set for userspace faults and
  117. * kernelspace faults which result in die(), but not
  118. * kernelspace faults which are fixed up. die() gives the
  119. * process no chance to handle the signal and notice the
  120. * kernel fault information, so that won't result in polluting
  121. * the information about previously queued, but not yet
  122. * delivered, faults. See also do_general_protection below.
  123. */
  124. tsk->thread.error_code = error_code;
  125. tsk->thread.trap_nr = trapnr;
  126. #ifdef CONFIG_X86_64
  127. if (show_unhandled_signals && unhandled_signal(tsk, signr) &&
  128. printk_ratelimit()) {
  129. printk(KERN_INFO
  130. "%s[%d] trap %s ip:%lx sp:%lx error:%lx",
  131. tsk->comm, tsk->pid, str,
  132. regs->ip, regs->sp, error_code);
  133. print_vma_addr(" in ", regs->ip);
  134. printk("\n");
  135. }
  136. #endif
  137. if (info)
  138. force_sig_info(signr, info, tsk);
  139. else
  140. force_sig(signr, tsk);
  141. return;
  142. kernel_trap:
  143. if (!fixup_exception(regs)) {
  144. tsk->thread.error_code = error_code;
  145. tsk->thread.trap_nr = trapnr;
  146. die(str, regs, error_code);
  147. }
  148. return;
  149. #ifdef CONFIG_X86_32
  150. vm86_trap:
  151. if (handle_vm86_trap((struct kernel_vm86_regs *) regs,
  152. error_code, trapnr))
  153. goto trap_signal;
  154. return;
  155. #endif
  156. }
  157. #define DO_ERROR(trapnr, signr, str, name) \
  158. dotraplinkage void do_##name(struct pt_regs *regs, long error_code) \
  159. { \
  160. if (notify_die(DIE_TRAP, str, regs, error_code, trapnr, signr) \
  161. == NOTIFY_STOP) \
  162. return; \
  163. conditional_sti(regs); \
  164. do_trap(trapnr, signr, str, regs, error_code, NULL); \
  165. }
  166. #define DO_ERROR_INFO(trapnr, signr, str, name, sicode, siaddr) \
  167. dotraplinkage void do_##name(struct pt_regs *regs, long error_code) \
  168. { \
  169. siginfo_t info; \
  170. info.si_signo = signr; \
  171. info.si_errno = 0; \
  172. info.si_code = sicode; \
  173. info.si_addr = (void __user *)siaddr; \
  174. if (notify_die(DIE_TRAP, str, regs, error_code, trapnr, signr) \
  175. == NOTIFY_STOP) \
  176. return; \
  177. conditional_sti(regs); \
  178. do_trap(trapnr, signr, str, regs, error_code, &info); \
  179. }
  180. DO_ERROR_INFO(X86_TRAP_DE, SIGFPE, "divide error", divide_error, FPE_INTDIV,
  181. regs->ip)
  182. DO_ERROR(X86_TRAP_OF, SIGSEGV, "overflow", overflow)
  183. DO_ERROR(X86_TRAP_BR, SIGSEGV, "bounds", bounds)
  184. DO_ERROR_INFO(X86_TRAP_UD, SIGILL, "invalid opcode", invalid_op, ILL_ILLOPN,
  185. regs->ip)
  186. DO_ERROR(X86_TRAP_OLD_MF, SIGFPE, "coprocessor segment overrun",
  187. coprocessor_segment_overrun)
  188. DO_ERROR(X86_TRAP_TS, SIGSEGV, "invalid TSS", invalid_TSS)
  189. DO_ERROR(X86_TRAP_NP, SIGBUS, "segment not present", segment_not_present)
  190. #ifdef CONFIG_X86_32
  191. DO_ERROR(X86_TRAP_SS, SIGBUS, "stack segment", stack_segment)
  192. #endif
  193. DO_ERROR_INFO(X86_TRAP_AC, SIGBUS, "alignment check", alignment_check,
  194. BUS_ADRALN, 0)
  195. #ifdef CONFIG_X86_64
  196. /* Runs on IST stack */
  197. dotraplinkage void do_stack_segment(struct pt_regs *regs, long error_code)
  198. {
  199. if (notify_die(DIE_TRAP, "stack segment", regs, error_code,
  200. X86_TRAP_SS, SIGBUS) == NOTIFY_STOP)
  201. return;
  202. preempt_conditional_sti(regs);
  203. do_trap(X86_TRAP_SS, SIGBUS, "stack segment", regs, error_code, NULL);
  204. preempt_conditional_cli(regs);
  205. }
  206. dotraplinkage void do_double_fault(struct pt_regs *regs, long error_code)
  207. {
  208. static const char str[] = "double fault";
  209. struct task_struct *tsk = current;
  210. /* Return not checked because double check cannot be ignored */
  211. notify_die(DIE_TRAP, str, regs, error_code, X86_TRAP_DF, SIGSEGV);
  212. tsk->thread.error_code = error_code;
  213. tsk->thread.trap_nr = X86_TRAP_DF;
  214. /*
  215. * This is always a kernel trap and never fixable (and thus must
  216. * never return).
  217. */
  218. for (;;)
  219. die(str, regs, error_code);
  220. }
  221. #endif
  222. dotraplinkage void __kprobes
  223. do_general_protection(struct pt_regs *regs, long error_code)
  224. {
  225. struct task_struct *tsk;
  226. conditional_sti(regs);
  227. #ifdef CONFIG_X86_32
  228. if (regs->flags & X86_VM_MASK)
  229. goto gp_in_vm86;
  230. #endif
  231. tsk = current;
  232. if (!user_mode(regs))
  233. goto gp_in_kernel;
  234. tsk->thread.error_code = error_code;
  235. tsk->thread.trap_nr = X86_TRAP_GP;
  236. if (show_unhandled_signals && unhandled_signal(tsk, SIGSEGV) &&
  237. printk_ratelimit()) {
  238. printk(KERN_INFO
  239. "%s[%d] general protection ip:%lx sp:%lx error:%lx",
  240. tsk->comm, task_pid_nr(tsk),
  241. regs->ip, regs->sp, error_code);
  242. print_vma_addr(" in ", regs->ip);
  243. printk("\n");
  244. }
  245. force_sig(SIGSEGV, tsk);
  246. return;
  247. #ifdef CONFIG_X86_32
  248. gp_in_vm86:
  249. local_irq_enable();
  250. handle_vm86_fault((struct kernel_vm86_regs *) regs, error_code);
  251. return;
  252. #endif
  253. gp_in_kernel:
  254. if (fixup_exception(regs))
  255. return;
  256. tsk->thread.error_code = error_code;
  257. tsk->thread.trap_nr = X86_TRAP_GP;
  258. if (notify_die(DIE_GPF, "general protection fault", regs, error_code,
  259. X86_TRAP_GP, SIGSEGV) == NOTIFY_STOP)
  260. return;
  261. die("general protection fault", regs, error_code);
  262. }
  263. /* May run on IST stack. */
  264. dotraplinkage void __kprobes do_int3(struct pt_regs *regs, long error_code)
  265. {
  266. #ifdef CONFIG_KGDB_LOW_LEVEL_TRAP
  267. if (kgdb_ll_trap(DIE_INT3, "int3", regs, error_code, X86_TRAP_BP,
  268. SIGTRAP) == NOTIFY_STOP)
  269. return;
  270. #endif /* CONFIG_KGDB_LOW_LEVEL_TRAP */
  271. if (notify_die(DIE_INT3, "int3", regs, error_code, X86_TRAP_BP,
  272. SIGTRAP) == NOTIFY_STOP)
  273. return;
  274. /*
  275. * Let others (NMI) know that the debug stack is in use
  276. * as we may switch to the interrupt stack.
  277. */
  278. debug_stack_usage_inc();
  279. preempt_conditional_sti(regs);
  280. do_trap(X86_TRAP_BP, SIGTRAP, "int3", regs, error_code, NULL);
  281. preempt_conditional_cli(regs);
  282. debug_stack_usage_dec();
  283. }
  284. #ifdef CONFIG_X86_64
  285. /*
  286. * Help handler running on IST stack to switch back to user stack
  287. * for scheduling or signal handling. The actual stack switch is done in
  288. * entry.S
  289. */
  290. asmlinkage __kprobes struct pt_regs *sync_regs(struct pt_regs *eregs)
  291. {
  292. struct pt_regs *regs = eregs;
  293. /* Did already sync */
  294. if (eregs == (struct pt_regs *)eregs->sp)
  295. ;
  296. /* Exception from user space */
  297. else if (user_mode(eregs))
  298. regs = task_pt_regs(current);
  299. /*
  300. * Exception from kernel and interrupts are enabled. Move to
  301. * kernel process stack.
  302. */
  303. else if (eregs->flags & X86_EFLAGS_IF)
  304. regs = (struct pt_regs *)(eregs->sp -= sizeof(struct pt_regs));
  305. if (eregs != regs)
  306. *regs = *eregs;
  307. return regs;
  308. }
  309. #endif
  310. /*
  311. * Our handling of the processor debug registers is non-trivial.
  312. * We do not clear them on entry and exit from the kernel. Therefore
  313. * it is possible to get a watchpoint trap here from inside the kernel.
  314. * However, the code in ./ptrace.c has ensured that the user can
  315. * only set watchpoints on userspace addresses. Therefore the in-kernel
  316. * watchpoint trap can only occur in code which is reading/writing
  317. * from user space. Such code must not hold kernel locks (since it
  318. * can equally take a page fault), therefore it is safe to call
  319. * force_sig_info even though that claims and releases locks.
  320. *
  321. * Code in ./signal.c ensures that the debug control register
  322. * is restored before we deliver any signal, and therefore that
  323. * user code runs with the correct debug control register even though
  324. * we clear it here.
  325. *
  326. * Being careful here means that we don't have to be as careful in a
  327. * lot of more complicated places (task switching can be a bit lazy
  328. * about restoring all the debug state, and ptrace doesn't have to
  329. * find every occurrence of the TF bit that could be saved away even
  330. * by user code)
  331. *
  332. * May run on IST stack.
  333. */
  334. dotraplinkage void __kprobes do_debug(struct pt_regs *regs, long error_code)
  335. {
  336. struct task_struct *tsk = current;
  337. int user_icebp = 0;
  338. unsigned long dr6;
  339. int si_code;
  340. get_debugreg(dr6, 6);
  341. /* Filter out all the reserved bits which are preset to 1 */
  342. dr6 &= ~DR6_RESERVED;
  343. /*
  344. * If dr6 has no reason to give us about the origin of this trap,
  345. * then it's very likely the result of an icebp/int01 trap.
  346. * User wants a sigtrap for that.
  347. */
  348. if (!dr6 && user_mode(regs))
  349. user_icebp = 1;
  350. /* Catch kmemcheck conditions first of all! */
  351. if ((dr6 & DR_STEP) && kmemcheck_trap(regs))
  352. return;
  353. /* DR6 may or may not be cleared by the CPU */
  354. set_debugreg(0, 6);
  355. /*
  356. * The processor cleared BTF, so don't mark that we need it set.
  357. */
  358. clear_tsk_thread_flag(tsk, TIF_BLOCKSTEP);
  359. /* Store the virtualized DR6 value */
  360. tsk->thread.debugreg6 = dr6;
  361. if (notify_die(DIE_DEBUG, "debug", regs, PTR_ERR(&dr6), error_code,
  362. SIGTRAP) == NOTIFY_STOP)
  363. return;
  364. /*
  365. * Let others (NMI) know that the debug stack is in use
  366. * as we may switch to the interrupt stack.
  367. */
  368. debug_stack_usage_inc();
  369. /* It's safe to allow irq's after DR6 has been saved */
  370. preempt_conditional_sti(regs);
  371. if (regs->flags & X86_VM_MASK) {
  372. handle_vm86_trap((struct kernel_vm86_regs *) regs, error_code,
  373. X86_TRAP_DB);
  374. preempt_conditional_cli(regs);
  375. debug_stack_usage_dec();
  376. return;
  377. }
  378. /*
  379. * Single-stepping through system calls: ignore any exceptions in
  380. * kernel space, but re-enable TF when returning to user mode.
  381. *
  382. * We already checked v86 mode above, so we can check for kernel mode
  383. * by just checking the CPL of CS.
  384. */
  385. if ((dr6 & DR_STEP) && !user_mode(regs)) {
  386. tsk->thread.debugreg6 &= ~DR_STEP;
  387. set_tsk_thread_flag(tsk, TIF_SINGLESTEP);
  388. regs->flags &= ~X86_EFLAGS_TF;
  389. }
  390. si_code = get_si_code(tsk->thread.debugreg6);
  391. if (tsk->thread.debugreg6 & (DR_STEP | DR_TRAP_BITS) || user_icebp)
  392. send_sigtrap(tsk, regs, error_code, si_code);
  393. preempt_conditional_cli(regs);
  394. debug_stack_usage_dec();
  395. return;
  396. }
  397. /*
  398. * Note that we play around with the 'TS' bit in an attempt to get
  399. * the correct behaviour even in the presence of the asynchronous
  400. * IRQ13 behaviour
  401. */
  402. void math_error(struct pt_regs *regs, int error_code, int trapnr)
  403. {
  404. struct task_struct *task = current;
  405. siginfo_t info;
  406. unsigned short err;
  407. char *str = (trapnr == X86_TRAP_MF) ? "fpu exception" :
  408. "simd exception";
  409. if (notify_die(DIE_TRAP, str, regs, error_code, trapnr, SIGFPE) == NOTIFY_STOP)
  410. return;
  411. conditional_sti(regs);
  412. if (!user_mode_vm(regs))
  413. {
  414. if (!fixup_exception(regs)) {
  415. task->thread.error_code = error_code;
  416. task->thread.trap_nr = trapnr;
  417. die(str, regs, error_code);
  418. }
  419. return;
  420. }
  421. /*
  422. * Save the info for the exception handler and clear the error.
  423. */
  424. save_init_fpu(task);
  425. task->thread.trap_nr = trapnr;
  426. task->thread.error_code = error_code;
  427. info.si_signo = SIGFPE;
  428. info.si_errno = 0;
  429. info.si_addr = (void __user *)regs->ip;
  430. if (trapnr == X86_TRAP_MF) {
  431. unsigned short cwd, swd;
  432. /*
  433. * (~cwd & swd) will mask out exceptions that are not set to unmasked
  434. * status. 0x3f is the exception bits in these regs, 0x200 is the
  435. * C1 reg you need in case of a stack fault, 0x040 is the stack
  436. * fault bit. We should only be taking one exception at a time,
  437. * so if this combination doesn't produce any single exception,
  438. * then we have a bad program that isn't synchronizing its FPU usage
  439. * and it will suffer the consequences since we won't be able to
  440. * fully reproduce the context of the exception
  441. */
  442. cwd = get_fpu_cwd(task);
  443. swd = get_fpu_swd(task);
  444. err = swd & ~cwd;
  445. } else {
  446. /*
  447. * The SIMD FPU exceptions are handled a little differently, as there
  448. * is only a single status/control register. Thus, to determine which
  449. * unmasked exception was caught we must mask the exception mask bits
  450. * at 0x1f80, and then use these to mask the exception bits at 0x3f.
  451. */
  452. unsigned short mxcsr = get_fpu_mxcsr(task);
  453. err = ~(mxcsr >> 7) & mxcsr;
  454. }
  455. if (err & 0x001) { /* Invalid op */
  456. /*
  457. * swd & 0x240 == 0x040: Stack Underflow
  458. * swd & 0x240 == 0x240: Stack Overflow
  459. * User must clear the SF bit (0x40) if set
  460. */
  461. info.si_code = FPE_FLTINV;
  462. } else if (err & 0x004) { /* Divide by Zero */
  463. info.si_code = FPE_FLTDIV;
  464. } else if (err & 0x008) { /* Overflow */
  465. info.si_code = FPE_FLTOVF;
  466. } else if (err & 0x012) { /* Denormal, Underflow */
  467. info.si_code = FPE_FLTUND;
  468. } else if (err & 0x020) { /* Precision */
  469. info.si_code = FPE_FLTRES;
  470. } else {
  471. /*
  472. * If we're using IRQ 13, or supposedly even some trap
  473. * X86_TRAP_MF implementations, it's possible
  474. * we get a spurious trap, which is not an error.
  475. */
  476. return;
  477. }
  478. force_sig_info(SIGFPE, &info, task);
  479. }
  480. dotraplinkage void do_coprocessor_error(struct pt_regs *regs, long error_code)
  481. {
  482. #ifdef CONFIG_X86_32
  483. ignore_fpu_irq = 1;
  484. #endif
  485. math_error(regs, error_code, X86_TRAP_MF);
  486. }
  487. dotraplinkage void
  488. do_simd_coprocessor_error(struct pt_regs *regs, long error_code)
  489. {
  490. math_error(regs, error_code, X86_TRAP_XF);
  491. }
  492. dotraplinkage void
  493. do_spurious_interrupt_bug(struct pt_regs *regs, long error_code)
  494. {
  495. conditional_sti(regs);
  496. #if 0
  497. /* No need to warn about this any longer. */
  498. printk(KERN_INFO "Ignoring P6 Local APIC Spurious Interrupt Bug...\n");
  499. #endif
  500. }
  501. asmlinkage void __attribute__((weak)) smp_thermal_interrupt(void)
  502. {
  503. }
  504. asmlinkage void __attribute__((weak)) smp_threshold_interrupt(void)
  505. {
  506. }
  507. /*
  508. * 'math_state_restore()' saves the current math information in the
  509. * old math state array, and gets the new ones from the current task
  510. *
  511. * Careful.. There are problems with IBM-designed IRQ13 behaviour.
  512. * Don't touch unless you *really* know how it works.
  513. *
  514. * Must be called with kernel preemption disabled (eg with local
  515. * local interrupts as in the case of do_device_not_available).
  516. */
  517. void math_state_restore(void)
  518. {
  519. struct task_struct *tsk = current;
  520. if (!tsk_used_math(tsk)) {
  521. local_irq_enable();
  522. /*
  523. * does a slab alloc which can sleep
  524. */
  525. if (init_fpu(tsk)) {
  526. /*
  527. * ran out of memory!
  528. */
  529. do_group_exit(SIGKILL);
  530. return;
  531. }
  532. local_irq_disable();
  533. }
  534. __thread_fpu_begin(tsk);
  535. /*
  536. * Paranoid restore. send a SIGSEGV if we fail to restore the state.
  537. */
  538. if (unlikely(restore_fpu_checking(tsk))) {
  539. __thread_fpu_end(tsk);
  540. force_sig(SIGSEGV, tsk);
  541. return;
  542. }
  543. tsk->fpu_counter++;
  544. }
  545. EXPORT_SYMBOL_GPL(math_state_restore);
  546. dotraplinkage void __kprobes
  547. do_device_not_available(struct pt_regs *regs, long error_code)
  548. {
  549. #ifdef CONFIG_MATH_EMULATION
  550. if (read_cr0() & X86_CR0_EM) {
  551. struct math_emu_info info = { };
  552. conditional_sti(regs);
  553. info.regs = regs;
  554. math_emulate(&info);
  555. return;
  556. }
  557. #endif
  558. math_state_restore(); /* interrupts still off */
  559. #ifdef CONFIG_X86_32
  560. conditional_sti(regs);
  561. #endif
  562. }
  563. #ifdef CONFIG_X86_32
  564. dotraplinkage void do_iret_error(struct pt_regs *regs, long error_code)
  565. {
  566. siginfo_t info;
  567. local_irq_enable();
  568. info.si_signo = SIGILL;
  569. info.si_errno = 0;
  570. info.si_code = ILL_BADSTK;
  571. info.si_addr = NULL;
  572. if (notify_die(DIE_TRAP, "iret exception", regs, error_code,
  573. X86_TRAP_IRET, SIGILL) == NOTIFY_STOP)
  574. return;
  575. do_trap(X86_TRAP_IRET, SIGILL, "iret exception", regs, error_code,
  576. &info);
  577. }
  578. #endif
  579. /* Set of traps needed for early debugging. */
  580. void __init early_trap_init(void)
  581. {
  582. set_intr_gate_ist(X86_TRAP_DB, &debug, DEBUG_STACK);
  583. /* int3 can be called from all */
  584. set_system_intr_gate_ist(X86_TRAP_BP, &int3, DEBUG_STACK);
  585. set_intr_gate(X86_TRAP_PF, &page_fault);
  586. load_idt(&idt_descr);
  587. }
  588. void __init trap_init(void)
  589. {
  590. int i;
  591. #ifdef CONFIG_EISA
  592. void __iomem *p = early_ioremap(0x0FFFD9, 4);
  593. if (readl(p) == 'E' + ('I'<<8) + ('S'<<16) + ('A'<<24))
  594. EISA_bus = 1;
  595. early_iounmap(p, 4);
  596. #endif
  597. set_intr_gate(X86_TRAP_DE, &divide_error);
  598. set_intr_gate_ist(X86_TRAP_NMI, &nmi, NMI_STACK);
  599. /* int4 can be called from all */
  600. set_system_intr_gate(X86_TRAP_OF, &overflow);
  601. set_intr_gate(X86_TRAP_BR, &bounds);
  602. set_intr_gate(X86_TRAP_UD, &invalid_op);
  603. set_intr_gate(X86_TRAP_NM, &device_not_available);
  604. #ifdef CONFIG_X86_32
  605. set_task_gate(X86_TRAP_DF, GDT_ENTRY_DOUBLEFAULT_TSS);
  606. #else
  607. set_intr_gate_ist(X86_TRAP_DF, &double_fault, DOUBLEFAULT_STACK);
  608. #endif
  609. set_intr_gate(X86_TRAP_OLD_MF, &coprocessor_segment_overrun);
  610. set_intr_gate(X86_TRAP_TS, &invalid_TSS);
  611. set_intr_gate(X86_TRAP_NP, &segment_not_present);
  612. set_intr_gate_ist(X86_TRAP_SS, &stack_segment, STACKFAULT_STACK);
  613. set_intr_gate(X86_TRAP_GP, &general_protection);
  614. set_intr_gate(X86_TRAP_SPURIOUS, &spurious_interrupt_bug);
  615. set_intr_gate(X86_TRAP_MF, &coprocessor_error);
  616. set_intr_gate(X86_TRAP_AC, &alignment_check);
  617. #ifdef CONFIG_X86_MCE
  618. set_intr_gate_ist(X86_TRAP_MC, &machine_check, MCE_STACK);
  619. #endif
  620. set_intr_gate(X86_TRAP_XF, &simd_coprocessor_error);
  621. /* Reserve all the builtin and the syscall vector: */
  622. for (i = 0; i < FIRST_EXTERNAL_VECTOR; i++)
  623. set_bit(i, used_vectors);
  624. #ifdef CONFIG_IA32_EMULATION
  625. set_system_intr_gate(IA32_SYSCALL_VECTOR, ia32_syscall);
  626. set_bit(IA32_SYSCALL_VECTOR, used_vectors);
  627. #endif
  628. #ifdef CONFIG_X86_32
  629. set_system_trap_gate(SYSCALL_VECTOR, &system_call);
  630. set_bit(SYSCALL_VECTOR, used_vectors);
  631. #endif
  632. /*
  633. * Should be a barrier for any external CPU state:
  634. */
  635. cpu_init();
  636. x86_init.irqs.trap_init();
  637. #ifdef CONFIG_X86_64
  638. memcpy(&nmi_idt_table, &idt_table, IDT_ENTRIES * 16);
  639. set_nmi_gate(X86_TRAP_DB, &debug);
  640. set_nmi_gate(X86_TRAP_BP, &int3);
  641. #endif
  642. }